blob: 3c00ecec510ec2f5c11b913e010266c011b30948 [file] [log] [blame]
Ben Chengba4fc8b2009-06-01 13:00:29 -07001/*
2 * Copyright (C) 2009 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#include "Dalvik.h"
18#include "libdex/OpCode.h"
19#include "dexdump/OpCodeNames.h"
20
21#include "../../CompilerInternals.h"
Bill Buzbee89efc3d2009-07-28 11:22:22 -070022#include "ArmLIR.h"
Ben Chengba4fc8b2009-06-01 13:00:29 -070023#include <unistd.h> /* for cacheflush */
24
25/*
Bill Buzbee89efc3d2009-07-28 11:22:22 -070026 * opcode: ArmOpCode enum
Ben Chengba4fc8b2009-06-01 13:00:29 -070027 * skeleton: pre-designated bit-pattern for this opcode
Bill Buzbee9bc3df32009-07-30 10:52:29 -070028 * k0: key to applying ds/de
Ben Chengba4fc8b2009-06-01 13:00:29 -070029 * ds: dest start bit position
30 * de: dest end bit position
Bill Buzbee9bc3df32009-07-30 10:52:29 -070031 * k1: key to applying s1s/s1e
Ben Chengba4fc8b2009-06-01 13:00:29 -070032 * s1s: src1 start bit position
33 * s1e: src1 end bit position
Bill Buzbee9bc3df32009-07-30 10:52:29 -070034 * k2: key to applying s2s/s2e
Ben Chengba4fc8b2009-06-01 13:00:29 -070035 * s2s: src2 start bit position
36 * s2e: src2 end bit position
37 * operands: number of operands (for sanity check purposes)
38 * name: mnemonic name
Elliott Hughesb4c05972010-02-24 16:36:18 -080039 * fmt: for pretty-printing
Ben Chengba4fc8b2009-06-01 13:00:29 -070040 */
Bill Buzbee9bc3df32009-07-30 10:52:29 -070041#define ENCODING_MAP(opcode, skeleton, k0, ds, de, k1, s1s, s1e, k2, s2s, s2e, \
Ben Chengdcf3e5d2009-09-11 13:42:05 -070042 k3, k3s, k3e, flags, name, fmt, size) \
Bill Buzbee270c1d62009-08-13 16:58:07 -070043 {skeleton, {{k0, ds, de}, {k1, s1s, s1e}, {k2, s2s, s2e}, \
Ben Chengdcf3e5d2009-09-11 13:42:05 -070044 {k3, k3s, k3e}}, opcode, flags, name, fmt, size}
Ben Chengba4fc8b2009-06-01 13:00:29 -070045
46/* Instruction dump string format keys: !pf, where "!" is the start
47 * of the key, "p" is which numeric operand to use and "f" is the
48 * print format.
49 *
50 * [p]ositions:
51 * 0 -> operands[0] (dest)
52 * 1 -> operands[1] (src1)
53 * 2 -> operands[2] (src2)
Bill Buzbee270c1d62009-08-13 16:58:07 -070054 * 3 -> operands[3] (extra)
Ben Chengba4fc8b2009-06-01 13:00:29 -070055 *
56 * [f]ormats:
57 * h -> 4-digit hex
58 * d -> decimal
Ben Chengba4fc8b2009-06-01 13:00:29 -070059 * E -> decimal*4
60 * F -> decimal*2
61 * c -> branch condition (beq, bne, etc.)
62 * t -> pc-relative target
63 * u -> 1st half of bl[x] target
64 * v -> 2nd half ob bl[x] target
65 * R -> register list
Bill Buzbee9727c3d2009-08-01 11:32:36 -070066 * s -> single precision floating point register
67 * S -> double precision floating point register
Bill Buzbee7ea0f642009-08-10 17:06:51 -070068 * m -> Thumb2 modified immediate
Bill Buzbee270c1d62009-08-13 16:58:07 -070069 * n -> complimented Thumb2 modified immediate
Bill Buzbee7ea0f642009-08-10 17:06:51 -070070 * M -> Thumb2 16-bit zero-extended immediate
Bill Buzbeea4a7f072009-08-27 13:58:09 -070071 * b -> 4-digit binary
Ben Chengba4fc8b2009-06-01 13:00:29 -070072 *
73 * [!] escape. To insert "!", use "!!"
74 */
Bill Buzbee89efc3d2009-07-28 11:22:22 -070075/* NOTE: must be kept in sync with enum ArmOpcode from ArmLIR.h */
Bill Buzbee1465db52009-09-23 17:17:35 -070076ArmEncodingMap EncodingMap[kArmLast] = {
77 ENCODING_MAP(kArm16BitData, 0x0000,
78 kFmtBitBlt, 15, 0, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
79 kFmtUnused, -1, -1, IS_UNARY_OP, "data", "0x!0h(!0d)", 1),
80 ENCODING_MAP(kThumbAdcRR, 0x4140,
81 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
82 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -070083 IS_BINARY_OP | REG_DEF0_USE01 | SETS_CCODES | USES_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -070084 "adcs", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -070085 ENCODING_MAP(kThumbAddRRI3, 0x1c00,
86 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 8, 6,
87 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -070088 IS_TERTIARY_OP | REG_DEF0_USE1 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -070089 "adds", "r!0d, r!1d, #!2d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -070090 ENCODING_MAP(kThumbAddRI8, 0x3000,
91 kFmtBitBlt, 10, 8, kFmtBitBlt, 7, 0, kFmtUnused, -1, -1,
92 kFmtUnused, -1, -1,
Ben Chengd7d426a2009-09-22 11:23:36 -070093 IS_BINARY_OP | REG_DEF0_USE0 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -070094 "adds", "r!0d, r!0d, #!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -070095 ENCODING_MAP(kThumbAddRRR, 0x1800,
96 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 8, 6,
97 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -070098 IS_TERTIARY_OP | REG_DEF0_USE12 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -070099 "adds", "r!0d, r!1d, r!2d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700100 ENCODING_MAP(kThumbAddRRLH, 0x4440,
101 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
102 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE01,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700103 "add", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700104 ENCODING_MAP(kThumbAddRRHL, 0x4480,
105 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
106 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE01,
Bill Buzbee716f1202009-07-23 13:22:09 -0700107 "add", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700108 ENCODING_MAP(kThumbAddRRHH, 0x44c0,
109 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
110 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE01,
Bill Buzbee716f1202009-07-23 13:22:09 -0700111 "add", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700112 ENCODING_MAP(kThumbAddPcRel, 0xa000,
113 kFmtBitBlt, 10, 8, kFmtBitBlt, 7, 0, kFmtUnused, -1, -1,
114 kFmtUnused, -1, -1, IS_TERTIARY_OP | IS_BRANCH,
Bill Buzbee716f1202009-07-23 13:22:09 -0700115 "add", "r!0d, pc, #!1E", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700116 ENCODING_MAP(kThumbAddSpRel, 0xa800,
117 kFmtBitBlt, 10, 8, kFmtUnused, -1, -1, kFmtBitBlt, 7, 0,
118 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF_SP | REG_USE_SP,
Bill Buzbeea4a7f072009-08-27 13:58:09 -0700119 "add", "r!0d, sp, #!2E", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700120 ENCODING_MAP(kThumbAddSpI7, 0xb000,
121 kFmtBitBlt, 6, 0, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
122 kFmtUnused, -1, -1, IS_UNARY_OP | REG_DEF_SP | REG_USE_SP,
Bill Buzbee716f1202009-07-23 13:22:09 -0700123 "add", "sp, #!0d*4", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700124 ENCODING_MAP(kThumbAndRR, 0x4000,
125 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
126 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700127 IS_BINARY_OP | REG_DEF0_USE01 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700128 "ands", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700129 ENCODING_MAP(kThumbAsrRRI5, 0x1000,
130 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 10, 6,
131 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700132 IS_TERTIARY_OP | REG_DEF0_USE1 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700133 "asrs", "r!0d, r!1d, #!2d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700134 ENCODING_MAP(kThumbAsrRR, 0x4100,
135 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
136 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700137 IS_BINARY_OP | REG_DEF0_USE01 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700138 "asrs", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700139 ENCODING_MAP(kThumbBCond, 0xd000,
140 kFmtBitBlt, 7, 0, kFmtBitBlt, 11, 8, kFmtUnused, -1, -1,
141 kFmtUnused, -1, -1, IS_BINARY_OP | IS_BRANCH | USES_CCODES,
Bill Buzbeea4a7f072009-08-27 13:58:09 -0700142 "b!1c", "!0t", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700143 ENCODING_MAP(kThumbBUncond, 0xe000,
144 kFmtBitBlt, 10, 0, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
145 kFmtUnused, -1, -1, NO_OPERAND | IS_BRANCH,
Bill Buzbee716f1202009-07-23 13:22:09 -0700146 "b", "!0t", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700147 ENCODING_MAP(kThumbBicRR, 0x4380,
148 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
149 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700150 IS_BINARY_OP | REG_DEF0_USE01 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700151 "bics", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700152 ENCODING_MAP(kThumbBkpt, 0xbe00,
153 kFmtBitBlt, 7, 0, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
154 kFmtUnused, -1, -1, IS_UNARY_OP | IS_BRANCH,
Bill Buzbee716f1202009-07-23 13:22:09 -0700155 "bkpt", "!0d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700156 ENCODING_MAP(kThumbBlx1, 0xf000,
157 kFmtBitBlt, 10, 0, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
158 kFmtUnused, -1, -1, IS_BINARY_OP | IS_BRANCH | REG_DEF_LR,
Bill Buzbee716f1202009-07-23 13:22:09 -0700159 "blx_1", "!0u", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700160 ENCODING_MAP(kThumbBlx2, 0xe800,
161 kFmtBitBlt, 10, 0, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
162 kFmtUnused, -1, -1, IS_BINARY_OP | IS_BRANCH | REG_DEF_LR,
Bill Buzbee716f1202009-07-23 13:22:09 -0700163 "blx_2", "!0v", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700164 ENCODING_MAP(kThumbBl1, 0xf000,
165 kFmtBitBlt, 10, 0, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
166 kFmtUnused, -1, -1, IS_UNARY_OP | IS_BRANCH | REG_DEF_LR,
Bill Buzbee716f1202009-07-23 13:22:09 -0700167 "bl_1", "!0u", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700168 ENCODING_MAP(kThumbBl2, 0xf800,
169 kFmtBitBlt, 10, 0, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
170 kFmtUnused, -1, -1, IS_UNARY_OP | IS_BRANCH | REG_DEF_LR,
Bill Buzbee716f1202009-07-23 13:22:09 -0700171 "bl_2", "!0v", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700172 ENCODING_MAP(kThumbBlxR, 0x4780,
173 kFmtBitBlt, 6, 3, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
174 kFmtUnused, -1, -1,
Ben Chengd7d426a2009-09-22 11:23:36 -0700175 IS_UNARY_OP | REG_USE0 | IS_BRANCH | REG_DEF_LR,
Bill Buzbee716f1202009-07-23 13:22:09 -0700176 "blx", "r!0d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700177 ENCODING_MAP(kThumbBx, 0x4700,
178 kFmtBitBlt, 6, 3, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
179 kFmtUnused, -1, -1, IS_UNARY_OP | IS_BRANCH,
Bill Buzbee716f1202009-07-23 13:22:09 -0700180 "bx", "r!0d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700181 ENCODING_MAP(kThumbCmnRR, 0x42c0,
182 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
183 kFmtUnused, -1, -1, IS_BINARY_OP | REG_USE01 | SETS_CCODES,
Bill Buzbee716f1202009-07-23 13:22:09 -0700184 "cmn", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700185 ENCODING_MAP(kThumbCmpRI8, 0x2800,
186 kFmtBitBlt, 10, 8, kFmtBitBlt, 7, 0, kFmtUnused, -1, -1,
187 kFmtUnused, -1, -1, IS_BINARY_OP | REG_USE0 | SETS_CCODES,
Bill Buzbee716f1202009-07-23 13:22:09 -0700188 "cmp", "r!0d, #!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700189 ENCODING_MAP(kThumbCmpRR, 0x4280,
190 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
191 kFmtUnused, -1, -1, IS_BINARY_OP | REG_USE01 | SETS_CCODES,
Bill Buzbee716f1202009-07-23 13:22:09 -0700192 "cmp", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700193 ENCODING_MAP(kThumbCmpLH, 0x4540,
194 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
195 kFmtUnused, -1, -1, IS_BINARY_OP | REG_USE01 | SETS_CCODES,
Ben Chengd7d426a2009-09-22 11:23:36 -0700196 "cmp", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700197 ENCODING_MAP(kThumbCmpHL, 0x4580,
198 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
199 kFmtUnused, -1, -1, IS_BINARY_OP | REG_USE01 | SETS_CCODES,
Ben Chengd7d426a2009-09-22 11:23:36 -0700200 "cmp", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700201 ENCODING_MAP(kThumbCmpHH, 0x45c0,
202 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
203 kFmtUnused, -1, -1, IS_BINARY_OP | REG_USE01 | SETS_CCODES,
Ben Chengd7d426a2009-09-22 11:23:36 -0700204 "cmp", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700205 ENCODING_MAP(kThumbEorRR, 0x4040,
206 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
207 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700208 IS_BINARY_OP | REG_DEF0_USE01 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700209 "eors", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700210 ENCODING_MAP(kThumbLdmia, 0xc800,
211 kFmtBitBlt, 10, 8, kFmtBitBlt, 7, 0, kFmtUnused, -1, -1,
212 kFmtUnused, -1, -1,
Bill Buzbee1f748632010-03-02 16:14:41 -0800213 IS_BINARY_OP | REG_DEF0_USE0 | REG_DEF_LIST1 | IS_LOAD,
Bill Buzbee716f1202009-07-23 13:22:09 -0700214 "ldmia", "r!0d!!, <!1R>", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700215 ENCODING_MAP(kThumbLdrRRI5, 0x6800,
216 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 10, 6,
Bill Buzbee1f748632010-03-02 16:14:41 -0800217 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1 | IS_LOAD,
Bill Buzbee716f1202009-07-23 13:22:09 -0700218 "ldr", "r!0d, [r!1d, #!2E]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700219 ENCODING_MAP(kThumbLdrRRR, 0x5800,
220 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 8, 6,
Bill Buzbee1f748632010-03-02 16:14:41 -0800221 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12 | IS_LOAD,
Bill Buzbee716f1202009-07-23 13:22:09 -0700222 "ldr", "r!0d, [r!1d, r!2d]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700223 ENCODING_MAP(kThumbLdrPcRel, 0x4800,
224 kFmtBitBlt, 10, 8, kFmtBitBlt, 7, 0, kFmtUnused, -1, -1,
Bill Buzbee1f748632010-03-02 16:14:41 -0800225 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0 | REG_USE_PC
226 | IS_LOAD, "ldr", "r!0d, [pc, #!1E]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700227 ENCODING_MAP(kThumbLdrSpRel, 0x9800,
228 kFmtBitBlt, 10, 8, kFmtUnused, -1, -1, kFmtBitBlt, 7, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800229 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0 | REG_USE_SP
230 | IS_LOAD, "ldr", "r!0d, [sp, #!2E]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700231 ENCODING_MAP(kThumbLdrbRRI5, 0x7800,
232 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 10, 6,
Bill Buzbee1f748632010-03-02 16:14:41 -0800233 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1 | IS_LOAD,
Bill Buzbee716f1202009-07-23 13:22:09 -0700234 "ldrb", "r!0d, [r!1d, #2d]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700235 ENCODING_MAP(kThumbLdrbRRR, 0x5c00,
236 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 8, 6,
Bill Buzbee1f748632010-03-02 16:14:41 -0800237 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12 | IS_LOAD,
Bill Buzbee716f1202009-07-23 13:22:09 -0700238 "ldrb", "r!0d, [r!1d, r!2d]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700239 ENCODING_MAP(kThumbLdrhRRI5, 0x8800,
240 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 10, 6,
Bill Buzbee1f748632010-03-02 16:14:41 -0800241 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1 | IS_LOAD,
Bill Buzbee716f1202009-07-23 13:22:09 -0700242 "ldrh", "r!0d, [r!1d, #!2F]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700243 ENCODING_MAP(kThumbLdrhRRR, 0x5a00,
244 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 8, 6,
Bill Buzbee1f748632010-03-02 16:14:41 -0800245 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12 | IS_LOAD,
Bill Buzbee716f1202009-07-23 13:22:09 -0700246 "ldrh", "r!0d, [r!1d, r!2d]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700247 ENCODING_MAP(kThumbLdrsbRRR, 0x5600,
248 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 8, 6,
Bill Buzbee1f748632010-03-02 16:14:41 -0800249 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12 | IS_LOAD,
Bill Buzbee716f1202009-07-23 13:22:09 -0700250 "ldrsb", "r!0d, [r!1d, r!2d]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700251 ENCODING_MAP(kThumbLdrshRRR, 0x5e00,
252 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 8, 6,
Bill Buzbee1f748632010-03-02 16:14:41 -0800253 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12 | IS_LOAD,
Bill Buzbee716f1202009-07-23 13:22:09 -0700254 "ldrsh", "r!0d, [r!1d, r!2d]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700255 ENCODING_MAP(kThumbLslRRI5, 0x0000,
256 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 10, 6,
257 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700258 IS_TERTIARY_OP | REG_DEF0_USE1 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700259 "lsls", "r!0d, r!1d, #!2d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700260 ENCODING_MAP(kThumbLslRR, 0x4080,
261 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
262 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700263 IS_BINARY_OP | REG_DEF0_USE01 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700264 "lsls", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700265 ENCODING_MAP(kThumbLsrRRI5, 0x0800,
266 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 10, 6,
267 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700268 IS_TERTIARY_OP | REG_DEF0_USE1 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700269 "lsrs", "r!0d, r!1d, #!2d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700270 ENCODING_MAP(kThumbLsrRR, 0x40c0,
271 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
272 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700273 IS_BINARY_OP | REG_DEF0_USE01 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700274 "lsrs", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700275 ENCODING_MAP(kThumbMovImm, 0x2000,
276 kFmtBitBlt, 10, 8, kFmtBitBlt, 7, 0, kFmtUnused, -1, -1,
277 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700278 IS_BINARY_OP | REG_DEF0 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700279 "movs", "r!0d, #!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700280 ENCODING_MAP(kThumbMovRR, 0x1c00,
281 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
282 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700283 IS_BINARY_OP | REG_DEF0_USE1 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700284 "movs", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700285 ENCODING_MAP(kThumbMovRR_H2H, 0x46c0,
286 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
287 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Ben Chengd7d426a2009-09-22 11:23:36 -0700288 "mov", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700289 ENCODING_MAP(kThumbMovRR_H2L, 0x4640,
290 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
291 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Ben Chengd7d426a2009-09-22 11:23:36 -0700292 "mov", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700293 ENCODING_MAP(kThumbMovRR_L2H, 0x4680,
294 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
295 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Ben Chengd7d426a2009-09-22 11:23:36 -0700296 "mov", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700297 ENCODING_MAP(kThumbMul, 0x4340,
298 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
299 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700300 IS_BINARY_OP | REG_DEF0_USE01 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700301 "muls", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700302 ENCODING_MAP(kThumbMvn, 0x43c0,
303 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
304 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700305 IS_BINARY_OP | REG_DEF0_USE1 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700306 "mvns", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700307 ENCODING_MAP(kThumbNeg, 0x4240,
308 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
309 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700310 IS_BINARY_OP | REG_DEF0_USE1 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700311 "negs", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700312 ENCODING_MAP(kThumbOrr, 0x4300,
