blob: edba5020d40d53a2529fdd53de4bdef6aea6a5e9 [file] [log] [blame]
Elliott Hughes2faa5f12012-01-30 14:42:07 -08001/*
2 * Copyright (C) 2011 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 */
Carl Shapiro12eb78e2011-06-24 14:51:06 -070016
Brian Carlstromfc0e3212013-07-17 14:40:12 -070017#ifndef ART_RUNTIME_DEX_INSTRUCTION_H_
18#define ART_RUNTIME_DEX_INSTRUCTION_H_
Carl Shapiro12eb78e2011-06-24 14:51:06 -070019
Elliott Hughes07ed66b2012-12-12 18:34:25 -080020#include "base/logging.h"
Elliott Hughes76160052012-12-12 16:31:20 -080021#include "base/macros.h"
Brian Carlstrom578bbdc2011-07-21 14:07:47 -070022#include "globals.h"
Carl Shapiro12eb78e2011-06-24 14:51:06 -070023
Sebastien Hertz807a2562013-04-15 09:33:39 +020024typedef uint8_t uint4_t;
25typedef int8_t int4_t;
26
Carl Shapiro12eb78e2011-06-24 14:51:06 -070027namespace art {
28
Ian Rogersd81871c2011-10-03 13:57:23 -070029class DexFile;
30
Elliott Hughesadb8c672012-03-06 16:49:32 -080031enum {
32 kNumPackedOpcodes = 0x100
33};
34
Carl Shapiro12eb78e2011-06-24 14:51:06 -070035class Instruction {
36 public:
Carl Shapiroe4c1ce42011-07-09 02:31:57 -070037 // NOP-encoded switch-statement signatures.
38 enum {
39 kPackedSwitchSignature = 0x0100,
40 kSparseSwitchSignature = 0x0200,
Elliott Hughesadb8c672012-03-06 16:49:32 -080041 kArrayDataSignature = 0x0300,
Carl Shapiroe4c1ce42011-07-09 02:31:57 -070042 };
43
Ian Rogersdf1ce912012-11-27 17:07:11 -080044 struct PACKED(4) PackedSwitchPayload {
Logan Chien19c350a2012-05-01 19:21:32 +080045 const uint16_t ident;
46 const uint16_t case_count;
47 const int32_t first_key;
48 const int32_t targets[];
Dragos Sbirlea39f99272013-06-25 13:17:36 -070049
Logan Chien19c350a2012-05-01 19:21:32 +080050 private:
51 DISALLOW_COPY_AND_ASSIGN(PackedSwitchPayload);
52 };
53
Ian Rogersdf1ce912012-11-27 17:07:11 -080054 struct PACKED(4) SparseSwitchPayload {
Logan Chien19c350a2012-05-01 19:21:32 +080055 const uint16_t ident;
56 const uint16_t case_count;
57 const int32_t keys_and_targets[];
58
59 public:
60 const int32_t* GetKeys() const {
61 return keys_and_targets;
62 }
63
64 const int32_t* GetTargets() const {
65 return keys_and_targets + case_count;
66 }
67
68 private:
69 DISALLOW_COPY_AND_ASSIGN(SparseSwitchPayload);
70 };
71
Ian Rogersdf1ce912012-11-27 17:07:11 -080072 struct PACKED(4) ArrayDataPayload {
Logan Chien19c350a2012-05-01 19:21:32 +080073 const uint16_t ident;
74 const uint16_t element_width;
75 const uint32_t element_count;
76 const uint8_t data[];
Dragos Sbirlea39f99272013-06-25 13:17:36 -070077
Logan Chien19c350a2012-05-01 19:21:32 +080078 private:
79 DISALLOW_COPY_AND_ASSIGN(ArrayDataPayload);
80 };
81
Ian Rogersa75a0132012-09-28 11:41:42 -070082 // TODO: the code layout below is deliberate to avoid this enum being picked up by
83 // generate-operator-out.py.
