Daily bump.
[gcc.git] / gcc / expr.h
1 /* Definitions for code generation pass of GNU compiler.
2 Copyright (C) 1987, 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998,
3 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006
4 Free Software Foundation, Inc.
5
6 This file is part of GCC.
7
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 2, or (at your option) any later
11 version.
12
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.
17
18 You should have received a copy of the GNU General Public License
19 along with GCC; see the file COPYING. If not, write to the Free
20 Software Foundation, 51 Franklin Street, Fifth Floor, Boston, MA
21 02110-1301, USA. */
22
23 #ifndef GCC_EXPR_H
24 #define GCC_EXPR_H
25
26 /* For inhibit_defer_pop */
27 #include "function.h"
28 /* For XEXP, GEN_INT, rtx_code */
29 #include "rtl.h"
30 /* For optimize_size */
31 #include "flags.h"
32 /* For host_integerp, tree_low_cst, convert, size_binop, ssize_int, TREE_CODE,
33 TYPE_SIZE, int_size_in_bytes, */
34 #include "tree.h"
35 /* For GET_MODE_BITSIZE, word_mode */
36 #include "machmode.h"
37
38 /* The default branch cost is 1. */
39 #ifndef BRANCH_COST
40 #define BRANCH_COST 1
41 #endif
42
43 /* This is the 4th arg to `expand_expr'.
44 EXPAND_STACK_PARM means we are possibly expanding a call param onto
45 the stack.
46 EXPAND_SUM means it is ok to return a PLUS rtx or MULT rtx.
47 EXPAND_INITIALIZER is similar but also record any labels on forced_labels.
48 EXPAND_CONST_ADDRESS means it is ok to return a MEM whose address
49 is a constant that is not a legitimate address.
50 EXPAND_WRITE means we are only going to write to the resulting rtx.
51 EXPAND_MEMORY means we are interested in a memory result, even if
52 the memory is constant and we could have propagated a constant value. */
53 enum expand_modifier {EXPAND_NORMAL = 0, EXPAND_STACK_PARM, EXPAND_SUM,
54 EXPAND_CONST_ADDRESS, EXPAND_INITIALIZER, EXPAND_WRITE,
55 EXPAND_MEMORY};
56
57 /* Prevent the compiler from deferring stack pops. See
58 inhibit_defer_pop for more information. */
59 #define NO_DEFER_POP (inhibit_defer_pop += 1)
60
61 /* Allow the compiler to defer stack pops. See inhibit_defer_pop for
62 more information. */
63 #define OK_DEFER_POP (inhibit_defer_pop -= 1)
64 \f
65 /* If a memory-to-memory move would take MOVE_RATIO or more simple
66 move-instruction sequences, we will do a movmem or libcall instead. */
67
68 #ifndef MOVE_RATIO
69 #if defined (HAVE_movmemqi) || defined (HAVE_movmemhi) || defined (HAVE_movmemsi) || defined (HAVE_movmemdi) || defined (HAVE_movmemti)
70 #define MOVE_RATIO 2
71 #else
72 /* If we are optimizing for space (-Os), cut down the default move ratio. */
73 #define MOVE_RATIO (optimize_size ? 3 : 15)
74 #endif
75 #endif
76
77 /* If a clear memory operation would take CLEAR_RATIO or more simple
78 move-instruction sequences, we will do a setmem or libcall instead. */
79
80 #ifndef CLEAR_RATIO
81 #if defined (HAVE_setmemqi) || defined (HAVE_setmemhi) || defined (HAVE_setmemsi) || defined (HAVE_setmemdi) || defined (HAVE_setmemti)
82 #define CLEAR_RATIO 2
83 #else
84 /* If we are optimizing for space, cut down the default clear ratio. */
85 #define CLEAR_RATIO (optimize_size ? 3 : 15)
86 #endif
87 #endif
88 \f
89 enum direction {none, upward, downward};
90
91 /* Structure to record the size of a sequence of arguments
92 as the sum of a tree-expression and a constant. This structure is
