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buzbeeee17e0a2013-07-31 10:47:37 -07001/*
2 * Copyright (C) 2013 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
Vladimir Markobe0e5462014-02-26 11:24:15 +000017#include <algorithm>
Ian Rogers700a4022014-05-19 16:49:03 -070018#include <memory>
19
Andreas Gampe0b9203e2015-01-22 20:39:27 -080020#include "base/logging.h"
Mathieu Chartierb666f482015-02-18 14:33:14 -080021#include "base/scoped_arena_containers.h"
buzbeeee17e0a2013-07-31 10:47:37 -070022#include "dataflow_iterator-inl.h"
Andreas Gampe0b9203e2015-01-22 20:39:27 -080023#include "compiler_ir.h"
24#include "dex_flags.h"
Vladimir Markobe0e5462014-02-26 11:24:15 +000025#include "dex_instruction-inl.h"
Vladimir Markoaf6925b2014-10-31 16:37:32 +000026#include "dex/mir_field_info.h"
Vladimir Markof096aad2014-01-23 15:51:58 +000027#include "dex/verified_method.h"
Vladimir Marko5816ed42013-11-27 17:04:20 +000028#include "dex/quick/dex_file_method_inliner.h"
29#include "dex/quick/dex_file_to_method_inliner_map.h"
Andreas Gampe0b9203e2015-01-22 20:39:27 -080030#include "driver/compiler_driver.h"
Brian Carlstrom6449c622014-02-10 23:48:36 -080031#include "driver/compiler_options.h"
Andreas Gampe0b9203e2015-01-22 20:39:27 -080032#include "driver/dex_compilation_unit.h"
Vladimir Marko80afd022015-05-19 18:08:00 +010033#include "utils.h"
buzbeeee17e0a2013-07-31 10:47:37 -070034
35namespace art {
36
Ian Rogers584cc792014-09-29 10:49:11 -070037enum InstructionAnalysisAttributeOps : uint8_t {
38 kUninterestingOp = 0,
39 kArithmeticOp,
40 kFpOp,
41 kSingleOp,
42 kDoubleOp,
43 kIntOp,
44 kLongOp,
45 kBranchOp,
46 kInvokeOp,
47 kArrayOp,
48 kHeavyweightOp,
49 kSimpleConstOp,
50 kMoveOp,
51 kSwitch
52};
53
54enum InstructionAnalysisAttributeMasks : uint16_t {
55 kAnNone = 1 << kUninterestingOp,
56 kAnMath = 1 << kArithmeticOp,
57 kAnFp = 1 << kFpOp,
58 kAnLong = 1 << kLongOp,
59 kAnInt = 1 << kIntOp,
60 kAnSingle = 1 << kSingleOp,
61 kAnDouble = 1 << kDoubleOp,
62 kAnFloatMath = 1 << kFpOp,
63 kAnBranch = 1 << kBranchOp,
64 kAnInvoke = 1 << kInvokeOp,
65 kAnArrayOp = 1 << kArrayOp,
66 kAnHeavyWeight = 1 << kHeavyweightOp,
67 kAnSimpleConst = 1 << kSimpleConstOp,
68 kAnMove = 1 << kMoveOp,
69 kAnSwitch = 1 << kSwitch,
70 kAnComputational = kAnMath | kAnArrayOp | kAnMove | kAnSimpleConst,
71};
72
73// Instruction characteristics used to statically identify computation-intensive methods.
74static const uint16_t kAnalysisAttributes[kMirOpLast] = {
buzbeeee17e0a2013-07-31 10:47:37 -070075 // 00 NOP
Ian Rogers584cc792014-09-29 10:49:11 -070076 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -070077
78 // 01 MOVE vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -070079 kAnMove,
buzbeeee17e0a2013-07-31 10:47:37 -070080
81 // 02 MOVE_FROM16 vAA, vBBBB
Ian Rogers584cc792014-09-29 10:49:11 -070082 kAnMove,
buzbeeee17e0a2013-07-31 10:47:37 -070083
84 // 03 MOVE_16 vAAAA, vBBBB
Ian Rogers584cc792014-09-29 10:49:11 -070085 kAnMove,
buzbeeee17e0a2013-07-31 10:47:37 -070086
87 // 04 MOVE_WIDE vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -070088 kAnMove,
buzbeeee17e0a2013-07-31 10:47:37 -070089
90 // 05 MOVE_WIDE_FROM16 vAA, vBBBB
Ian Rogers584cc792014-09-29 10:49:11 -070091 kAnMove,
buzbeeee17e0a2013-07-31 10:47:37 -070092
93 // 06 MOVE_WIDE_16 vAAAA, vBBBB
Ian Rogers584cc792014-09-29 10:49:11 -070094 kAnMove,
buzbeeee17e0a2013-07-31 10:47:37 -070095
96 // 07 MOVE_OBJECT vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -070097 kAnMove,
buzbeeee17e0a2013-07-31 10:47:37 -070098
99 // 08 MOVE_OBJECT_FROM16 vAA, vBBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700100 kAnMove,
buzbeeee17e0a2013-07-31 10:47:37 -0700101
102 // 09 MOVE_OBJECT_16 vAAAA, vBBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700103 kAnMove,
buzbeeee17e0a2013-07-31 10:47:37 -0700104
105 // 0A MOVE_RESULT vAA
Ian Rogers584cc792014-09-29 10:49:11 -0700106 kAnMove,
buzbeeee17e0a2013-07-31 10:47:37 -0700107
108 // 0B MOVE_RESULT_WIDE vAA
Ian Rogers584cc792014-09-29 10:49:11 -0700109 kAnMove,
buzbeeee17e0a2013-07-31 10:47:37 -0700110
111 // 0C MOVE_RESULT_OBJECT vAA
Ian Rogers584cc792014-09-29 10:49:11 -0700112 kAnMove,
buzbeeee17e0a2013-07-31 10:47:37 -0700113
114 // 0D MOVE_EXCEPTION vAA
Ian Rogers584cc792014-09-29 10:49:11 -0700115 kAnMove,
buzbeeee17e0a2013-07-31 10:47:37 -0700116
117 // 0E RETURN_VOID
Ian Rogers584cc792014-09-29 10:49:11 -0700118 kAnBranch,
buzbeeee17e0a2013-07-31 10:47:37 -0700119
120 // 0F RETURN vAA
Ian Rogers584cc792014-09-29 10:49:11 -0700121 kAnBranch,
buzbeeee17e0a2013-07-31 10:47:37 -0700122
123 // 10 RETURN_WIDE vAA
Ian Rogers584cc792014-09-29 10:49:11 -0700124 kAnBranch,
buzbeeee17e0a2013-07-31 10:47:37 -0700125
126 // 11 RETURN_OBJECT vAA
Ian Rogers584cc792014-09-29 10:49:11 -0700127 kAnBranch,
buzbeeee17e0a2013-07-31 10:47:37 -0700128
129 // 12 CONST_4 vA, #+B
Ian Rogers584cc792014-09-29 10:49:11 -0700130 kAnSimpleConst,
buzbeeee17e0a2013-07-31 10:47:37 -0700131
132 // 13 CONST_16 vAA, #+BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700133 kAnSimpleConst,
buzbeeee17e0a2013-07-31 10:47:37 -0700134
135 // 14 CONST vAA, #+BBBBBBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700136 kAnSimpleConst,
buzbeeee17e0a2013-07-31 10:47:37 -0700137
138 // 15 CONST_HIGH16 VAA, #+BBBB0000
Ian Rogers584cc792014-09-29 10:49:11 -0700139 kAnSimpleConst,
buzbeeee17e0a2013-07-31 10:47:37 -0700140
141 // 16 CONST_WIDE_16 vAA, #+BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700142 kAnSimpleConst,
buzbeeee17e0a2013-07-31 10:47:37 -0700143
144 // 17 CONST_WIDE_32 vAA, #+BBBBBBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700145 kAnSimpleConst,
buzbeeee17e0a2013-07-31 10:47:37 -0700146
147 // 18 CONST_WIDE vAA, #+BBBBBBBBBBBBBBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700148 kAnSimpleConst,
buzbeeee17e0a2013-07-31 10:47:37 -0700149
150 // 19 CONST_WIDE_HIGH16 vAA, #+BBBB000000000000
Ian Rogers584cc792014-09-29 10:49:11 -0700151 kAnSimpleConst,
buzbeeee17e0a2013-07-31 10:47:37 -0700152
153 // 1A CONST_STRING vAA, string@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700154 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700155
156 // 1B CONST_STRING_JUMBO vAA, string@BBBBBBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700157 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700158
159 // 1C CONST_CLASS vAA, type@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700160 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700161
162 // 1D MONITOR_ENTER vAA
Ian Rogers584cc792014-09-29 10:49:11 -0700163 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700164
165 // 1E MONITOR_EXIT vAA
Ian Rogers584cc792014-09-29 10:49:11 -0700166 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700167
168 // 1F CHK_CAST vAA, type@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700169 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700170
171 // 20 INSTANCE_OF vA, vB, type@CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700172 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700173
174 // 21 ARRAY_LENGTH vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700175 kAnArrayOp,
buzbeeee17e0a2013-07-31 10:47:37 -0700176
177 // 22 NEW_INSTANCE vAA, type@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700178 kAnHeavyWeight,
buzbeeee17e0a2013-07-31 10:47:37 -0700179
180 // 23 NEW_ARRAY vA, vB, type@CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700181 kAnHeavyWeight,
buzbeeee17e0a2013-07-31 10:47:37 -0700182
183 // 24 FILLED_NEW_ARRAY {vD, vE, vF, vG, vA}
Ian Rogers584cc792014-09-29 10:49:11 -0700184 kAnHeavyWeight,
buzbeeee17e0a2013-07-31 10:47:37 -0700185
186 // 25 FILLED_NEW_ARRAY_RANGE {vCCCC .. vNNNN}, type@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700187 kAnHeavyWeight,
buzbeeee17e0a2013-07-31 10:47:37 -0700188
189 // 26 FILL_ARRAY_DATA vAA, +BBBBBBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700190 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700191
192 // 27 THROW vAA
Ian Rogers584cc792014-09-29 10:49:11 -0700193 kAnHeavyWeight | kAnBranch,
buzbeeee17e0a2013-07-31 10:47:37 -0700194
195 // 28 GOTO
Ian Rogers584cc792014-09-29 10:49:11 -0700196 kAnBranch,
buzbeeee17e0a2013-07-31 10:47:37 -0700197
198 // 29 GOTO_16
Ian Rogers584cc792014-09-29 10:49:11 -0700199 kAnBranch,
buzbeeee17e0a2013-07-31 10:47:37 -0700200
201 // 2A GOTO_32
Ian Rogers584cc792014-09-29 10:49:11 -0700202 kAnBranch,
buzbeeee17e0a2013-07-31 10:47:37 -0700203
204 // 2B PACKED_SWITCH vAA, +BBBBBBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700205 kAnSwitch,
buzbeeee17e0a2013-07-31 10:47:37 -0700206
207 // 2C SPARSE_SWITCH vAA, +BBBBBBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700208 kAnSwitch,
buzbeeee17e0a2013-07-31 10:47:37 -0700209
210 // 2D CMPL_FLOAT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700211 kAnMath | kAnFp | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700212
213 // 2E CMPG_FLOAT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700214 kAnMath | kAnFp | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700215
216 // 2F CMPL_DOUBLE vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700217 kAnMath | kAnFp | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700218
219 // 30 CMPG_DOUBLE vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700220 kAnMath | kAnFp | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700221
222 // 31 CMP_LONG vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700223 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700224
225 // 32 IF_EQ vA, vB, +CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700226 kAnMath | kAnBranch | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700227
228 // 33 IF_NE vA, vB, +CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700229 kAnMath | kAnBranch | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700230
231 // 34 IF_LT vA, vB, +CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700232 kAnMath | kAnBranch | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700233
