expr.h 43.7 KB
Newer Older
Richard Kenner committed
1
/* Definitions for code generation pass of GNU compiler.
Jeff Law committed
2 3
   Copyright (C) 1987, 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998,
   1999, 2000 Free Software Foundation, Inc.
Richard Kenner committed
4 5 6 7 8 9 10 11 12 13 14 15 16 17 18

This file is part of GNU CC.

GNU CC is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 2, or (at your option)
any later version.

GNU CC is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
GNU General Public License for more details.

You should have received a copy of the GNU General Public License
along with GNU CC; see the file COPYING.  If not, write to
Richard Kenner committed
19 20
the Free Software Foundation, 59 Temple Place - Suite 330,
Boston, MA 02111-1307, USA.  */
Richard Kenner committed
21 22 23 24 25 26 27 28 29 30 31 32 33

/* The default branch cost is 1.  */
#ifndef BRANCH_COST
#define BRANCH_COST 1
#endif

/* Macros to access the slots of a QUEUED rtx.
   Here rather than in rtl.h because only the expansion pass
   should ever encounter a QUEUED.  */

/* The variable for which an increment is queued.  */
#define QUEUED_VAR(P) XEXP (P, 0)
/* If the increment has been emitted, this is the insn
34 35
   that does the increment.  It is zero before the increment is emitted.
   If more than one insn is emitted, this is the first insn.  */
Richard Kenner committed
36 37 38 39 40 41 42 43 44 45 46 47 48 49
#define QUEUED_INSN(P) XEXP (P, 1)
/* If a pre-increment copy has been generated, this is the copy
   (it is a temporary reg).  Zero if no copy made yet.  */
#define QUEUED_COPY(P) XEXP (P, 2)
/* This is the body to use for the insn to do the increment.
   It is used to emit the increment.  */
#define QUEUED_BODY(P) XEXP (P, 3)
/* Next QUEUED in the queue.  */
#define QUEUED_NEXT(P) XEXP (P, 4)

/* This is the 4th arg to `expand_expr'.
   EXPAND_SUM means it is ok to return a PLUS rtx or MULT rtx.
   EXPAND_INITIALIZER is similar but also record any labels on forced_labels.
   EXPAND_CONST_ADDRESS means it is ok to return a MEM whose address
50 51
    is a constant that is not a legitimate address.
   EXPAND_MEMORY_USE_* are explained below.  */
Richard Kenner committed
52
enum expand_modifier {EXPAND_NORMAL, EXPAND_SUM,
53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70
		      EXPAND_CONST_ADDRESS, EXPAND_INITIALIZER,
		      EXPAND_MEMORY_USE_WO, EXPAND_MEMORY_USE_RW,
		      EXPAND_MEMORY_USE_BAD, EXPAND_MEMORY_USE_DONT};

/* Argument for chkr_* functions.
   MEMORY_USE_RO: the pointer reads memory.
   MEMORY_USE_WO: the pointer writes to memory.
   MEMORY_USE_RW: the pointer modifies memory (ie it reads and writes). An
                  example is (*ptr)++
   MEMORY_USE_BAD: use this if you don't know the behavior of the pointer, or
                   if you know there are no pointers.  Using an INDIRECT_REF
                   with MEMORY_USE_BAD will abort.
   MEMORY_USE_TW: just test for writing, without update.  Special.
   MEMORY_USE_DONT: the memory is neither read nor written.  This is used by
   		   '->' and '.'.  */
enum memory_use_mode {MEMORY_USE_BAD = 0, MEMORY_USE_RO = 1,
		      MEMORY_USE_WO = 2, MEMORY_USE_RW = 3,
		      MEMORY_USE_TW = 6, MEMORY_USE_DONT = 99};
Richard Kenner committed
71

72 73 74 75 76 77 78
/* Prevent the compiler from deferring stack pops.  See
   inhibit_defer_pop for more information.  */
#define NO_DEFER_POP (inhibit_defer_pop += 1)

/* Allow the compiler to defer stack pops.  See inhibit_defer_pop for
   more information.  */
#define OK_DEFER_POP (inhibit_defer_pop -= 1)
Richard Kenner committed
79 80 81

#ifdef TREE_CODE /* Don't lose if tree.h not included.  */
/* Structure to record the size of a sequence of arguments
82 83 84
   as the sum of a tree-expression and a constant.  This structure is
   also used to store offsets from the stack, which might be negative,
   so the variable part must be ssizetype, not sizetype.  */
Richard Kenner committed
85 86 87

struct args_size
{
88
  HOST_WIDE_INT constant;
Richard Kenner committed
89 90 91 92 93 94 95 96
  tree var;
};
#endif

/* Add the value of the tree INC to the `struct args_size' TO.  */

#define ADD_PARM_SIZE(TO, INC)	\
{ tree inc = (INC);				\
97 98
  if (host_integerp (inc, 0))			\
    (TO).constant += tree_low_cst (inc, 0);	\
Richard Kenner committed
99 100 101 102 103 104 105
  else if ((TO).var == 0)			\
    (TO).var = inc;				\
  else						\
    (TO).var = size_binop (PLUS_EXPR, (TO).var, inc); }

#define SUB_PARM_SIZE(TO, DEC)	\
{ tree dec = (DEC);				\
106 107
  if (host_integerp (dec, 0))			\
    (TO).constant -= tree_low_cst (dec, 0);	\
Richard Kenner committed
108
  else if ((TO).var == 0)			\
109
    (TO).var = size_binop (MINUS_EXPR, ssize_int (0), dec); \
Richard Kenner committed
110 111 112
  else						\
    (TO).var = size_binop (MINUS_EXPR, (TO).var, dec); }

113 114 115 116 117 118
/* Convert the implicit sum in a `struct args_size' into a tree
   of type ssizetype.  */
#define ARGS_SIZE_TREE(SIZE)					\
((SIZE).var == 0 ? ssize_int ((SIZE).constant)			\
 : size_binop (PLUS_EXPR, (SIZE).var, ssize_int ((SIZE).constant)))

Richard Kenner committed
119
/* Convert the implicit sum in a `struct args_size' into an rtx.  */
120 121 122 123
#define ARGS_SIZE_RTX(SIZE)					\
((SIZE).var == 0 ? GEN_INT ((SIZE).constant)			\
 : expand_expr (ARGS_SIZE_TREE (SIZE), NULL_RTX, VOIDmode,	\
		EXPAND_MEMORY_USE_BAD))
Richard Kenner committed
124 125

/* Supply a default definition for FUNCTION_ARG_PADDING:
Richard Stallman committed
126
   usually pad upward, but pad short args downward on
Richard Kenner committed
127 128 129 130 131 132
   big-endian machines.  */

enum direction {none, upward, downward};  /* Value has this type.  */

#ifndef FUNCTION_ARG_PADDING
#define FUNCTION_ARG_PADDING(MODE, TYPE)				\
133 134 135 136 137 138 139
  (! BYTES_BIG_ENDIAN							\
   ? upward								\
   : (((MODE) == BLKmode						\
       ? ((TYPE) && TREE_CODE (TYPE_SIZE (TYPE)) == INTEGER_CST		\
	  && int_size_in_bytes (TYPE) < (PARM_BOUNDARY / BITS_PER_UNIT)) \
       : GET_MODE_BITSIZE (MODE) < PARM_BOUNDARY)			\
      ? downward : upward))
Richard Kenner committed
140 141 142 143 144 145 146 147 148 149
#endif

/* Supply a default definition for FUNCTION_ARG_BOUNDARY.  Normally, we let
   FUNCTION_ARG_PADDING, which also pads the length, handle any needed
   alignment.  */
  
#ifndef FUNCTION_ARG_BOUNDARY
#define FUNCTION_ARG_BOUNDARY(MODE, TYPE)	PARM_BOUNDARY
#endif

150 151 152 153 154
/* Provide a default value for STRICT_ARGUMENT_NAMING.  */
#ifndef STRICT_ARGUMENT_NAMING
#define STRICT_ARGUMENT_NAMING 0
#endif

155 156 157 158 159 160 161 162 163 164 165
/* Provide a default value for PRETEND_OUTGOING_VARARGS_NAMED.  */
#ifdef SETUP_INCOMING_VARARGS
#ifndef PRETEND_OUTGOING_VARARGS_NAMED
#define PRETEND_OUTGOING_VARARGS_NAMED 1
#endif
#else
/* It is an error to define PRETEND_OUTGOING_VARARGS_NAMED without
   defining SETUP_INCOMING_VARARGS.  */
#define PRETEND_OUTGOING_VARARGS_NAMED 0
#endif

Richard Kenner committed
166 167 168 169 170 171 172
/* Nonzero if we do not know how to pass TYPE solely in registers.
   We cannot do so in the following cases:

   - if the type has variable size
   - if the type is marked as addressable (it is required to be constructed
     into the stack)
   - if the padding and mode of the type is such that a copy into a register
173 174
     would put it into the wrong part of the register.

