real.h (struct real_format): Split the signbit field into two two fields, signbit_ro...
[gcc.git] / gcc / tree-tailcall.c
1 /* Tail call optimization on trees.
2 Copyright (C) 2003, 2004, 2005 Free Software Foundation, Inc.
3
4 This file is part of GCC.
5
6 GCC is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 2, or (at your option)
9 any later version.
10
11 GCC is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with GCC; see the file COPYING. If not, write to
18 the Free Software Foundation, 59 Temple Place - Suite 330,
19 Boston, MA 02111-1307, USA. */
20
21 #include "config.h"
22 #include "system.h"
23 #include "coretypes.h"
24 #include "tm.h"
25 #include "tree.h"
26 #include "rtl.h"
27 #include "tm_p.h"
28 #include "hard-reg-set.h"
29 #include "basic-block.h"
30 #include "function.h"
31 #include "tree-flow.h"
32 #include "tree-dump.h"
33 #include "diagnostic.h"
34 #include "except.h"
35 #include "tree-pass.h"
36 #include "flags.h"
37 #include "langhooks.h"
38
39 /* The file implements the tail recursion elimination. It is also used to
40 analyze the tail calls in general, passing the results to the rtl level
41 where they are used for sibcall optimization.
42
43 In addition to the standard tail recursion elimination, we handle the most
44 trivial cases of making the call tail recursive by creating accumulators.
45 For example the following function
46
47 int sum (int n)
48 {
49 if (n > 0)
50 return n + sum (n - 1);
51 else
52 return 0;
53 }
54
55 is transformed into
56
57 int sum (int n)
58 {
59 int acc = 0;
60
61 while (n > 0)
62 acc += n--;
63
64 return acc;
65 }
66
67 To do this, we maintain two accumulators (a_acc and m_acc) that indicate
68 when we reach the return x statement, we should return a_acc + x * m_acc
69 instead. They are initially initialized to 0 and 1, respectively,
70 so the semantics of the function is obviously preserved. If we are
71 guaranteed that the value of the accumulator never change, we
72 omit the accumulator.
73
74 There are three cases how the function may exit. The first one is
75 handled in adjust_return_value, the other two in adjust_accumulator_values
76 (the second case is actually a special case of the third one and we
77 present it separately just for clarity):
78
79 1) Just return x, where x is not in any of the remaining special shapes.
80 We rewrite this to a gimple equivalent of return m_acc * x + a_acc.
81
82 2) return f (...), where f is the current function, is rewritten in a
83 classical tail-recursion elimination way, into assignment of arguments
84 and jump to the start of the function. Values of the accumulators
85 are unchanged.
86
87 3) return a + m * f(...), where a and m do not depend on call to f.
88 To preserve the semantics described before we want this to be rewritten
89 in such a way that we finally return
90
91 a_acc + (a + m * f(...)) * m_acc = (a_acc + a * m_acc) + (m * m_acc) * f(...).
92
93 I.e. we increase a_acc by a * m_acc, multiply m_acc by m and
94 eliminate the tail call to f. Special cases when the value is just
95 added or just multiplied are obtained by setting a = 0 or m = 1.
96
97 TODO -- it is possible to do similar tricks for other operations. */
98
99 /* A structure that describes the tailcall. */
100
101 struct tailcall
102 {
103 /* The block in that the call occur. */
104 basic_block call_block;
105
106 /* The iterator pointing to the call statement. */
107 block_stmt_iterator call_bsi;
108
109 /* True if it is a call to the current function. */
110 bool tail_recursion;
111
112 /* The return value of the caller is mult * f + add, where f is the return
113 value of the call. */
114 tree mult, add;
115
116 /* Next tailcall in the chain. */
117 struct tailcall *next;
118 };
119
120 /* The variables holding the value of multiplicative and additive
121 accumulator. */
122 static tree m_acc, a_acc;
123
124 static bool suitable_for_tail_opt_p (void);
125 static bool optimize_tail_call (struct tailcall *, bool);
126 static void eliminate_tail_call (struct tailcall *);
127 static void find_tail_calls (basic_block, struct tailcall **);
128
129 /* Returns false when the function is not suitable for tail call optimization
130 from some reason (e.g. if it takes variable number of arguments). */
131
132 static bool
133 suitable_for_tail_opt_p (void)
134 {
135 int i;
136
137 if (current_function_stdarg)
138 return false;
139
140 /* No local variable nor structure field should be call-clobbered. We
141 ignore any kind of memory tag, as these are not real variables. */
142 for (i = 0; i < (int) VARRAY_ACTIVE_SIZE (referenced_vars); i++)
143 {
144 tree var = VARRAY_TREE (referenced_vars, i);
145
146 if (!(TREE_STATIC (var) || DECL_EXTERNAL (var))
147 && (var_ann (var)->mem_tag_kind == NOT_A_TAG
148 || var_ann (var)->mem_tag_kind == STRUCT_FIELD)
149 && is_call_clobbered (var))
150 return false;
151 }
152
153 return true;
154 }
155 /* Returns false when the function is not suitable for tail call optimization
156 from some reason (e.g. if it takes variable number of arguments).