234 // 35 IF_GE vA, vB, +CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700235 kAnMath | kAnBranch | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700236
237 // 36 IF_GT vA, vB, +CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700238 kAnMath | kAnBranch | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700239
240 // 37 IF_LE vA, vB, +CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700241 kAnMath | kAnBranch | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700242
243 // 38 IF_EQZ vAA, +BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700244 kAnMath | kAnBranch | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700245
246 // 39 IF_NEZ vAA, +BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700247 kAnMath | kAnBranch | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700248
249 // 3A IF_LTZ vAA, +BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700250 kAnMath | kAnBranch | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700251
252 // 3B IF_GEZ vAA, +BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700253 kAnMath | kAnBranch | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700254
255 // 3C IF_GTZ vAA, +BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700256 kAnMath | kAnBranch | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700257
258 // 3D IF_LEZ vAA, +BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700259 kAnMath | kAnBranch | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700260
261 // 3E UNUSED_3E
Ian Rogers584cc792014-09-29 10:49:11 -0700262 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700263
264 // 3F UNUSED_3F
Ian Rogers584cc792014-09-29 10:49:11 -0700265 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700266
267 // 40 UNUSED_40
Ian Rogers584cc792014-09-29 10:49:11 -0700268 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700269
270 // 41 UNUSED_41
Ian Rogers584cc792014-09-29 10:49:11 -0700271 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700272
273 // 42 UNUSED_42
Ian Rogers584cc792014-09-29 10:49:11 -0700274 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700275
276 // 43 UNUSED_43
Ian Rogers584cc792014-09-29 10:49:11 -0700277 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700278
279 // 44 AGET vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700280 kAnArrayOp,
buzbeeee17e0a2013-07-31 10:47:37 -0700281
282 // 45 AGET_WIDE vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700283 kAnArrayOp,
buzbeeee17e0a2013-07-31 10:47:37 -0700284
285 // 46 AGET_OBJECT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700286 kAnArrayOp,
buzbeeee17e0a2013-07-31 10:47:37 -0700287
288 // 47 AGET_BOOLEAN vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700289 kAnArrayOp,
buzbeeee17e0a2013-07-31 10:47:37 -0700290
291 // 48 AGET_BYTE vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700292 kAnArrayOp,
buzbeeee17e0a2013-07-31 10:47:37 -0700293
294 // 49 AGET_CHAR vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700295 kAnArrayOp,
buzbeeee17e0a2013-07-31 10:47:37 -0700296
297 // 4A AGET_SHORT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700298 kAnArrayOp,
buzbeeee17e0a2013-07-31 10:47:37 -0700299
300 // 4B APUT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700301 kAnArrayOp,
buzbeeee17e0a2013-07-31 10:47:37 -0700302
303 // 4C APUT_WIDE vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700304 kAnArrayOp,
buzbeeee17e0a2013-07-31 10:47:37 -0700305
306 // 4D APUT_OBJECT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700307 kAnArrayOp,
buzbeeee17e0a2013-07-31 10:47:37 -0700308
309 // 4E APUT_BOOLEAN vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700310 kAnArrayOp,
buzbeeee17e0a2013-07-31 10:47:37 -0700311
312 // 4F APUT_BYTE vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700313 kAnArrayOp,
buzbeeee17e0a2013-07-31 10:47:37 -0700314
315 // 50 APUT_CHAR vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700316 kAnArrayOp,
buzbeeee17e0a2013-07-31 10:47:37 -0700317
318 // 51 APUT_SHORT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700319 kAnArrayOp,
buzbeeee17e0a2013-07-31 10:47:37 -0700320
321 // 52 IGET vA, vB, field@CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700322 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700323
324 // 53 IGET_WIDE vA, vB, field@CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700325 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700326
327 // 54 IGET_OBJECT vA, vB, field@CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700328 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700329
330 // 55 IGET_BOOLEAN vA, vB, field@CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700331 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700332
333 // 56 IGET_BYTE vA, vB, field@CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700334 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700335
336 // 57 IGET_CHAR vA, vB, field@CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700337 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700338
339 // 58 IGET_SHORT vA, vB, field@CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700340 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700341
342 // 59 IPUT vA, vB, field@CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700343 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700344
345 // 5A IPUT_WIDE vA, vB, field@CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700346 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700347
348 // 5B IPUT_OBJECT vA, vB, field@CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700349 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700350
351 // 5C IPUT_BOOLEAN vA, vB, field@CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700352 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700353
354 // 5D IPUT_BYTE vA, vB, field@CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700355 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700356
357 // 5E IPUT_CHAR vA, vB, field@CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700358 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700359
360 // 5F IPUT_SHORT vA, vB, field@CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700361 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700362
363 // 60 SGET vAA, field@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700364 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700365
366 // 61 SGET_WIDE vAA, field@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700367 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700368
369 // 62 SGET_OBJECT vAA, field@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700370 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700371
372 // 63 SGET_BOOLEAN vAA, field@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700373 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700374
375 // 64 SGET_BYTE vAA, field@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700376 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700377
378 // 65 SGET_CHAR vAA, field@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700379 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700380
381 // 66 SGET_SHORT vAA, field@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700382 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700383
384 // 67 SPUT vAA, field@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700385 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700386
387 // 68 SPUT_WIDE vAA, field@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700388 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700389
390 // 69 SPUT_OBJECT vAA, field@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700391 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700392
393 // 6A SPUT_BOOLEAN vAA, field@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700394 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700395
396 // 6B SPUT_BYTE vAA, field@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700397 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700398
399 // 6C SPUT_CHAR vAA, field@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700400 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700401
402 // 6D SPUT_SHORT vAA, field@BBBB
Ian Rogers584cc792014-09-29 10:49:11 -0700403 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700404
405 // 6E INVOKE_VIRTUAL {vD, vE, vF, vG, vA}
Ian Rogers584cc792014-09-29 10:49:11 -0700406 kAnInvoke | kAnHeavyWeight,
buzbeeee17e0a2013-07-31 10:47:37 -0700407
408 // 6F INVOKE_SUPER {vD, vE, vF, vG, vA}
Ian Rogers584cc792014-09-29 10:49:11 -0700409 kAnInvoke | kAnHeavyWeight,
buzbeeee17e0a2013-07-31 10:47:37 -0700410
411 // 70 INVOKE_DIRECT {vD, vE, vF, vG, vA}
Ian Rogers584cc792014-09-29 10:49:11 -0700412 kAnInvoke | kAnHeavyWeight,
buzbeeee17e0a2013-07-31 10:47:37 -0700413
414 // 71 INVOKE_STATIC {vD, vE, vF, vG, vA}
Ian Rogers584cc792014-09-29 10:49:11 -0700415 kAnInvoke | kAnHeavyWeight,
buzbeeee17e0a2013-07-31 10:47:37 -0700416
417 // 72 INVOKE_INTERFACE {vD, vE, vF, vG, vA}
Ian Rogers584cc792014-09-29 10:49:11 -0700418 kAnInvoke | kAnHeavyWeight,
buzbeeee17e0a2013-07-31 10:47:37 -0700419
Mathieu Chartierd7cbf8a2015-03-19 12:43:20 -0700420 // 73 RETURN_VOID_NO_BARRIER
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800421 kAnBranch,
buzbeeee17e0a2013-07-31 10:47:37 -0700422
423 // 74 INVOKE_VIRTUAL_RANGE {vCCCC .. vNNNN}
Ian Rogers584cc792014-09-29 10:49:11 -0700424 kAnInvoke | kAnHeavyWeight,
buzbeeee17e0a2013-07-31 10:47:37 -0700425
426 // 75 INVOKE_SUPER_RANGE {vCCCC .. vNNNN}
Ian Rogers584cc792014-09-29 10:49:11 -0700427 kAnInvoke | kAnHeavyWeight,
buzbeeee17e0a2013-07-31 10:47:37 -0700428
429 // 76 INVOKE_DIRECT_RANGE {vCCCC .. vNNNN}
Ian Rogers584cc792014-09-29 10:49:11 -0700430 kAnInvoke | kAnHeavyWeight,
buzbeeee17e0a2013-07-31 10:47:37 -0700431
432 // 77 INVOKE_STATIC_RANGE {vCCCC .. vNNNN}
