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1 709 jeremybenn
;; Predicate definitions for MIPS.
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;; Copyright (C) 2004, 2007, 2008 Free Software Foundation, Inc.
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;;
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;; This file is part of GCC.
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;;
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;; GCC is free software; you can redistribute it and/or modify
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;; it under the terms of the GNU General Public License as published by
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;; the Free Software Foundation; either version 3, or (at your option)
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;; any later version.
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;;
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;; GCC is distributed in the hope that it will be useful,
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;; but WITHOUT ANY WARRANTY; without even the implied warranty of
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;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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;; GNU General Public License for more details.
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;;
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;; You should have received a copy of the GNU General Public License
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;; along with GCC; see the file COPYING3.  If not see
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;; .
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(define_predicate "const_uns_arith_operand"
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  (and (match_code "const_int")
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       (match_test "SMALL_OPERAND_UNSIGNED (INTVAL (op))")))
23
 
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(define_predicate "uns_arith_operand"
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  (ior (match_operand 0 "const_uns_arith_operand")
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       (match_operand 0 "register_operand")))
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(define_predicate "const_arith_operand"
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  (and (match_code "const_int")
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       (match_test "SMALL_OPERAND (INTVAL (op))")))
31
 
32
(define_predicate "arith_operand"
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  (ior (match_operand 0 "const_arith_operand")
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       (match_operand 0 "register_operand")))
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(define_predicate "const_uimm6_operand"
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  (and (match_code "const_int")
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       (match_test "UIMM6_OPERAND (INTVAL (op))")))
39
 
40
(define_predicate "const_imm10_operand"
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  (and (match_code "const_int")
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       (match_test "IMM10_OPERAND (INTVAL (op))")))
43
 
44
(define_predicate "reg_imm10_operand"
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  (ior (match_operand 0 "const_imm10_operand")
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       (match_operand 0 "register_operand")))
47
 
48
(define_predicate "sle_operand"
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  (and (match_code "const_int")
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       (match_test "SMALL_OPERAND (INTVAL (op) + 1)")))
51
 
52
(define_predicate "sleu_operand"
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  (and (match_operand 0 "sle_operand")
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       (match_test "INTVAL (op) + 1 != 0")))
55
 
56
(define_predicate "const_0_operand"
57
  (and (match_code "const_int,const_double,const_vector")
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       (match_test "op == CONST0_RTX (GET_MODE (op))")))
59
 
60
(define_predicate "reg_or_0_operand"
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  (ior (and (match_operand 0 "const_0_operand")
62
            (not (match_test "TARGET_MIPS16")))
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       (match_operand 0 "register_operand")))
64
 
65
(define_predicate "const_1_operand"
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  (and (match_code "const_int,const_double,const_vector")
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       (match_test "op == CONST1_RTX (GET_MODE (op))")))
68
 
69
(define_predicate "reg_or_1_operand"
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  (ior (match_operand 0 "const_1_operand")
71
       (match_operand 0 "register_operand")))
72
 
73
;; This is used for indexing into vectors, and hence only accepts const_int.
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(define_predicate "const_0_or_1_operand"
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  (and (match_code "const_int")
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       (match_test "IN_RANGE (INTVAL (op), 0, 1)")))
77
 
78
(define_predicate "const_2_or_3_operand"
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  (and (match_code "const_int")
80
       (match_test "IN_RANGE (INTVAL (op), 2, 3)")))
81
 
82
(define_predicate "const_0_to_3_operand"
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  (and (match_code "const_int")
84
       (match_test "IN_RANGE (INTVAL (op), 0, 3)")))
85
 
86
(define_predicate "qi_mask_operand"
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  (and (match_code "const_int")
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       (match_test "UINTVAL (op) == 0xff")))
89
 
90
(define_predicate "hi_mask_operand"
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  (and (match_code "const_int")
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       (match_test "UINTVAL (op) == 0xffff")))
93
 
