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[official-gcc.git] / gcc / optabs.h
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1 /* Definitions for code generation pass of GNU compiler.
2 Copyright (C) 2001, 2002, 2003, 2004, 2005, 2006
3 Free Software Foundation, Inc.
5 This file is part of GCC.
7 GCC 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.
12 GCC 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.
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING. If not, write to
19 the Free Software Foundation, 51 Franklin Street, Fifth Floor,
20 Boston, MA 02110-1301, USA. */
22 #ifndef GCC_OPTABS_H
23 #define GCC_OPTABS_H
25 #include "insn-codes.h"
27 /* Optabs are tables saying how to generate insn bodies
28 for various machine modes and numbers of operands.
29 Each optab applies to one operation.
31 For example, add_optab applies to addition.
33 The insn_code slot is the enum insn_code that says how to
34 generate an insn for this operation on a particular machine mode.
35 It is CODE_FOR_nothing if there is no such insn on the target machine.
37 The `lib_call' slot is the name of the library function that
38 can be used to perform the operation.
40 A few optabs, such as move_optab and cmp_optab, are used
41 by special code. */
43 struct optab_handlers GTY(())
45 enum insn_code insn_code;
46 rtx libfunc;
49 struct optab GTY(())
51 enum rtx_code code;
52 struct optab_handlers handlers[NUM_MACHINE_MODES];
54 typedef struct optab * optab;
56 /* A convert_optab is for some sort of conversion operation between
57 modes. The first array index is the destination mode, the second
58 is the source mode. */
59 struct convert_optab GTY(())
61 enum rtx_code code;
62 struct optab_handlers handlers[NUM_MACHINE_MODES][NUM_MACHINE_MODES];
64 typedef struct convert_optab *convert_optab;
66 /* Given an enum insn_code, access the function to construct
67 the body of that kind of insn. */
68 #define GEN_FCN(CODE) (insn_data[CODE].genfun)
70 /* Enumeration of valid indexes into optab_table. */
71 enum optab_index
73 OTI_add,
74 OTI_addv,
75 OTI_sub,
76 OTI_subv,
78 /* Signed and fp multiply */
79 OTI_smul,
80 OTI_smulv,
81 /* Signed multiply, return high word */
82 OTI_smul_highpart,
83 OTI_umul_highpart,
84 /* Signed multiply with result one machine mode wider than args */
85 OTI_smul_widen,
86 OTI_umul_widen,
87 /* Widening multiply of one unsigned and one signed operand. */
88 OTI_usmul_widen,
89 /* Signed multiply and add with the result and addend one machine mode
90 wider than the multiplicand and multiplier. */
91 OTI_smadd_widen,
92 /* Unigned multiply and add with the result and addend one machine mode
93 wider than the multiplicand and multiplier. */
94 OTI_umadd_widen,
95 /* Signed multiply and subtract the result and minuend one machine mode
96 wider than the multiplicand and multiplier. */
97 OTI_smsub_widen,
98 /* Unigned multiply and subtract the result and minuend one machine mode
99 wider than the multiplicand and multiplier. */
100 OTI_umsub_widen,
102 /* Signed divide */
103 OTI_sdiv,
104 OTI_sdivv,
105 /* Signed divide-and-remainder in one */
106 OTI_sdivmod,
107 OTI_udiv,
108 OTI_udivmod,
109 /* Signed remainder */
110 OTI_smod,
111 OTI_umod,
112 /* Floating point remainder functions */
113 OTI_fmod,
114 OTI_remainder,
115 /* Convert float to integer in float fmt */
116 OTI_ftrunc,
118 /* Logical and */
119 OTI_and,
120 /* Logical or */
121 OTI_ior,
122 /* Logical xor */
123 OTI_xor,
125 /* Arithmetic shift left */
126 OTI_ashl,
127 /* Logical shift right */
128 OTI_lshr,