157 This test must pass in addition to suitable_for_tail_opt_p in order to make
158 tail call discovery happen. */
159
160 static bool
161 suitable_for_tail_call_opt_p (void)
162 {
163 tree param;
164
165 /* alloca (until we have stack slot life analysis) inhibits
166 sibling call optimizations, but not tail recursion. */
167 if (current_function_calls_alloca)
168 return false;
169
170 /* If we are using sjlj exceptions, we may need to add a call to
171 _Unwind_SjLj_Unregister at exit of the function. Which means
172 that we cannot do any sibcall transformations. */
173 if (USING_SJLJ_EXCEPTIONS && current_function_has_exception_handlers ())
174 return false;
175
176 /* Any function that calls setjmp might have longjmp called from
177 any called function. ??? We really should represent this
178 properly in the CFG so that this needn't be special cased. */
179 if (current_function_calls_setjmp)
180 return false;
181
182 /* ??? It is OK if the argument of a function is taken in some cases,
183 but not in all cases. See PR15387 and PR19616. Revisit for 4.1. */
184 for (param = DECL_ARGUMENTS (current_function_decl);
185 param;
186 param = TREE_CHAIN (param))
187 if (TREE_ADDRESSABLE (param))
188 return false;
189
190 return true;
191 }
192
193 /* Checks whether the expression EXPR in stmt AT is independent of the
194 statement pointed by BSI (in a sense that we already know EXPR's value
195 at BSI). We use the fact that we are only called from the chain of
196 basic blocks that have only single successor. Returns the expression
197 containing the value of EXPR at BSI. */
198
199 static tree
200 independent_of_stmt_p (tree expr, tree at, block_stmt_iterator bsi)
201 {
202 basic_block bb, call_bb, at_bb;
203 edge e;
204 edge_iterator ei;
205
206 if (is_gimple_min_invariant (expr))
207 return expr;
208
209 if (TREE_CODE (expr) != SSA_NAME)
210 return NULL_TREE;
211
212 /* Mark the blocks in the chain leading to the end. */
213 at_bb = bb_for_stmt (at);
214 call_bb = bb_for_stmt (bsi_stmt (bsi));
215 for (bb = call_bb; bb != at_bb; bb = single_succ (bb))
216 bb->aux = &bb->aux;
217 bb->aux = &bb->aux;
218
219 while (1)
220 {
221 at = SSA_NAME_DEF_STMT (expr);
222 bb = bb_for_stmt (at);
223
224 /* The default definition or defined before the chain. */
225 if (!bb || !bb->aux)
226 break;
227
228 if (bb == call_bb)
229 {
230 for (; !bsi_end_p (bsi); bsi_next (&bsi))
231 if (bsi_stmt (bsi) == at)
232 break;
233
234 if (!bsi_end_p (bsi))
235 expr = NULL_TREE;
236 break;
237 }
238
239 if (TREE_CODE (at) != PHI_NODE)
240 {
241 expr = NULL_TREE;
242 break;
243 }
244
245 FOR_EACH_EDGE (e, ei, bb->preds)
246 if (e->src->aux)
247 break;
248 gcc_assert (e);
249
250 expr = PHI_ARG_DEF_FROM_EDGE (at, e);
251 if (TREE_CODE (expr) != SSA_NAME)
252 {
253 /* The value is a constant. */
254 break;
255 }
256 }
257
258 /* Unmark the blocks. */
259 for (bb = call_bb; bb != at_bb; bb = single_succ (bb))
260 bb->aux = NULL;
261 bb->aux = NULL;
262
263 return expr;
264 }
265
266 /* Simulates the effect of an assignment of ASS in STMT on the return value
267 of the tail recursive CALL passed in ASS_VAR. M and A are the
268 multiplicative and the additive factor for the real return value. */
269
270 static bool
271 process_assignment (tree ass, tree stmt, block_stmt_iterator call, tree *m,
272 tree *a, tree *ass_var)
273 {
274 tree op0, op1, non_ass_var;
275 tree dest = TREE_OPERAND (ass, 0);
276 tree src = TREE_OPERAND (ass, 1);
277 enum tree_code code = TREE_CODE (src);
278 tree src_var = src;
279
280 /* See if this is a simple copy operation of an SSA name to the function
281 result. In that case we may have a simple tail call. Ignore type
282 conversions that can never produce extra code between the function
283 call and the function return. */
284 STRIP_NOPS (src_var);
285 if (TREE_CODE (src_var) == SSA_NAME)
286 {
287 if (src_var != *ass_var)
288 return false;
289
290 *ass_var = dest;
291 return true;
292 }
293
294 if (TREE_CODE_CLASS (code) != tcc_binary)
295 return false;
296
297 /* Accumulator optimizations will reverse the order of operations.