Ian Rogers584cc792014-09-29 10:49:11 -0700433 kAnInvoke | kAnHeavyWeight,
buzbeeee17e0a2013-07-31 10:47:37 -0700434
435 // 78 INVOKE_INTERFACE_RANGE {vCCCC .. vNNNN}
Ian Rogers584cc792014-09-29 10:49:11 -0700436 kAnInvoke | kAnHeavyWeight,
buzbeeee17e0a2013-07-31 10:47:37 -0700437
438 // 79 UNUSED_79
Ian Rogers584cc792014-09-29 10:49:11 -0700439 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700440
441 // 7A UNUSED_7A
Ian Rogers584cc792014-09-29 10:49:11 -0700442 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700443
444 // 7B NEG_INT vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700445 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700446
447 // 7C NOT_INT vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700448 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700449
450 // 7D NEG_LONG vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700451 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700452
453 // 7E NOT_LONG vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700454 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700455
456 // 7F NEG_FLOAT vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700457 kAnMath | kAnFp | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700458
459 // 80 NEG_DOUBLE vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700460 kAnMath | kAnFp | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700461
462 // 81 INT_TO_LONG vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700463 kAnMath | kAnInt | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700464
465 // 82 INT_TO_FLOAT vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700466 kAnMath | kAnFp | kAnInt | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700467
468 // 83 INT_TO_DOUBLE vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700469 kAnMath | kAnFp | kAnInt | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700470
471 // 84 LONG_TO_INT vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700472 kAnMath | kAnInt | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700473
474 // 85 LONG_TO_FLOAT vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700475 kAnMath | kAnFp | kAnLong | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700476
477 // 86 LONG_TO_DOUBLE vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700478 kAnMath | kAnFp | kAnLong | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700479
480 // 87 FLOAT_TO_INT vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700481 kAnMath | kAnFp | kAnInt | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700482
483 // 88 FLOAT_TO_LONG vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700484 kAnMath | kAnFp | kAnLong | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700485
486 // 89 FLOAT_TO_DOUBLE vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700487 kAnMath | kAnFp | kAnSingle | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700488
489 // 8A DOUBLE_TO_INT vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700490 kAnMath | kAnFp | kAnInt | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700491
492 // 8B DOUBLE_TO_LONG vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700493 kAnMath | kAnFp | kAnLong | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700494
495 // 8C DOUBLE_TO_FLOAT vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700496 kAnMath | kAnFp | kAnSingle | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700497
498 // 8D INT_TO_BYTE vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700499 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700500
501 // 8E INT_TO_CHAR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700502 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700503
504 // 8F INT_TO_SHORT vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700505 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700506
507 // 90 ADD_INT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700508 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700509
510 // 91 SUB_INT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700511 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700512
513 // 92 MUL_INT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700514 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700515
516 // 93 DIV_INT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700517 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700518
519 // 94 REM_INT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700520 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700521
522 // 95 AND_INT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700523 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700524
525 // 96 OR_INT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700526 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700527
528 // 97 XOR_INT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700529 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700530
531 // 98 SHL_INT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700532 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700533
534 // 99 SHR_INT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700535 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700536
537 // 9A USHR_INT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700538 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700539
540 // 9B ADD_LONG vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700541 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700542
543 // 9C SUB_LONG vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700544 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700545
546 // 9D MUL_LONG vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700547 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700548
549 // 9E DIV_LONG vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700550 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700551
552 // 9F REM_LONG vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700553 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700554
555 // A0 AND_LONG vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700556 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700557
558 // A1 OR_LONG vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700559 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700560
561 // A2 XOR_LONG vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700562 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700563
564 // A3 SHL_LONG vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700565 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700566
567 // A4 SHR_LONG vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700568 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700569
570 // A5 USHR_LONG vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700571 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700572
573 // A6 ADD_FLOAT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700574 kAnMath | kAnFp | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700575
576 // A7 SUB_FLOAT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700577 kAnMath | kAnFp | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700578
579 // A8 MUL_FLOAT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700580 kAnMath | kAnFp | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700581
582 // A9 DIV_FLOAT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700583 kAnMath | kAnFp | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700584
585 // AA REM_FLOAT vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700586 kAnMath | kAnFp | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700587
588 // AB ADD_DOUBLE vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700589 kAnMath | kAnFp | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700590
591 // AC SUB_DOUBLE vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700592 kAnMath | kAnFp | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700593
594 // AD MUL_DOUBLE vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700595 kAnMath | kAnFp | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700596
597 // AE DIV_DOUBLE vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700598 kAnMath | kAnFp | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700599
600 // AF REM_DOUBLE vAA, vBB, vCC
Ian Rogers584cc792014-09-29 10:49:11 -0700601 kAnMath | kAnFp | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700602
603 // B0 ADD_INT_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700604 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700605
606 // B1 SUB_INT_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700607 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700608
609 // B2 MUL_INT_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700610 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700611
612 // B3 DIV_INT_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700613 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700614
615 // B4 REM_INT_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700616 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700617
618 // B5 AND_INT_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700619 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700620
621 // B6 OR_INT_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700622 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700623
624 // B7 XOR_INT_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700625 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700626
627 // B8 SHL_INT_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700628 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700629
630 // B9 SHR_INT_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700631 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700632
633 // BA USHR_INT_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700634 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700635
