1 /* Definitions for code generation pass of GNU compiler.
2 Copyright (C) 1987, 1991, 1992, 1993 Free Software Foundation, Inc.
4 This file is part of GNU CC.
6 GNU CC is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 2, or (at your option)
11 GNU CC is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
16 You should have received a copy of the GNU General Public License
17 along with GNU CC; see the file COPYING. If not, write to
18 the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA. */
27 /* The default branch cost is 1. */
32 /* The default is that we do not promote the mode of an object. */
34 #define PROMOTE_MODE(MODE,UNSIGNEDP,TYPE)
37 /* Macros to access the slots of a QUEUED rtx.
38 Here rather than in rtl.h because only the expansion pass
39 should ever encounter a QUEUED. */
41 /* The variable for which an increment is queued. */
42 #define QUEUED_VAR(P) XEXP (P, 0)
43 /* If the increment has been emitted, this is the insn
44 that does the increment. It is zero before the increment is emitted. */
45 #define QUEUED_INSN(P) XEXP (P, 1)
46 /* If a pre-increment copy has been generated, this is the copy
47 (it is a temporary reg). Zero if no copy made yet. */
48 #define QUEUED_COPY(P) XEXP (P, 2)
49 /* This is the body to use for the insn to do the increment.
50 It is used to emit the increment. */
51 #define QUEUED_BODY(P) XEXP (P, 3)
52 /* Next QUEUED in the queue. */
53 #define QUEUED_NEXT(P) XEXP (P, 4)
55 /* This is the 4th arg to `expand_expr'.
56 EXPAND_SUM means it is ok to return a PLUS rtx or MULT rtx.
57 EXPAND_INITIALIZER is similar but also record any labels on forced_labels.
58 EXPAND_CONST_ADDRESS means it is ok to return a MEM whose address
59 is a constant that is not a legitimate address. */
60 enum expand_modifier
{EXPAND_NORMAL
, EXPAND_SUM
,
61 EXPAND_CONST_ADDRESS
, EXPAND_INITIALIZER
};
63 /* List of labels that must never be deleted. */
64 extern rtx forced_labels
;
66 /* List (chain of EXPR_LISTs) of pseudo-regs of SAVE_EXPRs.
67 So we can mark them all live at the end of the function, if stupid. */
68 extern rtx save_expr_regs
;
70 extern int current_function_calls_alloca
;
71 extern int current_function_outgoing_args_size
;
73 /* This is the offset from the arg pointer to the place where the first
74 anonymous arg can be found, if there is one. */
75 extern rtx current_function_arg_offset_rtx
;
77 /* This is nonzero if the current function uses the constant pool. */
78 extern int current_function_uses_const_pool
;
80 /* This is nonzero if the current function uses pic_offset_table_rtx. */
81 extern int current_function_uses_pic_offset_table
;
83 /* The arg pointer hard register, or the pseudo into which it was copied. */
84 extern rtx current_function_internal_arg_pointer
;
86 /* Nonzero means stack pops must not be deferred, and deferred stack
87 pops must not be output. It is nonzero inside a function call,
88 inside a conditional expression, inside a statement expression,
89 and in other cases as well. */
90 extern int inhibit_defer_pop
;
92 /* Number of function calls seen so far in current function. */
94 extern int function_call_count
;
96 /* RTX for stack slot that holds the current handler for nonlocal gotos.
97 Zero when function does not have nonlocal labels. */
99 extern rtx nonlocal_goto_handler_slot
;
101 /* RTX for stack slot that holds the stack pointer value to restore
103 Zero when function does not have nonlocal labels. */
105 extern rtx nonlocal_goto_stack_level
;
107 /* List (chain of TREE_LIST) of LABEL_DECLs for all nonlocal labels
108 (labels to which there can be nonlocal gotos from nested functions)
111 #ifdef TREE_CODE /* Don't lose if tree.h not included. */
112 extern tree nonlocal_labels
;
115 #define NO_DEFER_POP (inhibit_defer_pop += 1)
116 #define OK_DEFER_POP (inhibit_defer_pop -= 1)
118 /* Number of units that we should eventually pop off the stack.
