1 /* Convert function calls to rtl insns, for GNU C compiler.
2 Copyright (C) 1989-2015 Free Software Foundation, Inc.
4 This file is part of GCC.
6 GCC is free software; you can redistribute it and/or modify it under
7 the terms of the GNU General Public License as published by the Free
8 Software Foundation; either version 3, or (at your option) any later
11 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
12 WARRANTY; without even the implied warranty of MERCHANTABILITY or
13 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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"
24 #include "hard-reg-set.h"
29 #include "fold-const.h"
30 #include "stor-layout.h"
32 #include "stringpool.h"
36 #include "basic-block.h"
37 #include "tree-ssa-alias.h"
38 #include "internal-fn.h"
39 #include "gimple-expr.h"
42 #include "insn-config.h"
50 #include "insn-codes.h"
54 #include "diagnostic-core.h"
60 #include "langhooks.h"
66 #include "tree-chkp.h"
70 /* Like PREFERRED_STACK_BOUNDARY but in units of bytes, not bits. */
71 #define STACK_BYTES (PREFERRED_STACK_BOUNDARY / BITS_PER_UNIT)
73 /* Data structure and subroutines used within expand_call. */
77 /* Tree node for this argument. */
79 /* Mode for value; TYPE_MODE unless promoted. */
81 /* Current RTL value for argument, or 0 if it isn't precomputed. */
83 /* Initially-compute RTL value for argument; only for const functions. */
85 /* Register to pass this argument in, 0 if passed on stack, or an
86 PARALLEL if the arg is to be copied into multiple non-contiguous
89 /* Register to pass this argument in when generating tail call sequence.
90 This is not the same register as for normal calls on machines with
93 /* If REG is a PARALLEL, this is a copy of VALUE pulled into the correct
94 form for emit_group_move. */
96 /* If value is passed in neither reg nor stack, this field holds a number
97 of a special slot to be used. */
99 /* For pointer bounds hold an index of parm bounds are bound to. -1 if
100 there is no such pointer. */
102 /* If pointer_arg refers a structure, then pointer_offset holds an offset
103 of a pointer in this structure. */
105 /* If REG was promoted from the actual mode of the argument expression,
106 indicates whether the promotion is sign- or zero-extended. */
108 /* Number of bytes to put in registers. 0 means put the whole arg
109 in registers. Also 0 if not passed in registers. */
111 /* Nonzero if argument must be passed on stack.
112 Note that some arguments may be passed on the stack
113 even though pass_on_stack is zero, just because FUNCTION_ARG says so.
114 pass_on_stack identifies arguments that *cannot* go in registers. */
116 /* Some fields packaged up for locate_and_pad_parm. */
117 struct locate_and_pad_arg_data locate
;
118 /* Location on the stack at which parameter should be stored. The store
119 has already been done if STACK == VALUE. */
121 /* Location on the stack of the start of this argument slot. This can
122 differ from STACK if this arg pads downward. This location is known
123 to be aligned to TARGET_FUNCTION_ARG_BOUNDARY. */
125 /* Place that this stack area has been saved, if needed. */
127 /* If an argument's alignment does not permit direct copying into registers,
128 copy in smaller-sized pieces into pseudos. These are stored in a
129 block pointed to by this field. The next field says how many
130 word-sized pseudos we made. */
135 /* A vector of one char per byte of stack space. A byte if nonzero if
136 the corresponding stack location has been used.
137 This vector is used to prevent a function call within an argument from
138 clobbering any stack already set up. */
139 static char *stack_usage_map
;
141 /* Size of STACK_USAGE_MAP. */
142 static int highest_outgoing_arg_in_use
;
144 /* A bitmap of virtual-incoming stack space. Bit is set if the corresponding
145 stack location's tail call argument has been already stored into the stack.
146 This bitmap is used to prevent sibling call optimization if function tries
147 to use parent's incoming argument slots when they have been already
148 overwritten with tail call arguments. */
149 static sbitmap stored_args_map
;
151 /* stack_arg_under_construction is nonzero when an argument may be
152 initialized with a constructor call (including a C function that
153 returns a BLKmode struct) and expand_call must take special action
154 to make sure the object being constructed does not overlap the
155 argument list for the constructor call. */
156 static int stack_arg_under_construction
;
158 static void emit_call_1 (rtx
, tree
, tree
, tree
, HOST_WIDE_INT
, HOST_WIDE_INT
,
159 HOST_WIDE_INT
, rtx
, rtx
, int, rtx
, int,
161 static void precompute_register_parameters (int, struct arg_data
*, int *);
162 static void store_bounds (struct arg_data
*, struct arg_data
*);
163 static int store_one_arg (struct arg_data
*, rtx
, int, int, int);
164 static void store_unaligned_arguments_into_pseudos (struct arg_data
*, int);
165 static int finalize_must_preallocate (int, int, struct arg_data
*,
167 static void precompute_arguments (int, struct arg_data
*);
168 static int compute_argument_block_size (int, struct args_size
*, tree
, tree
, int);
169 static void initialize_argument_information (int, struct arg_data
*,
170 struct args_size
*, int,
172 tree
, tree
, cumulative_args_t
, int,
173 rtx
*, int *, int *, int *,
175 static void compute_argument_addresses (struct arg_data
*, rtx
, int);
176 static rtx
rtx_for_function_call (tree
, tree
);
177 static void load_register_parameters (struct arg_data
*, int, rtx
*, int,
179 static rtx
emit_library_call_value_1 (int, rtx
, rtx
, enum libcall_type
,
180 machine_mode
, int, va_list);
181 static int special_function_p (const_tree
, int);
182 static int check_sibcall_argument_overlap_1 (rtx
);
183 static int check_sibcall_argument_overlap (rtx_insn
*, struct arg_data
*, int);
185 static int combine_pending_stack_adjustment_and_call (int, struct args_size
*,
187 static tree
split_complex_types (tree
);
189 #ifdef REG_PARM_STACK_SPACE
190 static rtx
save_fixed_argument_area (int, rtx
, int *, int *);
191 static void restore_fixed_argument_area (rtx
, rtx
, int, int);
194 /* Force FUNEXP into a form suitable for the address of a CALL,
195 and return that as an rtx. Also load the static chain register
196 if FNDECL is a nested function.
198 CALL_FUSAGE points to a variable holding the prospective
199 CALL_INSN_FUNCTION_USAGE information. */
202 prepare_call_address (tree fndecl_or_type
, rtx funexp
, rtx static_chain_value
,
203 rtx
*call_fusage
, int reg_parm_seen
, int sibcallp
)
205 /* Make a valid memory address and copy constants through pseudo-regs,
206 but not for a constant address if -fno-function-cse. */
207 if (GET_CODE (funexp
) != SYMBOL_REF
)
208 /* If we are using registers for parameters, force the
209 function address into a register now. */
210 funexp
= ((reg_parm_seen
211 && targetm
.small_register_classes_for_mode_p (FUNCTION_MODE
))
212 ? force_not_mem (memory_address (FUNCTION_MODE
, funexp
))
213 : memory_address (FUNCTION_MODE
, funexp
));
216 && TREE_CODE (fndecl_or_type
) == FUNCTION_DECL
218 || lookup_attribute ("noplt", DECL_ATTRIBUTES (fndecl_or_type
)))
219 && !targetm
.binds_local_p (fndecl_or_type
))
221 /* This is done only for PIC code. There is no easy interface to force the
222 function address into GOT for non-PIC case. non-PIC case needs to be
223 handled specially by the backend. */
224 funexp
= force_reg (Pmode
, funexp
);
228 if (!NO_FUNCTION_CSE
&& optimize
&& ! flag_no_function_cse
)
229 funexp
= force_reg (Pmode
, funexp
);
232 if (static_chain_value
!= 0
233 && (TREE_CODE (fndecl_or_type
) != FUNCTION_DECL
234 || DECL_STATIC_CHAIN (fndecl_or_type
)))
238 chain
= targetm
.calls
.static_chain (fndecl_or_type
, false);
239 static_chain_value
= convert_memory_address (Pmode
, static_chain_value
);
241 emit_move_insn (chain
, static_chain_value
);
243 use_reg (call_fusage
, chain
);
249 /* Generate instructions to call function FUNEXP,
250 and optionally pop the results.
251 The CALL_INSN is the first insn generated.
253 FNDECL is the declaration node of the function. This is given to the
254 hook TARGET_RETURN_POPS_ARGS to determine whether this function pops
257 FUNTYPE is the data type of the function. This is given to the hook
258 TARGET_RETURN_POPS_ARGS to determine whether this function pops its
259 own args. We used to allow an identifier for library functions, but
260 that doesn't work when the return type is an aggregate type and the
261 calling convention says that the pointer to this aggregate is to be
262 popped by the callee.
264 STACK_SIZE is the number of bytes of arguments on the stack,
265 ROUNDED_STACK_SIZE is that number rounded up to
266 PREFERRED_STACK_BOUNDARY; zero if the size is variable. This is
267 both to put into the call insn and to generate explicit popping
270 STRUCT_VALUE_SIZE is the number of bytes wanted in a structure value.
271 It is zero if this call doesn't want a structure value.
273 NEXT_ARG_REG is the rtx that results from executing
274 targetm.calls.function_arg (&args_so_far, VOIDmode, void_type_node, true)
275 just after all the args have had their registers assigned.
276 This could be whatever you like, but normally it is the first
277 arg-register beyond those used for args in this call,
278 or 0 if all the arg-registers are used in this call.
279 It is passed on to `gen_call' so you can put this info in the call insn.
281 VALREG is a hard register in which a value is returned,
282 or 0 if the call does not return a value.
284 OLD_INHIBIT_DEFER_POP is the value that `inhibit_defer_pop' had before
285 the args to this call were processed.
286 We restore `inhibit_defer_pop' to that value.
288 CALL_FUSAGE is either empty or an EXPR_LIST of USE expressions that
289 denote registers used by the called function. */
292 emit_call_1 (rtx funexp
, tree fntree ATTRIBUTE_UNUSED
, tree fndecl ATTRIBUTE_UNUSED
,
293 tree funtype ATTRIBUTE_UNUSED
,
294 HOST_WIDE_INT stack_size ATTRIBUTE_UNUSED
,
295 HOST_WIDE_INT rounded_stack_size
,
296 HOST_WIDE_INT struct_value_size ATTRIBUTE_UNUSED
,
297 rtx next_arg_reg ATTRIBUTE_UNUSED
, rtx valreg
,
298 int old_inhibit_defer_pop
, rtx call_fusage
, int ecf_flags
,
299 cumulative_args_t args_so_far ATTRIBUTE_UNUSED
)
301 rtx rounded_stack_size_rtx
= GEN_INT (rounded_stack_size
);
303 int already_popped
= 0;
304 HOST_WIDE_INT n_popped
305 = targetm
.calls
.return_pops_args (fndecl
, funtype
, stack_size
);
307 #ifdef CALL_POPS_ARGS
308 n_popped
+= CALL_POPS_ARGS (*get_cumulative_args (args_so_far
));
311 /* Ensure address is valid. SYMBOL_REF is already valid, so no need,
312 and we don't want to load it into a register as an optimization,
313 because prepare_call_address already did it if it should be done. */
314 if (GET_CODE (funexp
) != SYMBOL_REF
)
315 funexp
= memory_address (FUNCTION_MODE
, funexp
);
317 funmem
= gen_rtx_MEM (FUNCTION_MODE
, funexp
);
318 if (fndecl
&& TREE_CODE (fndecl
) == FUNCTION_DECL
)
322 /* Although a built-in FUNCTION_DECL and its non-__builtin
323 counterpart compare equal and get a shared mem_attrs, they
324 produce different dump output in compare-debug compilations,
325 if an entry gets garbage collected in one compilation, then
326 adds a different (but equivalent) entry, while the other
327 doesn't run the garbage collector at the same spot and then
328 shares the mem_attr with the equivalent entry. */
329 if (DECL_BUILT_IN_CLASS (t
) == BUILT_IN_NORMAL
)
331 tree t2
= builtin_decl_explicit (DECL_FUNCTION_CODE (t
));
336 set_mem_expr (funmem
, t
);
339 set_mem_expr (funmem
, build_simple_mem_ref (CALL_EXPR_FN (fntree
)));
341 #if defined (HAVE_sibcall_pop) && defined (HAVE_sibcall_value_pop)
342 if ((ecf_flags
& ECF_SIBCALL
)
343 && HAVE_sibcall_pop
&& HAVE_sibcall_value_pop
344 && (n_popped
> 0 || stack_size
== 0))
346 rtx n_pop
= GEN_INT (n_popped
);
349 /* If this subroutine pops its own args, record that in the call insn
350 if possible, for the sake of frame pointer elimination. */
353 pat
= GEN_SIBCALL_VALUE_POP (valreg
, funmem
, rounded_stack_size_rtx
,
354 next_arg_reg
, n_pop
);
356 pat
= GEN_SIBCALL_POP (funmem
, rounded_stack_size_rtx
, next_arg_reg
,
359 emit_call_insn (pat
);
365 #if defined (HAVE_call_pop) && defined (HAVE_call_value_pop)
366 /* If the target has "call" or "call_value" insns, then prefer them
367 if no arguments are actually popped. If the target does not have
368 "call" or "call_value" insns, then we must use the popping versions
369 even if the call has no arguments to pop. */
370 #if defined (HAVE_call) && defined (HAVE_call_value)
371 if (HAVE_call
&& HAVE_call_value
&& HAVE_call_pop
&& HAVE_call_value_pop
374 if (HAVE_call_pop
&& HAVE_call_value_pop
)
377 rtx n_pop
= GEN_INT (n_popped
);
380 /* If this subroutine pops its own args, record that in the call insn
381 if possible, for the sake of frame pointer elimination. */
384 pat
= GEN_CALL_VALUE_POP (valreg
, funmem
, rounded_stack_size_rtx
,
385 next_arg_reg
, n_pop
);
387 pat
= GEN_CALL_POP (funmem
, rounded_stack_size_rtx
, next_arg_reg
,
390 emit_call_insn (pat
);
396 #if defined (HAVE_sibcall) && defined (HAVE_sibcall_value)
397 if ((ecf_flags
& ECF_SIBCALL
)
398 && HAVE_sibcall
&& HAVE_sibcall_value
)
401 emit_call_insn (GEN_SIBCALL_VALUE (valreg
, funmem
,
402 rounded_stack_size_rtx
,
403 next_arg_reg
, NULL_RTX
));
405 emit_call_insn (GEN_SIBCALL (funmem
, rounded_stack_size_rtx
,
407 GEN_INT (struct_value_size
)));
412 #if defined (HAVE_call) && defined (HAVE_call_value)
413 if (HAVE_call
&& HAVE_call_value
)
416 emit_call_insn (GEN_CALL_VALUE (valreg
, funmem
, rounded_stack_size_rtx
,
417 next_arg_reg
, NULL_RTX
));
419 emit_call_insn (GEN_CALL (funmem
, rounded_stack_size_rtx
, next_arg_reg
,
420 GEN_INT (struct_value_size
)));
426 /* Find the call we just emitted. */
427 rtx_call_insn
*call_insn
= last_call_insn ();
429 /* Some target create a fresh MEM instead of reusing the one provided
430 above. Set its MEM_EXPR. */
431 call
= get_call_rtx_from (call_insn
);
433 && MEM_EXPR (XEXP (call
, 0)) == NULL_TREE
434 && MEM_EXPR (funmem
) != NULL_TREE
)
435 set_mem_expr (XEXP (call
, 0), MEM_EXPR (funmem
));
437 /* Mark instrumented calls. */
439 CALL_EXPR_WITH_BOUNDS_P (call
) = CALL_WITH_BOUNDS_P (fntree
);
441 /* Put the register usage information there. */
442 add_function_usage_to (call_insn
, call_fusage
);
444 /* If this is a const call, then set the insn's unchanging bit. */
445 if (ecf_flags
& ECF_CONST
)
446 RTL_CONST_CALL_P (call_insn
) = 1;
448 /* If this is a pure call, then set the insn's unchanging bit. */
449 if (ecf_flags
& ECF_PURE
)
450 RTL_PURE_CALL_P (call_insn
) = 1;
452 /* If this is a const call, then set the insn's unchanging bit. */
453 if (ecf_flags
& ECF_LOOPING_CONST_OR_PURE
)
454 RTL_LOOPING_CONST_OR_PURE_CALL_P (call_insn
) = 1;
456 /* Create a nothrow REG_EH_REGION note, if needed. */
457 make_reg_eh_region_note (call_insn
, ecf_flags
, 0);
459 if (ecf_flags
& ECF_NORETURN
)
460 add_reg_note (call_insn
, REG_NORETURN
, const0_rtx
);
462 if (ecf_flags
& ECF_RETURNS_TWICE
)
464 add_reg_note (call_insn
, REG_SETJMP
, const0_rtx
);
465 cfun
->calls_setjmp
= 1;
468 SIBLING_CALL_P (call_insn
) = ((ecf_flags
& ECF_SIBCALL
) != 0);
470 /* Restore this now, so that we do defer pops for this call's args
471 if the context of the call as a whole permits. */
472 inhibit_defer_pop
= old_inhibit_defer_pop
;
477 CALL_INSN_FUNCTION_USAGE (call_insn
)
478 = gen_rtx_EXPR_LIST (VOIDmode
,
479 gen_rtx_CLOBBER (VOIDmode
, stack_pointer_rtx
),
480 CALL_INSN_FUNCTION_USAGE (call_insn
));
481 rounded_stack_size
-= n_popped
;
482 rounded_stack_size_rtx
= GEN_INT (rounded_stack_size
);
483 stack_pointer_delta
-= n_popped
;
485 add_reg_note (call_insn
, REG_ARGS_SIZE
, GEN_INT (stack_pointer_delta
));
487 /* If popup is needed, stack realign must use DRAP */
488 if (SUPPORTS_STACK_ALIGNMENT
)
489 crtl
->need_drap
= true;
491 /* For noreturn calls when not accumulating outgoing args force
492 REG_ARGS_SIZE note to prevent crossjumping of calls with different
494 else if (!ACCUMULATE_OUTGOING_ARGS
&& (ecf_flags
& ECF_NORETURN
) != 0)
495 add_reg_note (call_insn
, REG_ARGS_SIZE
, GEN_INT (stack_pointer_delta
));
497 if (!ACCUMULATE_OUTGOING_ARGS
)
499 /* If returning from the subroutine does not automatically pop the args,
500 we need an instruction to pop them sooner or later.
501 Perhaps do it now; perhaps just record how much space to pop later.
503 If returning from the subroutine does pop the args, indicate that the
504 stack pointer will be changed. */
506 if (rounded_stack_size
!= 0)
508 if (ecf_flags
& ECF_NORETURN
)
509 /* Just pretend we did the pop. */
510 stack_pointer_delta
-= rounded_stack_size
;
511 else if (flag_defer_pop
&& inhibit_defer_pop
== 0
512 && ! (ecf_flags
& (ECF_CONST
| ECF_PURE
)))
513 pending_stack_adjust
+= rounded_stack_size
;
515 adjust_stack (rounded_stack_size_rtx
);
518 /* When we accumulate outgoing args, we must avoid any stack manipulations.
519 Restore the stack pointer to its original value now. Usually
520 ACCUMULATE_OUTGOING_ARGS targets don't get here, but there are exceptions.
521 On i386 ACCUMULATE_OUTGOING_ARGS can be enabled on demand, and
522 popping variants of functions exist as well.
524 ??? We may optimize similar to defer_pop above, but it is
525 probably not worthwhile.
527 ??? It will be worthwhile to enable combine_stack_adjustments even for
530 anti_adjust_stack (GEN_INT (n_popped
));
533 /* Determine if the function identified by NAME and FNDECL is one with
534 special properties we wish to know about.
536 For example, if the function might return more than one time (setjmp), then
537 set RETURNS_TWICE to a nonzero value.
