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1 35 ultra_embe
/* Register Transfer Language (RTL) definitions for GCC
2
   Copyright (C) 1987, 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999,
3
   2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010, 2011, 2012
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 3, 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 COPYING3.  If not see
20
<http://www.gnu.org/licenses/>.  */
21
 
22
#ifndef GCC_RTL_H
23
#define GCC_RTL_H
24
 
25
#include "statistics.h"
26
#include "machmode.h"
27
#include "input.h"
28
#include "real.h"
29
#include "vec.h"
30
#include "fixed-value.h"
31
#include "alias.h"
32
#include "hashtab.h"
33
#include "flags.h"
34
 
35
/* Value used by some passes to "recognize" noop moves as valid
36
 instructions.  */
37
#define NOOP_MOVE_INSN_CODE     INT_MAX
38
 
39
/* Register Transfer Language EXPRESSIONS CODES */
40
 
41
#define RTX_CODE        enum rtx_code
42
enum rtx_code  {
43
 
44
#define DEF_RTL_EXPR(ENUM, NAME, FORMAT, CLASS)   ENUM ,
45
#include "rtl.def"              /* rtl expressions are documented here */
46
#undef DEF_RTL_EXPR
47
 
48
  LAST_AND_UNUSED_RTX_CODE};    /* A convenient way to get a value for
49
                                   NUM_RTX_CODE.
50
                                   Assumes default enum value assignment.  */
51
 
52
/* The cast here, saves many elsewhere.  */
53
#define NUM_RTX_CODE ((int) LAST_AND_UNUSED_RTX_CODE)
54
 
55
/* Similar, but since generator files get more entries... */
56
#ifdef GENERATOR_FILE
57
# define NON_GENERATOR_NUM_RTX_CODE ((int) MATCH_OPERAND)
58
#endif
59
 
60
/* Register Transfer Language EXPRESSIONS CODE CLASSES */
61
 
62
enum rtx_class  {
63
  /* We check bit 0-1 of some rtx class codes in the predicates below.  */
64
 
65
  /* Bit 0 = comparison if 0, arithmetic is 1
66
     Bit 1 = 1 if commutative.  */
67
  RTX_COMPARE,          /* 0 */
68
  RTX_COMM_COMPARE,
69
  RTX_BIN_ARITH,
70
  RTX_COMM_ARITH,
71
 
72
  /* Must follow the four preceding values.  */
73
  RTX_UNARY,            /* 4 */
74
 
75
  RTX_EXTRA,
76
  RTX_MATCH,
77
  RTX_INSN,
78
 
79
  /* Bit 0 = 1 if constant.  */
80
  RTX_OBJ,              /* 8 */
81
  RTX_CONST_OBJ,
82
 
83
  RTX_TERNARY,
84
  RTX_BITFIELD_OPS,
85
  RTX_AUTOINC
86
};
87
 
88
#define RTX_OBJ_MASK (~1)
89
#define RTX_OBJ_RESULT (RTX_OBJ & RTX_OBJ_MASK)
90
#define RTX_COMPARE_MASK (~1)
91
#define RTX_COMPARE_RESULT (RTX_COMPARE & RTX_COMPARE_MASK)
92
#define RTX_ARITHMETIC_MASK (~1)
93
#define RTX_ARITHMETIC_RESULT (RTX_COMM_ARITH & RTX_ARITHMETIC_MASK)
94
#define RTX_BINARY_MASK (~3)
95
#define RTX_BINARY_RESULT (RTX_COMPARE & RTX_BINARY_MASK)
96
#define RTX_COMMUTATIVE_MASK (~2)
97
#define RTX_COMMUTATIVE_RESULT (RTX_COMM_COMPARE & RTX_COMMUTATIVE_MASK)
98
#define RTX_NON_COMMUTATIVE_RESULT (RTX_COMPARE & RTX_COMMUTATIVE_MASK)
99
 
100
extern const unsigned char rtx_length[NUM_RTX_CODE];
101
#define GET_RTX_LENGTH(CODE)            (rtx_length[(int) (CODE)])
102
 
103
extern const char * const rtx_name[NUM_RTX_CODE];
104
#define GET_RTX_NAME(CODE)              (rtx_name[(int) (CODE)])
105
 
106
extern const char * const rtx_format[NUM_RTX_CODE];
107
#define GET_RTX_FORMAT(CODE)            (rtx_format[(int) (CODE)])
108
 
109
extern const enum rtx_class rtx_class[NUM_RTX_CODE];
110
#define GET_RTX_CLASS(CODE)             (rtx_class[(int) (CODE)])
111
 
112
extern const unsigned char rtx_code_size[NUM_RTX_CODE];
113
extern const unsigned char rtx_next[NUM_RTX_CODE];
114
 
115
/* The flags and bitfields of an ADDR_DIFF_VEC.  BASE is the base label
116
   relative to which the offsets are calculated, as explained in rtl.def.  */
117
typedef struct
118
{
119
  /* Set at the start of shorten_branches - ONLY WHEN OPTIMIZING - : */
120
  unsigned min_align: 8;
121
  /* Flags: */
122
  unsigned base_after_vec: 1; /* BASE is after the ADDR_DIFF_VEC.  */
123
  unsigned min_after_vec: 1;  /* minimum address target label is
124
                                 after the ADDR_DIFF_VEC.  */
125
  unsigned max_after_vec: 1;  /* maximum address target label is
126
                                 after the ADDR_DIFF_VEC.  */
127
  unsigned min_after_base: 1; /* minimum address target label is
128
                                 after BASE.  */
129
  unsigned max_after_base: 1; /* maximum address target label is
130
                                 after BASE.  */
131
  /* Set by the actual branch shortening process - ONLY WHEN OPTIMIZING - : */
132
  unsigned offset_unsigned: 1; /* offsets have to be treated as unsigned.  */
133
  unsigned : 2;
134
  unsigned scale : 8;
135
} addr_diff_vec_flags;
136
 
137
/* Structure used to describe the attributes of a MEM.  These are hashed
138
   so MEMs that the same attributes share a data structure.  This means
139
   they cannot be modified in place.  */
140
typedef struct GTY(()) mem_attrs
141
{
142
  /* The expression that the MEM accesses, or null if not known.
143
     This expression might be larger than the memory reference itself.
144
     (In other words, the MEM might access only part of the object.)  */
145
  tree expr;
146
 
147
  /* The offset of the memory reference from the start of EXPR.
148
     Only valid if OFFSET_KNOWN_P.  */
149
  HOST_WIDE_INT offset;
150
 
151
  /* The size of the memory reference in bytes.  Only valid if
152
     SIZE_KNOWN_P.  */
153
  HOST_WIDE_INT size;
154
 
155
  /* The alias set of the memory reference.  */
156
  alias_set_type alias;
157
 
158
  /* The alignment of the reference in bits.  Always a multiple of
159
     BITS_PER_UNIT.  Note that EXPR may have a stricter alignment
160
     than the memory reference itself.  */
161
  unsigned int align;
162
 
163
  /* The address space that the memory reference uses.  */
164
  unsigned char addrspace;
165
 
166
  /* True if OFFSET is known.  */
167
  bool offset_known_p;
168
 
169
  /* True if SIZE is known.  */
170
  bool size_known_p;
171
} mem_attrs;
172
 
173
/* Structure used to describe the attributes of a REG in similar way as
174
   mem_attrs does for MEM above.  Note that the OFFSET field is calculated
175
   in the same way as for mem_attrs, rather than in the same way as a
176
   SUBREG_BYTE.  For example, if a big-endian target stores a byte
177
   object in the low part of a 4-byte register, the OFFSET field
178
   will be -3 rather than 0.  */
179
 
180
typedef struct GTY(()) reg_attrs {
181
  tree decl;                    /* decl corresponding to REG.  */
182
  HOST_WIDE_INT offset;         /* Offset from start of DECL.  */
183
} reg_attrs;
184
 
185
/* Common union for an element of an rtx.  */
186
 
187
union rtunion_def
188
{
189
  int rt_int;
190
  unsigned int rt_uint;
191
  const char *rt_str;
192
  rtx rt_rtx;
193
  rtvec rt_rtvec;
194
  enum machine_mode rt_type;
195
  addr_diff_vec_flags rt_addr_diff_vec_flags;
196
  struct cselib_val_struct *rt_cselib;
197
  tree rt_tree;
198
  basic_block rt_bb;
199
  mem_attrs *rt_mem;
200
  reg_attrs *rt_reg;
201
  struct constant_descriptor_rtx *rt_constant;
202
  struct dw_cfi_struct *rt_cfi;
203
};
204
typedef union rtunion_def rtunion;
205
 
206
/* This structure remembers the position of a SYMBOL_REF within an
207
   object_block structure.  A SYMBOL_REF only provides this information
208
   if SYMBOL_REF_HAS_BLOCK_INFO_P is true.  */
209
struct GTY(()) block_symbol {
210
  /* The usual SYMBOL_REF fields.  */
211
  rtunion GTY ((skip)) fld[3];
212
 
213
  /* The block that contains this object.  */
214
  struct object_block *block;
215
 
216
  /* The offset of this object from the start of its block.  It is negative
217
     if the symbol has not yet been assigned an offset.  */
218
  HOST_WIDE_INT offset;
219
};
220
 
221
/* Describes a group of objects that are to be placed together in such
222
   a way that their relative positions are known.  */
223
struct GTY(()) object_block {
224
  /* The section in which these objects should be placed.  */
225
  section *sect;
226
 
227
  /* The alignment of the first object, measured in bits.  */
228
  unsigned int alignment;
229
 
230
  /* The total size of the objects, measured in bytes.  */
231
  HOST_WIDE_INT size;
232
 
233
  /* The SYMBOL_REFs for each object.  The vector is sorted in
234
     order of increasing offset and the following conditions will
235
     hold for each element X:
236
 
237
         SYMBOL_REF_HAS_BLOCK_INFO_P (X)
238
         !SYMBOL_REF_ANCHOR_P (X)
239
         SYMBOL_REF_BLOCK (X) == [address of this structure]
240
         SYMBOL_REF_BLOCK_OFFSET (X) >= 0.  */
241
  vec<rtx, va_gc> *objects;
242
 
243
  /* All the anchor SYMBOL_REFs used to address these objects, sorted
244
     in order of increasing offset, and then increasing TLS model.
245
     The following conditions will hold for each element X in this vector:
246
 
247
         SYMBOL_REF_HAS_BLOCK_INFO_P (X)
248
         SYMBOL_REF_ANCHOR_P (X)
249
         SYMBOL_REF_BLOCK (X) == [address of this structure]
250
         SYMBOL_REF_BLOCK_OFFSET (X) >= 0.  */
251
  vec<rtx, va_gc> *anchors;
252
};
253
 
254
/* RTL expression ("rtx").  */
255
 
256
struct GTY((chain_next ("RTX_NEXT (&%h)"),
257
            chain_prev ("RTX_PREV (&%h)"), variable_size)) rtx_def {
258
  /* The kind of expression this is.  */
259
  ENUM_BITFIELD(rtx_code) code: 16;
260
 
261
  /* The kind of value the expression has.  */
262
  ENUM_BITFIELD(machine_mode) mode : 8;
263
 
264
  /* 1 in a MEM if we should keep the alias set for this mem unchanged
265
     when we access a component.
266
     1 in a CALL_INSN if it is a sibling call.
267
     1 in a SET that is for a return.
268
     In a CODE_LABEL, part of the two-bit alternate entry field.
269
     1 in a CONCAT is VAL_EXPR_IS_COPIED in var-tracking.c.
270
     1 in a VALUE is SP_BASED_VALUE_P in cselib.c.  */
271
  unsigned int jump : 1;
272
  /* In a CODE_LABEL, part of the two-bit alternate entry field.
273
     1 in a MEM if it cannot trap.
274
     1 in a CALL_INSN logically equivalent to
275
       ECF_LOOPING_CONST_OR_PURE and DECL_LOOPING_CONST_OR_PURE_P. */
276
  unsigned int call : 1;
277
  /* 1 in a REG, MEM, or CONCAT if the value is set at most once, anywhere.
278
     1 in a SUBREG used for SUBREG_PROMOTED_UNSIGNED_P.
279
     1 in a SYMBOL_REF if it addresses something in the per-function
280
     constants pool.
281
     1 in a CALL_INSN logically equivalent to ECF_CONST and TREE_READONLY.
282
     1 in a NOTE, or EXPR_LIST for a const call.
283
     1 in a JUMP_INSN of an annulling branch.
284
     1 in a CONCAT is VAL_EXPR_IS_CLOBBERED in var-tracking.c.
285
     1 in a preserved VALUE is PRESERVED_VALUE_P in cselib.c.
286
     1 in a clobber temporarily created for LRA.  */
287
  unsigned int unchanging : 1;
288
  /* 1 in a MEM or ASM_OPERANDS expression if the memory reference is volatile.
289
     1 in an INSN, CALL_INSN, JUMP_INSN, CODE_LABEL, BARRIER, or NOTE
290
     if it has been deleted.
291
     1 in a REG expression if corresponds to a variable declared by the user,
292
 
293
     1 in a SUBREG used for SUBREG_PROMOTED_UNSIGNED_P.
294
     1 in a LABEL_REF, REG_LABEL_TARGET or REG_LABEL_OPERAND note for a
295
     non-local label.
296
     In a SYMBOL_REF, this flag is used for machine-specific purposes.
297
     In a PREFETCH, this flag indicates that it should be considered a scheduling
298
     barrier.
299
     1 in a CONCAT is VAL_NEEDS_RESOLUTION in var-tracking.c.  */
300
  unsigned int volatil : 1;
301
  /* 1 in a REG if the register is used only in exit code a loop.
302
     1 in a SUBREG expression if was generated from a variable with a
303
     promoted mode.
304
     1 in a CODE_LABEL if the label is used for nonlocal gotos
305
     and must not be deleted even if its count is zero.
306
     1 in an INSN, JUMP_INSN or CALL_INSN if this insn must be scheduled
307
     together with the preceding insn.  Valid only within sched.
308
     1 in an INSN, JUMP_INSN, or CALL_INSN if insn is in a delay slot and
309
     from the target of a branch.  Valid from reorg until end of compilation;
310
     cleared before used.
311
 
312
     The name of the field is historical.  It used to be used in MEMs
313
     to record whether the MEM accessed part of a structure.  */
314
  unsigned int in_struct : 1;
315
  /* At the end of RTL generation, 1 if this rtx is used.  This is used for
316
     copying shared structure.  See `unshare_all_rtl'.
317
     In a REG, this is not needed for that purpose, and used instead
318
     in `leaf_renumber_regs_insn'.
319
     1 in a SYMBOL_REF, means that emit_library_call
320
     has used it as the function.
321
     1 in a CONCAT is VAL_HOLDS_TRACK_EXPR in var-tracking.c.
322
     1 in a VALUE or DEBUG_EXPR is VALUE_RECURSED_INTO in var-tracking.c.  */
323
  unsigned int used : 1;
324
  /* 1 in an INSN or a SET if this rtx is related to the call frame,
325
     either changing how we compute the frame address or saving and
326
     restoring registers in the prologue and epilogue.
327
     1 in a REG or MEM if it is a pointer.
328
     1 in a SYMBOL_REF if it addresses something in the per-function
329
     constant string pool.
330
     1 in a VALUE is VALUE_CHANGED in var-tracking.c.  */
331
  unsigned frame_related : 1;
332
  /* 1 in a REG or PARALLEL that is the current function's return value.
333
     1 in a SYMBOL_REF for a weak symbol.
334
     1 in a CALL_INSN logically equivalent to ECF_PURE and DECL_PURE_P.
335
     1 in a CONCAT is VAL_EXPR_HAS_REVERSE in var-tracking.c.
336
     1 in a VALUE or DEBUG_EXPR is NO_LOC_P in var-tracking.c.  */
337
  unsigned return_val : 1;
338
 
339
  /* The first element of the operands of this rtx.
340
     The number of operands and their types are controlled
341
     by the `code' field, according to rtl.def.  */
342
  union u {
343
    rtunion fld[1];
344
    HOST_WIDE_INT hwint[1];
345
    struct block_symbol block_sym;
346
    struct real_value rv;
347
    struct fixed_value fv;
348
  } GTY ((special ("rtx_def"), desc ("GET_CODE (&%0)"))) u;
349
};
350
 
351
/* The size in bytes of an rtx header (code, mode and flags).  */
352
#define RTX_HDR_SIZE offsetof (struct rtx_def, u)
353
 
354
/* The size in bytes of an rtx with code CODE.  */
355
#define RTX_CODE_SIZE(CODE) rtx_code_size[CODE]
356
 
357
#define NULL_RTX (rtx) 0
358
 
359
/* The "next" and "previous" RTX, relative to this one.  */
360
 
361
#define RTX_NEXT(X) (rtx_next[GET_CODE (X)] == 0 ? NULL                 \
362
                     : *(rtx *)(((char *)X) + rtx_next[GET_CODE (X)]))
363
 
364
/* FIXME: the "NEXT_INSN (PREV_INSN (X)) == X" condition shouldn't be needed.
365
 */
366
#define RTX_PREV(X) ((INSN_P (X)                        \
367
                      || NOTE_P (X)                     \
368
                      || BARRIER_P (X)                  \
369
                      || LABEL_P (X))                   \
370
                     && PREV_INSN (X) != NULL           \
371
                     && NEXT_INSN (PREV_INSN (X)) == X  \
372
                     ? PREV_INSN (X) : NULL)
373
 
374
/* Define macros to access the `code' field of the rtx.  */
375
 
376
#define GET_CODE(RTX)       ((enum rtx_code) (RTX)->code)
377
#define PUT_CODE(RTX, CODE) ((RTX)->code = (CODE))
378
 
379
#define GET_MODE(RTX)       ((enum machine_mode) (RTX)->mode)
380
#define PUT_MODE(RTX, MODE) ((RTX)->mode = (MODE))
381
 
382
/* RTL vector.  These appear inside RTX's when there is a need
383
   for a variable number of things.  The principle use is inside
384
   PARALLEL expressions.  */
385
 
386
struct GTY((variable_size)) rtvec_def {
387
  int num_elem;         /* number of elements */
388
  rtx GTY ((length ("%h.num_elem"))) elem[1];
389
};
390
 
391
#define NULL_RTVEC (rtvec) 0
392
 
393
#define GET_NUM_ELEM(RTVEC)             ((RTVEC)->num_elem)
394
#define PUT_NUM_ELEM(RTVEC, NUM)        ((RTVEC)->num_elem = (NUM))
395
 
396
/* Predicate yielding nonzero iff X is an rtx for a register.  */
397
#define REG_P(X) (GET_CODE (X) == REG)
398
 
399
/* Predicate yielding nonzero iff X is an rtx for a memory location.  */
400
#define MEM_P(X) (GET_CODE (X) == MEM)
401
 
402
/* Match CONST_*s that can represent compile-time constant integers.  */
403
#define CASE_CONST_SCALAR_INT \
404
   case CONST_INT: \
405
   case CONST_DOUBLE
406
 
407
/* Match CONST_*s for which pointer equality corresponds to value equality.  */
408
#define CASE_CONST_UNIQUE \
409
   case CONST_INT: \
410
   case CONST_DOUBLE: \
411
   case CONST_FIXED
412
 
413
/* Match all CONST_* rtxes.  */
414
#define CASE_CONST_ANY \
415
   case CONST_INT: \
416
   case CONST_DOUBLE: \
417
   case CONST_FIXED: \
418
   case CONST_VECTOR
419
 