129 /* Arithmetic shift right */
130 OTI_ashr,
131 /* Rotate left */
132 OTI_rotl,
133 /* Rotate right */
134 OTI_rotr,
135 /* Signed and floating-point minimum value */
136 OTI_smin,
137 /* Signed and floating-point maximum value */
138 OTI_smax,
139 /* Unsigned minimum value */
140 OTI_umin,
141 /* Unsigned maximum value */
142 OTI_umax,
143 /* Power */
144 OTI_pow,
145 /* Arc tangent of y/x */
146 OTI_atan2,
148 /* Move instruction. */
149 OTI_mov,
150 /* Move, preserving high part of register. */
151 OTI_movstrict,
152 /* Move, with a misaligned memory. */
153 OTI_movmisalign,
155 /* Unary operations */
156 /* Negation */
157 OTI_neg,
158 OTI_negv,
159 /* Abs value */
160 OTI_abs,
161 OTI_absv,
162 /* Byteswap */
163 OTI_bswap,
164 /* Bitwise not */
165 OTI_one_cmpl,
166 /* Bit scanning and counting */
167 OTI_ffs,
168 OTI_clz,
169 OTI_ctz,
170 OTI_popcount,
171 OTI_parity,
172 /* Square root */
173 OTI_sqrt,
174 /* Sine-Cosine */
175 OTI_sincos,
176 /* Sine */
177 OTI_sin,
178 /* Inverse sine */
179 OTI_asin,
180 /* Cosine */
181 OTI_cos,
182 /* Inverse cosine */
183 OTI_acos,
184 /* Exponential */
185 OTI_exp,
186 /* Base-10 Exponential */
187 OTI_exp10,
188 /* Base-2 Exponential */
189 OTI_exp2,
190 /* Exponential - 1*/
191 OTI_expm1,
192 /* Load exponent of a floating point number */
193 OTI_ldexp,
194 /* Multiply floating-point number by integral power of radix */
195 OTI_scalb,
196 /* Radix-independent exponent */
197 OTI_logb,
198 OTI_ilogb,
199 /* Natural Logarithm */
200 OTI_log,
201 /* Base-10 Logarithm */
202 OTI_log10,
203 /* Base-2 Logarithm */
204 OTI_log2,
205 /* logarithm of 1 plus argument */
206 OTI_log1p,
207 /* Rounding functions */
208 OTI_floor,
209 OTI_ceil,
210 OTI_btrunc,
211 OTI_round,
212 OTI_nearbyint,
213 OTI_rint,
214 /* Tangent */
215 OTI_tan,
216 /* Inverse tangent */
217 OTI_atan,
218 /* Copy sign */
219 OTI_copysign,
221 /* Test for infinite value */
222 OTI_isinf,
224 /* Compare insn; two operands. */
225 OTI_cmp,
226 /* Used only for libcalls for unsigned comparisons. */
227 OTI_ucmp,
228 /* tst insn; compare one operand against 0 */
229 OTI_tst,
231 /* Floating point comparison optabs - used primarily for libfuncs */
232 OTI_eq,
233 OTI_ne,
234 OTI_gt,
235 OTI_ge,
236 OTI_lt,
237 OTI_le,
238 OTI_unord,
240 /* String length */
241 OTI_strlen,
243 /* Combined compare & jump/store flags/move operations. */
244 OTI_cbranch,
245 OTI_cmov,
246 OTI_cstore,
248 /* Push instruction. */
249 OTI_push,
251 /* Conditional add instruction. */
252 OTI_addcc,
254 /* Reduction operations on a vector operand. */
255 OTI_reduc_smax,
256 OTI_reduc_umax,
257 OTI_reduc_smin,
258 OTI_reduc_umin,
259 OTI_reduc_splus,
260 OTI_reduc_uplus,
262 /* Summation, with result machine mode one or more wider than args. */
263 OTI_ssum_widen,
264 OTI_usum_widen,
266 /* Dot product, with result machine mode one or more wider than args. */
267 OTI_sdot_prod,
268 OTI_udot_prod,
270 /* Set specified field of vector operand. */
271 OTI_vec_set,
272 /* Extract specified field of vector operand. */
273 OTI_vec_extract,
274 /* Extract even/odd fields of vector operands. */
275 OTI_vec_extract_even,
276 OTI_vec_extract_odd,
277 /* Interleave fields of vector operands. */
278 OTI_vec_interleave_high,
279 OTI_vec_interleave_low,
280 /* Initialize vector operand. */
281 OTI_vec_init,
282 /* Whole vector shift. The shift amount is in bits. */
283 OTI_vec_shl,
284 OTI_vec_shr,
285 /* Extract specified elements from vectors, for vector load. */
286 OTI_vec_realign_load,
287 /* Widening multiplication.