636 // BB ADD_LONG_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700637 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700638
639 // BC SUB_LONG_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700640 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700641
642 // BD MUL_LONG_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700643 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700644
645 // BE DIV_LONG_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700646 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700647
648 // BF REM_LONG_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700649 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700650
651 // C0 AND_LONG_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700652 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700653
654 // C1 OR_LONG_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700655 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700656
657 // C2 XOR_LONG_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700658 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700659
660 // C3 SHL_LONG_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700661 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700662
663 // C4 SHR_LONG_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700664 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700665
666 // C5 USHR_LONG_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700667 kAnMath | kAnLong,
buzbeeee17e0a2013-07-31 10:47:37 -0700668
669 // C6 ADD_FLOAT_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700670 kAnMath | kAnFp | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700671
672 // C7 SUB_FLOAT_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700673 kAnMath | kAnFp | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700674
675 // C8 MUL_FLOAT_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700676 kAnMath | kAnFp | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700677
678 // C9 DIV_FLOAT_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700679 kAnMath | kAnFp | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700680
681 // CA REM_FLOAT_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700682 kAnMath | kAnFp | kAnSingle,
buzbeeee17e0a2013-07-31 10:47:37 -0700683
684 // CB ADD_DOUBLE_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700685 kAnMath | kAnFp | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700686
687 // CC SUB_DOUBLE_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700688 kAnMath | kAnFp | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700689
690 // CD MUL_DOUBLE_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700691 kAnMath | kAnFp | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700692
693 // CE DIV_DOUBLE_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700694 kAnMath | kAnFp | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700695
696 // CF REM_DOUBLE_2ADDR vA, vB
Ian Rogers584cc792014-09-29 10:49:11 -0700697 kAnMath | kAnFp | kAnDouble,
buzbeeee17e0a2013-07-31 10:47:37 -0700698
699 // D0 ADD_INT_LIT16 vA, vB, #+CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700700 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700701
702 // D1 RSUB_INT vA, vB, #+CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700703 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700704
705 // D2 MUL_INT_LIT16 vA, vB, #+CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700706 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700707
708 // D3 DIV_INT_LIT16 vA, vB, #+CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700709 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700710
711 // D4 REM_INT_LIT16 vA, vB, #+CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700712 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700713
714 // D5 AND_INT_LIT16 vA, vB, #+CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700715 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700716
717 // D6 OR_INT_LIT16 vA, vB, #+CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700718 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700719
720 // D7 XOR_INT_LIT16 vA, vB, #+CCCC
Ian Rogers584cc792014-09-29 10:49:11 -0700721 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700722
723 // D8 ADD_INT_LIT8 vAA, vBB, #+CC
Ian Rogers584cc792014-09-29 10:49:11 -0700724 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700725
726 // D9 RSUB_INT_LIT8 vAA, vBB, #+CC
Ian Rogers584cc792014-09-29 10:49:11 -0700727 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700728
729 // DA MUL_INT_LIT8 vAA, vBB, #+CC
Ian Rogers584cc792014-09-29 10:49:11 -0700730 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700731
732 // DB DIV_INT_LIT8 vAA, vBB, #+CC
Ian Rogers584cc792014-09-29 10:49:11 -0700733 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700734
735 // DC REM_INT_LIT8 vAA, vBB, #+CC
Ian Rogers584cc792014-09-29 10:49:11 -0700736 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700737
738 // DD AND_INT_LIT8 vAA, vBB, #+CC
Ian Rogers584cc792014-09-29 10:49:11 -0700739 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700740
741 // DE OR_INT_LIT8 vAA, vBB, #+CC
Ian Rogers584cc792014-09-29 10:49:11 -0700742 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700743
744 // DF XOR_INT_LIT8 vAA, vBB, #+CC
Ian Rogers584cc792014-09-29 10:49:11 -0700745 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700746
747 // E0 SHL_INT_LIT8 vAA, vBB, #+CC
Ian Rogers584cc792014-09-29 10:49:11 -0700748 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700749
750 // E1 SHR_INT_LIT8 vAA, vBB, #+CC
Ian Rogers584cc792014-09-29 10:49:11 -0700751 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700752
753 // E2 USHR_INT_LIT8 vAA, vBB, #+CC
Ian Rogers584cc792014-09-29 10:49:11 -0700754 kAnMath | kAnInt,
buzbeeee17e0a2013-07-31 10:47:37 -0700755
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800756 // E3 IGET_QUICK
Ian Rogers584cc792014-09-29 10:49:11 -0700757 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700758
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800759 // E4 IGET_WIDE_QUICK
Ian Rogers584cc792014-09-29 10:49:11 -0700760 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700761
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800762 // E5 IGET_OBJECT_QUICK
Ian Rogers584cc792014-09-29 10:49:11 -0700763 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700764
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800765 // E6 IPUT_QUICK
Ian Rogers584cc792014-09-29 10:49:11 -0700766 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700767
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800768 // E7 IPUT_WIDE_QUICK
Ian Rogers584cc792014-09-29 10:49:11 -0700769 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700770
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800771 // E8 IPUT_OBJECT_QUICK
Ian Rogers584cc792014-09-29 10:49:11 -0700772 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700773
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800774 // E9 INVOKE_VIRTUAL_QUICK
Ian Rogers584cc792014-09-29 10:49:11 -0700775 kAnInvoke | kAnHeavyWeight,
buzbeeee17e0a2013-07-31 10:47:37 -0700776
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800777 // EA INVOKE_VIRTUAL_RANGE_QUICK
Ian Rogers584cc792014-09-29 10:49:11 -0700778 kAnInvoke | kAnHeavyWeight,
buzbeeee17e0a2013-07-31 10:47:37 -0700779
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800780 // EB IPUT_BOOLEAN_QUICK
Ian Rogers584cc792014-09-29 10:49:11 -0700781 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700782
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800783 // EC IPUT_BYTE_QUICK
Ian Rogers584cc792014-09-29 10:49:11 -0700784 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700785
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800786 // ED IPUT_CHAR_QUICK
787 kAnNone,
788
789 // EE IPUT_SHORT_QUICK
790 kAnNone,
791
792 // EF IGET_BOOLEAN_QUICK
793 kAnNone,
794
795 // F0 IGET_BYTE_QUICK
796 kAnNone,
797
798 // F1 IGET_CHAR_QUICK
799 kAnNone,
800
801 // F2 IGET_SHORT_QUICK
802 kAnNone,
803
804 // F3 UNUSED_F3
805 kAnNone,
806
807 // F4 UNUSED_F4
808 kAnNone,
809
810 // F5 UNUSED_F5
811 kAnNone,
812
813 // F6 UNUSED_F6
814 kAnNone,
815
816 // F7 UNUSED_F7
817 kAnNone,
818
819 // F8 UNUSED_F8
820 kAnNone,
821
822 // F9 UNUSED_F9
823 kAnNone,
824
825 // FA UNUSED_FA
826 kAnNone,
827
828 // FB UNUSED_FB
829 kAnNone,
830
831 // FC UNUSED_FC
832 kAnNone,
833
834 // FD UNUSED_FD
835 kAnNone,
836
837 // FE UNUSED_FE
Ian Rogers584cc792014-09-29 10:49:11 -0700838 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700839
840 // FF UNUSED_FF
Ian Rogers584cc792014-09-29 10:49:11 -0700841 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700842
843 // Beginning of extended MIR opcodes
844 // 100 MIR_PHI
Ian Rogers584cc792014-09-29 10:49:11 -0700845 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700846
847 // 101 MIR_COPY
Ian Rogers584cc792014-09-29 10:49:11 -0700848 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700849
850 // 102 MIR_FUSED_CMPL_FLOAT
Ian Rogers584cc792014-09-29 10:49:11 -0700851 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700852
853 // 103 MIR_FUSED_CMPG_FLOAT
Ian Rogers584cc792014-09-29 10:49:11 -0700854 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700855
856 // 104 MIR_FUSED_CMPL_DOUBLE
Ian Rogers584cc792014-09-29 10:49:11 -0700857 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700858
859 // 105 MIR_FUSED_CMPG_DOUBLE
Ian Rogers584cc792014-09-29 10:49:11 -0700860 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700861
862 // 106 MIR_FUSED_CMP_LONG
Ian Rogers584cc792014-09-29 10:49:11 -0700863 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700864
865 // 107 MIR_NOP
Ian Rogers584cc792014-09-29 10:49:11 -0700866 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700867
868 // 108 MIR_NULL_CHECK
Ian Rogers584cc792014-09-29 10:49:11 -0700869 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700870