84 enum Code
Brian Carlstrom7934ac22013-07-26 10:54:15 -070085 { // NOLINT(whitespace/braces)
jeffhaoba5ebb92011-08-25 17:24:37 -070086#define INSTRUCTION_ENUM(opcode, cname, p, f, r, i, a, v) cname = opcode,
Brian Carlstrom578bbdc2011-07-21 14:07:47 -070087#include "dex_instruction_list.h"
Carl Shapiro12eb78e2011-06-24 14:51:06 -070088 DEX_INSTRUCTION_LIST(INSTRUCTION_ENUM)
Carl Shapirod84f49c2011-06-29 00:27:46 -070089#undef DEX_INSTRUCTION_LIST
Carl Shapiro12eb78e2011-06-24 14:51:06 -070090#undef INSTRUCTION_ENUM
Brian Carlstrom02c8cc62013-07-18 15:54:44 -070091 };
Carl Shapiro12eb78e2011-06-24 14:51:06 -070092
Elliott Hughesadb8c672012-03-06 16:49:32 -080093 enum Format {
Carl Shapiroe4c1ce42011-07-09 02:31:57 -070094 k10x, // op
95 k12x, // op vA, vB
96 k11n, // op vA, #+B
97 k11x, // op vAA
98 k10t, // op +AA
99 k20t, // op +AAAA
100 k22x, // op vAA, vBBBB
101 k21t, // op vAA, +BBBB
102 k21s, // op vAA, #+BBBB
103 k21h, // op vAA, #+BBBB00000[00000000]
104 k21c, // op vAA, thing@BBBB
105 k23x, // op vAA, vBB, vCC
106 k22b, // op vAA, vBB, #+CC
107 k22t, // op vA, vB, +CCCC
108 k22s, // op vA, vB, #+CCCC
109 k22c, // op vA, vB, thing@CCCC
110 k32x, // op vAAAA, vBBBB
111 k30t, // op +AAAAAAAA
112 k31t, // op vAA, +BBBBBBBB
113 k31i, // op vAA, #+BBBBBBBB
114 k31c, // op vAA, thing@BBBBBBBB
115 k35c, // op {vC, vD, vE, vF, vG}, thing@BBBB (B: count, A: vG)
116 k3rc, // op {vCCCC .. v(CCCC+AA-1)}, meth@BBBB
117 k51l, // op vAA, #+BBBBBBBBBBBBBBBB
118 };
119
120 enum Flags {
Jean Christophe Beylerc3db20b2014-05-05 21:09:40 -0700121 kBranch = 0x000001, // conditional or unconditional branch
122 kContinue = 0x000002, // flow can continue to next statement
123 kSwitch = 0x000004, // switch statement
124 kThrow = 0x000008, // could cause an exception to be thrown
125 kReturn = 0x000010, // returns, no additional statements
126 kInvoke = 0x000020, // a flavor of invoke
127 kUnconditional = 0x000040, // unconditional branch
128 kAdd = 0x000080, // addition
129 kSubtract = 0x000100, // subtract
130 kMultiply = 0x000200, // multiply
131 kDivide = 0x000400, // division
132 kRemainder = 0x000800, // remainder
133 kAnd = 0x001000, // and
134 kOr = 0x002000, // or
135 kXor = 0x004000, // xor
136 kShl = 0x008000, // shl
137 kShr = 0x010000, // shr
138 kUshr = 0x020000, // ushr
139 kCast = 0x040000, // cast
140 kStore = 0x080000, // store opcode
141 kLoad = 0x100000, // load opcode
142 kClobber = 0x200000, // clobbers memory in a big way (not just a write)
143 kRegCFieldOrConstant = 0x400000, // is the third virtual register a field or literal constant (vC)
144 kRegBFieldOrConstant = 0x800000, // is the second virtual register a field or literal constant (vB)
Carl Shapiroe4c1ce42011-07-09 02:31:57 -0700145 };
146
jeffhaoba5ebb92011-08-25 17:24:37 -0700147 enum VerifyFlag {
Ian Rogers5fb22a92014-06-13 10:31:28 -0700148 kVerifyNone = 0x000000,
149 kVerifyRegA = 0x000001,
150 kVerifyRegAWide = 0x000002,
151 kVerifyRegB = 0x000004,
152 kVerifyRegBField = 0x000008,
153 kVerifyRegBMethod = 0x000010,
154 kVerifyRegBNewInstance = 0x000020,
155 kVerifyRegBString = 0x000040,
156 kVerifyRegBType = 0x000080,
157 kVerifyRegBWide = 0x000100,
158 kVerifyRegC = 0x000200,
159 kVerifyRegCField = 0x000400,
160 kVerifyRegCNewArray = 0x000800,
161 kVerifyRegCType = 0x001000,
162 kVerifyRegCWide = 0x002000,
163 kVerifyArrayData = 0x004000,
164 kVerifyBranchTarget = 0x008000,
165 kVerifySwitchTargets = 0x010000,
166 kVerifyVarArg = 0x020000,
167 kVerifyVarArgRange = 0x040000,
168 kVerifyRuntimeOnly = 0x080000,
169 kVerifyError = 0x100000,
jeffhaoba5ebb92011-08-25 17:24:37 -0700170 };
171
Ian Rogers29a26482014-05-02 15:27:29 -0700172 static constexpr uint32_t kMaxVarArgRegs = 5;
jeffhaoba5ebb92011-08-25 17:24:37 -0700173
Elliott Hughesadb8c672012-03-06 16:49:32 -0800174 // Returns the size (in 2 byte code units) of this instruction.