288 The high/low part of the resulting vector of products is returned. */
289 OTI_vec_widen_umult_hi,
290 OTI_vec_widen_umult_lo,
291 OTI_vec_widen_smult_hi,
292 OTI_vec_widen_smult_lo,
293 /* Extract and widen the high/low part of a vector of signed or
294 floating point elements. */
295 OTI_vec_unpacks_hi,
296 OTI_vec_unpacks_lo,
297 /* Extract and widen the high/low part of a vector of unsigned
298 elements. */
299 OTI_vec_unpacku_hi,
300 OTI_vec_unpacku_lo,
302 /* Extract, convert to floating point and widen the high/low part of
303 a vector of signed or unsigned integer elements. */
304 OTI_vec_unpacks_float_hi,
305 OTI_vec_unpacks_float_lo,
306 OTI_vec_unpacku_float_hi,
307 OTI_vec_unpacku_float_lo,
309 /* Narrow (demote) and merge the elements of two vectors. */
310 OTI_vec_pack_trunc,
311 OTI_vec_pack_usat,
312 OTI_vec_pack_ssat,
314 /* Convert to signed/unsigned integer, narrow and merge elements
315 of two vectors of floating point elements. */
316 OTI_vec_pack_sfix_trunc,
317 OTI_vec_pack_ufix_trunc,
319 /* Perform a raise to the power of integer. */
320 OTI_powi,
322 OTI_MAX
325 extern GTY(()) optab optab_table[OTI_MAX];
327 #define add_optab (optab_table[OTI_add])
328 #define sub_optab (optab_table[OTI_sub])
329 #define smul_optab (optab_table[OTI_smul])
330 #define addv_optab (optab_table[OTI_addv])
331 #define subv_optab (optab_table[OTI_subv])
332 #define smul_highpart_optab (optab_table[OTI_smul_highpart])
333 #define umul_highpart_optab (optab_table[OTI_umul_highpart])
334 #define smul_widen_optab (optab_table[OTI_smul_widen])
335 #define umul_widen_optab (optab_table[OTI_umul_widen])
336 #define usmul_widen_optab (optab_table[OTI_usmul_widen])
337 #define smadd_widen_optab (optab_table[OTI_smadd_widen])
338 #define umadd_widen_optab (optab_table[OTI_umadd_widen])
339 #define smsub_widen_optab (optab_table[OTI_smsub_widen])
340 #define umsub_widen_optab (optab_table[OTI_umsub_widen])
341 #define sdiv_optab (optab_table[OTI_sdiv])
342 #define smulv_optab (optab_table[OTI_smulv])
343 #define sdivv_optab (optab_table[OTI_sdivv])
344 #define sdivmod_optab (optab_table[OTI_sdivmod])
345 #define udiv_optab (optab_table[OTI_udiv])
346 #define udivmod_optab (optab_table[OTI_udivmod])
347 #define smod_optab (optab_table[OTI_smod])
348 #define umod_optab (optab_table[OTI_umod])
349 #define fmod_optab (optab_table[OTI_fmod])
350 #define remainder_optab (optab_table[OTI_remainder])
351 #define ftrunc_optab (optab_table[OTI_ftrunc])
352 #define and_optab (optab_table[OTI_and])
353 #define ior_optab (optab_table[OTI_ior])
354 #define xor_optab (optab_table[OTI_xor])
355 #define ashl_optab (optab_table[OTI_ashl])
356 #define lshr_optab (optab_table[OTI_lshr])
357 #define ashr_optab (optab_table[OTI_ashr])
358 #define rotl_optab (optab_table[OTI_rotl])
359 #define rotr_optab (optab_table[OTI_rotr])
360 #define smin_optab (optab_table[OTI_smin])
361 #define smax_optab (optab_table[OTI_smax])
362 #define umin_optab (optab_table[OTI_umin])
363 #define umax_optab (optab_table[OTI_umax])
364 #define pow_optab (optab_table[OTI_pow])
365 #define atan2_optab (optab_table[OTI_atan2])
367 #define mov_optab (optab_table[OTI_mov])
368 #define movstrict_optab (optab_table[OTI_movstrict])
369 #define movmisalign_optab (optab_table[OTI_movmisalign])
371 #define neg_optab (optab_table[OTI_neg])
