alpha.md revision 1.1.1.7 1 1.1 mrg ;; Machine description for DEC Alpha for GNU C compiler
2 1.1.1.7 mrg ;; Copyright (C) 1992-2018 Free Software Foundation, Inc.
3 1.1 mrg ;; Contributed by Richard Kenner (kenner (a] vlsi1.ultra.nyu.edu)
4 1.1 mrg ;;
5 1.1 mrg ;; This file is part of GCC.
6 1.1 mrg ;;
7 1.1 mrg ;; GCC is free software; you can redistribute it and/or modify
8 1.1 mrg ;; it under the terms of the GNU General Public License as published by
9 1.1 mrg ;; the Free Software Foundation; either version 3, or (at your option)
10 1.1 mrg ;; any later version.
11 1.1 mrg ;;
12 1.1 mrg ;; GCC is distributed in the hope that it will be useful,
13 1.1 mrg ;; but WITHOUT ANY WARRANTY; without even the implied warranty of
14 1.1 mrg ;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 1.1 mrg ;; GNU General Public License for more details.
16 1.1 mrg ;;
17 1.1 mrg ;; You should have received a copy of the GNU General Public License
18 1.1 mrg ;; along with GCC; see the file COPYING3. If not see
19 1.1 mrg ;; <http://www.gnu.org/licenses/>.
20 1.1 mrg
21 1.1 mrg ;;- See file "rtl.def" for documentation on define_insn, match_*, et. al.
22 1.1 mrg
23 1.1 mrg ;; Uses of UNSPEC in this file:
24 1.1 mrg
25 1.1.1.2 mrg (define_c_enum "unspec" [
26 1.1.1.2 mrg UNSPEC_XFLT_COMPARE
27 1.1.1.2 mrg UNSPEC_ARG_HOME
28 1.1.1.2 mrg UNSPEC_LDGP1
29 1.1.1.2 mrg UNSPEC_INSXH
30 1.1.1.2 mrg UNSPEC_MSKXH
31 1.1.1.2 mrg UNSPEC_CVTQL
32 1.1.1.2 mrg UNSPEC_CVTLQ
33 1.1.1.2 mrg UNSPEC_LDGP2
34 1.1.1.2 mrg UNSPEC_LITERAL
35 1.1.1.2 mrg UNSPEC_LITUSE
36 1.1.1.2 mrg UNSPEC_SIBCALL
37 1.1.1.2 mrg UNSPEC_SYMBOL
38 1.1.1.2 mrg
39 1.1.1.2 mrg ;; TLS Support
40 1.1.1.2 mrg UNSPEC_TLSGD_CALL
41 1.1.1.2 mrg UNSPEC_TLSLDM_CALL
42 1.1.1.2 mrg UNSPEC_TLSGD
43 1.1.1.2 mrg UNSPEC_TLSLDM
44 1.1.1.2 mrg UNSPEC_DTPREL
45 1.1.1.2 mrg UNSPEC_TPREL
46 1.1.1.2 mrg UNSPEC_TP
47 1.1.1.2 mrg
48 1.1.1.2 mrg ;; Builtins
49 1.1.1.2 mrg UNSPEC_CMPBGE
50 1.1.1.2 mrg UNSPEC_ZAP
51 1.1.1.2 mrg UNSPEC_AMASK
52 1.1.1.2 mrg UNSPEC_IMPLVER
53 1.1.1.2 mrg UNSPEC_PERR
54 1.1.1.2 mrg UNSPEC_COPYSIGN
55 1.1.1.2 mrg
56 1.1.1.2 mrg ;; Atomic operations
57 1.1.1.2 mrg UNSPEC_MB
58 1.1.1.2 mrg UNSPEC_ATOMIC
59 1.1.1.2 mrg UNSPEC_CMPXCHG
60 1.1.1.2 mrg UNSPEC_XCHG
61 1.1.1.2 mrg ])
62 1.1 mrg
63 1.1 mrg ;; UNSPEC_VOLATILE:
64 1.1 mrg
65 1.1.1.2 mrg (define_c_enum "unspecv" [
66 1.1.1.2 mrg UNSPECV_IMB
67 1.1.1.2 mrg UNSPECV_BLOCKAGE
68 1.1.1.2 mrg UNSPECV_SETJMPR ; builtin_setjmp_receiver
69 1.1.1.2 mrg UNSPECV_LONGJMP ; builtin_longjmp
70 1.1.1.2 mrg UNSPECV_TRAPB
71 1.1.1.2 mrg UNSPECV_PSPL ; prologue_stack_probe_loop
72 1.1.1.2 mrg UNSPECV_REALIGN
73 1.1.1.2 mrg UNSPECV_EHR ; exception_receiver
74 1.1.1.2 mrg UNSPECV_MCOUNT
75 1.1.1.2 mrg UNSPECV_FORCE_MOV
76 1.1.1.2 mrg UNSPECV_LDGP1
77 1.1.1.2 mrg UNSPECV_PLDGP2 ; prologue ldgp
78 1.1.1.2 mrg UNSPECV_SET_TP
79 1.1.1.2 mrg UNSPECV_RPCC
80 1.1.1.2 mrg UNSPECV_SETJMPR_ER ; builtin_setjmp_receiver fragment
81 1.1.1.2 mrg UNSPECV_LL ; load-locked
82 1.1.1.2 mrg UNSPECV_SC ; store-conditional
83 1.1.1.2 mrg UNSPECV_CMPXCHG
84 1.1.1.2 mrg ])
85 1.1 mrg
86 1.1 mrg ;; On non-BWX targets, CQImode must be handled the similarly to HImode
87 1.1 mrg ;; when generating reloads.
88 1.1 mrg (define_mode_iterator RELOAD12 [QI HI CQI])
89 1.1 mrg (define_mode_attr reloadmode [(QI "qi") (HI "hi") (CQI "hi")])
90 1.1 mrg
91 1.1 mrg ;; Other mode iterators
92 1.1.1.2 mrg (define_mode_iterator IMODE [QI HI SI DI])
93 1.1 mrg (define_mode_iterator I12MODE [QI HI])
94 1.1.1.2 mrg (define_mode_iterator I124MODE [QI HI SI])
95 1.1.1.2 mrg (define_mode_iterator I24MODE [HI SI])
96 1.1.1.2 mrg (define_mode_iterator I248MODE [HI SI DI])
97 1.1 mrg (define_mode_iterator I48MODE [SI DI])
98 1.1.1.2 mrg
99 1.1.1.2 mrg (define_mode_attr DWI [(SI "DI") (DI "TI")])
100 1.1.1.2 mrg (define_mode_attr modesuffix [(QI "b") (HI "w") (SI "l") (DI "q")
101 1.1.1.2 mrg (V8QI "b8") (V4HI "w4")
102 1.1.1.2 mrg (SF "%,") (DF "%-")])
103 1.1.1.2 mrg (define_mode_attr vecmodesuffix [(QI "b8") (HI "w4")])
104 1.1.1.2 mrg
105 1.1.1.2 mrg (define_code_iterator any_maxmin [smax smin umax umin])
106 1.1.1.2 mrg
107 1.1.1.2 mrg (define_code_attr maxmin [(smax "maxs") (smin "mins")
108 1.1.1.2 mrg (umax "maxu") (umin "minu")])
109 1.1 mrg
110 1.1 mrg ;; Where necessary, the suffixes _le and _be are used to distinguish between
111 1.1 mrg ;; little-endian and big-endian patterns.
112 1.1 mrg ;;
113 1.1 mrg ;; Note that the Unicos/Mk assembler does not support the following
114 1.1 mrg ;; opcodes: mov, fmov, nop, fnop, unop.
115 1.1 mrg
117 1.1 mrg ;; Processor type -- this attribute must exactly match the processor_type
118 1.1 mrg ;; enumeration in alpha.h.
119 1.1 mrg
120 1.1 mrg (define_attr "tune" "ev4,ev5,ev6"
121 1.1 mrg (const (symbol_ref "((enum attr_tune) alpha_tune)")))
122 1.1 mrg
123 1.1 mrg ;; Define an insn type attribute. This is used in function unit delay
124 1.1 mrg ;; computations, among other purposes. For the most part, we use the names
125 1.1 mrg ;; defined in the EV4 documentation, but add a few that we have to know about
126 1.1 mrg ;; separately.
127 1.1 mrg
128 1.1 mrg (define_attr "type"
129 1.1 mrg "ild,fld,ldsym,ist,fst,ibr,callpal,fbr,jsr,iadd,ilog,shift,icmov,fcmov,
130 1.1 mrg icmp,imul,fadd,fmul,fcpys,fdiv,fsqrt,misc,mvi,ftoi,itof,mb,ld_l,st_c,
131 1.1 mrg multi,none"
132 1.1 mrg (const_string "iadd"))
133 1.1 mrg
134 1.1 mrg ;; Describe a user's asm statement.
135 1.1 mrg (define_asm_attributes
136 1.1 mrg [(set_attr "type" "multi")])
137 1.1 mrg
138 1.1 mrg ;; Define the operand size an insn operates on. Used primarily by mul
139 1.1 mrg ;; and div operations that have size dependent timings.
140 1.1 mrg
141 1.1 mrg (define_attr "opsize" "si,di,udi"
142 1.1 mrg (const_string "di"))
143 1.1 mrg
144 1.1 mrg ;; The TRAP attribute marks instructions that may generate traps
145 1.1 mrg ;; (which are imprecise and may need a trapb if software completion
146 1.1 mrg ;; is desired).
147 1.1 mrg
148 1.1 mrg (define_attr "trap" "no,yes"
149 1.1 mrg (const_string "no"))
150 1.1 mrg
151 1.1 mrg ;; The ROUND_SUFFIX attribute marks which instructions require a
152 1.1 mrg ;; rounding-mode suffix. The value NONE indicates no suffix,
153 1.1 mrg ;; the value NORMAL indicates a suffix controlled by alpha_fprm.
154 1.1 mrg
155 1.1 mrg (define_attr "round_suffix" "none,normal,c"
156 1.1 mrg (const_string "none"))
157 1.1 mrg
158 1.1 mrg ;; The TRAP_SUFFIX attribute marks instructions requiring a trap-mode suffix:
159 1.1 mrg ;; NONE no suffix
160 1.1 mrg ;; SU accepts only /su (cmpt et al)
161 1.1 mrg ;; SUI accepts only /sui (cvtqt and cvtqs)
162 1.1 mrg ;; V_SV accepts /v and /sv (cvtql only)
163 1.1 mrg ;; V_SV_SVI accepts /v, /sv and /svi (cvttq only)
164 1.1 mrg ;; U_SU_SUI accepts /u, /su and /sui (most fp instructions)
165 1.1 mrg ;;
166 1.1 mrg ;; The actual suffix emitted is controlled by alpha_fptm.
167 1.1 mrg
168 1.1 mrg (define_attr "trap_suffix" "none,su,sui,v_sv,v_sv_svi,u_su_sui"
169 1.1 mrg (const_string "none"))
170 1.1 mrg
171 1.1 mrg ;; The length of an instruction sequence in bytes.
172 1.1 mrg
173 1.1 mrg (define_attr "length" ""
174 1.1 mrg (const_int 4))
175 1.1 mrg
176 1.1 mrg ;; The USEGP attribute marks instructions that have relocations that use
177 1.1 mrg ;; the GP.
178 1.1 mrg
179 1.1 mrg (define_attr "usegp" "no,yes"
180 1.1 mrg (cond [(eq_attr "type" "ldsym,jsr")
181 1.1 mrg (const_string "yes")
182 1.1 mrg (eq_attr "type" "ild,fld,ist,fst")
183 1.1 mrg (symbol_ref "((enum attr_usegp) alpha_find_lo_sum_using_gp (insn))")
184 1.1 mrg ]
185 1.1 mrg (const_string "no")))
186 1.1 mrg
187 1.1 mrg ;; The CANNOT_COPY attribute marks instructions with relocations that
188 1.1 mrg ;; cannot easily be duplicated. This includes insns with gpdisp relocs
189 1.1 mrg ;; since they have to stay in 1-1 correspondence with one another. This
190 1.1 mrg ;; also includes jsr insns, since they must stay in correspondence with
191 1.1 mrg ;; the immediately following gpdisp instructions.
192 1.1 mrg
193 1.1 mrg (define_attr "cannot_copy" "false,true"
194 1.1.1.2 mrg (const_string "false"))
195 1.1.1.2 mrg
196 1.1.1.2 mrg ;; Used to control the "enabled" attribute on a per-instruction basis.
197 1.1.1.2 mrg ;; For convenience, conflate ABI issues re loading of addresses with
198 1.1.1.2 mrg ;; an "isa".
199 1.1.1.2 mrg (define_attr "isa" "base,bwx,max,fix,cix,vms,ner,er"
200 1.1.1.2 mrg (const_string "base"))
201 1.1.1.2 mrg
202 1.1.1.2 mrg (define_attr "enabled" ""
203 1.1.1.2 mrg (cond [(eq_attr "isa" "bwx") (symbol_ref "TARGET_BWX")
204 1.1.1.2 mrg (eq_attr "isa" "max") (symbol_ref "TARGET_MAX")
205 1.1.1.2 mrg (eq_attr "isa" "fix") (symbol_ref "TARGET_FIX")
206 1.1.1.2 mrg (eq_attr "isa" "cix") (symbol_ref "TARGET_CIX")
207 1.1.1.2 mrg (eq_attr "isa" "vms") (symbol_ref "TARGET_ABI_OPEN_VMS")
208 1.1.1.2 mrg (eq_attr "isa" "ner") (symbol_ref "!TARGET_EXPLICIT_RELOCS")
209 1.1.1.2 mrg (eq_attr "isa" "er") (symbol_ref "TARGET_EXPLICIT_RELOCS")
210 1.1.1.2 mrg ]
211 1.1 mrg (const_int 1)))
212 1.1 mrg
214 1.1 mrg ;; Include scheduling descriptions.
215 1.1 mrg
216 1.1 mrg (include "ev4.md")
217 1.1 mrg (include "ev5.md")
218 1.1 mrg (include "ev6.md")
219 1.1 mrg
220 1.1 mrg
222 1.1 mrg ;; Operand and operator predicates and constraints
223 1.1 mrg
224 1.1 mrg (include "predicates.md")
225 1.1 mrg (include "constraints.md")
226 1.1 mrg
227 1.1 mrg
229 1.1 mrg ;; First define the arithmetic insns. Note that the 32-bit forms also
230 1.1 mrg ;; sign-extend.
231 1.1 mrg
232 1.1 mrg ;; Handle 32-64 bit extension from memory to a floating point register
233 1.1 mrg ;; specially, since this occurs frequently in int->double conversions.
234 1.1 mrg ;;
235 1.1 mrg ;; Note that while we must retain the =f case in the insn for reload's
236 1.1.1.2 mrg ;; benefit, it should be eliminated after reload, so we should never emit
237 1.1.1.2 mrg ;; code for that case. But we don't reject the possibility.
238 1.1 mrg
239 1.1 mrg (define_expand "extendsidi2"
240 1.1 mrg [(set (match_operand:DI 0 "register_operand")
241 1.1 mrg (sign_extend:DI (match_operand:SI 1 "nonimmediate_operand")))])
242 1.1 mrg
243 1.1 mrg (define_insn "*cvtlq"
244 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=f")
245 1.1 mrg (unspec:DI [(match_operand:SF 1 "reg_or_0_operand" "fG")]
246 1.1 mrg UNSPEC_CVTLQ))]
247 1.1 mrg ""
248 1.1 mrg "cvtlq %1,%0"
249 1.1 mrg [(set_attr "type" "fadd")])
250 1.1 mrg
251 1.1 mrg (define_insn "*extendsidi2_1"
252 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r,r,!*f")
253 1.1 mrg (sign_extend:DI
254 1.1 mrg (match_operand:SI 1 "nonimmediate_operand" "r,m,m")))]
255 1.1 mrg ""
256 1.1 mrg "@
257 1.1 mrg addl $31,%1,%0
258 1.1 mrg ldl %0,%1
259 1.1 mrg lds %0,%1\;cvtlq %0,%0"
260 1.1.1.2 mrg [(set_attr "type" "iadd,ild,fld")
261 1.1.1.2 mrg (set_attr "length" "*,*,8")])
262 1.1 mrg
263 1.1 mrg (define_split
264 1.1 mrg [(set (match_operand:DI 0 "hard_fp_register_operand")
265 1.1 mrg (sign_extend:DI (match_operand:SI 1 "memory_operand")))]
266 1.1 mrg "reload_completed"
267 1.1 mrg [(set (match_dup 2) (match_dup 1))
268 1.1 mrg (set (match_dup 0) (unspec:DI [(match_dup 2)] UNSPEC_CVTLQ))]
269 1.1 mrg {
270 1.1 mrg operands[1] = adjust_address (operands[1], SFmode, 0);
271 1.1 mrg operands[2] = gen_rtx_REG (SFmode, REGNO (operands[0]));
272 1.1 mrg })
273 1.1 mrg
274 1.1.1.2 mrg ;; Optimize sign-extension of SImode loads. This shows up in the wake of
275 1.1.1.2 mrg ;; reload when converting fp->int.
276 1.1.1.2 mrg
277 1.1 mrg (define_peephole2
278 1.1 mrg [(set (match_operand:SI 0 "hard_int_register_operand")
279 1.1 mrg (match_operand:SI 1 "memory_operand"))
280 1.1 mrg (set (match_operand:DI 2 "hard_int_register_operand")
281 1.1.1.2 mrg (sign_extend:DI (match_dup 0)))]
282 1.1 mrg "true_regnum (operands[0]) == true_regnum (operands[2])
283 1.1 mrg || peep2_reg_dead_p (2, operands[0])"
284 1.1 mrg [(set (match_dup 2)
285 1.1 mrg (sign_extend:DI (match_dup 1)))])
286 1.1 mrg
287 1.1 mrg (define_insn "addsi3"
288 1.1 mrg [(set (match_operand:SI 0 "register_operand" "=r,r,r,r")
289 1.1 mrg (plus:SI (match_operand:SI 1 "reg_or_0_operand" "%rJ,rJ,rJ,rJ")
290 1.1 mrg (match_operand:SI 2 "add_operand" "rI,O,K,L")))]
291 1.1 mrg ""
292 1.1 mrg "@
293 1.1 mrg addl %r1,%2,%0
294 1.1 mrg subl %r1,%n2,%0
295 1.1.1.2 mrg lda %0,%2(%r1)
296 1.1.1.2 mrg ldah %0,%h2(%r1)")
297 1.1.1.2 mrg
298 1.1 mrg (define_split
299 1.1 mrg [(set (match_operand:SI 0 "register_operand")
300 1.1 mrg (plus:SI (match_operand:SI 1 "register_operand")
301 1.1 mrg (match_operand:SI 2 "const_int_operand")))]
302 1.1 mrg "! add_operand (operands[2], SImode)"
303 1.1 mrg [(set (match_dup 0) (plus:SI (match_dup 1) (match_dup 3)))
304 1.1 mrg (set (match_dup 0) (plus:SI (match_dup 0) (match_dup 4)))]
305 1.1 mrg {
306 1.1 mrg HOST_WIDE_INT val = INTVAL (operands[2]);
307 1.1 mrg HOST_WIDE_INT low = (val & 0xffff) - 2 * (val & 0x8000);
308 1.1 mrg HOST_WIDE_INT rest = val - low;
309 1.1 mrg
310 1.1 mrg operands[3] = GEN_INT (rest);
311 1.1 mrg operands[4] = GEN_INT (low);
312 1.1 mrg })
313 1.1 mrg
314 1.1 mrg (define_insn "*addsi_se"
315 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r,r")
316 1.1 mrg (sign_extend:DI
317 1.1 mrg (plus:SI (match_operand:SI 1 "reg_or_0_operand" "%rJ,rJ")
318 1.1 mrg (match_operand:SI 2 "sext_add_operand" "rI,O"))))]
319 1.1 mrg ""
320 1.1 mrg "@
321 1.1 mrg addl %r1,%2,%0
322 1.1 mrg subl %r1,%n2,%0")
323 1.1 mrg
324 1.1 mrg (define_insn "*addsi_se2"
325 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r,r")
326 1.1 mrg (sign_extend:DI
327 1.1 mrg (subreg:SI (plus:DI (match_operand:DI 1 "reg_or_0_operand" "%rJ,rJ")
328 1.1 mrg (match_operand:DI 2 "sext_add_operand" "rI,O"))
329 1.1 mrg 0)))]
330 1.1 mrg ""
331 1.1 mrg "@
332 1.1.1.2 mrg addl %r1,%2,%0
333 1.1 mrg subl %r1,%n2,%0")
334 1.1.1.2 mrg
335 1.1.1.2 mrg (define_split
336 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand")
337 1.1 mrg (sign_extend:DI
338 1.1 mrg (plus:SI (match_operand:SI 1 "reg_not_elim_operand")
339 1.1 mrg (match_operand:SI 2 "const_int_operand"))))
340 1.1.1.6 mrg (clobber (match_operand:SI 3 "reg_not_elim_operand"))]
341 1.1.1.6 mrg "! sext_add_operand (operands[2], SImode) && INTVAL (operands[2]) > 0
342 1.1 mrg && INTVAL (operands[2]) % 4 == 0"
343 1.1 mrg [(set (match_dup 3) (match_dup 4))
344 1.1 mrg (set (match_dup 0) (sign_extend:DI (plus:SI (ashift:SI (match_dup 3)
345 1.1 mrg (match_dup 5))
346 1.1 mrg (match_dup 1))))]
347 1.1 mrg {
348 1.1 mrg HOST_WIDE_INT val = INTVAL (operands[2]) / 4;
349 1.1 mrg int mult = 4;
350 1.1 mrg
351 1.1.1.6 mrg if (val % 2 == 0)
352 1.1 mrg val /= 2, mult = 8;
353 1.1 mrg
354 1.1 mrg operands[4] = GEN_INT (val);
355 1.1.1.2 mrg operands[5] = GEN_INT (exact_log2 (mult));
356 1.1 mrg })
357 1.1 mrg
358 1.1.1.2 mrg (define_split
359 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand")
360 1.1.1.2 mrg (sign_extend:DI
361 1.1.1.2 mrg (plus:SI (match_operator:SI 1 "comparison_operator"
362 1.1 mrg [(match_operand 2)
363 1.1 mrg (match_operand 3)])
364 1.1 mrg (match_operand:SI 4 "add_operand"))))
365 1.1 mrg (clobber (match_operand:DI 5 "register_operand"))]
366 1.1 mrg ""
367 1.1 mrg [(set (match_dup 5) (match_dup 6))
368 1.1 mrg (set (match_dup 0) (sign_extend:DI (plus:SI (match_dup 7) (match_dup 4))))]
369 1.1 mrg {
370 1.1 mrg operands[6] = gen_rtx_fmt_ee (GET_CODE (operands[1]), DImode,
371 1.1 mrg operands[2], operands[3]);
372 1.1.1.2 mrg operands[7] = gen_lowpart (SImode, operands[5]);
373 1.1.1.2 mrg })
374 1.1.1.2 mrg
375 1.1 mrg (define_expand "adddi3"
376 1.1 mrg [(set (match_operand:DI 0 "register_operand")
377 1.1 mrg (plus:DI (match_operand:DI 1 "register_operand")
378 1.1 mrg (match_operand:DI 2 "add_operand")))])
379 1.1.1.2 mrg
380 1.1 mrg (define_insn "*adddi_er_lo16_dtp"
381 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
382 1.1 mrg (lo_sum:DI (match_operand:DI 1 "register_operand" "r")
383 1.1 mrg (match_operand:DI 2 "dtp16_symbolic_operand")))]
384 1.1 mrg "HAVE_AS_TLS"
385 1.1 mrg "lda %0,%2(%1)\t\t!dtprel")
386 1.1.1.2 mrg
387 1.1 mrg (define_insn "*adddi_er_hi32_dtp"
388 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
389 1.1 mrg (plus:DI (match_operand:DI 1 "register_operand" "r")
390 1.1 mrg (high:DI (match_operand:DI 2 "dtp32_symbolic_operand"))))]
391 1.1 mrg "HAVE_AS_TLS"
392 1.1 mrg "ldah %0,%2(%1)\t\t!dtprelhi")
393 1.1.1.2 mrg
394 1.1 mrg (define_insn "*adddi_er_lo32_dtp"
395 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
396 1.1 mrg (lo_sum:DI (match_operand:DI 1 "register_operand" "r")
397 1.1 mrg (match_operand:DI 2 "dtp32_symbolic_operand")))]
398 1.1 mrg "HAVE_AS_TLS"
399 1.1 mrg "lda %0,%2(%1)\t\t!dtprello")
400 1.1.1.2 mrg
401 1.1 mrg (define_insn "*adddi_er_lo16_tp"
402 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
403 1.1 mrg (lo_sum:DI (match_operand:DI 1 "register_operand" "r")
404 1.1 mrg (match_operand:DI 2 "tp16_symbolic_operand")))]
405 1.1 mrg "HAVE_AS_TLS"
406 1.1 mrg "lda %0,%2(%1)\t\t!tprel")
407 1.1.1.2 mrg
408 1.1 mrg (define_insn "*adddi_er_hi32_tp"
409 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
410 1.1 mrg (plus:DI (match_operand:DI 1 "register_operand" "r")
411 1.1 mrg (high:DI (match_operand:DI 2 "tp32_symbolic_operand"))))]
412 1.1 mrg "HAVE_AS_TLS"
413 1.1 mrg "ldah %0,%2(%1)\t\t!tprelhi")
414 1.1.1.2 mrg
415 1.1 mrg (define_insn "*adddi_er_lo32_tp"
416 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
417 1.1 mrg (lo_sum:DI (match_operand:DI 1 "register_operand" "r")
418 1.1 mrg (match_operand:DI 2 "tp32_symbolic_operand")))]
419 1.1 mrg "HAVE_AS_TLS"
420 1.1 mrg "lda %0,%2(%1)\t\t!tprello")
421 1.1.1.2 mrg
422 1.1 mrg (define_insn "*adddi_er_high_l"
423 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
424 1.1 mrg (plus:DI (match_operand:DI 1 "register_operand" "r")
425 1.1 mrg (high:DI (match_operand:DI 2 "local_symbolic_operand"))))]
426 1.1 mrg "TARGET_EXPLICIT_RELOCS && reload_completed"
427 1.1.1.2 mrg "ldah %0,%2(%1)\t\t!gprelhigh"
428 1.1.1.2 mrg [(set_attr "usegp" "yes")])
429 1.1 mrg
430 1.1 mrg (define_split
431 1.1 mrg [(set (match_operand:DI 0 "register_operand")
432 1.1 mrg (high:DI (match_operand:DI 1 "local_symbolic_operand")))]
433 1.1 mrg "TARGET_EXPLICIT_RELOCS && reload_completed"
434 1.1 mrg [(set (match_dup 0)
435 1.1 mrg (plus:DI (match_dup 2) (high:DI (match_dup 1))))]
436 1.1 mrg "operands[2] = pic_offset_table_rtx;")
437 1.1 mrg
438 1.1 mrg ;; We used to expend quite a lot of effort choosing addq/subq/lda.
439 1.1 mrg ;; With complications like
440 1.1 mrg ;;
441 1.1 mrg ;; The NT stack unwind code can't handle a subq to adjust the stack
442 1.1 mrg ;; (that's a bug, but not one we can do anything about). As of NT4.0 SP3,
443 1.1 mrg ;; the exception handling code will loop if a subq is used and an
444 1.1 mrg ;; exception occurs.
445 1.1 mrg ;;
446 1.1 mrg ;; The 19980616 change to emit prologues as RTL also confused some
447 1.1 mrg ;; versions of GDB, which also interprets prologues. This has been
448 1.1 mrg ;; fixed as of GDB 4.18, but it does not harm to unconditionally
449 1.1 mrg ;; use lda here.
450 1.1 mrg ;;
451 1.1 mrg ;; and the fact that the three insns schedule exactly the same, it's
452 1.1 mrg ;; just not worth the effort.
453 1.1 mrg
454 1.1 mrg (define_insn "*adddi_internal"
455 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r,r,r")
456 1.1 mrg (plus:DI (match_operand:DI 1 "register_operand" "%r,r,r")
457 1.1 mrg (match_operand:DI 2 "add_operand" "r,K,L")))]
458 1.1 mrg ""
459 1.1 mrg "@
460 1.1 mrg addq %1,%2,%0
461 1.1 mrg lda %0,%2(%1)
462 1.1 mrg ldah %0,%h2(%1)")
463 1.1 mrg
464 1.1 mrg ;; ??? Allow large constants when basing off the frame pointer or some
465 1.1 mrg ;; virtual register that may eliminate to the frame pointer. This is
466 1.1 mrg ;; done because register elimination offsets will change the hi/lo split,
467 1.1 mrg ;; and if we split before reload, we will require additional instructions.
468 1.1 mrg
469 1.1 mrg (define_insn "*adddi_fp_hack"
470 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r,r,r")
471 1.1 mrg (plus:DI (match_operand:DI 1 "reg_no_subreg_operand" "r,r,r")
472 1.1 mrg (match_operand:DI 2 "const_int_operand" "K,L,n")))]
473 1.1 mrg "NONSTRICT_REG_OK_FP_BASE_P (operands[1])
474 1.1 mrg && INTVAL (operands[2]) >= 0
475 1.1 mrg /* This is the largest constant an lda+ldah pair can add, minus
476 1.1 mrg an upper bound on the displacement between SP and AP during
477 1.1 mrg register elimination. See INITIAL_ELIMINATION_OFFSET. */
478 1.1 mrg && INTVAL (operands[2])
479 1.1 mrg < (0x7fff8000
480 1.1 mrg - FIRST_PSEUDO_REGISTER * UNITS_PER_WORD
481 1.1 mrg - ALPHA_ROUND(crtl->outgoing_args_size)
482 1.1 mrg - (ALPHA_ROUND (get_frame_size ()
483 1.1 mrg + max_reg_num () * UNITS_PER_WORD
484 1.1 mrg + crtl->args.pretend_args_size)
485 1.1 mrg - crtl->args.pretend_args_size))"
486 1.1 mrg "@
487 1.1 mrg lda %0,%2(%1)
488 1.1 mrg ldah %0,%h2(%1)
489 1.1 mrg #")
490 1.1.1.2 mrg
491 1.1.1.2 mrg ;; Don't do this if we are adjusting SP since we don't want to do it
492 1.1.1.2 mrg ;; in two steps. Don't split FP sources for the reason listed above.
493 1.1 mrg (define_split
494 1.1 mrg [(set (match_operand:DI 0 "register_operand")
495 1.1 mrg (plus:DI (match_operand:DI 1 "register_operand")
496 1.1 mrg (match_operand:DI 2 "const_int_operand")))]
497 1.1 mrg "! add_operand (operands[2], DImode)
498 1.1 mrg && operands[0] != stack_pointer_rtx
499 1.1 mrg && operands[1] != frame_pointer_rtx
500 1.1 mrg && operands[1] != arg_pointer_rtx"
501 1.1 mrg [(set (match_dup 0) (plus:DI (match_dup 1) (match_dup 3)))
502 1.1 mrg (set (match_dup 0) (plus:DI (match_dup 0) (match_dup 4)))]
503 1.1 mrg {
504 1.1 mrg HOST_WIDE_INT val = INTVAL (operands[2]);
505 1.1 mrg HOST_WIDE_INT low = (val & 0xffff) - 2 * (val & 0x8000);
506 1.1 mrg HOST_WIDE_INT rest = val - low;
507 1.1 mrg rtx rest_rtx = GEN_INT (rest);
508 1.1 mrg
509 1.1 mrg operands[4] = GEN_INT (low);
510 1.1 mrg if (satisfies_constraint_L (rest_rtx))
511 1.1 mrg operands[3] = rest_rtx;
512 1.1 mrg else if (can_create_pseudo_p ())
513 1.1 mrg {
514 1.1 mrg operands[3] = gen_reg_rtx (DImode);
515 1.1 mrg emit_move_insn (operands[3], operands[2]);
516 1.1 mrg emit_insn (gen_adddi3 (operands[0], operands[1], operands[3]));
517 1.1 mrg DONE;
518 1.1 mrg }
519 1.1.1.2 mrg else
520 1.1.1.2 mrg FAIL;
521 1.1.1.2 mrg })
522 1.1.1.6 mrg
523 1.1.1.6 mrg (define_insn "*sadd<modesuffix>"
524 1.1.1.2 mrg [(set (match_operand:I48MODE 0 "register_operand" "=r,r")
525 1.1 mrg (plus:I48MODE
526 1.1 mrg (ashift:I48MODE (match_operand:I48MODE 1 "reg_not_elim_operand" "r,r")
527 1.1.1.6 mrg (match_operand:I48MODE 2 "const23_operand" "I,I"))
528 1.1.1.6 mrg (match_operand:I48MODE 3 "sext_add_operand" "rI,O")))]
529 1.1.1.6 mrg ""
530 1.1.1.6 mrg "@
531 1.1.1.6 mrg s%P2add<modesuffix> %1,%3,%0
532 1.1.1.6 mrg s%P2sub<modesuffix> %1,%n3,%0")
533 1.1.1.6 mrg
534 1.1.1.6 mrg (define_insn_and_split "*saddsi_1"
535 1.1.1.6 mrg [(set (match_operand:SI 0 "register_operand" "=r,r")
536 1.1.1.6 mrg (plus:SI
537 1.1.1.6 mrg (subreg:SI
538 1.1.1.6 mrg (ashift:DI (match_operand:DI 1 "reg_not_elim_operand" "r,r")
539 1.1.1.6 mrg (match_operand:DI 2 "const23_operand" "I,I")) 0)
540 1.1.1.6 mrg (match_operand:SI 3 "sext_add_operand" "rI,O")))]
541 1.1.1.6 mrg ""
542 1.1.1.6 mrg "#"
543 1.1.1.6 mrg ""
544 1.1 mrg [(set (match_dup 0)
545 1.1 mrg (plus:SI (ashift:SI (match_dup 1) (match_dup 2))
546 1.1 mrg (match_dup 3)))]
547 1.1 mrg "operands[1] = gen_lowpart (SImode, operands[1]);")
548 1.1.1.6 mrg
549 1.1.1.6 mrg (define_insn "*saddl_se"
550 1.1.1.6 mrg [(set (match_operand:DI 0 "register_operand" "=r,r")
551 1.1.1.6 mrg (sign_extend:DI
552 1.1 mrg (plus:SI
553 1.1 mrg (ashift:SI (match_operand:SI 1 "reg_not_elim_operand" "r,r")
554 1.1.1.6 mrg (match_operand:SI 2 "const23_operand" "I,I"))
555 1.1.1.6 mrg (match_operand:SI 3 "sext_add_operand" "rI,O"))))]
556 1.1.1.6 mrg ""
557 1.1.1.6 mrg "@
558 1.1.1.6 mrg s%P2addl %1,%3,%0
559 1.1.1.6 mrg s%P2subl %1,%n3,%0")
560 1.1.1.6 mrg
561 1.1.1.6 mrg (define_insn_and_split "*saddl_se_1"
562 1.1.1.6 mrg [(set (match_operand:DI 0 "register_operand" "=r,r")
563 1.1.1.6 mrg (sign_extend:DI
564 1.1.1.6 mrg (plus:SI
565 1.1.1.6 mrg (subreg:SI
566 1.1.1.6 mrg (ashift:DI (match_operand:DI 1 "reg_not_elim_operand" "r,r")
567 1.1.1.6 mrg (match_operand:DI 2 "const23_operand" "I,I")) 0)
568 1.1.1.6 mrg (match_operand:SI 3 "sext_add_operand" "rI,O"))))]
569 1.1.1.6 mrg ""
570 1.1.1.6 mrg "#"
571 1.1.1.6 mrg ""
572 1.1.1.6 mrg [(set (match_dup 0)
573 1.1 mrg (sign_extend:DI
574 1.1 mrg (plus:SI (ashift:SI (match_dup 1) (match_dup 2))
575 1.1.1.2 mrg (match_dup 3))))]
576 1.1 mrg "operands[1] = gen_lowpart (SImode, operands[1]);")
577 1.1.1.6 mrg
578 1.1.1.2 mrg (define_split
579 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand")
580 1.1.1.6 mrg (sign_extend:DI
581 1.1.1.2 mrg (plus:SI (ashift:SI (match_operator:SI 1 "comparison_operator"
582 1.1.1.2 mrg [(match_operand 2)
583 1.1 mrg (match_operand 3)])
584 1.1 mrg (match_operand:SI 4 "const23_operand"))
585 1.1 mrg (match_operand:SI 5 "sext_add_operand"))))
586 1.1.1.6 mrg (clobber (match_operand:DI 6 "reg_not_elim_operand"))]
587 1.1 mrg ""
588 1.1 mrg [(set (match_dup 6) (match_dup 7))
589 1.1 mrg (set (match_dup 0)
590 1.1 mrg (sign_extend:DI (plus:SI (ashift:SI (match_dup 8) (match_dup 4))
591 1.1 mrg (match_dup 5))))]
592 1.1 mrg {
593 1.1 mrg operands[7] = gen_rtx_fmt_ee (GET_CODE (operands[1]), DImode,
594 1.1.1.2 mrg operands[2], operands[3]);
595 1.1.1.2 mrg operands[8] = gen_lowpart (SImode, operands[6]);
596 1.1.1.2 mrg })
597 1.1.1.2 mrg
598 1.1.1.2 mrg (define_insn "addv<mode>3"
599 1.1.1.2 mrg [(set (match_operand:I48MODE 0 "register_operand" "=r,r")
600 1.1.1.2 mrg (plus:I48MODE (match_operand:I48MODE 1 "reg_or_0_operand" "%rJ,rJ")
601 1.1.1.2 mrg (match_operand:I48MODE 2 "sext_add_operand" "rI,O")))
602 1.1 mrg (trap_if (ne (plus:<DWI> (sign_extend:<DWI> (match_dup 1))
603 1.1 mrg (sign_extend:<DWI> (match_dup 2)))
604 1.1 mrg (sign_extend:<DWI> (plus:I48MODE (match_dup 1)
605 1.1.1.2 mrg (match_dup 2))))
606 1.1.1.2 mrg (const_int 0))]
607 1.1 mrg ""
608 1.1.1.2 mrg "@
609 1.1.1.2 mrg add<modesuffix>v %r1,%2,%0
610 1.1.1.2 mrg sub<modesuffix>v %r1,%n2,%0")
611 1.1 mrg
612 1.1.1.2 mrg (define_insn "neg<mode>2"
613 1.1 mrg [(set (match_operand:I48MODE 0 "register_operand" "=r")
614 1.1 mrg (neg:I48MODE (match_operand:I48MODE 1 "reg_or_8bit_operand" "rI")))]
615 1.1 mrg ""
616 1.1 mrg "sub<modesuffix> $31,%1,%0")
617 1.1 mrg
618 1.1 mrg (define_insn "*negsi_se"
619 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
620 1.1 mrg (sign_extend:DI (neg:SI
621 1.1.1.2 mrg (match_operand:SI 1 "reg_or_8bit_operand" "rI"))))]
622 1.1.1.2 mrg ""
623 1.1.1.2 mrg "subl $31,%1,%0")
624 1.1.1.2 mrg
625 1.1.1.2 mrg (define_insn "negv<mode>2"
626 1.1 mrg [(set (match_operand:I48MODE 0 "register_operand" "=r")
627 1.1 mrg (neg:I48MODE (match_operand:I48MODE 1 "register_operand" "r")))
628 1.1.1.2 mrg (trap_if (ne (neg:<DWI> (sign_extend:<DWI> (match_dup 1)))
629 1.1 mrg (sign_extend:<DWI> (neg:I48MODE (match_dup 1))))
630 1.1.1.2 mrg (const_int 0))]
631 1.1.1.2 mrg ""
632 1.1.1.2 mrg "sub<modesuffix>v $31,%1,%0")
633 1.1.1.2 mrg
634 1.1 mrg (define_insn "sub<mode>3"
635 1.1.1.2 mrg [(set (match_operand:I48MODE 0 "register_operand" "=r")
636 1.1 mrg (minus:I48MODE (match_operand:I48MODE 1 "reg_or_0_operand" "rJ")
637 1.1 mrg (match_operand:I48MODE 2 "reg_or_8bit_operand" "rI")))]
638 1.1 mrg ""
639 1.1.1.2 mrg "sub<modesuffix> %r1,%2,%0")
640 1.1.1.2 mrg
641 1.1.1.2 mrg (define_insn "*subsi_se"
642 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
643 1.1 mrg (sign_extend:DI
644 1.1 mrg (minus:SI (match_operand:SI 1 "reg_or_0_operand" "rJ")
645 1.1 mrg (match_operand:SI 2 "reg_or_8bit_operand" "rI"))))]
646 1.1 mrg ""
647 1.1 mrg "subl %r1,%2,%0")
648 1.1 mrg
649 1.1 mrg (define_insn "*subsi_se2"
650 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
651 1.1 mrg (sign_extend:DI
652 1.1 mrg (subreg:SI (minus:DI (match_operand:DI 1 "reg_or_0_operand" "rJ")
653 1.1 mrg (match_operand:DI 2 "reg_or_8bit_operand" "rI"))
654 1.1.1.2 mrg 0)))]
655 1.1.1.2 mrg ""
656 1.1.1.2 mrg "subl %r1,%2,%0")
657 1.1.1.6 mrg
658 1.1.1.6 mrg (define_insn "*ssub<modesuffix>"
659 1.1.1.2 mrg [(set (match_operand:I48MODE 0 "register_operand" "=r")
660 1.1 mrg (minus:I48MODE
661 1.1.1.6 mrg (ashift:I48MODE (match_operand:I48MODE 1 "reg_not_elim_operand" "r")
662 1.1.1.6 mrg (match_operand:I48MODE 2 "const23_operand" "I"))
663 1.1.1.6 mrg (match_operand:I48MODE 3 "reg_or_8bit_operand" "rI")))]
664 1.1.1.6 mrg ""
665 1.1.1.6 mrg "s%P2sub<modesuffix> %1,%3,%0")
666 1.1.1.6 mrg
667 1.1.1.6 mrg (define_insn_and_split "*ssubsi_1"
668 1.1.1.6 mrg [(set (match_operand:SI 0 "register_operand" "=r")
669 1.1.1.6 mrg (minus:SI
670 1.1.1.6 mrg (subreg:SI
671 1.1.1.6 mrg (ashift:DI (match_operand:DI 1 "reg_not_elim_operand" "r")
672 1.1.1.6 mrg (match_operand:DI 2 "const23_operand" "I")) 0)
673 1.1.1.6 mrg (match_operand:SI 3 "reg_or_8bit_operand" "rI")))]
674 1.1.1.6 mrg ""
675 1.1.1.6 mrg "#"
676 1.1.1.6 mrg ""
677 1.1 mrg [(set (match_dup 0)
678 1.1 mrg (minus:SI (ashift:SI (match_dup 1) (match_dup 2))
679 1.1 mrg (match_dup 3)))]
680 1.1 mrg "operands[1] = gen_lowpart (SImode, operands[1]);")
681 1.1.1.6 mrg
682 1.1.1.6 mrg (define_insn "*ssubl_se"
683 1.1.1.6 mrg [(set (match_operand:DI 0 "register_operand" "=r")
684 1.1.1.6 mrg (sign_extend:DI
685 1.1.1.6 mrg (minus:SI
686 1.1.1.6 mrg (ashift:SI (match_operand:SI 1 "reg_not_elim_operand" "r")
687 1.1.1.6 mrg (match_operand:SI 2 "const23_operand" "I"))
688 1.1.1.6 mrg (match_operand:SI 3 "reg_or_8bit_operand" "rI"))))]
689 1.1.1.6 mrg ""
690 1.1.1.6 mrg "s%P2subl %1,%3,%0")
691 1.1.1.6 mrg
692 1.1.1.6 mrg (define_insn_and_split "*ssubl_se_1"
693 1.1.1.6 mrg [(set (match_operand:DI 0 "register_operand" "=r")
694 1.1.1.6 mrg (sign_extend:DI
695 1.1.1.6 mrg (minus:SI
696 1.1 mrg (subreg:SI
697 1.1.1.6 mrg (ashift:DI (match_operand:DI 1 "reg_not_elim_operand" "r")
698 1.1.1.6 mrg (match_operand:DI 2 "const23_operand" "I")) 0)
699 1.1.1.6 mrg (match_operand:SI 3 "reg_or_8bit_operand" "rI"))))]
700 1.1.1.6 mrg ""
701 1.1.1.6 mrg "#"
702 1.1.1.6 mrg ""
703 1.1.1.6 mrg [(set (match_dup 0)
704 1.1 mrg (sign_extend:DI
705 1.1.1.2 mrg (minus:SI (ashift:SI (match_dup 1) (match_dup 2))
706 1.1.1.2 mrg (match_dup 3))))]
707 1.1.1.2 mrg "operands[1] = gen_lowpart (SImode, operands[1]);")
708 1.1.1.2 mrg
709 1.1.1.2 mrg (define_insn "subv<mode>3"
710 1.1.1.2 mrg [(set (match_operand:I48MODE 0 "register_operand" "=r")
711 1.1.1.2 mrg (minus:I48MODE (match_operand:I48MODE 1 "reg_or_0_operand" "rJ")
712 1.1.1.2 mrg (match_operand:I48MODE 2 "reg_or_8bit_operand" "rI")))
713 1.1 mrg (trap_if (ne (minus:<DWI> (sign_extend:<DWI> (match_dup 1))
714 1.1 mrg (sign_extend:<DWI> (match_dup 2)))
715 1.1.1.2 mrg (sign_extend:<DWI> (minus:I48MODE (match_dup 1)
716 1.1 mrg (match_dup 2))))
717 1.1.1.2 mrg (const_int 0))]
718 1.1.1.2 mrg ""
719 1.1.1.2 mrg "sub<modesuffix>v %r1,%2,%0")
720 1.1.1.2 mrg
721 1.1.1.2 mrg (define_insn "mul<mode>3"
722 1.1.1.2 mrg [(set (match_operand:I48MODE 0 "register_operand" "=r")
723 1.1 mrg (mult:I48MODE (match_operand:I48MODE 1 "reg_or_0_operand" "%rJ")
724 1.1.1.2 mrg (match_operand:I48MODE 2 "reg_or_8bit_operand" "rI")))]
725 1.1 mrg ""
726 1.1 mrg "mul<modesuffix> %r1,%2,%0"
727 1.1 mrg [(set_attr "type" "imul")
728 1.1 mrg (set_attr "opsize" "<mode>")])
729 1.1 mrg
730 1.1 mrg (define_insn "*mulsi_se"
731 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand" "=r")
732 1.1 mrg (sign_extend:DI
733 1.1 mrg (mult:SI (match_operand:SI 1 "reg_or_0_operand" "%rJ")
734 1.1 mrg (match_operand:SI 2 "reg_or_8bit_operand" "rI"))))]
735 1.1 mrg ""
736 1.1.1.2 mrg "mull %r1,%2,%0"
737 1.1.1.2 mrg [(set_attr "type" "imul")
738 1.1.1.2 mrg (set_attr "opsize" "si")])
739 1.1.1.2 mrg
740 1.1.1.2 mrg (define_insn "mulv<mode>3"
741 1.1.1.2 mrg [(set (match_operand:I48MODE 0 "register_operand" "=r")
742 1.1.1.2 mrg (mult:I48MODE (match_operand:I48MODE 1 "reg_or_0_operand" "%rJ")
743 1.1.1.2 mrg (match_operand:I48MODE 2 "reg_or_8bit_operand" "rI")))
744 1.1 mrg (trap_if (ne (mult:<DWI> (sign_extend:<DWI> (match_dup 1))
745 1.1 mrg (sign_extend:<DWI> (match_dup 2)))
746 1.1.1.2 mrg (sign_extend:<DWI> (mult:I48MODE (match_dup 1)
747 1.1.1.2 mrg (match_dup 2))))
748 1.1.1.2 mrg (const_int 0))]
749 1.1 mrg ""
750 1.1 mrg "mul<modesuffix>v %r1,%2,%0"
751 1.1.1.2 mrg [(set_attr "type" "imul")
752 1.1 mrg (set_attr "opsize" "<mode>")])
753 1.1 mrg
754 1.1 mrg (define_expand "umuldi3_highpart"
755 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand")
756 1.1.1.2 mrg (truncate:DI
757 1.1 mrg (lshiftrt:TI
758 1.1 mrg (mult:TI (zero_extend:TI
759 1.1 mrg (match_operand:DI 1 "register_operand"))
760 1.1 mrg (match_operand:DI 2 "reg_or_8bit_operand"))
761 1.1 mrg (const_int 64))))]
762 1.1 mrg ""
763 1.1 mrg {
764 1.1 mrg if (REG_P (operands[2]))
765 1.1 mrg operands[2] = gen_rtx_ZERO_EXTEND (TImode, operands[2]);
766 1.1 mrg })
767 1.1 mrg
768 1.1 mrg (define_insn "*umuldi3_highpart_reg"
769 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
770 1.1 mrg (truncate:DI
771 1.1 mrg (lshiftrt:TI
772 1.1 mrg (mult:TI (zero_extend:TI
773 1.1 mrg (match_operand:DI 1 "register_operand" "r"))
774 1.1 mrg (zero_extend:TI
775 1.1 mrg (match_operand:DI 2 "register_operand" "r")))
776 1.1 mrg (const_int 64))))]
777 1.1 mrg ""
778 1.1 mrg "umulh %1,%2,%0"
779 1.1 mrg [(set_attr "type" "imul")
780 1.1 mrg (set_attr "opsize" "udi")])
781 1.1 mrg
782 1.1 mrg (define_insn "*umuldi3_highpart_const"
783 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
784 1.1 mrg (truncate:DI
785 1.1 mrg (lshiftrt:TI
786 1.1 mrg (mult:TI (zero_extend:TI (match_operand:DI 1 "register_operand" "r"))
787 1.1 mrg (match_operand:TI 2 "cint8_operand" "I"))
788 1.1 mrg (const_int 64))))]
789 1.1.1.2 mrg ""
790 1.1.1.2 mrg "umulh %1,%2,%0"
791 1.1.1.2 mrg [(set_attr "type" "imul")
792 1.1.1.2 mrg (set_attr "opsize" "udi")])
793 1.1.1.2 mrg
794 1.1.1.2 mrg (define_expand "umulditi3"
795 1.1.1.2 mrg [(set (match_operand:TI 0 "register_operand")
796 1.1.1.2 mrg (mult:TI
797 1.1.1.2 mrg (zero_extend:TI (match_operand:DI 1 "reg_no_subreg_operand"))
798 1.1.1.2 mrg (zero_extend:TI (match_operand:DI 2 "reg_no_subreg_operand"))))]
799 1.1.1.2 mrg ""
800 1.1.1.2 mrg {
801 1.1.1.2 mrg rtx l = gen_reg_rtx (DImode), h = gen_reg_rtx (DImode);
802 1.1.1.2 mrg emit_insn (gen_muldi3 (l, operands[1], operands[2]));
803 1.1.1.2 mrg emit_insn (gen_umuldi3_highpart (h, operands[1], operands[2]));
804 1.1 mrg emit_move_insn (gen_lowpart (DImode, operands[0]), l);
805 1.1 mrg emit_move_insn (gen_highpart (DImode, operands[0]), h);
806 1.1.1.2 mrg DONE;
807 1.1.1.2 mrg })
808 1.1 mrg
810 1.1 mrg ;; The divide and remainder operations take their inputs from r24 and
811 1.1 mrg ;; r25, put their output in r27, and clobber r23 and r28 on all systems.