871 // 109 MIR_RANGE_CHECK
Ian Rogers584cc792014-09-29 10:49:11 -0700872 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700873
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700874 // 10A MIR_DIV_ZERO_CHECK
Ian Rogers584cc792014-09-29 10:49:11 -0700875 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700876
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700877 // 10B MIR_CHECK
Ian Rogers584cc792014-09-29 10:49:11 -0700878 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700879
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700880 // 10C MIR_CHECKPART2
Ian Rogers584cc792014-09-29 10:49:11 -0700881 kAnNone,
buzbeeee17e0a2013-07-31 10:47:37 -0700882
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700883 // 10D MIR_SELECT
Ian Rogers584cc792014-09-29 10:49:11 -0700884 kAnNone,
Junmo Parke1fa1dd2014-08-04 17:57:57 +0900885
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700886 // 10E MirOpConstVector
Ian Rogers584cc792014-09-29 10:49:11 -0700887 kAnNone,
Junmo Parke1fa1dd2014-08-04 17:57:57 +0900888
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700889 // 10F MirOpMoveVector
Ian Rogers584cc792014-09-29 10:49:11 -0700890 kAnNone,
Junmo Parke1fa1dd2014-08-04 17:57:57 +0900891
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700892 // 110 MirOpPackedMultiply
Ian Rogers584cc792014-09-29 10:49:11 -0700893 kAnNone,
Junmo Parke1fa1dd2014-08-04 17:57:57 +0900894
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700895 // 111 MirOpPackedAddition
Ian Rogers584cc792014-09-29 10:49:11 -0700896 kAnNone,
Junmo Parke1fa1dd2014-08-04 17:57:57 +0900897
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700898 // 112 MirOpPackedSubtract
Ian Rogers584cc792014-09-29 10:49:11 -0700899 kAnNone,
Junmo Parke1fa1dd2014-08-04 17:57:57 +0900900
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700901 // 113 MirOpPackedShiftLeft
Ian Rogers584cc792014-09-29 10:49:11 -0700902 kAnNone,
Junmo Parke1fa1dd2014-08-04 17:57:57 +0900903
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700904 // 114 MirOpPackedSignedShiftRight
Ian Rogers584cc792014-09-29 10:49:11 -0700905 kAnNone,
Junmo Parke1fa1dd2014-08-04 17:57:57 +0900906
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700907 // 115 MirOpPackedUnsignedShiftRight
Ian Rogers584cc792014-09-29 10:49:11 -0700908 kAnNone,
Junmo Parke1fa1dd2014-08-04 17:57:57 +0900909
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700910 // 116 MirOpPackedAnd
Ian Rogers584cc792014-09-29 10:49:11 -0700911 kAnNone,
Junmo Parke1fa1dd2014-08-04 17:57:57 +0900912
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700913 // 117 MirOpPackedOr
Ian Rogers584cc792014-09-29 10:49:11 -0700914 kAnNone,
Junmo Parke1fa1dd2014-08-04 17:57:57 +0900915
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700916 // 118 MirOpPackedXor
Ian Rogers584cc792014-09-29 10:49:11 -0700917 kAnNone,
Junmo Parke1fa1dd2014-08-04 17:57:57 +0900918
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700919 // 119 MirOpPackedAddReduce
Ian Rogers584cc792014-09-29 10:49:11 -0700920 kAnNone,
Junmo Parke1fa1dd2014-08-04 17:57:57 +0900921
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700922 // 11A MirOpPackedReduce
Ian Rogers584cc792014-09-29 10:49:11 -0700923 kAnNone,
Junmo Parke1fa1dd2014-08-04 17:57:57 +0900924
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700925 // 11B MirOpPackedSet
Ian Rogers584cc792014-09-29 10:49:11 -0700926 kAnNone,
Junmo Parke1fa1dd2014-08-04 17:57:57 +0900927
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700928 // 11C MirOpReserveVectorRegisters
Ian Rogers584cc792014-09-29 10:49:11 -0700929 kAnNone,
Junmo Parke1fa1dd2014-08-04 17:57:57 +0900930
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700931 // 11D MirOpReturnVectorRegisters
Ian Rogers584cc792014-09-29 10:49:11 -0700932 kAnNone,
Jean Christophe Beylerb5bce7c2014-07-25 12:32:18 -0700933
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700934 // 11E MirOpMemBarrier
Ian Rogers584cc792014-09-29 10:49:11 -0700935 kAnNone,
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700936
937 // 11F MirOpPackedArrayGet
Ian Rogers584cc792014-09-29 10:49:11 -0700938 kAnArrayOp,
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -0700939
940 // 120 MirOpPackedArrayPut
Ian Rogers584cc792014-09-29 10:49:11 -0700941 kAnArrayOp,
buzbeeee17e0a2013-07-31 10:47:37 -0700942};
943
944struct MethodStats {
945 int dex_instructions;
946 int math_ops;
947 int fp_ops;
948 int array_ops;
949 int branch_ops;
950 int heavyweight_ops;
951 bool has_computational_loop;
buzbeefe9ca402013-08-21 09:48:11 -0700952 bool has_switch;
buzbeeee17e0a2013-07-31 10:47:37 -0700953 float math_ratio;
954 float fp_ratio;
955 float array_ratio;
956 float branch_ratio;
957 float heavyweight_ratio;
958};
959
960void MIRGraph::AnalyzeBlock(BasicBlock* bb, MethodStats* stats) {
961 if (bb->visited || (bb->block_type != kDalvikByteCode)) {
962 return;
963 }
964 bool computational_block = true;
965 bool has_math = false;
966 /*
967 * For the purposes of this scan, we want to treat the set of basic blocks broken
968 * by an exception edge as a single basic block. We'll scan forward along the fallthrough
969 * edges until we reach an explicit branch or return.
970 */
971 BasicBlock* ending_bb = bb;
Mathieu Chartier2cebb242015-04-21 16:50:40 -0700972 if (ending_bb->last_mir_insn != nullptr) {
Ian Rogers584cc792014-09-29 10:49:11 -0700973 uint32_t ending_flags = kAnalysisAttributes[ending_bb->last_mir_insn->dalvikInsn.opcode];
974 while ((ending_flags & kAnBranch) == 0) {
buzbee0d829482013-10-11 15:24:55 -0700975 ending_bb = GetBasicBlock(ending_bb->fall_through);
Ian Rogers584cc792014-09-29 10:49:11 -0700976 ending_flags = kAnalysisAttributes[ending_bb->last_mir_insn->dalvikInsn.opcode];
buzbeeee17e0a2013-07-31 10:47:37 -0700977 }
978 }
979 /*
980 * Ideally, we'd weight the operations by loop nesting level, but to do so we'd
981 * first need to do some expensive loop detection - and the point of this is to make
982 * an informed guess before investing in computation. However, we can cheaply detect
983 * many simple loop forms without having to do full dataflow analysis.
984 */
985 int loop_scale_factor = 1;
986 // Simple for and while loops
buzbee0d829482013-10-11 15:24:55 -0700987 if ((ending_bb->taken != NullBasicBlockId) && (ending_bb->fall_through == NullBasicBlockId)) {
988 if ((GetBasicBlock(ending_bb->taken)->taken == bb->id) ||
989 (GetBasicBlock(ending_bb->taken)->fall_through == bb->id)) {
buzbeeee17e0a2013-07-31 10:47:37 -0700990 loop_scale_factor = 25;
991 }
992 }
993 // Simple do-while loop
buzbee0d829482013-10-11 15:24:55 -0700994 if ((ending_bb->taken != NullBasicBlockId) && (ending_bb->taken == bb->id)) {
buzbeeee17e0a2013-07-31 10:47:37 -0700995 loop_scale_factor = 25;
996 }
997
998 BasicBlock* tbb = bb;
999 bool done = false;
1000 while (!done) {
1001 tbb->visited = true;
Mathieu Chartier2cebb242015-04-21 16:50:40 -07001002 for (MIR* mir = tbb->first_mir_insn; mir != nullptr; mir = mir->next) {
Jean Christophe Beyler2ab40eb2014-06-02 09:03:14 -07001003 if (MIR::DecodedInstruction::IsPseudoMirOp(mir->dalvikInsn.opcode)) {
buzbeeee17e0a2013-07-31 10:47:37 -07001004 // Skip any MIR pseudo-op.
1005 continue;
1006 }
Ian Rogers584cc792014-09-29 10:49:11 -07001007 uint16_t flags = kAnalysisAttributes[mir->dalvikInsn.opcode];
buzbeeee17e0a2013-07-31 10:47:37 -07001008 stats->dex_instructions += loop_scale_factor;
Ian Rogers584cc792014-09-29 10:49:11 -07001009 if ((flags & kAnBranch) == 0) {
1010 computational_block &= ((flags & kAnComputational) != 0);
buzbeeee17e0a2013-07-31 10:47:37 -07001011 } else {
1012 stats->branch_ops += loop_scale_factor;
1013 }
Ian Rogers584cc792014-09-29 10:49:11 -07001014 if ((flags & kAnMath) != 0) {
buzbeeee17e0a2013-07-31 10:47:37 -07001015 stats->math_ops += loop_scale_factor;
1016 has_math = true;
1017 }
Ian Rogers584cc792014-09-29 10:49:11 -07001018 if ((flags & kAnFp) != 0) {
buzbeeee17e0a2013-07-31 10:47:37 -07001019 stats->fp_ops += loop_scale_factor;
1020 }
Ian Rogers584cc792014-09-29 10:49:11 -07001021 if ((flags & kAnArrayOp) != 0) {
buzbeeee17e0a2013-07-31 10:47:37 -07001022 stats->array_ops += loop_scale_factor;
1023 }
Ian Rogers584cc792014-09-29 10:49:11 -07001024 if ((flags & kAnHeavyWeight) != 0) {
buzbeeee17e0a2013-07-31 10:47:37 -07001025 stats->heavyweight_ops += loop_scale_factor;
1026 }
Ian Rogers584cc792014-09-29 10:49:11 -07001027 if ((flags & kAnSwitch) != 0) {
buzbeefe9ca402013-08-21 09:48:11 -07001028 stats->has_switch = true;
1029 }
buzbeeee17e0a2013-07-31 10:47:37 -07001030 }
1031 if (tbb == ending_bb) {
1032 done = true;
1033 } else {
buzbee0d829482013-10-11 15:24:55 -07001034 tbb = GetBasicBlock(tbb->fall_through);
buzbeeee17e0a2013-07-31 10:47:37 -07001035 }
1036 }
1037 if (has_math && computational_block && (loop_scale_factor > 1)) {
1038 stats->has_computational_loop = true;
1039 }
1040}
1041
Andreas Gampe060e6fe2014-06-19 11:34:06 -07001042bool MIRGraph::ComputeSkipCompilation(MethodStats* stats, bool skip_default,
1043 std::string* skip_message) {
buzbeeee17e0a2013-07-31 10:47:37 -07001044 float count = stats->dex_instructions;
1045 stats->math_ratio = stats->math_ops / count;
1046 stats->fp_ratio = stats->fp_ops / count;
1047 stats->branch_ratio = stats->branch_ops / count;
1048 stats->array_ratio = stats->array_ops / count;
1049 stats->heavyweight_ratio = stats->heavyweight_ops / count;
1050
1051 if (cu_->enable_debug & (1 << kDebugShowFilterStats)) {
1052 LOG(INFO) << "STATS " << stats->dex_instructions << ", math:"
1053 << stats->math_ratio << ", fp:"
1054 << stats->fp_ratio << ", br:"
1055 << stats->branch_ratio << ", hw:"
buzbeefe9ca402013-08-21 09:48:11 -07001056 << stats->heavyweight_ratio << ", arr:"
buzbeeee17e0a2013-07-31 10:47:37 -07001057 << stats->array_ratio << ", hot:"
1058 << stats->has_computational_loop << ", "
1059 << PrettyMethod(cu_->method_idx, *cu_->dex_file);
1060 }
1061
1062 // Computation intensive?