Ian Rogersa75a0132012-09-28 11:41:42 -0700175 size_t SizeInCodeUnits() const {
176 int result = kInstructionSizeInCodeUnits[Opcode()];
177 if (UNLIKELY(result < 0)) {
178 return SizeInCodeUnitsComplexOpcode();
179 } else {
180 return static_cast<size_t>(result);
181 }
182 }
Carl Shapiro12eb78e2011-06-24 14:51:06 -0700183
Sebastien Hertz92c607f2013-06-04 16:18:52 +0200184 // Reads an instruction out of the stream at the specified address.
185 static const Instruction* At(const uint16_t* code) {
186 DCHECK(code != NULL);
187 return reinterpret_cast<const Instruction*>(code);
188 }
189
190 // Reads an instruction out of the stream from the current address plus an offset.
191 const Instruction* RelativeAt(int32_t offset) const {
192 return At(reinterpret_cast<const uint16_t*>(this) + offset);
193 }
194
Carl Shapiro12eb78e2011-06-24 14:51:06 -0700195 // Returns a pointer to the next instruction in the stream.
Ian Rogersa75a0132012-09-28 11:41:42 -0700196 const Instruction* Next() const {
Sebastien Hertz92c607f2013-06-04 16:18:52 +0200197 return RelativeAt(SizeInCodeUnits());
Ian Rogersa75a0132012-09-28 11:41:42 -0700198 }
Carl Shapiroe4c1ce42011-07-09 02:31:57 -0700199
Jeff Hao9cec2472013-05-14 18:17:06 -0700200 // Returns a pointer to the instruction after this 1xx instruction in the stream.
201 const Instruction* Next_1xx() const {
202 DCHECK(FormatOf(Opcode()) >= k10x && FormatOf(Opcode()) <= k10t);
Sebastien Hertz92c607f2013-06-04 16:18:52 +0200203 return RelativeAt(1);
Jeff Hao9cec2472013-05-14 18:17:06 -0700204 }
205
206 // Returns a pointer to the instruction after this 2xx instruction in the stream.
207 const Instruction* Next_2xx() const {
208 DCHECK(FormatOf(Opcode()) >= k20t && FormatOf(Opcode()) <= k22c);
Sebastien Hertz92c607f2013-06-04 16:18:52 +0200209 return RelativeAt(2);
Jeff Hao9cec2472013-05-14 18:17:06 -0700210 }
211
212 // Returns a pointer to the instruction after this 3xx instruction in the stream.
213 const Instruction* Next_3xx() const {
214 DCHECK(FormatOf(Opcode()) >= k32x && FormatOf(Opcode()) <= k3rc);
Sebastien Hertz92c607f2013-06-04 16:18:52 +0200215 return RelativeAt(3);
Jeff Hao9cec2472013-05-14 18:17:06 -0700216 }
217
218 // Returns a pointer to the instruction after this 51l instruction in the stream.
