c0f543d040bacad248da80d7513a8a2931675515
[gcc.git] / gcc / rtl.h
1 /* Register Transfer Language (RTL) definitions for GNU C-Compiler
2 Copyright (C) 1987, 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998,
3 1999, 2000 Free Software Foundation, Inc.
4
5 This file is part of GNU CC.
6
7 GNU CC is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2, or (at your option)
10 any later version.
11
12 GNU CC is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GNU CC; see the file COPYING. If not, write to
19 the Free Software Foundation, 59 Temple Place - Suite 330,
20 Boston, MA 02111-1307, USA. */
21
22 #ifndef _RTL_H
23 #define _RTL_H
24
25 struct function;
26
27 #include "machmode.h"
28
29 #undef FFS /* Some systems predefine this symbol; don't let it interfere. */
30 #undef FLOAT /* Likewise. */
31 #undef ABS /* Likewise. */
32 #undef PC /* Likewise. */
33
34 #ifndef TREE_CODE
35 union tree_node;
36 #endif
37
38 /* Register Transfer Language EXPRESSIONS CODES */
39
40 #define RTX_CODE enum rtx_code
41 enum rtx_code {
42
43 #define DEF_RTL_EXPR(ENUM, NAME, FORMAT, CLASS) ENUM ,
44 #include "rtl.def" /* rtl expressions are documented here */
45 #undef DEF_RTL_EXPR
46
47 LAST_AND_UNUSED_RTX_CODE}; /* A convenient way to get a value for
48 NUM_RTX_CODE.
49 Assumes default enum value assignment. */
50
51 #define NUM_RTX_CODE ((int)LAST_AND_UNUSED_RTX_CODE)
52 /* The cast here, saves many elsewhere. */
53
54 extern const int rtx_length[];
55 #define GET_RTX_LENGTH(CODE) (rtx_length[(int) (CODE)])
56
57 extern const char * const rtx_name[];
58 #define GET_RTX_NAME(CODE) (rtx_name[(int) (CODE)])
59
60 extern const char * const rtx_format[];
61 #define GET_RTX_FORMAT(CODE) (rtx_format[(int) (CODE)])
62
63 extern const char rtx_class[];
64 #define GET_RTX_CLASS(CODE) (rtx_class[(int) (CODE)])
65 \f
66 /* The flags and bitfields of an ADDR_DIFF_VEC. BASE is the base label
67 relative to which the offsets are calculated, as explained in rtl.def. */
68 typedef struct
69 {
70 /* Set at the start of shorten_branches - ONLY WHEN OPTIMIZING - : */
71 unsigned min_align: 8;
72 /* Flags: */
73 unsigned base_after_vec: 1; /* BASE is after the ADDR_DIFF_VEC. */
74 unsigned min_after_vec: 1; /* minimum address target label is after the ADDR_DIFF_VEC. */
75 unsigned max_after_vec: 1; /* maximum address target label is after the ADDR_DIFF_VEC. */
76 unsigned min_after_base: 1; /* minimum address target label is after BASE. */
77 unsigned max_after_base: 1; /* maximum address target label is after BASE. */
78 /* Set by the actual branch shortening process - ONLY WHEN OPTIMIZING - : */
79 unsigned offset_unsigned: 1; /* offsets have to be treated as unsigned. */
80 unsigned : 2;
81 unsigned scale : 8;
82 } addr_diff_vec_flags;
83
84 /* Common union for an element of an rtx. */
85
86 typedef union rtunion_def
87 {
88 HOST_WIDE_INT rtwint;
89 int rtint;
90 unsigned int rtuint;
91 const char *rtstr;
92 struct rtx_def *rtx;
93 struct rtvec_def *rtvec;
94 enum machine_mode rttype;
95 addr_diff_vec_flags rt_addr_diff_vec_flags;
96 struct cselib_val_struct *rt_cselib;
97 struct bitmap_head_def *rtbit;
98 union tree_node *rttree;
99 struct basic_block_def *bb;
100 } rtunion;
101
102 /* RTL expression ("rtx"). */
103
104 typedef struct rtx_def
105 {
106 /* The kind of expression this is. */
107 ENUM_BITFIELD(rtx_code) code: 16;
108
109 /* The kind of value the expression has. */
110 ENUM_BITFIELD(machine_mode) mode : 8;
111
112 /* 1 in an INSN if it can alter flow of control
113 within this function.
114 LINK_COST_ZERO in an INSN_LIST. */
115 unsigned int jump : 1;
116 /* 1 in an INSN if it can call another function.
117 LINK_COST_FREE in an INSN_LIST. */
118 unsigned int call : 1;
119 /* 1 in a REG if value of this expression will never change during
120 the current function, even though it is not manifestly constant.
121 1 in a MEM if contents of memory are constant. This does not
122 necessarily mean that the value of this expression is constant.
123 1 in a SUBREG if it is from a promoted variable that is unsigned.
124 1 in a SYMBOL_REF if it addresses something in the per-function
125 constants pool.
126 1 in a CALL_INSN if it is a const call.
127 1 in a JUMP_INSN if it is a branch that should be annulled. Valid from
128 reorg until end of compilation; cleared before used. */
129 unsigned int unchanging : 1;
130 /* 1 in a MEM expression if contents of memory are volatile.
131 1 in an INSN, CALL_INSN, JUMP_INSN, CODE_LABEL or BARRIER
132 if it is deleted.
133 1 in a REG expression if corresponds to a variable declared by the user.
134 0 for an internally generated temporary.
135 In a SYMBOL_REF, this flag is used for machine-specific purposes.
136 In a LABEL_REF or in a REG_LABEL note, this is LABEL_REF_NONLOCAL_P. */
137 unsigned int volatil : 1;
138 /* 1 in a MEM referring to a field of an aggregate.
139 0 if the MEM was a variable or the result of a * operator in C;
140 1 if it was the result of a . or -> operator (on a struct) in C.
141 1 in a REG if the register is used only in exit code a loop.
142 1 in a SUBREG expression if was generated from a variable with a
143 promoted mode.
144 1 in a CODE_LABEL if the label is used for nonlocal gotos
145 and must not be deleted even if its count is zero.
146 1 in a LABEL_REF if this is a reference to a label outside the
147 current loop.
148 1 in an INSN, JUMP_INSN, or CALL_INSN if this insn must be scheduled
149 together with the preceding insn. Valid only within sched.
150 1 in an INSN, JUMP_INSN, or CALL_INSN if insn is in a delay slot and
151 from the target of a branch. Valid from reorg until end of compilation;
152 cleared before used.
153 1 in an INSN if this insn is dead code. Valid only during
154 dead-code elimination phase; cleared before use. */
155 unsigned int in_struct : 1;
156 /* 1 if this rtx is used. This is used for copying shared structure.
157 See `unshare_all_rtl'.
158 In a REG, this is not needed for that purpose, and used instead
159 in `leaf_renumber_regs_insn'.
160 In a SYMBOL_REF, means that emit_library_call
161 has used it as the function. */
162 unsigned int used : 1;
163 /* Nonzero if this rtx came from procedure integration.
164 In a REG, nonzero means this reg refers to the return value
165 of the current function. */
166 unsigned integrated : 1;
167 /* 1 in an INSN or a SET if this rtx is related to the call frame,
168 either changing how we compute the frame address or saving and
169 restoring registers in the prologue and epilogue.
170 1 in a MEM if the MEM refers to a scalar, rather than a member of
171 an aggregate.
172 1 in a SYMBOL_REF if it addresses something in the per-function
173 constant string pool. */
174 unsigned frame_related : 1;
175
176 /* The first element of the operands of this rtx.
177 The number of operands and their types are controlled
178 by the `code' field, according to rtl.def. */
179 rtunion fld[1];
180 } *rtx;
181
182 #define NULL_RTX (rtx) 0
183
184 /* Define macros to access the `code' field of the rtx. */
185
186 #define GET_CODE(RTX) ((RTX)->code)
187 #define PUT_CODE(RTX, CODE) ((RTX)->code = (CODE))
188
189 #define GET_MODE(RTX) ((RTX)->mode)
190 #define PUT_MODE(RTX, MODE) ((RTX)->mode = (MODE))
191
192 #define RTX_INTEGRATED_P(RTX) ((RTX)->integrated)
193 #define RTX_UNCHANGING_P(RTX) ((RTX)->unchanging)
194 #define RTX_FRAME_RELATED_P(RTX) ((RTX)->frame_related)
195
196 /* RTL vector. These appear inside RTX's when there is a need
197 for a variable number of things. The principle use is inside
198 PARALLEL expressions. */
199
200 typedef struct rtvec_def{
201 int num_elem; /* number of elements */
202 struct rtx_def *elem[1];
203 } *rtvec;
204
205 #define NULL_RTVEC (rtvec) 0
206
207 #define GET_NUM_ELEM(RTVEC) ((RTVEC)->num_elem)
208 #define PUT_NUM_ELEM(RTVEC, NUM) ((RTVEC)->num_elem = (NUM))
209
210 /* Predicate yielding nonzero iff X is an rtl for a register. */
211 #define REG_P(X) (GET_CODE (X) == REG)
212
213 /* Predicate yielding nonzero iff X is a label insn. */
214 #define LABEL_P(X) (GET_CODE (X) == CODE_LABEL)
215
216 /* Predicate yielding nonzero iff X is a jump insn. */
217 #define JUMP_P(X) (GET_CODE (X) == JUMP_INSN)
218
219 /* Predicate yielding nonzero iff X is a note insn. */
220 #define NOTE_P(X) (GET_CODE (X) == NOTE)
221
222 /* Predicate yielding nonzero iff X is a barrier insn. */
223 #define BARRIER_P(X) (GET_CODE (X) == BARRIER)
224
225 /* Predicate yielding nonzero iff X is a data for a jump table. */
226 #define JUMP_TABLE_DATA_P(INSN) \
227 (JUMP_P (INSN) && (GET_CODE (PATTERN (INSN)) == ADDR_VEC || \
228 GET_CODE (PATTERN (INSN)) == ADDR_DIFF_VEC))
229
230 /* 1 if X is a constant value that is an integer. */
231
232 #define CONSTANT_P(X) \
233 (GET_CODE (X) == LABEL_REF || GET_CODE (X) == SYMBOL_REF \
234 || GET_CODE (X) == CONST_INT || GET_CODE (X) == CONST_DOUBLE \
235 || GET_CODE (X) == CONST || GET_CODE (X) == HIGH \
236 || GET_CODE (X) == CONSTANT_P_RTX)
237
238 /* General accessor macros for accessing the fields of an rtx. */
239
240 #if defined ENABLE_RTL_CHECKING && (GCC_VERSION >= 2007)
241 /* The bit with a star outside the statement expr and an & inside is
242 so that N can be evaluated only once. */
243 #define RTL_CHECK1(RTX, N, C1) __extension__ \
244 (*({ rtx _rtx = (RTX); int _n = (N); \
245 enum rtx_code _code = GET_CODE (_rtx); \
246 if (_n < 0 || _n >= GET_RTX_LENGTH (_code)) \
247 rtl_check_failed_bounds (_rtx, _n, __FILE__, __LINE__, __FUNCTION__); \
248 if (GET_RTX_FORMAT(_code)[_n] != C1) \
249 rtl_check_failed_type1(_rtx, _n, C1, __FILE__, __LINE__, __FUNCTION__); \
250 &_rtx->fld[_n]; }))
251
252 #define RTL_CHECK2(RTX, N, C1, C2) __extension__ \
253 (*({ rtx _rtx = (RTX); int _n = (N); \
254 enum rtx_code _code = GET_CODE (_rtx); \
255 if (_n < 0 || _n >= GET_RTX_LENGTH (_code)) \
256 rtl_check_failed_bounds (_rtx, _n, __FILE__, __LINE__, __FUNCTION__); \
257 if (GET_RTX_FORMAT(_code)[_n] != C1 \
258 && GET_RTX_FORMAT(_code)[_n] != C2) \
259 rtl_check_failed_type2 (_rtx, _n, C1, C2, __FILE__, __LINE__, \
260 __FUNCTION__); \
261 &_rtx->fld[_n]; }))
262
263 #define RTL_CHECKC1(RTX, N, C) __extension__ \
264 (*({ rtx _rtx = (RTX); int _n = (N); \
265 if (GET_CODE (_rtx) != C) \
266 rtl_check_failed_code1 (_rtx, C, __FILE__, __LINE__, __FUNCTION__); \
267 &_rtx->fld[_n]; }))
268
269 #define RTL_CHECKC2(RTX, N, C1, C2) __extension__ \
270 (*({ rtx _rtx = (RTX); int _n = (N); \
271 enum rtx_code _code = GET_CODE (_rtx); \
272 if (_code != C1 && _code != C2) \
273 rtl_check_failed_code2(_rtx, C1, C2, __FILE__, __LINE__, __FUNCTION__); \
274 &_rtx->fld[_n]; }))
275
276 #define RTVEC_ELT(RTVEC, I) __extension__ \
277 (*({ rtvec _rtvec = (RTVEC); int _i = (I); \
278 if (_i < 0 || _i >= GET_NUM_ELEM (_rtvec)) \
279 rtvec_check_failed_bounds (_rtvec, _i, __FILE__, __LINE__, \
280 __FUNCTION__); \
281 &_rtvec->elem[_i]; }))
282