94
(define_predicate "si_mask_operand"
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  (and (match_code "const_int")
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       (match_test "UINTVAL (op) == 0xffffffff")))
97
 
98
(define_predicate "and_load_operand"
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  (ior (match_operand 0 "qi_mask_operand")
100
       (match_operand 0 "hi_mask_operand")
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       (match_operand 0 "si_mask_operand")))
102
 
103
(define_predicate "low_bitmask_operand"
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  (and (match_test "ISA_HAS_EXT_INS")
105
       (match_code "const_int")
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       (match_test "low_bitmask_len (mode, INTVAL (op)) > 16")))
107
 
108
(define_predicate "and_reg_operand"
109
  (ior (match_operand 0 "register_operand")
110
       (and (not (match_test "TARGET_MIPS16"))
111
            (match_operand 0 "const_uns_arith_operand"))
112
       (match_operand 0 "low_bitmask_operand")
113
       (match_operand 0 "si_mask_operand")))
114
 
115
(define_predicate "and_operand"
116
  (ior (match_operand 0 "and_load_operand")
117
       (match_operand 0 "and_reg_operand")))
118
 
119
(define_predicate "d_operand"
120
  (and (match_code "reg")
121
       (match_test "TARGET_MIPS16
122
                    ? M16_REG_P (REGNO (op))
123
                    : GP_REG_P (REGNO (op))")))
124
 
125
(define_predicate "lo_operand"
126
  (and (match_code "reg")
127
       (match_test "REGNO (op) == LO_REGNUM")))
128
 
129
(define_predicate "hilo_operand"
130
  (and (match_code "reg")
131
       (match_test "MD_REG_P (REGNO (op))")))
132
 
133
(define_predicate "fcc_reload_operand"
134
  (and (match_code "reg,subreg")
135
       (match_test "ST_REG_P (true_regnum (op))")))
136
 
137
(define_predicate "muldiv_target_operand"
138
  (if_then_else (match_test "TARGET_MIPS16")
139
                (match_operand 0 "hilo_operand")
140
                (match_operand 0 "register_operand")))
141
 
142
(define_special_predicate "pc_or_label_operand"
143
  (match_code "pc,label_ref"))
144
 
145
(define_predicate "const_call_insn_operand"
146
  (match_code "const,symbol_ref,label_ref")
147
{
148
  enum mips_symbol_type symbol_type;
149
 
150
  if (!mips_symbolic_constant_p (op, SYMBOL_CONTEXT_CALL, &symbol_type))
151
    return false;
152
 
153
  switch (symbol_type)
154
    {
155
    case SYMBOL_ABSOLUTE:
156
      /* We can only use direct calls if we're sure that the target
157
         function does not need $25 to be valid on entry.  */
158
      if (mips_use_pic_fn_addr_reg_p (op))
159
        return false;
160
 
161
      /* If -mlong-calls or if this function has an explicit long_call
162
         attribute, we must use register addressing.  The
163
         SYMBOL_FLAG_LONG_CALL bit is set by mips_encode_section_info.  */
164
      return !(GET_CODE (op) == SYMBOL_REF && SYMBOL_REF_LONG_CALL_P (op));
165
 
166
    case SYMBOL_GOT_DISP:
167
      /* Without explicit relocs, there is no special syntax for
168
         loading the address of a call destination into a register.
169
         Using "la $25,foo; jal $25" would prevent the lazy binding
170
         of "foo", so keep the address of global symbols with the
171
         jal macro.  */
172
      return !TARGET_EXPLICIT_RELOCS;
173
 
174
    default:
175
      return false;
176
    }
177
})
178
 
179
(define_predicate "call_insn_operand"
180
  (ior (match_operand 0 "const_call_insn_operand")
181
       (match_operand 0 "register_operand")))
182
 
183
;; A legitimate CONST_INT operand that takes more than one instruction
184
;; to load.
185
(define_predicate "splittable_const_int_operand"
186
  (match_code "const_int")
187
{
188
  /* When generating mips16 code, TARGET_LEGITIMATE_CONSTANT_P rejects
189
     CONST_INTs that can't be loaded using simple insns.  */
190
  if (TARGET_MIPS16)
191
    return false;
192
 
