1 /* Tail call optimization on trees.
2 Copyright (C) 2003-2013 Free Software Foundation, Inc.
4 This file is part of GCC.
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 3, or (at your option)
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.
16 You should have received a copy of the GNU General Public License
17 along with GCC; see the file COPYING3. If not see
18 <http://www.gnu.org/licenses/>. */
22 #include "coretypes.h"
26 #include "basic-block.h"
29 #include "gimple-iterator.h"
30 #include "gimplify-me.h"
31 #include "gimple-ssa.h"
33 #include "tree-phinodes.h"
34 #include "tree-ssanames.h"
35 #include "tree-into-ssa.h"
37 #include "gimple-pretty-print.h"
39 #include "tree-pass.h"
41 #include "langhooks.h"
45 #include "common/common-target.h"
46 #include "ipa-utils.h"
48 /* The file implements the tail recursion elimination. It is also used to
49 analyze the tail calls in general, passing the results to the rtl level
50 where they are used for sibcall optimization.
52 In addition to the standard tail recursion elimination, we handle the most
53 trivial cases of making the call tail recursive by creating accumulators.
54 For example the following function
59 return n + sum (n - 1);
76 To do this, we maintain two accumulators (a_acc and m_acc) that indicate
77 when we reach the return x statement, we should return a_acc + x * m_acc
78 instead. They are initially initialized to 0 and 1, respectively,
79 so the semantics of the function is obviously preserved. If we are
80 guaranteed that the value of the accumulator never change, we
83 There are three cases how the function may exit. The first one is
84 handled in adjust_return_value, the other two in adjust_accumulator_values
85 (the second case is actually a special case of the third one and we
86 present it separately just for clarity):
88 1) Just return x, where x is not in any of the remaining special shapes.
89 We rewrite this to a gimple equivalent of return m_acc * x + a_acc.
91 2) return f (...), where f is the current function, is rewritten in a
92 classical tail-recursion elimination way, into assignment of arguments
93 and jump to the start of the function. Values of the accumulators
96 3) return a + m * f(...), where a and m do not depend on call to f.
97 To preserve the semantics described before we want this to be rewritten
98 in such a way that we finally return
100 a_acc + (a + m * f(...)) * m_acc = (a_acc + a * m_acc) + (m * m_acc) * f(...).
102 I.e. we increase a_acc by a * m_acc, multiply m_acc by m and
103 eliminate the tail call to f. Special cases when the value is just
104 added or just multiplied are obtained by setting a = 0 or m = 1.
106 TODO -- it is possible to do similar tricks for other operations. */
108 /* A structure that describes the tailcall. */
112 /* The iterator pointing to the call statement. */
113 gimple_stmt_iterator call_gsi
;
115 /* True if it is a call to the current function. */
118 /* The return value of the caller is mult * f + add, where f is the return
119 value of the call. */
122 /* Next tailcall in the chain. */
123 struct tailcall
*next
;
126 /* The variables holding the value of multiplicative and additive
128 static tree m_acc
, a_acc
;
130 static bool suitable_for_tail_opt_p (void);
131 static bool optimize_tail_call (struct tailcall
*, bool);
132 static void eliminate_tail_call (struct tailcall
*);
133 static void find_tail_calls (basic_block
, struct tailcall
**);
135 /* Returns false when the function is not suitable for tail call optimization
136 from some reason (e.g. if it takes variable number of arguments). */
139 suitable_for_tail_opt_p (void)
146 /* Returns false when the function is not suitable for tail call optimization
147 from some reason (e.g. if it takes variable number of arguments).
