* config.gcc (cygwin tm_file): Add cygwin-stdint.h.
[official-gcc.git] / gcc / function.h
blob70797974bf0707aa17c6ede5ad06f7795211f248
1 /* Structure for saving state for a nested function.
2 Copyright (C) 1989, 1992, 1993, 1994, 1995, 1996, 1997, 1998,
3 1999, 2000, 2003, 2004, 2005, 2006, 2007, 2008, 2009
4 Free Software Foundation, Inc.
6 This file is part of GCC.
8 GCC is free software; you can redistribute it and/or modify it under
9 the terms of the GNU General Public License as published by the Free
10 Software Foundation; either version 3, or (at your option) any later
11 version.
13 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
14 WARRANTY; without even the implied warranty of MERCHANTABILITY or
15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
16 for more details.
18 You should have received a copy of the GNU General Public License
19 along with GCC; see the file COPYING3. If not see
20 <http://www.gnu.org/licenses/>. */
22 #ifndef GCC_FUNCTION_H
23 #define GCC_FUNCTION_H
25 #include "tree.h"
26 #include "hashtab.h"
27 #include "varray.h"
29 /* Stack of pending (incomplete) sequences saved by `start_sequence'.
30 Each element describes one pending sequence.
31 The main insn-chain is saved in the last element of the chain,
32 unless the chain is empty. */
34 struct sequence_stack GTY(())
36 /* First and last insns in the chain of the saved sequence. */
37 rtx first;
38 rtx last;
39 struct sequence_stack *next;
42 struct emit_status GTY(())
44 /* This is reset to LAST_VIRTUAL_REGISTER + 1 at the start of each function.
45 After rtl generation, it is 1 plus the largest register number used. */
46 int x_reg_rtx_no;
48 /* Lowest label number in current function. */
49 int x_first_label_num;
51 /* The ends of the doubly-linked chain of rtl for the current function.
52 Both are reset to null at the start of rtl generation for the function.
54 start_sequence saves both of these on `sequence_stack' and then starts
55 a new, nested sequence of insns. */
56 rtx x_first_insn;
57 rtx x_last_insn;
59 /* Stack of pending (incomplete) sequences saved by `start_sequence'.
60 Each element describes one pending sequence.
61 The main insn-chain is saved in the last element of the chain,
62 unless the chain is empty. */
63 struct sequence_stack *sequence_stack;
65 /* INSN_UID for next insn emitted.
66 Reset to 1 for each function compiled. */
67 int x_cur_insn_uid;
69 /* Location the last line-number NOTE emitted.
70 This is used to avoid generating duplicates. */
71 location_t x_last_location;
73 /* The length of the regno_pointer_align, regno_decl, and x_regno_reg_rtx
74 vectors. Since these vectors are needed during the expansion phase when
75 the total number of registers in the function is not yet known, the
76 vectors are copied and made bigger when necessary. */
77 int regno_pointer_align_length;
79 /* Indexed by pseudo register number, if nonzero gives the known alignment
80 for that pseudo (if REG_POINTER is set in x_regno_reg_rtx).
81 Allocated in parallel with x_regno_reg_rtx. */
82 unsigned char * GTY((skip)) regno_pointer_align;
86 /* Indexed by pseudo register number, gives the rtx for that pseudo.
87 Allocated in parallel with regno_pointer_align.
88 FIXME: We could put it into emit_status struct, but gengtype is not able to deal
89 with length attribute nested in top level structures. */
91 extern GTY ((length ("crtl->emit.x_reg_rtx_no"))) rtx * regno_reg_rtx;
93 /* For backward compatibility... eventually these should all go away. */
94 #define reg_rtx_no (crtl->emit.x_reg_rtx_no)
95 #define seq_stack (crtl->emit.sequence_stack)
97 #define REGNO_POINTER_ALIGN(REGNO) (crtl->emit.regno_pointer_align[REGNO])
99 struct expr_status GTY(())
101 /* Number of units that we should eventually pop off the stack.
102 These are the arguments to function calls that have already returned. */
103 int x_pending_stack_adjust;
105 /* Under some ABIs, it is the caller's responsibility to pop arguments
106 pushed for function calls. A naive implementation would simply pop
107 the arguments immediately after each call. However, if several
108 function calls are made in a row, it is typically cheaper to pop
109 all the arguments after all of the calls are complete since a
110 single pop instruction can be used. Therefore, GCC attempts to
111 defer popping the arguments until absolutely necessary. (For
112 example, at the end of a conditional, the arguments must be popped,
113 since code outside the conditional won't know whether or not the
114 arguments need to be popped.)