1063 if (stats->has_computational_loop && (stats->heavyweight_ratio < 0.04)) {
1064 return false;
1065 }
1066
1067 // Complex, logic-intensive?
Brian Carlstrom6449c622014-02-10 23:48:36 -08001068 if (cu_->compiler_driver->GetCompilerOptions().IsSmallMethod(GetNumDalvikInsns()) &&
buzbeeee17e0a2013-07-31 10:47:37 -07001069 stats->branch_ratio > 0.3) {
1070 return false;
1071 }
1072
1073 // Significant floating point?
1074 if (stats->fp_ratio > 0.05) {
1075 return false;
1076 }
1077
1078 // Significant generic math?
1079 if (stats->math_ratio > 0.3) {
1080 return false;
1081 }
1082
1083 // If array-intensive, compiling is probably worthwhile.
1084 if (stats->array_ratio > 0.1) {
1085 return false;
1086 }
1087
buzbeefe9ca402013-08-21 09:48:11 -07001088 // Switch operations benefit greatly from compilation, so go ahead and spend the cycles.
1089 if (stats->has_switch) {
1090 return false;
1091 }
1092
1093 // If significant in size and high proportion of expensive operations, skip.
Brian Carlstrom6449c622014-02-10 23:48:36 -08001094 if (cu_->compiler_driver->GetCompilerOptions().IsSmallMethod(GetNumDalvikInsns()) &&
buzbeefe9ca402013-08-21 09:48:11 -07001095 (stats->heavyweight_ratio > 0.3)) {
Andreas Gampe060e6fe2014-06-19 11:34:06 -07001096 *skip_message = "Is a small method with heavyweight ratio " +
1097 std::to_string(stats->heavyweight_ratio);
buzbeeee17e0a2013-07-31 10:47:37 -07001098 return true;
1099 }
1100
1101 return skip_default;
1102}
1103
1104 /*
1105 * Will eventually want this to be a bit more sophisticated and happen at verification time.
buzbeeee17e0a2013-07-31 10:47:37 -07001106 */
Andreas Gampe060e6fe2014-06-19 11:34:06 -07001107bool MIRGraph::SkipCompilation(std::string* skip_message) {
Brian Carlstrom6449c622014-02-10 23:48:36 -08001108 const CompilerOptions& compiler_options = cu_->compiler_driver->GetCompilerOptions();
1109 CompilerOptions::CompilerFilter compiler_filter = compiler_options.GetCompilerFilter();
1110 if (compiler_filter == CompilerOptions::kEverything) {
buzbeeee17e0a2013-07-31 10:47:37 -07001111 return false;
1112 }
1113
buzbeeb1f1d642014-02-27 12:55:32 -08001114 // Contains a pattern we don't want to compile?
buzbee8c7a02a2014-06-14 12:33:09 -07001115 if (PuntToInterpreter()) {
Andreas Gampe060e6fe2014-06-19 11:34:06 -07001116 *skip_message = "Punt to interpreter set";
buzbeeb1f1d642014-02-27 12:55:32 -08001117 return true;
1118 }
1119
Ian Rogersaaf29b32014-11-07 17:05:19 -08001120 DCHECK(compiler_options.IsCompilationEnabled());
buzbeeee17e0a2013-07-31 10:47:37 -07001121
buzbeefe9ca402013-08-21 09:48:11 -07001122 // Set up compilation cutoffs based on current filter mode.
Ian Rogersaaf29b32014-11-07 17:05:19 -08001123 size_t small_cutoff;
1124 size_t default_cutoff;
buzbeefe9ca402013-08-21 09:48:11 -07001125 switch (compiler_filter) {
Brian Carlstrom6449c622014-02-10 23:48:36 -08001126 case CompilerOptions::kBalanced:
1127 small_cutoff = compiler_options.GetSmallMethodThreshold();
1128 default_cutoff = compiler_options.GetLargeMethodThreshold();
buzbeefe9ca402013-08-21 09:48:11 -07001129 break;
Brian Carlstrom6449c622014-02-10 23:48:36 -08001130 case CompilerOptions::kSpace:
1131 small_cutoff = compiler_options.GetTinyMethodThreshold();
1132 default_cutoff = compiler_options.GetSmallMethodThreshold();
buzbeefe9ca402013-08-21 09:48:11 -07001133 break;
Brian Carlstrom6449c622014-02-10 23:48:36 -08001134 case CompilerOptions::kSpeed:
Nicolas Geoffray88157ef2014-09-12 10:29:53 +01001135 case CompilerOptions::kTime:
Brian Carlstrom6449c622014-02-10 23:48:36 -08001136 small_cutoff = compiler_options.GetHugeMethodThreshold();
1137 default_cutoff = compiler_options.GetHugeMethodThreshold();
buzbeefe9ca402013-08-21 09:48:11 -07001138 break;
1139 default:
1140 LOG(FATAL) << "Unexpected compiler_filter_: " << compiler_filter;
Ian Rogersaaf29b32014-11-07 17:05:19 -08001141 UNREACHABLE();
buzbeefe9ca402013-08-21 09:48:11 -07001142 }
1143
1144 // If size < cutoff, assume we'll compile - but allow removal.
1145 bool skip_compilation = (GetNumDalvikInsns() >= default_cutoff);
Andreas Gampe060e6fe2014-06-19 11:34:06 -07001146 if (skip_compilation) {
1147 *skip_message = "#Insns >= default_cutoff: " + std::to_string(GetNumDalvikInsns());
1148 }
buzbeefe9ca402013-08-21 09:48:11 -07001149
1150 /*
1151 * Filter 1: Huge methods are likely to be machine generated, but some aren't.
1152 * If huge, assume we won't compile, but allow futher analysis to turn it back on.
1153 */
Brian Carlstrom6449c622014-02-10 23:48:36 -08001154 if (compiler_options.IsHugeMethod(GetNumDalvikInsns())) {
buzbeefe9ca402013-08-21 09:48:11 -07001155 skip_compilation = true;
Andreas Gampe060e6fe2014-06-19 11:34:06 -07001156 *skip_message = "Huge method: " + std::to_string(GetNumDalvikInsns());
buzbeeb48819d2013-09-14 16:15:25 -07001157 // If we're got a huge number of basic blocks, don't bother with further analysis.
Vladimir Markoffda4992014-12-18 17:05:58 +00001158 if (static_cast<size_t>(GetNumBlocks()) > (compiler_options.GetHugeMethodThreshold() / 2)) {
buzbeeb48819d2013-09-14 16:15:25 -07001159 return true;
1160 }
Brian Carlstrom6449c622014-02-10 23:48:36 -08001161 } else if (compiler_options.IsLargeMethod(GetNumDalvikInsns()) &&
buzbeeb48819d2013-09-14 16:15:25 -07001162 /* If it's large and contains no branches, it's likely to be machine generated initialization */
1163 (GetBranchCount() == 0)) {
Andreas Gampe060e6fe2014-06-19 11:34:06 -07001164 *skip_message = "Large method with no branches";
buzbeeb48819d2013-09-14 16:15:25 -07001165 return true;
Brian Carlstrom6449c622014-02-10 23:48:36 -08001166 } else if (compiler_filter == CompilerOptions::kSpeed) {
buzbeefe9ca402013-08-21 09:48:11 -07001167 // If not huge, compile.
1168 return false;
buzbeeee17e0a2013-07-31 10:47:37 -07001169 }
1170
1171 // Filter 2: Skip class initializers.
