blob: 2fb649228a789ee1560ceb4f5b9e0885684bf593 [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 Shapiro0e5d75d2011-07-06 18:28:37 -070016
Brian Carlstrom578bbdc2011-07-21 14:07:47 -070017#include "dex_verifier.h"
Carl Shapiro0e5d75d2011-07-06 18:28:37 -070018
Elliott Hughes1f359b02011-07-17 14:27:17 -070019#include <iostream>
20
Brian Carlstrom1f870082011-08-23 16:02:11 -070021#include "class_linker.h"
Brian Carlstrome7d856b2012-01-11 18:10:55 -080022#include "compiler.h"
jeffhaob4df5142011-09-19 20:25:32 -070023#include "dex_cache.h"
Brian Carlstrom1f870082011-08-23 16:02:11 -070024#include "dex_file.h"
25#include "dex_instruction.h"
26#include "dex_instruction_visitor.h"
jeffhaobdb76512011-09-07 11:43:16 -070027#include "dex_verifier.h"
Ian Rogers84fa0742011-10-25 18:13:30 -070028#include "intern_table.h"
Ian Rogers0571d352011-11-03 19:51:38 -070029#include "leb128.h"
Elliott Hughes1f359b02011-07-17 14:27:17 -070030#include "logging.h"
Ian Rogers6d4d9fc2011-11-30 16:24:48 -080031#include "object_utils.h"
Brian Carlstrom1f870082011-08-23 16:02:11 -070032#include "runtime.h"
Elliott Hughes1f359b02011-07-17 14:27:17 -070033#include "stringpiece.h"
Carl Shapiro0e5d75d2011-07-06 18:28:37 -070034
35namespace art {
Ian Rogersd81871c2011-10-03 13:57:23 -070036namespace verifier {
Carl Shapiro0e5d75d2011-07-06 18:28:37 -070037
Ian Rogers2c8a8572011-10-24 17:11:36 -070038static const bool gDebugVerify = false;
39
Ian Rogersd81871c2011-10-03 13:57:23 -070040std::ostream& operator<<(std::ostream& os, const VerifyError& rhs) {
Brian Carlstrom75412882012-01-18 01:26:54 -080041 switch (rhs) {
42 case VERIFY_ERROR_NONE: os << "VERIFY_ERROR_NONE"; break;
43 case VERIFY_ERROR_GENERIC: os << "VERIFY_ERROR_GENERIC"; break;
44 case VERIFY_ERROR_NO_CLASS: os << "VERIFY_ERROR_NO_CLASS"; break;
45 case VERIFY_ERROR_NO_FIELD: os << "VERIFY_ERROR_NO_FIELD"; break;
46 case VERIFY_ERROR_NO_METHOD: os << "VERIFY_ERROR_NO_METHOD"; break;
47 case VERIFY_ERROR_ACCESS_CLASS: os << "VERIFY_ERROR_ACCESS_CLASS"; break;
48 case VERIFY_ERROR_ACCESS_FIELD: os << "VERIFY_ERROR_ACCESS_FIELD"; break;
49 case VERIFY_ERROR_ACCESS_METHOD: os << "VERIFY_ERROR_ACCESS_METHOD"; break;
50 case VERIFY_ERROR_CLASS_CHANGE: os << "VERIFY_ERROR_CLASS_CHANGE"; break;
51 case VERIFY_ERROR_INSTANTIATION: os << "VERIFY_ERROR_INSTANTIATION"; break;
52 default:
53 os << "VerifyError[" << static_cast<int>(rhs) << "]";
54 break;
55 }
56 return os;
Ian Rogersd81871c2011-10-03 13:57:23 -070057}
jeffhaobdb76512011-09-07 11:43:16 -070058
Ian Rogers84fa0742011-10-25 18:13:30 -070059static const char* type_strings[] = {
60 "Unknown",
61 "Conflict",
62 "Boolean",
63 "Byte",
64 "Short",
65 "Char",
66 "Integer",
67 "Float",
68 "Long (Low Half)",
69 "Long (High Half)",
70 "Double (Low Half)",
71 "Double (High Half)",
72 "64-bit Constant (Low Half)",
73 "64-bit Constant (High Half)",
74 "32-bit Constant",
75 "Unresolved Reference",