539 Similarly set NORETURN if the function is in the longjmp family.
541 Set MAY_BE_ALLOCA for any memory allocation function that might allocate
542 space from the stack such as alloca. */
545 special_function_p (const_tree fndecl
, int flags
)
547 tree name_decl
= DECL_NAME (fndecl
);
549 /* For instrumentation clones we want to derive flags
550 from the original name. */
551 if (cgraph_node::get (fndecl
)
552 && cgraph_node::get (fndecl
)->instrumentation_clone
)
553 name_decl
= DECL_NAME (cgraph_node::get (fndecl
)->orig_decl
);
555 if (fndecl
&& name_decl
556 && IDENTIFIER_LENGTH (name_decl
) <= 17
557 /* Exclude functions not at the file scope, or not `extern',
558 since they are not the magic functions we would otherwise
560 FIXME: this should be handled with attributes, not with this
561 hacky imitation of DECL_ASSEMBLER_NAME. It's (also) wrong
562 because you can declare fork() inside a function if you
564 && (DECL_CONTEXT (fndecl
) == NULL_TREE
565 || TREE_CODE (DECL_CONTEXT (fndecl
)) == TRANSLATION_UNIT_DECL
)
566 && TREE_PUBLIC (fndecl
))
568 const char *name
= IDENTIFIER_POINTER (name_decl
);
569 const char *tname
= name
;
571 /* We assume that alloca will always be called by name. It
572 makes no sense to pass it as a pointer-to-function to
573 anything that does not understand its behavior. */
574 if (((IDENTIFIER_LENGTH (name_decl
) == 6
576 && ! strcmp (name
, "alloca"))
577 || (IDENTIFIER_LENGTH (name_decl
) == 16
579 && ! strcmp (name
, "__builtin_alloca"))))
580 flags
|= ECF_MAY_BE_ALLOCA
;
582 /* Disregard prefix _, __, __x or __builtin_. */
587 && !strncmp (name
+ 3, "uiltin_", 7))
589 else if (name
[1] == '_' && name
[2] == 'x')
591 else if (name
[1] == '_')
600 && (! strcmp (tname
, "setjmp")
601 || ! strcmp (tname
, "setjmp_syscall")))
603 && ! strcmp (tname
, "sigsetjmp"))
605 && ! strcmp (tname
, "savectx")))
606 flags
|= ECF_RETURNS_TWICE
| ECF_LEAF
;
609 && ! strcmp (tname
, "siglongjmp"))
610 flags
|= ECF_NORETURN
;
612 else if ((tname
[0] == 'q' && tname
[1] == 's'
613 && ! strcmp (tname
, "qsetjmp"))
614 || (tname
[0] == 'v' && tname
[1] == 'f'
615 && ! strcmp (tname
, "vfork"))
616 || (tname
[0] == 'g' && tname
[1] == 'e'
617 && !strcmp (tname
, "getcontext")))
618 flags
|= ECF_RETURNS_TWICE
| ECF_LEAF
;
620 else if (tname
[0] == 'l' && tname
[1] == 'o'
621 && ! strcmp (tname
, "longjmp"))
622 flags
|= ECF_NORETURN
;
628 /* Similar to special_function_p; return a set of ERF_ flags for the
631 decl_return_flags (tree fndecl
)
634 tree type
= TREE_TYPE (fndecl
);
638 attr
= lookup_attribute ("fn spec", TYPE_ATTRIBUTES (type
));
642 attr
= TREE_VALUE (TREE_VALUE (attr
));
643 if (!attr
|| TREE_STRING_LENGTH (attr
) < 1)
646 switch (TREE_STRING_POINTER (attr
)[0])
652 return ERF_RETURNS_ARG
| (TREE_STRING_POINTER (attr
)[0] - '1');
663 /* Return nonzero when FNDECL represents a call to setjmp. */
666 setjmp_call_p (const_tree fndecl
)
668 if (DECL_IS_RETURNS_TWICE (fndecl
))
669 return ECF_RETURNS_TWICE
;
670 return special_function_p (fndecl
, 0) & ECF_RETURNS_TWICE
;
674 /* Return true if STMT is an alloca call. */
677 gimple_alloca_call_p (const_gimple stmt
)
681 if (!is_gimple_call (stmt
))
684 fndecl
= gimple_call_fndecl (stmt
);
685 if (fndecl
&& (special_function_p (fndecl
, 0) & ECF_MAY_BE_ALLOCA
))
691 /* Return true when exp contains alloca call. */
694 alloca_call_p (const_tree exp
)
697 if (TREE_CODE (exp
) == CALL_EXPR
698 && (fndecl
= get_callee_fndecl (exp
))
699 && (special_function_p (fndecl
, 0) & ECF_MAY_BE_ALLOCA
))
704 /* Return TRUE if FNDECL is either a TM builtin or a TM cloned
705 function. Return FALSE otherwise. */
708 is_tm_builtin (const_tree fndecl
)
713 if (decl_is_tm_clone (fndecl
))
716 if (DECL_BUILT_IN_CLASS (fndecl
) == BUILT_IN_NORMAL
)
718 switch (DECL_FUNCTION_CODE (fndecl
))
720 case BUILT_IN_TM_COMMIT
:
721 case BUILT_IN_TM_COMMIT_EH
:
722 case BUILT_IN_TM_ABORT
:
723 case BUILT_IN_TM_IRREVOCABLE
:
724 case BUILT_IN_TM_GETTMCLONE_IRR
:
725 case BUILT_IN_TM_MEMCPY
:
726 case BUILT_IN_TM_MEMMOVE
:
727 case BUILT_IN_TM_MEMSET
:
728 CASE_BUILT_IN_TM_STORE (1):
729 CASE_BUILT_IN_TM_STORE (2):
730 CASE_BUILT_IN_TM_STORE (4):
731 CASE_BUILT_IN_TM_STORE (8):
732 CASE_BUILT_IN_TM_STORE (FLOAT
):
733 CASE_BUILT_IN_TM_STORE (DOUBLE
):
734 CASE_BUILT_IN_TM_STORE (LDOUBLE
):
735 CASE_BUILT_IN_TM_STORE (M64
):
736 CASE_BUILT_IN_TM_STORE (M128
):
737 CASE_BUILT_IN_TM_STORE (M256
):
738 CASE_BUILT_IN_TM_LOAD (1):
739 CASE_BUILT_IN_TM_LOAD (2):
740 CASE_BUILT_IN_TM_LOAD (4):
741 CASE_BUILT_IN_TM_LOAD (8):
742 CASE_BUILT_IN_TM_LOAD (FLOAT
):
743 CASE_BUILT_IN_TM_LOAD (DOUBLE
):
744 CASE_BUILT_IN_TM_LOAD (LDOUBLE
):
745 CASE_BUILT_IN_TM_LOAD (M64
):
746 CASE_BUILT_IN_TM_LOAD (M128
):
747 CASE_BUILT_IN_TM_LOAD (M256
):
748 case BUILT_IN_TM_LOG
:
749 case BUILT_IN_TM_LOG_1
:
750 case BUILT_IN_TM_LOG_2
:
751 case BUILT_IN_TM_LOG_4
:
752 case BUILT_IN_TM_LOG_8
:
753 case BUILT_IN_TM_LOG_FLOAT
:
754 case BUILT_IN_TM_LOG_DOUBLE
:
755 case BUILT_IN_TM_LOG_LDOUBLE
:
756 case BUILT_IN_TM_LOG_M64
:
757 case BUILT_IN_TM_LOG_M128
:
758 case BUILT_IN_TM_LOG_M256
:
767 /* Detect flags (function attributes) from the function decl or type node. */
770 flags_from_decl_or_type (const_tree exp
)
776 /* The function exp may have the `malloc' attribute. */
777 if (DECL_IS_MALLOC (exp
))
780 /* The function exp may have the `returns_twice' attribute. */
781 if (DECL_IS_RETURNS_TWICE (exp
))
782 flags
|= ECF_RETURNS_TWICE
;
784 /* Process the pure and const attributes. */
785 if (TREE_READONLY (exp
))
787 if (DECL_PURE_P (exp
))
789 if (DECL_LOOPING_CONST_OR_PURE_P (exp
))
790 flags
|= ECF_LOOPING_CONST_OR_PURE
;
792 if (DECL_IS_NOVOPS (exp
))
794 if (lookup_attribute ("leaf", DECL_ATTRIBUTES (exp
)))
797 if (TREE_NOTHROW (exp
))
798 flags
|= ECF_NOTHROW
;
802 if (is_tm_builtin (exp
))
803 flags
|= ECF_TM_BUILTIN
;
804 else if ((flags
& (ECF_CONST
|ECF_NOVOPS
)) != 0
805 || lookup_attribute ("transaction_pure",
806 TYPE_ATTRIBUTES (TREE_TYPE (exp
))))
807 flags
|= ECF_TM_PURE
;
810 flags
= special_function_p (exp
, flags
);
812 else if (TYPE_P (exp
))
814 if (TYPE_READONLY (exp
))
818 && ((flags
& ECF_CONST
) != 0
819 || lookup_attribute ("transaction_pure", TYPE_ATTRIBUTES (exp
))))
820 flags
|= ECF_TM_PURE
;
825 if (TREE_THIS_VOLATILE (exp
))
827 flags
|= ECF_NORETURN
;
828 if (flags
& (ECF_CONST
|ECF_PURE
))
829 flags
|= ECF_LOOPING_CONST_OR_PURE
;
835 /* Detect flags from a CALL_EXPR. */
838 call_expr_flags (const_tree t
)
841 tree decl
= get_callee_fndecl (t
);
844 flags
= flags_from_decl_or_type (decl
);
845 else if (CALL_EXPR_FN (t
) == NULL_TREE
)
846 flags
= internal_fn_flags (CALL_EXPR_IFN (t
));
849 t
= TREE_TYPE (CALL_EXPR_FN (t
));
850 if (t
&& TREE_CODE (t
) == POINTER_TYPE
)
851 flags
= flags_from_decl_or_type (TREE_TYPE (t
));
859 /* Return true if TYPE should be passed by invisible reference. */
862 pass_by_reference (CUMULATIVE_ARGS
*ca
, machine_mode mode
,
863 tree type
, bool named_arg
)
867 /* If this type contains non-trivial constructors, then it is
868 forbidden for the middle-end to create any new copies. */
869 if (TREE_ADDRESSABLE (type
))
872 /* GCC post 3.4 passes *all* variable sized types by reference. */
873 if (!TYPE_SIZE (type
) || TREE_CODE (TYPE_SIZE (type
)) != INTEGER_CST
)
876 /* If a record type should be passed the same as its first (and only)
877 member, use the type and mode of that member. */
878 if (TREE_CODE (type
) == RECORD_TYPE
&& TYPE_TRANSPARENT_AGGR (type
))
880 type
= TREE_TYPE (first_field (type
));
881 mode
= TYPE_MODE (type
);
885 return targetm
.calls
.pass_by_reference (pack_cumulative_args (ca
), mode
,
889 /* Return true if TYPE, which is passed by reference, should be callee
890 copied instead of caller copied. */
893 reference_callee_copied (CUMULATIVE_ARGS
*ca
, machine_mode mode
,
894 tree type
, bool named_arg
)
896 if (type
&& TREE_ADDRESSABLE (type
))
898 return targetm
.calls
.callee_copies (pack_cumulative_args (ca
), mode
, type
,
903 /* Precompute all register parameters as described by ARGS, storing values
904 into fields within the ARGS array.
906 NUM_ACTUALS indicates the total number elements in the ARGS array.
908 Set REG_PARM_SEEN if we encounter a register parameter. */
911 precompute_register_parameters (int num_actuals
, struct arg_data
*args
,
918 for (i
= 0; i
< num_actuals
; i
++)
919 if (args
[i
].reg
!= 0 && ! args
[i
].pass_on_stack
)
923 if (args
[i
].value
== 0)
926 args
[i
].value
= expand_normal (args
[i
].tree_value
);
927 preserve_temp_slots (args
[i
].value
);
931 /* If we are to promote the function arg to a wider mode,
934 if (args
[i
].mode
!= TYPE_MODE (TREE_TYPE (args
[i
].tree_value
)))
936 = convert_modes (args
[i
].mode
,
937 TYPE_MODE (TREE_TYPE (args
[i
].tree_value
)),
938 args
[i
].value
, args
[i
].unsignedp
);
940 /* If the value is a non-legitimate constant, force it into a
941 pseudo now. TLS symbols sometimes need a call to resolve. */
942 if (CONSTANT_P (args
[i
].value
)
943 && !targetm
.legitimate_constant_p (args
[i
].mode
, args
[i
].value
))
944 args
[i
].value
= force_reg (args
[i
].mode
, args
[i
].value
);
946 /* If we're going to have to load the value by parts, pull the
947 parts into pseudos. The part extraction process can involve
948 non-trivial computation. */
949 if (GET_CODE (args
[i
].reg
) == PARALLEL
)
951 tree type
= TREE_TYPE (args
[i
].tree_value
);
952 args
[i
].parallel_value
953 = emit_group_load_into_temps (args
[i
].reg
, args
[i
].value
,
954 type
, int_size_in_bytes (type
));
957 /* If the value is expensive, and we are inside an appropriately
958 short loop, put the value into a pseudo and then put the pseudo
961 For small register classes, also do this if this call uses
962 register parameters. This is to avoid reload conflicts while
963 loading the parameters registers. */
965 else if ((! (REG_P (args
[i
].value
)
966 || (GET_CODE (args
[i
].value
) == SUBREG
967 && REG_P (SUBREG_REG (args
[i
].value
)))))
968 && args
[i
].mode
!= BLKmode
969 && set_src_cost (args
[i
].value
, optimize_insn_for_speed_p ())
972 && targetm
.small_register_classes_for_mode_p (args
[i
].mode
))
974 args
[i
].value
= copy_to_mode_reg (args
[i
].mode
, args
[i
].value
);
978 #ifdef REG_PARM_STACK_SPACE
980 /* The argument list is the property of the called routine and it
981 may clobber it. If the fixed area has been used for previous
982 parameters, we must save and restore it. */
985 save_fixed_argument_area (int reg_parm_stack_space
, rtx argblock
, int *low_to_save
, int *high_to_save
)
990 /* Compute the boundary of the area that needs to be saved, if any. */
991 high
= reg_parm_stack_space
;
992 if (ARGS_GROW_DOWNWARD
)
995 if (high
> highest_outgoing_arg_in_use
)
996 high
= highest_outgoing_arg_in_use
;
998 for (low
= 0; low
< high
; low
++)
999 if (stack_usage_map
[low
] != 0)
1002 machine_mode save_mode
;
1008 while (stack_usage_map
[--high
] == 0)
1012 *high_to_save
= high
;
1014 num_to_save
= high
- low
+ 1;
1015 save_mode
= mode_for_size (num_to_save
* BITS_PER_UNIT
, MODE_INT
, 1);
1017 /* If we don't have the required alignment, must do this
1019 if ((low
& (MIN (GET_MODE_SIZE (save_mode
),
1020 BIGGEST_ALIGNMENT
/ UNITS_PER_WORD
) - 1)))
1021 save_mode
= BLKmode
;
1023 if (ARGS_GROW_DOWNWARD
)
1028 addr
= plus_constant (Pmode
, argblock
, delta
);
1029 stack_area
= gen_rtx_MEM (save_mode
, memory_address (save_mode
, addr
));
1031 set_mem_align (stack_area
, PARM_BOUNDARY
);
1032 if (save_mode
== BLKmode
)
1034 save_area
= assign_stack_temp (BLKmode
, num_to_save
);
1035 emit_block_move (validize_mem (save_area
), stack_area
,
1036 GEN_INT (num_to_save
), BLOCK_OP_CALL_PARM
);
1040 save_area
= gen_reg_rtx (save_mode
);
1041 emit_move_insn (save_area
, stack_area
);
1051 restore_fixed_argument_area (rtx save_area
, rtx argblock
, int high_to_save
, int low_to_save
)
1053 machine_mode save_mode
= GET_MODE (save_area
);
1055 rtx addr
, stack_area
;
1057 if (ARGS_GROW_DOWNWARD
)
1058 delta
= -high_to_save
;
1060 delta
= low_to_save
;
1062 addr
= plus_constant (Pmode
, argblock
, delta
);
1063 stack_area
= gen_rtx_MEM (save_mode
, memory_address (save_mode
, addr
));
1064 set_mem_align (stack_area
, PARM_BOUNDARY
);
1066 if (save_mode
!= BLKmode
)
1067 emit_move_insn (stack_area
, save_area
);
1069 emit_block_move (stack_area
, validize_mem (save_area
),
1070 GEN_INT (high_to_save
- low_to_save
+ 1),
1071 BLOCK_OP_CALL_PARM
);
1073 #endif /* REG_PARM_STACK_SPACE */
1075 /* If any elements in ARGS refer to parameters that are to be passed in
1076 registers, but not in memory, and whose alignment does not permit a
1077 direct copy into registers. Copy the values into a group of pseudos
1078 which we will later copy into the appropriate hard registers.
1080 Pseudos for each unaligned argument will be stored into the array
1081 args[argnum].aligned_regs. The caller is responsible for deallocating
1082 the aligned_regs array if it is nonzero. */
1085 store_unaligned_arguments_into_pseudos (struct arg_data
*args
, int num_actuals
)
1089 for (i
= 0; i
< num_actuals
; i
++)
1090 if (args
[i
].reg
!= 0 && ! args
[i
].pass_on_stack
1091 && GET_CODE (args
[i
].reg
) != PARALLEL
1092 && args
[i
].mode
== BLKmode
1093 && MEM_P (args
[i
].value
)
1094 && (MEM_ALIGN (args
[i
].value
)
1095 < (unsigned int) MIN (BIGGEST_ALIGNMENT
, BITS_PER_WORD
)))
1097 int bytes
= int_size_in_bytes (TREE_TYPE (args
[i
].tree_value
));
1098 int endian_correction
= 0;
1100 if (args
[i
].partial
)
1102 gcc_assert (args
[i
].partial
% UNITS_PER_WORD
== 0);
1103 args
[i
].n_aligned_regs
= args
[i
].partial
/ UNITS_PER_WORD
;
1107 args
[i
].n_aligned_regs
1108 = (bytes
+ UNITS_PER_WORD
- 1) / UNITS_PER_WORD
;
1111 args
[i
].aligned_regs
= XNEWVEC (rtx
, args
[i
].n_aligned_regs
);
1113 /* Structures smaller than a word are normally aligned to the
1114 least significant byte. On a BYTES_BIG_ENDIAN machine,
1115 this means we must skip the empty high order bytes when
1116 calculating the bit offset. */
1117 if (bytes
< UNITS_PER_WORD
1118 #ifdef BLOCK_REG_PADDING
1119 && (BLOCK_REG_PADDING (args
[i
].mode
,
1120 TREE_TYPE (args
[i
].tree_value
), 1)
1126 endian_correction
= BITS_PER_WORD
- bytes
* BITS_PER_UNIT
;
1128 for (j
= 0; j
< args
[i
].n_aligned_regs
; j
++)
1130 rtx reg
= gen_reg_rtx (word_mode
);
1131 rtx word
= operand_subword_force (args
[i
].value
, j
, BLKmode
);
1132 int bitsize
= MIN (bytes
* BITS_PER_UNIT
, BITS_PER_WORD
);
1134 args
[i
].aligned_regs
[j
] = reg
;
1135 word
= extract_bit_field (word
, bitsize
, 0, 1, NULL_RTX
,
1136 word_mode
, word_mode
);
1138 /* There is no need to restrict this code to loading items
1139 in TYPE_ALIGN sized hunks. The bitfield instructions can
1140 load up entire word sized registers efficiently.
1142 ??? This may not be needed anymore.
1143 We use to emit a clobber here but that doesn't let later
1144 passes optimize the instructions we emit. By storing 0 into
1145 the register later passes know the first AND to zero out the
1146 bitfield being set in the register is unnecessary. The store
1147 of 0 will be deleted as will at least the first AND. */
1149 emit_move_insn (reg
, const0_rtx
);
1151 bytes
-= bitsize
/ BITS_PER_UNIT
;
1152 store_bit_field (reg
, bitsize
, endian_correction
, 0, 0,
1158 /* Fill in ARGS_SIZE and ARGS array based on the parameters found in
1161 NUM_ACTUALS is the total number of parameters.
1163 N_NAMED_ARGS is the total number of named arguments.
1165 STRUCT_VALUE_ADDR_VALUE is the implicit argument for a struct return
1168 FNDECL is the tree code for the target of this call (if known)
1170 ARGS_SO_FAR holds state needed by the target to know where to place
1173 REG_PARM_STACK_SPACE is the number of bytes of stack space reserved
1174 for arguments which are passed in registers.
1176 OLD_STACK_LEVEL is a pointer to an rtx which olds the old stack level
1177 and may be modified by this routine.
1179 OLD_PENDING_ADJ, MUST_PREALLOCATE and FLAGS are pointers to integer
1180 flags which may may be modified by this routine.
1182 MAY_TAILCALL is cleared if we encounter an invisible pass-by-reference
1183 that requires allocation of stack space.
1185 CALL_FROM_THUNK_P is true if this call is the jump from a thunk to
1186 the thunked-to function. */
1189 initialize_argument_information (int num_actuals ATTRIBUTE_UNUSED
,
1190 struct arg_data
*args
,
1191 struct args_size
*args_size
,
1192 int n_named_args ATTRIBUTE_UNUSED
,
1193 tree exp
, tree struct_value_addr_value
,
1194 tree fndecl
, tree fntype
,
1195 cumulative_args_t args_so_far
,
1196 int reg_parm_stack_space
,
1197 rtx
*old_stack_level
, int *old_pending_adj
,
1198 int *must_preallocate
, int *ecf_flags
,
1199 bool *may_tailcall
, bool call_from_thunk_p
)
1201 CUMULATIVE_ARGS
*args_so_far_pnt
= get_cumulative_args (args_so_far
);
1202 location_t loc
= EXPR_LOCATION (exp
);
1204 /* Count arg position in order args appear. */
1209 args_size
->constant
= 0;
1212 bitmap_obstack_initialize (NULL
);
1214 /* In this loop, we consider args in the order they are written.
1215 We fill up ARGS from the back. */
1217 i
= num_actuals
- 1;
1219 int j
= i
, ptr_arg
= -1;
1220 call_expr_arg_iterator iter
;
1222 bitmap slots
= NULL
;
1224 if (struct_value_addr_value
)
1226 args
[j
].tree_value
= struct_value_addr_value
;
1229 /* If we pass structure address then we need to
1230 create bounds for it. Since created bounds is
1231 a call statement, we expand it right here to avoid
1232 fixing all other places where it may be expanded. */
1233 if (CALL_WITH_BOUNDS_P (exp
))
1235 args
[j
].value
= gen_reg_rtx (targetm
.chkp_bound_mode ());
1237 = chkp_make_bounds_for_struct_addr (struct_value_addr_value
);
1238 expand_expr_real (args
[j
].tree_value
, args
[j
].value
, VOIDmode
,
1239 EXPAND_NORMAL
, 0, false);
1240 args
[j
].pointer_arg
= j
+ 1;
1244 FOR_EACH_CALL_EXPR_ARG (arg
, iter
, exp
)
1246 tree argtype
= TREE_TYPE (arg
);
1248 /* Remember last param with pointer and associate it
1249 with following pointer bounds. */
1250 if (CALL_WITH_BOUNDS_P (exp
)
1251 && chkp_type_has_pointer (argtype
))
1254 BITMAP_FREE (slots
);
1256 if (!BOUNDED_TYPE_P (argtype
))
1258 slots
= BITMAP_ALLOC (NULL
);
1259 chkp_find_bound_slots (argtype
, slots
);
1262 else if (POINTER_BOUNDS_TYPE_P (argtype
))
1264 /* We expect bounds in instrumented calls only.
1265 Otherwise it is a sign we lost flag due to some optimization
1266 and may emit call args incorrectly. */
1267 gcc_assert (CALL_WITH_BOUNDS_P (exp
));
1269 /* For structures look for the next available pointer. */
1270 if (ptr_arg
!= -1 && slots
)
1272 unsigned bnd_no
= bitmap_first_set_bit (slots
);
1273 args
[j
].pointer_offset
=
1274 bnd_no
* POINTER_SIZE
/ BITS_PER_UNIT
;
1276 bitmap_clear_bit (slots
, bnd_no
);
1278 /* Check we have no more pointers in the structure. */
1279 if (bitmap_empty_p (slots
))
1280 BITMAP_FREE (slots
);
1282 args
[j
].pointer_arg
= ptr_arg
;
1284 /* Check we covered all pointers in the previous
1292 if (targetm
.calls
.split_complex_arg
1294 && TREE_CODE (argtype
) == COMPLEX_TYPE
1295 && targetm
.calls
.split_complex_arg (argtype
))
1297 tree subtype
= TREE_TYPE (argtype
);
1298 args
[j
].tree_value
= build1 (REALPART_EXPR
, subtype
, arg
);
1300 args
[j
].tree_value
= build1 (IMAGPART_EXPR
, subtype
, arg
);
1303 args
[j
].tree_value
= arg
;
1308 BITMAP_FREE (slots
);
1311 bitmap_obstack_release (NULL
);
1313 /* I counts args in order (to be) pushed; ARGPOS counts in order written. */
1314 for (argpos
= 0; argpos
< num_actuals
; i
--, argpos
++)
1316 tree type
= TREE_TYPE (args
[i
].tree_value
);
1320 /* Replace erroneous argument with constant zero. */
1321 if (type
== error_mark_node
|| !COMPLETE_TYPE_P (type
))
1322 args
[i
].tree_value
= integer_zero_node
, type
= integer_type_node
;
1324 /* If TYPE is a transparent union or record, pass things the way
1325 we would pass the first field of the union or record. We have
1326 already verified that the modes are the same. */
1327 if ((TREE_CODE (type
) == UNION_TYPE
|| TREE_CODE (type
) == RECORD_TYPE
)
1328 && TYPE_TRANSPARENT_AGGR (type
))
1329 type
= TREE_TYPE (first_field (type
));
1331 /* Decide where to pass this arg.
