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Annotate sparc objects with cpu hardware capabilities used.
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1 /* Definitions for opcode table for the sparc.
2 Copyright 1989, 1991, 1992, 1993, 1994, 1995, 1996, 1997, 2000, 2002,
3 2003, 2005, 2010, 2011 Free Software Foundation, Inc.
4
5 This file is part of GAS, the GNU Assembler, GDB, the GNU debugger, and
6 the GNU Binutils.
7
8 GAS/GDB is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 3, or (at your option)
11 any later version.
12
13 GAS/GDB is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with GAS or GDB; see the file COPYING3. If not, write to
20 the Free Software Foundation, 51 Franklin Street - Fifth Floor,
21 Boston, MA 02110-1301, USA. */
22
23 #include "ansidecl.h"
24
25 /* The SPARC opcode table (and other related data) is defined in
26 the opcodes library in sparc-opc.c. If you change anything here, make
27 sure you fix up that file, and vice versa. */
28
29 /* FIXME-someday: perhaps the ,a's and such should be embedded in the
30 instruction's name rather than the args. This would make gas faster, pinsn
31 slower, but would mess up some macros a bit. xoxorich. */
32
33 /* List of instruction sets variations.
34 These values are such that each element is either a superset of a
35 preceding each one or they conflict in which case SPARC_OPCODE_CONFLICT_P
36 returns non-zero.
37 The values are indices into `sparc_opcode_archs' defined in sparc-opc.c.
38 Don't change this without updating sparc-opc.c. */
39
40 enum sparc_opcode_arch_val
41 {
42 SPARC_OPCODE_ARCH_V6 = 0,
43 SPARC_OPCODE_ARCH_V7,
44 SPARC_OPCODE_ARCH_V8,
45 SPARC_OPCODE_ARCH_SPARCLET,
46 SPARC_OPCODE_ARCH_SPARCLITE,
47 /* V9 variants must appear last. */
48 SPARC_OPCODE_ARCH_V9,
49 SPARC_OPCODE_ARCH_V9A, /* V9 with ultrasparc additions. */
50 SPARC_OPCODE_ARCH_V9B, /* V9 with ultrasparc and cheetah additions. */
51 SPARC_OPCODE_ARCH_BAD /* Error return from sparc_opcode_lookup_arch. */
52 };
53
54 /* The highest architecture in the table. */
55 #define SPARC_OPCODE_ARCH_MAX (SPARC_OPCODE_ARCH_BAD - 1)
56
57 /* Given an enum sparc_opcode_arch_val, return the bitmask to use in
58 insn encoding/decoding. */
59 #define SPARC_OPCODE_ARCH_MASK(arch) (1 << (arch))
60
61 /* Given a valid sparc_opcode_arch_val, return non-zero if it's v9. */
62 #define SPARC_OPCODE_ARCH_V9_P(arch) ((arch) >= SPARC_OPCODE_ARCH_V9)
63
64 /* Table of cpu variants. */
65
66 typedef struct sparc_opcode_arch
67 {
68 const char *name;
69 /* Mask of sparc_opcode_arch_val's supported.
70 EG: For v7 this would be
71 (SPARC_OPCODE_ARCH_MASK (..._V6) | SPARC_OPCODE_ARCH_MASK (..._V7)).
72 These are short's because sparc_opcode.architecture is. */
73 short supported;
74 } sparc_opcode_arch;
75
76 extern const struct sparc_opcode_arch sparc_opcode_archs[];
77
78 /* Given architecture name, look up it's sparc_opcode_arch_val value. */
79 extern enum sparc_opcode_arch_val sparc_opcode_lookup_arch (const char *);
80
81 /* Return the bitmask of supported architectures for ARCH. */
82 #define SPARC_OPCODE_SUPPORTED(ARCH) (sparc_opcode_archs[ARCH].supported)
83
84 /* Non-zero if ARCH1 conflicts with ARCH2.