283 extern void rtl_check_failed_bounds PARAMS ((rtx, int,
284 const char *, int, const char *))
285 ATTRIBUTE_NORETURN;
286 extern void rtl_check_failed_type1 PARAMS ((rtx, int, int,
287 const char *, int, const char *))
288 ATTRIBUTE_NORETURN;
289 extern void rtl_check_failed_type2 PARAMS ((rtx, int, int, int,
290 const char *, int, const char *))
291 ATTRIBUTE_NORETURN;
292 extern void rtl_check_failed_code1 PARAMS ((rtx, enum rtx_code,
293 const char *, int, const char *))
294 ATTRIBUTE_NORETURN;
295 extern void rtl_check_failed_code2 PARAMS ((rtx, enum rtx_code, enum rtx_code,
296 const char *, int, const char *))
297 ATTRIBUTE_NORETURN;
298 extern void rtvec_check_failed_bounds PARAMS ((rtvec, int,
299 const char *, int, const char *))
300 ATTRIBUTE_NORETURN;
301
302 #else /* not ENABLE_RTL_CHECKING */
303
304 #define RTL_CHECK1(RTX, N, C1) ((RTX)->fld[N])
305 #define RTL_CHECK2(RTX, N, C1, C2) ((RTX)->fld[N])
306 #define RTL_CHECKC1(RTX, N, C) ((RTX)->fld[N])
307 #define RTL_CHECKC2(RTX, N, C1, C2) ((RTX)->fld[N])
308 #define RTVEC_ELT(RTVEC, I) ((RTVEC)->elem[I])
309
310 #endif
311
312 #define XWINT(RTX, N) (RTL_CHECK1(RTX, N, 'w').rtwint)
313 #define XINT(RTX, N) (RTL_CHECK2(RTX, N, 'i', 'n').rtint)
314 #define XSTR(RTX, N) (RTL_CHECK2(RTX, N, 's', 'S').rtstr)
315 #define XEXP(RTX, N) (RTL_CHECK2(RTX, N, 'e', 'u').rtx)
316 #define XVEC(RTX, N) (RTL_CHECK2(RTX, N, 'E', 'V').rtvec)
317 #define XMODE(RTX, N) (RTL_CHECK1(RTX, N, 'M').rttype)
318 #define XBITMAP(RTX, N) (RTL_CHECK1(RTX, N, 'b').rtbit)
319 #define XTREE(RTX, N) (RTL_CHECK1(RTX, N, 't').rttree)
320 #define XBBDEF(RTX, N) (RTL_CHECK1(RTX, N, 'B').bb)
321
322 #define XVECEXP(RTX, N, M) RTVEC_ELT (XVEC (RTX, N), M)
323 #define XVECLEN(RTX, N) GET_NUM_ELEM (XVEC (RTX, N))
324
325 /* These are like XWINT, etc. except that they expect a '0' field instead
326 of the normal type code. */
327
328 #define X0WINT(RTX, N) (RTL_CHECK1(RTX, N, '0').rtwint)
329 #define X0INT(RTX, N) (RTL_CHECK1(RTX, N, '0').rtint)
330 #define X0STR(RTX, N) (RTL_CHECK1(RTX, N, '0').rtstr)
331 #define X0EXP(RTX, N) (RTL_CHECK1(RTX, N, '0').rtx)
332 #define X0VEC(RTX, N) (RTL_CHECK1(RTX, N, '0').rtvec)
333 #define X0MODE(RTX, N) (RTL_CHECK1(RTX, N, '0').rttype)
334 #define X0BITMAP(RTX, N) (RTL_CHECK1(RTX, N, '0').rtbit)
335 #define X0TREE(RTX, N) (RTL_CHECK1(RTX, N, '0').rttree)
336 #define X0BBDEF(RTX, N) (RTL_CHECK1(RTX, N, '0').bb)
337 #define X0ADVFLAGS(RTX, N) (RTL_CHECK1(RTX, N, '0').rt_addr_diff_vec_flags)
338 #define X0CSELIB(RTX, N) (RTL_CHECK1(RTX, N, '0').rt_cselib)
339
340 #define XCWINT(RTX, N, C) (RTL_CHECKC1(RTX, N, C).rtwint)
341 #define XCINT(RTX, N, C) (RTL_CHECKC1(RTX, N, C).rtint)
342 #define XCUINT(RTX, N, C) (RTL_CHECKC1(RTX, N, C).rtuint)
343 #define XCSTR(RTX, N, C) (RTL_CHECKC1(RTX, N, C).rtstr)
344 #define XCEXP(RTX, N, C) (RTL_CHECKC1(RTX, N, C).rtx)
345 #define XCVEC(RTX, N, C) (RTL_CHECKC1(RTX, N, C).rtvec)
346 #define XCMODE(RTX, N, C) (RTL_CHECKC1(RTX, N, C).rttype)
347 #define XCBITMAP(RTX, N, C) (RTL_CHECKC1(RTX, N, C).rtbit)
348 #define XCTREE(RTX, N, C) (RTL_CHECKC1(RTX, N, C).rttree)
349 #define XCBBDEF(RTX, N, C) (RTL_CHECKC1(RTX, N, C).bb)
350 #define XCADVFLAGS(RTX, N, C) (RTL_CHECKC1(RTX, N, C).rt_addr_diff_vec_flags)
351 #define XCCSELIB(RTX, N, C) (RTL_CHECKC1(RTX, N, C).rt_cselib)
352
353 #define XCVECEXP(RTX, N, M, C) RTVEC_ELT (XCVEC (RTX, N, C), M)
354 #define XCVECLEN(RTX, N, C) GET_NUM_ELEM (XCVEC (RTX, N, C))
355
356 #define XC2EXP(RTX, N, C1, C2) (RTL_CHECKC2(RTX, N, C1, C2).rtx)
357 \f
358 /* ACCESS MACROS for particular fields of insns. */
359
360 /* Determines whether X is an insn. */
361 #define INSN_P(X) (GET_RTX_CLASS (GET_CODE(X)) == 'i')
362
363 /* Holds a unique number for each insn.
364 These are not necessarily sequentially increasing. */
365 #define INSN_UID(INSN) XINT(INSN, 0)
366
367 /* Chain insns together in sequence. */
368 #define PREV_INSN(INSN) XEXP(INSN, 1)
369 #define NEXT_INSN(INSN) XEXP(INSN, 2)
370
371 /* The body of an insn. */
372 #define PATTERN(INSN) XEXP(INSN, 3)
373
374 /* Code number of instruction, from when it was recognized.
375 -1 means this instruction has not been recognized yet. */
376 #define INSN_CODE(INSN) XINT(INSN, 4)
377
378 /* Set up in flow.c; empty before then.
379 Holds a chain of INSN_LIST rtx's whose first operands point at
380 previous insns with direct data-flow connections to this one.
381 That means that those insns set variables whose next use is in this insn.
382 They are always in the same basic block as this insn. */
383 #define LOG_LINKS(INSN) XEXP(INSN, 5)
384
385 /* 1 if insn has been deleted. */
386 #define INSN_DELETED_P(INSN) ((INSN)->volatil)
387
388 /* 1 if insn is a call to a const function. */
389 #define CONST_CALL_P(INSN) ((INSN)->unchanging)
390
391 /* 1 if insn (assumed to be a CALL_INSN) is a sibling call. */
392 #define SIBLING_CALL_P(INSN) ((INSN)->jump)
393
394 /* 1 if insn is a branch that should not unconditionally execute its
395 delay slots, i.e., it is an annulled branch. */
396 #define INSN_ANNULLED_BRANCH_P(INSN) ((INSN)->unchanging)
397
398 /* 1 if insn is a dead code. Valid only for dead-code elimination phase. */
399 #define INSN_DEAD_CODE_P(INSN) ((INSN)->in_struct)
400
401 /* 1 if insn is in a delay slot and is from the target of the branch. If
402 the branch insn has INSN_ANNULLED_BRANCH_P set, this insn should only be
403 executed if the branch is taken. For annulled branches with this bit
404 clear, the insn should be executed only if the branch is not taken. */
405 #define INSN_FROM_TARGET_P(INSN) ((INSN)->in_struct)
406
407 #define ADDR_DIFF_VEC_FLAGS(RTX) X0ADVFLAGS(RTX, 4)
408
409 #define CSELIB_VAL_PTR(RTX) X0CSELIB(RTX, 0)
410
411 /* Holds a list of notes on what this insn does to various REGs.
412 It is a chain of EXPR_LIST rtx's, where the second operand is the
413 chain pointer and the first operand is the REG being described.
414 The mode field of the EXPR_LIST contains not a real machine mode
415 but a value from enum reg_note. */
416
417 #define REG_NOTES(INSN) XEXP(INSN, 6)
418
419 /* Don't forget to change reg_note_name in rtl.c. */
420 enum reg_note
421 {
422 /* The value in REG dies in this insn (i.e., it is not needed past
423 this insn). If REG is set in this insn, the REG_DEAD note may,
424 but need not, be omitted. */
425 REG_DEAD = 1,
426
427 /* The REG is autoincremented or autodecremented. */
428 REG_INC,
429
430 /* Describes the insn as a whole; it says that the insn sets a register
431 to a constant value or to be equivalent to a memory address. If the
432 register is spilled to the stack then the constant value should be
433 substituted for it. The contents of the REG_EQUIV is the constant
434 value or memory address, which may be different from the source of
435 the SET although it has the same value. A REG_EQUIV note may also
436 appear on an insn which copies a register parameter to a pseudo-register,
437 if there is a memory address which could be used to hold that
438 pseudo-register throughout the function. */
439 REG_EQUIV,
440
441 /* Like REG_EQUIV except that the destination is only momentarily equal
442 to the specified rtx. Therefore, it cannot be used for substitution;
443 but it can be used for cse. */
444 REG_EQUAL,
445
446 /* The register set in this insn held 0 before the insn. The contents of
447 the note is the insn that stored the 0. If that insn is deleted or
448 patched to a NOTE, the REG_WAS_0 is inoperative. The REG_WAS_0 note
449 is actually an INSN_LIST, not an EXPR_LIST. */
450 REG_WAS_0,
451
452 /* This insn copies the return-value of a library call out of the hard reg
453 for return values. This note is actually an INSN_LIST and it points to
454 the first insn involved in setting up arguments for the call. flow.c
455 uses this to delete the entire library call when its result is dead. */
456 REG_RETVAL,
457
458 /* The inverse of REG_RETVAL: it goes on the first insn of the library call
459 and points at the one that has the REG_RETVAL. This note is also an
460 INSN_LIST. */
461 REG_LIBCALL,
462
463 /* The register is always nonnegative during the containing loop. This is
464 used in branches so that decrement and branch instructions terminating
465 on zero can be matched. There must be an insn pattern in the md file
466 named `decrement_and_branch_until_zero' or else this will never be added
467 to any instructions. */
468 REG_NONNEG,
469
470 /* There is no conflict *after this insn* between the register in the note
471 and the destination of this insn. */
472 REG_NO_CONFLICT,
473
474 /* Identifies a register set in this insn and never used. */
475 REG_UNUSED,
476
477 /* REG_CC_SETTER and REG_CC_USER link a pair of insns that set and use CC0,
478 respectively. Normally, these are required to be consecutive insns, but
479 we permit putting a cc0-setting insn in the delay slot of a branch as
480 long as only one copy of the insn exists. In that case, these notes
481 point from one to the other to allow code generation to determine what
482 any require information and to properly update CC_STATUS. These notes
483 are INSN_LISTs. */
484 REG_CC_SETTER, REG_CC_USER,
485
486 /* Points to a CODE_LABEL. Used by non-JUMP_INSNs to say that the
487 CODE_LABEL contained in the REG_LABEL note is used by the insn.
488 This note is an INSN_LIST. */
489 REG_LABEL,
490
491 /* REG_DEP_ANTI and REG_DEP_OUTPUT are used in LOG_LINKS to represent
492 write-after-read and write-after-write dependencies respectively.
493 Data dependencies, which are the only type of LOG_LINK created by
494 flow, are represented by a 0 reg note kind. */
495 REG_DEP_ANTI, REG_DEP_OUTPUT,
496
497 /* REG_BR_PROB is attached to JUMP_INSNs and CALL_INSNs when the flag
498 -fbranch-probabilities is given. It has an integer value. For jumps,
499 it is the probability that this is a taken branch. For calls, it is
500 the probability that this call won't return. */
501 REG_BR_PROB,
502
503 /* REG_EXEC_COUNT is attached to the first insn of each basic block, and
504 the first insn after each CALL_INSN. It indicates how many times this
505 block was executed. */
506 REG_EXEC_COUNT,
507
508 /* Attached to a call insn; indicates that the call is malloc-like and
509 that the pointer returned cannot alias anything else. */
510 REG_NOALIAS,
511
512 /* Used to optimize rtl generated by dynamic stack allocations for targets
513 where SETJMP_VIA_SAVE_AREA is true. */
514 REG_SAVE_AREA,
515
516 /* Attached to JUMP_INSNs only, it holds the branch prediction flags
517 computed by get_jump_flags() after dbr scheduling is complete. */
518 REG_BR_PRED,
519
520 /* Attached to insns that are RTX_FRAME_RELATED_P, but are too complex
521 for DWARF to interpret what they imply. The attached rtx is used
522 instead of intuition. */
523 REG_FRAME_RELATED_EXPR,
524
525 /* Indicates that REG holds the exception context for the function.