1333 args[i].reg is nonzero if all or part is passed in registers.
1335 args[i].partial is nonzero if part but not all is passed in registers,
1336 and the exact value says how many bytes are passed in registers.
1338 args[i].pass_on_stack is nonzero if the argument must at least be
1339 computed on the stack. It may then be loaded back into registers
1340 if args[i].reg is nonzero.
1342 These decisions are driven by the FUNCTION_... macros and must agree
1343 with those made by function.c. */
1345 /* See if this argument should be passed by invisible reference. */
1346 if (pass_by_reference (args_so_far_pnt
, TYPE_MODE (type
),
1347 type
, argpos
< n_named_args
))
1350 tree base
= NULL_TREE
;
1353 = reference_callee_copied (args_so_far_pnt
, TYPE_MODE (type
),
1354 type
, argpos
< n_named_args
);
1356 /* If we're compiling a thunk, pass through invisible references
1357 instead of making a copy. */
1358 if (call_from_thunk_p
1360 && !TREE_ADDRESSABLE (type
)
1361 && (base
= get_base_address (args
[i
].tree_value
))
1362 && TREE_CODE (base
) != SSA_NAME
1363 && (!DECL_P (base
) || MEM_P (DECL_RTL (base
)))))
1365 /* We may have turned the parameter value into an SSA name.
1366 Go back to the original parameter so we can take the
1368 if (TREE_CODE (args
[i
].tree_value
) == SSA_NAME
)
1370 gcc_assert (SSA_NAME_IS_DEFAULT_DEF (args
[i
].tree_value
));
1371 args
[i
].tree_value
= SSA_NAME_VAR (args
[i
].tree_value
);
1372 gcc_assert (TREE_CODE (args
[i
].tree_value
) == PARM_DECL
);
1374 /* Argument setup code may have copied the value to register. We
1375 revert that optimization now because the tail call code must
1376 use the original location. */
1377 if (TREE_CODE (args
[i
].tree_value
) == PARM_DECL
1378 && !MEM_P (DECL_RTL (args
[i
].tree_value
))
1379 && DECL_INCOMING_RTL (args
[i
].tree_value
)
1380 && MEM_P (DECL_INCOMING_RTL (args
[i
].tree_value
)))
1381 set_decl_rtl (args
[i
].tree_value
,
1382 DECL_INCOMING_RTL (args
[i
].tree_value
));
1384 mark_addressable (args
[i
].tree_value
);
1386 /* We can't use sibcalls if a callee-copied argument is
1387 stored in the current function's frame. */
1388 if (!call_from_thunk_p
&& DECL_P (base
) && !TREE_STATIC (base
))
1389 *may_tailcall
= false;
1391 args
[i
].tree_value
= build_fold_addr_expr_loc (loc
,
1392 args
[i
].tree_value
);
1393 type
= TREE_TYPE (args
[i
].tree_value
);
1395 if (*ecf_flags
& ECF_CONST
)
1396 *ecf_flags
&= ~(ECF_CONST
| ECF_LOOPING_CONST_OR_PURE
);
1400 /* We make a copy of the object and pass the address to the
1401 function being called. */
1404 if (!COMPLETE_TYPE_P (type
)
1405 || TREE_CODE (TYPE_SIZE_UNIT (type
)) != INTEGER_CST
1406 || (flag_stack_check
== GENERIC_STACK_CHECK
1407 && compare_tree_int (TYPE_SIZE_UNIT (type
),
1408 STACK_CHECK_MAX_VAR_SIZE
) > 0))
1410 /* This is a variable-sized object. Make space on the stack
1412 rtx size_rtx
= expr_size (args
[i
].tree_value
);
1414 if (*old_stack_level
== 0)
1416 emit_stack_save (SAVE_BLOCK
, old_stack_level
);
1417 *old_pending_adj
= pending_stack_adjust
;
1418 pending_stack_adjust
= 0;
1421 /* We can pass TRUE as the 4th argument because we just
1422 saved the stack pointer and will restore it right after
1424 copy
= allocate_dynamic_stack_space (size_rtx
,
1428 copy
= gen_rtx_MEM (BLKmode
, copy
);
1429 set_mem_attributes (copy
, type
, 1);
1432 copy
= assign_temp (type
, 1, 0);
1434 store_expr (args
[i
].tree_value
, copy
, 0, false);
1436 /* Just change the const function to pure and then let
1437 the next test clear the pure based on
1439 if (*ecf_flags
& ECF_CONST
)
1441 *ecf_flags
&= ~ECF_CONST
;
1442 *ecf_flags
|= ECF_PURE
;
1445 if (!callee_copies
&& *ecf_flags
& ECF_PURE
)
1446 *ecf_flags
&= ~(ECF_PURE
| ECF_LOOPING_CONST_OR_PURE
);
1449 = build_fold_addr_expr_loc (loc
, make_tree (type
, copy
));
1450 type
= TREE_TYPE (args
[i
].tree_value
);
1451 *may_tailcall
= false;
1455 unsignedp
= TYPE_UNSIGNED (type
);
1456 mode
= promote_function_mode (type
, TYPE_MODE (type
), &unsignedp
,
1457 fndecl
? TREE_TYPE (fndecl
) : fntype
, 0);
1459 args
[i
].unsignedp
= unsignedp
;
1460 args
[i
].mode
= mode
;
1462 args
[i
].reg
= targetm
.calls
.function_arg (args_so_far
, mode
, type
,
1463 argpos
< n_named_args
);
1465 if (args
[i
].reg
&& CONST_INT_P (args
[i
].reg
))
1467 args
[i
].special_slot
= args
[i
].reg
;
1471 /* If this is a sibling call and the machine has register windows, the
1472 register window has to be unwinded before calling the routine, so
1473 arguments have to go into the incoming registers. */
1474 if (targetm
.calls
.function_incoming_arg
!= targetm
.calls
.function_arg
)
1475 args
[i
].tail_call_reg
1476 = targetm
.calls
.function_incoming_arg (args_so_far
, mode
, type
,
1477 argpos
< n_named_args
);
1479 args
[i
].tail_call_reg
= args
[i
].reg
;
1483 = targetm
.calls
.arg_partial_bytes (args_so_far
, mode
, type
,
1484 argpos
< n_named_args
);
1486 args
[i
].pass_on_stack
= targetm
.calls
.must_pass_in_stack (mode
, type
);
1488 /* If FUNCTION_ARG returned a (parallel [(expr_list (nil) ...) ...]),
1489 it means that we are to pass this arg in the register(s) designated
1490 by the PARALLEL, but also to pass it in the stack. */
1491 if (args
[i
].reg
&& GET_CODE (args
[i
].reg
) == PARALLEL
1492 && XEXP (XVECEXP (args
[i
].reg
, 0, 0), 0) == 0)
1493 args
[i
].pass_on_stack
= 1;
1495 /* If this is an addressable type, we must preallocate the stack
1496 since we must evaluate the object into its final location.
1498 If this is to be passed in both registers and the stack, it is simpler
1500 if (TREE_ADDRESSABLE (type
)
1501 || (args
[i
].pass_on_stack
&& args
[i
].reg
!= 0))
1502 *must_preallocate
= 1;
1504 /* No stack allocation and padding for bounds. */
1505 if (POINTER_BOUNDS_P (args
[i
].tree_value
))
1507 /* Compute the stack-size of this argument. */
1508 else if (args
[i
].reg
== 0 || args
[i
].partial
!= 0
1509 || reg_parm_stack_space
> 0
1510 || args
[i
].pass_on_stack
)
1511 locate_and_pad_parm (mode
, type
,
1512 #ifdef STACK_PARMS_IN_REG_PARM_AREA
1517 reg_parm_stack_space
,
1518 args
[i
].pass_on_stack
? 0 : args
[i
].partial
,
1519 fndecl
, args_size
, &args
[i
].locate
);
1520 #ifdef BLOCK_REG_PADDING
1522 /* The argument is passed entirely in registers. See at which
1523 end it should be padded. */
1524 args
[i
].locate
.where_pad
=
1525 BLOCK_REG_PADDING (mode
, type
,
1526 int_size_in_bytes (type
) <= UNITS_PER_WORD
);
1529 /* Update ARGS_SIZE, the total stack space for args so far. */
1531 args_size
->constant
+= args
[i
].locate
.size
.constant
;
1532 if (args
[i
].locate
.size
.var
)
1533 ADD_PARM_SIZE (*args_size
, args
[i
].locate
.size
.var
);
1535 /* Increment ARGS_SO_FAR, which has info about which arg-registers
1536 have been used, etc. */
1538 targetm
.calls
.function_arg_advance (args_so_far
, TYPE_MODE (type
),
1539 type
, argpos
< n_named_args
);
1543 /* Update ARGS_SIZE to contain the total size for the argument block.
1544 Return the original constant component of the argument block's size.
1546 REG_PARM_STACK_SPACE holds the number of bytes of stack space reserved
1547 for arguments passed in registers. */
1550 compute_argument_block_size (int reg_parm_stack_space
,
1551 struct args_size
*args_size
,
1552 tree fndecl ATTRIBUTE_UNUSED
,
1553 tree fntype ATTRIBUTE_UNUSED
,
1554 int preferred_stack_boundary ATTRIBUTE_UNUSED
)
1556 int unadjusted_args_size
= args_size
->constant
;
1558 /* For accumulate outgoing args mode we don't need to align, since the frame
1559 will be already aligned. Align to STACK_BOUNDARY in order to prevent
1560 backends from generating misaligned frame sizes. */
1561 if (ACCUMULATE_OUTGOING_ARGS
&& preferred_stack_boundary
> STACK_BOUNDARY
)
1562 preferred_stack_boundary
= STACK_BOUNDARY
;
1564 /* Compute the actual size of the argument block required. The variable
1565 and constant sizes must be combined, the size may have to be rounded,
1566 and there may be a minimum required size. */
1570 args_size
->var
= ARGS_SIZE_TREE (*args_size
);
1571 args_size
->constant
= 0;
1573 preferred_stack_boundary
/= BITS_PER_UNIT
;
1574 if (preferred_stack_boundary
> 1)
1576 /* We don't handle this case yet. To handle it correctly we have
1577 to add the delta, round and subtract the delta.
1578 Currently no machine description requires this support. */
1579 gcc_assert (!(stack_pointer_delta
& (preferred_stack_boundary
- 1)));
1580 args_size
->var
= round_up (args_size
->var
, preferred_stack_boundary
);
1583 if (reg_parm_stack_space
> 0)
1586 = size_binop (MAX_EXPR
, args_size
->var
,
1587 ssize_int (reg_parm_stack_space
));
1589 /* The area corresponding to register parameters is not to count in
1590 the size of the block we need. So make the adjustment. */
1591 if (! OUTGOING_REG_PARM_STACK_SPACE ((!fndecl
? fntype
: TREE_TYPE (fndecl
))))
1593 = size_binop (MINUS_EXPR
, args_size
->var
,
1594 ssize_int (reg_parm_stack_space
));
1599 preferred_stack_boundary
/= BITS_PER_UNIT
;
1600 if (preferred_stack_boundary
< 1)
1601 preferred_stack_boundary
= 1;
1602 args_size
->constant
= (((args_size
->constant
1603 + stack_pointer_delta
1604 + preferred_stack_boundary
- 1)
1605 / preferred_stack_boundary
1606 * preferred_stack_boundary
)
1607 - stack_pointer_delta
);
1609 args_size
->constant
= MAX (args_size
->constant
,
1610 reg_parm_stack_space
);
1612 if (! OUTGOING_REG_PARM_STACK_SPACE ((!fndecl
? fntype
: TREE_TYPE (fndecl
))))
1613 args_size
->constant
-= reg_parm_stack_space
;
1615 return unadjusted_args_size
;
1618 /* Precompute parameters as needed for a function call.
1620 FLAGS is mask of ECF_* constants.
1622 NUM_ACTUALS is the number of arguments.
1624 ARGS is an array containing information for each argument; this
1625 routine fills in the INITIAL_VALUE and VALUE fields for each
1626 precomputed argument. */
1629 precompute_arguments (int num_actuals
, struct arg_data
*args
)
1633 /* If this is a libcall, then precompute all arguments so that we do not
1634 get extraneous instructions emitted as part of the libcall sequence. */
1636 /* If we preallocated the stack space, and some arguments must be passed
1637 on the stack, then we must precompute any parameter which contains a
1638 function call which will store arguments on the stack.
1639 Otherwise, evaluating the parameter may clobber previous parameters
1640 which have already been stored into the stack. (we have code to avoid
1641 such case by saving the outgoing stack arguments, but it results in
1643 if (!ACCUMULATE_OUTGOING_ARGS
)
1646 for (i
= 0; i
< num_actuals
; i
++)
1651 if (TREE_CODE (args
[i
].tree_value
) != CALL_EXPR
)
1654 /* If this is an addressable type, we cannot pre-evaluate it. */
1655 type
= TREE_TYPE (args
[i
].tree_value
);
1656 gcc_assert (!TREE_ADDRESSABLE (type
));
1658 args
[i
].initial_value
= args
[i
].value
1659 = expand_normal (args
[i
].tree_value
);
1661 mode
= TYPE_MODE (type
);
1662 if (mode
!= args
[i
].mode
)
1664 int unsignedp
= args
[i
].unsignedp
;
1666 = convert_modes (args
[i
].mode
, mode
,
1667 args
[i
].value
, args
[i
].unsignedp
);
1669 /* CSE will replace this only if it contains args[i].value
1670 pseudo, so convert it down to the declared mode using
1672 if (REG_P (args
[i
].value
)
1673 && GET_MODE_CLASS (args
[i
].mode
) == MODE_INT
1674 && promote_mode (type
, mode
, &unsignedp
) != args
[i
].mode
)
1676 args
[i
].initial_value
1677 = gen_lowpart_SUBREG (mode
, args
[i
].value
);
1678 SUBREG_PROMOTED_VAR_P (args
[i
].initial_value
) = 1;
1679 SUBREG_PROMOTED_SET (args
[i
].initial_value
, args
[i
].unsignedp
);
1685 /* Given the current state of MUST_PREALLOCATE and information about
1686 arguments to a function call in NUM_ACTUALS, ARGS and ARGS_SIZE,
1687 compute and return the final value for MUST_PREALLOCATE. */
1690 finalize_must_preallocate (int must_preallocate
, int num_actuals
,
1691 struct arg_data
*args
, struct args_size
*args_size
)
1693 /* See if we have or want to preallocate stack space.
1695 If we would have to push a partially-in-regs parm
1696 before other stack parms, preallocate stack space instead.
1698 If the size of some parm is not a multiple of the required stack
1699 alignment, we must preallocate.
1701 If the total size of arguments that would otherwise create a copy in
1702 a temporary (such as a CALL) is more than half the total argument list
1703 size, preallocation is faster.
1705 Another reason to preallocate is if we have a machine (like the m88k)
1706 where stack alignment is required to be maintained between every
1707 pair of insns, not just when the call is made. However, we assume here
1708 that such machines either do not have push insns (and hence preallocation
1709 would occur anyway) or the problem is taken care of with
1712 if (! must_preallocate
)
1714 int partial_seen
= 0;
1715 int copy_to_evaluate_size
= 0;
1718 for (i
= 0; i
< num_actuals
&& ! must_preallocate
; i
++)
1720 if (args
[i
].partial
> 0 && ! args
[i
].pass_on_stack
)
1722 else if (partial_seen
&& args
[i
].reg
== 0)
1723 must_preallocate
= 1;
1724 /* We preallocate in case there are bounds passed
1725 in the bounds table to have precomputed address
1726 for bounds association. */
1727 else if (POINTER_BOUNDS_P (args
[i
].tree_value
)
1729 must_preallocate
= 1;
1731 if (TYPE_MODE (TREE_TYPE (args
[i
].tree_value
)) == BLKmode
1732 && (TREE_CODE (args
[i
].tree_value
) == CALL_EXPR
1733 || TREE_CODE (args
[i
].tree_value
) == TARGET_EXPR
1734 || TREE_CODE (args
[i
].tree_value
) == COND_EXPR
1735 || TREE_ADDRESSABLE (TREE_TYPE (args
[i
].tree_value
))))
1736 copy_to_evaluate_size
1737 += int_size_in_bytes (TREE_TYPE (args
[i
].tree_value
));
1740 if (copy_to_evaluate_size
* 2 >= args_size
->constant
1741 && args_size
->constant
> 0)
1742 must_preallocate
= 1;
1744 return must_preallocate
;
1747 /* If we preallocated stack space, compute the address of each argument
1748 and store it into the ARGS array.
1750 We need not ensure it is a valid memory address here; it will be
1751 validized when it is used.
1753 ARGBLOCK is an rtx for the address of the outgoing arguments. */
1756 compute_argument_addresses (struct arg_data
*args
, rtx argblock
, int num_actuals
)
1760 rtx arg_reg
= argblock
;
1761 int i
, arg_offset
= 0;
1763 if (GET_CODE (argblock
) == PLUS
)
1764 arg_reg
= XEXP (argblock
, 0), arg_offset
= INTVAL (XEXP (argblock
, 1));
1766 for (i
= 0; i
< num_actuals
; i
++)
1768 rtx offset
= ARGS_SIZE_RTX (args
[i
].locate
.offset
);
1769 rtx slot_offset
= ARGS_SIZE_RTX (args
[i
].locate
.slot_offset
);
1771 unsigned int align
, boundary
;
1772 unsigned int units_on_stack
= 0;
1773 machine_mode partial_mode
= VOIDmode
;
1775 /* Skip this parm if it will not be passed on the stack. */
1776 if (! args
[i
].pass_on_stack
1778 && args
[i
].partial
== 0)
1781 /* Pointer Bounds are never passed on the stack. */
1782 if (POINTER_BOUNDS_P (args
[i
].tree_value
))
1785 if (CONST_INT_P (offset
))
1786 addr
= plus_constant (Pmode
, arg_reg
, INTVAL (offset
));
1788 addr
= gen_rtx_PLUS (Pmode
, arg_reg
, offset
);
1790 addr
= plus_constant (Pmode
, addr
, arg_offset
);
1792 if (args
[i
].partial
!= 0)
1794 /* Only part of the parameter is being passed on the stack.
1795 Generate a simple memory reference of the correct size. */
1796 units_on_stack
= args
[i
].locate
.size
.constant
;
1797 partial_mode
= mode_for_size (units_on_stack
* BITS_PER_UNIT
,
1799 args
[i
].stack
= gen_rtx_MEM (partial_mode
, addr
);
1800 set_mem_size (args
[i
].stack
, units_on_stack
);
1804 args
[i
].stack
= gen_rtx_MEM (args
[i
].mode
, addr
);
1805 set_mem_attributes (args
[i
].stack
,
1806 TREE_TYPE (args
[i
].tree_value
), 1);
1808 align
= BITS_PER_UNIT
;
1809 boundary
= args
[i
].locate
.boundary
;
1810 if (args
[i
].locate
.where_pad
!= downward
)
1812 else if (CONST_INT_P (offset
))
1814 align
= INTVAL (offset
) * BITS_PER_UNIT
| boundary
;
1815 align
= align
& -align
;
1817 set_mem_align (args
[i
].stack
, align
);
1819 if (CONST_INT_P (slot_offset
))
1820 addr
= plus_constant (Pmode
, arg_reg
, INTVAL (slot_offset
));
1822 addr
= gen_rtx_PLUS (Pmode
, arg_reg
, slot_offset
);
1824 addr
= plus_constant (Pmode
, addr
, arg_offset
);
1826 if (args
[i
].partial
!= 0)
1828 /* Only part of the parameter is being passed on the stack.
1829 Generate a simple memory reference of the correct size.
1831 args
[i
].stack_slot
= gen_rtx_MEM (partial_mode
, addr
);
1832 set_mem_size (args
[i
].stack_slot
, units_on_stack
);
1836 args
[i
].stack_slot
= gen_rtx_MEM (args
[i
].mode
, addr
);
1837 set_mem_attributes (args
[i
].stack_slot
,
1838 TREE_TYPE (args
[i
].tree_value
), 1);
1840 set_mem_align (args
[i
].stack_slot
, args
[i
].locate
.boundary
);
1842 /* Function incoming arguments may overlap with sibling call
1843 outgoing arguments and we cannot allow reordering of reads
1844 from function arguments with stores to outgoing arguments
1845 of sibling calls. */
1846 set_mem_alias_set (args
[i
].stack
, 0);
1847 set_mem_alias_set (args
[i
].stack_slot
, 0);
1852 /* Given a FNDECL and EXP, return an rtx suitable for use as a target address
1853 in a call instruction.
1855 FNDECL is the tree node for the target function. For an indirect call
1856 FNDECL will be NULL_TREE.
1858 ADDR is the operand 0 of CALL_EXPR for this call. */
1861 rtx_for_function_call (tree fndecl
, tree addr
)
1865 /* Get the function to call, in the form of RTL. */
1868 if (!TREE_USED (fndecl
) && fndecl
!= current_function_decl
)
1869 TREE_USED (fndecl
) = 1;
1871 /* Get a SYMBOL_REF rtx for the function address. */
1872 funexp
= XEXP (DECL_RTL (fndecl
), 0);
1875 /* Generate an rtx (probably a pseudo-register) for the address. */
1878 funexp
= expand_normal (addr
);
1879 pop_temp_slots (); /* FUNEXP can't be BLKmode. */
1884 /* Internal state for internal_arg_pointer_based_exp and its helpers. */
1887 /* Last insn that has been scanned by internal_arg_pointer_based_exp_scan,
1888 or NULL_RTX if none has been scanned yet. */
1889 rtx_insn
*scan_start
;
1890 /* Vector indexed by REGNO - FIRST_PSEUDO_REGISTER, recording if a pseudo is
1891 based on crtl->args.internal_arg_pointer. The element is NULL_RTX if the
1892 pseudo isn't based on it, a CONST_INT offset if the pseudo is based on it
1893 with fixed offset, or PC if this is with variable or unknown offset. */
1895 } internal_arg_pointer_exp_state
;
1897 static rtx
internal_arg_pointer_based_exp (const_rtx
, bool);
1899 /* Helper function for internal_arg_pointer_based_exp. Scan insns in
1900 the tail call sequence, starting with first insn that hasn't been
1901 scanned yet, and note for each pseudo on the LHS whether it is based
1902 on crtl->args.internal_arg_pointer or not, and what offset from that
1903 that pointer it has. */
1906 internal_arg_pointer_based_exp_scan (void)
1908 rtx_insn
*insn
, *scan_start
= internal_arg_pointer_exp_state
.scan_start
;
1910 if (scan_start
== NULL_RTX
)
1911 insn
= get_insns ();
1913 insn
= NEXT_INSN (scan_start
);
1917 rtx set
= single_set (insn
);
1918 if (set
&& REG_P (SET_DEST (set
)) && !HARD_REGISTER_P (SET_DEST (set
)))
1921 unsigned int idx
= REGNO (SET_DEST (set
)) - FIRST_PSEUDO_REGISTER
;
1922 /* Punt on pseudos set multiple times. */
1923 if (idx
< internal_arg_pointer_exp_state
.cache
.length ()
1924 && (internal_arg_pointer_exp_state
.cache
[idx
]
1928 val
= internal_arg_pointer_based_exp (SET_SRC (set
), false);
1929 if (val
!= NULL_RTX
)
1931 if (idx
>= internal_arg_pointer_exp_state
.cache
.length ())
1932 internal_arg_pointer_exp_state
.cache
1933 .safe_grow_cleared (idx
+ 1);
1934 internal_arg_pointer_exp_state
.cache
[idx
] = val
;
1937 if (NEXT_INSN (insn
) == NULL_RTX
)
1939 insn
= NEXT_INSN (insn
);
1942 internal_arg_pointer_exp_state
.scan_start
= scan_start
;
1945 /* Compute whether RTL is based on crtl->args.internal_arg_pointer. Return
1946 NULL_RTX if RTL isn't based on it, a CONST_INT offset if RTL is based on
1947 it with fixed offset, or PC if this is with variable or unknown offset.