119 These are the arguments to function calls that have already returned. */
120 extern int pending_stack_adjust
;
122 /* A list of all cleanups which belong to the arguments of
123 function calls being expanded by expand_call. */
124 #ifdef TREE_CODE /* Don't lose if tree.h not included. */
125 extern tree cleanups_this_call
;
128 #ifdef TREE_CODE /* Don't lose if tree.h not included. */
129 /* Structure to record the size of a sequence of arguments
130 as the sum of a tree-expression and a constant. */
139 /* Add the value of the tree INC to the `struct args_size' TO. */
141 #define ADD_PARM_SIZE(TO, INC) \
142 { tree inc = (INC); \
143 if (TREE_CODE (inc) == INTEGER_CST) \
144 (TO).constant += TREE_INT_CST_LOW (inc); \
145 else if ((TO).var == 0) \
148 (TO).var = size_binop (PLUS_EXPR, (TO).var, inc); }
150 #define SUB_PARM_SIZE(TO, DEC) \
151 { tree dec = (DEC); \
152 if (TREE_CODE (dec) == INTEGER_CST) \
153 (TO).constant -= TREE_INT_CST_LOW (dec); \
154 else if ((TO).var == 0) \
155 (TO).var = size_binop (MINUS_EXPR, integer_zero_node, dec); \
157 (TO).var = size_binop (MINUS_EXPR, (TO).var, dec); }
159 /* Convert the implicit sum in a `struct args_size' into an rtx. */
160 #define ARGS_SIZE_RTX(SIZE) \
161 ((SIZE).var == 0 ? GEN_INT ((SIZE).constant) \
162 : expand_expr (size_binop (PLUS_EXPR, (SIZE).var, \
163 size_int ((SIZE).constant)), \
164 NULL_RTX, VOIDmode, 0))
166 /* Convert the implicit sum in a `struct args_size' into a tree. */
167 #define ARGS_SIZE_TREE(SIZE) \
168 ((SIZE).var == 0 ? size_int ((SIZE).constant) \
169 : size_binop (PLUS_EXPR, (SIZE).var, size_int ((SIZE).constant)))
171 /* Supply a default definition for FUNCTION_ARG_PADDING:
172 usually pad upward, but pad short args downward on
173 big-endian machines. */
175 enum direction
{none
, upward
, downward
}; /* Value has this type. */
177 #ifndef FUNCTION_ARG_PADDING
179 #define FUNCTION_ARG_PADDING(MODE, TYPE) \
180 (((MODE) == BLKmode \
181 ? ((TYPE) && TREE_CODE (TYPE_SIZE (TYPE)) == INTEGER_CST \
182 && int_size_in_bytes (TYPE) < PARM_BOUNDARY / BITS_PER_UNIT) \
183 : GET_MODE_BITSIZE (MODE) < PARM_BOUNDARY) \
186 #define FUNCTION_ARG_PADDING(MODE, TYPE) upward
190 /* Supply a default definition for FUNCTION_ARG_BOUNDARY. Normally, we let
191 FUNCTION_ARG_PADDING, which also pads the length, handle any needed
194 #ifndef FUNCTION_ARG_BOUNDARY
195 #define FUNCTION_ARG_BOUNDARY(MODE, TYPE) PARM_BOUNDARY
198 /* Nonzero if we do not know how to pass TYPE solely in registers.
199 We cannot do so in the following cases:
201 - if the type has variable size
202 - if the type is marked as addressable (it is required to be constructed
204 - if the padding and mode of the type is such that a copy into a register
205 would put it into the wrong part of the register.
207 /* Which padding can't be supported depends on the byte endianness.
209 A value in a register is implicitly padded at the most significant end.
210 On a big-endian machine, that is the lower end in memory.
211 So a value padded in memory at the upper end can't go in a register.
212 For a little-endian machine, the reverse is true. */
215 #define MUST_PASS_IN_STACK_BAD_PADDING upward
217 #define MUST_PASS_IN_STACK_BAD_PADDING downward
220 #define MUST_PASS_IN_STACK(MODE,TYPE) \
222 && (TREE_CODE (TYPE_SIZE (TYPE)) != INTEGER_CST \
223 || TREE_ADDRESSABLE (TYPE) \
224 || ((MODE) == BLKmode \
225 && (FUNCTION_ARG_PADDING (MODE, TYPE) \
226 == MUST_PASS_IN_STACK_BAD_PADDING))))
228 /* Nonzero if type TYPE should be returned in memory.
229 Most machines can use the following default definition. */
231 #ifndef RETURN_IN_MEMORY
232 #define RETURN_IN_MEMORY(TYPE) (TYPE_MODE (TYPE) == BLKmode)
235 /* Optabs are tables saying how to generate insn bodies
236 for various machine modes and numbers of operands.