93 also used to store offsets from the stack, which might be negative,
94 so the variable part must be ssizetype, not sizetype. */
95
96 struct args_size
97 {
98 HOST_WIDE_INT constant;
99 tree var;
100 };
101
102 /* Package up various arg related fields of struct args for
103 locate_and_pad_parm. */
104 struct locate_and_pad_arg_data
105 {
106 /* Size of this argument on the stack, rounded up for any padding it
107 gets. If REG_PARM_STACK_SPACE is defined, then register parms are
108 counted here, otherwise they aren't. */
109 struct args_size size;
110 /* Offset of this argument from beginning of stack-args. */
111 struct args_size offset;
112 /* Offset to the start of the stack slot. Different from OFFSET
113 if this arg pads downward. */
114 struct args_size slot_offset;
115 /* The amount that the stack pointer needs to be adjusted to
116 force alignment for the next argument. */
117 struct args_size alignment_pad;
118 /* Which way we should pad this arg. */
119 enum direction where_pad;
120 /* slot_offset is at least this aligned. */
121 unsigned int boundary;
122 };
123
124 /* Add the value of the tree INC to the `struct args_size' TO. */
125
126 #define ADD_PARM_SIZE(TO, INC) \
127 do { \
128 tree inc = (INC); \
129 if (host_integerp (inc, 0)) \
130 (TO).constant += tree_low_cst (inc, 0); \
131 else if ((TO).var == 0) \
132 (TO).var = convert (ssizetype, inc); \
133 else \
134 (TO).var = size_binop (PLUS_EXPR, (TO).var, \
135 convert (ssizetype, inc)); \
136 } while (0)
137
138 #define SUB_PARM_SIZE(TO, DEC) \
139 do { \
140 tree dec = (DEC); \
141 if (host_integerp (dec, 0)) \
142 (TO).constant -= tree_low_cst (dec, 0); \
143 else if ((TO).var == 0) \
144 (TO).var = size_binop (MINUS_EXPR, ssize_int (0), \
145 convert (ssizetype, dec)); \
146 else \
147 (TO).var = size_binop (MINUS_EXPR, (TO).var, \
148 convert (ssizetype, dec)); \
149 } while (0)
150
151 /* Convert the implicit sum in a `struct args_size' into a tree
152 of type ssizetype. */
153 #define ARGS_SIZE_TREE(SIZE) \
154 ((SIZE).var == 0 ? ssize_int ((SIZE).constant) \
155 : size_binop (PLUS_EXPR, convert (ssizetype, (SIZE).var), \
156 ssize_int ((SIZE).constant)))
157
158 /* Convert the implicit sum in a `struct args_size' into an rtx. */
159 #define ARGS_SIZE_RTX(SIZE) \
160 ((SIZE).var == 0 ? GEN_INT ((SIZE).constant) \
161 : expand_normal (ARGS_SIZE_TREE (SIZE)))
162
163 /* Supply a default definition for FUNCTION_ARG_PADDING:
164 usually pad upward, but pad short args downward on
165 big-endian machines. */
166
167 #define DEFAULT_FUNCTION_ARG_PADDING(MODE, TYPE) \
168 (! BYTES_BIG_ENDIAN \
169 ? upward \
170 : (((MODE) == BLKmode \
171 ? ((TYPE) && TREE_CODE (TYPE_SIZE (TYPE)) == INTEGER_CST \
172 && int_size_in_bytes (TYPE) < (PARM_BOUNDARY / BITS_PER_UNIT)) \
173 : GET_MODE_BITSIZE (MODE) < PARM_BOUNDARY) \
174 ? downward : upward))
175
176 #ifndef FUNCTION_ARG_PADDING
177 #define FUNCTION_ARG_PADDING(MODE, TYPE) \
178 DEFAULT_FUNCTION_ARG_PADDING ((MODE), (TYPE))
179 #endif
180
181 /* Supply a default definition for FUNCTION_ARG_BOUNDARY. Normally, we let
182 FUNCTION_ARG_PADDING, which also pads the length, handle any needed
183 alignment. */
184
185 #ifndef FUNCTION_ARG_BOUNDARY
186 #define FUNCTION_ARG_BOUNDARY(MODE, TYPE) PARM_BOUNDARY
187 #endif
188
189 /* Supply a default definition of STACK_SAVEAREA_MODE for emit_stack_save.
