Coverage Report

Created: 2026-07-12 09:22

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/binutils-gdb/include/opcode/riscv.h
Line
Count
Source
1
/* riscv.h.  RISC-V opcode list for GDB, the GNU debugger.
2
   Copyright (C) 2011-2026 Free Software Foundation, Inc.
3
   Contributed by Andrew Waterman
4
5
   This file is part of GDB, GAS, and the GNU binutils.
6
7
   GDB, GAS, and the GNU binutils are free software; you can redistribute
8
   them and/or modify them under the terms of the GNU General Public
9
   License as published by the Free Software Foundation; either version
10
   3, or (at your option) any later version.
11
12
   GDB, GAS, and the GNU binutils are distributed in the hope that they
13
   will be useful, but WITHOUT ANY WARRANTY; without even the implied
14
   warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See
15
   the GNU General Public License for more details.
16
17
   You should have received a copy of the GNU General Public License
18
   along with this program; see the file COPYING3. If not,
19
   see <http://www.gnu.org/licenses/>.  */
20
21
#ifndef _RISCV_H_
22
#define _RISCV_H_
23
24
#include "riscv-opc.h"
25
#include <stdlib.h>
26
#include <stdint.h>
27
28
typedef uint64_t insn_t;
29
30
static inline unsigned int riscv_insn_length (insn_t insn)
31
4.72M
{
32
4.72M
  if ((insn & 0x3) != 0x3) /* RVC instructions.  */
33
3.64M
    return 2;
34
1.08M
  if ((insn & 0x1f) != 0x1f) /* 32-bit instructions.  */
35
658k
    return 4;
36
423k
  if ((insn & 0x3f) == 0x1f) /* 48-bit instructions.  */
37
30.1k
    return 6;
38
393k
  if ((insn & 0x7f) == 0x3f) /* 64-bit instructions.  */
39
19.0k
    return 8;
40
  /* 80- ... 176-bit instructions.  */
41
374k
  if ((insn & 0x7f) == 0x7f && (insn & 0x7000) != 0x7000)
42
74.1k
    return 10 + ((insn >> 11) & 0xe);
43
  /* Maximum value returned by this function.  */
44
300k
#define RISCV_MAX_INSN_LEN 22
45
  /* Longer instructions not supported at the moment.  */
46
300k
  return 2;
47
374k
}
Unexecuted instantiation: elf32-riscv.c:riscv_insn_length
Unexecuted instantiation: elf64-riscv.c:riscv_insn_length
Unexecuted instantiation: elfxx-riscv.c:riscv_insn_length
riscv-dis.c:riscv_insn_length
Line
Count
Source
31
4.72M
{
32
4.72M
  if ((insn & 0x3) != 0x3) /* RVC instructions.  */
33
3.64M
    return 2;
34
1.08M
  if ((insn & 0x1f) != 0x1f) /* 32-bit instructions.  */
35
658k
    return 4;
36
423k
  if ((insn & 0x3f) == 0x1f) /* 48-bit instructions.  */
37
30.1k
    return 6;
38
393k
  if ((insn & 0x7f) == 0x3f) /* 64-bit instructions.  */
39
19.0k
    return 8;
40
  /* 80- ... 176-bit instructions.  */
41
374k
  if ((insn & 0x7f) == 0x7f && (insn & 0x7000) != 0x7000)
42
74.1k
    return 10 + ((insn >> 11) & 0xe);
43
  /* Maximum value returned by this function.  */
44
300k
#define RISCV_MAX_INSN_LEN 22
45
  /* Longer instructions not supported at the moment.  */
46
300k
  return 2;
47
374k
}
Unexecuted instantiation: riscv-opc.c:riscv_insn_length
48
49
#define RVC_JUMP_BITS 11
50
#define RVC_JUMP_REACH ((1ULL << RVC_JUMP_BITS) * RISCV_JUMP_ALIGN)
51
52
#define RVC_BRANCH_BITS 8
53
#define RVC_BRANCH_REACH ((1ULL << RVC_BRANCH_BITS) * RISCV_BRANCH_ALIGN)
54
55
3.76M
#define RV_X(x, s, n)  (((x) >> (s)) & ((1 << (n)) - 1))
56
100k
#define RV_IMM_SIGN(x) (-(((x) >> 31) & 1))
57
0
#define RV_X_SIGNED(x, s, n) (RV_X(x, s, n) | ((-(RV_X(x, (s + n - 1), 1))) << (n)))
58
0
#define RV_IMM_SIGN_N(x, s, n) (-(((x) >> ((s) + (n) - 1)) & 1))
59
60
#define EXTRACT_ITYPE_IMM(x) \
61
42.4k
  (RV_X(x, 20, 12) | (RV_IMM_SIGN(x) << 12))
62
#define EXTRACT_STYPE_IMM(x) \
63
16.2k
  (RV_X(x, 7, 5) | (RV_X(x, 25, 7) << 5) | (RV_IMM_SIGN(x) << 12))
64
#define EXTRACT_BTYPE_IMM(x) \
65
6.50k
  ((RV_X(x, 8, 4) << 1) | (RV_X(x, 25, 6) << 5) | (RV_X(x, 7, 1) << 11) | (RV_IMM_SIGN(x) << 12))
66
#define EXTRACT_UTYPE_IMM(x) \
67
26.9k
  ((RV_X(x, 12, 20) << 12) | (RV_IMM_SIGN(x) << 32))
68
#define EXTRACT_JTYPE_IMM(x) \
69
8.22k