148 This test must pass in addition to suitable_for_tail_opt_p in order to make
149 tail call discovery happen. */
152 suitable_for_tail_call_opt_p (void)
156 /* alloca (until we have stack slot life analysis) inhibits
157 sibling call optimizations, but not tail recursion. */
158 if (cfun
->calls_alloca
)
161 /* If we are using sjlj exceptions, we may need to add a call to
162 _Unwind_SjLj_Unregister at exit of the function. Which means
163 that we cannot do any sibcall transformations. */
164 if (targetm_common
.except_unwind_info (&global_options
) == UI_SJLJ
165 && current_function_has_exception_handlers ())
168 /* Any function that calls setjmp might have longjmp called from
169 any called function. ??? We really should represent this
170 properly in the CFG so that this needn't be special cased. */
171 if (cfun
->calls_setjmp
)
174 /* ??? It is OK if the argument of a function is taken in some cases,
175 but not in all cases. See PR15387 and PR19616. Revisit for 4.1. */
176 for (param
= DECL_ARGUMENTS (current_function_decl
);
178 param
= DECL_CHAIN (param
))
179 if (TREE_ADDRESSABLE (param
))
185 /* Checks whether the expression EXPR in stmt AT is independent of the
186 statement pointed to by GSI (in a sense that we already know EXPR's value
187 at GSI). We use the fact that we are only called from the chain of
188 basic blocks that have only single successor. Returns the expression
189 containing the value of EXPR at GSI. */
192 independent_of_stmt_p (tree expr
, gimple at
, gimple_stmt_iterator gsi
)
194 basic_block bb
, call_bb
, at_bb
;
198 if (is_gimple_min_invariant (expr
))
201 if (TREE_CODE (expr
) != SSA_NAME
)
204 /* Mark the blocks in the chain leading to the end. */
205 at_bb
= gimple_bb (at
);
206 call_bb
= gimple_bb (gsi_stmt (gsi
));
207 for (bb
= call_bb
; bb
!= at_bb
; bb
= single_succ (bb
))
213 at
= SSA_NAME_DEF_STMT (expr
);
216 /* The default definition or defined before the chain. */
222 for (; !gsi_end_p (gsi
); gsi_next (&gsi
))
223 if (gsi_stmt (gsi
) == at
)
226 if (!gsi_end_p (gsi
))
231 if (gimple_code (at
) != GIMPLE_PHI
)
237 FOR_EACH_EDGE (e
, ei
, bb
->preds
)
242 expr
= PHI_ARG_DEF_FROM_EDGE (at
, e
);
243 if (TREE_CODE (expr
) != SSA_NAME
)
245 /* The value is a constant. */
250 /* Unmark the blocks. */
251 for (bb
= call_bb
; bb
!= at_bb
; bb
= single_succ (bb
))
258 /* Simulates the effect of an assignment STMT on the return value of the tail
259 recursive CALL passed in ASS_VAR. M and A are the multiplicative and the
260 additive factor for the real return value. */
263 process_assignment (gimple stmt
, gimple_stmt_iterator call
, tree
*m
,
264 tree
*a
, tree
*ass_var
)
266 tree op0
, op1
= NULL_TREE
, non_ass_var
= NULL_TREE
;
267 tree dest
= gimple_assign_lhs (stmt
);
268 enum tree_code code
= gimple_assign_rhs_code (stmt
);
269 enum gimple_rhs_class rhs_class
= get_gimple_rhs_class (code
);
270 tree src_var
= gimple_assign_rhs1 (stmt
);
272 /* See if this is a simple copy operation of an SSA name to the function
273 result. In that case we may have a simple tail call. Ignore type
274 conversions that can never produce extra code between the function
275 call and the function return. */
276 if ((rhs_class
== GIMPLE_SINGLE_RHS
|| gimple_assign_cast_p (stmt
))
277 && (TREE_CODE (src_var
) == SSA_NAME
))
279 /* Reject a tailcall if the type conversion might need
281 if (gimple_assign_cast_p (stmt
)
282 && TYPE_MODE (TREE_TYPE (dest
)) != TYPE_MODE (TREE_TYPE (src_var
)))
285 if (src_var
!= *ass_var
)
294 case GIMPLE_BINARY_RHS
:
295 op1
= gimple_assign_rhs2 (stmt
);
299 case GIMPLE_UNARY_RHS
:
300 op0
= gimple_assign_rhs1 (stmt
);
307 /* Accumulator optimizations will reverse the order of operations.