372 #define negv_optab (optab_table[OTI_negv])
373 #define abs_optab (optab_table[OTI_abs])
374 #define absv_optab (optab_table[OTI_absv])
375 #define one_cmpl_optab (optab_table[OTI_one_cmpl])
376 #define bswap_optab (optab_table[OTI_bswap])
377 #define ffs_optab (optab_table[OTI_ffs])
378 #define clz_optab (optab_table[OTI_clz])
379 #define ctz_optab (optab_table[OTI_ctz])
380 #define popcount_optab (optab_table[OTI_popcount])
381 #define parity_optab (optab_table[OTI_parity])
382 #define sqrt_optab (optab_table[OTI_sqrt])
383 #define sincos_optab (optab_table[OTI_sincos])
384 #define sin_optab (optab_table[OTI_sin])
385 #define asin_optab (optab_table[OTI_asin])
386 #define cos_optab (optab_table[OTI_cos])
387 #define acos_optab (optab_table[OTI_acos])
388 #define exp_optab (optab_table[OTI_exp])
389 #define exp10_optab (optab_table[OTI_exp10])
390 #define exp2_optab (optab_table[OTI_exp2])
391 #define expm1_optab (optab_table[OTI_expm1])
392 #define ldexp_optab (optab_table[OTI_ldexp])
393 #define scalb_optab (optab_table[OTI_scalb])
394 #define logb_optab (optab_table[OTI_logb])
395 #define ilogb_optab (optab_table[OTI_ilogb])
396 #define log_optab (optab_table[OTI_log])
397 #define log10_optab (optab_table[OTI_log10])
398 #define log2_optab (optab_table[OTI_log2])
399 #define log1p_optab (optab_table[OTI_log1p])
400 #define floor_optab (optab_table[OTI_floor])
401 #define ceil_optab (optab_table[OTI_ceil])
402 #define btrunc_optab (optab_table[OTI_btrunc])
403 #define round_optab (optab_table[OTI_round])
404 #define nearbyint_optab (optab_table[OTI_nearbyint])
405 #define rint_optab (optab_table[OTI_rint])
406 #define tan_optab (optab_table[OTI_tan])
407 #define atan_optab (optab_table[OTI_atan])
408 #define copysign_optab (optab_table[OTI_copysign])
410 #define isinf_optab (optab_table[OTI_isinf])
412 #define cmp_optab (optab_table[OTI_cmp])
413 #define ucmp_optab (optab_table[OTI_ucmp])
414 #define tst_optab (optab_table[OTI_tst])
416 #define eq_optab (optab_table[OTI_eq])
417 #define ne_optab (optab_table[OTI_ne])
418 #define gt_optab (optab_table[OTI_gt])
419 #define ge_optab (optab_table[OTI_ge])
420 #define lt_optab (optab_table[OTI_lt])
421 #define le_optab (optab_table[OTI_le])
422 #define unord_optab (optab_table[OTI_unord])
424 #define strlen_optab (optab_table[OTI_strlen])
426 #define cbranch_optab (optab_table[OTI_cbranch])
427 #define cmov_optab (optab_table[OTI_cmov])
428 #define cstore_optab (optab_table[OTI_cstore])
429 #define push_optab (optab_table[OTI_push])
430 #define addcc_optab (optab_table[OTI_addcc])
432 #define reduc_smax_optab (optab_table[OTI_reduc_smax])
433 #define reduc_umax_optab (optab_table[OTI_reduc_umax])
434 #define reduc_smin_optab (optab_table[OTI_reduc_smin])
435 #define reduc_umin_optab (optab_table[OTI_reduc_umin])
436 #define reduc_splus_optab (optab_table[OTI_reduc_splus])
437 #define reduc_uplus_optab (optab_table[OTI_reduc_uplus])
439 #define ssum_widen_optab (optab_table[OTI_ssum_widen])
440 #define usum_widen_optab (optab_table[OTI_usum_widen])
441 #define sdot_prod_optab (optab_table[OTI_sdot_prod])
442 #define udot_prod_optab (optab_table[OTI_udot_prod])
444 #define vec_set_optab (optab_table[OTI_vec_set])
445 #define vec_extract_optab (optab_table[OTI_vec_extract])
446 #define vec_extract_even_optab (optab_table[OTI_vec_extract_even])