237 Each optab applies to one operation.
238 For example, add_optab applies to addition.
240 The insn_code slot is the enum insn_code that says how to
241 generate an insn for this operation on a particular machine mode.
242 It is CODE_FOR_nothing if there is no such insn on the target machine.
244 The `lib_call' slot is the name of the library function that
245 can be used to perform the operation.
247 A few optabs, such as move_optab and cmp_optab, are used
250 /* Everything that uses expr.h needs to define enum insn_code
251 but we don't list it in the Makefile dependencies just for that. */
252 #include "insn-codes.h"
258 enum insn_code insn_code
;
260 } handlers
[NUM_MACHINE_MODES
];
263 /* Given an enum insn_code, access the function to construct
264 the body of that kind of insn. */
265 #ifdef FUNCTION_CONVERSION_BUG
266 /* Some compilers fail to convert a function properly to a
267 pointer-to-function when used as an argument.
268 So produce the pointer-to-function directly.
269 Luckily, these compilers seem to work properly when you
270 call the pointer-to-function. */
271 #define GEN_FCN(CODE) (insn_gen_function[(int) (CODE)])
273 #define GEN_FCN(CODE) (*insn_gen_function[(int) (CODE)])
276 extern rtx (*const insn_gen_function
[]) ();
278 extern optab add_optab
;
279 extern optab sub_optab
;
280 extern optab smul_optab
; /* Signed and floating-point multiply */
281 extern optab smul_widen_optab
; /* Signed multiply with result
282 one machine mode wider than args */
283 extern optab umul_widen_optab
;
284 extern optab sdiv_optab
; /* Signed divide */
285 extern optab sdivmod_optab
; /* Signed divide-and-remainder in one */
286 extern optab udiv_optab
;
287 extern optab udivmod_optab
;
288 extern optab smod_optab
; /* Signed remainder */
289 extern optab umod_optab
;
290 extern optab flodiv_optab
; /* Optab for floating divide. */
291 extern optab ftrunc_optab
; /* Convert float to integer in float fmt */
292 extern optab and_optab
; /* Logical and */
293 extern optab ior_optab
; /* Logical or */
294 extern optab xor_optab
; /* Logical xor */
295 extern optab ashl_optab
; /* Arithmetic shift left */
296 extern optab ashr_optab
; /* Arithmetic shift right */
297 extern optab lshl_optab
; /* Logical shift left */
298 extern optab lshr_optab
; /* Logical shift right */
299 extern optab rotl_optab
; /* Rotate left */
300 extern optab rotr_optab
; /* Rotate right */
301 extern optab smin_optab
; /* Signed and floating-point minimum value */
302 extern optab smax_optab
; /* Signed and floating-point maximum value */
303 extern optab umin_optab
; /* Unsigned minimum value */
304 extern optab umax_optab
; /* Unsigned maximum value */
306 extern optab mov_optab
; /* Move instruction. */
307 extern optab movstrict_optab
; /* Move, preserving high part of register. */
309 extern optab cmp_optab
; /* Compare insn; two operands. */
310 extern optab tst_optab
; /* tst insn; compare one operand against 0 */
312 /* Unary operations */
313 extern optab neg_optab
; /* Negation */
314 extern optab abs_optab
; /* Abs value */
315 extern optab one_cmpl_optab
; /* Bitwise not */
316 extern optab ffs_optab
; /* Find first bit set */
317 extern optab sqrt_optab
; /* Square root */
318 extern optab sin_optab
; /* Sine */
319 extern optab cos_optab
; /* Cosine */
320 extern optab strlen_optab
; /* String length */
322 /* Passed to expand_binop and expand_unop to say which options to try to use
323 if the requested operation can't be open-coded on the requisite mode.