298 We can only do that for floating-point types if we're assuming
299 that addition and multiplication are associative. */
300 if (!flag_unsafe_math_optimizations)
301 if (FLOAT_TYPE_P (TREE_TYPE (DECL_RESULT (current_function_decl))))
302 return false;
303
304 /* We only handle the code like
305
306 x = call ();
307 y = m * x;
308 z = y + a;
309 return z;
310
311 TODO -- Extend it for cases where the linear transformation of the output
312 is expressed in a more complicated way. */
313
314 op0 = TREE_OPERAND (src, 0);
315 op1 = TREE_OPERAND (src, 1);
316
317 if (op0 == *ass_var
318 && (non_ass_var = independent_of_stmt_p (op1, stmt, call)))
319 ;
320 else if (op1 == *ass_var
321 && (non_ass_var = independent_of_stmt_p (op0, stmt, call)))
322 ;
323 else
324 return false;
325
326 switch (code)
327 {
328 case PLUS_EXPR:
329 /* There should be no previous addition. TODO -- it should be fairly
330 straightforward to lift this restriction -- just allow storing
331 more complicated expressions in *A, and gimplify it in
332 adjust_accumulator_values. */
333 if (*a)
334 return false;
335 *a = non_ass_var;
336 *ass_var = dest;
337 return true;
338
339 case MULT_EXPR:
340 /* Similar remark applies here. Handling multiplication after addition
341 is just slightly more complicated -- we need to multiply both *A and
342 *M. */
343 if (*a || *m)
344 return false;
345 *m = non_ass_var;
346 *ass_var = dest;
347 return true;
348
349 /* TODO -- Handle other codes (NEGATE_EXPR, MINUS_EXPR). */
350
351 default:
352 return false;
353 }
354 }
355
356 /* Propagate VAR through phis on edge E. */
357
358 static tree
359 propagate_through_phis (tree var, edge e)
360 {
361 basic_block dest = e->dest;
362 tree phi;
363
364 for (phi = phi_nodes (dest); phi; phi = PHI_CHAIN (phi))
365 if (PHI_ARG_DEF_FROM_EDGE (phi, e) == var)
366 return PHI_RESULT (phi);
367
368 return var;
369 }
370
371 /* Finds tailcalls falling into basic block BB. The list of found tailcalls is
372 added to the start of RET. */
373
374 static void
375 find_tail_calls (basic_block bb, struct tailcall **ret)
376 {
377 tree ass_var, ret_var, stmt, func, param, args, call = NULL_TREE;
378 block_stmt_iterator bsi, absi;
379 bool tail_recursion;
380 struct tailcall *nw;
381 edge e;
382 tree m, a;
383 basic_block abb;
384 stmt_ann_t ann;
385
386 if (!single_succ_p (bb))
387 return;
388
389 for (bsi = bsi_last (bb); !bsi_end_p (bsi); bsi_prev (&bsi))
390 {
391 stmt = bsi_stmt (bsi);
392
393 /* Ignore labels. */
394 if (TREE_CODE (stmt) == LABEL_EXPR)
395 continue;
396
397 get_stmt_operands (stmt);
398
399 /* Check for a call. */
400 if (TREE_CODE (stmt) == MODIFY_EXPR)
401 {
402 ass_var = TREE_OPERAND (stmt, 0);
403 call = TREE_OPERAND (stmt, 1);
404 if (TREE_CODE (call) == WITH_SIZE_EXPR)
405 call = TREE_OPERAND (call, 0);
406 }
407 else
408 {
409 ass_var = NULL_TREE;
410 call = stmt;
411 }
412
413 if (TREE_CODE (call) == CALL_EXPR)
414 break;
415
416 /* If the statement has virtual or volatile operands, fail. */
417 ann = stmt_ann (stmt);
418 if (NUM_V_MAY_DEFS (V_MAY_DEF_OPS (ann))
419 || NUM_V_MUST_DEFS (V_MUST_DEF_OPS (ann))
420 || NUM_VUSES (VUSE_OPS (ann))
421 || ann->has_volatile_ops)
422 return;
423 }
424
425 if (bsi_end_p (bsi))
426 {