526 This context is shared by inline functions, so the code to acquire
527 the real exception context is delayed until after inlining. */
528 REG_EH_CONTEXT,
529
530 /* Indicates what exception region an INSN belongs in. This is used to
531 indicate what region to which a call may throw. REGION 0 indicates
532 that a call cannot throw at all. REGION -1 indicates that it cannot
533 throw, nor will it execute a non-local goto. */
534 REG_EH_REGION,
535
536 /* Indicates that a call is actually a call to rethrow, and specifies the
537 rethrow symbol for the region the rethrow is targetting. This provides
538 a way to generate the non standard flow edges required for a rethrow. */
539 REG_EH_RETHROW,
540
541 /* Used by haifa-sched to save NOTE_INSN notes across scheduling. */
542 REG_SAVE_NOTE,
543
544 /* Indicates that this insn (which is part of the prologue) computes
545 a value which might not be used later, and if so it's OK to delete
546 the insn. Normally, deleting any insn in the prologue is an error.
547 At present the parameter is unused and set to (const_int 0). */
548 REG_MAYBE_DEAD,
549
550 /* Indicates that a call does not return. */
551 REG_NORETURN
552 };
553
554 /* The base value for branch probability notes. */
555 #define REG_BR_PROB_BASE 10000
556
557 /* Define macros to extract and insert the reg-note kind in an EXPR_LIST. */
558 #define REG_NOTE_KIND(LINK) ((enum reg_note) GET_MODE (LINK))
559 #define PUT_REG_NOTE_KIND(LINK,KIND) PUT_MODE(LINK, (enum machine_mode) (KIND))
560
561 /* Names for REG_NOTE's in EXPR_LIST insn's. */
562
563 extern const char * const reg_note_name[];
564 #define GET_REG_NOTE_NAME(MODE) (reg_note_name[(int) (MODE)])
565
566 /* This field is only present on CALL_INSNs. It holds a chain of EXPR_LIST of
567 USE and CLOBBER expressions.
568 USE expressions list the registers filled with arguments that
569 are passed to the function.
570 CLOBBER expressions document the registers explicitly clobbered
571 by this CALL_INSN.
572 Pseudo registers can not be mentioned in this list. */
573 #define CALL_INSN_FUNCTION_USAGE(INSN) XEXP(INSN, 7)
574
575 /* The label-number of a code-label. The assembler label
576 is made from `L' and the label-number printed in decimal.
577 Label numbers are unique in a compilation. */
578 #define CODE_LABEL_NUMBER(INSN) XINT(INSN, 5)
579
580 #define LINE_NUMBER NOTE
581
582 /* In a NOTE that is a line number, this is a string for the file name that the
583 line is in. We use the same field to record block numbers temporarily in
584 NOTE_INSN_BLOCK_BEG and NOTE_INSN_BLOCK_END notes. (We avoid lots of casts
585 between ints and pointers if we use a different macro for the block number.)
586 The NOTE_INSN_RANGE_{START,END} and NOTE_INSN_LIVE notes record their
587 information as a rtx in the field. */
588
589 #define NOTE_SOURCE_FILE(INSN) XCSTR(INSN, 3, NOTE)
590 #define NOTE_BLOCK(INSN) XCTREE(INSN, 3, NOTE)
591 #define NOTE_EH_HANDLER(INSN) XCINT(INSN, 3, NOTE)
592 #define NOTE_RANGE_INFO(INSN) XCEXP(INSN, 3, NOTE)
593 #define NOTE_LIVE_INFO(INSN) XCEXP(INSN, 3, NOTE)
594 #define NOTE_BASIC_BLOCK(INSN) XCBBDEF(INSN, 3, NOTE)
595 #define NOTE_EXPECTED_VALUE(INSN) XCEXP(INSN, 3, NOTE)
596
597 /* In a NOTE that is a line number, this is the line number.
598 Other kinds of NOTEs are identified by negative numbers here. */
599 #define NOTE_LINE_NUMBER(INSN) XCINT(INSN, 4, NOTE)
600
601 /* Nonzero if INSN is a note marking the beginning of a basic block. */
602 #define NOTE_INSN_BASIC_BLOCK_P(INSN) \
603 (GET_CODE (INSN) == NOTE \
604 && NOTE_LINE_NUMBER (INSN) == NOTE_INSN_BASIC_BLOCK)
605
606 /* Codes that appear in the NOTE_LINE_NUMBER field
607 for kinds of notes that are not line numbers.
608
609 Notice that we do not try to use zero here for any of
610 the special note codes because sometimes the source line
611 actually can be zero! This happens (for example) when we
612 are generating code for the per-translation-unit constructor
613 and destructor routines for some C++ translation unit.
614
615 If you should change any of the following values, or if you
616 should add a new value here, don't forget to change the
617 note_insn_name array in rtl.c. */
618
619 enum insn_note
620 {
621 /* Keep all of these numbers negative. Adjust as needed. */
622 NOTE_INSN_BIAS = -100,
623
624 /* This note is used to get rid of an insn
625 when it isn't safe to patch the insn out of the chain. */
626 NOTE_INSN_DELETED,
627
628 /* These are used to mark the beginning and end of a lexical block.
629 See NOTE_BLOCK, identify_blocks and reorder_blocks. */
630 NOTE_INSN_BLOCK_BEG,
631 NOTE_INSN_BLOCK_END,
632
633 /* These mark the extremes of a loop. */
634 NOTE_INSN_LOOP_BEG,
635 NOTE_INSN_LOOP_END,
636
637 /* Generated at the place in a loop that `continue' jumps to. */
638 NOTE_INSN_LOOP_CONT,
639 /* Generated at the start of a duplicated exit test. */
640 NOTE_INSN_LOOP_VTOP,
641
642 /* This kind of note is generated at the end of the function body,
643 just before the return insn or return label. In an optimizing
644 compilation it is deleted by the first jump optimization, after
645 enabling that optimizer to determine whether control can fall
646 off the end of the function body without a return statement. */
647 NOTE_INSN_FUNCTION_END,
648
649 /* This kind of note is generated just after each call to `setjmp',
650 and similar functions that can return twice. */
651 NOTE_INSN_SETJMP,
652
653 /* This marks the point immediately after the last prologue insn. */
654 NOTE_INSN_PROLOGUE_END,
655
656 /* This marks the point immediately prior to the first epilogue insn. */
657 NOTE_INSN_EPILOGUE_BEG,
658
659 /* Generated in place of user-declared labels when they are deleted. */
660 NOTE_INSN_DELETED_LABEL,
661
662 /* This note indicates the start of the real body of the function,
663 i.e. the point just after all of the parms have been moved into
664 their homes, etc. */
665 NOTE_INSN_FUNCTION_BEG,
666
667 /* These note where exception handling regions begin and end.
668 Uses NOTE_EH_HANDLER to identify the region in question. */
669 NOTE_INSN_EH_REGION_BEG,
670 NOTE_INSN_EH_REGION_END,
671
672 /* Generated whenever a duplicate line number note is output. For example,
673 one is output after the end of an inline function, in order to prevent
674 the line containing the inline call from being counted twice in gcov. */
675 NOTE_INSN_REPEATED_LINE_NUMBER,
676
677 /* Start/end of a live range region, where pseudos allocated on the stack
678 can be allocated to temporary registers. Uses NOTE_RANGE_INFO. */
679 NOTE_INSN_RANGE_BEG,
680 NOTE_INSN_RANGE_END,
681
682 /* Record which registers are currently live. Uses NOTE_LIVE_INFO. */
683 NOTE_INSN_LIVE,
684
685 /* Record the struct for the following basic block. Uses NOTE_BASIC_BLOCK. */
686 NOTE_INSN_BASIC_BLOCK,
687
688 /* Record the expected value of a register at a location. Uses
689 NOTE_EXPECTED_VALUE; stored as (eq (reg) (const_int)). */
690 NOTE_INSN_EXPECTED_VALUE,
691
692 NOTE_INSN_MAX
693 };
694
695 /* Names for NOTE insn's other than line numbers. */
696
697 extern const char * const note_insn_name[NOTE_INSN_MAX - NOTE_INSN_BIAS];
698 #define GET_NOTE_INSN_NAME(NOTE_CODE) \
699 (note_insn_name[(NOTE_CODE) - NOTE_INSN_BIAS])
700
701 /* The name of a label, in case it corresponds to an explicit label
702 in the input source code. */
703 #define LABEL_NAME(RTX) XCSTR(RTX, 6, CODE_LABEL)
704
705 /* In jump.c, each label contains a count of the number
706 of LABEL_REFs that point at it, so unused labels can be deleted. */
707 #define LABEL_NUSES(RTX) XCINT(RTX, 3, CODE_LABEL)
708
709 /* Associate a name with a CODE_LABEL. */
710 #define LABEL_ALTERNATE_NAME(RTX) XCSTR(RTX, 7, CODE_LABEL)
711
712 /* The original regno this ADDRESSOF was built for. */
713 #define ADDRESSOF_REGNO(RTX) XCUINT(RTX, 1, ADDRESSOF)
714
715 /* The variable in the register we took the address of. */
716 #define ADDRESSOF_DECL(RTX) XCTREE(RTX, 2, ADDRESSOF)
717
718 /* In jump.c, each JUMP_INSN can point to a label that it can jump to,
719 so that if the JUMP_INSN is deleted, the label's LABEL_NUSES can
720 be decremented and possibly the label can be deleted. */
721 #define JUMP_LABEL(INSN) XCEXP(INSN, 7, JUMP_INSN)
722
723 /* Once basic blocks are found in flow.c,
724 each CODE_LABEL starts a chain that goes through
725 all the LABEL_REFs that jump to that label.
726 The chain eventually winds up at the CODE_LABEL: it is circular. */
727 #define LABEL_REFS(LABEL) XCEXP(LABEL, 4, CODE_LABEL)
728 \f
729 /* This is the field in the LABEL_REF through which the circular chain
730 of references to a particular label is linked.
731 This chain is set up in flow.c. */
732
733 #define LABEL_NEXTREF(REF) XCEXP(REF, 1, LABEL_REF)
734
735 /* Once basic blocks are found in flow.c,
736 Each LABEL_REF points to its containing instruction with this field. */
737
738 #define CONTAINING_INSN(RTX) XCEXP(RTX, 2, LABEL_REF)
739
740 /* For a REG rtx, REGNO extracts the register number. */
741
742 #define REGNO(RTX) XCUINT(RTX, 0, REG)
743
744 /* For a REG rtx, REG_FUNCTION_VALUE_P is nonzero if the reg
745 is the current function's return value. */
746
747 #define REG_FUNCTION_VALUE_P(RTX) ((RTX)->integrated)
748
749 /* 1 in a REG rtx if it corresponds to a variable declared by the user. */
750 #define REG_USERVAR_P(RTX) ((RTX)->volatil)
751
752 /* 1 if the given register REG corresponds to a hard register. */
753 #define HARD_REGISTER_P(REG) (HARD_REGISTER_NUM_P (REGNO (REG)))
754
755 /* 1 if the given register number REG_NO corresponds to a hard register. */
756 #define HARD_REGISTER_NUM_P(REG_NO) (REG_NO < FIRST_PSEUDO_REGISTER)
757
758 /* For a CONST_INT rtx, INTVAL extracts the integer. */
759
760 #define INTVAL(RTX) XCWINT(RTX, 0, CONST_INT)
761
762 /* For a CONST_DOUBLE:
763 The usual two ints that hold the value.
764 For a DImode, that is all there are;
765 and CONST_DOUBLE_LOW is the low-order word and ..._HIGH the high-order.
766 For a float, the number of ints varies,
767 and CONST_DOUBLE_LOW is the one that should come first *in memory*.
768 So use &CONST_DOUBLE_LOW(r) as the address of an array of ints. */
769 #define CONST_DOUBLE_LOW(r) XCWINT (r, 2, CONST_DOUBLE)
770 #define CONST_DOUBLE_HIGH(r) XCWINT (r, 3, CONST_DOUBLE)
771
772 /* Link for chain of all CONST_DOUBLEs in use in current function. */
773 #define CONST_DOUBLE_CHAIN(r) XCEXP (r, 1, CONST_DOUBLE)
774 /* The MEM which represents this CONST_DOUBLE's value in memory,
775 or const0_rtx if no MEM has been made for it yet,
776 or cc0_rtx if it is not on the chain. */
777 #define CONST_DOUBLE_MEM(r) XCEXP (r, 0, CONST_DOUBLE)
778
779 /* For a SUBREG rtx, SUBREG_REG extracts the value we want a subreg of.