116 When INHIBIT_DEFER_POP is nonzero, however, the compiler does not
117 attempt to defer pops. Instead, the stack is popped immediately
118 after each call. Rather then setting this variable directly, use
119 NO_DEFER_POP and OK_DEFER_POP. */
120 int x_inhibit_defer_pop;
122 /* If PREFERRED_STACK_BOUNDARY and PUSH_ROUNDING are defined, the stack
123 boundary can be momentarily unaligned while pushing the arguments.
124 Record the delta since last aligned boundary here in order to get
125 stack alignment in the nested function calls working right. */
126 int x_stack_pointer_delta;
128 /* Nonzero means __builtin_saveregs has already been done in this function.
129 The value is the pseudoreg containing the value __builtin_saveregs
130 returned. */
131 rtx x_saveregs_value;
133 /* Similarly for __builtin_apply_args. */
134 rtx x_apply_args_value;
136 /* List of labels that must never be deleted. */
137 rtx x_forced_labels;
140 typedef struct call_site_record *call_site_record;
141 DEF_VEC_P(call_site_record);
142 DEF_VEC_ALLOC_P(call_site_record, gc);
144 /* RTL representation of exception handling. */
145 struct rtl_eh GTY(())
147 rtx filter;
148 rtx exc_ptr;
150 int built_landing_pads;
152 rtx ehr_stackadj;
153 rtx ehr_handler;
154 rtx ehr_label;
156 rtx sjlj_fc;
157 rtx sjlj_exit_after;
159 htab_t GTY ((param_is (struct ehl_map_entry))) exception_handler_label_map;
161 VEC(tree,gc) *ttype_data;
162 varray_type ehspec_data;
163 varray_type action_record_data;
165 VEC(call_site_record,gc) *call_site_record;
168 #define pending_stack_adjust (crtl->expr.x_pending_stack_adjust)
169 #define inhibit_defer_pop (crtl->expr.x_inhibit_defer_pop)
170 #define saveregs_value (crtl->expr.x_saveregs_value)
171 #define apply_args_value (crtl->expr.x_apply_args_value)
172 #define forced_labels (crtl->expr.x_forced_labels)
173 #define stack_pointer_delta (crtl->expr.x_stack_pointer_delta)
175 struct gimple_df;
176 struct temp_slot;
177 typedef struct temp_slot *temp_slot_p;
178 struct call_site_record;
180 DEF_VEC_P(temp_slot_p);
181 DEF_VEC_ALLOC_P(temp_slot_p,gc);
182 struct ipa_opt_pass;
183 typedef struct ipa_opt_pass *ipa_opt_pass;
185 DEF_VEC_P(ipa_opt_pass);
186 DEF_VEC_ALLOC_P(ipa_opt_pass,heap);
188 enum function_frequency {
189 /* This function most likely won't be executed at all.
190 (set only when profile feedback is available or via function attribute). */
191 FUNCTION_FREQUENCY_UNLIKELY_EXECUTED,
192 /* The default value. */
193 FUNCTION_FREQUENCY_NORMAL,
194 /* Optimize this function hard
195 (set only when profile feedback is available or via function attribute). */
196 FUNCTION_FREQUENCY_HOT
199 struct varasm_status GTY(())
201 /* If we're using a per-function constant pool, this is it. */
202 struct rtx_constant_pool *pool;
204 /* Number of tree-constants deferred during the expansion of this
205 function. */
206 unsigned int deferred_constants;
209 /* Information mainlined about RTL representation of incoming arguments. */
210 struct incoming_args GTY(())
212 /* Number of bytes of args popped by function being compiled on its return.
213 Zero if no bytes are to be popped.
214 May affect compilation of return insn or of function epilogue. */
215 int pops_args;
217 /* If function's args have a fixed size, this is that size, in bytes.
218 Otherwise, it is -1.
219 May affect compilation of return insn or of function epilogue. */
220 int size;
222 /* # bytes the prologue should push and pretend that the caller pushed them.