190 Normally move_insn, so Pmode stack pointer. */
191
192 #ifndef STACK_SAVEAREA_MODE
193 #define STACK_SAVEAREA_MODE(LEVEL) Pmode
194 #endif
195
196 /* Supply a default definition of STACK_SIZE_MODE for
197 allocate_dynamic_stack_space. Normally PLUS/MINUS, so word_mode. */
198
199 #ifndef STACK_SIZE_MODE
200 #define STACK_SIZE_MODE word_mode
201 #endif
202
203 /* Provide default values for the macros controlling stack checking. */
204
205 #ifndef STACK_CHECK_BUILTIN
206 #define STACK_CHECK_BUILTIN 0
207 #endif
208
209 /* The default interval is one page. */
210 #ifndef STACK_CHECK_PROBE_INTERVAL
211 #define STACK_CHECK_PROBE_INTERVAL 4096
212 #endif
213
214 /* The default is to do a store into the stack. */
215 #ifndef STACK_CHECK_PROBE_LOAD
216 #define STACK_CHECK_PROBE_LOAD 0
217 #endif
218
219 /* This value is arbitrary, but should be sufficient for most machines. */
220 #ifndef STACK_CHECK_PROTECT
221 #define STACK_CHECK_PROTECT (75 * UNITS_PER_WORD)
222 #endif
223
224 /* Make the maximum frame size be the largest we can and still only need
225 one probe per function. */
226 #ifndef STACK_CHECK_MAX_FRAME_SIZE
227 #define STACK_CHECK_MAX_FRAME_SIZE \
228 (STACK_CHECK_PROBE_INTERVAL - UNITS_PER_WORD)
229 #endif
230
231 /* This is arbitrary, but should be large enough everywhere. */
232 #ifndef STACK_CHECK_FIXED_FRAME_SIZE
233 #define STACK_CHECK_FIXED_FRAME_SIZE (4 * UNITS_PER_WORD)
234 #endif
235
236 /* Provide a reasonable default for the maximum size of an object to
237 allocate in the fixed frame. We may need to be able to make this
238 controllable by the user at some point. */
239 #ifndef STACK_CHECK_MAX_VAR_SIZE
240 #define STACK_CHECK_MAX_VAR_SIZE (STACK_CHECK_MAX_FRAME_SIZE / 100)
241 #endif
242 \f
243 /* Functions from optabs.c, commonly used, and without need for the optabs
244 tables: */
245
246 /* Passed to expand_simple_binop and expand_binop to say which options
247 to try to use if the requested operation can't be open-coded on the
248 requisite mode. Either OPTAB_LIB or OPTAB_LIB_WIDEN says try using
249 a library call. Either OPTAB_WIDEN or OPTAB_LIB_WIDEN says try
250 using a wider mode. OPTAB_MUST_WIDEN says try widening and don't
251 try anything else. */
252
253 enum optab_methods
254 {
255 OPTAB_DIRECT,
256 OPTAB_LIB,
257 OPTAB_WIDEN,
258 OPTAB_LIB_WIDEN,
259 OPTAB_MUST_WIDEN
260 };
261
262 /* Generate code for a simple binary or unary operation. "Simple" in
263 this case means "can be unambiguously described by a (mode, code)
264 pair and mapped to a single optab." */
265 extern rtx expand_simple_binop (enum machine_mode, enum rtx_code, rtx,
266 rtx, rtx, int, enum optab_methods);
267 extern rtx expand_simple_unop (enum machine_mode, enum rtx_code, rtx, rtx,
268 int);
269
270 /* Report whether the machine description contains an insn which can
271 perform the operation described by CODE and MODE. */
272 extern int have_insn_for (enum rtx_code, enum machine_mode);
273
274 /* Emit code to make a call to a constant function or a library call. */
275 extern void emit_libcall_block (rtx, rtx, rtx, rtx);
276
277 /* Create but don't emit one rtl instruction to perform certain operations.