420
/* Predicate yielding nonzero iff X is an rtx for a constant integer.  */
421
#define CONST_INT_P(X) (GET_CODE (X) == CONST_INT)
422
 
423
/* Predicate yielding nonzero iff X is an rtx for a constant fixed-point.  */
424
#define CONST_FIXED_P(X) (GET_CODE (X) == CONST_FIXED)
425
 
426
/* Predicate yielding true iff X is an rtx for a double-int
427
   or floating point constant.  */
428
#define CONST_DOUBLE_P(X) (GET_CODE (X) == CONST_DOUBLE)
429
 
430
/* Predicate yielding true iff X is an rtx for a double-int.  */
431
#define CONST_DOUBLE_AS_INT_P(X) \
432
  (GET_CODE (X) == CONST_DOUBLE && GET_MODE (X) == VOIDmode)
433
 
434
/* Predicate yielding true iff X is an rtx for a integer const.  */
435
#define CONST_SCALAR_INT_P(X) \
436
  (CONST_INT_P (X) || CONST_DOUBLE_AS_INT_P (X))
437
 
438
/* Predicate yielding true iff X is an rtx for a double-int.  */
439
#define CONST_DOUBLE_AS_FLOAT_P(X) \
440
  (GET_CODE (X) == CONST_DOUBLE && GET_MODE (X) != VOIDmode)
441
 
442
/* Predicate yielding nonzero iff X is a label insn.  */
443
#define LABEL_P(X) (GET_CODE (X) == CODE_LABEL)
444
 
445
/* Predicate yielding nonzero iff X is a jump insn.  */
446
#define JUMP_P(X) (GET_CODE (X) == JUMP_INSN)
447
 
448
/* Predicate yielding nonzero iff X is a call insn.  */
449
#define CALL_P(X) (GET_CODE (X) == CALL_INSN)
450
 
451
/* Predicate yielding nonzero iff X is an insn that cannot jump.  */
452
#define NONJUMP_INSN_P(X) (GET_CODE (X) == INSN)
453
 
454
/* Predicate yielding nonzero iff X is a debug note/insn.  */
455
#define DEBUG_INSN_P(X) (GET_CODE (X) == DEBUG_INSN)
456
 
457
/* Predicate yielding nonzero iff X is an insn that is not a debug insn.  */
458
#define NONDEBUG_INSN_P(X) (INSN_P (X) && !DEBUG_INSN_P (X))
459
 
460
/* Nonzero if DEBUG_INSN_P may possibly hold.  */
461
#define MAY_HAVE_DEBUG_INSNS (flag_var_tracking_assignments)
462
 
463
/* Predicate yielding nonzero iff X is a real insn.  */
464
#define INSN_P(X) \
465
  (NONJUMP_INSN_P (X) || DEBUG_INSN_P (X) || JUMP_P (X) || CALL_P (X))
466
 
467
/* Predicate yielding nonzero iff X is a note insn.  */
468
#define NOTE_P(X) (GET_CODE (X) == NOTE)
469
 
470
/* Predicate yielding nonzero iff X is a barrier insn.  */
471
#define BARRIER_P(X) (GET_CODE (X) == BARRIER)
472
 
473
/* Predicate yielding nonzero iff X is a data for a jump table.  */
474
#define JUMP_TABLE_DATA_P(INSN) \
475
  (JUMP_P (INSN) && (GET_CODE (PATTERN (INSN)) == ADDR_VEC || \
476
                     GET_CODE (PATTERN (INSN)) == ADDR_DIFF_VEC))
477
 
478
/* Predicate yielding nonzero iff X is a return or simple_return.  */
479
#define ANY_RETURN_P(X) \
480
  (GET_CODE (X) == RETURN || GET_CODE (X) == SIMPLE_RETURN)
481
 
482
/* 1 if X is a unary operator.  */
483
 
484
#define UNARY_P(X)   \
485
  (GET_RTX_CLASS (GET_CODE (X)) == RTX_UNARY)
486
 
487
/* 1 if X is a binary operator.  */
488
 
489
#define BINARY_P(X)   \
490
  ((GET_RTX_CLASS (GET_CODE (X)) & RTX_BINARY_MASK) == RTX_BINARY_RESULT)
491
 
492
/* 1 if X is an arithmetic operator.  */
493
 
494
#define ARITHMETIC_P(X)   \
495
  ((GET_RTX_CLASS (GET_CODE (X)) & RTX_ARITHMETIC_MASK)                 \
496
    == RTX_ARITHMETIC_RESULT)
497
 
498
/* 1 if X is an arithmetic operator.  */
499
 
500
#define COMMUTATIVE_ARITH_P(X)   \
501
  (GET_RTX_CLASS (GET_CODE (X)) == RTX_COMM_ARITH)
502
 
503
/* 1 if X is a commutative arithmetic operator or a comparison operator.
504
   These two are sometimes selected together because it is possible to
505
   swap the two operands.  */
506
 
507
#define SWAPPABLE_OPERANDS_P(X)   \
508
  ((1 << GET_RTX_CLASS (GET_CODE (X)))                                  \
509
    & ((1 << RTX_COMM_ARITH) | (1 << RTX_COMM_COMPARE)                  \
510
       | (1 << RTX_COMPARE)))
511
 
512
/* 1 if X is a non-commutative operator.  */
513
 
514
#define NON_COMMUTATIVE_P(X)   \
515
  ((GET_RTX_CLASS (GET_CODE (X)) & RTX_COMMUTATIVE_MASK)                \
516
    == RTX_NON_COMMUTATIVE_RESULT)
517
 
518
/* 1 if X is a commutative operator on integers.  */
519
 
520
#define COMMUTATIVE_P(X)   \
521
  ((GET_RTX_CLASS (GET_CODE (X)) & RTX_COMMUTATIVE_MASK)                \
522
    == RTX_COMMUTATIVE_RESULT)
523
 
524
/* 1 if X is a relational operator.  */
525
 
526
#define COMPARISON_P(X)   \
527
  ((GET_RTX_CLASS (GET_CODE (X)) & RTX_COMPARE_MASK) == RTX_COMPARE_RESULT)
528
 
529
/* 1 if X is a constant value that is an integer.  */
530
 
531
#define CONSTANT_P(X)   \
532
  (GET_RTX_CLASS (GET_CODE (X)) == RTX_CONST_OBJ)
533
 
534
/* 1 if X can be used to represent an object.  */
535
#define OBJECT_P(X)                                                     \
536
  ((GET_RTX_CLASS (GET_CODE (X)) & RTX_OBJ_MASK) == RTX_OBJ_RESULT)
537
 
538
/* General accessor macros for accessing the fields of an rtx.  */
539
 
540
#if defined ENABLE_RTL_CHECKING && (GCC_VERSION >= 2007)
541
/* The bit with a star outside the statement expr and an & inside is
542
   so that N can be evaluated only once.  */
543
#define RTL_CHECK1(RTX, N, C1) __extension__                            \
544
(*({ __typeof (RTX) const _rtx = (RTX); const int _n = (N);             \
545
     const enum rtx_code _code = GET_CODE (_rtx);                       \
546
     if (_n < 0 || _n >= GET_RTX_LENGTH (_code))                 \
547
       rtl_check_failed_bounds (_rtx, _n, __FILE__, __LINE__,           \
548
                                __FUNCTION__);                          \
549
     if (GET_RTX_FORMAT(_code)[_n] != C1)                               \
550
       rtl_check_failed_type1 (_rtx, _n, C1, __FILE__, __LINE__,        \
551
                               __FUNCTION__);                           \
552
     &_rtx->u.fld[_n]; }))
553
 
554
#define RTL_CHECK2(RTX, N, C1, C2) __extension__                        \
555
(*({ __typeof (RTX) const _rtx = (RTX); const int _n = (N);             \
556
     const enum rtx_code _code = GET_CODE (_rtx);                       \
557
     if (_n < 0 || _n >= GET_RTX_LENGTH (_code))                 \
558
       rtl_check_failed_bounds (_rtx, _n, __FILE__, __LINE__,           \
559
                                __FUNCTION__);                          \
560
     if (GET_RTX_FORMAT(_code)[_n] != C1                                \
561
         && GET_RTX_FORMAT(_code)[_n] != C2)                            \
562
       rtl_check_failed_type2 (_rtx, _n, C1, C2, __FILE__, __LINE__,    \
563
                               __FUNCTION__);                           \
564
     &_rtx->u.fld[_n]; }))
565
 
566
#define RTL_CHECKC1(RTX, N, C) __extension__                            \
567
(*({ __typeof (RTX) const _rtx = (RTX); const int _n = (N);             \
568
     if (GET_CODE (_rtx) != (C))                                        \
569
       rtl_check_failed_code1 (_rtx, (C), __FILE__, __LINE__,           \
570
                               __FUNCTION__);                           \
571
     &_rtx->u.fld[_n]; }))
572
 
573
#define RTL_CHECKC2(RTX, N, C1, C2) __extension__                       \
574
(*({ __typeof (RTX) const _rtx = (RTX); const int _n = (N);             \
575
     const enum rtx_code _code = GET_CODE (_rtx);                       \
576
     if (_code != (C1) && _code != (C2))                                \
577
       rtl_check_failed_code2 (_rtx, (C1), (C2), __FILE__, __LINE__,    \
578
                               __FUNCTION__); \
579
     &_rtx->u.fld[_n]; }))
580
 
581
#define RTVEC_ELT(RTVEC, I) __extension__                               \
582
(*({ __typeof (RTVEC) const _rtvec = (RTVEC); const int _i = (I);       \
583
     if (_i < 0 || _i >= GET_NUM_ELEM (_rtvec))                          \
584
       rtvec_check_failed_bounds (_rtvec, _i, __FILE__, __LINE__,       \
585
                                  __FUNCTION__);                        \
586
     &_rtvec->elem[_i]; }))
587
 
588
#define XWINT(RTX, N) __extension__                                     \
589
(*({ __typeof (RTX) const _rtx = (RTX); const int _n = (N);             \
590
     const enum rtx_code _code = GET_CODE (_rtx);                       \
591
     if (_n < 0 || _n >= GET_RTX_LENGTH (_code))                 \
592
       rtl_check_failed_bounds (_rtx, _n, __FILE__, __LINE__,           \
593
                                __FUNCTION__);                          \
594
     if (GET_RTX_FORMAT(_code)[_n] != 'w')                              \
595
       rtl_check_failed_type1 (_rtx, _n, 'w', __FILE__, __LINE__,       \
596
                               __FUNCTION__);                           \
597
     &_rtx->u.hwint[_n]; }))
598
 
599
#define XCWINT(RTX, N, C) __extension__                                 \
600
(*({ __typeof (RTX) const _rtx = (RTX);                                 \
601
     if (GET_CODE (_rtx) != (C))                                        \
602
       rtl_check_failed_code1 (_rtx, (C), __FILE__, __LINE__,           \
603
                               __FUNCTION__);                           \
604
     &_rtx->u.hwint[N]; }))
605
 
606
#define XCMWINT(RTX, N, C, M) __extension__                             \
607
(*({ __typeof (RTX) const _rtx = (RTX);                                 \
608
     if (GET_CODE (_rtx) != (C) || GET_MODE (_rtx) != (M))              \
609
       rtl_check_failed_code_mode (_rtx, (C), (M), false, __FILE__,     \
610
                                   __LINE__, __FUNCTION__);             \
611
     &_rtx->u.hwint[N]; }))
612
 
613
#define XCNMPRV(RTX, C, M) __extension__                                \
614
({ __typeof (RTX) const _rtx = (RTX);                                   \
615
   if (GET_CODE (_rtx) != (C) || GET_MODE (_rtx) == (M))                \
616
     rtl_check_failed_code_mode (_rtx, (C), (M), true, __FILE__,        \
617
                                 __LINE__, __FUNCTION__);               \
618
   &_rtx->u.rv; })
619
 
620
#define XCNMPFV(RTX, C, M) __extension__                                \
621
({ __typeof (RTX) const _rtx = (RTX);                                   \
622
   if (GET_CODE (_rtx) != (C) || GET_MODE (_rtx) == (M))                \
623
     rtl_check_failed_code_mode (_rtx, (C), (M), true, __FILE__,        \
624
                                 __LINE__, __FUNCTION__);               \
625
   &_rtx->u.fv; })
626
 
627
#define BLOCK_SYMBOL_CHECK(RTX) __extension__                           \
628
({ __typeof (RTX) const _symbol = (RTX);                                \
629
   const unsigned int flags = RTL_CHECKC1 (_symbol, 1, SYMBOL_REF).rt_int; \
630
   if ((flags & SYMBOL_FLAG_HAS_BLOCK_INFO) == 0)                        \
631
     rtl_check_failed_block_symbol (__FILE__, __LINE__,                 \
632
                                    __FUNCTION__);                      \
633
   &_symbol->u.block_sym; })
634
 
635
extern void rtl_check_failed_bounds (const_rtx, int, const char *, int,
636
                                     const char *)
637
    ATTRIBUTE_NORETURN;
638
extern void rtl_check_failed_type1 (const_rtx, int, int, const char *, int,
639
                                    const char *)
640
    ATTRIBUTE_NORETURN;
641
extern void rtl_check_failed_type2 (const_rtx, int, int, int, const char *,
642
                                    int, const char *)
643
    ATTRIBUTE_NORETURN;
644
extern void rtl_check_failed_code1 (const_rtx, enum rtx_code, const char *,
645
                                    int, const char *)
646
    ATTRIBUTE_NORETURN;
647
extern void rtl_check_failed_code2 (const_rtx, enum rtx_code, enum rtx_code,
648
                                    const char *, int, const char *)
649
    ATTRIBUTE_NORETURN;
650
extern void rtl_check_failed_code_mode (const_rtx, enum rtx_code, enum machine_mode,
651
                                        bool, const char *, int, const char *)
652
    ATTRIBUTE_NORETURN;
653
extern void rtl_check_failed_block_symbol (const char *, int, const char *)
654
    ATTRIBUTE_NORETURN;
655
extern void rtvec_check_failed_bounds (const_rtvec, int, const char *, int,
656
                                       const char *)
657
    ATTRIBUTE_NORETURN;
658
 
659
#else   /* not ENABLE_RTL_CHECKING */
660
 
661
#define RTL_CHECK1(RTX, N, C1)      ((RTX)->u.fld[N])
662
#define RTL_CHECK2(RTX, N, C1, C2)  ((RTX)->u.fld[N])
663
#define RTL_CHECKC1(RTX, N, C)      ((RTX)->u.fld[N])
664
#define RTL_CHECKC2(RTX, N, C1, C2) ((RTX)->u.fld[N])
665
#define RTVEC_ELT(RTVEC, I)         ((RTVEC)->elem[I])
666
#define XWINT(RTX, N)               ((RTX)->u.hwint[N])
667
#define XCWINT(RTX, N, C)           ((RTX)->u.hwint[N])
668
#define XCMWINT(RTX, N, C, M)       ((RTX)->u.hwint[N])
669
#define XCNMWINT(RTX, N, C, M)      ((RTX)->u.hwint[N])
670
#define XCNMPRV(RTX, C, M)          (&(RTX)->u.rv)
671
#define XCNMPFV(RTX, C, M)          (&(RTX)->u.fv)
672
#define BLOCK_SYMBOL_CHECK(RTX)     (&(RTX)->u.block_sym)
673
 
674
#endif
675
 
676
/* General accessor macros for accessing the flags of an rtx.  */
677
 
678
/* Access an individual rtx flag, with no checking of any kind.  */
679
#define RTX_FLAG(RTX, FLAG)     ((RTX)->FLAG)
680
 
681
#if defined ENABLE_RTL_FLAG_CHECKING && (GCC_VERSION >= 2007)
682
#define RTL_FLAG_CHECK1(NAME, RTX, C1) __extension__                    \
683
({ __typeof (RTX) const _rtx = (RTX);                                   \
684
   if (GET_CODE(_rtx) != C1)                                            \
685
     rtl_check_failed_flag  (NAME, _rtx, __FILE__, __LINE__,            \
686
                             __FUNCTION__);                             \
687
   _rtx; })
688
 
689
#define RTL_FLAG_CHECK2(NAME, RTX, C1, C2) __extension__                \
690
({ __typeof (RTX) const _rtx = (RTX);                                   \
691
   if (GET_CODE(_rtx) != C1 && GET_CODE(_rtx) != C2)                    \
692
     rtl_check_failed_flag  (NAME,_rtx, __FILE__, __LINE__,             \
693
                              __FUNCTION__);                            \
694
   _rtx; })
695
 
696
#define RTL_FLAG_CHECK3(NAME, RTX, C1, C2, C3) __extension__            \
697
({ __typeof (RTX) const _rtx = (RTX);                                   \
698
   if (GET_CODE(_rtx) != C1 && GET_CODE(_rtx) != C2                     \
699
       && GET_CODE(_rtx) != C3)                                         \
700
     rtl_check_failed_flag  (NAME, _rtx, __FILE__, __LINE__,            \
701
                             __FUNCTION__);                             \
702
   _rtx; })
703
 
704
#define RTL_FLAG_CHECK4(NAME, RTX, C1, C2, C3, C4) __extension__        \
705
({ __typeof (RTX) const _rtx = (RTX);                                   \
706
   if (GET_CODE(_rtx) != C1 && GET_CODE(_rtx) != C2                     \
707
       && GET_CODE(_rtx) != C3 && GET_CODE(_rtx) != C4)                 \
708
     rtl_check_failed_flag  (NAME, _rtx, __FILE__, __LINE__,            \
709
                              __FUNCTION__);                            \
710
   _rtx; })
711
 
712
#define RTL_FLAG_CHECK5(NAME, RTX, C1, C2, C3, C4, C5) __extension__    \
713
({ __typeof (RTX) const _rtx = (RTX);                                   \
714
   if (GET_CODE(_rtx) != C1 && GET_CODE(_rtx) != C2                     \
715
       && GET_CODE(_rtx) != C3 && GET_CODE(_rtx) != C4                  \
716
       && GET_CODE(_rtx) != C5)                                         \
717
     rtl_check_failed_flag  (NAME, _rtx, __FILE__, __LINE__,            \
718
                             __FUNCTION__);                             \
719
   _rtx; })
720
 
721
#define RTL_FLAG_CHECK6(NAME, RTX, C1, C2, C3, C4, C5, C6)              \
722
  __extension__                                                         \
723
({ __typeof (RTX) const _rtx = (RTX);                                   \
724
   if (GET_CODE(_rtx) != C1 && GET_CODE(_rtx) != C2                     \
725
       && GET_CODE(_rtx) != C3 && GET_CODE(_rtx) != C4                  \
726
       && GET_CODE(_rtx) != C5 && GET_CODE(_rtx) != C6)                 \
727
     rtl_check_failed_flag  (NAME,_rtx, __FILE__, __LINE__,             \
728
                             __FUNCTION__);                             \
729
   _rtx; })
730
 
731
#define RTL_FLAG_CHECK7(NAME, RTX, C1, C2, C3, C4, C5, C6, C7)          \
732
  __extension__                                                         \
733
({ __typeof (RTX) const _rtx = (RTX);                                   \
734
   if (GET_CODE(_rtx) != C1 && GET_CODE(_rtx) != C2                     \
735
       && GET_CODE(_rtx) != C3 && GET_CODE(_rtx) != C4                  \
736
       && GET_CODE(_rtx) != C5 && GET_CODE(_rtx) != C6                  \
737
       && GET_CODE(_rtx) != C7)                                         \
738
     rtl_check_failed_flag  (NAME, _rtx, __FILE__, __LINE__,            \
739
                             __FUNCTION__);                             \
740
   _rtx; })
741
 