76 "Uninitialized Reference",
77 "Uninitialized This Reference",
Ian Rogers28ad40d2011-10-27 15:19:26 -070078 "Unresolved And Uninitialized Reference",
Ian Rogers84fa0742011-10-25 18:13:30 -070079 "Reference",
80};
Ian Rogersd81871c2011-10-03 13:57:23 -070081
Ian Rogers2c8a8572011-10-24 17:11:36 -070082std::string RegType::Dump() const {
Ian Rogers84fa0742011-10-25 18:13:30 -070083 DCHECK(type_ >= kRegTypeUnknown && type_ <= kRegTypeReference);
84 std::string result;
85 if (IsConstant()) {
86 uint32_t val = ConstantValue();
87 if (val == 0) {
88 result = "Zero";
Ian Rogersd81871c2011-10-03 13:57:23 -070089 } else {
Ian Rogers84fa0742011-10-25 18:13:30 -070090 if(IsConstantShort()) {
91 result = StringPrintf("32-bit Constant: %d", val);
92 } else {
93 result = StringPrintf("32-bit Constant: 0x%x", val);
94 }
95 }
96 } else {
97 result = type_strings[type_];
98 if (IsReferenceTypes()) {
99 result += ": ";
Ian Rogers28ad40d2011-10-27 15:19:26 -0700100 if (IsUnresolvedTypes()) {
Ian Rogers84fa0742011-10-25 18:13:30 -0700101 result += PrettyDescriptor(GetDescriptor());
102 } else {
Ian Rogers6d4d9fc2011-11-30 16:24:48 -0800103 result += PrettyDescriptor(GetClass());
Ian Rogers84fa0742011-10-25 18:13:30 -0700104 }
Ian Rogersd81871c2011-10-03 13:57:23 -0700105 }
106 }
Ian Rogers84fa0742011-10-25 18:13:30 -0700107 return result;
Ian Rogersd81871c2011-10-03 13:57:23 -0700108}
109
110const RegType& RegType::HighHalf(RegTypeCache* cache) const {
111 CHECK(IsLowHalf());
112 if (type_ == kRegTypeLongLo) {
113 return cache->FromType(kRegTypeLongHi);
114 } else if (type_ == kRegTypeDoubleLo) {
115 return cache->FromType(kRegTypeDoubleHi);
116 } else {
117 return cache->FromType(kRegTypeConstHi);
118 }
119}
120
121/*
122 * A basic Join operation on classes. For a pair of types S and T the Join, written S v T = J, is
123 * S <: J, T <: J and for-all U such that S <: U, T <: U then J <: U. That is J is the parent of
124 * S and T such that there isn't a parent of both S and T that isn't also the parent of J (ie J
125 * is the deepest (lowest upper bound) parent of S and T).
126 *
127 * This operation applies for regular classes and arrays, however, for interface types there needn't
128 * be a partial ordering on the types. We could solve the problem of a lack of a partial order by
129 * introducing sets of types, however, the only operation permissible on an interface is
130 * invoke-interface. In the tradition of Java verifiers we defer the verification of interface
131 * types until an invoke-interface call on the interface typed reference at runtime and allow
Ian Rogers5ed29bf2011-10-26 12:22:21 -0700132 * the perversion of any Object being assignable to an interface type (note, however, that we don't
133 * allow assignment of Object or Interface to any concrete subclass of Object and are therefore type
134 * safe; further the Join on a Object cannot result in a sub-class by definition).