1948 TOPLEVEL is true if the function is invoked at the topmost level. */
1951 internal_arg_pointer_based_exp (const_rtx rtl
, bool toplevel
)
1953 if (CONSTANT_P (rtl
))
1956 if (rtl
== crtl
->args
.internal_arg_pointer
)
1959 if (REG_P (rtl
) && HARD_REGISTER_P (rtl
))
1962 if (GET_CODE (rtl
) == PLUS
&& CONST_INT_P (XEXP (rtl
, 1)))
1964 rtx val
= internal_arg_pointer_based_exp (XEXP (rtl
, 0), toplevel
);
1965 if (val
== NULL_RTX
|| val
== pc_rtx
)
1967 return plus_constant (Pmode
, val
, INTVAL (XEXP (rtl
, 1)));
1970 /* When called at the topmost level, scan pseudo assignments in between the
1971 last scanned instruction in the tail call sequence and the latest insn
1972 in that sequence. */
1974 internal_arg_pointer_based_exp_scan ();
1978 unsigned int idx
= REGNO (rtl
) - FIRST_PSEUDO_REGISTER
;
1979 if (idx
< internal_arg_pointer_exp_state
.cache
.length ())
1980 return internal_arg_pointer_exp_state
.cache
[idx
];
1985 subrtx_iterator::array_type array
;
1986 FOR_EACH_SUBRTX (iter
, array
, rtl
, NONCONST
)
1988 const_rtx x
= *iter
;
1989 if (REG_P (x
) && internal_arg_pointer_based_exp (x
, false) != NULL_RTX
)
1992 iter
.skip_subrtxes ();
1998 /* Return true if and only if SIZE storage units (usually bytes)
1999 starting from address ADDR overlap with already clobbered argument
2000 area. This function is used to determine if we should give up a
2004 mem_overlaps_already_clobbered_arg_p (rtx addr
, unsigned HOST_WIDE_INT size
)
2009 if (bitmap_empty_p (stored_args_map
))
2011 val
= internal_arg_pointer_based_exp (addr
, true);
2012 if (val
== NULL_RTX
)
2014 else if (val
== pc_rtx
)
2019 if (STACK_GROWS_DOWNWARD
)
2020 i
-= crtl
->args
.pretend_args_size
;
2022 i
+= crtl
->args
.pretend_args_size
;
2025 if (ARGS_GROW_DOWNWARD
)
2030 unsigned HOST_WIDE_INT k
;
2032 for (k
= 0; k
< size
; k
++)
2033 if (i
+ k
< SBITMAP_SIZE (stored_args_map
)
2034 && bitmap_bit_p (stored_args_map
, i
+ k
))
2041 /* Do the register loads required for any wholly-register parms or any
2042 parms which are passed both on the stack and in a register. Their
2043 expressions were already evaluated.
2045 Mark all register-parms as living through the call, putting these USE
2046 insns in the CALL_INSN_FUNCTION_USAGE field.
2048 When IS_SIBCALL, perform the check_sibcall_argument_overlap
2049 checking, setting *SIBCALL_FAILURE if appropriate. */
2052 load_register_parameters (struct arg_data
*args
, int num_actuals
,
2053 rtx
*call_fusage
, int flags
, int is_sibcall
,
2054 int *sibcall_failure
)
2058 for (i
= 0; i
< num_actuals
; i
++)
2060 rtx reg
= ((flags
& ECF_SIBCALL
)
2061 ? args
[i
].tail_call_reg
: args
[i
].reg
);
2064 int partial
= args
[i
].partial
;
2067 rtx_insn
*before_arg
= get_last_insn ();
2068 /* Set non-negative if we must move a word at a time, even if
2069 just one word (e.g, partial == 4 && mode == DFmode). Set
2070 to -1 if we just use a normal move insn. This value can be
2071 zero if the argument is a zero size structure. */
2073 if (GET_CODE (reg
) == PARALLEL
)
2077 gcc_assert (partial
% UNITS_PER_WORD
== 0);
2078 nregs
= partial
/ UNITS_PER_WORD
;
2080 else if (TYPE_MODE (TREE_TYPE (args
[i
].tree_value
)) == BLKmode
)
2082 size
= int_size_in_bytes (TREE_TYPE (args
[i
].tree_value
));
2083 nregs
= (size
+ (UNITS_PER_WORD
- 1)) / UNITS_PER_WORD
;
2086 size
= GET_MODE_SIZE (args
[i
].mode
);
2088 /* Handle calls that pass values in multiple non-contiguous
2089 locations. The Irix 6 ABI has examples of this. */
2091 if (GET_CODE (reg
) == PARALLEL
)
2092 emit_group_move (reg
, args
[i
].parallel_value
);
2094 /* If simple case, just do move. If normal partial, store_one_arg
2095 has already loaded the register for us. In all other cases,
2096 load the register(s) from memory. */
2098 else if (nregs
== -1)
2100 emit_move_insn (reg
, args
[i
].value
);
2101 #ifdef BLOCK_REG_PADDING
2102 /* Handle case where we have a value that needs shifting
2103 up to the msb. eg. a QImode value and we're padding
2104 upward on a BYTES_BIG_ENDIAN machine. */
2105 if (size
< UNITS_PER_WORD
2106 && (args
[i
].locate
.where_pad
2107 == (BYTES_BIG_ENDIAN
? upward
: downward
)))
2110 int shift
= (UNITS_PER_WORD
- size
) * BITS_PER_UNIT
;
2112 /* Assigning REG here rather than a temp makes CALL_FUSAGE
2113 report the whole reg as used. Strictly speaking, the
2114 call only uses SIZE bytes at the msb end, but it doesn't
2115 seem worth generating rtl to say that. */
2116 reg
= gen_rtx_REG (word_mode
, REGNO (reg
));
2117 x
= expand_shift (LSHIFT_EXPR
, word_mode
, reg
, shift
, reg
, 1);
2119 emit_move_insn (reg
, x
);
2124 /* If we have pre-computed the values to put in the registers in
2125 the case of non-aligned structures, copy them in now. */
2127 else if (args
[i
].n_aligned_regs
!= 0)
2128 for (j
= 0; j
< args
[i
].n_aligned_regs
; j
++)
2129 emit_move_insn (gen_rtx_REG (word_mode
, REGNO (reg
) + j
),
2130 args
[i
].aligned_regs
[j
]);
2132 else if (partial
== 0 || args
[i
].pass_on_stack
)
2134 rtx mem
= validize_mem (copy_rtx (args
[i
].value
));
2136 /* Check for overlap with already clobbered argument area,
2137 providing that this has non-zero size. */
2140 || mem_overlaps_already_clobbered_arg_p
2141 (XEXP (args
[i
].value
, 0), size
)))
2142 *sibcall_failure
= 1;
2144 if (size
% UNITS_PER_WORD
== 0
2145 || MEM_ALIGN (mem
) % BITS_PER_WORD
== 0)
2146 move_block_to_reg (REGNO (reg
), mem
, nregs
, args
[i
].mode
);
2150 move_block_to_reg (REGNO (reg
), mem
, nregs
- 1,
2152 rtx dest
= gen_rtx_REG (word_mode
, REGNO (reg
) + nregs
- 1);
2153 unsigned int bitoff
= (nregs
- 1) * BITS_PER_WORD
;
2154 unsigned int bitsize
= size
* BITS_PER_UNIT
- bitoff
;
2155 rtx x
= extract_bit_field (mem
, bitsize
, bitoff
, 1,
2156 dest
, word_mode
, word_mode
);
2157 if (BYTES_BIG_ENDIAN
)
2158 x
= expand_shift (LSHIFT_EXPR
, word_mode
, x
,
2159 BITS_PER_WORD
- bitsize
, dest
, 1);
2161 emit_move_insn (dest
, x
);
2164 /* Handle a BLKmode that needs shifting. */
2165 if (nregs
== 1 && size
< UNITS_PER_WORD
2166 #ifdef BLOCK_REG_PADDING
2167 && args
[i
].locate
.where_pad
== downward
2173 rtx dest
= gen_rtx_REG (word_mode
, REGNO (reg
));
2174 int shift
= (UNITS_PER_WORD
- size
) * BITS_PER_UNIT
;
2175 enum tree_code dir
= (BYTES_BIG_ENDIAN
2176 ? RSHIFT_EXPR
: LSHIFT_EXPR
);
2179 x
= expand_shift (dir
, word_mode
, dest
, shift
, dest
, 1);
2181 emit_move_insn (dest
, x
);
2185 /* When a parameter is a block, and perhaps in other cases, it is
2186 possible that it did a load from an argument slot that was
2187 already clobbered. */
2189 && check_sibcall_argument_overlap (before_arg
, &args
[i
], 0))
2190 *sibcall_failure
= 1;
2192 /* Handle calls that pass values in multiple non-contiguous
2193 locations. The Irix 6 ABI has examples of this. */
2194 if (GET_CODE (reg
) == PARALLEL
)
2195 use_group_regs (call_fusage
, reg
);
2196 else if (nregs
== -1)
2197 use_reg_mode (call_fusage
, reg
,
2198 TYPE_MODE (TREE_TYPE (args
[i
].tree_value
)));
2200 use_regs (call_fusage
, REGNO (reg
), nregs
);
2205 /* We need to pop PENDING_STACK_ADJUST bytes. But, if the arguments
2206 wouldn't fill up an even multiple of PREFERRED_UNIT_STACK_BOUNDARY
2207 bytes, then we would need to push some additional bytes to pad the
2208 arguments. So, we compute an adjust to the stack pointer for an
2209 amount that will leave the stack under-aligned by UNADJUSTED_ARGS_SIZE
2210 bytes. Then, when the arguments are pushed the stack will be perfectly
2211 aligned. ARGS_SIZE->CONSTANT is set to the number of bytes that should
2212 be popped after the call. Returns the adjustment. */
2215 combine_pending_stack_adjustment_and_call (int unadjusted_args_size
,
2216 struct args_size
*args_size
,
2217 unsigned int preferred_unit_stack_boundary
)
2219 /* The number of bytes to pop so that the stack will be
2220 under-aligned by UNADJUSTED_ARGS_SIZE bytes. */
2221 HOST_WIDE_INT adjustment
;
2222 /* The alignment of the stack after the arguments are pushed, if we
2223 just pushed the arguments without adjust the stack here. */
2224 unsigned HOST_WIDE_INT unadjusted_alignment
;
2226 unadjusted_alignment
2227 = ((stack_pointer_delta
+ unadjusted_args_size
)
2228 % preferred_unit_stack_boundary
);
2230 /* We want to get rid of as many of the PENDING_STACK_ADJUST bytes
2231 as possible -- leaving just enough left to cancel out the
2232 UNADJUSTED_ALIGNMENT. In other words, we want to ensure that the
2233 PENDING_STACK_ADJUST is non-negative, and congruent to
2234 -UNADJUSTED_ALIGNMENT modulo the PREFERRED_UNIT_STACK_BOUNDARY. */
2236 /* Begin by trying to pop all the bytes. */
2237 unadjusted_alignment
2238 = (unadjusted_alignment
2239 - (pending_stack_adjust
% preferred_unit_stack_boundary
));
2240 adjustment
= pending_stack_adjust
;
2241 /* Push enough additional bytes that the stack will be aligned
2242 after the arguments are pushed. */
2243 if (preferred_unit_stack_boundary
> 1)
2245 if (unadjusted_alignment
> 0)
2246 adjustment
-= preferred_unit_stack_boundary
- unadjusted_alignment
;
2248 adjustment
+= unadjusted_alignment
;
2251 /* Now, sets ARGS_SIZE->CONSTANT so that we pop the right number of
2252 bytes after the call. The right number is the entire
2253 PENDING_STACK_ADJUST less our ADJUSTMENT plus the amount required
2254 by the arguments in the first place. */
2256 = pending_stack_adjust
- adjustment
+ unadjusted_args_size
;
2261 /* Scan X expression if it does not dereference any argument slots
2262 we already clobbered by tail call arguments (as noted in stored_args_map
2264 Return nonzero if X expression dereferences such argument slots,
2268 check_sibcall_argument_overlap_1 (rtx x
)
2277 code
= GET_CODE (x
);
2279 /* We need not check the operands of the CALL expression itself. */
2284 return mem_overlaps_already_clobbered_arg_p (XEXP (x
, 0),
2285 GET_MODE_SIZE (GET_MODE (x
)));
2287 /* Scan all subexpressions. */
2288 fmt
= GET_RTX_FORMAT (code
);
2289 for (i
= 0; i
< GET_RTX_LENGTH (code
); i
++, fmt
++)
2293 if (check_sibcall_argument_overlap_1 (XEXP (x
, i
)))
2296 else if (*fmt
== 'E')
2298 for (j
= 0; j
< XVECLEN (x
, i
); j
++)
2299 if (check_sibcall_argument_overlap_1 (XVECEXP (x
, i
, j
)))
2306 /* Scan sequence after INSN if it does not dereference any argument slots
2307 we already clobbered by tail call arguments (as noted in stored_args_map
2308 bitmap). If MARK_STORED_ARGS_MAP, add stack slots for ARG to
2309 stored_args_map bitmap afterwards (when ARG is a register MARK_STORED_ARGS_MAP
2310 should be 0). Return nonzero if sequence after INSN dereferences such argument
2311 slots, zero otherwise. */
2314 check_sibcall_argument_overlap (rtx_insn
*insn
, struct arg_data
*arg
,
2315 int mark_stored_args_map
)
2319 if (insn
== NULL_RTX
)
2320 insn
= get_insns ();
2322 insn
= NEXT_INSN (insn
);
2324 for (; insn
; insn
= NEXT_INSN (insn
))
2326 && check_sibcall_argument_overlap_1 (PATTERN (insn
)))
2329 if (mark_stored_args_map
)
2331 if (ARGS_GROW_DOWNWARD
)
2332 low
= -arg
->locate
.slot_offset
.constant
- arg
->locate
.size
.constant
;
2334 low
= arg
->locate
.slot_offset
.constant
;
2336 for (high
= low
+ arg
->locate
.size
.constant
; low
< high
; low
++)
2337 bitmap_set_bit (stored_args_map
, low
);
2339 return insn
!= NULL_RTX
;
2342 /* Given that a function returns a value of mode MODE at the most
2343 significant end of hard register VALUE, shift VALUE left or right
2344 as specified by LEFT_P. Return true if some action was needed. */
2347 shift_return_value (machine_mode mode
, bool left_p
, rtx value
)
2349 HOST_WIDE_INT shift
;
2351 gcc_assert (REG_P (value
) && HARD_REGISTER_P (value
));
2352 shift
= GET_MODE_BITSIZE (GET_MODE (value
)) - GET_MODE_BITSIZE (mode
);
2356 /* Use ashr rather than lshr for right shifts. This is for the benefit
2357 of the MIPS port, which requires SImode values to be sign-extended
2358 when stored in 64-bit registers. */
2359 if (!force_expand_binop (GET_MODE (value
), left_p
? ashl_optab
: ashr_optab
,
2360 value
, GEN_INT (shift
), value
, 1, OPTAB_WIDEN
))
2365 /* If X is a likely-spilled register value, copy it to a pseudo
2366 register and return that register. Return X otherwise. */
2369 avoid_likely_spilled_reg (rtx x
)
2374 && HARD_REGISTER_P (x
)
2375 && targetm
.class_likely_spilled_p (REGNO_REG_CLASS (REGNO (x
))))
2377 /* Make sure that we generate a REG rather than a CONCAT.
2378 Moves into CONCATs can need nontrivial instructions,
2379 and the whole point of this function is to avoid
2380 using the hard register directly in such a situation. */
2381 generating_concat_p
= 0;
2382 new_rtx
= gen_reg_rtx (GET_MODE (x
));
2383 generating_concat_p
= 1;
2384 emit_move_insn (new_rtx
, x
);
2390 /* Generate all the code for a CALL_EXPR exp
2391 and return an rtx for its value.
2392 Store the value in TARGET (specified as an rtx) if convenient.
2393 If the value is stored in TARGET then TARGET is returned.
2394 If IGNORE is nonzero, then we ignore the value of the function call. */
2397 expand_call (tree exp
, rtx target
, int ignore
)
2399 /* Nonzero if we are currently expanding a call. */
2400 static int currently_expanding_call
= 0;
2402 /* RTX for the function to be called. */
2404 /* Sequence of insns to perform a normal "call". */
2405 rtx_insn
*normal_call_insns
= NULL
;
2406 /* Sequence of insns to perform a tail "call". */
2407 rtx_insn
*tail_call_insns
= NULL
;
2408 /* Data type of the function. */
2410 tree type_arg_types
;
2412 /* Declaration of the function being called,
2413 or 0 if the function is computed (not known by name). */
2415 /* The type of the function being called. */
2417 bool try_tail_call
= CALL_EXPR_TAILCALL (exp
);
2420 /* Register in which non-BLKmode value will be returned,
2421 or 0 if no value or if value is BLKmode. */
2423 /* Register(s) in which bounds are returned. */
2425 /* Address where we should return a BLKmode value;
2426 0 if value not BLKmode. */
2427 rtx structure_value_addr
= 0;
2428 /* Nonzero if that address is being passed by treating it as
2429 an extra, implicit first parameter. Otherwise,
2430 it is passed by being copied directly into struct_value_rtx. */
2431 int structure_value_addr_parm
= 0;
2432 /* Holds the value of implicit argument for the struct value. */
2433 tree structure_value_addr_value
= NULL_TREE
;
2434 /* Size of aggregate value wanted, or zero if none wanted
2435 or if we are using the non-reentrant PCC calling convention
2436 or expecting the value in registers. */
2437 HOST_WIDE_INT struct_value_size
= 0;
2438 /* Nonzero if called function returns an aggregate in memory PCC style,
2439 by returning the address of where to find it. */
2440 int pcc_struct_value
= 0;
2441 rtx struct_value
= 0;
2443 /* Number of actual parameters in this call, including struct value addr. */
2445 /* Number of named args. Args after this are anonymous ones
2446 and they must all go on the stack. */
2448 /* Number of complex actual arguments that need to be split. */
2449 int num_complex_actuals
= 0;
2451 /* Vector of information about each argument.
2452 Arguments are numbered in the order they will be pushed,
2453 not the order they are written. */
2454 struct arg_data
*args
;
2456 /* Total size in bytes of all the stack-parms scanned so far. */
2457 struct args_size args_size
;
2458 struct args_size adjusted_args_size
;
2459 /* Size of arguments before any adjustments (such as rounding). */
2460 int unadjusted_args_size
;
2461 /* Data on reg parms scanned so far. */
2462 CUMULATIVE_ARGS args_so_far_v
;
2463 cumulative_args_t args_so_far
;
2464 /* Nonzero if a reg parm has been scanned. */
2466 /* Nonzero if this is an indirect function call. */
2468 /* Nonzero if we must avoid push-insns in the args for this call.
2469 If stack space is allocated for register parameters, but not by the
2470 caller, then it is preallocated in the fixed part of the stack frame.