812 1.1 mrg ;;
813 1.1 mrg ;; ??? Force sign-extension here because some versions of OSF/1 and
814 1.1.1.2 mrg ;; Interix/NT don't do the right thing if the inputs are not properly
815 1.1 mrg ;; sign-extended. But Linux, for instance, does not have this
816 1.1.1.2 mrg ;; problem. Is it worth the complication here to eliminate the sign
817 1.1 mrg ;; extension?
818 1.1.1.2 mrg
819 1.1 mrg (define_code_iterator any_divmod [div mod udiv umod])
820 1.1.1.2 mrg
821 1.1 mrg (define_expand "<code>si3"
822 1.1.1.2 mrg [(set (match_dup 3)
823 1.1.1.2 mrg (sign_extend:DI (match_operand:SI 1 "nonimmediate_operand")))
824 1.1 mrg (set (match_dup 4)
825 1.1 mrg (sign_extend:DI (match_operand:SI 2 "nonimmediate_operand")))
826 1.1.1.2 mrg (parallel [(set (match_dup 5)
827 1.1 mrg (sign_extend:DI
828 1.1.1.2 mrg (any_divmod:SI (match_dup 3) (match_dup 4))))
829 1.1 mrg (clobber (reg:DI 23))
830 1.1 mrg (clobber (reg:DI 28))])
831 1.1 mrg (set (match_operand:SI 0 "nonimmediate_operand")
832 1.1 mrg (subreg:SI (match_dup 5) 0))]
833 1.1 mrg "TARGET_ABI_OSF"
834 1.1 mrg {
835 1.1.1.2 mrg operands[3] = gen_reg_rtx (DImode);
836 1.1.1.2 mrg operands[4] = gen_reg_rtx (DImode);
837 1.1.1.2 mrg operands[5] = gen_reg_rtx (DImode);
838 1.1.1.2 mrg })
839 1.1.1.2 mrg
840 1.1 mrg (define_expand "<code>di3"
841 1.1 mrg [(parallel [(set (match_operand:DI 0 "register_operand")
842 1.1.1.2 mrg (any_divmod:DI
843 1.1 mrg (match_operand:DI 1 "register_operand")
844 1.1 mrg (match_operand:DI 2 "register_operand")))
845 1.1 mrg (clobber (reg:DI 23))
846 1.1 mrg (clobber (reg:DI 28))])]
847 1.1 mrg "TARGET_ABI_OSF")
848 1.1 mrg
849 1.1 mrg ;; Lengths of 8 for ldq $t12,__divq($gp); jsr $t9,($t12),__divq as
850 1.1 mrg ;; expanded by the assembler.
851 1.1 mrg
852 1.1 mrg (define_insn_and_split "*divmodsi_internal_er"
853 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=c")
854 1.1.1.2 mrg (sign_extend:DI (match_operator:SI 3 "divmod_operator"
855 1.1 mrg [(match_operand:DI 1 "register_operand" "a")
856 1.1 mrg (match_operand:DI 2 "register_operand" "b")])))
857 1.1 mrg (clobber (reg:DI 23))
858 1.1 mrg (clobber (reg:DI 28))]
859 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
860 1.1 mrg "#"
861 1.1 mrg "&& reload_completed"
862 1.1 mrg [(parallel [(set (match_dup 0)
863 1.1 mrg (sign_extend:DI (match_dup 3)))
864 1.1 mrg (use (match_dup 0))
865 1.1 mrg (use (match_dup 4))
866 1.1 mrg (clobber (reg:DI 23))
867 1.1 mrg (clobber (reg:DI 28))])]
868 1.1 mrg {
869 1.1 mrg const char *str;
870 1.1 mrg switch (GET_CODE (operands[3]))
871 1.1 mrg {
872 1.1 mrg case DIV:
873 1.1 mrg str = "__divl";
874 1.1 mrg break;
875 1.1 mrg case UDIV:
876 1.1 mrg str = "__divlu";
877 1.1 mrg break;
878 1.1 mrg case MOD:
879 1.1 mrg str = "__reml";
880 1.1 mrg break;
881 1.1 mrg case UMOD:
882 1.1 mrg str = "__remlu";
883 1.1 mrg break;
884 1.1 mrg default:
885 1.1 mrg gcc_unreachable ();
886 1.1 mrg }
887 1.1 mrg operands[4] = GEN_INT (alpha_next_sequence_number++);
888 1.1 mrg emit_insn (gen_movdi_er_high_g (operands[0], pic_offset_table_rtx,
889 1.1 mrg gen_rtx_SYMBOL_REF (DImode, str),
890 1.1 mrg operands[4]));
891 1.1 mrg }
892 1.1 mrg [(set_attr "type" "jsr")
893 1.1 mrg (set_attr "length" "8")])
894 1.1 mrg
895 1.1 mrg (define_insn "*divmodsi_internal_er_1"
896 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand" "=c")
897 1.1 mrg (sign_extend:DI (match_operator:SI 3 "divmod_operator"
898 1.1 mrg [(match_operand:DI 1 "register_operand" "a")
899 1.1.1.2 mrg (match_operand:DI 2 "register_operand" "b")])))
900 1.1 mrg (use (match_operand:DI 4 "register_operand" "c"))
901 1.1 mrg (use (match_operand 5 "const_int_operand"))
902 1.1 mrg (clobber (reg:DI 23))
903 1.1 mrg (clobber (reg:DI 28))]
904 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
905 1.1 mrg "jsr $23,($27),__%E3%j5"
906 1.1 mrg [(set_attr "type" "jsr")
907 1.1 mrg (set_attr "length" "4")])
908 1.1 mrg
909 1.1 mrg (define_insn "*divmodsi_internal"
910 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=c")
911 1.1.1.2 mrg (sign_extend:DI (match_operator:SI 3 "divmod_operator"
912 1.1 mrg [(match_operand:DI 1 "register_operand" "a")
913 1.1 mrg (match_operand:DI 2 "register_operand" "b")])))
914 1.1 mrg (clobber (reg:DI 23))
915 1.1 mrg (clobber (reg:DI 28))]
916 1.1 mrg "TARGET_ABI_OSF"
917 1.1 mrg "%E3 %1,%2,%0"
918 1.1 mrg [(set_attr "type" "jsr")
919 1.1 mrg (set_attr "length" "8")])
920 1.1 mrg
921 1.1 mrg (define_insn_and_split "*divmoddi_internal_er"
922 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=c")
923 1.1.1.2 mrg (match_operator:DI 3 "divmod_operator"
924 1.1 mrg [(match_operand:DI 1 "register_operand" "a")
925 1.1 mrg (match_operand:DI 2 "register_operand" "b")]))
926 1.1 mrg (clobber (reg:DI 23))
927 1.1 mrg (clobber (reg:DI 28))]
928 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
929 1.1 mrg "#"
930 1.1 mrg "&& reload_completed"
931 1.1 mrg [(parallel [(set (match_dup 0) (match_dup 3))
932 1.1 mrg (use (match_dup 0))
933 1.1 mrg (use (match_dup 4))
934 1.1 mrg (clobber (reg:DI 23))
935 1.1 mrg (clobber (reg:DI 28))])]
936 1.1 mrg {
937 1.1 mrg const char *str;
938 1.1 mrg switch (GET_CODE (operands[3]))
939 1.1 mrg {
940 1.1 mrg case DIV:
941 1.1 mrg str = "__divq";
942 1.1 mrg break;
943 1.1 mrg case UDIV:
944 1.1 mrg str = "__divqu";
945 1.1 mrg break;
946 1.1 mrg case MOD:
947 1.1 mrg str = "__remq";
948 1.1 mrg break;
949 1.1 mrg case UMOD:
950 1.1 mrg str = "__remqu";
951 1.1 mrg break;
952 1.1 mrg default:
953 1.1 mrg gcc_unreachable ();
954 1.1 mrg }
955 1.1 mrg operands[4] = GEN_INT (alpha_next_sequence_number++);
956 1.1 mrg emit_insn (gen_movdi_er_high_g (operands[0], pic_offset_table_rtx,
957 1.1 mrg gen_rtx_SYMBOL_REF (DImode, str),
958 1.1 mrg operands[4]));
959 1.1 mrg }
960 1.1 mrg [(set_attr "type" "jsr")
961 1.1 mrg (set_attr "length" "8")])
962 1.1 mrg
963 1.1 mrg (define_insn "*divmoddi_internal_er_1"
964 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand" "=c")
965 1.1 mrg (match_operator:DI 3 "divmod_operator"
966 1.1 mrg [(match_operand:DI 1 "register_operand" "a")
967 1.1.1.2 mrg (match_operand:DI 2 "register_operand" "b")]))
968 1.1 mrg (use (match_operand:DI 4 "register_operand" "c"))
969 1.1 mrg (use (match_operand 5 "const_int_operand"))
970 1.1 mrg (clobber (reg:DI 23))
971 1.1 mrg (clobber (reg:DI 28))]
972 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
973 1.1 mrg "jsr $23,($27),__%E3%j5"
974 1.1 mrg [(set_attr "type" "jsr")
975 1.1 mrg (set_attr "length" "4")])
976 1.1 mrg
977 1.1 mrg (define_insn "*divmoddi_internal"
978 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=c")
979 1.1.1.2 mrg (match_operator:DI 3 "divmod_operator"
980 1.1 mrg [(match_operand:DI 1 "register_operand" "a")
981 1.1 mrg (match_operand:DI 2 "register_operand" "b")]))
982 1.1 mrg (clobber (reg:DI 23))
983 1.1 mrg (clobber (reg:DI 28))]
984 1.1 mrg "TARGET_ABI_OSF"
985 1.1 mrg "%E3 %1,%2,%0"
986 1.1 mrg [(set_attr "type" "jsr")
987 1.1 mrg (set_attr "length" "8")])
988 1.1 mrg
990 1.1 mrg ;; Next are the basic logical operations. We only expose the DImode operations
991 1.1.1.4 mrg ;; to the rtl expanders, but SImode versions exist for combine as well as for
992 1.1 mrg ;; the atomic operation splitters.
993 1.1 mrg
994 1.1 mrg (define_insn "*andsi_internal"
995 1.1 mrg [(set (match_operand:SI 0 "register_operand" "=r,r,r")
996 1.1 mrg (and:SI (match_operand:SI 1 "reg_or_0_operand" "%rJ,rJ,rJ")
997 1.1 mrg (match_operand:SI 2 "and_operand" "rI,N,M")))]
998 1.1 mrg ""
999 1.1 mrg "@
1000 1.1 mrg and %r1,%2,%0
1001 1.1 mrg bic %r1,%N2,%0
1002 1.1.1.4 mrg zapnot %r1,%m2,%0"
1003 1.1 mrg [(set_attr "type" "ilog,ilog,shift")])
1004 1.1 mrg
1005 1.1 mrg (define_insn "anddi3"
1006 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r,r,r")
1007 1.1 mrg (and:DI (match_operand:DI 1 "reg_or_0_operand" "%rJ,rJ,rJ")
1008 1.1 mrg (match_operand:DI 2 "and_operand" "rI,N,M")))]
1009 1.1 mrg ""
1010 1.1 mrg "@
1011 1.1 mrg and %r1,%2,%0
1012 1.1 mrg bic %r1,%N2,%0
1013 1.1 mrg zapnot %r1,%m2,%0"
1014 1.1 mrg [(set_attr "type" "ilog,ilog,shift")])
1015 1.1 mrg
1016 1.1 mrg ;; There are times when we can split an AND into two AND insns. This occurs
1017 1.1.1.2 mrg ;; when we can first clear any bytes and then clear anything else. For
1018 1.1.1.2 mrg ;; example "I & 0xffff07" is "(I & 0xffffff) & 0xffffffffffffff07".
1019 1.1.1.2 mrg ;; Only do this when running on 64-bit host since the computations are
1020 1.1.1.4 mrg ;; too messy otherwise.
1021 1.1 mrg
1022 1.1 mrg (define_split
1023 1.1 mrg [(set (match_operand:DI 0 "register_operand")
1024 1.1 mrg (and:DI (match_operand:DI 1 "register_operand")
1025 1.1 mrg (match_operand:DI 2 "const_int_operand")))]
1026 1.1 mrg "! and_operand (operands[2], DImode)"
1027 1.1 mrg [(set (match_dup 0) (and:DI (match_dup 1) (match_dup 3)))
1028 1.1 mrg (set (match_dup 0) (and:DI (match_dup 0) (match_dup 4)))]
1029 1.1 mrg {
1030 1.1 mrg unsigned HOST_WIDE_INT mask1 = INTVAL (operands[2]);
1031 1.1 mrg unsigned HOST_WIDE_INT mask2 = mask1;
1032 1.1 mrg int i;
1033 1.1 mrg
1034 1.1 mrg /* For each byte that isn't all zeros, make it all ones. */
1035 1.1 mrg for (i = 0; i < 64; i += 8)
1036 1.1 mrg if ((mask1 & ((HOST_WIDE_INT) 0xff << i)) != 0)
1037 1.1 mrg mask1 |= (HOST_WIDE_INT) 0xff << i;
1038 1.1 mrg
1039 1.1 mrg /* Now turn on any bits we've just turned off. */
1040 1.1.1.2 mrg mask2 |= ~ mask1;
1041 1.1.1.2 mrg
1042 1.1.1.2 mrg operands[3] = GEN_INT (mask1);
1043 1.1.1.2 mrg operands[4] = GEN_INT (mask2);
1044 1.1 mrg })
1045 1.1 mrg
1046 1.1 mrg (define_insn "zero_extendqi<mode>2"
1047 1.1 mrg [(set (match_operand:I248MODE 0 "register_operand" "=r,r")
1048 1.1.1.2 mrg (zero_extend:I248MODE
1049 1.1.1.2 mrg (match_operand:QI 1 "reg_or_bwx_memory_operand" "r,m")))]
1050 1.1 mrg ""
1051 1.1.1.2 mrg "@
1052 1.1.1.2 mrg and %1,0xff,%0
1053 1.1.1.2 mrg ldbu %0,%1"
1054 1.1.1.2 mrg [(set_attr "type" "ilog,ild")
1055 1.1 mrg (set_attr "isa" "*,bwx")])
1056 1.1 mrg
1057 1.1 mrg (define_insn "zero_extendhi<mode>2"
1058 1.1 mrg [(set (match_operand:I48MODE 0 "register_operand" "=r,r")
1059 1.1.1.2 mrg (zero_extend:I48MODE
1060 1.1.1.2 mrg (match_operand:HI 1 "reg_or_bwx_memory_operand" "r,m")))]
1061 1.1 mrg ""
1062 1.1 mrg "@
1063 1.1 mrg zapnot %1,3,%0
1064 1.1 mrg ldwu %0,%1"
1065 1.1 mrg [(set_attr "type" "shift,ild")
1066 1.1 mrg (set_attr "isa" "*,bwx")])
1067 1.1 mrg
1068 1.1 mrg (define_insn "zero_extendsidi2"
1069 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1070 1.1.1.2 mrg (zero_extend:DI (match_operand:SI 1 "register_operand" "r")))]
1071 1.1.1.2 mrg ""
1072 1.1.1.2 mrg "zapnot %1,15,%0"
1073 1.1.1.2 mrg [(set_attr "type" "shift")])
1074 1.1 mrg
1075 1.1 mrg (define_insn "andnot<mode>3"
1076 1.1 mrg [(set (match_operand:I48MODE 0 "register_operand" "=r")
1077 1.1 mrg (and:I48MODE
1078 1.1 mrg (not:I48MODE (match_operand:I48MODE 1 "reg_or_8bit_operand" "rI"))
1079 1.1 mrg (match_operand:I48MODE 2 "reg_or_0_operand" "rJ")))]
1080 1.1 mrg ""
1081 1.1 mrg "bic %r2,%1,%0"
1082 1.1 mrg [(set_attr "type" "ilog")])
1083 1.1 mrg
1084 1.1 mrg (define_insn "*iorsi_internal"
1085 1.1 mrg [(set (match_operand:SI 0 "register_operand" "=r,r")
1086 1.1 mrg (ior:SI (match_operand:SI 1 "reg_or_0_operand" "%rJ,rJ")
1087 1.1 mrg (match_operand:SI 2 "or_operand" "rI,N")))]
1088 1.1 mrg ""
1089 1.1 mrg "@
1090 1.1 mrg bis %r1,%2,%0
1091 1.1 mrg ornot %r1,%N2,%0"
1092 1.1 mrg [(set_attr "type" "ilog")])
1093 1.1 mrg
1094 1.1 mrg (define_insn "iordi3"
1095 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r,r")
1096 1.1 mrg (ior:DI (match_operand:DI 1 "reg_or_0_operand" "%rJ,rJ")
1097 1.1 mrg (match_operand:DI 2 "or_operand" "rI,N")))]
1098 1.1 mrg ""
1099 1.1 mrg "@
1100 1.1 mrg bis %r1,%2,%0
1101 1.1 mrg ornot %r1,%N2,%0"
1102 1.1 mrg [(set_attr "type" "ilog")])
1103 1.1 mrg
1104 1.1 mrg (define_insn "*one_cmplsi_internal"
1105 1.1 mrg [(set (match_operand:SI 0 "register_operand" "=r")
1106 1.1 mrg (not:SI (match_operand:SI 1 "reg_or_8bit_operand" "rI")))]
1107 1.1 mrg ""
1108 1.1 mrg "ornot $31,%1,%0"
1109 1.1 mrg [(set_attr "type" "ilog")])
1110 1.1 mrg
1111 1.1 mrg (define_insn "one_cmpldi2"
1112 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1113 1.1.1.2 mrg (not:DI (match_operand:DI 1 "reg_or_8bit_operand" "rI")))]
1114 1.1.1.2 mrg ""
1115 1.1.1.2 mrg "ornot $31,%1,%0"
1116 1.1.1.2 mrg [(set_attr "type" "ilog")])
1117 1.1 mrg
1118 1.1 mrg (define_insn "*iornot<mode>3"
1119 1.1 mrg [(set (match_operand:I48MODE 0 "register_operand" "=r")
1120 1.1 mrg (ior:I48MODE
1121 1.1 mrg (not:I48MODE (match_operand:I48MODE 1 "reg_or_8bit_operand" "rI"))
1122 1.1 mrg (match_operand:I48MODE 2 "reg_or_0_operand" "rJ")))]
1123 1.1 mrg ""
1124 1.1 mrg "ornot %r2,%1,%0"
1125 1.1 mrg [(set_attr "type" "ilog")])
1126 1.1 mrg
1127 1.1 mrg (define_insn "*xorsi_internal"
1128 1.1 mrg [(set (match_operand:SI 0 "register_operand" "=r,r")
1129 1.1 mrg (xor:SI (match_operand:SI 1 "reg_or_0_operand" "%rJ,rJ")
1130 1.1 mrg (match_operand:SI 2 "or_operand" "rI,N")))]
1131 1.1 mrg ""
1132 1.1 mrg "@
1133 1.1 mrg xor %r1,%2,%0
1134 1.1 mrg eqv %r1,%N2,%0"
1135 1.1 mrg [(set_attr "type" "ilog")])
1136 1.1 mrg
1137 1.1 mrg (define_insn "xordi3"
1138 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r,r")
1139 1.1 mrg (xor:DI (match_operand:DI 1 "reg_or_0_operand" "%rJ,rJ")
1140 1.1 mrg (match_operand:DI 2 "or_operand" "rI,N")))]
1141 1.1.1.2 mrg ""
1142 1.1.1.2 mrg "@
1143 1.1.1.2 mrg xor %r1,%2,%0
1144 1.1.1.2 mrg eqv %r1,%N2,%0"
1145 1.1.1.2 mrg [(set_attr "type" "ilog")])
1146 1.1 mrg
1147 1.1 mrg (define_insn "*xornot<mode>3"
1148 1.1 mrg [(set (match_operand:I48MODE 0 "register_operand" "=r")
1149 1.1 mrg (not:I48MODE (xor:I48MODE
1150 1.1 mrg (match_operand:I48MODE 1 "register_operand" "%rJ")
1151 1.1 mrg (match_operand:I48MODE 2 "register_operand" "rI"))))]
1152 1.1 mrg ""
1153 1.1 mrg "eqv %r1,%2,%0"
1154 1.1.1.2 mrg [(set_attr "type" "ilog")])
1155 1.1 mrg
1157 1.1.1.2 mrg ;; Handle FFS and related insns iff we support CIX.
1158 1.1 mrg
1159 1.1 mrg (define_expand "ffsdi2"
1160 1.1 mrg [(set (match_dup 2)
1161 1.1 mrg (ctz:DI (match_operand:DI 1 "register_operand")))
1162 1.1 mrg (set (match_dup 3)
1163 1.1 mrg (plus:DI (match_dup 2) (const_int 1)))
1164 1.1 mrg (set (match_operand:DI 0 "register_operand")
1165 1.1 mrg (if_then_else:DI (eq (match_dup 1) (const_int 0))
1166 1.1 mrg (const_int 0) (match_dup 3)))]
1167 1.1 mrg "TARGET_CIX"
1168 1.1 mrg {
1169 1.1 mrg operands[2] = gen_reg_rtx (DImode);
1170 1.1 mrg operands[3] = gen_reg_rtx (DImode);
1171 1.1 mrg })
1172 1.1 mrg
1173 1.1 mrg (define_insn "clzdi2"
1174 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1175 1.1 mrg (clz:DI (match_operand:DI 1 "register_operand" "r")))]
1176 1.1 mrg "TARGET_CIX"
1177 1.1 mrg "ctlz %1,%0"
1178 1.1 mrg [(set_attr "type" "mvi")])
1179 1.1 mrg
1180 1.1 mrg (define_insn "ctzdi2"
1181 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1182 1.1 mrg (ctz:DI (match_operand:DI 1 "register_operand" "r")))]
1183 1.1 mrg "TARGET_CIX"
1184 1.1 mrg "cttz %1,%0"
1185 1.1 mrg [(set_attr "type" "mvi")])
1186 1.1 mrg
1187 1.1 mrg (define_insn "popcountdi2"
1188 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1189 1.1.1.2 mrg (popcount:DI (match_operand:DI 1 "register_operand" "r")))]
1190 1.1 mrg "TARGET_CIX"
1191 1.1 mrg "ctpop %1,%0"
1192 1.1 mrg [(set_attr "type" "mvi")])
1193 1.1 mrg
1194 1.1 mrg (define_expand "bswapsi2"
1195 1.1 mrg [(set (match_operand:SI 0 "register_operand")
1196 1.1 mrg (bswap:SI (match_operand:SI 1 "register_operand")))]
1197 1.1.1.2 mrg "!optimize_size"
1198 1.1 mrg {
1199 1.1 mrg rtx t0, t1;
1200 1.1 mrg
1201 1.1 mrg t0 = gen_reg_rtx (DImode);
1202 1.1 mrg t1 = gen_reg_rtx (DImode);
1203 1.1 mrg
1204 1.1 mrg emit_insn (gen_inslh (t0, gen_lowpart (DImode, operands[1]), GEN_INT (7)));
1205 1.1 mrg emit_insn (gen_inswl_const (t1, gen_lowpart (HImode, operands[1]),
1206 1.1 mrg GEN_INT (24)));
1207 1.1 mrg emit_insn (gen_iordi3 (t1, t0, t1));
1208 1.1 mrg emit_insn (gen_lshrdi3 (t0, t1, GEN_INT (16)));
1209 1.1 mrg emit_insn (gen_anddi3 (t1, t1, alpha_expand_zap_mask (0x5)));
1210 1.1.1.2 mrg emit_insn (gen_anddi3 (t0, t0, alpha_expand_zap_mask (0xa)));
1211 1.1.1.2 mrg emit_insn (gen_addsi3 (operands[0], gen_lowpart (SImode, t0),
1212 1.1 mrg gen_lowpart (SImode, t1)));
1213 1.1 mrg DONE;
1214 1.1 mrg })
1215 1.1 mrg
1216 1.1 mrg (define_expand "bswapdi2"
1217 1.1 mrg [(set (match_operand:DI 0 "register_operand")
1218 1.1 mrg (bswap:DI (match_operand:DI 1 "register_operand")))]
1219 1.1 mrg "!optimize_size"
1220 1.1 mrg {
1221 1.1 mrg rtx t0, t1;
1222 1.1 mrg
1223 1.1 mrg t0 = gen_reg_rtx (DImode);
1224 1.1 mrg t1 = gen_reg_rtx (DImode);
1225 1.1 mrg
1226 1.1 mrg /* This method of shifting and masking is not specific to Alpha, but
1227 1.1 mrg is only profitable on Alpha because of our handy byte zap insn. */
1228 1.1 mrg
1229 1.1 mrg emit_insn (gen_lshrdi3 (t0, operands[1], GEN_INT (32)));
1230 1.1 mrg emit_insn (gen_ashldi3 (t1, operands[1], GEN_INT (32)));
1231 1.1 mrg emit_insn (gen_iordi3 (t1, t0, t1));
1232 1.1 mrg
1233 1.1 mrg emit_insn (gen_lshrdi3 (t0, t1, GEN_INT (16)));
1234 1.1 mrg emit_insn (gen_ashldi3 (t1, t1, GEN_INT (16)));
1235 1.1 mrg emit_insn (gen_anddi3 (t0, t0, alpha_expand_zap_mask (0xcc)));
1236 1.1 mrg emit_insn (gen_anddi3 (t1, t1, alpha_expand_zap_mask (0x33)));
1237 1.1 mrg emit_insn (gen_iordi3 (t1, t0, t1));
1238 1.1 mrg
1239 1.1 mrg emit_insn (gen_lshrdi3 (t0, t1, GEN_INT (8)));
1240 1.1 mrg emit_insn (gen_ashldi3 (t1, t1, GEN_INT (8)));
1241 1.1 mrg emit_insn (gen_anddi3 (t0, t0, alpha_expand_zap_mask (0xaa)));
1242 1.1 mrg emit_insn (gen_anddi3 (t1, t1, alpha_expand_zap_mask (0x55)));
1243 1.1 mrg emit_insn (gen_iordi3 (operands[0], t0, t1));
1244 1.1 mrg DONE;
1245 1.1 mrg })
1246 1.1 mrg
1248 1.1 mrg ;; Next come the shifts and the various extract and insert operations.
1249 1.1 mrg
1250 1.1 mrg (define_insn "ashldi3"
1251 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r,r")
1252 1.1 mrg (ashift:DI (match_operand:DI 1 "reg_or_0_operand" "rJ,rJ")
1253 1.1 mrg (match_operand:DI 2 "reg_or_6bit_operand" "P,rS")))]
1254 1.1 mrg ""
1255 1.1 mrg {
1256 1.1 mrg switch (which_alternative)
1257 1.1 mrg {
1258 1.1 mrg case 0:
1259 1.1 mrg if (operands[2] == const1_rtx)
1260 1.1 mrg return "addq %r1,%r1,%0";
1261 1.1 mrg else
1262 1.1 mrg return "s%P2addq %r1,0,%0";
1263 1.1 mrg case 1:
1264 1.1 mrg return "sll %r1,%2,%0";
1265 1.1 mrg default:
1266 1.1 mrg gcc_unreachable ();
1267 1.1 mrg }
1268 1.1 mrg }
1269 1.1.1.6 mrg [(set_attr "type" "iadd,shift")])
1270 1.1 mrg
1271 1.1 mrg (define_insn "*ashldi_se"
1272 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1273 1.1 mrg (sign_extend:DI
1274 1.1 mrg (subreg:SI (ashift:DI (match_operand:DI 1 "reg_or_0_operand" "rJ")
1275 1.1 mrg (match_operand:DI 2 "const_int_operand" "P"))
1276 1.1 mrg 0)))]
1277 1.1 mrg "IN_RANGE (INTVAL (operands[2]), 1, 3)"
1278 1.1 mrg {
1279 1.1 mrg if (operands[2] == const1_rtx)
1280 1.1 mrg return "addl %r1,%r1,%0";
1281 1.1 mrg else
1282 1.1 mrg return "s%P2addl %r1,0,%0";
1283 1.1 mrg }
1284 1.1 mrg [(set_attr "type" "iadd")])
1285 1.1 mrg
1286 1.1 mrg (define_insn "lshrdi3"
1287 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1288 1.1 mrg (lshiftrt:DI (match_operand:DI 1 "reg_or_0_operand" "rJ")
1289 1.1 mrg (match_operand:DI 2 "reg_or_6bit_operand" "rS")))]
1290 1.1 mrg ""
1291 1.1 mrg "srl %r1,%2,%0"
1292 1.1 mrg [(set_attr "type" "shift")])
1293 1.1 mrg
1294 1.1.1.2 mrg (define_insn "ashrdi3"
1295 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1296 1.1.1.2 mrg (ashiftrt:DI (match_operand:DI 1 "reg_or_0_operand" "rJ")
1297 1.1.1.2 mrg (match_operand:DI 2 "reg_or_6bit_operand" "rS")))]
1298 1.1.1.2 mrg ""
1299 1.1.1.2 mrg "sra %r1,%2,%0"
1300 1.1.1.2 mrg [(set_attr "type" "shift")])
1301 1.1.1.2 mrg
1302 1.1.1.2 mrg (define_insn "extendqi<mode>2"
1303 1.1.1.2 mrg [(set (match_operand:I24MODE 0 "register_operand" "=r")
1304 1.1.1.4 mrg (sign_extend:I24MODE
1305 1.1 mrg (match_operand:QI 1 "register_operand" "r")))]
1306 1.1 mrg "TARGET_BWX"
1307 1.1 mrg "sextb %1,%0"
1308 1.1.1.2 mrg [(set_attr "type" "shift")])
1309 1.1.1.2 mrg
1310 1.1 mrg (define_expand "extendqidi2"
1311 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand")
1312 1.1 mrg (sign_extend:DI (match_operand:QI 1 "general_operand")))]
1313 1.1.1.2 mrg ""
1314 1.1.1.2 mrg {
1315 1.1.1.2 mrg if (TARGET_BWX)
1316 1.1.1.2 mrg operands[1] = force_reg (QImode, operands[1]);
1317 1.1.1.2 mrg else
1318 1.1.1.2 mrg {
1319 1.1.1.2 mrg rtx x, t1, t2, i56;
1320 1.1 mrg
1321 1.1.1.2 mrg if (unaligned_memory_operand (operands[1], QImode))
1322 1.1.1.2 mrg {
1323 1.1.1.2 mrg x = gen_unaligned_extendqidi (operands[0], XEXP (operands[1], 0));
1324 1.1.1.2 mrg alpha_set_memflags (x, operands[1]);
1325 1.1.1.2 mrg emit_insn (x);
1326 1.1.1.2 mrg DONE;
1327 1.1.1.2 mrg }
1328 1.1.1.2 mrg
1329 1.1 mrg t1 = gen_reg_rtx (DImode);
1330 1.1 mrg t2 = gen_reg_rtx (DImode);
1331 1.1 mrg i56 = GEN_INT (56);
1332 1.1 mrg
1333 1.1.1.2 mrg x = gen_lowpart (DImode, force_reg (QImode, operands[1]));
1334 1.1 mrg emit_move_insn (t1, x);
1335 1.1 mrg emit_insn (gen_ashldi3 (t2, t1, i56));
1336 1.1 mrg emit_insn (gen_ashrdi3 (operands[0], t2, i56));
1337 1.1 mrg DONE;
1338 1.1 mrg }
1339 1.1 mrg })
1340 1.1.1.2 mrg
1341 1.1 mrg (define_insn "*extendqidi2_bwx"
1342 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1343 1.1 mrg (sign_extend:DI (match_operand:QI 1 "register_operand" "r")))]
1344 1.1 mrg "TARGET_BWX"
1345 1.1 mrg "sextb %1,%0"
1346 1.1 mrg [(set_attr "type" "shift")])
1347 1.1.1.2 mrg
1348 1.1.1.2 mrg (define_insn "extendhisi2"
1349 1.1.1.4 mrg [(set (match_operand:SI 0 "register_operand" "=r")
1350 1.1 mrg (sign_extend:SI (match_operand:HI 1 "register_operand" "r")))]
1351 1.1 mrg "TARGET_BWX"
1352 1.1 mrg "sextw %1,%0"
1353 1.1.1.2 mrg [(set_attr "type" "shift")])
1354 1.1.1.2 mrg
1355 1.1 mrg (define_expand "extendhidi2"
1356 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand")
1357 1.1.1.2 mrg (sign_extend:DI (match_operand:HI 1 "general_operand")))]
1358 1.1.1.2 mrg ""
1359 1.1.1.2 mrg {
1360 1.1.1.2 mrg if (TARGET_BWX)
1361 1.1.1.2 mrg operands[1] = force_reg (HImode, operands[1]);
1362 1.1.1.2 mrg else
1363 1.1.1.2 mrg {
1364 1.1.1.2 mrg rtx x, t1, t2, i48;
1365 1.1.1.2 mrg
1366 1.1.1.2 mrg if (unaligned_memory_operand (operands[1], HImode))
1367 1.1.1.2 mrg {
1368 1.1.1.2 mrg x = gen_unaligned_extendhidi (operands[0], XEXP (operands[1], 0));
1369 1.1.1.2 mrg alpha_set_memflags (x, operands[1]);
1370 1.1.1.2 mrg emit_insn (x);
1371 1.1.1.2 mrg DONE;
1372 1.1.1.2 mrg }
1373 1.1.1.2 mrg
1374 1.1 mrg t1 = gen_reg_rtx (DImode);
1375 1.1 mrg t2 = gen_reg_rtx (DImode);
1376 1.1 mrg i48 = GEN_INT (48);
1377 1.1 mrg
1378 1.1.1.2 mrg x = gen_lowpart (DImode, force_reg (HImode, operands[1]));
1379 1.1.1.2 mrg emit_move_insn (t1, x);
1380 1.1.1.2 mrg emit_insn (gen_ashldi3 (t2, t1, i48));
1381 1.1.1.2 mrg emit_insn (gen_ashrdi3 (operands[0], t2, i48));
1382 1.1.1.2 mrg DONE;
1383 1.1.1.2 mrg }
1384 1.1 mrg })
1385 1.1 mrg
1386 1.1 mrg (define_insn "*extendhidi2_bwx"
1387 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1388 1.1 mrg (sign_extend:DI (match_operand:HI 1 "register_operand" "r")))]
1389 1.1 mrg "TARGET_BWX"
1390 1.1 mrg "sextw %1,%0"
1391 1.1.1.2 mrg [(set_attr "type" "shift")])
1392 1.1 mrg
1393 1.1.1.2 mrg ;; Here's how we sign extend an unaligned byte and halfword. Doing this
1394 1.1 mrg ;; as a pattern saves one instruction. The code is similar to that for
1395 1.1 mrg ;; the unaligned loads (see below).
1396 1.1 mrg ;;
1397 1.1 mrg ;; Operand 1 is the address, operand 0 is the result.
1398 1.1 mrg
1399 1.1 mrg (define_expand "unaligned_extendqidi"
1400 1.1.1.2 mrg [(set (match_dup 3)
1401 1.1 mrg (mem:DI (and:DI (match_operand:DI 1 "address_operand") (const_int -8))))
1402 1.1.1.2 mrg (set (match_dup 4)
1403 1.1 mrg (ashift:DI (match_dup 3)
1404 1.1.1.2 mrg (minus:DI (const_int 64)
1405 1.1 mrg (ashift:DI
1406 1.1 mrg (and:DI (match_dup 2) (const_int 7))
1407 1.1 mrg (const_int 3)))))
1408 1.1 mrg (set (match_operand:QI 0 "register_operand")
1409 1.1 mrg (ashiftrt:DI (match_dup 4) (const_int 56)))]
1410 1.1 mrg ""
1411 1.1 mrg {
1412 1.1.1.2 mrg operands[0] = gen_lowpart (DImode, operands[0]);
1413 1.1 mrg operands[2] = get_unaligned_offset (operands[1], 1);
1414 1.1 mrg operands[3] = gen_reg_rtx (DImode);
1415 1.1 mrg operands[4] = gen_reg_rtx (DImode);
1416 1.1 mrg })
1417 1.1 mrg
1418 1.1 mrg (define_expand "unaligned_extendhidi"
1419 1.1.1.2 mrg [(set (match_dup 3)
1420 1.1 mrg (mem:DI (and:DI (match_operand:DI 1 "address_operand") (const_int -8))))
1421 1.1.1.2 mrg (set (match_dup 4)
1422 1.1 mrg (ashift:DI (match_dup 3)
1423 1.1.1.2 mrg (minus:DI (const_int 64)
1424 1.1 mrg (ashift:DI
1425 1.1 mrg (and:DI (match_dup 2) (const_int 7))
1426 1.1 mrg (const_int 3)))))
1427 1.1 mrg (set (match_operand:HI 0 "register_operand")
1428 1.1 mrg (ashiftrt:DI (match_dup 4) (const_int 48)))]
1429 1.1 mrg ""
1430 1.1 mrg {
1431 1.1 mrg operands[0] = gen_lowpart (DImode, operands[0]);
1432 1.1 mrg operands[2] = get_unaligned_offset (operands[1], 2);
1433 1.1 mrg operands[3] = gen_reg_rtx (DImode);
1434 1.1 mrg operands[4] = gen_reg_rtx (DImode);
1435 1.1 mrg })
1436 1.1 mrg
1437 1.1 mrg (define_insn "*extxl_const"
1438 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1439 1.1 mrg (zero_extract:DI (match_operand:DI 1 "reg_or_0_operand" "rJ")
1440 1.1.1.2 mrg (match_operand:DI 2 "mode_width_operand" "n")
1441 1.1.1.2 mrg (match_operand:DI 3 "mul8_operand" "I")))]
1442 1.1.1.2 mrg ""
1443 1.1.1.2 mrg "ext%M2l %r1,%s3,%0"
1444 1.1.1.2 mrg [(set_attr "type" "shift")])
1445 1.1.1.2 mrg
1446 1.1 mrg (define_insn "extxl"
1447 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1448 1.1 mrg (zero_extract:DI
1449 1.1 mrg (match_operand:DI 1 "reg_or_0_operand" "rJ")
1450 1.1 mrg (match_operand:DI 2 "mode_width_operand" "n")
1451 1.1 mrg (ashift:DI (match_operand:DI 3 "reg_or_8bit_operand" "rI")
1452 1.1 mrg (const_int 3))))]
1453 1.1.1.2 mrg ""
1454 1.1 mrg "ext%M2l %r1,%3,%0"
1455 1.1 mrg [(set_attr "type" "shift")])
1456 1.1 mrg
1457 1.1 mrg ;; Combine has some strange notion of preserving existing undefined behavior
1458 1.1 mrg ;; in shifts larger than a word size. So capture these patterns that it
1459 1.1.1.2 mrg ;; should have turned into zero_extracts.
1460 1.1 mrg
1461 1.1 mrg (define_insn "*extxl_1"
1462 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1463 1.1.1.2 mrg (and:DI (lshiftrt:DI (match_operand:DI 1 "reg_or_0_operand" "rJ")
1464 1.1 mrg (ashift:DI (match_operand:DI 2 "reg_or_8bit_operand" "rI")
1465 1.1 mrg (const_int 3)))
1466 1.1 mrg (match_operand:DI 3 "mode_mask_operand" "n")))]
1467 1.1 mrg ""
1468 1.1.1.2 mrg "ext%U3l %1,%2,%0"
1469 1.1 mrg [(set_attr "type" "shift")])
1470 1.1 mrg
1471 1.1 mrg (define_insn "*extql_2"
1472 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1473 1.1 mrg (lshiftrt:DI (match_operand:DI 1 "reg_or_0_operand" "rJ")
1474 1.1 mrg (ashift:DI (match_operand:DI 2 "reg_or_8bit_operand" "rI")
1475 1.1 mrg (const_int 3))))]
1476 1.1 mrg ""
1477 1.1 mrg "extql %1,%2,%0"
1478 1.1 mrg [(set_attr "type" "shift")])
1479 1.1 mrg
1480 1.1 mrg (define_insn "extqh"
1481 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1482 1.1.1.2 mrg (ashift:DI
1483 1.1 mrg (match_operand:DI 1 "reg_or_0_operand" "rJ")
1484 1.1 mrg (minus:DI (const_int 64)
1485 1.1 mrg (ashift:DI
1486 1.1.1.2 mrg (and:DI
1487 1.1 mrg (match_operand:DI 2 "reg_or_8bit_operand" "rI")
1488 1.1 mrg (const_int 7))
1489 1.1 mrg (const_int 3)))))]
1490 1.1.1.2 mrg ""
1491 1.1 mrg "extqh %r1,%2,%0"
1492 1.1 mrg [(set_attr "type" "shift")])
1493 1.1 mrg
1494 1.1 mrg (define_insn "extwh"
1495 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1496 1.1 mrg (ashift:DI
1497 1.1.1.2 mrg (and:DI (match_operand:DI 1 "reg_or_0_operand" "rJ")
1498 1.1.1.2 mrg (const_int 65535))
1499 1.1 mrg (minus:DI (const_int 64)
1500 1.1 mrg (ashift:DI
1501 1.1.1.2 mrg (and:DI
1502 1.1 mrg (match_operand:DI 2 "reg_or_8bit_operand" "rI")
1503 1.1 mrg (const_int 7))
1504 1.1 mrg (const_int 3)))))]
1505 1.1.1.2 mrg ""
1506 1.1 mrg "extwh %r1,%2,%0"
1507 1.1 mrg [(set_attr "type" "shift")])
1508 1.1 mrg
1509 1.1 mrg (define_insn "extlh"
1510 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1511 1.1 mrg (ashift:DI
1512 1.1.1.2 mrg (and:DI (match_operand:DI 1 "reg_or_0_operand" "rJ")
1513 1.1.1.2 mrg (const_int 2147483647))
1514 1.1 mrg (minus:DI (const_int 64)
1515 1.1 mrg (ashift:DI
1516 1.1 mrg (and:DI
1517 1.1 mrg (match_operand:DI 2 "reg_or_8bit_operand" "rI")
1518 1.1 mrg (const_int 7))
1519 1.1 mrg (const_int 3)))))]
1520 1.1.1.2 mrg ""
1521 1.1.1.2 mrg "extlh %r1,%2,%0"
1522 1.1.1.2 mrg [(set_attr "type" "shift")])
1523 1.1.1.2 mrg
1524 1.1 mrg ;; This converts an extXl into an extXh with an appropriate adjustment
1525 1.1.1.2 mrg ;; to the address calculation.
1526 1.1.1.2 mrg
1527 1.1 mrg ;;(define_split
1528 1.1 mrg ;; [(set (match_operand:DI 0 "register_operand")
1529 1.1 mrg ;; (ashift:DI (zero_extract:DI (match_operand:DI 1 "register_operand")
1530 1.1 mrg ;; (match_operand:DI 2 "mode_width_operand")
1531 1.1 mrg ;; (ashift:DI (match_operand:DI 3)
1532 1.1 mrg ;; (const_int 3)))
1533 1.1 mrg ;; (match_operand:DI 4 "const_int_operand")))
1534 1.1 mrg ;; (clobber (match_operand:DI 5 "register_operand"))]
1535 1.1 mrg ;; "INTVAL (operands[4]) == 64 - INTVAL (operands[2])"
1536 1.1 mrg ;; [(set (match_dup 5) (match_dup 6))
1537 1.1.1.2 mrg ;; (set (match_dup 0)
1538 1.1 mrg ;; (ashift:DI (zero_extract:DI (match_dup 1) (match_dup 2)
1539 1.1 mrg ;; (ashift:DI (plus:DI (match_dup 5)
1540 1.1 mrg ;; (match_dup 7))
1541 1.1 mrg ;; (const_int 3)))
1542 1.1.1.2 mrg ;; (match_dup 4)))]
1543 1.1 mrg ;; "
1544 1.1.1.2 mrg ;;{
1545 1.1.1.2 mrg ;; operands[6] = plus_constant (DImode, operands[3],
1546 1.1 mrg ;; INTVAL (operands[2]) / BITS_PER_UNIT);
1547 1.1 mrg ;; operands[7] = GEN_INT (- INTVAL (operands[2]) / BITS_PER_UNIT);
1548 1.1.1.2 mrg ;;}")
1549 1.1 mrg
1550 1.1 mrg (define_insn "ins<modesuffix>l_const"
1551 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1552 1.1 mrg (ashift:DI (zero_extend:DI
1553 1.1.1.2 mrg (match_operand:I124MODE 1 "register_operand" "r"))
1554 1.1.1.2 mrg (match_operand:DI 2 "mul8_operand" "I")))]
1555 1.1 mrg ""
1556 1.1 mrg "ins<modesuffix>l %1,%s2,%0"
1557 1.1.1.2 mrg [(set_attr "type" "shift")])
1558 1.1.1.2 mrg
1559 1.1 mrg (define_insn "ins<modesuffix>l"
1560 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1561 1.1.1.2 mrg (ashift:DI (zero_extend:DI
1562 1.1 mrg (match_operand:I124MODE 1 "register_operand" "r"))
1563 1.1 mrg (ashift:DI (match_operand:DI 2 "reg_or_8bit_operand" "rI")
1564 1.1 mrg (const_int 3))))]
1565 1.1 mrg ""
1566 1.1.1.2 mrg "ins<modesuffix>l %1,%2,%0"
1567 1.1 mrg [(set_attr "type" "shift")])
1568 1.1 mrg
1569 1.1 mrg (define_insn "insql"
1570 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1571 1.1 mrg (ashift:DI (match_operand:DI 1 "register_operand" "r")
1572 1.1 mrg (ashift:DI (match_operand:DI 2 "reg_or_8bit_operand" "rI")
1573 1.1 mrg (const_int 3))))]
1574 1.1 mrg ""
1575 1.1 mrg "insql %1,%2,%0"
1576 1.1 mrg [(set_attr "type" "shift")])
1577 1.1.1.4 mrg
1578 1.1.1.4 mrg ;; Combine has this sometimes habit of moving the and outside of the
1579 1.1.1.4 mrg ;; shift, making life more interesting.