313 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
314 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700315 IS_BINARY_OP | REG_DEF0_USE01 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700316 "orrs", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700317 ENCODING_MAP(kThumbPop, 0xbc00,
318 kFmtBitBlt, 8, 0, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
319 kFmtUnused, -1, -1,
Bill Buzbee1f748632010-03-02 16:14:41 -0800320 IS_UNARY_OP | REG_DEF_SP | REG_USE_SP | REG_DEF_LIST0
321 | IS_LOAD, "pop", "<!0R>", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700322 ENCODING_MAP(kThumbPush, 0xb400,
323 kFmtBitBlt, 8, 0, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
324 kFmtUnused, -1, -1,
Bill Buzbee1f748632010-03-02 16:14:41 -0800325 IS_UNARY_OP | REG_DEF_SP | REG_USE_SP | REG_USE_LIST0
326 | IS_STORE, "push", "<!0R>", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700327 ENCODING_MAP(kThumbRorRR, 0x41c0,
328 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
329 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700330 IS_BINARY_OP | REG_DEF0_USE01 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700331 "rors", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700332 ENCODING_MAP(kThumbSbc, 0x4180,
333 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
334 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700335 IS_BINARY_OP | REG_DEF0_USE01 | USES_CCODES | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700336 "sbcs", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700337 ENCODING_MAP(kThumbStmia, 0xc000,
338 kFmtBitBlt, 10, 8, kFmtBitBlt, 7, 0, kFmtUnused, -1, -1,
339 kFmtUnused, -1, -1,
Bill Buzbee1f748632010-03-02 16:14:41 -0800340 IS_BINARY_OP | REG_DEF0 | REG_USE0 | REG_USE_LIST1 | IS_STORE,
Bill Buzbee716f1202009-07-23 13:22:09 -0700341 "stmia", "r!0d!!, <!1R>", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700342 ENCODING_MAP(kThumbStrRRI5, 0x6000,
343 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 10, 6,
Bill Buzbee1f748632010-03-02 16:14:41 -0800344 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_USE01 | IS_STORE,
Bill Buzbee716f1202009-07-23 13:22:09 -0700345 "str", "r!0d, [r!1d, #!2E]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700346 ENCODING_MAP(kThumbStrRRR, 0x5000,
347 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 8, 6,
Bill Buzbee1f748632010-03-02 16:14:41 -0800348 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_USE012 | IS_STORE,
Bill Buzbee716f1202009-07-23 13:22:09 -0700349 "str", "r!0d, [r!1d, r!2d]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700350 ENCODING_MAP(kThumbStrSpRel, 0x9000,
351 kFmtBitBlt, 10, 8, kFmtUnused, -1, -1, kFmtBitBlt, 7, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800352 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_USE0 | REG_USE_SP
353 | IS_STORE, "str", "r!0d, [sp, #!2E]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700354 ENCODING_MAP(kThumbStrbRRI5, 0x7000,
355 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 10, 6,
Bill Buzbee1f748632010-03-02 16:14:41 -0800356 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_USE01 | IS_STORE,
Bill Buzbee716f1202009-07-23 13:22:09 -0700357 "strb", "r!0d, [r!1d, #!2d]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700358 ENCODING_MAP(kThumbStrbRRR, 0x5400,
359 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 8, 6,
Bill Buzbee1f748632010-03-02 16:14:41 -0800360 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_USE012 | IS_STORE,
Bill Buzbee716f1202009-07-23 13:22:09 -0700361 "strb", "r!0d, [r!1d, r!2d]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700362 ENCODING_MAP(kThumbStrhRRI5, 0x8000,
363 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 10, 6,
Bill Buzbee1f748632010-03-02 16:14:41 -0800364 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_USE01 | IS_STORE,
Bill Buzbee716f1202009-07-23 13:22:09 -0700365 "strh", "r!0d, [r!1d, #!2F]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700366 ENCODING_MAP(kThumbStrhRRR, 0x5200,
367 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 8, 6,
Bill Buzbee1f748632010-03-02 16:14:41 -0800368 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_USE012 | IS_STORE,
Bill Buzbee716f1202009-07-23 13:22:09 -0700369 "strh", "r!0d, [r!1d, r!2d]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700370 ENCODING_MAP(kThumbSubRRI3, 0x1e00,
371 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 8, 6,
372 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700373 IS_TERTIARY_OP | REG_DEF0_USE1 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700374 "subs", "r!0d, r!1d, #!2d]", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700375 ENCODING_MAP(kThumbSubRI8, 0x3800,
376 kFmtBitBlt, 10, 8, kFmtBitBlt, 7, 0, kFmtUnused, -1, -1,
377 kFmtUnused, -1, -1,
Ben Chengd7d426a2009-09-22 11:23:36 -0700378 IS_BINARY_OP | REG_DEF0_USE0 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700379 "subs", "r!0d, #!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700380 ENCODING_MAP(kThumbSubRRR, 0x1a00,
381 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtBitBlt, 8, 6,
382 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700383 IS_TERTIARY_OP | REG_DEF0_USE12 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700384 "subs", "r!0d, r!1d, r!2d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700385 ENCODING_MAP(kThumbSubSpI7, 0xb080,
386 kFmtBitBlt, 6, 0, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
387 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700388 IS_UNARY_OP | REG_DEF_SP | REG_USE_SP,
Bill Buzbee716f1202009-07-23 13:22:09 -0700389 "sub", "sp, #!0d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700390 ENCODING_MAP(kThumbSwi, 0xdf00,
391 kFmtBitBlt, 7, 0, kFmtUnused, -1, -1, kFmtUnused, -1, -1, kFmtUnused, -1, -1, IS_UNARY_OP | IS_BRANCH,
Bill Buzbee716f1202009-07-23 13:22:09 -0700392 "swi", "!0d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700393 ENCODING_MAP(kThumbTst, 0x4200,
394 kFmtBitBlt, 2, 0, kFmtBitBlt, 5, 3, kFmtUnused, -1, -1,
395 kFmtUnused, -1, -1, IS_UNARY_OP | REG_USE01 | SETS_CCODES,
Bill Buzbee716f1202009-07-23 13:22:09 -0700396 "tst", "r!0d, r!1d", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700397 ENCODING_MAP(kThumb2Vldrs, 0xed900a00,
398 kFmtSfp, 22, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 7, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800399 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1 | IS_LOAD,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700400 "vldr", "!0s, [r!1d, #!2E]", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700401 ENCODING_MAP(kThumb2Vldrd, 0xed900b00,
402 kFmtDfp, 22, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 7, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800403 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1 | IS_LOAD,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700404 "vldr", "!0S, [r!1d, #!2E]", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700405 ENCODING_MAP(kThumb2Vmuls, 0xee200a00,
406 kFmtSfp, 22, 12, kFmtSfp, 7, 16, kFmtSfp, 5, 0,
407 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700408 IS_TERTIARY_OP | REG_DEF0_USE12,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700409 "vmuls", "!0s, !1s, !2s", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700410 ENCODING_MAP(kThumb2Vmuld, 0xee200b00,
411 kFmtDfp, 22, 12, kFmtDfp, 7, 16, kFmtDfp, 5, 0,
412 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700413 "vmuld", "!0S, !1S, !2S", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700414 ENCODING_MAP(kThumb2Vstrs, 0xed800a00,
415 kFmtSfp, 22, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 7, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800416 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_USE01 | IS_STORE,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700417 "vstr", "!0s, [r!1d, #!2E]", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700418 ENCODING_MAP(kThumb2Vstrd, 0xed800b00,
419 kFmtDfp, 22, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 7, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800420 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_USE01 | IS_STORE,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700421 "vstr", "!0S, [r!1d, #!2E]", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700422 ENCODING_MAP(kThumb2Vsubs, 0xee300a40,
423 kFmtSfp, 22, 12, kFmtSfp, 7, 16, kFmtSfp, 5, 0,
424 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700425 "vsub", "!0s, !1s, !2s", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700426 ENCODING_MAP(kThumb2Vsubd, 0xee300b40,
427 kFmtDfp, 22, 12, kFmtDfp, 7, 16, kFmtDfp, 5, 0,
428 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700429 "vsub", "!0S, !1S, !2S", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700430 ENCODING_MAP(kThumb2Vadds, 0xee300a00,
431 kFmtSfp, 22, 12, kFmtSfp, 7, 16, kFmtSfp, 5, 0,
432 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700433 "vadd", "!0s, !1s, !2s", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700434 ENCODING_MAP(kThumb2Vaddd, 0xee300b00,
435 kFmtDfp, 22, 12, kFmtDfp, 7, 16, kFmtDfp, 5, 0,
436 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700437 "vadd", "!0S, !1S, !2S", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700438 ENCODING_MAP(kThumb2Vdivs, 0xee800a00,
439 kFmtSfp, 22, 12, kFmtSfp, 7, 16, kFmtSfp, 5, 0,
440 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700441 "vdivs", "!0s, !1s, !2s", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700442 ENCODING_MAP(kThumb2Vdivd, 0xee800b00,
443 kFmtDfp, 22, 12, kFmtDfp, 7, 16, kFmtDfp, 5, 0,
444 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12,
Bill Buzbee7fb2edd2009-08-31 10:25:55 -0700445 "vdivd", "!0S, !1S, !2S", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700446 ENCODING_MAP(kThumb2VcvtIF, 0xeeb80ac0,
447 kFmtSfp, 22, 12, kFmtSfp, 5, 0, kFmtUnused, -1, -1,
448 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700449 "vcvt.f32", "!0s, !1s", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700450 ENCODING_MAP(kThumb2VcvtID, 0xeeb80bc0,
451 kFmtDfp, 22, 12, kFmtSfp, 5, 0, kFmtUnused, -1, -1,
452 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700453 "vcvt.f64", "!0S, !1s", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700454 ENCODING_MAP(kThumb2VcvtFI, 0xeebd0ac0,
455 kFmtSfp, 22, 12, kFmtSfp, 5, 0, kFmtUnused, -1, -1,
456 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700457 "vcvt.s32.f32 ", "!0s, !1s", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700458 ENCODING_MAP(kThumb2VcvtDI, 0xeebd0bc0,
459 kFmtSfp, 22, 12, kFmtDfp, 5, 0, kFmtUnused, -1, -1,
460 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700461 "vcvt.s32.f64 ", "!0s, !1S", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700462 ENCODING_MAP(kThumb2VcvtFd, 0xeeb70ac0,
463 kFmtDfp, 22, 12, kFmtSfp, 5, 0, kFmtUnused, -1, -1,
464 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700465 "vcvt.f64.f32 ", "!0S, !1s", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700466 ENCODING_MAP(kThumb2VcvtDF, 0xeeb70bc0,
467 kFmtSfp, 22, 12, kFmtDfp, 5, 0, kFmtUnused, -1, -1,
468 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700469 "vcvt.f32.f64 ", "!0s, !1S", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700470 ENCODING_MAP(kThumb2Vsqrts, 0xeeb10ac0,
471 kFmtSfp, 22, 12, kFmtSfp, 5, 0, kFmtUnused, -1, -1,
472 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700473 "vsqrt.f32 ", "!0s, !1s", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700474 ENCODING_MAP(kThumb2Vsqrtd, 0xeeb10bc0,
475 kFmtDfp, 22, 12, kFmtDfp, 5, 0, kFmtUnused, -1, -1,
476 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Bill Buzbee9727c3d2009-08-01 11:32:36 -0700477 "vsqrt.f64 ", "!0S, !1S", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700478 ENCODING_MAP(kThumb2MovImmShift, 0xf04f0000, /* no setflags encoding */
479 kFmtBitBlt, 11, 8, kFmtModImm, -1, -1, kFmtUnused, -1, -1,
480 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0,
Bill Buzbee7ea0f642009-08-10 17:06:51 -0700481 "mov", "r!0d, #!1m", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700482 ENCODING_MAP(kThumb2MovImm16, 0xf2400000,
483 kFmtBitBlt, 11, 8, kFmtImm16, -1, -1, kFmtUnused, -1, -1,
484 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0,
Bill Buzbee7ea0f642009-08-10 17:06:51 -0700485 "mov", "r!0d, #!1M", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700486 ENCODING_MAP(kThumb2StrRRI12, 0xf8c00000,
487 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 11, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800488 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_USE01 | IS_STORE,
Bill Buzbee7ea0f642009-08-10 17:06:51 -0700489 "str", "r!0d,[r!1d, #!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700490 ENCODING_MAP(kThumb2LdrRRI12, 0xf8d00000,
491 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 11, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800492 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1 | IS_LOAD,
Bill Buzbee7ea0f642009-08-10 17:06:51 -0700493 "ldr", "r!0d,[r!1d, #!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700494 ENCODING_MAP(kThumb2StrRRI8Predec, 0xf8400c00,
495 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 8, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800496 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_USE01 | IS_STORE,
Bill Buzbee7ea0f642009-08-10 17:06:51 -0700497 "str", "r!0d,[r!1d, #-!2d]", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700498 ENCODING_MAP(kThumb2LdrRRI8Predec, 0xf8500c00,
499 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 8, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800500 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1 | IS_LOAD,
Bill Buzbee7ea0f642009-08-10 17:06:51 -0700501 "ldr", "r!0d,[r!1d, #-!2d]", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700502 ENCODING_MAP(kThumb2Cbnz, 0xb900, /* Note: does not affect flags */
503 kFmtBitBlt, 2, 0, kFmtImm6, -1, -1, kFmtUnused, -1, -1,
504 kFmtUnused, -1, -1, IS_BINARY_OP | REG_USE0 | IS_BRANCH,
Bill Buzbee7ea0f642009-08-10 17:06:51 -0700505 "cbnz", "r!0d,!1t", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700506 ENCODING_MAP(kThumb2Cbz, 0xb100, /* Note: does not affect flags */
507 kFmtBitBlt, 2, 0, kFmtImm6, -1, -1, kFmtUnused, -1, -1,
508 kFmtUnused, -1, -1, IS_BINARY_OP | REG_USE0 | IS_BRANCH,
Bill Buzbee7ea0f642009-08-10 17:06:51 -0700509 "cbz", "r!0d,!1t", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700510 ENCODING_MAP(kThumb2AddRRI12, 0xf2000000,
511 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtImm12, -1, -1,
512 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700513 IS_TERTIARY_OP | REG_DEF0_USE1,/* Note: doesn't affect flags */
Bill Buzbee7ea0f642009-08-10 17:06:51 -0700514 "add", "r!0d,r!1d,#!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700515 ENCODING_MAP(kThumb2MovRR, 0xea4f0000, /* no setflags encoding */
516 kFmtBitBlt, 11, 8, kFmtBitBlt, 3, 0, kFmtUnused, -1, -1,
517 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Bill Buzbee7ea0f642009-08-10 17:06:51 -0700518 "mov", "r!0d, r!1d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700519 ENCODING_MAP(kThumb2Vmovs, 0xeeb00a40,
520 kFmtSfp, 22, 12, kFmtSfp, 5, 0, kFmtUnused, -1, -1,
521 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Bill Buzbee7fb2edd2009-08-31 10:25:55 -0700522 "vmov.f32 ", " !0s, !1s", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700523 ENCODING_MAP(kThumb2Vmovd, 0xeeb00b40,
524 kFmtDfp, 22, 12, kFmtDfp, 5, 0, kFmtUnused, -1, -1,
525 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Bill Buzbee7fb2edd2009-08-31 10:25:55 -0700526 "vmov.f64 ", " !0S, !1S", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700527 ENCODING_MAP(kThumb2Ldmia, 0xe8900000,
528 kFmtBitBlt, 19, 16, kFmtBitBlt, 15, 0, kFmtUnused, -1, -1,
529 kFmtUnused, -1, -1,
Bill Buzbee1f748632010-03-02 16:14:41 -0800530 IS_BINARY_OP | REG_DEF0_USE0 | REG_DEF_LIST1 | IS_LOAD,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700531 "ldmia", "r!0d!!, <!1R>", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700532 ENCODING_MAP(kThumb2Stmia, 0xe8800000,
533 kFmtBitBlt, 19, 16, kFmtBitBlt, 15, 0, kFmtUnused, -1, -1,
534 kFmtUnused, -1, -1,
Bill Buzbee1f748632010-03-02 16:14:41 -0800535 IS_BINARY_OP | REG_DEF0_USE0 | REG_USE_LIST1 | IS_STORE,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700536 "stmia", "r!0d!!, <!1R>", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700537 ENCODING_MAP(kThumb2AddRRR, 0xeb100000, /* setflags encoding */
538 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
539 kFmtShift, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700540 IS_QUAD_OP | REG_DEF0_USE12 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700541 "adds", "r!0d, r!1d, r!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700542 ENCODING_MAP(kThumb2SubRRR, 0xebb00000, /* setflags enconding */
543 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
544 kFmtShift, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700545 IS_QUAD_OP | REG_DEF0_USE12 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700546 "subs", "r!0d, r!1d, r!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700547 ENCODING_MAP(kThumb2SbcRRR, 0xeb700000, /* setflags encoding */
548 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
549 kFmtShift, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700550 IS_QUAD_OP | REG_DEF0_USE12 | USES_CCODES | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700551 "sbcs", "r!0d, r!1d, r!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700552 ENCODING_MAP(kThumb2CmpRR, 0xebb00f00,
553 kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0, kFmtShift, -1, -1,
554 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700555 IS_TERTIARY_OP | REG_USE01 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700556 "cmp", "r!0d, r!1d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700557 ENCODING_MAP(kThumb2SubRRI12, 0xf2a00000,
558 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtImm12, -1, -1,
559 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700560 IS_TERTIARY_OP | REG_DEF0_USE1,/* Note: doesn't affect flags */
Bill Buzbee270c1d62009-08-13 16:58:07 -0700561 "sub", "r!0d,r!1d,#!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700562 ENCODING_MAP(kThumb2MvnImmShift, 0xf06f0000, /* no setflags encoding */
563 kFmtBitBlt, 11, 8, kFmtModImm, -1, -1, kFmtUnused, -1, -1,
564 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700565 "mvn", "r!0d, #!1n", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700566 ENCODING_MAP(kThumb2Sel, 0xfaa0f080,
567 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
568 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700569 IS_TERTIARY_OP | REG_DEF0_USE12 | USES_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700570 "sel", "r!0d, r!1d, r!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700571 ENCODING_MAP(kThumb2Ubfx, 0xf3c00000,
572 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtLsb, -1, -1,
573 kFmtBWidth, 4, 0, IS_QUAD_OP | REG_DEF0_USE1,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700574 "ubfx", "r!0d, r!1d, #!2d, #!3d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700575 ENCODING_MAP(kThumb2Sbfx, 0xf3400000,
576 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtLsb, -1, -1,
577 kFmtBWidth, 4, 0, IS_QUAD_OP | REG_DEF0_USE1,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700578 "sbfx", "r!0d, r!1d, #!2d, #!3d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700579 ENCODING_MAP(kThumb2LdrRRR, 0xf8500000,
