1 /* If-conversion for vectorizer.
2 Copyright (C) 2004 Free Software Foundation, Inc.
3 Contributed by Devang Patel <dpatel@apple.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 2, or (at your option) any later
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
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING. If not, write to the Free
19 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
22 /* This pass implements tree level if-conversion transformation of loops.
23 Initial goal is to help vectorizer vectorize loops with conditions.
25 A short description of if-conversion:
27 o Decide if a loop is if-convertable or not.
28 o Walk all loop basic blocks in breadth first order (BFS order).
29 o Remove conditional statements (at the end of basic block)
30 and propagate condition into destination basic blocks'
32 o Replace modify expression with conditional modify expression
33 using current basic block's condition.
34 o Merge all basic blocks
35 o Replace phi nodes with conditional modify expr
36 o Merge all basic blocks into header
38 Sample transformation:
43 # i_23 = PHI <0(0), i_18(10)>;
46 if (j_15 > 41) goto <L1>; else goto <L17>;
53 # iftmp.2_4 = PHI <0(8), 42(2)>;
57 if (i_18 <= 15) goto <L19>; else goto <L18>;
67 # i_23 = PHI <0(0), i_18(10)>;
72 iftmp.2_4 = j_15 > 41 ? 42 : 0;
75 if (i_18 <= 15) goto <L19>; else goto <L18>;
85 #include "coretypes.h"
94 #include "basic-block.h"
95 #include "diagnostic.h"
96 #include "tree-flow.h"
97 #include "tree-dump.h"
99 #include "tree-chrec.h"
100 #include "tree-data-ref.h"
101 #include "tree-scalar-evolution.h"
102 #include "tree-pass.h"
105 /* local function prototypes */
106 static void main_tree_if_conversion (void);
107 static tree
tree_if_convert_stmt (struct loop
*loop
, tree
, tree
,
108 block_stmt_iterator
*);
109 static void tree_if_convert_cond_expr (struct loop
*, tree
, tree
,
110 block_stmt_iterator
*);
111 static bool if_convertable_phi_p (struct loop
*, basic_block
, tree
);
112 static bool if_convertable_modify_expr_p (struct loop
*, basic_block
, tree
);
113 static bool if_convertable_stmt_p (struct loop
*, basic_block
, tree
);
114 static bool if_convertable_bb_p (struct loop
*, basic_block
, bool);
115 static bool if_convertable_loop_p (struct loop
*, bool);
116 static void add_to_predicate_list (basic_block
, tree
);
117 static tree
add_to_dst_predicate_list (struct loop
* loop
, tree
, tree
, tree
,
118 block_stmt_iterator
*);
119 static void clean_predicate_lists (struct loop
*loop
);
120 static basic_block
find_phi_replacement_condition (basic_block
, tree
*,
121 block_stmt_iterator
*);
122 static void replace_phi_with_cond_modify_expr (tree
, tree
, basic_block
,
123 block_stmt_iterator
*);
124 static void process_phi_nodes (struct loop
*);
125 static void combine_blocks (struct loop
*);
126 static tree
ifc_temp_var (tree
, tree
);
127 static bool pred_blocks_visited_p (basic_block
, bitmap
*);
128 static basic_block
* get_loop_body_in_if_conv_order (const struct loop
*loop
);
129 static bool bb_with_exit_edge_p (basic_block
);
131 /* List of basic blocks in if-conversion-suitable order. */
132 static basic_block
*ifc_bbs
;
135 Apply if-conversion to the LOOP. Return true if successful otherwise return
136 false. If false is returned then loop remains unchanged.
137 FOR_VECTORIZER is a boolean flag. It indicates whether if-conversion is used
138 for vectorizer or not. If it is used for vectorizer, additional checks are
139 used. (Vectorization checks are not yet implemented). */
142 tree_if_conversion (struct loop
*loop
, bool for_vectorizer
)
145 block_stmt_iterator itr
;
151 /* if-conversion is not appropriate for all loops. First, check if loop is
152 if-convertable or not. */
153 if (!if_convertable_loop_p (loop
, for_vectorizer
))
155 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
156 fprintf (dump_file
,"-------------------------\n");
162 free_dominance_info (CDI_POST_DOMINATORS
);
169 /* Do actual work now. */
170 for (i
= 0; i
< loop
->num_nodes
; i
++)
174 /* Update condition using predicate list. */
177 /* Process all statements in this basic block.