1172 if (((cu_->access_flags & kAccConstructor) != 0) && ((cu_->access_flags & kAccStatic) != 0)) {
Andreas Gampe060e6fe2014-06-19 11:34:06 -07001173 *skip_message = "Class initializer";
buzbeeee17e0a2013-07-31 10:47:37 -07001174 return true;
1175 }
1176
1177 // Filter 3: if this method is a special pattern, go ahead and emit the canned pattern.
Vladimir Marko5816ed42013-11-27 17:04:20 +00001178 if (cu_->compiler_driver->GetMethodInlinerMap() != nullptr &&
1179 cu_->compiler_driver->GetMethodInlinerMap()->GetMethodInliner(cu_->dex_file)
1180 ->IsSpecial(cu_->method_idx)) {
buzbeeee17e0a2013-07-31 10:47:37 -07001181 return false;
1182 }
1183
buzbeefe9ca402013-08-21 09:48:11 -07001184 // Filter 4: if small, just compile.
buzbeeee17e0a2013-07-31 10:47:37 -07001185 if (GetNumDalvikInsns() < small_cutoff) {
1186 return false;
1187 }
1188
1189 // Analyze graph for:
1190 // o floating point computation
1191 // o basic blocks contained in loop with heavy arithmetic.
1192 // o proportion of conditional branches.
1193
1194 MethodStats stats;
1195 memset(&stats, 0, sizeof(stats));
1196
1197 ClearAllVisitedFlags();
buzbee56c71782013-09-05 17:13:19 -07001198 AllNodesIterator iter(this);
Mathieu Chartier2cebb242015-04-21 16:50:40 -07001199 for (BasicBlock* bb = iter.Next(); bb != nullptr; bb = iter.Next()) {
buzbeeee17e0a2013-07-31 10:47:37 -07001200 AnalyzeBlock(bb, &stats);
1201 }
1202
Andreas Gampe060e6fe2014-06-19 11:34:06 -07001203 return ComputeSkipCompilation(&stats, skip_compilation, skip_message);
buzbeeee17e0a2013-07-31 10:47:37 -07001204}
1205
Vladimir Markobe0e5462014-02-26 11:24:15 +00001206void MIRGraph::DoCacheFieldLoweringInfo() {
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001207 static constexpr uint32_t kFieldIndexFlagQuickened = 0x80000000;
Vladimir Markoa24122d2014-03-07 10:18:14 +00001208 // All IGET/IPUT/SGET/SPUT instructions take 2 code units and there must also be a RETURN.
Razvan A Lupusoru75035972014-09-11 15:24:59 -07001209 const uint32_t max_refs = (GetNumDalvikInsns() - 1u) / 2u;
Vladimir Markoa24122d2014-03-07 10:18:14 +00001210 ScopedArenaAllocator allocator(&cu_->arena_stack);
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001211 auto* field_idxs = allocator.AllocArray<uint32_t>(max_refs, kArenaAllocMisc);
1212 DexMemAccessType* field_types = allocator.AllocArray<DexMemAccessType>(
1213 max_refs, kArenaAllocMisc);
Vladimir Markobe0e5462014-02-26 11:24:15 +00001214 // Find IGET/IPUT/SGET/SPUT insns, store IGET/IPUT fields at the beginning, SGET/SPUT at the end.
1215 size_t ifield_pos = 0u;
Vladimir Markoa24122d2014-03-07 10:18:14 +00001216 size_t sfield_pos = max_refs;
Vladimir Markobe0e5462014-02-26 11:24:15 +00001217 AllNodesIterator iter(this);
1218 for (BasicBlock* bb = iter.Next(); bb != nullptr; bb = iter.Next()) {
1219 if (bb->block_type != kDalvikByteCode) {
1220 continue;
1221 }
1222 for (MIR* mir = bb->first_mir_insn; mir != nullptr; mir = mir->next) {
Vladimir Markoaf6925b2014-10-31 16:37:32 +00001223 // Get field index and try to find it among existing indexes. If found, it's usually among
1224 // the last few added, so we'll start the search from ifield_pos/sfield_pos. Though this
1225 // is a linear search, it actually performs much better than map based approach.
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001226 const bool is_iget_or_iput = IsInstructionIGetOrIPut(mir->dalvikInsn.opcode);
1227 const bool is_iget_or_iput_quick = IsInstructionIGetQuickOrIPutQuick(mir->dalvikInsn.opcode);
1228 if (is_iget_or_iput || is_iget_or_iput_quick) {
1229 uint32_t field_idx;
1230 DexMemAccessType access_type;
1231 if (is_iget_or_iput) {
1232 field_idx = mir->dalvikInsn.vC;
1233 access_type = IGetOrIPutMemAccessType(mir->dalvikInsn.opcode);
1234 } else {
1235 DCHECK(is_iget_or_iput_quick);
1236 // Set kFieldIndexFlagQuickened so that we don't deduplicate against non quickened field
1237 // indexes.
1238 field_idx = mir->offset | kFieldIndexFlagQuickened;
1239 access_type = IGetQuickOrIPutQuickMemAccessType(mir->dalvikInsn.opcode);
1240 }
Vladimir Markoaf6925b2014-10-31 16:37:32 +00001241 size_t i = ifield_pos;
1242 while (i != 0u && field_idxs[i - 1] != field_idx) {
1243 --i;
Vladimir Markobe0e5462014-02-26 11:24:15 +00001244 }
Vladimir Markoaf6925b2014-10-31 16:37:32 +00001245 if (i != 0u) {
1246 mir->meta.ifield_lowering_info = i - 1;
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001247 DCHECK_EQ(field_types[i - 1], access_type);
Vladimir Markoaf6925b2014-10-31 16:37:32 +00001248 } else {
1249 mir->meta.ifield_lowering_info = ifield_pos;
1250 field_idxs[ifield_pos] = field_idx;
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001251 field_types[ifield_pos] = access_type;
Vladimir Markoaf6925b2014-10-31 16:37:32 +00001252 ++ifield_pos;
1253 }
1254 } else if (IsInstructionSGetOrSPut(mir->dalvikInsn.opcode)) {
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001255 auto field_idx = mir->dalvikInsn.vB;
Vladimir Markoaf6925b2014-10-31 16:37:32 +00001256 size_t i = sfield_pos;
1257 while (i != max_refs && field_idxs[i] != field_idx) {
1258 ++i;
1259 }
1260 if (i != max_refs) {
1261 mir->meta.sfield_lowering_info = max_refs - i - 1u;
1262 DCHECK_EQ(field_types[i], SGetOrSPutMemAccessType(mir->dalvikInsn.opcode));
1263 } else {
1264 mir->meta.sfield_lowering_info = max_refs - sfield_pos;
1265 --sfield_pos;
1266 field_idxs[sfield_pos] = field_idx;
1267 field_types[sfield_pos] = SGetOrSPutMemAccessType(mir->dalvikInsn.opcode);
1268 }
Vladimir Markobe0e5462014-02-26 11:24:15 +00001269 }
Vladimir Markoaf6925b2014-10-31 16:37:32 +00001270 DCHECK_LE(ifield_pos, sfield_pos);
Vladimir Markobe0e5462014-02-26 11:24:15 +00001271 }
1272 }
1273
1274 if (ifield_pos != 0u) {
1275 // Resolve instance field infos.
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001276 DCHECK_EQ(ifield_lowering_infos_.size(), 0u);
1277 ifield_lowering_infos_.reserve(ifield_pos);
Vladimir Markobe0e5462014-02-26 11:24:15 +00001278 for (size_t pos = 0u; pos != ifield_pos; ++pos) {
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001279 const uint32_t field_idx = field_idxs[pos];
1280 const bool is_quickened = (field_idx & kFieldIndexFlagQuickened) != 0;
1281 const uint32_t masked_field_idx = field_idx & ~kFieldIndexFlagQuickened;
1282 CHECK_LT(masked_field_idx, 1u << 16);
1283 ifield_lowering_infos_.push_back(
1284 MirIFieldLoweringInfo(masked_field_idx, field_types[pos], is_quickened));
Vladimir Markobe0e5462014-02-26 11:24:15 +00001285 }
1286 MirIFieldLoweringInfo::Resolve(cu_->compiler_driver, GetCurrentDexCompilationUnit(),
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001287 ifield_lowering_infos_.data(), ifield_pos);
Vladimir Markobe0e5462014-02-26 11:24:15 +00001288 }
1289
Vladimir Markoa24122d2014-03-07 10:18:14 +00001290 if (sfield_pos != max_refs) {
Vladimir Markobe0e5462014-02-26 11:24:15 +00001291 // Resolve static field infos.