780 SUBREG_WORD extracts the word-number. */
781
782 #define SUBREG_REG(RTX) XCEXP(RTX, 0, SUBREG)
783 #define SUBREG_WORD(RTX) XCUINT(RTX, 1, SUBREG)
784
785 /* 1 if the REG contained in SUBREG_REG is already known to be
786 sign- or zero-extended from the mode of the SUBREG to the mode of
787 the reg. SUBREG_PROMOTED_UNSIGNED_P gives the signedness of the
788 extension.
789
790 When used as a LHS, is means that this extension must be done
791 when assigning to SUBREG_REG. */
792
793 #define SUBREG_PROMOTED_VAR_P(RTX) ((RTX)->in_struct)
794 #define SUBREG_PROMOTED_UNSIGNED_P(RTX) ((RTX)->unchanging)
795
796 /* Access various components of an ASM_OPERANDS rtx. */
797
798 #define ASM_OPERANDS_TEMPLATE(RTX) XCSTR ((RTX), 0, ASM_OPERANDS)
799 #define ASM_OPERANDS_OUTPUT_CONSTRAINT(RTX) XCSTR ((RTX), 1, ASM_OPERANDS)
800 #define ASM_OPERANDS_OUTPUT_IDX(RTX) XCINT ((RTX), 2, ASM_OPERANDS)
801 #define ASM_OPERANDS_INPUT_VEC(RTX) XCVEC ((RTX), 3, ASM_OPERANDS)
802 #define ASM_OPERANDS_INPUT_CONSTRAINT_VEC(RTX) XCVEC ((RTX), 4, ASM_OPERANDS)
803 #define ASM_OPERANDS_INPUT(RTX, N) XCVECEXP ((RTX), 3, (N), ASM_OPERANDS)
804 #define ASM_OPERANDS_INPUT_LENGTH(RTX) XCVECLEN ((RTX), 3, ASM_OPERANDS)
805 #define ASM_OPERANDS_INPUT_CONSTRAINT_EXP(RTX, N) \
806 XCVECEXP ((RTX), 4, (N), ASM_OPERANDS)
807 #define ASM_OPERANDS_INPUT_CONSTRAINT(RTX, N) \
808 XSTR (XCVECEXP ((RTX), 4, (N), ASM_OPERANDS), 0)
809 #define ASM_OPERANDS_INPUT_MODE(RTX, N) \
810 GET_MODE (XCVECEXP ((RTX), 4, (N), ASM_OPERANDS))
811 #define ASM_OPERANDS_SOURCE_FILE(RTX) XCSTR ((RTX), 5, ASM_OPERANDS)
812 #define ASM_OPERANDS_SOURCE_LINE(RTX) XCINT ((RTX), 6, ASM_OPERANDS)
813
814 /* For a MEM rtx, 1 if it's a volatile reference.
815 Also in an ASM_OPERANDS rtx. */
816 #define MEM_VOLATILE_P(RTX) ((RTX)->volatil)
817
818 /* For a MEM rtx, 1 if it refers to an aggregate, either to the
819 aggregate itself of to a field of the aggregate. If zero, RTX may
820 or may not be such a reference. */
821 #define MEM_IN_STRUCT_P(RTX) ((RTX)->in_struct)
822
823 /* For a MEM rtx, 1 if it refers to a scalar. If zero, RTX may or may
824 not refer to a scalar.*/
825 #define MEM_SCALAR_P(RTX) ((RTX)->frame_related)
826
827 /* If VAL is non-zero, set MEM_IN_STRUCT_P and clear MEM_SCALAR_P in
828 RTX. Otherwise, vice versa. Use this macro only when you are
829 *sure* that you know that the MEM is in a structure, or is a
830 scalar. VAL is evaluated only once. */
831 #define MEM_SET_IN_STRUCT_P(RTX, VAL) do { \
832 if (VAL) \
833 { \
834 MEM_IN_STRUCT_P (RTX) = 1; \
835 MEM_SCALAR_P (RTX) = 0; \
836 } \
837 else \
838 { \
839 MEM_IN_STRUCT_P (RTX) = 0; \
840 MEM_SCALAR_P (RTX) = 1; \
841 } \
842 } while (0)
843
844 /* For a MEM rtx, the alias set. If 0, this MEM is not in any alias
845 set, and may alias anything. Otherwise, the MEM can only alias
846 MEMs in the same alias set. This value is set in a
847 language-dependent manner in the front-end, and should not be
848 altered in the back-end. These set numbers are tested for zero,
849 and compared for equality; they have no other significance. In
850 some front-ends, these numbers may correspond in some way to types,
851 or other language-level entities, but they need not, and the
852 back-end makes no such assumptions. */
853 #define MEM_ALIAS_SET(RTX) XCWINT(RTX, 1, MEM)
854
855 /* Copy the attributes that apply to memory locations from RHS to LHS. */
856 #define MEM_COPY_ATTRIBUTES(LHS, RHS) \
857 (MEM_VOLATILE_P (LHS) = MEM_VOLATILE_P (RHS), \
858 MEM_IN_STRUCT_P (LHS) = MEM_IN_STRUCT_P (RHS), \
859 MEM_SCALAR_P (LHS) = MEM_SCALAR_P (RHS), \
860 MEM_ALIAS_SET (LHS) = MEM_ALIAS_SET (RHS), \
861 RTX_UNCHANGING_P (LHS) = RTX_UNCHANGING_P (RHS))
862
863 /* For a LABEL_REF, 1 means that this reference is to a label outside the
864 loop containing the reference. */
865 #define LABEL_OUTSIDE_LOOP_P(RTX) ((RTX)->in_struct)
866
867 /* For a LABEL_REF, 1 means it is for a nonlocal label. */
868 /* Likewise in an EXPR_LIST for a REG_LABEL note. */
869 #define LABEL_REF_NONLOCAL_P(RTX) ((RTX)->volatil)
870
871 /* For a CODE_LABEL, 1 means always consider this label to be needed. */
872 #define LABEL_PRESERVE_P(RTX) ((RTX)->in_struct)
873
874 /* For a REG, 1 means the register is used only in an exit test of a loop. */
875 #define REG_LOOP_TEST_P(RTX) ((RTX)->in_struct)
876
877 /* During sched, for an insn, 1 means that the insn must be scheduled together
878 with the preceding insn. */
879 #define SCHED_GROUP_P(INSN) ((INSN)->in_struct)
880
881 /* During sched, for the LOG_LINKS of an insn, these cache the adjusted
882 cost of the dependence link. The cost of executing an instruction
883 may vary based on how the results are used. LINK_COST_ZERO is 1 when
884 the cost through the link varies and is unchanged (i.e., the link has
885 zero additional cost). LINK_COST_FREE is 1 when the cost through the
886 link is zero (i.e., the link makes the cost free). In other cases,
887 the adjustment to the cost is recomputed each time it is needed. */
888 #define LINK_COST_ZERO(X) ((X)->jump)
889 #define LINK_COST_FREE(X) ((X)->call)
890
891 /* For a SET rtx, SET_DEST is the place that is set
892 and SET_SRC is the value it is set to. */
893 #define SET_DEST(RTX) XC2EXP(RTX, 0, SET, CLOBBER)
894 #define SET_SRC(RTX) XCEXP(RTX, 1, SET)
895
896 /* For a TRAP_IF rtx, TRAP_CONDITION is an expression. */
897 #define TRAP_CONDITION(RTX) XCEXP(RTX, 0, TRAP_IF)
898 #define TRAP_CODE(RTX) XCEXP(RTX, 1, TRAP_IF)
899
900 /* For a COND_EXEC rtx, COND_EXEC_TEST is the condition to base
901 conditionally executing the code on, COND_EXEC_CODE is the code
902 to execute if the condition is true. */
903 #define COND_EXEC_TEST(RTX) XCEXP(RTX, 0, COND_EXEC)
904 #define COND_EXEC_CODE(RTX) XCEXP(RTX, 1, COND_EXEC)
905
906 /* 1 in a SYMBOL_REF if it addresses this function's constants pool. */
907 #define CONSTANT_POOL_ADDRESS_P(RTX) ((RTX)->unchanging)
908
909 /* 1 in a SYMBOL_REF if it addresses this function's string constant pool. */
910 #define STRING_POOL_ADDRESS_P(RTX) ((RTX)->frame_related)
911
912 /* Flag in a SYMBOL_REF for machine-specific purposes. */
913 #define SYMBOL_REF_FLAG(RTX) ((RTX)->volatil)
914
915 /* 1 in a SYMBOL_REF if it represents a symbol which might have to change
916 if its inlined or unrolled. */
917 #define SYMBOL_REF_NEED_ADJUST(RTX) ((RTX)->in_struct)
918
919 /* 1 means a SYMBOL_REF has been the library function in emit_library_call. */
920 #define SYMBOL_REF_USED(RTX) ((RTX)->used)
921
922 /* Define a macro to look for REG_INC notes,
923 but save time on machines where they never exist. */
924
925 /* Don't continue this line--convex cc version 4.1 would lose. */
926 #if (defined (HAVE_PRE_INCREMENT) || defined (HAVE_PRE_DECREMENT) || defined (HAVE_POST_INCREMENT) || defined (HAVE_POST_DECREMENT))
927 #define FIND_REG_INC_NOTE(insn, reg) (find_reg_note ((insn), REG_INC, (reg)))
928 #else
929 #define FIND_REG_INC_NOTE(insn, reg) 0
930 #endif
931
932 /* Indicate whether the machine has any sort of auto increment addressing.