2471 So the entire argument block must then be preallocated (i.e., we
2472 ignore PUSH_ROUNDING in that case). */
2474 int must_preallocate
= !PUSH_ARGS
;
2476 /* Size of the stack reserved for parameter registers. */
2477 int reg_parm_stack_space
= 0;
2479 /* Address of space preallocated for stack parms
2480 (on machines that lack push insns), or 0 if space not preallocated. */
2483 /* Mask of ECF_ and ERF_ flags. */
2485 int return_flags
= 0;
2486 #ifdef REG_PARM_STACK_SPACE
2487 /* Define the boundary of the register parm stack space that needs to be
2489 int low_to_save
, high_to_save
;
2490 rtx save_area
= 0; /* Place that it is saved */
2493 int initial_highest_arg_in_use
= highest_outgoing_arg_in_use
;
2494 char *initial_stack_usage_map
= stack_usage_map
;
2495 char *stack_usage_map_buf
= NULL
;
2497 int old_stack_allocated
;
2499 /* State variables to track stack modifications. */
2500 rtx old_stack_level
= 0;
2501 int old_stack_arg_under_construction
= 0;
2502 int old_pending_adj
= 0;
2503 int old_inhibit_defer_pop
= inhibit_defer_pop
;
2505 /* Some stack pointer alterations we make are performed via
2506 allocate_dynamic_stack_space. This modifies the stack_pointer_delta,
2507 which we then also need to save/restore along the way. */
2508 int old_stack_pointer_delta
= 0;
2511 tree addr
= CALL_EXPR_FN (exp
);
2513 /* The alignment of the stack, in bits. */
2514 unsigned HOST_WIDE_INT preferred_stack_boundary
;
2515 /* The alignment of the stack, in bytes. */
2516 unsigned HOST_WIDE_INT preferred_unit_stack_boundary
;
2517 /* The static chain value to use for this call. */
2518 rtx static_chain_value
;
2519 /* See if this is "nothrow" function call. */
2520 if (TREE_NOTHROW (exp
))
2521 flags
|= ECF_NOTHROW
;
2523 /* See if we can find a DECL-node for the actual function, and get the
2524 function attributes (flags) from the function decl or type node. */
2525 fndecl
= get_callee_fndecl (exp
);
2528 fntype
= TREE_TYPE (fndecl
);
2529 flags
|= flags_from_decl_or_type (fndecl
);
2530 return_flags
|= decl_return_flags (fndecl
);
2534 fntype
= TREE_TYPE (TREE_TYPE (addr
));
2535 flags
|= flags_from_decl_or_type (fntype
);
2537 rettype
= TREE_TYPE (exp
);
2539 struct_value
= targetm
.calls
.struct_value_rtx (fntype
, 0);
2541 /* Warn if this value is an aggregate type,
2542 regardless of which calling convention we are using for it. */
2543 if (AGGREGATE_TYPE_P (rettype
))
2544 warning (OPT_Waggregate_return
, "function call has aggregate value");
2546 /* If the result of a non looping pure or const function call is
2547 ignored (or void), and none of its arguments are volatile, we can
2548 avoid expanding the call and just evaluate the arguments for
2550 if ((flags
& (ECF_CONST
| ECF_PURE
))
2551 && (!(flags
& ECF_LOOPING_CONST_OR_PURE
))
2552 && (ignore
|| target
== const0_rtx
2553 || TYPE_MODE (rettype
) == VOIDmode
))
2555 bool volatilep
= false;
2557 call_expr_arg_iterator iter
;
2559 FOR_EACH_CALL_EXPR_ARG (arg
, iter
, exp
)
2560 if (TREE_THIS_VOLATILE (arg
))
2568 FOR_EACH_CALL_EXPR_ARG (arg
, iter
, exp
)
2569 expand_expr (arg
, const0_rtx
, VOIDmode
, EXPAND_NORMAL
);
2574 #ifdef REG_PARM_STACK_SPACE
2575 reg_parm_stack_space
= REG_PARM_STACK_SPACE (!fndecl
? fntype
: fndecl
);
2578 if (! OUTGOING_REG_PARM_STACK_SPACE ((!fndecl
? fntype
: TREE_TYPE (fndecl
)))
2579 && reg_parm_stack_space
> 0 && PUSH_ARGS
)
2580 must_preallocate
= 1;
2582 /* Set up a place to return a structure. */
2584 /* Cater to broken compilers. */
2585 if (aggregate_value_p (exp
, fntype
))
2587 /* This call returns a big structure. */
2588 flags
&= ~(ECF_CONST
| ECF_PURE
| ECF_LOOPING_CONST_OR_PURE
);
2590 #ifdef PCC_STATIC_STRUCT_RETURN
2592 pcc_struct_value
= 1;
2594 #else /* not PCC_STATIC_STRUCT_RETURN */
2596 struct_value_size
= int_size_in_bytes (rettype
);
2598 /* Even if it is semantically safe to use the target as the return
2599 slot, it may be not sufficiently aligned for the return type. */
2600 if (CALL_EXPR_RETURN_SLOT_OPT (exp
)
2603 && !(MEM_ALIGN (target
) < TYPE_ALIGN (rettype
)
2604 && SLOW_UNALIGNED_ACCESS (TYPE_MODE (rettype
),
2605 MEM_ALIGN (target
))))
2606 structure_value_addr
= XEXP (target
, 0);
2609 /* For variable-sized objects, we must be called with a target
2610 specified. If we were to allocate space on the stack here,
2611 we would have no way of knowing when to free it. */
2612 rtx d
= assign_temp (rettype
, 1, 1);
2613 structure_value_addr
= XEXP (d
, 0);
2617 #endif /* not PCC_STATIC_STRUCT_RETURN */
2620 /* Figure out the amount to which the stack should be aligned. */
2621 preferred_stack_boundary
= PREFERRED_STACK_BOUNDARY
;
2624 struct cgraph_rtl_info
*i
= cgraph_node::rtl_info (fndecl
);
2625 /* Without automatic stack alignment, we can't increase preferred
2626 stack boundary. With automatic stack alignment, it is
2627 unnecessary since unless we can guarantee that all callers will
2628 align the outgoing stack properly, callee has to align its
2631 && i
->preferred_incoming_stack_boundary
2632 && i
->preferred_incoming_stack_boundary
< preferred_stack_boundary
)
2633 preferred_stack_boundary
= i
->preferred_incoming_stack_boundary
;
2636 /* Operand 0 is a pointer-to-function; get the type of the function. */
2637 funtype
= TREE_TYPE (addr
);
2638 gcc_assert (POINTER_TYPE_P (funtype
));
2639 funtype
= TREE_TYPE (funtype
);
2641 /* Count whether there are actual complex arguments that need to be split
2642 into their real and imaginary parts. Munge the type_arg_types
2643 appropriately here as well. */
2644 if (targetm
.calls
.split_complex_arg
)
2646 call_expr_arg_iterator iter
;
2648 FOR_EACH_CALL_EXPR_ARG (arg
, iter
, exp
)
2650 tree type
= TREE_TYPE (arg
);
2651 if (type
&& TREE_CODE (type
) == COMPLEX_TYPE
2652 && targetm
.calls
.split_complex_arg (type
))
2653 num_complex_actuals
++;
2655 type_arg_types
= split_complex_types (TYPE_ARG_TYPES (funtype
));
2658 type_arg_types
= TYPE_ARG_TYPES (funtype
);
2660 if (flags
& ECF_MAY_BE_ALLOCA
)
2661 cfun
->calls_alloca
= 1;
2663 /* If struct_value_rtx is 0, it means pass the address
2664 as if it were an extra parameter. Put the argument expression
2665 in structure_value_addr_value. */
2666 if (structure_value_addr
&& struct_value
== 0)
2668 /* If structure_value_addr is a REG other than
2669 virtual_outgoing_args_rtx, we can use always use it. If it
2670 is not a REG, we must always copy it into a register.
2671 If it is virtual_outgoing_args_rtx, we must copy it to another
2672 register in some cases. */
2673 rtx temp
= (!REG_P (structure_value_addr
)
2674 || (ACCUMULATE_OUTGOING_ARGS
2675 && stack_arg_under_construction
2676 && structure_value_addr
== virtual_outgoing_args_rtx
)
2677 ? copy_addr_to_reg (convert_memory_address
2678 (Pmode
, structure_value_addr
))
2679 : structure_value_addr
);
2681 structure_value_addr_value
=
2682 make_tree (build_pointer_type (TREE_TYPE (funtype
)), temp
);
2683 structure_value_addr_parm
= CALL_WITH_BOUNDS_P (exp
) ? 2 : 1;
2686 /* Count the arguments and set NUM_ACTUALS. */
2688 call_expr_nargs (exp
) + num_complex_actuals
+ structure_value_addr_parm
;
2690 /* Compute number of named args.
2691 First, do a raw count of the args for INIT_CUMULATIVE_ARGS. */
2693 if (type_arg_types
!= 0)
2695 = (list_length (type_arg_types
)
2696 /* Count the struct value address, if it is passed as a parm. */
2697 + structure_value_addr_parm
);
2699 /* If we know nothing, treat all args as named. */
2700 n_named_args
= num_actuals
;
2702 /* Start updating where the next arg would go.
2704 On some machines (such as the PA) indirect calls have a different
2705 calling convention than normal calls. The fourth argument in
2706 INIT_CUMULATIVE_ARGS tells the backend if this is an indirect call
2708 INIT_CUMULATIVE_ARGS (args_so_far_v
, funtype
, NULL_RTX
, fndecl
, n_named_args
);
2709 args_so_far
= pack_cumulative_args (&args_so_far_v
);
2711 /* Now possibly adjust the number of named args.
2712 Normally, don't include the last named arg if anonymous args follow.
2713 We do include the last named arg if
2714 targetm.calls.strict_argument_naming() returns nonzero.
2715 (If no anonymous args follow, the result of list_length is actually
2716 one too large. This is harmless.)
2718 If targetm.calls.pretend_outgoing_varargs_named() returns
2719 nonzero, and targetm.calls.strict_argument_naming() returns zero,
2720 this machine will be able to place unnamed args that were passed
2721 in registers into the stack. So treat all args as named. This
2722 allows the insns emitting for a specific argument list to be
2723 independent of the function declaration.
2725 If targetm.calls.pretend_outgoing_varargs_named() returns zero,
2726 we do not have any reliable way to pass unnamed args in
2727 registers, so we must force them into memory. */
2729 if (type_arg_types
!= 0
2730 && targetm
.calls
.strict_argument_naming (args_so_far
))
2732 else if (type_arg_types
!= 0
2733 && ! targetm
.calls
.pretend_outgoing_varargs_named (args_so_far
))
2734 /* Don't include the last named arg. */
2737 /* Treat all args as named. */
2738 n_named_args
= num_actuals
;
2740 /* Make a vector to hold all the information about each arg. */
2741 args
= XALLOCAVEC (struct arg_data
, num_actuals
);
2742 memset (args
, 0, num_actuals
* sizeof (struct arg_data
));
2744 /* Build up entries in the ARGS array, compute the size of the
2745 arguments into ARGS_SIZE, etc. */
2746 initialize_argument_information (num_actuals
, args
, &args_size
,
2748 structure_value_addr_value
, fndecl
, fntype
,
2749 args_so_far
, reg_parm_stack_space
,
2750 &old_stack_level
, &old_pending_adj
,
2751 &must_preallocate
, &flags
,
2752 &try_tail_call
, CALL_FROM_THUNK_P (exp
));
2755 must_preallocate
= 1;
2757 /* Now make final decision about preallocating stack space. */
2758 must_preallocate
= finalize_must_preallocate (must_preallocate
,
2762 /* If the structure value address will reference the stack pointer, we
2763 must stabilize it. We don't need to do this if we know that we are
2764 not going to adjust the stack pointer in processing this call. */
2766 if (structure_value_addr
2767 && (reg_mentioned_p (virtual_stack_dynamic_rtx
, structure_value_addr
)
2768 || reg_mentioned_p (virtual_outgoing_args_rtx
,
2769 structure_value_addr
))
2771 || (!ACCUMULATE_OUTGOING_ARGS
&& args_size
.constant
)))
2772 structure_value_addr
= copy_to_reg (structure_value_addr
);
2774 /* Tail calls can make things harder to debug, and we've traditionally
2775 pushed these optimizations into -O2. Don't try if we're already
2776 expanding a call, as that means we're an argument. Don't try if
2777 there's cleanups, as we know there's code to follow the call. */
2779 if (currently_expanding_call
++ != 0
2780 || !flag_optimize_sibling_calls
2782 || dbg_cnt (tail_call
) == false)
2785 /* Rest of purposes for tail call optimizations to fail. */
2787 #ifdef HAVE_sibcall_epilogue
2788 !HAVE_sibcall_epilogue
2793 /* Doing sibling call optimization needs some work, since
2794 structure_value_addr can be allocated on the stack.
2795 It does not seem worth the effort since few optimizable
2796 sibling calls will return a structure. */
2797 || structure_value_addr
!= NULL_RTX
2798 #ifdef REG_PARM_STACK_SPACE
2799 /* If outgoing reg parm stack space changes, we can not do sibcall. */
2800 || (OUTGOING_REG_PARM_STACK_SPACE (funtype
)
2801 != OUTGOING_REG_PARM_STACK_SPACE (TREE_TYPE (current_function_decl
)))
2802 || (reg_parm_stack_space
!= REG_PARM_STACK_SPACE (current_function_decl
))
2804 /* Check whether the target is able to optimize the call
2806 || !targetm
.function_ok_for_sibcall (fndecl
, exp
)
2807 /* Functions that do not return exactly once may not be sibcall
2809 || (flags
& (ECF_RETURNS_TWICE
| ECF_NORETURN
))
2810 || TYPE_VOLATILE (TREE_TYPE (TREE_TYPE (addr
)))
2811 /* If the called function is nested in the current one, it might access
2812 some of the caller's arguments, but could clobber them beforehand if
2813 the argument areas are shared. */
2814 || (fndecl
&& decl_function_context (fndecl
) == current_function_decl
)
2815 /* If this function requires more stack slots than the current
2816 function, we cannot change it into a sibling call.
2817 crtl->args.pretend_args_size is not part of the
2818 stack allocated by our caller. */
2819 || args_size
.constant
> (crtl
->args
.size
2820 - crtl
->args
.pretend_args_size
)
2821 /* If the callee pops its own arguments, then it must pop exactly
2822 the same number of arguments as the current function. */
2823 || (targetm
.calls
.return_pops_args (fndecl
, funtype
, args_size
.constant
)
2824 != targetm
.calls
.return_pops_args (current_function_decl
,
2825 TREE_TYPE (current_function_decl
),
2827 || !lang_hooks
.decls
.ok_for_sibcall (fndecl
))
2830 /* Check if caller and callee disagree in promotion of function
2834 machine_mode caller_mode
, caller_promoted_mode
;
2835 machine_mode callee_mode
, callee_promoted_mode
;
2836 int caller_unsignedp
, callee_unsignedp
;
2837 tree caller_res
= DECL_RESULT (current_function_decl
);
2839 caller_unsignedp
= TYPE_UNSIGNED (TREE_TYPE (caller_res
));
2840 caller_mode
= DECL_MODE (caller_res
);
2841 callee_unsignedp
= TYPE_UNSIGNED (TREE_TYPE (funtype
));
2842 callee_mode
= TYPE_MODE (TREE_TYPE (funtype
));
2843 caller_promoted_mode
2844 = promote_function_mode (TREE_TYPE (caller_res
), caller_mode
,
2846 TREE_TYPE (current_function_decl
), 1);
2847 callee_promoted_mode
2848 = promote_function_mode (TREE_TYPE (funtype
), callee_mode
,
2851 if (caller_mode
!= VOIDmode
2852 && (caller_promoted_mode
!= callee_promoted_mode
2853 || ((caller_mode
!= caller_promoted_mode
2854 || callee_mode
!= callee_promoted_mode
)
2855 && (caller_unsignedp
!= callee_unsignedp
2856 || GET_MODE_BITSIZE (caller_mode
)
2857 < GET_MODE_BITSIZE (callee_mode
)))))
2861 /* Ensure current function's preferred stack boundary is at least
2862 what we need. Stack alignment may also increase preferred stack
2864 if (crtl
->preferred_stack_boundary
< preferred_stack_boundary
)
2865 crtl
->preferred_stack_boundary
= preferred_stack_boundary
;
2867 preferred_stack_boundary
= crtl
->preferred_stack_boundary
;
2869 preferred_unit_stack_boundary
= preferred_stack_boundary
/ BITS_PER_UNIT
;
2871 /* We want to make two insn chains; one for a sibling call, the other
2872 for a normal call. We will select one of the two chains after
2873 initial RTL generation is complete. */
2874 for (pass
= try_tail_call
? 0 : 1; pass
< 2; pass
++)
2876 int sibcall_failure
= 0;
2877 /* We want to emit any pending stack adjustments before the tail
2878 recursion "call". That way we know any adjustment after the tail
2879 recursion call can be ignored if we indeed use the tail
2881 saved_pending_stack_adjust save
;
2882 rtx_insn
*insns
, *before_call
, *after_args
;
2887 /* State variables we need to save and restore between
2889 save_pending_stack_adjust (&save
);
2892 flags
&= ~ECF_SIBCALL
;
2894 flags
|= ECF_SIBCALL
;
2896 /* Other state variables that we must reinitialize each time
2897 through the loop (that are not initialized by the loop itself). */
2901 /* Start a new sequence for the normal call case.
2903 From this point on, if the sibling call fails, we want to set
2904 sibcall_failure instead of continuing the loop. */
2907 /* Don't let pending stack adjusts add up to too much.
2908 Also, do all pending adjustments now if there is any chance
2909 this might be a call to alloca or if we are expanding a sibling
2911 Also do the adjustments before a throwing call, otherwise
2912 exception handling can fail; PR 19225. */
2913 if (pending_stack_adjust
>= 32
2914 || (pending_stack_adjust
> 0
2915 && (flags
& ECF_MAY_BE_ALLOCA
))
2916 || (pending_stack_adjust
> 0
2917 && flag_exceptions
&& !(flags
& ECF_NOTHROW
))
2919 do_pending_stack_adjust ();
2921 /* Precompute any arguments as needed. */
2923 precompute_arguments (num_actuals
, args
);
2925 /* Now we are about to start emitting insns that can be deleted
2926 if a libcall is deleted. */
2927 if (pass
&& (flags
& ECF_MALLOC
))
2930 if (pass
== 0 && crtl
->stack_protect_guard
)
2931 stack_protect_epilogue ();
2933 adjusted_args_size
= args_size
;
2934 /* Compute the actual size of the argument block required. The variable
2935 and constant sizes must be combined, the size may have to be rounded,
2936 and there may be a minimum required size. When generating a sibcall
2937 pattern, do not round up, since we'll be re-using whatever space our
2939 unadjusted_args_size
2940 = compute_argument_block_size (reg_parm_stack_space
,
2941 &adjusted_args_size
,
2944 : preferred_stack_boundary
));
2946 old_stack_allocated
= stack_pointer_delta
- pending_stack_adjust
;
2948 /* The argument block when performing a sibling call is the
2949 incoming argument block. */
2952 argblock
= crtl
->args
.internal_arg_pointer
;
2953 if (STACK_GROWS_DOWNWARD
)
2955 = plus_constant (Pmode
, argblock
, crtl
->args
.pretend_args_size
);
2958 = plus_constant (Pmode
, argblock
, -crtl
->args
.pretend_args_size
);
2960 stored_args_map
= sbitmap_alloc (args_size
.constant
);
2961 bitmap_clear (stored_args_map
);
2964 /* If we have no actual push instructions, or shouldn't use them,
2965 make space for all args right now. */
2966 else if (adjusted_args_size
.var
!= 0)
2968 if (old_stack_level
== 0)
2970 emit_stack_save (SAVE_BLOCK
, &old_stack_level
);
2971 old_stack_pointer_delta
= stack_pointer_delta
;
2972 old_pending_adj
= pending_stack_adjust
;
2973 pending_stack_adjust
= 0;
2974 /* stack_arg_under_construction says whether a stack arg is
2975 being constructed at the old stack level. Pushing the stack
2976 gets a clean outgoing argument block. */
2977 old_stack_arg_under_construction
= stack_arg_under_construction
;
2978 stack_arg_under_construction
= 0;
2980 argblock
= push_block (ARGS_SIZE_RTX (adjusted_args_size
), 0, 0);
2981 if (flag_stack_usage_info
)
2982 current_function_has_unbounded_dynamic_stack_size
= 1;
2986 /* Note that we must go through the motions of allocating an argument
2987 block even if the size is zero because we may be storing args
2988 in the area reserved for register arguments, which may be part of
2991 int needed
= adjusted_args_size
.constant
;
2993 /* Store the maximum argument space used. It will be pushed by
2994 the prologue (if ACCUMULATE_OUTGOING_ARGS, or stack overflow
2997 if (needed
> crtl
->outgoing_args_size
)
2998 crtl
->outgoing_args_size
= needed
;
3000 if (must_preallocate
)
3002 if (ACCUMULATE_OUTGOING_ARGS
)
3004 /* Since the stack pointer will never be pushed, it is
3005 possible for the evaluation of a parm to clobber
3006 something we have already written to the stack.
3007 Since most function calls on RISC machines do not use
3008 the stack, this is uncommon, but must work correctly.
3010 Therefore, we save any area of the stack that was already
3011 written and that we are using. Here we set up to do this
3012 by making a new stack usage map from the old one. The
3013 actual save will be done by store_one_arg.
3015 Another approach might be to try to reorder the argument
3016 evaluations to avoid this conflicting stack usage. */
3018 /* Since we will be writing into the entire argument area,
3019 the map must be allocated for its entire size, not just
3020 the part that is the responsibility of the caller. */
3021 if (! OUTGOING_REG_PARM_STACK_SPACE ((!fndecl
? fntype
: TREE_TYPE (fndecl
))))
3022 needed
+= reg_parm_stack_space
;
3024 if (ARGS_GROW_DOWNWARD
)
3025 highest_outgoing_arg_in_use
3026 = MAX (initial_highest_arg_in_use
, needed
+ 1);
3028 highest_outgoing_arg_in_use
3029 = MAX (initial_highest_arg_in_use
, needed
);
3031 free (stack_usage_map_buf
);
3032 stack_usage_map_buf
= XNEWVEC (char, highest_outgoing_arg_in_use
);
3033 stack_usage_map
= stack_usage_map_buf
;
3035 if (initial_highest_arg_in_use
)
3036 memcpy (stack_usage_map
, initial_stack_usage_map
,
3037 initial_highest_arg_in_use
);
3039 if (initial_highest_arg_in_use
!= highest_outgoing_arg_in_use
)
3040 memset (&stack_usage_map
[initial_highest_arg_in_use
], 0,
3041 (highest_outgoing_arg_in_use
3042 - initial_highest_arg_in_use
));
3045 /* The address of the outgoing argument list must not be
3046 copied to a register here, because argblock would be left
3047 pointing to the wrong place after the call to
3048 allocate_dynamic_stack_space below. */
3050 argblock
= virtual_outgoing_args_rtx
;
3054 if (inhibit_defer_pop
== 0)
3056 /* Try to reuse some or all of the pending_stack_adjust
3057 to get this space. */
3059 = (combine_pending_stack_adjustment_and_call
3060 (unadjusted_args_size
,
3061 &adjusted_args_size
,
3062 preferred_unit_stack_boundary
));
3064 /* combine_pending_stack_adjustment_and_call computes
3065 an adjustment before the arguments are allocated.
3066 Account for them and see whether or not the stack
3067 needs to go up or down. */
3068 needed
= unadjusted_args_size
- needed
;
3072 /* We're releasing stack space. */
3073 /* ??? We can avoid any adjustment at all if we're
3074 already aligned. FIXME. */
3075 pending_stack_adjust
= -needed
;
3076 do_pending_stack_adjust ();
3080 /* We need to allocate space. We'll do that in
3081 push_block below. */
3082 pending_stack_adjust
= 0;
3085 /* Special case this because overhead of `push_block' in
3086 this case is non-trivial. */
3088 argblock
= virtual_outgoing_args_rtx
;
3091 argblock
= push_block (GEN_INT (needed
), 0, 0);
3092 if (ARGS_GROW_DOWNWARD
)
3093 argblock
= plus_constant (Pmode
, argblock
, needed
);
3096 /* We only really need to call `copy_to_reg' in the case
3097 where push insns are going to be used to pass ARGBLOCK
3098 to a function call in ARGS. In that case, the stack
3099 pointer changes value from the allocation point to the
3100 call point, and hence the value of
3101 VIRTUAL_OUTGOING_ARGS_RTX changes as well. But might
3102 as well always do it. */
3103 argblock
= copy_to_reg (argblock
);
3108 if (ACCUMULATE_OUTGOING_ARGS
)
3110 /* The save/restore code in store_one_arg handles all
3111 cases except one: a constructor call (including a C
3112 function returning a BLKmode struct) to initialize
3114 if (stack_arg_under_construction
)
3117 = GEN_INT (adjusted_args_size
.constant
3118 + (OUTGOING_REG_PARM_STACK_SPACE ((!fndecl
? fntype
3119 : TREE_TYPE (fndecl
))) ? 0
3120 : reg_parm_stack_space
));
3121 if (old_stack_level
== 0)
3123 emit_stack_save (SAVE_BLOCK
, &old_stack_level
);
3124 old_stack_pointer_delta
= stack_pointer_delta
;
3125 old_pending_adj
= pending_stack_adjust
;
3126 pending_stack_adjust
= 0;
3127 /* stack_arg_under_construction says whether a stack
3128 arg is being constructed at the old stack level.