Ian Rogersd81871c2011-10-03 13:57:23 -0700135 */
136Class* RegType::ClassJoin(Class* s, Class* t) {
137 DCHECK(!s->IsPrimitive()) << PrettyClass(s);
138 DCHECK(!t->IsPrimitive()) << PrettyClass(t);
139 if (s == t) {
140 return s;
141 } else if (s->IsAssignableFrom(t)) {
142 return s;
143 } else if (t->IsAssignableFrom(s)) {
144 return t;
145 } else if (s->IsArrayClass() && t->IsArrayClass()) {
146 Class* s_ct = s->GetComponentType();
147 Class* t_ct = t->GetComponentType();
148 if (s_ct->IsPrimitive() || t_ct->IsPrimitive()) {
149 // Given the types aren't the same, if either array is of primitive types then the only
150 // common parent is java.lang.Object
151 Class* result = s->GetSuperClass(); // short-cut to java.lang.Object
152 DCHECK(result->IsObjectClass());
153 return result;
154 }
155 Class* common_elem = ClassJoin(s_ct, t_ct);
156 ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
157 const ClassLoader* class_loader = s->GetClassLoader();
Elliott Hughes95572412011-12-13 18:14:20 -0800158 std::string descriptor("[");
Ian Rogers6d4d9fc2011-11-30 16:24:48 -0800159 descriptor += ClassHelper(common_elem).GetDescriptor();
Ian Rogersd81871c2011-10-03 13:57:23 -0700160 Class* array_class = class_linker->FindClass(descriptor.c_str(), class_loader);
161 DCHECK(array_class != NULL);
162 return array_class;
163 } else {
164 size_t s_depth = s->Depth();
165 size_t t_depth = t->Depth();
166 // Get s and t to the same depth in the hierarchy
167 if (s_depth > t_depth) {
168 while (s_depth > t_depth) {
169 s = s->GetSuperClass();
170 s_depth--;
171 }
172 } else {
173 while (t_depth > s_depth) {
174 t = t->GetSuperClass();
175 t_depth--;
176 }
177 }
178 // Go up the hierarchy until we get to the common parent
179 while (s != t) {
180 s = s->GetSuperClass();
181 t = t->GetSuperClass();
182 }
183 return s;
184 }
185}
186
Ian Rogersb5e95b92011-10-25 23:28:55 -0700187bool RegType::IsAssignableFrom(const RegType& src) const {
188 if (Equals(src)) {
189 return true;
Ian Rogersd81871c2011-10-03 13:57:23 -0700190 } else {
Ian Rogersb5e95b92011-10-25 23:28:55 -0700191 switch (GetType()) {
Ian Rogers9074b992011-10-26 17:41:55 -0700192 case RegType::kRegTypeBoolean: return src.IsBooleanTypes();
193 case RegType::kRegTypeByte: return src.IsByteTypes();
194 case RegType::kRegTypeShort: return src.IsShortTypes();
195 case RegType::kRegTypeChar: return src.IsCharTypes();
196 case RegType::kRegTypeInteger: return src.IsIntegralTypes();
197 case RegType::kRegTypeFloat: return src.IsFloatTypes();
198 case RegType::kRegTypeLongLo: return src.IsLongTypes();
199 case RegType::kRegTypeDoubleLo: return src.IsDoubleTypes();
Ian Rogers84fa0742011-10-25 18:13:30 -0700200 default:
Ian Rogersb5e95b92011-10-25 23:28:55 -0700201 if (!IsReferenceTypes()) {
202 LOG(FATAL) << "Unexpected register type in IsAssignableFrom: '" << src << "'";
Ian Rogers84fa0742011-10-25 18:13:30 -0700203 }
Ian Rogersb5e95b92011-10-25 23:28:55 -0700204 if (src.IsZero()) {
Ian Rogers9074b992011-10-26 17:41:55 -0700205 return true; // all reference types can be assigned null
206 } else if (!src.IsReferenceTypes()) {
207 return false; // expect src to be a reference type
208 } else if (IsJavaLangObject()) {
209 return true; // all reference types can be assigned to Object
210 } else if (!IsUnresolvedTypes() && GetClass()->IsInterface()) {