85 IE: ARCH1 as a supported bit set that ARCH2 doesn't, and vice versa. */
86 #define SPARC_OPCODE_CONFLICT_P(ARCH1, ARCH2) \
87 (((SPARC_OPCODE_SUPPORTED (ARCH1) & SPARC_OPCODE_SUPPORTED (ARCH2)) \
88 != SPARC_OPCODE_SUPPORTED (ARCH1)) \
89 && ((SPARC_OPCODE_SUPPORTED (ARCH1) & SPARC_OPCODE_SUPPORTED (ARCH2)) \
90 != SPARC_OPCODE_SUPPORTED (ARCH2)))
91
92 /* Structure of an opcode table entry. */
93
94 typedef struct sparc_opcode
95 {
96 const char *name;
97 unsigned long match; /* Bits that must be set. */
98 unsigned long lose; /* Bits that must not be set. */
99 const char *args;
100 /* This was called "delayed" in versions before the flags. */
101 unsigned int flags;
102 short architecture; /* Bitmask of sparc_opcode_arch_val's. */
103 } sparc_opcode;
104
105 /* FIXME: Add F_ANACHRONISTIC flag for v9. */
106 #define F_DELAYED 0x00000001 /* Delayed branch. */
107 #define F_ALIAS 0x00000002 /* Alias for a "real" instruction. */
108 #define F_UNBR 0x00000004 /* Unconditional branch. */
109 #define F_CONDBR 0x00000008 /* Conditional branch. */
110 #define F_JSR 0x00000010 /* Subroutine call. */
111 #define F_FLOAT 0x00000020 /* Floating point instruction (not a branch). */
112 #define F_FBR 0x00000040 /* Floating point branch. */
113 #define F_MUL32 0x00000100 /* umul/umulcc/smul/smulcc insns */
114 #define F_DIV32 0x00000200 /* udiv/udivcc/sdiv/sdivcc insns */
115 #define F_FSMULD 0x00000400 /* 'fsmuld' insn */
116 #define F_V8PLUS 0x00000800 /* v9 insns available to 32bit */
117 #define F_POPC 0x00001000 /* 'popc' insn */
118 #define F_VIS 0x00002000 /* VIS insns */
119 #define F_VIS2 0x00004000 /* VIS2 insns */
120 #define F_ASI_BLK_INIT 0x00008000 /* block init ASIs */
121 #define F_FMAF 0x00010000 /* fused multiply-add */
122 #define F_VIS3 0x00020000 /* VIS3 insns */
123 #define F_HPC 0x00040000 /* HPC insns */
124 #define F_RANDOM 0x00080000 /* 'random' insn */
125 #define F_TRANS 0x00100000 /* transaction insns */
126 #define F_FJFMAU 0x00200000 /* unfused multiply-add */
127 #define F_IMA 0x00400000 /* integer multiply-add */
128 #define F_ASI_CACHE_SPARING \
129 0x00800000 /* cache sparing ASIs */
130
131 #define F_HWCAP_MASK 0x00ffff00
132
133 /* All sparc opcodes are 32 bits, except for the `set' instruction (really a
134 macro), which is 64 bits. It is handled as a special case.
135
136 The match component is a mask saying which bits must match a particular
137 opcode in order for an instruction to be an instance of that opcode.
138
139 The args component is a string containing one character for each operand of the
140 instruction.
141
142 Kinds of operands:
143 # Number used by optimizer. It is ignored.
144 1 rs1 register.
145 2 rs2 register.
146 d rd register.
147 e frs1 floating point register.
148 v frs1 floating point register (double/even).
149 V frs1 floating point register (quad/multiple of 4).
150 f frs2 floating point register.
151 B frs2 floating point register (double/even).
152 R frs2 floating point register (quad/multiple of 4).
153 4 frs3 floating point register.
154 5 frs3 floating point register (doube/even).
155 g frsd floating point register.
156 H frsd floating point register (double/even).
157 J frsd floating point register (quad/multiple of 4).
158 b crs1 coprocessor register
159 c crs2 coprocessor register
160 D crsd coprocessor register
161 m alternate space register (asr) in rd
162 M alternate space register (asr) in rs1
163 h 22 high bits.
164 X 5 bit unsigned immediate
165 Y 6 bit unsigned immediate
166 3 SIAM mode (3 bits). (v9b)
167 K MEMBAR mask (7 bits). (v9)
168 j 10 bit Immediate. (v9)
169 I 11 bit Immediate. (v9)
170 i 13 bit Immediate.
171 n 22 bit immediate.
172 k 2+14 bit PC relative immediate. (v9)
173 G 19 bit PC relative immediate. (v9)
174 l 22 bit PC relative immediate.