308 We can only do that for floating-point types if we're assuming
309 that addition and multiplication are associative. */
310 if (!flag_associative_math
)
311 if (FLOAT_TYPE_P (TREE_TYPE (DECL_RESULT (current_function_decl
))))
314 if (rhs_class
== GIMPLE_UNARY_RHS
)
316 else if (op0
== *ass_var
317 && (non_ass_var
= independent_of_stmt_p (op1
, stmt
, call
)))
319 else if (op1
== *ass_var
320 && (non_ass_var
= independent_of_stmt_p (op0
, stmt
, call
)))
332 case POINTER_PLUS_EXPR
:
345 *m
= build_minus_one_cst (TREE_TYPE (op0
));
351 *a
= fold_build1 (NEGATE_EXPR
, TREE_TYPE (non_ass_var
), non_ass_var
);
354 *m
= build_minus_one_cst (TREE_TYPE (non_ass_var
));
355 *a
= fold_build1 (NEGATE_EXPR
, TREE_TYPE (non_ass_var
), non_ass_var
);
361 /* TODO -- Handle POINTER_PLUS_EXPR. */
368 /* Propagate VAR through phis on edge E. */
371 propagate_through_phis (tree var
, edge e
)
373 basic_block dest
= e
->dest
;
374 gimple_stmt_iterator gsi
;
376 for (gsi
= gsi_start_phis (dest
); !gsi_end_p (gsi
); gsi_next (&gsi
))
378 gimple phi
= gsi_stmt (gsi
);
379 if (PHI_ARG_DEF_FROM_EDGE (phi
, e
) == var
)
380 return PHI_RESULT (phi
);
385 /* Finds tailcalls falling into basic block BB. The list of found tailcalls is
386 added to the start of RET. */
389 find_tail_calls (basic_block bb
, struct tailcall
**ret
)
391 tree ass_var
= NULL_TREE
, ret_var
, func
, param
;
392 gimple stmt
, call
= NULL
;
393 gimple_stmt_iterator gsi
, agsi
;
402 if (!single_succ_p (bb
))
405 for (gsi
= gsi_last_bb (bb
); !gsi_end_p (gsi
); gsi_prev (&gsi
))
407 stmt
= gsi_stmt (gsi
);
409 /* Ignore labels, returns, clobbers and debug stmts. */
410 if (gimple_code (stmt
) == GIMPLE_LABEL
411 || gimple_code (stmt
) == GIMPLE_RETURN
412 || gimple_clobber_p (stmt
)
413 || is_gimple_debug (stmt
))
416 /* Check for a call. */
417 if (is_gimple_call (stmt
))
420 ass_var
= gimple_call_lhs (stmt
);
424 /* If the statement references memory or volatile operands, fail. */
425 if (gimple_references_memory_p (stmt
)
426 || gimple_has_volatile_ops (stmt
))
433 /* Recurse to the predecessors. */
434 FOR_EACH_EDGE (e
, ei
, bb
->preds
)
435 find_tail_calls (e
->src
, ret
);
440 /* If the LHS of our call is not just a simple register, we can't
441 transform this into a tail or sibling call. This situation happens,
442 in (e.g.) "*p = foo()" where foo returns a struct. In this case
443 we won't have a temporary here, but we need to carry out the side
444 effect anyway, so tailcall is impossible.