Sebastien Hertz92c607f2013-06-04 16:18:52 +0200219 const Instruction* Next_51l() const {
220 DCHECK(FormatOf(Opcode()) == k51l);
221 return RelativeAt(5);
222 }
Jeff Hao9cec2472013-05-14 18:17:06 -0700223
Elliott Hughesadb8c672012-03-06 16:49:32 -0800224 // Returns the name of this instruction's opcode.
Carl Shapiroe4c1ce42011-07-09 02:31:57 -0700225 const char* Name() const {
Elliott Hughesadb8c672012-03-06 16:49:32 -0800226 return Instruction::Name(Opcode());
227 }
228
229 // Returns the name of the given opcode.
230 static const char* Name(Code opcode) {
231 return kInstructionNames[opcode];
Carl Shapiroe4c1ce42011-07-09 02:31:57 -0700232 }
Carl Shapiro12eb78e2011-06-24 14:51:06 -0700233
Sebastien Hertz807a2562013-04-15 09:33:39 +0200234 // VRegA
Dragos Sbirlea8cc51622013-06-21 09:20:34 -0700235 bool HasVRegA() const;
Dragos Sbirlead25de7a2013-06-21 09:20:34 -0700236 int32_t VRegA() const;
Sebastien Hertz3b588e02013-09-11 14:33:18 +0200237
238 int8_t VRegA_10t() const {
239 return VRegA_10t(Fetch16(0));
240 }
241 uint8_t VRegA_10x() const {
242 return VRegA_10x(Fetch16(0));
243 }
244 uint4_t VRegA_11n() const {
245 return VRegA_11n(Fetch16(0));
246 }
247 uint8_t VRegA_11x() const {
248 return VRegA_11x(Fetch16(0));
249 }
250 uint4_t VRegA_12x() const {
251 return VRegA_12x(Fetch16(0));
252 }
Sebastien Hertz807a2562013-04-15 09:33:39 +0200253 int16_t VRegA_20t() const;
Sebastien Hertz3b588e02013-09-11 14:33:18 +0200254 uint8_t VRegA_21c() const {
255 return VRegA_21c(Fetch16(0));
256 }
257 uint8_t VRegA_21h() const {
258 return VRegA_21h(Fetch16(0));
259 }
260 uint8_t VRegA_21s() const {
261 return VRegA_21s(Fetch16(0));
262 }
263 uint8_t VRegA_21t() const {
264 return VRegA_21t(Fetch16(0));
265 }
266 uint8_t VRegA_22b() const {
267 return VRegA_22b(Fetch16(0));
268 }
269 uint4_t VRegA_22c() const {
270 return VRegA_22c(Fetch16(0));
271 }
272 uint4_t VRegA_22s() const {
273 return VRegA_22s(Fetch16(0));
274 }
275 uint4_t VRegA_22t() const {
276 return VRegA_22t(Fetch16(0));
277 }
278 uint8_t VRegA_22x() const {
279 return VRegA_22x(Fetch16(0));
280 }
281 uint8_t VRegA_23x() const {
282 return VRegA_23x(Fetch16(0));
283 }
Sebastien Hertz807a2562013-04-15 09:33:39 +0200284 int32_t VRegA_30t() const;
Sebastien Hertz3b588e02013-09-11 14:33:18 +0200285 uint8_t VRegA_31c() const {
286 return VRegA_31c(Fetch16(0));
287 }
288 uint8_t VRegA_31i() const {
289 return VRegA_31i(Fetch16(0));
290 }
291 uint8_t VRegA_31t() const {
292 return VRegA_31t(Fetch16(0));
293 }
Sebastien Hertz807a2562013-04-15 09:33:39 +0200294 uint16_t VRegA_32x() const;
Sebastien Hertz3b588e02013-09-11 14:33:18 +0200295 uint4_t VRegA_35c() const {
296 return VRegA_35c(Fetch16(0));
297 }
298 uint8_t VRegA_3rc() const {
299 return VRegA_3rc(Fetch16(0));
300 }
301 uint8_t VRegA_51l() const {
302 return VRegA_51l(Fetch16(0));
303 }
304
305 // The following methods return the vA operand for various instruction formats. The "inst_data"
306 // parameter holds the first 16 bits of instruction which the returned value is decoded from.