1580 1.1.1.4 mrg
1581 1.1 mrg (define_insn "*insxl"
1582 1.1.1.4 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1583 1.1.1.4 mrg (and:DI (ashift:DI (match_operand:DI 1 "register_operand" "r")
1584 1.1 mrg (match_operand:DI 2 "mul8_operand" "I"))
1585 1.1 mrg (match_operand:DI 3 "const_int_operand" "i")))]
1586 1.1 mrg "((unsigned HOST_WIDE_INT) 0xff << INTVAL (operands[2])
1587 1.1 mrg == (unsigned HOST_WIDE_INT) INTVAL (operands[3]))
1588 1.1 mrg || ((unsigned HOST_WIDE_INT) 0xffff << INTVAL (operands[2])
1589 1.1 mrg == (unsigned HOST_WIDE_INT) INTVAL (operands[3]))
1590 1.1 mrg || ((unsigned HOST_WIDE_INT) 0xffffffff << INTVAL (operands[2])
1591 1.1 mrg == (unsigned HOST_WIDE_INT) INTVAL (operands[3]))"
1592 1.1 mrg {
1593 1.1 mrg if ((unsigned HOST_WIDE_INT) 0xff << INTVAL (operands[2])
1594 1.1.1.4 mrg == (unsigned HOST_WIDE_INT) INTVAL (operands[3]))
1595 1.1 mrg return "insbl %1,%s2,%0";
1596 1.1 mrg if ((unsigned HOST_WIDE_INT) 0xffff << INTVAL (operands[2])
1597 1.1 mrg == (unsigned HOST_WIDE_INT) INTVAL (operands[3]))
1598 1.1 mrg return "inswl %1,%s2,%0";
1599 1.1 mrg if ((unsigned HOST_WIDE_INT) 0xffffffff << INTVAL (operands[2])
1600 1.1 mrg == (unsigned HOST_WIDE_INT) INTVAL (operands[3]))
1601 1.1 mrg return "insll %1,%s2,%0";
1602 1.1 mrg
1603 1.1 mrg gcc_unreachable ();
1604 1.1 mrg }
1605 1.1 mrg [(set_attr "type" "shift")])
1606 1.1 mrg
1607 1.1 mrg ;; We do not include the insXh insns because they are complex to express
1608 1.1 mrg ;; and it does not appear that we would ever want to generate them.
1609 1.1 mrg ;;
1610 1.1 mrg ;; Since we need them for block moves, though, cop out and use unspec.
1611 1.1 mrg
1612 1.1 mrg (define_insn "insxh"
1613 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1614 1.1.1.2 mrg (unspec:DI [(match_operand:DI 1 "register_operand" "r")
1615 1.1 mrg (match_operand:DI 2 "mode_width_operand" "n")
1616 1.1 mrg (match_operand:DI 3 "reg_or_8bit_operand" "rI")]
1617 1.1 mrg UNSPEC_INSXH))]
1618 1.1 mrg ""
1619 1.1 mrg "ins%M2h %1,%3,%0"
1620 1.1 mrg [(set_attr "type" "shift")])
1621 1.1 mrg
1622 1.1.1.2 mrg (define_insn "mskxl"
1623 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1624 1.1 mrg (and:DI (not:DI (ashift:DI
1625 1.1 mrg (match_operand:DI 2 "mode_mask_operand" "n")
1626 1.1 mrg (ashift:DI
1627 1.1 mrg (match_operand:DI 3 "reg_or_8bit_operand" "rI")
1628 1.1 mrg (const_int 3))))
1629 1.1 mrg (match_operand:DI 1 "reg_or_0_operand" "rJ")))]
1630 1.1 mrg ""
1631 1.1 mrg "msk%U2l %r1,%3,%0"
1632 1.1 mrg [(set_attr "type" "shift")])
1633 1.1 mrg
1634 1.1 mrg ;; We do not include the mskXh insns because it does not appear we would
1635 1.1 mrg ;; ever generate one.
1636 1.1 mrg ;;
1637 1.1 mrg ;; Again, we do for block moves and we use unspec again.
1638 1.1 mrg
1639 1.1 mrg (define_insn "mskxh"
1640 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1641 1.1 mrg (unspec:DI [(match_operand:DI 1 "register_operand" "r")
1642 1.1 mrg (match_operand:DI 2 "mode_width_operand" "n")
1643 1.1 mrg (match_operand:DI 3 "reg_or_8bit_operand" "rI")]
1644 1.1 mrg UNSPEC_MSKXH))]
1645 1.1 mrg ""
1646 1.1 mrg "msk%M2h %1,%3,%0"
1647 1.1 mrg [(set_attr "type" "shift")])
1648 1.1 mrg
1649 1.1 mrg ;; Prefer AND + NE over LSHIFTRT + AND.
1650 1.1 mrg
1651 1.1 mrg (define_insn_and_split "*ze_and_ne"
1652 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
1653 1.1 mrg (zero_extract:DI (match_operand:DI 1 "reg_or_0_operand" "rJ")
1654 1.1 mrg (const_int 1)
1655 1.1 mrg (match_operand 2 "const_int_operand" "I")))]
1656 1.1 mrg "(unsigned HOST_WIDE_INT) INTVAL (operands[2]) < 8"
1657 1.1 mrg "#"
1658 1.1 mrg "(unsigned HOST_WIDE_INT) INTVAL (operands[2]) < 8"
1659 1.1 mrg [(set (match_dup 0)
1660 1.1 mrg (and:DI (match_dup 1) (match_dup 3)))
1661 1.1.1.2 mrg (set (match_dup 0)
1662 1.1 mrg (ne:DI (match_dup 0) (const_int 0)))]
1663 1.1.1.2 mrg "operands[3] = GEN_INT (1 << INTVAL (operands[2]));")
1664 1.1 mrg
1666 1.1.1.2 mrg ;; Floating-point operations. All the double-precision insns can extend
1667 1.1.1.2 mrg ;; from single, so indicate that. The exception are the ones that simply
1668 1.1 mrg ;; play with the sign bits; it's not clear what to do there.
1669 1.1 mrg
1670 1.1 mrg (define_mode_iterator FMODE [SF DF])
1671 1.1 mrg
1672 1.1.1.2 mrg (define_mode_attr opmode [(SF "si") (DF "di")])
1673 1.1.1.2 mrg
1674 1.1.1.2 mrg (define_insn "abs<mode>2"
1675 1.1.1.2 mrg [(set (match_operand:FMODE 0 "register_operand" "=f")
1676 1.1 mrg (abs:FMODE (match_operand:FMODE 1 "reg_or_0_operand" "fG")))]
1677 1.1 mrg "TARGET_FP"
1678 1.1 mrg "cpys $f31,%R1,%0"
1679 1.1 mrg [(set_attr "type" "fcpys")])
1680 1.1 mrg
1681 1.1.1.2 mrg (define_insn "*nabs<mode>2"
1682 1.1.1.2 mrg [(set (match_operand:FMODE 0 "register_operand" "=f")
1683 1.1 mrg (neg:FMODE
1684 1.1 mrg (abs:FMODE (match_operand:FMODE 1 "reg_or_0_operand" "fG"))))]
1685 1.1.1.4 mrg "TARGET_FP"
1686 1.1 mrg "cpysn $f31,%R1,%0"
1687 1.1 mrg [(set_attr "type" "fadd")])
1688 1.1 mrg
1689 1.1 mrg (define_expand "abstf2"
1690 1.1 mrg [(parallel [(set (match_operand:TF 0 "register_operand")
1691 1.1 mrg (abs:TF (match_operand:TF 1 "reg_or_0_operand")))
1692 1.1 mrg (use (match_dup 2))])]
1693 1.1 mrg "TARGET_HAS_XFLOATING_LIBS"
1694 1.1 mrg "operands[2] = force_reg (DImode, GEN_INT (HOST_WIDE_INT_1U << 63));")
1695 1.1 mrg
1696 1.1 mrg (define_insn_and_split "*abstf_internal"
1697 1.1.1.2 mrg [(set (match_operand:TF 0 "register_operand" "=r")
1698 1.1.1.2 mrg (abs:TF (match_operand:TF 1 "reg_or_0_operand" "rG")))
1699 1.1.1.2 mrg (use (match_operand:DI 2 "register_operand" "r"))]
1700 1.1 mrg "TARGET_HAS_XFLOATING_LIBS"
1701 1.1 mrg "#"
1702 1.1 mrg "&& reload_completed"
1703 1.1 mrg [(const_int 0)]
1704 1.1 mrg "alpha_split_tfmode_frobsign (operands, gen_andnotdi3); DONE;")
1705 1.1.1.2 mrg
1706 1.1.1.2 mrg (define_insn "neg<mode>2"
1707 1.1 mrg [(set (match_operand:FMODE 0 "register_operand" "=f")
1708 1.1 mrg (neg:FMODE (match_operand:FMODE 1 "reg_or_0_operand" "fG")))]
1709 1.1.1.4 mrg "TARGET_FP"
1710 1.1 mrg "cpysn %R1,%R1,%0"
1711 1.1 mrg [(set_attr "type" "fadd")])
1712 1.1 mrg
1713 1.1 mrg (define_expand "negtf2"
1714 1.1 mrg [(parallel [(set (match_operand:TF 0 "register_operand")
1715 1.1 mrg (neg:TF (match_operand:TF 1 "reg_or_0_operand")))
1716 1.1 mrg (use (match_dup 2))])]
1717 1.1 mrg "TARGET_HAS_XFLOATING_LIBS"
1718 1.1 mrg "operands[2] = force_reg (DImode, GEN_INT (HOST_WIDE_INT_1U << 63));")
1719 1.1 mrg
1720 1.1 mrg (define_insn_and_split "*negtf_internal"
1721 1.1.1.2 mrg [(set (match_operand:TF 0 "register_operand" "=r")
1722 1.1.1.2 mrg (neg:TF (match_operand:TF 1 "reg_or_0_operand" "rG")))
1723 1.1.1.2 mrg (use (match_operand:DI 2 "register_operand" "r"))]
1724 1.1.1.2 mrg "TARGET_HAS_XFLOATING_LIBS"
1725 1.1.1.2 mrg "#"
1726 1.1 mrg "&& reload_completed"
1727 1.1 mrg [(const_int 0)]
1728 1.1 mrg "alpha_split_tfmode_frobsign (operands, gen_xordi3); DONE;")
1729 1.1 mrg
1730 1.1.1.2 mrg (define_insn "copysign<mode>3"
1731 1.1.1.2 mrg [(set (match_operand:FMODE 0 "register_operand" "=f")
1732 1.1.1.2 mrg (unspec:FMODE [(match_operand:FMODE 1 "reg_or_0_operand" "fG")
1733 1.1.1.2 mrg (match_operand:FMODE 2 "reg_or_0_operand" "fG")]
1734 1.1.1.2 mrg UNSPEC_COPYSIGN))]
1735 1.1.1.2 mrg "TARGET_FP"
1736 1.1 mrg "cpys %R2,%R1,%0"
1737 1.1 mrg [(set_attr "type" "fadd")])
1738 1.1 mrg
1739 1.1 mrg (define_insn "*ncopysign<mode>3"
1740 1.1.1.2 mrg [(set (match_operand:FMODE 0 "register_operand" "=f")
1741 1.1.1.7 mrg (neg:FMODE
1742 1.1.1.7 mrg (unspec:FMODE [(match_operand:FMODE 1 "reg_or_0_operand" "fG")
1743 1.1.1.7 mrg (match_operand:FMODE 2 "reg_or_0_operand" "fG")]
1744 1.1 mrg UNSPEC_COPYSIGN)))]
1745 1.1.1.2 mrg "TARGET_FP"
1746 1.1 mrg "cpysn %R2,%R1,%0"
1747 1.1 mrg [(set_attr "type" "fadd")])
1748 1.1 mrg
1749 1.1.1.7 mrg (define_insn "add<mode>3"
1750 1.1.1.7 mrg [(set (match_operand:FMODE 0 "register_operand" "=f,&f")
1751 1.1.1.7 mrg (plus:FMODE (match_operand:FMODE 1 "reg_or_0_operand" "%fG,fG")
1752 1.1.1.7 mrg (match_operand:FMODE 2 "reg_or_0_operand" "fG,fG")))]
1753 1.1.1.7 mrg "TARGET_FP"
1754 1.1.1.7 mrg "add<modesuffix>%/ %R1,%R2,%0"
1755 1.1 mrg [(set_attr "type" "fadd")
1756 1.1 mrg (set_attr "trap" "yes")
1757 1.1 mrg (set_attr "round_suffix" "normal")
1758 1.1 mrg (set_attr "trap_suffix" "u_su_sui")
1759 1.1 mrg (set (attr "enabled")
1760 1.1 mrg (cond [(eq_attr "alternative" "0")
1761 1.1 mrg (symbol_ref "alpha_fptm < ALPHA_FPTM_SU")
1762 1.1 mrg ]
1763 1.1 mrg (symbol_ref "true")))])
1764 1.1 mrg
1765 1.1 mrg (define_insn "*adddf_ext1"
1766 1.1 mrg [(set (match_operand:DF 0 "register_operand" "=f")
1767 1.1 mrg (plus:DF (float_extend:DF
1768 1.1 mrg (match_operand:SF 1 "reg_or_0_operand" "fG"))
1769 1.1 mrg (match_operand:DF 2 "reg_or_0_operand" "fG")))]
1770 1.1 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
1771 1.1 mrg "add%-%/ %R1,%R2,%0"
1772 1.1 mrg [(set_attr "type" "fadd")
1773 1.1 mrg (set_attr "trap" "yes")
1774 1.1 mrg (set_attr "round_suffix" "normal")
1775 1.1 mrg (set_attr "trap_suffix" "u_su_sui")])
1776 1.1 mrg
1777 1.1 mrg (define_insn "*adddf_ext2"
1778 1.1 mrg [(set (match_operand:DF 0 "register_operand" "=f")
1779 1.1 mrg (plus:DF (float_extend:DF
1780 1.1 mrg (match_operand:SF 1 "reg_or_0_operand" "%fG"))
1781 1.1 mrg (float_extend:DF
1782 1.1.1.2 mrg (match_operand:SF 2 "reg_or_0_operand" "fG"))))]
1783 1.1.1.2 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
1784 1.1.1.2 mrg "add%-%/ %R1,%R2,%0"
1785 1.1 mrg [(set_attr "type" "fadd")
1786 1.1 mrg (set_attr "trap" "yes")
1787 1.1 mrg (set_attr "round_suffix" "normal")
1788 1.1.1.2 mrg (set_attr "trap_suffix" "u_su_sui")])
1789 1.1.1.7 mrg
1790 1.1.1.7 mrg (define_expand "addtf3"
1791 1.1.1.7 mrg [(use (match_operand:TF 0 "register_operand"))
1792 1.1.1.2 mrg (use (match_operand:TF 1 "general_operand"))
1793 1.1.1.2 mrg (use (match_operand:TF 2 "general_operand"))]
1794 1.1.1.2 mrg "TARGET_HAS_XFLOATING_LIBS"
1795 1.1.1.2 mrg "alpha_emit_xfloating_arith (PLUS, operands); DONE;")
1796 1.1.1.2 mrg
1797 1.1.1.7 mrg (define_insn "sub<mode>3"
1798 1.1.1.7 mrg [(set (match_operand:FMODE 0 "register_operand" "=f,&f")
1799 1.1.1.7 mrg (minus:FMODE (match_operand:FMODE 1 "reg_or_0_operand" "fG,fG")
1800 1.1.1.7 mrg (match_operand:FMODE 2 "reg_or_0_operand" "fG,fG")))]
1801 1.1.1.7 mrg "TARGET_FP"
1802 1.1.1.7 mrg "sub<modesuffix>%/ %R1,%R2,%0"
1803 1.1.1.2 mrg [(set_attr "type" "fadd")
1804 1.1.1.2 mrg (set_attr "trap" "yes")
1805 1.1.1.2 mrg (set_attr "round_suffix" "normal")
1806 1.1.1.2 mrg (set_attr "trap_suffix" "u_su_sui")
1807 1.1.1.2 mrg (set (attr "enabled")
1808 1.1.1.2 mrg (cond [(eq_attr "alternative" "0")
1809 1.1.1.2 mrg (symbol_ref "alpha_fptm < ALPHA_FPTM_SU")
1810 1.1.1.2 mrg ]
1811 1.1.1.2 mrg (symbol_ref "true")))])
1812 1.1.1.2 mrg
1813 1.1.1.2 mrg (define_insn "*subdf_ext1"
1814 1.1.1.2 mrg [(set (match_operand:DF 0 "register_operand" "=f")
1815 1.1.1.2 mrg (minus:DF (float_extend:DF
1816 1.1.1.2 mrg (match_operand:SF 1 "reg_or_0_operand" "fG"))
1817 1.1.1.2 mrg (match_operand:DF 2 "reg_or_0_operand" "fG")))]
1818 1.1.1.2 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
1819 1.1.1.2 mrg "sub%-%/ %R1,%R2,%0"
1820 1.1.1.2 mrg [(set_attr "type" "fadd")
1821 1.1.1.2 mrg (set_attr "trap" "yes")
1822 1.1.1.2 mrg (set_attr "round_suffix" "normal")
1823 1.1.1.2 mrg (set_attr "trap_suffix" "u_su_sui")])
1824 1.1.1.2 mrg
1825 1.1.1.2 mrg (define_insn "*subdf_ext2"
1826 1.1.1.2 mrg [(set (match_operand:DF 0 "register_operand" "=f")
1827 1.1.1.2 mrg (minus:DF (match_operand:DF 1 "reg_or_0_operand" "fG")
1828 1.1.1.2 mrg (float_extend:DF
1829 1.1.1.2 mrg (match_operand:SF 2 "reg_or_0_operand" "fG"))))]
1830 1.1.1.2 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
1831 1.1.1.2 mrg "sub%-%/ %R1,%R2,%0"
1832 1.1.1.2 mrg [(set_attr "type" "fadd")
1833 1.1.1.2 mrg (set_attr "trap" "yes")
1834 1.1.1.2 mrg (set_attr "round_suffix" "normal")
1835 1.1.1.2 mrg (set_attr "trap_suffix" "u_su_sui")])
1836 1.1.1.2 mrg
1837 1.1.1.2 mrg (define_insn "*subdf_ext3"
1838 1.1.1.2 mrg [(set (match_operand:DF 0 "register_operand" "=f")
1839 1.1.1.2 mrg (minus:DF (float_extend:DF
1840 1.1.1.2 mrg (match_operand:SF 1 "reg_or_0_operand" "fG"))
1841 1.1.1.2 mrg (float_extend:DF
1842 1.1.1.2 mrg (match_operand:SF 2 "reg_or_0_operand" "fG"))))]
1843 1.1.1.2 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
1844 1.1.1.2 mrg "sub%-%/ %R1,%R2,%0"
1845 1.1.1.2 mrg [(set_attr "type" "fadd")
1846 1.1.1.2 mrg (set_attr "trap" "yes")
1847 1.1.1.2 mrg (set_attr "round_suffix" "normal")
1848 1.1.1.2 mrg (set_attr "trap_suffix" "u_su_sui")])
1849 1.1.1.7 mrg
1850 1.1.1.7 mrg (define_expand "subtf3"
1851 1.1.1.7 mrg [(use (match_operand:TF 0 "register_operand"))
1852 1.1.1.2 mrg (use (match_operand:TF 1 "general_operand"))
1853 1.1.1.2 mrg (use (match_operand:TF 2 "general_operand"))]
1854 1.1.1.2 mrg "TARGET_HAS_XFLOATING_LIBS"
1855 1.1.1.2 mrg "alpha_emit_xfloating_arith (MINUS, operands); DONE;")
1856 1.1.1.2 mrg
1857 1.1.1.7 mrg (define_insn "mul<mode>3"
1858 1.1.1.7 mrg [(set (match_operand:FMODE 0 "register_operand" "=f,&f")
1859 1.1.1.7 mrg (mult:FMODE (match_operand:FMODE 1 "reg_or_0_operand" "%fG,fG")
1860 1.1.1.7 mrg (match_operand:FMODE 2 "reg_or_0_operand" "fG,fG")))]
1861 1.1.1.7 mrg "TARGET_FP"
1862 1.1.1.7 mrg "mul<modesuffix>%/ %R1,%R2,%0"
1863 1.1.1.2 mrg [(set_attr "type" "fmul")
1864 1.1.1.2 mrg (set_attr "trap" "yes")
1865 1.1.1.2 mrg (set_attr "round_suffix" "normal")
1866 1.1.1.2 mrg (set_attr "trap_suffix" "u_su_sui")
1867 1.1.1.2 mrg (set (attr "enabled")
1868 1.1.1.2 mrg (cond [(eq_attr "alternative" "0")
1869 1.1.1.2 mrg (symbol_ref "alpha_fptm < ALPHA_FPTM_SU")
1870 1.1.1.2 mrg ]
1871 1.1.1.2 mrg (symbol_ref "true")))])
1872 1.1.1.2 mrg
1873 1.1.1.2 mrg (define_insn "*muldf_ext1"
1874 1.1.1.2 mrg [(set (match_operand:DF 0 "register_operand" "=f")
1875 1.1.1.2 mrg (mult:DF (float_extend:DF
1876 1.1.1.2 mrg (match_operand:SF 1 "reg_or_0_operand" "fG"))
1877 1.1.1.2 mrg (match_operand:DF 2 "reg_or_0_operand" "fG")))]
1878 1.1.1.2 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
1879 1.1.1.2 mrg "mul%-%/ %R1,%R2,%0"
1880 1.1.1.2 mrg [(set_attr "type" "fmul")
1881 1.1.1.2 mrg (set_attr "trap" "yes")
1882 1.1.1.2 mrg (set_attr "round_suffix" "normal")
1883 1.1.1.2 mrg (set_attr "trap_suffix" "u_su_sui")])
1884 1.1.1.2 mrg
1885 1.1.1.2 mrg (define_insn "*muldf_ext2"
1886 1.1.1.2 mrg [(set (match_operand:DF 0 "register_operand" "=f")
1887 1.1.1.2 mrg (mult:DF (float_extend:DF
1888 1.1.1.2 mrg (match_operand:SF 1 "reg_or_0_operand" "%fG"))
1889 1.1.1.2 mrg (float_extend:DF
1890 1.1.1.2 mrg (match_operand:SF 2 "reg_or_0_operand" "fG"))))]
1891 1.1.1.2 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
1892 1.1.1.2 mrg "mul%-%/ %R1,%R2,%0"
1893 1.1.1.2 mrg [(set_attr "type" "fmul")
1894 1.1.1.2 mrg (set_attr "trap" "yes")
1895 1.1.1.2 mrg (set_attr "round_suffix" "normal")
1896 1.1.1.2 mrg (set_attr "trap_suffix" "u_su_sui")])
1897 1.1.1.7 mrg
1898 1.1.1.7 mrg (define_expand "multf3"
1899 1.1.1.7 mrg [(use (match_operand:TF 0 "register_operand"))
1900 1.1.1.2 mrg (use (match_operand:TF 1 "general_operand"))
1901 1.1.1.2 mrg (use (match_operand:TF 2 "general_operand"))]
1902 1.1.1.2 mrg "TARGET_HAS_XFLOATING_LIBS"
1903 1.1.1.2 mrg "alpha_emit_xfloating_arith (MULT, operands); DONE;")
1904 1.1.1.2 mrg
1905 1.1.1.2 mrg (define_insn "div<mode>3"
1906 1.1.1.7 mrg [(set (match_operand:FMODE 0 "register_operand" "=f,&f")
1907 1.1.1.7 mrg (div:FMODE (match_operand:FMODE 1 "reg_or_0_operand" "fG,fG")
1908 1.1.1.7 mrg (match_operand:FMODE 2 "reg_or_0_operand" "fG,fG")))]
1909 1.1.1.7 mrg "TARGET_FP"
1910 1.1.1.7 mrg "div<modesuffix>%/ %R1,%R2,%0"
1911 1.1.1.7 mrg [(set_attr "type" "fdiv")
1912 1.1.1.2 mrg (set_attr "opsize" "<opmode>")
1913 1.1.1.2 mrg (set_attr "trap" "yes")
1914 1.1.1.2 mrg (set_attr "round_suffix" "normal")
1915 1.1.1.2 mrg (set_attr "trap_suffix" "u_su_sui")
1916 1.1.1.2 mrg (set (attr "enabled")
1917 1.1.1.2 mrg (cond [(eq_attr "alternative" "0")
1918 1.1.1.2 mrg (symbol_ref "alpha_fptm < ALPHA_FPTM_SU")
1919 1.1.1.2 mrg ]
1920 1.1.1.2 mrg (symbol_ref "true")))])
1921 1.1.1.2 mrg
1922 1.1.1.2 mrg (define_insn "*divdf_ext1"
1923 1.1.1.2 mrg [(set (match_operand:DF 0 "register_operand" "=f")
1924 1.1.1.2 mrg (div:DF (float_extend:DF (match_operand:SF 1 "reg_or_0_operand" "fG"))
1925 1.1.1.2 mrg (match_operand:DF 2 "reg_or_0_operand" "fG")))]
1926 1.1.1.2 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
1927 1.1.1.2 mrg "div%-%/ %R1,%R2,%0"
1928 1.1.1.2 mrg [(set_attr "type" "fdiv")
1929 1.1.1.2 mrg (set_attr "trap" "yes")
1930 1.1.1.2 mrg (set_attr "round_suffix" "normal")
1931 1.1.1.2 mrg (set_attr "trap_suffix" "u_su_sui")])
1932 1.1.1.2 mrg
1933 1.1.1.2 mrg (define_insn "*divdf_ext2"
1934 1.1.1.2 mrg [(set (match_operand:DF 0 "register_operand" "=f")
1935 1.1.1.2 mrg (div:DF (match_operand:DF 1 "reg_or_0_operand" "fG")
1936 1.1.1.2 mrg (float_extend:DF
1937 1.1.1.2 mrg (match_operand:SF 2 "reg_or_0_operand" "fG"))))]
1938 1.1.1.2 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
1939 1.1.1.2 mrg "div%-%/ %R1,%R2,%0"
1940 1.1.1.2 mrg [(set_attr "type" "fdiv")
1941 1.1.1.2 mrg (set_attr "trap" "yes")
1942 1.1.1.2 mrg (set_attr "round_suffix" "normal")
1943 1.1.1.2 mrg (set_attr "trap_suffix" "u_su_sui")])
1944 1.1.1.2 mrg
1945 1.1.1.2 mrg (define_insn "*divdf_ext3"
1946 1.1.1.2 mrg [(set (match_operand:DF 0 "register_operand" "=f")
1947 1.1.1.2 mrg (div:DF (float_extend:DF
1948 1.1.1.2 mrg (match_operand:SF 1 "reg_or_0_operand" "fG"))
1949 1.1.1.2 mrg (float_extend:DF
1950 1.1.1.2 mrg (match_operand:SF 2 "reg_or_0_operand" "fG"))))]
1951 1.1.1.2 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
1952 1.1.1.2 mrg "div%-%/ %R1,%R2,%0"
1953 1.1.1.2 mrg [(set_attr "type" "fdiv")
1954 1.1.1.2 mrg (set_attr "trap" "yes")
1955 1.1.1.2 mrg (set_attr "round_suffix" "normal")
1956 1.1.1.2 mrg (set_attr "trap_suffix" "u_su_sui")])
1957 1.1.1.7 mrg
1958 1.1.1.7 mrg (define_expand "divtf3"
1959 1.1.1.2 mrg [(use (match_operand:TF 0 "register_operand"))
1960 1.1.1.2 mrg (use (match_operand:TF 1 "general_operand"))
1961 1.1.1.2 mrg (use (match_operand:TF 2 "general_operand"))]
1962 1.1.1.2 mrg "TARGET_HAS_XFLOATING_LIBS"
1963 1.1.1.2 mrg "alpha_emit_xfloating_arith (DIV, operands); DONE;")
1964 1.1.1.2 mrg
1965 1.1.1.7 mrg (define_insn "sqrt<mode>2"
1966 1.1.1.7 mrg [(set (match_operand:FMODE 0 "register_operand" "=f,&f")
1967 1.1.1.7 mrg (sqrt:FMODE (match_operand:FMODE 1 "reg_or_0_operand" "fG,fG")))]
1968 1.1.1.7 mrg "TARGET_FP && TARGET_FIX"
1969 1.1.1.7 mrg "sqrt<modesuffix>%/ %R1,%0"
1970 1.1.1.7 mrg [(set_attr "type" "fsqrt")
1971 1.1.1.2 mrg (set_attr "opsize" "<opmode>")
1972 1.1.1.2 mrg (set_attr "trap" "yes")
1973 1.1.1.2 mrg (set_attr "round_suffix" "normal")
1974 1.1.1.2 mrg (set_attr "trap_suffix" "u_su_sui")
1975 1.1.1.2 mrg (set (attr "enabled")
1976 1.1.1.2 mrg (cond [(eq_attr "alternative" "0")
1977 1.1.1.2 mrg (symbol_ref "alpha_fptm < ALPHA_FPTM_SU")
1978 1.1.1.2 mrg ]
1979 1.1.1.2 mrg (symbol_ref "true")))])
1980 1.1 mrg
1981 1.1 mrg ;; Define conversion operators between DFmode and SImode, using the cvtql
1982 1.1 mrg ;; instruction. To allow combine et al to do useful things, we keep the
1983 1.1 mrg ;; operation as a unit until after reload, at which point we split the
1984 1.1 mrg ;; instructions.
1985 1.1 mrg ;;
1986 1.1 mrg ;; Note that we (attempt to) only consider this optimization when the
1987 1.1 mrg ;; ultimate destination is memory. If we will be doing further integer
1988 1.1 mrg ;; processing, it is cheaper to do the truncation in the int regs.
1989 1.1 mrg
1990 1.1 mrg (define_insn "*cvtql"
1991 1.1 mrg [(set (match_operand:SF 0 "register_operand" "=f")
1992 1.1 mrg (unspec:SF [(match_operand:DI 1 "reg_or_0_operand" "fG")]
1993 1.1 mrg UNSPEC_CVTQL))]
1994 1.1 mrg "TARGET_FP"
1995 1.1 mrg "cvtql%/ %R1,%0"
1996 1.1 mrg [(set_attr "type" "fadd")
1997 1.1 mrg (set_attr "trap" "yes")
1998 1.1 mrg (set_attr "trap_suffix" "v_sv")])
1999 1.1 mrg
2000 1.1 mrg (define_insn_and_split "*fix_truncdfsi_ieee"
2001 1.1 mrg [(set (match_operand:SI 0 "memory_operand" "=m")
2002 1.1 mrg (subreg:SI
2003 1.1 mrg (match_operator:DI 4 "fix_operator"
2004 1.1 mrg [(match_operand:DF 1 "reg_or_0_operand" "fG")]) 0))
2005 1.1 mrg (clobber (match_scratch:DI 2 "=&f"))
2006 1.1 mrg (clobber (match_scratch:SF 3 "=&f"))]
2007 1.1 mrg "TARGET_FP && alpha_fptm >= ALPHA_FPTM_SU"
2008 1.1 mrg "#"
2009 1.1 mrg "&& reload_completed"
2010 1.1 mrg [(set (match_dup 2) (match_op_dup 4 [(match_dup 1)]))
2011 1.1 mrg (set (match_dup 3) (unspec:SF [(match_dup 2)] UNSPEC_CVTQL))
2012 1.1 mrg (set (match_dup 5) (match_dup 3))]
2013 1.1 mrg {
2014 1.1 mrg operands[5] = adjust_address (operands[0], SFmode, 0);
2015 1.1 mrg }
2016 1.1 mrg [(set_attr "type" "fadd")
2017 1.1 mrg (set_attr "trap" "yes")])
2018 1.1 mrg
2019 1.1 mrg (define_insn_and_split "*fix_truncdfsi_internal"
2020 1.1 mrg [(set (match_operand:SI 0 "memory_operand" "=m")
2021 1.1 mrg (subreg:SI
2022 1.1 mrg (match_operator:DI 3 "fix_operator"
2023 1.1 mrg [(match_operand:DF 1 "reg_or_0_operand" "fG")]) 0))
2024 1.1 mrg (clobber (match_scratch:DI 2 "=f"))]
2025 1.1 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
2026 1.1 mrg "#"
2027 1.1 mrg "&& reload_completed"
2028 1.1 mrg [(set (match_dup 2) (match_op_dup 3 [(match_dup 1)]))
2029 1.1 mrg (set (match_dup 4) (unspec:SF [(match_dup 2)] UNSPEC_CVTQL))
2030 1.1.1.7 mrg (set (match_dup 5) (match_dup 4))]
2031 1.1 mrg {
2032 1.1.1.7 mrg operands[4] = gen_rtx_REG (SFmode, REGNO (operands[2]));
2033 1.1 mrg operands[5] = adjust_address (operands[0], SFmode, 0);
2034 1.1 mrg }
2035 1.1 mrg [(set_attr "type" "fadd")
2036 1.1 mrg (set_attr "trap" "yes")])
2037 1.1 mrg
2038 1.1.1.7 mrg (define_insn "*fix_truncdfdi2"
2039 1.1.1.7 mrg [(set (match_operand:DI 0 "reg_no_subreg_operand" "=f,&f")
2040 1.1.1.7 mrg (match_operator:DI 2 "fix_operator"
2041 1.1.1.7 mrg [(match_operand:DF 1 "reg_or_0_operand" "fG,fG")]))]
2042 1.1.1.7 mrg "TARGET_FP"
2043 1.1.1.7 mrg "cvt%-q%/ %R1,%0"
2044 1.1 mrg [(set_attr "type" "fadd")
2045 1.1 mrg (set_attr "trap" "yes")
2046 1.1.1.2 mrg (set_attr "round_suffix" "c")
2047 1.1.1.2 mrg (set_attr "trap_suffix" "v_sv_svi")
2048 1.1.1.2 mrg (set (attr "enabled")
2049 1.1 mrg (cond [(eq_attr "alternative" "0")
2050 1.1 mrg (symbol_ref "alpha_fptm < ALPHA_FPTM_SU")
2051 1.1.1.2 mrg ]
2052 1.1.1.2 mrg (symbol_ref "true")))])
2053 1.1.1.2 mrg
2054 1.1 mrg (define_expand "fix_truncdfdi2"
2055 1.1 mrg [(set (match_operand:DI 0 "reg_no_subreg_operand")
2056 1.1 mrg (fix:DI (match_operand:DF 1 "reg_or_0_operand")))]
2057 1.1 mrg "TARGET_FP")
2058 1.1 mrg
2059 1.1 mrg (define_expand "fixuns_truncdfdi2"
2060 1.1 mrg [(set (match_operand:DI 0 "reg_no_subreg_operand")
2061 1.1 mrg (unsigned_fix:DI (match_operand:DF 1 "reg_or_0_operand")))]
2062 1.1 mrg "TARGET_FP")
2063 1.1 mrg
2064 1.1 mrg ;; Likewise between SFmode and SImode.
2065 1.1 mrg
2066 1.1 mrg (define_insn_and_split "*fix_truncsfsi_ieee"
2067 1.1 mrg [(set (match_operand:SI 0 "memory_operand" "=m")
2068 1.1 mrg (subreg:SI
2069 1.1 mrg (match_operator:DI 4 "fix_operator"
2070 1.1 mrg [(float_extend:DF
2071 1.1.1.2 mrg (match_operand:SF 1 "reg_or_0_operand" "fG"))]) 0))
2072 1.1 mrg (clobber (match_scratch:DI 2 "=&f"))
2073 1.1 mrg (clobber (match_scratch:SF 3 "=&f"))]
2074 1.1 mrg "TARGET_FP && alpha_fptm >= ALPHA_FPTM_SU"
2075 1.1 mrg "#"
2076 1.1 mrg "&& reload_completed"
2077 1.1 mrg [(set (match_dup 2) (match_op_dup 4 [(float_extend:DF (match_dup 1))]))
2078 1.1 mrg (set (match_dup 3) (unspec:SF [(match_dup 2)] UNSPEC_CVTQL))
2079 1.1 mrg (set (match_dup 5) (match_dup 3))]
2080 1.1 mrg "operands[5] = adjust_address (operands[0], SFmode, 0);"
2081 1.1 mrg [(set_attr "type" "fadd")
2082 1.1 mrg (set_attr "trap" "yes")])
2083 1.1 mrg
2084 1.1 mrg (define_insn_and_split "*fix_truncsfsi_internal"
2085 1.1 mrg [(set (match_operand:SI 0 "memory_operand" "=m")
2086 1.1 mrg (subreg:SI
2087 1.1 mrg (match_operator:DI 3 "fix_operator"
2088 1.1 mrg [(float_extend:DF
2089 1.1 mrg (match_operand:SF 1 "reg_or_0_operand" "fG"))]) 0))
2090 1.1 mrg (clobber (match_scratch:DI 2 "=f"))]
2091 1.1 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
2092 1.1 mrg "#"
2093 1.1 mrg "&& reload_completed"
2094 1.1 mrg [(set (match_dup 2) (match_op_dup 3 [(float_extend:DF (match_dup 1))]))
2095 1.1 mrg (set (match_dup 4) (unspec:SF [(match_dup 2)] UNSPEC_CVTQL))
2096 1.1.1.7 mrg (set (match_dup 5) (match_dup 4))]
2097 1.1 mrg {
2098 1.1.1.7 mrg operands[4] = gen_rtx_REG (SFmode, REGNO (operands[2]));
2099 1.1 mrg operands[5] = adjust_address (operands[0], SFmode, 0);
2100 1.1 mrg }
2101 1.1 mrg [(set_attr "type" "fadd")
2102 1.1 mrg (set_attr "trap" "yes")])
2103 1.1 mrg
2104 1.1.1.7 mrg (define_insn "*fix_truncsfdi2"
2105 1.1.1.7 mrg [(set (match_operand:DI 0 "reg_no_subreg_operand" "=f,&f")
2106 1.1.1.7 mrg (match_operator:DI 2 "fix_operator"
2107 1.1.1.7 mrg [(float_extend:DF (match_operand:SF 1 "reg_or_0_operand" "fG,fG"))]))]
2108 1.1.1.7 mrg "TARGET_FP"
2109 1.1.1.7 mrg "cvt%-q%/ %R1,%0"
2110 1.1 mrg [(set_attr "type" "fadd")
2111 1.1 mrg (set_attr "trap" "yes")
2112 1.1.1.2 mrg (set_attr "round_suffix" "c")
2113 1.1.1.2 mrg (set_attr "trap_suffix" "v_sv_svi")
2114 1.1.1.2 mrg (set (attr "enabled")
2115 1.1 mrg (cond [(eq_attr "alternative" "0")
2116 1.1 mrg (symbol_ref "alpha_fptm < ALPHA_FPTM_SU")
2117 1.1.1.2 mrg ]
2118 1.1 mrg (symbol_ref "true")))])
2119 1.1.1.2 mrg
2120 1.1.1.2 mrg (define_expand "fix_truncsfdi2"
2121 1.1 mrg [(set (match_operand:DI 0 "reg_no_subreg_operand")
2122 1.1 mrg (fix:DI (float_extend:DF (match_operand:SF 1 "reg_or_0_operand"))))]
2123 1.1.1.2 mrg "TARGET_FP")
2124 1.1.1.2 mrg
2125 1.1 mrg (define_expand "fixuns_truncsfdi2"
2126 1.1 mrg [(set (match_operand:DI 0 "reg_no_subreg_operand")
2127 1.1 mrg (unsigned_fix:DI
2128 1.1 mrg (float_extend:DF (match_operand:SF 1 "reg_or_0_operand"))))]
2129 1.1.1.2 mrg "TARGET_FP")
2130 1.1.1.2 mrg
2131 1.1 mrg (define_expand "fix_trunctfdi2"
2132 1.1 mrg [(use (match_operand:DI 0 "register_operand"))
2133 1.1 mrg (use (match_operand:TF 1 "general_operand"))]
2134 1.1 mrg "TARGET_HAS_XFLOATING_LIBS"
2135 1.1.1.7 mrg "alpha_emit_xfloating_cvt (FIX, operands); DONE;")
2136 1.1.1.7 mrg
2137 1.1 mrg (define_expand "fixuns_trunctfdi2"
2138 1.1 mrg [(use (match_operand:DI 0 "register_operand"))
2139 1.1 mrg (use (match_operand:TF 1 "general_operand"))]
2140 1.1 mrg "TARGET_HAS_XFLOATING_LIBS"
2141 1.1 mrg "alpha_emit_xfloating_cvt (UNSIGNED_FIX, operands); DONE;")
2142 1.1.1.7 mrg
2143 1.1.1.7 mrg (define_insn "floatdisf2"
2144 1.1.1.7 mrg [(set (match_operand:SF 0 "register_operand" "=f,&f")
2145 1.1.1.7 mrg (float:SF (match_operand:DI 1 "reg_no_subreg_operand" "f,f")))]
2146 1.1.1.7 mrg "TARGET_FP"
2147 1.1.1.7 mrg "cvtq%,%/ %1,%0"
2148 1.1 mrg [(set_attr "type" "fadd")
2149 1.1 mrg (set_attr "trap" "yes")
2150 1.1 mrg (set_attr "round_suffix" "normal")
2151 1.1 mrg (set_attr "trap_suffix" "sui")
2152 1.1 mrg (set (attr "enabled")
2153 1.1 mrg (cond [(eq_attr "alternative" "0")
2154 1.1 mrg (symbol_ref "alpha_fptm < ALPHA_FPTM_SU")
2155 1.1 mrg ]
2156 1.1 mrg (symbol_ref "true")))])
2157 1.1 mrg
2158 1.1 mrg (define_insn_and_split "*floatsisf2_ieee"
2159 1.1 mrg [(set (match_operand:SF 0 "register_operand" "=&f")
2160 1.1.1.2 mrg (float:SF (match_operand:SI 1 "memory_operand" "m")))
2161 1.1 mrg (clobber (match_scratch:DI 2 "=&f"))
2162 1.1 mrg (clobber (match_scratch:SF 3 "=&f"))]
2163 1.1 mrg "TARGET_FP && alpha_fptm >= ALPHA_FPTM_SU"
2164 1.1 mrg "#"
2165 1.1 mrg "&& reload_completed"
2166 1.1 mrg [(set (match_dup 3) (match_dup 1))
2167 1.1 mrg (set (match_dup 2) (unspec:DI [(match_dup 3)] UNSPEC_CVTLQ))
2168 1.1 mrg (set (match_dup 0) (float:SF (match_dup 2)))]
2169 1.1 mrg "operands[1] = adjust_address (operands[1], SFmode, 0);")
2170 1.1 mrg
2171 1.1 mrg (define_insn_and_split "*floatsisf2"
2172 1.1 mrg [(set (match_operand:SF 0 "register_operand" "=f")
2173 1.1 mrg (float:SF (match_operand:SI 1 "memory_operand" "m")))]
2174 1.1 mrg "TARGET_FP"
2175 1.1 mrg "#"
2176 1.1 mrg "&& reload_completed"
2177 1.1.1.7 mrg [(set (match_dup 0) (match_dup 1))
2178 1.1.1.7 mrg (set (match_dup 2) (unspec:DI [(match_dup 0)] UNSPEC_CVTLQ))
2179 1.1 mrg (set (match_dup 0) (float:SF (match_dup 2)))]
2180 1.1 mrg {
2181 1.1 mrg operands[1] = adjust_address (operands[1], SFmode, 0);
2182 1.1 mrg operands[2] = gen_rtx_REG (DImode, REGNO (operands[0]));
2183 1.1 mrg })
2184 1.1.1.7 mrg
2185 1.1.1.7 mrg (define_insn "floatdidf2"
2186 1.1.1.7 mrg [(set (match_operand:DF 0 "register_operand" "=f,&f")
2187 1.1.1.7 mrg (float:DF (match_operand:DI 1 "reg_no_subreg_operand" "f,f")))]
2188 1.1.1.7 mrg "TARGET_FP"
2189 1.1.1.7 mrg "cvtq%-%/ %1,%0"
2190 1.1 mrg [(set_attr "type" "fadd")
2191 1.1 mrg (set_attr "trap" "yes")
2192 1.1 mrg (set_attr "round_suffix" "normal")
2193 1.1 mrg (set_attr "trap_suffix" "sui")
2194 1.1 mrg (set (attr "enabled")
2195 1.1 mrg (cond [(eq_attr "alternative" "0")
2196 1.1 mrg (symbol_ref "alpha_fptm < ALPHA_FPTM_SU")
2197 1.1 mrg ]
2198 1.1 mrg (symbol_ref "true")))])
2199 1.1 mrg
2200 1.1 mrg (define_insn_and_split "*floatsidf2_ieee"
2201 1.1 mrg [(set (match_operand:DF 0 "register_operand" "=&f")
2202 1.1.1.2 mrg (float:DF (match_operand:SI 1 "memory_operand" "m")))
2203 1.1 mrg (clobber (match_scratch:DI 2 "=&f"))
2204 1.1 mrg (clobber (match_scratch:SF 3 "=&f"))]
2205 1.1 mrg "TARGET_FP && alpha_fptm >= ALPHA_FPTM_SU"
2206 1.1 mrg "#"
2207 1.1 mrg "&& reload_completed"
2208 1.1 mrg [(set (match_dup 3) (match_dup 1))
2209 1.1 mrg (set (match_dup 2) (unspec:DI [(match_dup 3)] UNSPEC_CVTLQ))
2210 1.1 mrg (set (match_dup 0) (float:DF (match_dup 2)))]
2211 1.1 mrg "operands[1] = adjust_address (operands[1], SFmode, 0);")
2212 1.1 mrg
2213 1.1 mrg (define_insn_and_split "*floatsidf2"
2214 1.1 mrg [(set (match_operand:DF 0 "register_operand" "=f")
2215 1.1 mrg (float:DF (match_operand:SI 1 "memory_operand" "m")))]
2216 1.1 mrg "TARGET_FP"
2217 1.1 mrg "#"
2218 1.1 mrg "&& reload_completed"
2219 1.1 mrg [(set (match_dup 3) (match_dup 1))
2220 1.1.1.2 mrg (set (match_dup 2) (unspec:DI [(match_dup 3)] UNSPEC_CVTLQ))
2221 1.1.1.2 mrg (set (match_dup 0) (float:DF (match_dup 2)))]
2222 1.1 mrg {
2223 1.1 mrg operands[1] = adjust_address (operands[1], SFmode, 0);
2224 1.1 mrg operands[2] = gen_rtx_REG (DImode, REGNO (operands[0]));
2225 1.1 mrg operands[3] = gen_rtx_REG (SFmode, REGNO (operands[0]));
2226 1.1.1.2 mrg })
2227 1.1.1.2 mrg
2228 1.1 mrg (define_expand "floatditf2"
2229 1.1 mrg [(use (match_operand:TF 0 "register_operand"))
2230 1.1 mrg (use (match_operand:DI 1 "general_operand"))]
2231 1.1 mrg "TARGET_HAS_XFLOATING_LIBS"
2232 1.1.1.2 mrg "alpha_emit_xfloating_cvt (FLOAT, operands); DONE;")
2233 1.1.1.2 mrg
2234 1.1 mrg (define_expand "floatunsdisf2"
2235 1.1 mrg [(use (match_operand:SF 0 "register_operand"))
2236 1.1 mrg (use (match_operand:DI 1 "register_operand"))]
2237 1.1 mrg "TARGET_FP"
2238 1.1.1.2 mrg "alpha_emit_floatuns (operands); DONE;")
2239 1.1.1.2 mrg
2240 1.1 mrg (define_expand "floatunsdidf2"
2241 1.1 mrg [(use (match_operand:DF 0 "register_operand"))
2242 1.1 mrg (use (match_operand:DI 1 "register_operand"))]
2243 1.1 mrg "TARGET_FP"
2244 1.1.1.2 mrg "alpha_emit_floatuns (operands); DONE;")
2245 1.1.1.2 mrg
2246 1.1 mrg (define_expand "floatunsditf2"
2247 1.1 mrg [(use (match_operand:TF 0 "register_operand"))
2248 1.1 mrg (use (match_operand:DI 1 "general_operand"))]
2249 1.1 mrg "TARGET_HAS_XFLOATING_LIBS"
2250 1.1 mrg "alpha_emit_xfloating_cvt (UNSIGNED_FLOAT, operands); DONE;")
2251 1.1 mrg
2252 1.1 mrg (define_expand "extendsfdf2"
2253 1.1 mrg [(set (match_operand:DF 0 "register_operand")
2254 1.1 mrg (float_extend:DF (match_operand:SF 1 "nonimmediate_operand")))]
2255 1.1 mrg "TARGET_FP"
2256 1.1 mrg {
2257 1.1 mrg if (alpha_fptm >= ALPHA_FPTM_SU)
2258 1.1 mrg operands[1] = force_reg (SFmode, operands[1]);
2259 1.1 mrg })
2260 1.1 mrg
2261 1.1 mrg ;; The Unicos/Mk assembler doesn't support cvtst, but we've already
2262 1.1 mrg ;; asserted that alpha_fptm == ALPHA_FPTM_N.