742
#define RTL_FLAG_CHECK8(NAME, RTX, C1, C2, C3, C4, C5, C6, C7, C8)      \
743
  __extension__                                                         \
744
({ __typeof (RTX) const _rtx = (RTX);                                   \
745
   if (GET_CODE(_rtx) != C1 && GET_CODE(_rtx) != C2                     \
746
       && GET_CODE(_rtx) != C3 && GET_CODE(_rtx) != C4                  \
747
       && GET_CODE(_rtx) != C5 && GET_CODE(_rtx) != C6                  \
748
       && GET_CODE(_rtx) != C7 && GET_CODE(_rtx) != C8)                 \
749
     rtl_check_failed_flag  (NAME, _rtx, __FILE__, __LINE__,            \
750
                             __FUNCTION__);                             \
751
   _rtx; })
752
 
753
extern void rtl_check_failed_flag (const char *, const_rtx, const char *,
754
                                   int, const char *)
755
    ATTRIBUTE_NORETURN
756
    ;
757
 
758
#else   /* not ENABLE_RTL_FLAG_CHECKING */
759
 
760
#define RTL_FLAG_CHECK1(NAME, RTX, C1)                                  (RTX)
761
#define RTL_FLAG_CHECK2(NAME, RTX, C1, C2)                              (RTX)
762
#define RTL_FLAG_CHECK3(NAME, RTX, C1, C2, C3)                          (RTX)
763
#define RTL_FLAG_CHECK4(NAME, RTX, C1, C2, C3, C4)                      (RTX)
764
#define RTL_FLAG_CHECK5(NAME, RTX, C1, C2, C3, C4, C5)          (RTX)
765
#define RTL_FLAG_CHECK6(NAME, RTX, C1, C2, C3, C4, C5, C6)              (RTX)
766
#define RTL_FLAG_CHECK7(NAME, RTX, C1, C2, C3, C4, C5, C6, C7)          (RTX)
767
#define RTL_FLAG_CHECK8(NAME, RTX, C1, C2, C3, C4, C5, C6, C7, C8)      (RTX)
768
#endif
769
 
770
#define XINT(RTX, N)    (RTL_CHECK2 (RTX, N, 'i', 'n').rt_int)
771
#define XUINT(RTX, N)   (RTL_CHECK2 (RTX, N, 'i', 'n').rt_uint)
772
#define XSTR(RTX, N)    (RTL_CHECK2 (RTX, N, 's', 'S').rt_str)
773
#define XEXP(RTX, N)    (RTL_CHECK2 (RTX, N, 'e', 'u').rt_rtx)
774
#define XVEC(RTX, N)    (RTL_CHECK2 (RTX, N, 'E', 'V').rt_rtvec)
775
#define XMODE(RTX, N)   (RTL_CHECK1 (RTX, N, 'M').rt_type)
776
#define XTREE(RTX, N)   (RTL_CHECK1 (RTX, N, 't').rt_tree)
777
#define XBBDEF(RTX, N)  (RTL_CHECK1 (RTX, N, 'B').rt_bb)
778
#define XTMPL(RTX, N)   (RTL_CHECK1 (RTX, N, 'T').rt_str)
779
#define XCFI(RTX, N)    (RTL_CHECK1 (RTX, N, 'C').rt_cfi)
780
 
781
#define XVECEXP(RTX, N, M)      RTVEC_ELT (XVEC (RTX, N), M)
782
#define XVECLEN(RTX, N)         GET_NUM_ELEM (XVEC (RTX, N))
783
 
784
/* These are like XINT, etc. except that they expect a '0' field instead
785
   of the normal type code.  */
786
 
787
#define X0INT(RTX, N)      (RTL_CHECK1 (RTX, N, '0').rt_int)
788
#define X0UINT(RTX, N)     (RTL_CHECK1 (RTX, N, '0').rt_uint)
789
#define X0STR(RTX, N)      (RTL_CHECK1 (RTX, N, '0').rt_str)
790
#define X0EXP(RTX, N)      (RTL_CHECK1 (RTX, N, '0').rt_rtx)
791
#define X0VEC(RTX, N)      (RTL_CHECK1 (RTX, N, '0').rt_rtvec)
792
#define X0MODE(RTX, N)     (RTL_CHECK1 (RTX, N, '0').rt_type)
793
#define X0TREE(RTX, N)     (RTL_CHECK1 (RTX, N, '0').rt_tree)
794
#define X0BBDEF(RTX, N)    (RTL_CHECK1 (RTX, N, '0').rt_bb)
795
#define X0ADVFLAGS(RTX, N) (RTL_CHECK1 (RTX, N, '0').rt_addr_diff_vec_flags)
796
#define X0CSELIB(RTX, N)   (RTL_CHECK1 (RTX, N, '0').rt_cselib)
797
#define X0MEMATTR(RTX, N)  (RTL_CHECKC1 (RTX, N, MEM).rt_mem)
798
#define X0REGATTR(RTX, N)  (RTL_CHECKC1 (RTX, N, REG).rt_reg)
799
#define X0CONSTANT(RTX, N) (RTL_CHECK1 (RTX, N, '0').rt_constant)
800
 
801
/* Access a '0' field with any type.  */
802
#define X0ANY(RTX, N)      RTL_CHECK1 (RTX, N, '0')
803
 
804
#define XCINT(RTX, N, C)      (RTL_CHECKC1 (RTX, N, C).rt_int)
805
#define XCUINT(RTX, N, C)     (RTL_CHECKC1 (RTX, N, C).rt_uint)
806
#define XCSTR(RTX, N, C)      (RTL_CHECKC1 (RTX, N, C).rt_str)
807
#define XCEXP(RTX, N, C)      (RTL_CHECKC1 (RTX, N, C).rt_rtx)
808
#define XCVEC(RTX, N, C)      (RTL_CHECKC1 (RTX, N, C).rt_rtvec)
809
#define XCMODE(RTX, N, C)     (RTL_CHECKC1 (RTX, N, C).rt_type)
810
#define XCTREE(RTX, N, C)     (RTL_CHECKC1 (RTX, N, C).rt_tree)
811
#define XCBBDEF(RTX, N, C)    (RTL_CHECKC1 (RTX, N, C).rt_bb)
812
#define XCCFI(RTX, N, C)      (RTL_CHECKC1 (RTX, N, C).rt_cfi)
813
#define XCCSELIB(RTX, N, C)   (RTL_CHECKC1 (RTX, N, C).rt_cselib)
814
 
815
#define XCVECEXP(RTX, N, M, C)  RTVEC_ELT (XCVEC (RTX, N, C), M)
816
#define XCVECLEN(RTX, N, C)     GET_NUM_ELEM (XCVEC (RTX, N, C))
817
 
818
#define XC2EXP(RTX, N, C1, C2)      (RTL_CHECKC2 (RTX, N, C1, C2).rt_rtx)
819
 
820
/* ACCESS MACROS for particular fields of insns.  */
821
 
822
/* Holds a unique number for each insn.
823
   These are not necessarily sequentially increasing.  */
824
#define INSN_UID(INSN)  XINT (INSN, 0)
825
 
826
/* Chain insns together in sequence.  */
827
#define PREV_INSN(INSN) XEXP (INSN, 1)
828
#define NEXT_INSN(INSN) XEXP (INSN, 2)
829
 
830
#define BLOCK_FOR_INSN(INSN) XBBDEF (INSN, 3)
831
 
832
/* The body of an insn.  */
833
#define PATTERN(INSN)   XEXP (INSN, 4)
834
 
835
#define INSN_LOCATION(INSN) XUINT (INSN, 5)
836
 
837
#define INSN_HAS_LOCATION(INSN) ((LOCATION_LOCUS (INSN_LOCATION (INSN)))\
838
  != UNKNOWN_LOCATION)
839
 
840
/* LOCATION of an RTX if relevant.  */
841
#define RTL_LOCATION(X) (INSN_P (X) ? \
842
                         INSN_LOCATION (X) : UNKNOWN_LOCATION)
843
 
844
/* Code number of instruction, from when it was recognized.
845
   -1 means this instruction has not been recognized yet.  */
846
#define INSN_CODE(INSN) XINT (INSN, 6)
847
 
848
#define RTX_FRAME_RELATED_P(RTX)                                        \
849
  (RTL_FLAG_CHECK6("RTX_FRAME_RELATED_P", (RTX), DEBUG_INSN, INSN,      \
850
                   CALL_INSN, JUMP_INSN, BARRIER, SET)->frame_related)
851
 
852
/* 1 if RTX is an insn that has been deleted.  */
853
#define INSN_DELETED_P(RTX)                                             \
854
  (RTL_FLAG_CHECK7("INSN_DELETED_P", (RTX), DEBUG_INSN, INSN,           \
855
                   CALL_INSN, JUMP_INSN,                                \
856
                   CODE_LABEL, BARRIER, NOTE)->volatil)
857
 
858
/* 1 if RTX is a call to a const function.  Built from ECF_CONST and
859
   TREE_READONLY.  */
860
#define RTL_CONST_CALL_P(RTX)                                   \
861
  (RTL_FLAG_CHECK1("RTL_CONST_CALL_P", (RTX), CALL_INSN)->unchanging)
862
 
863
/* 1 if RTX is a call to a pure function.  Built from ECF_PURE and
864
   DECL_PURE_P.  */
865
#define RTL_PURE_CALL_P(RTX)                                    \
866
  (RTL_FLAG_CHECK1("RTL_PURE_CALL_P", (RTX), CALL_INSN)->return_val)
867
 
868
/* 1 if RTX is a call to a const or pure function.  */
869
#define RTL_CONST_OR_PURE_CALL_P(RTX) \
870
  (RTL_CONST_CALL_P(RTX) || RTL_PURE_CALL_P(RTX))
871
 
872
/* 1 if RTX is a call to a looping const or pure function.  Built from
873
   ECF_LOOPING_CONST_OR_PURE and DECL_LOOPING_CONST_OR_PURE_P.  */
874
#define RTL_LOOPING_CONST_OR_PURE_CALL_P(RTX)                                   \
875
  (RTL_FLAG_CHECK1("CONST_OR_PURE_CALL_P", (RTX), CALL_INSN)->call)
876
 
877
/* 1 if RTX is a call_insn for a sibling call.  */
878
#define SIBLING_CALL_P(RTX)                                             \
879
  (RTL_FLAG_CHECK1("SIBLING_CALL_P", (RTX), CALL_INSN)->jump)
880
 
881
/* 1 if RTX is a jump_insn, call_insn, or insn that is an annulling branch.  */
882
#define INSN_ANNULLED_BRANCH_P(RTX)                                     \
883
  (RTL_FLAG_CHECK1("INSN_ANNULLED_BRANCH_P", (RTX), JUMP_INSN)->unchanging)
884
 
885
/* 1 if RTX is an insn in a delay slot and is from the target of the branch.
886
   If the branch insn has INSN_ANNULLED_BRANCH_P set, this insn should only be
887
   executed if the branch is taken.  For annulled branches with this bit
888
   clear, the insn should be executed only if the branch is not taken.  */
889
#define INSN_FROM_TARGET_P(RTX)                                         \
890
  (RTL_FLAG_CHECK3("INSN_FROM_TARGET_P", (RTX), INSN, JUMP_INSN, CALL_INSN)->in_struct)
891
 
892
/* In an ADDR_DIFF_VEC, the flags for RTX for use by branch shortening.
893
   See the comments for ADDR_DIFF_VEC in rtl.def.  */
894
#define ADDR_DIFF_VEC_FLAGS(RTX) X0ADVFLAGS(RTX, 4)
895
 
896
/* In a VALUE, the value cselib has assigned to RTX.
897
   This is a "struct cselib_val_struct", see cselib.h.  */
898
#define CSELIB_VAL_PTR(RTX) X0CSELIB(RTX, 0)
899
 
900
/* Holds a list of notes on what this insn does to various REGs.
901
   It is a chain of EXPR_LIST rtx's, where the second operand is the
902
   chain pointer and the first operand is the REG being described.
903
   The mode field of the EXPR_LIST contains not a real machine mode
904
   but a value from enum reg_note.  */
905
#define REG_NOTES(INSN) XEXP(INSN, 7)
906
 
907
/* In an ENTRY_VALUE this is the DECL_INCOMING_RTL of the argument in
908
   question.  */
909
#define ENTRY_VALUE_EXP(RTX) (RTL_CHECKC1 (RTX, 0, ENTRY_VALUE).rt_rtx)
910
 
911
enum reg_note
912
{
913
#define DEF_REG_NOTE(NAME) NAME,
914
#include "reg-notes.def"
915
#undef DEF_REG_NOTE
916
  REG_NOTE_MAX
917
};
918
 
919
/* Define macros to extract and insert the reg-note kind in an EXPR_LIST.  */
920
#define REG_NOTE_KIND(LINK) ((enum reg_note) GET_MODE (LINK))
921
#define PUT_REG_NOTE_KIND(LINK, KIND) \
922
  PUT_MODE (LINK, (enum machine_mode) (KIND))
923
 
924
/* Names for REG_NOTE's in EXPR_LIST insn's.  */
925
 
926
extern const char * const reg_note_name[];
927
#define GET_REG_NOTE_NAME(MODE) (reg_note_name[(int) (MODE)])
928
 
929
/* This field is only present on CALL_INSNs.  It holds a chain of EXPR_LIST of
930
   USE and CLOBBER expressions.
931
     USE expressions list the registers filled with arguments that
932
   are passed to the function.
933
     CLOBBER expressions document the registers explicitly clobbered
934
   by this CALL_INSN.
935
     Pseudo registers can not be mentioned in this list.  */
936
#define CALL_INSN_FUNCTION_USAGE(INSN)  XEXP(INSN, 8)
937
 
938
/* The label-number of a code-label.  The assembler label
939
   is made from `L' and the label-number printed in decimal.
940
   Label numbers are unique in a compilation.  */
941
#define CODE_LABEL_NUMBER(INSN) XINT (INSN, 6)
942
 
943
/* In a NOTE that is a line number, this is a string for the file name that the
944
   line is in.  We use the same field to record block numbers temporarily in
945
   NOTE_INSN_BLOCK_BEG and NOTE_INSN_BLOCK_END notes.  (We avoid lots of casts
946
   between ints and pointers if we use a different macro for the block number.)
947
   */
948
 
949
/* Opaque data.  */
950
#define NOTE_DATA(INSN)         RTL_CHECKC1 (INSN, 4, NOTE)
951
#define NOTE_DELETED_LABEL_NAME(INSN) XCSTR (INSN, 4, NOTE)
952
#define SET_INSN_DELETED(INSN) set_insn_deleted (INSN);
953
#define NOTE_BLOCK(INSN)        XCTREE (INSN, 4, NOTE)
954
#define NOTE_EH_HANDLER(INSN)   XCINT (INSN, 4, NOTE)
955
#define NOTE_BASIC_BLOCK(INSN)  XCBBDEF (INSN, 4, NOTE)
956
#define NOTE_VAR_LOCATION(INSN) XCEXP (INSN, 4, NOTE)
957
#define NOTE_CFI(INSN)          XCCFI (INSN, 4, NOTE)
958
#define NOTE_LABEL_NUMBER(INSN) XCINT (INSN, 4, NOTE)
959
 
960
/* In a NOTE that is a line number, this is the line number.
961
   Other kinds of NOTEs are identified by negative numbers here.  */
962
#define NOTE_KIND(INSN) XCINT (INSN, 5, NOTE)
963
 
964
/* Nonzero if INSN is a note marking the beginning of a basic block.  */
965
#define NOTE_INSN_BASIC_BLOCK_P(INSN)                   \
966
  (GET_CODE (INSN) == NOTE                              \
967
   && NOTE_KIND (INSN) == NOTE_INSN_BASIC_BLOCK)
968
 
969
/* Variable declaration and the location of a variable.  */
970
#define PAT_VAR_LOCATION_DECL(PAT) (XCTREE ((PAT), 0, VAR_LOCATION))
971
#define PAT_VAR_LOCATION_LOC(PAT) (XCEXP ((PAT), 1, VAR_LOCATION))
972
 
973
/* Initialization status of the variable in the location.  Status
974
   can be unknown, uninitialized or initialized.  See enumeration
975
   type below.  */
976
#define PAT_VAR_LOCATION_STATUS(PAT) \
977
  ((enum var_init_status) (XCINT ((PAT), 2, VAR_LOCATION)))
978
 
979
/* Accessors for a NOTE_INSN_VAR_LOCATION.  */
980
#define NOTE_VAR_LOCATION_DECL(NOTE) \
981
  PAT_VAR_LOCATION_DECL (NOTE_VAR_LOCATION (NOTE))
982
#define NOTE_VAR_LOCATION_LOC(NOTE) \
983
  PAT_VAR_LOCATION_LOC (NOTE_VAR_LOCATION (NOTE))
984
#define NOTE_VAR_LOCATION_STATUS(NOTE) \
985
  PAT_VAR_LOCATION_STATUS (NOTE_VAR_LOCATION (NOTE))
986
 
987
/* The VAR_LOCATION rtx in a DEBUG_INSN.  */
988
#define INSN_VAR_LOCATION(INSN) PATTERN (INSN)
989
 
990
/* Accessors for a tree-expanded var location debug insn.  */
991
#define INSN_VAR_LOCATION_DECL(INSN) \
992
  PAT_VAR_LOCATION_DECL (INSN_VAR_LOCATION (INSN))
993
#define INSN_VAR_LOCATION_LOC(INSN) \
994
  PAT_VAR_LOCATION_LOC (INSN_VAR_LOCATION (INSN))
995
#define INSN_VAR_LOCATION_STATUS(INSN) \
996
  PAT_VAR_LOCATION_STATUS (INSN_VAR_LOCATION (INSN))
997
 
998
/* Expand to the RTL that denotes an unknown variable location in a
999
   DEBUG_INSN.  */
1000
#define gen_rtx_UNKNOWN_VAR_LOC() (gen_rtx_CLOBBER (VOIDmode, const0_rtx))
1001
 
1002
/* Determine whether X is such an unknown location.  */
1003
#define VAR_LOC_UNKNOWN_P(X) \
1004
  (GET_CODE (X) == CLOBBER && XEXP ((X), 0) == const0_rtx)
1005
 
1006
/* 1 if RTX is emitted after a call, but it should take effect before
1007
   the call returns.  */
1008
#define NOTE_DURING_CALL_P(RTX)                         \
1009
  (RTL_FLAG_CHECK1("NOTE_VAR_LOCATION_DURING_CALL_P", (RTX), NOTE)->call)
1010
 
1011
/* DEBUG_EXPR_DECL corresponding to a DEBUG_EXPR RTX.  */
1012
#define DEBUG_EXPR_TREE_DECL(RTX) XCTREE (RTX, 0, DEBUG_EXPR)
1013
 
1014
/* VAR_DECL/PARM_DECL DEBUG_IMPLICIT_PTR takes address of.  */
1015
#define DEBUG_IMPLICIT_PTR_DECL(RTX) XCTREE (RTX, 0, DEBUG_IMPLICIT_PTR)
1016
 
1017
/* PARM_DECL DEBUG_PARAMETER_REF references.  */
1018
#define DEBUG_PARAMETER_REF_DECL(RTX) XCTREE (RTX, 0, DEBUG_PARAMETER_REF)
1019
 