307 int8_t VRegA_10t(uint16_t inst_data) const;
308 uint8_t VRegA_10x(uint16_t inst_data) const;
309 uint4_t VRegA_11n(uint16_t inst_data) const;
310 uint8_t VRegA_11x(uint16_t inst_data) const;
311 uint4_t VRegA_12x(uint16_t inst_data) const;
312 uint8_t VRegA_21c(uint16_t inst_data) const;
313 uint8_t VRegA_21h(uint16_t inst_data) const;
314 uint8_t VRegA_21s(uint16_t inst_data) const;
315 uint8_t VRegA_21t(uint16_t inst_data) const;
316 uint8_t VRegA_22b(uint16_t inst_data) const;
317 uint4_t VRegA_22c(uint16_t inst_data) const;
318 uint4_t VRegA_22s(uint16_t inst_data) const;
319 uint4_t VRegA_22t(uint16_t inst_data) const;
320 uint8_t VRegA_22x(uint16_t inst_data) const;
321 uint8_t VRegA_23x(uint16_t inst_data) const;
322 uint8_t VRegA_31c(uint16_t inst_data) const;
323 uint8_t VRegA_31i(uint16_t inst_data) const;
324 uint8_t VRegA_31t(uint16_t inst_data) const;
325 uint4_t VRegA_35c(uint16_t inst_data) const;
326 uint8_t VRegA_3rc(uint16_t inst_data) const;
327 uint8_t VRegA_51l(uint16_t inst_data) const;
Sebastien Hertz807a2562013-04-15 09:33:39 +0200328
329 // VRegB
Dragos Sbirlea8cc51622013-06-21 09:20:34 -0700330 bool HasVRegB() const;
Dragos Sbirlea39f99272013-06-25 13:17:36 -0700331 int32_t VRegB() const;
Sebastien Hertz3b588e02013-09-11 14:33:18 +0200332
Ian Rogers29a26482014-05-02 15:27:29 -0700333 bool HasWideVRegB() const;
334 uint64_t WideVRegB() const;
335
Sebastien Hertz3b588e02013-09-11 14:33:18 +0200336 int4_t VRegB_11n() const {
337 return VRegB_11n(Fetch16(0));
338 }
339 uint4_t VRegB_12x() const {
340 return VRegB_12x(Fetch16(0));
341 }
Sebastien Hertz807a2562013-04-15 09:33:39 +0200342 uint16_t VRegB_21c() const;
343 uint16_t VRegB_21h() const;
344 int16_t VRegB_21s() const;
345 int16_t VRegB_21t() const;
346 uint8_t VRegB_22b() const;
Sebastien Hertz3b588e02013-09-11 14:33:18 +0200347 uint4_t VRegB_22c() const {
348 return VRegB_22c(Fetch16(0));
349 }
350 uint4_t VRegB_22s() const {
351 return VRegB_22s(Fetch16(0));
352 }
353 uint4_t VRegB_22t() const {
354 return VRegB_22t(Fetch16(0));
355 }
Sebastien Hertz807a2562013-04-15 09:33:39 +0200356 uint16_t VRegB_22x() const;
357 uint8_t VRegB_23x() const;
358 uint32_t VRegB_31c() const;
359 int32_t VRegB_31i() const;
360 int32_t VRegB_31t() const;
361 uint16_t VRegB_32x() const;
362 uint16_t VRegB_35c() const;
363 uint16_t VRegB_3rc() const;
Dragos Sbirlea39f99272013-06-25 13:17:36 -0700364 uint64_t VRegB_51l() const; // vB_wide
Sebastien Hertz807a2562013-04-15 09:33:39 +0200365
Sebastien Hertz3b588e02013-09-11 14:33:18 +0200366 // The following methods return the vB operand for all instruction formats where it is encoded in
367 // the first 16 bits of instruction. The "inst_data" parameter holds these 16 bits. The returned
368 // value is decoded from it.