447 #define vec_extract_odd_optab (optab_table[OTI_vec_extract_odd])
448 #define vec_interleave_high_optab (optab_table[OTI_vec_interleave_high])
449 #define vec_interleave_low_optab (optab_table[OTI_vec_interleave_low])
450 #define vec_init_optab (optab_table[OTI_vec_init])
451 #define vec_shl_optab (optab_table[OTI_vec_shl])
452 #define vec_shr_optab (optab_table[OTI_vec_shr])
453 #define vec_realign_load_optab (optab_table[OTI_vec_realign_load])
454 #define vec_widen_umult_hi_optab (optab_table[OTI_vec_widen_umult_hi])
455 #define vec_widen_umult_lo_optab (optab_table[OTI_vec_widen_umult_lo])
456 #define vec_widen_smult_hi_optab (optab_table[OTI_vec_widen_smult_hi])
457 #define vec_widen_smult_lo_optab (optab_table[OTI_vec_widen_smult_lo])
458 #define vec_unpacks_hi_optab (optab_table[OTI_vec_unpacks_hi])
459 #define vec_unpacks_lo_optab (optab_table[OTI_vec_unpacks_lo])
460 #define vec_unpacku_hi_optab (optab_table[OTI_vec_unpacku_hi])
461 #define vec_unpacku_lo_optab (optab_table[OTI_vec_unpacku_lo])
462 #define vec_unpacks_float_hi_optab (optab_table[OTI_vec_unpacks_float_hi])
463 #define vec_unpacks_float_lo_optab (optab_table[OTI_vec_unpacks_float_lo])
464 #define vec_unpacku_float_hi_optab (optab_table[OTI_vec_unpacku_float_hi])
465 #define vec_unpacku_float_lo_optab (optab_table[OTI_vec_unpacku_float_lo])
466 #define vec_pack_trunc_optab (optab_table[OTI_vec_pack_trunc])
467 #define vec_pack_ssat_optab (optab_table[OTI_vec_pack_ssat])
468 #define vec_pack_usat_optab (optab_table[OTI_vec_pack_usat])
469 #define vec_pack_sfix_trunc_optab (optab_table[OTI_vec_pack_sfix_trunc])
470 #define vec_pack_ufix_trunc_optab (optab_table[OTI_vec_pack_ufix_trunc])
472 #define powi_optab (optab_table[OTI_powi])
474 /* Conversion optabs have their own table and indexes. */
475 enum convert_optab_index
477 COI_sext,
478 COI_zext,
479 COI_trunc,
481 COI_sfix,
482 COI_ufix,
484 COI_sfixtrunc,
485 COI_ufixtrunc,
487 COI_sfloat,
488 COI_ufloat,
490 COI_lrint,
491 COI_lround,
492 COI_lfloor,
493 COI_lceil,
495 COI_MAX
498 extern GTY(()) convert_optab convert_optab_table[COI_MAX];
500 #define sext_optab (convert_optab_table[COI_sext])
501 #define zext_optab (convert_optab_table[COI_zext])
502 #define trunc_optab (convert_optab_table[COI_trunc])
503 #define sfix_optab (convert_optab_table[COI_sfix])
504 #define ufix_optab (convert_optab_table[COI_ufix])
505 #define sfixtrunc_optab (convert_optab_table[COI_sfixtrunc])
506 #define ufixtrunc_optab (convert_optab_table[COI_ufixtrunc])
507 #define sfloat_optab (convert_optab_table[COI_sfloat])
508 #define ufloat_optab (convert_optab_table[COI_ufloat])
509 #define lrint_optab (convert_optab_table[COI_lrint])
510 #define lround_optab (convert_optab_table[COI_lround])
511 #define lfloor_optab (convert_optab_table[COI_lfloor])
512 #define lceil_optab (convert_optab_table[COI_lceil])
514 /* These arrays record the insn_code of insns that may be needed to
515 perform input and output reloads of special objects. They provide a
516 place to pass a scratch register. */
517 extern enum insn_code reload_in_optab[NUM_MACHINE_MODES];
518 extern enum insn_code reload_out_optab[NUM_MACHINE_MODES];
520 /* Contains the optab used for each rtx code. */
521 extern GTY(()) optab code_to_optab[NUM_RTX_CODE + 1];
524 typedef rtx (*rtxfun) (rtx);
526 /* Indexed by the rtx-code for a conditional (e.g. EQ, LT,...)