446 ??? In some situations (when the struct is returned in memory via
447 invisible argument) we could deal with this, e.g. by passing 'p'
448 itself as that argument to foo, but it's too early to do this here,
449 and expand_call() will not handle it anyway. If it ever can, then
450 we need to revisit this here, to allow that situation. */
451 if (ass_var
&& !is_gimple_reg (ass_var
))
454 /* We found the call, check whether it is suitable. */
455 tail_recursion
= false;
456 func
= gimple_call_fndecl (call
);
458 && !DECL_BUILT_IN (func
)
459 && recursive_call_p (current_function_decl
, func
))
463 for (param
= DECL_ARGUMENTS (func
), idx
= 0;
464 param
&& idx
< gimple_call_num_args (call
);
465 param
= DECL_CHAIN (param
), idx
++)
467 arg
= gimple_call_arg (call
, idx
);
470 /* Make sure there are no problems with copying. The parameter
471 have a copyable type and the two arguments must have reasonably
472 equivalent types. The latter requirement could be relaxed if
473 we emitted a suitable type conversion statement. */
474 if (!is_gimple_reg_type (TREE_TYPE (param
))
475 || !useless_type_conversion_p (TREE_TYPE (param
),
479 /* The parameter should be a real operand, so that phi node
480 created for it at the start of the function has the meaning
481 of copying the value. This test implies is_gimple_reg_type
482 from the previous condition, however this one could be
483 relaxed by being more careful with copying the new value
484 of the parameter (emitting appropriate GIMPLE_ASSIGN and
485 updating the virtual operands). */
486 if (!is_gimple_reg (param
))
490 if (idx
== gimple_call_num_args (call
) && !param
)
491 tail_recursion
= true;
494 /* Make sure the tail invocation of this function does not refer
495 to local variables. */
496 FOR_EACH_LOCAL_DECL (cfun
, idx
, var
)
498 if (TREE_CODE (var
) != PARM_DECL
499 && auto_var_in_fn_p (var
, cfun
->decl
)
500 && (ref_maybe_used_by_stmt_p (call
, var
)
501 || call_may_clobber_ref_p (call
, var
)))
505 /* Now check the statements after the call. None of them has virtual
506 operands, so they may only depend on the call through its return
507 value. The return value should also be dependent on each of them,
508 since we are running after dce. */
516 tree tmp_a
= NULL_TREE
;
517 tree tmp_m
= NULL_TREE
;
520 while (gsi_end_p (agsi
))
522 ass_var
= propagate_through_phis (ass_var
, single_succ_edge (abb
));
523 abb
= single_succ (abb
);
524 agsi
= gsi_start_bb (abb
);
527 stmt
= gsi_stmt (agsi
);
529 if (gimple_code (stmt
) == GIMPLE_LABEL
)
532 if (gimple_code (stmt
) == GIMPLE_RETURN
)
535 if (gimple_clobber_p (stmt
))
538 if (is_gimple_debug (stmt
))
541 if (gimple_code (stmt
) != GIMPLE_ASSIGN
)
544 /* This is a gimple assign. */
545 if (! process_assignment (stmt
, gsi
, &tmp_m
, &tmp_a
, &ass_var
))
550 tree type
= TREE_TYPE (tmp_a
);
552 a
= fold_build2 (PLUS_EXPR
, type
, fold_convert (type
, a
), tmp_a
);
558 tree type
= TREE_TYPE (tmp_m
);
560 m
= fold_build2 (MULT_EXPR
, type
, fold_convert (type
, m
), tmp_m
);
565 a
= fold_build2 (MULT_EXPR
, type
, fold_convert (type
, a
), tmp_m
);
569 /* See if this is a tail call we can handle. */
570 ret_var
= gimple_return_retval (stmt
);
572 /* We may proceed if there either is no return value, or the return value
573 is identical to the call's return. */
575 && (ret_var
!= ass_var
))
578 /* If this is not a tail recursive call, we cannot handle addends or
580 if (!tail_recursion
&& (m
|| a
))
583 /* For pointers only allow additions. */