2263 1.1 mrg
2264 1.1 mrg (define_insn "*extendsfdf2_ieee"
2265 1.1 mrg [(set (match_operand:DF 0 "register_operand" "=&f")
2266 1.1 mrg (float_extend:DF (match_operand:SF 1 "register_operand" "f")))]
2267 1.1 mrg "TARGET_FP && alpha_fptm >= ALPHA_FPTM_SU"
2268 1.1 mrg "cvtsts %1,%0"
2269 1.1 mrg [(set_attr "type" "fadd")
2270 1.1 mrg (set_attr "trap" "yes")])
2271 1.1 mrg
2272 1.1 mrg (define_insn "*extendsfdf2_internal"
2273 1.1 mrg [(set (match_operand:DF 0 "register_operand" "=f,f,m")
2274 1.1 mrg (float_extend:DF (match_operand:SF 1 "nonimmediate_operand" "f,m,f")))]
2275 1.1 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
2276 1.1 mrg "@
2277 1.1.1.2 mrg cpys %1,%1,%0
2278 1.1.1.2 mrg ld%, %0,%1
2279 1.1 mrg st%- %1,%0"
2280 1.1 mrg [(set_attr "type" "fcpys,fld,fst")])
2281 1.1 mrg
2282 1.1 mrg ;; Use register_operand for operand 1 to prevent compress_float_constant
2283 1.1.1.2 mrg ;; from doing something silly. When optimizing we'll put things back
2284 1.1.1.2 mrg ;; together anyway.
2285 1.1.1.2 mrg (define_expand "extendsftf2"
2286 1.1 mrg [(use (match_operand:TF 0 "register_operand"))
2287 1.1.1.2 mrg (use (match_operand:SF 1 "register_operand"))]
2288 1.1.1.2 mrg "TARGET_HAS_XFLOATING_LIBS"
2289 1.1.1.2 mrg {
2290 1.1.1.2 mrg rtx tmp = gen_reg_rtx (DFmode);
2291 1.1.1.2 mrg emit_insn (gen_extendsfdf2 (tmp, operands[1]));
2292 1.1 mrg emit_insn (gen_extenddftf2 (operands[0], tmp));
2293 1.1.1.2 mrg DONE;
2294 1.1.1.7 mrg })
2295 1.1.1.7 mrg
2296 1.1.1.2 mrg (define_expand "extenddftf2"
2297 1.1.1.2 mrg [(use (match_operand:TF 0 "register_operand"))
2298 1.1 mrg (use (match_operand:DF 1 "register_operand"))]
2299 1.1 mrg "TARGET_HAS_XFLOATING_LIBS"
2300 1.1 mrg "alpha_emit_xfloating_cvt (FLOAT_EXTEND, operands); DONE;")
2301 1.1.1.7 mrg
2302 1.1.1.7 mrg (define_insn "truncdfsf2"
2303 1.1.1.7 mrg [(set (match_operand:SF 0 "register_operand" "=f,&f")
2304 1.1.1.7 mrg (float_truncate:SF (match_operand:DF 1 "reg_or_0_operand" "fG,fG")))]
2305 1.1.1.7 mrg "TARGET_FP"
2306 1.1.1.7 mrg "cvt%-%,%/ %R1,%0"
2307 1.1 mrg [(set_attr "type" "fadd")
2308 1.1.1.2 mrg (set_attr "trap" "yes")
2309 1.1.1.2 mrg (set_attr "round_suffix" "normal")
2310 1.1.1.2 mrg (set_attr "trap_suffix" "u_su_sui")
2311 1.1 mrg (set (attr "enabled")
2312 1.1.1.2 mrg (cond [(eq_attr "alternative" "0")
2313 1.1 mrg (symbol_ref "alpha_fptm < ALPHA_FPTM_SU")
2314 1.1.1.2 mrg ]
2315 1.1.1.2 mrg (symbol_ref "true")))])
2316 1.1.1.2 mrg
2317 1.1.1.2 mrg (define_expand "trunctfdf2"
2318 1.1.1.2 mrg [(use (match_operand:DF 0 "register_operand"))
2319 1.1.1.2 mrg (use (match_operand:TF 1 "general_operand"))]
2320 1.1 mrg "TARGET_HAS_XFLOATING_LIBS"
2321 1.1.1.2 mrg "alpha_emit_xfloating_cvt (FLOAT_TRUNCATE, operands); DONE;")
2322 1.1.1.2 mrg
2323 1.1.1.2 mrg (define_expand "trunctfsf2"
2324 1.1.1.2 mrg [(use (match_operand:SF 0 "register_operand"))
2325 1.1.1.2 mrg (use (match_operand:TF 1 "general_operand"))]
2326 1.1 mrg "TARGET_FP && TARGET_HAS_XFLOATING_LIBS"
2327 1.1.1.2 mrg {
2328 1.1.1.2 mrg rtx tmpf, sticky, arg, lo, hi;
2329 1.1.1.2 mrg
2330 1.1.1.2 mrg tmpf = gen_reg_rtx (DFmode);
2331 1.1 mrg sticky = gen_reg_rtx (DImode);
2332 1.1.1.4 mrg arg = copy_to_mode_reg (TFmode, operands[1]);
2333 1.1.1.2 mrg lo = gen_lowpart (DImode, arg);
2334 1.1.1.2 mrg hi = gen_highpart (DImode, arg);
2335 1.1.1.2 mrg
2336 1.1.1.2 mrg /* Convert the low word of the TFmode value into a sticky rounding bit,
2337 1.1.1.2 mrg then or it into the low bit of the high word. This leaves the sticky
2338 1.1 mrg bit at bit 48 of the fraction, which is representable in DFmode,
2339 1.1 mrg which prevents rounding error in the final conversion to SFmode. */
2340 1.1 mrg
2341 1.1 mrg emit_insn (gen_rtx_SET (sticky, gen_rtx_NE (DImode, lo, const0_rtx)));
2342 1.1 mrg emit_insn (gen_iordi3 (hi, hi, sticky));
2343 1.1 mrg emit_insn (gen_trunctfdf2 (tmpf, arg));
2344 1.1 mrg emit_insn (gen_truncdfsf2 (operands[0], tmpf));
2345 1.1 mrg DONE;
2346 1.1 mrg })
2347 1.1 mrg
2349 1.1 mrg ;; Next are all the integer comparisons, and conditional moves and branches
2350 1.1 mrg ;; and some of the related define_expand's and define_split's.
2351 1.1 mrg
2352 1.1 mrg (define_insn "*setcc_internal"
2353 1.1 mrg [(set (match_operand 0 "register_operand" "=r")
2354 1.1 mrg (match_operator 1 "alpha_comparison_operator"
2355 1.1 mrg [(match_operand:DI 2 "register_operand" "r")
2356 1.1 mrg (match_operand:DI 3 "reg_or_8bit_operand" "rI")]))]
2357 1.1 mrg "GET_MODE_CLASS (GET_MODE (operands[0])) == MODE_INT
2358 1.1 mrg && GET_MODE_SIZE (GET_MODE (operands[0])) <= 8
2359 1.1 mrg && GET_MODE (operands[0]) == GET_MODE (operands[1])"
2360 1.1 mrg "cmp%C1 %2,%3,%0"
2361 1.1 mrg [(set_attr "type" "icmp")])
2362 1.1 mrg
2363 1.1 mrg ;; Yes, we can technically support reg_or_8bit_operand in operand 2,
2364 1.1 mrg ;; but that's non-canonical rtl and allowing that causes inefficiencies
2365 1.1 mrg ;; from cse on.
2366 1.1 mrg (define_insn "*setcc_swapped_internal"
2367 1.1 mrg [(set (match_operand 0 "register_operand" "=r")
2368 1.1 mrg (match_operator 1 "alpha_swapped_comparison_operator"
2369 1.1 mrg [(match_operand:DI 2 "register_operand" "r")
2370 1.1 mrg (match_operand:DI 3 "reg_or_0_operand" "rJ")]))]
2371 1.1 mrg "GET_MODE_CLASS (GET_MODE (operands[0])) == MODE_INT
2372 1.1 mrg && GET_MODE_SIZE (GET_MODE (operands[0])) <= 8
2373 1.1 mrg && GET_MODE (operands[0]) == GET_MODE (operands[1])"
2374 1.1 mrg "cmp%c1 %r3,%2,%0"
2375 1.1 mrg [(set_attr "type" "icmp")])
2376 1.1 mrg
2377 1.1 mrg ;; Use match_operator rather than ne directly so that we can match
2378 1.1 mrg ;; multiple integer modes.
2379 1.1 mrg (define_insn "*setne_internal"
2380 1.1 mrg [(set (match_operand 0 "register_operand" "=r")
2381 1.1 mrg (match_operator 1 "signed_comparison_operator"
2382 1.1 mrg [(match_operand:DI 2 "register_operand" "r")
2383 1.1 mrg (const_int 0)]))]
2384 1.1 mrg "GET_MODE_CLASS (GET_MODE (operands[0])) == MODE_INT
2385 1.1 mrg && GET_MODE_SIZE (GET_MODE (operands[0])) <= 8
2386 1.1 mrg && GET_CODE (operands[1]) == NE
2387 1.1 mrg && GET_MODE (operands[0]) == GET_MODE (operands[1])"
2388 1.1.1.2 mrg "cmpult $31,%2,%0"
2389 1.1.1.2 mrg [(set_attr "type" "icmp")])
2390 1.1.1.2 mrg
2391 1.1 mrg ;; The mode folding trick can't be used with const_int operands, since
2392 1.1 mrg ;; reload needs to know the proper mode.
2393 1.1 mrg ;;
2394 1.1.1.2 mrg ;; Use add_operand instead of the more seemingly natural reg_or_8bit_operand
2395 1.1.1.2 mrg ;; in order to create more pairs of constants. As long as we're allowing
2396 1.1 mrg ;; two constants at the same time, and will have to reload one of them...
2397 1.1 mrg
2398 1.1 mrg (define_insn "*mov<mode>cc_internal"
2399 1.1 mrg [(set (match_operand:IMODE 0 "register_operand" "=r,r,r,r")
2400 1.1 mrg (if_then_else:IMODE
2401 1.1 mrg (match_operator 2 "signed_comparison_operator"
2402 1.1 mrg [(match_operand:DI 3 "reg_or_0_operand" "rJ,rJ,J,J")
2403 1.1 mrg (match_operand:DI 4 "reg_or_0_operand" "J,J,rJ,rJ")])
2404 1.1.1.2 mrg (match_operand:IMODE 1 "add_operand" "rI,0,rI,0")
2405 1.1.1.2 mrg (match_operand:IMODE 5 "add_operand" "0,rI,0,rI")))]
2406 1.1.1.2 mrg "(operands[3] == const0_rtx) ^ (operands[4] == const0_rtx)"
2407 1.1 mrg "@
2408 1.1 mrg cmov%C2 %r3,%1,%0
2409 1.1 mrg cmov%D2 %r3,%5,%0
2410 1.1 mrg cmov%c2 %r4,%1,%0
2411 1.1.1.2 mrg cmov%d2 %r4,%5,%0"
2412 1.1.1.2 mrg [(set_attr "type" "icmov")])
2413 1.1 mrg
2414 1.1 mrg (define_insn "*mov<mode>cc_lbc"
2415 1.1 mrg [(set (match_operand:IMODE 0 "register_operand" "=r,r")
2416 1.1 mrg (if_then_else:IMODE
2417 1.1 mrg (eq (zero_extract:DI (match_operand:DI 2 "reg_or_0_operand" "rJ,rJ")
2418 1.1 mrg (const_int 1)
2419 1.1.1.2 mrg (const_int 0))
2420 1.1.1.2 mrg (const_int 0))
2421 1.1.1.2 mrg (match_operand:IMODE 1 "reg_or_8bit_operand" "rI,0")
2422 1.1 mrg (match_operand:IMODE 3 "reg_or_8bit_operand" "0,rI")))]
2423 1.1 mrg ""
2424 1.1 mrg "@
2425 1.1 mrg cmovlbc %r2,%1,%0
2426 1.1.1.2 mrg cmovlbs %r2,%3,%0"
2427 1.1.1.2 mrg [(set_attr "type" "icmov")])
2428 1.1 mrg
2429 1.1 mrg (define_insn "*mov<mode>cc_lbs"
2430 1.1 mrg [(set (match_operand:IMODE 0 "register_operand" "=r,r")
2431 1.1 mrg (if_then_else:IMODE
2432 1.1 mrg (ne (zero_extract:DI (match_operand:DI 2 "reg_or_0_operand" "rJ,rJ")
2433 1.1 mrg (const_int 1)
2434 1.1 mrg (const_int 0))
2435 1.1 mrg (const_int 0))
2436 1.1 mrg (match_operand:IMODE 1 "reg_or_8bit_operand" "rI,0")
2437 1.1.1.2 mrg (match_operand:IMODE 3 "reg_or_8bit_operand" "0,rI")))]
2438 1.1.1.2 mrg ""
2439 1.1 mrg "@
2440 1.1 mrg cmovlbs %r2,%1,%0
2441 1.1 mrg cmovlbc %r2,%3,%0"
2442 1.1 mrg [(set_attr "type" "icmov")])
2443 1.1 mrg
2444 1.1 mrg ;; For ABS, we have two choices, depending on whether the input and output
2445 1.1 mrg ;; registers are the same or not.
2446 1.1 mrg (define_expand "absdi2"
2447 1.1 mrg [(set (match_operand:DI 0 "register_operand")
2448 1.1 mrg (abs:DI (match_operand:DI 1 "register_operand")))]
2449 1.1.1.2 mrg ""
2450 1.1.1.2 mrg {
2451 1.1 mrg if (rtx_equal_p (operands[0], operands[1]))
2452 1.1 mrg emit_insn (gen_absdi2_same (operands[0], gen_reg_rtx (DImode)));
2453 1.1 mrg else
2454 1.1.1.2 mrg emit_insn (gen_absdi2_diff (operands[0], operands[1]));
2455 1.1 mrg DONE;
2456 1.1 mrg })
2457 1.1.1.2 mrg
2458 1.1.1.2 mrg (define_expand "absdi2_same"
2459 1.1 mrg [(set (match_operand:DI 1 "register_operand")
2460 1.1 mrg (neg:DI (match_operand:DI 0 "register_operand")))
2461 1.1 mrg (set (match_dup 0)
2462 1.1.1.2 mrg (if_then_else:DI (ge (match_dup 0) (const_int 0))
2463 1.1 mrg (match_dup 0)
2464 1.1 mrg (match_dup 1)))])
2465 1.1.1.2 mrg
2466 1.1 mrg (define_expand "absdi2_diff"
2467 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand")
2468 1.1 mrg (neg:DI (match_operand:DI 1 "register_operand")))
2469 1.1 mrg (set (match_dup 0)
2470 1.1 mrg (if_then_else:DI (lt (match_dup 1) (const_int 0))
2471 1.1.1.2 mrg (match_dup 0)
2472 1.1 mrg (match_dup 1)))])
2473 1.1 mrg
2474 1.1.1.2 mrg (define_split
2475 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand")
2476 1.1 mrg (abs:DI (match_dup 0)))
2477 1.1 mrg (clobber (match_operand:DI 1 "register_operand"))]
2478 1.1 mrg ""
2479 1.1.1.2 mrg [(set (match_dup 1) (neg:DI (match_dup 0)))
2480 1.1 mrg (set (match_dup 0) (if_then_else:DI (ge (match_dup 0) (const_int 0))
2481 1.1 mrg (match_dup 0) (match_dup 1)))])
2482 1.1.1.2 mrg
2483 1.1 mrg (define_split
2484 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand")
2485 1.1 mrg (abs:DI (match_operand:DI 1 "register_operand")))]
2486 1.1 mrg "! rtx_equal_p (operands[0], operands[1])"
2487 1.1 mrg [(set (match_dup 0) (neg:DI (match_dup 1)))
2488 1.1.1.2 mrg (set (match_dup 0) (if_then_else:DI (lt (match_dup 1) (const_int 0))
2489 1.1 mrg (match_dup 0) (match_dup 1)))])
2490 1.1 mrg
2491 1.1.1.2 mrg (define_split
2492 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand")
2493 1.1 mrg (neg:DI (abs:DI (match_dup 0))))
2494 1.1 mrg (clobber (match_operand:DI 1 "register_operand"))]
2495 1.1 mrg ""
2496 1.1.1.2 mrg [(set (match_dup 1) (neg:DI (match_dup 0)))
2497 1.1 mrg (set (match_dup 0) (if_then_else:DI (le (match_dup 0) (const_int 0))
2498 1.1.1.2 mrg (match_dup 0) (match_dup 1)))])
2499 1.1.1.2 mrg
2500 1.1.1.2 mrg (define_split
2501 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand")
2502 1.1.1.2 mrg (neg:DI (abs:DI (match_operand:DI 1 "register_operand"))))]
2503 1.1 mrg "! rtx_equal_p (operands[0], operands[1])"
2504 1.1.1.2 mrg [(set (match_dup 0) (neg:DI (match_dup 1)))
2505 1.1 mrg (set (match_dup 0) (if_then_else:DI (gt (match_dup 1) (const_int 0))
2506 1.1 mrg (match_dup 0) (match_dup 1)))])
2507 1.1 mrg
2508 1.1 mrg (define_insn "<code><mode>3"
2509 1.1.1.2 mrg [(set (match_operand:I12MODE 0 "register_operand" "=r")
2510 1.1.1.2 mrg (any_maxmin:I12MODE
2511 1.1.1.2 mrg (match_operand:I12MODE 1 "reg_or_0_operand" "%rJ")
2512 1.1 mrg (match_operand:I12MODE 2 "reg_or_8bit_operand" "rI")))]
2513 1.1 mrg "TARGET_MAX"
2514 1.1 mrg "<maxmin><vecmodesuffix> %r1,%2,%0"
2515 1.1.1.2 mrg [(set_attr "type" "mvi")])
2516 1.1 mrg
2517 1.1 mrg (define_expand "smaxdi3"
2518 1.1.1.2 mrg [(set (match_dup 3)
2519 1.1.1.2 mrg (le:DI (match_operand:DI 1 "reg_or_0_operand")
2520 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")))
2521 1.1.1.2 mrg (set (match_operand:DI 0 "register_operand")
2522 1.1 mrg (if_then_else:DI (eq (match_dup 3) (const_int 0))
2523 1.1 mrg (match_dup 1) (match_dup 2)))]
2524 1.1 mrg ""
2525 1.1.1.2 mrg "operands[3] = gen_reg_rtx (DImode);")
2526 1.1 mrg
2527 1.1 mrg (define_split
2528 1.1 mrg [(set (match_operand:DI 0 "register_operand")
2529 1.1 mrg (smax:DI (match_operand:DI 1 "reg_or_0_operand")
2530 1.1 mrg (match_operand:DI 2 "reg_or_8bit_operand")))
2531 1.1 mrg (clobber (match_operand:DI 3 "register_operand"))]
2532 1.1 mrg "operands[2] != const0_rtx"
2533 1.1 mrg [(set (match_dup 3) (le:DI (match_dup 1) (match_dup 2)))
2534 1.1 mrg (set (match_dup 0) (if_then_else:DI (eq (match_dup 3) (const_int 0))
2535 1.1 mrg (match_dup 1) (match_dup 2)))])
2536 1.1 mrg
2537 1.1.1.2 mrg (define_insn "*smax_const0"
2538 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand" "=r")
2539 1.1.1.2 mrg (smax:DI (match_operand:DI 1 "register_operand" "0")
2540 1.1 mrg (const_int 0)))]
2541 1.1 mrg ""
2542 1.1 mrg "cmovlt %0,0,%0"
2543 1.1.1.2 mrg [(set_attr "type" "icmov")])
2544 1.1 mrg
2545 1.1 mrg (define_expand "smindi3"
2546 1.1.1.2 mrg [(set (match_dup 3)
2547 1.1.1.2 mrg (lt:DI (match_operand:DI 1 "reg_or_0_operand")
2548 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")))
2549 1.1.1.2 mrg (set (match_operand:DI 0 "register_operand")
2550 1.1 mrg (if_then_else:DI (ne (match_dup 3) (const_int 0))
2551 1.1 mrg (match_dup 1) (match_dup 2)))]
2552 1.1 mrg ""
2553 1.1.1.2 mrg "operands[3] = gen_reg_rtx (DImode);")
2554 1.1 mrg
2555 1.1 mrg (define_split
2556 1.1 mrg [(set (match_operand:DI 0 "register_operand")
2557 1.1 mrg (smin:DI (match_operand:DI 1 "reg_or_0_operand")
2558 1.1 mrg (match_operand:DI 2 "reg_or_8bit_operand")))
2559 1.1 mrg (clobber (match_operand:DI 3 "register_operand"))]
2560 1.1 mrg "operands[2] != const0_rtx"
2561 1.1 mrg [(set (match_dup 3) (lt:DI (match_dup 1) (match_dup 2)))
2562 1.1 mrg (set (match_dup 0) (if_then_else:DI (ne (match_dup 3) (const_int 0))
2563 1.1 mrg (match_dup 1) (match_dup 2)))])
2564 1.1 mrg
2565 1.1.1.2 mrg (define_insn "*smin_const0"
2566 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand" "=r")
2567 1.1.1.2 mrg (smin:DI (match_operand:DI 1 "register_operand" "0")
2568 1.1 mrg (const_int 0)))]
2569 1.1 mrg ""
2570 1.1 mrg "cmovgt %0,0,%0"
2571 1.1 mrg [(set_attr "type" "icmov")])
2572 1.1 mrg
2573 1.1 mrg (define_expand "umaxdi3"
2574 1.1.1.2 mrg [(set (match_dup 3)
2575 1.1.1.2 mrg (leu:DI (match_operand:DI 1 "reg_or_0_operand")
2576 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")))
2577 1.1.1.2 mrg (set (match_operand:DI 0 "register_operand")
2578 1.1 mrg (if_then_else:DI (eq (match_dup 3) (const_int 0))
2579 1.1 mrg (match_dup 1) (match_dup 2)))]
2580 1.1 mrg ""
2581 1.1.1.2 mrg "operands[3] = gen_reg_rtx (DImode);")
2582 1.1 mrg
2583 1.1 mrg (define_split
2584 1.1 mrg [(set (match_operand:DI 0 "register_operand")
2585 1.1.1.2 mrg (umax:DI (match_operand:DI 1 "reg_or_0_operand")
2586 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")))
2587 1.1.1.2 mrg (clobber (match_operand:DI 3 "register_operand"))]
2588 1.1 mrg "operands[2] != const0_rtx"
2589 1.1 mrg [(set (match_dup 3) (leu:DI (match_dup 1) (match_dup 2)))
2590 1.1 mrg (set (match_dup 0) (if_then_else:DI (eq (match_dup 3) (const_int 0))
2591 1.1 mrg (match_dup 1) (match_dup 2)))])
2592 1.1 mrg
2593 1.1 mrg (define_expand "umindi3"
2594 1.1.1.2 mrg [(set (match_dup 3)
2595 1.1.1.2 mrg (ltu:DI (match_operand:DI 1 "reg_or_0_operand")
2596 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")))
2597 1.1.1.2 mrg (set (match_operand:DI 0 "register_operand")
2598 1.1 mrg (if_then_else:DI (ne (match_dup 3) (const_int 0))
2599 1.1 mrg (match_dup 1) (match_dup 2)))]
2600 1.1 mrg ""
2601 1.1.1.2 mrg "operands[3] = gen_reg_rtx (DImode);")
2602 1.1 mrg
2603 1.1 mrg (define_split
2604 1.1 mrg [(set (match_operand:DI 0 "register_operand")
2605 1.1 mrg (umin:DI (match_operand:DI 1 "reg_or_0_operand")
2606 1.1 mrg (match_operand:DI 2 "reg_or_8bit_operand")))
2607 1.1 mrg (clobber (match_operand:DI 3 "register_operand"))]
2608 1.1 mrg "operands[2] != const0_rtx"
2609 1.1.1.2 mrg [(set (match_dup 3) (ltu:DI (match_dup 1) (match_dup 2)))
2610 1.1 mrg (set (match_dup 0) (if_then_else:DI (ne (match_dup 3) (const_int 0))
2611 1.1 mrg (match_dup 1) (match_dup 2)))])
2612 1.1 mrg
2613 1.1 mrg (define_insn "*bcc_normal"
2614 1.1 mrg [(set (pc)
2615 1.1 mrg (if_then_else
2616 1.1 mrg (match_operator 1 "signed_comparison_operator"
2617 1.1 mrg [(match_operand:DI 2 "reg_or_0_operand" "rJ")
2618 1.1 mrg (const_int 0)])
2619 1.1 mrg (label_ref (match_operand 0))
2620 1.1 mrg (pc)))]
2621 1.1 mrg ""
2622 1.1 mrg "b%C1 %r2,%0"
2623 1.1.1.2 mrg [(set_attr "type" "ibr")])
2624 1.1 mrg
2625 1.1 mrg (define_insn "*bcc_reverse"
2626 1.1 mrg [(set (pc)
2627 1.1 mrg (if_then_else
2628 1.1 mrg (match_operator 1 "signed_comparison_operator"
2629 1.1 mrg [(match_operand:DI 2 "register_operand" "r")
2630 1.1 mrg (const_int 0)])
2631 1.1 mrg
2632 1.1 mrg (pc)
2633 1.1 mrg (label_ref (match_operand 0))))]
2634 1.1 mrg ""
2635 1.1.1.2 mrg "b%c1 %2,%0"
2636 1.1 mrg [(set_attr "type" "ibr")])
2637 1.1 mrg
2638 1.1 mrg (define_insn "*blbs_normal"
2639 1.1 mrg [(set (pc)
2640 1.1 mrg (if_then_else
2641 1.1 mrg (ne (zero_extract:DI (match_operand:DI 1 "reg_or_0_operand" "rJ")
2642 1.1 mrg (const_int 1)
2643 1.1 mrg (const_int 0))
2644 1.1 mrg (const_int 0))
2645 1.1 mrg (label_ref (match_operand 0))
2646 1.1 mrg (pc)))]
2647 1.1 mrg ""
2648 1.1.1.2 mrg "blbs %r1,%0"
2649 1.1 mrg [(set_attr "type" "ibr")])
2650 1.1 mrg
2651 1.1 mrg (define_insn "*blbc_normal"
2652 1.1 mrg [(set (pc)
2653 1.1 mrg (if_then_else
2654 1.1 mrg (eq (zero_extract:DI (match_operand:DI 1 "reg_or_0_operand" "rJ")
2655 1.1 mrg (const_int 1)
2656 1.1 mrg (const_int 0))
2657 1.1 mrg (const_int 0))
2658 1.1 mrg (label_ref (match_operand 0))
2659 1.1.1.2 mrg (pc)))]
2660 1.1.1.2 mrg ""
2661 1.1.1.2 mrg "blbc %r1,%0"
2662 1.1.1.2 mrg [(set_attr "type" "ibr")])
2663 1.1.1.2 mrg
2664 1.1 mrg (define_split
2665 1.1.1.2 mrg [(parallel
2666 1.1 mrg [(set (pc)
2667 1.1 mrg (if_then_else
2668 1.1 mrg (match_operator 1 "comparison_operator"
2669 1.1 mrg [(zero_extract:DI (match_operand:DI 2 "register_operand")
2670 1.1 mrg (const_int 1)
2671 1.1 mrg (match_operand:DI 3 "const_int_operand"))
2672 1.1 mrg (const_int 0)])
2673 1.1 mrg (label_ref (match_operand 0))
2674 1.1 mrg (pc)))
2675 1.1 mrg (clobber (match_operand:DI 4 "register_operand"))])]
2676 1.1 mrg "INTVAL (operands[3]) != 0"
2677 1.1.1.2 mrg [(set (match_dup 4)
2678 1.1 mrg (lshiftrt:DI (match_dup 2) (match_dup 3)))
2679 1.1 mrg (set (pc)
2680 1.1 mrg (if_then_else (match_op_dup 1
2681 1.1 mrg [(zero_extract:DI (match_dup 4)
2682 1.1 mrg (const_int 1)
2683 1.1 mrg (const_int 0))
2684 1.1.1.7 mrg (const_int 0)])
2685 1.1 mrg (label_ref (match_dup 0))
2686 1.1.1.7 mrg (pc)))]
2687 1.1.1.7 mrg )
2688 1.1 mrg
2690 1.1 mrg ;; The following are the corresponding floating-point insns. Recall
2691 1.1 mrg ;; we need to have variants that expand the arguments from SFmode
2692 1.1.1.7 mrg ;; to DFmode.
2693 1.1.1.7 mrg
2694 1.1.1.7 mrg (define_insn "*cmpdf_internal"
2695 1.1.1.7 mrg [(set (match_operand:DF 0 "register_operand" "=f,&f")
2696 1.1.1.7 mrg (match_operator:DF 1 "alpha_fp_comparison_operator"
2697 1.1.1.7 mrg [(match_operand:DF 2 "reg_or_0_operand" "fG,fG")
2698 1.1 mrg (match_operand:DF 3 "reg_or_0_operand" "fG,fG")]))]
2699 1.1 mrg "TARGET_FP"
2700 1.1 mrg "cmp%-%C1%/ %R2,%R3,%0"
2701 1.1 mrg [(set_attr "type" "fadd")
2702 1.1 mrg (set_attr "trap" "yes")
2703 1.1 mrg (set_attr "trap_suffix" "su")
2704 1.1 mrg (set (attr "enabled")
2705 1.1 mrg (cond [(eq_attr "alternative" "0")
2706 1.1 mrg (symbol_ref "alpha_fptm < ALPHA_FPTM_SU")
2707 1.1 mrg ]
2708 1.1 mrg (symbol_ref "true")))])
2709 1.1 mrg
2710 1.1 mrg (define_insn "*cmpdf_ext1"
2711 1.1 mrg [(set (match_operand:DF 0 "register_operand" "=f")
2712 1.1 mrg (match_operator:DF 1 "alpha_fp_comparison_operator"
2713 1.1 mrg [(float_extend:DF
2714 1.1 mrg (match_operand:SF 2 "reg_or_0_operand" "fG"))
2715 1.1 mrg (match_operand:DF 3 "reg_or_0_operand" "fG")]))]
2716 1.1 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
2717 1.1 mrg "cmp%-%C1%/ %R2,%R3,%0"
2718 1.1 mrg [(set_attr "type" "fadd")
2719 1.1 mrg (set_attr "trap" "yes")
2720 1.1 mrg (set_attr "trap_suffix" "su")])
2721 1.1 mrg
2722 1.1 mrg (define_insn "*cmpdf_ext2"
2723 1.1 mrg [(set (match_operand:DF 0 "register_operand" "=f")
2724 1.1 mrg (match_operator:DF 1 "alpha_fp_comparison_operator"
2725 1.1 mrg [(match_operand:DF 2 "reg_or_0_operand" "fG")
2726 1.1 mrg (float_extend:DF
2727 1.1 mrg (match_operand:SF 3 "reg_or_0_operand" "fG"))]))]
2728 1.1 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
2729 1.1 mrg "cmp%-%C1%/ %R2,%R3,%0"
2730 1.1 mrg [(set_attr "type" "fadd")
2731 1.1 mrg (set_attr "trap" "yes")
2732 1.1 mrg (set_attr "trap_suffix" "su")])
2733 1.1 mrg
2734 1.1 mrg (define_insn "*cmpdf_ext3"
2735 1.1 mrg [(set (match_operand:DF 0 "register_operand" "=f")
2736 1.1.1.2 mrg (match_operator:DF 1 "alpha_fp_comparison_operator"
2737 1.1.1.2 mrg [(float_extend:DF
2738 1.1.1.2 mrg (match_operand:SF 2 "reg_or_0_operand" "fG"))
2739 1.1 mrg (float_extend:DF
2740 1.1 mrg (match_operand:SF 3 "reg_or_0_operand" "fG"))]))]
2741 1.1 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
2742 1.1.1.2 mrg "cmp%-%C1%/ %R2,%R3,%0"
2743 1.1.1.2 mrg [(set_attr "type" "fadd")
2744 1.1 mrg (set_attr "trap" "yes")
2745 1.1 mrg (set_attr "trap_suffix" "su")])
2746 1.1 mrg
2747 1.1 mrg (define_insn "*mov<mode>cc_internal"
2748 1.1 mrg [(set (match_operand:FMODE 0 "register_operand" "=f,f")
2749 1.1 mrg (if_then_else:FMODE
2750 1.1 mrg (match_operator 3 "signed_comparison_operator"
2751 1.1 mrg [(match_operand:DF 4 "reg_or_0_operand" "fG,fG")
2752 1.1 mrg (match_operand:DF 2 "const0_operand" "G,G")])
2753 1.1 mrg (match_operand:FMODE 1 "reg_or_0_operand" "fG,0")
2754 1.1 mrg (match_operand:FMODE 5 "reg_or_0_operand" "0,fG")))]
2755 1.1 mrg "TARGET_FP"
2756 1.1 mrg "@
2757 1.1 mrg fcmov%C3 %R4,%R1,%0
2758 1.1 mrg fcmov%D3 %R4,%R5,%0"
2759 1.1 mrg [(set_attr "type" "fcmov")])
2760 1.1 mrg
2761 1.1 mrg (define_insn "*movdfcc_ext1"
2762 1.1 mrg [(set (match_operand:DF 0 "register_operand" "=f,f")
2763 1.1 mrg (if_then_else:DF
2764 1.1 mrg (match_operator 3 "signed_comparison_operator"
2765 1.1 mrg [(match_operand:DF 4 "reg_or_0_operand" "fG,fG")
2766 1.1 mrg (match_operand:DF 2 "const0_operand" "G,G")])
2767 1.1 mrg (float_extend:DF (match_operand:SF 1 "reg_or_0_operand" "fG,0"))
2768 1.1 mrg (match_operand:DF 5 "reg_or_0_operand" "0,fG")))]
2769 1.1 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
2770 1.1 mrg "@
2771 1.1 mrg fcmov%C3 %R4,%R1,%0
2772 1.1 mrg fcmov%D3 %R4,%R5,%0"
2773 1.1 mrg [(set_attr "type" "fcmov")])
2774 1.1 mrg
2775 1.1 mrg (define_insn "*movdfcc_ext2"
2776 1.1 mrg [(set (match_operand:DF 0 "register_operand" "=f,f")
2777 1.1 mrg (if_then_else:DF
2778 1.1 mrg (match_operator 3 "signed_comparison_operator"
2779 1.1 mrg [(float_extend:DF
2780 1.1 mrg (match_operand:SF 4 "reg_or_0_operand" "fG,fG"))
2781 1.1 mrg (match_operand:DF 2 "const0_operand" "G,G")])
2782 1.1 mrg (match_operand:DF 1 "reg_or_0_operand" "fG,0")
2783 1.1 mrg (match_operand:DF 5 "reg_or_0_operand" "0,fG")))]
2784 1.1 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
2785 1.1 mrg "@
2786 1.1 mrg fcmov%C3 %R4,%R1,%0
2787 1.1 mrg fcmov%D3 %R4,%R5,%0"
2788 1.1 mrg [(set_attr "type" "fcmov")])
2789 1.1 mrg
2790 1.1 mrg (define_insn "*movdfcc_ext3"
2791 1.1 mrg [(set (match_operand:SF 0 "register_operand" "=f,f")
2792 1.1 mrg (if_then_else:SF
2793 1.1 mrg (match_operator 3 "signed_comparison_operator"
2794 1.1 mrg [(float_extend:DF
2795 1.1 mrg (match_operand:SF 4 "reg_or_0_operand" "fG,fG"))
2796 1.1 mrg (match_operand:DF 2 "const0_operand" "G,G")])
2797 1.1 mrg (match_operand:SF 1 "reg_or_0_operand" "fG,0")
2798 1.1 mrg (match_operand:SF 5 "reg_or_0_operand" "0,fG")))]
2799 1.1 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
2800 1.1 mrg "@
2801 1.1 mrg fcmov%C3 %R4,%R1,%0
2802 1.1 mrg fcmov%D3 %R4,%R5,%0"
2803 1.1 mrg [(set_attr "type" "fcmov")])
2804 1.1 mrg
2805 1.1 mrg (define_insn "*movdfcc_ext4"
2806 1.1 mrg [(set (match_operand:DF 0 "register_operand" "=f,f")
2807 1.1 mrg (if_then_else:DF
2808 1.1 mrg (match_operator 3 "signed_comparison_operator"
2809 1.1 mrg [(float_extend:DF
2810 1.1 mrg (match_operand:SF 4 "reg_or_0_operand" "fG,fG"))
2811 1.1.1.2 mrg (match_operand:DF 2 "const0_operand" "G,G")])
2812 1.1.1.2 mrg (float_extend:DF (match_operand:SF 1 "reg_or_0_operand" "fG,0"))
2813 1.1.1.2 mrg (match_operand:DF 5 "reg_or_0_operand" "0,fG")))]
2814 1.1 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
2815 1.1 mrg "@
2816 1.1 mrg fcmov%C3 %R4,%R1,%0
2817 1.1 mrg fcmov%D3 %R4,%R5,%0"
2818 1.1 mrg [(set_attr "type" "fcmov")])
2819 1.1 mrg
2820 1.1 mrg (define_expand "smaxdf3"
2821 1.1 mrg [(set (match_dup 3)
2822 1.1 mrg (le:DF (match_operand:DF 1 "reg_or_0_operand")
2823 1.1 mrg (match_operand:DF 2 "reg_or_0_operand")))
2824 1.1.1.2 mrg (set (match_operand:DF 0 "register_operand")
2825 1.1.1.2 mrg (if_then_else:DF (eq (match_dup 3) (match_dup 4))
2826 1.1.1.2 mrg (match_dup 1) (match_dup 2)))]
2827 1.1 mrg "TARGET_FP"
2828 1.1 mrg {
2829 1.1 mrg operands[3] = gen_reg_rtx (DFmode);
2830 1.1 mrg operands[4] = CONST0_RTX (DFmode);
2831 1.1 mrg })
2832 1.1 mrg
2833 1.1 mrg (define_expand "smindf3"
2834 1.1 mrg [(set (match_dup 3)
2835 1.1 mrg (lt:DF (match_operand:DF 1 "reg_or_0_operand")
2836 1.1 mrg (match_operand:DF 2 "reg_or_0_operand")))
2837 1.1.1.2 mrg (set (match_operand:DF 0 "register_operand")
2838 1.1.1.2 mrg (if_then_else:DF (ne (match_dup 3) (match_dup 4))
2839 1.1.1.2 mrg (match_dup 1) (match_dup 2)))]
2840 1.1 mrg "TARGET_FP"
2841 1.1 mrg {
2842 1.1 mrg operands[3] = gen_reg_rtx (DFmode);
2843 1.1 mrg operands[4] = CONST0_RTX (DFmode);
2844 1.1 mrg })
2845 1.1 mrg
2846 1.1 mrg (define_expand "smaxsf3"
2847 1.1 mrg [(set (match_dup 3)
2848 1.1 mrg (le:DF (float_extend:DF (match_operand:SF 1 "reg_or_0_operand"))
2849 1.1 mrg (float_extend:DF (match_operand:SF 2 "reg_or_0_operand"))))
2850 1.1.1.2 mrg (set (match_operand:SF 0 "register_operand")
2851 1.1.1.2 mrg (if_then_else:SF (eq (match_dup 3) (match_dup 4))
2852 1.1.1.2 mrg (match_dup 1) (match_dup 2)))]
2853 1.1 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
2854 1.1 mrg {
2855 1.1 mrg operands[3] = gen_reg_rtx (DFmode);
2856 1.1 mrg operands[4] = CONST0_RTX (DFmode);
2857 1.1 mrg })
2858 1.1 mrg
2859 1.1 mrg (define_expand "sminsf3"
2860 1.1 mrg [(set (match_dup 3)
2861 1.1 mrg (lt:DF (float_extend:DF (match_operand:SF 1 "reg_or_0_operand"))
2862 1.1 mrg (float_extend:DF (match_operand:SF 2 "reg_or_0_operand"))))
2863 1.1 mrg (set (match_operand:SF 0 "register_operand")
2864 1.1 mrg (if_then_else:SF (ne (match_dup 3) (match_dup 4))
2865 1.1 mrg (match_dup 1) (match_dup 2)))]
2866 1.1 mrg "TARGET_FP && alpha_fptm < ALPHA_FPTM_SU"
2867 1.1.1.2 mrg {
2868 1.1 mrg operands[3] = gen_reg_rtx (DFmode);
2869 1.1 mrg operands[4] = CONST0_RTX (DFmode);
2870 1.1 mrg })
2871 1.1 mrg
2872 1.1 mrg (define_insn "*fbcc_normal"
2873 1.1 mrg [(set (pc)
2874 1.1 mrg (if_then_else
2875 1.1 mrg (match_operator 1 "signed_comparison_operator"
2876 1.1 mrg [(match_operand:DF 2 "reg_or_0_operand" "fG")
2877 1.1 mrg (match_operand:DF 3 "const0_operand" "G")])
2878 1.1 mrg (label_ref (match_operand 0))
2879 1.1 mrg (pc)))]
2880 1.1.1.2 mrg "TARGET_FP"
2881 1.1 mrg "fb%C1 %R2,%0"
2882 1.1 mrg [(set_attr "type" "fbr")])
2883 1.1 mrg
2884 1.1 mrg (define_insn "*fbcc_ext_normal"
2885 1.1 mrg [(set (pc)
2886 1.1 mrg (if_then_else
2887 1.1 mrg (match_operator 1 "signed_comparison_operator"
2888 1.1 mrg [(float_extend:DF
2889 1.1 mrg (match_operand:SF 2 "reg_or_0_operand" "fG"))
2890 1.1 mrg (match_operand:DF 3 "const0_operand" "G")])
2891 1.1.1.2 mrg (label_ref (match_operand 0))
2892 1.1.1.2 mrg (pc)))]
2893 1.1.1.2 mrg "TARGET_FP"
2894 1.1 mrg "fb%C1 %R2,%0"
2895 1.1.1.2 mrg [(set_attr "type" "fbr")])
2896 1.1 mrg
2898 1.1 mrg ;; These are the main define_expand's used to make conditional branches
2899 1.1 mrg ;; and compares.
2900 1.1 mrg
2901 1.1.1.2 mrg (define_expand "cbranchdf4"
2902 1.1 mrg [(use (match_operator 0 "alpha_cbranch_operator"
2903 1.1.1.2 mrg [(match_operand:DF 1 "reg_or_0_operand")
2904 1.1 mrg (match_operand:DF 2 "reg_or_0_operand")]))
2905 1.1 mrg (use (match_operand 3))]
2906 1.1 mrg "TARGET_FP"
2907 1.1.1.4 mrg "alpha_emit_conditional_branch (operands, DFmode); DONE;")
2908 1.1.1.4 mrg
2909 1.1.1.2 mrg (define_expand "cbranchtf4"
2910 1.1 mrg [(use (match_operator 0 "alpha_cbranch_operator"
2911 1.1.1.2 mrg [(match_operand:TF 1 "general_operand")
2912 1.1 mrg (match_operand:TF 2 "general_operand")]))
2913 1.1 mrg (use (match_operand 3))]
2914 1.1 mrg "TARGET_HAS_XFLOATING_LIBS"
2915 1.1 mrg "alpha_emit_conditional_branch (operands, TFmode); DONE;")
2916 1.1 mrg
2917 1.1 mrg (define_expand "cbranchdi4"
2918 1.1 mrg [(use (match_operator 0 "alpha_cbranch_operator"
2919 1.1.1.2 mrg [(match_operand:DI 1 "general_operand")
2920 1.1.1.2 mrg (match_operand:DI 2 "general_operand")]))
2921 1.1.1.2 mrg (use (match_operand 3))]
2922 1.1.1.2 mrg ""
2923 1.1.1.2 mrg "alpha_emit_conditional_branch (operands, DImode); DONE;")
2924 1.1.1.2 mrg
2925 1.1 mrg (define_expand "cstoredf4"
2926 1.1 mrg [(use (match_operator:DI 1 "alpha_cbranch_operator"
2927 1.1 mrg [(match_operand:DF 2 "reg_or_0_operand")
2928 1.1 mrg (match_operand:DF 3 "reg_or_0_operand")]))
2929 1.1 mrg (clobber (match_operand:DI 0 "register_operand"))]
2930 1.1 mrg "TARGET_FP"
2931 1.1 mrg {
2932 1.1.1.2 mrg if (alpha_emit_setcc (operands, DFmode))
2933 1.1.1.2 mrg DONE;
2934 1.1.1.2 mrg else
2935 1.1.1.2 mrg FAIL;
2936 1.1.1.2 mrg })
2937 1.1.1.2 mrg
2938 1.1 mrg (define_expand "cstoretf4"
2939 1.1 mrg [(use (match_operator:DI 1 "alpha_cbranch_operator"
2940 1.1 mrg [(match_operand:TF 2 "general_operand")
2941 1.1.1.4 mrg (match_operand:TF 3 "general_operand")]))
2942 1.1.1.4 mrg (clobber (match_operand:DI 0 "register_operand"))]
2943 1.1.1.2 mrg "TARGET_HAS_XFLOATING_LIBS"
2944 1.1 mrg {
2945 1.1 mrg if (alpha_emit_setcc (operands, TFmode))
2946 1.1.1.2 mrg DONE;
2947 1.1.1.2 mrg else
2948 1.1.1.2 mrg FAIL;
2949 1.1 mrg })
2950 1.1 mrg
2951 1.1.1.2 mrg (define_expand "cstoredi4"
2952 1.1.1.2 mrg [(use (match_operator:DI 1 "alpha_cbranch_operator"
2953 1.1 mrg [(match_operand:DI 2 "general_operand")
2954 1.1.1.2 mrg (match_operand:DI 3 "general_operand")]))
2955 1.1.1.2 mrg (clobber (match_operand:DI 0 "register_operand"))]
2956 1.1.1.2 mrg ""
2957 1.1.1.2 mrg {
2958 1.1.1.2 mrg if (alpha_emit_setcc (operands, DImode))
2959 1.1.1.2 mrg DONE;
2960 1.1 mrg else
2961 1.1 mrg FAIL;
2962 1.1.1.2 mrg })
2963 1.1.1.2 mrg
2965 1.1 mrg ;; These are the main define_expand's used to make conditional moves.