527 gives the gen_function to make a branch to test that condition. */
529 extern rtxfun bcc_gen_fctn[NUM_RTX_CODE];
531 /* Indexed by the rtx-code for a conditional (e.g. EQ, LT,...)
532 gives the insn code to make a store-condition insn
533 to test that condition. */
535 extern enum insn_code setcc_gen_code[NUM_RTX_CODE];
537 #ifdef HAVE_conditional_move
538 /* Indexed by the machine mode, gives the insn code to make a conditional
539 move insn. */
541 extern enum insn_code movcc_gen_code[NUM_MACHINE_MODES];
542 #endif
544 /* Indexed by the machine mode, gives the insn code for vector conditional
545 operation. */
547 extern enum insn_code vcond_gen_code[NUM_MACHINE_MODES];
548 extern enum insn_code vcondu_gen_code[NUM_MACHINE_MODES];
550 /* This array records the insn_code of insns to perform block moves. */
551 extern enum insn_code movmem_optab[NUM_MACHINE_MODES];
553 /* This array records the insn_code of insns to perform block sets. */
554 extern enum insn_code setmem_optab[NUM_MACHINE_MODES];
556 /* These arrays record the insn_code of two different kinds of insns
557 to perform block compares. */
558 extern enum insn_code cmpstr_optab[NUM_MACHINE_MODES];
559 extern enum insn_code cmpstrn_optab[NUM_MACHINE_MODES];
560 extern enum insn_code cmpmem_optab[NUM_MACHINE_MODES];
562 /* Synchronization primitives. This first set is atomic operation for
563 which we don't care about the resulting value. */
564 extern enum insn_code sync_add_optab[NUM_MACHINE_MODES];
565 extern enum insn_code sync_sub_optab[NUM_MACHINE_MODES];
566 extern enum insn_code sync_ior_optab[NUM_MACHINE_MODES];
567 extern enum insn_code sync_and_optab[NUM_MACHINE_MODES];
568 extern enum insn_code sync_xor_optab[NUM_MACHINE_MODES];
569 extern enum insn_code sync_nand_optab[NUM_MACHINE_MODES];
571 /* This second set is atomic operations in which we return the value
572 that existed in memory before the operation. */
573 extern enum insn_code sync_old_add_optab[NUM_MACHINE_MODES];
574 extern enum insn_code sync_old_sub_optab[NUM_MACHINE_MODES];
575 extern enum insn_code sync_old_ior_optab[NUM_MACHINE_MODES];
576 extern enum insn_code sync_old_and_optab[NUM_MACHINE_MODES];
577 extern enum insn_code sync_old_xor_optab[NUM_MACHINE_MODES];
578 extern enum insn_code sync_old_nand_optab[NUM_MACHINE_MODES];
580 /* This third set is atomic operations in which we return the value
581 that resulted after performing the operation. */
582 extern enum insn_code sync_new_add_optab[NUM_MACHINE_MODES];
583 extern enum insn_code sync_new_sub_optab[NUM_MACHINE_MODES];
584 extern enum insn_code sync_new_ior_optab[NUM_MACHINE_MODES];
585 extern enum insn_code sync_new_and_optab[NUM_MACHINE_MODES];
586 extern enum insn_code sync_new_xor_optab[NUM_MACHINE_MODES];
587 extern enum insn_code sync_new_nand_optab[NUM_MACHINE_MODES];
589 /* Atomic compare and swap. */
590 extern enum insn_code sync_compare_and_swap[NUM_MACHINE_MODES];
591 extern enum insn_code sync_compare_and_swap_cc[NUM_MACHINE_MODES];
593 /* Atomic exchange with acquire semantics. */
594 extern enum insn_code sync_lock_test_and_set[NUM_MACHINE_MODES];
596 /* Atomic clear with release semantics. */
597 extern enum insn_code sync_lock_release[NUM_MACHINE_MODES];
599 /* Define functions given in optabs.c. */
601 extern rtx expand_widen_pattern_expr (tree exp, rtx op0, rtx op1, rtx wide_op,
602 rtx target, int unsignedp);
604 extern rtx expand_ternary_op (enum machine_mode mode, optab ternary_optab,
605 rtx op0, rtx op1, rtx op2, rtx target,
606 int unsignedp);
608 /* Expand a binary operation given optab and rtx operands. */