175
   Which padding can't be supported depends on the byte endianness.
Richard Kenner committed
176

177
   A value in a register is implicitly padded at the most significant end.
Richard Kenner committed
178 179 180 181
   On a big-endian machine, that is the lower end in memory.
   So a value padded in memory at the upper end can't go in a register.
   For a little-endian machine, the reverse is true.  */

182
#ifndef MUST_PASS_IN_STACK
Richard Kenner committed
183 184 185 186 187
#define MUST_PASS_IN_STACK(MODE,TYPE)			\
  ((TYPE) != 0						\
   && (TREE_CODE (TYPE_SIZE (TYPE)) != INTEGER_CST	\
       || TREE_ADDRESSABLE (TYPE)			\
       || ((MODE) == BLKmode 				\
188 189 190
	   && ! ((TYPE) != 0 && TREE_CODE (TYPE_SIZE (TYPE)) == INTEGER_CST \
		 && 0 == (int_size_in_bytes (TYPE)	\
			  % (PARM_BOUNDARY / BITS_PER_UNIT))) \
Richard Kenner committed
191
	   && (FUNCTION_ARG_PADDING (MODE, TYPE)	\
192
	       == (BYTES_BIG_ENDIAN ? upward : downward)))))
193
#endif
Richard Kenner committed
194

195
/* Nonzero if type TYPE should be returned in memory.
Richard Kenner committed
196 197 198
   Most machines can use the following default definition.  */

#ifndef RETURN_IN_MEMORY
199
#define RETURN_IN_MEMORY(TYPE) (TYPE_MODE (TYPE) == BLKmode)
Richard Kenner committed
200
#endif
201

202 203 204 205 206 207 208
/* Supply a default definition of STACK_SAVEAREA_MODE for emit_stack_save.
   Normally move_insn, so Pmode stack pointer.  */

#ifndef STACK_SAVEAREA_MODE
#define STACK_SAVEAREA_MODE(LEVEL) Pmode
#endif

209 210 211 212 213 214 215
/* Supply a default definition of STACK_SIZE_MODE for
   allocate_dynamic_stack_space.  Normally PLUS/MINUS, so word_mode.  */

#ifndef STACK_SIZE_MODE
#define STACK_SIZE_MODE word_mode
#endif

216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254
/* Provide default values for the macros controlling stack checking.  */

#ifndef STACK_CHECK_BUILTIN
#define STACK_CHECK_BUILTIN 0
#endif

/* The default interval is one page.  */
#ifndef STACK_CHECK_PROBE_INTERVAL
#define STACK_CHECK_PROBE_INTERVAL 4096
#endif

/* The default is to do a store into the stack.  */
#ifndef STACK_CHECK_PROBE_LOAD
#define STACK_CHECK_PROBE_LOAD 0
#endif

/* This value is arbitrary, but should be sufficient for most machines.  */
#ifndef STACK_CHECK_PROTECT
#define STACK_CHECK_PROTECT (75 * UNITS_PER_WORD)
#endif

/* Make the maximum frame size be the largest we can and still only need
   one probe per function.  */
#ifndef STACK_CHECK_MAX_FRAME_SIZE
#define STACK_CHECK_MAX_FRAME_SIZE \
  (STACK_CHECK_PROBE_INTERVAL - UNITS_PER_WORD)
#endif

/* This is arbitrary, but should be large enough everywhere.  */
#ifndef STACK_CHECK_FIXED_FRAME_SIZE
#define STACK_CHECK_FIXED_FRAME_SIZE (4 * UNITS_PER_WORD)
#endif

/* Provide a reasonable default for the maximum size of an object to
   allocate in the fixed frame.  We may need to be able to make this
   controllable by the user at some point.  */
#ifndef STACK_CHECK_MAX_VAR_SIZE
#define STACK_CHECK_MAX_VAR_SIZE (STACK_CHECK_MAX_FRAME_SIZE / 100)
#endif
Richard Kenner committed
255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291

/* Optabs are tables saying how to generate insn bodies
   for various machine modes and numbers of operands.
   Each optab applies to one operation.
   For example, add_optab applies to addition.

   The insn_code slot is the enum insn_code that says how to
   generate an insn for this operation on a particular machine mode.
   It is CODE_FOR_nothing if there is no such insn on the target machine.

   The `lib_call' slot is the name of the library function that
   can be used to perform the operation.

   A few optabs, such as move_optab and cmp_optab, are used
   by special code.  */

/* Everything that uses expr.h needs to define enum insn_code
   but we don't list it in the Makefile dependencies just for that.  */
#include "insn-codes.h"

typedef struct optab
{
  enum rtx_code code;
  struct {
    enum insn_code insn_code;
    rtx libfunc;
  } handlers [NUM_MACHINE_MODES];
} * optab;

/* Given an enum insn_code, access the function to construct
   the body of that kind of insn.  */
#ifdef FUNCTION_CONVERSION_BUG
/* Some compilers fail to convert a function properly to a
   pointer-to-function when used as an argument.
   So produce the pointer-to-function directly.
   Luckily, these compilers seem to work properly when you
   call the pointer-to-function.  */
292
#define GEN_FCN(CODE) (insn_data[(int) (CODE)].genfun)
Richard Kenner committed
293
#else
294
#define GEN_FCN(CODE) (*insn_data[(int) (CODE)].genfun)
Richard Kenner committed
295 296
#endif

297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318 319 320 321 322 323 324 325 326 327 328 329 330 331 332 333 334 335 336 337 338 339 340 341 342 343 344 345 346 347 348 349 350 351 352 353 354 355 356 357 358 359 360 361 362 363 364 365 366 367 368 369 370 371 372 373 374 375 376 377 378 379 380 381 382
/* Enumeration of valid indexes into optab_table.  */
enum optab_index
{
  OTI_add,
  OTI_sub,

  /* Signed and fp multiply */
  OTI_smul,
  /* Signed multiply, return high word */
  OTI_smul_highpart,
  OTI_umul_highpart,
  /* Signed multiply with result one machine mode wider than args */
  OTI_smul_widen,
  OTI_umul_widen,

  /* Signed divide */
  OTI_sdiv,
  /* Signed divide-and-remainder in one */
  OTI_sdivmod,
  OTI_udiv,
  OTI_udivmod,
  /* Signed remainder */
  OTI_smod,
  OTI_umod,
  /* Optab for floating divide. */
  OTI_flodiv,
  /* Convert float to integer in float fmt */
  OTI_ftrunc,

  /* Logical and */
  OTI_and,
  /* Logical or */
  OTI_ior,
  /* Logical xor */
  OTI_xor,