580 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800581 kFmtBitBlt, 5, 4, IS_QUAD_OP | REG_DEF0_USE12 | IS_LOAD,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700582 "ldr", "r!0d,[r!1d, r!2d, LSL #!3d]", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700583 ENCODING_MAP(kThumb2LdrhRRR, 0xf8300000,
584 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800585 kFmtBitBlt, 5, 4, IS_QUAD_OP | REG_DEF0_USE12 | IS_LOAD,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700586 "ldrh", "r!0d,[r!1d, r!2d, LSL #!3d]", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700587 ENCODING_MAP(kThumb2LdrshRRR, 0xf9300000,
588 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800589 kFmtBitBlt, 5, 4, IS_QUAD_OP | REG_DEF0_USE12 | IS_LOAD,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700590 "ldrsh", "r!0d,[r!1d, r!2d, LSL #!3d]", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700591 ENCODING_MAP(kThumb2LdrbRRR, 0xf8100000,
592 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800593 kFmtBitBlt, 5, 4, IS_QUAD_OP | REG_DEF0_USE12 | IS_LOAD,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700594 "ldrb", "r!0d,[r!1d, r!2d, LSL #!3d]", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700595 ENCODING_MAP(kThumb2LdrsbRRR, 0xf9100000,
596 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800597 kFmtBitBlt, 5, 4, IS_QUAD_OP | REG_DEF0_USE12 | IS_LOAD,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700598 "ldrsb", "r!0d,[r!1d, r!2d, LSL #!3d]", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700599 ENCODING_MAP(kThumb2StrRRR, 0xf8400000,
600 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800601 kFmtBitBlt, 5, 4, IS_QUAD_OP | REG_USE012 | IS_STORE,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700602 "str", "r!0d,[r!1d, r!2d, LSL #!3d]", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700603 ENCODING_MAP(kThumb2StrhRRR, 0xf8200000,
604 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800605 kFmtBitBlt, 5, 4, IS_QUAD_OP | REG_USE012 | IS_STORE,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700606 "strh", "r!0d,[r!1d, r!2d, LSL #!3d]", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700607 ENCODING_MAP(kThumb2StrbRRR, 0xf8000000,
608 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800609 kFmtBitBlt, 5, 4, IS_QUAD_OP | REG_USE012 | IS_STORE,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700610 "strb", "r!0d,[r!1d, r!2d, LSL #!3d]", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700611 ENCODING_MAP(kThumb2LdrhRRI12, 0xf8b00000,
612 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 11, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800613 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1 | IS_LOAD,
Bill Buzbee1465db52009-09-23 17:17:35 -0700614 "ldrh", "r!0d,[r!1d, #!2d]", 2),
615 ENCODING_MAP(kThumb2LdrshRRI12, 0xf9b00000,
616 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 11, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800617 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1 | IS_LOAD,
Bill Buzbee1465db52009-09-23 17:17:35 -0700618 "ldrsh", "r!0d,[r!1d, #!2d]", 2),
619 ENCODING_MAP(kThumb2LdrbRRI12, 0xf8900000,
620 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 11, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800621 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1 | IS_LOAD,
Bill Buzbee1465db52009-09-23 17:17:35 -0700622 "ldrb", "r!0d,[r!1d, #!2d]", 2),
623 ENCODING_MAP(kThumb2LdrsbRRI12, 0xf9900000,
624 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 11, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800625 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1 | IS_LOAD,
Bill Buzbee1465db52009-09-23 17:17:35 -0700626 "ldrsb", "r!0d,[r!1d, #!2d]", 2),
627 ENCODING_MAP(kThumb2StrhRRI12, 0xf8a00000,
628 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 11, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800629 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_USE01 | IS_STORE,
Bill Buzbee1465db52009-09-23 17:17:35 -0700630 "strh", "r!0d,[r!1d, #!2d]", 2),
631 ENCODING_MAP(kThumb2StrbRRI12, 0xf8800000,
632 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 11, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800633 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_USE01 | IS_STORE,
Bill Buzbee1465db52009-09-23 17:17:35 -0700634 "strb", "r!0d,[r!1d, #!2d]", 2),
635 ENCODING_MAP(kThumb2Pop, 0xe8bd0000,
636 kFmtBitBlt, 15, 0, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
637 kFmtUnused, -1, -1,
Bill Buzbee1f748632010-03-02 16:14:41 -0800638 IS_UNARY_OP | REG_DEF_SP | REG_USE_SP | REG_DEF_LIST0
639 | IS_LOAD, "pop", "<!0R>", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700640 ENCODING_MAP(kThumb2Push, 0xe8ad0000,
641 kFmtBitBlt, 15, 0, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
642 kFmtUnused, -1, -1,
Bill Buzbee1f748632010-03-02 16:14:41 -0800643 IS_UNARY_OP | REG_DEF_SP | REG_USE_SP | REG_USE_LIST0
644 | IS_STORE, "push", "<!0R>", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700645 ENCODING_MAP(kThumb2CmpRI8, 0xf1b00f00,
646 kFmtBitBlt, 19, 16, kFmtModImm, -1, -1, kFmtUnused, -1, -1,
647 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700648 IS_BINARY_OP | REG_USE0 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700649 "cmp", "r!0d, #!1m", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700650 ENCODING_MAP(kThumb2AdcRRR, 0xeb500000, /* setflags encoding */
651 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
652 kFmtShift, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700653 IS_QUAD_OP | REG_DEF0_USE12 | SETS_CCODES,
Elliott Hughesee34f592010-04-05 18:13:52 -0700654 "adcs", "r!0d, r!1d, r!2d, shift !3d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700655 ENCODING_MAP(kThumb2AndRRR, 0xea000000,
656 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
657 kFmtShift, -1, -1, IS_QUAD_OP | REG_DEF0_USE12,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700658 "and", "r!0d, r!1d, r!2d, shift !3d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700659 ENCODING_MAP(kThumb2BicRRR, 0xea200000,
660 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
661 kFmtShift, -1, -1, IS_QUAD_OP | REG_DEF0_USE12,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700662 "bic", "r!0d, r!1d, r!2d, shift !3d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700663 ENCODING_MAP(kThumb2CmnRR, 0xeb000000,
664 kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0, kFmtShift, -1, -1,
665 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700666 IS_TERTIARY_OP | REG_DEF0_USE1 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700667 "cmn", "r!0d, r!1d, shift !2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700668 ENCODING_MAP(kThumb2EorRRR, 0xea800000,
669 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
670 kFmtShift, -1, -1, IS_QUAD_OP | REG_DEF0_USE12,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700671 "eor", "r!0d, r!1d, r!2d, shift !3d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700672 ENCODING_MAP(kThumb2MulRRR, 0xfb00f000,
673 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
674 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700675 "mul", "r!0d, r!1d, r!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700676 ENCODING_MAP(kThumb2MnvRR, 0xea6f0000,
677 kFmtBitBlt, 11, 8, kFmtBitBlt, 3, 0, kFmtShift, -1, -1,
678 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700679 "mvn", "r!0d, r!1d, shift !2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700680 ENCODING_MAP(kThumb2RsubRRI8, 0xf1d00000,
681 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtModImm, -1, -1,
682 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700683 IS_TERTIARY_OP | REG_DEF0_USE1 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700684 "rsb", "r!0d,r!1d,#!2m", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700685 ENCODING_MAP(kThumb2NegRR, 0xf1d00000, /* instance of rsub */
686 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtUnused, -1, -1,
687 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700688 IS_BINARY_OP | REG_DEF0_USE1 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700689 "neg", "r!0d,r!1d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700690 ENCODING_MAP(kThumb2OrrRRR, 0xea400000,
691 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
692 kFmtShift, -1, -1, IS_QUAD_OP | REG_DEF0_USE12,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700693 "orr", "r!0d, r!1d, r!2d, shift !3d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700694 ENCODING_MAP(kThumb2TstRR, 0xea100f00,
695 kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0, kFmtShift, -1, -1,
696 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700697 IS_TERTIARY_OP | REG_USE01 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700698 "tst", "r!0d, r!1d, shift !2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700699 ENCODING_MAP(kThumb2LslRRR, 0xfa00f000,
700 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
701 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700702 "lsl", "r!0d, r!1d, r!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700703 ENCODING_MAP(kThumb2LsrRRR, 0xfa20f000,
704 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
705 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700706 "lsr", "r!0d, r!1d, r!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700707 ENCODING_MAP(kThumb2AsrRRR, 0xfa40f000,
708 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
709 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700710 "asr", "r!0d, r!1d, r!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700711 ENCODING_MAP(kThumb2RorRRR, 0xfa60f000,
712 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
713 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700714 "ror", "r!0d, r!1d, r!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700715 ENCODING_MAP(kThumb2LslRRI5, 0xea4f0000,
716 kFmtBitBlt, 11, 8, kFmtBitBlt, 3, 0, kFmtShift5, -1, -1,
717 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700718 "lsl", "r!0d, r!1d, #!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700719 ENCODING_MAP(kThumb2LsrRRI5, 0xea4f0010,
720 kFmtBitBlt, 11, 8, kFmtBitBlt, 3, 0, kFmtShift5, -1, -1,
721 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700722 "lsr", "r!0d, r!1d, #!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700723 ENCODING_MAP(kThumb2AsrRRI5, 0xea4f0020,
724 kFmtBitBlt, 11, 8, kFmtBitBlt, 3, 0, kFmtShift5, -1, -1,
725 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700726 "asr", "r!0d, r!1d, #!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700727 ENCODING_MAP(kThumb2RorRRI5, 0xea4f0030,
728 kFmtBitBlt, 11, 8, kFmtBitBlt, 3, 0, kFmtShift5, -1, -1,
729 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700730 "ror", "r!0d, r!1d, #!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700731 ENCODING_MAP(kThumb2BicRRI8, 0xf0200000,
732 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtModImm, -1, -1,
733 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700734 "bic", "r!0d, r!1d, #!2m", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700735 ENCODING_MAP(kThumb2AndRRI8, 0xf0000000,
736 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtModImm, -1, -1,
737 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700738 "and", "r!0d, r!1d, #!2m", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700739 ENCODING_MAP(kThumb2OrrRRI8, 0xf0400000,
740 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtModImm, -1, -1,
741 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700742 "orr", "r!0d, r!1d, #!2m", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700743 ENCODING_MAP(kThumb2EorRRI8, 0xf0800000,
744 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtModImm, -1, -1,
745 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700746 "eor", "r!0d, r!1d, #!2m", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700747 ENCODING_MAP(kThumb2AddRRI8, 0xf1100000,
748 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtModImm, -1, -1,
749 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700750 IS_TERTIARY_OP | REG_DEF0_USE1 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700751 "adds", "r!0d, r!1d, #!2m", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700752 ENCODING_MAP(kThumb2AdcRRI8, 0xf1500000,
753 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtModImm, -1, -1,
754 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700755 IS_TERTIARY_OP | REG_DEF0_USE1 | SETS_CCODES | USES_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700756 "adcs", "r!0d, r!1d, #!2m", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700757 ENCODING_MAP(kThumb2SubRRI8, 0xf1b00000,
758 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtModImm, -1, -1,
759 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700760 IS_TERTIARY_OP | REG_DEF0_USE1 | SETS_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700761 "subs", "r!0d, r!1d, #!2m", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700762 ENCODING_MAP(kThumb2SbcRRI8, 0xf1700000,
763 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtModImm, -1, -1,
764 kFmtUnused, -1, -1,
Ben Chengdcf3e5d2009-09-11 13:42:05 -0700765 IS_TERTIARY_OP | REG_DEF0_USE1 | SETS_CCODES | USES_CCODES,
Bill Buzbee270c1d62009-08-13 16:58:07 -0700766 "sbcs", "r!0d, r!1d, #!2m", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700767 ENCODING_MAP(kThumb2It, 0xbf00,
768 kFmtBitBlt, 7, 4, kFmtBitBlt, 3, 0, kFmtModImm, -1, -1,
769 kFmtUnused, -1, -1, IS_BINARY_OP | IS_IT | USES_CCODES,
Bill Buzbeea4a7f072009-08-27 13:58:09 -0700770 "it:!1b", "!0c", 1),
Bill Buzbee1465db52009-09-23 17:17:35 -0700771 ENCODING_MAP(kThumb2Fmstat, 0xeef1fa10,
772 kFmtUnused, -1, -1, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
773 kFmtUnused, -1, -1, NO_OPERAND | SETS_CCODES,
Bill Buzbeea4a7f072009-08-27 13:58:09 -0700774 "fmstat", "", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700775 ENCODING_MAP(kThumb2Vcmpd, 0xeeb40b40,
776 kFmtDfp, 22, 12, kFmtDfp, 5, 0, kFmtUnused, -1, -1,
777 kFmtUnused, -1, -1, IS_BINARY_OP | REG_USE01,
Bill Buzbee7fb2edd2009-08-31 10:25:55 -0700778 "vcmp.f64", "!0S, !1S", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700779 ENCODING_MAP(kThumb2Vcmps, 0xeeb40a40,
780 kFmtSfp, 22, 12, kFmtSfp, 5, 0, kFmtUnused, -1, -1,
781 kFmtUnused, -1, -1, IS_BINARY_OP | REG_USE01,
Bill Buzbee7fb2edd2009-08-31 10:25:55 -0700782 "vcmp.f32", "!0s, !1s", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700783 ENCODING_MAP(kThumb2LdrPcRel12, 0xf8df0000,
784 kFmtBitBlt, 15, 12, kFmtBitBlt, 11, 0, kFmtUnused, -1, -1,
785 kFmtUnused, -1, -1,
Bill Buzbee1f748632010-03-02 16:14:41 -0800786 IS_TERTIARY_OP | REG_DEF0 | REG_USE_PC | IS_LOAD,
Bill Buzbee1465db52009-09-23 17:17:35 -0700787 "ldr", "r!0d,[rpc, #!1d]", 2),
788 ENCODING_MAP(kThumb2BCond, 0xf0008000,
789 kFmtBrOffset, -1, -1, kFmtBitBlt, 25, 22, kFmtUnused, -1, -1,
790 kFmtUnused, -1, -1,
Bill Buzbeea4a7f072009-08-27 13:58:09 -0700791 IS_BINARY_OP | IS_BRANCH | USES_CCODES,
792 "b!1c", "!0t", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700793 ENCODING_MAP(kThumb2Vmovd_RR, 0xeeb00b40,
794 kFmtDfp, 22, 12, kFmtDfp, 5, 0, kFmtUnused, -1, -1,
795 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Bill Buzbee7fb2edd2009-08-31 10:25:55 -0700796 "vmov.f64", "!0S, !1S", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700797 ENCODING_MAP(kThumb2Vmovs_RR, 0xeeb00a40,
798 kFmtSfp, 22, 12, kFmtSfp, 5, 0, kFmtUnused, -1, -1,
799 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
800 "vmov.f32", "!0s, !1s", 2),
801 ENCODING_MAP(kThumb2Fmrs, 0xee100a10,
802 kFmtBitBlt, 15, 12, kFmtSfp, 7, 16, kFmtUnused, -1, -1,
803 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Bill Buzbee7fb2edd2009-08-31 10:25:55 -0700804 "fmrs", "r!0d, !1s", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700805 ENCODING_MAP(kThumb2Fmsr, 0xee000a10,
806 kFmtSfp, 7, 16, kFmtBitBlt, 15, 12, kFmtUnused, -1, -1,
807 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
Bill Buzbee7fb2edd2009-08-31 10:25:55 -0700808 "fmsr", "!0s, r!1d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700809 ENCODING_MAP(kThumb2Fmrrd, 0xec500b10,
810 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtDfp, 5, 0,
811 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF01_USE2,
Bill Buzbee7fb2edd2009-08-31 10:25:55 -0700812 "fmrrd", "r!0d, r!1d, !2S", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700813 ENCODING_MAP(kThumb2Fmdrr, 0xec400b10,
814 kFmtDfp, 5, 0, kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16,
815 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE12,
Bill Buzbee7fb2edd2009-08-31 10:25:55 -0700816 "fmdrr", "!0S, r!1d, r!2d", 2),
Bill Buzbee1465db52009-09-23 17:17:35 -0700817 ENCODING_MAP(kThumb2Vabsd, 0xeeb00bc0,
818 kFmtDfp, 22, 12, kFmtDfp, 5, 0, kFmtUnused, -1, -1,
819 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
820 "vabs.f64", "!0S, !1S", 2),
821 ENCODING_MAP(kThumb2Vabss, 0xeeb00ac0,
822 kFmtSfp, 22, 12, kFmtSfp, 5, 0, kFmtUnused, -1, -1,
823 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
824 "vabs.f32", "!0s, !1s", 2),
825 ENCODING_MAP(kThumb2Vnegd, 0xeeb10b40,
826 kFmtDfp, 22, 12, kFmtDfp, 5, 0, kFmtUnused, -1, -1,
827 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
828 "vneg.f64", "!0S, !1S", 2),
829 ENCODING_MAP(kThumb2Vnegs, 0xeeb10a40,
830 kFmtSfp, 22, 12, kFmtSfp, 5, 0, kFmtUnused, -1, -1,
831 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0_USE1,
832 "vneg.f32", "!0s, !1s", 2),
833 ENCODING_MAP(kThumb2Vmovs_IMM8, 0xeeb00a00,
834 kFmtSfp, 22, 12, kFmtFPImm, 16, 0, kFmtUnused, -1, -1,
835 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0,
836 "vmov.f32", "!0s, #0x!1h", 2),
837 ENCODING_MAP(kThumb2Vmovd_IMM8, 0xeeb00b00,
838 kFmtDfp, 22, 12, kFmtFPImm, 16, 0, kFmtUnused, -1, -1,
839 kFmtUnused, -1, -1, IS_BINARY_OP | REG_DEF0,
840 "vmov.f64", "!0S, #0x!1h", 2),
841 ENCODING_MAP(kThumb2Mla, 0xfb000000,
842 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtBitBlt, 3, 0,
843 kFmtBitBlt, 15, 12,
844 IS_QUAD_OP | REG_DEF0 | REG_USE1 | REG_USE2 | REG_USE3,
845 "mla", "r!0d, r!1d, r!2d, r!3d", 2),
846 ENCODING_MAP(kThumb2Umull, 0xfba00000,
847 kFmtBitBlt, 15, 12, kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16,
848 kFmtBitBlt, 3, 0,
849 IS_QUAD_OP | REG_DEF0 | REG_DEF1 | REG_USE2 | REG_USE3,
850 "umull", "r!0d, r!1d, r!2d, r!3d", 2),
851 ENCODING_MAP(kThumb2Ldrex, 0xe8500f00,
852 kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16, kFmtBitBlt, 7, 0,
Bill Buzbee1f748632010-03-02 16:14:41 -0800853 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0_USE1 | IS_LOAD,
Bill Buzbee1465db52009-09-23 17:17:35 -0700854 "ldrex", "r!0d,[r!1d, #!2E]", 2),
855 ENCODING_MAP(kThumb2Strex, 0xe8400000,
856 kFmtBitBlt, 11, 8, kFmtBitBlt, 15, 12, kFmtBitBlt, 19, 16,
Bill Buzbee1f748632010-03-02 16:14:41 -0800857 kFmtBitBlt, 7, 0, IS_QUAD_OP | REG_DEF0_USE12 | IS_STORE,
Bill Buzbee1465db52009-09-23 17:17:35 -0700858 "strex", "r!0d,r!1d, [r!2d, #!2E]", 2),
859 ENCODING_MAP(kThumb2Clrex, 0xf3bf8f2f,
860 kFmtUnused, -1, -1, kFmtUnused, -1, -1, kFmtUnused, -1, -1,
Bill Buzbee1f748632010-03-02 16:14:41 -0800861 kFmtUnused, -1, -1, NO_OPERAND,
862 "clrex", "", 2),
Bill Buzbeed0937ef2009-12-22 16:15:39 -0800863 ENCODING_MAP(kThumb2Bfi, 0xf3600000,
864 kFmtBitBlt, 11, 8, kFmtBitBlt, 19, 16, kFmtShift5, -1, -1,
865 kFmtBitBlt, 4, 0, IS_QUAD_OP | REG_DEF0_USE1,
866 "bfi", "r!0d,r!1d,#!2d,#!3d", 2),
867 ENCODING_MAP(kThumb2Bfc, 0xf36f0000,
868 kFmtBitBlt, 11, 8, kFmtShift5, -1, -1, kFmtBitBlt, 4, 0,
869 kFmtUnused, -1, -1, IS_TERTIARY_OP | REG_DEF0,
870 "bfc", "r!0d,#!1d,#!2d", 2),
Ben Chengba4fc8b2009-06-01 13:00:29 -0700871};
872
Ben Cheng6d576092009-09-01 17:01:58 -0700873/*
874 * The fake NOP of moving r0 to r0 actually will incur data stalls if r0 is
875 * not ready. Since r5 (rFP) is not updated often, it is less likely to
876 * generate unnecessary stall cycles.