  ((RV_X(x, 21, 10) << 1) | (RV_X(x, 20, 1) << 11) | (RV_X(x, 12, 8) << 12) | (RV_IMM_SIGN(x) << 20))
70
#define EXTRACT_CITYPE_IMM(x) \
71
474k
  (RV_X(x, 2, 5) | (-RV_X(x, 12, 1) << 5))
72
#define EXTRACT_CITYPE_LUI_IMM(x) \
73
73.0k
  (EXTRACT_CITYPE_IMM (x) << RISCV_IMM_BITS)
74
#define EXTRACT_CITYPE_ADDI16SP_IMM(x) \
75
7.39k
  ((RV_X(x, 6, 1) << 4) | (RV_X(x, 2, 1) << 5) | (RV_X(x, 5, 1) << 6) | (RV_X(x, 3, 2) << 7) | (-RV_X(x, 12, 1) << 9))
76
#define EXTRACT_CITYPE_LWSP_IMM(x) \
77
29.2k
  ((RV_X(x, 4, 3) << 2) | (RV_X(x, 12, 1) << 5) | (RV_X(x, 2, 2) << 6))
78
#define EXTRACT_CITYPE_LDSP_IMM(x) \
79
62.1k
  ((RV_X(x, 5, 2) << 3) | (RV_X(x, 12, 1) << 5) | (RV_X(x, 2, 3) << 6))
80
#define EXTRACT_CSSTYPE_IMM(x) \
81
  (RV_X(x, 7, 6) << 0)
82
#define EXTRACT_CSSTYPE_SWSP_IMM(x) \
83
27.4k
  ((RV_X(x, 9, 4) << 2) | (RV_X(x, 7, 2) << 6))
84
#define EXTRACT_CSSTYPE_SDSP_IMM(x) \
85
44.5k
  ((RV_X(x, 10, 3) << 3) | (RV_X(x, 7, 3) << 6))
86
#define EXTRACT_CIWTYPE_IMM(x) \
87
  (RV_X(x, 5, 8))
88
#define EXTRACT_CIWTYPE_ADDI4SPN_IMM(x) \
89
314k
  ((RV_X(x, 6, 1) << 2) | (RV_X(x, 5, 1) << 3) | (RV_X(x, 11, 2) << 4) | (RV_X(x, 7, 4) << 6))
90
#define EXTRACT_CLTYPE_IMM(x) \
91
  ((RV_X(x, 5, 2) << 0) | (RV_X(x, 10, 3) << 2))
92
#define EXTRACT_CLTYPE_LW_IMM(x) \
93
68.7k
  ((RV_X(x, 6, 1) << 2) | (RV_X(x, 10, 3) << 3) | (RV_X(x, 5, 1) << 6))
94
#define EXTRACT_CLTYPE_LD_IMM(x) \
95
184k
  ((RV_X(x, 10, 3) << 3) | (RV_X(x, 5, 2) << 6))
96
#define EXTRACT_CBTYPE_IMM(x) \
97
47.9k
  ((RV_X(x, 3, 2) << 1) | (RV_X(x, 10, 2) << 3) | (RV_X(x, 2, 1) << 5) | (RV_X(x, 5, 2) << 6) | (-RV_X(x, 12, 1) << 8))
98
#define EXTRACT_CJTYPE_IMM(x) \
99
18.0k
  ((RV_X(x, 3, 3) << 1) | (RV_X(x, 11, 1) << 4) | (RV_X(x, 2, 1) << 5) | (RV_X(x, 7, 1) << 6) | (RV_X(x, 6, 1) << 7) | (RV_X(x, 9, 2) << 8) | (RV_X(x, 8, 1) << 10) | (-RV_X(x, 12, 1) << 11))
100
#define EXTRACT_RVV_VI_IMM(x) \
101
0
  (RV_X(x, 15, 5) | (-RV_X(x, 19, 1) << 5))
102
#define EXTRACT_RVV_VI_UIMM(x) \
103
0
  (RV_X(x, 15, 5))
104
#define EXTRACT_RVV_VI_UIMM6(x) \
105
0
  (RV_X(x, 15, 5) | (RV_X(x, 26, 1) << 5))
106
#define EXTRACT_RVV_OFFSET(x) \
107
0
  (RV_X(x, 29, 3))
108
#define EXTRACT_RVV_VB_IMM(x) \
109
0
  (RV_X(x, 20, 10))
110
#define EXTRACT_RVV_VC_IMM(x) \
111
0
  (RV_X(x, 20, 11))
112
#define EXTRACT_ZCB_BYTE_UIMM(x) \
113
0
  (RV_X(x, 6, 1) | (RV_X(x, 5, 1) << 1))
114
#define EXTRACT_ZCB_HALFWORD_UIMM(x) \
115
0
  (RV_X(x, 5, 1) << 1)
116
#define EXTRACT_ZCMP_SPIMM(x) \
117
0
  (RV_X(x, 2, 2) << 4)
118
#define EXTRACT_ZCMT_INDEX(x) \
119
0
  (RV_X(x, 2, 8))
120
/* Vendor-specific (CORE-V) extract macros.  */
121
#define EXTRACT_CV_IS2_UIMM5(x) \
122
0
  (RV_X(x, 20, 5))
123
#define EXTRACT_CV_IS3_UIMM5(x) \
124
0
  (RV_X(x, 25, 5))
125
#define EXTRACT_CV_BI_IMM5(x) \
126
0
  (RV_X(x, 20, 5) | (RV_IMM_SIGN_N(x, 20, 5) << 5))
127
#define EXTRACT_CV_BITMANIP_UIMM5(x) \
128
0
  (RV_X(x, 25, 5))
129
#define EXTRACT_CV_BITMANIP_UIMM2(x) \
130
0
  (RV_X(x, 25, 2))
131
#define EXTRACT_CV_SIMD_IMM6(x) \
132
0
  ((RV_X(x, 25, 1)) | (RV_X(x, 20, 5) << 1) | (RV_IMM_SIGN_N(x, 20, 5) << 5))
133
#define EXTRACT_CV_SIMD_UIMM6(x) \
134
0
  ((RV_X(x, 25, 1)) | (RV_X(x, 20, 5) << 1))
135
/* Vendor-specific (MIPS) extract macros.  */
136
#define EXTRACT_MIPS_LWP_IMM(x) \
137
0
  (RV_X(x, 22, 5) << 2)
138
#define EXTRACT_MIPS_LDP_IMM(x) \
139
0
  (RV_X(x, 23, 4) << 3)
140
#define EXTRACT_MIPS_SWP_IMM(x) \
141
0
  ((RV_X(x, 25, 2) << 5) | (RV_X(x, 9, 3) << 2))
142
#define EXTRACT_MIPS_SDP_IMM(x) \
143
0
  ((RV_X(x, 25, 2) << 5) | (RV_X(x, 10, 2) << 3))
144
/* Vendor-specific (SPACEMIT) encode macros.  */
145
#define ENCODE_SPACEMIT_IME_UIMM2_SP(x) \
146
  ((RV_X (x, 0, 1) << 7) | (RV_X (x, 1, 1) << 15))
147
148
#define ENCODE_ITYPE_IMM(x) \
149
0
  (RV_X(x, 0, 12) << 20)
150
#define ENCODE_STYPE_IMM(x) \
151
0
  ((RV_X(x, 0, 5) << 7) | (RV_X(x, 5, 7) << 25))
152
#define ENCODE_BTYPE_IMM(x) \
153
0