  /* Arithmetic shift left */
  OTI_ashl,
  /* Logical shift right */
  OTI_lshr,  
  /* Arithmetic shift right */
  OTI_ashr,
  /* Rotate left */
  OTI_rotl,
  /* Rotate right */
  OTI_rotr,
  /* Signed and floating-point minimum value */
  OTI_smin,
  /* Signed and floating-point maximum value */
  OTI_smax,
  /* Unsigned minimum value */
  OTI_umin,
  /* Unsigned maximum value */
  OTI_umax,

  /* Move instruction.  */
  OTI_mov,
  /* Move, preserving high part of register.  */
  OTI_movstrict,

  /* Unary operations */
  /* Negation */
  OTI_neg,
  /* Abs value */
  OTI_abs,
  /* Bitwise not */
  OTI_one_cmpl,
  /* Find first bit set */
  OTI_ffs,
  /* Square root */
  OTI_sqrt,
  /* Sine */
  OTI_sin,
  /* Cosine */
  OTI_cos,

  /* Compare insn; two operands.  */
  OTI_cmp,
  /* Used only for libcalls for unsigned comparisons.  */
  OTI_ucmp,
  /* tst insn; compare one operand against 0 */
  OTI_tst,

  /* String length */
  OTI_strlen,

383 384 385 386 387
  /* Combined compare & jump/store flags/move operations.  */
  OTI_cbranch,
  OTI_cmov,
  OTI_cstore,
    
388 389 390 391 392 393 394 395 396 397 398 399 400 401 402 403 404 405 406 407 408 409 410 411 412 413 414 415 416 417 418 419 420 421 422 423 424 425 426 427 428 429 430 431 432 433 434 435 436
  OTI_MAX
};

extern optab optab_table[OTI_MAX];

#define add_optab (optab_table[OTI_add])
#define sub_optab (optab_table[OTI_sub])
#define smul_optab (optab_table[OTI_smul])
#define smul_highpart_optab (optab_table[OTI_smul_highpart])
#define umul_highpart_optab (optab_table[OTI_umul_highpart])
#define smul_widen_optab (optab_table[OTI_smul_widen])
#define umul_widen_optab (optab_table[OTI_umul_widen])
#define sdiv_optab (optab_table[OTI_sdiv])
#define sdivmod_optab (optab_table[OTI_sdivmod])
#define udiv_optab (optab_table[OTI_udiv])
#define udivmod_optab (optab_table[OTI_udivmod])
#define smod_optab (optab_table[OTI_smod])
#define umod_optab (optab_table[OTI_umod])
#define flodiv_optab (optab_table[OTI_flodiv])
#define ftrunc_optab (optab_table[OTI_ftrunc])
#define and_optab (optab_table[OTI_and])
#define ior_optab (optab_table[OTI_ior])
#define xor_optab (optab_table[OTI_xor])
#define ashl_optab (optab_table[OTI_ashl])
#define lshr_optab (optab_table[OTI_lshr])
#define ashr_optab (optab_table[OTI_ashr])
#define rotl_optab (optab_table[OTI_rotl])
#define rotr_optab (optab_table[OTI_rotr])
#define smin_optab (optab_table[OTI_smin])
#define smax_optab (optab_table[OTI_smax])
#define umin_optab (optab_table[OTI_umin])
#define umax_optab (optab_table[OTI_umax])

#define mov_optab (optab_table[OTI_mov])
#define movstrict_optab (optab_table[OTI_movstrict])

#define neg_optab (optab_table[OTI_neg])
#define abs_optab (optab_table[OTI_abs])
#define one_cmpl_optab (optab_table[OTI_one_cmpl])
#define ffs_optab (optab_table[OTI_ffs])
#define sqrt_optab (optab_table[OTI_sqrt])
#define sin_optab (optab_table[OTI_sin])
#define cos_optab (optab_table[OTI_cos])

#define cmp_optab (optab_table[OTI_cmp])
#define ucmp_optab (optab_table[OTI_ucmp])
#define tst_optab (optab_table[OTI_tst])

#define strlen_optab (optab_table[OTI_strlen])
Richard Kenner committed
437

438 439 440 441
#define cbranch_optab (optab_table[OTI_cbranch])
#define cmov_optab (optab_table[OTI_cmov])
#define cstore_optab (optab_table[OTI_cstore])

442 443 444 445 446 447 448 449
/* Tables of patterns for extending one integer mode to another.  */
extern enum insn_code extendtab[MAX_MACHINE_MODE][MAX_MACHINE_MODE][2];

/* Tables of patterns for converting between fixed and floating point. */
extern enum insn_code fixtab[NUM_MACHINE_MODES][NUM_MACHINE_MODES][2];
extern enum insn_code fixtrunctab[NUM_MACHINE_MODES][NUM_MACHINE_MODES][2];
extern enum insn_code floattab[NUM_MACHINE_MODES][NUM_MACHINE_MODES][2];

Richard Kenner committed
450 451 452
/* Contains the optab used for each rtx code.  */
extern optab code_to_optab[NUM_RTX_CODE + 1];

Richard Kenner committed
453 454 455 456 457 458 459 460 461 462 463 464 465 466 467
/* Passed to expand_binop and expand_unop to say which options to try to use
   if the requested operation can't be open-coded on the requisite mode.
   Either OPTAB_LIB or OPTAB_LIB_WIDEN says try using a library call.
   Either OPTAB_WIDEN or OPTAB_LIB_WIDEN says try using a wider mode.
   OPTAB_MUST_WIDEN says try widening and don't try anything else.  */

enum optab_methods
{
  OPTAB_DIRECT,
  OPTAB_LIB,
  OPTAB_WIDEN,
  OPTAB_LIB_WIDEN,
  OPTAB_MUST_WIDEN
};

468 469 470 471 472 473 474 475 476 477 478 479 480 481 482 483 484 485 486 487 488 489 490 491 492 493 494 495 496 497 498 499 500 501 502 503 504
/* Enumeration of indexes into libfunc_table.  */
enum libfunc_index
{
  LTI_extendsfdf2,
  LTI_extendsfxf2,
  LTI_extendsftf2,
  LTI_extenddfxf2,
  LTI_extenddftf2,

  LTI_truncdfsf2,
  LTI_truncxfsf2,
  LTI_trunctfsf2,
  LTI_truncxfdf2,
  LTI_trunctfdf2,

  LTI_memcpy,
  LTI_bcopy,
  LTI_memcmp,
  LTI_bcmp,
  LTI_memset,
  LTI_bzero,

  LTI_throw,
  LTI_rethrow,
  LTI_sjthrow,
  LTI_sjpopnthrow,
  LTI_terminate,
  LTI_setjmp,
  LTI_longjmp,
  LTI_eh_rtime_match,

  LTI_eqhf2,
  LTI_nehf2,
  LTI_gthf2,
  LTI_gehf2,
  LTI_lthf2,
  LTI_lehf2,
505
  LTI_unordhf2,
506 507 508 509 510 511 512

  LTI_eqsf2,
  LTI_nesf2,
  LTI_gtsf2,
  LTI_gesf2,
  LTI_ltsf2,
  LTI_lesf2,
513
  LTI_unordsf2,
514 515 516 517 518 519 520

  LTI_eqdf2,
  LTI_nedf2,
  LTI_gtdf2,
  LTI_gedf2,
  LTI_ltdf2,
  LTI_ledf2,
521
  LTI_unorddf2,
522 523 524 525 526 527 528

  LTI_eqxf2,
  LTI_nexf2,
  LTI_gtxf2,
  LTI_gexf2,
  LTI_ltxf2,
  LTI_lexf2,
529
  LTI_unordxf2,
530 531 532 533 534 535 536

  LTI_eqtf2,
  LTI_netf2,
  LTI_gttf2,
  LTI_getf2,
  LTI_lttf2,
  LTI_letf2,
537
  LTI_unordtf2,
538 539 540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571 572 573 574 575 576 577 578 579 580 581 582 583 584 585 586 587 588 589 590 591 592 593 594 595 596 597 598