1020
/* Codes that appear in the NOTE_KIND field for kinds of notes
1021
   that are not line numbers.  These codes are all negative.
1022
 
1023
   Notice that we do not try to use zero here for any of
1024
   the special note codes because sometimes the source line
1025
   actually can be zero!  This happens (for example) when we
1026
   are generating code for the per-translation-unit constructor
1027
   and destructor routines for some C++ translation unit.  */
1028
 
1029
enum insn_note
1030
{
1031
#define DEF_INSN_NOTE(NAME) NAME,
1032
#include "insn-notes.def"
1033
#undef DEF_INSN_NOTE
1034
 
1035
  NOTE_INSN_MAX
1036
};
1037
 
1038
/* Names for NOTE insn's other than line numbers.  */
1039
 
1040
extern const char * const note_insn_name[NOTE_INSN_MAX];
1041
#define GET_NOTE_INSN_NAME(NOTE_CODE) \
1042
  (note_insn_name[(NOTE_CODE)])
1043
 
1044
/* The name of a label, in case it corresponds to an explicit label
1045
   in the input source code.  */
1046
#define LABEL_NAME(RTX) XCSTR (RTX, 7, CODE_LABEL)
1047
 
1048
/* In jump.c, each label contains a count of the number
1049
   of LABEL_REFs that point at it, so unused labels can be deleted.  */
1050
#define LABEL_NUSES(RTX) XCINT (RTX, 5, CODE_LABEL)
1051
 
1052
/* Labels carry a two-bit field composed of the ->jump and ->call
1053
   bits.  This field indicates whether the label is an alternate
1054
   entry point, and if so, what kind.  */
1055
enum label_kind
1056
{
1057
  LABEL_NORMAL = 0,      /* ordinary label */
1058
  LABEL_STATIC_ENTRY,   /* alternate entry point, not exported */
1059
  LABEL_GLOBAL_ENTRY,   /* alternate entry point, exported */
1060
  LABEL_WEAK_ENTRY      /* alternate entry point, exported as weak symbol */
1061
};
1062
 
1063
#if defined ENABLE_RTL_FLAG_CHECKING && (GCC_VERSION > 2007)
1064
 
1065
/* Retrieve the kind of LABEL.  */
1066
#define LABEL_KIND(LABEL) __extension__                                 \
1067
({ __typeof (LABEL) const _label = (LABEL);                             \
1068
   if (GET_CODE (_label) != CODE_LABEL)                                 \
1069
     rtl_check_failed_flag ("LABEL_KIND", _label, __FILE__, __LINE__,   \
1070
                            __FUNCTION__);                              \
1071
   (enum label_kind) ((_label->jump << 1) | _label->call); })
1072
 
1073
/* Set the kind of LABEL.  */
1074
#define SET_LABEL_KIND(LABEL, KIND) do {                                \
1075
   __typeof (LABEL) const _label = (LABEL);                             \
1076
   const unsigned int _kind = (KIND);                                   \
1077
   if (GET_CODE (_label) != CODE_LABEL)                                 \
1078
     rtl_check_failed_flag ("SET_LABEL_KIND", _label, __FILE__, __LINE__, \
1079
                            __FUNCTION__);                              \
1080
   _label->jump = ((_kind >> 1) & 1);                                   \
1081
   _label->call = (_kind & 1);                                          \
1082
} while (0)
1083
 
1084
#else
1085
 
1086
/* Retrieve the kind of LABEL.  */
1087
#define LABEL_KIND(LABEL) \
1088
   ((enum label_kind) (((LABEL)->jump << 1) | (LABEL)->call))
1089
 
1090
/* Set the kind of LABEL.  */
1091
#define SET_LABEL_KIND(LABEL, KIND) do {                                \
1092
   rtx const _label = (LABEL);                                          \
1093
   const unsigned int _kind = (KIND);                                   \
1094
   _label->jump = ((_kind >> 1) & 1);                                   \
1095
   _label->call = (_kind & 1);                                          \
1096
} while (0)
1097
 
1098
#endif /* rtl flag checking */
1099
 
1100
#define LABEL_ALT_ENTRY_P(LABEL) (LABEL_KIND (LABEL) != LABEL_NORMAL)
1101
 
1102
/* In jump.c, each JUMP_INSN can point to a label that it can jump to,
1103
   so that if the JUMP_INSN is deleted, the label's LABEL_NUSES can
1104
   be decremented and possibly the label can be deleted.  */
1105
#define JUMP_LABEL(INSN)   XCEXP (INSN, 8, JUMP_INSN)
1106
 
1107
/* Once basic blocks are found, each CODE_LABEL starts a chain that
1108
   goes through all the LABEL_REFs that jump to that label.  The chain
1109
   eventually winds up at the CODE_LABEL: it is circular.  */
1110
#define LABEL_REFS(LABEL) XCEXP (LABEL, 4, CODE_LABEL)
1111
 
1112
/* For a REG rtx, REGNO extracts the register number.  REGNO can only
1113
   be used on RHS.  Use SET_REGNO to change the value.  */
1114
#define REGNO(RTX) (rhs_regno(RTX))
1115
#define SET_REGNO(RTX,N) (df_ref_change_reg_with_loc (REGNO(RTX), N, RTX), XCUINT (RTX, 0, REG) = N)
1116
#define SET_REGNO_RAW(RTX,N) (XCUINT (RTX, 0, REG) = N)
1117
 
1118
/* ORIGINAL_REGNO holds the number the register originally had; for a
1119
   pseudo register turned into a hard reg this will hold the old pseudo
1120
   register number.  */
1121
#define ORIGINAL_REGNO(RTX) X0UINT (RTX, 1)
1122
 
1123
/* Force the REGNO macro to only be used on the lhs.  */
1124
static inline unsigned int
1125
rhs_regno (const_rtx x)
1126
{
1127
  return XCUINT (x, 0, REG);
1128
}
1129
 
1130
 
1131
/* 1 if RTX is a reg or parallel that is the current function's return
1132
   value.  */
1133
#define REG_FUNCTION_VALUE_P(RTX)                                       \
1134
  (RTL_FLAG_CHECK2("REG_FUNCTION_VALUE_P", (RTX), REG, PARALLEL)->return_val)
1135
 
1136
/* 1 if RTX is a reg that corresponds to a variable declared by the user.  */
1137
#define REG_USERVAR_P(RTX)                                              \
1138
  (RTL_FLAG_CHECK1("REG_USERVAR_P", (RTX), REG)->volatil)
1139
 
1140
/* 1 if RTX is a reg that holds a pointer value.  */
1141
#define REG_POINTER(RTX)                                                \
1142
  (RTL_FLAG_CHECK1("REG_POINTER", (RTX), REG)->frame_related)
1143
 
1144
/* 1 if RTX is a mem that holds a pointer value.  */
1145
#define MEM_POINTER(RTX)                                                \
1146
  (RTL_FLAG_CHECK1("MEM_POINTER", (RTX), MEM)->frame_related)
1147
 
1148
/* 1 if the given register REG corresponds to a hard register.  */
1149
#define HARD_REGISTER_P(REG) (HARD_REGISTER_NUM_P (REGNO (REG)))
1150
 
1151
/* 1 if the given register number REG_NO corresponds to a hard register.  */
1152
#define HARD_REGISTER_NUM_P(REG_NO) ((REG_NO) < FIRST_PSEUDO_REGISTER)
1153
 
1154
/* For a CONST_INT rtx, INTVAL extracts the integer.  */
1155
#define INTVAL(RTX) XCWINT(RTX, 0, CONST_INT)
1156
#define UINTVAL(RTX) ((unsigned HOST_WIDE_INT) INTVAL (RTX))
1157
 
1158
/* For a CONST_DOUBLE:
1159
   For a VOIDmode, there are two integers CONST_DOUBLE_LOW is the
1160
     low-order word and ..._HIGH the high-order.
1161
   For a float, there is a REAL_VALUE_TYPE structure, and
1162
     CONST_DOUBLE_REAL_VALUE(r) is a pointer to it.  */
1163
#define CONST_DOUBLE_LOW(r) XCMWINT (r, 0, CONST_DOUBLE, VOIDmode)
1164
#define CONST_DOUBLE_HIGH(r) XCMWINT (r, 1, CONST_DOUBLE, VOIDmode)
1165
#define CONST_DOUBLE_REAL_VALUE(r) \
1166
  ((const struct real_value *) XCNMPRV (r, CONST_DOUBLE, VOIDmode))
1167
 
1168
#define CONST_FIXED_VALUE(r) \
1169
  ((const struct fixed_value *) XCNMPFV (r, CONST_FIXED, VOIDmode))
1170
#define CONST_FIXED_VALUE_HIGH(r) \
1171
  ((HOST_WIDE_INT) (CONST_FIXED_VALUE(r)->data.high))
1172
#define CONST_FIXED_VALUE_LOW(r) \
1173
  ((HOST_WIDE_INT) (CONST_FIXED_VALUE(r)->data.low))
1174
 
1175
/* For a CONST_VECTOR, return element #n.  */
1176
#define CONST_VECTOR_ELT(RTX, N) XCVECEXP (RTX, 0, N, CONST_VECTOR)
1177
 
1178
/* For a CONST_VECTOR, return the number of elements in a vector.  */
1179
#define CONST_VECTOR_NUNITS(RTX) XCVECLEN (RTX, 0, CONST_VECTOR)
1180
 
1181
/* For a SUBREG rtx, SUBREG_REG extracts the value we want a subreg of.
1182
   SUBREG_BYTE extracts the byte-number.  */
1183
 
1184
#define SUBREG_REG(RTX) XCEXP (RTX, 0, SUBREG)
1185
#define SUBREG_BYTE(RTX) XCUINT (RTX, 1, SUBREG)
1186
 
1187
/* in rtlanal.c */
1188
/* Return the right cost to give to an operation
1189
   to make the cost of the corresponding register-to-register instruction
1190
   N times that of a fast register-to-register instruction.  */
1191
#define COSTS_N_INSNS(N) ((N) * 4)
1192
 
1193
/* Maximum cost of an rtl expression.  This value has the special meaning
1194
   not to use an rtx with this cost under any circumstances.  */
1195
#define MAX_COST INT_MAX
1196
 
1197
/* A structure to hold all available cost information about an rtl
1198
   expression.  */
1199
struct full_rtx_costs
1200
{
1201
  int speed;
1202
  int size;
1203
};
1204
 
1205
/* Initialize a full_rtx_costs structure C to the maximum cost.  */
1206
static inline void
1207
init_costs_to_max (struct full_rtx_costs *c)
1208
{
1209
  c->speed = MAX_COST;
1210
  c->size = MAX_COST;
1211
}
1212
 
1213
/* Initialize a full_rtx_costs structure C to zero cost.  */
1214
static inline void
1215
init_costs_to_zero (struct full_rtx_costs *c)
1216
{
1217
  c->speed = 0;
1218
  c->size = 0;
1219
}
1220
 
1221
/* Compare two full_rtx_costs structures A and B, returning true
1222
   if A < B when optimizing for speed.  */
1223
static inline bool
1224
costs_lt_p (struct full_rtx_costs *a, struct full_rtx_costs *b,
1225
            bool speed)
1226
{
1227
  if (speed)
1228
    return (a->speed < b->speed
1229
            || (a->speed == b->speed && a->size < b->size));
1230
  else
1231
    return (a->size < b->size
1232
            || (a->size == b->size && a->speed < b->speed));
1233
}
1234
 
1235
/* Increase both members of the full_rtx_costs structure C by the
1236
   cost of N insns.  */
1237
static inline void
1238
costs_add_n_insns (struct full_rtx_costs *c, int n)
1239
{
1240
  c->speed += COSTS_N_INSNS (n);
1241
  c->size += COSTS_N_INSNS (n);
1242
}
1243
 
1244
/* Information about an address.  This structure is supposed to be able
1245
   to represent all supported target addresses.  Please extend it if it
1246
   is not yet general enough.  */
1247
struct address_info {
1248
  /* The mode of the value being addressed, or VOIDmode if this is
1249
     a load-address operation with no known address mode.  */
1250
  enum machine_mode mode;
1251
 
1252
  /* The address space.  */
1253
  addr_space_t as;
1254
 
1255
  /* A pointer to the top-level address.  */
1256
  rtx *outer;
1257
 
1258
  /* A pointer to the inner address, after all address mutations
1259
     have been stripped from the top-level address.  It can be one
1260
     of the following:
1261
 
1262
     - A {PRE,POST}_{INC,DEC} of *BASE.  SEGMENT, INDEX and DISP are null.
1263
 
1264
     - A {PRE,POST}_MODIFY of *BASE.  In this case either INDEX or DISP
1265
       points to the step value, depending on whether the step is variable
1266
       or constant respectively.  SEGMENT is null.
1267
 
1268
     - A plain sum of the form SEGMENT + BASE + INDEX + DISP,
1269
       with null fields evaluating to 0.  */
1270
  rtx *inner;
1271
 
1272
  /* Components that make up *INNER.  Each one may be null or nonnull.
1273
     When nonnull, their meanings are as follows:
1274
 
1275
     - *SEGMENT is the "segment" of memory to which the address refers.
1276
       This value is entirely target-specific and is only called a "segment"
1277
       because that's its most typical use.  It contains exactly one UNSPEC,
1278
       pointed to by SEGMENT_TERM.  The contents of *SEGMENT do not need
1279
       reloading.
1280
 
1281
     - *BASE is a variable expression representing a base address.
1282
       It contains exactly one REG, SUBREG or MEM, pointed to by BASE_TERM.
1283
 
1284
     - *INDEX is a variable expression representing an index value.
1285
       It may be a scaled expression, such as a MULT.  It has exactly
1286
       one REG, SUBREG or MEM, pointed to by INDEX_TERM.
1287
 
1288
     - *DISP is a constant, possibly mutated.  DISP_TERM points to the
1289
       unmutated RTX_CONST_OBJ.  */
1290
  rtx *segment;
1291
  rtx *base;
1292
  rtx *index;
1293
  rtx *disp;
1294
 
1295
  rtx *segment_term;
1296
  rtx *base_term;
1297
  rtx *index_term;
1298
  rtx *disp_term;
1299
 
1300
  /* In a {PRE,POST}_MODIFY address, this points to a second copy
1301
     of BASE_TERM, otherwise it is null.  */
1302
  rtx *base_term2;
1303
 
1304
  /* ADDRESS if this structure describes an address operand, MEM if
1305
     it describes a MEM address.  */
1306
  enum rtx_code addr_outer_code;
1307
 
1308
  /* If BASE is nonnull, this is the code of the rtx that contains it.  */
1309
  enum rtx_code base_outer_code;
1310
 
1311
  /* True if this is an RTX_AUTOINC address.  */
1312
  bool autoinc_p;
1313
};
1314
 
1315
extern void init_rtlanal (void);
1316
extern int rtx_cost (rtx, enum rtx_code, int, bool);
1317
extern int address_cost (rtx, enum machine_mode, addr_space_t, bool);
1318
extern void get_full_rtx_cost (rtx, enum rtx_code, int,
1319
                               struct full_rtx_costs *);
1320
extern unsigned int subreg_lsb (const_rtx);
1321
extern unsigned int subreg_lsb_1 (enum machine_mode, enum machine_mode,
1322
                                  unsigned int);
1323
extern unsigned int subreg_regno_offset (unsigned int, enum machine_mode,
1324
                                         unsigned int, enum machine_mode);
1325
extern bool subreg_offset_representable_p (unsigned int, enum machine_mode,
1326
                                           unsigned int, enum machine_mode);
1327
extern unsigned int subreg_regno (const_rtx);
1328
extern int simplify_subreg_regno (unsigned int, enum machine_mode,
1329
                                  unsigned int, enum machine_mode);
1330
extern unsigned int subreg_nregs (const_rtx);
1331
extern unsigned int subreg_nregs_with_regno (unsigned int, const_rtx);
1332
extern unsigned HOST_WIDE_INT nonzero_bits (const_rtx, enum machine_mode);
1333
extern unsigned int num_sign_bit_copies (const_rtx, enum machine_mode);
1334
extern bool constant_pool_constant_p (rtx);
1335
extern bool truncated_to_mode (enum machine_mode, const_rtx);
1336
extern int low_bitmask_len (enum machine_mode, unsigned HOST_WIDE_INT);
1337
extern void split_double (rtx, rtx *, rtx *);
1338
extern rtx *strip_address_mutations (rtx *, enum rtx_code * = 0);
1339
extern void decompose_address (struct address_info *, rtx *,
1340
                               enum machine_mode, addr_space_t, enum rtx_code);
1341
extern void decompose_lea_address (struct address_info *, rtx *);
1342
extern void decompose_mem_address (struct address_info *, rtx);
1343
extern void update_address (struct address_info *);
1344
extern HOST_WIDE_INT get_index_scale (const struct address_info *);
1345
extern enum rtx_code get_index_code (const struct address_info *);
1346
 
1347
#ifndef GENERATOR_FILE
1348
/* Return the cost of SET X.  SPEED_P is true if optimizing for speed
1349
   rather than size.  */
1350
 
1351
static inline int
1352
set_rtx_cost (rtx x, bool speed_p)
1353
{
1354
  return rtx_cost (x, INSN, 4, speed_p);
1355
}
1356
 
1357
/* Like set_rtx_cost, but return both the speed and size costs in C.  */
1358
 
1359
static inline void
1360
get_full_set_rtx_cost (rtx x, struct full_rtx_costs *c)
1361
{
1362
  get_full_rtx_cost (x, INSN, 4, c);
1363
}
1364
 
1365
/* Return the cost of moving X into a register, relative to the cost
1366
   of a register move.  SPEED_P is true if optimizing for speed rather
1367
   than size.  */
1368
 
1369
static inline int
1370
set_src_cost (rtx x, bool speed_p)
1371
{
1372
  return rtx_cost (x, SET, 1, speed_p);
1373
}
1374
 
1375
/* Like set_src_cost, but return both the speed and size costs in C.  */
1376
 
1377
static inline void
1378
get_full_set_src_cost (rtx x, struct full_rtx_costs *c)
1379
{
1380
  get_full_rtx_cost (x, SET, 1, c);
1381
}
1382
#endif
1383
 
1384
/* 1 if RTX is a subreg containing a reg that is already known to be
1385
   sign- or zero-extended from the mode of the subreg to the mode of
1386
   the reg.  SUBREG_PROMOTED_UNSIGNED_P gives the signedness of the
1387
   extension.
1388
 
1389
   When used as a LHS, is means that this extension must be done
1390
   when assigning to SUBREG_REG.  */
1391
 
1392
#define SUBREG_PROMOTED_VAR_P(RTX)                                      \
1393
  (RTL_FLAG_CHECK1("SUBREG_PROMOTED", (RTX), SUBREG)->in_struct)
1394
 
1395
#define SUBREG_PROMOTED_UNSIGNED_SET(RTX, VAL)                          \
1396
do {                                                                    \
1397
  rtx const _rtx = RTL_FLAG_CHECK1("SUBREG_PROMOTED_UNSIGNED_SET", (RTX), SUBREG); \
1398
  if ((VAL) < 0)                                                 \
1399
    _rtx->volatil = 1;                                                  \
1400
  else {                                                                \
1401
    _rtx->volatil = 0;                                                   \
1402
    _rtx->unchanging = (VAL);                                           \
1403
  }                                                                     \
1404
} while (0)
1405
 