278 Modes must match; operands must meet the operation's predicates.
279 Likewise for subtraction and for just copying. */
280 extern rtx gen_add2_insn (rtx, rtx);
281 extern rtx gen_add3_insn (rtx, rtx, rtx);
282 extern rtx gen_sub2_insn (rtx, rtx);
283 extern rtx gen_sub3_insn (rtx, rtx, rtx);
284 extern rtx gen_move_insn (rtx, rtx);
285 extern int have_add2_insn (rtx, rtx);
286 extern int have_sub2_insn (rtx, rtx);
287
288 /* Emit a pair of rtl insns to compare two rtx's and to jump
289 to a label if the comparison is true. */
290 extern void emit_cmp_and_jump_insns (rtx, rtx, enum rtx_code, rtx,
291 enum machine_mode, int, rtx);
292
293 /* Generate code to indirectly jump to a location given in the rtx LOC. */
294 extern void emit_indirect_jump (rtx);
295
296 /* Generate a conditional trap instruction. */
297 extern rtx gen_cond_trap (enum rtx_code, rtx, rtx, rtx);
298
299 #include "insn-config.h"
300
301 #ifdef HAVE_conditional_move
302 /* Emit a conditional move operation. */
303 rtx emit_conditional_move (rtx, enum rtx_code, rtx, rtx, enum machine_mode,
304 rtx, rtx, enum machine_mode, int);
305
306 /* Return nonzero if the conditional move is supported. */
307 int can_conditionally_move_p (enum machine_mode mode);
308
309 #endif
310 rtx emit_conditional_add (rtx, enum rtx_code, rtx, rtx, enum machine_mode,
311 rtx, rtx, enum machine_mode, int);
312
313 rtx expand_val_compare_and_swap (rtx, rtx, rtx, rtx);
314 rtx expand_bool_compare_and_swap (rtx, rtx, rtx, rtx);
315 rtx expand_sync_operation (rtx, rtx, enum rtx_code);
316 rtx expand_sync_fetch_operation (rtx, rtx, enum rtx_code, bool, rtx);
317 rtx expand_sync_lock_test_and_set (rtx, rtx, rtx);
318 \f
319 /* Functions from expmed.c: */
320
321 /* Arguments MODE, RTX: return an rtx for the negation of that value.
322 May emit insns. */
323 extern rtx negate_rtx (enum machine_mode, rtx);
324
325 /* Expand a logical AND operation. */
326 extern rtx expand_and (enum machine_mode, rtx, rtx, rtx);
327
328 /* Emit a store-flag operation. */
329 extern rtx emit_store_flag (rtx, enum rtx_code, rtx, rtx, enum machine_mode,
330 int, int);
331
332 /* Like emit_store_flag, but always succeeds. */
333 extern rtx emit_store_flag_force (rtx, enum rtx_code, rtx, rtx,
334 enum machine_mode, int, int);
335 \f
336 /* Functions from builtins.c: */
337 extern rtx expand_builtin (tree, rtx, rtx, enum machine_mode, int);
338 extern tree std_build_builtin_va_list (void);
339 extern void std_expand_builtin_va_start (tree, rtx);
340 extern rtx default_expand_builtin (tree, rtx, rtx, enum machine_mode, int);
341 extern rtx default_expand_library_builtin (tree, rtx, rtx, enum machine_mode, int);
342 extern void expand_builtin_setjmp_setup (rtx, rtx);
343 extern void expand_builtin_setjmp_receiver (rtx);
344 extern rtx expand_builtin_saveregs (void);
345 extern void expand_builtin_trap (void);
346 \f
347 /* Functions from expr.c: */
348
349 /* This is run once per compilation to set up which modes can be used
350 directly in memory and to initialize the block move optab. */
351 extern void init_expr_once (void);
352
353 /* This is run at the start of compiling a function. */
354 extern void init_expr (void);
355
356 /* Emit some rtl insns to move data between rtx's, converting machine modes.
357 Both modes must be floating or both fixed. */
358 extern void convert_move (rtx, rtx, int);
359
360 /* Convert an rtx to specified machine mode and return the result. */
361 extern rtx convert_to_mode (enum machine_mode, rtx, int);
362
363 /* Convert an rtx to MODE from OLDMODE and return the result. */
364 extern rtx convert_modes (enum machine_mode, enum machine_mode, rtx, int);
365
366 /* Emit code to move a block Y to a block X. */
367
368 enum block_op_methods
369 {
370 BLOCK_OP_NORMAL,
371 BLOCK_OP_NO_LIBCALL,
372 BLOCK_OP_CALL_PARM,
373 /* Like BLOCK_OP_NORMAL, but the libcall can be tail call optimized. */
374 BLOCK_OP_TAILCALL
375 };
376
377 extern void init_block_move_fn (const char *);
378 extern void init_block_clear_fn (const char *);
379
380 extern rtx emit_block_move (rtx, rtx, rtx, enum block_op_methods);
381
382 /* Copy all or part of a value X into registers starting at REGNO.