  LTI_floatsisf,
  LTI_floatdisf,
  LTI_floattisf,

  LTI_floatsidf,
  LTI_floatdidf,
  LTI_floattidf,

  LTI_floatsixf,
  LTI_floatdixf,
  LTI_floattixf,

  LTI_floatsitf,
  LTI_floatditf,
  LTI_floattitf,

  LTI_fixsfsi,
  LTI_fixsfdi,
  LTI_fixsfti,

  LTI_fixdfsi,
  LTI_fixdfdi,
  LTI_fixdfti,

  LTI_fixxfsi,
  LTI_fixxfdi,
  LTI_fixxfti,

  LTI_fixtfsi,
  LTI_fixtfdi,
  LTI_fixtfti,

  LTI_fixunssfsi,
  LTI_fixunssfdi,
  LTI_fixunssfti,

  LTI_fixunsdfsi,
  LTI_fixunsdfdi,
  LTI_fixunsdfti,

  LTI_fixunsxfsi,
  LTI_fixunsxfdi,
  LTI_fixunsxfti,

  LTI_fixunstfsi,
  LTI_fixunstfdi,
  LTI_fixunstfti,

  LTI_chkr_check_addr,
  LTI_chkr_set_right,
  LTI_chkr_copy_bitmap,
  LTI_chkr_check_exec,
  LTI_chkr_check_str,

  LTI_profile_function_entry,
  LTI_profile_function_exit,

  LTI_MAX
};

Richard Kenner committed
599 600
/* SYMBOL_REF rtx's for the library functions that are called
   implicitly and not via optabs.  */
601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637
extern rtx libfunc_table[LTI_MAX];

/* Accessor macros for libfunc_table.  */
#define extendsfdf2_libfunc	(libfunc_table[LTI_extendsfdf2])
#define extendsfxf2_libfunc	(libfunc_table[LTI_extendsfxf2])
#define extendsftf2_libfunc	(libfunc_table[LTI_extendsftf2])
#define extenddfxf2_libfunc	(libfunc_table[LTI_extenddfxf2])
#define extenddftf2_libfunc	(libfunc_table[LTI_extenddftf2])

#define truncdfsf2_libfunc	(libfunc_table[LTI_truncdfsf2])
#define truncxfsf2_libfunc	(libfunc_table[LTI_truncxfsf2])
#define trunctfsf2_libfunc	(libfunc_table[LTI_trunctfsf2])
#define truncxfdf2_libfunc	(libfunc_table[LTI_truncxfdf2])
#define trunctfdf2_libfunc	(libfunc_table[LTI_trunctfdf2])

#define memcpy_libfunc	(libfunc_table[LTI_memcpy])
#define bcopy_libfunc	(libfunc_table[LTI_bcopy])
#define memcmp_libfunc	(libfunc_table[LTI_memcmp])
#define bcmp_libfunc	(libfunc_table[LTI_bcmp])
#define memset_libfunc	(libfunc_table[LTI_memset])
#define bzero_libfunc	(libfunc_table[LTI_bzero])

#define throw_libfunc	(libfunc_table[LTI_throw])
#define rethrow_libfunc	(libfunc_table[LTI_rethrow])
#define sjthrow_libfunc	(libfunc_table[LTI_sjthrow])
#define sjpopnthrow_libfunc	(libfunc_table[LTI_sjpopnthrow])
#define terminate_libfunc	(libfunc_table[LTI_terminate])
#define setjmp_libfunc	(libfunc_table[LTI_setjmp])
#define longjmp_libfunc	(libfunc_table[LTI_longjmp])
#define eh_rtime_match_libfunc	(libfunc_table[LTI_eh_rtime_match])

#define eqhf2_libfunc	(libfunc_table[LTI_eqhf2])
#define nehf2_libfunc	(libfunc_table[LTI_nehf2])
#define gthf2_libfunc	(libfunc_table[LTI_gthf2])
#define gehf2_libfunc	(libfunc_table[LTI_gehf2])
#define lthf2_libfunc	(libfunc_table[LTI_lthf2])
#define lehf2_libfunc	(libfunc_table[LTI_lehf2])
638
#define unordhf2_libfunc	(libfunc_table[LTI_unordhf2])
639 640 641 642 643 644 645

#define eqsf2_libfunc	(libfunc_table[LTI_eqsf2])
#define nesf2_libfunc	(libfunc_table[LTI_nesf2])
#define gtsf2_libfunc	(libfunc_table[LTI_gtsf2])
#define gesf2_libfunc	(libfunc_table[LTI_gesf2])
#define ltsf2_libfunc	(libfunc_table[LTI_ltsf2])
#define lesf2_libfunc	(libfunc_table[LTI_lesf2])
646
#define unordsf2_libfunc	(libfunc_table[LTI_unordsf2])
647 648 649 650 651 652 653

#define eqdf2_libfunc	(libfunc_table[LTI_eqdf2])
#define nedf2_libfunc	(libfunc_table[LTI_nedf2])
#define gtdf2_libfunc	(libfunc_table[LTI_gtdf2])
#define gedf2_libfunc	(libfunc_table[LTI_gedf2])
#define ltdf2_libfunc	(libfunc_table[LTI_ltdf2])
#define ledf2_libfunc	(libfunc_table[LTI_ledf2])
654
#define unorddf2_libfunc	(libfunc_table[LTI_unorddf2])
655 656 657 658 659 660 661

#define eqxf2_libfunc	(libfunc_table[LTI_eqxf2])
#define nexf2_libfunc	(libfunc_table[LTI_nexf2])
#define gtxf2_libfunc	(libfunc_table[LTI_gtxf2])
#define gexf2_libfunc	(libfunc_table[LTI_gexf2])
#define ltxf2_libfunc	(libfunc_table[LTI_ltxf2])
#define lexf2_libfunc	(libfunc_table[LTI_lexf2])
662
#define unordxf2_libfunc	(libfunc_table[LTI_unordxf2])
663 664 665 666 667 668 669

#define eqtf2_libfunc	(libfunc_table[LTI_eqtf2])
#define netf2_libfunc	(libfunc_table[LTI_netf2])
#define gttf2_libfunc	(libfunc_table[LTI_gttf2])
#define getf2_libfunc	(libfunc_table[LTI_getf2])
#define lttf2_libfunc	(libfunc_table[LTI_lttf2])
#define letf2_libfunc	(libfunc_table[LTI_letf2])
670
#define unordtf2_libfunc	(libfunc_table[LTI_unordtf2])
671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727

#define floatsisf_libfunc	(libfunc_table[LTI_floatsisf])
#define floatdisf_libfunc	(libfunc_table[LTI_floatdisf])
#define floattisf_libfunc	(libfunc_table[LTI_floattisf])

#define floatsidf_libfunc	(libfunc_table[LTI_floatsidf])
#define floatdidf_libfunc	(libfunc_table[LTI_floatdidf])
#define floattidf_libfunc	(libfunc_table[LTI_floattidf])

#define floatsixf_libfunc	(libfunc_table[LTI_floatsixf])
#define floatdixf_libfunc	(libfunc_table[LTI_floatdixf])
#define floattixf_libfunc	(libfunc_table[LTI_floattixf])

#define floatsitf_libfunc	(libfunc_table[LTI_floatsitf])
#define floatditf_libfunc	(libfunc_table[LTI_floatditf])
#define floattitf_libfunc	(libfunc_table[LTI_floattitf])

#define fixsfsi_libfunc	(libfunc_table[LTI_fixsfsi])
#define fixsfdi_libfunc	(libfunc_table[LTI_fixsfdi])
#define fixsfti_libfunc	(libfunc_table[LTI_fixsfti])