Ian Rogers5ed29bf2011-10-26 12:22:21 -0700211 return true; // We allow assignment to any interface, see comment in ClassJoin
Ian Rogers5d86e522012-02-01 11:45:24 -0800212 } else if (IsJavaLangObjectArray()) {
Ian Rogers89310de2012-02-01 13:47:30 -0800213 return src.IsObjectArrayTypes(); // All reference arrays may be assigned to Object[]
Ian Rogers9074b992011-10-26 17:41:55 -0700214 } else if (!IsUnresolvedTypes() && !src.IsUnresolvedTypes() &&
Ian Rogers5ed29bf2011-10-26 12:22:21 -0700215 GetClass()->IsAssignableFrom(src.GetClass())) {
216 // We're assignable from the Class point-of-view
Ian Rogersb5e95b92011-10-25 23:28:55 -0700217 return true;
Ian Rogersd81871c2011-10-03 13:57:23 -0700218 } else {
Ian Rogersb5e95b92011-10-25 23:28:55 -0700219 return false;
Ian Rogersd81871c2011-10-03 13:57:23 -0700220 }
Ian Rogersd81871c2011-10-03 13:57:23 -0700221 }
222 }
223}
224
Ian Rogers84fa0742011-10-25 18:13:30 -0700225static const RegType& SelectNonConstant(const RegType& a, const RegType& b) {
226 return a.IsConstant() ? b : a;
227}
jeffhaobdb76512011-09-07 11:43:16 -0700228
Ian Rogersd81871c2011-10-03 13:57:23 -0700229const RegType& RegType::Merge(const RegType& incoming_type, RegTypeCache* reg_types) const {
230 DCHECK(!Equals(incoming_type)); // Trivial equality handled by caller
Ian Rogers84fa0742011-10-25 18:13:30 -0700231 if (IsUnknown() && incoming_type.IsUnknown()) {
232 return *this; // Unknown MERGE Unknown => Unknown
233 } else if (IsConflict()) {
234 return *this; // Conflict MERGE * => Conflict
235 } else if (incoming_type.IsConflict()) {
236 return incoming_type; // * MERGE Conflict => Conflict
237 } else if (IsUnknown() || incoming_type.IsUnknown()) {
238 return reg_types->Conflict(); // Unknown MERGE * => Conflict
239 } else if(IsConstant() && incoming_type.IsConstant()) {
240 int32_t val1 = ConstantValue();
241 int32_t val2 = incoming_type.ConstantValue();
242 if (val1 >= 0 && val2 >= 0) {
243 // +ve1 MERGE +ve2 => MAX(+ve1, +ve2)
244 if (val1 >= val2) {
Ian Rogersd81871c2011-10-03 13:57:23 -0700245 return *this;
Ian Rogers84fa0742011-10-25 18:13:30 -0700246 } else {
247 return incoming_type;
248 }
249 } else if (val1 < 0 && val2 < 0) {
250 // -ve1 MERGE -ve2 => MIN(-ve1, -ve2)
251 if (val1 <= val2) {
252 return *this;
253 } else {
254 return incoming_type;
255 }
256 } else {
257 // Values are +ve and -ve, choose smallest signed type in which they both fit
258 if (IsConstantByte()) {
259 if (incoming_type.IsConstantByte()) {
260 return reg_types->ByteConstant();
261 } else if (incoming_type.IsConstantShort()) {
262 return reg_types->ShortConstant();
263 } else {
264 return reg_types->IntConstant();
265 }
266 } else if (IsConstantShort()) {
Ian Rogers1592bc72011-10-27 20:08:53 -0700267 if (incoming_type.IsConstantShort()) {
Ian Rogers84fa0742011-10-25 18:13:30 -0700268 return reg_types->ShortConstant();
269 } else {
270 return reg_types->IntConstant();
271 }
272 } else {
273 return reg_types->IntConstant();
274 }
275 }
276 } else if (IsIntegralTypes() && incoming_type.IsIntegralTypes()) {
277 if (IsBooleanTypes() && incoming_type.IsBooleanTypes()) {
278 return reg_types->Boolean(); // boolean MERGE boolean => boolean
279 }
280 if (IsByteTypes() && incoming_type.IsByteTypes()) {
281 return reg_types->Byte(); // byte MERGE byte => byte
282 }
283 if (IsShortTypes() && incoming_type.IsShortTypes()) {
284 return reg_types->Short(); // short MERGE short => short
285 }