223 The prologue must do this, but only if parms can be passed in
224 registers. */
225 int pretend_args_size;
227 /* This is the offset from the arg pointer to the place where the first
228 anonymous arg can be found, if there is one. */
229 rtx arg_offset_rtx;
231 /* Quantities of various kinds of registers
232 used for the current function's args. */
233 CUMULATIVE_ARGS info;
235 /* The arg pointer hard register, or the pseudo into which it was copied. */
236 rtx internal_arg_pointer;
239 /* Data for function partitioning. */
240 struct function_subsections GTY(())
242 /* Assembly labels for the hot and cold text sections, to
243 be used by debugger functions for determining the size of text
244 sections. */
246 const char *hot_section_label;
247 const char *cold_section_label;
248 const char *hot_section_end_label;
249 const char *cold_section_end_label;
251 /* String to be used for name of cold text sections, via
252 targetm.asm_out.named_section. */
254 const char *unlikely_text_section_name;
257 /* Datastructures maintained for currently processed function in RTL form. */
258 struct rtl_data GTY(())
260 struct expr_status expr;
261 struct emit_status emit;
262 struct varasm_status varasm;
263 struct incoming_args args;
264 struct function_subsections subsections;
265 struct rtl_eh eh;
267 /* For function.c */
269 /* # of bytes of outgoing arguments. If ACCUMULATE_OUTGOING_ARGS is
270 defined, the needed space is pushed by the prologue. */
271 int outgoing_args_size;
273 /* If nonzero, an RTL expression for the location at which the current
274 function returns its result. If the current function returns its
275 result in a register, current_function_return_rtx will always be
276 the hard register containing the result. */
277 rtx return_rtx;
279 /* Opaque pointer used by get_hard_reg_initial_val and
280 has_hard_reg_initial_val (see integrate.[hc]). */
281 struct initial_value_struct *hard_reg_initial_vals;
283 /* A variable living at the top of the frame that holds a known value.
284 Used for detecting stack clobbers. */
285 tree stack_protect_guard;
287 /* List (chain of EXPR_LIST) of labels heading the current handlers for
288 nonlocal gotos. */
289 rtx x_nonlocal_goto_handler_labels;
291 /* Label that will go on function epilogue.
292 Jumping to this label serves as a "return" instruction
293 on machines which require execution of the epilogue on all returns. */
294 rtx x_return_label;
296 /* Label that will go on the end of function epilogue.
297 Jumping to this label serves as a "naked return" instruction
298 on machines which require execution of the epilogue on all returns. */
299 rtx x_naked_return_label;
301 /* List (chain of EXPR_LISTs) of all stack slots in this function.
302 Made for the sake of unshare_all_rtl. */
303 rtx x_stack_slot_list;
305 /* Place after which to insert the tail_recursion_label if we need one. */
306 rtx x_stack_check_probe_note;
308 /* Location at which to save the argument pointer if it will need to be
309 referenced. There are two cases where this is done: if nonlocal gotos
310 exist, or if vars stored at an offset from the argument pointer will be
311 needed by inner routines. */
312 rtx x_arg_pointer_save_area;
314 /* Dynamic Realign Argument Pointer used for realigning stack. */
315 rtx drap_reg;
317 /* Offset to end of allocated area of stack frame.