877 */
878#define PADDING_MOV_R5_R5 0x1C2D
Ben Chengba4fc8b2009-06-01 13:00:29 -0700879
Ben Cheng978738d2010-05-13 13:45:57 -0700880/* Track the number of times that the code cache is patched */
881#if defined(WITH_JIT_TUNING)
882#define UPDATE_CODE_CACHE_PATCHES() (gDvmJit.codeCachePatches++)
883#else
884#define UPDATE_CODE_CACHE_PATCHES()
885#endif
886
Ben Chengba4fc8b2009-06-01 13:00:29 -0700887/* Write the numbers in the literal pool to the codegen stream */
Bill Buzbee46cd5b62009-06-05 15:36:06 -0700888static void installDataContent(CompilationUnit *cUnit)
Ben Chengba4fc8b2009-06-01 13:00:29 -0700889{
Ben Chenge80cd942009-07-17 15:54:23 -0700890 int *dataPtr = (int *) ((char *) cUnit->baseAddr + cUnit->dataOffset);
Bill Buzbee89efc3d2009-07-28 11:22:22 -0700891 ArmLIR *dataLIR = (ArmLIR *) cUnit->wordList;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700892 while (dataLIR) {
893 *dataPtr++ = dataLIR->operands[0];
894 dataLIR = NEXT_LIR(dataLIR);
895 }
896}
897
Bill Buzbee46cd5b62009-06-05 15:36:06 -0700898/* Returns the size of a Jit trace description */
899static int jitTraceDescriptionSize(const JitTraceDescription *desc)
900{
901 int runCount;
902 for (runCount = 0; ; runCount++) {
903 if (desc->trace[runCount].frag.runEnd)
904 break;
905 }
906 return sizeof(JitCodeDesc) + ((runCount+1) * sizeof(JitTraceRun));
907}
908
Ben Chengba4fc8b2009-06-01 13:00:29 -0700909/* Return TRUE if error happens */
910static bool assembleInstructions(CompilationUnit *cUnit, intptr_t startAddr)
911{
912 short *bufferAddr = (short *) cUnit->codeBuffer;
Bill Buzbee89efc3d2009-07-28 11:22:22 -0700913 ArmLIR *lir;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700914
Bill Buzbee89efc3d2009-07-28 11:22:22 -0700915 for (lir = (ArmLIR *) cUnit->firstLIRInsn; lir; lir = NEXT_LIR(lir)) {
Ben Chengba4fc8b2009-06-01 13:00:29 -0700916 if (lir->opCode < 0) {
Bill Buzbee1465db52009-09-23 17:17:35 -0700917 if ((lir->opCode == kArmPseudoPseudoAlign4) &&
Ben Cheng1efc9c52009-06-08 18:25:27 -0700918 /* 1 means padding is needed */
919 (lir->operands[0] == 1)) {
Ben Cheng6d576092009-09-01 17:01:58 -0700920 *bufferAddr++ = PADDING_MOV_R5_R5;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700921 }
922 continue;
923 }
924
Ben Chenge9695e52009-06-16 16:11:47 -0700925 if (lir->isNop) {
926 continue;
927 }
928
Bill Buzbee1465db52009-09-23 17:17:35 -0700929 if (lir->opCode == kThumbLdrPcRel ||
930 lir->opCode == kThumb2LdrPcRel12 ||
931 lir->opCode == kThumbAddPcRel ||
932 ((lir->opCode == kThumb2Vldrs) && (lir->operands[1] == rpc))) {
Bill Buzbee89efc3d2009-07-28 11:22:22 -0700933 ArmLIR *lirTarget = (ArmLIR *) lir->generic.target;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700934 intptr_t pc = (lir->generic.offset + 4) & ~3;
Ben Cheng38329f52009-07-07 14:19:20 -0700935 /*
936 * Allow an offset (stored in operands[2] to be added to the
937 * PC-relative target. Useful to get to a fixed field inside a
938 * chaining cell.
939 */
940 intptr_t target = lirTarget->generic.offset + lir->operands[2];
Ben Chengba4fc8b2009-06-01 13:00:29 -0700941 int delta = target - pc;
942 if (delta & 0x3) {
943 LOGE("PC-rel distance is not multiples of 4: %d\n", delta);
Bill Buzbeefc519dc2010-03-06 23:30:57 -0800944 dvmCompilerAbort(cUnit);
Ben Chengba4fc8b2009-06-01 13:00:29 -0700945 }
Bill Buzbee1465db52009-09-23 17:17:35 -0700946 if ((lir->opCode == kThumb2LdrPcRel12) && (delta > 4091)) {
Bill Buzbeea4a7f072009-08-27 13:58:09 -0700947 return true;
948 } else if (delta > 1020) {
Ben Cheng1efc9c52009-06-08 18:25:27 -0700949 return true;
950 }
Bill Buzbee1465db52009-09-23 17:17:35 -0700951 if (lir->opCode == kThumb2Vldrs) {
952 lir->operands[2] = delta >> 2;
953 } else {
954 lir->operands[1] = (lir->opCode == kThumb2LdrPcRel12) ?
955 delta : delta >> 2;
956 }
957 } else if (lir->opCode == kThumb2Cbnz || lir->opCode == kThumb2Cbz) {
Bill Buzbee7ea0f642009-08-10 17:06:51 -0700958 ArmLIR *targetLIR = (ArmLIR *) lir->generic.target;
959 intptr_t pc = lir->generic.offset + 4;
960 intptr_t target = targetLIR->generic.offset;
961 int delta = target - pc;
962 if (delta > 126 || delta < 0) {
Bill Buzbeea4a7f072009-08-27 13:58:09 -0700963 /*
Bill Buzbee7fb2edd2009-08-31 10:25:55 -0700964 * TODO: allow multiple kinds of assembler failure to allow
965 * change of code patterns when things don't fit.
Bill Buzbeea4a7f072009-08-27 13:58:09 -0700966 */
Bill Buzbee7ea0f642009-08-10 17:06:51 -0700967 return true;
Bill Buzbeea4a7f072009-08-27 13:58:09 -0700968 } else {
969 lir->operands[1] = delta >> 1;
Bill Buzbee7ea0f642009-08-10 17:06:51 -0700970 }
Bill Buzbee1465db52009-09-23 17:17:35 -0700971 } else if (lir->opCode == kThumbBCond ||
972 lir->opCode == kThumb2BCond) {
Bill Buzbee89efc3d2009-07-28 11:22:22 -0700973 ArmLIR *targetLIR = (ArmLIR *) lir->generic.target;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700974 intptr_t pc = lir->generic.offset + 4;
975 intptr_t target = targetLIR->generic.offset;
976 int delta = target - pc;
Bill Buzbee1465db52009-09-23 17:17:35 -0700977 if ((lir->opCode == kThumbBCond) && (delta > 254 || delta < -256)) {
Ben Cheng1efc9c52009-06-08 18:25:27 -0700978 return true;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700979 }
980 lir->operands[0] = delta >> 1;
Bill Buzbee1465db52009-09-23 17:17:35 -0700981 } else if (lir->opCode == kThumbBUncond) {
Bill Buzbee89efc3d2009-07-28 11:22:22 -0700982 ArmLIR *targetLIR = (ArmLIR *) lir->generic.target;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700983 intptr_t pc = lir->generic.offset + 4;
984 intptr_t target = targetLIR->generic.offset;
985 int delta = target - pc;
986 if (delta > 2046 || delta < -2048) {
987 LOGE("Unconditional branch distance out of range: %d\n", delta);
Bill Buzbeefc519dc2010-03-06 23:30:57 -0800988 dvmCompilerAbort(cUnit);
Ben Chengba4fc8b2009-06-01 13:00:29 -0700989 }
990 lir->operands[0] = delta >> 1;
Bill Buzbee1465db52009-09-23 17:17:35 -0700991 } else if (lir->opCode == kThumbBlx1) {
992 assert(NEXT_LIR(lir)->opCode == kThumbBlx2);
Ben Chengba4fc8b2009-06-01 13:00:29 -0700993 /* curPC is Thumb */
994 intptr_t curPC = (startAddr + lir->generic.offset + 4) & ~3;
995 intptr_t target = lir->operands[1];
996
997 /* Match bit[1] in target with base */
998 if (curPC & 0x2) {
999 target |= 0x2;
1000 }
1001 int delta = target - curPC;
1002 assert((delta >= -(1<<22)) && (delta <= ((1<<22)-2)));
1003
1004 lir->operands[0] = (delta >> 12) & 0x7ff;
1005 NEXT_LIR(lir)->operands[0] = (delta>> 1) & 0x7ff;
1006 }
1007
Bill Buzbee89efc3d2009-07-28 11:22:22 -07001008 ArmEncodingMap *encoder = &EncodingMap[lir->opCode];
Bill Buzbee9bc3df32009-07-30 10:52:29 -07001009 u4 bits = encoder->skeleton;
Ben Chengba4fc8b2009-06-01 13:00:29 -07001010 int i;
Bill Buzbee270c1d62009-08-13 16:58:07 -07001011 for (i = 0; i < 4; i++) {
Bill Buzbeea4a7f072009-08-27 13:58:09 -07001012 u4 operand;
Bill Buzbee9bc3df32009-07-30 10:52:29 -07001013 u4 value;
Bill Buzbeea4a7f072009-08-27 13:58:09 -07001014 operand = lir->operands[i];
Bill Buzbee9bc3df32009-07-30 10:52:29 -07001015 switch(encoder->fieldLoc[i].kind) {
Bill Buzbee1465db52009-09-23 17:17:35 -07001016 case kFmtUnused:
Bill Buzbee9bc3df32009-07-30 10:52:29 -07001017 break;
Bill Buzbee1465db52009-09-23 17:17:35 -07001018 case kFmtFPImm:
1019 value = ((operand & 0xF0) >> 4) << encoder->fieldLoc[i].end;
1020 value |= (operand & 0x0F) << encoder->fieldLoc[i].start;
1021 bits |= value;
Bill Buzbeea4a7f072009-08-27 13:58:09 -07001022 break;
Bill Buzbee1465db52009-09-23 17:17:35 -07001023 case kFmtBrOffset:
1024 /*
1025 * NOTE: branch offsets are not handled here, but
1026 * in the main assembly loop (where label values
1027 * are known). For reference, here is what the
1028 * encoder handing would be:
1029 value = ((operand & 0x80000) >> 19) << 26;
1030 value |= ((operand & 0x40000) >> 18) << 11;
1031 value |= ((operand & 0x20000) >> 17) << 13;
1032 value |= ((operand & 0x1f800) >> 11) << 16;
1033 value |= (operand & 0x007ff);
1034 bits |= value;
1035 */
1036 break;
1037 case kFmtShift5:
Bill Buzbeea4a7f072009-08-27 13:58:09 -07001038 value = ((operand & 0x1c) >> 2) << 12;
1039 value |= (operand & 0x03) << 6;
Bill Buzbee270c1d62009-08-13 16:58:07 -07001040 bits |= value;
1041 break;
Bill Buzbee1465db52009-09-23 17:17:35 -07001042 case kFmtShift:
Bill Buzbeea4a7f072009-08-27 13:58:09 -07001043 value = ((operand & 0x70) >> 4) << 12;
1044 value |= (operand & 0x0f) << 4;
Bill Buzbee270c1d62009-08-13 16:58:07 -07001045 bits |= value;
1046 break;
Bill Buzbee1465db52009-09-23 17:17:35 -07001047 case kFmtBWidth:
Bill Buzbeea4a7f072009-08-27 13:58:09 -07001048 value = operand - 1;
Bill Buzbee270c1d62009-08-13 16:58:07 -07001049 bits |= value;
1050 break;
Bill Buzbee1465db52009-09-23 17:17:35 -07001051 case kFmtLsb:
Bill Buzbeea4a7f072009-08-27 13:58:09 -07001052 value = ((operand & 0x1c) >> 2) << 12;
1053 value |= (operand & 0x03) << 6;
Bill Buzbee270c1d62009-08-13 16:58:07 -07001054 bits |= value;
1055 break;
Bill Buzbee1465db52009-09-23 17:17:35 -07001056 case kFmtImm6:
Bill Buzbeea4a7f072009-08-27 13:58:09 -07001057 value = ((operand & 0x20) >> 5) << 9;
1058 value |= (operand & 0x1f) << 3;
Bill Buzbee7ea0f642009-08-10 17:06:51 -07001059 bits |= value;
1060 break;
Bill Buzbee1465db52009-09-23 17:17:35 -07001061 case kFmtBitBlt:
Bill Buzbeea4a7f072009-08-27 13:58:09 -07001062 value = (operand << encoder->fieldLoc[i].start) &
Bill Buzbee9bc3df32009-07-30 10:52:29 -07001063 ((1 << (encoder->fieldLoc[i].end + 1)) - 1);
1064 bits |= value;
1065 break;
Bill Buzbee1465db52009-09-23 17:17:35 -07001066 case kFmtDfp: {
1067 assert(DOUBLEREG(operand));
1068 assert((operand & 0x1) == 0);
Ben Cheng30f1f462009-10-12 13:46:55 -07001069 int regName = (operand & FP_REG_MASK) >> 1;
Bill Buzbee9bc3df32009-07-30 10:52:29 -07001070 /* Snag the 1-bit slice and position it */
Ben Cheng30f1f462009-10-12 13:46:55 -07001071 value = ((regName & 0x10) >> 4) <<
Bill Buzbee9bc3df32009-07-30 10:52:29 -07001072 encoder->fieldLoc[i].end;
1073 /* Extract and position the 4-bit slice */
Ben Cheng30f1f462009-10-12 13:46:55 -07001074 value |= (regName & 0x0f) <<
Bill Buzbee9bc3df32009-07-30 10:52:29 -07001075 encoder->fieldLoc[i].start;
1076 bits |= value;
1077 break;
Ben Cheng30f1f462009-10-12 13:46:55 -07001078 }
Bill Buzbee1465db52009-09-23 17:17:35 -07001079 case kFmtSfp:
1080 assert(SINGLEREG(operand));
Bill Buzbee9bc3df32009-07-30 10:52:29 -07001081 /* Snag the 1-bit slice and position it */
Bill Buzbeea4a7f072009-08-27 13:58:09 -07001082 value = (operand & 0x1) <<
Bill Buzbee9bc3df32009-07-30 10:52:29 -07001083 encoder->fieldLoc[i].end;
1084 /* Extract and position the 4-bit slice */
Bill Buzbeea4a7f072009-08-27 13:58:09 -07001085 value |= ((operand & 0x1e) >> 1) <<
Bill Buzbee9bc3df32009-07-30 10:52:29 -07001086 encoder->fieldLoc[i].start;
1087 bits |= value;
1088 break;
Bill Buzbee1465db52009-09-23 17:17:35 -07001089 case kFmtImm12:
1090 case kFmtModImm:
Bill Buzbeea4a7f072009-08-27 13:58:09 -07001091 value = ((operand & 0x800) >> 11) << 26;
1092 value |= ((operand & 0x700) >> 8) << 12;
1093 value |= operand & 0x0ff;
Bill Buzbee7ea0f642009-08-10 17:06:51 -07001094 bits |= value;
1095 break;
Bill Buzbee1465db52009-09-23 17:17:35 -07001096 case kFmtImm16:
Bill Buzbeea4a7f072009-08-27 13:58:09 -07001097 value = ((operand & 0x0800) >> 11) << 26;
1098 value |= ((operand & 0xf000) >> 12) << 16;
1099 value |= ((operand & 0x0700) >> 8) << 12;
1100 value |= operand & 0x0ff;
Bill Buzbee7ea0f642009-08-10 17:06:51 -07001101 bits |= value;
Bill Buzbee9bc3df32009-07-30 10:52:29 -07001102 break;
1103 default:
1104 assert(0);
Ben Chengba4fc8b2009-06-01 13:00:29 -07001105 }
1106 }
Bill Buzbee9bc3df32009-07-30 10:52:29 -07001107 if (encoder->size == 2) {
1108 *bufferAddr++ = (bits >> 16) & 0xffff;
1109 }
1110 *bufferAddr++ = bits & 0xffff;
Ben Chengba4fc8b2009-06-01 13:00:29 -07001111 }
Ben Cheng1efc9c52009-06-08 18:25:27 -07001112 return false;
Ben Chengba4fc8b2009-06-01 13:00:29 -07001113}
1114
Ben Cheng9fa39c92010-03-16 16:20:48 -07001115#if defined(SIGNATURE_BREAKPOINT)
Ben Chengdca71432010-03-16 16:04:11 -07001116/* Inspect the assembled instruction stream to find potential matches */
1117static void matchSignatureBreakpoint(const CompilationUnit *cUnit,
1118 unsigned int size)
1119{
1120 unsigned int i, j;
1121 u4 *ptr = (u4 *) cUnit->codeBuffer;
1122
1123 for (i = 0; i < size - gDvmJit.signatureBreakpointSize + 1; i++) {
1124 if (ptr[i] == gDvmJit.signatureBreakpoint[0]) {
1125 for (j = 1; j < gDvmJit.signatureBreakpointSize; j++) {
1126 if (ptr[i+j] != gDvmJit.signatureBreakpoint[j]) {
1127 break;
1128 }
1129 }
1130 if (j == gDvmJit.signatureBreakpointSize) {
1131 LOGD("Signature match starting from offset %#x (%d words)",
1132 i*4, gDvmJit.signatureBreakpointSize);
1133 int descSize = jitTraceDescriptionSize(cUnit->traceDesc);
1134 JitTraceDescription *newCopy =
1135 (JitTraceDescription *) malloc(descSize);
1136 memcpy(newCopy, cUnit->traceDesc, descSize);
1137 dvmCompilerWorkEnqueue(NULL, kWorkOrderTraceDebug, newCopy);
1138 break;
1139 }
1140 }
1141 }
1142}
Ben Cheng9fa39c92010-03-16 16:20:48 -07001143#endif
Ben Chengdca71432010-03-16 16:04:11 -07001144
Ben Chengba4fc8b2009-06-01 13:00:29 -07001145/*
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001146 * Translation layout in the code cache. Note that the codeAddress pointer
1147 * in JitTable will point directly to the code body (field codeAddress). The
1148 * chain cell offset codeAddress - 2, and (if present) executionCount is at
1149 * codeAddress - 6.