427 edge_iterator ei;
428 /* Recurse to the predecessors. */
429 FOR_EACH_EDGE (e, ei, bb->preds)
430 find_tail_calls (e->src, ret);
431
432 return;
433 }
434
435 /* We found the call, check whether it is suitable. */
436 tail_recursion = false;
437 func = get_callee_fndecl (call);
438 if (func == current_function_decl)
439 {
440 for (param = DECL_ARGUMENTS (func), args = TREE_OPERAND (call, 1);
441 param && args;
442 param = TREE_CHAIN (param), args = TREE_CHAIN (args))
443 {
444 tree arg = TREE_VALUE (args);
445 if (param != arg)
446 {
447 /* Make sure there are no problems with copying. The parameter
448 have a copyable type and the two arguments must have reasonably
449 equivalent types. The latter requirement could be relaxed if
450 we emitted a suitable type conversion statement. */
451 if (!is_gimple_reg_type (TREE_TYPE (param))
452 || !lang_hooks.types_compatible_p (TREE_TYPE (param),
453 TREE_TYPE (arg)))
454 break;
455
456 /* The parameter should be a real operand, so that phi node
457 created for it at the start of the function has the meaning
458 of copying the value. This test implies is_gimple_reg_type
459 from the previous condition, however this one could be
460 relaxed by being more careful with copying the new value
461 of the parameter (emitting appropriate MODIFY_EXPR and
462 updating the virtual operands). */
463 if (!is_gimple_reg (param))
464 break;
465 }
466 }
467 if (!args && !param)
468 tail_recursion = true;
469 }
470
471 /* Now check the statements after the call. None of them has virtual
472 operands, so they may only depend on the call through its return
473 value. The return value should also be dependent on each of them,
474 since we are running after dce. */
475 m = NULL_TREE;
476 a = NULL_TREE;
477
478 abb = bb;
479 absi = bsi;
480 while (1)
481 {
482 bsi_next (&absi);
483
484 while (bsi_end_p (absi))
485 {
486 ass_var = propagate_through_phis (ass_var, single_succ_edge (abb));
487 abb = single_succ (abb);
488 absi = bsi_start (abb);
489 }
490
491 stmt = bsi_stmt (absi);
492
493 if (TREE_CODE (stmt) == LABEL_EXPR)
494 continue;
495
496 if (TREE_CODE (stmt) == RETURN_EXPR)
497 break;
498
499 if (TREE_CODE (stmt) != MODIFY_EXPR)
500 return;
501
502 if (!process_assignment (stmt, stmt, bsi, &m, &a, &ass_var))
503 return;
504 }
505
506 /* See if this is a tail call we can handle. */
507 ret_var = TREE_OPERAND (stmt, 0);
508 if (ret_var
509 && TREE_CODE (ret_var) == MODIFY_EXPR)
510 {
511 tree ret_op = TREE_OPERAND (ret_var, 1);
512 STRIP_NOPS (ret_op);
513 if (!tail_recursion
514 && TREE_CODE (ret_op) != SSA_NAME)
515 return;
516
517 if (!process_assignment (ret_var, stmt, bsi, &m, &a, &ass_var))
518 return;
519 ret_var = TREE_OPERAND (ret_var, 0);
520 }
521
522 /* We may proceed if there either is no return value, or the return value
523 is identical to the call's return. */
524 if (ret_var
525 && (ret_var != ass_var))
526 return;
527
528 /* If this is not a tail recursive call, we cannot handle addends or
529 multiplicands. */
530 if (!tail_recursion && (m || a))
531 return;
532
533 nw = xmalloc (sizeof (struct tailcall));
534
535 nw->call_block = bb;
536 nw->call_bsi = bsi;
537
538 nw->tail_recursion = tail_recursion;
539
540 nw->mult = m;
541 nw->add = a;