609 extern rtx expand_binop (enum machine_mode, optab, rtx, rtx, rtx, int,
610 enum optab_methods);
612 extern bool force_expand_binop (enum machine_mode, optab, rtx, rtx, rtx, int,
613 enum optab_methods);
615 /* Expand a binary operation with both signed and unsigned forms. */
616 extern rtx sign_expand_binop (enum machine_mode, optab, optab, rtx, rtx,
617 rtx, int, enum optab_methods);
619 /* Generate code to perform an operation on one operand with two results. */
620 extern int expand_twoval_unop (optab, rtx, rtx, rtx, int);
622 /* Generate code to perform an operation on two operands with two results. */
623 extern int expand_twoval_binop (optab, rtx, rtx, rtx, rtx, int);
625 /* Generate code to perform an operation on two operands with two
626 results, using a library function. */
627 extern bool expand_twoval_binop_libfunc (optab, rtx, rtx, rtx, rtx,
628 enum rtx_code);
630 /* Expand a unary arithmetic operation given optab rtx operand. */
631 extern rtx expand_unop (enum machine_mode, optab, rtx, rtx, int);
633 /* Expand the absolute value operation. */
634 extern rtx expand_abs_nojump (enum machine_mode, rtx, rtx, int);
635 extern rtx expand_abs (enum machine_mode, rtx, rtx, int, int);
637 /* Expand the copysign operation. */
638 extern rtx expand_copysign (rtx, rtx, rtx);
640 /* Generate an instruction with a given INSN_CODE with an output and
641 an input. */
642 extern void emit_unop_insn (int, rtx, rtx, enum rtx_code);
644 /* Emit code to perform a series of operations on a multi-word quantity, one
645 word at a time. */
646 extern rtx emit_no_conflict_block (rtx, rtx, rtx, rtx, rtx);
648 /* Emit one rtl insn to compare two rtx's. */
649 extern void emit_cmp_insn (rtx, rtx, enum rtx_code, rtx, enum machine_mode,
650 int);
652 /* The various uses that a comparison can have; used by can_compare_p:
653 jumps, conditional moves, store flag operations. */
654 enum can_compare_purpose
656 ccp_jump,
657 ccp_cmov,
658 ccp_store_flag
661 /* Return the optab used for computing the given operation on the type
662 given by the second argument. */
663 extern optab optab_for_tree_code (enum tree_code, tree);
665 /* Nonzero if a compare of mode MODE can be done straightforwardly
666 (without splitting it into pieces). */
667 extern int can_compare_p (enum rtx_code, enum machine_mode,
668 enum can_compare_purpose);
670 /* Return the INSN_CODE to use for an extend operation. */
671 extern enum insn_code can_extend_p (enum machine_mode, enum machine_mode, int);
673 /* Generate the body of an insn to extend Y (with mode MFROM)
674 into X (with mode MTO). Do zero-extension if UNSIGNEDP is nonzero. */
675 extern rtx gen_extend_insn (rtx, rtx, enum machine_mode,
676 enum machine_mode, int);
678 /* Call this to reset the function entry for one optab. */
679 extern void set_optab_libfunc (optab, enum machine_mode, const char *);
680 extern void set_conv_libfunc (convert_optab, enum machine_mode,
681 enum machine_mode, const char *);
683 /* Generate code for a FLOAT_EXPR. */
684 extern void expand_float (rtx, rtx, int);
686 /* Generate code for a FIX_EXPR. */
687 extern void expand_fix (rtx, rtx, int);
689 /* Generate code for float to integral conversion. */
690 extern bool expand_sfix_optab (rtx, rtx, convert_optab);
692 /* Return tree if target supports vector operations for COND_EXPR. */
693 bool expand_vec_cond_expr_p (tree, enum machine_mode);
695 /* Generate code for VEC_COND_EXPR. */
696 extern rtx expand_vec_cond_expr (tree, rtx);
698 /* Generate code for VEC_LSHIFT_EXPR and VEC_RSHIFT_EXPR. */
699 extern rtx expand_vec_shift_expr (tree, rtx);
701 #endif /* GCC_OPTABS_H */