1406
/* Valid for subregs which are SUBREG_PROMOTED_VAR_P().  In that case
1407
   this gives the necessary extensions:
1408
 
1409
   1  - normal unsigned
1410
   -1 - pointer unsigned, which most often can be handled like unsigned
1411
        extension, except for generating instructions where we need to
1412
        emit special code (ptr_extend insns) on some architectures.  */
1413
 
1414
#define SUBREG_PROMOTED_UNSIGNED_P(RTX) \
1415
  ((RTL_FLAG_CHECK1("SUBREG_PROMOTED_UNSIGNED_P", (RTX), SUBREG)->volatil) \
1416
   ? -1 : (int) (RTX)->unchanging)
1417
 
1418
/* Access various components of an ASM_OPERANDS rtx.  */
1419
 
1420
#define ASM_OPERANDS_TEMPLATE(RTX) XCSTR (RTX, 0, ASM_OPERANDS)
1421
#define ASM_OPERANDS_OUTPUT_CONSTRAINT(RTX) XCSTR (RTX, 1, ASM_OPERANDS)
1422
#define ASM_OPERANDS_OUTPUT_IDX(RTX) XCINT (RTX, 2, ASM_OPERANDS)
1423
#define ASM_OPERANDS_INPUT_VEC(RTX) XCVEC (RTX, 3, ASM_OPERANDS)
1424
#define ASM_OPERANDS_INPUT_CONSTRAINT_VEC(RTX) XCVEC (RTX, 4, ASM_OPERANDS)
1425
#define ASM_OPERANDS_INPUT(RTX, N) XCVECEXP (RTX, 3, N, ASM_OPERANDS)
1426
#define ASM_OPERANDS_INPUT_LENGTH(RTX) XCVECLEN (RTX, 3, ASM_OPERANDS)
1427
#define ASM_OPERANDS_INPUT_CONSTRAINT_EXP(RTX, N) \
1428
  XCVECEXP (RTX, 4, N, ASM_OPERANDS)
1429
#define ASM_OPERANDS_INPUT_CONSTRAINT(RTX, N) \
1430
  XSTR (XCVECEXP (RTX, 4, N, ASM_OPERANDS), 0)
1431
#define ASM_OPERANDS_INPUT_MODE(RTX, N)  \
1432
  GET_MODE (XCVECEXP (RTX, 4, N, ASM_OPERANDS))
1433
#define ASM_OPERANDS_LABEL_VEC(RTX) XCVEC (RTX, 5, ASM_OPERANDS)
1434
#define ASM_OPERANDS_LABEL_LENGTH(RTX) XCVECLEN (RTX, 5, ASM_OPERANDS)
1435
#define ASM_OPERANDS_LABEL(RTX, N) XCVECEXP (RTX, 5, N, ASM_OPERANDS)
1436
#define ASM_OPERANDS_SOURCE_LOCATION(RTX) XCUINT (RTX, 6, ASM_OPERANDS)
1437
#define ASM_INPUT_SOURCE_LOCATION(RTX) XCUINT (RTX, 1, ASM_INPUT)
1438
 
1439
/* 1 if RTX is a mem that is statically allocated in read-only memory.  */
1440
#define MEM_READONLY_P(RTX) \
1441
  (RTL_FLAG_CHECK1("MEM_READONLY_P", (RTX), MEM)->unchanging)
1442
 
1443
/* 1 if RTX is a mem and we should keep the alias set for this mem
1444
   unchanged when we access a component.  Set to 1, or example, when we
1445
   are already in a non-addressable component of an aggregate.  */
1446
#define MEM_KEEP_ALIAS_SET_P(RTX)                                       \
1447
  (RTL_FLAG_CHECK1("MEM_KEEP_ALIAS_SET_P", (RTX), MEM)->jump)
1448
 
1449
/* 1 if RTX is a mem or asm_operand for a volatile reference.  */
1450
#define MEM_VOLATILE_P(RTX)                                             \
1451
  (RTL_FLAG_CHECK3("MEM_VOLATILE_P", (RTX), MEM, ASM_OPERANDS,          \
1452
                   ASM_INPUT)->volatil)
1453
 
1454
/* 1 if RTX is a mem that cannot trap.  */
1455
#define MEM_NOTRAP_P(RTX) \
1456
  (RTL_FLAG_CHECK1("MEM_NOTRAP_P", (RTX), MEM)->call)
1457
 
1458
/* The memory attribute block.  We provide access macros for each value
1459
   in the block and provide defaults if none specified.  */
1460
#define MEM_ATTRS(RTX) X0MEMATTR (RTX, 1)
1461
 
1462
/* The register attribute block.  We provide access macros for each value
1463
   in the block and provide defaults if none specified.  */
1464
#define REG_ATTRS(RTX) X0REGATTR (RTX, 2)
1465
 
1466
#ifndef GENERATOR_FILE
1467
/* For a MEM rtx, the alias set.  If 0, this MEM is not in any alias
1468
   set, and may alias anything.  Otherwise, the MEM can only alias
1469
   MEMs in a conflicting alias set.  This value is set in a
1470
   language-dependent manner in the front-end, and should not be
1471
   altered in the back-end.  These set numbers are tested with
1472
   alias_sets_conflict_p.  */
1473
#define MEM_ALIAS_SET(RTX) (get_mem_attrs (RTX)->alias)
1474
 
1475
/* For a MEM rtx, the decl it is known to refer to, if it is known to
1476
   refer to part of a DECL.  It may also be a COMPONENT_REF.  */
1477
#define MEM_EXPR(RTX) (get_mem_attrs (RTX)->expr)
1478
 
1479
/* For a MEM rtx, true if its MEM_OFFSET is known.  */
1480
#define MEM_OFFSET_KNOWN_P(RTX) (get_mem_attrs (RTX)->offset_known_p)
1481
 
1482
/* For a MEM rtx, the offset from the start of MEM_EXPR.  */
1483
#define MEM_OFFSET(RTX) (get_mem_attrs (RTX)->offset)
1484
 
1485
/* For a MEM rtx, the address space.  */
1486
#define MEM_ADDR_SPACE(RTX) (get_mem_attrs (RTX)->addrspace)
1487
 
1488
/* For a MEM rtx, true if its MEM_SIZE is known.  */
1489
#define MEM_SIZE_KNOWN_P(RTX) (get_mem_attrs (RTX)->size_known_p)
1490
 
1491
/* For a MEM rtx, the size in bytes of the MEM.  */
1492
#define MEM_SIZE(RTX) (get_mem_attrs (RTX)->size)
1493
 
1494
/* For a MEM rtx, the alignment in bits.  We can use the alignment of the
1495
   mode as a default when STRICT_ALIGNMENT, but not if not.  */
1496
#define MEM_ALIGN(RTX) (get_mem_attrs (RTX)->align)
1497
#else
1498
#define MEM_ADDR_SPACE(RTX) ADDR_SPACE_GENERIC
1499
#endif
1500
 
1501
/* For a REG rtx, the decl it is known to refer to, if it is known to
1502
   refer to part of a DECL.  */
1503
#define REG_EXPR(RTX) (REG_ATTRS (RTX) == 0 ? 0 : REG_ATTRS (RTX)->decl)
1504
 
1505
/* For a REG rtx, the offset from the start of REG_EXPR, if known, as an
1506
   HOST_WIDE_INT.  */
1507
#define REG_OFFSET(RTX) (REG_ATTRS (RTX) == 0 ? 0 : REG_ATTRS (RTX)->offset)
1508
 
1509
/* Copy the attributes that apply to memory locations from RHS to LHS.  */
1510
#define MEM_COPY_ATTRIBUTES(LHS, RHS)                           \
1511
  (MEM_VOLATILE_P (LHS) = MEM_VOLATILE_P (RHS),                 \
1512
   MEM_NOTRAP_P (LHS) = MEM_NOTRAP_P (RHS),                     \
1513
   MEM_READONLY_P (LHS) = MEM_READONLY_P (RHS),                 \
1514
   MEM_KEEP_ALIAS_SET_P (LHS) = MEM_KEEP_ALIAS_SET_P (RHS),     \
1515
   MEM_POINTER (LHS) = MEM_POINTER (RHS),                       \
1516
   MEM_ATTRS (LHS) = MEM_ATTRS (RHS))
1517
 
1518
/* 1 if RTX is a label_ref for a nonlocal label.  */
1519
/* Likewise in an expr_list for a REG_LABEL_OPERAND or
1520
   REG_LABEL_TARGET note.  */
1521
#define LABEL_REF_NONLOCAL_P(RTX)                                       \
1522
  (RTL_FLAG_CHECK1("LABEL_REF_NONLOCAL_P", (RTX), LABEL_REF)->volatil)
1523
 
1524
/* 1 if RTX is a code_label that should always be considered to be needed.  */
1525
#define LABEL_PRESERVE_P(RTX)                                           \
1526
  (RTL_FLAG_CHECK2("LABEL_PRESERVE_P", (RTX), CODE_LABEL, NOTE)->in_struct)
1527
 
1528
/* During sched, 1 if RTX is an insn that must be scheduled together
1529
   with the preceding insn.  */
1530
#define SCHED_GROUP_P(RTX)                                              \
1531
  (RTL_FLAG_CHECK4("SCHED_GROUP_P", (RTX), DEBUG_INSN, INSN,            \
1532
                   JUMP_INSN, CALL_INSN                                 \
1533
                   )->in_struct)
1534
 
1535
/* For a SET rtx, SET_DEST is the place that is set
1536
   and SET_SRC is the value it is set to.  */
1537
#define SET_DEST(RTX) XC2EXP(RTX, 0, SET, CLOBBER)
1538
#define SET_SRC(RTX) XCEXP(RTX, 1, SET)
1539
#define SET_IS_RETURN_P(RTX)                                            \
1540
  (RTL_FLAG_CHECK1("SET_IS_RETURN_P", (RTX), SET)->jump)
1541
 
1542
/* For a TRAP_IF rtx, TRAP_CONDITION is an expression.  */
1543
#define TRAP_CONDITION(RTX) XCEXP (RTX, 0, TRAP_IF)
1544
#define TRAP_CODE(RTX) XCEXP (RTX, 1, TRAP_IF)
1545
 
1546
/* For a COND_EXEC rtx, COND_EXEC_TEST is the condition to base
1547
   conditionally executing the code on, COND_EXEC_CODE is the code
1548
   to execute if the condition is true.  */
1549
#define COND_EXEC_TEST(RTX) XCEXP (RTX, 0, COND_EXEC)
1550
#define COND_EXEC_CODE(RTX) XCEXP (RTX, 1, COND_EXEC)
1551
 
1552
/* 1 if RTX is a symbol_ref that addresses this function's rtl
1553
   constants pool.  */
1554
#define CONSTANT_POOL_ADDRESS_P(RTX)                                    \
1555
  (RTL_FLAG_CHECK1("CONSTANT_POOL_ADDRESS_P", (RTX), SYMBOL_REF)->unchanging)
1556
 
1557
/* 1 if RTX is a symbol_ref that addresses a value in the file's
1558
   tree constant pool.  This information is private to varasm.c.  */
1559
#define TREE_CONSTANT_POOL_ADDRESS_P(RTX)                               \
1560
  (RTL_FLAG_CHECK1("TREE_CONSTANT_POOL_ADDRESS_P",                      \
1561
                   (RTX), SYMBOL_REF)->frame_related)
1562
 
1563
/* Used if RTX is a symbol_ref, for machine-specific purposes.  */
1564
#define SYMBOL_REF_FLAG(RTX)                                            \
1565
  (RTL_FLAG_CHECK1("SYMBOL_REF_FLAG", (RTX), SYMBOL_REF)->volatil)
1566
 
1567
/* 1 if RTX is a symbol_ref that has been the library function in
1568
   emit_library_call.  */
1569
#define SYMBOL_REF_USED(RTX)                                            \
1570
  (RTL_FLAG_CHECK1("SYMBOL_REF_USED", (RTX), SYMBOL_REF)->used)
1571
 
1572
/* 1 if RTX is a symbol_ref for a weak symbol.  */
1573
#define SYMBOL_REF_WEAK(RTX)                                            \
1574
  (RTL_FLAG_CHECK1("SYMBOL_REF_WEAK", (RTX), SYMBOL_REF)->return_val)
1575
 
1576
/* A pointer attached to the SYMBOL_REF; either SYMBOL_REF_DECL or
1577
   SYMBOL_REF_CONSTANT.  */
1578
#define SYMBOL_REF_DATA(RTX) X0ANY ((RTX), 2)
1579
 
1580
/* Set RTX's SYMBOL_REF_DECL to DECL.  RTX must not be a constant
1581
   pool symbol.  */
1582
#define SET_SYMBOL_REF_DECL(RTX, DECL) \
1583
  (gcc_assert (!CONSTANT_POOL_ADDRESS_P (RTX)), X0TREE ((RTX), 2) = (DECL))
1584
 
1585
/* The tree (decl or constant) associated with the symbol, or null.  */
1586
#define SYMBOL_REF_DECL(RTX) \
1587
  (CONSTANT_POOL_ADDRESS_P (RTX) ? NULL : X0TREE ((RTX), 2))
1588
 
1589
/* Set RTX's SYMBOL_REF_CONSTANT to C.  RTX must be a constant pool symbol.  */
1590
#define SET_SYMBOL_REF_CONSTANT(RTX, C) \
1591
  (gcc_assert (CONSTANT_POOL_ADDRESS_P (RTX)), X0CONSTANT ((RTX), 2) = (C))
1592
 
1593
/* The rtx constant pool entry for a symbol, or null.  */
1594
#define SYMBOL_REF_CONSTANT(RTX) \
1595
  (CONSTANT_POOL_ADDRESS_P (RTX) ? X0CONSTANT ((RTX), 2) : NULL)
1596
 
1597
/* A set of flags on a symbol_ref that are, in some respects, redundant with
1598
   information derivable from the tree decl associated with this symbol.
1599
   Except that we build a *lot* of SYMBOL_REFs that aren't associated with a
1600
   decl.  In some cases this is a bug.  But beyond that, it's nice to cache
1601
   this information to avoid recomputing it.  Finally, this allows space for
1602
   the target to store more than one bit of information, as with
1603
   SYMBOL_REF_FLAG.  */
1604
#define SYMBOL_REF_FLAGS(RTX)   X0INT ((RTX), 1)
1605
 
1606
/* These flags are common enough to be defined for all targets.  They
1607
   are computed by the default version of targetm.encode_section_info.  */
1608
 
1609
/* Set if this symbol is a function.  */
1610
#define SYMBOL_FLAG_FUNCTION    (1 << 0)
1611
#define SYMBOL_REF_FUNCTION_P(RTX) \
1612
  ((SYMBOL_REF_FLAGS (RTX) & SYMBOL_FLAG_FUNCTION) != 0)
1613
/* Set if targetm.binds_local_p is true.  */
1614
#define SYMBOL_FLAG_LOCAL       (1 << 1)
1615
#define SYMBOL_REF_LOCAL_P(RTX) \
1616
  ((SYMBOL_REF_FLAGS (RTX) & SYMBOL_FLAG_LOCAL) != 0)
1617
/* Set if targetm.in_small_data_p is true.  */
1618
#define SYMBOL_FLAG_SMALL       (1 << 2)
1619
#define SYMBOL_REF_SMALL_P(RTX) \
1620
  ((SYMBOL_REF_FLAGS (RTX) & SYMBOL_FLAG_SMALL) != 0)
1621
/* The three-bit field at [5:3] is true for TLS variables; use
1622
   SYMBOL_REF_TLS_MODEL to extract the field as an enum tls_model.  */
1623
#define SYMBOL_FLAG_TLS_SHIFT   3
1624
#define SYMBOL_REF_TLS_MODEL(RTX) \
1625
  ((enum tls_model) ((SYMBOL_REF_FLAGS (RTX) >> SYMBOL_FLAG_TLS_SHIFT) & 7))
1626
/* Set if this symbol is not defined in this translation unit.  */
1627
#define SYMBOL_FLAG_EXTERNAL    (1 << 6)
1628
#define SYMBOL_REF_EXTERNAL_P(RTX) \
1629
  ((SYMBOL_REF_FLAGS (RTX) & SYMBOL_FLAG_EXTERNAL) != 0)
1630
/* Set if this symbol has a block_symbol structure associated with it.  */
1631
#define SYMBOL_FLAG_HAS_BLOCK_INFO (1 << 7)
1632
#define SYMBOL_REF_HAS_BLOCK_INFO_P(RTX) \
1633
  ((SYMBOL_REF_FLAGS (RTX) & SYMBOL_FLAG_HAS_BLOCK_INFO) != 0)
1634
/* Set if this symbol is a section anchor.  SYMBOL_REF_ANCHOR_P implies
1635
   SYMBOL_REF_HAS_BLOCK_INFO_P.  */
1636
#define SYMBOL_FLAG_ANCHOR      (1 << 8)
1637
#define SYMBOL_REF_ANCHOR_P(RTX) \
1638
  ((SYMBOL_REF_FLAGS (RTX) & SYMBOL_FLAG_ANCHOR) != 0)
1639
 
1640
/* Subsequent bits are available for the target to use.  */
1641
#define SYMBOL_FLAG_MACH_DEP_SHIFT      9
1642
#define SYMBOL_FLAG_MACH_DEP            (1 << SYMBOL_FLAG_MACH_DEP_SHIFT)
1643
 
1644
/* If SYMBOL_REF_HAS_BLOCK_INFO_P (RTX), this is the object_block
1645
   structure to which the symbol belongs, or NULL if it has not been
1646
   assigned a block.  */
1647
#define SYMBOL_REF_BLOCK(RTX) (BLOCK_SYMBOL_CHECK (RTX)->block)
1648
 
1649
/* If SYMBOL_REF_HAS_BLOCK_INFO_P (RTX), this is the offset of RTX from
1650
   the first object in SYMBOL_REF_BLOCK (RTX).  The value is negative if
1651
   RTX has not yet been assigned to a block, or it has not been given an
1652
   offset within that block.  */
1653
#define SYMBOL_REF_BLOCK_OFFSET(RTX) (BLOCK_SYMBOL_CHECK (RTX)->offset)
1654
 
1655
/* True if RTX is flagged to be a scheduling barrier.  */
1656
#define PREFETCH_SCHEDULE_BARRIER_P(RTX)                                        \
1657
  (RTL_FLAG_CHECK1("PREFETCH_SCHEDULE_BARRIER_P", (RTX), PREFETCH)->volatil)
1658
 
1659
/* Indicate whether the machine has any sort of auto increment addressing.
1660
   If not, we can avoid checking for REG_INC notes.  */
1661
 
1662
#if (defined (HAVE_PRE_INCREMENT) || defined (HAVE_PRE_DECREMENT) \
1663
     || defined (HAVE_POST_INCREMENT) || defined (HAVE_POST_DECREMENT) \
1664
     || defined (HAVE_PRE_MODIFY_DISP) || defined (HAVE_PRE_MODIFY_DISP) \
1665
     || defined (HAVE_PRE_MODIFY_REG) || defined (HAVE_POST_MODIFY_REG))
1666
#define AUTO_INC_DEC
1667
#endif
1668
 
1669
/* Define a macro to look for REG_INC notes,
1670
   but save time on machines where they never exist.  */
1671
 