318 If stack grows down, this is the address of the last stack slot allocated.
319 If stack grows up, this is the address for the next slot. */
320 HOST_WIDE_INT x_frame_offset;
322 /* Insn after which register parms and SAVE_EXPRs are born, if nonopt. */
323 rtx x_parm_birth_insn;
325 /* List of all used temporaries allocated, by level. */
326 VEC(temp_slot_p,gc) *x_used_temp_slots;
328 /* List of available temp slots. */
329 struct temp_slot *x_avail_temp_slots;
331 /* Current nesting level for temporaries. */
332 int x_temp_slot_level;
334 /* The largest alignment needed on the stack, including requirement
335 for outgoing stack alignment. */
336 unsigned int stack_alignment_needed;
338 /* Preferred alignment of the end of stack frame, which is preferred
339 to call other functions. */
340 unsigned int preferred_stack_boundary;
342 /* The minimum alignment of parameter stack. */
343 unsigned int parm_stack_boundary;
345 /* The largest alignment of slot allocated on the stack. */
346 unsigned int max_used_stack_slot_alignment;
348 /* The stack alignment estimated before reload, with consideration of
349 following factors:
350 1. Alignment of local stack variables (max_used_stack_slot_alignment)
351 2. Alignment requirement to call other functions
352 (preferred_stack_boundary)
353 3. Alignment of non-local stack variables but might be spilled in
354 local stack. */
355 unsigned int stack_alignment_estimated;
357 /* For reorg. */
359 /* If some insns can be deferred to the delay slots of the epilogue, the
360 delay list for them is recorded here. */
361 rtx epilogue_delay_list;
363 /* Nonzero if function being compiled called builtin_return_addr or
364 builtin_frame_address with nonzero count. */
365 bool accesses_prior_frames;
367 /* Nonzero if the function calls __builtin_eh_return. */
368 bool calls_eh_return;
370 /* Nonzero if function saves all registers, e.g. if it has a nonlocal
371 label that can reach the exit block via non-exceptional paths. */
372 bool saves_all_registers;
374 /* Nonzero if function being compiled has nonlocal gotos to parent
375 function. */
376 bool has_nonlocal_goto;
378 /* Nonzero if function being compiled has an asm statement. */
379 bool has_asm_statement;
381 /* This bit is used by the exception handling logic. It is set if all
382 calls (if any) are sibling calls. Such functions do not have to
383 have EH tables generated, as they cannot throw. A call to such a
384 function, however, should be treated as throwing if any of its callees
385 can throw. */
386 bool all_throwers_are_sibcalls;
388 /* Nonzero if stack limit checking should be enabled in the current
389 function. */
390 bool limit_stack;
392 /* Nonzero if profiling code should be generated. */
393 bool profile;
395 /* Nonzero if the current function uses the constant pool. */
396 bool uses_const_pool;
398 /* Nonzero if the current function uses pic_offset_table_rtx. */
399 bool uses_pic_offset_table;
401 /* Nonzero if the current function needs an lsda for exception handling. */
402 bool uses_eh_lsda;
404 /* Set when the tail call has been produced. */
405 bool tail_call_emit;
407 /* Nonzero if code to initialize arg_pointer_save_area has been emitted. */
408 bool arg_pointer_save_area_init;
410 /* Nonzero if current function must be given a frame pointer.
411 Set in global.c if anything is allocated on the stack there. */
412 bool frame_pointer_needed;
414 /* When set, expand should optimize for speed. */
415 bool maybe_hot_insn_p;
417 /* Nonzero if function stack realignment is needed. This flag may be
418 set twice: before and after reload. It is set before reload wrt
419 stack alignment estimation before reload. It will be changed after
420 reload if by then criteria of stack realignment is different.
421 The value set after reload is the accurate one and is finalized. */
422 bool stack_realign_needed;
424 /* Nonzero if function stack realignment is tried. This flag is set
425 only once before reload. It affects register elimination. This
426 is used to generate DWARF debug info for stack variables. */
427 bool stack_realign_tried;
429 /* Nonzero if function being compiled needs dynamic realigned
430 argument pointer (drap) if stack needs realigning. */
431 bool need_drap;
433 /* Nonzero if function stack realignment estimation is done, namely
434 stack_realign_needed flag has been set before reload wrt estimated
435 stack alignment info. */
436 bool stack_realign_processed;
438 /* Nonzero if function stack realignment has been finalized, namely
439 stack_realign_needed flag has been set and finalized after reload. */
440 bool stack_realign_finalized;
442 /* True if dbr_schedule has already been called for this function. */
443 bool dbr_scheduled_p;
445 /* True if current function can not throw. Unlike
446 TREE_NOTHROW (current_function_decl) it is set even for overwritable
447 function where currently compiled version of it is nothrow. */
448 bool nothrow;
451 #define return_label (crtl->x_return_label)
452 #define naked_return_label (crtl->x_naked_return_label)
453 #define stack_slot_list (crtl->x_stack_slot_list)
454 #define parm_birth_insn (crtl->x_parm_birth_insn)
455 #define frame_offset (crtl->x_frame_offset)