178 Remove conditional expression, if any, and annotate
179 destination basic block(s) appropriately. */
180 for (itr
= bsi_start (bb
); !bsi_end_p (itr
); /* empty */)
182 tree t
= bsi_stmt (itr
);
183 cond
= tree_if_convert_stmt (loop
, t
, cond
, &itr
);
184 if (!bsi_end_p (itr
))
188 /* If current bb has only one successor, then consider it as an
189 unconditional goto. */
190 if (bb
->succ
&& !bb
->succ
->succ_next
)
192 basic_block bb_n
= bb
->succ
->dest
;
193 if (cond
!= NULL_TREE
)
194 add_to_predicate_list (bb_n
, cond
);
199 /* Now, all statements are if-converted and basic blocks are
200 annotated appropriately. Combine all basic block into one huge
202 combine_blocks (loop
);
205 clean_predicate_lists (loop
);
213 /* if-convert stmt T which is part of LOOP.
214 If T is a MODIFY_EXPR than it is converted into conditional modify
215 expression using COND. For conditional expressions, add condition in the
216 destination basic block's predicate list and remove conditional
217 expression itself. BSI is the iterator used to traverse statements of
218 loop. It is used here when it is required to delete current statement. */
221 tree_if_convert_stmt (struct loop
* loop
, tree t
, tree cond
,
222 block_stmt_iterator
*bsi
)
224 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
226 fprintf (dump_file
, "------if-convert stmt\n");
227 print_generic_stmt (dump_file
, t
, TDF_SLIM
);
228 print_generic_stmt (dump_file
, cond
, TDF_SLIM
);
231 switch (TREE_CODE (t
))
233 /* Labels are harmless here. */
238 /* This modify_expr is killing previous value of LHS. Appropriate value will
239 be selected by PHI node based on condition. It is possible that before
240 this transformation, PHI nodes was selecting default value and now it will
241 use this new value. This is OK because it does not change validity the
246 /* Unconditional goto */
247 add_to_predicate_list (bb_for_stmt (TREE_OPERAND (t
, 1)), cond
);
253 /* Update destination blocks' predicate list and remove this
254 condition expression. */
255 tree_if_convert_cond_expr (loop
, t
, cond
, bsi
);
265 /* STMT is COND_EXPR. Update two destination's predicate list.
266 Remove COND_EXPR, if it is not the loop exit condition. Otherwise
267 update loop exit condition appropriately. BSI is the iterator
268 used to traverse statement list. STMT is part of loop LOOP. */
271 tree_if_convert_cond_expr (struct loop
*loop
, tree stmt
, tree cond
,
272 block_stmt_iterator
*bsi
)
274 tree then_clause
, else_clause
, c
, new_cond
;
275 new_cond
= NULL_TREE
;
277 gcc_assert (TREE_CODE (stmt
) == COND_EXPR
);
279 c
= TREE_OPERAND (stmt
, 0);
280 then_clause
= TREE_OPERAND (stmt
, 1);
281 else_clause
= TREE_OPERAND (stmt
, 2);
283 /* Create temp. for condition. */
284 if (!is_gimple_reg (c
))
287 new_stmt
= ifc_temp_var (TREE_TYPE (c
), unshare_expr (c
));
288 bsi_insert_before (bsi
, new_stmt
, BSI_SAME_STMT
);
289 c
= TREE_OPERAND (new_stmt
, 0);
292 /* Add new condition into destination's predicate list. */
294 /* if 'c' is true then then_clause is reached. */
295 new_cond
= add_to_dst_predicate_list (loop
, then_clause
, cond
, c
, bsi
);
299 /* if 'c' is false then else_clause is reached. */
300 tree c2
= build1 (TRUTH_NOT_EXPR
,
303 add_to_dst_predicate_list (loop
, else_clause
, cond
, c2
, bsi
);
306 /* Now this conditional statement is redundant. Remove it.
307 But, do not remove exit condition! Update exit condition
308 using new condition. */
309 if (!bb_with_exit_edge_p (bb_for_stmt (stmt
)))
314 else if (new_cond
!= NULL_TREE
)
316 TREE_OPERAND (stmt
, 0) = new_cond
;
322 /* Return true, iff PHI is if-convertable. PHI is part of loop LOOP
323 and it belongs to basic block BB.