175 L 30 bit PC relative immediate.
176 a Annul. The annul bit is set.
177 A Alternate address space. Stored as 8 bits.
178 C Coprocessor state register.
179 F floating point state register.
180 p Processor state register.
181 N Branch predict clear ",pn" (v9)
182 T Branch predict set ",pt" (v9)
183 z %icc. (v9)
184 Z %xcc. (v9)
185 q Floating point queue.
186 r Single register that is both rs1 and rd.
187 O Single register that is both rs2 and rd.
188 Q Coprocessor queue.
189 S Special case.
190 t Trap base register.
191 w Window invalid mask register.
192 y Y register.
193 u sparclet coprocessor registers in rd position
194 U sparclet coprocessor registers in rs1 position
195 E %ccr. (v9)
196 s %fprs. (v9)
197 P %pc. (v9)
198 W %tick. (v9)
199 o %asi. (v9)
200 6 %fcc0. (v9)
201 7 %fcc1. (v9)
202 8 %fcc2. (v9)
203 9 %fcc3. (v9)
204 ! Privileged Register in rd (v9)
205 ? Privileged Register in rs1 (v9)
206 * Prefetch function constant. (v9)
207 x OPF field (v9 impdep).
208 0 32/64 bit immediate for set or setx (v9) insns
209 _ Ancillary state register in rd (v9a)
210 / Ancillary state register in rs1 (v9a)
211 ( entire floating point state register (%efsr). */
212
213 #define OP2(x) (((x) & 0x7) << 22) /* Op2 field of format2 insns. */
214 #define OP3(x) (((x) & 0x3f) << 19) /* Op3 field of format3 insns. */
215 #define OP(x) ((unsigned) ((x) & 0x3) << 30) /* Op field of all insns. */
216 #define OPF(x) (((x) & 0x1ff) << 5) /* Opf field of float insns. */
217 #define OPF_LOW5(x) OPF ((x) & 0x1f) /* V9. */
218 #define OPF_LOW4(x) OPF ((x) & 0xf) /* V9. */
219 #define F3F(x, y, z) (OP (x) | OP3 (y) | OPF (z)) /* Format3 float insns. */
220 #define F3I(x) (((x) & 0x1) << 13) /* Immediate field of format 3 insns. */
221 #define F2(x, y) (OP (x) | OP2(y)) /* Format 2 insns. */
222 #define F3(x, y, z) (OP (x) | OP3(y) | F3I(z)) /* Format3 insns. */
223 #define F1(x) (OP (x))
224 #define DISP30(x) ((x) & 0x3fffffff)
225 #define ASI(x) (((x) & 0xff) << 5) /* Asi field of format3 insns. */
226 #define RS2(x) ((x) & 0x1f) /* Rs2 field. */
227 #define SIMM13(x) ((x) & 0x1fff) /* Simm13 field. */
228 #define RD(x) (((x) & 0x1f) << 25) /* Destination register field. */
229 #define RS1(x) (((x) & 0x1f) << 14) /* Rs1 field. */
230 #define RS3(x) (((x) & 0x1f) << 9) /* Rs3 field. */
231 #define ASI_RS2(x) (SIMM13 (x))
232 #define MEMBAR(x) ((x) & 0x7f)
233 #define SLCPOP(x) (((x) & 0x7f) << 6) /* Sparclet cpop. */
234
235 #define ANNUL (1 << 29)
236 #define BPRED (1 << 19) /* V9. */
237 #define IMMED F3I (1)
238 #define RD_G0 RD (~0)
239 #define RS1_G0 RS1 (~0)
240 #define RS2_G0 RS2 (~0)
241
242 extern const struct sparc_opcode sparc_opcodes[];
243 extern const int sparc_num_opcodes;
244
245 extern int sparc_encode_asi (const char *);
246 extern const char *sparc_decode_asi (int);
247 extern int sparc_encode_membar (const char *);
248 extern const char *sparc_decode_membar (int);
249 extern int sparc_encode_prefetch (const char *);
250 extern const char *sparc_decode_prefetch (int);
251 extern int sparc_encode_sparclet_cpreg (const char *);
252 extern const char *sparc_decode_sparclet_cpreg (int);
253
254 /* Local Variables:
255 fill-column: 131
256 comment-column: 0
257 End: */
258