369 int4_t VRegB_11n(uint16_t inst_data) const;
370 uint4_t VRegB_12x(uint16_t inst_data) const;
371 uint4_t VRegB_22c(uint16_t inst_data) const;
372 uint4_t VRegB_22s(uint16_t inst_data) const;
373 uint4_t VRegB_22t(uint16_t inst_data) const;
374
Sebastien Hertz807a2562013-04-15 09:33:39 +0200375 // VRegC
Dragos Sbirlea8cc51622013-06-21 09:20:34 -0700376 bool HasVRegC() const;
Dragos Sbirlea39f99272013-06-25 13:17:36 -0700377 int32_t VRegC() const;
Sebastien Hertz3b588e02013-09-11 14:33:18 +0200378
Sebastien Hertz807a2562013-04-15 09:33:39 +0200379 int8_t VRegC_22b() const;
380 uint16_t VRegC_22c() const;
381 int16_t VRegC_22s() const;
382 int16_t VRegC_22t() const;
383 uint8_t VRegC_23x() const;
384 uint4_t VRegC_35c() const;
385 uint16_t VRegC_3rc() const;
386
387 // Fills the given array with the 'arg' array of the instruction.
Ian Rogers29a26482014-05-02 15:27:29 -0700388 bool HasVarArgs() const;
389 void GetVarArgs(uint32_t args[kMaxVarArgRegs], uint16_t inst_data) const;
390 void GetVarArgs(uint32_t args[kMaxVarArgRegs]) const {
391 return GetVarArgs(args, Fetch16(0));
Sebastien Hertzc61124b2013-09-10 11:44:19 +0200392 }
Sebastien Hertz807a2562013-04-15 09:33:39 +0200393
Sebastien Hertz3b588e02013-09-11 14:33:18 +0200394 // Returns the opcode field of the instruction. The given "inst_data" parameter must be the first
395 // 16 bits of instruction.
396 Code Opcode(uint16_t inst_data) const {
397 DCHECK_EQ(inst_data, Fetch16(0));
398 return static_cast<Code>(inst_data & 0xFF);
399 }
400
401 // Returns the opcode field of the instruction from the first 16 bits of instruction.
Ian Rogersa75a0132012-09-28 11:41:42 -0700402 Code Opcode() const {
Sebastien Hertz3b588e02013-09-11 14:33:18 +0200403 return Opcode(Fetch16(0));
Ian Rogersa75a0132012-09-28 11:41:42 -0700404 }
Carl Shapiro12eb78e2011-06-24 14:51:06 -0700405
Sebastien Hertz2d6ba512013-05-17 11:31:37 +0200406 void SetOpcode(Code opcode) {
407 DCHECK_LT(static_cast<uint16_t>(opcode), 256u);
408 uint16_t* insns = reinterpret_cast<uint16_t*>(this);
409 insns[0] = (insns[0] & 0xff00) | static_cast<uint16_t>(opcode);
410 }
411
Sebastien Hertz543959c2013-07-03 12:00:19 +0200412 void SetVRegA_10x(uint8_t val) {
413 DCHECK(FormatOf(Opcode()) == k10x);
414 uint16_t* insns = reinterpret_cast<uint16_t*>(this);
415 insns[0] = (val << 8) | (insns[0] & 0x00ff);
416 }
417
Sebastien Hertz2d6ba512013-05-17 11:31:37 +0200418 void SetVRegB_3rc(uint16_t val) {
419 DCHECK(FormatOf(Opcode()) == k3rc);
420 uint16_t* insns = reinterpret_cast<uint16_t*>(this);
421 insns[1] = val;
422 }
423
424 void SetVRegB_35c(uint16_t val) {
425 DCHECK(FormatOf(Opcode()) == k35c);
426 uint16_t* insns = reinterpret_cast<uint16_t*>(this);
427 insns[1] = val;
428 }
429
430 void SetVRegC_22c(uint16_t val) {
431 DCHECK(FormatOf(Opcode()) == k22c);
432 uint16_t* insns = reinterpret_cast<uint16_t*>(this);
433 insns[1] = val;
434 }
435
Elliott Hughesadb8c672012-03-06 16:49:32 -0800436 // Returns the format of the given opcode.
437 static Format FormatOf(Code opcode) {
438 return kInstructionFormats[opcode];
Carl Shapiroe4c1ce42011-07-09 02:31:57 -0700439 }
440
Elliott Hughesadb8c672012-03-06 16:49:32 -0800441 // Returns the flags for the given opcode.