324 PHI is not if-convertable
325 - if it has more than 2 arguments.
326 - Virtual PHI is immediately used in another PHI node. */
329 if_convertable_phi_p (struct loop
*loop
, basic_block bb
, tree phi
)
331 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
333 fprintf (dump_file
, "-------------------------\n");
334 print_generic_stmt (dump_file
, phi
, TDF_SLIM
);
337 if (bb
!= loop
->header
&& PHI_NUM_ARGS (phi
) != 2)
339 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
340 fprintf (dump_file
, "More than two phi node args.\n");
344 if (!is_gimple_reg (SSA_NAME_VAR (PHI_RESULT (phi
))))
347 dataflow_t df
= get_immediate_uses (phi
);
348 int num_uses
= num_immediate_uses (df
);
349 for (j
= 0; j
< num_uses
; j
++)
351 tree use
= immediate_use (df
, j
);
352 if (TREE_CODE (use
) == PHI_NODE
)
354 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
355 fprintf (dump_file
, "Difficult to handle this virtual phi.\n");
364 /* Return true, if M_EXPR is if-convertable.
365 MODIFY_EXPR is not if-convertable if,
368 - LHS is not var decl.
369 MODIFY_EXPR is part of block BB, which is inside loop LOOP.
373 if_convertable_modify_expr_p (struct loop
*loop
, basic_block bb
, tree m_expr
)
375 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
377 fprintf (dump_file
, "-------------------------\n");
378 print_generic_stmt (dump_file
, m_expr
, TDF_SLIM
);
381 /* Be conservative and do not handle immovable expressions. */
382 if (movement_possibility (m_expr
) == MOVE_IMPOSSIBLE
)
384 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
385 fprintf (dump_file
, "stmt is movable. Don't take risk\n");
389 /* See if it needs speculative loading or not. */
390 if (bb
!= loop
->header
391 && tree_could_trap_p (TREE_OPERAND (m_expr
, 1)))
393 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
394 fprintf (dump_file
, "tree could trap...\n");
398 if (TREE_CODE (TREE_OPERAND (m_expr
, 1)) == CALL_EXPR
)
400 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
401 fprintf (dump_file
, "CALL_EXPR \n");
405 if (TREE_CODE (TREE_OPERAND (m_expr
, 0)) != SSA_NAME
406 && bb
!= loop
->header
407 && !bb_with_exit_edge_p (bb
))
409 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
411 fprintf (dump_file
, "LHS is not var\n");
412 print_generic_stmt (dump_file
, m_expr
, TDF_SLIM
);
421 /* Return true, iff STMT is if-convertable.
422 Statement is if-convertable if,
423 - It is if-convertable MODIFY_EXPR
424 - IT is LABEL_EXPR, GOTO_EXPR or COND_EXPR.
425 STMT is inside block BB, which is inside loop LOOP. */
428 if_convertable_stmt_p (struct loop
*loop
, basic_block bb
, tree stmt
)
430 switch (TREE_CODE (stmt
))
437 if (!if_convertable_modify_expr_p (loop
, bb
, stmt
))
446 /* Don't know what to do with 'em so don't do anything. */
447 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
449 fprintf (dump_file
, "don't know what to do\n");
450 print_generic_stmt (dump_file
, stmt
, TDF_SLIM
);
459 /* Return true, iff BB is if-convertable.
460 Note: This routine does _not_ check basic block statements and phis.
461 Basic block is not if-convertable if,
462 - Basic block is non-empty and it is after exit block (in BFS order).
463 - Basic block is after exit block but before latch.
464 - Basic block edge(s) is not normal.