  ((RV_X(x, 1, 4) << 8) | (RV_X(x, 5, 6) << 25) | (RV_X(x, 11, 1) << 7) | (RV_X(x, 12, 1) << 31))
154
#define ENCODE_UTYPE_IMM(x) \
155
0
  (RV_X(x, 12, 20) << 12)
156
#define ENCODE_JTYPE_IMM(x) \
157
0
  ((RV_X(x, 1, 10) << 21) | (RV_X(x, 11, 1) << 20) | (RV_X(x, 12, 8) << 12) | (RV_X(x, 20, 1) << 31))
158
#define ENCODE_CITYPE_IMM(x) \
159
0
  ((RV_X(x, 0, 5) << 2) | (RV_X(x, 5, 1) << 12))
160
#define ENCODE_CITYPE_LUI_IMM(x) \
161
0
  ENCODE_CITYPE_IMM ((x) >> RISCV_IMM_BITS)
162
#define ENCODE_CITYPE_ADDI16SP_IMM(x) \
163
  ((RV_X(x, 4, 1) << 6) | (RV_X(x, 5, 1) << 2) | (RV_X(x, 6, 1) << 5) | (RV_X(x, 7, 2) << 3) | (RV_X(x, 9, 1) << 12))
164
#define ENCODE_CITYPE_LWSP_IMM(x) \
165
  ((RV_X(x, 2, 3) << 4) | (RV_X(x, 5, 1) << 12) | (RV_X(x, 6, 2) << 2))
166
#define ENCODE_CITYPE_LDSP_IMM(x) \
167
  ((RV_X(x, 3, 2) << 5) | (RV_X(x, 5, 1) << 12) | (RV_X(x, 6, 3) << 2))
168
#define ENCODE_CSSTYPE_IMM(x) \
169
  (RV_X(x, 0, 6) << 7)
170
#define ENCODE_CSSTYPE_SWSP_IMM(x) \
171
  ((RV_X(x, 2, 4) << 9) | (RV_X(x, 6, 2) << 7))
172
#define ENCODE_CSSTYPE_SDSP_IMM(x) \
173
  ((RV_X(x, 3, 3) << 10) | (RV_X(x, 6, 3) << 7))
174
#define ENCODE_CIWTYPE_IMM(x) \
175
  (RV_X(x, 0, 8) << 5)
176
#define ENCODE_CIWTYPE_ADDI4SPN_IMM(x) \
177
  ((RV_X(x, 2, 1) << 6) | (RV_X(x, 3, 1) << 5) | (RV_X(x, 4, 2) << 11) | (RV_X(x, 6, 4) << 7))
178
#define ENCODE_CLTYPE_IMM(x) \
179
  ((RV_X(x, 0, 2) << 5) | (RV_X(x, 2, 3) << 10))
180
#define ENCODE_CLTYPE_LW_IMM(x) \
181
  ((RV_X(x, 2, 1) << 6) | (RV_X(x, 3, 3) << 10) | (RV_X(x, 6, 1) << 5))
182
#define ENCODE_CLTYPE_LD_IMM(x) \
183
  ((RV_X(x, 3, 3) << 10) | (RV_X(x, 6, 2) << 5))
184
#define ENCODE_CBTYPE_IMM(x) \
185
0
  ((RV_X(x, 1, 2) << 3) | (RV_X(x, 3, 2) << 10) | (RV_X(x, 5, 1) << 2) | (RV_X(x, 6, 2) << 5) | (RV_X(x, 8, 1) << 12))
186
#define ENCODE_CJTYPE_IMM(x) \
187
0
  ((RV_X(x, 1, 3) << 3) | (RV_X(x, 4, 1) << 11) | (RV_X(x, 5, 1) << 2) | (RV_X(x, 6, 1) << 7) | (RV_X(x, 7, 1) << 6) | (RV_X(x, 8, 2) << 9) | (RV_X(x, 10, 1) << 8) | (RV_X(x, 11, 1) << 12))
188
#define ENCODE_RVV_VB_IMM(x) \
189
  (RV_X(x, 0, 10) << 20)
190
#define ENCODE_RVV_VC_IMM(x) \
191
  (RV_X(x, 0, 11) << 20)
192
#define ENCODE_RVV_VI_UIMM6(x) \
193
  (RV_X(x, 0, 5) << 15 | RV_X(x, 5, 1) << 26)
194
#define ENCODE_ZCB_BYTE_UIMM(x) \
195
  ((RV_X(x, 0, 1) << 6) | (RV_X(x, 1, 1) << 5))
196
#define ENCODE_ZCB_HALFWORD_UIMM(x) \
197
  (RV_X(x, 1, 1) << 5)
198
#define ENCODE_ZCMP_SPIMM(x) \
199
  (RV_X(x, 4, 2) << 2)
200
#define ENCODE_ZCMT_INDEX(x) \
201
  (RV_X(x, 0, 8) << 2)
202
/* Vendor-specific (CORE-V) encode macros.  */
203
#define ENCODE_CV_IS2_UIMM5(x) \
204
  (RV_X(x, 0, 5) << 20)
205
#define ENCODE_CV_IS3_UIMM5(x) \
206
  (RV_X(x, 0, 5) << 25)
207
#define ENCODE_CV_BITMANIP_UIMM5(x) \
208
  (RV_X(x, 0, 5) << 25)
209
#define ENCODE_CV_BITMANIP_UIMM2(x) \
210
  (RV_X(x, 0, 2) << 25)
211
#define ENCODE_CV_SIMD_IMM6(x) \
212
  ((RV_X(x, 0, 1) << 25) | (RV_X(x, 1, 5) << 20))
213
#define ENCODE_CV_SIMD_UIMM6(x) \
214
  ((RV_X(x, 0, 1) << 25) | (RV_X(x, 1, 5) << 20))
215
/* Vendor-specific (MIPS) encode macros.  */
216
#define ENCODE_MIPS_LWP_IMM(x) \
217
  (RV_X(x, 2, 5) << 22)
218
#define ENCODE_MIPS_LDP_IMM(x) \
219
  (RV_X(x, 3, 4) << 23)
220
#define ENCODE_MIPS_SWP_IMM(x) \
221
  ((RV_X(x, 5, 2) << 25) | (RV_X(x, 2, 3) << 9))
222
#define ENCODE_MIPS_SDP_IMM(x) \
223
  ((RV_X(x, 5, 2) << 25) | (RV_X(x, 3, 2) << 10))
224
225
0
#define VALID_ITYPE_IMM(x) (EXTRACT_ITYPE_IMM(ENCODE_ITYPE_IMM(x)) == (x))
226
#define VALID_STYPE_IMM(x) (EXTRACT_STYPE_IMM(ENCODE_STYPE_IMM(x)) == (x))
227
0
#define VALID_BTYPE_IMM(x) (EXTRACT_BTYPE_IMM(ENCODE_BTYPE_IMM(x)) == (x))
228
0
#define VALID_UTYPE_IMM(x) (EXTRACT_UTYPE_IMM(ENCODE_UTYPE_IMM(x)) == (x))
229
0
#define VALID_JTYPE_IMM(x) (EXTRACT_JTYPE_IMM(ENCODE_JTYPE_IMM(x)) == (x))
230
#define VALID_CITYPE_IMM(x) (EXTRACT_CITYPE_IMM(ENCODE_CITYPE_IMM(x)) == (x))
231
0
#define VALID_CITYPE_LUI_IMM(x) (ENCODE_CITYPE_LUI_IMM(x) != 0 \
232
0
         && EXTRACT_CITYPE_LUI_IMM(ENCODE_CITYPE_LUI_IMM(x)) == (x))