193
  /* Don't handle multi-word moves this way; we don't want to introduce
194
     the individual word-mode moves until after reload.  */
195
  if (GET_MODE_SIZE (mode) > UNITS_PER_WORD)
196
    return false;
197
 
198
  /* Otherwise check whether the constant can be loaded in a single
199
     instruction.  */
200
  return !LUI_INT (op) && !SMALL_INT (op) && !SMALL_INT_UNSIGNED (op);
201
})
202
 
203
(define_predicate "move_operand"
204
  ;; Allow HI and LO to be used as the source of a MIPS16 move.
205
  (ior (match_operand 0 "general_operand")
206
       (match_operand 0 "hilo_operand"))
207
{
208
  enum mips_symbol_type symbol_type;
209
 
210
  /* The thinking here is as follows:
211
 
212
     (1) The move expanders should split complex load sequences into
213
         individual instructions.  Those individual instructions can
214
         then be optimized by all rtl passes.
215
 
216
     (2) The target of pre-reload load sequences should not be used
217
         to store temporary results.  If the target register is only
218
         assigned one value, reload can rematerialize that value
219
         on demand, rather than spill it to the stack.
220
 
221
     (3) If we allowed pre-reload passes like combine and cse to recreate
222
         complex load sequences, we would want to be able to split the
223
         sequences before reload as well, so that the pre-reload scheduler
224
         can see the individual instructions.  This falls foul of (2);
225
         the splitter would be forced to reuse the target register for
226
         intermediate results.
227
 
228
     (4) We want to define complex load splitters for combine.  These
229
         splitters can request a temporary scratch register, which avoids
230
         the problem in (2).  They allow things like:
231
 
232
              (set (reg T1) (high SYM))
233
              (set (reg T2) (low (reg T1) SYM))
234
              (set (reg X) (plus (reg T2) (const_int OFFSET)))
235
 
236
         to be combined into:
237
 
238
              (set (reg T3) (high SYM+OFFSET))
239
              (set (reg X) (lo_sum (reg T3) SYM+OFFSET))
240
 
241
         if T2 is only used this once.  */
242
  switch (GET_CODE (op))
243
    {
244
    case CONST_INT:
245
      return !splittable_const_int_operand (op, mode);
246
 
247
    case CONST:
248
    case SYMBOL_REF:
249
    case LABEL_REF:
250
      if (CONST_GP_P (op))
251
        return true;
252
      return (mips_symbolic_constant_p (op, SYMBOL_CONTEXT_LEA, &symbol_type)
253
              && !mips_split_p[symbol_type]);
254
 
255
    case HIGH:
256
      op = XEXP (op, 0);
257
      return (mips_symbolic_constant_p (op, SYMBOL_CONTEXT_LEA, &symbol_type)
258
              && !mips_split_hi_p[symbol_type]);
259
 
260
    default:
261
      return true;
262
    }
263
})
264
 
265
(define_predicate "cprestore_save_slot_operand"
266
  (and (match_code "mem")
267
       (match_test "mips_cprestore_address_p (XEXP (op, 0), false)")))
268
 
269
(define_predicate "cprestore_load_slot_operand"
270
  (and (match_code "mem")
271
       (match_test "mips_cprestore_address_p (XEXP (op, 0), true)")))
272
 
273
(define_predicate "consttable_operand"
274
  (match_test "CONSTANT_P (op)"))
275
 
276
(define_predicate "symbolic_operand"
277
  (match_code "const,symbol_ref,label_ref")
278
{
279
  enum mips_symbol_type type;
280
  return mips_symbolic_constant_p (op, SYMBOL_CONTEXT_LEA, &type);
281
})
282
 