Ian Rogersa75a0132012-09-28 11:41:42 -0700442 static int FlagsOf(Code opcode) {
Elliott Hughesadb8c672012-03-06 16:49:32 -0800443 return kInstructionFlags[opcode];
jeffhaobdb76512011-09-07 11:43:16 -0700444 }
445
buzbeeb1f1d642014-02-27 12:55:32 -0800446 // Return the verify flags for the given opcode.
447 static int VerifyFlagsOf(Code opcode) {
448 return kInstructionVerifyFlags[opcode];
449 }
450
Carl Shapiroe4c1ce42011-07-09 02:31:57 -0700451 // Returns true if this instruction is a branch.
452 bool IsBranch() const {
453 return (kInstructionFlags[Opcode()] & kBranch) != 0;
454 }
455
TDYa127526643e2012-05-26 01:01:48 -0700456 // Returns true if this instruction is a unconditional branch.
457 bool IsUnconditional() const {
458 return (kInstructionFlags[Opcode()] & kUnconditional) != 0;
459 }
460
Dragos Sbirlea39f99272013-06-25 13:17:36 -0700461 // Returns the branch offset if this instruction is a branch.
462 int32_t GetTargetOffset() const;
463
464 // Returns true if the instruction allows control flow to go to the following instruction.
465 bool CanFlowThrough() const;
466
jeffhaoba5ebb92011-08-25 17:24:37 -0700467 // Returns true if this instruction is a switch.
468 bool IsSwitch() const {
469 return (kInstructionFlags[Opcode()] & kSwitch) != 0;
470 }
471
472 // Returns true if this instruction can throw.
473 bool IsThrow() const {
474 return (kInstructionFlags[Opcode()] & kThrow) != 0;
475 }
476
Carl Shapiroe4c1ce42011-07-09 02:31:57 -0700477 // Determine if the instruction is any of 'return' instructions.
478 bool IsReturn() const {
479 return (kInstructionFlags[Opcode()] & kReturn) != 0;
480 }
481
482 // Determine if this instruction ends execution of its basic block.
483 bool IsBasicBlockEnd() const {
484 return IsBranch() || IsReturn() || Opcode() == THROW;
485 }
486
487 // Determine if this instruction is an invoke.
488 bool IsInvoke() const {
489 return (kInstructionFlags[Opcode()] & kInvoke) != 0;
490 }
491
jeffhaoba5ebb92011-08-25 17:24:37 -0700492 int GetVerifyTypeArgumentA() const {
493 return (kInstructionVerifyFlags[Opcode()] & (kVerifyRegA | kVerifyRegAWide));
494 }
495
496 int GetVerifyTypeArgumentB() const {
Ian Rogers5fb22a92014-06-13 10:31:28 -0700497 return (kInstructionVerifyFlags[Opcode()] & (kVerifyRegB | kVerifyRegBField |
498 kVerifyRegBMethod | kVerifyRegBNewInstance | kVerifyRegBString | kVerifyRegBType |
499 kVerifyRegBWide));
jeffhaoba5ebb92011-08-25 17:24:37 -0700500 }
501
502 int GetVerifyTypeArgumentC() const {
503 return (kInstructionVerifyFlags[Opcode()] & (kVerifyRegC | kVerifyRegCField |
Ian Rogers5fb22a92014-06-13 10:31:28 -0700504 kVerifyRegCNewArray | kVerifyRegCType | kVerifyRegCWide));
jeffhaoba5ebb92011-08-25 17:24:37 -0700505 }
506
507 int GetVerifyExtraFlags() const {
508 return (kInstructionVerifyFlags[Opcode()] & (kVerifyArrayData | kVerifyBranchTarget |
Ian Rogers5fb22a92014-06-13 10:31:28 -0700509 kVerifySwitchTargets | kVerifyVarArg | kVerifyVarArgRange | kVerifyError));
510 }
511
512 bool GetVerifyIsRuntimeOnly() const {
513 return (kInstructionVerifyFlags[Opcode()] & kVerifyRuntimeOnly) != 0;
jeffhaoba5ebb92011-08-25 17:24:37 -0700514 }
515
Ian Rogers2fa6b2e2012-10-17 00:10:17 -0700516 // Get the dex PC of this instruction as a offset in code units from the beginning of insns.