233
#define VALID_CITYPE_ADDI16SP_IMM(x) (ENCODE_CITYPE_ADDI16SP_IMM(x) != 0 \
234
              && EXTRACT_CITYPE_ADDI16SP_IMM(ENCODE_CITYPE_ADDI16SP_IMM(x)) == (x))
235
#define VALID_CITYPE_LWSP_IMM(x) (EXTRACT_CITYPE_LWSP_IMM(ENCODE_CITYPE_LWSP_IMM(x)) == (x))
236
#define VALID_CITYPE_LDSP_IMM(x) (EXTRACT_CITYPE_LDSP_IMM(ENCODE_CITYPE_LDSP_IMM(x)) == (x))
237
#define VALID_CSSTYPE_IMM(x) (EXTRACT_CSSTYPE_IMM(ENCODE_CSSTYPE_IMM(x)) == (x))
238
#define VALID_CSSTYPE_SWSP_IMM(x) (EXTRACT_CSSTYPE_SWSP_IMM(ENCODE_CSSTYPE_SWSP_IMM(x)) == (x))
239
#define VALID_CSSTYPE_SDSP_IMM(x) (EXTRACT_CSSTYPE_SDSP_IMM(ENCODE_CSSTYPE_SDSP_IMM(x)) == (x))
240
#define VALID_CIWTYPE_IMM(x) (EXTRACT_CIWTYPE_IMM(ENCODE_CIWTYPE_IMM(x)) == (x))
241
#define VALID_CIWTYPE_ADDI4SPN_IMM(x) (EXTRACT_CIWTYPE_ADDI4SPN_IMM(ENCODE_CIWTYPE_ADDI4SPN_IMM(x)) == (x))
242
#define VALID_CLTYPE_IMM(x) (EXTRACT_CLTYPE_IMM(ENCODE_CLTYPE_IMM(x)) == (x))
243
#define VALID_CLTYPE_LW_IMM(x) (EXTRACT_CLTYPE_LW_IMM(ENCODE_CLTYPE_LW_IMM(x)) == (x))
244
#define VALID_CLTYPE_LD_IMM(x) (EXTRACT_CLTYPE_LD_IMM(ENCODE_CLTYPE_LD_IMM(x)) == (x))
245
0
#define VALID_CBTYPE_IMM(x) (EXTRACT_CBTYPE_IMM(ENCODE_CBTYPE_IMM(x)) == (x))
246
0
#define VALID_CJTYPE_IMM(x) (EXTRACT_CJTYPE_IMM(ENCODE_CJTYPE_IMM(x)) == (x))
247
#define VALID_RVV_VB_IMM(x) (EXTRACT_RVV_VB_IMM(ENCODE_RVV_VB_IMM(x)) == (x))
248
#define VALID_RVV_VC_IMM(x) (EXTRACT_RVV_VC_IMM(ENCODE_RVV_VC_IMM(x)) == (x))
249
#define VALID_ZCB_BYTE_UIMM(x) (EXTRACT_ZCB_BYTE_UIMM(ENCODE_ZCB_BYTE_UIMM(x)) == (x))
250
#define VALID_ZCB_HALFWORD_UIMM(x) (EXTRACT_ZCB_HALFWORD_UIMM(ENCODE_ZCB_HALFWORD_UIMM(x)) == (x))
251
#define VALID_ZCMP_SPIMM(x) (EXTRACT_ZCMP_SPIMM(ENCODE_ZCMP_SPIMM(x)) == (x))
252
253
#define RISCV_RTYPE(insn, rd, rs1, rs2) \
254
0
  ((MATCH_ ## insn) | ((rd) << OP_SH_RD) | ((rs1) << OP_SH_RS1) | ((rs2) << OP_SH_RS2))
255
#define RISCV_ITYPE(insn, rd, rs1, imm) \
256
0
  ((MATCH_ ## insn) | ((rd) << OP_SH_RD) | ((rs1) << OP_SH_RS1) | ENCODE_ITYPE_IMM(imm))
257
#define RISCV_STYPE(insn, rs1, rs2, imm) \
258
  ((MATCH_ ## insn) | ((rs1) << OP_SH_RS1) | ((rs2) << OP_SH_RS2) | ENCODE_STYPE_IMM(imm))
259
#define RISCV_BTYPE(insn, rs1, rs2, target) \
260
  ((MATCH_ ## insn) | ((rs1) << OP_SH_RS1) | ((rs2) << OP_SH_RS2) | ENCODE_BTYPE_IMM(target))
261
#define RISCV_UTYPE(insn, rd, bigimm) \
262
0
  ((MATCH_ ## insn) | ((rd) << OP_SH_RD) | ENCODE_UTYPE_IMM(bigimm))
263
#define RISCV_JTYPE(insn, rd, target) \
264
  ((MATCH_ ## insn) | ((rd) << OP_SH_RD) | ENCODE_JTYPE_IMM(target))
265
266
0
#define RISCV_NOP RISCV_ITYPE(ADDI, 0, 0, 0)
267
0
#define RVC_NOP MATCH_C_ADDI
268
269
#define RISCV_CONST_HIGH_PART(VALUE) \
270
0
  (((VALUE) + (RISCV_IMM_REACH/2)) & ~(RISCV_IMM_REACH-1))
271
0
#define RISCV_CONST_LOW_PART(VALUE) ((VALUE) - RISCV_CONST_HIGH_PART (VALUE))
272
0
#define RISCV_PCREL_HIGH_PART(VALUE, PC) RISCV_CONST_HIGH_PART((VALUE) - (PC))
273
0
#define RISCV_PCREL_LOW_PART(VALUE, PC) RISCV_CONST_LOW_PART((VALUE) - (PC))
274
275
#define RISCV_JUMP_BITS RISCV_BIGIMM_BITS
276
#define RISCV_JUMP_ALIGN_BITS 1
277
#define RISCV_JUMP_ALIGN (1 << RISCV_JUMP_ALIGN_BITS)
278
#define RISCV_JUMP_REACH ((1ULL << RISCV_JUMP_BITS) * RISCV_JUMP_ALIGN)
279
280
121k
#define RISCV_IMM_BITS 12
281
35.4k
#define RISCV_BIGIMM_BITS (32 - RISCV_IMM_BITS)
282
0
#define RISCV_IMM_REACH (1LL << RISCV_IMM_BITS)
283
35.4k
#define RISCV_BIGIMM_REACH (1LL << RISCV_BIGIMM_BITS)
284
#define RISCV_RVC_IMM_REACH (1LL << 6)
285
#define RISCV_BRANCH_BITS RISCV_IMM_BITS
286
#define RISCV_BRANCH_ALIGN_BITS RISCV_JUMP_ALIGN_BITS
287
#define RISCV_BRANCH_ALIGN (1 << RISCV_BRANCH_ALIGN_BITS)
288
#define RISCV_BRANCH_REACH (RISCV_IMM_REACH * RISCV_BRANCH_ALIGN)
289
290
/* RV fields.  */
291
292
264k
#define OP_MASK_OP    0x7f
293
#define OP_SH_OP    0
294
9.12M
#define OP_MASK_RS2   0x1f
295
18.2M
#define OP_SH_RS2   20
296
10.7M
#define OP_MASK_RS1   0x1f
297
20.2M
#define OP_SH_RS1   15
298