1150 *
1151 * +----------------------------+
1152 * | Execution count | -> [Optional] 4 bytes
1153 * +----------------------------+
1154 * +--| Offset to chain cell counts| -> 2 bytes
1155 * | +----------------------------+
1156 * | | Code body | -> Start address for translation
1157 * | | | variable in 2-byte chunks
1158 * | . . (JitTable's codeAddress points here)
1159 * | . .
1160 * | | |
1161 * | +----------------------------+
Bill Buzbeebd047242010-05-13 13:02:53 -07001162 * | | Chaining Cells | -> 12/16 bytes each, must be 4 byte aligned
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001163 * | . .
1164 * | . .
1165 * | | |
1166 * | +----------------------------+
Ben Chengcec26f62010-01-15 15:29:33 -08001167 * | | Gap for large switch stmt | -> # cases >= MAX_CHAINED_SWITCH_CASES
1168 * | +----------------------------+
1169 * +->| Chaining cell counts | -> 8 bytes, chain cell counts by type
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001170 * +----------------------------+
1171 * | Trace description | -> variable sized
1172 * . .
1173 * | |
1174 * +----------------------------+
1175 * | Literal pool | -> 4-byte aligned, variable size
1176 * . .
1177 * . .
1178 * | |
1179 * +----------------------------+
1180 *
Ben Chengba4fc8b2009-06-01 13:00:29 -07001181 * Go over each instruction in the list and calculate the offset from the top
1182 * before sending them off to the assembler. If out-of-range branch distance is
1183 * seen rearrange the instructions a bit to correct it.
1184 */
Bill Buzbee716f1202009-07-23 13:22:09 -07001185void dvmCompilerAssembleLIR(CompilationUnit *cUnit, JitTranslationInfo *info)
Ben Chengba4fc8b2009-06-01 13:00:29 -07001186{
1187 LIR *lir;
Bill Buzbee89efc3d2009-07-28 11:22:22 -07001188 ArmLIR *armLIR;
Ben Cheng1efc9c52009-06-08 18:25:27 -07001189 int offset = 0;
Ben Chengba4fc8b2009-06-01 13:00:29 -07001190 int i;
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001191 ChainCellCounts chainCellCounts;
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001192 int descSize = jitTraceDescriptionSize(cUnit->traceDesc);
Ben Chengcec26f62010-01-15 15:29:33 -08001193 int chainingCellGap;
Ben Chengba4fc8b2009-06-01 13:00:29 -07001194
Bill Buzbee716f1202009-07-23 13:22:09 -07001195 info->instructionSet = cUnit->instructionSet;
1196
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001197 /* Beginning offset needs to allow space for chain cell offset */
Bill Buzbee89efc3d2009-07-28 11:22:22 -07001198 for (armLIR = (ArmLIR *) cUnit->firstLIRInsn;
Ben Chengba4fc8b2009-06-01 13:00:29 -07001199 armLIR;
1200 armLIR = NEXT_LIR(armLIR)) {
1201 armLIR->generic.offset = offset;
Ben Chenge9695e52009-06-16 16:11:47 -07001202 if (armLIR->opCode >= 0 && !armLIR->isNop) {
Bill Buzbee9bc3df32009-07-30 10:52:29 -07001203 armLIR->size = EncodingMap[armLIR->opCode].size * 2;
1204 offset += armLIR->size;
Bill Buzbee1465db52009-09-23 17:17:35 -07001205 } else if (armLIR->opCode == kArmPseudoPseudoAlign4) {
Ben Chengba4fc8b2009-06-01 13:00:29 -07001206 if (offset & 0x2) {
1207 offset += 2;
1208 armLIR->operands[0] = 1;
1209 } else {
1210 armLIR->operands[0] = 0;
1211 }
1212 }
1213 /* Pseudo opcodes don't consume space */
1214 }
1215
1216 /* Const values have to be word aligned */
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001217 offset = (offset + 3) & ~3;
Ben Chengba4fc8b2009-06-01 13:00:29 -07001218
Ben Chengcec26f62010-01-15 15:29:33 -08001219 /*
1220 * Get the gap (# of u4) between the offset of chaining cell count and
1221 * the bottom of real chaining cells. If the translation has chaining
1222 * cells, the gap is guaranteed to be multiples of 4.
1223 */
1224 chainingCellGap = (offset - cUnit->chainingCellBottom->offset) >> 2;
1225
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001226 /* Add space for chain cell counts & trace description */
Ben Cheng1efc9c52009-06-08 18:25:27 -07001227 u4 chainCellOffset = offset;
Bill Buzbee89efc3d2009-07-28 11:22:22 -07001228 ArmLIR *chainCellOffsetLIR = (ArmLIR *) cUnit->chainCellOffsetLIR;
Bill Buzbee6e963e12009-06-17 16:56:19 -07001229 assert(chainCellOffsetLIR);
Ben Cheng1efc9c52009-06-08 18:25:27 -07001230 assert(chainCellOffset < 0x10000);
Bill Buzbee1465db52009-09-23 17:17:35 -07001231 assert(chainCellOffsetLIR->opCode == kArm16BitData &&
Ben Cheng1efc9c52009-06-08 18:25:27 -07001232 chainCellOffsetLIR->operands[0] == CHAIN_CELL_OFFSET_TAG);
1233
Ben Chenge80cd942009-07-17 15:54:23 -07001234 /*
1235 * Replace the CHAIN_CELL_OFFSET_TAG with the real value. If trace
1236 * profiling is enabled, subtract 4 (occupied by the counter word) from
1237 * the absolute offset as the value stored in chainCellOffsetLIR is the
1238 * delta from &chainCellOffsetLIR to &ChainCellCounts.
1239 */
1240 chainCellOffsetLIR->operands[0] =
1241 gDvmJit.profile ? (chainCellOffset - 4) : chainCellOffset;
Ben Cheng1efc9c52009-06-08 18:25:27 -07001242
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001243 offset += sizeof(chainCellCounts) + descSize;
1244
1245 assert((offset & 0x3) == 0); /* Should still be word aligned */
1246
1247 /* Set up offsets for literals */
Ben Chengba4fc8b2009-06-01 13:00:29 -07001248 cUnit->dataOffset = offset;
1249
1250 for (lir = cUnit->wordList; lir; lir = lir->next) {
1251 lir->offset = offset;
1252 offset += 4;
1253 }
1254
1255 cUnit->totalSize = offset;
1256
Ben Cheng7b133ef2010-02-04 16:15:59 -08001257 if (gDvmJit.codeCacheByteUsed + cUnit->totalSize > gDvmJit.codeCacheSize) {
Ben Chengba4fc8b2009-06-01 13:00:29 -07001258 gDvmJit.codeCacheFull = true;
1259 cUnit->baseAddr = NULL;
1260 return;
1261 }
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001262
1263 /* Allocate enough space for the code block */
1264 cUnit->codeBuffer = dvmCompilerNew(chainCellOffset, true);
Ben Chengba4fc8b2009-06-01 13:00:29 -07001265 if (cUnit->codeBuffer == NULL) {
1266 LOGE("Code buffer allocation failure\n");
1267 cUnit->baseAddr = NULL;
1268 return;
1269 }
1270
Ben Cheng1efc9c52009-06-08 18:25:27 -07001271 bool assemblerFailure = assembleInstructions(
Ben Chengba4fc8b2009-06-01 13:00:29 -07001272 cUnit, (intptr_t) gDvmJit.codeCache + gDvmJit.codeCacheByteUsed);
1273
Ben Cheng1efc9c52009-06-08 18:25:27 -07001274 /*
1275 * Currently the only reason that can cause the assembler to fail is due to
1276 * trace length - cut it in half and retry.
1277 */
1278 if (assemblerFailure) {
1279 cUnit->halveInstCount = true;
1280 return;
1281 }
Ben Chengba4fc8b2009-06-01 13:00:29 -07001282
Ben Chengdca71432010-03-16 16:04:11 -07001283#if defined(SIGNATURE_BREAKPOINT)
1284 if (info->discardResult == false && gDvmJit.signatureBreakpoint != NULL &&
1285 chainCellOffset/4 >= gDvmJit.signatureBreakpointSize) {
1286 matchSignatureBreakpoint(cUnit, chainCellOffset/4);
1287 }
1288#endif
1289
Ben Chengccd6c012009-10-15 14:52:45 -07001290 /* Don't go all the way if the goal is just to get the verbose output */
1291 if (info->discardResult) return;
Bill Buzbee6e963e12009-06-17 16:56:19 -07001292
Ben Chengba4fc8b2009-06-01 13:00:29 -07001293 cUnit->baseAddr = (char *) gDvmJit.codeCache + gDvmJit.codeCacheByteUsed;
1294 gDvmJit.codeCacheByteUsed += offset;
1295
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001296 /* Install the code block */
Ben Cheng1efc9c52009-06-08 18:25:27 -07001297 memcpy((char*)cUnit->baseAddr, cUnit->codeBuffer, chainCellOffset);
Ben Chengba4fc8b2009-06-01 13:00:29 -07001298 gDvmJit.numCompilations++;
1299
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001300 /* Install the chaining cell counts */
Ben Chengcec26f62010-01-15 15:29:33 -08001301 for (i=0; i< kChainingCellGap; i++) {
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001302 chainCellCounts.u.count[i] = cUnit->numChainingCells[i];
1303 }
Ben Chengcec26f62010-01-15 15:29:33 -08001304
1305 /* Set the gap number in the chaining cell count structure */
1306 chainCellCounts.u.count[kChainingCellGap] = chainingCellGap;
1307
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001308 memcpy((char*)cUnit->baseAddr + chainCellOffset, &chainCellCounts,
1309 sizeof(chainCellCounts));
1310
1311 /* Install the trace description */
1312 memcpy((char*)cUnit->baseAddr + chainCellOffset + sizeof(chainCellCounts),
1313 cUnit->traceDesc, descSize);
1314
1315 /* Write the literals directly into the code cache */
1316 installDataContent(cUnit);
1317
Ben Chengba4fc8b2009-06-01 13:00:29 -07001318 /* Flush dcache and invalidate the icache to maintain coherence */
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001319 cacheflush((long)cUnit->baseAddr,
Ben Chenge80cd942009-07-17 15:54:23 -07001320 (long)((char *) cUnit->baseAddr + offset), 0);
Ben Cheng978738d2010-05-13 13:45:57 -07001321 UPDATE_CODE_CACHE_PATCHES();
Bill Buzbee716f1202009-07-23 13:22:09 -07001322
1323 /* Record code entry point and instruction set */
1324 info->codeAddress = (char*)cUnit->baseAddr + cUnit->headerSize;
Bill Buzbee716f1202009-07-23 13:22:09 -07001325 /* If applicable, mark low bit to denote thumb */
1326 if (info->instructionSet != DALVIK_JIT_ARM)
1327 info->codeAddress = (char*)info->codeAddress + 1;
Ben Chengba4fc8b2009-06-01 13:00:29 -07001328}
1329
Bill Buzbee9a8c75a2009-11-08 14:31:20 -08001330/*
1331 * Returns the skeleton bit pattern associated with an opcode. All
1332 * variable fields are zeroed.
1333 */
1334static u4 getSkeleton(ArmOpCode op)
1335{
1336 return EncodingMap[op].skeleton;
1337}
1338
1339static u4 assembleChainingBranch(int branchOffset, bool thumbTarget)
Ben Cheng38329f52009-07-07 14:19:20 -07001340{
1341 u4 thumb1, thumb2;
1342
Bill Buzbee9a8c75a2009-11-08 14:31:20 -08001343 if (!thumbTarget) {
1344 thumb1 = (getSkeleton(kThumbBlx1) | ((branchOffset>>12) & 0x7ff));
1345 thumb2 = (getSkeleton(kThumbBlx2) | ((branchOffset>> 1) & 0x7ff));
1346 } else if ((branchOffset < -2048) | (branchOffset > 2046)) {
1347 thumb1 = (getSkeleton(kThumbBl1) | ((branchOffset>>12) & 0x7ff));
1348 thumb2 = (getSkeleton(kThumbBl2) | ((branchOffset>> 1) & 0x7ff));
Ben Cheng38329f52009-07-07 14:19:20 -07001349 } else {
Bill Buzbee9a8c75a2009-11-08 14:31:20 -08001350 thumb1 = (getSkeleton(kThumbBUncond) | ((branchOffset>> 1) & 0x7ff));
1351 thumb2 = getSkeleton(kThumbOrr); /* nop -> or r0, r0 */
Ben Cheng38329f52009-07-07 14:19:20 -07001352 }
1353
1354 return thumb2<<16 | thumb1;
1355}
1356
Ben Chengba4fc8b2009-06-01 13:00:29 -07001357/*
1358 * Perform translation chain operation.
1359 * For ARM, we'll use a pair of thumb instructions to generate
1360 * an unconditional chaining branch of up to 4MB in distance.
Bill Buzbee9a8c75a2009-11-08 14:31:20 -08001361 * Use a BL, because the generic "interpret" translation needs
1362 * the link register to find the dalvik pc of teh target.
Ben Chengba4fc8b2009-06-01 13:00:29 -07001363 * 111HHooooooooooo
1364 * Where HH is 10 for the 1st inst, and 11 for the second and
1365 * the "o" field is each instruction's 11-bit contribution to the
1366 * 22-bit branch offset.
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001367 * If the target is nearby, use a single-instruction bl.
1368 * If one or more threads is suspended, don't chain.
Ben Chengba4fc8b2009-06-01 13:00:29 -07001369 */
1370void* dvmJitChain(void* tgtAddr, u4* branchAddr)
1371{
1372 int baseAddr = (u4) branchAddr + 4;
1373 int branchOffset = (int) tgtAddr - baseAddr;
Ben Chengba4fc8b2009-06-01 13:00:29 -07001374 u4 newInst;
Bill Buzbee9a8c75a2009-11-08 14:31:20 -08001375 bool thumbTarget;
Ben Chengba4fc8b2009-06-01 13:00:29 -07001376
Ben Cheng6999d842010-01-26 16:46:15 -08001377 /*
1378 * Only chain translations when there is no urge to ask all threads to
1379 * suspend themselves via the interpreter.
1380 */
1381 if ((gDvmJit.pProfTable != NULL) && (gDvm.sumThreadSuspendCount == 0) &&
1382 (gDvmJit.codeCacheFull == false)) {
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001383 assert((branchOffset >= -(1<<22)) && (branchOffset <= ((1<<22)-2)));
Ben Chengba4fc8b2009-06-01 13:00:29 -07001384
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001385 gDvmJit.translationChains++;
Ben Chengba4fc8b2009-06-01 13:00:29 -07001386
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001387 COMPILER_TRACE_CHAINING(
1388 LOGD("Jit Runtime: chaining 0x%x to 0x%x\n",
1389 (int) branchAddr, (int) tgtAddr & -2));
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001390
Bill Buzbee9a8c75a2009-11-08 14:31:20 -08001391 /*
1392 * NOTE: normally, all translations are Thumb[2] mode, with
1393 * a single exception: the default TEMPLATE_INTERPRET
1394 * pseudo-translation. If the need ever arises to
1395 * mix Arm & Thumb[2] translations, the following code should be
1396 * generalized.
1397 */
Bill Buzbeebd047242010-05-13 13:02:53 -07001398 thumbTarget = (tgtAddr != dvmCompilerGetInterpretTemplate());
Bill Buzbee9a8c75a2009-11-08 14:31:20 -08001399
1400 newInst = assembleChainingBranch(branchOffset, thumbTarget);
Ben Cheng38329f52009-07-07 14:19:20 -07001401
Bill Buzbeebd047242010-05-13 13:02:53 -07001402 /*
1403 * The second half-word instruction of the chaining cell must
1404 * either be a nop (which represents initial state), or is the
1405 * same exact branch halfword that we are trying to install.
1406 */
1407 assert( ((*branchAddr >> 16) == getSkeleton(kThumbOrr)) ||
1408 ((*branchAddr >> 16) == (newInst >> 16)));
1409
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001410 *branchAddr = newInst;
1411 cacheflush((long)branchAddr, (long)branchAddr + 4, 0);
Ben Cheng978738d2010-05-13 13:45:57 -07001412 UPDATE_CODE_CACHE_PATCHES();
Ben Cheng6999d842010-01-26 16:46:15 -08001413 gDvmJit.hasNewChain = true;
Ben Chengba4fc8b2009-06-01 13:00:29 -07001414 }
1415
Ben Chengba4fc8b2009-06-01 13:00:29 -07001416 return tgtAddr;
1417}
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001418
1419/*
Ben Cheng6999d842010-01-26 16:46:15 -08001420 * Attempt to enqueue a work order to patch an inline cache for a predicted
1421 * chaining cell for virtual/interface calls.
1422 */
Carl Shapiroe3c01da2010-05-20 22:54:18 -07001423#if !defined(WITH_SELF_VERIFICATION)
Ben Cheng452efba2010-04-30 15:14:00 -07001424static bool inlineCachePatchEnqueue(PredictedChainingCell *cellAddr,
1425 PredictedChainingCell *newContent)
Ben Cheng6999d842010-01-26 16:46:15 -08001426{
1427 bool result = true;
1428
Ben Cheng452efba2010-04-30 15:14:00 -07001429 /*
1430 * Make sure only one thread gets here since updating the cell (ie fast
1431 * path and queueing the request (ie the queued path) have to be done
1432 * in an atomic fashion.
1433 */
Ben Cheng6999d842010-01-26 16:46:15 -08001434 dvmLockMutex(&gDvmJit.compilerICPatchLock);
1435
Ben Cheng452efba2010-04-30 15:14:00 -07001436 /* Fast path for uninitialized chaining cell */
Ben Cheng6999d842010-01-26 16:46:15 -08001437 if (cellAddr->clazz == NULL &&
1438 cellAddr->branch == PREDICTED_CHAIN_BX_PAIR_INIT) {
Ben Cheng452efba2010-04-30 15:14:00 -07001439 cellAddr->method = newContent->method;
1440 cellAddr->branch = newContent->branch;
1441 cellAddr->counter = newContent->counter;
Ben Cheng6999d842010-01-26 16:46:15 -08001442 /*
1443 * The update order matters - make sure clazz is updated last since it
1444 * will bring the uninitialized chaining cell to life.
1445 */
Ben Cheng452efba2010-04-30 15:14:00 -07001446 MEM_BARRIER();
Ben Cheng6999d842010-01-26 16:46:15 -08001447 cellAddr->clazz = newContent->clazz;
1448 cacheflush((intptr_t) cellAddr, (intptr_t) (cellAddr+1), 0);
Ben Cheng978738d2010-05-13 13:45:57 -07001449 UPDATE_CODE_CACHE_PATCHES();
Ben Cheng452efba2010-04-30 15:14:00 -07001450#if defined(WITH_JIT_TUNING)
1451 gDvmJit.icPatchFast++;
1452#endif
Ben Cheng6999d842010-01-26 16:46:15 -08001453 }
Ben Cheng452efba2010-04-30 15:14:00 -07001454 /*
1455 * Otherwise the patch request will be queued and handled in the next
1456 * GC cycle. At that time all other mutator threads are suspended so
1457 * there will be no partial update in the inline cache state.