324 Either OPTAB_LIB or OPTAB_LIB_WIDEN says try using a library call.
325 Either OPTAB_WIDEN or OPTAB_LIB_WIDEN says try using a wider mode.
326 OPTAB_MUST_WIDEN says try widening and don't try anything else. */
337 /* SYMBOL_REF rtx's for the library functions that are called
338 implicitly and not via optabs. */
340 extern rtx extendsfdf2_libfunc
;
341 extern rtx extendsfxf2_libfunc
;
342 extern rtx extendsftf2_libfunc
;
343 extern rtx extenddfxf2_libfunc
;
344 extern rtx extenddftf2_libfunc
;
346 extern rtx truncdfsf2_libfunc
;
347 extern rtx truncxfsf2_libfunc
;
348 extern rtx trunctfsf2_libfunc
;
349 extern rtx truncxfdf2_libfunc
;
350 extern rtx trunctfdf2_libfunc
;
352 extern rtx memcpy_libfunc
;
353 extern rtx bcopy_libfunc
;
354 extern rtx memcmp_libfunc
;
355 extern rtx bcmp_libfunc
;
356 extern rtx memset_libfunc
;
357 extern rtx bzero_libfunc
;
359 extern rtx eqsf2_libfunc
;
360 extern rtx nesf2_libfunc
;
361 extern rtx gtsf2_libfunc
;
362 extern rtx gesf2_libfunc
;
363 extern rtx ltsf2_libfunc
;
364 extern rtx lesf2_libfunc
;
366 extern rtx eqdf2_libfunc
;
367 extern rtx nedf2_libfunc
;
368 extern rtx gtdf2_libfunc
;
369 extern rtx gedf2_libfunc
;
370 extern rtx ltdf2_libfunc
;
371 extern rtx ledf2_libfunc
;
373 extern rtx eqxf2_libfunc
;
374 extern rtx nexf2_libfunc
;
375 extern rtx gtxf2_libfunc
;
376 extern rtx gexf2_libfunc
;
377 extern rtx ltxf2_libfunc
;
378 extern rtx lexf2_libfunc
;
380 extern rtx eqtf2_libfunc
;
381 extern rtx netf2_libfunc
;
382 extern rtx gttf2_libfunc
;
383 extern rtx getf2_libfunc
;
384 extern rtx lttf2_libfunc
;
385 extern rtx letf2_libfunc
;
387 extern rtx floatsisf_libfunc
;
388 extern rtx floatdisf_libfunc
;
389 extern rtx floattisf_libfunc
;
391 extern rtx floatsidf_libfunc
;
392 extern rtx floatdidf_libfunc
;
393 extern rtx floattidf_libfunc
;
395 extern rtx floatsixf_libfunc
;
396 extern rtx floatdixf_libfunc
;
397 extern rtx floattixf_libfunc
;
399 extern rtx floatsitf_libfunc
;
400 extern rtx floatditf_libfunc
;
401 extern rtx floattitf_libfunc
;
403 extern rtx fixsfsi_libfunc
;
404 extern rtx fixsfdi_libfunc
;
405 extern rtx fixsfti_libfunc
;
407 extern rtx fixdfsi_libfunc
;
408 extern rtx fixdfdi_libfunc
;
409 extern rtx fixdfti_libfunc
;
411 extern rtx fixxfsi_libfunc
;
412 extern rtx fixxfdi_libfunc
;
413 extern rtx fixxfti_libfunc
;
415 extern rtx fixtfsi_libfunc
;
416 extern rtx fixtfdi_libfunc
;
417 extern rtx fixtfti_libfunc
;
419 extern rtx fixunssfsi_libfunc
;
420 extern rtx fixunssfdi_libfunc
;
421 extern rtx fixunssfti_libfunc
;
423 extern rtx fixunsdfsi_libfunc
;
424 extern rtx fixunsdfdi_libfunc
;
425 extern rtx fixunsdfti_libfunc
;
427 extern rtx fixunsxfsi_libfunc
;
428 extern rtx fixunsxfdi_libfunc
;
429 extern rtx fixunsxfti_libfunc
;
431 extern rtx fixunstfsi_libfunc
;
432 extern rtx fixunstfdi_libfunc
;
433 extern rtx fixunstfti_libfunc
;
435 typedef rtx (*rtxfun
) ();
437 /* Indexed by the rtx-code for a conditional (eg. EQ, LT,...)
438 gives the gen_function to make a branch to test that condition. */
440 extern rtxfun bcc_gen_fctn
[NUM_RTX_CODE
];
442 /* Indexed by the rtx-code for a conditional (eg. EQ, LT,...)