517 uint32_t GetDexPc(const uint16_t* insns) const {
518 return (reinterpret_cast<const uint16_t*>(this) - insns);
519 }
520
Ian Rogersd81871c2011-10-03 13:57:23 -0700521 // Dump decoded version of instruction
Ian Rogers2c8a8572011-10-24 17:11:36 -0700522 std::string DumpString(const DexFile*) const;
523
524 // Dump code_units worth of this instruction, padding to code_units for shorter instructions
525 std::string DumpHex(size_t code_units) const;
Ian Rogersd81871c2011-10-03 13:57:23 -0700526
Sebastien Hertz807a2562013-04-15 09:33:39 +0200527 uint16_t Fetch16(size_t offset) const {
528 const uint16_t* insns = reinterpret_cast<const uint16_t*>(this);
529 return insns[offset];
530 }
531
Sebastien Hertz3b588e02013-09-11 14:33:18 +0200532 private:
533 size_t SizeInCodeUnitsComplexOpcode() const;
534
Sebastien Hertz807a2562013-04-15 09:33:39 +0200535 uint32_t Fetch32(size_t offset) const {
536 return (Fetch16(offset) | ((uint32_t) Fetch16(offset + 1) << 16));
537 }
538
539 uint4_t InstA() const {
Sebastien Hertz3b588e02013-09-11 14:33:18 +0200540 return InstA(Fetch16(0));
Sebastien Hertz807a2562013-04-15 09:33:39 +0200541 }
542
543 uint4_t InstB() const {
Sebastien Hertz3b588e02013-09-11 14:33:18 +0200544 return InstB(Fetch16(0));
Sebastien Hertz807a2562013-04-15 09:33:39 +0200545 }
546
547 uint8_t InstAA() const {
Sebastien Hertz3b588e02013-09-11 14:33:18 +0200548 return InstAA(Fetch16(0));
549 }
550
551 uint4_t InstA(uint16_t inst_data) const {
552 DCHECK_EQ(inst_data, Fetch16(0));
553 return static_cast<uint4_t>((inst_data >> 8) & 0x0f);
554 }
555
556 uint4_t InstB(uint16_t inst_data) const {
557 DCHECK_EQ(inst_data, Fetch16(0));
558 return static_cast<uint4_t>(inst_data >> 12);
559 }
560
561 uint8_t InstAA(uint16_t inst_data) const {
562 DCHECK_EQ(inst_data, Fetch16(0));
563 return static_cast<uint8_t>(inst_data >> 8);
Sebastien Hertz807a2562013-04-15 09:33:39 +0200564 }
565
Carl Shapiroe4c1ce42011-07-09 02:31:57 -0700566 static const char* const kInstructionNames[];
Elliott Hughesadb8c672012-03-06 16:49:32 -0800567 static Format const kInstructionFormats[];
Carl Shapiroe4c1ce42011-07-09 02:31:57 -0700568 static int const kInstructionFlags[];
jeffhaoba5ebb92011-08-25 17:24:37 -0700569 static int const kInstructionVerifyFlags[];
Ian Rogersa75a0132012-09-28 11:41:42 -0700570 static int const kInstructionSizeInCodeUnits[];
Carl Shapiro12eb78e2011-06-24 14:51:06 -0700571 DISALLOW_IMPLICIT_CONSTRUCTORS(Instruction);
572};
Ian Rogersa75a0132012-09-28 11:41:42 -0700573std::ostream& operator<<(std::ostream& os, const Instruction::Code& code);
574std::ostream& operator<<(std::ostream& os, const Instruction::Format& format);
575std::ostream& operator<<(std::ostream& os, const Instruction::Flags& flags);
576std::ostream& operator<<(std::ostream& os, const Instruction::VerifyFlag& vflags);
Elliott Hughesadb8c672012-03-06 16:49:32 -0800577
Carl Shapiro12eb78e2011-06-24 14:51:06 -0700578} // namespace art
579
Brian Carlstromfc0e3212013-07-17 14:40:12 -0700580#endif // ART_RUNTIME_DEX_INSTRUCTION_H_