1672
#ifdef AUTO_INC_DEC
1673
#define FIND_REG_INC_NOTE(INSN, REG)                    \
1674
  ((REG) != NULL_RTX && REG_P ((REG))                   \
1675
   ? find_regno_note ((INSN), REG_INC, REGNO (REG))     \
1676
   : find_reg_note ((INSN), REG_INC, (REG)))
1677
#else
1678
#define FIND_REG_INC_NOTE(INSN, REG) 0
1679
#endif
1680
 
1681
#ifndef HAVE_PRE_INCREMENT
1682
#define HAVE_PRE_INCREMENT 0
1683
#endif
1684
 
1685
#ifndef HAVE_PRE_DECREMENT
1686
#define HAVE_PRE_DECREMENT 0
1687
#endif
1688
 
1689
#ifndef HAVE_POST_INCREMENT
1690
#define HAVE_POST_INCREMENT 0
1691
#endif
1692
 
1693
#ifndef HAVE_POST_DECREMENT
1694
#define HAVE_POST_DECREMENT 0
1695
#endif
1696
 
1697
#ifndef HAVE_POST_MODIFY_DISP
1698
#define HAVE_POST_MODIFY_DISP 0
1699
#endif
1700
 
1701
#ifndef HAVE_POST_MODIFY_REG
1702
#define HAVE_POST_MODIFY_REG 0
1703
#endif
1704
 
1705
#ifndef HAVE_PRE_MODIFY_DISP
1706
#define HAVE_PRE_MODIFY_DISP 0
1707
#endif
1708
 
1709
#ifndef HAVE_PRE_MODIFY_REG
1710
#define HAVE_PRE_MODIFY_REG 0
1711
#endif
1712
 
1713
 
1714
/* Some architectures do not have complete pre/post increment/decrement
1715
   instruction sets, or only move some modes efficiently.  These macros
1716
   allow us to tune autoincrement generation.  */
1717
 
1718
#ifndef USE_LOAD_POST_INCREMENT
1719
#define USE_LOAD_POST_INCREMENT(MODE)   HAVE_POST_INCREMENT
1720
#endif
1721
 
1722
#ifndef USE_LOAD_POST_DECREMENT
1723
#define USE_LOAD_POST_DECREMENT(MODE)   HAVE_POST_DECREMENT
1724
#endif
1725
 
1726
#ifndef USE_LOAD_PRE_INCREMENT
1727
#define USE_LOAD_PRE_INCREMENT(MODE)    HAVE_PRE_INCREMENT
1728
#endif
1729
 
1730
#ifndef USE_LOAD_PRE_DECREMENT
1731
#define USE_LOAD_PRE_DECREMENT(MODE)    HAVE_PRE_DECREMENT
1732
#endif
1733
 
1734
#ifndef USE_STORE_POST_INCREMENT
1735
#define USE_STORE_POST_INCREMENT(MODE)  HAVE_POST_INCREMENT
1736
#endif
1737
 
1738
#ifndef USE_STORE_POST_DECREMENT
1739
#define USE_STORE_POST_DECREMENT(MODE)  HAVE_POST_DECREMENT
1740
#endif
1741
 
1742
#ifndef USE_STORE_PRE_INCREMENT
1743
#define USE_STORE_PRE_INCREMENT(MODE)   HAVE_PRE_INCREMENT
1744
#endif
1745
 
1746
#ifndef USE_STORE_PRE_DECREMENT
1747
#define USE_STORE_PRE_DECREMENT(MODE)   HAVE_PRE_DECREMENT
1748
#endif
1749
 
1750
/* Nonzero when we are generating CONCATs.  */
1751
extern int generating_concat_p;
1752
 
1753
/* Nonzero when we are expanding trees to RTL.  */
1754
extern int currently_expanding_to_rtl;
1755
 
1756
/* Generally useful functions.  */
1757
 
1758
/* In explow.c */
1759
extern HOST_WIDE_INT trunc_int_for_mode (HOST_WIDE_INT, enum machine_mode);
1760
extern rtx plus_constant (enum machine_mode, rtx, HOST_WIDE_INT);
1761
 
1762
/* In rtl.c */
1763
extern rtx rtx_alloc_stat (RTX_CODE MEM_STAT_DECL);
1764
#define rtx_alloc(c) rtx_alloc_stat (c MEM_STAT_INFO)
1765
 
1766
extern rtvec rtvec_alloc (int);
1767
extern rtvec shallow_copy_rtvec (rtvec);
1768
extern bool shared_const_p (const_rtx);
1769
extern rtx copy_rtx (rtx);
1770
extern void dump_rtx_statistics (void);
1771
 
1772
/* In emit-rtl.c */
1773
extern rtx copy_rtx_if_shared (rtx);
1774
 
1775
/* In rtl.c */
1776
extern unsigned int rtx_size (const_rtx);
1777
extern rtx shallow_copy_rtx_stat (const_rtx MEM_STAT_DECL);
1778
#define shallow_copy_rtx(a) shallow_copy_rtx_stat (a MEM_STAT_INFO)
1779
extern int rtx_equal_p (const_rtx, const_rtx);
1780
extern hashval_t iterative_hash_rtx (const_rtx, hashval_t);
1781
 
1782
/* In emit-rtl.c */
1783
extern rtvec gen_rtvec_v (int, rtx *);
1784
extern rtx gen_reg_rtx (enum machine_mode);
1785
extern rtx gen_rtx_REG_offset (rtx, enum machine_mode, unsigned int, int);
1786
extern rtx gen_reg_rtx_offset (rtx, enum machine_mode, int);
1787
extern rtx gen_reg_rtx_and_attrs (rtx);
1788
extern rtx gen_label_rtx (void);
1789
extern rtx gen_lowpart_common (enum machine_mode, rtx);
1790
 
1791
/* In cse.c */
1792
extern rtx gen_lowpart_if_possible (enum machine_mode, rtx);
1793
 
1794
/* In emit-rtl.c */
1795
extern rtx gen_highpart (enum machine_mode, rtx);
1796
extern rtx gen_highpart_mode (enum machine_mode, enum machine_mode, rtx);
1797
extern rtx operand_subword (rtx, unsigned int, int, enum machine_mode);
1798
 
1799
/* In emit-rtl.c */
1800
extern rtx operand_subword_force (rtx, unsigned int, enum machine_mode);
1801
extern bool paradoxical_subreg_p (const_rtx);
1802
extern int subreg_lowpart_p (const_rtx);
1803
extern unsigned int subreg_lowpart_offset (enum machine_mode,
1804
                                           enum machine_mode);
1805
extern unsigned int subreg_highpart_offset (enum machine_mode,
1806
                                            enum machine_mode);
1807
extern int byte_lowpart_offset (enum machine_mode, enum machine_mode);
1808
extern rtx make_safe_from (rtx, rtx);
1809
extern rtx convert_memory_address_addr_space (enum machine_mode, rtx,
1810
                                              addr_space_t);
1811
#define convert_memory_address(to_mode,x) \
1812
        convert_memory_address_addr_space ((to_mode), (x), ADDR_SPACE_GENERIC)
1813
extern const char *get_insn_name (int);
1814
extern rtx get_last_insn_anywhere (void);
1815
extern rtx get_first_nonnote_insn (void);
1816
extern rtx get_last_nonnote_insn (void);
1817
extern void start_sequence (void);
1818
extern void push_to_sequence (rtx);
1819
extern void push_to_sequence2 (rtx, rtx);
1820
extern void end_sequence (void);
1821
extern double_int rtx_to_double_int (const_rtx);
1822
extern rtx immed_double_int_const (double_int, enum machine_mode);
1823
extern rtx immed_double_const (HOST_WIDE_INT, HOST_WIDE_INT,
1824
                               enum machine_mode);
1825
 
1826
/* In loop-iv.c  */
1827
 
1828
extern rtx lowpart_subreg (enum machine_mode, rtx, enum machine_mode);
1829
 
1830
/* In varasm.c  */
1831
extern rtx force_const_mem (enum machine_mode, rtx);
1832
 
1833
/* In varasm.c  */
1834
 
1835
struct function;
1836
extern rtx get_pool_constant (rtx);
1837
extern rtx get_pool_constant_mark (rtx, bool *);
1838
extern enum machine_mode get_pool_mode (const_rtx);
1839
extern rtx simplify_subtraction (rtx);
1840
extern void decide_function_section (tree);
1841
 
1842
/* In function.c  */
1843
extern rtx assign_stack_local (enum machine_mode, HOST_WIDE_INT, int);
1844
#define ASLK_REDUCE_ALIGN 1
1845
#define ASLK_RECORD_PAD 2
1846
extern rtx assign_stack_local_1 (enum machine_mode, HOST_WIDE_INT, int, int);
1847
extern rtx assign_stack_temp (enum machine_mode, HOST_WIDE_INT);
1848
extern rtx assign_stack_temp_for_type (enum machine_mode, HOST_WIDE_INT, tree);
1849
extern rtx assign_temp (tree, int, int);
1850
 
1851
/* In emit-rtl.c */
1852
extern rtx emit_insn_before (rtx, rtx);
1853
extern rtx emit_insn_before_noloc (rtx, rtx, basic_block);
1854
extern rtx emit_insn_before_setloc (rtx, rtx, int);
1855
extern rtx emit_jump_insn_before (rtx, rtx);
1856
extern rtx emit_jump_insn_before_noloc (rtx, rtx);
1857
extern rtx emit_jump_insn_before_setloc (rtx, rtx, int);
1858
extern rtx emit_call_insn_before (rtx, rtx);
1859
extern rtx emit_call_insn_before_noloc (rtx, rtx);
1860
extern rtx emit_call_insn_before_setloc (rtx, rtx, int);
1861
extern rtx emit_debug_insn_before (rtx, rtx);
1862
extern rtx emit_debug_insn_before_noloc (rtx, rtx);
1863
extern rtx emit_debug_insn_before_setloc (rtx, rtx, int);
1864
extern rtx emit_barrier_before (rtx);
1865
extern rtx emit_label_before (rtx, rtx);
1866
extern rtx emit_note_before (enum insn_note, rtx);
1867
extern rtx emit_insn_after (rtx, rtx);
1868
extern rtx emit_insn_after_noloc (rtx, rtx, basic_block);
1869
extern rtx emit_insn_after_setloc (rtx, rtx, int);
1870
extern rtx emit_jump_insn_after (rtx, rtx);
1871
extern rtx emit_jump_insn_after_noloc (rtx, rtx);
1872
extern rtx emit_jump_insn_after_setloc (rtx, rtx, int);
1873
extern rtx emit_call_insn_after (rtx, rtx);
1874
extern rtx emit_call_insn_after_noloc (rtx, rtx);
1875
extern rtx emit_call_insn_after_setloc (rtx, rtx, int);
1876
extern rtx emit_debug_insn_after (rtx, rtx);
1877
extern rtx emit_debug_insn_after_noloc (rtx, rtx);
1878
extern rtx emit_debug_insn_after_setloc (rtx, rtx, int);
1879
extern rtx emit_barrier_after (rtx);
1880
extern rtx emit_label_after (rtx, rtx);
1881
extern rtx emit_note_after (enum insn_note, rtx);
1882
extern rtx emit_insn (rtx);
1883
extern rtx emit_debug_insn (rtx);
1884
extern rtx emit_jump_insn (rtx);
1885
extern rtx emit_call_insn (rtx);
1886
extern rtx emit_label (rtx);
1887
extern rtx emit_barrier (void);
1888
extern rtx emit_note (enum insn_note);
1889
extern rtx emit_note_copy (rtx);
1890
extern rtx gen_clobber (rtx);
1891
extern rtx emit_clobber (rtx);
1892
extern rtx gen_use (rtx);
1893
extern rtx emit_use (rtx);
1894
extern rtx make_insn_raw (rtx);
1895
extern void add_function_usage_to (rtx, rtx);
1896
extern rtx last_call_insn (void);
1897
extern rtx previous_insn (rtx);
1898
extern rtx next_insn (rtx);
1899
extern rtx prev_nonnote_insn (rtx);
1900
extern rtx prev_nonnote_insn_bb (rtx);
1901
extern rtx next_nonnote_insn (rtx);
1902
extern rtx next_nonnote_insn_bb (rtx);
1903
extern rtx prev_nondebug_insn (rtx);
1904
extern rtx next_nondebug_insn (rtx);
1905
extern rtx prev_nonnote_nondebug_insn (rtx);
1906
extern rtx next_nonnote_nondebug_insn (rtx);
1907
extern rtx prev_real_insn (rtx);
1908
extern rtx next_real_insn (rtx);
1909
extern rtx prev_active_insn (rtx);
1910
extern rtx next_active_insn (rtx);
1911
extern int active_insn_p (const_rtx);
1912
extern rtx next_label (rtx);
1913
extern rtx skip_consecutive_labels (rtx);
1914
extern rtx next_cc0_user (rtx);
1915
extern rtx prev_cc0_setter (rtx);
1916
 
1917
/* In emit-rtl.c  */
1918
extern int insn_line (const_rtx);
1919
extern const char * insn_file (const_rtx);
1920
extern tree insn_scope (const_rtx);
1921
extern location_t prologue_location, epilogue_location;
1922
 
1923
/* In jump.c */
1924
extern enum rtx_code reverse_condition (enum rtx_code);
1925
extern enum rtx_code reverse_condition_maybe_unordered (enum rtx_code);
1926
extern enum rtx_code swap_condition (enum rtx_code);
1927
extern enum rtx_code unsigned_condition (enum rtx_code);
1928
extern enum rtx_code signed_condition (enum rtx_code);
1929
extern void mark_jump_label (rtx, rtx, int);
1930
extern unsigned int cleanup_barriers (void);
1931
 
1932
/* In jump.c */
1933
extern rtx delete_related_insns (rtx);
1934
 
1935
/* In recog.c  */
1936
extern rtx *find_constant_term_loc (rtx *);
1937
 
1938
/* In emit-rtl.c  */
1939
extern rtx try_split (rtx, rtx, int);
1940
extern int split_branch_probability;
1941
 
1942
/* In unknown file  */
1943
extern rtx split_insns (rtx, rtx);
1944
 
1945
/* In simplify-rtx.c  */
1946
extern rtx simplify_const_unary_operation (enum rtx_code, enum machine_mode,
1947
                                           rtx, enum machine_mode);
1948
extern rtx simplify_unary_operation (enum rtx_code, enum machine_mode, rtx,
1949
                                     enum machine_mode);
1950
extern rtx simplify_const_binary_operation (enum rtx_code, enum machine_mode,
1951
                                            rtx, rtx);
1952
extern rtx simplify_binary_operation (enum rtx_code, enum machine_mode, rtx,
1953
                                      rtx);
1954
extern rtx simplify_ternary_operation (enum rtx_code, enum machine_mode,
1955
                                       enum machine_mode, rtx, rtx, rtx);
1956
extern rtx simplify_const_relational_operation (enum rtx_code,
1957
                                                enum machine_mode, rtx, rtx);
1958
extern rtx simplify_relational_operation (enum rtx_code, enum machine_mode,
1959
                                          enum machine_mode, rtx, rtx);
1960
extern rtx simplify_gen_binary (enum rtx_code, enum machine_mode, rtx, rtx);
1961
extern rtx simplify_gen_unary (enum rtx_code, enum machine_mode, rtx,
1962
                               enum machine_mode);
1963
extern rtx simplify_gen_ternary (enum rtx_code, enum machine_mode,
1964
                                 enum machine_mode, rtx, rtx, rtx);
1965
extern rtx simplify_gen_relational (enum rtx_code, enum machine_mode,
1966
                                    enum machine_mode, rtx, rtx);
1967
extern rtx simplify_subreg (enum machine_mode, rtx, enum machine_mode,
1968
                            unsigned int);
1969
extern rtx simplify_gen_subreg (enum machine_mode, rtx, enum machine_mode,
1970
                                unsigned int);
1971
extern rtx simplify_replace_fn_rtx (rtx, const_rtx,
1972
                                    rtx (*fn) (rtx, const_rtx, void *), void *);
1973
extern rtx simplify_replace_rtx (rtx, const_rtx, rtx);
1974
extern rtx simplify_rtx (const_rtx);
1975
extern rtx avoid_constant_pool_reference (rtx);
1976
extern rtx delegitimize_mem_from_attrs (rtx);
1977
extern bool mode_signbit_p (enum machine_mode, const_rtx);
1978
extern bool val_signbit_p (enum machine_mode, unsigned HOST_WIDE_INT);
1979
extern bool val_signbit_known_set_p (enum machine_mode,
1980
                                     unsigned HOST_WIDE_INT);
1981
extern bool val_signbit_known_clear_p (enum machine_mode,
1982
                                       unsigned HOST_WIDE_INT);
1983
 
1984
/* In reginfo.c  */
1985
extern enum machine_mode choose_hard_reg_mode (unsigned int, unsigned int,
1986
                                               bool);
1987
 
1988
/* In emit-rtl.c  */
1989
extern rtx set_unique_reg_note (rtx, enum reg_note, rtx);
1990
extern rtx set_dst_reg_note (rtx, enum reg_note, rtx, rtx);
1991
extern void set_insn_deleted (rtx);
1992
 
1993
/* Functions in rtlanal.c */
1994
 
1995
/* Single set is implemented as macro for performance reasons.  */
1996
#define single_set(I) (INSN_P (I) \
1997
                       ? (GET_CODE (PATTERN (I)) == SET \
1998
                          ? PATTERN (I) : single_set_1 (I)) \
1999
                       : NULL_RTX)
2000
#define single_set_1(I) single_set_2 (I, PATTERN (I))
2001
 
2002
/* Structure used for passing data to REPLACE_LABEL.  */
2003
typedef struct replace_label_data
2004
{
2005
  rtx r1;
2006
  rtx r2;
2007
  bool update_label_nuses;
2008
} replace_label_data;
2009
 