456 #define stack_check_probe_note (crtl->x_stack_check_probe_note)
457 #define arg_pointer_save_area (crtl->x_arg_pointer_save_area)
458 #define used_temp_slots (crtl->x_used_temp_slots)
459 #define avail_temp_slots (crtl->x_avail_temp_slots)
460 #define temp_slot_level (crtl->x_temp_slot_level)
461 #define nonlocal_goto_handler_labels (crtl->x_nonlocal_goto_handler_labels)
462 #define frame_pointer_needed (crtl->frame_pointer_needed)
463 #define stack_realign_fp (crtl->stack_realign_needed && !crtl->need_drap)
464 #define stack_realign_drap (crtl->stack_realign_needed && crtl->need_drap)
466 extern GTY(()) struct rtl_data x_rtl;
468 /* Accessor to RTL datastructures. We keep them statically allocated now since
469 we never keep multiple functions. For threaded compiler we might however
470 want to do differently. */
471 #define crtl (&x_rtl)
473 /* This structure can save all the important global and static variables
474 describing the status of the current function. */
476 struct function GTY(())
478 struct eh_status *eh;
480 /* The control flow graph for this function. */
481 struct control_flow_graph *cfg;
483 /* GIMPLE body for this function. */
484 struct gimple_seq_d *gimple_body;
486 /* SSA and dataflow information. */
487 struct gimple_df *gimple_df;
489 /* The loops in this function. */
490 struct loops *x_current_loops;
492 /* Value histograms attached to particular statements. */
493 htab_t GTY((skip)) value_histograms;
495 /* For function.c. */
497 /* Points to the FUNCTION_DECL of this function. */
498 tree decl;
500 /* A PARM_DECL that should contain the static chain for this function.
501 It will be initialized at the beginning of the function. */
502 tree static_chain_decl;
504 /* An expression that contains the non-local goto save area. The first
505 word is the saved frame pointer and the second is the saved stack
506 pointer. */
507 tree nonlocal_goto_save_area;
509 /* List of function local variables, functions, types and constants. */
510 tree local_decls;
512 /* For md files. */
514 /* tm.h can use this to store whatever it likes. */
515 struct machine_function * GTY ((maybe_undef)) machine;
517 /* Language-specific code can use this to store whatever it likes. */
518 struct language_function * language;
520 /* Used types hash table. */
521 htab_t GTY ((param_is (union tree_node))) used_types_hash;
523 /* Last statement uid. */
524 int last_stmt_uid;
526 /* Function sequence number for profiling, debugging, etc. */
527 int funcdef_no;
529 /* Line number of the start of the function for debugging purposes. */
530 location_t function_start_locus;
532 /* Line number of the end of the function. */
533 location_t function_end_locus;
535 /* Properties used by the pass manager. */
536 unsigned int curr_properties;
537 unsigned int last_verified;
538 /* Interprocedural passes scheduled to have their transform functions
539 applied next time we execute local pass on them. We maintain it
540 per-function in order to allow IPA passes to introduce new functions. */
541 VEC(ipa_opt_pass,heap) * GTY((skip)) ipa_transforms_to_apply;
543 /* Collected bit flags. */
545 /* Number of units of general registers that need saving in stdarg
546 function. What unit is depends on the backend, either it is number
547 of bytes, or it can be number of registers. */
548 unsigned int va_list_gpr_size : 8;
550 /* Number of units of floating point registers that need saving in stdarg
551 function. */
552 unsigned int va_list_fpr_size : 8;
555 /* How commonly executed the function is. Initialized during branch
556 probabilities pass. */
557 ENUM_BITFIELD (function_frequency) function_frequency : 2;
559 /* Nonzero if function being compiled can call setjmp. */
560 unsigned int calls_setjmp : 1;
562 /* Nonzero if function being compiled can call alloca,
563 either as a subroutine or builtin. */
564 unsigned int calls_alloca : 1;
566 /* Nonzero if function being compiled receives nonlocal gotos
567 from nested functions. */
568 unsigned int has_nonlocal_label : 1;
570 /* Nonzero if current function uses stdarg.h or equivalent. */
571 unsigned int stdarg : 1;
573 /* Nonzero if the back-end should not keep track of expressions that
574 determine the size of variable-sized objects. Normally, such
575 expressions are saved away, and then expanded when the next
576 function is started. For example, if a parameter has a
577 variable-sized type, then the size of the parameter is computed
578 when the function body is entered. However, some front-ends do
579 not desire this behavior. */
580 unsigned int dont_save_pending_sizes_p : 1;
582 unsigned int after_inlining : 1;
583 unsigned int always_inline_functions_inlined : 1;
585 /* Fields below this point are not set for abstract functions; see
586 allocate_struct_function. */
588 /* Nonzero if function being compiled needs to be given an address
589 where the value should be stored. */
590 unsigned int returns_struct : 1;
592 /* Nonzero if function being compiled needs to
593 return the address of where it has put a structure value. */
594 unsigned int returns_pcc_struct : 1;
596 /* Nonzero if pass_tree_profile was run on this function. */
597 unsigned int after_tree_profile : 1;
599 /* Nonzero if this function has local DECL_HARD_REGISTER variables.