443 gives the insn code to make a store-condition insn
444 to test that condition. */
446 extern enum insn_code setcc_gen_code
[NUM_RTX_CODE
];
448 /* Define functions given in optabs.c. */
450 /* Expand a binary operation given optab and rtx operands. */
451 extern rtx expand_binop
PROTO((enum machine_mode
, optab
, rtx
, rtx
, rtx
,
452 int, enum optab_methods
));
454 /* Expand a binary operation with both signed and unsigned forms. */
455 extern rtx sign_expand_binop
PROTO((enum machine_mode
, optab
, optab
, rtx
,
456 rtx
, rtx
, int, enum optab_methods
));
458 /* Generate code to perform an operation on two operands with two results. */
459 extern int expand_twoval_binop
PROTO((optab
, rtx
, rtx
, rtx
, rtx
, int));
461 /* Expand a unary arithmetic operation given optab rtx operand. */
462 extern rtx expand_unop
PROTO((enum machine_mode
, optab
, rtx
, rtx
, int));
464 /* Expand the complex absolute value operation. */
465 extern rtx expand_complex_abs
PROTO((enum machine_mode
, rtx
, rtx
, int));
467 /* Generate an instruction with a given INSN_CODE with an output and
469 extern void emit_unop_insn
PROTO((int, rtx
, rtx
, enum rtx_code
));
471 /* Emit code to perform a series of operations on a multi-word quantity, one
473 extern rtx emit_no_conflict_block
PROTO((rtx
, rtx
, rtx
, rtx
, rtx
));
475 /* Emit code to make a call to a constant function or a library call. */
476 extern void emit_libcall_block
PROTO((rtx
, rtx
, rtx
, rtx
));
478 /* Emit one rtl instruction to store zero in specified rtx. */
479 extern void emit_clr_insn
PROTO((rtx
));
481 /* Emit one rtl insn to store 1 in specified rtx assuming it contains 0. */
482 extern void emit_0_to_1_insn
PROTO((rtx
));
484 /* Emit one rtl insn to compare two rtx's. */
485 extern void emit_cmp_insn
PROTO((rtx
, rtx
, enum rtx_code
, rtx
,
486 enum machine_mode
, int, int));
488 /* Nonzero if a compare of mode MODE can be done straightforwardly
489 (without splitting it into pieces). */
490 extern int can_compare_p
PROTO((enum machine_mode
));
492 /* Generate code to indirectly jump to a location given in the rtx LOC. */
493 extern void emit_indirect_jump
PROTO((rtx
));
495 /* Create but don't emit one rtl instruction to add one rtx into another.
496 Modes must match; operands must meet the operation's predicates.
497 Likewise for subtraction and for just copying.
498 These do not call protect_from_queue; caller must do so. */
499 extern rtx gen_add2_insn
PROTO((rtx
, rtx
));
500 extern rtx gen_sub2_insn
PROTO((rtx
, rtx
));
501 extern rtx gen_move_insn
PROTO((rtx
, rtx
));
502 extern int have_add2_insn
PROTO((enum machine_mode
));
503 extern int have_sub2_insn
PROTO((enum machine_mode
));
505 /* Return the INSN_CODE to use for an extend operation. */
506 extern enum insn_code can_extend_p
PROTO((enum machine_mode
,
507 enum machine_mode
, int));
509 /* Generate the body of an insn to extend Y (with mode MFROM)
510 into X (with mode MTO). Do zero-extension if UNSIGNEDP is nonzero. */
511 extern rtx gen_extend_insn
PROTO((rtx
, rtx
, enum machine_mode
,
512 enum machine_mode
, int));
514 /* Initialize the tables that control conversion between fixed and
516 extern void init_fixtab
PROTO((void));
517 extern void init_floattab
PROTO((void));
519 /* Generate code for a FLOAT_EXPR. */
520 extern void expand_float
PROTO((rtx
, rtx
, int));
522 /* Generate code for a FIX_EXPR. */
523 extern void expand_fix
PROTO((rtx
, rtx
, int));
525 /* Call this once to initialize the contents of the optabs
526 appropriately for the current target machine. */
527 extern void init_optabs
PROTO((void));
529 /* Functions from expmed.c: (/
531 /* Arguments MODE, RTX: return an rtx for the negation of that value.