3129 Pushing the stack gets a clean outgoing argument
3131 old_stack_arg_under_construction
3132 = stack_arg_under_construction
;
3133 stack_arg_under_construction
= 0;
3134 /* Make a new map for the new argument list. */
3135 free (stack_usage_map_buf
);
3136 stack_usage_map_buf
= XCNEWVEC (char, highest_outgoing_arg_in_use
);
3137 stack_usage_map
= stack_usage_map_buf
;
3138 highest_outgoing_arg_in_use
= 0;
3140 /* We can pass TRUE as the 4th argument because we just
3141 saved the stack pointer and will restore it right after
3143 allocate_dynamic_stack_space (push_size
, 0,
3144 BIGGEST_ALIGNMENT
, true);
3147 /* If argument evaluation might modify the stack pointer,
3148 copy the address of the argument list to a register. */
3149 for (i
= 0; i
< num_actuals
; i
++)
3150 if (args
[i
].pass_on_stack
)
3152 argblock
= copy_addr_to_reg (argblock
);
3157 compute_argument_addresses (args
, argblock
, num_actuals
);
3159 /* Perform stack alignment before the first push (the last arg). */
3161 && adjusted_args_size
.constant
> reg_parm_stack_space
3162 && adjusted_args_size
.constant
!= unadjusted_args_size
)
3164 /* When the stack adjustment is pending, we get better code
3165 by combining the adjustments. */
3166 if (pending_stack_adjust
3167 && ! inhibit_defer_pop
)
3169 pending_stack_adjust
3170 = (combine_pending_stack_adjustment_and_call
3171 (unadjusted_args_size
,
3172 &adjusted_args_size
,
3173 preferred_unit_stack_boundary
));
3174 do_pending_stack_adjust ();
3176 else if (argblock
== 0)
3177 anti_adjust_stack (GEN_INT (adjusted_args_size
.constant
3178 - unadjusted_args_size
));
3180 /* Now that the stack is properly aligned, pops can't safely
3181 be deferred during the evaluation of the arguments. */
3184 /* Record the maximum pushed stack space size. We need to delay
3185 doing it this far to take into account the optimization done
3186 by combine_pending_stack_adjustment_and_call. */
3187 if (flag_stack_usage_info
3188 && !ACCUMULATE_OUTGOING_ARGS
3190 && adjusted_args_size
.var
== 0)
3192 int pushed
= adjusted_args_size
.constant
+ pending_stack_adjust
;
3193 if (pushed
> current_function_pushed_stack_size
)
3194 current_function_pushed_stack_size
= pushed
;
3197 funexp
= rtx_for_function_call (fndecl
, addr
);
3199 /* Precompute all register parameters. It isn't safe to compute anything
3200 once we have started filling any specific hard regs. */
3201 precompute_register_parameters (num_actuals
, args
, ®_parm_seen
);
3203 if (CALL_EXPR_STATIC_CHAIN (exp
))
3204 static_chain_value
= expand_normal (CALL_EXPR_STATIC_CHAIN (exp
));
3206 static_chain_value
= 0;
3208 #ifdef REG_PARM_STACK_SPACE
3209 /* Save the fixed argument area if it's part of the caller's frame and
3210 is clobbered by argument setup for this call. */
3211 if (ACCUMULATE_OUTGOING_ARGS
&& pass
)
3212 save_area
= save_fixed_argument_area (reg_parm_stack_space
, argblock
,
3213 &low_to_save
, &high_to_save
);
3216 /* Now store (and compute if necessary) all non-register parms.
3217 These come before register parms, since they can require block-moves,
3218 which could clobber the registers used for register parms.
3219 Parms which have partial registers are not stored here,
3220 but we do preallocate space here if they want that. */
3222 for (i
= 0; i
< num_actuals
; i
++)
3224 /* Delay bounds until all other args are stored. */
3225 if (POINTER_BOUNDS_P (args
[i
].tree_value
))
3227 else if (args
[i
].reg
== 0 || args
[i
].pass_on_stack
)
3229 rtx_insn
*before_arg
= get_last_insn ();
3231 /* We don't allow passing huge (> 2^30 B) arguments
3232 by value. It would cause an overflow later on. */
3233 if (adjusted_args_size
.constant
3234 >= (1 << (HOST_BITS_PER_INT
- 2)))
3236 sorry ("passing too large argument on stack");
3240 if (store_one_arg (&args
[i
], argblock
, flags
,
3241 adjusted_args_size
.var
!= 0,
3242 reg_parm_stack_space
)
3244 && check_sibcall_argument_overlap (before_arg
,
3246 sibcall_failure
= 1;
3251 = gen_rtx_EXPR_LIST (TYPE_MODE (TREE_TYPE (args
[i
].tree_value
)),
3252 gen_rtx_USE (VOIDmode
, args
[i
].stack
),
3256 /* If we have a parm that is passed in registers but not in memory
3257 and whose alignment does not permit a direct copy into registers,
3258 make a group of pseudos that correspond to each register that we
3260 if (STRICT_ALIGNMENT
)
3261 store_unaligned_arguments_into_pseudos (args
, num_actuals
);
3263 /* Now store any partially-in-registers parm.
3264 This is the last place a block-move can happen. */
3266 for (i
= 0; i
< num_actuals
; i
++)
3267 if (args
[i
].partial
!= 0 && ! args
[i
].pass_on_stack
)
3269 rtx_insn
*before_arg
= get_last_insn ();
3271 /* On targets with weird calling conventions (e.g. PA) it's
3272 hard to ensure that all cases of argument overlap between
3273 stack and registers work. Play it safe and bail out. */
3274 if (ARGS_GROW_DOWNWARD
&& !STACK_GROWS_DOWNWARD
)
3276 sibcall_failure
= 1;
3280 if (store_one_arg (&args
[i
], argblock
, flags
,
3281 adjusted_args_size
.var
!= 0,
3282 reg_parm_stack_space
)
3284 && check_sibcall_argument_overlap (before_arg
,
3286 sibcall_failure
= 1;
3289 bool any_regs
= false;
3290 for (i
= 0; i
< num_actuals
; i
++)
3291 if (args
[i
].reg
!= NULL_RTX
)
3294 targetm
.calls
.call_args (args
[i
].reg
, funtype
);
3297 targetm
.calls
.call_args (pc_rtx
, funtype
);
3299 /* Figure out the register where the value, if any, will come back. */
3302 if (TYPE_MODE (rettype
) != VOIDmode
3303 && ! structure_value_addr
)
3305 if (pcc_struct_value
)
3307 valreg
= hard_function_value (build_pointer_type (rettype
),
3308 fndecl
, NULL
, (pass
== 0));
3309 if (CALL_WITH_BOUNDS_P (exp
))
3310 valbnd
= targetm
.calls
.
3311 chkp_function_value_bounds (build_pointer_type (rettype
),
3312 fndecl
, (pass
== 0));
3316 valreg
= hard_function_value (rettype
, fndecl
, fntype
,
3318 if (CALL_WITH_BOUNDS_P (exp
))
3319 valbnd
= targetm
.calls
.chkp_function_value_bounds (rettype
,
3324 /* If VALREG is a PARALLEL whose first member has a zero
3325 offset, use that. This is for targets such as m68k that
3326 return the same value in multiple places. */
3327 if (GET_CODE (valreg
) == PARALLEL
)
3329 rtx elem
= XVECEXP (valreg
, 0, 0);
3330 rtx where
= XEXP (elem
, 0);
3331 rtx offset
= XEXP (elem
, 1);
3332 if (offset
== const0_rtx
3333 && GET_MODE (where
) == GET_MODE (valreg
))
3338 /* Store all bounds not passed in registers. */
3339 for (i
= 0; i
< num_actuals
; i
++)
3341 if (POINTER_BOUNDS_P (args
[i
].tree_value
)
3343 store_bounds (&args
[i
],
3344 args
[i
].pointer_arg
== -1
3346 : &args
[args
[i
].pointer_arg
]);
3349 /* If register arguments require space on the stack and stack space
3350 was not preallocated, allocate stack space here for arguments
3351 passed in registers. */
3352 if (OUTGOING_REG_PARM_STACK_SPACE ((!fndecl
? fntype
: TREE_TYPE (fndecl
)))
3353 && !ACCUMULATE_OUTGOING_ARGS
3354 && must_preallocate
== 0 && reg_parm_stack_space
> 0)
3355 anti_adjust_stack (GEN_INT (reg_parm_stack_space
));
3357 /* Pass the function the address in which to return a
3359 if (pass
!= 0 && structure_value_addr
&& ! structure_value_addr_parm
)
3361 structure_value_addr
3362 = convert_memory_address (Pmode
, structure_value_addr
);
3363 emit_move_insn (struct_value
,
3365 force_operand (structure_value_addr
,
3368 if (REG_P (struct_value
))
3369 use_reg (&call_fusage
, struct_value
);
3372 after_args
= get_last_insn ();
3373 funexp
= prepare_call_address (fndecl
? fndecl
: fntype
, funexp
,
3374 static_chain_value
, &call_fusage
,
3375 reg_parm_seen
, pass
== 0);
3377 load_register_parameters (args
, num_actuals
, &call_fusage
, flags
,
3378 pass
== 0, &sibcall_failure
);
3380 /* Save a pointer to the last insn before the call, so that we can
3381 later safely search backwards to find the CALL_INSN. */
3382 before_call
= get_last_insn ();
3384 /* Set up next argument register. For sibling calls on machines
3385 with register windows this should be the incoming register. */
3387 next_arg_reg
= targetm
.calls
.function_incoming_arg (args_so_far
,
3392 next_arg_reg
= targetm
.calls
.function_arg (args_so_far
,
3393 VOIDmode
, void_type_node
,
3396 if (pass
== 1 && (return_flags
& ERF_RETURNS_ARG
))
3398 int arg_nr
= return_flags
& ERF_RETURN_ARG_MASK
;
3399 arg_nr
= num_actuals
- arg_nr
- 1;
3401 && arg_nr
< num_actuals
3405 && GET_MODE (args
[arg_nr
].reg
) == GET_MODE (valreg
))
3407 = gen_rtx_EXPR_LIST (TYPE_MODE (TREE_TYPE (args
[arg_nr
].tree_value
)),
3408 gen_rtx_SET (valreg
, args
[arg_nr
].reg
),
3411 /* All arguments and registers used for the call must be set up by
3414 /* Stack must be properly aligned now. */
3416 || !(stack_pointer_delta
% preferred_unit_stack_boundary
));
3418 /* Generate the actual call instruction. */
3419 emit_call_1 (funexp
, exp
, fndecl
, funtype
, unadjusted_args_size
,
3420 adjusted_args_size
.constant
, struct_value_size
,
3421 next_arg_reg
, valreg
, old_inhibit_defer_pop
, call_fusage
,
3422 flags
, args_so_far
);
3426 rtx_call_insn
*last
;
3427 rtx datum
= NULL_RTX
;
3428 if (fndecl
!= NULL_TREE
)
3430 datum
= XEXP (DECL_RTL (fndecl
), 0);
3431 gcc_assert (datum
!= NULL_RTX
3432 && GET_CODE (datum
) == SYMBOL_REF
);
3434 last
= last_call_insn ();
3435 add_reg_note (last
, REG_CALL_DECL
, datum
);
3438 /* If the call setup or the call itself overlaps with anything
3439 of the argument setup we probably clobbered our call address.
3440 In that case we can't do sibcalls. */
3442 && check_sibcall_argument_overlap (after_args
, 0, 0))
3443 sibcall_failure
= 1;
3445 /* If a non-BLKmode value is returned at the most significant end
3446 of a register, shift the register right by the appropriate amount
3447 and update VALREG accordingly. BLKmode values are handled by the
3448 group load/store machinery below. */
3449 if (!structure_value_addr
3450 && !pcc_struct_value
3451 && TYPE_MODE (rettype
) != VOIDmode
3452 && TYPE_MODE (rettype
) != BLKmode
3454 && targetm
.calls
.return_in_msb (rettype
))
3456 if (shift_return_value (TYPE_MODE (rettype
), false, valreg
))
3457 sibcall_failure
= 1;
3458 valreg
= gen_rtx_REG (TYPE_MODE (rettype
), REGNO (valreg
));
3461 if (pass
&& (flags
& ECF_MALLOC
))
3463 rtx temp
= gen_reg_rtx (GET_MODE (valreg
));
3464 rtx_insn
*last
, *insns
;
3466 /* The return value from a malloc-like function is a pointer. */
3467 if (TREE_CODE (rettype
) == POINTER_TYPE
)
3468 mark_reg_pointer (temp
, MALLOC_ABI_ALIGNMENT
);
3470 emit_move_insn (temp
, valreg
);
3472 /* The return value from a malloc-like function can not alias
3474 last
= get_last_insn ();
3475 add_reg_note (last
, REG_NOALIAS
, temp
);
3477 /* Write out the sequence. */
3478 insns
= get_insns ();
3484 /* For calls to `setjmp', etc., inform
3485 function.c:setjmp_warnings that it should complain if
3486 nonvolatile values are live. For functions that cannot
3487 return, inform flow that control does not fall through. */
3489 if ((flags
& ECF_NORETURN
) || pass
== 0)
3491 /* The barrier must be emitted
3492 immediately after the CALL_INSN. Some ports emit more
3493 than just a CALL_INSN above, so we must search for it here. */
3495 rtx_insn
*last
= get_last_insn ();
3496 while (!CALL_P (last
))
3498 last
= PREV_INSN (last
);
3499 /* There was no CALL_INSN? */
3500 gcc_assert (last
!= before_call
);
3503 emit_barrier_after (last
);
3505 /* Stack adjustments after a noreturn call are dead code.
3506 However when NO_DEFER_POP is in effect, we must preserve
3507 stack_pointer_delta. */
3508 if (inhibit_defer_pop
== 0)
3510 stack_pointer_delta
= old_stack_allocated
;
3511 pending_stack_adjust
= 0;
3515 /* If value type not void, return an rtx for the value. */
3517 if (TYPE_MODE (rettype
) == VOIDmode
3519 target
= const0_rtx
;
3520 else if (structure_value_addr
)
3522 if (target
== 0 || !MEM_P (target
))
3525 = gen_rtx_MEM (TYPE_MODE (rettype
),
3526 memory_address (TYPE_MODE (rettype
),
3527 structure_value_addr
));
3528 set_mem_attributes (target
, rettype
, 1);
3531 else if (pcc_struct_value
)
3533 /* This is the special C++ case where we need to
3534 know what the true target was. We take care to
3535 never use this value more than once in one expression. */
3536 target
= gen_rtx_MEM (TYPE_MODE (rettype
),
3537 copy_to_reg (valreg
));
3538 set_mem_attributes (target
, rettype
, 1);
3540 /* Handle calls that return values in multiple non-contiguous locations.
3541 The Irix 6 ABI has examples of this. */
3542 else if (GET_CODE (valreg
) == PARALLEL
)
3545 target
= emit_group_move_into_temps (valreg
);
3546 else if (rtx_equal_p (target
, valreg
))
3548 else if (GET_CODE (target
) == PARALLEL
)
3549 /* Handle the result of a emit_group_move_into_temps
3550 call in the previous pass. */
3551 emit_group_move (target
, valreg
);
3553 emit_group_store (target
, valreg
, rettype
,
3554 int_size_in_bytes (rettype
));
3557 && GET_MODE (target
) == TYPE_MODE (rettype
)
3558 && GET_MODE (target
) == GET_MODE (valreg
))
3560 bool may_overlap
= false;
3562 /* We have to copy a return value in a CLASS_LIKELY_SPILLED hard
3563 reg to a plain register. */
3564 if (!REG_P (target
) || HARD_REGISTER_P (target
))
3565 valreg
= avoid_likely_spilled_reg (valreg
);
3567 /* If TARGET is a MEM in the argument area, and we have
3568 saved part of the argument area, then we can't store
3569 directly into TARGET as it may get overwritten when we
3570 restore the argument save area below. Don't work too
3571 hard though and simply force TARGET to a register if it
3572 is a MEM; the optimizer is quite likely to sort it out. */
3573 if (ACCUMULATE_OUTGOING_ARGS
&& pass
&& MEM_P (target
))
3574 for (i
= 0; i
< num_actuals
; i
++)
3575 if (args
[i
].save_area
)
3582 target
= copy_to_reg (valreg
);
3585 /* TARGET and VALREG cannot be equal at this point
3586 because the latter would not have
3587 REG_FUNCTION_VALUE_P true, while the former would if
3588 it were referring to the same register.
3590 If they refer to the same register, this move will be
3591 a no-op, except when function inlining is being
3593 emit_move_insn (target
, valreg
);
3595 /* If we are setting a MEM, this code must be executed.
3596 Since it is emitted after the call insn, sibcall
3597 optimization cannot be performed in that case. */
3599 sibcall_failure
= 1;
3603 target
= copy_to_reg (avoid_likely_spilled_reg (valreg
));
3605 /* If we promoted this return value, make the proper SUBREG.
3606 TARGET might be const0_rtx here, so be careful. */
3608 && TYPE_MODE (rettype
) != BLKmode
3609 && GET_MODE (target
) != TYPE_MODE (rettype
))
3611 tree type
= rettype
;
3612 int unsignedp
= TYPE_UNSIGNED (type
);
3616 /* Ensure we promote as expected, and get the new unsignedness. */
3617 pmode
= promote_function_mode (type
, TYPE_MODE (type
), &unsignedp
,
3619 gcc_assert (GET_MODE (target
) == pmode
);
3621 if ((WORDS_BIG_ENDIAN
|| BYTES_BIG_ENDIAN
)
3622 && (GET_MODE_SIZE (GET_MODE (target
))
3623 > GET_MODE_SIZE (TYPE_MODE (type
))))
3625 offset
= GET_MODE_SIZE (GET_MODE (target
))
3626 - GET_MODE_SIZE (TYPE_MODE (type
));
3627 if (! BYTES_BIG_ENDIAN
)
3628 offset
= (offset
/ UNITS_PER_WORD
) * UNITS_PER_WORD
;
3629 else if (! WORDS_BIG_ENDIAN
)
3630 offset
%= UNITS_PER_WORD
;
3633 target
= gen_rtx_SUBREG (TYPE_MODE (type
), target
, offset
);
3634 SUBREG_PROMOTED_VAR_P (target
) = 1;
3635 SUBREG_PROMOTED_SET (target
, unsignedp
);
3638 /* If size of args is variable or this was a constructor call for a stack
3639 argument, restore saved stack-pointer value. */
3641 if (old_stack_level
)
3643 rtx_insn
*prev
= get_last_insn ();
3645 emit_stack_restore (SAVE_BLOCK
, old_stack_level
);
3646 stack_pointer_delta
= old_stack_pointer_delta
;
3648 fixup_args_size_notes (prev
, get_last_insn (), stack_pointer_delta
);
3650 pending_stack_adjust
= old_pending_adj
;
3651 old_stack_allocated
= stack_pointer_delta
- pending_stack_adjust
;
3652 stack_arg_under_construction
= old_stack_arg_under_construction
;
3653 highest_outgoing_arg_in_use
= initial_highest_arg_in_use
;
3654 stack_usage_map
= initial_stack_usage_map
;
3655 sibcall_failure
= 1;
3657 else if (ACCUMULATE_OUTGOING_ARGS
&& pass
)
3659 #ifdef REG_PARM_STACK_SPACE
3661 restore_fixed_argument_area (save_area
, argblock
,
3662 high_to_save
, low_to_save
);
3665 /* If we saved any argument areas, restore them. */
3666 for (i
= 0; i
< num_actuals
; i
++)
3667 if (args
[i
].save_area
)
3669 machine_mode save_mode
= GET_MODE (args
[i
].save_area
);
3671 = gen_rtx_MEM (save_mode
,
3672 memory_address (save_mode
,
3673 XEXP (args
[i
].stack_slot
, 0)));
3675 if (save_mode
!= BLKmode
)
3676 emit_move_insn (stack_area
, args
[i
].save_area
);
3678 emit_block_move (stack_area
, args
[i
].save_area
,
3679 GEN_INT (args
[i
].locate
.size
.constant
),
3680 BLOCK_OP_CALL_PARM
);
3683 highest_outgoing_arg_in_use
= initial_highest_arg_in_use
;
3684 stack_usage_map
= initial_stack_usage_map
;
3687 /* If this was alloca, record the new stack level. */
3688 if (flags
& ECF_MAY_BE_ALLOCA
)
3689 record_new_stack_level ();
3691 /* Free up storage we no longer need. */
3692 for (i
= 0; i
< num_actuals
; ++i
)
3693 free (args
[i
].aligned_regs
);
3695 targetm
.calls
.end_call_args ();
3697 insns
= get_insns ();
3702 tail_call_insns
= insns
;
3704 /* Restore the pending stack adjustment now that we have
3705 finished generating the sibling call sequence. */
3707 restore_pending_stack_adjust (&save
);
3709 /* Prepare arg structure for next iteration. */
3710 for (i
= 0; i
< num_actuals
; i
++)
3713 args
[i
].aligned_regs
= 0;
3717 sbitmap_free (stored_args_map
);
3718 internal_arg_pointer_exp_state
.scan_start
= NULL
;
3719 internal_arg_pointer_exp_state
.cache
.release ();
3723 normal_call_insns
= insns
;
3725 /* Verify that we've deallocated all the stack we used. */
3726 gcc_assert ((flags
& ECF_NORETURN
)
3727 || (old_stack_allocated
3728 == stack_pointer_delta
- pending_stack_adjust
));
3731 /* If something prevents making this a sibling call,
3732 zero out the sequence. */
3733 if (sibcall_failure
)
3734 tail_call_insns
= NULL
;
3739 /* If tail call production succeeded, we need to remove REG_EQUIV notes on
3740 arguments too, as argument area is now clobbered by the call. */
3741 if (tail_call_insns
)
3743 emit_insn (tail_call_insns
);
3744 crtl
->tail_call_emit
= true;
3747 emit_insn (normal_call_insns
);
3749 currently_expanding_call
--;
3751 free (stack_usage_map_buf
);
3753 /* Join result with returned bounds so caller may use them if needed. */
3754 target
= chkp_join_splitted_slot (target
, valbnd
);
3759 /* A sibling call sequence invalidates any REG_EQUIV notes made for
3760 this function's incoming arguments.
3762 At the start of RTL generation we know the only REG_EQUIV notes
3763 in the rtl chain are those for incoming arguments, so we can look
3764 for REG_EQUIV notes between the start of the function and the
3765 NOTE_INSN_FUNCTION_BEG.
3767 This is (slight) overkill. We could keep track of the highest
3768 argument we clobber and be more selective in removing notes, but it
3769 does not seem to be worth the effort. */
3772 fixup_tail_calls (void)
3776 for (insn
= get_insns (); insn
; insn
= NEXT_INSN (insn
))
3780 /* There are never REG_EQUIV notes for the incoming arguments
3781 after the NOTE_INSN_FUNCTION_BEG note, so stop if we see it. */
3783 && NOTE_KIND (insn
) == NOTE_INSN_FUNCTION_BEG
)
3786 note
= find_reg_note (insn
, REG_EQUIV
, 0);
3788 remove_note (insn
, note
);
3789 note
= find_reg_note (insn
, REG_EQUIV
, 0);
3794 /* Traverse a list of TYPES and expand all complex types into their
3797 split_complex_types (tree types
)
3801 /* Before allocating memory, check for the common case of no complex. */
3802 for (p
= types
; p
; p
= TREE_CHAIN (p
))
3804 tree type
= TREE_VALUE (p
);
3805 if (TREE_CODE (type
) == COMPLEX_TYPE
3806 && targetm
.calls
.split_complex_arg (type
))
3812 types
= copy_list (types
);
3814 for (p
= types
; p
; p
= TREE_CHAIN (p
))
3816 tree complex_type
= TREE_VALUE (p
);
3818 if (TREE_CODE (complex_type
) == COMPLEX_TYPE
3819 && targetm
.calls
.split_complex_arg (complex_type
))
3823 /* Rewrite complex type with component type. */
3824 TREE_VALUE (p
) = TREE_TYPE (complex_type
);
3825 next
= TREE_CHAIN (p
);
3827 /* Add another component type for the imaginary part. */
3828 imag
= build_tree_list (NULL_TREE
, TREE_VALUE (p
));
3829 TREE_CHAIN (p
) = imag
;
3830 TREE_CHAIN (imag
) = next
;
3832 /* Skip the newly created node. */
3840 /* Output a library call to function FUN (a SYMBOL_REF rtx).