286 if (IsCharTypes() && incoming_type.IsCharTypes()) {
287 return reg_types->Char(); // char MERGE char => char
288 }
289 return reg_types->Integer(); // int MERGE * => int
290 } else if ((IsFloatTypes() && incoming_type.IsFloatTypes()) ||
291 (IsLongTypes() && incoming_type.IsLongTypes()) ||
292 (IsLongHighTypes() && incoming_type.IsLongHighTypes()) ||
293 (IsDoubleTypes() && incoming_type.IsDoubleTypes()) ||
294 (IsDoubleHighTypes() && incoming_type.IsDoubleHighTypes())) {
295 // check constant case was handled prior to entry
296 DCHECK(!IsConstant() || !incoming_type.IsConstant());
297 // float/long/double MERGE float/long/double_constant => float/long/double
298 return SelectNonConstant(*this, incoming_type);
299 } else if (IsReferenceTypes() && incoming_type.IsReferenceTypes()) {
Ian Rogers9074b992011-10-26 17:41:55 -0700300 if (IsZero() || incoming_type.IsZero()) {
Ian Rogers84fa0742011-10-25 18:13:30 -0700301 return SelectNonConstant(*this, incoming_type); // 0 MERGE ref => ref
Ian Rogers9074b992011-10-26 17:41:55 -0700302 } else if (IsJavaLangObject() || incoming_type.IsJavaLangObject()) {
303 return reg_types->JavaLangObject(); // Object MERGE ref => Object
304 } else if (IsUninitializedTypes() || incoming_type.IsUninitializedTypes() ||
305 IsUnresolvedTypes() || incoming_type.IsUnresolvedTypes()) {
306 // Can only merge an unresolved or uninitialized type with itself, 0 or Object, we've already
307 // checked these so => Conflict
Ian Rogers84fa0742011-10-25 18:13:30 -0700308 return reg_types->Conflict();
309 } else { // Two reference types, compute Join
310 Class* c1 = GetClass();
311 Class* c2 = incoming_type.GetClass();
312 DCHECK(c1 != NULL && !c1->IsPrimitive());
313 DCHECK(c2 != NULL && !c2->IsPrimitive());
314 Class* join_class = ClassJoin(c1, c2);
315 if (c1 == join_class) {
316 return *this;
317 } else if (c2 == join_class) {
Ian Rogersd81871c2011-10-03 13:57:23 -0700318 return incoming_type;
319 } else {
Ian Rogers84fa0742011-10-25 18:13:30 -0700320 return reg_types->FromClass(join_class);
Ian Rogersd81871c2011-10-03 13:57:23 -0700321 }
Ian Rogersd81871c2011-10-03 13:57:23 -0700322 }
Ian Rogers84fa0742011-10-25 18:13:30 -0700323 } else {
324 return reg_types->Conflict(); // Unexpected types => Conflict
Ian Rogersd81871c2011-10-03 13:57:23 -0700325 }
326}
327
Brian Carlstrom6b4ef022011-10-23 14:59:04 -0700328static RegType::Type RegTypeFromPrimitiveType(Primitive::Type prim_type) {
Ian Rogersd81871c2011-10-03 13:57:23 -0700329 switch (prim_type) {
Brian Carlstrom6b4ef022011-10-23 14:59:04 -0700330 case Primitive::kPrimBoolean: return RegType::kRegTypeBoolean;
331 case Primitive::kPrimByte: return RegType::kRegTypeByte;
332 case Primitive::kPrimShort: return RegType::kRegTypeShort;
333 case Primitive::kPrimChar: return RegType::kRegTypeChar;
334 case Primitive::kPrimInt: return RegType::kRegTypeInteger;
335 case Primitive::kPrimLong: return RegType::kRegTypeLongLo;
336 case Primitive::kPrimFloat: return RegType::kRegTypeFloat;
337 case Primitive::kPrimDouble: return RegType::kRegTypeDoubleLo;
338 case Primitive::kPrimVoid:
339 default: return RegType::kRegTypeUnknown;
Ian Rogersd81871c2011-10-03 13:57:23 -0700340 }
341}
342
343static RegType::Type RegTypeFromDescriptor(const std::string& descriptor) {
344 if (descriptor.length() == 1) {
345 switch (descriptor[0]) {
346 case 'Z': return RegType::kRegTypeBoolean;