533 extern rtx negate_rtx
PROTO((enum machine_mode
, rtx
));
535 /* Expand a logical AND operation. */
536 extern rtx expand_and
PROTO((rtx
, rtx
, rtx
));
538 /* Emit a store-flag operation. */
539 extern rtx emit_store_flag
PROTO((rtx
, enum rtx_code
, rtx
, rtx
,
540 enum machine_mode
, int, int));
542 /* Functions from loop.c: */
544 /* Given a JUMP_INSN, return a description of the test being made. */
545 extern rtx get_condition
PROTO((rtx
, rtx
*));
547 /* Functions from expr.c: */
549 /* This is run once per compilation to set up which modes can be used
550 directly in memory and to initialize the block move optab. */
551 extern void init_expr_once
PROTO((void));
553 /* This is run at the start of compiling a function. */
554 extern void init_expr
PROTO((void));
556 /* Use protect_from_queue to convert a QUEUED expression
557 into something that you can put immediately into an instruction. */
558 extern rtx protect_from_queue
PROTO((rtx
, int));
560 /* Perform all the pending incrementations. */
561 extern void emit_queue
PROTO((void));
563 /* Emit some rtl insns to move data between rtx's, converting machine modes.
564 Both modes must be floating or both fixed. */
565 extern void convert_move
PROTO((rtx
, rtx
, int));
567 /* Convert an rtx to specified machine mode and return the result. */
568 extern rtx convert_to_mode
PROTO((enum machine_mode
, rtx
, int));
570 /* Emit code to move a block Y to a block X.
571 extern void emit_block_move PROTO((rtx, rtx, rtx, int));
573 /* Copy all or part of a value X into registers starting at REGNO.
574 The number of registers to be filled is NREGS. */
575 extern void move_block_to_reg
PROTO((int, rtx
, int, enum machine_mode
));
577 /* Copy all or part of a BLKmode value X out of registers starting at REGNO.
578 The number of registers to be filled is NREGS. */
579 extern void move_block_from_reg
PROTO((int, rtx
, int));
581 /* Mark NREGS consecutive regs, starting at REGNO, as being live now. */
582 extern void use_regs
PROTO((int, int));
584 /* Write zeros through the storage of OBJECT.
585 If OBJECT has BLKmode, SIZE is its length in bytes. */
586 extern void clear_storage
PROTO((rtx
, int));
588 /* Emit insns to set X from Y. */
589 extern rtx emit_move_insn
PROTO((rtx
, rtx
));
591 /* Emit insns to set X from Y, with no frills. */
592 extern rtx emit_move_insn_1
PROTO ((rtx
, rtx
));
594 /* Push a block of length SIZE (perhaps variable)
595 and return an rtx to address the beginning of the block. */
596 extern rtx push_block
PROTO((rtx
, int, int));
598 /* Make an operand to push someting on the stack. */
599 extern rtx gen_push_operand
PROTO((void));
602 /* Generate code to push something onto the stack, given its mode and type. */
603 extern void emit_push_insn
PROTO((rtx
, enum machine_mode
, tree
, rtx
, int,
604 int, rtx
, int, rtx
, rtx
));
606 /* Emit library call. These cannot have accurate prototypes since they have
607 a variable number of args. */
608 extern void emit_library_call ();
609 extern void emit_library_call_value ();
611 /* Expand an assignment that stores the value of FROM into TO. */
612 extern rtx expand_assignment
PROTO((tree
, tree
, int, int));
614 /* Generate code for computing expression EXP,
615 and storing the value into TARGET.
616 If SUGGEST_REG is nonzero, copy the value through a register
617 and return that register, if that is possible. */
618 extern rtx store_expr
PROTO((tree
, rtx
, int));
621 /* Given an rtx that may include add and multiply operations,
622 generate them as insns and return a pseudo-reg containing the value.
623 Useful after calling expand_expr with 1 as sum_ok. */
624 extern rtx force_operand
PROTO((rtx
, rtx
));
627 /* Generate code for computing expression EXP.