2010
extern enum machine_mode get_address_mode (rtx mem);
2011
extern int rtx_addr_can_trap_p (const_rtx);
2012
extern bool nonzero_address_p (const_rtx);
2013
extern int rtx_unstable_p (const_rtx);
2014
extern bool rtx_varies_p (const_rtx, bool);
2015
extern bool rtx_addr_varies_p (const_rtx, bool);
2016
extern rtx get_call_rtx_from (rtx);
2017
extern HOST_WIDE_INT get_integer_term (const_rtx);
2018
extern rtx get_related_value (const_rtx);
2019
extern bool offset_within_block_p (const_rtx, HOST_WIDE_INT);
2020
extern void split_const (rtx, rtx *, rtx *);
2021
extern bool unsigned_reg_p (rtx);
2022
extern int reg_mentioned_p (const_rtx, const_rtx);
2023
extern int count_occurrences (const_rtx, const_rtx, int);
2024
extern int reg_referenced_p (const_rtx, const_rtx);
2025
extern int reg_used_between_p (const_rtx, const_rtx, const_rtx);
2026
extern int reg_set_between_p (const_rtx, const_rtx, const_rtx);
2027
extern int commutative_operand_precedence (rtx);
2028
extern bool swap_commutative_operands_p (rtx, rtx);
2029
extern int modified_between_p (const_rtx, const_rtx, const_rtx);
2030
extern int no_labels_between_p (const_rtx, const_rtx);
2031
extern int modified_in_p (const_rtx, const_rtx);
2032
extern int reg_set_p (const_rtx, const_rtx);
2033
extern rtx single_set_2 (const_rtx, const_rtx);
2034
extern int multiple_sets (const_rtx);
2035
extern int set_noop_p (const_rtx);
2036
extern int noop_move_p (const_rtx);
2037
extern rtx find_last_value (rtx, rtx *, rtx, int);
2038
extern int refers_to_regno_p (unsigned int, unsigned int, const_rtx, rtx *);
2039
extern int reg_overlap_mentioned_p (const_rtx, const_rtx);
2040
extern const_rtx set_of (const_rtx, const_rtx);
2041
extern void record_hard_reg_sets (rtx, const_rtx, void *);
2042
extern void record_hard_reg_uses (rtx *, void *);
2043
#ifdef HARD_CONST
2044
extern void find_all_hard_reg_sets (const_rtx, HARD_REG_SET *);
2045
#endif
2046
extern void note_stores (const_rtx, void (*) (rtx, const_rtx, void *), void *);
2047
extern void note_uses (rtx *, void (*) (rtx *, void *), void *);
2048
extern int dead_or_set_p (const_rtx, const_rtx);
2049
extern int dead_or_set_regno_p (const_rtx, unsigned int);
2050
extern rtx find_reg_note (const_rtx, enum reg_note, const_rtx);
2051
extern rtx find_regno_note (const_rtx, enum reg_note, unsigned int);
2052
extern rtx find_reg_equal_equiv_note (const_rtx);
2053
extern rtx find_constant_src (const_rtx);
2054
extern int find_reg_fusage (const_rtx, enum rtx_code, const_rtx);
2055
extern int find_regno_fusage (const_rtx, enum rtx_code, unsigned int);
2056
extern rtx alloc_reg_note (enum reg_note, rtx, rtx);
2057
extern void add_reg_note (rtx, enum reg_note, rtx);
2058
extern void remove_note (rtx, const_rtx);
2059
extern void remove_reg_equal_equiv_notes (rtx);
2060
extern void remove_reg_equal_equiv_notes_for_regno (unsigned int);
2061
extern int side_effects_p (const_rtx);
2062
extern int volatile_refs_p (const_rtx);
2063
extern int volatile_insn_p (const_rtx);
2064
extern int may_trap_p_1 (const_rtx, unsigned);
2065
extern int may_trap_p (const_rtx);
2066
extern int may_trap_or_fault_p (const_rtx);
2067
extern bool can_throw_internal (const_rtx);
2068
extern bool can_throw_external (const_rtx);
2069
extern bool insn_could_throw_p (const_rtx);
2070
extern bool insn_nothrow_p (const_rtx);
2071
extern bool can_nonlocal_goto (const_rtx);
2072
extern void copy_reg_eh_region_note_forward (rtx, rtx, rtx);
2073
extern void copy_reg_eh_region_note_backward(rtx, rtx, rtx);
2074
extern int inequality_comparisons_p (const_rtx);
2075
extern rtx replace_rtx (rtx, rtx, rtx);
2076
extern int replace_label (rtx *, void *);
2077
extern int rtx_referenced_p (rtx, rtx);
2078
extern bool tablejump_p (const_rtx, rtx *, rtx *);
2079
extern int computed_jump_p (const_rtx);
2080
 
2081
typedef int (*rtx_function) (rtx *, void *);
2082
extern int for_each_rtx (rtx *, rtx_function, void *);
2083
 
2084
/* Callback for for_each_inc_dec, to process the autoinc operation OP
2085
   within MEM that sets DEST to SRC + SRCOFF, or SRC if SRCOFF is
2086
   NULL.  The callback is passed the same opaque ARG passed to
2087
   for_each_inc_dec.  Return zero to continue looking for other
2088
   autoinc operations, -1 to skip OP's operands, and any other value
2089
   to interrupt the traversal and return that value to the caller of
2090
   for_each_inc_dec.  */
2091
typedef int (*for_each_inc_dec_fn) (rtx mem, rtx op, rtx dest, rtx src,
2092
                                    rtx srcoff, void *arg);
2093
extern int for_each_inc_dec (rtx *, for_each_inc_dec_fn, void *arg);
2094
 
2095
typedef int (*rtx_equal_p_callback_function) (const_rtx *, const_rtx *,
2096
                                              rtx *, rtx *);
2097
extern int rtx_equal_p_cb (const_rtx, const_rtx,
2098
                           rtx_equal_p_callback_function);
2099
 
2100
typedef int (*hash_rtx_callback_function) (const_rtx, enum machine_mode, rtx *,
2101
                                           enum machine_mode *);
2102
extern unsigned hash_rtx_cb (const_rtx, enum machine_mode, int *, int *,
2103
                             bool, hash_rtx_callback_function);
2104
 
2105
extern rtx regno_use_in (unsigned int, rtx);
2106
extern int auto_inc_p (const_rtx);
2107
extern int in_expr_list_p (const_rtx, const_rtx);
2108
extern void remove_node_from_expr_list (const_rtx, rtx *);
2109
extern int loc_mentioned_in_p (rtx *, const_rtx);
2110
extern rtx find_first_parameter_load (rtx, rtx);
2111
extern bool keep_with_call_p (const_rtx);
2112
extern bool label_is_jump_target_p (const_rtx, const_rtx);
2113
extern int insn_rtx_cost (rtx, bool);
2114
 
2115
/* Given an insn and condition, return a canonical description of
2116
   the test being made.  */
2117
extern rtx canonicalize_condition (rtx, rtx, int, rtx *, rtx, int, int);
2118
 
2119
/* Given a JUMP_INSN, return a canonical description of the test
2120
   being made.  */
2121
extern rtx get_condition (rtx, rtx *, int, int);
2122
 
2123
/* Information about a subreg of a hard register.  */
2124
struct subreg_info
2125
{
2126
  /* Offset of first hard register involved in the subreg.  */
2127
  int offset;
2128
  /* Number of hard registers involved in the subreg.  */
2129
  int nregs;
2130
  /* Whether this subreg can be represented as a hard reg with the new
2131
     mode.  */
2132
  bool representable_p;
2133
};
2134
 
2135
extern void subreg_get_info (unsigned int, enum machine_mode,
2136
                             unsigned int, enum machine_mode,
2137
                             struct subreg_info *);
2138
 
2139
/* lists.c */
2140
 
2141
extern void free_EXPR_LIST_list (rtx *);
2142
extern void free_INSN_LIST_list (rtx *);
2143
extern void free_EXPR_LIST_node (rtx);
2144
extern void free_INSN_LIST_node (rtx);
2145
extern rtx alloc_INSN_LIST (rtx, rtx);
2146
extern rtx copy_INSN_LIST (rtx);
2147
extern rtx concat_INSN_LIST (rtx, rtx);
2148
extern rtx alloc_EXPR_LIST (int, rtx, rtx);
2149
extern void remove_free_INSN_LIST_elem (rtx, rtx *);
2150
extern rtx remove_list_elem (rtx, rtx *);
2151
extern rtx remove_free_INSN_LIST_node (rtx *);
2152
extern rtx remove_free_EXPR_LIST_node (rtx *);
2153
 
2154
 
2155
/* reginfo.c */
2156
 
2157
/* Resize reg info.  */
2158
extern bool resize_reg_info (void);
2159
/* Free up register info memory.  */
2160
extern void free_reg_info (void);
2161
extern void init_subregs_of_mode (void);
2162
extern void finish_subregs_of_mode (void);
2163
 
2164
/* recog.c */
2165
extern rtx extract_asm_operands (rtx);
2166
extern int asm_noperands (const_rtx);
2167
extern const char *decode_asm_operands (rtx, rtx *, rtx **, const char **,
2168
                                        enum machine_mode *, location_t *);
2169
 
2170
extern enum reg_class reg_preferred_class (int);
2171
extern enum reg_class reg_alternate_class (int);
2172
extern enum reg_class reg_allocno_class (int);
2173
extern void setup_reg_classes (int, enum reg_class, enum reg_class,
2174
                               enum reg_class);
2175
 
2176
extern void split_all_insns (void);
2177
extern unsigned int split_all_insns_noflow (void);
2178
 
2179
#define MAX_SAVED_CONST_INT 64
2180
extern GTY(()) rtx const_int_rtx[MAX_SAVED_CONST_INT * 2 + 1];
2181
 
2182
#define const0_rtx      (const_int_rtx[MAX_SAVED_CONST_INT])
2183
#define const1_rtx      (const_int_rtx[MAX_SAVED_CONST_INT+1])
2184
#define const2_rtx      (const_int_rtx[MAX_SAVED_CONST_INT+2])
2185
#define constm1_rtx     (const_int_rtx[MAX_SAVED_CONST_INT-1])
2186
extern GTY(()) rtx const_true_rtx;
2187
 
2188
extern GTY(()) rtx const_tiny_rtx[4][(int) MAX_MACHINE_MODE];
2189
 
2190
/* Returns a constant 0 rtx in mode MODE.  Integer modes are treated the
2191
   same as VOIDmode.  */
2192
 
2193
#define CONST0_RTX(MODE) (const_tiny_rtx[0][(int) (MODE)])
2194
 
2195
/* Likewise, for the constants 1 and 2 and -1.  */
2196
 
2197
#define CONST1_RTX(MODE) (const_tiny_rtx[1][(int) (MODE)])
2198
#define CONST2_RTX(MODE) (const_tiny_rtx[2][(int) (MODE)])
2199
#define CONSTM1_RTX(MODE) (const_tiny_rtx[3][(int) (MODE)])
2200
 
2201
extern GTY(()) rtx pc_rtx;
2202
extern GTY(()) rtx cc0_rtx;
2203
extern GTY(()) rtx ret_rtx;
2204
extern GTY(()) rtx simple_return_rtx;
2205
 
2206
/* If HARD_FRAME_POINTER_REGNUM is defined, then a special dummy reg
2207
   is used to represent the frame pointer.  This is because the
2208
   hard frame pointer and the automatic variables are separated by an amount
2209
   that cannot be determined until after register allocation.  We can assume
2210
   that in this case ELIMINABLE_REGS will be defined, one action of which
2211
   will be to eliminate FRAME_POINTER_REGNUM into HARD_FRAME_POINTER_REGNUM.  */
2212
#ifndef HARD_FRAME_POINTER_REGNUM
2213
#define HARD_FRAME_POINTER_REGNUM FRAME_POINTER_REGNUM
2214
#endif
2215
 
2216
#ifndef HARD_FRAME_POINTER_IS_FRAME_POINTER
2217
#define HARD_FRAME_POINTER_IS_FRAME_POINTER \
2218
  (HARD_FRAME_POINTER_REGNUM == FRAME_POINTER_REGNUM)
2219
#endif
2220
 
2221
#ifndef HARD_FRAME_POINTER_IS_ARG_POINTER
2222
#define HARD_FRAME_POINTER_IS_ARG_POINTER \
2223
  (HARD_FRAME_POINTER_REGNUM == ARG_POINTER_REGNUM)
2224
#endif
2225
 
2226
/* Index labels for global_rtl.  */
2227
enum global_rtl_index
2228
{
2229
  GR_STACK_POINTER,
2230
  GR_FRAME_POINTER,
2231
/* For register elimination to work properly these hard_frame_pointer_rtx,
2232
   frame_pointer_rtx, and arg_pointer_rtx must be the same if they refer to
2233
   the same register.  */
2234
#if FRAME_POINTER_REGNUM == ARG_POINTER_REGNUM
2235
  GR_ARG_POINTER = GR_FRAME_POINTER,
2236
#endif
2237
#if HARD_FRAME_POINTER_IS_FRAME_POINTER
2238
  GR_HARD_FRAME_POINTER = GR_FRAME_POINTER,
2239
#else
2240
  GR_HARD_FRAME_POINTER,
2241
#endif
2242
#if FRAME_POINTER_REGNUM != ARG_POINTER_REGNUM
2243
#if HARD_FRAME_POINTER_IS_ARG_POINTER
2244
  GR_ARG_POINTER = GR_HARD_FRAME_POINTER,
2245
#else
2246
  GR_ARG_POINTER,
2247
#endif
2248
#endif
2249
  GR_VIRTUAL_INCOMING_ARGS,
2250
  GR_VIRTUAL_STACK_ARGS,
2251
  GR_VIRTUAL_STACK_DYNAMIC,
2252
  GR_VIRTUAL_OUTGOING_ARGS,
2253
  GR_VIRTUAL_CFA,
2254
  GR_VIRTUAL_PREFERRED_STACK_BOUNDARY,
2255
 
2256
  GR_MAX
2257
};
2258
 
2259
/* Target-dependent globals.  */
2260
struct GTY(()) target_rtl {
2261
  /* All references to the hard registers in global_rtl_index go through
2262
     these unique rtl objects.  On machines where the frame-pointer and
2263
     arg-pointer are the same register, they use the same unique object.
2264
 
2265
     After register allocation, other rtl objects which used to be pseudo-regs
2266
     may be clobbered to refer to the frame-pointer register.
2267
     But references that were originally to the frame-pointer can be
2268
     distinguished from the others because they contain frame_pointer_rtx.
2269
 
2270
     When to use frame_pointer_rtx and hard_frame_pointer_rtx is a little
2271
     tricky: until register elimination has taken place hard_frame_pointer_rtx
2272
     should be used if it is being set, and frame_pointer_rtx otherwise.  After
2273
     register elimination hard_frame_pointer_rtx should always be used.
2274
     On machines where the two registers are same (most) then these are the
2275
     same.  */
2276
  rtx x_global_rtl[GR_MAX];
2277
 
2278
  /* A unique representation of (REG:Pmode PIC_OFFSET_TABLE_REGNUM).  */
2279
  rtx x_pic_offset_table_rtx;
2280
 
2281
  /* A unique representation of (REG:Pmode RETURN_ADDRESS_POINTER_REGNUM).
2282
     This is used to implement __builtin_return_address for some machines;
2283
     see for instance the MIPS port.  */
2284
  rtx x_return_address_pointer_rtx;
2285
 
2286
  /* Commonly used RTL for hard registers.  These objects are not
2287
     necessarily unique, so we allocate them separately from global_rtl.
2288
     They are initialized once per compilation unit, then copied into
2289
     regno_reg_rtx at the beginning of each function.  */
2290
  rtx x_initial_regno_reg_rtx[FIRST_PSEUDO_REGISTER];
2291
 
2292
  /* A sample (mem:M stack_pointer_rtx) rtx for each mode M.  */
2293
  rtx x_top_of_stack[MAX_MACHINE_MODE];
2294
 
2295
  /* Static hunks of RTL used by the aliasing code; these are treated
2296
     as persistent to avoid unnecessary RTL allocations.  */
2297
  rtx x_static_reg_base_value[FIRST_PSEUDO_REGISTER];
2298
 
2299
  /* The default memory attributes for each mode.  */
2300
  struct mem_attrs *x_mode_mem_attrs[(int) MAX_MACHINE_MODE];
2301
};
2302
 
2303
extern GTY(()) struct target_rtl default_target_rtl;
2304
#if SWITCHABLE_TARGET
2305
extern struct target_rtl *this_target_rtl;
2306
#else
2307
#define this_target_rtl (&default_target_rtl)
2308
#endif
2309
 
2310
#define global_rtl                              \
2311
  (this_target_rtl->x_global_rtl)
2312
#define pic_offset_table_rtx \
2313
  (this_target_rtl->x_pic_offset_table_rtx)
2314
#define return_address_pointer_rtx \
2315
  (this_target_rtl->x_return_address_pointer_rtx)
2316
#define top_of_stack \
2317
  (this_target_rtl->x_top_of_stack)
2318
#define mode_mem_attrs \
2319
  (this_target_rtl->x_mode_mem_attrs)
2320
 
2321
/* All references to certain hard regs, except those created
2322
   by allocating pseudo regs into them (when that's possible),
2323
   go through these unique rtx objects.  */
2324
#define stack_pointer_rtx       (global_rtl[GR_STACK_POINTER])
2325
#define frame_pointer_rtx       (global_rtl[GR_FRAME_POINTER])
2326
#define hard_frame_pointer_rtx  (global_rtl[GR_HARD_FRAME_POINTER])
2327
#define arg_pointer_rtx         (global_rtl[GR_ARG_POINTER])
2328
 
2329
#ifndef GENERATOR_FILE
2330
/* Return the attributes of a MEM rtx.  */
2331
static inline struct mem_attrs *
2332
get_mem_attrs (const_rtx x)
2333
{
2334
  struct mem_attrs *attrs;
2335
 
2336
  attrs = MEM_ATTRS (x);
2337
  if (!attrs)
2338
    attrs = mode_mem_attrs[(int) GET_MODE (x)];
2339
  return attrs;
2340
}
2341
#endif
2342
 
2343
/* Include the RTL generation functions.  */
2344
 
2345
#ifndef GENERATOR_FILE
2346
#include "genrtl.h"
2347
#undef gen_rtx_ASM_INPUT
2348
#define gen_rtx_ASM_INPUT(MODE, ARG0)                           \
2349
  gen_rtx_fmt_si (ASM_INPUT, (MODE), (ARG0), 0)
2350
#define gen_rtx_ASM_INPUT_loc(MODE, ARG0, LOC)                  \
2351
  gen_rtx_fmt_si (ASM_INPUT, (MODE), (ARG0), (LOC))
2352
#endif
2353
 
2354
/* There are some RTL codes that require special attention; the
2355
   generation functions included above do the raw handling.  If you
2356
   add to this list, modify special_rtx in gengenrtl.c as well.  */
2357
 
2358
extern rtx gen_rtx_CONST_INT (enum machine_mode, HOST_WIDE_INT);
2359
extern rtx gen_rtx_CONST_VECTOR (enum machine_mode, rtvec);
2360
extern rtx gen_raw_REG (enum machine_mode, int);
2361
extern rtx gen_rtx_REG (enum machine_mode, unsigned);
2362
extern rtx gen_rtx_SUBREG (enum machine_mode, rtx, int);
2363
extern rtx gen_rtx_MEM (enum machine_mode, rtx);
2364
 
2365
#define GEN_INT(N)  gen_rtx_CONST_INT (VOIDmode, (N))
2366
 
2367
/* Virtual registers are used during RTL generation to refer to locations into
2368
   the stack frame when the actual location isn't known until RTL generation
2369
   is complete.  The routine instantiate_virtual_regs replaces these with
2370
   the proper value, which is normally {frame,arg,stack}_pointer_rtx plus
2371
   a constant.  */
2372
 
2373
#define FIRST_VIRTUAL_REGISTER  (FIRST_PSEUDO_REGISTER)
2374
 
2375
/* This points to the first word of the incoming arguments passed on the stack,
2376
   either by the caller or by the callee when pretending it was passed by the
2377
   caller.  */
2378
 
2379
#define virtual_incoming_args_rtx       (global_rtl[GR_VIRTUAL_INCOMING_ARGS])
2380
 
2381
#define VIRTUAL_INCOMING_ARGS_REGNUM    (FIRST_VIRTUAL_REGISTER)
2382
 
2383
/* If FRAME_GROWS_DOWNWARD, this points to immediately above the first
2384
   variable on the stack.  Otherwise, it points to the first variable on
2385
   the stack.  */
2386
 
2387
#define virtual_stack_vars_rtx          (global_rtl[GR_VIRTUAL_STACK_ARGS])
2388
 
2389
#define VIRTUAL_STACK_VARS_REGNUM       ((FIRST_VIRTUAL_REGISTER) + 1)
2390
 
2391
/* This points to the location of dynamically-allocated memory on the stack
2392
   immediately after the stack pointer has been adjusted by the amount
2393
   desired.  */
2394
 
2395
#define virtual_stack_dynamic_rtx       (global_rtl[GR_VIRTUAL_STACK_DYNAMIC])
2396
 