584 if (m
&& POINTER_TYPE_P (TREE_TYPE (DECL_RESULT (current_function_decl
))))
587 nw
= XNEW (struct tailcall
);
591 nw
->tail_recursion
= tail_recursion
;
600 /* Helper to insert PHI_ARGH to the phi of VAR in the destination of edge E. */
603 add_successor_phi_arg (edge e
, tree var
, tree phi_arg
)
605 gimple_stmt_iterator gsi
;
607 for (gsi
= gsi_start_phis (e
->dest
); !gsi_end_p (gsi
); gsi_next (&gsi
))
608 if (PHI_RESULT (gsi_stmt (gsi
)) == var
)
611 gcc_assert (!gsi_end_p (gsi
));
612 add_phi_arg (gsi_stmt (gsi
), phi_arg
, e
, UNKNOWN_LOCATION
);
615 /* Creates a GIMPLE statement which computes the operation specified by
616 CODE, ACC and OP1 to a new variable with name LABEL and inserts the
617 statement in the position specified by GSI. Returns the
618 tree node of the statement's result. */
621 adjust_return_value_with_ops (enum tree_code code
, const char *label
,
622 tree acc
, tree op1
, gimple_stmt_iterator gsi
)
625 tree ret_type
= TREE_TYPE (DECL_RESULT (current_function_decl
));
626 tree result
= make_temp_ssa_name (ret_type
, NULL
, label
);
629 if (POINTER_TYPE_P (ret_type
))
631 gcc_assert (code
== PLUS_EXPR
&& TREE_TYPE (acc
) == sizetype
);
632 code
= POINTER_PLUS_EXPR
;
634 if (types_compatible_p (TREE_TYPE (acc
), TREE_TYPE (op1
))
635 && code
!= POINTER_PLUS_EXPR
)
636 stmt
= gimple_build_assign_with_ops (code
, result
, acc
, op1
);
640 if (code
== POINTER_PLUS_EXPR
)
641 tem
= fold_build2 (code
, TREE_TYPE (op1
), op1
, acc
);
643 tem
= fold_build2 (code
, TREE_TYPE (op1
),
644 fold_convert (TREE_TYPE (op1
), acc
), op1
);
645 tree rhs
= fold_convert (ret_type
, tem
);
646 rhs
= force_gimple_operand_gsi (&gsi
, rhs
,
647 false, NULL
, true, GSI_SAME_STMT
);
648 stmt
= gimple_build_assign (result
, rhs
);
651 gsi_insert_before (&gsi
, stmt
, GSI_NEW_STMT
);
655 /* Creates a new GIMPLE statement that adjusts the value of accumulator ACC by
656 the computation specified by CODE and OP1 and insert the statement
657 at the position specified by GSI as a new statement. Returns new SSA name
658 of updated accumulator. */
661 update_accumulator_with_ops (enum tree_code code
, tree acc
, tree op1
,
662 gimple_stmt_iterator gsi
)
665 tree var
= copy_ssa_name (acc
, NULL
);
666 if (types_compatible_p (TREE_TYPE (acc
), TREE_TYPE (op1
)))
667 stmt
= gimple_build_assign_with_ops (code
, var
, acc
, op1
);
670 tree rhs
= fold_convert (TREE_TYPE (acc
),
673 fold_convert (TREE_TYPE (op1
), acc
),
675 rhs
= force_gimple_operand_gsi (&gsi
, rhs
,
676 false, NULL
, false, GSI_CONTINUE_LINKING
);
677 stmt
= gimple_build_assign (var
, rhs
);
679 gsi_insert_after (&gsi
, stmt
, GSI_NEW_STMT
);
683 /* Adjust the accumulator values according to A and M after GSI, and update
684 the phi nodes on edge BACK. */
687 adjust_accumulator_values (gimple_stmt_iterator gsi
, tree m
, tree a
, edge back
)
689 tree var
, a_acc_arg
, m_acc_arg
;
692 m
= force_gimple_operand_gsi (&gsi
, m
, true, NULL
, true, GSI_SAME_STMT
);
694 a
= force_gimple_operand_gsi (&gsi
, a
, true, NULL
, true, GSI_SAME_STMT
);
702 if (integer_onep (a
))
705 var
= adjust_return_value_with_ops (MULT_EXPR
, "acc_tmp", m_acc
,
711 a_acc_arg
= update_accumulator_with_ops (PLUS_EXPR
, a_acc
, var
, gsi
);
715 m_acc_arg
= update_accumulator_with_ops (MULT_EXPR
, m_acc
, m
, gsi
);
718 add_successor_phi_arg (back
, a_acc
, a_acc_arg
);
721 add_successor_phi_arg (back
, m_acc
, m_acc_arg
);
724 /* Adjust value of the return at the end of BB according to M and A