283
(define_predicate "absolute_symbolic_operand"
284
  (match_code "const,symbol_ref,label_ref")
285
{
286
  enum mips_symbol_type type;
287
  return (mips_symbolic_constant_p (op, SYMBOL_CONTEXT_LEA, &type)
288
          && type == SYMBOL_ABSOLUTE);
289
})
290
 
291
(define_predicate "symbolic_operand_with_high"
292
  (match_code "const,symbol_ref,label_ref")
293
{
294
  enum mips_symbol_type type;
295
  return (mips_symbolic_constant_p (op, SYMBOL_CONTEXT_LEA, &type)
296
          && mips_hi_relocs[(int) type]);
297
})
298
 
299
(define_predicate "force_to_mem_operand"
300
  (match_code "const,symbol_ref,label_ref")
301
{
302
  enum mips_symbol_type symbol_type;
303
  return (mips_symbolic_constant_p (op, SYMBOL_CONTEXT_LEA, &symbol_type)
304
          && mips_use_pcrel_pool_p[(int) symbol_type]);
305
})
306
 
307
(define_predicate "got_disp_operand"
308
  (match_code "const,symbol_ref,label_ref")
309
{
310
  enum mips_symbol_type type;
311
  return (mips_symbolic_constant_p (op, SYMBOL_CONTEXT_LEA, &type)
312
          && type == SYMBOL_GOT_DISP);
313
})
314
 
315
(define_predicate "got_page_ofst_operand"
316
  (match_code "const,symbol_ref,label_ref")
317
{
318
  enum mips_symbol_type type;
319
  return (mips_symbolic_constant_p (op, SYMBOL_CONTEXT_LEA, &type)
320
          && type == SYMBOL_GOT_PAGE_OFST);
321
})
322
 
323
(define_predicate "tls_reloc_operand"
324
  (match_code "const,symbol_ref,label_ref")
325
{
326
  enum mips_symbol_type type;
327
  return (mips_symbolic_constant_p (op, SYMBOL_CONTEXT_LEA, &type)
328
          && (type == SYMBOL_DTPREL || type == SYMBOL_TPREL));
329
})
330
 
331
(define_predicate "symbol_ref_operand"
332
  (match_code "symbol_ref"))
333
 
334
(define_predicate "stack_operand"
335
  (and (match_code "mem")
336
       (match_test "mips_stack_address_p (XEXP (op, 0), GET_MODE (op))")))
337
 
338
(define_predicate "macc_msac_operand"
339
  (ior (and (match_code "plus") (match_test "ISA_HAS_MACC"))
340
       (and (match_code "minus") (match_test "ISA_HAS_MSAC")))
341
{
342
  rtx mult = XEXP (op, GET_CODE (op) == PLUS ? 0 : 1);
343
  rtx accum = XEXP (op, GET_CODE (op) == PLUS ? 1 : 0);
344
  return (GET_CODE (mult) == MULT
345
          && REG_P (XEXP (mult, 0))
346
          && REG_P (XEXP (mult, 1))
347
          && REG_P (accum));
348
})
349
 
350
 
351
(define_predicate "equality_operator"
352
  (match_code "eq,ne"))
353
 
354
(define_predicate "extend_operator"
355
  (match_code "zero_extend,sign_extend"))
356
 
357
(define_predicate "trap_comparison_operator"
358
  (match_code "eq,ne,lt,ltu,ge,geu"))
359
 
360
(define_predicate "order_operator"
361
  (match_code "lt,ltu,le,leu,ge,geu,gt,gtu"))
362
 
363
;; For NE, cstore uses sltu instructions in which the first operand is $0.
364
;; This isn't possible in mips16 code.
365
 
366
(define_predicate "mips_cstore_operator"
367
  (ior (match_code "eq,gt,gtu,ge,geu,lt,ltu,le,leu")
368
       (and (match_code "ne") (not (match_test "TARGET_MIPS16")))))
369
 
370
(define_predicate "small_data_pattern"
371
  (and (match_code "set,parallel,unspec,unspec_volatile,prefetch")
372
       (match_test "mips_small_data_pattern_p (op)")))

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