#define fixdfsi_libfunc	(libfunc_table[LTI_fixdfsi])
#define fixdfdi_libfunc	(libfunc_table[LTI_fixdfdi])
#define fixdfti_libfunc	(libfunc_table[LTI_fixdfti])

#define fixxfsi_libfunc	(libfunc_table[LTI_fixxfsi])
#define fixxfdi_libfunc	(libfunc_table[LTI_fixxfdi])
#define fixxfti_libfunc	(libfunc_table[LTI_fixxfti])

#define fixtfsi_libfunc	(libfunc_table[LTI_fixtfsi])
#define fixtfdi_libfunc	(libfunc_table[LTI_fixtfdi])
#define fixtfti_libfunc	(libfunc_table[LTI_fixtfti])

#define fixunssfsi_libfunc	(libfunc_table[LTI_fixunssfsi])
#define fixunssfdi_libfunc	(libfunc_table[LTI_fixunssfdi])
#define fixunssfti_libfunc	(libfunc_table[LTI_fixunssfti])

#define fixunsdfsi_libfunc	(libfunc_table[LTI_fixunsdfsi])
#define fixunsdfdi_libfunc	(libfunc_table[LTI_fixunsdfdi])
#define fixunsdfti_libfunc	(libfunc_table[LTI_fixunsdfti])

#define fixunsxfsi_libfunc	(libfunc_table[LTI_fixunsxfsi])
#define fixunsxfdi_libfunc	(libfunc_table[LTI_fixunsxfdi])
#define fixunsxfti_libfunc	(libfunc_table[LTI_fixunsxfti])

#define fixunstfsi_libfunc	(libfunc_table[LTI_fixunstfsi])
#define fixunstfdi_libfunc	(libfunc_table[LTI_fixunstfdi])
#define fixunstfti_libfunc	(libfunc_table[LTI_fixunstfti])

#define chkr_check_addr_libfunc	(libfunc_table[LTI_chkr_check_addr])
#define chkr_set_right_libfunc	(libfunc_table[LTI_chkr_set_right])
#define chkr_copy_bitmap_libfunc	(libfunc_table[LTI_chkr_copy_bitmap])
#define chkr_check_exec_libfunc	(libfunc_table[LTI_chkr_check_exec])
#define chkr_check_str_libfunc	(libfunc_table[LTI_chkr_check_str])

#define profile_function_entry_libfunc	(libfunc_table[LTI_profile_function_entry])
#define profile_function_exit_libfunc	(libfunc_table[LTI_profile_function_exit])
Richard Kenner committed
728

729
typedef rtx (*rtxfun) PARAMS ((rtx));
Richard Kenner committed
730 731 732 733 734 735 736 737 738 739 740 741

/* Indexed by the rtx-code for a conditional (eg. EQ, LT,...)
   gives the gen_function to make a branch to test that condition.  */

extern rtxfun bcc_gen_fctn[NUM_RTX_CODE];

/* Indexed by the rtx-code for a conditional (eg. EQ, LT,...)
   gives the insn code to make a store-condition insn
   to test that condition.  */

extern enum insn_code setcc_gen_code[NUM_RTX_CODE];

742
#ifdef HAVE_conditional_move
Jeff Law committed
743
/* Indexed by the machine mode, gives the insn code to make a conditional
744 745 746 747 748
   move insn.  */

extern enum insn_code movcc_gen_code[NUM_MACHINE_MODES];
#endif

749 750 751
/* This array records the insn_code of insns to perform block moves.  */
extern enum insn_code movstr_optab[NUM_MACHINE_MODES];

752 753 754
/* This array records the insn_code of insns to perform block clears.  */
extern enum insn_code clrstr_optab[NUM_MACHINE_MODES];

755 756
/* Define functions given in optabs.c.  */

Richard Kenner committed
757
/* Expand a binary operation given optab and rtx operands.  */
758 759
extern rtx expand_binop PARAMS ((enum machine_mode, optab, rtx, rtx, rtx,
				 int, enum optab_methods));
Richard Kenner committed
760 761

/* Expand a binary operation with both signed and unsigned forms.  */
762 763
extern rtx sign_expand_binop PARAMS ((enum machine_mode, optab, optab, rtx,
				      rtx, rtx, int, enum optab_methods));
764 765

/* Generate code to perform an operation on two operands with two results.  */
766
extern int expand_twoval_binop PARAMS ((optab, rtx, rtx, rtx, rtx, int));
Richard Kenner committed
767 768

/* Expand a unary arithmetic operation given optab rtx operand.  */
769
extern rtx expand_unop PARAMS ((enum machine_mode, optab, rtx, rtx, int));
Richard Kenner committed
770

Richard Kenner committed
771
/* Expand the absolute value operation.  */
772
extern rtx expand_abs PARAMS ((enum machine_mode, rtx, rtx, int));
Richard Kenner committed
773

774
/* Expand the complex absolute value operation.  */
775
extern rtx expand_complex_abs PARAMS ((enum machine_mode, rtx, rtx, int));
776

777 778
/* Generate an instruction with a given INSN_CODE with an output and
   an input.  */
779
extern void emit_unop_insn PARAMS ((int, rtx, rtx, enum rtx_code));
Richard Kenner committed
780

781 782
/* Emit code to perform a series of operations on a multi-word quantity, one
   word at a time.  */
783
extern rtx emit_no_conflict_block PARAMS ((rtx, rtx, rtx, rtx, rtx));
Richard Kenner committed
784

785
/* Emit code to make a call to a constant function or a library call. */
786
extern void emit_libcall_block PARAMS ((rtx, rtx, rtx, rtx));
Richard Kenner committed
787

788
/* Emit one rtl instruction to store zero in specified rtx.  */
789
extern void emit_clr_insn PARAMS ((rtx));
Richard Kenner committed
790

791
/* Emit one rtl insn to store 1 in specified rtx assuming it contains 0.  */
792
extern void emit_0_to_1_insn PARAMS ((rtx));
793 794

/* Emit one rtl insn to compare two rtx's.  */
795
extern void emit_cmp_insn PARAMS ((rtx, rtx, enum rtx_code, rtx,
796
				   enum machine_mode, int, unsigned int));
797

798 799
/* Emit a pair of rtl insns to compare two rtx's and to jump 
   to a label if the comparison is true.  */
800
extern void emit_cmp_and_jump_insns PARAMS ((rtx, rtx, enum rtx_code, rtx,
801 802
					     enum machine_mode, int,
					     unsigned int, rtx));
803

804 805 806 807 808 809 810 811
/* The various uses that a comparison can have; used by can_compare_p:
   jumps, conditional moves, store flag operations.  */
enum can_compare_purpose
{
  ccp_jump,
  ccp_cmov,
  ccp_store_flag
};
812

813 814
/* Nonzero if a compare of mode MODE can be done straightforwardly
   (without splitting it into pieces).  */
815 816
extern int can_compare_p PARAMS ((enum rtx_code, enum machine_mode,
				  enum can_compare_purpose));
817

818 819 820
extern void prepare_cmp_insn PARAMS ((rtx *, rtx *, enum rtx_code *, rtx,
				      enum machine_mode *, int *, int,
				      enum can_compare_purpose));
821

822 823
extern rtx prepare_operand PARAMS ((int, rtx, int, enum machine_mode,
				    enum machine_mode, int));
824 825

/* Generate code to indirectly jump to a location given in the rtx LOC.  */
826
extern void emit_indirect_jump PARAMS ((rtx));
827

828 829
#ifdef HAVE_conditional_move
/* Emit a conditional move operation.  */
830 831 832
rtx emit_conditional_move PARAMS ((rtx, enum rtx_code, rtx, rtx,
				   enum machine_mode, rtx, rtx,
				   enum machine_mode, int));
833 834

/* Return non-zero if the conditional move is supported.  */
835
int can_conditionally_move_p PARAMS ((enum machine_mode mode));
836