728 adjust_return_value (basic_block bb
, tree m
, tree a
)
731 gimple ret_stmt
= gimple_seq_last_stmt (bb_seq (bb
));
732 gimple_stmt_iterator gsi
= gsi_last_bb (bb
);
734 gcc_assert (gimple_code (ret_stmt
) == GIMPLE_RETURN
);
736 retval
= gimple_return_retval (ret_stmt
);
737 if (!retval
|| retval
== error_mark_node
)
741 retval
= adjust_return_value_with_ops (MULT_EXPR
, "mul_tmp", m_acc
, retval
,
744 retval
= adjust_return_value_with_ops (PLUS_EXPR
, "acc_tmp", a_acc
, retval
,
746 gimple_return_set_retval (ret_stmt
, retval
);
747 update_stmt (ret_stmt
);
750 /* Subtract COUNT and FREQUENCY from the basic block and it's
753 decrease_profile (basic_block bb
, gcov_type count
, int frequency
)
759 bb
->frequency
-= frequency
;
760 if (bb
->frequency
< 0)
762 if (!single_succ_p (bb
))
764 gcc_assert (!EDGE_COUNT (bb
->succs
));
767 e
= single_succ_edge (bb
);
773 /* Returns true if argument PARAM of the tail recursive call needs to be copied
774 when the call is eliminated. */
777 arg_needs_copy_p (tree param
)
781 if (!is_gimple_reg (param
))
784 /* Parameters that are only defined but never used need not be copied. */
785 def
= ssa_default_def (cfun
, param
);
792 /* Eliminates tail call described by T. TMP_VARS is a list of
793 temporary variables used to copy the function arguments. */
796 eliminate_tail_call (struct tailcall
*t
)
802 basic_block bb
, first
;
805 gimple_stmt_iterator gsi
;
808 stmt
= orig_stmt
= gsi_stmt (t
->call_gsi
);
809 bb
= gsi_bb (t
->call_gsi
);
811 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
813 fprintf (dump_file
, "Eliminated tail recursion in bb %d : ",
815 print_gimple_stmt (dump_file
, stmt
, 0, TDF_SLIM
);
816 fprintf (dump_file
, "\n");
819 gcc_assert (is_gimple_call (stmt
));
821 first
= single_succ (ENTRY_BLOCK_PTR
);
823 /* Remove the code after call_gsi that will become unreachable. The
824 possibly unreachable code in other blocks is removed later in
828 while (!gsi_end_p (gsi
))
830 gimple t
= gsi_stmt (gsi
);
831 /* Do not remove the return statement, so that redirect_edge_and_branch
832 sees how the block ends. */
833 if (gimple_code (t
) == GIMPLE_RETURN
)
836 gsi_remove (&gsi
, true);
840 /* Number of executions of function has reduced by the tailcall. */
841 e
= single_succ_edge (gsi_bb (t
->call_gsi
));
842 decrease_profile (EXIT_BLOCK_PTR
, e
->count
, EDGE_FREQUENCY (e
));
843 decrease_profile (ENTRY_BLOCK_PTR
, e
->count
, EDGE_FREQUENCY (e
));
844 if (e
->dest
!= EXIT_BLOCK_PTR
)
845 decrease_profile (e
->dest
, e
->count
, EDGE_FREQUENCY (e
));
847 /* Replace the call by a jump to the start of function. */
848 e
= redirect_edge_and_branch (single_succ_edge (gsi_bb (t
->call_gsi
)),
851 PENDING_STMT (e
) = NULL
;
853 /* Add phi node entries for arguments. The ordering of the phi nodes should
854 be the same as the ordering of the arguments. */
855 for (param
= DECL_ARGUMENTS (current_function_decl
),
856 idx
= 0, gsi
= gsi_start_phis (first
);
858 param
= DECL_CHAIN (param
), idx
++)
860 if (!arg_needs_copy_p (param
))
863 arg
= gimple_call_arg (stmt
, idx
);
864 phi
= gsi_stmt (gsi
);
865 gcc_assert (param
== SSA_NAME_VAR (PHI_RESULT (phi
)));
867 add_phi_arg (phi
, arg
, e
, gimple_location (stmt
));
871 /* Update the values of accumulators. */
872 adjust_accumulator_values (t
->call_gsi
, t
->mult
, t
->add
, e
);
874 call
= gsi_stmt (t
->call_gsi
);
875 rslt
= gimple_call_lhs (call
);
876 if (rslt
!= NULL_TREE
)
878 /* Result of the call will no longer be defined. So adjust the