#define OP_MASK_RS3   0x1fU
299
#define OP_SH_RS3   27
300
11.2M
#define OP_MASK_RD    0x1f
301
20.9M
#define OP_SH_RD    7
302
#define OP_MASK_SHAMT   0x3f
303
#define OP_SH_SHAMT   20
304
#define OP_MASK_SHAMTW    0x1f
305
#define OP_SH_SHAMTW    20
306
#define OP_MASK_RM    0x7
307
#define OP_SH_RM    12
308
#define OP_MASK_PRED    0xf
309
#define OP_SH_PRED    24
310
#define OP_MASK_SUCC    0xf
311
#define OP_SH_SUCC    20
312
#define OP_MASK_AQ    0x1
313
#define OP_SH_AQ    26
314
#define OP_MASK_RL    0x1
315
#define OP_SH_RL    25
316
317
#define OP_MASK_CSR   0xfffU
318
#define OP_SH_CSR   20
319
320
#define OP_MASK_FUNCT3    0x7
321
#define OP_SH_FUNCT3    12
322
#define OP_MASK_FUNCT7    0x7fU
323
#define OP_SH_FUNCT7    25
324
#define OP_MASK_FUNCT2    0x3
325
#define OP_SH_FUNCT2    25
326
327
/* RVC fields.  */
328
329
#define OP_MASK_OP2   0x3
330
#define OP_SH_OP2   0
331
332
685k
#define OP_MASK_CRS2    0x1f
333
1.35M
#define OP_SH_CRS2    2
334
#define OP_MASK_CRS1S   0x7
335
#define OP_SH_CRS1S   7
336
1.40M
#define OP_MASK_CRS2S   0x7
337
2.81M
#define OP_SH_CRS2S   2
338
339
#define OP_MASK_CFUNCT6   0x3f
340
#define OP_SH_CFUNCT6   10
341
#define OP_MASK_CFUNCT4   0xf
342
#define OP_SH_CFUNCT4   12
343
#define OP_MASK_CFUNCT3   0x7
344
#define OP_SH_CFUNCT3   13
345
#define OP_MASK_CFUNCT2   0x3
346
#define OP_SH_CFUNCT2   5
347
348
/* Scalar crypto fields. */
349
350
#define OP_SH_BS        30
351
#define OP_MASK_BS      3
352
#define OP_SH_RNUM      20
353
#define OP_MASK_RNUM    0xf
354
355
/* RVV fields.  */
356
357
1.08M
#define OP_MASK_VD    0x1f
358
2.16M
#define OP_SH_VD    7
359
4.30M
#define OP_MASK_VS1   0x1f
360
8.60M
#define OP_SH_VS1   15
361
4.30M
#define OP_MASK_VS2   0x1f
362
8.60M
#define OP_SH_VS2   20
363
#define OP_MASK_VIMM    0x1f
364
#define OP_SH_VIMM    15
365
#define OP_MASK_VMASK   0x1
366
#define OP_SH_VMASK   25
367
#define OP_MASK_VFUNCT6   0x3f
368
#define OP_SH_VFUNCT6   26
369
#define OP_MASK_VLMUL   0x7
370
#define OP_SH_VLMUL   0
371
#define OP_MASK_VSEW    0x7
372
#define OP_SH_VSEW    3
373
#define OP_MASK_VTA   0x1
374
#define OP_SH_VTA   6
375
#define OP_MASK_VMA   0x1
376
#define OP_SH_VMA   7
377
#define OP_MASK_VTYPE_ALTFMT  0x1
378
#define OP_SH_VTYPE_ALTFMT  8
379
#define OP_MASK_VWD   0x1
380
#define OP_SH_VWD   26
381
382
#define OP_MASK_XTHEADVLMUL 0x3
383
#define OP_SH_XTHEADVLMUL 0
384
#define OP_MASK_XTHEADVSEW  0x7
385
#define OP_SH_XTHEADVSEW  2
386
#define OP_MASK_XTHEADVEDIV 0x3
387
#define OP_SH_XTHEADVEDIV 5
388
#define OP_MASK_XTHEADVTYPE_RES 0xf
389
#define OP_SH_XTHEADVTYPE_RES 7
390
391
/* Zc fields.  */
392
#define OP_MASK_REG_LIST  0xf
393
#define OP_SH_REG_LIST    4
394
0
#define ZCMP_SP_ALIGNMENT 16
395
#define OP_MASK_SREG1   0x7
396
#define OP_SH_SREG1   7
397
#define OP_MASK_SREG2   0x7
398
#define OP_SH_SREG2   2
399
400
#define NVECR 32
401
#define NVECM 1
402
403
/* SiFive fields.  */
404
#define OP_MASK_XSO2            0x3
405
#define OP_SH_XSO2              26
406
#define OP_MASK_XSO1            0x1
407
#define OP_SH_XSO1              26
408
409
/* MIPS fields.  */
410
#define OP_MASK_MIPS_IMM9   0x1ff
411
#define OP_SH_MIPS_IMM9   20
412
#define OP_MASK_MIPS_HINT   0x1f
413
#define OP_SH_MIPS_HINT   7
414
#define OP_MASK_MIPS_LWP_OFFSET     0x1f
415
#define OP_SH_MIPS_LWP_OFFSET       22
416
#define OP_MASK_MIPS_LDP_OFFSET     0xf
417
#define OP_SH_MIPS_LDP_OFFSET       23
418
#define OP_MASK_MIPS_SWP_OFFSET9    0x7
419
#define OP_SH_MIPS_SWP_OFFSET9      9
420
#define OP_MASK_MIPS_SWP_OFFSET25   0x3
421
#define OP_SH_MIPS_SWP_OFFSET25     25
422
#define OP_MASK_MIPS_SDP_OFFSET10   0x3
423
#define OP_SH_MIPS_SDP_OFFSET10     10
424
#define OP_MASK_MIPS_SDP_OFFSET25   0x3
425
#define OP_SH_MIPS_SDP_OFFSET25     25
426
427
/* SpacemiT fields.  */
428
#define OP_MASK_SPACEMIT_IME_VD   0xf
429
#define OP_SH_SPACEMIT_IME_VD   8
430
#define OP_MASK_SPACEMIT_IME_VS1  0xf
431
#define OP_SH_SPACEMIT_IME_VS1    16