1458 */
Ben Cheng6999d842010-01-26 16:46:15 -08001459 else if (gDvmJit.compilerICPatchIndex < COMPILER_IC_PATCH_QUEUE_SIZE) {
1460 int index = gDvmJit.compilerICPatchIndex++;
1461 gDvmJit.compilerICPatchQueue[index].cellAddr = cellAddr;
1462 gDvmJit.compilerICPatchQueue[index].cellContent = *newContent;
Ben Cheng452efba2010-04-30 15:14:00 -07001463#if defined(WITH_JIT_TUNING)
1464 gDvmJit.icPatchQueued++;
1465#endif
1466 }
1467 /* Queue is full - just drop this patch request */
1468 else {
Ben Cheng6999d842010-01-26 16:46:15 -08001469 result = false;
Ben Cheng452efba2010-04-30 15:14:00 -07001470#if defined(WITH_JIT_TUNING)
1471 gDvmJit.icPatchDropped++;
1472#endif
Ben Cheng6999d842010-01-26 16:46:15 -08001473 }
1474
1475 dvmUnlockMutex(&gDvmJit.compilerICPatchLock);
1476 return result;
1477}
Carl Shapiroe3c01da2010-05-20 22:54:18 -07001478#endif
Ben Cheng6999d842010-01-26 16:46:15 -08001479
1480/*
Ben Cheng38329f52009-07-07 14:19:20 -07001481 * This method is called from the invoke templates for virtual and interface
1482 * methods to speculatively setup a chain to the callee. The templates are
1483 * written in assembly and have setup method, cell, and clazz at r0, r2, and
1484 * r3 respectively, so there is a unused argument in the list. Upon return one
1485 * of the following three results may happen:
1486 * 1) Chain is not setup because the callee is native. Reset the rechain
1487 * count to a big number so that it will take a long time before the next
1488 * rechain attempt to happen.
1489 * 2) Chain is not setup because the callee has not been created yet. Reset
1490 * the rechain count to a small number and retry in the near future.
1491 * 3) Ask all other threads to stop before patching this chaining cell.
1492 * This is required because another thread may have passed the class check
1493 * but hasn't reached the chaining cell yet to follow the chain. If we
1494 * patch the content before halting the other thread, there could be a
1495 * small window for race conditions to happen that it may follow the new
1496 * but wrong chain to invoke a different method.
1497 */
1498const Method *dvmJitToPatchPredictedChain(const Method *method,
1499 void *unused,
1500 PredictedChainingCell *cell,
1501 const ClassObject *clazz)
1502{
Jeff Hao97319a82009-08-12 16:57:15 -07001503#if defined(WITH_SELF_VERIFICATION)
1504 /* Disable chaining and prevent this from triggering again for a while */
1505 cell->counter = PREDICTED_CHAIN_COUNTER_AVOID;
1506 cacheflush((long) cell, (long) (cell+1), 0);
1507 goto done;
1508#else
Ben Cheng38329f52009-07-07 14:19:20 -07001509 /* Don't come back here for a long time if the method is native */
1510 if (dvmIsNativeMethod(method)) {
1511 cell->counter = PREDICTED_CHAIN_COUNTER_AVOID;
1512 cacheflush((long) cell, (long) (cell+1), 0);
Ben Cheng978738d2010-05-13 13:45:57 -07001513 UPDATE_CODE_CACHE_PATCHES();
Ben Cheng38329f52009-07-07 14:19:20 -07001514 COMPILER_TRACE_CHAINING(
1515 LOGD("Jit Runtime: predicted chain %p to native method %s ignored",
1516 cell, method->name));
1517 goto done;
1518 }
1519 int tgtAddr = (int) dvmJitGetCodeAddr(method->insns);
1520
1521 /*
1522 * Compilation not made yet for the callee. Reset the counter to a small
1523 * value and come back to check soon.
1524 */
Bill Buzbeebd047242010-05-13 13:02:53 -07001525 if ((tgtAddr == 0) ||
1526 ((void*)tgtAddr == dvmCompilerGetInterpretTemplate())) {
Ben Cheng38329f52009-07-07 14:19:20 -07001527 /*
1528 * Wait for a few invocations (currently set to be 16) before trying
1529 * to setup the chain again.
1530 */
1531 cell->counter = PREDICTED_CHAIN_COUNTER_DELAY;
1532 cacheflush((long) cell, (long) (cell+1), 0);
Ben Cheng978738d2010-05-13 13:45:57 -07001533 UPDATE_CODE_CACHE_PATCHES();
Ben Cheng38329f52009-07-07 14:19:20 -07001534 COMPILER_TRACE_CHAINING(
Ben Chenga8e64a72009-10-20 13:01:36 -07001535 LOGD("Jit Runtime: predicted chain %p to method %s%s delayed",
1536 cell, method->clazz->descriptor, method->name));
Ben Cheng38329f52009-07-07 14:19:20 -07001537 goto done;
1538 }
1539
Ben Cheng6999d842010-01-26 16:46:15 -08001540 PredictedChainingCell newCell;
Ben Chenga8e64a72009-10-20 13:01:36 -07001541
Ben Cheng6999d842010-01-26 16:46:15 -08001542 /* Avoid back-to-back orders to the same cell */
1543 cell->counter = PREDICTED_CHAIN_COUNTER_AVOID;
Ben Cheng38329f52009-07-07 14:19:20 -07001544
1545 int baseAddr = (int) cell + 4; // PC is cur_addr + 4
1546 int branchOffset = tgtAddr - baseAddr;
1547
Ben Cheng6999d842010-01-26 16:46:15 -08001548 newCell.branch = assembleChainingBranch(branchOffset, true);
1549 newCell.clazz = clazz;
1550 newCell.method = method;
1551 newCell.counter = PREDICTED_CHAIN_COUNTER_RECHAIN;
Ben Cheng38329f52009-07-07 14:19:20 -07001552
Ben Chenga8e64a72009-10-20 13:01:36 -07001553 /*
Ben Cheng6999d842010-01-26 16:46:15 -08001554 * Enter the work order to the queue and the chaining cell will be patched
1555 * the next time a safe point is entered.
Ben Cheng60c24f42010-01-04 12:29:56 -08001556 *
Ben Cheng6999d842010-01-26 16:46:15 -08001557 * If the enqueuing fails reset the rechain count to a normal value so that
1558 * it won't get indefinitely delayed.
Ben Cheng60c24f42010-01-04 12:29:56 -08001559 */
Ben Cheng6999d842010-01-26 16:46:15 -08001560 if (!inlineCachePatchEnqueue(cell, &newCell)) {
1561 cell->counter = PREDICTED_CHAIN_COUNTER_RECHAIN;
1562 }
Ben Cheng60c24f42010-01-04 12:29:56 -08001563#endif
1564done:
1565 return method;
1566}
1567
1568/*
1569 * Patch the inline cache content based on the content passed from the work
1570 * order.
1571 */
Ben Cheng6999d842010-01-26 16:46:15 -08001572void dvmCompilerPatchInlineCache(void)
Ben Cheng60c24f42010-01-04 12:29:56 -08001573{
Ben Cheng6999d842010-01-26 16:46:15 -08001574 int i;
1575 PredictedChainingCell *minAddr, *maxAddr;
Ben Cheng60c24f42010-01-04 12:29:56 -08001576
Ben Cheng6999d842010-01-26 16:46:15 -08001577 /* Nothing to be done */
1578 if (gDvmJit.compilerICPatchIndex == 0) return;
Ben Cheng60c24f42010-01-04 12:29:56 -08001579
Ben Cheng6999d842010-01-26 16:46:15 -08001580 /*
1581 * Since all threads are already stopped we don't really need to acquire
1582 * the lock. But race condition can be easily introduced in the future w/o
1583 * paying attention so we still acquire the lock here.
1584 */
1585 dvmLockMutex(&gDvmJit.compilerICPatchLock);
Ben Cheng7a0bcd02010-01-22 16:45:45 -08001586
Ben Cheng6999d842010-01-26 16:46:15 -08001587 //LOGD("Number of IC patch work orders: %d", gDvmJit.compilerICPatchIndex);
Ben Cheng60c24f42010-01-04 12:29:56 -08001588
Ben Cheng6999d842010-01-26 16:46:15 -08001589 /* Initialize the min/max address range */
1590 minAddr = (PredictedChainingCell *)
Ben Cheng7b133ef2010-02-04 16:15:59 -08001591 ((char *) gDvmJit.codeCache + gDvmJit.codeCacheSize);
Ben Cheng6999d842010-01-26 16:46:15 -08001592 maxAddr = (PredictedChainingCell *) gDvmJit.codeCache;
Ben Cheng60c24f42010-01-04 12:29:56 -08001593
Ben Cheng6999d842010-01-26 16:46:15 -08001594 for (i = 0; i < gDvmJit.compilerICPatchIndex; i++) {
1595 PredictedChainingCell *cellAddr =
1596 gDvmJit.compilerICPatchQueue[i].cellAddr;
1597 PredictedChainingCell *cellContent =
1598 &gDvmJit.compilerICPatchQueue[i].cellContent;
Ben Cheng38329f52009-07-07 14:19:20 -07001599
Ben Cheng6999d842010-01-26 16:46:15 -08001600 if (cellAddr->clazz == NULL) {
1601 COMPILER_TRACE_CHAINING(
1602 LOGD("Jit Runtime: predicted chain %p to %s (%s) initialized",
1603 cellAddr,
1604 cellContent->clazz->descriptor,
1605 cellContent->method->name));
1606 } else {
1607 COMPILER_TRACE_CHAINING(
1608 LOGD("Jit Runtime: predicted chain %p from %s to %s (%s) "
1609 "patched",
1610 cellAddr,
1611 cellAddr->clazz->descriptor,
1612 cellContent->clazz->descriptor,
1613 cellContent->method->name));
1614 }
Ben Cheng38329f52009-07-07 14:19:20 -07001615
Ben Cheng6999d842010-01-26 16:46:15 -08001616 /* Patch the chaining cell */
1617 *cellAddr = *cellContent;
1618 minAddr = (cellAddr < minAddr) ? cellAddr : minAddr;
1619 maxAddr = (cellAddr > maxAddr) ? cellAddr : maxAddr;
1620 }
1621
1622 /* Then synchronize the I/D cache */
1623 cacheflush((long) minAddr, (long) (maxAddr+1), 0);
Ben Cheng978738d2010-05-13 13:45:57 -07001624 UPDATE_CODE_CACHE_PATCHES();
Ben Cheng6999d842010-01-26 16:46:15 -08001625
1626 gDvmJit.compilerICPatchIndex = 0;
1627 dvmUnlockMutex(&gDvmJit.compilerICPatchLock);
Ben Cheng38329f52009-07-07 14:19:20 -07001628}
1629
1630/*
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001631 * Unchain a trace given the starting address of the translation
1632 * in the code cache. Refer to the diagram in dvmCompilerAssembleLIR.
1633 * Returns the address following the last cell unchained. Note that
1634 * the incoming codeAddr is a thumb code address, and therefore has
1635 * the low bit set.
1636 */
1637u4* dvmJitUnchain(void* codeAddr)
1638{
1639 u2* pChainCellOffset = (u2*)((char*)codeAddr - 3);
1640 u2 chainCellOffset = *pChainCellOffset;
1641 ChainCellCounts *pChainCellCounts =
Ben Chenge80cd942009-07-17 15:54:23 -07001642 (ChainCellCounts*)((char*)codeAddr + chainCellOffset - 3);
Ben Cheng38329f52009-07-07 14:19:20 -07001643 int cellSize;
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001644 u4* pChainCells;
1645 u4* pStart;
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001646 u4 newInst;
1647 int i,j;
Ben Cheng38329f52009-07-07 14:19:20 -07001648 PredictedChainingCell *predChainCell;
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001649
1650 /* Get total count of chain cells */
Ben Chengcec26f62010-01-15 15:29:33 -08001651 for (i = 0, cellSize = 0; i < kChainingCellGap; i++) {
Bill Buzbee1465db52009-09-23 17:17:35 -07001652 if (i != kChainingCellInvokePredicted) {
Bill Buzbeebd047242010-05-13 13:02:53 -07001653 cellSize += pChainCellCounts->u.count[i] * (CHAIN_CELL_NORMAL_SIZE >> 2);
Ben Cheng38329f52009-07-07 14:19:20 -07001654 } else {
Bill Buzbeebd047242010-05-13 13:02:53 -07001655 cellSize += pChainCellCounts->u.count[i] *
1656 (CHAIN_CELL_PREDICTED_SIZE >> 2);
Ben Cheng38329f52009-07-07 14:19:20 -07001657 }
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001658 }
1659
Ben Chengcec26f62010-01-15 15:29:33 -08001660 if (cellSize == 0)
1661 return (u4 *) pChainCellCounts;
1662
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001663 /* Locate the beginning of the chain cell region */
Ben Chengcec26f62010-01-15 15:29:33 -08001664 pStart = pChainCells = ((u4 *) pChainCellCounts) - cellSize -
1665 pChainCellCounts->u.count[kChainingCellGap];
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001666
1667 /* The cells are sorted in order - walk through them and reset */
Ben Chengcec26f62010-01-15 15:29:33 -08001668 for (i = 0; i < kChainingCellGap; i++) {
Bill Buzbeebd047242010-05-13 13:02:53 -07001669 int elemSize = CHAIN_CELL_NORMAL_SIZE >> 2; /* In 32-bit words */
Bill Buzbee1465db52009-09-23 17:17:35 -07001670 if (i == kChainingCellInvokePredicted) {
Bill Buzbeebd047242010-05-13 13:02:53 -07001671 elemSize = CHAIN_CELL_PREDICTED_SIZE >> 2;
Ben Cheng38329f52009-07-07 14:19:20 -07001672 }
1673
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001674 for (j = 0; j < pChainCellCounts->u.count[i]; j++) {
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001675 switch(i) {
Bill Buzbee1465db52009-09-23 17:17:35 -07001676 case kChainingCellNormal:
Bill Buzbee1465db52009-09-23 17:17:35 -07001677 case kChainingCellHot:
1678 case kChainingCellInvokeSingleton:
Bill Buzbeebd047242010-05-13 13:02:53 -07001679 case kChainingCellBackwardBranch:
1680 /*
1681 * Replace the 1st half-word of the cell with an
1682 * unconditional branch, leaving the 2nd half-word
1683 * untouched. This avoids problems with a thread
1684 * that is suspended between the two halves when
1685 * this unchaining takes place.
1686 */
1687 newInst = *pChainCells;
1688 newInst &= 0xFFFF0000;
1689 newInst |= getSkeleton(kThumbBUncond); /* b offset is 0 */
1690 *pChainCells = newInst;
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001691 break;
Bill Buzbee1465db52009-09-23 17:17:35 -07001692 case kChainingCellInvokePredicted:
Ben Cheng38329f52009-07-07 14:19:20 -07001693 predChainCell = (PredictedChainingCell *) pChainCells;
Ben Cheng7a0bcd02010-01-22 16:45:45 -08001694 /*
1695 * There could be a race on another mutator thread to use
1696 * this particular predicted cell and the check has passed
1697 * the clazz comparison. So we cannot safely wipe the
1698 * method and branch but it is safe to clear the clazz,
1699 * which serves as the key.
1700 */
Ben Cheng38329f52009-07-07 14:19:20 -07001701 predChainCell->clazz = PREDICTED_CHAIN_CLAZZ_INIT;
Ben Cheng38329f52009-07-07 14:19:20 -07001702 break;
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001703 default:
Ben Chengbb0dce52009-11-03 16:19:11 -08001704 LOGE("Unexpected chaining type: %d", i);
Bill Buzbeefc519dc2010-03-06 23:30:57 -08001705 dvmAbort(); // dvmAbort OK here - can't safely recover
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001706 }
Ben Cheng38329f52009-07-07 14:19:20 -07001707 COMPILER_TRACE_CHAINING(
1708 LOGD("Jit Runtime: unchaining 0x%x", (int)pChainCells));
Ben Cheng38329f52009-07-07 14:19:20 -07001709 pChainCells += elemSize; /* Advance by a fixed number of words */
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001710 }
1711 }
1712 return pChainCells;
1713}
1714
1715/* Unchain all translation in the cache. */
1716void dvmJitUnchainAll()
1717{
1718 u4* lowAddress = NULL;
1719 u4* highAddress = NULL;
1720 unsigned int i;
1721 if (gDvmJit.pJitEntryTable != NULL) {
1722 COMPILER_TRACE_CHAINING(LOGD("Jit Runtime: unchaining all"));
1723 dvmLockMutex(&gDvmJit.tableLock);
Bill Buzbee27176222009-06-09 09:20:16 -07001724 for (i = 0; i < gDvmJit.jitTableSize; i++) {
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001725 if (gDvmJit.pJitEntryTable[i].dPC &&
Bill Buzbee9a8c75a2009-11-08 14:31:20 -08001726 gDvmJit.pJitEntryTable[i].codeAddress &&
1727 (gDvmJit.pJitEntryTable[i].codeAddress !=
Bill Buzbeebd047242010-05-13 13:02:53 -07001728 dvmCompilerGetInterpretTemplate())) {
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001729 u4* lastAddress;
1730 lastAddress =
1731 dvmJitUnchain(gDvmJit.pJitEntryTable[i].codeAddress);
1732 if (lowAddress == NULL ||
1733 (u4*)gDvmJit.pJitEntryTable[i].codeAddress < lowAddress)
1734 lowAddress = lastAddress;
1735 if (lastAddress > highAddress)
1736 highAddress = lastAddress;
1737 }
1738 }
1739 cacheflush((long)lowAddress, (long)highAddress, 0);
Ben Cheng978738d2010-05-13 13:45:57 -07001740 UPDATE_CODE_CACHE_PATCHES();
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001741 dvmUnlockMutex(&gDvmJit.tableLock);
Ben Cheng7a0bcd02010-01-22 16:45:45 -08001742 gDvmJit.translationChains = 0;
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001743 }
Ben Cheng6999d842010-01-26 16:46:15 -08001744 gDvmJit.hasNewChain = false;
Bill Buzbee46cd5b62009-06-05 15:36:06 -07001745}
Bill Buzbee716f1202009-07-23 13:22:09 -07001746
1747typedef struct jitProfileAddrToLine {
1748 u4 lineNum;
1749 u4 bytecodeOffset;
1750} jitProfileAddrToLine;
1751
1752
1753/* Callback function to track the bytecode offset/line number relationiship */
1754static int addrToLineCb (void *cnxt, u4 bytecodeOffset, u4 lineNum)
1755{
1756 jitProfileAddrToLine *addrToLine = (jitProfileAddrToLine *) cnxt;
1757
1758 /* Best match so far for this offset */
1759 if (addrToLine->bytecodeOffset >= bytecodeOffset) {
1760 addrToLine->lineNum = lineNum;
1761 }
1762 return 0;
1763}
1764
1765char *getTraceBase(const JitEntry *p)
1766{
1767 return (char*)p->codeAddress -
1768 (6 + (p->u.info.instructionSet == DALVIK_JIT_ARM ? 0 : 1));
1769}
1770
1771/* Dumps profile info for a single trace */
Ben Cheng88a0f972010-02-24 15:00:40 -08001772static int dumpTraceProfile(JitEntry *p, bool silent, bool reset,
1773 unsigned long sum)
Bill Buzbee716f1202009-07-23 13:22:09 -07001774{
1775 ChainCellCounts* pCellCounts;
1776 char* traceBase;
1777 u4* pExecutionCount;
Ben Cheng88a0f972010-02-24 15:00:40 -08001778 u4 executionCount;
Bill Buzbee716f1202009-07-23 13:22:09 -07001779 u2* pCellOffset;
1780 JitTraceDescription *desc;
1781 const Method* method;
1782
1783 traceBase = getTraceBase(p);
1784
1785 if (p->codeAddress == NULL) {
Ben Cheng88a0f972010-02-24 15:00:40 -08001786 if (!silent)
1787 LOGD("TRACEPROFILE 0x%08x 0 NULL 0 0", (int)traceBase);
Bill Buzbee716f1202009-07-23 13:22:09 -07001788 return 0;
1789 }
Bill Buzbeebd047242010-05-13 13:02:53 -07001790 if (p->codeAddress == dvmCompilerGetInterpretTemplate()) {
Ben Cheng88a0f972010-02-24 15:00:40 -08001791 if (!silent)
1792 LOGD("TRACEPROFILE 0x%08x 0 INTERPRET_ONLY 0 0", (int)traceBase);
Bill Buzbee9a8c75a2009-11-08 14:31:20 -08001793 return 0;
1794 }
Bill Buzbee716f1202009-07-23 13:22:09 -07001795
1796 pExecutionCount = (u4*) (traceBase);
Ben Cheng88a0f972010-02-24 15:00:40 -08001797 executionCount = *pExecutionCount;
1798 if (reset) {
1799 *pExecutionCount =0;
1800 }
1801 if (silent) {
1802 return executionCount;
1803 }
Bill Buzbee716f1202009-07-23 13:22:09 -07001804 pCellOffset = (u2*) (traceBase + 4);
1805 pCellCounts = (ChainCellCounts*) ((char *)pCellOffset + *pCellOffset);
1806 desc = (JitTraceDescription*) ((char*)pCellCounts + sizeof(*pCellCounts));
1807 method = desc->method;
1808 char *methodDesc = dexProtoCopyMethodDescriptor(&method->prototype);
1809 jitProfileAddrToLine addrToLine = {0, desc->trace[0].frag.startOffset};
1810
1811 /*
1812 * We may end up decoding the debug information for the same method
1813 * multiple times, but the tradeoff is we don't need to allocate extra
1814 * space to store the addr/line mapping. Since this is a debugging feature
1815 * and done infrequently so the slower but simpler mechanism should work
1816 * just fine.