879 SSA_NAME_DEF_STMT accordingly. */
880 SSA_NAME_DEF_STMT (rslt
) = gimple_build_nop ();
883 gsi_remove (&t
->call_gsi
, true);
887 /* Optimizes the tailcall described by T. If OPT_TAILCALLS is true, also
888 mark the tailcalls for the sibcall optimization. */
891 optimize_tail_call (struct tailcall
*t
, bool opt_tailcalls
)
893 if (t
->tail_recursion
)
895 eliminate_tail_call (t
);
901 gimple stmt
= gsi_stmt (t
->call_gsi
);
903 gimple_call_set_tail (stmt
, true);
904 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
906 fprintf (dump_file
, "Found tail call ");
907 print_gimple_stmt (dump_file
, stmt
, 0, dump_flags
);
908 fprintf (dump_file
, " in bb %i\n", (gsi_bb (t
->call_gsi
))->index
);
915 /* Creates a tail-call accumulator of the same type as the return type of the
916 current function. LABEL is the name used to creating the temporary
917 variable for the accumulator. The accumulator will be inserted in the
918 phis of a basic block BB with single predecessor with an initial value
919 INIT converted to the current function return type. */
922 create_tailcall_accumulator (const char *label
, basic_block bb
, tree init
)
924 tree ret_type
= TREE_TYPE (DECL_RESULT (current_function_decl
));
925 if (POINTER_TYPE_P (ret_type
))
928 tree tmp
= make_temp_ssa_name (ret_type
, NULL
, label
);
931 phi
= create_phi_node (tmp
, bb
);
932 /* RET_TYPE can be a float when -ffast-maths is enabled. */
933 add_phi_arg (phi
, fold_convert (ret_type
, init
), single_pred_edge (bb
),
935 return PHI_RESULT (phi
);
938 /* Optimizes tail calls in the function, turning the tail recursion
942 tree_optimize_tail_calls_1 (bool opt_tailcalls
)
945 bool phis_constructed
= false;
946 struct tailcall
*tailcalls
= NULL
, *act
, *next
;
947 bool changed
= false;
948 basic_block first
= single_succ (ENTRY_BLOCK_PTR
);
953 if (!suitable_for_tail_opt_p ())
956 opt_tailcalls
= suitable_for_tail_call_opt_p ();
958 FOR_EACH_EDGE (e
, ei
, EXIT_BLOCK_PTR
->preds
)
960 /* Only traverse the normal exits, i.e. those that end with return
962 stmt
= last_stmt (e
->src
);
965 && gimple_code (stmt
) == GIMPLE_RETURN
)
966 find_tail_calls (e
->src
, &tailcalls
);
969 /* Construct the phi nodes and accumulators if necessary. */
970 a_acc
= m_acc
= NULL_TREE
;
971 for (act
= tailcalls
; act
; act
= act
->next
)
973 if (!act
->tail_recursion
)
976 if (!phis_constructed
)
978 /* Ensure that there is only one predecessor of the block
979 or if there are existing degenerate PHI nodes. */
980 if (!single_pred_p (first
)
981 || !gimple_seq_empty_p (phi_nodes (first
)))
982 first
= split_edge (single_succ_edge (ENTRY_BLOCK_PTR
));
984 /* Copy the args if needed. */
985 for (param
= DECL_ARGUMENTS (current_function_decl
);
987 param
= DECL_CHAIN (param
))
988 if (arg_needs_copy_p (param
))
990 tree name
= ssa_default_def (cfun
, param
);
991 tree new_name
= make_ssa_name (param
, SSA_NAME_DEF_STMT (name
));
994 set_ssa_default_def (cfun
, param
, new_name
);
995 phi
= create_phi_node (name
, first
);
996 add_phi_arg (phi
, new_name
, single_pred_edge (first
),
997 EXPR_LOCATION (param
));
999 phis_constructed
= true;
1002 if (act
->add
&& !a_acc
)
1003 a_acc
= create_tailcall_accumulator ("add_acc", first
,
1006 if (act
->mult
&& !m_acc
)
1007 m_acc
= create_tailcall_accumulator ("mult_acc", first
,
1013 /* When the tail call elimination using accumulators is performed,
1014 statements adding the accumulated value are inserted at all exits.