3841 The RETVAL parameter specifies whether return value needs to be saved, other
3842 parameters are documented in the emit_library_call function below. */
3845 emit_library_call_value_1 (int retval
, rtx orgfun
, rtx value
,
3846 enum libcall_type fn_type
,
3847 machine_mode outmode
, int nargs
, va_list p
)
3849 /* Total size in bytes of all the stack-parms scanned so far. */
3850 struct args_size args_size
;
3851 /* Size of arguments before any adjustments (such as rounding). */
3852 struct args_size original_args_size
;
3855 /* Todo, choose the correct decl type of orgfun. Sadly this information
3856 isn't present here, so we default to native calling abi here. */
3857 tree fndecl ATTRIBUTE_UNUSED
= NULL_TREE
; /* library calls default to host calling abi ? */
3858 tree fntype ATTRIBUTE_UNUSED
= NULL_TREE
; /* library calls default to host calling abi ? */
3861 CUMULATIVE_ARGS args_so_far_v
;
3862 cumulative_args_t args_so_far
;
3869 struct locate_and_pad_arg_data locate
;
3873 int old_inhibit_defer_pop
= inhibit_defer_pop
;
3874 rtx call_fusage
= 0;
3877 int pcc_struct_value
= 0;
3878 int struct_value_size
= 0;
3880 int reg_parm_stack_space
= 0;
3882 rtx_insn
*before_call
;
3883 bool have_push_fusage
;
3884 tree tfom
; /* type_for_mode (outmode, 0) */
3886 #ifdef REG_PARM_STACK_SPACE
3887 /* Define the boundary of the register parm stack space that needs to be
3889 int low_to_save
= 0, high_to_save
= 0;
3890 rtx save_area
= 0; /* Place that it is saved. */
3893 /* Size of the stack reserved for parameter registers. */
3894 int initial_highest_arg_in_use
= highest_outgoing_arg_in_use
;
3895 char *initial_stack_usage_map
= stack_usage_map
;
3896 char *stack_usage_map_buf
= NULL
;
3898 rtx struct_value
= targetm
.calls
.struct_value_rtx (0, 0);
3900 #ifdef REG_PARM_STACK_SPACE
3901 reg_parm_stack_space
= REG_PARM_STACK_SPACE ((tree
) 0);
3904 /* By default, library functions can not throw. */
3905 flags
= ECF_NOTHROW
;
3918 flags
|= ECF_NORETURN
;
3921 flags
= ECF_NORETURN
;
3923 case LCT_RETURNS_TWICE
:
3924 flags
= ECF_RETURNS_TWICE
;
3929 /* Ensure current function's preferred stack boundary is at least
3931 if (crtl
->preferred_stack_boundary
< PREFERRED_STACK_BOUNDARY
)
3932 crtl
->preferred_stack_boundary
= PREFERRED_STACK_BOUNDARY
;
3934 /* If this kind of value comes back in memory,
3935 decide where in memory it should come back. */
3936 if (outmode
!= VOIDmode
)
3938 tfom
= lang_hooks
.types
.type_for_mode (outmode
, 0);
3939 if (aggregate_value_p (tfom
, 0))
3941 #ifdef PCC_STATIC_STRUCT_RETURN
3943 = hard_function_value (build_pointer_type (tfom
), 0, 0, 0);
3944 mem_value
= gen_rtx_MEM (outmode
, pointer_reg
);
3945 pcc_struct_value
= 1;
3947 value
= gen_reg_rtx (outmode
);
3948 #else /* not PCC_STATIC_STRUCT_RETURN */
3949 struct_value_size
= GET_MODE_SIZE (outmode
);
3950 if (value
!= 0 && MEM_P (value
))
3953 mem_value
= assign_temp (tfom
, 1, 1);
3955 /* This call returns a big structure. */
3956 flags
&= ~(ECF_CONST
| ECF_PURE
| ECF_LOOPING_CONST_OR_PURE
);
3960 tfom
= void_type_node
;
3962 /* ??? Unfinished: must pass the memory address as an argument. */
3964 /* Copy all the libcall-arguments out of the varargs data
3965 and into a vector ARGVEC.
3967 Compute how to pass each argument. We only support a very small subset
3968 of the full argument passing conventions to limit complexity here since
3969 library functions shouldn't have many args. */
3971 argvec
= XALLOCAVEC (struct arg
, nargs
+ 1);
3972 memset (argvec
, 0, (nargs
+ 1) * sizeof (struct arg
));
3974 #ifdef INIT_CUMULATIVE_LIBCALL_ARGS
3975 INIT_CUMULATIVE_LIBCALL_ARGS (args_so_far_v
, outmode
, fun
);
3977 INIT_CUMULATIVE_ARGS (args_so_far_v
, NULL_TREE
, fun
, 0, nargs
);
3979 args_so_far
= pack_cumulative_args (&args_so_far_v
);
3981 args_size
.constant
= 0;
3988 /* If there's a structure value address to be passed,
3989 either pass it in the special place, or pass it as an extra argument. */
3990 if (mem_value
&& struct_value
== 0 && ! pcc_struct_value
)
3992 rtx addr
= XEXP (mem_value
, 0);
3996 /* Make sure it is a reasonable operand for a move or push insn. */
3997 if (!REG_P (addr
) && !MEM_P (addr
)
3998 && !(CONSTANT_P (addr
)
3999 && targetm
.legitimate_constant_p (Pmode
, addr
)))
4000 addr
= force_operand (addr
, NULL_RTX
);
4002 argvec
[count
].value
= addr
;
4003 argvec
[count
].mode
= Pmode
;
4004 argvec
[count
].partial
= 0;
4006 argvec
[count
].reg
= targetm
.calls
.function_arg (args_so_far
,
4007 Pmode
, NULL_TREE
, true);
4008 gcc_assert (targetm
.calls
.arg_partial_bytes (args_so_far
, Pmode
,
4009 NULL_TREE
, 1) == 0);
4011 locate_and_pad_parm (Pmode
, NULL_TREE
,
4012 #ifdef STACK_PARMS_IN_REG_PARM_AREA
4015 argvec
[count
].reg
!= 0,
4017 reg_parm_stack_space
, 0,
4018 NULL_TREE
, &args_size
, &argvec
[count
].locate
);
4020 if (argvec
[count
].reg
== 0 || argvec
[count
].partial
!= 0
4021 || reg_parm_stack_space
> 0)
4022 args_size
.constant
+= argvec
[count
].locate
.size
.constant
;
4024 targetm
.calls
.function_arg_advance (args_so_far
, Pmode
, (tree
) 0, true);
4029 for (; count
< nargs
; count
++)
4031 rtx val
= va_arg (p
, rtx
);
4032 machine_mode mode
= (machine_mode
) va_arg (p
, int);
4035 /* We cannot convert the arg value to the mode the library wants here;
4036 must do it earlier where we know the signedness of the arg. */
4037 gcc_assert (mode
!= BLKmode
4038 && (GET_MODE (val
) == mode
|| GET_MODE (val
) == VOIDmode
));
4040 /* Make sure it is a reasonable operand for a move or push insn. */
4041 if (!REG_P (val
) && !MEM_P (val
)
4042 && !(CONSTANT_P (val
) && targetm
.legitimate_constant_p (mode
, val
)))
4043 val
= force_operand (val
, NULL_RTX
);
4045 if (pass_by_reference (&args_so_far_v
, mode
, NULL_TREE
, 1))
4049 = !reference_callee_copied (&args_so_far_v
, mode
, NULL_TREE
, 1);
4051 /* If this was a CONST function, it is now PURE since it now
4053 if (flags
& ECF_CONST
)
4055 flags
&= ~ECF_CONST
;
4059 if (MEM_P (val
) && !must_copy
)
4061 tree val_expr
= MEM_EXPR (val
);
4063 mark_addressable (val_expr
);
4068 slot
= assign_temp (lang_hooks
.types
.type_for_mode (mode
, 0),
4070 emit_move_insn (slot
, val
);
4073 call_fusage
= gen_rtx_EXPR_LIST (VOIDmode
,
4074 gen_rtx_USE (VOIDmode
, slot
),
4077 call_fusage
= gen_rtx_EXPR_LIST (VOIDmode
,
4078 gen_rtx_CLOBBER (VOIDmode
,
4083 val
= force_operand (XEXP (slot
, 0), NULL_RTX
);
4086 mode
= promote_function_mode (NULL_TREE
, mode
, &unsigned_p
, NULL_TREE
, 0);
4087 argvec
[count
].mode
= mode
;
4088 argvec
[count
].value
= convert_modes (mode
, GET_MODE (val
), val
, unsigned_p
);
4089 argvec
[count
].reg
= targetm
.calls
.function_arg (args_so_far
, mode
,
4092 argvec
[count
].partial
4093 = targetm
.calls
.arg_partial_bytes (args_so_far
, mode
, NULL_TREE
, 1);
4095 if (argvec
[count
].reg
== 0
4096 || argvec
[count
].partial
!= 0
4097 || reg_parm_stack_space
> 0)
4099 locate_and_pad_parm (mode
, NULL_TREE
,
4100 #ifdef STACK_PARMS_IN_REG_PARM_AREA
4103 argvec
[count
].reg
!= 0,
4105 reg_parm_stack_space
, argvec
[count
].partial
,
4106 NULL_TREE
, &args_size
, &argvec
[count
].locate
);
4107 args_size
.constant
+= argvec
[count
].locate
.size
.constant
;
4108 gcc_assert (!argvec
[count
].locate
.size
.var
);
4110 #ifdef BLOCK_REG_PADDING
4112 /* The argument is passed entirely in registers. See at which
4113 end it should be padded. */
4114 argvec
[count
].locate
.where_pad
=
4115 BLOCK_REG_PADDING (mode
, NULL_TREE
,
4116 GET_MODE_SIZE (mode
) <= UNITS_PER_WORD
);
4119 targetm
.calls
.function_arg_advance (args_so_far
, mode
, (tree
) 0, true);
4122 /* If this machine requires an external definition for library
4123 functions, write one out. */
4124 assemble_external_libcall (fun
);
4126 original_args_size
= args_size
;
4127 args_size
.constant
= (((args_size
.constant
4128 + stack_pointer_delta
4132 - stack_pointer_delta
);
4134 args_size
.constant
= MAX (args_size
.constant
,
4135 reg_parm_stack_space
);
4137 if (! OUTGOING_REG_PARM_STACK_SPACE ((!fndecl
? fntype
: TREE_TYPE (fndecl
))))
4138 args_size
.constant
-= reg_parm_stack_space
;
4140 if (args_size
.constant
> crtl
->outgoing_args_size
)
4141 crtl
->outgoing_args_size
= args_size
.constant
;
4143 if (flag_stack_usage_info
&& !ACCUMULATE_OUTGOING_ARGS
)
4145 int pushed
= args_size
.constant
+ pending_stack_adjust
;
4146 if (pushed
> current_function_pushed_stack_size
)
4147 current_function_pushed_stack_size
= pushed
;
4150 if (ACCUMULATE_OUTGOING_ARGS
)
4152 /* Since the stack pointer will never be pushed, it is possible for
4153 the evaluation of a parm to clobber something we have already
4154 written to the stack. Since most function calls on RISC machines
4155 do not use the stack, this is uncommon, but must work correctly.
4157 Therefore, we save any area of the stack that was already written
4158 and that we are using. Here we set up to do this by making a new
4159 stack usage map from the old one.
4161 Another approach might be to try to reorder the argument
4162 evaluations to avoid this conflicting stack usage. */
4164 needed
= args_size
.constant
;
4166 /* Since we will be writing into the entire argument area, the
4167 map must be allocated for its entire size, not just the part that
4168 is the responsibility of the caller. */
4169 if (! OUTGOING_REG_PARM_STACK_SPACE ((!fndecl
? fntype
: TREE_TYPE (fndecl
))))
4170 needed
+= reg_parm_stack_space
;
4172 if (ARGS_GROW_DOWNWARD
)
4173 highest_outgoing_arg_in_use
= MAX (initial_highest_arg_in_use
,
4176 highest_outgoing_arg_in_use
= MAX (initial_highest_arg_in_use
, needed
);
4178 stack_usage_map_buf
= XNEWVEC (char, highest_outgoing_arg_in_use
);
4179 stack_usage_map
= stack_usage_map_buf
;
4181 if (initial_highest_arg_in_use
)
4182 memcpy (stack_usage_map
, initial_stack_usage_map
,
4183 initial_highest_arg_in_use
);
4185 if (initial_highest_arg_in_use
!= highest_outgoing_arg_in_use
)
4186 memset (&stack_usage_map
[initial_highest_arg_in_use
], 0,
4187 highest_outgoing_arg_in_use
- initial_highest_arg_in_use
);
4190 /* We must be careful to use virtual regs before they're instantiated,
4191 and real regs afterwards. Loop optimization, for example, can create
4192 new libcalls after we've instantiated the virtual regs, and if we
4193 use virtuals anyway, they won't match the rtl patterns. */
4195 if (virtuals_instantiated
)
4196 argblock
= plus_constant (Pmode
, stack_pointer_rtx
,
4197 STACK_POINTER_OFFSET
);
4199 argblock
= virtual_outgoing_args_rtx
;
4204 argblock
= push_block (GEN_INT (args_size
.constant
), 0, 0);
4207 /* We push args individually in reverse order, perform stack alignment
4208 before the first push (the last arg). */
4210 anti_adjust_stack (GEN_INT (args_size
.constant
4211 - original_args_size
.constant
));
4215 #ifdef REG_PARM_STACK_SPACE
4216 if (ACCUMULATE_OUTGOING_ARGS
)
4218 /* The argument list is the property of the called routine and it
4219 may clobber it. If the fixed area has been used for previous
4220 parameters, we must save and restore it. */
4221 save_area
= save_fixed_argument_area (reg_parm_stack_space
, argblock
,
4222 &low_to_save
, &high_to_save
);
4226 /* When expanding a normal call, args are stored in push order,
4227 which is the reverse of what we have here. */
4228 bool any_regs
= false;
4229 for (int i
= nargs
; i
-- > 0; )
4230 if (argvec
[i
].reg
!= NULL_RTX
)
4232 targetm
.calls
.call_args (argvec
[i
].reg
, NULL_TREE
);
4236 targetm
.calls
.call_args (pc_rtx
, NULL_TREE
);
4238 /* Push the args that need to be pushed. */
4240 have_push_fusage
= false;
4242 /* ARGNUM indexes the ARGVEC array in the order in which the arguments
4243 are to be pushed. */
4244 for (count
= 0; count
< nargs
; count
++, argnum
--)
4246 machine_mode mode
= argvec
[argnum
].mode
;
4247 rtx val
= argvec
[argnum
].value
;
4248 rtx reg
= argvec
[argnum
].reg
;
4249 int partial
= argvec
[argnum
].partial
;
4250 unsigned int parm_align
= argvec
[argnum
].locate
.boundary
;
4251 int lower_bound
= 0, upper_bound
= 0, i
;
4253 if (! (reg
!= 0 && partial
== 0))
4257 if (ACCUMULATE_OUTGOING_ARGS
)
4259 /* If this is being stored into a pre-allocated, fixed-size,
4260 stack area, save any previous data at that location. */
4262 if (ARGS_GROW_DOWNWARD
)
4264 /* stack_slot is negative, but we want to index stack_usage_map
4265 with positive values. */
4266 upper_bound
= -argvec
[argnum
].locate
.slot_offset
.constant
+ 1;
4267 lower_bound
= upper_bound
- argvec
[argnum
].locate
.size
.constant
;
4271 lower_bound
= argvec
[argnum
].locate
.slot_offset
.constant
;
4272 upper_bound
= lower_bound
+ argvec
[argnum
].locate
.size
.constant
;
4276 /* Don't worry about things in the fixed argument area;
4277 it has already been saved. */
4278 if (i
< reg_parm_stack_space
)
4279 i
= reg_parm_stack_space
;
4280 while (i
< upper_bound
&& stack_usage_map
[i
] == 0)
4283 if (i
< upper_bound
)
4285 /* We need to make a save area. */
4287 = argvec
[argnum
].locate
.size
.constant
* BITS_PER_UNIT
;
4288 machine_mode save_mode
4289 = mode_for_size (size
, MODE_INT
, 1);
4291 = plus_constant (Pmode
, argblock
,
4292 argvec
[argnum
].locate
.offset
.constant
);
4294 = gen_rtx_MEM (save_mode
, memory_address (save_mode
, adr
));
4296 if (save_mode
== BLKmode
)
4298 argvec
[argnum
].save_area
4299 = assign_stack_temp (BLKmode
,
4300 argvec
[argnum
].locate
.size
.constant
4303 emit_block_move (validize_mem
4304 (copy_rtx (argvec
[argnum
].save_area
)),
4306 GEN_INT (argvec
[argnum
].locate
.size
.constant
),
4307 BLOCK_OP_CALL_PARM
);
4311 argvec
[argnum
].save_area
= gen_reg_rtx (save_mode
);
4313 emit_move_insn (argvec
[argnum
].save_area
, stack_area
);
4318 emit_push_insn (val
, mode
, NULL_TREE
, NULL_RTX
, parm_align
,
4319 partial
, reg
, 0, argblock
,
4320 GEN_INT (argvec
[argnum
].locate
.offset
.constant
),
4321 reg_parm_stack_space
,
4322 ARGS_SIZE_RTX (argvec
[argnum
].locate
.alignment_pad
), false);
4324 /* Now mark the segment we just used. */
4325 if (ACCUMULATE_OUTGOING_ARGS
)
4326 for (i
= lower_bound
; i
< upper_bound
; i
++)
4327 stack_usage_map
[i
] = 1;
4331 /* Indicate argument access so that alias.c knows that these
4334 use
= plus_constant (Pmode
, argblock
,
4335 argvec
[argnum
].locate
.offset
.constant
);
4336 else if (have_push_fusage
)
4340 /* When arguments are pushed, trying to tell alias.c where
4341 exactly this argument is won't work, because the
4342 auto-increment causes confusion. So we merely indicate
4343 that we access something with a known mode somewhere on
4345 use
= gen_rtx_PLUS (Pmode
, stack_pointer_rtx
,
4346 gen_rtx_SCRATCH (Pmode
));
4347 have_push_fusage
= true;
4349 use
= gen_rtx_MEM (argvec
[argnum
].mode
, use
);
4350 use
= gen_rtx_USE (VOIDmode
, use
);
4351 call_fusage
= gen_rtx_EXPR_LIST (VOIDmode
, use
, call_fusage
);
4357 fun
= prepare_call_address (NULL
, fun
, NULL
, &call_fusage
, 0, 0);
4359 /* Now load any reg parms into their regs. */
4361 /* ARGNUM indexes the ARGVEC array in the order in which the arguments
4362 are to be pushed. */
4363 for (count
= 0; count
< nargs
; count
++, argnum
--)
4365 machine_mode mode
= argvec
[argnum
].mode
;
4366 rtx val
= argvec
[argnum
].value
;
4367 rtx reg
= argvec
[argnum
].reg
;
4368 int partial
= argvec
[argnum
].partial
;
4369 #ifdef BLOCK_REG_PADDING
4373 /* Handle calls that pass values in multiple non-contiguous
4374 locations. The PA64 has examples of this for library calls. */
4375 if (reg
!= 0 && GET_CODE (reg
) == PARALLEL
)
4376 emit_group_load (reg
, val
, NULL_TREE
, GET_MODE_SIZE (mode
));
4377 else if (reg
!= 0 && partial
== 0)
4379 emit_move_insn (reg
, val
);
4380 #ifdef BLOCK_REG_PADDING
4381 size
= GET_MODE_SIZE (argvec
[argnum
].mode
);
4383 /* Copied from load_register_parameters. */
4385 /* Handle case where we have a value that needs shifting
4386 up to the msb. eg. a QImode value and we're padding
4387 upward on a BYTES_BIG_ENDIAN machine. */
4388 if (size
< UNITS_PER_WORD
4389 && (argvec
[argnum
].locate
.where_pad
4390 == (BYTES_BIG_ENDIAN
? upward
: downward
)))
4393 int shift
= (UNITS_PER_WORD
- size
) * BITS_PER_UNIT
;
4395 /* Assigning REG here rather than a temp makes CALL_FUSAGE
4396 report the whole reg as used. Strictly speaking, the
4397 call only uses SIZE bytes at the msb end, but it doesn't
4398 seem worth generating rtl to say that. */
4399 reg
= gen_rtx_REG (word_mode
, REGNO (reg
));
4400 x
= expand_shift (LSHIFT_EXPR
, word_mode
, reg
, shift
, reg
, 1);
4402 emit_move_insn (reg
, x
);
4410 /* Any regs containing parms remain in use through the call. */
4411 for (count
= 0; count
< nargs
; count
++)
4413 rtx reg
= argvec
[count
].reg
;
4414 if (reg
!= 0 && GET_CODE (reg
) == PARALLEL
)
4415 use_group_regs (&call_fusage
, reg
);
4418 int partial
= argvec
[count
].partial
;
4422 gcc_assert (partial
% UNITS_PER_WORD
== 0);
4423 nregs
= partial
/ UNITS_PER_WORD
;
4424 use_regs (&call_fusage
, REGNO (reg
), nregs
);
4427 use_reg (&call_fusage
, reg
);
4431 /* Pass the function the address in which to return a structure value. */
4432 if (mem_value
!= 0 && struct_value
!= 0 && ! pcc_struct_value
)
4434 emit_move_insn (struct_value
,
4436 force_operand (XEXP (mem_value
, 0),
4438 if (REG_P (struct_value
))
4439 use_reg (&call_fusage
, struct_value
);
4442 /* Don't allow popping to be deferred, since then
4443 cse'ing of library calls could delete a call and leave the pop. */
4445 valreg
= (mem_value
== 0 && outmode
!= VOIDmode
4446 ? hard_libcall_value (outmode
, orgfun
) : NULL_RTX
);
4448 /* Stack must be properly aligned now. */
4449 gcc_assert (!(stack_pointer_delta
4450 & (PREFERRED_STACK_BOUNDARY
/ BITS_PER_UNIT
- 1)));
4452 before_call
= get_last_insn ();
4454 /* We pass the old value of inhibit_defer_pop + 1 to emit_call_1, which
4455 will set inhibit_defer_pop to that value. */
4456 /* The return type is needed to decide how many bytes the function pops.