2966 1.1 mrg
2967 1.1.1.2 mrg (define_expand "mov<mode>cc"
2968 1.1.1.2 mrg [(set (match_operand:I48MODE 0 "register_operand")
2969 1.1.1.2 mrg (if_then_else:I48MODE
2970 1.1.1.2 mrg (match_operand 1 "comparison_operator")
2971 1.1.1.2 mrg (match_operand:I48MODE 2 "reg_or_8bit_operand")
2972 1.1.1.2 mrg (match_operand:I48MODE 3 "reg_or_8bit_operand")))]
2973 1.1 mrg ""
2974 1.1 mrg {
2975 1.1.1.2 mrg operands[1] = alpha_emit_conditional_move (operands[1], <MODE>mode);
2976 1.1.1.2 mrg if (operands[1] == 0)
2977 1.1 mrg FAIL;
2978 1.1 mrg })
2979 1.1 mrg
2980 1.1 mrg (define_expand "mov<mode>cc"
2981 1.1 mrg [(set (match_operand:FMODE 0 "register_operand")
2982 1.1 mrg (if_then_else:FMODE
2983 1.1 mrg (match_operand 1 "comparison_operator")
2984 1.1 mrg (match_operand:FMODE 2 "reg_or_8bit_operand")
2985 1.1 mrg (match_operand:FMODE 3 "reg_or_8bit_operand")))]
2986 1.1 mrg ""
2987 1.1 mrg {
2988 1.1 mrg operands[1] = alpha_emit_conditional_move (operands[1], <MODE>mode);
2989 1.1 mrg if (operands[1] == 0)
2990 1.1 mrg FAIL;
2991 1.1 mrg })
2992 1.1 mrg
2994 1.1 mrg ;; These define_split definitions are used in cases when comparisons have
2995 1.1 mrg ;; not be stated in the correct way and we need to reverse the second
2996 1.1 mrg ;; comparison. For example, x >= 7 has to be done as x < 6 with the
2997 1.1 mrg ;; comparison that tests the result being reversed. We have one define_split
2998 1.1.1.2 mrg ;; for each use of a comparison. They do not match valid insns and need
2999 1.1 mrg ;; not generate valid insns.
3000 1.1 mrg ;;
3001 1.1.1.2 mrg ;; We can also handle equality comparisons (and inequality comparisons in
3002 1.1.1.2 mrg ;; cases where the resulting add cannot overflow) by doing an add followed by
3003 1.1.1.2 mrg ;; a comparison with zero. This is faster since the addition takes one
3004 1.1.1.2 mrg ;; less cycle than a compare when feeding into a conditional move.
3005 1.1.1.2 mrg ;; For this case, we also have an SImode pattern since we can merge the add
3006 1.1 mrg ;; and sign extend and the order doesn't matter.
3007 1.1 mrg ;;
3008 1.1 mrg ;; We do not do this for floating-point, since it isn't clear how the "wrong"
3009 1.1 mrg ;; operation could have been generated.
3010 1.1 mrg
3011 1.1 mrg (define_split
3012 1.1 mrg [(set (match_operand:DI 0 "register_operand")
3013 1.1 mrg (if_then_else:DI
3014 1.1 mrg (match_operator 1 "comparison_operator"
3015 1.1 mrg [(match_operand:DI 2 "reg_or_0_operand")
3016 1.1 mrg (match_operand:DI 3 "reg_or_cint_operand")])
3017 1.1 mrg (match_operand:DI 4 "reg_or_cint_operand")
3018 1.1 mrg (match_operand:DI 5 "reg_or_cint_operand")))
3019 1.1 mrg (clobber (match_operand:DI 6 "register_operand"))]
3020 1.1 mrg "operands[3] != const0_rtx"
3021 1.1 mrg [(set (match_dup 6) (match_dup 7))
3022 1.1 mrg (set (match_dup 0)
3023 1.1 mrg (if_then_else:DI (match_dup 8) (match_dup 4) (match_dup 5)))]
3024 1.1 mrg {
3025 1.1 mrg enum rtx_code code = GET_CODE (operands[1]);
3026 1.1 mrg int unsignedp = (code == GEU || code == LEU || code == GTU || code == LTU);
3027 1.1 mrg
3028 1.1 mrg /* If we are comparing for equality with a constant and that constant
3029 1.1 mrg appears in the arm when the register equals the constant, use the
3030 1.1 mrg register since that is more likely to match (and to produce better code
3031 1.1 mrg if both would). */
3032 1.1 mrg
3033 1.1 mrg if (code == EQ && CONST_INT_P (operands[3])
3034 1.1 mrg && rtx_equal_p (operands[4], operands[3]))
3035 1.1 mrg operands[4] = operands[2];
3036 1.1 mrg
3037 1.1 mrg else if (code == NE && CONST_INT_P (operands[3])
3038 1.1 mrg && rtx_equal_p (operands[5], operands[3]))
3039 1.1 mrg operands[5] = operands[2];
3040 1.1 mrg
3041 1.1 mrg if (code == NE || code == EQ
3042 1.1 mrg || (extended_count (operands[2], DImode, unsignedp) >= 1
3043 1.1 mrg && extended_count (operands[3], DImode, unsignedp) >= 1))
3044 1.1 mrg {
3045 1.1 mrg if (CONST_INT_P (operands[3]))
3046 1.1 mrg operands[7] = gen_rtx_PLUS (DImode, operands[2],
3047 1.1 mrg GEN_INT (- INTVAL (operands[3])));
3048 1.1 mrg else
3049 1.1 mrg operands[7] = gen_rtx_MINUS (DImode, operands[2], operands[3]);
3050 1.1 mrg
3051 1.1 mrg operands[8] = gen_rtx_fmt_ee (code, VOIDmode, operands[6], const0_rtx);
3052 1.1 mrg }
3053 1.1 mrg
3054 1.1 mrg else if (code == EQ || code == LE || code == LT
3055 1.1.1.2 mrg || code == LEU || code == LTU)
3056 1.1 mrg {
3057 1.1 mrg operands[7] = gen_rtx_fmt_ee (code, DImode, operands[2], operands[3]);
3058 1.1.1.2 mrg operands[8] = gen_rtx_NE (VOIDmode, operands[6], const0_rtx);
3059 1.1.1.2 mrg }
3060 1.1.1.2 mrg else
3061 1.1.1.2 mrg {
3062 1.1.1.2 mrg operands[7] = gen_rtx_fmt_ee (reverse_condition (code), DImode,
3063 1.1 mrg operands[2], operands[3]);
3064 1.1 mrg operands[8] = gen_rtx_EQ (VOIDmode, operands[6], const0_rtx);
3065 1.1 mrg }
3066 1.1 mrg })
3067 1.1 mrg
3068 1.1 mrg (define_split
3069 1.1 mrg [(set (match_operand:DI 0 "register_operand")
3070 1.1 mrg (if_then_else:DI
3071 1.1 mrg (match_operator 1 "comparison_operator"
3072 1.1 mrg [(match_operand:SI 2 "reg_or_0_operand")
3073 1.1 mrg (match_operand:SI 3 "reg_or_cint_operand")])
3074 1.1 mrg (match_operand:DI 4 "reg_or_8bit_operand")
3075 1.1 mrg (match_operand:DI 5 "reg_or_8bit_operand")))
3076 1.1 mrg (clobber (match_operand:DI 6 "register_operand"))]
3077 1.1 mrg "operands[3] != const0_rtx
3078 1.1 mrg && (GET_CODE (operands[1]) == EQ || GET_CODE (operands[1]) == NE)"
3079 1.1 mrg [(set (match_dup 6) (match_dup 7))
3080 1.1 mrg (set (match_dup 0)
3081 1.1 mrg (if_then_else:DI (match_dup 8) (match_dup 4) (match_dup 5)))]
3082 1.1 mrg {
3083 1.1 mrg enum rtx_code code = GET_CODE (operands[1]);
3084 1.1 mrg int unsignedp = (code == GEU || code == LEU || code == GTU || code == LTU);
3085 1.1 mrg rtx tem;
3086 1.1 mrg
3087 1.1 mrg if ((code != NE && code != EQ
3088 1.1 mrg && ! (extended_count (operands[2], DImode, unsignedp) >= 1
3089 1.1 mrg && extended_count (operands[3], DImode, unsignedp) >= 1)))
3090 1.1 mrg FAIL;
3091 1.1 mrg
3092 1.1.1.2 mrg if (CONST_INT_P (operands[3]))
3093 1.1 mrg tem = gen_rtx_PLUS (SImode, operands[2],
3094 1.1.1.2 mrg GEN_INT (- INTVAL (operands[3])));
3095 1.1 mrg else
3096 1.1.1.2 mrg tem = gen_rtx_MINUS (SImode, operands[2], operands[3]);
3097 1.1.1.2 mrg
3098 1.1 mrg operands[7] = gen_rtx_SIGN_EXTEND (DImode, tem);
3099 1.1 mrg operands[8] = gen_rtx_fmt_ee (GET_CODE (operands[1]), VOIDmode,
3100 1.1 mrg operands[6], const0_rtx);
3101 1.1 mrg })
3102 1.1 mrg
3103 1.1 mrg ;; Prefer to use cmp and arithmetic when possible instead of a cmove.
3104 1.1 mrg
3105 1.1 mrg (define_split
3106 1.1 mrg [(set (match_operand 0 "register_operand")
3107 1.1 mrg (if_then_else (match_operator 1 "signed_comparison_operator"
3108 1.1 mrg [(match_operand:DI 2 "reg_or_0_operand")
3109 1.1 mrg (const_int 0)])
3110 1.1 mrg (match_operand 3 "const_int_operand")
3111 1.1.1.2 mrg (match_operand 4 "const_int_operand")))]
3112 1.1 mrg ""
3113 1.1 mrg [(const_int 0)]
3114 1.1.1.2 mrg {
3115 1.1.1.2 mrg if (alpha_split_conditional_move (GET_CODE (operands[1]), operands[0],
3116 1.1.1.2 mrg operands[2], operands[3], operands[4]))
3117 1.1 mrg DONE;
3118 1.1 mrg else
3119 1.1 mrg FAIL;
3120 1.1 mrg })
3121 1.1 mrg
3122 1.1 mrg ;; ??? Why combine is allowed to create such non-canonical rtl, I don't know.
3123 1.1 mrg ;; Oh well, we match it in movcc, so it must be partially our fault.
3124 1.1 mrg (define_split
3125 1.1 mrg [(set (match_operand 0 "register_operand")
3126 1.1 mrg (if_then_else (match_operator 1 "signed_comparison_operator"
3127 1.1 mrg [(const_int 0)
3128 1.1 mrg (match_operand:DI 2 "reg_or_0_operand")])
3129 1.1 mrg (match_operand 3 "const_int_operand")
3130 1.1 mrg (match_operand 4 "const_int_operand")))]
3131 1.1 mrg ""
3132 1.1 mrg [(const_int 0)]
3133 1.1 mrg {
3134 1.1 mrg if (alpha_split_conditional_move (swap_condition (GET_CODE (operands[1])),
3135 1.1 mrg operands[0], operands[2], operands[3],
3136 1.1 mrg operands[4]))
3137 1.1 mrg DONE;
3138 1.1 mrg else
3139 1.1 mrg FAIL;
3140 1.1 mrg })
3141 1.1 mrg
3142 1.1 mrg (define_insn_and_split "*cmp_sadd_di"
3143 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
3144 1.1.1.6 mrg (plus:DI (if_then_else:DI
3145 1.1 mrg (match_operator 1 "alpha_zero_comparison_operator"
3146 1.1 mrg [(match_operand:DI 2 "reg_or_0_operand" "rJ")
3147 1.1.1.6 mrg (const_int 0)])
3148 1.1 mrg (match_operand:DI 3 "const48_operand" "I")
3149 1.1 mrg (const_int 0))
3150 1.1 mrg (match_operand:DI 4 "sext_add_operand" "rIO")))
3151 1.1 mrg (clobber (match_scratch:DI 5 "=r"))]
3152 1.1 mrg ""
3153 1.1 mrg "#"
3154 1.1 mrg ""
3155 1.1 mrg [(set (match_dup 5)
3156 1.1 mrg (match_op_dup:DI 1 [(match_dup 2) (const_int 0)]))
3157 1.1 mrg (set (match_dup 0)
3158 1.1 mrg (plus:DI (ashift:DI (match_dup 5) (match_dup 3))
3159 1.1 mrg (match_dup 4)))]
3160 1.1 mrg {
3161 1.1 mrg operands[3] = GEN_INT (exact_log2 (INTVAL (operands [3])));
3162 1.1 mrg if (can_create_pseudo_p ())
3163 1.1 mrg operands[5] = gen_reg_rtx (DImode);
3164 1.1 mrg else if (reg_overlap_mentioned_p (operands[5], operands[4]))
3165 1.1 mrg operands[5] = operands[0];
3166 1.1 mrg })
3167 1.1 mrg
3168 1.1 mrg (define_insn_and_split "*cmp_sadd_si"
3169 1.1 mrg [(set (match_operand:SI 0 "register_operand" "=r")
3170 1.1.1.6 mrg (plus:SI (if_then_else:SI
3171 1.1 mrg (match_operator 1 "alpha_zero_comparison_operator"
3172 1.1 mrg [(match_operand:DI 2 "reg_or_0_operand" "rJ")
3173 1.1.1.6 mrg (const_int 0)])
3174 1.1 mrg (match_operand:SI 3 "const48_operand" "I")
3175 1.1 mrg (const_int 0))
3176 1.1 mrg (match_operand:SI 4 "sext_add_operand" "rIO")))
3177 1.1 mrg (clobber (match_scratch:DI 5 "=r"))]
3178 1.1 mrg ""
3179 1.1 mrg "#"
3180 1.1 mrg ""
3181 1.1 mrg [(set (match_dup 5)
3182 1.1 mrg (match_op_dup:DI 1 [(match_dup 2) (const_int 0)]))
3183 1.1 mrg (set (match_dup 0)
3184 1.1 mrg (plus:SI (ashift:SI (match_dup 6) (match_dup 3))
3185 1.1 mrg (match_dup 4)))]
3186 1.1 mrg {
3187 1.1 mrg operands[3] = GEN_INT (exact_log2 (INTVAL (operands [3])));
3188 1.1 mrg if (can_create_pseudo_p ())
3189 1.1 mrg operands[5] = gen_reg_rtx (DImode);
3190 1.1 mrg else if (reg_overlap_mentioned_p (operands[5], operands[4]))
3191 1.1 mrg operands[5] = gen_lowpart (DImode, operands[0]);
3192 1.1 mrg
3193 1.1 mrg operands[6] = gen_lowpart (SImode, operands[5]);
3194 1.1 mrg })
3195 1.1 mrg
3196 1.1 mrg (define_insn_and_split "*cmp_sadd_sidi"
3197 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
3198 1.1 mrg (sign_extend:DI
3199 1.1.1.6 mrg (plus:SI (if_then_else:SI
3200 1.1 mrg (match_operator 1 "alpha_zero_comparison_operator"
3201 1.1 mrg [(match_operand:DI 2 "reg_or_0_operand" "rJ")
3202 1.1.1.6 mrg (const_int 0)])
3203 1.1 mrg (match_operand:SI 3 "const48_operand" "I")
3204 1.1 mrg (const_int 0))
3205 1.1 mrg (match_operand:SI 4 "sext_add_operand" "rIO"))))
3206 1.1 mrg (clobber (match_scratch:DI 5 "=r"))]
3207 1.1 mrg ""
3208 1.1 mrg "#"
3209 1.1 mrg ""
3210 1.1 mrg [(set (match_dup 5)
3211 1.1 mrg (match_op_dup:DI 1 [(match_dup 2) (const_int 0)]))
3212 1.1 mrg (set (match_dup 0)
3213 1.1 mrg (sign_extend:DI (plus:SI (ashift:SI (match_dup 6) (match_dup 3))
3214 1.1 mrg (match_dup 4))))]
3215 1.1 mrg {
3216 1.1 mrg operands[3] = GEN_INT (exact_log2 (INTVAL (operands [3])));
3217 1.1 mrg if (can_create_pseudo_p ())
3218 1.1 mrg operands[5] = gen_reg_rtx (DImode);
3219 1.1 mrg else if (reg_overlap_mentioned_p (operands[5], operands[4]))
3220 1.1 mrg operands[5] = operands[0];
3221 1.1 mrg
3222 1.1 mrg operands[6] = gen_lowpart (SImode, operands[5]);
3223 1.1 mrg })
3224 1.1 mrg
3225 1.1 mrg (define_insn_and_split "*cmp_ssub_di"
3226 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
3227 1.1.1.6 mrg (minus:DI (if_then_else:DI
3228 1.1 mrg (match_operator 1 "alpha_zero_comparison_operator"
3229 1.1 mrg [(match_operand:DI 2 "reg_or_0_operand" "rJ")
3230 1.1.1.6 mrg (const_int 0)])
3231 1.1 mrg (match_operand:DI 3 "const48_operand" "I")
3232 1.1 mrg (const_int 0))
3233 1.1 mrg (match_operand:DI 4 "reg_or_8bit_operand" "rI")))
3234 1.1 mrg (clobber (match_scratch:DI 5 "=r"))]
3235 1.1 mrg ""
3236 1.1 mrg "#"
3237 1.1 mrg ""
3238 1.1 mrg [(set (match_dup 5)
3239 1.1 mrg (match_op_dup:DI 1 [(match_dup 2) (const_int 0)]))
3240 1.1 mrg (set (match_dup 0)
3241 1.1 mrg (minus:DI (ashift:DI (match_dup 5) (match_dup 3))
3242 1.1 mrg (match_dup 4)))]
3243 1.1 mrg {
3244 1.1 mrg operands[3] = GEN_INT (exact_log2 (INTVAL (operands [3])));
3245 1.1 mrg if (can_create_pseudo_p ())
3246 1.1 mrg operands[5] = gen_reg_rtx (DImode);
3247 1.1 mrg else if (reg_overlap_mentioned_p (operands[5], operands[4]))
3248 1.1 mrg operands[5] = operands[0];
3249 1.1 mrg })
3250 1.1 mrg
3251 1.1 mrg (define_insn_and_split "*cmp_ssub_si"
3252 1.1 mrg [(set (match_operand:SI 0 "register_operand" "=r")
3253 1.1.1.6 mrg (minus:SI (if_then_else:SI
3254 1.1 mrg (match_operator 1 "alpha_zero_comparison_operator"
3255 1.1 mrg [(match_operand:DI 2 "reg_or_0_operand" "rJ")
3256 1.1.1.6 mrg (const_int 0)])
3257 1.1 mrg (match_operand:SI 3 "const48_operand" "I")
3258 1.1 mrg (const_int 0))
3259 1.1 mrg (match_operand:SI 4 "reg_or_8bit_operand" "rI")))
3260 1.1 mrg (clobber (match_scratch:DI 5 "=r"))]
3261 1.1 mrg ""
3262 1.1 mrg "#"
3263 1.1 mrg ""
3264 1.1 mrg [(set (match_dup 5)
3265 1.1 mrg (match_op_dup:DI 1 [(match_dup 2) (const_int 0)]))
3266 1.1 mrg (set (match_dup 0)
3267 1.1 mrg (minus:SI (ashift:SI (match_dup 6) (match_dup 3))
3268 1.1 mrg (match_dup 4)))]
3269 1.1 mrg {
3270 1.1 mrg operands[3] = GEN_INT (exact_log2 (INTVAL (operands [3])));
3271 1.1 mrg if (can_create_pseudo_p ())
3272 1.1 mrg operands[5] = gen_reg_rtx (DImode);
3273 1.1 mrg else if (reg_overlap_mentioned_p (operands[5], operands[4]))
3274 1.1 mrg operands[5] = gen_lowpart (DImode, operands[0]);
3275 1.1 mrg
3276 1.1 mrg operands[6] = gen_lowpart (SImode, operands[5]);
3277 1.1 mrg })
3278 1.1 mrg
3279 1.1 mrg (define_insn_and_split "*cmp_ssub_sidi"
3280 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
3281 1.1 mrg (sign_extend:DI
3282 1.1.1.6 mrg (minus:SI (if_then_else:SI
3283 1.1 mrg (match_operator 1 "alpha_zero_comparison_operator"
3284 1.1 mrg [(match_operand:DI 2 "reg_or_0_operand" "rJ")
3285 1.1.1.6 mrg (const_int 0)])
3286 1.1 mrg (match_operand:SI 3 "const48_operand" "I")
3287 1.1 mrg (const_int 0))
3288 1.1 mrg (match_operand:SI 4 "reg_or_8bit_operand" "rI"))))
3289 1.1 mrg (clobber (match_scratch:DI 5 "=r"))]
3290 1.1 mrg ""
3291 1.1 mrg "#"
3292 1.1 mrg ""
3293 1.1 mrg [(set (match_dup 5)
3294 1.1 mrg (match_op_dup:DI 1 [(match_dup 2) (const_int 0)]))
3295 1.1 mrg (set (match_dup 0)
3296 1.1 mrg (sign_extend:DI (minus:SI (ashift:SI (match_dup 6) (match_dup 3))
3297 1.1 mrg (match_dup 4))))]
3298 1.1.1.2 mrg {
3299 1.1.1.2 mrg operands[3] = GEN_INT (exact_log2 (INTVAL (operands [3])));
3300 1.1.1.2 mrg if (can_create_pseudo_p ())
3301 1.1.1.2 mrg operands[5] = gen_reg_rtx (DImode);
3302 1.1 mrg else if (reg_overlap_mentioned_p (operands[5], operands[4]))
3303 1.1 mrg operands[5] = operands[0];
3304 1.1.1.2 mrg
3305 1.1 mrg operands[6] = gen_lowpart (SImode, operands[5]);
3306 1.1 mrg })
3307 1.1 mrg
3309 1.1 mrg ;; Here are the CALL and unconditional branch insns. Calls on NT and OSF
3310 1.1 mrg ;; work differently, so we have different patterns for each.
3311 1.1 mrg
3312 1.1.1.2 mrg (define_expand "call"
3313 1.1.1.2 mrg [(use (match_operand:DI 0))
3314 1.1 mrg (use (match_operand 1))
3315 1.1 mrg (use (match_operand 2))
3316 1.1 mrg (use (match_operand 3))]
3317 1.1 mrg ""
3318 1.1 mrg {
3319 1.1 mrg if (TARGET_ABI_OPEN_VMS)
3320 1.1 mrg emit_call_insn (gen_call_vms (operands[0], operands[2]));
3321 1.1 mrg else
3322 1.1.1.2 mrg emit_call_insn (gen_call_osf (operands[0], operands[1]));
3323 1.1.1.2 mrg DONE;
3324 1.1 mrg })
3325 1.1 mrg
3326 1.1 mrg (define_expand "sibcall"
3327 1.1 mrg [(parallel [(call (mem:DI (match_operand 0))
3328 1.1 mrg (match_operand 1))
3329 1.1 mrg (unspec [(reg:DI 29)] UNSPEC_SIBCALL)])]
3330 1.1 mrg "TARGET_ABI_OSF"
3331 1.1 mrg {
3332 1.1 mrg gcc_assert (MEM_P (operands[0]));
3333 1.1 mrg operands[0] = XEXP (operands[0], 0);
3334 1.1 mrg })
3335 1.1 mrg
3336 1.1 mrg (define_expand "call_osf"
3337 1.1 mrg [(parallel [(call (mem:DI (match_operand 0))
3338 1.1 mrg (match_operand 1))
3339 1.1 mrg (use (reg:DI 29))
3340 1.1 mrg (clobber (reg:DI 26))])]
3341 1.1.1.2 mrg ""
3342 1.1.1.2 mrg {
3343 1.1 mrg gcc_assert (MEM_P (operands[0]));
3344 1.1 mrg
3345 1.1 mrg operands[0] = XEXP (operands[0], 0);
3346 1.1 mrg if (! call_operand (operands[0], Pmode))
3347 1.1 mrg operands[0] = copy_to_mode_reg (Pmode, operands[0]);
3348 1.1 mrg })
3349 1.1 mrg
3350 1.1 mrg ;;
3351 1.1 mrg ;; call openvms/alpha
3352 1.1 mrg ;; op 0: symbol ref for called function
3353 1.1 mrg ;; op 1: next_arg_reg (argument information value for R25)
3354 1.1 mrg ;;
3355 1.1 mrg (define_expand "call_vms"
3356 1.1 mrg [(parallel [(call (mem:DI (match_operand 0))
3357 1.1 mrg (match_operand 1))
3358 1.1 mrg (use (match_dup 2))
3359 1.1 mrg (use (reg:DI 25))
3360 1.1 mrg (use (reg:DI 26))
3361 1.1 mrg (clobber (reg:DI 27))])]
3362 1.1 mrg ""
3363 1.1 mrg {
3364 1.1 mrg gcc_assert (MEM_P (operands[0]));
3365 1.1.1.2 mrg
3366 1.1.1.2 mrg operands[0] = XEXP (operands[0], 0);
3367 1.1 mrg
3368 1.1 mrg /* Always load AI with argument information, then handle symbolic and
3369 1.1 mrg indirect call differently. Load RA and set operands[2] to PV in
3370 1.1 mrg both cases. */
3371 1.1 mrg
3372 1.1.1.2 mrg emit_move_insn (gen_rtx_REG (DImode, 25), operands[1]);
3373 1.1.1.2 mrg if (GET_CODE (operands[0]) == SYMBOL_REF)
3374 1.1.1.2 mrg {
3375 1.1.1.2 mrg operands[2] = const0_rtx;
3376 1.1.1.2 mrg }
3377 1.1 mrg else
3378 1.1 mrg {
3379 1.1.1.2 mrg emit_move_insn (gen_rtx_REG (Pmode, 26),
3380 1.1 mrg gen_rtx_MEM (Pmode, plus_constant (Pmode,
3381 1.1 mrg operands[0], 8)));
3382 1.1 mrg operands[2] = operands[0];
3383 1.1 mrg }
3384 1.1 mrg })
3385 1.1 mrg
3386 1.1 mrg (define_expand "call_value"
3387 1.1 mrg [(use (match_operand 0))
3388 1.1 mrg (use (match_operand:DI 1))
3389 1.1.1.2 mrg (use (match_operand 2))
3390 1.1.1.2 mrg (use (match_operand 3))
3391 1.1.1.2 mrg (use (match_operand 4))]
3392 1.1 mrg ""
3393 1.1 mrg {
3394 1.1 mrg if (TARGET_ABI_OPEN_VMS)
3395 1.1 mrg emit_call_insn (gen_call_value_vms (operands[0], operands[1],
3396 1.1 mrg operands[3]));
3397 1.1 mrg else
3398 1.1 mrg emit_call_insn (gen_call_value_osf (operands[0], operands[1],
3399 1.1 mrg operands[2]));
3400 1.1.1.2 mrg DONE;
3401 1.1.1.2 mrg })
3402 1.1.1.2 mrg
3403 1.1 mrg (define_expand "sibcall_value"
3404 1.1 mrg [(parallel [(set (match_operand 0)
3405 1.1 mrg (call (mem:DI (match_operand 1))
3406 1.1 mrg (match_operand 2)))
3407 1.1 mrg (unspec [(reg:DI 29)] UNSPEC_SIBCALL)])]
3408 1.1 mrg "TARGET_ABI_OSF"
3409 1.1 mrg {
3410 1.1 mrg gcc_assert (MEM_P (operands[1]));
3411 1.1 mrg operands[1] = XEXP (operands[1], 0);
3412 1.1 mrg })
3413 1.1 mrg
3414 1.1 mrg (define_expand "call_value_osf"
3415 1.1.1.2 mrg [(parallel [(set (match_operand 0)
3416 1.1.1.2 mrg (call (mem:DI (match_operand 1))
3417 1.1.1.2 mrg (match_operand 2)))
3418 1.1 mrg (use (reg:DI 29))
3419 1.1 mrg (clobber (reg:DI 26))])]
3420 1.1 mrg ""
3421 1.1 mrg {
3422 1.1 mrg gcc_assert (MEM_P (operands[1]));
3423 1.1 mrg
3424 1.1 mrg operands[1] = XEXP (operands[1], 0);
3425 1.1 mrg if (! call_operand (operands[1], Pmode))
3426 1.1 mrg operands[1] = copy_to_mode_reg (Pmode, operands[1]);
3427 1.1 mrg })
3428 1.1 mrg
3429 1.1 mrg (define_expand "call_value_vms"
3430 1.1 mrg [(parallel [(set (match_operand 0)
3431 1.1 mrg (call (mem:DI (match_operand:DI 1))
3432 1.1 mrg (match_operand 2)))
3433 1.1 mrg (use (match_dup 3))
3434 1.1 mrg (use (reg:DI 25))
3435 1.1 mrg (use (reg:DI 26))
3436 1.1 mrg (clobber (reg:DI 27))])]
3437 1.1 mrg ""
3438 1.1 mrg {
3439 1.1 mrg gcc_assert (MEM_P (operands[1]));
3440 1.1.1.2 mrg
3441 1.1.1.2 mrg operands[1] = XEXP (operands[1], 0);
3442 1.1 mrg
3443 1.1 mrg /* Always load AI with argument information, then handle symbolic and
3444 1.1 mrg indirect call differently. Load RA and set operands[3] to PV in
3445 1.1 mrg both cases. */
3446 1.1 mrg
3447 1.1 mrg emit_move_insn (gen_rtx_REG (DImode, 25), operands[2]);
3448 1.1.1.2 mrg if (GET_CODE (operands[1]) == SYMBOL_REF)
3449 1.1 mrg {
3450 1.1 mrg operands[3] = const0_rtx;
3451 1.1 mrg }
3452 1.1 mrg else
3453 1.1 mrg {
3454 1.1 mrg emit_move_insn (gen_rtx_REG (Pmode, 26),
3455 1.1 mrg gen_rtx_MEM (Pmode, plus_constant (Pmode,
3456 1.1 mrg operands[1], 8)));
3457 1.1 mrg operands[3] = operands[1];
3458 1.1 mrg }
3459 1.1 mrg })
3460 1.1 mrg
3461 1.1 mrg (define_insn "*call_osf_1_er_noreturn"
3462 1.1.1.2 mrg [(call (mem:DI (match_operand:DI 0 "call_operand" "c,R,s"))
3463 1.1 mrg (match_operand 1))
3464 1.1 mrg (use (reg:DI 29))
3465 1.1 mrg (clobber (reg:DI 26))]
3466 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF
3467 1.1 mrg && find_reg_note (insn, REG_NORETURN, NULL_RTX)"
3468 1.1 mrg "@
3469 1.1 mrg jsr $26,($27),0
3470 1.1 mrg bsr $26,%0\t\t!samegp
3471 1.1 mrg ldq $27,%0($29)\t\t!literal!%#\;jsr $26,($27),%0\t\t!lituse_jsr!%#"
3472 1.1 mrg [(set_attr "type" "jsr")
3473 1.1 mrg (set_attr "length" "*,*,8")])
3474 1.1 mrg
3475 1.1 mrg (define_insn "*call_osf_1_er"
3476 1.1.1.2 mrg [(call (mem:DI (match_operand:DI 0 "call_operand" "c,R,s"))
3477 1.1.1.2 mrg (match_operand 1))
3478 1.1 mrg (use (reg:DI 29))
3479 1.1 mrg (clobber (reg:DI 26))]
3480 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
3481 1.1 mrg "@
3482 1.1 mrg jsr $26,(%0),0\;ldah $29,0($26)\t\t!gpdisp!%*\;lda $29,0($29)\t\t!gpdisp!%*
3483 1.1 mrg bsr $26,%0\t\t!samegp
3484 1.1 mrg ldq $27,%0($29)\t\t!literal!%#\;jsr $26,($27),%0\t\t!lituse_jsr!%#\;ldah $29,0($26)\t\t!gpdisp!%*\;lda $29,0($29)\t\t!gpdisp!%*"
3485 1.1 mrg [(set_attr "type" "jsr")
3486 1.1 mrg (set_attr "length" "12,*,16")])
3487 1.1 mrg
3488 1.1 mrg ;; We must use peep2 instead of a split because we need accurate life
3489 1.1 mrg ;; information for $gp. Consider the case of { bar(); while (1); }.
3490 1.1 mrg (define_peephole2
3491 1.1 mrg [(parallel [(call (mem:DI (match_operand:DI 0 "call_operand"))
3492 1.1 mrg (match_operand 1))
3493 1.1 mrg (use (reg:DI 29))
3494 1.1 mrg (clobber (reg:DI 26))])]
3495 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF && reload_completed
3496 1.1 mrg && ! samegp_function_operand (operands[0], Pmode)
3497 1.1 mrg && (peep2_regno_dead_p (1, 29)
3498 1.1 mrg || find_reg_note (insn, REG_NORETURN, NULL_RTX))"
3499 1.1 mrg [(parallel [(call (mem:DI (match_dup 2))
3500 1.1 mrg (match_dup 1))
3501 1.1 mrg (use (reg:DI 29))
3502 1.1 mrg (use (match_dup 0))
3503 1.1 mrg (use (match_dup 3))
3504 1.1 mrg (clobber (reg:DI 26))])]
3505 1.1 mrg {
3506 1.1 mrg if (CONSTANT_P (operands[0]))
3507 1.1.1.2 mrg {
3508 1.1.1.2 mrg operands[2] = gen_rtx_REG (Pmode, 27);
3509 1.1 mrg operands[3] = GEN_INT (alpha_next_sequence_number++);
3510 1.1 mrg emit_insn (gen_movdi_er_high_g (operands[2], pic_offset_table_rtx,
3511 1.1 mrg operands[0], operands[3]));
3512 1.1 mrg }
3513 1.1 mrg else
3514 1.1 mrg {
3515 1.1 mrg operands[2] = operands[0];
3516 1.1 mrg operands[0] = const0_rtx;
3517 1.1 mrg operands[3] = const0_rtx;
3518 1.1 mrg }
3519 1.1 mrg })
3520 1.1 mrg
3521 1.1 mrg (define_peephole2
3522 1.1 mrg [(parallel [(call (mem:DI (match_operand:DI 0 "call_operand"))
3523 1.1 mrg (match_operand 1))
3524 1.1 mrg (use (reg:DI 29))
3525 1.1 mrg (clobber (reg:DI 26))])]
3526 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF && reload_completed
3527 1.1 mrg && ! samegp_function_operand (operands[0], Pmode)
3528 1.1 mrg && ! (peep2_regno_dead_p (1, 29)
3529 1.1 mrg || find_reg_note (insn, REG_NORETURN, NULL_RTX))"
3530 1.1 mrg [(parallel [(call (mem:DI (match_dup 2))
3531 1.1 mrg (match_dup 1))
3532 1.1 mrg (set (match_dup 5)
3533 1.1 mrg (unspec:DI [(match_dup 5) (match_dup 3)] UNSPEC_LDGP1))
3534 1.1 mrg (use (match_dup 0))
3535 1.1 mrg (use (match_dup 4))
3536 1.1 mrg (clobber (reg:DI 26))])
3537 1.1 mrg (set (match_dup 5)
3538 1.1 mrg (unspec:DI [(match_dup 5) (match_dup 3)] UNSPEC_LDGP2))]
3539 1.1 mrg {
3540 1.1 mrg if (CONSTANT_P (operands[0]))
3541 1.1 mrg {
3542 1.1 mrg operands[2] = gen_rtx_REG (Pmode, 27);
3543 1.1 mrg operands[4] = GEN_INT (alpha_next_sequence_number++);
3544 1.1.1.2 mrg emit_insn (gen_movdi_er_high_g (operands[2], pic_offset_table_rtx,
3545 1.1 mrg operands[0], operands[4]));
3546 1.1.1.2 mrg }
3547 1.1.1.2 mrg else
3548 1.1 mrg {
3549 1.1 mrg operands[2] = operands[0];
3550 1.1 mrg operands[0] = const0_rtx;
3551 1.1 mrg operands[4] = const0_rtx;
3552 1.1 mrg }
3553 1.1 mrg operands[3] = GEN_INT (alpha_next_sequence_number++);
3554 1.1 mrg operands[5] = pic_offset_table_rtx;
3555 1.1.1.2 mrg })
3556 1.1 mrg
3557 1.1.1.2 mrg (define_insn "*call_osf_2_er_nogp"
3558 1.1 mrg [(call (mem:DI (match_operand:DI 0 "register_operand" "c"))
3559 1.1.1.2 mrg (match_operand 1))
3560 1.1.1.2 mrg (use (reg:DI 29))
3561 1.1 mrg (use (match_operand 2))
3562 1.1 mrg (use (match_operand 3 "const_int_operand"))
3563 1.1 mrg (clobber (reg:DI 26))]
3564 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
3565 1.1 mrg "jsr $26,(%0),%2%J3"
3566 1.1 mrg [(set_attr "type" "jsr")])
3567 1.1 mrg
3568 1.1 mrg (define_insn "*call_osf_2_er"
3569 1.1 mrg [(call (mem:DI (match_operand:DI 0 "register_operand" "c"))
3570 1.1.1.2 mrg (match_operand 1))
3571 1.1 mrg (set (reg:DI 29)
3572 1.1 mrg (unspec:DI [(reg:DI 29) (match_operand 4 "const_int_operand")]
3573 1.1 mrg UNSPEC_LDGP1))
3574 1.1 mrg (use (match_operand 2))
3575 1.1 mrg (use (match_operand 3 "const_int_operand"))
3576 1.1 mrg (clobber (reg:DI 26))]
3577 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
3578 1.1 mrg "jsr $26,(%0),%2%J3\;ldah $29,0($26)\t\t!gpdisp!%4"
3579 1.1 mrg [(set_attr "type" "jsr")
3580 1.1 mrg (set_attr "cannot_copy" "true")
3581 1.1 mrg (set_attr "length" "8")])
3582 1.1 mrg
3583 1.1 mrg (define_insn "*call_osf_1_noreturn"
3584 1.1.1.2 mrg [(call (mem:DI (match_operand:DI 0 "call_operand" "c,R,s"))
3585 1.1 mrg (match_operand 1))
3586 1.1 mrg (use (reg:DI 29))
3587 1.1 mrg (clobber (reg:DI 26))]
3588 1.1 mrg "! TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF
3589 1.1 mrg && find_reg_note (insn, REG_NORETURN, NULL_RTX)"
3590 1.1 mrg "@
3591 1.1 mrg jsr $26,($27),0
3592 1.1 mrg bsr $26,$%0..ng
3593 1.1 mrg jsr $26,%0"
3594 1.1 mrg [(set_attr "type" "jsr")
3595 1.1 mrg (set_attr "length" "*,*,8")])
3596 1.1 mrg
3597 1.1.1.2 mrg (define_insn "*call_osf_1"
3598 1.1 mrg [(call (mem:DI (match_operand:DI 0 "call_operand" "c,R,s"))
3599 1.1 mrg (match_operand 1))
3600 1.1 mrg (use (reg:DI 29))
3601 1.1 mrg (clobber (reg:DI 26))]
3602 1.1 mrg "! TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
3603 1.1 mrg "@
3604 1.1 mrg jsr $26,($27),0\;ldgp $29,0($26)
3605 1.1 mrg bsr $26,$%0..ng
3606 1.1 mrg jsr $26,%0\;ldgp $29,0($26)"
3607 1.1 mrg [(set_attr "type" "jsr")
3608 1.1 mrg (set_attr "length" "12,*,16")])
3609 1.1 mrg
3610 1.1.1.2 mrg (define_insn "*sibcall_osf_1_er"
3611 1.1 mrg [(call (mem:DI (match_operand:DI 0 "symbolic_operand" "R,s"))
3612 1.1 mrg (match_operand 1))
3613 1.1 mrg (unspec [(reg:DI 29)] UNSPEC_SIBCALL)]
3614 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
3615 1.1 mrg "@
3616 1.1 mrg br $31,%0\t\t!samegp
3617 1.1 mrg ldq $27,%0($29)\t\t!literal!%#\;jmp $31,($27),%0\t\t!lituse_jsr!%#"
3618 1.1 mrg [(set_attr "type" "jsr")
3619 1.1 mrg (set_attr "length" "*,8")])
3620 1.1 mrg
3621 1.1 mrg ;; Note that the DEC assembler expands "jmp foo" with $at, which
3622 1.1 mrg ;; doesn't do what we want.
3623 1.1 mrg (define_insn "*sibcall_osf_1"
3624 1.1.1.2 mrg [(call (mem:DI (match_operand:DI 0 "symbolic_operand" "R,s"))
3625 1.1 mrg (match_operand 1))
3626 1.1 mrg (unspec [(reg:DI 29)] UNSPEC_SIBCALL)]
3627 1.1 mrg "! TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
3628 1.1 mrg "@
3629 1.1 mrg br $31,$%0..ng
3630 1.1 mrg lda $27,%0\;jmp $31,($27),%0"
3631 1.1 mrg [(set_attr "type" "jsr")
3632 1.1 mrg (set_attr "length" "*,8")])
3633 1.1 mrg
3634 1.1 mrg ; GAS relies on the order and position of instructions output below in order
3635 1.1 mrg ; to generate relocs for VMS link to potentially optimize the call.
3636 1.1.1.2 mrg ; Please do not molest.
3637 1.1.1.2 mrg (define_insn "*call_vms_1"
3638 1.1 mrg [(call (mem:DI (match_operand:DI 0 "call_operand" "r,s"))
3639 1.1 mrg (match_operand 1))
3640 1.1 mrg (use (match_operand:DI 2 "nonmemory_operand" "r,n"))
3641 1.1 mrg (use (reg:DI 25))
3642 1.1 mrg (use (reg:DI 26))
3643 1.1 mrg (clobber (reg:DI 27))]
3644 1.1 mrg "TARGET_ABI_OPEN_VMS"
3645 1.1 mrg {
3646 1.1 mrg switch (which_alternative)
3647 1.1 mrg {
3648 1.1 mrg case 0:
3649 1.1.1.2 mrg return "mov %2,$27\;jsr $26,0\;ldq $27,0($29)";
3650 1.1 mrg case 1:
3651 1.1.1.2 mrg operands [2] = alpha_use_linkage (operands [0], true, false);
3652 1.1.1.2 mrg operands [3] = alpha_use_linkage (operands [0], false, false);
3653 1.1 mrg return "ldq $26,%3\;ldq $27,%2\;jsr $26,%0\;ldq $27,0($29)";
3654 1.1 mrg default:
3655 1.1 mrg gcc_unreachable ();
3656 1.1 mrg }
3657 1.1.1.4 mrg }
3658 1.1 mrg [(set_attr "type" "jsr")
3659 1.1 mrg (set_attr "length" "12,16")])
3660 1.1 mrg
3661 1.1 mrg ;; Call subroutine returning any type.
3662 1.1 mrg
3663 1.1 mrg (define_expand "untyped_call"
3664 1.1 mrg [(parallel [(call (match_operand 0)
3665 1.1 mrg (const_int 0))
3666 1.1 mrg (match_operand 1)
3667 1.1 mrg (match_operand 2)])]
3668 1.1 mrg ""
3669 1.1 mrg {
3670 1.1 mrg int i;
3671 1.1 mrg
3672 1.1 mrg emit_call_insn (gen_call (operands[0], const0_rtx, NULL, const0_rtx));
3673 1.1 mrg
3674 1.1 mrg for (i = 0; i < XVECLEN (operands[2], 0); i++)
3675 1.1 mrg {
3676 1.1 mrg rtx set = XVECEXP (operands[2], 0, i);
3677 1.1 mrg emit_move_insn (SET_DEST (set), SET_SRC (set));
3678 1.1 mrg }
3679 1.1 mrg
3680 1.1 mrg /* The optimizer does not know that the call sets the function value
3681 1.1 mrg registers we stored in the result block. We avoid problems by
3682 1.1 mrg claiming that all hard registers are used and clobbered at this
3683 1.1 mrg point. */
3684 1.1 mrg emit_insn (gen_blockage ());
3685 1.1 mrg
3686 1.1.1.2 mrg DONE;
3687 1.1 mrg })
3688 1.1 mrg
3689 1.1 mrg ;; UNSPEC_VOLATILE is considered to use and clobber all hard registers and
3690 1.1 mrg ;; all of memory. This blocks insns from being moved across this point.
3691 1.1 mrg
3692 1.1 mrg (define_insn "blockage"
3693 1.1.1.2 mrg [(unspec_volatile [(const_int 0)] UNSPECV_BLOCKAGE)]
3694 1.1 mrg ""
3695 1.1 mrg ""
3696 1.1 mrg [(set_attr "length" "0")
3697 1.1 mrg (set_attr "type" "none")])
3698 1.1 mrg
3699 1.1 mrg (define_insn "jump"
3700 1.1 mrg [(set (pc)
3701 1.1 mrg (label_ref (match_operand 0)))]
3702 1.1 mrg ""
3703 1.1 mrg "br $31,%l0"
3704 1.1 mrg [(set_attr "type" "ibr")])
3705 1.1 mrg
3706 1.1 mrg (define_expand "return"
3707 1.1 mrg [(return)]
3708 1.1 mrg "direct_return ()")
3709 1.1.1.2 mrg
3710 1.1.1.2 mrg (define_insn "*return_internal"
3711 1.1 mrg [(return)]
3712 1.1 mrg "reload_completed"
3713 1.1.1.2 mrg "ret $31,($26),1"
3714 1.1 mrg [(set_attr "type" "ibr")])
3715 1.1 mrg
3716 1.1 mrg (define_insn "indirect_jump"
3717 1.1 mrg [(set (pc) (match_operand:DI 0 "register_operand" "r"))]
3718 1.1 mrg ""
3719 1.1 mrg "jmp $31,(%0),0"
3720 1.1 mrg [(set_attr "type" "ibr")])
3721 1.1 mrg
3722 1.1 mrg (define_expand "tablejump"
3723 1.1 mrg [(parallel [(set (pc)
3724 1.1 mrg (match_operand 0 "register_operand"))
3725 1.1.1.2 mrg (use (label_ref:DI (match_operand 1)))])]
3726 1.1 mrg ""
3727 1.1 mrg {
3728 1.1 mrg if (TARGET_ABI_OSF)
3729 1.1 mrg {
3730 1.1 mrg rtx dest = gen_reg_rtx (DImode);
3731 1.1 mrg emit_insn (gen_extendsidi2 (dest, operands[0]));
3732 1.1 mrg emit_insn (gen_adddi3 (dest, pic_offset_table_rtx, dest));
3733 1.1 mrg operands[0] = dest;
3734 1.1 mrg }
3735 1.1 mrg })
3736 1.1 mrg
3737 1.1 mrg (define_insn "*tablejump_internal"
3738 1.1.1.2 mrg [(set (pc)
3739 1.1.1.2 mrg (match_operand:DI 0 "register_operand" "r"))
3740 1.1.1.2 mrg (use (label_ref (match_operand 1)))]
3741 1.1.1.2 mrg ""
3742 1.1.1.2 mrg "jmp $31,(%0),0"
3743 1.1.1.2 mrg [(set_attr "type" "ibr")])
3744 1.1.1.2 mrg
3745 1.1.1.2 mrg ;; Cache flush. Used by alpha_trampoline_init. 0x86 is PAL_imb, but we don't
3746 1.1.1.2 mrg ;; want to have to include pal.h in our .s file.
3747 1.1 mrg (define_insn "imb"
3748 1.1 mrg [(unspec_volatile [(const_int 0)] UNSPECV_IMB)]
3749 1.1.1.3 mrg ""
3750 1.1.1.3 mrg "call_pal 0x86"
3751 1.1.1.2 mrg [(set_attr "type" "callpal")])
3752 1.1 mrg
3753 1.1 mrg (define_expand "clear_cache"
3754 1.1 mrg [(match_operand:DI 0) ; region start
3755 1.1 mrg (match_operand:DI 1)] ; region end
3756 1.1 mrg ""
3757 1.1 mrg {
3758 1.1.1.2 mrg emit_insn (gen_imb ());
3759 1.1 mrg DONE;
3760 1.1 mrg })
3761 1.1 mrg
3762 1.1 mrg ;; BUGCHK is documented common to OSF/1 and VMS PALcode.