1015 This turns all other tail calls to non-tail ones. */
1016 opt_tailcalls
= false;
1019 for (; tailcalls
; tailcalls
= next
)
1021 next
= tailcalls
->next
;
1022 changed
|= optimize_tail_call (tailcalls
, opt_tailcalls
);
1028 /* Modify the remaining return statements. */
1029 FOR_EACH_EDGE (e
, ei
, EXIT_BLOCK_PTR
->preds
)
1031 stmt
= last_stmt (e
->src
);
1034 && gimple_code (stmt
) == GIMPLE_RETURN
)
1035 adjust_return_value (e
->src
, m_acc
, a_acc
);
1041 /* We may have created new loops. Make them magically appear. */
1043 loops_state_set (LOOPS_NEED_FIXUP
);
1044 free_dominance_info (CDI_DOMINATORS
);
1047 /* Add phi nodes for the virtual operands defined in the function to the
1048 header of the loop created by tail recursion elimination. Do so
1049 by triggering the SSA renamer. */
1050 if (phis_constructed
)
1051 mark_virtual_operands_for_renaming (cfun
);
1054 return TODO_cleanup_cfg
| TODO_update_ssa_only_virtuals
;
1059 execute_tail_recursion (void)
1061 return tree_optimize_tail_calls_1 (false);
1065 gate_tail_calls (void)
1067 return flag_optimize_sibling_calls
!= 0 && dbg_cnt (tail_call
);
1071 execute_tail_calls (void)
1073 return tree_optimize_tail_calls_1 (true);
1078 const pass_data pass_data_tail_recursion
=
1080 GIMPLE_PASS
, /* type */
1082 OPTGROUP_NONE
, /* optinfo_flags */
1083 true, /* has_gate */
1084 true, /* has_execute */
1085 TV_NONE
, /* tv_id */
1086 ( PROP_cfg
| PROP_ssa
), /* properties_required */
1087 0, /* properties_provided */
1088 0, /* properties_destroyed */
1089 0, /* todo_flags_start */
1090 TODO_verify_ssa
, /* todo_flags_finish */
1093 class pass_tail_recursion
: public gimple_opt_pass
1096 pass_tail_recursion (gcc::context
*ctxt
)
1097 : gimple_opt_pass (pass_data_tail_recursion
, ctxt
)
1100 /* opt_pass methods: */
1101 opt_pass
* clone () { return new pass_tail_recursion (m_ctxt
); }
1102 bool gate () { return gate_tail_calls (); }
1103 unsigned int execute () { return execute_tail_recursion (); }
1105 }; // class pass_tail_recursion
1110 make_pass_tail_recursion (gcc::context
*ctxt
)
1112 return new pass_tail_recursion (ctxt
);
1117 const pass_data pass_data_tail_calls
=
1119 GIMPLE_PASS
, /* type */
1121 OPTGROUP_NONE
, /* optinfo_flags */
1122 true, /* has_gate */
1123 true, /* has_execute */
1124 TV_NONE
, /* tv_id */
1125 ( PROP_cfg
| PROP_ssa
), /* properties_required */
1126 0, /* properties_provided */
1127 0, /* properties_destroyed */
1128 0, /* todo_flags_start */
1129 TODO_verify_ssa
, /* todo_flags_finish */
1132 class pass_tail_calls
: public gimple_opt_pass
1135 pass_tail_calls (gcc::context
*ctxt
)
1136 : gimple_opt_pass (pass_data_tail_calls
, ctxt
)
1139 /* opt_pass methods: */
1140 bool gate () { return gate_tail_calls (); }
1141 unsigned int execute () { return execute_tail_calls (); }
1143 }; // class pass_tail_calls
1148 make_pass_tail_calls (gcc::context
*ctxt
)
1150 return new pass_tail_calls (ctxt
);