383 The number of registers to be filled is NREGS. */
384 extern void move_block_to_reg (int, rtx, int, enum machine_mode);
385
386 /* Copy all or part of a BLKmode value X out of registers starting at REGNO.
387 The number of registers to be filled is NREGS. */
388 extern void move_block_from_reg (int, rtx, int);
389
390 /* Generate a non-consecutive group of registers represented by a PARALLEL. */
391 extern rtx gen_group_rtx (rtx);
392
393 /* Load a BLKmode value into non-consecutive registers represented by a
394 PARALLEL. */
395 extern void emit_group_load (rtx, rtx, tree, int);
396
397 /* Similarly, but load into new temporaries. */
398 extern rtx emit_group_load_into_temps (rtx, rtx, tree, int);
399
400 /* Move a non-consecutive group of registers represented by a PARALLEL into
401 a non-consecutive group of registers represented by a PARALLEL. */
402 extern void emit_group_move (rtx, rtx);
403
404 /* Move a group of registers represented by a PARALLEL into pseudos. */
405 extern rtx emit_group_move_into_temps (rtx);
406
407 /* Store a BLKmode value from non-consecutive registers represented by a
408 PARALLEL. */
409 extern void emit_group_store (rtx, rtx, tree, int);
410
411 /* Copy BLKmode object from a set of registers. */
412 extern rtx copy_blkmode_from_reg (rtx, rtx, tree);
413
414 /* Mark REG as holding a parameter for the next CALL_INSN. */
415 extern void use_reg (rtx *, rtx);
416
417 /* Mark NREGS consecutive regs, starting at REGNO, as holding parameters
418 for the next CALL_INSN. */
419 extern void use_regs (rtx *, int, int);
420
421 /* Mark a PARALLEL as holding a parameter for the next CALL_INSN. */
422 extern void use_group_regs (rtx *, rtx);
423
424 /* Write zeros through the storage of OBJECT.
425 If OBJECT has BLKmode, SIZE is its length in bytes. */
426 extern rtx clear_storage (rtx, rtx, enum block_op_methods);
427
428 /* Expand a setmem pattern; return true if successful. */
429 extern bool set_storage_via_setmem (rtx, rtx, rtx, unsigned int);
430
431 /* Determine whether the LEN bytes can be moved by using several move
432 instructions. Return nonzero if a call to move_by_pieces should
433 succeed. */
434 extern int can_move_by_pieces (unsigned HOST_WIDE_INT, unsigned int);
435
436 /* Return nonzero if it is desirable to store LEN bytes generated by
437 CONSTFUN with several move instructions by store_by_pieces
438 function. CONSTFUNDATA is a pointer which will be passed as argument
439 in every CONSTFUN call.
440 ALIGN is maximum alignment we can assume. */
441 extern int can_store_by_pieces (unsigned HOST_WIDE_INT,
442 rtx (*) (void *, HOST_WIDE_INT,
443 enum machine_mode),
444 void *, unsigned int);
445
446 /* Generate several move instructions to store LEN bytes generated by
447 CONSTFUN to block TO. (A MEM rtx with BLKmode). CONSTFUNDATA is a
448 pointer which will be passed as argument in every CONSTFUN call.
449 ALIGN is maximum alignment we can assume.
450 Returns TO + LEN. */
451 extern rtx store_by_pieces (rtx, unsigned HOST_WIDE_INT,
452 rtx (*) (void *, HOST_WIDE_INT, enum machine_mode),
453 void *, unsigned int, int);
454
455 /* Emit insns to set X from Y. */
456 extern rtx emit_move_insn (rtx, rtx);
457
458 /* Emit insns to set X from Y, with no frills. */
459 extern rtx emit_move_insn_1 (rtx, rtx);
460
461 /* Push a block of length SIZE (perhaps variable)
462 and return an rtx to address the beginning of the block. */
463 extern rtx push_block (rtx, int, int);
464
465 /* Generate code to push something onto the stack, given its mode and type. */
466 extern void emit_push_insn (rtx, enum machine_mode, tree, rtx, unsigned int,
467 int, rtx, int, rtx, rtx, int, rtx);
468
469 /* Expand an assignment that stores the value of FROM into TO. */
470 extern void expand_assignment (tree, tree);
471
472 /* Generate code for computing expression EXP,
473 and storing the value into TARGET.