465 EXIT_BB_SEEN is true if basic block with exit edge is already seen.
466 BB is inside loop LOOP. */
469 if_convertable_bb_p (struct loop
*loop
, basic_block bb
, bool exit_bb_seen
)
473 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
474 fprintf (dump_file
, "----------[%d]-------------\n", bb
->index
);
478 if (bb
!= loop
->latch
)
480 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
481 fprintf (dump_file
, "basic block after exit bb but before latch\n");
484 else if (!empty_block_p (bb
))
486 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
487 fprintf (dump_file
, "non empty basic block after exit bb\n");
492 /* Be less adventurous and handle only normal edges. */
493 for (e
= bb
->succ
; e
; e
= e
->succ_next
)
495 (EDGE_ABNORMAL_CALL
| EDGE_EH
| EDGE_ABNORMAL
| EDGE_IRREDUCIBLE_LOOP
))
497 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
498 fprintf (dump_file
,"Difficult to handle edges\n");
505 /* Return true, iff LOOP is if-convertable.
506 LOOP is if-convertable if,
508 - It has two or more basic blocks.
509 - It has only one exit.
510 - Loop header is not the exit edge.
511 - If its basic blocks and phi nodes are if convertable. See above for
513 FOR_VECTORIZER enables vectorizer specific checks. For example, support
514 for vector conditions, data dependency checks etc.. (Not implemented yet). */
517 if_convertable_loop_p (struct loop
*loop
, bool for_vectorizer ATTRIBUTE_UNUSED
)
521 block_stmt_iterator itr
;
524 bool exit_bb_seen
= false;
526 /* Handle only inner most loop. */
527 if (!loop
|| loop
->inner
)
529 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
530 fprintf (dump_file
, "not inner most loop\n");
534 flow_loop_scan (loop
, LOOP_ALL
);
536 /* If only one block, no need for if-conversion. */
537 if (loop
->num_nodes
<= 2)
539 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
540 fprintf (dump_file
, "less than 2 basic blocks\n");
544 /* More than one loop exit is too much to handle. */
545 if (loop
->num_exits
> 1)
547 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
548 fprintf (dump_file
, "multiple exits\n");
552 /* ??? Check target's vector conditional operation support for vectorizer. */
554 /* If one of the loop header's edge is exit edge then do not apply
556 for (e
= loop
->header
->succ
; e
; e
= e
->succ_next
)
557 if ( e
->flags
& EDGE_LOOP_EXIT
)
560 compute_immediate_uses (TDFA_USE_OPS
|TDFA_USE_VOPS
, NULL
);
562 calculate_dominance_info (CDI_DOMINATORS
);
563 calculate_dominance_info (CDI_POST_DOMINATORS
);
565 /* Allow statements that can be handled during if-conversion. */
566 ifc_bbs
= get_loop_body_in_if_conv_order (loop
);
569 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
570 fprintf (dump_file
,"Irreducible loop\n");
571 free_dominance_info (CDI_POST_DOMINATORS
);
575 for (i
= 0; i
< loop
->num_nodes
; i
++)
579 if (!if_convertable_bb_p (loop
, bb
, exit_bb_seen
))
582 /* Check statements. */
583 for (itr
= bsi_start (bb
); !bsi_end_p (itr
); bsi_next (&itr
))
584 if (!if_convertable_stmt_p (loop
, bb
, bsi_stmt (itr
)))
586 /* ??? Check data dependency for vectorizer. */
588 /* What about phi nodes ? */
589 for (phi
= phi_nodes (bb
); phi
; phi
= TREE_CHAIN (phi
))
590 if (!if_convertable_phi_p (loop
, bb
, phi
))
593 if (bb_with_exit_edge_p (bb
))
597 /* OK. Did not find any potential issues so go ahead in if-convert
598 this loop. Now there is no looking back. */
600 fprintf (dump_file
,"Applying if-conversion\n");
602 free_dominance_info (CDI_POST_DOMINATORS
);
606 /* Add condition COND into predicate list of basic block BB. */
609 add_to_predicate_list (basic_block bb
, tree new_cond
)
614 cond
= fold (build (TRUTH_OR_EXPR
, boolean_type_node
,
615 unshare_expr (cond
), new_cond
));