837 838
#endif

839 840 841 842
/* Create but don't emit one rtl instruction to add one rtx into another.
   Modes must match; operands must meet the operation's predicates.
   Likewise for subtraction and for just copying.
   These do not call protect_from_queue; caller must do so.  */
843 844 845 846 847
extern rtx gen_add2_insn PARAMS ((rtx, rtx));
extern rtx gen_sub2_insn PARAMS ((rtx, rtx));
extern rtx gen_move_insn PARAMS ((rtx, rtx));
extern int have_add2_insn PARAMS ((enum machine_mode));
extern int have_sub2_insn PARAMS ((enum machine_mode));
Richard Kenner committed
848 849

/* Return the INSN_CODE to use for an extend operation.  */
850 851
extern enum insn_code can_extend_p PARAMS ((enum machine_mode,
					    enum machine_mode, int));
852 853 854

/* Generate the body of an insn to extend Y (with mode MFROM)
   into X (with mode MTO).  Do zero-extension if UNSIGNEDP is nonzero.  */
855 856
extern rtx gen_extend_insn PARAMS ((rtx, rtx, enum machine_mode,
				    enum machine_mode, int));
Richard Kenner committed
857 858 859

/* Initialize the tables that control conversion between fixed and
   floating values.  */
860 861
extern void init_fixtab PARAMS ((void));
extern void init_floattab PARAMS ((void));
Richard Kenner committed
862

863
/* Generate code for a FLOAT_EXPR.  */
864
extern void expand_float PARAMS ((rtx, rtx, int));
865

Richard Kenner committed
866
/* Generate code for a FIX_EXPR.  */
867
extern void expand_fix PARAMS ((rtx, rtx, int));
Richard Kenner committed
868

869
/* Call this to initialize an optab function entry.  */
870
extern rtx init_one_libfunc PARAMS ((const char *));
871

872 873
/* Call this once to initialize the contents of the optabs
   appropriately for the current target machine.  */
874
extern void init_optabs	PARAMS ((void));
875

876
/* Functions from expmed.c:  */
Richard Kenner committed
877

878 879
/* Arguments MODE, RTX: return an rtx for the negation of that value.
   May emit insns.  */
880
extern rtx negate_rtx PARAMS ((enum machine_mode, rtx));
Richard Kenner committed
881

882
/* Expand a logical AND operation.  */
883
extern rtx expand_and PARAMS ((rtx, rtx, rtx));
Richard Kenner committed
884

885
/* Emit a store-flag operation.  */
886 887
extern rtx emit_store_flag PARAMS ((rtx, enum rtx_code, rtx, rtx,
				    enum machine_mode, int, int));
Richard Kenner committed
888

889
/* Like emit_store_flag, but always succeeds.  */
890 891
extern rtx emit_store_flag_force PARAMS ((rtx, enum rtx_code, rtx, rtx,
					  enum machine_mode, int, int));
892

893
/* Functions from loop.c:  */
Richard Kenner committed
894

895 896
/* Given an insn and condition, return a canonical description of
   the test being made.  */
897
extern rtx canonicalize_condition PARAMS ((rtx, rtx, int, rtx *, rtx));
898 899 900

/* Given a JUMP_INSN, return a canonical description of the test
   being made.  */
901
extern rtx get_condition PARAMS ((rtx, rtx *));
902 903

/* Generate a conditional trap instruction.  */
904
extern rtx gen_cond_trap PARAMS ((enum rtx_code, rtx, rtx, rtx));
905

906 907
/* Functions from builtins.c:  */
#ifdef TREE_CODE
908
extern rtx expand_builtin PARAMS ((tree, rtx, rtx, enum machine_mode, int));
909
extern tree expand_tree_builtin PARAMS ((tree, tree, tree));
910 911 912
extern void std_expand_builtin_va_start PARAMS ((int, tree, rtx));
extern rtx std_expand_builtin_va_arg PARAMS ((tree, tree));
extern rtx expand_builtin_va_arg PARAMS ((tree, tree));
913 914
#endif

915 916 917
extern rtx expand_builtin_setjmp PARAMS ((rtx, rtx, rtx, rtx));
extern void expand_builtin_longjmp PARAMS ((rtx, rtx));
extern rtx expand_builtin_saveregs PARAMS ((void));
918 919 920 921 922 923 924
extern HOST_WIDE_INT get_varargs_alias_set PARAMS ((void));
extern HOST_WIDE_INT get_frame_alias_set PARAMS ((void));
extern void record_base_value		PARAMS ((unsigned int, rtx, int));
extern void record_alias_subset         PARAMS ((HOST_WIDE_INT,
						 HOST_WIDE_INT));
#ifdef TREE_CODE
extern HOST_WIDE_INT get_alias_set		PARAMS ((tree));
925
extern HOST_WIDE_INT lang_get_alias_set		PARAMS ((tree));
926 927
#endif
extern HOST_WIDE_INT new_alias_set		PARAMS ((void));
928

929
/* Functions from expr.c:  */
930

931 932
/* This is run once per compilation to set up which modes can be used
   directly in memory and to initialize the block move optab.  */
933
extern void init_expr_once PARAMS ((void));
934 935

/* This is run at the start of compiling a function.  */
936
extern void init_expr PARAMS ((void));
937

938 939
/* This function is run once to initialize stor-layout.c.  */

940
extern void init_stor_layout_once PARAMS ((void));
941

942
/* This is run at the end of compiling a function.  */
943
extern void finish_expr_for_function PARAMS ((void));
944

945 946
/* Use protect_from_queue to convert a QUEUED expression
   into something that you can put immediately into an instruction.  */
947
extern rtx protect_from_queue PARAMS ((rtx, int));
948 949

/* Perform all the pending incrementations.  */
950
extern void emit_queue PARAMS ((void));
951

952
/* Tell if something has a queued subexpression.  */
953
extern int queued_subexp_p PARAMS ((rtx));
954

Richard Kenner committed
955 956
/* Emit some rtl insns to move data between rtx's, converting machine modes.
   Both modes must be floating or both fixed.  */
957
extern void convert_move PARAMS ((rtx, rtx, int));
Richard Kenner committed
958 959

/* Convert an rtx to specified machine mode and return the result.  */
960
extern rtx convert_to_mode PARAMS ((enum machine_mode, rtx, int));
Richard Kenner committed
961

962
/* Convert an rtx to MODE from OLDMODE and return the result.  */
963 964
extern rtx convert_modes PARAMS ((enum machine_mode, enum machine_mode,
				  rtx, int));
965

966
/* Emit code to move a block Y to a block X.  */
967
extern rtx emit_block_move PARAMS ((rtx, rtx, rtx, unsigned int));
968 969 970

/* Copy all or part of a value X into registers starting at REGNO.
   The number of registers to be filled is NREGS.  */
971
extern void move_block_to_reg PARAMS ((int, rtx, int, enum machine_mode));
972 973 974

/* Copy all or part of a BLKmode value X out of registers starting at REGNO.
   The number of registers to be filled is NREGS.  */
975
extern void move_block_from_reg PARAMS ((int, rtx, int, int));
976

977 978
/* Load a BLKmode value into non-consecutive registers represented by a
   PARALLEL.  */
979 980
extern void emit_group_load PARAMS ((rtx, rtx, int, unsigned int));

981 982
/* Store a BLKmode value from non-consecutive registers represented by a
   PARALLEL.  */
983
extern void emit_group_store PARAMS ((rtx, rtx, int, unsigned int));
984

985 986
#ifdef TREE_CODE
/* Copy BLKmode object from a set of registers. */
987
extern rtx copy_blkmode_from_reg PARAMS ((rtx,rtx,tree));
988 989
#endif

990
/* Mark REG as holding a parameter for the next CALL_INSN.  */
991
extern void use_reg PARAMS ((rtx *, rtx));
992