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001292 DCHECK_EQ(sfield_lowering_infos_.size(), 0u);
1293 sfield_lowering_infos_.reserve(max_refs - sfield_pos);
Vladimir Markoa24122d2014-03-07 10:18:14 +00001294 for (size_t pos = max_refs; pos != sfield_pos;) {
Vladimir Markobe0e5462014-02-26 11:24:15 +00001295 --pos;
Vladimir Markoaf6925b2014-10-31 16:37:32 +00001296 sfield_lowering_infos_.push_back(MirSFieldLoweringInfo(field_idxs[pos], field_types[pos]));
Vladimir Markobe0e5462014-02-26 11:24:15 +00001297 }
1298 MirSFieldLoweringInfo::Resolve(cu_->compiler_driver, GetCurrentDexCompilationUnit(),
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001299 sfield_lowering_infos_.data(), max_refs - sfield_pos);
Vladimir Markobe0e5462014-02-26 11:24:15 +00001300 }
1301}
1302
Vladimir Markof096aad2014-01-23 15:51:58 +00001303void MIRGraph::DoCacheMethodLoweringInfo() {
1304 static constexpr uint16_t invoke_types[] = { kVirtual, kSuper, kDirect, kStatic, kInterface };
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001305 static constexpr uint32_t kMethodIdxFlagQuickened = 0x80000000;
Vladimir Markof096aad2014-01-23 15:51:58 +00001306
1307 // Embed the map value in the entry to avoid extra padding in 64-bit builds.
1308 struct MapEntry {
1309 // Map key: target_method_idx, invoke_type, devirt_target. Ordered to avoid padding.
1310 const MethodReference* devirt_target;
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001311 uint32_t target_method_idx;
1312 uint32_t vtable_idx;
Vladimir Markof096aad2014-01-23 15:51:58 +00001313 uint16_t invoke_type;
1314 // Map value.
1315 uint32_t lowering_info_index;
1316 };
1317
Vladimir Markof096aad2014-01-23 15:51:58 +00001318 struct MapEntryComparator {
1319 bool operator()(const MapEntry& lhs, const MapEntry& rhs) const {
1320 if (lhs.target_method_idx != rhs.target_method_idx) {
1321 return lhs.target_method_idx < rhs.target_method_idx;
1322 }
1323 if (lhs.invoke_type != rhs.invoke_type) {
1324 return lhs.invoke_type < rhs.invoke_type;
1325 }
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001326 if (lhs.vtable_idx != rhs.vtable_idx) {
1327 return lhs.vtable_idx < rhs.vtable_idx;
1328 }
Vladimir Markof096aad2014-01-23 15:51:58 +00001329 if (lhs.devirt_target != rhs.devirt_target) {
1330 if (lhs.devirt_target == nullptr) {
1331 return true;
1332 }
1333 if (rhs.devirt_target == nullptr) {
1334 return false;
1335 }
1336 return devirt_cmp(*lhs.devirt_target, *rhs.devirt_target);
1337 }
1338 return false;
1339 }
1340 MethodReferenceComparator devirt_cmp;
1341 };
1342
Vladimir Markof096aad2014-01-23 15:51:58 +00001343 ScopedArenaAllocator allocator(&cu_->arena_stack);
1344
1345 // All INVOKE instructions take 3 code units and there must also be a RETURN.
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001346 const uint32_t max_refs = (GetNumDalvikInsns() - 1u) / 3u;
Vladimir Markof096aad2014-01-23 15:51:58 +00001347
Vladimir Marko69f08ba2014-04-11 12:28:11 +01001348 // Map invoke key (see MapEntry) to lowering info index and vice versa.
Vladimir Markof096aad2014-01-23 15:51:58 +00001349 // The invoke_map and sequential entries are essentially equivalent to Boost.MultiIndex's
1350 // multi_index_container with one ordered index and one sequential index.
Vladimir Marko69f08ba2014-04-11 12:28:11 +01001351 ScopedArenaSet<MapEntry, MapEntryComparator> invoke_map(MapEntryComparator(),
1352 allocator.Adapter());
Vladimir Markoe4fcc5b2015-02-13 10:28:29 +00001353 const MapEntry** sequential_entries =
1354 allocator.AllocArray<const MapEntry*>(max_refs, kArenaAllocMisc);
Vladimir Markof096aad2014-01-23 15:51:58 +00001355
1356 // Find INVOKE insns and their devirtualization targets.
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001357 const VerifiedMethod* verified_method = GetCurrentDexCompilationUnit()->GetVerifiedMethod();
Vladimir Markof096aad2014-01-23 15:51:58 +00001358 AllNodesIterator iter(this);
1359 for (BasicBlock* bb = iter.Next(); bb != nullptr; bb = iter.Next()) {
1360 if (bb->block_type != kDalvikByteCode) {
1361 continue;
1362 }
1363 for (MIR* mir = bb->first_mir_insn; mir != nullptr; mir = mir->next) {
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001364 const bool is_quick_invoke = IsInstructionQuickInvoke(mir->dalvikInsn.opcode);
1365 const bool is_invoke = IsInstructionInvoke(mir->dalvikInsn.opcode);
1366 if (is_quick_invoke || is_invoke) {
1367 uint32_t vtable_index = 0;
1368 uint32_t target_method_idx = 0;
1369 uint32_t invoke_type_idx = 0; // Default to virtual (in case of quickened).
1370 DCHECK_EQ(invoke_types[invoke_type_idx], kVirtual);
1371 if (is_quick_invoke) {
1372 // We need to store the vtable index since we can't necessarily recreate it at resolve
1373 // phase if the dequickening resolved to an interface method.
1374 vtable_index = mir->dalvikInsn.vB;
1375 // Fake up the method index by storing the mir offset so that we can read the dequicken
1376 // info in resolve.
1377 target_method_idx = mir->offset | kMethodIdxFlagQuickened;
1378 } else {
1379 DCHECK(is_invoke);
1380 // Decode target method index and invoke type.
1381 invoke_type_idx = InvokeInstructionType(mir->dalvikInsn.opcode);
1382 target_method_idx = mir->dalvikInsn.vB;
1383 }
Vladimir Markof096aad2014-01-23 15:51:58 +00001384 // Find devirtualization target.
1385 // TODO: The devirt map is ordered by the dex pc here. Is there a way to get INVOKEs
1386 // ordered by dex pc as well? That would allow us to keep an iterator to devirt targets
1387 // and increment it as needed instead of making O(log n) lookups.
Vladimir Markof096aad2014-01-23 15:51:58 +00001388 const MethodReference* devirt_target = verified_method->GetDevirtTarget(mir->offset);
Vladimir Markof096aad2014-01-23 15:51:58 +00001389 // Try to insert a new entry. If the insertion fails, we will have found an old one.
1390 MapEntry entry = {
1391 devirt_target,
1392 target_method_idx,
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001393 vtable_index,
Vladimir Markof096aad2014-01-23 15:51:58 +00001394 invoke_types[invoke_type_idx],
1395 static_cast<uint32_t>(invoke_map.size())
1396 };
1397 auto it = invoke_map.insert(entry).first; // Iterator to either the old or the new entry.
1398 mir->meta.method_lowering_info = it->lowering_info_index;
1399 // If we didn't actually insert, this will just overwrite an existing value with the same.
1400 sequential_entries[it->lowering_info_index] = &*it;
1401 }
1402 }
1403 }
Vladimir Markof096aad2014-01-23 15:51:58 +00001404 if (invoke_map.empty()) {
1405 return;
1406 }
Vladimir Markof096aad2014-01-23 15:51:58 +00001407 // Prepare unique method infos, set method info indexes for their MIRs.
Vladimir Markof096aad2014-01-23 15:51:58 +00001408 const size_t count = invoke_map.size();
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001409 method_lowering_infos_.reserve(count);
Vladimir Markof096aad2014-01-23 15:51:58 +00001410 for (size_t pos = 0u; pos != count; ++pos) {
1411 const MapEntry* entry = sequential_entries[pos];
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001412 const bool is_quick = (entry->target_method_idx & kMethodIdxFlagQuickened) != 0;
1413 const uint32_t masked_method_idx = entry->target_method_idx & ~kMethodIdxFlagQuickened;
1414 MirMethodLoweringInfo method_info(masked_method_idx,
1415 static_cast<InvokeType>(entry->invoke_type), is_quick);
Vladimir Markof096aad2014-01-23 15:51:58 +00001416 if (entry->devirt_target != nullptr) {
1417 method_info.SetDevirtualizationTarget(*entry->devirt_target);
1418 }
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001419 if (is_quick) {
1420 method_info.SetVTableIndex(entry->vtable_idx);
1421 }
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001422 method_lowering_infos_.push_back(method_info);
Vladimir Markof096aad2014-01-23 15:51:58 +00001423 }
1424 MirMethodLoweringInfo::Resolve(cu_->compiler_driver, GetCurrentDexCompilationUnit(),
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001425 method_lowering_infos_.data(), count);
Vladimir Markof096aad2014-01-23 15:51:58 +00001426}
1427
Andreas Gampe060e6fe2014-06-19 11:34:06 -07001428bool MIRGraph::SkipCompilationByName(const std::string& methodname) {
Dave Allison39c3bfb2014-01-28 18:33:52 -08001429 return cu_->compiler_driver->SkipCompilation(methodname);
1430}
1431
buzbeeee17e0a2013-07-31 10:47:37 -07001432} // namespace art