542
543 nw->next = *ret;
544 *ret = nw;
545 }
546
547 /* Adjust the accumulator values according to A and M after BSI, and update
548 the phi nodes on edge BACK. */
549
550 static void
551 adjust_accumulator_values (block_stmt_iterator bsi, tree m, tree a, edge back)
552 {
553 tree stmt, var, phi, tmp;
554 tree ret_type = TREE_TYPE (DECL_RESULT (current_function_decl));
555 tree a_acc_arg = a_acc, m_acc_arg = m_acc;
556
557 if (a)
558 {
559 if (m_acc)
560 {
561 if (integer_onep (a))
562 var = m_acc;
563 else
564 {
565 stmt = build (MODIFY_EXPR, ret_type, NULL_TREE,
566 build (MULT_EXPR, ret_type, m_acc, a));
567
568 tmp = create_tmp_var (ret_type, "acc_tmp");
569 add_referenced_tmp_var (tmp);
570
571 var = make_ssa_name (tmp, stmt);
572 TREE_OPERAND (stmt, 0) = var;
573 bsi_insert_after (&bsi, stmt, BSI_NEW_STMT);
574 }
575 }
576 else
577 var = a;
578
579 stmt = build (MODIFY_EXPR, ret_type, NULL_TREE,
580 build (PLUS_EXPR, ret_type, a_acc, var));
581 var = make_ssa_name (SSA_NAME_VAR (a_acc), stmt);
582 TREE_OPERAND (stmt, 0) = var;
583 bsi_insert_after (&bsi, stmt, BSI_NEW_STMT);
584 a_acc_arg = var;
585 }
586
587 if (m)
588 {
589 stmt = build (MODIFY_EXPR, ret_type, NULL_TREE,
590 build (MULT_EXPR, ret_type, m_acc, m));
591 var = make_ssa_name (SSA_NAME_VAR (m_acc), stmt);
592 TREE_OPERAND (stmt, 0) = var;
593 bsi_insert_after (&bsi, stmt, BSI_NEW_STMT);
594 m_acc_arg = var;
595 }
596
597 if (a_acc)
598 {
599 for (phi = phi_nodes (back->dest); phi; phi = PHI_CHAIN (phi))
600 if (PHI_RESULT (phi) == a_acc)
601 break;
602
603 add_phi_arg (phi, a_acc_arg, back);
604 }
605
606 if (m_acc)
607 {
608 for (phi = phi_nodes (back->dest); phi; phi = PHI_CHAIN (phi))
609 if (PHI_RESULT (phi) == m_acc)
610 break;
611
612 add_phi_arg (phi, m_acc_arg, back);
613 }
614 }
615
616 /* Adjust value of the return at the end of BB according to M and A
617 accumulators. */
618
619 static void
620 adjust_return_value (basic_block bb, tree m, tree a)
621 {
622 tree ret_stmt = last_stmt (bb), ret_var, var, stmt, tmp;
623 tree ret_type = TREE_TYPE (DECL_RESULT (current_function_decl));
624 block_stmt_iterator bsi = bsi_last (bb);
625
626 gcc_assert (TREE_CODE (ret_stmt) == RETURN_EXPR);
627
628 ret_var = TREE_OPERAND (ret_stmt, 0);
629 if (!ret_var)
630 return;
631
632 if (TREE_CODE (ret_var) == MODIFY_EXPR)
633 {
634 ret_var->common.ann = (tree_ann_t) stmt_ann (ret_stmt);
635 bsi_replace (&bsi, ret_var, true);
636 SSA_NAME_DEF_STMT (TREE_OPERAND (ret_var, 0)) = ret_var;
637 ret_var = TREE_OPERAND (ret_var, 0);
638 ret_stmt = build1 (RETURN_EXPR, TREE_TYPE (ret_stmt), ret_var);
639 bsi_insert_after (&bsi, ret_stmt, BSI_NEW_STMT);
640 }
641
642 if (m)
643 {
644 stmt = build (MODIFY_EXPR, ret_type, NULL_TREE,
645 build (MULT_EXPR, ret_type, m_acc, ret_var));
646
647 tmp = create_tmp_var (ret_type, "acc_tmp");
648 add_referenced_tmp_var (tmp);
649
650 var = make_ssa_name (tmp, stmt);
651 TREE_OPERAND (stmt, 0) = var;
652 bsi_insert_before (&bsi, stmt, BSI_SAME_STMT);
653 }
654 else
655 var = ret_var;
656
657 if (a)
658 {
659 stmt = build (MODIFY_EXPR, ret_type, NULL_TREE,
660 build (PLUS_EXPR, ret_type, a_acc, var));
661
662 tmp = create_tmp_var (ret_type, "acc_tmp");
663 add_referenced_tmp_var (tmp);