993 994
/* Mark NREGS consecutive regs, starting at REGNO, as holding parameters
   for the next CALL_INSN.  */
995
extern void use_regs PARAMS ((rtx *, int, int));
996

997
/* Mark a PARALLEL as holding a parameter for the next CALL_INSN.  */
998
extern void use_group_regs PARAMS ((rtx *, rtx));
999 1000

/* Write zeros through the storage of OBJECT.
1001
   If OBJECT has BLKmode, SIZE is its length in bytes and ALIGN is its
1002
   alignment.  */
1003
extern rtx clear_storage PARAMS ((rtx, rtx, unsigned int));
1004 1005

/* Emit insns to set X from Y.  */
1006
extern rtx emit_move_insn PARAMS ((rtx, rtx));
1007 1008

/* Emit insns to set X from Y, with no frills.  */
1009
extern rtx emit_move_insn_1 PARAMS ((rtx, rtx));
1010 1011 1012

/* Push a block of length SIZE (perhaps variable)
   and return an rtx to address the beginning of the block.  */
1013
extern rtx push_block PARAMS ((rtx, int, int));
1014

Richard Kenner committed
1015
/* Make an operand to push something on the stack.  */
1016
extern rtx gen_push_operand PARAMS ((void));
1017 1018 1019

#ifdef TREE_CODE
/* Generate code to push something onto the stack, given its mode and type.  */
1020 1021 1022
extern void emit_push_insn PARAMS ((rtx, enum machine_mode, tree, rtx,
				    unsigned int, int, rtx, int, rtx, rtx,
				    int, rtx));
1023

1024
/* Emit library call.  */
1025 1026 1027
extern void emit_library_call PARAMS ((rtx, int, enum machine_mode, int, ...));
extern rtx emit_library_call_value PARAMS ((rtx, rtx, int, enum machine_mode,
					    int, ...));
1028 1029

/* Expand an assignment that stores the value of FROM into TO. */
1030
extern rtx expand_assignment PARAMS ((tree, tree, int, int));
1031 1032 1033 1034 1035

/* Generate code for computing expression EXP,
   and storing the value into TARGET.
   If SUGGEST_REG is nonzero, copy the value through a register
   and return that register, if that is possible.  */
1036
extern rtx store_expr PARAMS ((tree, rtx, int));
1037
#endif
Richard Kenner committed
1038 1039 1040 1041

/* Given an rtx that may include add and multiply operations,
   generate them as insns and return a pseudo-reg containing the value.
   Useful after calling expand_expr with 1 as sum_ok.  */
1042
extern rtx force_operand PARAMS ((rtx, rtx));
Richard Kenner committed
1043

1044
#ifdef TREE_CODE
1045 1046 1047
/* Generate code for computing expression EXP.
   An rtx for the computed value is returned.  The value is never null.
   In the case of a void EXP, const0_rtx is returned.  */
1048 1049
extern rtx expand_expr PARAMS ((tree, rtx, enum machine_mode,
				enum expand_modifier));
1050 1051 1052 1053
#endif

/* At the start of a function, record that we have no previously-pushed
   arguments waiting to be popped.  */
1054
extern void init_pending_stack_adjust PARAMS ((void));
1055 1056 1057

/* When exiting from function, if safe, clear out any pending stack adjust
   so the adjustment won't get done.  */
1058
extern void clear_pending_stack_adjust PARAMS ((void));
1059 1060

/* Pop any previously-pushed arguments that have not been popped yet.  */
1061
extern void do_pending_stack_adjust PARAMS ((void));
1062 1063

#ifdef TREE_CODE
1064 1065
/* Return the tree node and offset if a given argument corresponds to
   a string constant.  */
1066
extern tree string_constant PARAMS ((tree, tree *));
1067

1068
/* Generate code to evaluate EXP and jump to LABEL if the value is zero.  */
1069
extern void jumpifnot PARAMS ((tree, rtx));
1070 1071

/* Generate code to evaluate EXP and jump to LABEL if the value is nonzero.  */
1072
extern void jumpif PARAMS ((tree, rtx));
1073 1074 1075

/* Generate code to evaluate EXP and jump to IF_FALSE_LABEL if
   the result is zero, or IF_TRUE_LABEL if the result is one.  */
1076
extern void do_jump PARAMS ((tree, rtx, rtx));
1077 1078 1079
#endif

/* Generate rtl to compare two rtx's, will call emit_cmp_insn.  */
1080
extern rtx compare_from_rtx PARAMS ((rtx, rtx, enum rtx_code, int,
1081
				     enum machine_mode, rtx, unsigned int));
1082
extern void do_compare_rtx_and_jump PARAMS ((rtx, rtx, enum rtx_code, int,
1083 1084
					     enum machine_mode, rtx,
					     unsigned int, rtx, rtx));
1085 1086

/* Generate a tablejump instruction (used for switch statements).  */
1087
extern void do_tablejump PARAMS ((rtx, enum machine_mode, rtx, rtx, rtx));
1088 1089

#ifdef TREE_CODE
1090 1091
/* rtl.h and tree.h were included.  */
/* Return an rtx for the size in bytes of the value of an expr.  */
1092
extern rtx expr_size PARAMS ((tree));
1093

1094
extern rtx lookup_static_chain PARAMS ((tree));
1095 1096 1097

/* Convert a stack slot address ADDR valid in function FNDECL
   into an address valid in this function (using a static chain).  */
1098
extern rtx fix_lexical_addr PARAMS ((rtx, tree));
1099 1100

/* Return the address of the trampoline for entering nested fn FUNCTION.  */
1101
extern rtx trampoline_address PARAMS ((tree));
1102 1103 1104

/* Return an rtx that refers to the value returned by a function
   in its original home.  This becomes invalid if any more code is emitted.  */
1105
extern rtx hard_function_value PARAMS ((tree, tree, int));
1106

1107
extern rtx prepare_call_address	PARAMS ((rtx, tree, rtx *, int));
1108

1109
extern rtx expand_call PARAMS ((tree, rtx, int));
1110

1111 1112 1113 1114 1115 1116 1117 1118 1119
extern rtx expand_shift PARAMS ((enum tree_code, enum machine_mode, rtx, tree,
				 rtx, int));
extern rtx expand_divmod PARAMS ((int, enum tree_code, enum machine_mode, rtx,
				  rtx, rtx, int));
extern void locate_and_pad_parm PARAMS ((enum machine_mode, tree, int, tree,
					 struct args_size *,
					 struct args_size *,
					 struct args_size *,
					 struct args_size *));
1120
extern rtx expand_inline_function PARAMS ((tree, tree, rtx, int, tree, rtx));
1121

1122
/* Return the CODE_LABEL rtx for a LABEL_DECL, creating it if necessary.  */
1123
extern rtx label_rtx PARAMS ((tree));
1124 1125
#endif

1126
/* Indicate how an input argument register was promoted.  */
1127 1128
extern rtx promoted_input_arg PARAMS ((unsigned int, enum machine_mode *,
				       int *));
1129

Richard Kenner committed
1130 1131 1132
/* Return an rtx like arg but sans any constant terms.
   Returns the original rtx if it has no constant terms.
   The constant terms are added and stored via a second arg.  */
1133
extern rtx eliminate_constant_term PARAMS ((rtx, rtx *));
Richard Kenner committed
1134 1135 1136

/* Convert arg to a valid memory address for specified machine mode,
   by emitting insns to perform arithmetic if nec.  */
1137
extern rtx memory_address PARAMS ((enum machine_mode, rtx));
Richard Kenner committed
1138 1139

/* Like `memory_address' but pretent `flag_force_addr' is 0.  */
1140
extern rtx memory_address_noforce PARAMS ((enum machine_mode, rtx));
Richard Kenner committed
1141 1142 1143 1144 1145