628 An rtx for the computed value is returned. The value is never null.
629 In the case of a void EXP, const0_rtx is returned. */
630 extern rtx expand_expr
PROTO((tree
, rtx
, enum machine_mode
,
631 enum expand_modifier
));
634 /* At the start of a function, record that we have no previously-pushed
635 arguments waiting to be popped. */
636 extern void init_pending_stack_adjust
PROTO((void));
638 /* When exiting from function, if safe, clear out any pending stack adjust
639 so the adjustment won't get done. */
640 extern void clear_pending_stack_adjust
PROTO((void));
642 /* Pop any previously-pushed arguments that have not been popped yet. */
643 extern void do_pending_stack_adjust
PROTO((void));
646 /* Expand all cleanups up to OLD_CLEANUPS. */
647 extern void expand_cleanups_to
PROTO((tree
));
649 /* Generate code to evaluate EXP and jump to LABEL if the value is zero. */
650 extern void jumpifnot
PROTO((tree
, rtx
));
652 /* Generate code to evaluate EXP and jump to LABEL if the value is nonzero. */
653 extern void jumpif
PROTO((tree
, rtx
));
655 /* Generate code to evaluate EXP and jump to IF_FALSE_LABEL if
656 the result is zero, or IF_TRUE_LABEL if the result is one. */
657 extern void do_jump
PROTO((tree
, rtx
, rtx
));
660 /* Generate rtl to compare two rtx's, will call emit_cmp_insn. */
661 extern rtx compare_from_rtx
PROTO((rtx
, rtx
, enum rtx_code
, int,
662 enum machine_mode
, rtx
, int));
664 /* Generate a tablejump instruction (used for switch statements). */
665 extern void do_tablejump
PROTO((rtx
, enum machine_mode
, rtx
, rtx
, rtx
));
668 /* rtl.h and tree.h were included. */
669 /* Return an rtx for the size in bytes of the value of an expr. */
670 extern rtx expr_size
PROTO((tree
));
672 extern rtx lookup_static_chain
PROTO((tree
));
674 /* Convert a stack slot address ADDR valid in function FNDECL
675 into an address valid in this function (using a static chain). */
676 extern rtx fix_lexical_addr
PROTO((rtx
, tree
));
678 /* Return the address of the trampoline for entering nested fn FUNCTION. */
679 extern rtx trampoline_address
PROTO((tree
));
681 /* Return an rtx that refers to the value returned by a function
682 in its original home. This becomes invalid if any more code is emitted. */
683 extern rtx hard_function_value
PROTO((tree
, tree
));
686 extern rtx prepare_call_address
PROTO((rtx
, tree
, rtx
*));
688 extern rtx expand_call
PROTO((tree
, rtx
, int));
689 extern void emit_call_1
PROTO((rtx
, tree
, int, int, rtx
, rtx
, int, rtx
, int));
691 extern rtx expand_shift
PROTO((enum tree_code
, enum machine_mode
, rtx
, tree
, rtx
, int));
692 extern rtx expand_divmod
PROTO((int, enum tree_code
, enum machine_mode
, rtx
, rtx
, rtx
, int));
693 extern void locate_and_pad_parm
PROTO((enum machine_mode
, tree
, int, tree
, struct args_size
*, struct args_size
*, struct args_size
*));
694 extern rtx expand_inline_function
PROTO((tree
, tree
, rtx
, int, tree
, rtx
));
695 /* Return the CODE_LABEL rtx for a LABEL_DECL, creating it if necessary. */
696 extern rtx label_rtx
PROTO((tree
));
698 /* Return an rtx for the size in bytes of the value of an expr. */
699 extern rtx
expr_size ();
701 extern rtx
lookup_static_chain ();
703 /* Convert a stack slot address ADDR valid in function FNDECL
704 into an address valid in this function (using a static chain). */
705 extern rtx
fix_lexical_addr ();
707 /* Return the address of the trampoline for entering nested fn FUNCTION. */
708 extern rtx
trampoline_address ();
710 /* Return an rtx that refers to the value returned by a function
711 in its original home. This becomes invalid if any more code is emitted. */
712 extern rtx
hard_function_value ();
714 extern rtx
prepare_call_address ();
715 extern rtx
expand_call ();
716 extern void emit_call_1 ();
717 extern rtx
expand_shift ();
718 extern rtx
expand_divmod ();
719 extern void locate_and_pad_parm ();
720 extern rtx
expand_inline_function ();
722 /* Return the CODE_LABEL rtx for a LABEL_DECL, creating it if necessary. */
723 extern rtx
label_rtx ();
726 /* Indicate how an input argument register was promoted. */
727 extern rtx
promoted_input_arg ();
729 /* Return an rtx like arg but sans any constant terms.
730 Returns the original rtx if it has no constant terms.
731 The constant terms are added and stored via a second arg. */
732 extern rtx eliminate_constant_term
PROTO((rtx
, rtx
*));
734 /* Convert arg to a valid memory address for specified machine mode,
735 by emitting insns to perform arithmetic if nec. */
736 extern rtx memory_address
PROTO((enum machine_mode
, rtx
));
738 /* Like `memory_address' but pretent `flag_force_addr' is 0. */
739 extern rtx memory_address_noforce
PROTO((enum machine_mode
, rtx
));
741 /* Return a memory reference like MEMREF, but with its mode changed
742 to MODE and its address changed to ADDR.
743 (VOIDmode means don't change the mode.