933 If not, we can avoid checking for REG_INC notes. */
934
935 /* Don't continue this line--convex cc version 4.1 would lose. */
936 #if (defined (HAVE_PRE_INCREMENT) || defined (HAVE_PRE_DECREMENT) || defined (HAVE_POST_INCREMENT) || defined (HAVE_POST_DECREMENT))
937 #define AUTO_INC_DEC
938 #endif
939
940 #ifndef HAVE_PRE_INCREMENT
941 #define HAVE_PRE_INCREMENT 0
942 #endif
943
944 #ifndef HAVE_PRE_DECREMENT
945 #define HAVE_PRE_DECREMENT 0
946 #endif
947
948 #ifndef HAVE_POST_INCREMENT
949 #define HAVE_POST_INCREMENT 0
950 #endif
951
952 #ifndef HAVE_POST_DECREMENT
953 #define HAVE_POST_DECREMENT 0
954 #endif
955
956 #ifndef HAVE_POST_MODIFY_DISP
957 #define HAVE_POST_MODIFY_DISP 0
958 #endif
959
960 #ifndef HAVE_POST_MODIFY_REG
961 #define HAVE_POST_MODIFY_REG 0
962 #endif
963
964 #ifndef HAVE_PRE_MODIFY_DISP
965 #define HAVE_PRE_MODIFY_DISP 0
966 #endif
967
968 #ifndef HAVE_PRE_MODIFY_REG
969 #define HAVE_PRE_MODIFY_REG 0
970 #endif
971
972
973 /* Some architectures do not have complete pre/post increment/decrement
974 instruction sets, or only move some modes efficiently. These macros
975 allow us to tune autoincrement generation. */
976
977 #ifndef USE_LOAD_POST_INCREMENT
978 #define USE_LOAD_POST_INCREMENT(MODE) HAVE_POST_INCREMENT
979 #endif
980
981 #ifndef USE_LOAD_POST_DECREMENT
982 #define USE_LOAD_POST_DECREMENT(MODE) HAVE_POST_DECREMENT
983 #endif
984
985 #ifndef USE_LOAD_PRE_INCREMENT
986 #define USE_LOAD_PRE_INCREMENT(MODE) HAVE_PRE_INCREMENT
987 #endif
988
989 #ifndef USE_LOAD_PRE_DECREMENT
990 #define USE_LOAD_PRE_DECREMENT(MODE) HAVE_PRE_DECREMENT
991 #endif
992
993 #ifndef USE_STORE_POST_INCREMENT
994 #define USE_STORE_POST_INCREMENT(MODE) HAVE_POST_INCREMENT
995 #endif
996
997 #ifndef USE_STORE_POST_DECREMENT
998 #define USE_STORE_POST_DECREMENT(MODE) HAVE_POST_DECREMENT
999 #endif
1000
1001 #ifndef USE_STORE_PRE_INCREMENT
1002 #define USE_STORE_PRE_INCREMENT(MODE) HAVE_PRE_INCREMENT
1003 #endif
1004
1005 #ifndef USE_STORE_PRE_DECREMENT
1006 #define USE_STORE_PRE_DECREMENT(MODE) HAVE_PRE_DECREMENT
1007 #endif
1008
1009
1010 /* Accessors for RANGE_INFO. */
1011 /* For RANGE_{START,END} notes return the RANGE_START note. */
1012 #define RANGE_INFO_NOTE_START(INSN) XCEXP (INSN, 0, RANGE_INFO)
1013
1014 /* For RANGE_{START,END} notes return the RANGE_START note. */
1015 #define RANGE_INFO_NOTE_END(INSN) XCEXP (INSN, 1, RANGE_INFO)
1016
1017 /* For RANGE_{START,END} notes, return the vector containing the registers used
1018 in the range. */
1019 #define RANGE_INFO_REGS(INSN) XCVEC (INSN, 2, RANGE_INFO)
1020 #define RANGE_INFO_REGS_REG(INSN, N) XCVECEXP (INSN, 2, N, RANGE_INFO)
1021 #define RANGE_INFO_NUM_REGS(INSN) XCVECLEN (INSN, 2, RANGE_INFO)
1022
1023 /* For RANGE_{START,END} notes, the number of calls within the range. */
1024 #define RANGE_INFO_NCALLS(INSN) XCINT (INSN, 3, RANGE_INFO)
1025
1026 /* For RANGE_{START,END} notes, the number of insns within the range. */
1027 #define RANGE_INFO_NINSNS(INSN) XCINT (INSN, 4, RANGE_INFO)
1028
1029 /* For RANGE_{START,END} notes, a unique # to identify this range. */
1030 #define RANGE_INFO_UNIQUE(INSN) XCINT (INSN, 5, RANGE_INFO)
1031
1032 /* For RANGE_{START,END} notes, the basic block # the range starts with. */
1033 #define RANGE_INFO_BB_START(INSN) XCINT (INSN, 6, RANGE_INFO)
1034
1035 /* For RANGE_{START,END} notes, the basic block # the range ends with. */
1036 #define RANGE_INFO_BB_END(INSN) XCINT (INSN, 7, RANGE_INFO)
1037
1038 /* For RANGE_{START,END} notes, the loop depth the range is in. */
1039 #define RANGE_INFO_LOOP_DEPTH(INSN) XCINT (INSN, 8, RANGE_INFO)
1040
1041 /* For RANGE_{START,END} notes, the bitmap of live registers at the start
1042 of the range. */
1043 #define RANGE_INFO_LIVE_START(INSN) XCBITMAP (INSN, 9, RANGE_INFO)
1044
1045 /* For RANGE_{START,END} notes, the bitmap of live registers at the end
1046 of the range. */
1047 #define RANGE_INFO_LIVE_END(INSN) XCBITMAP (INSN, 10, RANGE_INFO)
1048
1049 /* For RANGE_START notes, the marker # of the start of the range. */
1050 #define RANGE_INFO_MARKER_START(INSN) XCINT (INSN, 11, RANGE_INFO)
1051
1052 /* For RANGE_START notes, the marker # of the end of the range. */
1053 #define RANGE_INFO_MARKER_END(INSN) XCINT (INSN, 12, RANGE_INFO)
1054
1055 /* Original pseudo register # for a live range note. */
1056 #define RANGE_REG_PSEUDO(INSN,N) XCINT (XCVECEXP (INSN, 2, N, RANGE_INFO), 0, REG)
1057
1058 /* Pseudo register # original register is copied into or -1. */
1059 #define RANGE_REG_COPY(INSN,N) XCINT (XCVECEXP (INSN, 2, N, RANGE_INFO), 1, REG)
1060
1061 /* How many times a register in a live range note was referenced. */
1062 #define RANGE_REG_REFS(INSN,N) XINT (XCVECEXP (INSN, 2, N, RANGE_INFO), 2)
1063
1064 /* How many times a register in a live range note was set. */
1065 #define RANGE_REG_SETS(INSN,N) XINT (XCVECEXP (INSN, 2, N, RANGE_INFO), 3)
1066
1067 /* How many times a register in a live range note died. */
1068 #define RANGE_REG_DEATHS(INSN,N) XINT (XCVECEXP (INSN, 2, N, RANGE_INFO), 4)
1069
1070 /* Whether the original value is needed to be copied into the range register at
1071 the start of the range. */
1072 #define RANGE_REG_COPY_FLAGS(INSN,N) XINT (XCVECEXP (INSN, 2, N, RANGE_INFO), 5)
1073
1074 /* # of insns the register copy is live over. */
1075 #define RANGE_REG_LIVE_LENGTH(INSN,N) XINT (XCVECEXP (INSN, 2, N, RANGE_INFO), 6)
1076
1077 /* # of calls the register copy is live over. */
1078 #define RANGE_REG_N_CALLS(INSN,N) XINT (XCVECEXP (INSN, 2, N, RANGE_INFO), 7)
1079
1080 /* DECL_NODE pointer of the declaration if the register is a user defined
1081 variable. */
1082 #define RANGE_REG_SYMBOL_NODE(INSN,N) XTREE (XCVECEXP (INSN, 2, N, RANGE_INFO), 8)
1083
1084 /* BLOCK_NODE pointer to the block the variable is declared in if the
1085 register is a user defined variable. */
1086 #define RANGE_REG_BLOCK_NODE(INSN,N) XTREE (XCVECEXP (INSN, 2, N, RANGE_INFO), 9)
1087
1088 /* EXPR_LIST of the distinct ranges a variable is in. */
1089 #define RANGE_VAR_LIST(INSN) (XEXP (INSN, 0))
1090
1091 /* Block a variable is declared in. */
1092 #define RANGE_VAR_BLOCK(INSN) (XTREE (INSN, 1))
1093
1094 /* # of distinct ranges a variable is in. */
1095 #define RANGE_VAR_NUM(INSN) (XINT (INSN, 2))
1096
1097 /* For a NOTE_INSN_LIVE note, the registers which are currently live. */
1098 #define RANGE_LIVE_BITMAP(INSN) (XBITMAP (INSN, 0))
1099
1100 /* For a NOTE_INSN_LIVE note, the original basic block number. */
1101 #define RANGE_LIVE_ORIG_BLOCK(INSN) (XINT (INSN, 1))
1102
1103 /* Determine if the insn is a PHI node. */
1104 #define PHI_NODE_P(X) \
1105 (X && GET_CODE (X) == INSN \
1106 && GET_CODE (PATTERN (X)) == SET \
1107 && GET_CODE (SET_SRC (PATTERN (X))) == PHI)
1108 \f
1109 /* Nonzero if we need to distinguish between the return value of this function
1110 and the return value of a function called by this function. This helps
1111 integrate.c.
1112 This is 1 until after the rtl generation pass. */
1113 extern int rtx_equal_function_value_matters;
1114
1115 /* Nonzero when we are generating CONCATs. */
1116 extern int generating_concat_p;
1117
1118 /* Generally useful functions. */
1119
1120 /* The following functions accept a wide integer argument. Rather than
1121 having to cast on every function call, we use a macro instead, that is
1122 defined here and in tree.h. */
1123
1124 #ifndef exact_log2
1125 #define exact_log2(N) exact_log2_wide ((unsigned HOST_WIDE_INT) (N))
1126 #define floor_log2(N) floor_log2_wide ((unsigned HOST_WIDE_INT) (N))
1127 #endif
1128 extern int exact_log2_wide PARAMS ((unsigned HOST_WIDE_INT));
1129 extern int floor_log2_wide PARAMS ((unsigned HOST_WIDE_INT));
1130
1131 /* In expmed.c */
1132 extern int ceil_log2 PARAMS ((unsigned HOST_WIDE_INT));
1133
1134 #define plus_constant(X,C) plus_constant_wide (X, (HOST_WIDE_INT) (C))
1135
1136 #define plus_constant_for_output(X,C) \
1137 plus_constant_for_output_wide (X, (HOST_WIDE_INT) (C))
1138
1139 /* In explow.c */
1140 extern void set_stack_check_libfunc PARAMS ((rtx));
1141 extern HOST_WIDE_INT trunc_int_for_mode PARAMS ((HOST_WIDE_INT,
1142 enum machine_mode));
1143 extern rtx plus_constant_wide PARAMS ((rtx, HOST_WIDE_INT));
1144 extern rtx plus_constant_for_output_wide PARAMS ((rtx, HOST_WIDE_INT));
1145 extern void optimize_save_area_alloca PARAMS ((rtx));
1146
1147 /* In emit-rtl.c */
1148 extern rtx gen_rtx PARAMS ((enum rtx_code,
1149 enum machine_mode, ...));
1150 extern rtvec gen_rtvec PARAMS ((int, ...));
1151
1152 /* In other files */
1153 extern char *permalloc PARAMS ((int));
1154 extern rtx rtx_alloc PARAMS ((RTX_CODE));
1155 extern rtvec rtvec_alloc PARAMS ((int));
1156 extern rtx copy_insn_1 PARAMS ((rtx));
1157 extern rtx copy_insn PARAMS ((rtx));
1158
1159 /* In rtl.c */
1160 extern rtx copy_rtx PARAMS ((rtx));
1161
1162 /* In emit-rtl.c */
1163 extern rtx copy_rtx_if_shared PARAMS ((rtx));
1164
1165 /* In rtl.c */
1166 extern rtx copy_most_rtx PARAMS ((rtx, rtx));
1167 extern rtx shallow_copy_rtx PARAMS ((rtx));
1168 extern int rtx_equal_p PARAMS ((rtx, rtx));
1169
1170 /* In emit-rtl.c */
1171 extern rtvec gen_rtvec_v PARAMS ((int, rtx *));
1172 extern rtx gen_reg_rtx PARAMS ((enum machine_mode));
1173 extern rtx gen_label_rtx PARAMS ((void));
1174 extern rtx gen_lowpart_common PARAMS ((enum machine_mode, rtx));
1175 extern rtx gen_lowpart PARAMS ((enum machine_mode, rtx));
1176
1177 /* In cse.c */
1178 extern rtx gen_lowpart_if_possible PARAMS ((enum machine_mode, rtx));
1179
1180 /* In emit-rtl.c */
1181 extern rtx gen_highpart PARAMS ((enum machine_mode, rtx));
1182 extern rtx gen_realpart PARAMS ((enum machine_mode, rtx));
1183 extern rtx gen_imagpart PARAMS ((enum machine_mode, rtx));
1184 extern rtx operand_subword PARAMS ((rtx, unsigned int, int,
1185 enum machine_mode));
1186
1187 /* In emit-rtl.c */
1188 extern rtx operand_subword_force PARAMS ((rtx, unsigned int,
1189 enum machine_mode));
1190 extern int subreg_lowpart_p PARAMS ((rtx));