3763 1.1 mrg (define_insn "trap"
3764 1.1 mrg [(trap_if (const_int 1) (const_int 0))
3765 1.1 mrg (use (reg:DI 29))]
3766 1.1 mrg ""
3767 1.1 mrg "call_pal 0x81"
3768 1.1 mrg [(set_attr "type" "callpal")])
3769 1.1 mrg
3770 1.1 mrg ;; For userland, we load the thread pointer from the TCB.
3771 1.1 mrg ;; For the kernel, we load the per-cpu private value.
3772 1.1 mrg
3773 1.1 mrg (define_insn "get_thread_pointerdi"
3774 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=v")
3775 1.1.1.2 mrg (unspec:DI [(const_int 0)] UNSPEC_TP))]
3776 1.1.1.2 mrg "TARGET_ABI_OSF"
3777 1.1 mrg {
3778 1.1.1.2 mrg if (TARGET_TLS_KERNEL)
3779 1.1 mrg return "call_pal 0x32";
3780 1.1 mrg else
3781 1.1 mrg return "call_pal 0x9e";
3782 1.1 mrg }
3783 1.1 mrg [(set_attr "type" "callpal")])
3784 1.1 mrg
3785 1.1 mrg ;; For completeness, and possibly a __builtin function, here's how to
3786 1.1 mrg ;; set the thread pointer. Since we don't describe enough of this
3787 1.1 mrg ;; quantity for CSE, we have to use a volatile unspec, and then there's
3788 1.1 mrg ;; not much point in creating an R16_REG register class.
3789 1.1 mrg
3790 1.1 mrg (define_expand "set_thread_pointerdi"
3791 1.1 mrg [(set (reg:DI 16) (match_operand:DI 0 "input_operand"))
3792 1.1 mrg (unspec_volatile [(reg:DI 16)] UNSPECV_SET_TP)]
3793 1.1 mrg "TARGET_ABI_OSF")
3794 1.1.1.2 mrg
3795 1.1.1.2 mrg (define_insn "*set_tp"
3796 1.1 mrg [(unspec_volatile [(reg:DI 16)] UNSPECV_SET_TP)]
3797 1.1 mrg "TARGET_ABI_OSF"
3798 1.1 mrg {
3799 1.1 mrg if (TARGET_TLS_KERNEL)
3800 1.1 mrg return "call_pal 0x31";
3801 1.1 mrg else
3802 1.1 mrg return "call_pal 0x9f";
3803 1.1.1.2 mrg }
3804 1.1 mrg [(set_attr "type" "callpal")])
3805 1.1.1.2 mrg
3806 1.1 mrg ;; Special builtins for establishing and reverting VMS condition handlers.
3807 1.1 mrg
3808 1.1 mrg (define_expand "builtin_establish_vms_condition_handler"
3809 1.1 mrg [(set (reg:DI 0) (match_operand:DI 0 "register_operand"))
3810 1.1 mrg (use (match_operand:DI 1 "address_operand"))]
3811 1.1.1.2 mrg "TARGET_ABI_OPEN_VMS"
3812 1.1.1.2 mrg {
3813 1.1.1.2 mrg alpha_expand_builtin_establish_vms_condition_handler (operands[0],
3814 1.1.1.2 mrg operands[1]);
3815 1.1.1.2 mrg })
3816 1.1.1.2 mrg
3817 1.1.1.2 mrg (define_expand "builtin_revert_vms_condition_handler"
3818 1.1.1.2 mrg [(set (reg:DI 0) (match_operand:DI 0 "register_operand"))]
3819 1.1.1.2 mrg "TARGET_ABI_OPEN_VMS"
3820 1.1 mrg "alpha_expand_builtin_revert_vms_condition_handler (operands[0]);")
3821 1.1.1.2 mrg
3823 1.1 mrg ;; Finally, we have the basic data motion insns. The byte and word insns
3824 1.1.1.2 mrg ;; are done via define_expand. Start with the floating-point insns, since
3825 1.1.1.2 mrg ;; they are simpler.
3826 1.1 mrg
3827 1.1 mrg (define_expand "movsf"
3828 1.1 mrg [(set (match_operand:SF 0 "nonimmediate_operand")
3829 1.1 mrg (match_operand:SF 1 "general_operand"))]
3830 1.1 mrg ""
3831 1.1 mrg {
3832 1.1 mrg if (MEM_P (operands[0])
3833 1.1 mrg && ! reg_or_0_operand (operands[1], SFmode))
3834 1.1 mrg operands[1] = force_reg (SFmode, operands[1]);
3835 1.1.1.2 mrg })
3836 1.1.1.2 mrg
3837 1.1 mrg (define_insn "*movsf"
3838 1.1.1.2 mrg [(set (match_operand:SF 0 "nonimmediate_operand" "=f,f,*r,*r,m,m,f,*r")
3839 1.1.1.2 mrg (match_operand:SF 1 "input_operand" "fG,m,*rG,m,fG,*r,*r,f"))]
3840 1.1.1.2 mrg "register_operand (operands[0], SFmode)
3841 1.1.1.2 mrg || reg_or_0_operand (operands[1], SFmode)"
3842 1.1.1.2 mrg "@
3843 1.1.1.2 mrg cpys %R1,%R1,%0
3844 1.1.1.2 mrg ld%, %0,%1
3845 1.1.1.2 mrg bis $31,%r1,%0
3846 1.1.1.2 mrg ldl %0,%1
3847 1.1 mrg st%, %R1,%0
3848 1.1.1.2 mrg stl %r1,%0
3849 1.1 mrg itofs %1,%0
3850 1.1 mrg ftois %1,%0"
3851 1.1.1.2 mrg [(set_attr "type" "fcpys,fld,ilog,ild,fst,ist,itof,ftoi")
3852 1.1.1.2 mrg (set_attr "isa" "*,*,*,*,*,*,fix,fix")])
3853 1.1 mrg
3854 1.1 mrg (define_expand "movdf"
3855 1.1 mrg [(set (match_operand:DF 0 "nonimmediate_operand")
3856 1.1 mrg (match_operand:DF 1 "general_operand"))]
3857 1.1 mrg ""
3858 1.1 mrg {
3859 1.1 mrg if (MEM_P (operands[0])
3860 1.1 mrg && ! reg_or_0_operand (operands[1], DFmode))
3861 1.1 mrg operands[1] = force_reg (DFmode, operands[1]);
3862 1.1.1.2 mrg })
3863 1.1.1.2 mrg
3864 1.1 mrg (define_insn "*movdf"
3865 1.1 mrg [(set (match_operand:DF 0 "nonimmediate_operand" "=f,f,*r,*r,m,m,f,*r")
3866 1.1 mrg (match_operand:DF 1 "input_operand" "fG,m,*rG,m,fG,*r,*r,f"))]
3867 1.1.1.2 mrg "register_operand (operands[0], DFmode)
3868 1.1.1.2 mrg || reg_or_0_operand (operands[1], DFmode)"
3869 1.1.1.2 mrg "@
3870 1.1.1.2 mrg cpys %R1,%R1,%0
3871 1.1.1.2 mrg ld%- %0,%1
3872 1.1.1.2 mrg bis $31,%r1,%0
3873 1.1.1.2 mrg ldq %0,%1
3874 1.1.1.2 mrg st%- %R1,%0
3875 1.1.1.2 mrg stq %r1,%0
3876 1.1.1.2 mrg itoft %1,%0
3877 1.1.1.2 mrg ftoit %1,%0"
3878 1.1 mrg [(set_attr "type" "fcpys,fld,ilog,ild,fst,ist,itof,ftoi")
3879 1.1.1.4 mrg (set_attr "isa" "*,*,*,*,*,*,fix,fix")])
3880 1.1 mrg
3881 1.1 mrg ;; Subregs suck for register allocation. Pretend we can move TFmode
3882 1.1 mrg ;; data between general registers until after reload.
3883 1.1 mrg ;; ??? Is this still true now that we have the lower-subreg pass?
3884 1.1 mrg
3885 1.1 mrg (define_expand "movtf"
3886 1.1 mrg [(set (match_operand:TF 0 "nonimmediate_operand")
3887 1.1 mrg (match_operand:TF 1 "general_operand"))]
3888 1.1.1.2 mrg ""
3889 1.1 mrg {
3890 1.1.1.2 mrg if (MEM_P (operands[0])
3891 1.1.1.2 mrg && ! reg_or_0_operand (operands[1], TFmode))
3892 1.1 mrg operands[1] = force_reg (TFmode, operands[1]);
3893 1.1.1.2 mrg })
3894 1.1.1.2 mrg
3895 1.1.1.2 mrg (define_insn_and_split "*movtf_internal"
3896 1.1 mrg [(set (match_operand:TF 0 "nonimmediate_operand" "=r,o")
3897 1.1 mrg (match_operand:TF 1 "input_operand" "roG,rG"))]
3898 1.1.1.2 mrg "register_operand (operands[0], TFmode)
3899 1.1.1.2 mrg || reg_or_0_operand (operands[1], TFmode)"
3900 1.1 mrg "#"
3901 1.1 mrg "reload_completed"
3902 1.1 mrg [(set (match_dup 0) (match_dup 2))
3903 1.1.1.2 mrg (set (match_dup 1) (match_dup 3))]
3904 1.1.1.2 mrg "alpha_split_tmode_pair (operands, TFmode, true);")
3905 1.1.1.2 mrg
3906 1.1.1.2 mrg ;; We do two major things here: handle mem->mem and construct long
3907 1.1 mrg ;; constants.
3908 1.1 mrg
3909 1.1 mrg (define_expand "movsi"
3910 1.1 mrg [(set (match_operand:SI 0 "nonimmediate_operand")
3911 1.1 mrg (match_operand:SI 1 "general_operand"))]
3912 1.1 mrg ""
3913 1.1.1.2 mrg {
3914 1.1.1.2 mrg if (alpha_expand_mov (SImode, operands))
3915 1.1.1.2 mrg DONE;
3916 1.1.1.2 mrg })
3917 1.1 mrg
3918 1.1 mrg (define_insn "*movsi"
3919 1.1 mrg [(set (match_operand:SI 0 "nonimmediate_operand" "=r,r,r,r,r,m,r")
3920 1.1 mrg (match_operand:SI 1 "input_operand" "rJ,K,L,n,m,rJ,s"))]
3921 1.1 mrg "register_operand (operands[0], SImode)
3922 1.1.1.2 mrg || reg_or_0_operand (operands[1], SImode)"
3923 1.1.1.2 mrg "@
3924 1.1 mrg bis $31,%r1,%0
3925 1.1 mrg lda %0,%1($31)
3926 1.1 mrg ldah %0,%h1($31)
3927 1.1 mrg #
3928 1.1 mrg ldl %0,%1
3929 1.1 mrg stl %r1,%0
3930 1.1 mrg lda %0,%1"
3931 1.1 mrg [(set_attr "type" "ilog,iadd,iadd,multi,ild,ist,ldsym")
3932 1.1 mrg (set_attr "isa" "*,*,*,*,*,*,vms")])
3933 1.1 mrg
3934 1.1 mrg ;; Split a load of a large constant into the appropriate two-insn
3935 1.1 mrg ;; sequence.
3936 1.1.1.2 mrg
3937 1.1 mrg (define_split
3938 1.1 mrg [(set (match_operand:SI 0 "register_operand")
3939 1.1 mrg (match_operand:SI 1 "non_add_const_operand"))]
3940 1.1 mrg ""
3941 1.1 mrg [(const_int 0)]
3942 1.1 mrg {
3943 1.1 mrg if (alpha_split_const_mov (SImode, operands))
3944 1.1 mrg DONE;
3945 1.1 mrg else
3946 1.1 mrg FAIL;
3947 1.1.1.2 mrg })
3948 1.1.1.2 mrg
3949 1.1 mrg (define_insn "*movdi_er_low_l"
3950 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
3951 1.1 mrg (lo_sum:DI (match_operand:DI 1 "register_operand" "r")
3952 1.1 mrg (match_operand:DI 2 "local_symbolic_operand")))]
3953 1.1 mrg "TARGET_EXPLICIT_RELOCS"
3954 1.1 mrg {
3955 1.1.1.2 mrg if (true_regnum (operands[1]) == 29)
3956 1.1.1.2 mrg return "lda %0,%2(%1)\t\t!gprel";
3957 1.1 mrg else
3958 1.1 mrg return "lda %0,%2(%1)\t\t!gprellow";
3959 1.1 mrg }
3960 1.1 mrg [(set_attr "usegp" "yes")])
3961 1.1 mrg
3962 1.1 mrg (define_split
3963 1.1 mrg [(set (match_operand:DI 0 "register_operand")
3964 1.1 mrg (match_operand:DI 1 "small_symbolic_operand"))]
3965 1.1.1.2 mrg "TARGET_EXPLICIT_RELOCS && reload_completed"
3966 1.1 mrg [(set (match_dup 0)
3967 1.1 mrg (lo_sum:DI (match_dup 2) (match_dup 1)))]
3968 1.1 mrg "operands[2] = pic_offset_table_rtx;")
3969 1.1 mrg
3970 1.1 mrg (define_split
3971 1.1 mrg [(set (match_operand:DI 0 "register_operand")
3972 1.1 mrg (match_operand:DI 1 "local_symbolic_operand"))]
3973 1.1 mrg "TARGET_EXPLICIT_RELOCS && reload_completed"
3974 1.1 mrg [(set (match_dup 0)
3975 1.1.1.2 mrg (plus:DI (match_dup 2) (high:DI (match_dup 1))))
3976 1.1.1.2 mrg (set (match_dup 0)
3977 1.1 mrg (lo_sum:DI (match_dup 0) (match_dup 1)))]
3978 1.1 mrg "operands[2] = pic_offset_table_rtx;")
3979 1.1 mrg
3980 1.1 mrg (define_split
3981 1.1 mrg [(match_operand 0 "some_small_symbolic_operand")]
3982 1.1 mrg ""
3983 1.1 mrg [(match_dup 0)]
3984 1.1 mrg "operands[0] = split_small_symbolic_operand (operands[0]);")
3985 1.1 mrg
3986 1.1 mrg ;; Accepts any symbolic, not just global, since function calls that
3987 1.1 mrg ;; don't go via bsr still use !literal in hopes of linker relaxation.
3988 1.1.1.2 mrg (define_insn "movdi_er_high_g"
3989 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand" "=r")
3990 1.1 mrg (unspec:DI [(match_operand:DI 1 "register_operand" "r")
3991 1.1 mrg (match_operand:DI 2 "symbolic_operand")
3992 1.1 mrg (match_operand 3 "const_int_operand")]
3993 1.1 mrg UNSPEC_LITERAL))]
3994 1.1 mrg "TARGET_EXPLICIT_RELOCS"
3995 1.1 mrg {
3996 1.1 mrg if (INTVAL (operands[3]) == 0)
3997 1.1 mrg return "ldq %0,%2(%1)\t\t!literal";
3998 1.1 mrg else
3999 1.1 mrg return "ldq %0,%2(%1)\t\t!literal!%3";
4000 1.1.1.2 mrg }
4001 1.1.1.2 mrg [(set_attr "type" "ldsym")])
4002 1.1 mrg
4003 1.1 mrg (define_split
4004 1.1 mrg [(set (match_operand:DI 0 "register_operand")
4005 1.1 mrg (match_operand:DI 1 "global_symbolic_operand"))]
4006 1.1 mrg "TARGET_EXPLICIT_RELOCS && reload_completed"
4007 1.1 mrg [(set (match_dup 0)
4008 1.1 mrg (unspec:DI [(match_dup 2)
4009 1.1 mrg (match_dup 1)
4010 1.1 mrg (const_int 0)] UNSPEC_LITERAL))]
4011 1.1 mrg "operands[2] = pic_offset_table_rtx;")
4012 1.1 mrg
4013 1.1 mrg (define_insn "movdi_er_tlsgd"
4014 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand" "=r")
4015 1.1 mrg (unspec:DI [(match_operand:DI 1 "register_operand" "r")
4016 1.1 mrg (match_operand:DI 2 "symbolic_operand")
4017 1.1 mrg (match_operand 3 "const_int_operand")]
4018 1.1 mrg UNSPEC_TLSGD))]
4019 1.1 mrg "HAVE_AS_TLS"
4020 1.1 mrg {
4021 1.1 mrg if (INTVAL (operands[3]) == 0)
4022 1.1 mrg return "lda %0,%2(%1)\t\t!tlsgd";
4023 1.1 mrg else
4024 1.1 mrg return "lda %0,%2(%1)\t\t!tlsgd!%3";
4025 1.1 mrg })
4026 1.1 mrg
4027 1.1.1.2 mrg (define_insn "movdi_er_tlsldm"
4028 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
4029 1.1 mrg (unspec:DI [(match_operand:DI 1 "register_operand" "r")
4030 1.1 mrg (match_operand 2 "const_int_operand")]
4031 1.1 mrg UNSPEC_TLSLDM))]
4032 1.1 mrg "HAVE_AS_TLS"
4033 1.1 mrg {
4034 1.1 mrg if (INTVAL (operands[2]) == 0)
4035 1.1.1.2 mrg return "lda %0,%&(%1)\t\t!tlsldm";
4036 1.1.1.2 mrg else
4037 1.1 mrg return "lda %0,%&(%1)\t\t!tlsldm!%2";
4038 1.1 mrg })
4039 1.1 mrg
4040 1.1 mrg (define_insn "*movdi_er_gotdtp"
4041 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
4042 1.1 mrg (unspec:DI [(match_operand:DI 1 "register_operand" "r")
4043 1.1 mrg (match_operand:DI 2 "symbolic_operand")]
4044 1.1 mrg UNSPEC_DTPREL))]
4045 1.1 mrg "HAVE_AS_TLS"
4046 1.1 mrg "ldq %0,%2(%1)\t\t!gotdtprel"
4047 1.1 mrg [(set_attr "type" "ild")
4048 1.1 mrg (set_attr "usegp" "yes")])
4049 1.1.1.2 mrg
4050 1.1 mrg (define_split
4051 1.1 mrg [(set (match_operand:DI 0 "register_operand")
4052 1.1 mrg (match_operand:DI 1 "gotdtp_symbolic_operand"))]
4053 1.1 mrg "HAVE_AS_TLS && reload_completed"
4054 1.1 mrg [(set (match_dup 0)
4055 1.1 mrg (unspec:DI [(match_dup 2)
4056 1.1 mrg (match_dup 1)] UNSPEC_DTPREL))]
4057 1.1.1.2 mrg {
4058 1.1.1.2 mrg operands[1] = XVECEXP (XEXP (operands[1], 0), 0, 0);
4059 1.1 mrg operands[2] = pic_offset_table_rtx;
4060 1.1 mrg })
4061 1.1 mrg
4062 1.1 mrg (define_insn "*movdi_er_gottp"
4063 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
4064 1.1 mrg (unspec:DI [(match_operand:DI 1 "register_operand" "r")
4065 1.1 mrg (match_operand:DI 2 "symbolic_operand")]
4066 1.1 mrg UNSPEC_TPREL))]
4067 1.1 mrg "HAVE_AS_TLS"
4068 1.1.1.2 mrg "ldq %0,%2(%1)\t\t!gottprel"
4069 1.1 mrg [(set_attr "type" "ild")
4070 1.1.1.2 mrg (set_attr "usegp" "yes")])
4071 1.1 mrg
4072 1.1.1.2 mrg (define_split
4073 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand")
4074 1.1.1.2 mrg (match_operand:DI 1 "gottp_symbolic_operand"))]
4075 1.1 mrg "HAVE_AS_TLS && reload_completed"
4076 1.1 mrg [(set (match_dup 0)
4077 1.1 mrg (unspec:DI [(match_dup 2)
4078 1.1 mrg (match_dup 1)] UNSPEC_TPREL))]
4079 1.1 mrg {
4080 1.1 mrg operands[1] = XVECEXP (XEXP (operands[1], 0), 0, 0);
4081 1.1 mrg operands[2] = pic_offset_table_rtx;
4082 1.1 mrg })
4083 1.1 mrg
4084 1.1 mrg (define_insn "*movdi"
4085 1.1.1.2 mrg [(set (match_operand:DI 0 "nonimmediate_operand"
4086 1.1 mrg "=r,r,r,r,r,r,r,r, m, *f,*f, Q, r,*f")
4087 1.1 mrg (match_operand:DI 1 "input_operand"
4088 1.1 mrg "rJ,K,L,T,s,n,s,m,rJ,*fJ, Q,*f,*f, r"))]
4089 1.1 mrg "register_operand (operands[0], DImode)
4090 1.1.1.2 mrg || reg_or_0_operand (operands[1], DImode)"
4091 1.1.1.2 mrg "@
4092 1.1.1.2 mrg mov %r1,%0
4093 1.1 mrg lda %0,%1($31)
4094 1.1 mrg ldah %0,%h1($31)
4095 1.1 mrg #
4096 1.1 mrg #
4097 1.1 mrg #
4098 1.1 mrg lda %0,%1
4099 1.1 mrg ldq%A1 %0,%1
4100 1.1 mrg stq%A0 %r1,%0
4101 1.1 mrg fmov %R1,%0
4102 1.1 mrg ldt %0,%1
4103 1.1 mrg stt %R1,%0
4104 1.1 mrg ftoit %1,%0
4105 1.1 mrg itoft %1,%0"
4106 1.1 mrg [(set_attr "type" "ilog,iadd,iadd,iadd,ldsym,multi,ldsym,ild,ist,fcpys,fld,fst,ftoi,itof")
4107 1.1 mrg (set_attr "isa" "*,*,*,er,er,*,ner,*,*,*,*,*,fix,fix")
4108 1.1 mrg (set_attr "usegp" "*,*,*,yes,*,*,*,*,*,*,*,*,*,*")])
4109 1.1 mrg
4110 1.1.1.2 mrg ;; VMS needs to set up "vms_base_regno" for unwinding. This move
4111 1.1.1.2 mrg ;; often appears dead to the life analysis code, at which point we
4112 1.1 mrg ;; die for emitting dead prologue instructions. Force this live.
4113 1.1 mrg
4114 1.1 mrg (define_insn "force_movdi"
4115 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
4116 1.1 mrg (unspec_volatile:DI [(match_operand:DI 1 "register_operand" "r")]
4117 1.1 mrg UNSPECV_FORCE_MOV))]
4118 1.1 mrg ""
4119 1.1 mrg "mov %1,%0"
4120 1.1 mrg [(set_attr "type" "ilog")])
4121 1.1 mrg
4122 1.1.1.2 mrg ;; We do three major things here: handle mem->mem, put 64-bit constants in
4123 1.1.1.2 mrg ;; memory, and construct long 32-bit constants.
4124 1.1 mrg
4125 1.1 mrg (define_expand "movdi"
4126 1.1 mrg [(set (match_operand:DI 0 "nonimmediate_operand")
4127 1.1 mrg (match_operand:DI 1 "general_operand"))]
4128 1.1 mrg ""
4129 1.1 mrg {
4130 1.1 mrg if (alpha_expand_mov (DImode, operands))
4131 1.1 mrg DONE;
4132 1.1 mrg })
4133 1.1 mrg
4134 1.1 mrg ;; Split a load of a large constant into the appropriate two-insn
4135 1.1 mrg ;; sequence.
4136 1.1 mrg
4137 1.1 mrg (define_split
4138 1.1 mrg [(set (match_operand:DI 0 "register_operand")
4139 1.1 mrg (match_operand:DI 1 "non_add_const_operand"))]
4140 1.1 mrg ""
4141 1.1 mrg [(const_int 0)]
4142 1.1 mrg {
4143 1.1 mrg if (alpha_split_const_mov (DImode, operands))
4144 1.1 mrg DONE;
4145 1.1 mrg else
4146 1.1 mrg FAIL;
4147 1.1 mrg })
4148 1.1 mrg
4149 1.1.1.2 mrg ;; We need to prevent reload from splitting TImode moves, because it
4150 1.1 mrg ;; might decide to overwrite a pointer with the value it points to.
4151 1.1 mrg ;; In that case we have to do the loads in the appropriate order so
4152 1.1.1.2 mrg ;; that the pointer is not destroyed too early.
4153 1.1.1.2 mrg
4154 1.1 mrg (define_insn_and_split "*movti_internal"
4155 1.1 mrg [(set (match_operand:TI 0 "nonimmediate_operand" "=r,o")
4156 1.1 mrg (match_operand:TI 1 "input_operand" "roJ,rJ"))]
4157 1.1 mrg "(register_operand (operands[0], TImode)
4158 1.1 mrg /* Prevent rematerialization of constants. */
4159 1.1 mrg && ! CONSTANT_P (operands[1]))
4160 1.1 mrg || reg_or_0_operand (operands[1], TImode)"
4161 1.1 mrg "#"
4162 1.1 mrg "reload_completed"
4163 1.1 mrg [(set (match_dup 0) (match_dup 2))
4164 1.1 mrg (set (match_dup 1) (match_dup 3))]
4165 1.1.1.4 mrg "alpha_split_tmode_pair (operands, TImode, true);")
4166 1.1 mrg
4167 1.1 mrg (define_expand "movti"
4168 1.1 mrg [(set (match_operand:TI 0 "nonimmediate_operand")
4169 1.1 mrg (match_operand:TI 1 "general_operand"))]
4170 1.1 mrg ""
4171 1.1 mrg {
4172 1.1 mrg if (MEM_P (operands[0])
4173 1.1 mrg && ! reg_or_0_operand (operands[1], TImode))
4174 1.1 mrg operands[1] = force_reg (TImode, operands[1]);
4175 1.1 mrg
4176 1.1 mrg if (operands[1] == const0_rtx)
4177 1.1 mrg ;
4178 1.1 mrg /* We must put 64-bit constants in memory. We could keep the
4179 1.1 mrg 32-bit constants in TImode and rely on the splitter, but
4180 1.1 mrg this doesn't seem to be worth the pain. */
4181 1.1 mrg else if (CONST_SCALAR_INT_P (operands[1]))
4182 1.1 mrg {
4183 1.1 mrg rtx in[2], out[2], target;
4184 1.1 mrg
4185 1.1 mrg gcc_assert (can_create_pseudo_p ());
4186 1.1 mrg
4187 1.1 mrg split_double (operands[1], &in[0], &in[1]);
4188 1.1 mrg
4189 1.1 mrg if (in[0] == const0_rtx)
4190 1.1 mrg out[0] = const0_rtx;
4191 1.1 mrg else
4192 1.1 mrg {
4193 1.1 mrg out[0] = gen_reg_rtx (DImode);
4194 1.1 mrg emit_insn (gen_movdi (out[0], in[0]));
4195 1.1 mrg }
4196 1.1 mrg
4197 1.1 mrg if (in[1] == const0_rtx)
4198 1.1.1.4 mrg out[1] = const0_rtx;
4199 1.1 mrg else
4200 1.1 mrg {
4201 1.1 mrg out[1] = gen_reg_rtx (DImode);
4202 1.1 mrg emit_insn (gen_movdi (out[1], in[1]));
4203 1.1 mrg }
4204 1.1 mrg
4205 1.1 mrg if (!REG_P (operands[0]))
4206 1.1 mrg target = gen_reg_rtx (TImode);
4207 1.1 mrg else
4208 1.1 mrg target = operands[0];
4209 1.1 mrg
4210 1.1 mrg emit_insn (gen_movdi (operand_subword (target, 0, 0, TImode), out[0]));
4211 1.1 mrg emit_insn (gen_movdi (operand_subword (target, 1, 0, TImode), out[1]));
4212 1.1 mrg
4213 1.1 mrg if (target != operands[0])
4214 1.1.1.2 mrg emit_insn (gen_rtx_SET (operands[0], target));
4215 1.1.1.2 mrg
4216 1.1.1.2 mrg DONE;
4217 1.1 mrg }
4218 1.1 mrg })
4219 1.1.1.2 mrg
4220 1.1 mrg ;; These are the partial-word cases.
4221 1.1 mrg ;;
4222 1.1.1.2 mrg ;; First we have the code to load an aligned word. Operand 0 is the register
4223 1.1.1.2 mrg ;; in which to place the result. It's mode is QImode or HImode. Operand 1
4224 1.1.1.2 mrg ;; is an SImode MEM at the low-order byte of the proper word. Operand 2 is the
4225 1.1 mrg ;; number of bits within the word that the value is. Operand 3 is an SImode
4226 1.1 mrg ;; scratch register. If operand 0 is a hard register, operand 3 may be the
4227 1.1.1.2 mrg ;; same register. It is allowed to conflict with operand 1 as well.
4228 1.1 mrg
4229 1.1 mrg (define_expand "aligned_loadqi"
4230 1.1 mrg [(set (match_operand:SI 3 "register_operand")
4231 1.1 mrg (match_operand:SI 1 "memory_operand"))
4232 1.1 mrg (set (match_operand:DI 0 "register_operand")
4233 1.1 mrg (zero_extract:DI (subreg:DI (match_dup 3) 0)
4234 1.1 mrg (const_int 8)
4235 1.1 mrg (match_operand:DI 2 "const_int_operand")))])
4236 1.1 mrg
4237 1.1.1.2 mrg (define_expand "aligned_loadhi"
4238 1.1.1.2 mrg [(set (match_operand:SI 3 "register_operand")
4239 1.1 mrg (match_operand:SI 1 "memory_operand"))
4240 1.1.1.2 mrg (set (match_operand:DI 0 "register_operand")
4241 1.1 mrg (zero_extract:DI (subreg:DI (match_dup 3) 0)
4242 1.1.1.2 mrg (const_int 16)
4243 1.1 mrg (match_operand:DI 2 "const_int_operand")))])
4244 1.1 mrg
4245 1.1.1.2 mrg ;; Similar for unaligned loads, where we use the sequence from the
4246 1.1 mrg ;; Alpha Architecture manual. We have to distinguish between little-endian
4247 1.1 mrg ;; and big-endian systems as the sequences are different.
4248 1.1.1.2 mrg ;;
4249 1.1.1.2 mrg ;; Operand 1 is the address. Operands 2 and 3 are temporaries, where
4250 1.1 mrg ;; operand 3 can overlap the input and output registers.
4251 1.1.1.2 mrg
4252 1.1 mrg (define_expand "unaligned_loadqi"
4253 1.1.1.2 mrg [(set (match_operand:DI 2 "register_operand")
4254 1.1 mrg (mem:DI (and:DI (match_operand:DI 1 "address_operand")
4255 1.1 mrg (const_int -8))))
4256 1.1.1.2 mrg (set (match_operand:DI 3 "register_operand")
4257 1.1 mrg (match_dup 1))
4258 1.1 mrg (set (match_operand:DI 0 "register_operand")
4259 1.1 mrg (zero_extract:DI (match_dup 2)
4260 1.1 mrg (const_int 8)
4261 1.1 mrg (ashift:DI (match_dup 3) (const_int 3))))])
4262 1.1 mrg
4263 1.1 mrg (define_expand "unaligned_loadhi"
4264 1.1.1.2 mrg [(set (match_operand:DI 2 "register_operand")
4265 1.1.1.2 mrg (mem:DI (and:DI (match_operand:DI 1 "address_operand")
4266 1.1 mrg (const_int -8))))
4267 1.1 mrg (set (match_operand:DI 3 "register_operand")
4268 1.1.1.2 mrg (match_dup 1))
4269 1.1.1.2 mrg (set (match_operand:DI 0 "register_operand")
4270 1.1.1.2 mrg (zero_extract:DI (match_dup 2)
4271 1.1 mrg (const_int 16)
4272 1.1 mrg (ashift:DI (match_dup 3) (const_int 3))))])
4273 1.1 mrg
4274 1.1 mrg ;; Storing an aligned byte or word requires two temporaries. Operand 0 is the
4275 1.1 mrg ;; aligned SImode MEM. Operand 1 is the register containing the
4276 1.1 mrg ;; byte or word to store. Operand 2 is the number of bits within the word that
4277 1.1 mrg ;; the value should be placed. Operands 3 and 4 are SImode temporaries.
4278 1.1 mrg
4279 1.1 mrg (define_expand "aligned_store"
4280 1.1 mrg [(set (match_operand:SI 3 "register_operand")
4281 1.1 mrg (match_operand:SI 0 "memory_operand"))
4282 1.1 mrg (set (subreg:DI (match_dup 3) 0)
4283 1.1 mrg (and:DI (subreg:DI (match_dup 3) 0) (match_dup 5)))
4284 1.1 mrg (set (subreg:DI (match_operand:SI 4 "register_operand") 0)
4285 1.1 mrg (ashift:DI (zero_extend:DI (match_operand 1 "register_operand"))
4286 1.1 mrg (match_operand:DI 2 "const_int_operand")))
4287 1.1.1.2 mrg (set (subreg:DI (match_dup 4) 0)
4288 1.1.1.2 mrg (ior:DI (subreg:DI (match_dup 4) 0) (subreg:DI (match_dup 3) 0)))
4289 1.1.1.2 mrg (set (match_dup 0) (match_dup 4))]
4290 1.1 mrg ""
4291 1.1.1.2 mrg {
4292 1.1 mrg operands[5] = GEN_INT (~ (GET_MODE_MASK (GET_MODE (operands[1]))
4293 1.1 mrg << INTVAL (operands[2])));
4294 1.1.1.2 mrg })
4295 1.1 mrg
4296 1.1 mrg ;; For the unaligned byte and halfword cases, we use code similar to that
4297 1.1.1.2 mrg ;; in the ;; Architecture book, but reordered to lower the number of registers
4298 1.1.1.2 mrg ;; required. Operand 0 is the address. Operand 1 is the data to store.
4299 1.1.1.2 mrg ;; Operands 2, 3, and 4 are DImode temporaries, where operands 2 and 4 may
4300 1.1 mrg ;; be the same temporary, if desired. If the address is in a register,
4301 1.1 mrg ;; operand 2 can be that register.
4302 1.1 mrg
4303 1.1 mrg (define_expand "unaligned_store<mode>"
4304 1.1 mrg [(set (match_operand:DI 3 "register_operand")
4305 1.1.1.2 mrg (mem:DI (and:DI (match_operand:DI 0 "address_operand")
4306 1.1 mrg (const_int -8))))
4307 1.1 mrg (set (match_operand:DI 2 "register_operand")
4308 1.1 mrg (match_dup 0))
4309 1.1 mrg (set (match_dup 3)
4310 1.1 mrg (and:DI (not:DI (ashift:DI (match_dup 5)
4311 1.1.1.2 mrg (ashift:DI (match_dup 2) (const_int 3))))
4312 1.1.1.2 mrg (match_dup 3)))
4313 1.1.1.2 mrg (set (match_operand:DI 4 "register_operand")
4314 1.1 mrg (ashift:DI (zero_extend:DI
4315 1.1 mrg (match_operand:I12MODE 1 "register_operand"))
4316 1.1 mrg (ashift:DI (match_dup 2) (const_int 3))))
4317 1.1.1.2 mrg (set (match_dup 4) (ior:DI (match_dup 4) (match_dup 3)))
4318 1.1.1.2 mrg (set (mem:DI (and:DI (match_dup 0) (const_int -8)))
4319 1.1 mrg (match_dup 4))]
4320 1.1 mrg ""
4321 1.1 mrg "operands[5] = GEN_INT (GET_MODE_MASK (<MODE>mode));")
4322 1.1.1.2 mrg
4323 1.1.1.2 mrg ;; Here are the define_expand's for QI and HI moves that use the above
4324 1.1.1.2 mrg ;; patterns. We have the normal sets, plus the ones that need scratch
4325 1.1.1.2 mrg ;; registers for reload.
4326 1.1.1.2 mrg
4327 1.1.1.2 mrg (define_expand "mov<mode>"
4328 1.1.1.2 mrg [(set (match_operand:I12MODE 0 "nonimmediate_operand")
4329 1.1.1.2 mrg (match_operand:I12MODE 1 "general_operand"))]
4330 1.1.1.2 mrg ""
4331 1.1.1.2 mrg {
4332 1.1.1.2 mrg if (TARGET_BWX
4333 1.1.1.2 mrg ? alpha_expand_mov (<MODE>mode, operands)
4334 1.1.1.2 mrg : alpha_expand_mov_nobwx (<MODE>mode, operands))
4335 1.1.1.2 mrg DONE;
4336 1.1.1.2 mrg })
4337 1.1.1.2 mrg
4338 1.1.1.2 mrg (define_insn "*movqi"
4339 1.1.1.2 mrg [(set (match_operand:QI 0 "nonimmediate_operand" "=r,r,r,m")
4340 1.1.1.2 mrg (match_operand:QI 1 "input_operand" "rJ,n,m,rJ"))]
4341 1.1.1.2 mrg "register_operand (operands[0], QImode)
4342 1.1.1.2 mrg || reg_or_0_operand (operands[1], QImode)"
4343 1.1.1.2 mrg "@
4344 1.1.1.2 mrg bis $31,%r1,%0
4345 1.1.1.2 mrg lda %0,%L1($31)
4346 1.1.1.2 mrg ldbu %0,%1
4347 1.1 mrg stb %r1,%0"
4348 1.1 mrg [(set_attr "type" "ilog,iadd,ild,ist")
4349 1.1 mrg (set_attr "isa" "*,*,bwx,bwx")])
4350 1.1 mrg
4351 1.1.1.2 mrg (define_insn "*movhi"
4352 1.1.1.2 mrg [(set (match_operand:HI 0 "nonimmediate_operand" "=r,r,r,m")
4353 1.1 mrg (match_operand:HI 1 "input_operand" "rJ,n,m,rJ"))]
4354 1.1 mrg "register_operand (operands[0], HImode)
4355 1.1 mrg || reg_or_0_operand (operands[1], HImode)"
4356 1.1 mrg "@
4357 1.1 mrg bis $31,%r1,%0
4358 1.1 mrg lda %0,%L1($31)
4359 1.1 mrg ldwu %0,%1
4360 1.1 mrg stw %r1,%0"
4361 1.1 mrg [(set_attr "type" "ilog,iadd,ild,ist")
4362 1.1 mrg (set_attr "isa" "*,*,bwx,bwx")])
4363 1.1 mrg
4364 1.1 mrg ;; We need to hook into the extra support that we have for HImode
4365 1.1 mrg ;; reloads when BWX insns are not available.
4366 1.1 mrg (define_expand "movcqi"
4367 1.1 mrg [(set (match_operand:CQI 0 "nonimmediate_operand")
4368 1.1 mrg (match_operand:CQI 1 "general_operand"))]
4369 1.1 mrg "!TARGET_BWX"
4370 1.1 mrg {
4371 1.1 mrg if (GET_CODE (operands[0]) == CONCAT || GET_CODE (operands[1]) == CONCAT)
4372 1.1 mrg ;
4373 1.1 mrg else if (!any_memory_operand (operands[0], CQImode))
4374 1.1 mrg {
4375 1.1 mrg if (!any_memory_operand (operands[1], CQImode))
4376 1.1 mrg {
4377 1.1 mrg emit_move_insn (gen_lowpart (HImode, operands[0]),
4378 1.1 mrg gen_lowpart (HImode, operands[1]));
4379 1.1 mrg DONE;
4380 1.1 mrg }
4381 1.1 mrg if (aligned_memory_operand (operands[1], CQImode))
4382 1.1 mrg {
4383 1.1 mrg bool done;
4384 1.1 mrg do_aligned1:
4385 1.1 mrg operands[1] = gen_lowpart (HImode, operands[1]);
4386 1.1 mrg do_aligned2:
4387 1.1 mrg operands[0] = gen_lowpart (HImode, operands[0]);
4388 1.1 mrg done = alpha_expand_mov_nobwx (HImode, operands);
4389 1.1 mrg gcc_assert (done);
4390 1.1 mrg DONE;
4391 1.1 mrg }
4392 1.1 mrg }
4393 1.1 mrg else if (aligned_memory_operand (operands[0], CQImode))
4394 1.1 mrg {
4395 1.1 mrg if (MEM_P (operands[1]))
4396 1.1 mrg {
4397 1.1 mrg rtx x = gen_reg_rtx (HImode);
4398 1.1 mrg emit_move_insn (gen_lowpart (CQImode, x), operands[1]);
4399 1.1 mrg operands[1] = x;
4400 1.1 mrg goto do_aligned2;
4401 1.1 mrg }
4402 1.1 mrg goto do_aligned1;
4403 1.1 mrg }
4404 1.1 mrg
4405 1.1 mrg gcc_assert (!reload_in_progress);
4406 1.1 mrg emit_move_complex_parts (operands[0], operands[1]);
4407 1.1 mrg DONE;
4408 1.1 mrg })
4409 1.1 mrg
4410 1.1 mrg ;; Here are the versions for reload.
4411 1.1 mrg ;;
4412 1.1 mrg ;; The aligned input case is recognized early in alpha_secondary_reload
4413 1.1 mrg ;; in order to avoid allocating an unnecessary scratch register.
4414 1.1 mrg ;;
4415 1.1 mrg ;; Note that in the unaligned cases we know that the operand must not be
4416 1.1 mrg ;; a pseudo-register because stack slots are always aligned references.
4417 1.1 mrg
4418 1.1 mrg (define_expand "reload_in<mode>"
4419 1.1 mrg [(parallel [(match_operand:RELOAD12 0 "register_operand" "=r")
4420 1.1 mrg (match_operand:RELOAD12 1 "any_memory_operand" "m")
4421 1.1 mrg (match_operand:TI 2 "register_operand" "=&r")])]
4422 1.1 mrg "!TARGET_BWX"
4423 1.1 mrg {
4424 1.1 mrg rtx scratch, seq, addr;
4425 1.1 mrg unsigned regno = REGNO (operands[2]);
4426 1.1 mrg
4427 1.1 mrg /* It is possible that one of the registers we got for operands[2]
4428 1.1 mrg might coincide with that of operands[0] (which is why we made
4429 1.1 mrg it TImode). Pick the other one to use as our scratch. */
4430 1.1 mrg if (regno == REGNO (operands[0]))
4431 1.1 mrg regno++;
4432 1.1.1.2 mrg scratch = gen_rtx_REG (DImode, regno);
4433 1.1 mrg
4434 1.1 mrg addr = get_unaligned_address (operands[1]);
4435 1.1 mrg operands[0] = gen_rtx_REG (DImode, REGNO (operands[0]));
4436 1.1 mrg seq = gen_unaligned_load<reloadmode> (operands[0], addr,
4437 1.1 mrg scratch, operands[0]);
4438 1.1 mrg alpha_set_memflags (seq, operands[1]);
4439 1.1 mrg
4440 1.1 mrg emit_insn (seq);
4441 1.1 mrg DONE;
4442 1.1 mrg })
4443 1.1 mrg
4444 1.1 mrg (define_expand "reload_out<mode>"
4445 1.1 mrg [(parallel [(match_operand:RELOAD12 0 "any_memory_operand" "=m")
4446 1.1 mrg (match_operand:RELOAD12 1 "register_operand" "r")
4447 1.1 mrg (match_operand:TI 2 "register_operand" "=&r")])]
4448 1.1 mrg "!TARGET_BWX"
4449 1.1 mrg {
4450 1.1 mrg unsigned regno = REGNO (operands[2]);
4451 1.1 mrg
4452 1.1 mrg if (<MODE>mode == CQImode)
4453 1.1 mrg {
4454 1.1 mrg operands[0] = gen_lowpart (HImode, operands[0]);
4455 1.1 mrg operands[1] = gen_lowpart (HImode, operands[1]);
4456 1.1 mrg }
4457 1.1 mrg
4458 1.1 mrg if (aligned_memory_operand (operands[0], <MODE>mode))
4459 1.1 mrg {
4460 1.1 mrg emit_insn (gen_reload_out<reloadmode>_aligned
4461 1.1 mrg (operands[0], operands[1],
4462 1.1 mrg gen_rtx_REG (SImode, regno),
4463 1.1 mrg gen_rtx_REG (SImode, regno + 1)));
4464 1.1 mrg }
4465 1.1 mrg else
4466 1.1 mrg {
4467 1.1 mrg rtx addr = get_unaligned_address (operands[0]);
4468 1.1 mrg rtx scratch1 = gen_rtx_REG (DImode, regno);
4469 1.1 mrg rtx scratch2 = gen_rtx_REG (DImode, regno + 1);
4470 1.1 mrg rtx scratch3 = scratch1;
4471 1.1 mrg rtx seq;
4472 1.1 mrg
4473 1.1 mrg if (REG_P (addr))
4474 1.1 mrg scratch1 = addr;
4475 1.1 mrg
4476 1.1 mrg seq = gen_unaligned_store<reloadmode> (addr, operands[1], scratch1,
4477 1.1 mrg scratch2, scratch3);
4478 1.1 mrg alpha_set_memflags (seq, operands[0]);
4479 1.1 mrg emit_insn (seq);
4480 1.1 mrg }
4481 1.1 mrg DONE;
4482 1.1 mrg })
4483 1.1 mrg
4484 1.1 mrg ;; Helpers for the above. The way reload is structured, we can't
4485 1.1 mrg ;; always get a proper address for a stack slot during reload_foo
4486 1.1 mrg ;; expansion, so we must delay our address manipulations until after.