664
665 var = make_ssa_name (tmp, stmt);
666 TREE_OPERAND (stmt, 0) = var;
667 bsi_insert_before (&bsi, stmt, BSI_SAME_STMT);
668 }
669
670 TREE_OPERAND (ret_stmt, 0) = var;
671 modify_stmt (ret_stmt);
672 }
673
674 /* Eliminates tail call described by T. TMP_VARS is a list of
675 temporary variables used to copy the function arguments. */
676
677 static void
678 eliminate_tail_call (struct tailcall *t)
679 {
680 tree param, stmt, args, rslt, call;
681 basic_block bb, first;
682 edge e;
683 tree phi;
684 stmt_ann_t ann;
685 v_may_def_optype v_may_defs;
686 unsigned i;
687 block_stmt_iterator bsi;
688
689 stmt = bsi_stmt (t->call_bsi);
690 get_stmt_operands (stmt);
691 ann = stmt_ann (stmt);
692 bb = t->call_block;
693
694 if (dump_file && (dump_flags & TDF_DETAILS))
695 {
696 fprintf (dump_file, "Eliminated tail recursion in bb %d : ",
697 bb->index);
698 print_generic_stmt (dump_file, stmt, TDF_SLIM);
699 fprintf (dump_file, "\n");
700 }
701
702 if (TREE_CODE (stmt) == MODIFY_EXPR)
703 stmt = TREE_OPERAND (stmt, 1);
704
705 first = single_succ (ENTRY_BLOCK_PTR);
706
707 /* Remove the code after call_bsi that will become unreachable. The
708 possibly unreachable code in other blocks is removed later in
709 cfg cleanup. */
710 bsi = t->call_bsi;
711 bsi_next (&bsi);
712 while (!bsi_end_p (bsi))
713 {
714 tree t = bsi_stmt (bsi);
715 /* Do not remove the return statement, so that redirect_edge_and_branch
716 sees how the block ends. */
717 if (TREE_CODE (t) == RETURN_EXPR)
718 break;
719
720 bsi_remove (&bsi);
721 release_defs (t);
722 }
723
724 /* Replace the call by a jump to the start of function. */
725 e = redirect_edge_and_branch (single_succ_edge (t->call_block), first);
726 gcc_assert (e);
727 PENDING_STMT (e) = NULL_TREE;
728
729 /* Add phi node entries for arguments. Not every PHI node corresponds to
730 a function argument (there may be PHI nodes for virtual definitions of the
731 eliminated calls), so we search for a PHI corresponding to each argument
732 rather than searching for which argument a PHI node corresponds to. */
733
734 for (param = DECL_ARGUMENTS (current_function_decl),
735 args = TREE_OPERAND (stmt, 1);
736 param;
737 param = TREE_CHAIN (param),
738 args = TREE_CHAIN (args))
739 {
740
741 for (phi = phi_nodes (first); phi; phi = PHI_CHAIN (phi))
742 if (param == SSA_NAME_VAR (PHI_RESULT (phi)))
743 break;
744
745 /* The phi node indeed does not have to be there, in case the operand is
746 invariant in the function. */
747 if (!phi)
748 continue;
749
750 add_phi_arg (phi, TREE_VALUE (args), e);
751 }
752
753 /* Add phi nodes for the call clobbered variables. */
754 v_may_defs = V_MAY_DEF_OPS (ann);
755 for (i = 0; i < NUM_V_MAY_DEFS (v_may_defs); i++)
756 {
757 param = SSA_NAME_VAR (V_MAY_DEF_RESULT (v_may_defs, i));
758 for (phi = phi_nodes (first); phi; phi = PHI_CHAIN (phi))
759 if (param == SSA_NAME_VAR (PHI_RESULT (phi)))
760 break;
761
762 if (!phi)
763 {
764 tree name = var_ann (param)->default_def;
765 tree new_name;
766
767 if (!name)
768 {
769 /* It may happen that the tag does not have a default_def in case
770 when all uses of it are dominated by a MUST_DEF. This however
771 means that it is not necessary to add a phi node for this
772 tag. */