4457 Signedness plays no role in that, so for simplicity, we pretend it's
4458 always signed. We also assume that the list of arguments passed has
4459 no impact, so we pretend it is unknown. */
4461 emit_call_1 (fun
, NULL
,
4462 get_identifier (XSTR (orgfun
, 0)),
4463 build_function_type (tfom
, NULL_TREE
),
4464 original_args_size
.constant
, args_size
.constant
,
4466 targetm
.calls
.function_arg (args_so_far
,
4467 VOIDmode
, void_type_node
, true),
4469 old_inhibit_defer_pop
+ 1, call_fusage
, flags
, args_so_far
);
4474 gcc_assert (GET_CODE (datum
) == SYMBOL_REF
);
4475 rtx_call_insn
*last
= last_call_insn ();
4476 add_reg_note (last
, REG_CALL_DECL
, datum
);
4479 /* Right-shift returned value if necessary. */
4480 if (!pcc_struct_value
4481 && TYPE_MODE (tfom
) != BLKmode
4482 && targetm
.calls
.return_in_msb (tfom
))
4484 shift_return_value (TYPE_MODE (tfom
), false, valreg
);
4485 valreg
= gen_rtx_REG (TYPE_MODE (tfom
), REGNO (valreg
));
4488 targetm
.calls
.end_call_args ();
4490 /* For calls to `setjmp', etc., inform function.c:setjmp_warnings
4491 that it should complain if nonvolatile values are live. For
4492 functions that cannot return, inform flow that control does not
4494 if (flags
& ECF_NORETURN
)
4496 /* The barrier note must be emitted
4497 immediately after the CALL_INSN. Some ports emit more than
4498 just a CALL_INSN above, so we must search for it here. */
4499 rtx_insn
*last
= get_last_insn ();
4500 while (!CALL_P (last
))
4502 last
= PREV_INSN (last
);
4503 /* There was no CALL_INSN? */
4504 gcc_assert (last
!= before_call
);
4507 emit_barrier_after (last
);
4510 /* Consider that "regular" libcalls, i.e. all of them except for LCT_THROW
4511 and LCT_RETURNS_TWICE, cannot perform non-local gotos. */
4512 if (flags
& ECF_NOTHROW
)
4514 rtx_insn
*last
= get_last_insn ();
4515 while (!CALL_P (last
))
4517 last
= PREV_INSN (last
);
4518 /* There was no CALL_INSN? */
4519 gcc_assert (last
!= before_call
);
4522 make_reg_eh_region_note_nothrow_nononlocal (last
);
4525 /* Now restore inhibit_defer_pop to its actual original value. */
4530 /* Copy the value to the right place. */
4531 if (outmode
!= VOIDmode
&& retval
)
4537 if (value
!= mem_value
)
4538 emit_move_insn (value
, mem_value
);
4540 else if (GET_CODE (valreg
) == PARALLEL
)
4543 value
= gen_reg_rtx (outmode
);
4544 emit_group_store (value
, valreg
, NULL_TREE
, GET_MODE_SIZE (outmode
));
4548 /* Convert to the proper mode if a promotion has been active. */
4549 if (GET_MODE (valreg
) != outmode
)
4551 int unsignedp
= TYPE_UNSIGNED (tfom
);
4553 gcc_assert (promote_function_mode (tfom
, outmode
, &unsignedp
,
4554 fndecl
? TREE_TYPE (fndecl
) : fntype
, 1)
4555 == GET_MODE (valreg
));
4556 valreg
= convert_modes (outmode
, GET_MODE (valreg
), valreg
, 0);
4560 emit_move_insn (value
, valreg
);
4566 if (ACCUMULATE_OUTGOING_ARGS
)
4568 #ifdef REG_PARM_STACK_SPACE
4570 restore_fixed_argument_area (save_area
, argblock
,
4571 high_to_save
, low_to_save
);
4574 /* If we saved any argument areas, restore them. */
4575 for (count
= 0; count
< nargs
; count
++)
4576 if (argvec
[count
].save_area
)
4578 machine_mode save_mode
= GET_MODE (argvec
[count
].save_area
);
4579 rtx adr
= plus_constant (Pmode
, argblock
,
4580 argvec
[count
].locate
.offset
.constant
);
4581 rtx stack_area
= gen_rtx_MEM (save_mode
,
4582 memory_address (save_mode
, adr
));
4584 if (save_mode
== BLKmode
)
4585 emit_block_move (stack_area
,
4587 (copy_rtx (argvec
[count
].save_area
)),
4588 GEN_INT (argvec
[count
].locate
.size
.constant
),
4589 BLOCK_OP_CALL_PARM
);
4591 emit_move_insn (stack_area
, argvec
[count
].save_area
);
4594 highest_outgoing_arg_in_use
= initial_highest_arg_in_use
;
4595 stack_usage_map
= initial_stack_usage_map
;
4598 free (stack_usage_map_buf
);
4604 /* Output a library call to function FUN (a SYMBOL_REF rtx)
4605 (emitting the queue unless NO_QUEUE is nonzero),
4606 for a value of mode OUTMODE,
4607 with NARGS different arguments, passed as alternating rtx values
4608 and machine_modes to convert them to.
4610 FN_TYPE should be LCT_NORMAL for `normal' calls, LCT_CONST for
4611 `const' calls, LCT_PURE for `pure' calls, or other LCT_ value for
4612 other types of library calls. */
4615 emit_library_call (rtx orgfun
, enum libcall_type fn_type
,
4616 machine_mode outmode
, int nargs
, ...)
4620 va_start (p
, nargs
);
4621 emit_library_call_value_1 (0, orgfun
, NULL_RTX
, fn_type
, outmode
, nargs
, p
);
4625 /* Like emit_library_call except that an extra argument, VALUE,
4626 comes second and says where to store the result.
4627 (If VALUE is zero, this function chooses a convenient way
4628 to return the value.
4630 This function returns an rtx for where the value is to be found.
4631 If VALUE is nonzero, VALUE is returned. */
4634 emit_library_call_value (rtx orgfun
, rtx value
,
4635 enum libcall_type fn_type
,
4636 machine_mode outmode
, int nargs
, ...)
4641 va_start (p
, nargs
);
4642 result
= emit_library_call_value_1 (1, orgfun
, value
, fn_type
, outmode
,
4650 /* Store pointer bounds argument ARG into Bounds Table entry
4651 associated with PARM. */
4653 store_bounds (struct arg_data
*arg
, struct arg_data
*parm
)
4655 rtx slot
= NULL
, ptr
= NULL
, addr
= NULL
;
4657 /* We may pass bounds not associated with any pointer. */
4660 gcc_assert (arg
->special_slot
);
4661 slot
= arg
->special_slot
;
4664 /* Find pointer associated with bounds and where it is
4670 gcc_assert (!arg
->special_slot
);
4672 addr
= adjust_address (parm
->stack
, Pmode
, arg
->pointer_offset
);
4674 else if (REG_P (parm
->reg
))
4676 gcc_assert (arg
->special_slot
);
4677 slot
= arg
->special_slot
;
4679 if (MEM_P (parm
->value
))
4680 addr
= adjust_address (parm
->value
, Pmode
, arg
->pointer_offset
);
4681 else if (REG_P (parm
->value
))
4682 ptr
= gen_rtx_SUBREG (Pmode
, parm
->value
, arg
->pointer_offset
);
4685 gcc_assert (!arg
->pointer_offset
);
4691 gcc_assert (GET_CODE (parm
->reg
) == PARALLEL
);
4693 gcc_assert (arg
->special_slot
);
4694 slot
= arg
->special_slot
;
4696 if (parm
->parallel_value
)
4697 ptr
= chkp_get_value_with_offs (parm
->parallel_value
,
4698 GEN_INT (arg
->pointer_offset
));
4704 /* Expand bounds. */
4706 arg
->value
= expand_normal (arg
->tree_value
);
4708 targetm
.calls
.store_bounds_for_arg (ptr
, addr
, arg
->value
, slot
);
4711 /* Store a single argument for a function call
4712 into the register or memory area where it must be passed.
4713 *ARG describes the argument value and where to pass it.
4715 ARGBLOCK is the address of the stack-block for all the arguments,
4716 or 0 on a machine where arguments are pushed individually.
4718 MAY_BE_ALLOCA nonzero says this could be a call to `alloca'
4719 so must be careful about how the stack is used.
4721 VARIABLE_SIZE nonzero says that this was a variable-sized outgoing
4722 argument stack. This is used if ACCUMULATE_OUTGOING_ARGS to indicate
4723 that we need not worry about saving and restoring the stack.
4725 FNDECL is the declaration of the function we are calling.
4727 Return nonzero if this arg should cause sibcall failure,
4731 store_one_arg (struct arg_data
*arg
, rtx argblock
, int flags
,
4732 int variable_size ATTRIBUTE_UNUSED
, int reg_parm_stack_space
)
4734 tree pval
= arg
->tree_value
;
4738 int i
, lower_bound
= 0, upper_bound
= 0;
4739 int sibcall_failure
= 0;
4741 if (TREE_CODE (pval
) == ERROR_MARK
)
4744 /* Push a new temporary level for any temporaries we make for
4748 if (ACCUMULATE_OUTGOING_ARGS
&& !(flags
& ECF_SIBCALL
))
4750 /* If this is being stored into a pre-allocated, fixed-size, stack area,
4751 save any previous data at that location. */
4752 if (argblock
&& ! variable_size
&& arg
->stack
)
4754 if (ARGS_GROW_DOWNWARD
)
4756 /* stack_slot is negative, but we want to index stack_usage_map
4757 with positive values. */
4758 if (GET_CODE (XEXP (arg
->stack_slot
, 0)) == PLUS
)
4759 upper_bound
= -INTVAL (XEXP (XEXP (arg
->stack_slot
, 0), 1)) + 1;
4763 lower_bound
= upper_bound
- arg
->locate
.size
.constant
;
4767 if (GET_CODE (XEXP (arg
->stack_slot
, 0)) == PLUS
)
4768 lower_bound
= INTVAL (XEXP (XEXP (arg
->stack_slot
, 0), 1));
4772 upper_bound
= lower_bound
+ arg
->locate
.size
.constant
;
4776 /* Don't worry about things in the fixed argument area;
4777 it has already been saved. */
4778 if (i
< reg_parm_stack_space
)
4779 i
= reg_parm_stack_space
;
4780 while (i
< upper_bound
&& stack_usage_map
[i
] == 0)
4783 if (i
< upper_bound
)
4785 /* We need to make a save area. */
4786 unsigned int size
= arg
->locate
.size
.constant
* BITS_PER_UNIT
;
4787 machine_mode save_mode
= mode_for_size (size
, MODE_INT
, 1);
4788 rtx adr
= memory_address (save_mode
, XEXP (arg
->stack_slot
, 0));
4789 rtx stack_area
= gen_rtx_MEM (save_mode
, adr
);
4791 if (save_mode
== BLKmode
)
4794 = assign_temp (TREE_TYPE (arg
->tree_value
), 1, 1);
4795 preserve_temp_slots (arg
->save_area
);
4796 emit_block_move (validize_mem (copy_rtx (arg
->save_area
)),
4798 GEN_INT (arg
->locate
.size
.constant
),
4799 BLOCK_OP_CALL_PARM
);
4803 arg
->save_area
= gen_reg_rtx (save_mode
);
4804 emit_move_insn (arg
->save_area
, stack_area
);
4810 /* If this isn't going to be placed on both the stack and in registers,
4811 set up the register and number of words. */
4812 if (! arg
->pass_on_stack
)
4814 if (flags
& ECF_SIBCALL
)
4815 reg
= arg
->tail_call_reg
;
4818 partial
= arg
->partial
;
4821 /* Being passed entirely in a register. We shouldn't be called in
4823 gcc_assert (reg
== 0 || partial
!= 0);
4825 /* If this arg needs special alignment, don't load the registers
4827 if (arg
->n_aligned_regs
!= 0)
4830 /* If this is being passed partially in a register, we can't evaluate
4831 it directly into its stack slot. Otherwise, we can. */
4832 if (arg
->value
== 0)
4834 /* stack_arg_under_construction is nonzero if a function argument is
4835 being evaluated directly into the outgoing argument list and
4836 expand_call must take special action to preserve the argument list
4837 if it is called recursively.
4839 For scalar function arguments stack_usage_map is sufficient to
4840 determine which stack slots must be saved and restored. Scalar
4841 arguments in general have pass_on_stack == 0.
4843 If this argument is initialized by a function which takes the
4844 address of the argument (a C++ constructor or a C function
4845 returning a BLKmode structure), then stack_usage_map is
4846 insufficient and expand_call must push the stack around the
4847 function call. Such arguments have pass_on_stack == 1.
4849 Note that it is always safe to set stack_arg_under_construction,
4850 but this generates suboptimal code if set when not needed. */
4852 if (arg
->pass_on_stack
)
4853 stack_arg_under_construction
++;
4855 arg
->value
= expand_expr (pval
,
4857 || TYPE_MODE (TREE_TYPE (pval
)) != arg
->mode
)
4858 ? NULL_RTX
: arg
->stack
,
4859 VOIDmode
, EXPAND_STACK_PARM
);
4861 /* If we are promoting object (or for any other reason) the mode
4862 doesn't agree, convert the mode. */
4864 if (arg
->mode
!= TYPE_MODE (TREE_TYPE (pval
)))
4865 arg
->value
= convert_modes (arg
->mode
, TYPE_MODE (TREE_TYPE (pval
)),
4866 arg
->value
, arg
->unsignedp
);
4868 if (arg
->pass_on_stack
)
4869 stack_arg_under_construction
--;
4872 /* Check for overlap with already clobbered argument area. */
4873 if ((flags
& ECF_SIBCALL
)
4874 && MEM_P (arg
->value
)
4875 && mem_overlaps_already_clobbered_arg_p (XEXP (arg
->value
, 0),
4876 arg
->locate
.size
.constant
))
4877 sibcall_failure
= 1;
4879 /* Don't allow anything left on stack from computation
4880 of argument to alloca. */
4881 if (flags
& ECF_MAY_BE_ALLOCA
)
4882 do_pending_stack_adjust ();
4884 if (arg
->value
== arg
->stack
)
4885 /* If the value is already in the stack slot, we are done. */
4887 else if (arg
->mode
!= BLKmode
)
4890 unsigned int parm_align
;
4892 /* Argument is a scalar, not entirely passed in registers.
4893 (If part is passed in registers, arg->partial says how much
4894 and emit_push_insn will take care of putting it there.)
4896 Push it, and if its size is less than the
4897 amount of space allocated to it,
4898 also bump stack pointer by the additional space.
4899 Note that in C the default argument promotions
4900 will prevent such mismatches. */
4902 size
= GET_MODE_SIZE (arg
->mode
);
4903 /* Compute how much space the push instruction will push.
4904 On many machines, pushing a byte will advance the stack
4905 pointer by a halfword. */
4906 #ifdef PUSH_ROUNDING
4907 size
= PUSH_ROUNDING (size
);
4911 /* Compute how much space the argument should get:
4912 round up to a multiple of the alignment for arguments. */
4913 if (none
!= FUNCTION_ARG_PADDING (arg
->mode
, TREE_TYPE (pval
)))
4914 used
= (((size
+ PARM_BOUNDARY
/ BITS_PER_UNIT
- 1)
4915 / (PARM_BOUNDARY
/ BITS_PER_UNIT
))
4916 * (PARM_BOUNDARY
/ BITS_PER_UNIT
));
4918 /* Compute the alignment of the pushed argument. */
4919 parm_align
= arg
->locate
.boundary
;
4920 if (FUNCTION_ARG_PADDING (arg
->mode
, TREE_TYPE (pval
)) == downward
)
4922 int pad
= used
- size
;
4925 unsigned int pad_align
= (pad
& -pad
) * BITS_PER_UNIT
;
4926 parm_align
= MIN (parm_align
, pad_align
);
4930 /* This isn't already where we want it on the stack, so put it there.
4931 This can either be done with push or copy insns. */
4932 if (!emit_push_insn (arg
->value
, arg
->mode
, TREE_TYPE (pval
), NULL_RTX
,
4933 parm_align
, partial
, reg
, used
- size
, argblock
,
4934 ARGS_SIZE_RTX (arg
->locate
.offset
), reg_parm_stack_space
,
4935 ARGS_SIZE_RTX (arg
->locate
.alignment_pad
), true))
4936 sibcall_failure
= 1;
4938 /* Unless this is a partially-in-register argument, the argument is now
4941 arg
->value
= arg
->stack
;
4945 /* BLKmode, at least partly to be pushed. */
4947 unsigned int parm_align
;
4951 /* Pushing a nonscalar.
4952 If part is passed in registers, PARTIAL says how much
4953 and emit_push_insn will take care of putting it there. */
4955 /* Round its size up to a multiple
4956 of the allocation unit for arguments. */
4958 if (arg
->locate
.size
.var
!= 0)
4961 size_rtx
= ARGS_SIZE_RTX (arg
->locate
.size
);
4965 /* PUSH_ROUNDING has no effect on us, because emit_push_insn
4966 for BLKmode is careful to avoid it. */
4967 excess
= (arg
->locate
.size
.constant
4968 - int_size_in_bytes (TREE_TYPE (pval
))
4970 size_rtx
= expand_expr (size_in_bytes (TREE_TYPE (pval
)),
4971 NULL_RTX
, TYPE_MODE (sizetype
),
4975 parm_align
= arg
->locate
.boundary
;
4977 /* When an argument is padded down, the block is aligned to
4978 PARM_BOUNDARY, but the actual argument isn't. */
4979 if (FUNCTION_ARG_PADDING (arg
->mode
, TREE_TYPE (pval
)) == downward
)
4981 if (arg
->locate
.size
.var
)
4982 parm_align
= BITS_PER_UNIT
;
4985 unsigned int excess_align
= (excess
& -excess
) * BITS_PER_UNIT
;
4986 parm_align
= MIN (parm_align
, excess_align
);
4990 if ((flags
& ECF_SIBCALL
) && MEM_P (arg
->value
))
4992 /* emit_push_insn might not work properly if arg->value and
4993 argblock + arg->locate.offset areas overlap. */
4997 if (XEXP (x
, 0) == crtl
->args
.internal_arg_pointer
4998 || (GET_CODE (XEXP (x
, 0)) == PLUS
4999 && XEXP (XEXP (x
, 0), 0) ==
5000 crtl
->args
.internal_arg_pointer
5001 && CONST_INT_P (XEXP (XEXP (x
, 0), 1))))
5003 if (XEXP (x
, 0) != crtl
->args
.internal_arg_pointer
)
5004 i
= INTVAL (XEXP (XEXP (x
, 0), 1));
5006 /* expand_call should ensure this. */
5007 gcc_assert (!arg
->locate
.offset
.var
5008 && arg
->locate
.size
.var
== 0
5009 && CONST_INT_P (size_rtx
));
5011 if (arg
->locate
.offset
.constant
> i
)
5013 if (arg
->locate
.offset
.constant
< i
+ INTVAL (size_rtx
))
5014 sibcall_failure
= 1;
5016 else if (arg
->locate
.offset
.constant
< i
)
5018 /* Use arg->locate.size.constant instead of size_rtx
5019 because we only care about the part of the argument
5021 if (i
< (arg
->locate
.offset
.constant
5022 + arg
->locate
.size
.constant
))
5023 sibcall_failure
= 1;
5027 /* Even though they appear to be at the same location,
5028 if part of the outgoing argument is in registers,
5029 they aren't really at the same location. Check for
5030 this by making sure that the incoming size is the
5031 same as the outgoing size. */
5032 if (arg
->locate
.size
.constant
!= INTVAL (size_rtx
))
5033 sibcall_failure
= 1;
5038 emit_push_insn (arg
->value
, arg
->mode
, TREE_TYPE (pval
), size_rtx
,
5039 parm_align
, partial
, reg
, excess
, argblock
,
5040 ARGS_SIZE_RTX (arg
->locate
.offset
), reg_parm_stack_space
,
5041 ARGS_SIZE_RTX (arg
->locate
.alignment_pad
), false);
5043 /* Unless this is a partially-in-register argument, the argument is now
5046 ??? Unlike the case above, in which we want the actual
5047 address of the data, so that we can load it directly into a
5048 register, here we want the address of the stack slot, so that
5049 it's properly aligned for word-by-word copying or something
5050 like that. It's not clear that this is always correct. */
5052 arg
->value
= arg
->stack_slot
;
5055 if (arg
->reg
&& GET_CODE (arg
->reg
) == PARALLEL
)
5057 tree type
= TREE_TYPE (arg
->tree_value
);
5059 = emit_group_load_into_temps (arg
->reg
, arg
->value
, type
,
5060 int_size_in_bytes (type
));
5063 /* Mark all slots this store used. */
5064 if (ACCUMULATE_OUTGOING_ARGS
&& !(flags
& ECF_SIBCALL
)
5065 && argblock
&& ! variable_size
&& arg
->stack
)
5066 for (i
= lower_bound
; i
< upper_bound
; i
++)
5067 stack_usage_map
[i
] = 1;
5069 /* Once we have pushed something, pops can't safely
5070 be deferred during the rest of the arguments. */
5073 /* Free any temporary slots made in processing this argument. */
5076 return sibcall_failure
;
5079 /* Nonzero if we do not know how to pass TYPE solely in registers. */
5082 must_pass_in_stack_var_size (machine_mode mode ATTRIBUTE_UNUSED
,
5088 /* If the type has variable size... */
5089 if (TREE_CODE (TYPE_SIZE (type
)) != INTEGER_CST
)
5092 /* If the type is marked as addressable (it is required
5093 to be constructed into the stack)... */
5094 if (TREE_ADDRESSABLE (type
))
5100 /* Another version of the TARGET_MUST_PASS_IN_STACK hook. This one
5101 takes trailing padding of a structure into account. */
5102 /* ??? Should be able to merge these two by examining BLOCK_REG_PADDING. */
5105 must_pass_in_stack_var_size_or_pad (machine_mode mode
, const_tree type
)
5110 /* If the type has variable size... */
5111 if (TREE_CODE (TYPE_SIZE (type
)) != INTEGER_CST
)
5114 /* If the type is marked as addressable (it is required
5115 to be constructed into the stack)... */
5116 if (TREE_ADDRESSABLE (type
))
5119 /* If the padding and mode of the type is such that a copy into
5120 a register would put it into the wrong part of the register. */
5122 && int_size_in_bytes (type
) % (PARM_BOUNDARY
/ BITS_PER_UNIT
)
5123 && (FUNCTION_ARG_PADDING (mode
, type
)
5124 == (BYTES_BIG_ENDIAN
? upward
: downward
)))