474 If SUGGEST_REG is nonzero, copy the value through a register
475 and return that register, if that is possible. */
476 extern rtx store_expr (tree, rtx, int);
477
478 /* Given an rtx that may include add and multiply operations,
479 generate them as insns and return a pseudo-reg containing the value.
480 Useful after calling expand_expr with 1 as sum_ok. */
481 extern rtx force_operand (rtx, rtx);
482
483 /* Work horse for expand_expr. */
484 extern rtx expand_expr_real (tree, rtx, enum machine_mode,
485 enum expand_modifier, rtx *);
486
487 /* Generate code for computing expression EXP.
488 An rtx for the computed value is returned. The value is never null.
489 In the case of a void EXP, const0_rtx is returned. */
490 static inline rtx
491 expand_expr (tree exp, rtx target, enum machine_mode mode,
492 enum expand_modifier modifier)
493 {
494 return expand_expr_real (exp, target, mode, modifier, NULL);
495 }
496
497 static inline rtx
498 expand_normal (tree exp)
499 {
500 return expand_expr_real (exp, NULL_RTX, VOIDmode, EXPAND_NORMAL, NULL);
501 }
502
503 extern void expand_var (tree);
504
505 /* At the start of a function, record that we have no previously-pushed
506 arguments waiting to be popped. */
507 extern void init_pending_stack_adjust (void);
508
509 /* Discard any pending stack adjustment. */
510 extern void discard_pending_stack_adjust (void);
511
512 /* When exiting from function, if safe, clear out any pending stack adjust
513 so the adjustment won't get done. */
514 extern void clear_pending_stack_adjust (void);
515
516 /* Pop any previously-pushed arguments that have not been popped yet. */
517 extern void do_pending_stack_adjust (void);
518
519 /* Return the tree node and offset if a given argument corresponds to
520 a string constant. */
521 extern tree string_constant (tree, tree *);
522
523 /* Generate code to evaluate EXP and jump to LABEL if the value is zero. */
524 extern void jumpifnot (tree, rtx);
525
526 /* Generate code to evaluate EXP and jump to LABEL if the value is nonzero. */
527 extern void jumpif (tree, rtx);
528
529 /* Generate code to evaluate EXP and jump to IF_FALSE_LABEL if
530 the result is zero, or IF_TRUE_LABEL if the result is one. */
531 extern void do_jump (tree, rtx, rtx);
532
533 /* Generate rtl to compare two rtx's, will call emit_cmp_insn. */
534 extern rtx compare_from_rtx (rtx, rtx, enum rtx_code, int, enum machine_mode,
535 rtx);
536 extern void do_compare_rtx_and_jump (rtx, rtx, enum rtx_code, int,
537 enum machine_mode, rtx, rtx, rtx);
538
539 /* Two different ways of generating switch statements. */
540 extern int try_casesi (tree, tree, tree, tree, rtx, rtx);
541 extern int try_tablejump (tree, tree, tree, tree, rtx, rtx);
542
543 /* Smallest number of adjacent cases before we use a jump table.
544 XXX Should be a target hook. */
545 extern unsigned int case_values_threshold (void);
546
547 /* Functions from alias.c */
548 #include "alias.h"
549
550 \f
551 /* rtl.h and tree.h were included. */
552 /* Return an rtx for the size in bytes of the value of an expr. */
553 extern rtx expr_size (tree);
554
555 /* Return a wide integer for the size in bytes of the value of EXP, or -1
556 if the size can vary or is larger than an integer. */
557 extern HOST_WIDE_INT int_expr_size (tree);
558
559 /* Return an rtx that refers to the value returned by a function
560 in its original home. This becomes invalid if any more code is emitted. */
561 extern rtx hard_function_value (tree, tree, tree, int);
562
563 extern rtx prepare_call_address (rtx, rtx, rtx *, int, int);
564
565 extern bool shift_return_value (enum machine_mode, bool, rtx);
566
567 extern rtx expand_call (tree, rtx, int);
568
569 extern void fixup_tail_calls (void);
570
571 #ifdef TREE_CODE
572 extern rtx expand_shift (enum tree_code, enum machine_mode, rtx, tree, rtx,
573 int);
574 extern rtx expand_divmod (int, enum tree_code, enum machine_mode, rtx, rtx,
575 rtx, int);
576 #endif
577
578 extern void locate_and_pad_parm (enum machine_mode, tree, int, int, tree,
579 struct args_size *,
580 struct locate_and_pad_arg_data *);
581
582 /* Return the CODE_LABEL rtx for a LABEL_DECL, creating it if necessary. */
583 extern rtx label_rtx (tree);
584
585 /* As label_rtx, but additionally the label is placed on the forced label
586 list of its containing function (i.e. it is treated as reachable even
587 if how is not obvious). */
588 extern rtx force_label_rtx (tree);
589
590 /* Indicate how an input argument register was promoted. */
591 extern rtx promoted_input_arg (unsigned int, enum machine_mode *, int *);
592
593 /* Return an rtx like arg but sans any constant terms.