2397
#define VIRTUAL_STACK_DYNAMIC_REGNUM    ((FIRST_VIRTUAL_REGISTER) + 2)
2398
 
2399
/* This points to the location in the stack at which outgoing arguments should
2400
   be written when the stack is pre-pushed (arguments pushed using push
2401
   insns always use sp).  */
2402
 
2403
#define virtual_outgoing_args_rtx       (global_rtl[GR_VIRTUAL_OUTGOING_ARGS])
2404
 
2405
#define VIRTUAL_OUTGOING_ARGS_REGNUM    ((FIRST_VIRTUAL_REGISTER) + 3)
2406
 
2407
/* This points to the Canonical Frame Address of the function.  This
2408
   should correspond to the CFA produced by INCOMING_FRAME_SP_OFFSET,
2409
   but is calculated relative to the arg pointer for simplicity; the
2410
   frame pointer nor stack pointer are necessarily fixed relative to
2411
   the CFA until after reload.  */
2412
 
2413
#define virtual_cfa_rtx                 (global_rtl[GR_VIRTUAL_CFA])
2414
 
2415
#define VIRTUAL_CFA_REGNUM              ((FIRST_VIRTUAL_REGISTER) + 4)
2416
 
2417
#define LAST_VIRTUAL_POINTER_REGISTER   ((FIRST_VIRTUAL_REGISTER) + 4)
2418
 
2419
/* This is replaced by crtl->preferred_stack_boundary / BITS_PER_UNIT
2420
   when finalized.  */
2421
 
2422
#define virtual_preferred_stack_boundary_rtx \
2423
        (global_rtl[GR_VIRTUAL_PREFERRED_STACK_BOUNDARY])
2424
 
2425
#define VIRTUAL_PREFERRED_STACK_BOUNDARY_REGNUM \
2426
                                        ((FIRST_VIRTUAL_REGISTER) + 5)
2427
 
2428
#define LAST_VIRTUAL_REGISTER           ((FIRST_VIRTUAL_REGISTER) + 5)
2429
 
2430
/* Nonzero if REGNUM is a pointer into the stack frame.  */
2431
#define REGNO_PTR_FRAME_P(REGNUM)               \
2432
  ((REGNUM) == STACK_POINTER_REGNUM             \
2433
   || (REGNUM) == FRAME_POINTER_REGNUM          \
2434
   || (REGNUM) == HARD_FRAME_POINTER_REGNUM     \
2435
   || (REGNUM) == ARG_POINTER_REGNUM            \
2436
   || ((REGNUM) >= FIRST_VIRTUAL_REGISTER       \
2437
       && (REGNUM) <= LAST_VIRTUAL_POINTER_REGISTER))
2438
 
2439
/* REGNUM never really appearing in the INSN stream.  */
2440
#define INVALID_REGNUM                  (~(unsigned int) 0)
2441
 
2442
extern rtx output_constant_def (tree, int);
2443
extern rtx lookup_constant_def (tree);
2444
 
2445
/* Nonzero after end of reload pass.
2446
   Set to 1 or 0 by reload1.c.  */
2447
 
2448
extern int reload_completed;
2449
 
2450
/* Nonzero after thread_prologue_and_epilogue_insns has run.  */
2451
extern int epilogue_completed;
2452
 
2453
/* Set to 1 while reload_as_needed is operating.
2454
   Required by some machines to handle any generated moves differently.  */
2455
 
2456
extern int reload_in_progress;
2457
 
2458
/* Set to 1 while in lra.  */
2459
extern int lra_in_progress;
2460
 
2461
/* This macro indicates whether you may create a new
2462
   pseudo-register.  */
2463
 
2464
#define can_create_pseudo_p() (!reload_in_progress && !reload_completed)
2465
 
2466
#ifdef STACK_REGS
2467
/* Nonzero after end of regstack pass.
2468
   Set to 1 or 0 by reg-stack.c.  */
2469
extern int regstack_completed;
2470
#endif
2471
 
2472
/* If this is nonzero, we do not bother generating VOLATILE
2473
   around volatile memory references, and we are willing to
2474
   output indirect addresses.  If cse is to follow, we reject
2475
   indirect addresses so a useful potential cse is generated;
2476
   if it is used only once, instruction combination will produce
2477
   the same indirect address eventually.  */
2478
extern int cse_not_expected;
2479
 
2480
/* Translates rtx code to tree code, for those codes needed by
2481
   REAL_ARITHMETIC.  The function returns an int because the caller may not
2482
   know what `enum tree_code' means.  */
2483
 
2484
extern int rtx_to_tree_code (enum rtx_code);
2485
 
2486
/* In cse.c */
2487
extern int delete_trivially_dead_insns (rtx, int);
2488
extern int exp_equiv_p (const_rtx, const_rtx, int, bool);
2489
extern unsigned hash_rtx (const_rtx x, enum machine_mode, int *, int *, bool);
2490
 
2491
/* In dse.c */
2492
extern bool check_for_inc_dec (rtx insn);
2493
 
2494
/* In jump.c */
2495
extern int comparison_dominates_p (enum rtx_code, enum rtx_code);
2496
extern bool jump_to_label_p (rtx);
2497
extern int condjump_p (const_rtx);
2498
extern int any_condjump_p (const_rtx);
2499
extern int any_uncondjump_p (const_rtx);
2500
extern rtx pc_set (const_rtx);
2501
extern rtx condjump_label (const_rtx);
2502
extern int simplejump_p (const_rtx);
2503
extern int returnjump_p (rtx);
2504
extern int eh_returnjump_p (rtx);
2505
extern int onlyjump_p (const_rtx);
2506
extern int only_sets_cc0_p (const_rtx);
2507
extern int sets_cc0_p (const_rtx);
2508
extern int invert_jump_1 (rtx, rtx);
2509
extern int invert_jump (rtx, rtx, int);
2510
extern int rtx_renumbered_equal_p (const_rtx, const_rtx);
2511
extern int true_regnum (const_rtx);
2512
extern unsigned int reg_or_subregno (const_rtx);
2513
extern int redirect_jump_1 (rtx, rtx);
2514
extern void redirect_jump_2 (rtx, rtx, rtx, int, int);
2515
extern int redirect_jump (rtx, rtx, int);
2516
extern void rebuild_jump_labels (rtx);
2517
extern void rebuild_jump_labels_chain (rtx);
2518
extern rtx reversed_comparison (const_rtx, enum machine_mode);
2519
extern enum rtx_code reversed_comparison_code (const_rtx, const_rtx);
2520
extern enum rtx_code reversed_comparison_code_parts (enum rtx_code, const_rtx,
2521
                                                     const_rtx, const_rtx);
2522
extern void delete_for_peephole (rtx, rtx);
2523
extern int condjump_in_parallel_p (const_rtx);
2524
 
2525
/* In emit-rtl.c.  */
2526
extern int max_reg_num (void);
2527
extern int max_label_num (void);
2528
extern int get_first_label_num (void);
2529
extern void maybe_set_first_label_num (rtx);
2530
extern void delete_insns_since (rtx);
2531
extern void mark_reg_pointer (rtx, int);
2532
extern void mark_user_reg (rtx);
2533
extern void reset_used_flags (rtx);
2534
extern void set_used_flags (rtx);
2535
extern void reorder_insns (rtx, rtx, rtx);
2536
extern void reorder_insns_nobb (rtx, rtx, rtx);
2537
extern int get_max_insn_count (void);
2538
extern int in_sequence_p (void);
2539
extern void init_emit (void);
2540
extern void init_emit_regs (void);
2541
extern void init_emit_once (void);
2542
extern void push_topmost_sequence (void);
2543
extern void pop_topmost_sequence (void);
2544
extern void set_new_first_and_last_insn (rtx, rtx);
2545
extern unsigned int unshare_all_rtl (void);
2546
extern void unshare_all_rtl_again (rtx);
2547
extern void unshare_all_rtl_in_chain (rtx);
2548
extern void verify_rtl_sharing (void);
2549
extern void link_cc0_insns (rtx);
2550
extern void add_insn (rtx);
2551
extern void add_insn_before (rtx, rtx, basic_block);
2552
extern void add_insn_after (rtx, rtx, basic_block);
2553
extern void remove_insn (rtx);
2554
extern rtx emit (rtx);
2555
extern void delete_insn (rtx);
2556
extern rtx entry_of_function (void);
2557
extern void emit_insn_at_entry (rtx);
2558
extern void delete_insn_chain (rtx, rtx, bool);
2559
extern rtx unlink_insn_chain (rtx, rtx);
2560
extern void delete_insn_and_edges (rtx);
2561
extern rtx gen_lowpart_SUBREG (enum machine_mode, rtx);
2562
extern rtx gen_const_mem (enum machine_mode, rtx);
2563
extern rtx gen_frame_mem (enum machine_mode, rtx);
2564
extern rtx gen_tmp_stack_mem (enum machine_mode, rtx);
2565
extern bool validate_subreg (enum machine_mode, enum machine_mode,
2566
                             const_rtx, unsigned int);
2567
 
2568
/* In combine.c  */
2569
extern unsigned int extended_count (const_rtx, enum machine_mode, int);
2570
extern rtx remove_death (unsigned int, rtx);
2571
extern void dump_combine_stats (FILE *);
2572
extern void dump_combine_total_stats (FILE *);
2573
extern rtx make_compound_operation (rtx, enum rtx_code);
2574
 
2575
/* In cfgcleanup.c  */
2576
extern void delete_dead_jumptables (void);
2577
 
2578
/* In sched-rgn.c.  */
2579
extern void schedule_insns (void);
2580
 
2581
/* In sched-ebb.c.  */
2582
extern void schedule_ebbs (void);
2583
 
2584
/* In sel-sched-dump.c.  */
2585
extern void sel_sched_fix_param (const char *param, const char *val);
2586
 
2587
/* In print-rtl.c */
2588
extern const char *print_rtx_head;
2589
extern void debug_rtx (const_rtx);
2590
extern void debug_rtx_list (const_rtx, int);
2591
extern void debug_rtx_range (const_rtx, const_rtx);
2592
extern const_rtx debug_rtx_find (const_rtx, int);
2593
extern void print_mem_expr (FILE *, const_tree);
2594
extern void print_rtl (FILE *, const_rtx);
2595
extern void print_simple_rtl (FILE *, const_rtx);
2596
extern int print_rtl_single (FILE *, const_rtx);
2597
extern int print_rtl_single_with_indent (FILE *, const_rtx, int);
2598
extern void print_inline_rtx (FILE *, const_rtx, int);
2599
 
2600
/* Functions in sched-vis.c.  These must be outside INSN_SCHEDULING as
2601
   sched-vis.c is compiled always.  FIXME: Ideally these functions would
2602
   not be in sched-vis.c but in rtl.c, because they are not only used
2603
   by the scheduler anymore but for all "slim" RTL dumping.  */
2604
extern void dump_value_slim (FILE *, const_rtx, int);
2605
extern void dump_insn_slim (FILE *, const_rtx);
2606
extern void dump_rtl_slim (FILE *, const_rtx, const_rtx, int, int);
2607
extern void print_value (char *, const_rtx, int);
2608
extern void print_pattern (char *, const_rtx, int);
2609
extern void print_insn (char *, const_rtx, int);
2610
 
2611
/* In function.c */
2612
extern void reposition_prologue_and_epilogue_notes (void);
2613
extern int prologue_epilogue_contains (const_rtx);
2614
extern int sibcall_epilogue_contains (const_rtx);
2615
extern void update_temp_slot_address (rtx, rtx);
2616
extern void maybe_copy_prologue_epilogue_insn (rtx, rtx);
2617
extern void set_return_jump_label (rtx);
2618
 
2619
/* In stmt.c */
2620
extern void expand_null_return (void);
2621
extern void expand_naked_return (void);
2622
extern void emit_jump (rtx);
2623
 
2624
/* In expr.c */
2625
extern rtx move_by_pieces (rtx, rtx, unsigned HOST_WIDE_INT,
2626
                           unsigned int, int);
2627
extern HOST_WIDE_INT find_args_size_adjust (rtx);
2628
extern int fixup_args_size_notes (rtx, rtx, int);
2629
 
2630
/* In cfgrtl.c */
2631
extern void print_rtl_with_bb (FILE *, const_rtx, int);
2632
extern rtx duplicate_insn_chain (rtx, rtx);
2633
 
2634
/* In expmed.c */
2635
extern void init_expmed (void);
2636
extern void expand_inc (rtx, rtx);
2637
extern void expand_dec (rtx, rtx);
2638
 
2639
/* In lower-subreg.c */
2640
extern void init_lower_subreg (void);
2641
 
2642
/* In gcse.c */
2643
extern bool can_copy_p (enum machine_mode);
2644
extern bool can_assign_to_reg_without_clobbers_p (rtx);
2645
extern rtx fis_get_condition (rtx);
2646
 
2647
/* In ira.c */
2648
#ifdef HARD_CONST
2649
extern HARD_REG_SET eliminable_regset;
2650
#endif
2651
extern void mark_elimination (int, int);
2652
 
2653
/* In reginfo.c */
2654
extern int reg_classes_intersect_p (reg_class_t, reg_class_t);
2655
extern int reg_class_subset_p (reg_class_t, reg_class_t);
2656
extern void globalize_reg (tree, int);
2657
extern void init_reg_modes_target (void);
2658
extern void init_regs (void);
2659
extern void reinit_regs (void);
2660
extern void init_fake_stack_mems (void);
2661
extern void save_register_info (void);
2662
extern void init_reg_sets (void);
2663
extern void regclass (rtx, int);
2664
extern void reg_scan (rtx, unsigned int);
2665
extern void fix_register (const char *, int, int);
2666
extern bool invalid_mode_change_p (unsigned int, enum reg_class);
2667
 
2668
/* In reorg.c */
2669
extern void dbr_schedule (rtx);
2670
 
2671
/* In reload1.c */
2672
extern int function_invariant_p (const_rtx);
2673
 
2674
/* In calls.c */
2675
enum libcall_type
2676
{
2677
  LCT_NORMAL = 0,
2678
  LCT_CONST = 1,
2679
  LCT_PURE = 2,
2680
  LCT_NORETURN = 3,
2681
  LCT_THROW = 4,
2682
  LCT_RETURNS_TWICE = 5
2683
};
2684
 
2685
extern void emit_library_call (rtx, enum libcall_type, enum machine_mode, int,
2686
                               ...);
2687
extern rtx emit_library_call_value (rtx, rtx, enum libcall_type,
2688
                                    enum machine_mode, int, ...);
2689
 
2690
/* In varasm.c */
2691
extern void init_varasm_once (void);
2692
 
2693
extern rtx make_debug_expr_from_rtl (const_rtx);
2694
 
2695
/* In read-rtl.c */
2696
extern bool read_rtx (const char *, rtx *);
2697
 
2698
/* In alias.c */
2699
extern rtx canon_rtx (rtx);
2700
extern int true_dependence (const_rtx, enum machine_mode, const_rtx);
2701
extern rtx get_addr (rtx);
2702
extern int canon_true_dependence (const_rtx, enum machine_mode, rtx,
2703
                                  const_rtx, rtx);
2704
extern int read_dependence (const_rtx, const_rtx);
2705
extern int anti_dependence (const_rtx, const_rtx);
2706
extern int output_dependence (const_rtx, const_rtx);
2707
extern int may_alias_p (const_rtx, const_rtx);
2708
extern void init_alias_target (void);
2709
extern void init_alias_analysis (void);
2710
extern void end_alias_analysis (void);
2711
extern void vt_equate_reg_base_value (const_rtx, const_rtx);
2712
extern bool memory_modified_in_insn_p (const_rtx, const_rtx);
2713
extern bool memory_must_be_modified_in_insn_p (const_rtx, const_rtx);
2714
extern bool may_be_sp_based_p (rtx);
2715
extern rtx gen_hard_reg_clobber (enum machine_mode, unsigned int);
2716
extern rtx get_reg_known_value (unsigned int);
2717
extern bool get_reg_known_equiv_p (unsigned int);
2718
extern rtx get_reg_base_value (unsigned int);
2719
 
2720
#ifdef STACK_REGS
2721
extern int stack_regs_mentioned (const_rtx insn);
2722
#endif
2723
 
2724
/* In toplev.c */
2725
extern GTY(()) rtx stack_limit_rtx;
2726
 
2727
/* In predict.c */
2728
extern void invert_br_probabilities (rtx);
2729
extern bool expensive_function_p (int);
2730
 
2731
/* In var-tracking.c */
2732
extern unsigned int variable_tracking_main (void);
2733
 
2734
/* In stor-layout.c.  */
2735
extern void get_mode_bounds (enum machine_mode, int, enum machine_mode,
2736
                             rtx *, rtx *);
2737
 
2738
/* In loop-unswitch.c  */
2739
extern rtx reversed_condition (rtx);
2740
extern rtx compare_and_jump_seq (rtx, rtx, enum rtx_code, rtx, int, rtx);
2741
 
2742
/* In loop-iv.c  */
2743
extern rtx canon_condition (rtx);
2744
extern void simplify_using_condition (rtx, rtx *, bitmap);
2745
 
2746
/* In final.c  */
2747
extern unsigned int compute_alignments (void);
2748
extern int asm_str_count (const char *templ);
2749
 
2750
struct rtl_hooks
2751
{
2752
  rtx (*gen_lowpart) (enum machine_mode, rtx);
2753
  rtx (*gen_lowpart_no_emit) (enum machine_mode, rtx);
2754
  rtx (*reg_nonzero_bits) (const_rtx, enum machine_mode, const_rtx, enum machine_mode,
2755
                           unsigned HOST_WIDE_INT, unsigned HOST_WIDE_INT *);
2756
  rtx (*reg_num_sign_bit_copies) (const_rtx, enum machine_mode, const_rtx, enum machine_mode,
2757
                                  unsigned int, unsigned int *);
2758
  bool (*reg_truncated_to_mode) (enum machine_mode, const_rtx);
2759
 
2760
  /* Whenever you add entries here, make sure you adjust rtlhooks-def.h.  */
2761
};
2762
 
2763
/* Each pass can provide its own.  */
2764
extern struct rtl_hooks rtl_hooks;
2765
 
2766
/* ... but then it has to restore these.  */
2767
extern const struct rtl_hooks general_rtl_hooks;
2768
 
2769
/* Keep this for the nonce.  */
2770
#define gen_lowpart rtl_hooks.gen_lowpart
2771
 
2772
extern void insn_locations_init (void);
2773
extern void insn_locations_finalize (void);
2774
extern void set_curr_insn_location (location_t);
2775
extern location_t curr_insn_location (void);
2776
extern bool optimize_insn_for_size_p (void);
2777
extern bool optimize_insn_for_speed_p (void);
2778
 
2779
/* rtl-error.c */
2780
extern void _fatal_insn_not_found (const_rtx, const char *, int, const char *)
2781
     ATTRIBUTE_NORETURN;
2782
extern void _fatal_insn (const char *, const_rtx, const char *, int, const char *)
2783
     ATTRIBUTE_NORETURN;
2784
 
2785
#define fatal_insn(msgid, insn) \
2786
        _fatal_insn (msgid, insn, __FILE__, __LINE__, __FUNCTION__)
2787
#define fatal_insn_not_found(insn) \
2788
        _fatal_insn_not_found (insn, __FILE__, __LINE__, __FUNCTION__)
2789
 
2790
 
2791
 
2792
#endif /* ! GCC_RTL_H */

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