1817 */
1818 dexDecodeDebugInfo(method->clazz->pDvmDex->pDexFile,
1819 dvmGetMethodCode(method),
1820 method->clazz->descriptor,
1821 method->prototype.protoIdx,
1822 method->accessFlags,
1823 addrToLineCb, NULL, &addrToLine);
1824
Ben Cheng88a0f972010-02-24 15:00:40 -08001825 LOGD("TRACEPROFILE 0x%08x % 10d %5.2f%% [%#x(+%d), %d] %s%s;%s",
Bill Buzbee716f1202009-07-23 13:22:09 -07001826 (int)traceBase,
Ben Cheng88a0f972010-02-24 15:00:40 -08001827 executionCount,
1828 ((float ) executionCount) / sum * 100.0,
Bill Buzbee716f1202009-07-23 13:22:09 -07001829 desc->trace[0].frag.startOffset,
1830 desc->trace[0].frag.numInsts,
1831 addrToLine.lineNum,
1832 method->clazz->descriptor, method->name, methodDesc);
1833 free(methodDesc);
1834
Ben Cheng88a0f972010-02-24 15:00:40 -08001835 return executionCount;
Bill Buzbee716f1202009-07-23 13:22:09 -07001836}
1837
Ben Chengccd6c012009-10-15 14:52:45 -07001838/* Create a copy of the trace descriptor of an existing compilation */
Ben Cheng88a0f972010-02-24 15:00:40 -08001839JitTraceDescription *dvmCopyTraceDescriptor(const u2 *pc,
1840 const JitEntry *knownEntry)
Ben Chengccd6c012009-10-15 14:52:45 -07001841{
Ben Cheng88a0f972010-02-24 15:00:40 -08001842 const JitEntry *jitEntry = knownEntry ? knownEntry : dvmFindJitEntry(pc);
Ben Chengccd6c012009-10-15 14:52:45 -07001843 if (jitEntry == NULL) return NULL;
1844
1845 /* Find out the startint point */
1846 char *traceBase = getTraceBase(jitEntry);
1847
1848 /* Then find out the starting point of the chaining cell */
1849 u2 *pCellOffset = (u2*) (traceBase + 4);
1850 ChainCellCounts *pCellCounts =
1851 (ChainCellCounts*) ((char *)pCellOffset + *pCellOffset);
1852
1853 /* From there we can find out the starting point of the trace descriptor */
1854 JitTraceDescription *desc =
1855 (JitTraceDescription*) ((char*)pCellCounts + sizeof(*pCellCounts));
1856
1857 /* Now make a copy and return */
1858 int descSize = jitTraceDescriptionSize(desc);
1859 JitTraceDescription *newCopy = (JitTraceDescription *) malloc(descSize);
1860 memcpy(newCopy, desc, descSize);
1861 return newCopy;
1862}
1863
Bill Buzbee716f1202009-07-23 13:22:09 -07001864/* Handy function to retrieve the profile count */
1865static inline int getProfileCount(const JitEntry *entry)
1866{
1867 if (entry->dPC == 0 || entry->codeAddress == 0)
1868 return 0;
1869 u4 *pExecutionCount = (u4 *) getTraceBase(entry);
1870
1871 return *pExecutionCount;
1872}
1873
1874
1875/* qsort callback function */
1876static int sortTraceProfileCount(const void *entry1, const void *entry2)
1877{
1878 const JitEntry *jitEntry1 = entry1;
1879 const JitEntry *jitEntry2 = entry2;
1880
1881 int count1 = getProfileCount(jitEntry1);
1882 int count2 = getProfileCount(jitEntry2);
1883 return (count1 == count2) ? 0 : ((count1 > count2) ? -1 : 1);
1884}
1885
1886/* Sort the trace profile counts and dump them */
1887void dvmCompilerSortAndPrintTraceProfiles()
1888{
1889 JitEntry *sortedEntries;
1890 int numTraces = 0;
Ben Cheng88a0f972010-02-24 15:00:40 -08001891 unsigned long sum = 0;
Bill Buzbee716f1202009-07-23 13:22:09 -07001892 unsigned int i;
1893
1894 /* Make sure that the table is not changing */
1895 dvmLockMutex(&gDvmJit.tableLock);
1896
1897 /* Sort the entries by descending order */
1898 sortedEntries = malloc(sizeof(JitEntry) * gDvmJit.jitTableSize);
1899 if (sortedEntries == NULL)
1900 goto done;
1901 memcpy(sortedEntries, gDvmJit.pJitEntryTable,
1902 sizeof(JitEntry) * gDvmJit.jitTableSize);
1903 qsort(sortedEntries, gDvmJit.jitTableSize, sizeof(JitEntry),
1904 sortTraceProfileCount);
1905
Ben Cheng88a0f972010-02-24 15:00:40 -08001906 /* Analyze the sorted entries */
Bill Buzbee716f1202009-07-23 13:22:09 -07001907 for (i=0; i < gDvmJit.jitTableSize; i++) {
1908 if (sortedEntries[i].dPC != 0) {
Ben Cheng88a0f972010-02-24 15:00:40 -08001909 sum += dumpTraceProfile(&sortedEntries[i],
1910 true /* silent */,
1911 false /* reset */,
1912 0);
Bill Buzbee716f1202009-07-23 13:22:09 -07001913 numTraces++;
1914 }
1915 }
1916 if (numTraces == 0)
1917 numTraces = 1;
Ben Cheng88a0f972010-02-24 15:00:40 -08001918 if (sum == 0) {
1919 sum = 1;
1920 }
1921
1922 LOGD("JIT: Average execution count -> %d",(int)(sum / numTraces));
1923
1924 /* Dump the sorted entries. The count of each trace will be reset to 0. */
1925 for (i=0; i < gDvmJit.jitTableSize; i++) {
1926 if (sortedEntries[i].dPC != 0) {
1927 dumpTraceProfile(&sortedEntries[i],
1928 false /* silent */,
1929 true /* reset */,
1930 sum);
1931 }
1932 }
1933
1934 for (i=0; i < gDvmJit.jitTableSize && i < 10; i++) {
1935 JitTraceDescription* desc =
1936 dvmCopyTraceDescriptor(NULL, &sortedEntries[i]);
1937 dvmCompilerWorkEnqueue(sortedEntries[i].dPC,
1938 kWorkOrderTraceDebug, desc);
1939 }
Bill Buzbee716f1202009-07-23 13:22:09 -07001940
1941 free(sortedEntries);
1942done:
1943 dvmUnlockMutex(&gDvmJit.tableLock);
1944 return;
1945}
jeffhao9e45c0b2010-02-03 10:24:05 -08001946
1947#if defined(WITH_SELF_VERIFICATION)
1948/*
1949 * The following are used to keep compiled loads and stores from modifying
1950 * memory during self verification mode.
1951 *
1952 * Stores do not modify memory. Instead, the address and value pair are stored
1953 * into heapSpace. Addresses within heapSpace are unique. For accesses smaller
1954 * than a word, the word containing the address is loaded first before being
1955 * updated.
1956 *
1957 * Loads check heapSpace first and return data from there if an entry exists.
1958 * Otherwise, data is loaded from memory as usual.
1959 */
1960
1961/* Used to specify sizes of memory operations */
1962enum {
1963 kSVByte,
1964 kSVSignedByte,
1965 kSVHalfword,
1966 kSVSignedHalfword,
1967 kSVWord,
1968 kSVDoubleword,
jeffhao121ea792010-02-10 10:51:02 -08001969 kSVVariable,
jeffhao9e45c0b2010-02-03 10:24:05 -08001970};
1971
1972/* Load the value of a decoded register from the stack */
1973static int selfVerificationMemRegLoad(int* sp, int reg)
1974{
1975 return *(sp + reg);
1976}
1977
1978/* Load the value of a decoded doubleword register from the stack */
1979static s8 selfVerificationMemRegLoadDouble(int* sp, int reg)
1980{
1981 return *((s8*)(sp + reg));
1982}
1983
1984/* Store the value of a decoded register out to the stack */
1985static void selfVerificationMemRegStore(int* sp, int data, int reg)
1986{
1987 *(sp + reg) = data;
1988}
1989
1990/* Store the value of a decoded doubleword register out to the stack */
1991static void selfVerificationMemRegStoreDouble(int* sp, s8 data, int reg)
1992{
1993 *((s8*)(sp + reg)) = data;
1994}
1995
1996/*
1997 * Load the specified size of data from the specified address, checking
1998 * heapSpace first if Self Verification mode wrote to it previously, and
1999 * falling back to actual memory otherwise.
2000 */
2001static int selfVerificationLoad(int addr, int size)
2002{
2003 Thread *self = dvmThreadSelf();
2004 ShadowSpace *shadowSpace = self->shadowSpace;
2005 ShadowHeap *heapSpacePtr;
2006
2007 int data;
2008 int maskedAddr = addr & 0xFFFFFFFC;
2009 int alignment = addr & 0x3;
2010
2011 for (heapSpacePtr = shadowSpace->heapSpace;
2012 heapSpacePtr != shadowSpace->heapSpaceTail; heapSpacePtr++) {
2013 if (heapSpacePtr->addr == maskedAddr) {
2014 addr = ((unsigned int) &(heapSpacePtr->data)) | alignment;
2015 break;
2016 }
2017 }
2018
2019 switch (size) {
2020 case kSVByte:
2021 data = *((u1*) addr);
2022 break;
2023 case kSVSignedByte:
2024 data = *((s1*) addr);
2025 break;
2026 case kSVHalfword:
2027 data = *((u2*) addr);
2028 break;
2029 case kSVSignedHalfword:
2030 data = *((s2*) addr);
2031 break;
2032 case kSVWord:
2033 data = *((u4*) addr);
jeffhao91080d22010-02-09 14:55:47 -08002034 break;
jeffhaoe8667642010-02-05 15:08:23 -08002035 default:
jeffhao91080d22010-02-09 14:55:47 -08002036 LOGE("*** ERROR: BAD SIZE IN selfVerificationLoad: %d", size);
jeffhaoe8667642010-02-05 15:08:23 -08002037 data = 0;
2038 dvmAbort();
jeffhao9e45c0b2010-02-03 10:24:05 -08002039 }
2040
2041 //LOGD("*** HEAP LOAD: Addr: 0x%x Data: 0x%x Size: %d", addr, data, size);
2042 return data;
2043}
2044
2045/* Like selfVerificationLoad, but specifically for doublewords */
2046static s8 selfVerificationLoadDoubleword(int addr)
2047{
2048 Thread *self = dvmThreadSelf();
2049 ShadowSpace* shadowSpace = self->shadowSpace;
2050 ShadowHeap* heapSpacePtr;
2051
2052 int addr2 = addr+4;
2053 unsigned int data = *((unsigned int*) addr);
2054 unsigned int data2 = *((unsigned int*) addr2);
2055
2056 for (heapSpacePtr = shadowSpace->heapSpace;
2057 heapSpacePtr != shadowSpace->heapSpaceTail; heapSpacePtr++) {
2058 if (heapSpacePtr->addr == addr) {
2059 data = heapSpacePtr->data;
2060 } else if (heapSpacePtr->addr == addr2) {
2061 data2 = heapSpacePtr->data;
2062 }
2063 }
2064
2065 //LOGD("*** HEAP LOAD DOUBLEWORD: Addr: 0x%x Data: 0x%x Data2: 0x%x",
2066 // addr, data, data2);
2067 return (((s8) data2) << 32) | data;
2068}
2069
2070/*
2071 * Handles a store of a specified size of data to a specified address.
2072 * This gets logged as an addr/data pair in heapSpace instead of modifying
2073 * memory. Addresses in heapSpace are unique, and accesses smaller than a
2074 * word pull the entire word from memory first before updating.
2075 */
2076static void selfVerificationStore(int addr, int data, int size)
2077{
2078 Thread *self = dvmThreadSelf();
2079 ShadowSpace *shadowSpace = self->shadowSpace;
2080 ShadowHeap *heapSpacePtr;
2081
2082 int maskedAddr = addr & 0xFFFFFFFC;
2083 int alignment = addr & 0x3;
2084
2085 //LOGD("*** HEAP STORE: Addr: 0x%x Data: 0x%x Size: %d", addr, data, size);
2086
2087 for (heapSpacePtr = shadowSpace->heapSpace;
2088 heapSpacePtr != shadowSpace->heapSpaceTail; heapSpacePtr++) {
2089 if (heapSpacePtr->addr == maskedAddr) break;
2090 }
2091
2092 if (heapSpacePtr == shadowSpace->heapSpaceTail) {
2093 heapSpacePtr->addr = maskedAddr;
2094 heapSpacePtr->data = *((unsigned int*) maskedAddr);
2095 shadowSpace->heapSpaceTail++;
2096 }
2097
2098 addr = ((unsigned int) &(heapSpacePtr->data)) | alignment;
2099 switch (size) {
2100 case kSVByte:
2101 *((u1*) addr) = data;
2102 break;
2103 case kSVSignedByte:
2104 *((s1*) addr) = data;
2105 break;
2106 case kSVHalfword:
2107 *((u2*) addr) = data;
2108 break;
2109 case kSVSignedHalfword:
2110 *((s2*) addr) = data;
2111 break;
2112 case kSVWord:
2113 *((u4*) addr) = data;
jeffhao91080d22010-02-09 14:55:47 -08002114 break;
jeffhaoe8667642010-02-05 15:08:23 -08002115 default:
jeffhao91080d22010-02-09 14:55:47 -08002116 LOGE("*** ERROR: BAD SIZE IN selfVerificationSave: %d", size);
jeffhaoe8667642010-02-05 15:08:23 -08002117 dvmAbort();
jeffhao9e45c0b2010-02-03 10:24:05 -08002118 }
2119}
2120
2121/* Like selfVerificationStore, but specifically for doublewords */
2122static void selfVerificationStoreDoubleword(int addr, s8 double_data)
2123{
2124 Thread *self = dvmThreadSelf();
2125 ShadowSpace *shadowSpace = self->shadowSpace;
2126 ShadowHeap *heapSpacePtr;
2127
2128 int addr2 = addr+4;
2129 int data = double_data;
2130 int data2 = double_data >> 32;
2131 bool store1 = false, store2 = false;
2132
2133 //LOGD("*** HEAP STORE DOUBLEWORD: Addr: 0x%x Data: 0x%x, Data2: 0x%x",
2134 // addr, data, data2);
2135
2136 for (heapSpacePtr = shadowSpace->heapSpace;
2137 heapSpacePtr != shadowSpace->heapSpaceTail; heapSpacePtr++) {
2138 if (heapSpacePtr->addr == addr) {
2139 heapSpacePtr->data = data;
2140 store1 = true;
2141 } else if (heapSpacePtr->addr == addr2) {
2142 heapSpacePtr->data = data2;
2143 store2 = true;
2144 }
2145 }
2146
2147 if (!store1) {
2148 shadowSpace->heapSpaceTail->addr = addr;
2149 shadowSpace->heapSpaceTail->data = data;
2150 shadowSpace->heapSpaceTail++;
2151 }
2152 if (!store2) {
2153 shadowSpace->heapSpaceTail->addr = addr2;
2154 shadowSpace->heapSpaceTail->data = data2;
2155 shadowSpace->heapSpaceTail++;
2156 }
2157}
2158
2159/*
2160 * Decodes the memory instruction at the address specified in the link
2161 * register. All registers (r0-r12,lr) and fp registers (d0-d15) are stored
2162 * consecutively on the stack beginning at the specified stack pointer.
2163 * Calls the proper Self Verification handler for the memory instruction and
2164 * updates the link register to point past the decoded memory instruction.