432
#define OP_MASK_SPACEMIT_IME_WI   0x3
433
#define OP_SH_SPACEMIT_IME_WI   29
434
#define OP_MASK_SPACEMIT_IME_VMASK  0x1
435
#define OP_SH_SPACEMIT_IME_VMASK  25
436
437
/* ABI names for selected x-registers.  */
438
439
#define X_ZERO 0
440
0
#define X_RA 1
441
310k
#define X_SP 2
442
196k
#define X_GP 3
443
196k
#define X_TP 4
444
#define X_T0 5
445
#define X_T1 6
446
#define X_T2 7
447
0
#define X_S0 8
448
0
#define X_S1 9
449
#define X_A0 10
450
#define X_A1 11
451
0
#define X_S2 18
452
#define X_S7 23
453
#define X_S10 26
454
0
#define X_S11 27
455
#define X_T3 28
456
457
#define NGPR 32
458
#define NFPR 32
459
460
/* These fake label defines are use by both the assembler, and
461
   libopcodes.  The assembler uses this when it needs to generate a fake
462
   label, and libopcodes uses it to hide the fake labels in its output.  */
463
0
#define RISCV_FAKE_LABEL_NAME ".L0 "
464
#define RISCV_FAKE_LABEL_CHAR ' '
465
466
/* Replace bits MASK << SHIFT of STRUCT with the equivalent bits in
467
   VALUE << SHIFT.  VALUE is evaluated exactly once.  */
468
#define INSERT_BITS(STRUCT, VALUE, MASK, SHIFT) \
469
  (STRUCT) = (((STRUCT) & ~((insn_t)(MASK) << (SHIFT))) \
470
        | ((insn_t)((VALUE) & (MASK)) << (SHIFT)))
471
472
/* Extract bits MASK << SHIFT from STRUCT and shift them right
473
   SHIFT places.  */
474
#define EXTRACT_BITS(STRUCT, MASK, SHIFT) \
475
907k
  (((STRUCT) >> (SHIFT)) & (MASK))
476
477
/* Extract the operand given by FIELD from integer INSN.  */
478
#define EXTRACT_OPERAND(FIELD, INSN) \
479
907k
  ((unsigned int) EXTRACT_BITS ((INSN), OP_MASK_##FIELD, OP_SH_##FIELD))
480
481
/* Extract an unsigned immediate operand on position s with n bits.  */
482
#define EXTRACT_U_IMM(n, s, l) \
483
0
  RV_X (l, s, n)
484
485
/* Extract an signed immediate operand on position s with n bits.  */
486
#define EXTRACT_S_IMM(n, s, l) \
487
0
  RV_X_SIGNED (l, s, n)
488
489
/* Validate that unsigned n-bit immediate is within bounds.  */
490
#define VALIDATE_U_IMM(v, n) \
491
  ((unsigned long) v < (1UL << n))
492
493
/* Validate that signed n-bit immediate is within bounds.  */
494
#define VALIDATE_S_IMM(v, n) \
495
  (v < (long) (1UL << (n-1)) && v >= -(offsetT) (1UL << (n-1)))
496
497
/* The maximal number of subset can be required.  */
498
#define MAX_SUBSET_NUM 4
499
500
/* The range of sregs.  */
501
#define RISCV_SREG_0_7(REGNO) \
502
  ((REGNO == X_S0 || REGNO == X_S1) \
503
   || (REGNO >= X_S2 && REGNO <= X_S7))
504
505
/* All RISC-V instructions belong to at least one of these classes.  */
506
enum riscv_insn_class
507
{
508
  INSN_CLASS_NONE,
509
510
  INSN_CLASS_I,
511
  INSN_CLASS_ZCA,
512
  INSN_CLASS_M,
513
  INSN_CLASS_F,
514
  INSN_CLASS_D,
515
  INSN_CLASS_Q,
516
  INSN_CLASS_ZCF,
517
  INSN_CLASS_ZCD,
518
  INSN_CLASS_ZICOND,
519
  INSN_CLASS_ZICSR,
520
  INSN_CLASS_ZIFENCEI,
521
  INSN_CLASS_ZIHINTNTL,
522
  INSN_CLASS_ZIHINTNTL_AND_ZCA,
523
  INSN_CLASS_ZIHINTPAUSE,
524
  INSN_CLASS_ZIMOP,
525
  INSN_CLASS_ZMMUL,
526
  INSN_CLASS_ZAAMO,
527
  INSN_CLASS_ZALASR,
528
  INSN_CLASS_ZALRSC,
529
  INSN_CLASS_ZAWRS,
530
  INSN_CLASS_F_INX,
531
  INSN_CLASS_D_INX,
532
  INSN_CLASS_Q_INX,
533
  INSN_CLASS_ZFH_INX,
534
  INSN_CLASS_ZFHMIN,
535
  INSN_CLASS_ZFHMIN_INX,
536
  INSN_CLASS_ZFHMIN_AND_D_INX,
537
  INSN_CLASS_ZFHMIN_AND_Q_INX,
538
  INSN_CLASS_ZFBFMIN,
539
  INSN_CLASS_ZFA,
540
  INSN_CLASS_D_AND_ZFA,
541
  INSN_CLASS_Q_AND_ZFA,
542
  INSN_CLASS_ZFH_AND_ZFA,
543
  INSN_CLASS_ZFH_OR_ZVFH_AND_ZFA,
544
  INSN_CLASS_ZBA,
545
  INSN_CLASS_ZBB,
546
  INSN_CLASS_ZBC,
547
  INSN_CLASS_ZBS,
548
  INSN_CLASS_ZBKB,
549
  INSN_CLASS_ZBKC,
550
  INSN_CLASS_ZBKX,
551
  INSN_CLASS_ZKND,
552
  INSN_CLASS_ZKNE,
553
  INSN_CLASS_ZKNH,
554
  INSN_CLASS_ZKSED,
555
  INSN_CLASS_ZKSH,
556
  INSN_CLASS_ZBB_OR_ZBKB,
557
  INSN_CLASS_ZBC_OR_ZBKC,
558
  INSN_CLASS_ZKND_OR_ZKNE,
559
  INSN_CLASS_V,
560
  INSN_CLASS_ZVEF,
561
  INSN_CLASS_ZVBB,
562
  INSN_CLASS_ZVBC,