4487 1.1 mrg
4488 1.1 mrg (define_insn_and_split "reload_in<mode>_aligned"
4489 1.1 mrg [(set (match_operand:I12MODE 0 "register_operand" "=r")
4490 1.1 mrg (match_operand:I12MODE 1 "memory_operand" "m"))]
4491 1.1.1.2 mrg "!TARGET_BWX && (reload_in_progress || reload_completed)"
4492 1.1.1.2 mrg "#"
4493 1.1 mrg "!TARGET_BWX && reload_completed"
4494 1.1 mrg [(const_int 0)]
4495 1.1 mrg {
4496 1.1 mrg rtx aligned_mem, bitnum;
4497 1.1 mrg get_aligned_mem (operands[1], &aligned_mem, &bitnum);
4498 1.1 mrg emit_insn (gen_aligned_load<reloadmode>
4499 1.1 mrg (gen_lowpart (DImode, operands[0]), aligned_mem, bitnum,
4500 1.1 mrg gen_rtx_REG (SImode, REGNO (operands[0]))));
4501 1.1 mrg DONE;
4502 1.1 mrg })
4503 1.1 mrg
4504 1.1 mrg (define_insn_and_split "reload_out<mode>_aligned"
4505 1.1 mrg [(set (match_operand:I12MODE 0 "memory_operand" "=m")
4506 1.1 mrg (match_operand:I12MODE 1 "register_operand" "r"))
4507 1.1 mrg (clobber (match_operand:SI 2 "register_operand" "=&r"))
4508 1.1.1.2 mrg (clobber (match_operand:SI 3 "register_operand" "=&r"))]
4509 1.1 mrg "!TARGET_BWX && (reload_in_progress || reload_completed)"
4510 1.1 mrg "#"
4511 1.1.1.2 mrg "!TARGET_BWX && reload_completed"
4512 1.1.1.2 mrg [(const_int 0)]
4513 1.1 mrg {
4514 1.1 mrg rtx aligned_mem, bitnum;
4515 1.1 mrg get_aligned_mem (operands[0], &aligned_mem, &bitnum);
4516 1.1 mrg emit_insn (gen_aligned_store (aligned_mem, operands[1], bitnum,
4517 1.1 mrg operands[2], operands[3]));
4518 1.1 mrg DONE;
4519 1.1 mrg })
4520 1.1.1.2 mrg
4522 1.1 mrg ;; Vector operations
4523 1.1 mrg
4524 1.1 mrg (define_mode_iterator VEC [V8QI V4HI V2SI])
4525 1.1 mrg (define_mode_iterator VEC12 [V8QI V4HI])
4526 1.1 mrg
4527 1.1 mrg (define_expand "mov<mode>"
4528 1.1 mrg [(set (match_operand:VEC 0 "nonimmediate_operand")
4529 1.1 mrg (match_operand:VEC 1 "general_operand"))]
4530 1.1 mrg ""
4531 1.1 mrg {
4532 1.1 mrg if (alpha_expand_mov (<MODE>mode, operands))
4533 1.1.1.2 mrg DONE;
4534 1.1.1.2 mrg })
4535 1.1 mrg
4536 1.1 mrg (define_split
4537 1.1 mrg [(set (match_operand:VEC 0 "register_operand")
4538 1.1 mrg (match_operand:VEC 1 "non_zero_const_operand"))]
4539 1.1 mrg ""
4540 1.1 mrg [(const_int 0)]
4541 1.1 mrg {
4542 1.1 mrg if (alpha_split_const_mov (<MODE>mode, operands))
4543 1.1 mrg DONE;
4544 1.1.1.2 mrg else
4545 1.1.1.2 mrg FAIL;
4546 1.1 mrg })
4547 1.1 mrg
4548 1.1 mrg
4549 1.1 mrg (define_expand "movmisalign<mode>"
4550 1.1 mrg [(set (match_operand:VEC 0 "nonimmediate_operand")
4551 1.1 mrg (match_operand:VEC 1 "general_operand"))]
4552 1.1 mrg ""
4553 1.1 mrg {
4554 1.1 mrg alpha_expand_movmisalign (<MODE>mode, operands);
4555 1.1 mrg DONE;
4556 1.1.1.2 mrg })
4557 1.1.1.2 mrg
4558 1.1 mrg (define_insn "*mov<mode>_fix"
4559 1.1.1.2 mrg [(set (match_operand:VEC 0 "nonimmediate_operand" "=r,r,r,m,*f,*f,m,r,*f")
4560 1.1.1.2 mrg (match_operand:VEC 1 "input_operand" "rW,i,m,rW,*fW,m,*f,*f,r"))]
4561 1.1.1.2 mrg "register_operand (operands[0], <MODE>mode)
4562 1.1.1.2 mrg || reg_or_0_operand (operands[1], <MODE>mode)"
4563 1.1.1.2 mrg "@
4564 1.1 mrg bis $31,%r1,%0
4565 1.1.1.2 mrg #
4566 1.1 mrg ldq %0,%1
4567 1.1 mrg stq %r1,%0
4568 1.1 mrg cpys %R1,%R1,%0
4569 1.1 mrg ldt %0,%1
4570 1.1 mrg stt %R1,%0
4571 1.1 mrg ftoit %1,%0
4572 1.1 mrg itoft %1,%0"
4573 1.1 mrg [(set_attr "type" "ilog,multi,ild,ist,fcpys,fld,fst,ftoi,itof")
4574 1.1 mrg (set_attr "isa" "*,*,*,*,*,*,*,fix,fix")])
4575 1.1 mrg
4576 1.1 mrg (define_insn "<code><mode>3"
4577 1.1 mrg [(set (match_operand:VEC12 0 "register_operand" "=r")
4578 1.1 mrg (any_maxmin:VEC12
4579 1.1 mrg (match_operand:VEC12 1 "reg_or_0_operand" "rW")
4580 1.1 mrg (match_operand:VEC12 2 "reg_or_0_operand" "rW")))]
4581 1.1 mrg "TARGET_MAX"
4582 1.1 mrg "<maxmin><modesuffix> %r1,%r2,%0"
4583 1.1 mrg [(set_attr "type" "mvi")])
4584 1.1 mrg
4585 1.1 mrg (define_insn "one_cmpl<mode>2"
4586 1.1 mrg [(set (match_operand:VEC 0 "register_operand" "=r")
4587 1.1 mrg (not:VEC (match_operand:VEC 1 "register_operand" "r")))]
4588 1.1 mrg ""
4589 1.1 mrg "ornot $31,%1,%0"
4590 1.1 mrg [(set_attr "type" "ilog")])
4591 1.1 mrg
4592 1.1 mrg (define_insn "and<mode>3"
4593 1.1 mrg [(set (match_operand:VEC 0 "register_operand" "=r")
4594 1.1 mrg (and:VEC (match_operand:VEC 1 "register_operand" "r")
4595 1.1 mrg (match_operand:VEC 2 "register_operand" "r")))]
4596 1.1 mrg ""
4597 1.1 mrg "and %1,%2,%0"
4598 1.1 mrg [(set_attr "type" "ilog")])
4599 1.1 mrg
4600 1.1 mrg (define_insn "*andnot<mode>3"
4601 1.1 mrg [(set (match_operand:VEC 0 "register_operand" "=r")
4602 1.1 mrg (and:VEC (not:VEC (match_operand:VEC 1 "register_operand" "r"))
4603 1.1 mrg (match_operand:VEC 2 "register_operand" "r")))]
4604 1.1 mrg ""
4605 1.1 mrg "bic %2,%1,%0"
4606 1.1 mrg [(set_attr "type" "ilog")])
4607 1.1 mrg
4608 1.1 mrg (define_insn "ior<mode>3"
4609 1.1 mrg [(set (match_operand:VEC 0 "register_operand" "=r")
4610 1.1 mrg (ior:VEC (match_operand:VEC 1 "register_operand" "r")
4611 1.1 mrg (match_operand:VEC 2 "register_operand" "r")))]
4612 1.1 mrg ""
4613 1.1 mrg "bis %1,%2,%0"
4614 1.1 mrg [(set_attr "type" "ilog")])
4615 1.1 mrg
4616 1.1 mrg (define_insn "*iornot<mode>3"
4617 1.1 mrg [(set (match_operand:VEC 0 "register_operand" "=r")
4618 1.1 mrg (ior:VEC (not:DI (match_operand:VEC 1 "register_operand" "r"))
4619 1.1 mrg (match_operand:VEC 2 "register_operand" "r")))]
4620 1.1 mrg ""
4621 1.1 mrg "ornot %2,%1,%0"
4622 1.1 mrg [(set_attr "type" "ilog")])
4623 1.1 mrg
4624 1.1.1.2 mrg (define_insn "xor<mode>3"
4625 1.1.1.2 mrg [(set (match_operand:VEC 0 "register_operand" "=r")
4626 1.1.1.2 mrg (xor:VEC (match_operand:VEC 1 "register_operand" "r")
4627 1.1 mrg (match_operand:VEC 2 "register_operand" "r")))]
4628 1.1 mrg ""
4629 1.1 mrg "xor %1,%2,%0"
4630 1.1 mrg [(set_attr "type" "ilog")])
4631 1.1 mrg
4632 1.1 mrg (define_insn "*xornot<mode>3"
4633 1.1 mrg [(set (match_operand:VEC 0 "register_operand" "=r")
4634 1.1.1.2 mrg (not:VEC (xor:VEC (match_operand:VEC 1 "register_operand" "r")
4635 1.1.1.2 mrg (match_operand:VEC 2 "register_operand" "r"))))]
4636 1.1.1.2 mrg ""
4637 1.1 mrg "eqv %1,%2,%0"
4638 1.1 mrg [(set_attr "type" "ilog")])
4639 1.1 mrg
4640 1.1 mrg (define_expand "vec_shl_<mode>"
4641 1.1 mrg [(set (match_operand:VEC 0 "register_operand")
4642 1.1 mrg (ashift:DI (match_operand:VEC 1 "register_operand")
4643 1.1 mrg (match_operand:DI 2 "reg_or_6bit_operand")))]
4644 1.1 mrg ""
4645 1.1.1.2 mrg {
4646 1.1.1.2 mrg operands[0] = gen_lowpart (DImode, operands[0]);
4647 1.1.1.2 mrg operands[1] = gen_lowpart (DImode, operands[1]);
4648 1.1.1.2 mrg })
4649 1.1.1.2 mrg
4650 1.1 mrg (define_expand "vec_shr_<mode>"
4651 1.1 mrg [(set (match_operand:VEC 0 "register_operand")
4652 1.1 mrg (lshiftrt:DI (match_operand:VEC 1 "register_operand")
4653 1.1 mrg (match_operand:DI 2 "reg_or_6bit_operand")))]
4654 1.1 mrg ""
4655 1.1 mrg {
4656 1.1 mrg operands[0] = gen_lowpart (DImode, operands[0]);
4657 1.1 mrg operands[1] = gen_lowpart (DImode, operands[1]);
4658 1.1 mrg })
4659 1.1 mrg
4661 1.1.1.2 mrg ;; Bit field extract patterns which use ext[wlq][lh]
4662 1.1 mrg
4663 1.1 mrg (define_expand "extvmisaligndi"
4664 1.1 mrg [(set (match_operand:DI 0 "register_operand")
4665 1.1.1.2 mrg (sign_extract:DI (match_operand:BLK 1 "memory_operand")
4666 1.1.1.2 mrg (match_operand:DI 2 "const_int_operand")
4667 1.1.1.2 mrg (match_operand:DI 3 "const_int_operand")))]
4668 1.1.1.2 mrg ""
4669 1.1.1.2 mrg {
4670 1.1 mrg /* We can do 16, 32 and 64 bit fields, if aligned on byte boundaries. */
4671 1.1 mrg if (INTVAL (operands[3]) % 8 != 0
4672 1.1 mrg || (INTVAL (operands[2]) != 16
4673 1.1 mrg && INTVAL (operands[2]) != 32
4674 1.1 mrg && INTVAL (operands[2]) != 64))
4675 1.1.1.2 mrg FAIL;
4676 1.1 mrg
4677 1.1 mrg alpha_expand_unaligned_load (operands[0], operands[1],
4678 1.1 mrg INTVAL (operands[2]) / 8,
4679 1.1.1.2 mrg INTVAL (operands[3]) / 8, 1);
4680 1.1 mrg DONE;
4681 1.1.1.2 mrg })
4682 1.1.1.2 mrg
4683 1.1.1.2 mrg (define_expand "extzvdi"
4684 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand")
4685 1.1.1.2 mrg (zero_extract:DI (match_operand:DI 1 "register_operand")
4686 1.1.1.2 mrg (match_operand:DI 2 "const_int_operand")
4687 1.1.1.2 mrg (match_operand:DI 3 "const_int_operand")))]
4688 1.1.1.2 mrg ""
4689 1.1.1.2 mrg {
4690 1.1.1.2 mrg /* We can do 8, 16, 32 and 64 bit fields, if aligned on byte boundaries. */
4691 1.1.1.2 mrg if (INTVAL (operands[3]) % 8 != 0
4692 1.1.1.2 mrg || (INTVAL (operands[2]) != 8
4693 1.1.1.2 mrg && INTVAL (operands[2]) != 16
4694 1.1.1.2 mrg && INTVAL (operands[2]) != 32
4695 1.1 mrg && INTVAL (operands[2]) != 64))
4696 1.1.1.2 mrg FAIL;
4697 1.1.1.2 mrg })
4698 1.1.1.2 mrg
4699 1.1.1.2 mrg (define_expand "extzvmisaligndi"
4700 1.1 mrg [(set (match_operand:DI 0 "register_operand")
4701 1.1 mrg (zero_extract:DI (match_operand:BLK 1 "memory_operand")
4702 1.1.1.2 mrg (match_operand:DI 2 "const_int_operand")
4703 1.1.1.2 mrg (match_operand:DI 3 "const_int_operand")))]
4704 1.1.1.2 mrg ""
4705 1.1.1.2 mrg {
4706 1.1.1.2 mrg /* We can do 16, 32 and 64 bit fields, if aligned on byte boundaries.
4707 1.1 mrg We fail 8-bit fields, falling back on a simple byte load. */
4708 1.1 mrg if (INTVAL (operands[3]) % 8 != 0
4709 1.1 mrg || (INTVAL (operands[2]) != 16
4710 1.1 mrg && INTVAL (operands[2]) != 32
4711 1.1 mrg && INTVAL (operands[2]) != 64))
4712 1.1 mrg FAIL;
4713 1.1 mrg
4714 1.1 mrg alpha_expand_unaligned_load (operands[0], operands[1],
4715 1.1 mrg INTVAL (operands[2]) / 8,
4716 1.1 mrg INTVAL (operands[3]) / 8, 0);
4717 1.1.1.2 mrg DONE;
4718 1.1.1.2 mrg })
4719 1.1 mrg
4720 1.1 mrg (define_expand "insvmisaligndi"
4721 1.1 mrg [(set (zero_extract:DI (match_operand:BLK 0 "memory_operand")
4722 1.1 mrg (match_operand:DI 1 "const_int_operand")
4723 1.1 mrg (match_operand:DI 2 "const_int_operand"))
4724 1.1 mrg (match_operand:DI 3 "register_operand"))]
4725 1.1 mrg ""
4726 1.1 mrg {
4727 1.1 mrg /* We can do 16, 32 and 64 bit fields, if aligned on byte boundaries. */
4728 1.1 mrg if (INTVAL (operands[2]) % 8 != 0
4729 1.1.1.2 mrg || (INTVAL (operands[1]) != 16
4730 1.1.1.2 mrg && INTVAL (operands[1]) != 32
4731 1.1.1.2 mrg && INTVAL (operands[1]) != 64))
4732 1.1.1.2 mrg FAIL;
4733 1.1 mrg
4734 1.1 mrg alpha_expand_unaligned_store (operands[0], operands[3],
4735 1.1 mrg INTVAL (operands[1]) / 8,
4736 1.1 mrg INTVAL (operands[2]) / 8);
4737 1.1 mrg DONE;
4738 1.1 mrg })
4739 1.1 mrg
4740 1.1 mrg ;; Block move/clear, see alpha.c for more details.
4741 1.1 mrg ;; Argument 0 is the destination
4742 1.1.1.2 mrg ;; Argument 1 is the source
4743 1.1.1.2 mrg ;; Argument 2 is the length
4744 1.1.1.2 mrg ;; Argument 3 is the alignment
4745 1.1.1.2 mrg
4746 1.1 mrg (define_expand "movmemqi"
4747 1.1 mrg [(parallel [(set (match_operand:BLK 0 "memory_operand")
4748 1.1 mrg (match_operand:BLK 1 "memory_operand"))
4749 1.1 mrg (use (match_operand:DI 2 "immediate_operand"))
4750 1.1 mrg (use (match_operand:DI 3 "immediate_operand"))])]
4751 1.1 mrg ""
4752 1.1 mrg {
4753 1.1 mrg if (alpha_expand_block_move (operands))
4754 1.1 mrg DONE;
4755 1.1 mrg else
4756 1.1.1.2 mrg FAIL;
4757 1.1 mrg })
4758 1.1 mrg
4759 1.1.1.3 mrg (define_expand "movmemdi"
4760 1.1 mrg [(parallel [(set (match_operand:BLK 0 "memory_operand")
4761 1.1 mrg (match_operand:BLK 1 "memory_operand"))
4762 1.1.1.2 mrg (use (match_operand:DI 2 "immediate_operand"))
4763 1.1 mrg (use (match_operand:DI 3 "immediate_operand"))
4764 1.1 mrg (use (match_dup 4))
4765 1.1 mrg (clobber (reg:DI 25))
4766 1.1 mrg (clobber (reg:DI 16))
4767 1.1 mrg (clobber (reg:DI 17))
4768 1.1 mrg (clobber (reg:DI 18))
4769 1.1 mrg (clobber (reg:DI 19))
4770 1.1 mrg (clobber (reg:DI 20))
4771 1.1 mrg (clobber (reg:DI 26))
4772 1.1 mrg (clobber (reg:DI 27))])]
4773 1.1 mrg "TARGET_ABI_OPEN_VMS"
4774 1.1.1.2 mrg "operands[4] = gen_rtx_SYMBOL_REF (Pmode, \"OTS$MOVE\");")
4775 1.1 mrg
4776 1.1 mrg (define_insn "*movmemdi_1"
4777 1.1 mrg [(set (match_operand:BLK 0 "memory_operand" "=m,m")
4778 1.1 mrg (match_operand:BLK 1 "memory_operand" "m,m"))
4779 1.1 mrg (use (match_operand:DI 2 "nonmemory_operand" "r,i"))
4780 1.1 mrg (use (match_operand:DI 3 "immediate_operand"))
4781 1.1 mrg (use (match_operand:DI 4 "call_operand" "i,i"))
4782 1.1 mrg (clobber (reg:DI 25))
4783 1.1 mrg (clobber (reg:DI 16))
4784 1.1 mrg (clobber (reg:DI 17))
4785 1.1 mrg (clobber (reg:DI 18))
4786 1.1 mrg (clobber (reg:DI 19))
4787 1.1 mrg (clobber (reg:DI 20))
4788 1.1 mrg (clobber (reg:DI 26))
4789 1.1.1.2 mrg (clobber (reg:DI 27))]
4790 1.1.1.2 mrg "TARGET_ABI_OPEN_VMS"
4791 1.1.1.2 mrg {
4792 1.1.1.2 mrg operands [5] = alpha_use_linkage (operands [4], false, true);
4793 1.1 mrg switch (which_alternative)
4794 1.1 mrg {
4795 1.1 mrg case 0:
4796 1.1 mrg return "lda $16,%0\;bis $31,%2,$17\;lda $18,%1\;ldq $26,%5\;lda $25,3($31)\;jsr $26,%4\;ldq $27,0($29)";
4797 1.1 mrg case 1:
4798 1.1 mrg return "lda $16,%0\;lda $17,%2($31)\;lda $18,%1\;ldq $26,%5\;lda $25,3($31)\;jsr $26,%4\;ldq $27,0($29)";
4799 1.1 mrg default:
4800 1.1 mrg gcc_unreachable ();
4801 1.1 mrg }
4802 1.1 mrg }
4803 1.1 mrg [(set_attr "type" "multi")
4804 1.1 mrg (set_attr "length" "28")])
4805 1.1 mrg
4806 1.1.1.2 mrg (define_expand "setmemqi"
4807 1.1.1.2 mrg [(parallel [(set (match_operand:BLK 0 "memory_operand")
4808 1.1.1.2 mrg (match_operand 2 "const_int_operand"))
4809 1.1.1.2 mrg (use (match_operand:DI 1 "immediate_operand"))
4810 1.1 mrg (use (match_operand:DI 3 "immediate_operand"))])]
4811 1.1 mrg ""
4812 1.1 mrg {
4813 1.1 mrg /* If value to set is not zero, use the library routine. */
4814 1.1 mrg if (operands[2] != const0_rtx)
4815 1.1 mrg FAIL;
4816 1.1 mrg
4817 1.1 mrg if (alpha_expand_block_clear (operands))
4818 1.1 mrg DONE;
4819 1.1 mrg else
4820 1.1 mrg FAIL;
4821 1.1 mrg })
4822 1.1.1.2 mrg
4823 1.1 mrg (define_expand "setmemdi"
4824 1.1 mrg [(parallel [(set (match_operand:BLK 0 "memory_operand")
4825 1.1 mrg (match_operand 2 "const_int_operand"))
4826 1.1.1.3 mrg (use (match_operand:DI 1 "immediate_operand"))
4827 1.1 mrg (use (match_operand:DI 3 "immediate_operand"))
4828 1.1 mrg (use (match_dup 4))
4829 1.1.1.2 mrg (clobber (reg:DI 25))
4830 1.1 mrg (clobber (reg:DI 16))
4831 1.1 mrg (clobber (reg:DI 17))
4832 1.1 mrg (clobber (reg:DI 26))
4833 1.1 mrg (clobber (reg:DI 27))])]
4834 1.1 mrg "TARGET_ABI_OPEN_VMS"
4835 1.1 mrg {
4836 1.1 mrg /* If value to set is not zero, use the library routine. */
4837 1.1 mrg if (operands[2] != const0_rtx)
4838 1.1.1.2 mrg FAIL;
4839 1.1 mrg
4840 1.1 mrg operands[4] = gen_rtx_SYMBOL_REF (Pmode, "OTS$ZERO");
4841 1.1 mrg })
4842 1.1 mrg
4843 1.1 mrg (define_insn "*clrmemdi_1"
4844 1.1 mrg [(set (match_operand:BLK 0 "memory_operand" "=m,m")
4845 1.1 mrg (const_int 0))
4846 1.1 mrg (use (match_operand:DI 1 "nonmemory_operand" "r,i"))
4847 1.1 mrg (use (match_operand:DI 2 "immediate_operand"))
4848 1.1 mrg (use (match_operand:DI 3 "call_operand" "i,i"))
4849 1.1 mrg (clobber (reg:DI 25))
4850 1.1 mrg (clobber (reg:DI 16))
4851 1.1 mrg (clobber (reg:DI 17))
4852 1.1 mrg (clobber (reg:DI 26))
4853 1.1 mrg (clobber (reg:DI 27))]
4854 1.1.1.5 mrg "TARGET_ABI_OPEN_VMS"
4855 1.1.1.2 mrg {
4856 1.1 mrg operands [4] = alpha_use_linkage (operands [3], false, true);
4857 1.1 mrg switch (which_alternative)
4858 1.1.1.2 mrg {
4859 1.1 mrg case 0:
4860 1.1 mrg return "lda $16,%0\;bis $31,%1,$17\;ldq $26,%4\;lda $25,2($31)\;jsr $26,%3\;ldq $27,0($29)";
4861 1.1 mrg case 1:
4862 1.1 mrg return "lda $16,%0\;lda $17,%1($31)\;ldq $26,%4\;lda $25,2($31)\;jsr $26,%3\;ldq $27,0($29)";
4863 1.1 mrg default:
4864 1.1 mrg gcc_unreachable ();
4865 1.1 mrg }
4866 1.1 mrg }
4867 1.1 mrg [(set_attr "type" "multi")
4868 1.1 mrg (set_attr "length" "24")])
4869 1.1 mrg
4870 1.1 mrg
4872 1.1 mrg ;; Subroutine of stack space allocation. Perform a stack probe.
4873 1.1 mrg (define_expand "stack_probe_internal"
4874 1.1.1.2 mrg [(set (match_dup 1) (match_operand:DI 0 "const_int_operand"))]
4875 1.1 mrg ""
4876 1.1 mrg {
4877 1.1 mrg operands[1] = gen_rtx_MEM (DImode, plus_constant (Pmode, stack_pointer_rtx,
4878 1.1 mrg INTVAL (operands[0])));
4879 1.1 mrg MEM_VOLATILE_P (operands[1]) = 1;
4880 1.1 mrg
4881 1.1 mrg operands[0] = const0_rtx;
4882 1.1 mrg })
4883 1.1 mrg
4884 1.1 mrg ;; This is how we allocate stack space. If we are allocating a
4885 1.1 mrg ;; constant amount of space and we know it is less than 4096
4886 1.1 mrg ;; bytes, we need do nothing.
4887 1.1 mrg ;;
4888 1.1 mrg ;; If it is more than 4096 bytes, we need to probe the stack
4889 1.1.1.5 mrg ;; periodically.
4890 1.1 mrg (define_expand "allocate_stack"
4891 1.1.1.5 mrg [(set (reg:DI 30)
4892 1.1.1.5 mrg (plus:DI (reg:DI 30)
4893 1.1 mrg (match_operand:DI 1 "reg_or_cint_operand")))
4894 1.1 mrg (set (match_operand:DI 0 "register_operand" "=r")
4895 1.1.1.5 mrg (match_dup 2))]
4896 1.1.1.5 mrg ""
4897 1.1 mrg {
4898 1.1 mrg if (CONST_INT_P (operands[1])
4899 1.1 mrg && INTVAL (operands[1]) < 32768)
4900 1.1 mrg {
4901 1.1 mrg if (INTVAL (operands[1]) >= 4096)
4902 1.1 mrg {
4903 1.1 mrg /* We do this the same way as in the prologue and generate explicit
4904 1.1.1.3 mrg probes. Then we update the stack by the constant. */
4905 1.1.1.3 mrg
4906 1.1 mrg int probed = 4096;
4907 1.1 mrg
4908 1.1 mrg emit_insn (gen_stack_probe_internal (GEN_INT (- probed)));
4909 1.1 mrg while (probed + 8192 < INTVAL (operands[1]))
4910 1.1 mrg emit_insn (gen_stack_probe_internal
4911 1.1 mrg (GEN_INT (- (probed += 8192))));
4912 1.1 mrg
4913 1.1 mrg if (probed + 4096 < INTVAL (operands[1]))
4914 1.1 mrg emit_insn (gen_stack_probe_internal
4915 1.1.1.2 mrg (GEN_INT (- INTVAL(operands[1]))));
4916 1.1 mrg }
4917 1.1.1.2 mrg
4918 1.1.1.2 mrg operands[1] = GEN_INT (- INTVAL (operands[1]));
4919 1.1.1.2 mrg operands[2] = virtual_stack_dynamic_rtx;
4920 1.1 mrg }
4921 1.1 mrg else
4922 1.1.1.2 mrg {
4923 1.1 mrg rtx_code_label *out_label = 0;
4924 1.1 mrg rtx_code_label *loop_label = gen_label_rtx ();
4925 1.1 mrg rtx want = gen_reg_rtx (Pmode);
4926 1.1 mrg rtx tmp = gen_reg_rtx (Pmode);
4927 1.1 mrg rtx memref, test;
4928 1.1 mrg
4929 1.1 mrg emit_insn (gen_subdi3 (want, stack_pointer_rtx,
4930 1.1 mrg force_reg (Pmode, operands[1])));
4931 1.1 mrg
4932 1.1 mrg if (!CONST_INT_P (operands[1]))
4933 1.1 mrg {
4934 1.1 mrg rtx limit = GEN_INT (4096);
4935 1.1 mrg out_label = gen_label_rtx ();
4936 1.1 mrg test = gen_rtx_LTU (VOIDmode, operands[1], limit);
4937 1.1 mrg emit_jump_insn
4938 1.1 mrg (gen_cbranchdi4 (test, operands[1], limit, out_label));
4939 1.1 mrg }
4940 1.1 mrg
4941 1.1 mrg emit_insn (gen_adddi3 (tmp, stack_pointer_rtx, GEN_INT (-4096)));
4942 1.1 mrg emit_label (loop_label);
4943 1.1 mrg memref = gen_rtx_MEM (DImode, tmp);
4944 1.1 mrg MEM_VOLATILE_P (memref) = 1;
4945 1.1 mrg emit_move_insn (memref, const0_rtx);
4946 1.1 mrg emit_insn (gen_adddi3 (tmp, tmp, GEN_INT(-8192)));
4947 1.1 mrg test = gen_rtx_GTU (VOIDmode, tmp, want);
4948 1.1 mrg emit_jump_insn (gen_cbranchdi4 (test, tmp, want, loop_label));
4949 1.1 mrg
4950 1.1 mrg memref = gen_rtx_MEM (DImode, want);
4951 1.1 mrg MEM_VOLATILE_P (memref) = 1;
4952 1.1 mrg emit_move_insn (memref, const0_rtx);
4953 1.1 mrg
4954 1.1 mrg if (out_label)
4955 1.1 mrg emit_label (out_label);
4956 1.1 mrg
4957 1.1 mrg emit_move_insn (stack_pointer_rtx, want);
4958 1.1 mrg emit_move_insn (operands[0], virtual_stack_dynamic_rtx);
4959 1.1 mrg DONE;
4960 1.1 mrg }
4961 1.1 mrg })
4962 1.1 mrg
4963 1.1 mrg ;; This is used by alpha_expand_prolog to do the same thing as above,
4964 1.1.1.2 mrg ;; except we cannot at that time generate new basic blocks, so we hide
4965 1.1 mrg ;; the loop in this one insn.
4966 1.1 mrg
4967 1.1 mrg (define_insn "prologue_stack_probe_loop"
4968 1.1 mrg [(unspec_volatile [(match_operand:DI 0 "register_operand" "r")
4969 1.1 mrg (match_operand:DI 1 "register_operand" "r")]
4970 1.1 mrg UNSPECV_PSPL)]
4971 1.1 mrg ""
4972 1.1 mrg {
4973 1.1 mrg operands[2] = gen_label_rtx ();
4974 1.1 mrg (*targetm.asm_out.internal_label) (asm_out_file, "L",
4975 1.1 mrg CODE_LABEL_NUMBER (operands[2]));
4976 1.1 mrg
4977 1.1 mrg return "stq $31,-8192(%1)\;subq %0,1,%0\;lda %1,-8192(%1)\;bne %0,%l2";
4978 1.1 mrg }
4979 1.1 mrg [(set_attr "length" "16")
4980 1.1 mrg (set_attr "type" "multi")])
4981 1.1 mrg
4982 1.1 mrg (define_expand "prologue"
4983 1.1 mrg [(const_int 0)]
4984 1.1 mrg ""
4985 1.1 mrg {
4986 1.1 mrg alpha_expand_prologue ();
4987 1.1 mrg DONE;
4988 1.1 mrg })
4989 1.1 mrg
4990 1.1 mrg ;; These take care of emitting the ldgp insn in the prologue. This will be
4991 1.1 mrg ;; an lda/ldah pair and we want to align them properly. So we have two
4992 1.1 mrg ;; unspec_volatile insns, the first of which emits the ldgp assembler macro
4993 1.1 mrg ;; and the second of which emits nothing. However, both are marked as type
4994 1.1 mrg ;; IADD (the default) so the alignment code in alpha.c does the right thing
4995 1.1.1.2 mrg ;; with them.
4996 1.1 mrg
4997 1.1 mrg (define_expand "prologue_ldgp"
4998 1.1 mrg [(set (match_dup 0)
4999 1.1 mrg (unspec_volatile:DI [(match_dup 1) (match_dup 2)] UNSPECV_LDGP1))
5000 1.1 mrg (set (match_dup 0)
5001 1.1 mrg (unspec_volatile:DI [(match_dup 0) (match_dup 2)] UNSPECV_PLDGP2))]
5002 1.1 mrg ""
5003 1.1 mrg {
5004 1.1.1.2 mrg operands[0] = pic_offset_table_rtx;
5005 1.1 mrg operands[1] = gen_rtx_REG (Pmode, 27);
5006 1.1 mrg operands[2] = (TARGET_EXPLICIT_RELOCS
5007 1.1 mrg ? GEN_INT (alpha_next_sequence_number++)
5008 1.1 mrg : const0_rtx);
5009 1.1 mrg })
5010 1.1 mrg
5011 1.1 mrg (define_insn "*ldgp_er_1"
5012 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
5013 1.1.1.2 mrg (unspec_volatile:DI [(match_operand:DI 1 "register_operand" "r")
5014 1.1 mrg (match_operand 2 "const_int_operand")]
5015 1.1 mrg UNSPECV_LDGP1))]
5016 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
5017 1.1 mrg "ldah %0,0(%1)\t\t!gpdisp!%2"
5018 1.1 mrg [(set_attr "cannot_copy" "true")])
5019 1.1 mrg
5020 1.1 mrg (define_insn "*ldgp_er_2"
5021 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
5022 1.1.1.2 mrg (unspec:DI [(match_operand:DI 1 "register_operand" "r")
5023 1.1 mrg (match_operand 2 "const_int_operand")]
5024 1.1 mrg UNSPEC_LDGP2))]
5025 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
5026 1.1 mrg "lda %0,0(%1)\t\t!gpdisp!%2"
5027 1.1 mrg [(set_attr "cannot_copy" "true")])
5028 1.1 mrg
5029 1.1 mrg (define_insn "*prologue_ldgp_er_2"
5030 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
5031 1.1.1.2 mrg (unspec_volatile:DI [(match_operand:DI 1 "register_operand" "r")
5032 1.1 mrg (match_operand 2 "const_int_operand")]
5033 1.1 mrg UNSPECV_PLDGP2))]
5034 1.1.1.2 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
5035 1.1 mrg "lda %0,0(%1)\t\t!gpdisp!%2\n$%~..ng:"
5036 1.1 mrg [(set_attr "cannot_copy" "true")])
5037 1.1 mrg
5038 1.1 mrg (define_insn "*prologue_ldgp_1"
5039 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
5040 1.1 mrg (unspec_volatile:DI [(match_operand:DI 1 "register_operand" "r")
5041 1.1 mrg (match_operand 2 "const_int_operand")]
5042 1.1 mrg UNSPECV_LDGP1))]
5043 1.1 mrg ""
5044 1.1 mrg "ldgp %0,0(%1)\n$%~..ng:"
5045 1.1 mrg [(set_attr "cannot_copy" "true")])
5046 1.1 mrg
5047 1.1 mrg (define_insn "*prologue_ldgp_2"
5048 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
5049 1.1 mrg (unspec_volatile:DI [(match_operand:DI 1 "register_operand" "r")
5050 1.1 mrg (match_operand 2 "const_int_operand")]
5051 1.1 mrg UNSPECV_PLDGP2))]
5052 1.1 mrg ""
5053 1.1 mrg )
5054 1.1 mrg
5055 1.1 mrg ;; The _mcount profiling hook has special calling conventions, and
5056 1.1 mrg ;; does not clobber all the registers that a normal call would. So
5057 1.1 mrg ;; hide the fact this is a call at all.
5058 1.1 mrg
5059 1.1 mrg (define_insn "prologue_mcount"
5060 1.1 mrg [(unspec_volatile [(const_int 0)] UNSPECV_MCOUNT)]
5061 1.1 mrg ""
5062 1.1 mrg {
5063 1.1 mrg if (TARGET_EXPLICIT_RELOCS)
5064 1.1.1.2 mrg /* Note that we cannot use a lituse_jsr reloc, since _mcount
5065 1.1 mrg cannot be called via the PLT. */
5066 1.1 mrg return "ldq $28,_mcount($29)\t\t!literal\;jsr $28,($28),_mcount";
5067 1.1 mrg else
5068 1.1 mrg return "lda $28,_mcount\;jsr $28,($28),_mcount";
5069 1.1 mrg }
5070 1.1 mrg [(set_attr "type" "multi")
5071 1.1 mrg (set_attr "length" "8")])
5072 1.1 mrg
5073 1.1 mrg (define_insn "init_fp"
5074 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
5075 1.1 mrg (match_operand:DI 1 "register_operand" "r"))
5076 1.1 mrg (clobber (mem:BLK (match_operand:DI 2 "register_operand" "=r")))]
5077 1.1 mrg ""
5078 1.1 mrg "bis $31,%1,%0")
5079 1.1 mrg
5080 1.1.1.2 mrg (define_expand "epilogue"
5081 1.1.1.2 mrg [(return)]
5082 1.1 mrg ""
5083 1.1 mrg "alpha_expand_epilogue ();")
5084 1.1 mrg
5085 1.1 mrg (define_expand "sibcall_epilogue"
5086 1.1 mrg [(return)]
5087 1.1.1.2 mrg "TARGET_ABI_OSF"
5088 1.1 mrg {
5089 1.1 mrg alpha_expand_epilogue ();
5090 1.1 mrg DONE;
5091 1.1 mrg })
5092 1.1 mrg
5093 1.1 mrg (define_expand "builtin_longjmp"
5094 1.1 mrg [(use (match_operand:DI 0 "register_operand" "r"))]
5095 1.1 mrg "TARGET_ABI_OSF"
5096 1.1 mrg {
5097 1.1 mrg /* The elements of the buffer are, in order: */
5098 1.1 mrg rtx fp = gen_rtx_MEM (Pmode, operands[0]);
5099 1.1 mrg rtx lab = gen_rtx_MEM (Pmode, plus_constant (Pmode, operands[0], 8));
5100 1.1 mrg rtx stack = gen_rtx_MEM (Pmode, plus_constant (Pmode, operands[0], 16));
5101 1.1 mrg rtx pv = gen_rtx_REG (Pmode, 27);
5102 1.1 mrg
5103 1.1 mrg /* This bit is the same as expand_builtin_longjmp. */
5104 1.1 mrg emit_move_insn (hard_frame_pointer_rtx, fp);
5105 1.1 mrg emit_move_insn (pv, lab);
5106 1.1 mrg emit_stack_restore (SAVE_NONLOCAL, stack);
5107 1.1 mrg emit_use (hard_frame_pointer_rtx);
5108 1.1 mrg emit_use (stack_pointer_rtx);
5109 1.1 mrg
5110 1.1.1.2 mrg /* Load the label we are jumping through into $27 so that we know
5111 1.1.1.2 mrg where to look for it when we get back to setjmp's function for
5112 1.1 mrg restoring the gp. */
5113 1.1 mrg emit_jump_insn (gen_builtin_longjmp_internal (pv));
5114 1.1.1.2 mrg emit_barrier ();
5115 1.1 mrg DONE;
5116 1.1 mrg })
5117 1.1 mrg
5118 1.1 mrg ;; This is effectively a copy of indirect_jump, but constrained such
5119 1.1 mrg ;; that register renaming cannot foil our cunning plan with $27.
5120 1.1 mrg (define_insn "builtin_longjmp_internal"
5121 1.1 mrg [(set (pc)
5122 1.1 mrg (unspec_volatile [(match_operand:DI 0 "register_operand" "c")]
5123 1.1 mrg UNSPECV_LONGJMP))]
5124 1.1 mrg ""
5125 1.1 mrg "jmp $31,(%0),0"
5126 1.1 mrg [(set_attr "type" "ibr")])
5127 1.1 mrg
5128 1.1 mrg (define_expand "builtin_setjmp_receiver"
5129 1.1 mrg [(unspec_volatile [(label_ref (match_operand 0))] UNSPECV_SETJMPR)]
5130 1.1 mrg "TARGET_ABI_OSF")
5131 1.1 mrg
5132 1.1 mrg (define_insn_and_split "*builtin_setjmp_receiver_1"
5133 1.1 mrg [(unspec_volatile [(match_operand 0)] UNSPECV_SETJMPR)]
5134 1.1 mrg "TARGET_ABI_OSF"
5135 1.1 mrg {
5136 1.1 mrg if (TARGET_EXPLICIT_RELOCS)
5137 1.1 mrg return "#";
5138 1.1 mrg else
5139 1.1.1.2 mrg return "br $27,$LSJ%=\n$LSJ%=:\;ldgp $29,0($27)";
5140 1.1.1.2 mrg }
5141 1.1 mrg "&& TARGET_EXPLICIT_RELOCS && reload_completed"
5142 1.1 mrg [(set (match_dup 1)
5143 1.1 mrg (unspec_volatile:DI [(match_dup 2) (match_dup 3)] UNSPECV_LDGP1))
5144 1.1 mrg (set (match_dup 1)
5145 1.1 mrg (unspec:DI [(match_dup 1) (match_dup 3)] UNSPEC_LDGP2))]
5146 1.1 mrg {
5147 1.1 mrg if (prev_nonnote_insn (curr_insn) != XEXP (operands[0], 0))
5148 1.1.1.2 mrg emit_insn (gen_rtx_UNSPEC_VOLATILE (VOIDmode, gen_rtvec (1, operands[0]),
5149 1.1 mrg UNSPECV_SETJMPR_ER));
5150 1.1 mrg operands[1] = pic_offset_table_rtx;
5151 1.1 mrg operands[2] = gen_rtx_REG (Pmode, 27);
5152 1.1 mrg operands[3] = GEN_INT (alpha_next_sequence_number++);
5153 1.1 mrg }
5154 1.1.1.2 mrg [(set_attr "length" "12")
5155 1.1.1.6 mrg (set_attr "type" "multi")])
5156 1.1 mrg
5157 1.1 mrg (define_insn "*builtin_setjmp_receiver_er_sl_1"
5158 1.1 mrg [(unspec_volatile [(match_operand 0)] UNSPECV_SETJMPR_ER)]
5159 1.1 mrg "TARGET_ABI_OSF && TARGET_EXPLICIT_RELOCS"
5160 1.1 mrg "lda $27,$LSJ%=-%l0($27)\n$LSJ%=:")
5161 1.1 mrg
5162 1.1.1.2 mrg ;; When flag_reorder_blocks_and_partition is in effect, compiler puts
5163 1.1 mrg ;; exception landing pads in a cold section. To prevent inter-section offset
5164 1.1 mrg ;; calculation, a jump to original landing pad is emitted in the place of the
5165 1.1 mrg ;; original landing pad. Since landing pad is moved, RA-relative GP
5166 1.1 mrg ;; calculation in the prologue of landing pad breaks. To solve this problem,
5167 1.1 mrg ;; we use alternative GP load approach.
5168 1.1 mrg
5169 1.1 mrg (define_expand "exception_receiver"
5170 1.1 mrg [(unspec_volatile [(match_dup 0)] UNSPECV_EHR)]
5171 1.1.1.3 mrg "TARGET_ABI_OSF"
5172 1.1 mrg {
5173 1.1 mrg if (flag_reorder_blocks_and_partition)
5174 1.1 mrg operands[0] = copy_rtx (alpha_gp_save_rtx ());
5175 1.1 mrg else
5176 1.1 mrg operands[0] = const0_rtx;
5177 1.1 mrg })
5178 1.1 mrg
5179 1.1 mrg (define_insn "*exception_receiver_2"
5180 1.1 mrg [(unspec_volatile [(match_operand:DI 0 "memory_operand" "m")] UNSPECV_EHR)]
5181 1.1 mrg "TARGET_ABI_OSF && flag_reorder_blocks_and_partition"
5182 1.1 mrg "ldq $29,%0"
5183 1.1 mrg [(set_attr "type" "ild")])
5184 1.1 mrg
5185 1.1 mrg (define_insn_and_split "*exception_receiver_1"
5186 1.1 mrg [(unspec_volatile [(const_int 0)] UNSPECV_EHR)]
5187 1.1 mrg "TARGET_ABI_OSF"
5188 1.1 mrg {
5189 1.1 mrg if (TARGET_EXPLICIT_RELOCS)
5190 1.1 mrg return "#";
5191 1.1 mrg else
5192 1.1 mrg return "ldgp $29,0($26)";
5193 1.1.1.2 mrg }
5194 1.1 mrg "&& TARGET_EXPLICIT_RELOCS && reload_completed"
5195 1.1 mrg [(set (match_dup 0)
5196 1.1 mrg (unspec_volatile:DI [(match_dup 1) (match_dup 2)] UNSPECV_LDGP1))
5197 1.1 mrg (set (match_dup 0)
5198 1.1 mrg (unspec:DI [(match_dup 0) (match_dup 2)] UNSPEC_LDGP2))]
5199 1.1 mrg {
5200 1.1 mrg operands[0] = pic_offset_table_rtx;
5201 1.1 mrg operands[1] = gen_rtx_REG (Pmode, 26);
5202 1.1 mrg operands[2] = GEN_INT (alpha_next_sequence_number++);
5203 1.1 mrg }
5204 1.1 mrg [(set_attr "length" "8")
5205 1.1 mrg (set_attr "type" "multi")])
5206 1.1 mrg
5207 1.1 mrg (define_expand "nonlocal_goto_receiver"
5208 1.1 mrg [(unspec_volatile [(const_int 0)] UNSPECV_BLOCKAGE)
5209 1.1 mrg (set (reg:DI 27) (mem:DI (reg:DI 29)))
5210 1.1 mrg (unspec_volatile [(const_int 0)] UNSPECV_BLOCKAGE)
5211 1.1 mrg (use (reg:DI 27))]
5212 1.1 mrg "TARGET_ABI_OPEN_VMS")
5213 1.1 mrg
5214 1.1 mrg (define_insn "arg_home"
5215 1.1 mrg [(unspec [(const_int 0)] UNSPEC_ARG_HOME)
5216 1.1 mrg (use (reg:DI 1))
5217 1.1 mrg (use (reg:DI 25))
5218 1.1 mrg (use (reg:DI 16))
5219 1.1 mrg (use (reg:DI 17))
5220 1.1 mrg (use (reg:DI 18))
5221 1.1 mrg (use (reg:DI 19))
5222 1.1 mrg (use (reg:DI 20))
5223 1.1 mrg (use (reg:DI 21))
5224 1.1 mrg (use (reg:DI 48))
5225 1.1 mrg (use (reg:DI 49))
5226 1.1 mrg (use (reg:DI 50))
5227 1.1 mrg (use (reg:DI 51))
5228 1.1 mrg (use (reg:DI 52))
5229 1.1 mrg (use (reg:DI 53))
5230 1.1 mrg (clobber (mem:BLK (const_int 0)))
5231 1.1 mrg (clobber (reg:DI 24))
5232 1.1 mrg (clobber (reg:DI 25))
5233 1.1 mrg (clobber (reg:DI 0))]
5234 1.1 mrg "TARGET_ABI_OPEN_VMS"
5235 1.1 mrg "lda $0,OTS$HOME_ARGS\;ldq $0,8($0)\;jsr $0,OTS$HOME_ARGS"
5236 1.1 mrg [(set_attr "length" "16")
5237 1.1 mrg (set_attr "type" "multi")])
5238 1.1 mrg
5239 1.1 mrg ;; Prefetch data.
5240 1.1 mrg ;;
5241 1.1 mrg ;; On EV4, these instructions are nops -- no load occurs.
5242 1.1 mrg ;;
5243 1.1 mrg ;; On EV5, these instructions act as a normal load, and thus can trap
5244 1.1 mrg ;; if the address is invalid. The OS may (or may not) handle this in
5245 1.1 mrg ;; the entMM fault handler and suppress the fault. If so, then this
5246 1.1 mrg ;; has the effect of a read prefetch instruction.
5247 1.1 mrg ;;
5248 1.1 mrg ;; On EV6, these become official prefetch instructions.
5249 1.1 mrg
5250 1.1 mrg (define_insn "prefetch"
5251 1.1 mrg [(prefetch (match_operand:DI 0 "address_operand" "p")
5252 1.1 mrg (match_operand:DI 1 "const_int_operand" "n")
5253 1.1 mrg (match_operand:DI 2 "const_int_operand" "n"))]
5254 1.1 mrg "TARGET_FIXUP_EV5_PREFETCH || alpha_cpu == PROCESSOR_EV6"
5255 1.1 mrg {
5256 1.1 mrg /* Interpret "no temporal locality" as this data should be evicted once
5257 1.1 mrg it is used. The "evict next" alternatives load the data into the cache
5258 1.1 mrg and leave the LRU eviction counter pointing to that block. */
5259 1.1 mrg static const char * const alt[2][2] = {
5260 1.1 mrg {
5261 1.1 mrg "ldq $31,%a0", /* read, evict next */
5262 1.1 mrg "ldl $31,%a0", /* read, evict last */
5263 1.1 mrg },
5264 1.1 mrg {
5265 1.1 mrg "ldt $f31,%a0", /* write, evict next */
5266 1.1 mrg "lds $f31,%a0", /* write, evict last */
5267 1.1 mrg }
5268 1.1 mrg };
5269 1.1 mrg
5270 1.1 mrg bool write = INTVAL (operands[1]) != 0;
5271 1.1 mrg bool lru = INTVAL (operands[2]) != 0;
5272 1.1 mrg
5273 1.1 mrg return alt[write][lru];
5274 1.1 mrg }
5275 1.1 mrg [(set_attr "type" "ild")])
5276 1.1 mrg
5277 1.1 mrg ;; Close the trap shadow of preceding instructions. This is generated
5278 1.1 mrg ;; by alpha_reorg.
5279 1.1 mrg
5280 1.1 mrg (define_insn "trapb"
5281 1.1 mrg [(unspec_volatile [(const_int 0)] UNSPECV_TRAPB)]
5282 1.1 mrg ""
5283 1.1 mrg "trapb"
5284 1.1 mrg [(set_attr "type" "misc")])
5285 1.1 mrg
5286 1.1 mrg ;; No-op instructions used by machine-dependent reorg to preserve
5287 1.1 mrg ;; alignment for instruction issue.
5288 1.1 mrg ;; The Unicos/Mk assembler does not support these opcodes.
5289 1.1 mrg
5290 1.1 mrg (define_insn "nop"
5291 1.1 mrg [(const_int 0)]
5292 1.1.1.2 mrg ""
5293 1.1 mrg "bis $31,$31,$31"
5294 1.1 mrg [(set_attr "type" "ilog")])
5295 1.1 mrg
5296 1.1 mrg (define_insn "fnop"
5297 1.1 mrg [(const_int 1)]
5298 1.1 mrg "TARGET_FP"
5299 1.1 mrg "cpys $f31,$f31,$f31"
5300 1.1 mrg [(set_attr "type" "fcpys")])
5301 1.1 mrg
5302 1.1 mrg (define_insn "unop"
5303 1.1 mrg [(const_int 2)]
5304 1.1 mrg ""
5305 1.1 mrg "ldq_u $31,0($30)")
5306 1.1 mrg
5307 1.1.1.2 mrg (define_insn "realign"
5308 1.1.1.2 mrg [(unspec_volatile [(match_operand 0 "immediate_operand" "i")]
5309 1.1.1.2 mrg UNSPECV_REALIGN)]
5310 1.1.1.2 mrg ""
5311 1.1 mrg ".align %0 #realign")
5312 1.1 mrg
5314 1.1 mrg ;; Instructions to be emitted from __builtins.