1191 extern rtx make_safe_from PARAMS ((rtx, rtx));
1192 extern rtx convert_memory_address PARAMS ((enum machine_mode, rtx));
1193 extern rtx memory_address PARAMS ((enum machine_mode, rtx));
1194 extern rtx get_insns PARAMS ((void));
1195 extern const char *get_insn_name PARAMS ((int));
1196 extern rtx get_last_insn PARAMS ((void));
1197 extern rtx get_last_insn_anywhere PARAMS ((void));
1198 extern void start_sequence PARAMS ((void));
1199 extern void push_to_sequence PARAMS ((rtx));
1200 extern void end_sequence PARAMS ((void));
1201 extern void push_to_full_sequence PARAMS ((rtx, rtx));
1202 extern void end_full_sequence PARAMS ((rtx*, rtx*));
1203 extern rtx gen_sequence PARAMS ((void));
1204
1205 /* In varasm.c */
1206 extern rtx immed_double_const PARAMS ((HOST_WIDE_INT, HOST_WIDE_INT, enum machine_mode));
1207 extern rtx force_const_mem PARAMS ((enum machine_mode, rtx));
1208
1209 /* In explow.c */
1210 extern rtx force_reg PARAMS ((enum machine_mode, rtx));
1211
1212 /* In varasm.c */
1213 extern rtx get_pool_constant PARAMS ((rtx));
1214 extern enum machine_mode get_pool_mode PARAMS ((rtx));
1215 extern rtx get_pool_constant_for_function PARAMS ((struct function *, rtx));
1216 extern enum machine_mode get_pool_mode_for_function PARAMS ((struct function *, rtx));
1217 extern int get_pool_offset PARAMS ((rtx));
1218 extern rtx simplify_subtraction PARAMS ((rtx));
1219
1220 /* In function.c */
1221 extern rtx assign_stack_local PARAMS ((enum machine_mode,
1222 HOST_WIDE_INT, int));
1223 extern rtx assign_stack_temp PARAMS ((enum machine_mode,
1224 HOST_WIDE_INT, int));
1225 extern rtx assign_temp PARAMS ((union tree_node *,
1226 int, int, int));
1227 /* In expr.c */
1228 extern rtx protect_from_queue PARAMS ((rtx, int));
1229 extern void emit_queue PARAMS ((void));
1230 extern rtx emit_move_insn PARAMS ((rtx, rtx));
1231
1232 /* In emit-rtl.c */
1233 extern rtx emit_insn_before PARAMS ((rtx, rtx));
1234 extern rtx emit_jump_insn_before PARAMS ((rtx, rtx));
1235 extern rtx emit_call_insn_before PARAMS ((rtx, rtx));
1236 extern rtx emit_barrier_before PARAMS ((rtx));
1237 extern rtx emit_label_before PARAMS ((rtx, rtx));
1238 extern rtx emit_note_before PARAMS ((int, rtx));
1239 extern rtx emit_insn_after PARAMS ((rtx, rtx));
1240 extern rtx emit_jump_insn_after PARAMS ((rtx, rtx));
1241 extern rtx emit_barrier_after PARAMS ((rtx));
1242 extern rtx emit_label_after PARAMS ((rtx, rtx));
1243 extern rtx emit_note_after PARAMS ((int, rtx));
1244 extern rtx emit_line_note_after PARAMS ((const char *, int, rtx));
1245 extern rtx emit_insn PARAMS ((rtx));
1246 extern rtx emit_insns PARAMS ((rtx));
1247 extern rtx emit_insns_before PARAMS ((rtx, rtx));
1248 extern rtx emit_insns_after PARAMS ((rtx, rtx));
1249 extern rtx emit_jump_insn PARAMS ((rtx));
1250 extern rtx emit_call_insn PARAMS ((rtx));
1251 extern rtx emit_label PARAMS ((rtx));
1252 extern rtx emit_barrier PARAMS ((void));
1253 extern rtx emit_line_note PARAMS ((const char *, int));
1254 extern rtx emit_note PARAMS ((const char *, int));
1255 extern rtx emit_line_note_force PARAMS ((const char *, int));
1256 extern rtx make_insn_raw PARAMS ((rtx));
1257 extern rtx previous_insn PARAMS ((rtx));
1258 extern rtx next_insn PARAMS ((rtx));
1259 extern rtx prev_nonnote_insn PARAMS ((rtx));
1260 extern rtx next_nonnote_insn PARAMS ((rtx));
1261 extern rtx prev_real_insn PARAMS ((rtx));
1262 extern rtx next_real_insn PARAMS ((rtx));
1263 extern rtx prev_active_insn PARAMS ((rtx));
1264 extern rtx next_active_insn PARAMS ((rtx));
1265 extern int active_insn_p PARAMS ((rtx));
1266 extern rtx prev_label PARAMS ((rtx));
1267 extern rtx next_label PARAMS ((rtx));
1268 extern rtx next_cc0_user PARAMS ((rtx));
1269 extern rtx prev_cc0_setter PARAMS ((rtx));
1270
1271 /* In jump.c */
1272 extern rtx next_nondeleted_insn PARAMS ((rtx));
1273 extern enum rtx_code reverse_condition PARAMS ((enum rtx_code));
1274 extern enum rtx_code reverse_condition_maybe_unordered PARAMS ((enum rtx_code));
1275 extern enum rtx_code swap_condition PARAMS ((enum rtx_code));
1276 extern enum rtx_code unsigned_condition PARAMS ((enum rtx_code));
1277 extern enum rtx_code signed_condition PARAMS ((enum rtx_code));
1278
1279 /* In reload.c */
1280 extern rtx find_equiv_reg PARAMS ((rtx, rtx, enum reg_class, int, short *, int, enum machine_mode));
1281
1282 /* In jump.c */
1283 extern rtx squeeze_notes PARAMS ((rtx, rtx));
1284 extern rtx delete_insn PARAMS ((rtx));
1285 extern void delete_jump PARAMS ((rtx));
1286 extern void delete_barrier PARAMS ((rtx));
1287 extern rtx get_label_before PARAMS ((rtx));
1288 extern rtx get_label_after PARAMS ((rtx));
1289 extern rtx follow_jumps PARAMS ((rtx));
1290
1291 /* In recog.c */
1292 extern rtx adj_offsettable_operand PARAMS ((rtx, int));
1293
1294 /* In emit-rtl.c */
1295 extern rtx try_split PARAMS ((rtx, rtx, int));
1296
1297 /* In unknown file */
1298 extern rtx split_insns PARAMS ((rtx, rtx));
1299
1300 /* In simplify-rtx.c */
1301 extern rtx simplify_unary_operation PARAMS ((enum rtx_code, enum machine_mode, rtx, enum machine_mode));
1302 extern rtx simplify_binary_operation PARAMS ((enum rtx_code, enum machine_mode, rtx, rtx));
1303 extern rtx simplify_ternary_operation PARAMS ((enum rtx_code, enum machine_mode, enum machine_mode, rtx, rtx, rtx));
1304 extern rtx simplify_relational_operation PARAMS ((enum rtx_code, enum machine_mode, rtx, rtx));
1305 extern rtx simplify_gen_binary PARAMS ((enum rtx_code, enum machine_mode,
1306 rtx, rtx));
1307 extern rtx simplify_rtx PARAMS ((rtx));
1308
1309 /* In optabs.c */
1310 extern rtx gen_move_insn PARAMS ((rtx, rtx));
1311
1312 extern rtx gen_jump PARAMS ((rtx));
1313 extern rtx gen_beq PARAMS ((rtx));
1314 extern rtx gen_bge PARAMS ((rtx));
1315 extern rtx gen_ble PARAMS ((rtx));
1316
1317 /* In function.c */
1318 extern rtx gen_mem_addressof PARAMS ((rtx, union tree_node *));
1319
1320 /* In explow.c */
1321 extern rtx eliminate_constant_term PARAMS ((rtx, rtx *));
1322
1323 /* In optabs.c */
1324 extern rtx expand_complex_abs PARAMS ((enum machine_mode, rtx, rtx,
1325 int));
1326
1327 /* In regclass.c */
1328 extern enum machine_mode choose_hard_reg_mode PARAMS ((unsigned int,
1329 unsigned int));
1330
1331 /* In emit-rtl.c */
1332 extern void set_unique_reg_note PARAMS ((rtx, enum reg_note, rtx));
1333
1334 /* Functions in rtlanal.c */
1335
1336 /* Single set is implemented as macro for performance reasons. */
1337 #define single_set(I) (INSN_P (I) \
1338 ? (GET_CODE (PATTERN (I)) == SET \
1339 ? PATTERN (I) : single_set_1 (I)) \
1340 : NULL_RTX)
1341
1342 extern int rtx_unstable_p PARAMS ((rtx));
1343 extern int rtx_varies_p PARAMS ((rtx));
1344 extern int rtx_addr_varies_p PARAMS ((rtx));
1345 extern HOST_WIDE_INT get_integer_term PARAMS ((rtx));
1346 extern rtx get_related_value PARAMS ((rtx));
1347 extern int reg_mentioned_p PARAMS ((rtx, rtx));
1348 extern int count_occurrences PARAMS ((rtx, rtx, int));
1349 extern int reg_referenced_p PARAMS ((rtx, rtx));
1350 extern int reg_used_between_p PARAMS ((rtx, rtx, rtx));
1351 extern int reg_referenced_between_p PARAMS ((rtx, rtx, rtx));
1352 extern int reg_set_between_p PARAMS ((rtx, rtx, rtx));
1353 extern int regs_set_between_p PARAMS ((rtx, rtx, rtx));
1354 extern int modified_between_p PARAMS ((rtx, rtx, rtx));
1355 extern int no_labels_between_p PARAMS ((rtx, rtx));
1356 extern int no_jumps_between_p PARAMS ((rtx, rtx));
1357 extern int modified_in_p PARAMS ((rtx, rtx));
1358 extern int insn_dependent_p PARAMS ((rtx, rtx));
1359 extern int reg_set_p PARAMS ((rtx, rtx));
1360 extern rtx single_set_1 PARAMS ((rtx));
1361 extern int multiple_sets PARAMS ((rtx));
1362 extern rtx find_last_value PARAMS ((rtx, rtx *, rtx, int));
1363 extern int refers_to_regno_p PARAMS ((unsigned int, unsigned int,
1364 rtx, rtx *));
1365 extern int reg_overlap_mentioned_p PARAMS ((rtx, rtx));
1366 extern void note_stores PARAMS ((rtx,
1367 void (*) (rtx, rtx, void *),
1368 void *));
1369 extern rtx reg_set_last PARAMS ((rtx, rtx));
1370 extern int dead_or_set_p PARAMS ((rtx, rtx));
1371 extern int dead_or_set_regno_p PARAMS ((rtx, unsigned int));
1372 extern rtx find_reg_note PARAMS ((rtx, enum reg_note, rtx));
1373 extern rtx find_regno_note PARAMS ((rtx, enum reg_note,
1374 unsigned int));
1375 extern int find_reg_fusage PARAMS ((rtx, enum rtx_code, rtx));
1376 extern int find_regno_fusage PARAMS ((rtx, enum rtx_code,
1377 unsigned int));
1378 extern void remove_note PARAMS ((rtx, rtx));
1379 extern int side_effects_p PARAMS ((rtx));
1380 extern int volatile_refs_p PARAMS ((rtx));
1381 extern int volatile_insn_p PARAMS ((rtx));
1382 extern int may_trap_p PARAMS ((rtx));
1383 extern int inequality_comparisons_p PARAMS ((rtx));
1384 extern rtx replace_rtx PARAMS ((rtx, rtx, rtx));
1385 extern rtx replace_regs PARAMS ((rtx, rtx *, unsigned int,
1386 int));
1387 extern int computed_jump_p PARAMS ((rtx));
1388 typedef int (*rtx_function) PARAMS ((rtx *, void *));
1389 extern int for_each_rtx PARAMS ((rtx *, rtx_function, void *));
1390 extern rtx regno_use_in PARAMS ((unsigned int, rtx));
1391 extern int auto_inc_p PARAMS ((rtx));
1392 extern void remove_node_from_expr_list PARAMS ((rtx, rtx *));
1393 extern int insns_safe_to_move_p PARAMS ((rtx, rtx, rtx *));
1394 extern int loc_mentioned_in_p PARAMS ((rtx *, rtx));
1395
1396 /* flow.c */
1397
1398 extern rtx find_use_as_address PARAMS ((rtx, rtx, HOST_WIDE_INT));
1399 void init_EXPR_INSN_LIST_cache PARAMS ((void));
1400 void free_EXPR_LIST_list PARAMS ((rtx *));
1401 void free_INSN_LIST_list PARAMS ((rtx *));
1402 void free_EXPR_LIST_node PARAMS ((rtx));
1403 void free_INSN_LIST_node PARAMS ((rtx));
1404 rtx alloc_INSN_LIST PARAMS ((rtx, rtx));
1405 rtx alloc_EXPR_LIST PARAMS ((int, rtx, rtx));
1406 void clear_log_links PARAMS ((rtx));
1407
1408 /* regclass.c */
1409
1410 /* Maximum number of parallel sets and clobbers in any insn in this fn.