563
  INSN_CLASS_ZVFBFMIN,
564
  INSN_CLASS_ZVFBFWMA,
565
  INSN_CLASS_ZVFBDOTA32F,
566
  INSN_CLASS_ZVFQWBDOTA8F,
567
  INSN_CLASS_ZVFQWDOTA8F,
568
  INSN_CLASS_ZVFWBDOTA16BF,
569
  INSN_CLASS_ZVFWDOTA16BF,
570
  INSN_CLASS_ZVKB,
571
  INSN_CLASS_ZVKG,
572
  INSN_CLASS_ZVKNED,
573
  INSN_CLASS_ZVKNHA_OR_ZVKNHB,
574
  INSN_CLASS_ZVKSED,
575
  INSN_CLASS_ZVKSH,
576
  INSN_CLASS_ZVABD,
577
  INSN_CLASS_ZVQWBDOTA8I,
578
  INSN_CLASS_ZVQWBDOTA16I,
579
  INSN_CLASS_ZVQWBDOTA8I_OR_ZVQWBDOTA16I,
580
  INSN_CLASS_ZVQWDOTA8I,
581
  INSN_CLASS_ZVQWDOTA16I,
582
  INSN_CLASS_ZVQWDOTA8I_OR_ZVQWDOTA16I,
583
  INSN_CLASS_ZICFISS,
584
  INSN_CLASS_ZICFISS_AND_ZCMOP,
585
  INSN_CLASS_ZICFILP,
586
  INSN_CLASS_ZCB,
587
  INSN_CLASS_ZCB_AND_ZBA,
588
  INSN_CLASS_ZCB_AND_ZBB,
589
  INSN_CLASS_ZCB_AND_ZMMUL,
590
  INSN_CLASS_ZCMOP,
591
  INSN_CLASS_ZCMP,
592
  INSN_CLASS_ZCMT,
593
  INSN_CLASS_SMCTR_OR_SSCTR,
594
  INSN_CLASS_ZILSD,
595
  INSN_CLASS_ZCLSD,
596
  INSN_CLASS_SMRNMI,
597
  INSN_CLASS_SVINVAL,
598
  INSN_CLASS_ZICBOM,
599
  INSN_CLASS_ZICBOP,
600
  INSN_CLASS_ZICBOZ,
601
  INSN_CLASS_ZABHA,
602
  INSN_CLASS_ZACAS,
603
  INSN_CLASS_ZABHA_AND_ZACAS,
604
  INSN_CLASS_H,
605
  INSN_CLASS_XCVALU,
606
  INSN_CLASS_XCVBI,
607
  INSN_CLASS_XCVBITMANIP,
608
  INSN_CLASS_XCVELW,
609
  INSN_CLASS_XCVMAC,
610
  INSN_CLASS_XCVMEM,
611
  INSN_CLASS_XCVSIMD,
612
  INSN_CLASS_XTHEADBA,
613
  INSN_CLASS_XTHEADBB,
614
  INSN_CLASS_XTHEADBS,
615
  INSN_CLASS_XTHEADCMO,
616
  INSN_CLASS_XTHEADCONDMOV,
617
  INSN_CLASS_XTHEADFMEMIDX,
618
  INSN_CLASS_XTHEADFMV,
619
  INSN_CLASS_XTHEADINT,
620
  INSN_CLASS_XTHEADMAC,
621
  INSN_CLASS_XTHEADMEMIDX,
622
  INSN_CLASS_XTHEADMEMPAIR,
623
  INSN_CLASS_XTHEADSYNC,
624
  INSN_CLASS_XTHEADVECTOR,
625
  INSN_CLASS_XTHEADVDOT,
626
  INSN_CLASS_XTHEADZVAMO,
627
  INSN_CLASS_XVENTANACONDOPS,
628
  INSN_CLASS_XSFVCP,
629
  INSN_CLASS_XSFCEASE,
630
  INSN_CLASS_XSFVQMACCQOQ,
631
  INSN_CLASS_XSFVQMACCDOD,
632
  INSN_CLASS_XSFVFNRCLIPXFQF,
633
  INSN_CLASS_XMIPSCBOP,
634
  INSN_CLASS_XMIPSCMOV,
635
  INSN_CLASS_XMIPSEXECTL,
636
  INSN_CLASS_XMIPSLSP,
637
  INSN_CLASS_XSMTVDOT,
638
  INSN_CLASS_XSMTVDOTII,
639
  INSN_CLASS_XSMTVDOT_OR_XSMTVDOTII,
640
};
641
642
/* This structure holds information for a particular instruction.  */
643
struct riscv_opcode
644
{
645
  /* The name of the instruction.  */
646
  const char *name;
647
648
  /* The requirement of xlen for the instruction, 0 if no requirement.  */
649
  unsigned xlen_requirement;
650
651
  /* Class to which this instruction belongs.  Used to decide whether or
652
     not this instruction is legal in the current -march context.  */
653
  enum riscv_insn_class insn_class;
654
655
  /* A string describing the arguments for this instruction.  */
656
  const char *args;
657
658
  /* The basic opcode for the instruction.  When assembling, this
659
     opcode is modified by the arguments to produce the actual opcode
660
     that is used.  If pinfo is INSN_MACRO, then this is 0.  */
661
  insn_t match;
662
663
  /* If pinfo is not INSN_MACRO, then this is a bit mask for the
664
     relevant portions of the opcode when disassembling.  If the
665
     actual opcode anded with the match field equals the opcode field,
666
     then we have found the correct instruction.  If pinfo is
667
     INSN_MACRO, then this field is the macro identifier.  */
668
  insn_t mask;
669
670
  /* A function to determine if a word corresponds to this instruction.
671
     Usually, this computes ((word & mask) == match).  */
672
  int (*match_func) (const struct riscv_opcode *op, insn_t word);
673
674
  /* For a macro, this is INSN_MACRO.  Otherwise, it is a collection
675
     of bits describing the instruction, notably any relevant hazard
676
     information.  */
677
  unsigned long pinfo;
678
};
679
680
/* Instruction is a simple alias (e.g. "mv" for "addi").  */
681
0
#define INSN_ALIAS    0x00000001
682
683
/* These are for setting insn_info fields.