594 Returns the original rtx if it has no constant terms.
595 The constant terms are added and stored via a second arg. */
596 extern rtx eliminate_constant_term (rtx, rtx *);
597
598 /* Convert arg to a valid memory address for specified machine mode,
599 by emitting insns to perform arithmetic if nec. */
600 extern rtx memory_address (enum machine_mode, rtx);
601
602 /* Like `memory_address' but pretend `flag_force_addr' is 0. */
603 extern rtx memory_address_noforce (enum machine_mode, rtx);
604
605 /* Return a memory reference like MEMREF, but with its mode changed
606 to MODE and its address changed to ADDR.
607 (VOIDmode means don't change the mode.
608 NULL for ADDR means don't change the address.) */
609 extern rtx change_address (rtx, enum machine_mode, rtx);
610
611 /* Return a memory reference like MEMREF, but with its mode changed
612 to MODE and its address offset by OFFSET bytes. */
613 #define adjust_address(MEMREF, MODE, OFFSET) \
614 adjust_address_1 (MEMREF, MODE, OFFSET, 1, 1)
615
616 /* Likewise, but the reference is not required to be valid. */
617 #define adjust_address_nv(MEMREF, MODE, OFFSET) \
618 adjust_address_1 (MEMREF, MODE, OFFSET, 0, 1)
619
620 /* Return a memory reference like MEMREF, but with its mode changed
621 to MODE and its address changed to ADDR, which is assumed to be
622 increased by OFFSET bytes from MEMREF. */
623 #define adjust_automodify_address(MEMREF, MODE, ADDR, OFFSET) \
624 adjust_automodify_address_1 (MEMREF, MODE, ADDR, OFFSET, 1)
625
626 /* Likewise, but the reference is not required to be valid. */
627 #define adjust_automodify_address_nv(MEMREF, MODE, ADDR, OFFSET) \
628 adjust_automodify_address_1 (MEMREF, MODE, ADDR, OFFSET, 0)
629
630 extern rtx adjust_address_1 (rtx, enum machine_mode, HOST_WIDE_INT, int, int);
631 extern rtx adjust_automodify_address_1 (rtx, enum machine_mode, rtx,
632 HOST_WIDE_INT, int);
633
634 /* Return a memory reference like MEMREF, but whose address is changed by
635 adding OFFSET, an RTX, to it. POW2 is the highest power of two factor
636 known to be in OFFSET (possibly 1). */
637 extern rtx offset_address (rtx, rtx, unsigned HOST_WIDE_INT);
638
639 /* Definitions from emit-rtl.c */
640 #include "emit-rtl.h"
641
642 /* Return a memory reference like MEMREF, but with its mode widened to
643 MODE and adjusted by OFFSET. */
644 extern rtx widen_memory_access (rtx, enum machine_mode, HOST_WIDE_INT);
645
646 /* Return a memory reference like MEMREF, but which is known to have a
647 valid address. */
648 extern rtx validize_mem (rtx);
649
650 extern rtx use_anchored_address (rtx);
651
652 /* Given REF, a MEM, and T, either the type of X or the expression
653 corresponding to REF, set the memory attributes. OBJECTP is nonzero
654 if we are making a new object of this type. */
655 extern void set_mem_attributes (rtx, tree, int);
656
657 /* Similar, except that BITPOS has not yet been applied to REF, so if
658 we alter MEM_OFFSET according to T then we should subtract BITPOS
659 expecting that it'll be added back in later. */
660 extern void set_mem_attributes_minus_bitpos (rtx, tree, int, HOST_WIDE_INT);
661
662 /* Assemble the static constant template for function entry trampolines. */
663 extern rtx assemble_trampoline_template (void);
664
665 /* Copy given rtx to a new temp reg and return that. */
666 extern rtx copy_to_reg (rtx);
667
668 /* Like copy_to_reg but always make the reg Pmode. */
669 extern rtx copy_addr_to_reg (rtx);
670
671 /* Like copy_to_reg but always make the reg the specified mode MODE. */
672 extern rtx copy_to_mode_reg (enum machine_mode, rtx);
673
674 /* Copy given rtx to given temp reg and return that. */
675 extern rtx copy_to_suggested_reg (rtx, rtx, enum machine_mode);
676
677 /* Copy a value to a register if it isn't already a register.