1411 Always at least 3, since the combiner could put that many togetherm
1412 and we want this to remain correct for all the remaining passes. */
1413
1414 extern int max_parallel;
1415
1416 /* Free up register info memory. */
1417 extern void free_reg_info PARAMS ((void));
1418
1419 /* recog.c */
1420 extern int asm_noperands PARAMS ((rtx));
1421 extern const char *decode_asm_operands PARAMS ((rtx, rtx *, rtx **,
1422 const char **,
1423 enum machine_mode *));
1424
1425 extern enum reg_class reg_preferred_class PARAMS ((int));
1426 extern enum reg_class reg_alternate_class PARAMS ((int));
1427
1428 extern rtx get_first_nonparm_insn PARAMS ((void));
1429
1430 extern void split_all_insns PARAMS ((int));
1431
1432 #define MAX_SAVED_CONST_INT 64
1433 extern rtx const_int_rtx[MAX_SAVED_CONST_INT * 2 + 1];
1434
1435 #define const0_rtx (const_int_rtx[MAX_SAVED_CONST_INT])
1436 #define const1_rtx (const_int_rtx[MAX_SAVED_CONST_INT+1])
1437 #define const2_rtx (const_int_rtx[MAX_SAVED_CONST_INT+2])
1438 #define constm1_rtx (const_int_rtx[MAX_SAVED_CONST_INT-1])
1439 extern rtx const_true_rtx;
1440
1441 extern rtx const_tiny_rtx[3][(int) MAX_MACHINE_MODE];
1442
1443 /* Returns a constant 0 rtx in mode MODE. Integer modes are treated the
1444 same as VOIDmode. */
1445
1446 #define CONST0_RTX(MODE) (const_tiny_rtx[0][(int) (MODE)])
1447
1448 /* Likewise, for the constants 1 and 2. */
1449
1450 #define CONST1_RTX(MODE) (const_tiny_rtx[1][(int) (MODE)])
1451 #define CONST2_RTX(MODE) (const_tiny_rtx[2][(int) (MODE)])
1452
1453 /* If HARD_FRAME_POINTER_REGNUM is defined, then a special dummy reg
1454 is used to represent the frame pointer. This is because the
1455 hard frame pointer and the automatic variables are separated by an amount
1456 that cannot be determined until after register allocation. We can assume
1457 that in this case ELIMINABLE_REGS will be defined, one action of which
1458 will be to eliminate FRAME_POINTER_REGNUM into HARD_FRAME_POINTER_REGNUM. */
1459 #ifndef HARD_FRAME_POINTER_REGNUM
1460 #define HARD_FRAME_POINTER_REGNUM FRAME_POINTER_REGNUM
1461 #endif
1462
1463 /* Index labels for global_rtl. */
1464 enum global_rtl_index
1465 {
1466 GR_PC,
1467 GR_CC0,
1468 GR_STACK_POINTER,
1469 GR_FRAME_POINTER,
1470 /* For register elimination to work properly these hard_frame_pointer_rtx,
1471 frame_pointer_rtx, and arg_pointer_rtx must be the same if they refer to
1472 the same register. */
1473 #if FRAME_POINTER_REGNUM == ARG_POINTER_REGNUM
1474 GR_ARG_POINTER = GR_FRAME_POINTER,
1475 #endif
1476 #if HARD_FRAME_POINTER_REGNUM == FRAME_POINTER_REGNUM
1477 GR_HARD_FRAME_POINTER = GR_FRAME_POINTER,
1478 #else
1479 GR_HARD_FRAME_POINTER,
1480 #endif
1481 #if FRAME_POINTER_REGNUM != ARG_POINTER_REGNUM
1482 #if HARD_FRAME_POINTER_REGNUM == ARG_POINTER_REGNUM
1483 GR_ARG_POINTER = GR_HARD_FRAME_POINTER,
1484 #else
1485 GR_ARG_POINTER,
1486 #endif
1487 #endif
1488 GR_VIRTUAL_INCOMING_ARGS,
1489 GR_VIRTUAL_STACK_ARGS,
1490 GR_VIRTUAL_STACK_DYNAMIC,
1491 GR_VIRTUAL_OUTGOING_ARGS,
1492 GR_VIRTUAL_CFA,
1493
1494 GR_MAX
1495 };
1496
1497 /* Pointers to standard pieces of rtx are stored here. */
1498 extern rtx global_rtl[GR_MAX];
1499
1500 /* Standard pieces of rtx, to be substituted directly into things. */
1501 #define pc_rtx (global_rtl[GR_PC])
1502 #define cc0_rtx (global_rtl[GR_CC0])
1503
1504 /* All references to certain hard regs, except those created
1505 by allocating pseudo regs into them (when that's possible),
1506 go through these unique rtx objects. */
1507 #define stack_pointer_rtx (global_rtl[GR_STACK_POINTER])
1508 #define frame_pointer_rtx (global_rtl[GR_FRAME_POINTER])
1509 #define hard_frame_pointer_rtx (global_rtl[GR_HARD_FRAME_POINTER])
1510 #define arg_pointer_rtx (global_rtl[GR_ARG_POINTER])
1511
1512 extern rtx pic_offset_table_rtx;
1513 extern rtx struct_value_rtx;
1514 extern rtx struct_value_incoming_rtx;
1515 extern rtx static_chain_rtx;
1516 extern rtx static_chain_incoming_rtx;
1517 extern rtx return_address_pointer_rtx;
1518
1519 /* Include the RTL generation functions. */
1520
1521 #ifndef NO_GENRTL_H
1522 #include "genrtl.h"
1523 #endif
1524
1525 /* There are some RTL codes that require special attention; the
1526 generation functions included above do the raw handling. If you
1527 add to this list, modify special_rtx in gengenrtl.c as well. You
1528 should also modify gen_rtx to use the special function. */
1529
1530 extern rtx gen_rtx_CONST_DOUBLE PARAMS ((enum machine_mode, rtx,
1531 HOST_WIDE_INT, HOST_WIDE_INT));
1532 extern rtx gen_rtx_CONST_INT PARAMS ((enum machine_mode, HOST_WIDE_INT));
1533 extern rtx gen_rtx_REG PARAMS ((enum machine_mode, int));
1534 extern rtx gen_rtx_MEM PARAMS ((enum machine_mode, rtx));
1535
1536 /* We need the cast here to ensure that we get the same result both with
1537 and without prototypes. */
1538 #define GEN_INT(N) gen_rtx_CONST_INT (VOIDmode, (HOST_WIDE_INT) (N))
1539
1540 /* Virtual registers are used during RTL generation to refer to locations into
1541 the stack frame when the actual location isn't known until RTL generation
1542 is complete. The routine instantiate_virtual_regs replaces these with
1543 the proper value, which is normally {frame,arg,stack}_pointer_rtx plus
1544 a constant. */
1545
1546 #define FIRST_VIRTUAL_REGISTER (FIRST_PSEUDO_REGISTER)
1547
1548 /* This points to the first word of the incoming arguments passed on the stack,
1549 either by the caller or by the callee when pretending it was passed by the
1550 caller. */
1551
1552 #define virtual_incoming_args_rtx (global_rtl[GR_VIRTUAL_INCOMING_ARGS])
1553
1554 #define VIRTUAL_INCOMING_ARGS_REGNUM (FIRST_VIRTUAL_REGISTER)
1555
1556 /* If FRAME_GROWS_DOWNWARD, this points to immediately above the first
1557 variable on the stack. Otherwise, it points to the first variable on
1558 the stack. */
1559
1560 #define virtual_stack_vars_rtx (global_rtl[GR_VIRTUAL_STACK_ARGS])
1561
1562 #define VIRTUAL_STACK_VARS_REGNUM ((FIRST_VIRTUAL_REGISTER) + 1)
1563
1564 /* This points to the location of dynamically-allocated memory on the stack
1565 immediately after the stack pointer has been adjusted by the amount
1566 desired. */
1567
1568 #define virtual_stack_dynamic_rtx (global_rtl[GR_VIRTUAL_STACK_DYNAMIC])
1569
1570 #define VIRTUAL_STACK_DYNAMIC_REGNUM ((FIRST_VIRTUAL_REGISTER) + 2)
1571
1572 /* This points to the location in the stack at which outgoing arguments should
1573 be written when the stack is pre-pushed (arguments pushed using push
1574 insns always use sp). */
1575
1576 #define virtual_outgoing_args_rtx (global_rtl[GR_VIRTUAL_OUTGOING_ARGS])
1577
1578 #define VIRTUAL_OUTGOING_ARGS_REGNUM ((FIRST_VIRTUAL_REGISTER) + 3)
1579
1580 /* This points to the Canonical Frame Address of the function. This
1581 should corrospond to the CFA produced by INCOMING_FRAME_SP_OFFSET,
1582 but is calculated relative to the arg pointer for simplicity; the
1583 frame pointer nor stack pointer are necessarily fixed relative to
1584 the CFA until after reload. */
1585
1586 #define virtual_cfa_rtx (global_rtl[GR_VIRTUAL_CFA])
1587
1588 #define VIRTUAL_CFA_REGNUM ((FIRST_VIRTUAL_REGISTER) + 4)
1589
1590 #define LAST_VIRTUAL_REGISTER ((FIRST_VIRTUAL_REGISTER) + 4)
1591
1592 extern rtx find_next_ref PARAMS ((rtx, rtx));
1593 extern rtx *find_single_use PARAMS ((rtx, rtx, rtx *));
1594
1595 extern rtx output_constant_def PARAMS ((union tree_node *, int));
1596 extern rtx immed_real_const PARAMS ((union tree_node *));
1597 extern union tree_node *make_tree PARAMS ((union tree_node *, rtx));
1598
1599 /* Define a default value for STORE_FLAG_VALUE. */
1600
1601 #ifndef STORE_FLAG_VALUE
1602 #define STORE_FLAG_VALUE 1
1603 #endif
1604
1605 /* Nonzero after the second flow pass has completed.
1606 Set to 1 or 0 by toplev.c */
1607 extern int flow2_completed;
1608
1609 /* Nonzero after end of reload pass.
1610 Set to 1 or 0 by reload1.c. */
1611
1612 extern int reload_completed;
1613
1614 /* Set to 1 while reload_as_needed is operating.
1615 Required by some machines to handle any generated moves differently. */
1616
1617 extern int reload_in_progress;
1618
1619 /* If this is nonzero, we do not bother generating VOLATILE
1620 around volatile memory references, and we are willing to
1621 output indirect addresses. If cse is to follow, we reject
1622 indirect addresses so a useful potential cse is generated;
1623 if it is used only once, instruction combination will produce
1624 the same indirect address eventually. */
1625 extern int cse_not_expected;
1626
1627 /* Set to nonzero before life analysis to indicate that it is unsafe to
1628 generate any new pseudo registers. */
1629 extern int no_new_pseudos;
1630
1631 /* Translates rtx code to tree code, for those codes needed by
1632 REAL_ARITHMETIC. The function returns an int because the caller may not
1633 know what `enum tree_code' means. */
1634
1635 extern int rtx_to_tree_code PARAMS ((enum rtx_code));
1636
1637 /* In tree.c */
1638 struct obstack;
1639 extern void gcc_obstack_init PARAMS ((struct obstack *));
1640
1641 /* In cse.c */
1642 struct cse_basic_block_data;
1643
1644 /* Return the right cost to give to an operation
1645 to make the cost of the corresponding register-to-register instruction
1646 N times that of a fast register-to-register instruction. */
1647 #define COSTS_N_INSNS(N) ((N) * 4)
1648
1649 /* Maximum cost of a rtl expression. This value has the special meaning
1650 not to use an rtx with this cost under any circumstances. */
1651 #define MAX_COST INT_MAX
1652
1653 extern int rtx_cost PARAMS ((rtx, enum rtx_code));
1654 extern int address_cost PARAMS ((rtx, enum machine_mode));
1655 extern void delete_trivially_dead_insns PARAMS ((rtx, int));
1656 #ifdef BUFSIZ
1657 extern int cse_main PARAMS ((rtx, int, int, FILE *));
1658 #endif
1659 extern void cse_end_of_basic_block PARAMS ((rtx,
1660 struct cse_basic_block_data *,
1661 int, int, int));
1662
1663 /* In jump.c */
1664 extern int comparison_dominates_p PARAMS ((enum rtx_code, enum rtx_code));
1665 extern int condjump_p PARAMS ((rtx));
1666 extern int any_condjump_p PARAMS ((rtx));
1667 extern int any_uncondjump_p PARAMS ((rtx));
1668 extern int safe_to_remove_jump_p PARAMS ((rtx));
1669 extern rtx pc_set PARAMS ((rtx));
1670 extern rtx condjump_label PARAMS ((rtx));
1671 extern int simplejump_p PARAMS ((rtx));
1672 extern int returnjump_p PARAMS ((rtx));
1673 extern int onlyjump_p PARAMS ((rtx));
1674 extern int sets_cc0_p PARAMS ((rtx));
1675 extern int invert_jump_1 PARAMS ((rtx, rtx));
1676 extern int invert_jump PARAMS ((rtx, rtx, int));
1677 extern int rtx_renumbered_equal_p PARAMS ((rtx, rtx));
1678 extern int true_regnum PARAMS ((rtx));
1679 extern int redirect_jump_1 PARAMS ((rtx, rtx));
1680 extern int redirect_jump PARAMS ((rtx, rtx, int));
1681 extern void jump_optimize PARAMS ((rtx, int, int, int));
1682 extern void jump_optimize_minimal PARAMS ((rtx));
1683 extern void rebuild_jump_labels PARAMS ((rtx));
1684 extern void thread_jumps PARAMS ((rtx, int, int));
1685 extern int rtx_equal_for_thread_p PARAMS ((rtx, rtx, rtx));
1686 extern int can_reverse_comparison_p PARAMS ((rtx, rtx));
1687 extern void delete_for_peephole PARAMS ((rtx, rtx));
1688 extern int condjump_in_parallel_p PARAMS ((rtx));
1689 extern void never_reached_warning PARAMS ((rtx));
1690
1691 /* Flags for jump_optimize() */
1692 #define JUMP_CROSS_JUMP 1
1693 #define JUMP_CROSS_JUMP_DEATH_MATTERS 2
1694 #define JUMP_NOOP_MOVES 1
1695 #define JUMP_AFTER_REGSCAN 1
1696
1697 /* In emit-rtl.c. */
1698 extern int max_reg_num PARAMS ((void));
1699 extern int max_label_num PARAMS ((void));
1700 extern int get_first_label_num PARAMS ((void));