622 /* Add condition COND into DST's predicate list. PREV_COND is
623 existing condition. */
626 add_to_dst_predicate_list (struct loop
* loop
, tree dst
,
627 tree prev_cond
, tree cond
,
628 block_stmt_iterator
*bsi
)
631 tree new_cond
= NULL_TREE
;
633 gcc_assert (TREE_CODE (dst
) == GOTO_EXPR
);
634 bb
= label_to_block (TREE_OPERAND (dst
, 0));
635 if (!flow_bb_inside_loop_p (loop
, bb
))
638 if (prev_cond
== boolean_true_node
|| !prev_cond
)
639 new_cond
= unshare_expr (cond
);
643 /* new_cond == prev_cond AND cond */
644 tree tmp
= build (TRUTH_AND_EXPR
, boolean_type_node
,
645 unshare_expr (prev_cond
), cond
);
646 tmp_stmt
= ifc_temp_var (boolean_type_node
, tmp
);
647 bsi_insert_before (bsi
, tmp_stmt
, BSI_SAME_STMT
);
648 new_cond
= TREE_OPERAND (tmp_stmt
, 0);
650 add_to_predicate_list (bb
, new_cond
);
654 /* During if-conversion aux field from basic block is used to hold predicate
655 list. Clean each basic block's predicate list for the given LOOP. */
658 clean_predicate_lists (struct loop
*loop
)
662 for (i
= 0; i
< loop
->num_nodes
; i
++)
663 ifc_bbs
[i
]->aux
= NULL
;
666 /* Basic block BB has two predecessors. Using predecessor's aux field, set
667 appropriate condition COND for the PHI node replacement. Return true block
668 whose phi arguments are selected when cond is true. */
671 find_phi_replacement_condition (basic_block bb
, tree
*cond
,
672 block_stmt_iterator
*bsi
)
675 basic_block p1
= NULL
;
676 basic_block p2
= NULL
;
677 basic_block true_bb
= NULL
;
680 for (e
= bb
->pred
; e
; e
= e
->pred_next
)
691 /* Use condition that is not TRUTH_NOT_EXPR in conditional modify expr. */
693 if (TREE_CODE (tmp_cond
) == TRUTH_NOT_EXPR
)
704 /* Create temp. for the condition. Vectorizer prefers to have gimple
705 value as condition. Various targets use different means to communicate
706 condition in vector compare operation. Using gimple value allows compiler
707 to emit vector compare and select RTL without exposing compare's result. */
708 if (!is_gimple_reg (*cond
) && !is_gimple_condexpr (*cond
))
712 new_stmt
= ifc_temp_var (TREE_TYPE (*cond
), unshare_expr (*cond
));
713 bsi_insert_after (bsi
, new_stmt
, BSI_SAME_STMT
);
715 *cond
= TREE_OPERAND (new_stmt
, 0);
724 /* Replace PHI node with conditional modify expr using COND.
725 This routine does not handle PHI nodes with more than two arguments.
727 S1: A = PHI <x1(1), x2(5)
729 S2: A = cond ? x1 : x2;
730 S2 is inserted at the top of basic block's statement list.
731 When COND is true, phi arg from TRUE_BB is selected.
735 replace_phi_with_cond_modify_expr (tree phi
, tree cond
, basic_block true_bb
,
736 block_stmt_iterator
*bsi
)
743 gcc_assert (TREE_CODE (phi
) == PHI_NODE
);
745 /* If this is not filtered earlier, then now it is too late. */
746 gcc_assert (PHI_NUM_ARGS (phi
) == 2);
748 /* Find basic block and initialize iterator. */
749 bb
= bb_for_stmt (phi
);
751 new_stmt
= NULL_TREE
;
755 /* Use condition that is not TRUTH_NOT_EXPR in conditional modify expr. */
756 if (PHI_ARG_EDGE(phi
, 1)->src
== true_bb
)
758 arg_0
= PHI_ARG_DEF (phi
, 1);
759 arg_1
= PHI_ARG_DEF (phi
, 0);
763 arg_0
= PHI_ARG_DEF (phi
, 0);
764 arg_1
= PHI_ARG_DEF (phi
, 1);
767 /* Build new RHS using selected condition and arguments. */
768 rhs
= build (COND_EXPR
, TREE_TYPE (PHI_RESULT (phi
)),
769 unshare_expr (cond
), unshare_expr (arg_0
),
770 unshare_expr (arg_1
));
772 /* Create new MODIFY expression using RHS. */
773 new_stmt
= build (MODIFY_EXPR
, TREE_TYPE (PHI_RESULT (phi
)),
774 unshare_expr (PHI_RESULT (phi
)), rhs
);
776 /* Make new statement definition of the original phi result. */
777 SSA_NAME_DEF_STMT (PHI_RESULT (phi
)) = new_stmt
;
779 /* Set basic block and insert using iterator. */
780 set_bb_for_stmt (new_stmt
, bb
);
782 bsi_insert_after (bsi