600 In this case code motion has to be done more carefully. */
601 unsigned int has_local_explicit_reg_vars : 1;
603 /* Nonzero if the current function is a thunk, i.e., a lightweight
604 function implemented by the output_mi_thunk hook) that just
605 adjusts one of its arguments and forwards to another
606 function. */
607 unsigned int is_thunk : 1;
610 /* If va_list_[gf]pr_size is set to this, it means we don't know how
611 many units need to be saved. */
612 #define VA_LIST_MAX_GPR_SIZE 255
613 #define VA_LIST_MAX_FPR_SIZE 255
615 /* The function currently being compiled. */
616 extern GTY(()) struct function *cfun;
618 /* In order to ensure that cfun is not set directly, we redefine it so
619 that it is not an lvalue. Rather than assign to cfun, use
620 push_cfun or set_cfun. */
621 #define cfun (cfun + 0)
623 /* Nonzero if we've already converted virtual regs to hard regs. */
624 extern int virtuals_instantiated;
626 /* Nonzero if at least one trampoline has been created. */
627 extern int trampolines_created;
629 /* cfun shouldn't be set directly; use one of these functions instead. */
630 extern void set_cfun (struct function *new_cfun);
631 extern void push_cfun (struct function *new_cfun);
632 extern void pop_cfun (void);
633 extern void instantiate_decl_rtl (rtx x);
635 /* For backward compatibility... eventually these should all go away. */
636 #define current_function_funcdef_no (cfun->funcdef_no)
638 #define current_loops (cfun->x_current_loops)
639 #define dom_computed (cfun->cfg->x_dom_computed)
640 #define n_bbs_in_dom_tree (cfun->cfg->x_n_bbs_in_dom_tree)
641 #define VALUE_HISTOGRAMS(fun) (fun)->value_histograms
643 /* Identify BLOCKs referenced by more than one NOTE_INSN_BLOCK_{BEG,END},
644 and create duplicate blocks. */
645 extern void reorder_blocks (void);
647 /* Set BLOCK_NUMBER for all the blocks in FN. */
648 extern void number_blocks (tree);
650 extern void clear_block_marks (tree);
651 extern tree blocks_nreverse (tree);
653 /* Return size needed for stack frame based on slots so far allocated.
654 This size counts from zero. It is not rounded to STACK_BOUNDARY;
655 the caller may have to do that. */
656 extern HOST_WIDE_INT get_frame_size (void);
658 /* Issue an error message and return TRUE if frame OFFSET overflows in
659 the signed target pointer arithmetics for function FUNC. Otherwise
660 return FALSE. */
661 extern bool frame_offset_overflow (HOST_WIDE_INT, tree);
663 /* A pointer to a function to create target specific, per-function
664 data structures. */
665 extern struct machine_function * (*init_machine_status) (void);
667 /* Save and restore status information for a nested function. */
668 extern void free_after_parsing (struct function *);
669 extern void free_after_compilation (struct function *);
671 extern void init_varasm_status (void);
673 #ifdef RTX_CODE
674 extern void diddle_return_value (void (*)(rtx, void*), void*);
675 extern void clobber_return_register (void);
676 #endif
678 extern rtx get_arg_pointer_save_area (void);
680 /* Returns the name of the current function. */
681 extern const char *current_function_name (void);
682 /* Returns the assembler name (raw, mangled) of the current function. */
683 extern const char *current_function_assembler_name (void);
685 extern void do_warn_unused_parameter (tree);
687 extern bool pass_by_reference (CUMULATIVE_ARGS *, enum machine_mode,
688 tree, bool);
689 extern bool reference_callee_copied (CUMULATIVE_ARGS *, enum machine_mode,
690 tree, bool);
692 extern void used_types_insert (tree);
694 extern int get_next_funcdef_no (void);
695 #endif /* GCC_FUNCTION_H */