1701 extern void delete_insns_since PARAMS ((rtx));
1702 extern void mark_reg_pointer PARAMS ((rtx, int));
1703 extern void mark_user_reg PARAMS ((rtx));
1704 extern void reset_used_flags PARAMS ((rtx));
1705 extern void reorder_insns PARAMS ((rtx, rtx, rtx));
1706 extern int get_max_uid PARAMS ((void));
1707 extern int in_sequence_p PARAMS ((void));
1708 extern void force_next_line_note PARAMS ((void));
1709 extern void clear_emit_caches PARAMS ((void));
1710 extern void init_emit PARAMS ((void));
1711 extern void init_emit_once PARAMS ((int));
1712 extern void push_topmost_sequence PARAMS ((void));
1713 extern void pop_topmost_sequence PARAMS ((void));
1714 extern int subreg_realpart_p PARAMS ((rtx));
1715 extern void reverse_comparison PARAMS ((rtx));
1716 extern void set_new_first_and_last_insn PARAMS ((rtx, rtx));
1717 extern void set_new_first_and_last_label_num PARAMS ((int, int));
1718 extern void set_new_last_label_num PARAMS ((int));
1719 extern void unshare_all_rtl_again PARAMS ((rtx));
1720 extern void set_last_insn PARAMS ((rtx));
1721 extern void link_cc0_insns PARAMS ((rtx));
1722 extern void add_insn PARAMS ((rtx));
1723 extern void add_insn_before PARAMS ((rtx, rtx));
1724 extern void add_insn_after PARAMS ((rtx, rtx));
1725 extern void remove_insn PARAMS ((rtx));
1726 extern void reorder_insns_with_line_notes PARAMS ((rtx, rtx, rtx));
1727 extern void emit_insn_after_with_line_notes PARAMS ((rtx, rtx, rtx));
1728 extern enum rtx_code classify_insn PARAMS ((rtx));
1729 extern rtx emit PARAMS ((rtx));
1730 /* Query and clear/ restore no_line_numbers. This is used by the
1731 switch / case handling in stmt.c to give proper line numbers in
1732 warnings about unreachable code. */
1733 int force_line_numbers PARAMS ((void));
1734 void restore_line_number_status PARAMS ((int old_value));
1735 extern void renumber_insns PARAMS ((FILE *));
1736 extern void remove_unnecessary_notes PARAMS ((void));
1737
1738 /* In insn-emit.c */
1739 extern void add_clobbers PARAMS ((rtx, int));
1740
1741 /* In combine.c */
1742 extern int combine_instructions PARAMS ((rtx, unsigned int));
1743 extern unsigned int extended_count PARAMS ((rtx, enum machine_mode, int));
1744 extern rtx remove_death PARAMS ((unsigned int, rtx));
1745 #ifdef BUFSIZ
1746 extern void dump_combine_stats PARAMS ((FILE *));
1747 extern void dump_combine_total_stats PARAMS ((FILE *));
1748 #endif
1749
1750 /* In sched.c. */
1751 #ifdef BUFSIZ
1752 extern void schedule_insns PARAMS ((FILE *));
1753 #endif
1754 extern void fix_sched_param PARAMS ((const char *, const char *));
1755
1756 /* In print-rtl.c */
1757 extern const char *print_rtx_head;
1758 extern void debug_rtx PARAMS ((rtx));
1759 extern void debug_rtx_list PARAMS ((rtx, int));
1760 extern void debug_rtx_range PARAMS ((rtx, rtx));
1761 extern rtx debug_rtx_find PARAMS ((rtx, int));
1762 #ifdef BUFSIZ
1763 extern void print_rtl PARAMS ((FILE *, rtx));
1764 extern int print_rtl_single PARAMS ((FILE *, rtx));
1765 extern void print_inline_rtx PARAMS ((FILE *, rtx, int));
1766 #endif
1767
1768 /* In loop.c */
1769 extern void init_loop PARAMS ((void));
1770 extern rtx libcall_other_reg PARAMS ((rtx, rtx));
1771 #ifdef BUFSIZ
1772 extern void loop_optimize PARAMS ((rtx, FILE *, int));
1773 #endif
1774 extern void record_excess_regs PARAMS ((rtx, rtx, rtx *));
1775
1776 /* In function.c */
1777 extern void reposition_prologue_and_epilogue_notes PARAMS ((rtx));
1778 extern void thread_prologue_and_epilogue_insns PARAMS ((rtx));
1779 extern int prologue_epilogue_contains PARAMS ((rtx));
1780 extern int sibcall_epilogue_contains PARAMS ((rtx));
1781 extern HOST_WIDE_INT get_frame_size PARAMS ((void));
1782 extern void preserve_rtl_expr_result PARAMS ((rtx));
1783 extern void mark_temp_addr_taken PARAMS ((rtx));
1784 extern void update_temp_slot_address PARAMS ((rtx, rtx));
1785 extern void purge_addressof PARAMS ((rtx));
1786 extern void purge_hard_subreg_sets PARAMS ((rtx));
1787
1788 /* In reload.c */
1789 extern int operands_match_p PARAMS ((rtx, rtx));
1790 extern int safe_from_earlyclobber PARAMS ((rtx, rtx));
1791
1792 /* In stmt.c */
1793 extern void set_file_and_line_for_stmt PARAMS ((const char *, int));
1794 extern void expand_null_return PARAMS ((void));
1795 extern void emit_jump PARAMS ((rtx));
1796 extern int preserve_subexpressions_p PARAMS ((void));
1797
1798 /* In expr.c */
1799 extern void init_expr_once PARAMS ((void));
1800 extern void move_by_pieces PARAMS ((rtx, rtx,
1801 unsigned HOST_WIDE_INT,
1802 unsigned int));
1803
1804 /* In flow.c */
1805 extern void recompute_reg_usage PARAMS ((rtx, int));
1806 #ifdef BUFSIZ
1807 extern void print_rtl_with_bb PARAMS ((FILE *, rtx));
1808 extern void dump_flow_info PARAMS ((FILE *));
1809 #endif
1810
1811 /* In expmed.c */
1812 extern void init_expmed PARAMS ((void));
1813 extern void expand_inc PARAMS ((rtx, rtx));
1814 extern void expand_dec PARAMS ((rtx, rtx));
1815 extern rtx expand_mult_highpart PARAMS ((enum machine_mode, rtx,
1816 unsigned HOST_WIDE_INT, rtx,
1817 int, int));
1818
1819 /* In gcse.c */
1820 #ifdef BUFSIZ
1821 extern int gcse_main PARAMS ((rtx, FILE *));
1822 #endif
1823
1824 /* In global.c */
1825 extern void mark_elimination PARAMS ((int, int));
1826 #ifdef BUFSIZ
1827 extern int global_alloc PARAMS ((FILE *));
1828 extern void dump_global_regs PARAMS ((FILE *));
1829 #endif
1830 #ifdef HARD_CONST
1831 extern void retry_global_alloc PARAMS ((int, HARD_REG_SET));
1832 #endif
1833 extern void build_insn_chain PARAMS ((rtx));
1834
1835 /* In regclass.c */
1836 extern int reg_classes_intersect_p PARAMS ((enum reg_class, enum reg_class));
1837 extern int reg_class_subset_p PARAMS ((enum reg_class, enum reg_class));
1838 extern void globalize_reg PARAMS ((int));
1839 extern void init_regs PARAMS ((void));
1840 extern void init_reg_sets PARAMS ((void));
1841 extern void regset_release_memory PARAMS ((void));
1842 extern void regclass_init PARAMS ((void));
1843 extern void regclass PARAMS ((rtx, int, FILE *));
1844 extern void reg_scan PARAMS ((rtx, unsigned int, int));
1845 extern void reg_scan_update PARAMS ((rtx, rtx, unsigned int));
1846 extern void fix_register PARAMS ((const char *, int, int));
1847
1848 extern void delete_null_pointer_checks PARAMS ((rtx));
1849
1850 /* In regmove.c */
1851 #ifdef BUFSIZ
1852 extern void regmove_optimize PARAMS ((rtx, int, FILE *));
1853 #endif
1854 extern void combine_stack_adjustments PARAMS ((void));
1855
1856 /* In reorg.c */
1857 #ifdef BUFSIZ
1858 extern void dbr_schedule PARAMS ((rtx, FILE *));
1859 #endif
1860
1861 /* In optabs.c */
1862 extern void init_optabs PARAMS ((void));
1863
1864 /* In local-alloc.c */
1865 #ifdef BUFSIZ
1866 extern void dump_local_alloc PARAMS ((FILE *));
1867 #endif
1868 extern int local_alloc PARAMS ((void));
1869 extern int function_invariant_p PARAMS ((rtx));
1870
1871 /* In reload1.c */
1872 extern void reload_cse_regs PARAMS ((rtx));
1873 extern void init_reload PARAMS ((void));
1874 extern void mark_home_live PARAMS ((int));
1875 extern int reload PARAMS ((rtx, int));
1876
1877 /* In caller-save.c */
1878 extern void init_caller_save PARAMS ((void));
1879
1880 /* In profile.c */
1881 extern void init_branch_prob PARAMS ((const char *));
1882 extern void branch_prob PARAMS ((void));
1883 extern void end_branch_prob PARAMS ((void));
1884 extern void output_func_start_profiler PARAMS ((void));
1885
1886 /* In reg-stack.c */
1887 #ifdef BUFSIZ
1888 extern void reg_to_stack PARAMS ((rtx, FILE *));
1889 #endif
1890
1891 /* In fold-const.c */
1892 extern int add_double PARAMS ((unsigned HOST_WIDE_INT, HOST_WIDE_INT,
1893 unsigned HOST_WIDE_INT, HOST_WIDE_INT,
1894 unsigned HOST_WIDE_INT *,
1895 HOST_WIDE_INT *));
1896 extern int neg_double PARAMS ((unsigned HOST_WIDE_INT, HOST_WIDE_INT,
1897 unsigned HOST_WIDE_INT *,
1898 HOST_WIDE_INT *));
1899 extern int mul_double PARAMS ((unsigned HOST_WIDE_INT,
1900 HOST_WIDE_INT,
1901 unsigned HOST_WIDE_INT, HOST_WIDE_INT,
1902 unsigned HOST_WIDE_INT *,
1903 HOST_WIDE_INT *));
1904 extern void lshift_double PARAMS ((unsigned HOST_WIDE_INT, HOST_WIDE_INT,
1905 HOST_WIDE_INT, unsigned int,
1906 unsigned HOST_WIDE_INT *,
1907 HOST_WIDE_INT *, int));
1908 extern void rshift_double PARAMS ((unsigned HOST_WIDE_INT, HOST_WIDE_INT,
1909 HOST_WIDE_INT, unsigned int,
1910 unsigned HOST_WIDE_INT *,
1911 HOST_WIDE_INT *, int));
1912 extern void lrotate_double PARAMS ((unsigned HOST_WIDE_INT, HOST_WIDE_INT,
1913 HOST_WIDE_INT, unsigned int,
1914 unsigned HOST_WIDE_INT *,
1915 HOST_WIDE_INT *));
1916 extern void rrotate_double PARAMS ((unsigned HOST_WIDE_INT, HOST_WIDE_INT,
1917 HOST_WIDE_INT, unsigned int,
1918 unsigned HOST_WIDE_INT *,
1919 HOST_WIDE_INT *));
1920
1921 /* In calls.c */
1922 enum libcall_type
1923 {
1924 LCT_NORMAL = 0,
1925 LCT_CONST = 1,
1926 LCT_PURE = 2,
1927 LCT_CONST_MAKE_BLOCK = 3,
1928 LCT_PURE_MAKE_BLOCK = 4
1929 };
1930
1931 extern void emit_library_call PARAMS ((rtx, enum libcall_type,
1932 enum machine_mode, int,
1933 ...));
1934 extern rtx emit_library_call_value PARAMS ((rtx, rtx, enum libcall_type,
1935 enum machine_mode, int,
1936 ...));
1937
1938 /* In unroll.c */
1939 extern int set_dominates_use PARAMS ((int, int, int, rtx, rtx));
1940
1941 /* In varasm.c */
1942 extern void bss_section PARAMS ((void));
1943 extern int in_data_section PARAMS ((void));
1944 extern int supports_one_only PARAMS ((void));
1945 extern void init_varasm_once PARAMS ((void));
1946
1947 /* In rtl.c */
1948 extern void init_rtl PARAMS ((void));
1949 extern void traverse_md_constants PARAMS ((int (*) (void **, void *),
1950 void *));
1951 struct md_constant { char *name, *value; };
1952
1953 #ifdef BUFSIZ
1954 extern int read_skip_spaces PARAMS ((FILE *));
1955 extern rtx read_rtx PARAMS ((FILE *));
1956 #endif
1957
1958 extern const char *read_rtx_filename;
1959 extern int read_rtx_lineno;
1960
1961 /* Redefine abort to report an internal error w/o coredump, and
1962 reporting the location of the error in the source file. This logic
1963 is duplicated in rtl.h and tree.h because every file that needs the
1964 special abort includes one or both. toplev.h gets too few files,
1965 system.h gets too many. */
1966
1967 extern void fancy_abort PARAMS ((const char *, int, const char *))
1968 ATTRIBUTE_NORETURN;
1969 #define abort() fancy_abort (__FILE__, __LINE__, __FUNCTION__)
1970
1971 /* In alias.c */
1972 extern rtx canon_rtx PARAMS ((rtx));
1973 extern int true_dependence PARAMS ((rtx, enum machine_mode, rtx,
1974 int (*)(rtx)));
1975 extern int read_dependence PARAMS ((rtx, rtx));
1976 extern int anti_dependence PARAMS ((rtx, rtx));
1977 extern int output_dependence PARAMS ((rtx, rtx));
1978 extern void mark_constant_function PARAMS ((void));
1979 extern void init_alias_once PARAMS ((void));
1980 extern void init_alias_analysis PARAMS ((void));
1981 extern void end_alias_analysis PARAMS ((void));
1982 extern rtx addr_side_effect_eval PARAMS ((rtx, int, int));
1983
1984 /* In sibcall.c */
1985 typedef enum {
1986 sibcall_use_normal = 1,
1987 sibcall_use_tail_recursion,
1988 sibcall_use_sibcall
1989 } sibcall_use_t;
1990
1991 extern void optimize_sibling_and_tail_recursive_calls PARAMS ((void));
1992 extern void replace_call_placeholder PARAMS ((rtx, sibcall_use_t));
1993
1994 #ifdef STACK_REGS
1995 extern int stack_regs_mentioned PARAMS ((rtx insn));
1996 #endif
1997
1998 /* In toplev.c */
1999 extern rtx stack_limit_rtx;
2000
2001 /* In regrename.c */
2002 extern void regrename_optimize PARAMS ((void));
2003
2004 /* In condexec.c */
2005 extern void if_convert PARAMS ((int));
2006
2007 #endif /* _RTL_H */