, new_stmt
, BSI_SAME_STMT
);
785 modify_stmt (new_stmt
);
787 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
789 fprintf (dump_file
, "new phi replacement stmt\n");
790 print_generic_stmt (dump_file
, new_stmt
, TDF_SLIM
);
794 /* Process phi nodes for the given LOOP. Replace phi nodes with cond
798 process_phi_nodes (struct loop
*loop
)
801 unsigned int orig_loop_num_nodes
= loop
->num_nodes
;
804 /* Replace phi nodes with cond. modify expr. */
805 for (i
= 1; i
< orig_loop_num_nodes
; i
++)
808 block_stmt_iterator bsi
;
809 basic_block true_bb
= NULL
;
812 if (bb
== loop
->header
|| bb
== loop
->latch
)
815 phi
= phi_nodes (bb
);
816 bsi
= bsi_start (bb
);
818 /* BB has two predecessors. Using predecessor's aux field, set
819 appropriate condition for the PHI node replacement. */
821 true_bb
= find_phi_replacement_condition (bb
, &cond
, &bsi
);
825 tree next
= TREE_CHAIN (phi
);
826 replace_phi_with_cond_modify_expr (phi
, cond
, true_bb
, &bsi
);
827 release_phi_node (phi
);
830 bb_ann (bb
)->phi_nodes
= NULL
;
835 /* Combine all basic block from the given LOOP into one or two super
836 basic block. Replace PHI nodes with conditional modify expression. */
839 combine_blocks (struct loop
*loop
)
841 basic_block bb
, exit_bb
, merge_target_bb
;
842 unsigned int orig_loop_num_nodes
= loop
->num_nodes
;
845 /* Process phi nodes to prepare blocks for merge. */
846 process_phi_nodes (loop
);
850 /* Merge basic blocks */
851 merge_target_bb
= loop
->header
;
852 for (i
= 1; i
< orig_loop_num_nodes
; i
++)
855 block_stmt_iterator bsi
;
856 tree_stmt_iterator last
;
860 if (bb
== loop
->latch
)
863 if (!exit_bb
&& bb_with_exit_edge_p (bb
))
870 /* Connect this node with loop header. */
871 new_e
= make_edge (ifc_bbs
[0], bb
, EDGE_FALLTHRU
);
872 set_immediate_dominator (CDI_DOMINATORS
, bb
, ifc_bbs
[0]);
874 if (exit_bb
!= loop
->latch
)
876 /* Redirect non-exit edge to loop->latch. */
877 for (e
= bb
->succ
; e
; e
= e
->succ_next
)
878 if (!(e
->flags
& EDGE_LOOP_EXIT
))
880 redirect_edge_and_branch (e
, loop
->latch
);
881 set_immediate_dominator (CDI_DOMINATORS
, loop
->latch
, bb
);
887 /* It is time to remove this basic block. First remove edges. */
888 while (bb
->succ
!= NULL
)
889 ssa_remove_edge (bb
->succ
);
890 while (bb
->pred
!= NULL
)
891 ssa_remove_edge (bb
->pred
);
893 /* Remove labels and make stmts member of loop->header. */
894 for (bsi
= bsi_start (bb
); !bsi_end_p (bsi
); )
896 if (TREE_CODE (bsi_stmt (bsi
)) == LABEL_EXPR
)
900 set_bb_for_stmt (bsi_stmt (bsi
), merge_target_bb
);
905 /* Update stmt list. */
906 last
= tsi_last (merge_target_bb
->stmt_list
);
907 tsi_link_after (&last
, bb
->stmt_list
, TSI_NEW_STMT
);
908 bb
->stmt_list
= NULL
;
910 /* Update dominator info. */
911 if (dom_computed
[CDI_DOMINATORS
])
912 delete_from_dominance_info (CDI_DOMINATORS
, bb
);
913 if (dom_computed
[CDI_POST_DOMINATORS
])
914 delete_from_dominance_info (CDI_POST_DOMINATORS
, bb
);
916 /* Remove basic block. */
917 remove_bb_from_loops (bb
);
922 /* Make new temp variable of type TYPE. Add MODIFY_EXPR to assign EXP
923 to the new variable. */
926 ifc_temp_var (tree type
, tree exp
)
928 const char *name
= "_ifc_";
929 tree var
, stmt
, new_name
;
931 if (is_gimple_reg (exp
))
934 /* Create new temporary variable. */
935 var
= create_tmp_var (type
, name
);
936 add_referenced_tmp_var (var
);
938 /* Build new statement to assign EXP to new variable. */
939 stmt
= build (MODIFY_EXPR
, type
, var
, exp
);
941 /* Get SSA name for the new variable and set make new statement
942 its definition statment. */
943 new_name
= make_ssa_name (var
, stmt
);
944 TREE_OPERAND (stmt
, 0) = new_name
;
945 SSA_NAME_DEF_STMT (new_name
) = stmt
;
951 /* Return TRUE iff, all pred blocks of BB are visited.