2165 */
2166void dvmSelfVerificationMemOpDecode(int lr, int* sp)
2167{
2168 enum {
2169 kMemOpLdrPcRel = 0x09, // ldr(3) [01001] rd[10..8] imm_8[7..0]
2170 kMemOpRRR = 0x0A, // Full opcode is 7 bits
2171 kMemOp2Single = 0x0A, // Used for Vstrs and Vldrs
2172 kMemOpRRR2 = 0x0B, // Full opcode is 7 bits
2173 kMemOp2Double = 0x0B, // Used for Vstrd and Vldrd
2174 kMemOpStrRRI5 = 0x0C, // str(1) [01100] imm_5[10..6] rn[5..3] rd[2..0]
2175 kMemOpLdrRRI5 = 0x0D, // ldr(1) [01101] imm_5[10..6] rn[5..3] rd[2..0]
2176 kMemOpStrbRRI5 = 0x0E, // strb(1) [01110] imm_5[10..6] rn[5..3] rd[2..0]
2177 kMemOpLdrbRRI5 = 0x0F, // ldrb(1) [01111] imm_5[10..6] rn[5..3] rd[2..0]
2178 kMemOpStrhRRI5 = 0x10, // strh(1) [10000] imm_5[10..6] rn[5..3] rd[2..0]
2179 kMemOpLdrhRRI5 = 0x11, // ldrh(1) [10001] imm_5[10..6] rn[5..3] rd[2..0]
2180 kMemOpLdrSpRel = 0x13, // ldr(4) [10011] rd[10..8] imm_8[7..0]
jeffhao121ea792010-02-10 10:51:02 -08002181 kMemOpStmia = 0x18, // stmia [11000] rn[10..8] reglist [7..0]
2182 kMemOpLdmia = 0x19, // ldmia [11001] rn[10..8] reglist [7..0]
jeffhao9e45c0b2010-02-03 10:24:05 -08002183 kMemOpStrRRR = 0x28, // str(2) [0101000] rm[8..6] rn[5..3] rd[2..0]
2184 kMemOpStrhRRR = 0x29, // strh(2) [0101001] rm[8..6] rn[5..3] rd[2..0]
2185 kMemOpStrbRRR = 0x2A, // strb(2) [0101010] rm[8..6] rn[5..3] rd[2..0]
2186 kMemOpLdrsbRRR = 0x2B, // ldrsb [0101011] rm[8..6] rn[5..3] rd[2..0]
2187 kMemOpLdrRRR = 0x2C, // ldr(2) [0101100] rm[8..6] rn[5..3] rd[2..0]
2188 kMemOpLdrhRRR = 0x2D, // ldrh(2) [0101101] rm[8..6] rn[5..3] rd[2..0]
2189 kMemOpLdrbRRR = 0x2E, // ldrb(2) [0101110] rm[8..6] rn[5..3] rd[2..0]
2190 kMemOpLdrshRRR = 0x2F, // ldrsh [0101111] rm[8..6] rn[5..3] rd[2..0]
jeffhao121ea792010-02-10 10:51:02 -08002191 kMemOp2Stmia = 0xE88, // stmia [111010001000[ rn[19..16] mask[15..0]
2192 kMemOp2Ldmia = 0xE89, // ldmia [111010001001[ rn[19..16] mask[15..0]
2193 kMemOp2Stmia2 = 0xE8A, // stmia [111010001010[ rn[19..16] mask[15..0]
2194 kMemOp2Ldmia2 = 0xE8B, // ldmia [111010001011[ rn[19..16] mask[15..0]
jeffhao9e45c0b2010-02-03 10:24:05 -08002195 kMemOp2Vstr = 0xED8, // Used for Vstrs and Vstrd
2196 kMemOp2Vldr = 0xED9, // Used for Vldrs and Vldrd
2197 kMemOp2Vstr2 = 0xEDC, // Used for Vstrs and Vstrd
2198 kMemOp2Vldr2 = 0xEDD, // Used for Vstrs and Vstrd
2199 kMemOp2StrbRRR = 0xF80, /* str rt,[rn,rm,LSL #imm] [111110000000]
2200 rn[19-16] rt[15-12] [000000] imm[5-4] rm[3-0] */
2201 kMemOp2LdrbRRR = 0xF81, /* ldrb rt,[rn,rm,LSL #imm] [111110000001]
2202 rn[19-16] rt[15-12] [000000] imm[5-4] rm[3-0] */
2203 kMemOp2StrhRRR = 0xF82, /* str rt,[rn,rm,LSL #imm] [111110000010]
2204 rn[19-16] rt[15-12] [000000] imm[5-4] rm[3-0] */
2205 kMemOp2LdrhRRR = 0xF83, /* ldrh rt,[rn,rm,LSL #imm] [111110000011]
2206 rn[19-16] rt[15-12] [000000] imm[5-4] rm[3-0] */
2207 kMemOp2StrRRR = 0xF84, /* str rt,[rn,rm,LSL #imm] [111110000100]
2208 rn[19-16] rt[15-12] [000000] imm[5-4] rm[3-0] */
2209 kMemOp2LdrRRR = 0xF85, /* ldr rt,[rn,rm,LSL #imm] [111110000101]
2210 rn[19-16] rt[15-12] [000000] imm[5-4] rm[3-0] */
2211 kMemOp2StrbRRI12 = 0xF88, /* strb rt,[rn,#imm12] [111110001000]
2212 rt[15..12] rn[19..16] imm12[11..0] */
2213 kMemOp2LdrbRRI12 = 0xF89, /* ldrb rt,[rn,#imm12] [111110001001]
2214 rt[15..12] rn[19..16] imm12[11..0] */
2215 kMemOp2StrhRRI12 = 0xF8A, /* strh rt,[rn,#imm12] [111110001010]
2216 rt[15..12] rn[19..16] imm12[11..0] */
2217 kMemOp2LdrhRRI12 = 0xF8B, /* ldrh rt,[rn,#imm12] [111110001011]
2218 rt[15..12] rn[19..16] imm12[11..0] */
2219 kMemOp2StrRRI12 = 0xF8C, /* str(Imm,T3) rd,[rn,#imm12] [111110001100]
2220 rn[19..16] rt[15..12] imm12[11..0] */
2221 kMemOp2LdrRRI12 = 0xF8D, /* ldr(Imm,T3) rd,[rn,#imm12] [111110001101]
2222 rn[19..16] rt[15..12] imm12[11..0] */
2223 kMemOp2LdrsbRRR = 0xF91, /* ldrsb rt,[rn,rm,LSL #imm] [111110010001]
2224 rn[19-16] rt[15-12] [000000] imm[5-4] rm[3-0] */
2225 kMemOp2LdrshRRR = 0xF93, /* ldrsh rt,[rn,rm,LSL #imm] [111110010011]
2226 rn[19-16] rt[15-12] [000000] imm[5-4] rm[3-0] */
2227 kMemOp2LdrsbRRI12 = 0xF99, /* ldrsb rt,[rn,#imm12] [111110011001]
2228 rt[15..12] rn[19..16] imm12[11..0] */
2229 kMemOp2LdrshRRI12 = 0xF9B, /* ldrsh rt,[rn,#imm12] [111110011011]
2230 rt[15..12] rn[19..16] imm12[11..0] */
2231 kMemOp2 = 0xE000, // top 3 bits set indicates Thumb2
2232 };
2233
2234 int addr, offset, data;
2235 long long double_data;
2236 int size = kSVWord;
2237 bool store = false;
2238 unsigned int *lr_masked = (unsigned int *) (lr & 0xFFFFFFFE);
2239 unsigned int insn = *lr_masked;
2240
2241 int old_lr;
2242 old_lr = selfVerificationMemRegLoad(sp, 13);
2243
2244 if ((insn & kMemOp2) == kMemOp2) {
2245 insn = (insn << 16) | (insn >> 16);
2246 //LOGD("*** THUMB2 - Addr: 0x%x Insn: 0x%x", lr, insn);
2247
2248 int opcode12 = (insn >> 20) & 0xFFF;
jeffhao9e45c0b2010-02-03 10:24:05 -08002249 int opcode4 = (insn >> 8) & 0xF;
2250 int imm2 = (insn >> 4) & 0x3;
2251 int imm8 = insn & 0xFF;
2252 int imm12 = insn & 0xFFF;
2253 int rd = (insn >> 12) & 0xF;
2254 int rm = insn & 0xF;
2255 int rn = (insn >> 16) & 0xF;
2256 int rt = (insn >> 12) & 0xF;
jeffhao121ea792010-02-10 10:51:02 -08002257 bool wBack = true;
jeffhao9e45c0b2010-02-03 10:24:05 -08002258
2259 // Update the link register
2260 selfVerificationMemRegStore(sp, old_lr+4, 13);
2261
2262 // Determine whether the mem op is a store or load
2263 switch (opcode12) {
jeffhao121ea792010-02-10 10:51:02 -08002264 case kMemOp2Stmia:
2265 case kMemOp2Stmia2:
jeffhao9e45c0b2010-02-03 10:24:05 -08002266 case kMemOp2Vstr:
2267 case kMemOp2Vstr2:
2268 case kMemOp2StrbRRR:
2269 case kMemOp2StrhRRR:
2270 case kMemOp2StrRRR:
2271 case kMemOp2StrbRRI12:
2272 case kMemOp2StrhRRI12:
2273 case kMemOp2StrRRI12:
2274 store = true;
2275 }
2276
2277 // Determine the size of the mem access
2278 switch (opcode12) {
2279 case kMemOp2StrbRRR:
2280 case kMemOp2LdrbRRR:
2281 case kMemOp2StrbRRI12:
2282 case kMemOp2LdrbRRI12:
2283 size = kSVByte;
2284 break;
2285 case kMemOp2LdrsbRRR:
2286 case kMemOp2LdrsbRRI12:
2287 size = kSVSignedByte;
2288 break;
2289 case kMemOp2StrhRRR:
2290 case kMemOp2LdrhRRR:
2291 case kMemOp2StrhRRI12:
2292 case kMemOp2LdrhRRI12:
2293 size = kSVHalfword;
2294 break;
2295 case kMemOp2LdrshRRR:
2296 case kMemOp2LdrshRRI12:
2297 size = kSVSignedHalfword;
2298 break;
2299 case kMemOp2Vstr:
2300 case kMemOp2Vstr2:
2301 case kMemOp2Vldr:
2302 case kMemOp2Vldr2:
2303 if (opcode4 == kMemOp2Double) size = kSVDoubleword;
2304 break;
jeffhao121ea792010-02-10 10:51:02 -08002305 case kMemOp2Stmia:
2306 case kMemOp2Ldmia:
2307 case kMemOp2Stmia2:
2308 case kMemOp2Ldmia2:
2309 size = kSVVariable;
2310 break;
jeffhao9e45c0b2010-02-03 10:24:05 -08002311 }
2312
2313 // Load the value of the address
2314 addr = selfVerificationMemRegLoad(sp, rn);
2315
2316 // Figure out the offset
2317 switch (opcode12) {
2318 case kMemOp2Vstr:
2319 case kMemOp2Vstr2:
2320 case kMemOp2Vldr:
2321 case kMemOp2Vldr2:
2322 offset = imm8 << 2;
2323 if (opcode4 == kMemOp2Single) {
2324 rt = rd << 1;
2325 if (insn & 0x400000) rt |= 0x1;
2326 } else if (opcode4 == kMemOp2Double) {
2327 if (insn & 0x400000) rt |= 0x10;
2328 rt = rt << 1;
2329 } else {
jeffhao91080d22010-02-09 14:55:47 -08002330 LOGE("*** ERROR: UNRECOGNIZED VECTOR MEM OP: %x", opcode4);
jeffhao9e45c0b2010-02-03 10:24:05 -08002331 dvmAbort();
2332 }
2333 rt += 14;
2334 break;
2335 case kMemOp2StrbRRR:
2336 case kMemOp2LdrbRRR:
2337 case kMemOp2StrhRRR:
2338 case kMemOp2LdrhRRR:
2339 case kMemOp2StrRRR:
2340 case kMemOp2LdrRRR:
2341 case kMemOp2LdrsbRRR:
2342 case kMemOp2LdrshRRR:
2343 offset = selfVerificationMemRegLoad(sp, rm) << imm2;
2344 break;
2345 case kMemOp2StrbRRI12:
2346 case kMemOp2LdrbRRI12:
2347 case kMemOp2StrhRRI12:
2348 case kMemOp2LdrhRRI12:
2349 case kMemOp2StrRRI12:
2350 case kMemOp2LdrRRI12:
2351 case kMemOp2LdrsbRRI12:
2352 case kMemOp2LdrshRRI12:
2353 offset = imm12;
2354 break;
jeffhao121ea792010-02-10 10:51:02 -08002355 case kMemOp2Stmia:
2356 case kMemOp2Ldmia:
2357 wBack = false;
2358 case kMemOp2Stmia2:
2359 case kMemOp2Ldmia2:
2360 offset = 0;
2361 break;
jeffhao9e45c0b2010-02-03 10:24:05 -08002362 default:
jeffhao91080d22010-02-09 14:55:47 -08002363 LOGE("*** ERROR: UNRECOGNIZED THUMB2 MEM OP: %x", opcode12);
jeffhaoe8667642010-02-05 15:08:23 -08002364 offset = 0;
jeffhao9e45c0b2010-02-03 10:24:05 -08002365 dvmAbort();
2366 }
2367
2368 // Handle the decoded mem op accordingly
2369 if (store) {
jeffhao121ea792010-02-10 10:51:02 -08002370 if (size == kSVVariable) {
2371 LOGD("*** THUMB2 STMIA CURRENTLY UNUSED (AND UNTESTED)");
2372 int i;
2373 int regList = insn & 0xFFFF;
2374 for (i = 0; i < 16; i++) {
2375 if (regList & 0x1) {
2376 data = selfVerificationMemRegLoad(sp, i);
2377 selfVerificationStore(addr, data, kSVWord);
2378 addr += 4;
2379 }
2380 regList = regList >> 1;
2381 }
2382 if (wBack) selfVerificationMemRegStore(sp, addr, rn);
2383 } else if (size == kSVDoubleword) {
jeffhao9e45c0b2010-02-03 10:24:05 -08002384 double_data = selfVerificationMemRegLoadDouble(sp, rt);
2385 selfVerificationStoreDoubleword(addr+offset, double_data);
2386 } else {
2387 data = selfVerificationMemRegLoad(sp, rt);
2388 selfVerificationStore(addr+offset, data, size);
2389 }
2390 } else {
jeffhao121ea792010-02-10 10:51:02 -08002391 if (size == kSVVariable) {
2392 LOGD("*** THUMB2 LDMIA CURRENTLY UNUSED (AND UNTESTED)");
2393 int i;
2394 int regList = insn & 0xFFFF;
2395 for (i = 0; i < 16; i++) {
2396 if (regList & 0x1) {
2397 data = selfVerificationLoad(addr, kSVWord);
2398 selfVerificationMemRegStore(sp, data, i);
2399 addr += 4;
2400 }
2401 regList = regList >> 1;
2402 }
2403 if (wBack) selfVerificationMemRegStore(sp, addr, rn);
2404 } else if (size == kSVDoubleword) {
jeffhao9e45c0b2010-02-03 10:24:05 -08002405 double_data = selfVerificationLoadDoubleword(addr+offset);
2406 selfVerificationMemRegStoreDouble(sp, double_data, rt);
2407 } else {
2408 data = selfVerificationLoad(addr+offset, size);
2409 selfVerificationMemRegStore(sp, data, rt);
2410 }
2411 }
2412 } else {
2413 //LOGD("*** THUMB - Addr: 0x%x Insn: 0x%x", lr, insn);
2414
2415 // Update the link register
2416 selfVerificationMemRegStore(sp, old_lr+2, 13);
2417
2418 int opcode5 = (insn >> 11) & 0x1F;
2419 int opcode7 = (insn >> 9) & 0x7F;
2420 int imm = (insn >> 6) & 0x1F;
2421 int rd = (insn >> 8) & 0x7;
2422 int rm = (insn >> 6) & 0x7;
2423 int rn = (insn >> 3) & 0x7;
2424 int rt = insn & 0x7;
2425
2426 // Determine whether the mem op is a store or load
2427 switch (opcode5) {
2428 case kMemOpRRR:
2429 switch (opcode7) {
2430 case kMemOpStrRRR:
2431 case kMemOpStrhRRR:
2432 case kMemOpStrbRRR:
2433 store = true;
2434 }
2435 break;
2436 case kMemOpStrRRI5:
2437 case kMemOpStrbRRI5:
2438 case kMemOpStrhRRI5:
jeffhao121ea792010-02-10 10:51:02 -08002439 case kMemOpStmia:
jeffhao9e45c0b2010-02-03 10:24:05 -08002440 store = true;
2441 }
2442
2443 // Determine the size of the mem access
2444 switch (opcode5) {
2445 case kMemOpRRR:
2446 case kMemOpRRR2:
2447 switch (opcode7) {
2448 case kMemOpStrbRRR:
2449 case kMemOpLdrbRRR:
2450 size = kSVByte;
2451 break;
2452 case kMemOpLdrsbRRR:
2453 size = kSVSignedByte;
2454 break;
2455 case kMemOpStrhRRR:
2456 case kMemOpLdrhRRR:
2457 size = kSVHalfword;
2458 break;
2459 case kMemOpLdrshRRR:
2460 size = kSVSignedHalfword;
2461 break;
2462 }
2463 break;
2464 case kMemOpStrbRRI5:
2465 case kMemOpLdrbRRI5:
2466 size = kSVByte;
2467 break;
2468 case kMemOpStrhRRI5:
2469 case kMemOpLdrhRRI5:
2470 size = kSVHalfword;
2471 break;
jeffhao121ea792010-02-10 10:51:02 -08002472 case kMemOpStmia:
2473 case kMemOpLdmia:
2474 size = kSVVariable;
2475 break;
jeffhao9e45c0b2010-02-03 10:24:05 -08002476 }
2477
2478 // Load the value of the address
2479 if (opcode5 == kMemOpLdrPcRel)
2480 addr = selfVerificationMemRegLoad(sp, 4);
jeffhao121ea792010-02-10 10:51:02 -08002481 else if (opcode5 == kMemOpStmia || opcode5 == kMemOpLdmia)
2482 addr = selfVerificationMemRegLoad(sp, rd);
jeffhao9e45c0b2010-02-03 10:24:05 -08002483 else
2484 addr = selfVerificationMemRegLoad(sp, rn);
2485
2486 // Figure out the offset
2487 switch (opcode5) {
2488 case kMemOpLdrPcRel:
2489 offset = (insn & 0xFF) << 2;
2490 rt = rd;
2491 break;
2492 case kMemOpRRR:
2493 case kMemOpRRR2:
2494 offset = selfVerificationMemRegLoad(sp, rm);
2495 break;
2496 case kMemOpStrRRI5:
2497 case kMemOpLdrRRI5:
2498 offset = imm << 2;
2499 break;
2500 case kMemOpStrhRRI5:
2501 case kMemOpLdrhRRI5:
2502 offset = imm << 1;
2503 break;
2504 case kMemOpStrbRRI5:
2505 case kMemOpLdrbRRI5:
2506 offset = imm;
2507 break;
jeffhao121ea792010-02-10 10:51:02 -08002508 case kMemOpStmia:
2509 case kMemOpLdmia:
2510 offset = 0;
2511 break;
jeffhao9e45c0b2010-02-03 10:24:05 -08002512 default:
jeffhao91080d22010-02-09 14:55:47 -08002513 LOGE("*** ERROR: UNRECOGNIZED THUMB MEM OP: %x", opcode5);
jeffhaoe8667642010-02-05 15:08:23 -08002514 offset = 0;
jeffhao9e45c0b2010-02-03 10:24:05 -08002515 dvmAbort();
2516 }
2517
2518 // Handle the decoded mem op accordingly
2519 if (store) {
jeffhao121ea792010-02-10 10:51:02 -08002520 if (size == kSVVariable) {
2521 int i;
2522 int regList = insn & 0xFF;
2523 for (i = 0; i < 8; i++) {
2524 if (regList & 0x1) {
2525 data = selfVerificationMemRegLoad(sp, i);
2526 selfVerificationStore(addr, data, kSVWord);
2527 addr += 4;
2528 }
2529 regList = regList >> 1;
2530 }
2531 selfVerificationMemRegStore(sp, addr, rd);
2532 } else {
2533 data = selfVerificationMemRegLoad(sp, rt);
2534 selfVerificationStore(addr+offset, data, size);
2535 }
jeffhao9e45c0b2010-02-03 10:24:05 -08002536 } else {
jeffhao121ea792010-02-10 10:51:02 -08002537 if (size == kSVVariable) {
2538 bool wBack = true;
2539 int i;
2540 int regList = insn & 0xFF;
2541 for (i = 0; i < 8; i++) {
2542 if (regList & 0x1) {
2543 if (i == rd) wBack = false;
2544 data = selfVerificationLoad(addr, kSVWord);
2545 selfVerificationMemRegStore(sp, data, i);
2546 addr += 4;
2547 }
2548 regList = regList >> 1;
2549 }
2550 if (wBack) selfVerificationMemRegStore(sp, addr, rd);
2551 } else {
2552 data = selfVerificationLoad(addr+offset, size);
2553 selfVerificationMemRegStore(sp, data, rt);
2554 }
jeffhao9e45c0b2010-02-03 10:24:05 -08002555 }
2556 }
2557}
2558#endif