773 continue;
774 }
775 new_name = make_ssa_name (param, SSA_NAME_DEF_STMT (name));
776
777 var_ann (param)->default_def = new_name;
778 phi = create_phi_node (name, first);
779 SSA_NAME_DEF_STMT (name) = phi;
780 add_phi_arg (phi, new_name, single_succ_edge (ENTRY_BLOCK_PTR));
781
782 /* For all calls the same set of variables should be clobbered. This
783 means that there always should be the appropriate phi node except
784 for the first time we eliminate the call. */
785 gcc_assert (EDGE_COUNT (first->preds) <= 2);
786 }
787
788 add_phi_arg (phi, V_MAY_DEF_OP (v_may_defs, i), e);
789 }
790
791 /* Update the values of accumulators. */
792 adjust_accumulator_values (t->call_bsi, t->mult, t->add, e);
793
794 call = bsi_stmt (t->call_bsi);
795 if (TREE_CODE (call) == MODIFY_EXPR)
796 {
797 rslt = TREE_OPERAND (call, 0);
798
799 /* Result of the call will no longer be defined. So adjust the
800 SSA_NAME_DEF_STMT accordingly. */
801 SSA_NAME_DEF_STMT (rslt) = build_empty_stmt ();
802 }
803
804 bsi_remove (&t->call_bsi);
805 release_defs (call);
806 }
807
808 /* Optimizes the tailcall described by T. If OPT_TAILCALLS is true, also
809 mark the tailcalls for the sibcall optimization. */
810
811 static bool
812 optimize_tail_call (struct tailcall *t, bool opt_tailcalls)
813 {
814 if (t->tail_recursion)
815 {
816 eliminate_tail_call (t);
817 return true;
818 }
819
820 if (opt_tailcalls)
821 {
822 tree stmt = bsi_stmt (t->call_bsi);
823
824 stmt = get_call_expr_in (stmt);
825 CALL_EXPR_TAILCALL (stmt) = 1;
826 if (dump_file && (dump_flags & TDF_DETAILS))
827 {
828 fprintf (dump_file, "Found tail call ");
829 print_generic_expr (dump_file, stmt, dump_flags);
830 fprintf (dump_file, " in bb %i\n", t->call_block->index);
831 }
832 }
833
834 return false;
835 }
836
837 /* Optimizes tail calls in the function, turning the tail recursion
838 into iteration. */
839
840 static void
841 tree_optimize_tail_calls_1 (bool opt_tailcalls)
842 {
843 edge e;
844 bool phis_constructed = false;
845 struct tailcall *tailcalls = NULL, *act, *next;
846 bool changed = false;
847 basic_block first = single_succ (ENTRY_BLOCK_PTR);
848 tree stmt, param, ret_type, tmp, phi;
849 edge_iterator ei;
850
851 if (!suitable_for_tail_opt_p ())
852 return;
853 if (opt_tailcalls)
854 opt_tailcalls = suitable_for_tail_call_opt_p ();
855
856 FOR_EACH_EDGE (e, ei, EXIT_BLOCK_PTR->preds)
857 {
858 /* Only traverse the normal exits, i.e. those that end with return
859 statement. */
860 stmt = last_stmt (e->src);
861
862 if (stmt
863 && TREE_CODE (stmt) == RETURN_EXPR)
864 find_tail_calls (e->src, &tailcalls);
865 }
866
867 /* Construct the phi nodes and accumulators if necessary. */
868 a_acc = m_acc = NULL_TREE;
869 for (act = tailcalls; act; act = act->next)
870 {
871 if (!act->tail_recursion)
872 continue;
873
874 if (!phis_constructed)
875 {
876 /* Ensure that there is only one predecessor of the block. */
877 if (!single_pred_p (first))
878 first = split_edge (single_succ_edge (ENTRY_BLOCK_PTR));
879
880 /* Copy the args if needed. */
881 for (param = DECL_ARGUMENTS (current_function_decl);
882 param;
883 param = TREE_CHAIN (param))
884 if (is_gimple_reg (param)
885 && var_ann (param)
886 /* Also parameters that are only defined but never used need not