952 Bitmap VISITED keeps history of visited blocks. */
955 pred_blocks_visited_p (basic_block bb
, bitmap
*visited
)
958 for (e
= bb
->pred
; e
; e
= e
->pred_next
)
959 if (!bitmap_bit_p (*visited
, e
->src
->index
))
965 /* Get body of a LOOP in suitable order for if-conversion.
966 It is caller's responsibility to deallocate basic block
967 list. If-conversion suitable order is, BFS order with one
968 additional constraint. Select block in BFS block, if all
969 pred are already selected. */
972 get_loop_body_in_if_conv_order (const struct loop
*loop
)
974 basic_block
*blocks
, *blocks_in_bfs_order
;
977 unsigned int index
= 0;
978 unsigned int visited_count
= 0;
980 gcc_assert (loop
->num_nodes
);
981 gcc_assert (loop
->latch
!= EXIT_BLOCK_PTR
);
983 blocks
= xcalloc (loop
->num_nodes
, sizeof (basic_block
));
984 visited
= BITMAP_XMALLOC ();
986 blocks_in_bfs_order
= get_loop_body_in_bfs_order (loop
);
989 while (index
< loop
->num_nodes
)
991 bb
= blocks_in_bfs_order
[index
];
993 if (bb
->flags
& BB_IRREDUCIBLE_LOOP
)
995 free (blocks_in_bfs_order
);
996 BITMAP_FREE (visited
);
1000 if (!bitmap_bit_p (visited
, bb
->index
))
1002 if (pred_blocks_visited_p (bb
, &visited
)
1003 || bb
== loop
->header
)
1005 /* This block is now visited. */
1006 bitmap_set_bit (visited
, bb
->index
);
1007 blocks
[visited_count
++] = bb
;
1011 if (index
== loop
->num_nodes
1012 && visited_count
!= loop
->num_nodes
)
1018 free (blocks_in_bfs_order
);
1019 BITMAP_XFREE (visited
);
1023 /* Return true if one of the basic block BB edge is loop exit. */
1026 bb_with_exit_edge_p (basic_block bb
)
1029 bool exit_edge_found
= false;
1031 for (e
= bb
->succ
; e
&& !exit_edge_found
; e
= e
->succ_next
)
1032 if (e
->flags
& EDGE_LOOP_EXIT
)
1033 exit_edge_found
= true;
1035 return exit_edge_found
;
1038 /* Tree if-conversion pass management. */
1041 main_tree_if_conversion (void)
1043 unsigned i
, loop_num
;
1049 loop_num
= current_loops
->num
;
1050 for (i
= 0; i
< loop_num
; i
++)
1052 loop
= current_loops
->parray
[i
];
1056 tree_if_conversion (loop
, true);
1062 gate_tree_if_conversion (void)
1064 return flag_tree_vectorize
!= 0;
1067 struct tree_opt_pass pass_if_conversion
=
1070 gate_tree_if_conversion
, /* gate */
1071 main_tree_if_conversion
, /* execute */
1074 0, /* static_pass_number */
1076 PROP_cfg
| PROP_ssa
| PROP_alias
, /* properties_required */
1077 0, /* properties_provided */
1078 0, /* properties_destroyed */
1079 TODO_dump_func
, /* todo_flags_start */
1083 | TODO_verify_flow
, /* todo_flags_finish */