684
685
   Nonbranch is the default.  Noninsn is used only if there is no match.
686
   There are no condjsr or dref2 instructions.  So that leaves condbranch,
687
   branch, jsr, and dref that we need to handle here, encoded in 3 bits.  */
688
1.24M
#define INSN_TYPE   0x0000000e
689
690
/* Instruction is an unconditional branch.  */
691
22.7k
#define INSN_BRANCH   0x00000002
692
/* Instruction is a conditional branch.  */
693
54.5k
#define INSN_CONDBRANCH   0x00000004
694
/* Instruction is a jump to subroutine.  */
695
9.06k
#define INSN_JSR    0x00000006
696
/* Instruction is a data reference.  */
697
437k
#define INSN_DREF   0x00000008
698
/* Instruction is allowed when eew >= 64.  */
699
#define INSN_V_EEW64    0x10000000
700
701
/* We have 5 data reference sizes, which we can encode in 3 bits.  */
702
1.68M
#define INSN_DATA_SIZE    0x00000070
703
437k
#define INSN_DATA_SIZE_SHIFT  4
704
#define INSN_1_BYTE   0x00000010
705
#define INSN_2_BYTE   0x00000020
706
#define INSN_4_BYTE   0x00000030
707
#define INSN_8_BYTE   0x00000040
708
#define INSN_16_BYTE    0x00000050
709
710
/* Instruction is actually a macro.  It should be ignored by the
711
   disassembler, and requires special treatment by the assembler.  */
712
979M
#define INSN_MACRO    0xffffffff
713
714
/* This is a list of macro expanded instructions.  */
715
enum
716
{
717
  M_LA,
718
  M_LLA,
719
  M_LGA,
720
  M_LA_TLS_GD,
721
  M_LA_TLS_IE,
722
  M_Lx,
723
  M_FLx,
724
  M_Sx_FSx,
725
  M_CALL,
726
  M_LI,
727
  M_EXTH,
728
  M_ZEXTW,
729
  M_SEXTB,
730
  M_VMSGE,
731
  M_NUM_MACROS
732
};
733
734
/* The mapping symbol states.  */
735
enum riscv_seg_mstate
736
{
737
  MAP_NONE = 0,   /* Must be zero, for seginfo in new sections.  */
738
  MAP_DATA,   /* Data.  */
739
  MAP_INSN,   /* Instructions.  */
740
};
741
742
#define NRC (4 + 1)     /* Max characters in register names, incl nul.  */
743
744
extern const char riscv_gpr_names_numeric[NGPR][NRC];
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extern const char riscv_gpr_names_abi[NGPR][NRC];
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extern const char riscv_fpr_names_numeric[NFPR][NRC];
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extern const char riscv_fpr_names_abi[NFPR][NRC];
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extern const char * const riscv_rm[8];
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extern const char * const riscv_pred_succ[16];
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extern const char riscv_vecr_names_numeric[NVECR][NRC];
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extern const char riscv_vecm_names_numeric[NVECM][NRC];
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extern const char * const riscv_vsew[8];
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extern const char * const riscv_vsew_altfmt[2];
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extern const char * const riscv_vlmul[8];
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extern const char * const riscv_vta[2];
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extern const char * const riscv_vma[2];
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extern const char * const riscv_th_vlen[4];
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extern const char * const riscv_th_vediv[4];
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extern const char * const riscv_fli_symval[32];
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extern const float riscv_fli_numval[32];
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extern const struct riscv_opcode riscv_opcodes[];
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extern const struct riscv_opcode riscv_insn_types[];
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extern unsigned int riscv_get_sp_base (insn_t, unsigned int);
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#endif /* _RISCV_H_ */