744 NULL for ADDR means don't change the address.) */
745 extern rtx change_address
PROTO((rtx
, enum machine_mode
, rtx
));
747 /* Return a memory reference like MEMREF, but which is known to have a
750 extern rtx validize_mem
PROTO((rtx
));
752 /* Convert a stack slot address ADDR valid in function FNDECL
753 into an address valid in this function (using a static chain). */
754 extern rtx
fix_lexical_addr ();
756 /* Assemble the static constant template for function entry trampolines. */
757 extern rtx assemble_trampoline_template
PROTO((void));
759 /* Return 1 if two rtx's are equivalent in structure and elements. */
760 extern int rtx_equal_p
PROTO((rtx
, rtx
));
762 /* Given rtx, return new rtx whose address won't be affected by
763 any side effects. It has been copied to a new temporary reg. */
764 extern rtx stabilize
PROTO((rtx
));
766 /* Given an rtx, copy all regs it refers to into new temps
767 and return a modified copy that refers to the new temps. */
768 extern rtx copy_all_regs
PROTO((rtx
));
770 /* Copy given rtx to a new temp reg and return that. */
771 extern rtx copy_to_reg
PROTO((rtx
));
773 /* Like copy_to_reg but always make the reg Pmode. */
774 extern rtx copy_addr_to_reg
PROTO((rtx
));
776 /* Like copy_to_reg but always make the reg the specified mode MODE. */
777 extern rtx copy_to_mode_reg
PROTO((enum machine_mode
, rtx
));
779 /* Copy given rtx to given temp reg and return that. */
780 extern rtx copy_to_suggested_reg
PROTO((rtx
, rtx
, enum machine_mode
));
782 /* Copy a value to a register if it isn't already a register.
783 Args are mode (in case value is a constant) and the value. */
784 extern rtx force_reg
PROTO((enum machine_mode
, rtx
));
786 /* Return given rtx, copied into a new temp reg if it was in memory. */
787 extern rtx force_not_mem
PROTO((rtx
));
789 /* Remove some bytes from the stack. An rtx says how many. */
790 extern void adjust_stack
PROTO((rtx
));
792 /* Add some bytes to the stack. An rtx says how many. */
793 extern void anti_adjust_stack
PROTO((rtx
));
795 /* This enum is used for the following two functions. */
796 enum save_level
{SAVE_BLOCK
, SAVE_FUNCTION
, SAVE_NONLOCAL
};
798 /* Save the stack pointer at the specified level. */
799 extern void emit_stack_save
PROTO((enum save_level
, rtx
*, rtx
));
801 /* Restore the stack pointer from a save area of the specified level. */
802 extern void emit_stack_restore
PROTO((enum save_level
, rtx
, rtx
));
804 /* Allocate some space on the stack dynamically and return its address. An rtx
805 says how many bytes. */
806 extern rtx allocate_dynamic_stack_space
PROTO((rtx
, rtx
, int));
808 /* Emit code to copy function value to a new temp reg and return that reg. */
809 extern rtx
function_value ();
811 /* Return an rtx that refers to the value returned by a library call
812 in its original home. This becomes invalid if any more code is emitted. */
813 extern rtx hard_libcall_value
PROTO((enum machine_mode
));
815 /* Emit code to copy function value to a specified place. */
816 extern void copy_function_value ();
818 /* Given an rtx, return an rtx for a value rounded up to a multiple
819 of STACK_BOUNDARY / BITS_PER_UNIT. */
820 extern rtx round_push
PROTO((rtx
));
822 extern void emit_block_move
PROTO((rtx
, rtx
, rtx
, int));
824 extern rtx store_bit_field
PROTO((rtx
, int, int, enum machine_mode
, rtx
, int, int));
825 extern rtx extract_bit_field
PROTO((rtx
, int, int, int, rtx
, enum machine_mode
, enum machine_mode
, int, int));
826 extern rtx expand_mult
PROTO((enum machine_mode
, rtx
, rtx
, rtx
, int));
827 extern rtx expand_mult_add
PROTO((rtx
, rtx
, rtx
, rtx
,enum machine_mode
, int));
828 extern rtx
expand_stmt_expr ();
830 extern rtx assemble_static_space
PROTO((int));
832 /* Hook called by expand_expr for language-specific tree codes.
833 It is up to the language front end to install a hook
834 if it has any such codes that expand_expr needs to know about. */
835 extern rtx (*lang_expand_expr
) ();