/* Return a memory reference like MEMREF, but with its mode changed
   to MODE and its address changed to ADDR.
   (VOIDmode means don't change the mode.
   NULL for ADDR means don't change the address.)  */
1146
extern rtx change_address PARAMS ((rtx, enum machine_mode, rtx));
Richard Kenner committed
1147 1148 1149

/* Return a memory reference like MEMREF, but which is known to have a
   valid address.  */
1150
extern rtx validize_mem PARAMS ((rtx));
Richard Kenner committed
1151

1152
#ifdef TREE_CODE
1153 1154 1155 1156 1157
/* Given REF, either a MEM or a REG, and T, either the type of X or
   the expression corresponding to REF, set RTX_UNCHANGING_P if
   appropriate.  */
extern void maybe_set_unchanging PARAMS ((rtx, tree));

1158 1159 1160 1161 1162 1163
/* Given REF, a MEM, and T, either the type of X or the expression
   corresponding to REF, set the memory attributes.  OBJECTP is nonzero
   if we are making a new object of this type.  */
extern void set_mem_attributes PARAMS ((rtx, tree, int));
#endif

Richard Kenner committed
1164
/* Assemble the static constant template for function entry trampolines.  */
1165
extern rtx assemble_trampoline_template PARAMS ((void));
Richard Kenner committed
1166 1167

/* Return 1 if two rtx's are equivalent in structure and elements.  */
1168
extern int rtx_equal_p PARAMS ((rtx, rtx));
Richard Kenner committed
1169 1170 1171

/* Given rtx, return new rtx whose address won't be affected by
   any side effects.  It has been copied to a new temporary reg.  */
1172
extern rtx stabilize PARAMS ((rtx));
Richard Kenner committed
1173 1174 1175

/* Given an rtx, copy all regs it refers to into new temps
   and return a modified copy that refers to the new temps.  */
1176
extern rtx copy_all_regs PARAMS ((rtx));
Richard Kenner committed
1177 1178

/* Copy given rtx to a new temp reg and return that.  */
1179
extern rtx copy_to_reg PARAMS ((rtx));
Richard Kenner committed
1180 1181

/* Like copy_to_reg but always make the reg Pmode.  */
1182
extern rtx copy_addr_to_reg PARAMS ((rtx));
Richard Kenner committed
1183 1184

/* Like copy_to_reg but always make the reg the specified mode MODE.  */
1185
extern rtx copy_to_mode_reg PARAMS ((enum machine_mode, rtx));
Richard Kenner committed
1186 1187

/* Copy given rtx to given temp reg and return that.  */
1188
extern rtx copy_to_suggested_reg PARAMS ((rtx, rtx, enum machine_mode));
Richard Kenner committed
1189 1190 1191

/* Copy a value to a register if it isn't already a register.
   Args are mode (in case value is a constant) and the value.  */
1192
extern rtx force_reg PARAMS ((enum machine_mode, rtx));
Richard Kenner committed
1193 1194

/* Return given rtx, copied into a new temp reg if it was in memory.  */
1195
extern rtx force_not_mem PARAMS ((rtx));
Richard Kenner committed
1196

1197 1198
#ifdef TREE_CODE
/* Return mode and signedness to use when object is promoted.  */
1199 1200
extern enum machine_mode promote_mode PARAMS ((tree, enum machine_mode,
					       int *, int));
1201 1202
#endif

Richard Kenner committed
1203
/* Remove some bytes from the stack.  An rtx says how many.  */
1204
extern void adjust_stack PARAMS ((rtx));
Richard Kenner committed
1205 1206

/* Add some bytes to the stack.  An rtx says how many.  */
1207
extern void anti_adjust_stack PARAMS ((rtx));
Richard Kenner committed
1208

1209 1210 1211 1212
/* This enum is used for the following two functions.  */
enum save_level {SAVE_BLOCK, SAVE_FUNCTION, SAVE_NONLOCAL};

/* Save the stack pointer at the specified level.  */
1213
extern void emit_stack_save PARAMS ((enum save_level, rtx *, rtx));
1214 1215

/* Restore the stack pointer from a save area of the specified level.  */
1216
extern void emit_stack_restore PARAMS ((enum save_level, rtx, rtx));
1217

Richard Kenner committed
1218 1219
/* Allocate some space on the stack dynamically and return its address.  An rtx
   says how many bytes.  */
1220
extern rtx allocate_dynamic_stack_space PARAMS ((rtx, rtx, int));
Richard Kenner committed
1221

1222 1223 1224 1225 1226
/* Probe a range of stack addresses from FIRST to FIRST+SIZE, inclusive. 
   FIRST is a constant and size is a Pmode RTX.  These are offsets from the
   current stack pointer.  STACK_GROWS_DOWNWARD says whether to add or
   subtract from the stack.  If SIZE is constant, this is done
   with a fixed number of probes.  Otherwise, we must make a loop.  */
1227
extern void probe_stack_range PARAMS ((HOST_WIDE_INT, rtx));
1228

Richard Kenner committed
1229 1230
/* Return an rtx that refers to the value returned by a library call
   in its original home.  This becomes invalid if any more code is emitted.  */
1231
extern rtx hard_libcall_value PARAMS ((enum machine_mode));
Richard Kenner committed
1232 1233 1234

/* Given an rtx, return an rtx for a value rounded up to a multiple
   of STACK_BOUNDARY / BITS_PER_UNIT.  */
1235
extern rtx round_push PARAMS ((rtx));
Richard Kenner committed
1236

1237 1238 1239 1240 1241 1242
extern rtx store_bit_field PARAMS ((rtx, unsigned HOST_WIDE_INT,
				    unsigned HOST_WIDE_INT,
				    enum machine_mode, rtx,
				    unsigned int, HOST_WIDE_INT));
extern rtx extract_bit_field PARAMS ((rtx, unsigned HOST_WIDE_INT,
				      unsigned HOST_WIDE_INT, int, rtx,
1243
				      enum machine_mode, enum machine_mode,
1244
				      unsigned int, HOST_WIDE_INT));
1245 1246 1247
extern rtx expand_mult PARAMS ((enum machine_mode, rtx, rtx, rtx, int));
extern rtx expand_mult_add PARAMS ((rtx, rtx, rtx, rtx,enum machine_mode, int));
extern rtx expand_mult_highpart_adjust PARAMS ((enum machine_mode, rtx, rtx, rtx, rtx, int));
Richard Kenner committed
1248

1249
extern rtx assemble_static_space PARAMS ((int));
Richard Kenner committed
1250 1251 1252 1253

/* Hook called by expand_expr for language-specific tree codes.
   It is up to the language front end to install a hook
   if it has any such codes that expand_expr needs to know about.  */
1254 1255 1256
extern rtx (*lang_expand_expr) PARAMS ((union tree_node *, rtx,
					enum machine_mode,
					enum expand_modifier modifier));
1257

1258
#ifdef TREE_CODE
1259 1260 1261 1262
/* Hook called by output_constant for language-specific tree codes.
   It is up to the language front-end to install a hook if it has any
   such codes that output_constant needs to know about.  Returns a
   language-independent constant equivalent to its input.  */
1263
extern tree (*lang_expand_constant) PARAMS ((tree));
1264
#endif
1265

1266 1267 1268 1269 1270
extern void init_all_optabs			PARAMS ((void));
extern void do_jump_by_parts_equality_rtx	PARAMS ((rtx, rtx, rtx));
extern void do_jump_by_parts_greater_rtx	PARAMS ((enum machine_mode,
							 int, rtx, rtx, rtx,
							 rtx));
1271

1272
#ifdef TREE_CODE   /* Don't lose if tree.h not included.  */
1273
extern void mark_seen_cases			PARAMS ((tree, unsigned char *,
1274
							 HOST_WIDE_INT, int));
1275
#endif