887 be copied. */
888 && (var_ann (param)->default_def
889 && TREE_CODE (var_ann (param)->default_def) == SSA_NAME))
890 {
891 tree name = var_ann (param)->default_def;
892 tree new_name = make_ssa_name (param, SSA_NAME_DEF_STMT (name));
893 tree phi;
894
895 var_ann (param)->default_def = new_name;
896 phi = create_phi_node (name, first);
897 SSA_NAME_DEF_STMT (name) = phi;
898 add_phi_arg (phi, new_name, single_pred_edge (first));
899 }
900 phis_constructed = true;
901 }
902
903 if (act->add && !a_acc)
904 {
905 ret_type = TREE_TYPE (DECL_RESULT (current_function_decl));
906
907 tmp = create_tmp_var (ret_type, "add_acc");
908 add_referenced_tmp_var (tmp);
909
910 phi = create_phi_node (tmp, first);
911 add_phi_arg (phi,
912 /* RET_TYPE can be a float when -ffast-maths is
913 enabled. */
914 fold_convert (ret_type, integer_zero_node),
915 single_pred_edge (first));
916 a_acc = PHI_RESULT (phi);
917 }
918
919 if (act->mult && !m_acc)
920 {
921 ret_type = TREE_TYPE (DECL_RESULT (current_function_decl));
922
923 tmp = create_tmp_var (ret_type, "mult_acc");
924 add_referenced_tmp_var (tmp);
925
926 phi = create_phi_node (tmp, first);
927 add_phi_arg (phi,
928 /* RET_TYPE can be a float when -ffast-maths is
929 enabled. */
930 fold_convert (ret_type, integer_one_node),
931 single_pred_edge (first));
932 m_acc = PHI_RESULT (phi);
933 }
934 }
935
936 for (; tailcalls; tailcalls = next)
937 {
938 next = tailcalls->next;
939 changed |= optimize_tail_call (tailcalls, opt_tailcalls);
940 free (tailcalls);
941 }
942
943 if (a_acc || m_acc)
944 {
945 /* Modify the remaining return statements. */
946 FOR_EACH_EDGE (e, ei, EXIT_BLOCK_PTR->preds)
947 {
948 stmt = last_stmt (e->src);
949
950 if (stmt
951 && TREE_CODE (stmt) == RETURN_EXPR)
952 adjust_return_value (e->src, m_acc, a_acc);
953 }
954 }
955
956 if (changed)
957 {
958 free_dominance_info (CDI_DOMINATORS);
959 cleanup_tree_cfg ();
960 }
961 }
962
963 static void
964 execute_tail_recursion (void)
965 {
966 tree_optimize_tail_calls_1 (false);
967 }
968
969 static bool
970 gate_tail_calls (void)
971 {
972 return flag_optimize_sibling_calls != 0;
973 }
974
975 static void
976 execute_tail_calls (void)
977 {
978 tree_optimize_tail_calls_1 (true);
979 }
980
981 struct tree_opt_pass pass_tail_recursion =
982 {
983 "tailr", /* name */
984 NULL, /* gate */
985 execute_tail_recursion, /* execute */
986 NULL, /* sub */
987 NULL, /* next */
988 0, /* static_pass_number */
989 0, /* tv_id */
990 PROP_cfg | PROP_ssa | PROP_alias, /* properties_required */
991 0, /* properties_provided */
992 0, /* properties_destroyed */
993 0, /* todo_flags_start */
994 TODO_dump_func | TODO_verify_ssa, /* todo_flags_finish */
995 0 /* letter */
996 };
997
998 struct tree_opt_pass pass_tail_calls =
999 {
1000 "tailc", /* name */
1001 gate_tail_calls, /* gate */
1002 execute_tail_calls, /* execute */
1003 NULL, /* sub */
1004 NULL, /* next */
1005 0, /* static_pass_number */
1006 0, /* tv_id */
1007 PROP_cfg | PROP_ssa | PROP_alias, /* properties_required */
1008 0, /* properties_provided */
1009 0, /* properties_destroyed */
1010 0, /* todo_flags_start */
1011 TODO_dump_func | TODO_verify_ssa, /* todo_flags_finish */
1012 0 /* letter */
1013 };