678 Args are mode (in case value is a constant) and the value. */
679 extern rtx force_reg (enum machine_mode, rtx);
680
681 /* Return given rtx, copied into a new temp reg if it was in memory. */
682 extern rtx force_not_mem (rtx);
683
684 /* Return mode and signedness to use when object is promoted. */
685 extern enum machine_mode promote_mode (tree, enum machine_mode, int *, int);
686
687 /* Remove some bytes from the stack. An rtx says how many. */
688 extern void adjust_stack (rtx);
689
690 /* Add some bytes to the stack. An rtx says how many. */
691 extern void anti_adjust_stack (rtx);
692
693 /* This enum is used for the following two functions. */
694 enum save_level {SAVE_BLOCK, SAVE_FUNCTION, SAVE_NONLOCAL};
695
696 /* Save the stack pointer at the specified level. */
697 extern void emit_stack_save (enum save_level, rtx *, rtx);
698
699 /* Restore the stack pointer from a save area of the specified level. */
700 extern void emit_stack_restore (enum save_level, rtx, rtx);
701
702 /* Invoke emit_stack_save for the nonlocal_goto_save_area. */
703 extern void update_nonlocal_goto_save_area (void);
704
705 /* Allocate some space on the stack dynamically and return its address. An rtx
706 says how many bytes. */
707 extern rtx allocate_dynamic_stack_space (rtx, rtx, int);
708
709 /* Probe a range of stack addresses from FIRST to FIRST+SIZE, inclusive.
710 FIRST is a constant and size is a Pmode RTX. These are offsets from the
711 current stack pointer. STACK_GROWS_DOWNWARD says whether to add or
712 subtract from the stack. If SIZE is constant, this is done
713 with a fixed number of probes. Otherwise, we must make a loop. */
714 extern void probe_stack_range (HOST_WIDE_INT, rtx);
715
716 /* Return an rtx that refers to the value returned by a library call
717 in its original home. This becomes invalid if any more code is emitted. */
718 extern rtx hard_libcall_value (enum machine_mode);
719
720 /* Return the mode desired by operand N of a particular bitfield
721 insert/extract insn, or MAX_MACHINE_MODE if no such insn is
722 available. */
723
724 enum extraction_pattern { EP_insv, EP_extv, EP_extzv };
725 extern enum machine_mode
726 mode_for_extraction (enum extraction_pattern, int);
727
728 extern rtx store_bit_field (rtx, unsigned HOST_WIDE_INT,
729 unsigned HOST_WIDE_INT, enum machine_mode, rtx);
730 extern rtx extract_bit_field (rtx, unsigned HOST_WIDE_INT,
731 unsigned HOST_WIDE_INT, int, rtx,
732 enum machine_mode, enum machine_mode);
733 extern rtx expand_mult (enum machine_mode, rtx, rtx, rtx, int);
734 extern rtx expand_mult_highpart_adjust (enum machine_mode, rtx, rtx, rtx, rtx, int);
735
736 extern rtx assemble_static_space (unsigned HOST_WIDE_INT);
737 extern int safe_from_p (rtx, tree, int);
738
739 /* Call this once to initialize the contents of the optabs
740 appropriately for the current target machine. */
741 extern void init_optabs (void);
742 extern void init_all_optabs (void);
743
744 /* Call this to initialize an optab function entry. */
745 extern rtx init_one_libfunc (const char *);
746
747 extern int vector_mode_valid_p (enum machine_mode);
748
749 #endif /* GCC_EXPR_H */