5315 1.1 mrg
5316 1.1 mrg (define_insn "builtin_cmpbge"
5317 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand" "=r")
5318 1.1.1.2 mrg (unspec:DI [(match_operand:DI 1 "reg_or_0_operand" "rJ")
5319 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand" "rI")]
5320 1.1.1.2 mrg UNSPEC_CMPBGE))]
5321 1.1 mrg ""
5322 1.1 mrg "cmpbge %r1,%2,%0"
5323 1.1.1.2 mrg ;; The EV6 data sheets list this as ILOG. OTOH, EV6 doesn't
5324 1.1 mrg ;; actually differentiate between ILOG and ICMP in the schedule.
5325 1.1 mrg [(set_attr "type" "icmp")])
5326 1.1 mrg
5327 1.1.1.2 mrg (define_expand "extbl"
5328 1.1.1.2 mrg [(match_operand:DI 0 "register_operand")
5329 1.1.1.2 mrg (match_operand:DI 1 "reg_or_0_operand")
5330 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5331 1.1 mrg ""
5332 1.1 mrg {
5333 1.1.1.2 mrg emit_insn (gen_extxl (operands[0], operands[1], GEN_INT (8), operands[2]));
5334 1.1 mrg DONE;
5335 1.1 mrg })
5336 1.1 mrg
5337 1.1.1.2 mrg (define_expand "extwl"
5338 1.1.1.2 mrg [(match_operand:DI 0 "register_operand")
5339 1.1.1.2 mrg (match_operand:DI 1 "reg_or_0_operand")
5340 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5341 1.1 mrg ""
5342 1.1 mrg {
5343 1.1.1.2 mrg emit_insn (gen_extxl (operands[0], operands[1], GEN_INT (16), operands[2]));
5344 1.1 mrg DONE;
5345 1.1 mrg })
5346 1.1 mrg
5347 1.1 mrg (define_expand "extll"
5348 1.1.1.2 mrg [(match_operand:DI 0 "register_operand")
5349 1.1.1.2 mrg (match_operand:DI 1 "reg_or_0_operand")
5350 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5351 1.1 mrg ""
5352 1.1 mrg {
5353 1.1 mrg emit_insn (gen_extxl (operands[0], operands[1], GEN_INT (32), operands[2]));
5354 1.1.1.2 mrg DONE;
5355 1.1 mrg })
5356 1.1 mrg
5357 1.1 mrg (define_expand "extql"
5358 1.1 mrg [(match_operand:DI 0 "register_operand")
5359 1.1.1.2 mrg (match_operand:DI 1 "reg_or_0_operand")
5360 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5361 1.1.1.2 mrg ""
5362 1.1 mrg {
5363 1.1 mrg emit_insn (gen_extxl (operands[0], operands[1], GEN_INT (64), operands[2]));
5364 1.1 mrg DONE;
5365 1.1.1.2 mrg })
5366 1.1 mrg
5367 1.1 mrg (define_expand "builtin_insbl"
5368 1.1 mrg [(match_operand:DI 0 "register_operand")
5369 1.1 mrg (match_operand:DI 1 "register_operand")
5370 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5371 1.1.1.2 mrg ""
5372 1.1.1.2 mrg {
5373 1.1 mrg operands[1] = gen_lowpart (QImode, operands[1]);
5374 1.1 mrg emit_insn (gen_insbl (operands[0], operands[1], operands[2]));
5375 1.1 mrg DONE;
5376 1.1.1.2 mrg })
5377 1.1 mrg
5378 1.1 mrg (define_expand "builtin_inswl"
5379 1.1 mrg [(match_operand:DI 0 "register_operand")
5380 1.1.1.2 mrg (match_operand:DI 1 "register_operand")
5381 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5382 1.1.1.2 mrg ""
5383 1.1.1.2 mrg {
5384 1.1 mrg operands[1] = gen_lowpart (HImode, operands[1]);
5385 1.1 mrg emit_insn (gen_inswl (operands[0], operands[1], operands[2]));
5386 1.1 mrg DONE;
5387 1.1 mrg })
5388 1.1 mrg
5389 1.1 mrg (define_expand "builtin_insll"
5390 1.1.1.2 mrg [(match_operand:DI 0 "register_operand")
5391 1.1.1.2 mrg (match_operand:DI 1 "register_operand")
5392 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5393 1.1.1.2 mrg ""
5394 1.1 mrg {
5395 1.1 mrg operands[1] = gen_lowpart (SImode, operands[1]);
5396 1.1 mrg emit_insn (gen_insll (operands[0], operands[1], operands[2]));
5397 1.1 mrg DONE;
5398 1.1 mrg })
5399 1.1 mrg
5400 1.1.1.2 mrg (define_expand "inswh"
5401 1.1.1.2 mrg [(match_operand:DI 0 "register_operand")
5402 1.1.1.2 mrg (match_operand:DI 1 "register_operand")
5403 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5404 1.1 mrg ""
5405 1.1 mrg {
5406 1.1 mrg emit_insn (gen_insxh (operands[0], operands[1], GEN_INT (16), operands[2]));
5407 1.1 mrg DONE;
5408 1.1 mrg })
5409 1.1 mrg
5410 1.1.1.2 mrg (define_expand "inslh"
5411 1.1.1.2 mrg [(match_operand:DI 0 "register_operand")
5412 1.1.1.2 mrg (match_operand:DI 1 "register_operand")
5413 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5414 1.1 mrg ""
5415 1.1 mrg {
5416 1.1.1.2 mrg emit_insn (gen_insxh (operands[0], operands[1], GEN_INT (32), operands[2]));
5417 1.1.1.2 mrg DONE;
5418 1.1 mrg })
5419 1.1 mrg
5420 1.1 mrg (define_expand "insqh"
5421 1.1.1.2 mrg [(match_operand:DI 0 "register_operand")
5422 1.1.1.2 mrg (match_operand:DI 1 "register_operand")
5423 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5424 1.1.1.2 mrg ""
5425 1.1 mrg {
5426 1.1 mrg emit_insn (gen_insxh (operands[0], operands[1], GEN_INT (64), operands[2]));
5427 1.1.1.2 mrg DONE;
5428 1.1.1.2 mrg })
5429 1.1 mrg
5430 1.1 mrg (define_expand "mskbl"
5431 1.1 mrg [(match_operand:DI 0 "register_operand")
5432 1.1.1.2 mrg (match_operand:DI 1 "reg_or_0_operand")
5433 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5434 1.1.1.2 mrg ""
5435 1.1.1.2 mrg {
5436 1.1 mrg rtx mask = GEN_INT (0xff);
5437 1.1 mrg emit_insn (gen_mskxl (operands[0], operands[1], mask, operands[2]));
5438 1.1.1.4 mrg DONE;
5439 1.1.1.2 mrg })
5440 1.1 mrg
5441 1.1 mrg (define_expand "mskwl"
5442 1.1 mrg [(match_operand:DI 0 "register_operand")
5443 1.1.1.2 mrg (match_operand:DI 1 "reg_or_0_operand")
5444 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5445 1.1.1.2 mrg ""
5446 1.1.1.2 mrg {
5447 1.1 mrg rtx mask = GEN_INT (0xffff);
5448 1.1 mrg emit_insn (gen_mskxl (operands[0], operands[1], mask, operands[2]));
5449 1.1.1.2 mrg DONE;
5450 1.1.1.2 mrg })
5451 1.1 mrg
5452 1.1 mrg (define_expand "mskll"
5453 1.1 mrg [(match_operand:DI 0 "register_operand")
5454 1.1.1.2 mrg (match_operand:DI 1 "reg_or_0_operand")
5455 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5456 1.1.1.2 mrg ""
5457 1.1.1.2 mrg {
5458 1.1 mrg rtx mask = gen_int_mode (0xffffffff, DImode);
5459 1.1 mrg emit_insn (gen_mskxl (operands[0], operands[1], mask, operands[2]));
5460 1.1 mrg DONE;
5461 1.1 mrg })
5462 1.1 mrg
5463 1.1 mrg (define_expand "mskql"
5464 1.1.1.2 mrg [(match_operand:DI 0 "register_operand")
5465 1.1.1.2 mrg (match_operand:DI 1 "reg_or_0_operand")
5466 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5467 1.1.1.2 mrg ""
5468 1.1 mrg {
5469 1.1 mrg rtx mask = constm1_rtx;
5470 1.1 mrg emit_insn (gen_mskxl (operands[0], operands[1], mask, operands[2]));
5471 1.1 mrg DONE;
5472 1.1 mrg })
5473 1.1 mrg
5474 1.1.1.2 mrg (define_expand "mskwh"
5475 1.1.1.2 mrg [(match_operand:DI 0 "register_operand")
5476 1.1.1.2 mrg (match_operand:DI 1 "register_operand")
5477 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5478 1.1 mrg ""
5479 1.1 mrg {
5480 1.1 mrg emit_insn (gen_mskxh (operands[0], operands[1], GEN_INT (16), operands[2]));
5481 1.1 mrg DONE;
5482 1.1 mrg })
5483 1.1 mrg
5484 1.1 mrg (define_expand "msklh"
5485 1.1.1.2 mrg [(match_operand:DI 0 "register_operand")
5486 1.1 mrg (match_operand:DI 1 "register_operand")
5487 1.1.1.2 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5488 1.1 mrg ""
5489 1.1.1.2 mrg {
5490 1.1 mrg emit_insn (gen_mskxh (operands[0], operands[1], GEN_INT (32), operands[2]));
5491 1.1 mrg DONE;
5492 1.1 mrg })
5493 1.1 mrg
5494 1.1 mrg (define_expand "mskqh"
5495 1.1 mrg [(match_operand:DI 0 "register_operand")
5496 1.1 mrg (match_operand:DI 1 "register_operand")
5497 1.1 mrg (match_operand:DI 2 "reg_or_8bit_operand")]
5498 1.1 mrg ""
5499 1.1 mrg {
5500 1.1 mrg emit_insn (gen_mskxh (operands[0], operands[1], GEN_INT (64), operands[2]));
5501 1.1 mrg DONE;
5502 1.1 mrg })
5503 1.1 mrg
5504 1.1 mrg (define_expand "builtin_zap"
5505 1.1 mrg [(set (match_operand:DI 0 "register_operand")
5506 1.1 mrg (and:DI (unspec:DI
5507 1.1 mrg [(match_operand:DI 2 "reg_or_cint_operand")]
5508 1.1 mrg UNSPEC_ZAP)
5509 1.1 mrg (match_operand:DI 1 "reg_or_cint_operand")))]
5510 1.1 mrg ""
5511 1.1 mrg {
5512 1.1 mrg if (CONST_INT_P (operands[2]))
5513 1.1 mrg {
5514 1.1 mrg rtx mask = alpha_expand_zap_mask (INTVAL (operands[2]));
5515 1.1 mrg
5516 1.1 mrg if (mask == const0_rtx)
5517 1.1 mrg {
5518 1.1 mrg emit_move_insn (operands[0], const0_rtx);
5519 1.1 mrg DONE;
5520 1.1 mrg }
5521 1.1 mrg if (mask == constm1_rtx)
5522 1.1 mrg {
5523 1.1 mrg emit_move_insn (operands[0], operands[1]);
5524 1.1 mrg DONE;
5525 1.1 mrg }
5526 1.1 mrg
5527 1.1 mrg operands[1] = force_reg (DImode, operands[1]);
5528 1.1 mrg emit_insn (gen_anddi3 (operands[0], operands[1], mask));
5529 1.1 mrg DONE;
5530 1.1 mrg }
5531 1.1.1.2 mrg
5532 1.1 mrg operands[1] = force_reg (DImode, operands[1]);
5533 1.1.1.2 mrg operands[2] = gen_lowpart (QImode, operands[2]);
5534 1.1 mrg })
5535 1.1.1.2 mrg
5536 1.1 mrg (define_insn "*builtin_zap_1"
5537 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r,r,r,r")
5538 1.1 mrg (and:DI (unspec:DI
5539 1.1 mrg [(match_operand:QI 2 "reg_or_cint_operand" "n,n,r,r")]
5540 1.1.1.4 mrg UNSPEC_ZAP)
5541 1.1.1.4 mrg (match_operand:DI 1 "reg_or_cint_operand" "n,r,J,r")))]
5542 1.1 mrg ""
5543 1.1 mrg "@
5544 1.1 mrg #
5545 1.1 mrg #
5546 1.1 mrg bis $31,$31,%0
5547 1.1.1.2 mrg zap %r1,%2,%0"
5548 1.1 mrg [(set_attr "type" "shift,shift,ilog,shift")])
5549 1.1.1.2 mrg
5550 1.1 mrg (define_split
5551 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand")
5552 1.1 mrg (and:DI (unspec:DI
5553 1.1 mrg [(match_operand:QI 2 "const_int_operand")]
5554 1.1 mrg UNSPEC_ZAP)
5555 1.1 mrg (match_operand:DI 1 "const_int_operand")))]
5556 1.1 mrg ""
5557 1.1 mrg [(const_int 0)]
5558 1.1 mrg {
5559 1.1 mrg rtx mask = alpha_expand_zap_mask (INTVAL (operands[2]));
5560 1.1 mrg
5561 1.1 mrg operands[1] = gen_int_mode (INTVAL (operands[1]) & INTVAL (mask), DImode);
5562 1.1 mrg emit_move_insn (operands[0], operands[1]);
5563 1.1 mrg DONE;
5564 1.1 mrg })
5565 1.1 mrg
5566 1.1 mrg (define_split
5567 1.1 mrg [(set (match_operand:DI 0 "register_operand")
5568 1.1 mrg (and:DI (unspec:DI
5569 1.1 mrg [(match_operand:QI 2 "const_int_operand")]
5570 1.1.1.2 mrg UNSPEC_ZAP)
5571 1.1 mrg (match_operand:DI 1 "register_operand")))]
5572 1.1.1.2 mrg ""
5573 1.1 mrg [(set (match_dup 0)
5574 1.1.1.2 mrg (and:DI (match_dup 1) (match_dup 2)))]
5575 1.1 mrg {
5576 1.1 mrg operands[2] = alpha_expand_zap_mask (INTVAL (operands[2]));
5577 1.1 mrg if (operands[2] == const0_rtx)
5578 1.1 mrg {
5579 1.1 mrg emit_move_insn (operands[0], const0_rtx);
5580 1.1 mrg DONE;
5581 1.1 mrg }
5582 1.1 mrg if (operands[2] == constm1_rtx)
5583 1.1 mrg {
5584 1.1 mrg emit_move_insn (operands[0], operands[1]);
5585 1.1 mrg DONE;
5586 1.1 mrg }
5587 1.1 mrg })
5588 1.1 mrg
5589 1.1 mrg (define_expand "builtin_zapnot"
5590 1.1 mrg [(set (match_operand:DI 0 "register_operand")
5591 1.1 mrg (and:DI (unspec:DI
5592 1.1 mrg [(not:QI (match_operand:DI 2 "reg_or_cint_operand"))]
5593 1.1 mrg UNSPEC_ZAP)
5594 1.1 mrg (match_operand:DI 1 "reg_or_cint_operand")))]
5595 1.1 mrg ""
5596 1.1 mrg {
5597 1.1 mrg if (CONST_INT_P (operands[2]))
5598 1.1 mrg {
5599 1.1 mrg rtx mask = alpha_expand_zap_mask (~ INTVAL (operands[2]));
5600 1.1 mrg
5601 1.1 mrg if (mask == const0_rtx)
5602 1.1 mrg {
5603 1.1 mrg emit_move_insn (operands[0], const0_rtx);
5604 1.1 mrg DONE;
5605 1.1 mrg }
5606 1.1 mrg if (mask == constm1_rtx)
5607 1.1 mrg {
5608 1.1 mrg emit_move_insn (operands[0], operands[1]);
5609 1.1 mrg DONE;
5610 1.1 mrg }
5611 1.1 mrg
5612 1.1 mrg operands[1] = force_reg (DImode, operands[1]);
5613 1.1 mrg emit_insn (gen_anddi3 (operands[0], operands[1], mask));
5614 1.1 mrg DONE;
5615 1.1 mrg }
5616 1.1 mrg
5617 1.1 mrg operands[1] = force_reg (DImode, operands[1]);
5618 1.1 mrg operands[2] = gen_lowpart (QImode, operands[2]);
5619 1.1 mrg })
5620 1.1 mrg
5621 1.1 mrg (define_insn "*builtin_zapnot_1"
5622 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
5623 1.1 mrg (and:DI (unspec:DI
5624 1.1 mrg [(not:QI (match_operand:QI 2 "register_operand" "r"))]
5625 1.1 mrg UNSPEC_ZAP)
5626 1.1 mrg (match_operand:DI 1 "reg_or_0_operand" "rJ")))]
5627 1.1 mrg ""
5628 1.1 mrg "zapnot %r1,%2,%0"
5629 1.1 mrg [(set_attr "type" "shift")])
5630 1.1 mrg
5631 1.1 mrg (define_insn "builtin_amask"
5632 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
5633 1.1 mrg (unspec:DI [(match_operand:DI 1 "reg_or_8bit_operand" "rI")]
5634 1.1.1.2 mrg UNSPEC_AMASK))]
5635 1.1.1.2 mrg ""
5636 1.1.1.2 mrg "amask %1,%0"
5637 1.1 mrg [(set_attr "type" "ilog")])
5638 1.1 mrg
5639 1.1 mrg (define_insn "builtin_implver"
5640 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
5641 1.1 mrg (unspec:DI [(const_int 0)] UNSPEC_IMPLVER))]
5642 1.1 mrg ""
5643 1.1 mrg "implver %0"
5644 1.1 mrg [(set_attr "type" "ilog")])
5645 1.1.1.2 mrg
5646 1.1.1.2 mrg (define_insn "builtin_rpcc"
5647 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand" "=r")
5648 1.1 mrg (unspec_volatile:DI [(const_int 0)] UNSPECV_RPCC))]
5649 1.1 mrg ""
5650 1.1 mrg "rpcc %0"
5651 1.1 mrg [(set_attr "type" "ilog")])
5652 1.1 mrg
5653 1.1 mrg (define_expand "builtin_minub8"
5654 1.1 mrg [(match_operand:DI 0 "register_operand")
5655 1.1 mrg (match_operand:DI 1 "reg_or_0_operand")
5656 1.1.1.2 mrg (match_operand:DI 2 "reg_or_0_operand")]
5657 1.1.1.2 mrg "TARGET_MAX"
5658 1.1.1.2 mrg {
5659 1.1 mrg alpha_expand_builtin_vector_binop (gen_uminv8qi3, V8QImode, operands[0],
5660 1.1 mrg operands[1], operands[2]);
5661 1.1 mrg DONE;
5662 1.1 mrg })
5663 1.1 mrg
5664 1.1 mrg (define_expand "builtin_minsb8"
5665 1.1 mrg [(match_operand:DI 0 "register_operand")
5666 1.1 mrg (match_operand:DI 1 "reg_or_0_operand")
5667 1.1.1.2 mrg (match_operand:DI 2 "reg_or_0_operand")]
5668 1.1.1.2 mrg "TARGET_MAX"
5669 1.1.1.2 mrg {
5670 1.1 mrg alpha_expand_builtin_vector_binop (gen_sminv8qi3, V8QImode, operands[0],
5671 1.1 mrg operands[1], operands[2]);
5672 1.1 mrg DONE;
5673 1.1 mrg })
5674 1.1 mrg
5675 1.1 mrg (define_expand "builtin_minuw4"
5676 1.1 mrg [(match_operand:DI 0 "register_operand")
5677 1.1 mrg (match_operand:DI 1 "reg_or_0_operand")
5678 1.1.1.2 mrg (match_operand:DI 2 "reg_or_0_operand")]
5679 1.1.1.2 mrg "TARGET_MAX"
5680 1.1.1.2 mrg {
5681 1.1 mrg alpha_expand_builtin_vector_binop (gen_uminv4hi3, V4HImode, operands[0],
5682 1.1 mrg operands[1], operands[2]);
5683 1.1 mrg DONE;
5684 1.1 mrg })
5685 1.1 mrg
5686 1.1 mrg (define_expand "builtin_minsw4"
5687 1.1 mrg [(match_operand:DI 0 "register_operand")
5688 1.1 mrg (match_operand:DI 1 "reg_or_0_operand")
5689 1.1.1.2 mrg (match_operand:DI 2 "reg_or_0_operand")]
5690 1.1.1.2 mrg "TARGET_MAX"
5691 1.1.1.2 mrg {
5692 1.1 mrg alpha_expand_builtin_vector_binop (gen_sminv4hi3, V4HImode, operands[0],
5693 1.1 mrg operands[1], operands[2]);
5694 1.1 mrg DONE;
5695 1.1 mrg })
5696 1.1 mrg
5697 1.1 mrg (define_expand "builtin_maxub8"
5698 1.1 mrg [(match_operand:DI 0 "register_operand")
5699 1.1 mrg (match_operand:DI 1 "reg_or_0_operand")
5700 1.1.1.2 mrg (match_operand:DI 2 "reg_or_0_operand")]
5701 1.1.1.2 mrg "TARGET_MAX"
5702 1.1.1.2 mrg {
5703 1.1 mrg alpha_expand_builtin_vector_binop (gen_umaxv8qi3, V8QImode, operands[0],
5704 1.1 mrg operands[1], operands[2]);
5705 1.1 mrg DONE;
5706 1.1 mrg })
5707 1.1 mrg
5708 1.1 mrg (define_expand "builtin_maxsb8"
5709 1.1 mrg [(match_operand:DI 0 "register_operand")
5710 1.1 mrg (match_operand:DI 1 "reg_or_0_operand")
5711 1.1.1.2 mrg (match_operand:DI 2 "reg_or_0_operand")]
5712 1.1.1.2 mrg "TARGET_MAX"
5713 1.1.1.2 mrg {
5714 1.1 mrg alpha_expand_builtin_vector_binop (gen_smaxv8qi3, V8QImode, operands[0],
5715 1.1 mrg operands[1], operands[2]);
5716 1.1 mrg DONE;
5717 1.1 mrg })
5718 1.1 mrg
5719 1.1 mrg (define_expand "builtin_maxuw4"
5720 1.1 mrg [(match_operand:DI 0 "register_operand")
5721 1.1 mrg (match_operand:DI 1 "reg_or_0_operand")
5722 1.1 mrg (match_operand:DI 2 "reg_or_0_operand")]
5723 1.1 mrg "TARGET_MAX"
5724 1.1 mrg {
5725 1.1 mrg alpha_expand_builtin_vector_binop (gen_umaxv4hi3, V4HImode, operands[0],
5726 1.1 mrg operands[1], operands[2]);
5727 1.1 mrg DONE;
5728 1.1 mrg })
5729 1.1 mrg
5730 1.1 mrg (define_expand "builtin_maxsw4"
5731 1.1.1.2 mrg [(match_operand:DI 0 "register_operand")
5732 1.1 mrg (match_operand:DI 1 "reg_or_0_operand")
5733 1.1 mrg (match_operand:DI 2 "reg_or_0_operand")]
5734 1.1.1.2 mrg "TARGET_MAX"
5735 1.1 mrg {
5736 1.1 mrg alpha_expand_builtin_vector_binop (gen_smaxv4hi3, V4HImode, operands[0],
5737 1.1 mrg operands[1], operands[2]);
5738 1.1 mrg DONE;
5739 1.1 mrg })
5740 1.1 mrg
5741 1.1 mrg (define_insn "builtin_perr"
5742 1.1 mrg [(set (match_operand:DI 0 "register_operand" "=r")
5743 1.1 mrg (unspec:DI [(match_operand:DI 1 "reg_or_0_operand" "%rJ")
5744 1.1 mrg (match_operand:DI 2 "reg_or_8bit_operand" "rJ")]
5745 1.1 mrg UNSPEC_PERR))]
5746 1.1 mrg "TARGET_MAX"
5747 1.1 mrg "perr %r1,%r2,%0"
5748 1.1 mrg [(set_attr "type" "mvi")])
5749 1.1 mrg
5750 1.1.1.2 mrg (define_expand "builtin_pklb"
5751 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand")
5752 1.1 mrg (vec_concat:V8QI
5753 1.1 mrg (vec_concat:V4QI
5754 1.1 mrg (truncate:V2QI (match_operand:DI 1 "register_operand"))
5755 1.1 mrg (match_dup 2))
5756 1.1 mrg (match_dup 3)))]
5757 1.1.1.2 mrg "TARGET_MAX"
5758 1.1 mrg {
5759 1.1.1.2 mrg operands[0] = gen_lowpart (V8QImode, operands[0]);
5760 1.1 mrg operands[1] = gen_lowpart (V2SImode, operands[1]);
5761 1.1 mrg operands[2] = CONST0_RTX (V2QImode);
5762 1.1 mrg operands[3] = CONST0_RTX (V4QImode);
5763 1.1 mrg })
5764 1.1 mrg
5765 1.1 mrg (define_insn "*pklb"
5766 1.1 mrg [(set (match_operand:V8QI 0 "register_operand" "=r")
5767 1.1 mrg (vec_concat:V8QI
5768 1.1 mrg (vec_concat:V4QI
5769 1.1 mrg (truncate:V2QI (match_operand:V2SI 1 "register_operand" "r"))
5770 1.1 mrg (match_operand:V2QI 2 "const0_operand"))
5771 1.1 mrg (match_operand:V4QI 3 "const0_operand")))]
5772 1.1.1.2 mrg "TARGET_MAX"
5773 1.1 mrg "pklb %r1,%0"
5774 1.1 mrg [(set_attr "type" "mvi")])
5775 1.1 mrg
5776 1.1 mrg (define_expand "builtin_pkwb"
5777 1.1 mrg [(set (match_operand:DI 0 "register_operand")
5778 1.1.1.2 mrg (vec_concat:V8QI
5779 1.1 mrg (truncate:V4QI (match_operand:DI 1 "register_operand"))
5780 1.1.1.2 mrg (match_dup 2)))]
5781 1.1 mrg "TARGET_MAX"
5782 1.1 mrg {
5783 1.1 mrg operands[0] = gen_lowpart (V8QImode, operands[0]);
5784 1.1 mrg operands[1] = gen_lowpart (V4HImode, operands[1]);
5785 1.1 mrg operands[2] = CONST0_RTX (V4QImode);
5786 1.1 mrg })
5787 1.1 mrg
5788 1.1 mrg (define_insn "*pkwb"
5789 1.1 mrg [(set (match_operand:V8QI 0 "register_operand" "=r")
5790 1.1 mrg (vec_concat:V8QI
5791 1.1 mrg (truncate:V4QI (match_operand:V4HI 1 "register_operand" "r"))
5792 1.1 mrg (match_operand:V4QI 2 "const0_operand")))]
5793 1.1 mrg "TARGET_MAX"
5794 1.1 mrg "pkwb %r1,%0"
5795 1.1 mrg [(set_attr "type" "mvi")])
5796 1.1 mrg
5797 1.1 mrg (define_expand "builtin_unpkbl"
5798 1.1.1.2 mrg [(set (match_operand:DI 0 "register_operand")
5799 1.1 mrg (zero_extend:V2SI
5800 1.1.1.2 mrg (vec_select:V2QI (match_operand:DI 1 "register_operand")
5801 1.1 mrg (parallel [(const_int 0) (const_int 1)]))))]
5802 1.1 mrg "TARGET_MAX"
5803 1.1 mrg {
5804 1.1 mrg operands[0] = gen_lowpart (V2SImode, operands[0]);
5805 1.1 mrg operands[1] = gen_lowpart (V8QImode, operands[1]);
5806 1.1 mrg })
5807 1.1 mrg
5808 1.1 mrg (define_insn "*unpkbl"
5809 1.1 mrg [(set (match_operand:V2SI 0 "register_operand" "=r")
5810 1.1 mrg (zero_extend:V2SI
5811 1.1 mrg (vec_select:V2QI (match_operand:V8QI 1 "reg_or_0_operand" "rW")
5812 1.1 mrg (parallel [(const_int 0) (const_int 1)]))))]
5813 1.1 mrg "TARGET_MAX"
5814 1.1 mrg "unpkbl %r1,%0"
5815 1.1 mrg [(set_attr "type" "mvi")])
5816 1.1 mrg
5817 1.1 mrg (define_expand "builtin_unpkbw"
5818 1.1 mrg [(set (match_operand:DI 0 "register_operand")
5819 1.1 mrg (zero_extend:V4HI
5820 1.1 mrg (vec_select:V4QI (match_operand:DI 1 "register_operand")
5821 1.1 mrg (parallel [(const_int 0)
5822 1.1 mrg (const_int 1)
5823 1.1 mrg (const_int 2)
5824 1.1 mrg (const_int 3)]))))]
5825 1.1 mrg "TARGET_MAX"
5826 1.1 mrg {
5827 1.1 mrg operands[0] = gen_lowpart (V4HImode, operands[0]);
5828 1.1 mrg operands[1] = gen_lowpart (V8QImode, operands[1]);
5829 1.1.1.2 mrg })
5830 1.1 mrg
5831 1.1.1.2 mrg (define_insn "*unpkbw"
5832 1.1 mrg [(set (match_operand:V4HI 0 "register_operand" "=r")
5833 1.1 mrg (zero_extend:V4HI
5834 1.1 mrg (vec_select:V4QI (match_operand:V8QI 1 "reg_or_0_operand" "rW")
5835 1.1 mrg (parallel [(const_int 0)
5836 1.1 mrg (const_int 1)
5837 1.1 mrg (const_int 2)
5838 1.1 mrg (const_int 3)]))))]
5839 1.1 mrg "TARGET_MAX"
5840 1.1 mrg "unpkbw %r1,%0"
5841 1.1 mrg [(set_attr "type" "mvi")])
5842 1.1 mrg
5844 1.1.1.2 mrg (include "sync.md")
5845 1.1 mrg
5847 1.1 mrg ;; The call patterns are at the end of the file because their
5848 1.1 mrg ;; wildcard operand0 interferes with nice recognition.
5849 1.1 mrg
5850 1.1 mrg (define_insn "*call_value_osf_1_er_noreturn"
5851 1.1 mrg [(set (match_operand 0)
5852 1.1 mrg (call (mem:DI (match_operand:DI 1 "call_operand" "c,R,s"))
5853 1.1 mrg (match_operand 2)))
5854 1.1 mrg (use (reg:DI 29))
5855 1.1 mrg (clobber (reg:DI 26))]
5856 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF
5857 1.1 mrg && find_reg_note (insn, REG_NORETURN, NULL_RTX)"
5858 1.1 mrg "@
5859 1.1 mrg jsr $26,($27),0
5860 1.1.1.2 mrg bsr $26,%1\t\t!samegp
5861 1.1.1.2 mrg ldq $27,%1($29)\t\t!literal!%#\;jsr $26,($27),%1\t\t!lituse_jsr!%#"
5862 1.1.1.2 mrg [(set_attr "type" "jsr")
5863 1.1 mrg (set_attr "length" "*,*,8")])
5864 1.1 mrg
5865 1.1 mrg (define_insn "*call_value_osf_1_er"
5866 1.1 mrg [(set (match_operand 0)
5867 1.1 mrg (call (mem:DI (match_operand:DI 1 "call_operand" "c,R,s"))
5868 1.1 mrg (match_operand 2)))
5869 1.1 mrg (use (reg:DI 29))
5870 1.1 mrg (clobber (reg:DI 26))]
5871 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
5872 1.1 mrg "@
5873 1.1 mrg jsr $26,(%1),0\;ldah $29,0($26)\t\t!gpdisp!%*\;lda $29,0($29)\t\t!gpdisp!%*
5874 1.1 mrg bsr $26,%1\t\t!samegp
5875 1.1 mrg ldq $27,%1($29)\t\t!literal!%#\;jsr $26,($27),0\t\t!lituse_jsr!%#\;ldah $29,0($26)\t\t!gpdisp!%*\;lda $29,0($29)\t\t!gpdisp!%*"
5876 1.1 mrg [(set_attr "type" "jsr")
5877 1.1 mrg (set_attr "length" "12,*,16")])
5878 1.1 mrg
5879 1.1 mrg ;; We must use peep2 instead of a split because we need accurate life
5880 1.1 mrg ;; information for $gp. Consider the case of { bar(); while (1); }.
5881 1.1 mrg (define_peephole2
5882 1.1 mrg [(parallel [(set (match_operand 0)
5883 1.1 mrg (call (mem:DI (match_operand:DI 1 "call_operand"))
5884 1.1 mrg (match_operand 2)))
5885 1.1 mrg (use (reg:DI 29))
5886 1.1 mrg (clobber (reg:DI 26))])]
5887 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF && reload_completed
5888 1.1 mrg && ! samegp_function_operand (operands[1], Pmode)
5889 1.1 mrg && (peep2_regno_dead_p (1, 29)
5890 1.1 mrg || find_reg_note (insn, REG_NORETURN, NULL_RTX))"
5891 1.1 mrg [(parallel [(set (match_dup 0)
5892 1.1 mrg (call (mem:DI (match_dup 3))
5893 1.1.1.2 mrg (match_dup 2)))
5894 1.1.1.2 mrg (use (reg:DI 29))
5895 1.1.1.2 mrg (use (match_dup 1))
5896 1.1 mrg (use (match_dup 4))
5897 1.1 mrg (clobber (reg:DI 26))])]
5898 1.1 mrg {
5899 1.1 mrg if (CONSTANT_P (operands[1]))
5900 1.1 mrg {
5901 1.1 mrg operands[3] = gen_rtx_REG (Pmode, 27);
5902 1.1 mrg operands[4] = GEN_INT (alpha_next_sequence_number++);
5903 1.1 mrg emit_insn (gen_movdi_er_high_g (operands[3], pic_offset_table_rtx,
5904 1.1 mrg operands[1], operands[4]));
5905 1.1 mrg }
5906 1.1 mrg else
5907 1.1 mrg {
5908 1.1 mrg operands[3] = operands[1];
5909 1.1 mrg operands[1] = const0_rtx;
5910 1.1 mrg operands[4] = const0_rtx;
5911 1.1 mrg }
5912 1.1 mrg })
5913 1.1 mrg
5914 1.1 mrg (define_peephole2
5915 1.1 mrg [(parallel [(set (match_operand 0)
5916 1.1 mrg (call (mem:DI (match_operand:DI 1 "call_operand"))
5917 1.1 mrg (match_operand 2)))
5918 1.1 mrg (use (reg:DI 29))
5919 1.1 mrg (clobber (reg:DI 26))])]
5920 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF && reload_completed
5921 1.1 mrg && ! samegp_function_operand (operands[1], Pmode)
5922 1.1 mrg && ! (peep2_regno_dead_p (1, 29)
5923 1.1 mrg || find_reg_note (insn, REG_NORETURN, NULL_RTX))"
5924 1.1 mrg [(parallel [(set (match_dup 0)
5925 1.1 mrg (call (mem:DI (match_dup 3))
5926 1.1 mrg (match_dup 2)))
5927 1.1 mrg (set (match_dup 6)
5928 1.1 mrg (unspec:DI [(match_dup 6) (match_dup 4)] UNSPEC_LDGP1))
5929 1.1 mrg (use (match_dup 1))
5930 1.1 mrg (use (match_dup 5))
5931 1.1.1.2 mrg (clobber (reg:DI 26))])
5932 1.1 mrg (set (match_dup 6)
5933 1.1.1.2 mrg (unspec:DI [(match_dup 6) (match_dup 4)] UNSPEC_LDGP2))]
5934 1.1 mrg {
5935 1.1.1.2 mrg if (CONSTANT_P (operands[1]))
5936 1.1.1.2 mrg {
5937 1.1 mrg operands[3] = gen_rtx_REG (Pmode, 27);
5938 1.1 mrg operands[5] = GEN_INT (alpha_next_sequence_number++);
5939 1.1 mrg emit_insn (gen_movdi_er_high_g (operands[3], pic_offset_table_rtx,
5940 1.1 mrg operands[1], operands[5]));
5941 1.1 mrg }
5942 1.1 mrg else
5943 1.1.1.2 mrg {
5944 1.1 mrg operands[3] = operands[1];
5945 1.1.1.2 mrg operands[1] = const0_rtx;
5946 1.1 mrg operands[5] = const0_rtx;
5947 1.1.1.2 mrg }
5948 1.1 mrg operands[4] = GEN_INT (alpha_next_sequence_number++);
5949 1.1.1.2 mrg operands[6] = pic_offset_table_rtx;
5950 1.1.1.2 mrg })
5951 1.1 mrg
5952 1.1 mrg (define_insn "*call_value_osf_2_er_nogp"
5953 1.1 mrg [(set (match_operand 0)
5954 1.1 mrg (call (mem:DI (match_operand:DI 1 "register_operand" "c"))
5955 1.1 mrg (match_operand 2)))
5956 1.1 mrg (use (reg:DI 29))
5957 1.1 mrg (use (match_operand 3))
5958 1.1 mrg (use (match_operand 4))
5959 1.1.1.2 mrg (clobber (reg:DI 26))]
5960 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
5961 1.1.1.2 mrg "jsr $26,(%1),%3%J4"
5962 1.1 mrg [(set_attr "type" "jsr")])
5963 1.1 mrg
5964 1.1 mrg (define_insn "*call_value_osf_2_er"
5965 1.1 mrg [(set (match_operand 0)
5966 1.1 mrg (call (mem:DI (match_operand:DI 1 "register_operand" "c"))
5967 1.1 mrg (match_operand 2)))
5968 1.1 mrg (set (reg:DI 29)
5969 1.1 mrg (unspec:DI [(reg:DI 29) (match_operand 5 "const_int_operand")]
5970 1.1 mrg UNSPEC_LDGP1))
5971 1.1 mrg (use (match_operand 3))
5972 1.1 mrg (use (match_operand 4))
5973 1.1.1.2 mrg (clobber (reg:DI 26))]
5974 1.1.1.2 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
5975 1.1.1.2 mrg "jsr $26,(%1),%3%J4\;ldah $29,0($26)\t\t!gpdisp!%5"
5976 1.1.1.2 mrg [(set_attr "type" "jsr")
5977 1.1.1.2 mrg (set_attr "cannot_copy" "true")
5978 1.1.1.2 mrg (set_attr "length" "8")])
5979 1.1.1.2 mrg
5980 1.1.1.2 mrg (define_insn "*call_value_osf_1_noreturn"
5981 1.1.1.2 mrg [(set (match_operand 0)
5982 1.1.1.2 mrg (call (mem:DI (match_operand:DI 1 "call_operand" "c,R,s"))
5983 1.1.1.2 mrg (match_operand 2)))
5984 1.1 mrg (use (reg:DI 29))
5985 1.1.1.2 mrg (clobber (reg:DI 26))]
5986 1.1 mrg "! TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF
5987 1.1 mrg && find_reg_note (insn, REG_NORETURN, NULL_RTX)"
5988 1.1 mrg "@
5989 1.1.1.2 mrg jsr $26,($27),0
5990 1.1.1.2 mrg bsr $26,$%1..ng
5991 1.1.1.2 mrg jsr $26,%1"
5992 1.1.1.2 mrg [(set_attr "type" "jsr")
5993 1.1.1.2 mrg (set_attr "length" "*,*,8")])
5994 1.1.1.2 mrg
5995 1.1.1.2 mrg (define_int_iterator TLS_CALL
5996 1.1.1.2 mrg [UNSPEC_TLSGD_CALL
5997 1.1.1.2 mrg UNSPEC_TLSLDM_CALL])
5998 1.1.1.2 mrg
5999 1.1.1.2 mrg (define_int_attr tls
6000 1.1.1.2 mrg [(UNSPEC_TLSGD_CALL "tlsgd")
6001 1.1.1.2 mrg (UNSPEC_TLSLDM_CALL "tlsldm")])
6002 1.1.1.2 mrg
6003 1.1.1.2 mrg (define_insn "call_value_osf_<tls>"
6004 1.1.1.2 mrg [(set (match_operand 0)
6005 1.1 mrg (call (mem:DI (match_operand:DI 1 "symbolic_operand"))
6006 1.1 mrg (const_int 0)))
6007 1.1 mrg (unspec [(match_operand:DI 2 "const_int_operand")] TLS_CALL)
6008 1.1 mrg (use (reg:DI 29))
6009 1.1 mrg (clobber (reg:DI 26))]
6010 1.1 mrg "HAVE_AS_TLS"
6011 1.1 mrg "ldq $27,%1($29)\t\t!literal!%2\;jsr $26,($27),%1\t\t!lituse_<tls>!%2\;ldah $29,0($26)\t\t!gpdisp!%*\;lda $29,0($29)\t\t!gpdisp!%*"
6012 1.1.1.2 mrg [(set_attr "type" "jsr")
6013 1.1 mrg (set_attr "length" "16")])
6014 1.1.1.2 mrg
6015 1.1 mrg ;; We must use peep2 instead of a split because we need accurate life
6016 1.1 mrg ;; information for $gp.
6017 1.1 mrg (define_peephole2
6018 1.1 mrg [(parallel
6019 1.1 mrg [(set (match_operand 0)
6020 1.1 mrg (call (mem:DI (match_operand:DI 1 "symbolic_operand"))
6021 1.1 mrg (const_int 0)))
6022 1.1.1.2 mrg (unspec [(match_operand:DI 2 "const_int_operand")] TLS_CALL)
6023 1.1 mrg (use (reg:DI 29))
6024 1.1.1.2 mrg (clobber (reg:DI 26))])]
6025 1.1.1.2 mrg "HAVE_AS_TLS && reload_completed
6026 1.1.1.2 mrg && peep2_regno_dead_p (1, 29)"
6027 1.1.1.2 mrg [(set (match_dup 3)
6028 1.1.1.2 mrg (unspec:DI [(match_dup 5)
6029 1.1.1.2 mrg (match_dup 1)
6030 1.1.1.2 mrg (match_dup 2)] UNSPEC_LITERAL))
6031 1.1.1.2 mrg (parallel [(set (match_dup 0)
6032 1.1.1.2 mrg (call (mem:DI (match_dup 3))
6033 1.1.1.2 mrg (const_int 0)))
6034 1.1 mrg (use (match_dup 5))
6035 1.1 mrg (use (match_dup 1))
6036 1.1 mrg (use (unspec [(match_dup 2)] TLS_CALL))
6037 1.1 mrg (clobber (reg:DI 26))])
6038 1.1 mrg (set (match_dup 5)
6039 1.1 mrg (unspec:DI [(match_dup 5) (match_dup 4)] UNSPEC_LDGP2))]
6040 1.1 mrg {
6041 1.1 mrg operands[3] = gen_rtx_REG (Pmode, 27);
6042 1.1 mrg operands[4] = GEN_INT (alpha_next_sequence_number++);
6043 1.1 mrg operands[5] = pic_offset_table_rtx;
6044 1.1.1.2 mrg })
6045 1.1 mrg
6046 1.1 mrg (define_peephole2
6047 1.1 mrg [(parallel
6048 1.1 mrg [(set (match_operand 0)
6049 1.1 mrg (call (mem:DI (match_operand:DI 1 "symbolic_operand"))
6050 1.1 mrg (const_int 0)))
6051 1.1 mrg (unspec [(match_operand:DI 2 "const_int_operand")] TLS_CALL)
6052 1.1.1.2 mrg (use (reg:DI 29))
6053 1.1 mrg (clobber (reg:DI 26))])]
6054 1.1 mrg "HAVE_AS_TLS && reload_completed
6055 1.1.1.2 mrg && !peep2_regno_dead_p (1, 29)"
6056 1.1 mrg [(set (match_dup 3)
6057 1.1.1.2 mrg (unspec:DI [(match_dup 5)
6058 1.1 mrg (match_dup 1)
6059 1.1 mrg (match_dup 2)] UNSPEC_LITERAL))
6060 1.1 mrg (parallel [(set (match_dup 0)
6061 1.1 mrg (call (mem:DI (match_dup 3))
6062 1.1 mrg (const_int 0)))
6063 1.1 mrg (set (match_dup 5)
6064 1.1 mrg (unspec:DI [(match_dup 5) (match_dup 4)] UNSPEC_LDGP1))
6065 1.1 mrg (use (match_dup 1))
6066 1.1 mrg (use (unspec [(match_dup 2)] TLS_CALL))
6067 1.1 mrg (clobber (reg:DI 26))])
6068 1.1 mrg (set (match_dup 5)
6069 1.1.1.2 mrg (unspec:DI [(match_dup 5) (match_dup 4)] UNSPEC_LDGP2))]
6070 1.1 mrg {
6071 1.1.1.2 mrg operands[3] = gen_rtx_REG (Pmode, 27);
6072 1.1 mrg operands[4] = GEN_INT (alpha_next_sequence_number++);
6073 1.1 mrg operands[5] = pic_offset_table_rtx;
6074 1.1 mrg })
6075 1.1 mrg
6076 1.1 mrg (define_insn "*call_value_osf_1"
6077 1.1 mrg [(set (match_operand 0)
6078 1.1 mrg (call (mem:DI (match_operand:DI 1 "call_operand" "c,R,s"))
6079 1.1 mrg (match_operand 2)))
6080 1.1 mrg (use (reg:DI 29))
6081 1.1.1.2 mrg (clobber (reg:DI 26))]
6082 1.1 mrg "! TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
6083 1.1.1.2 mrg "@
6084 1.1 mrg jsr $26,($27),0\;ldgp $29,0($26)
6085 1.1 mrg bsr $26,$%1..ng
6086 1.1 mrg jsr $26,%1\;ldgp $29,0($26)"
6087 1.1 mrg [(set_attr "type" "jsr")
6088 1.1 mrg (set_attr "length" "12,*,16")])
6089 1.1 mrg
6090 1.1 mrg (define_insn "*sibcall_value_osf_1_er"
6091 1.1 mrg [(set (match_operand 0)
6092 1.1 mrg (call (mem:DI (match_operand:DI 1 "symbolic_operand" "R,s"))
6093 1.1 mrg (match_operand 2)))
6094 1.1 mrg (unspec [(reg:DI 29)] UNSPEC_SIBCALL)]
6095 1.1 mrg "TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
6096 1.1.1.2 mrg "@
6097 1.1 mrg br $31,%1\t\t!samegp
6098 1.1.1.2 mrg ldq $27,%1($29)\t\t!literal!%#\;jmp $31,($27),%1\t\t!lituse_jsr!%#"
6099 1.1 mrg [(set_attr "type" "jsr")
6100 1.1 mrg (set_attr "length" "*,8")])
6101 1.1 mrg
6102 1.1 mrg (define_insn "*sibcall_value_osf_1"
6103 1.1 mrg [(set (match_operand 0)
6104 1.1 mrg (call (mem:DI (match_operand:DI 1 "symbolic_operand" "R,s"))
6105 1.1 mrg (match_operand 2)))
6106 1.1 mrg (unspec [(reg:DI 29)] UNSPEC_SIBCALL)]
6107 1.1 mrg "! TARGET_EXPLICIT_RELOCS && TARGET_ABI_OSF"
6108 1.1 mrg "@
6109 1.1 mrg br $31,$%1..ng
6110 1.1.1.2 mrg lda $27,%1\;jmp $31,($27),%1"
6111 1.1.1.2 mrg [(set_attr "type" "jsr")
6112 1.1 mrg (set_attr "length" "*,8")])
6113 1.1 mrg
6114 1.1 mrg ; GAS relies on the order and position of instructions output below in order
6115 1.1 mrg ; to generate relocs for VMS link to potentially optimize the call.
6116 1.1 mrg ; Please do not molest.
6117 1.1 mrg (define_insn "*call_value_vms_1"
6118 1.1 mrg [(set (match_operand 0)
6119 (call (mem:DI (match_operand:DI 1 "call_operand" "r,s"))
6120 (match_operand 2)))
6121 (use (match_operand:DI 3 "nonmemory_operand" "r,n"))
6122 (use (reg:DI 25))
6123 (use (reg:DI 26))
6124 (clobber (reg:DI 27))]
6125 "TARGET_ABI_OPEN_VMS"
6126 {
6127 switch (which_alternative)
6128 {
6129 case 0:
6130 return "mov %3,$27\;jsr $26,0\;ldq $27,0($29)";
6131 case 1:
6132 operands [3] = alpha_use_linkage (operands [1], true, false);
6133 operands [4] = alpha_use_linkage (operands [1], false, false);
6134 return "ldq $26,%4\;ldq $27,%3\;jsr $26,%1\;ldq $27,0($29)";
6135 default:
6136 gcc_unreachable ();
6137 }
6138 }
6139 [(set_attr "type" "jsr")
6140 (set_attr "length" "12,16")])
6141