347 case 'B': return RegType::kRegTypeByte;
348 case 'S': return RegType::kRegTypeShort;
349 case 'C': return RegType::kRegTypeChar;
350 case 'I': return RegType::kRegTypeInteger;
351 case 'J': return RegType::kRegTypeLongLo;
352 case 'F': return RegType::kRegTypeFloat;
353 case 'D': return RegType::kRegTypeDoubleLo;
354 case 'V':
355 default: return RegType::kRegTypeUnknown;
356 }
357 } else if(descriptor[0] == 'L' || descriptor[0] == '[') {
358 return RegType::kRegTypeReference;
359 } else {
360 return RegType::kRegTypeUnknown;
361 }
362}
363
364std::ostream& operator<<(std::ostream& os, const RegType& rhs) {
Ian Rogers2c8a8572011-10-24 17:11:36 -0700365 os << rhs.Dump();
Ian Rogersd81871c2011-10-03 13:57:23 -0700366 return os;
367}
368
369const RegType& RegTypeCache::FromDescriptor(const ClassLoader* loader,
Ian Rogers672297c2012-01-10 14:50:55 -0800370 const char* descriptor) {
Ian Rogersd81871c2011-10-03 13:57:23 -0700371 return From(RegTypeFromDescriptor(descriptor), loader, descriptor);
372}
373
374const RegType& RegTypeCache::From(RegType::Type type, const ClassLoader* loader,
Ian Rogers672297c2012-01-10 14:50:55 -0800375 const char* descriptor) {
Ian Rogers84fa0742011-10-25 18:13:30 -0700376 if (type <= RegType::kRegTypeLastFixedLocation) {
Ian Rogersd81871c2011-10-03 13:57:23 -0700377 // entries should be sized greater than primitive types
378 DCHECK_GT(entries_.size(), static_cast<size_t>(type));
379 RegType* entry = entries_[type];
380 if (entry == NULL) {
Ian Rogers84fa0742011-10-25 18:13:30 -0700381 Class* klass = NULL;
Ian Rogers672297c2012-01-10 14:50:55 -0800382 if (strlen(descriptor) != 0) {
383 klass = Runtime::Current()->GetClassLinker()->FindSystemClass(descriptor);
Ian Rogersd81871c2011-10-03 13:57:23 -0700384 }
Ian Rogers84fa0742011-10-25 18:13:30 -0700385 entry = new RegType(type, klass, 0, type);
Ian Rogersd81871c2011-10-03 13:57:23 -0700386 entries_[type] = entry;
387 }
388 return *entry;
389 } else {
390 DCHECK (type == RegType::kRegTypeReference);
Ian Rogers6d4d9fc2011-11-30 16:24:48 -0800391 ClassHelper kh;
Ian Rogers84fa0742011-10-25 18:13:30 -0700392 for (size_t i = RegType::kRegTypeLastFixedLocation + 1; i < entries_.size(); i++) {
Ian Rogersd81871c2011-10-03 13:57:23 -0700393 RegType* cur_entry = entries_[i];
Ian Rogers84fa0742011-10-25 18:13:30 -0700394 // check resolved and unresolved references, ignore uninitialized references
Ian Rogers6d4d9fc2011-11-30 16:24:48 -0800395 if (cur_entry->IsReference()) {
396 kh.ChangeClass(cur_entry->GetClass());
Ian Rogers672297c2012-01-10 14:50:55 -0800397 if (strcmp(descriptor, kh.GetDescriptor()) == 0) {
Ian Rogers6d4d9fc2011-11-30 16:24:48 -0800398 return *cur_entry;
399 }
Ian Rogers84fa0742011-10-25 18:13:30 -0700400 } else if (cur_entry->IsUnresolvedReference() &&
401 cur_entry->GetDescriptor()->Equals(descriptor)) {
Ian Rogersd81871c2011-10-03 13:57:23 -0700402 return *cur_entry;
403 }
404 }
Ian Rogers672297c2012-01-10 14:50:55 -0800405 Class* klass = Runtime::Current()->GetClassLinker()->FindClass(descriptor, loader);
Ian Rogers2c8a8572011-10-24 17:11:36 -0700406 if (klass != NULL) {
Ian Rogers84fa0742011-10-25 18:13:30 -0700407 // Able to resolve so create resolved register type
408 RegType* entry = new RegType(type, klass, 0, entries_.size());
Ian Rogers2c8a8572011-10-24 17:11:36 -0700409 entries_.push_back(entry);
410 return *entry;
411 } else {
Ian Rogers28ad40d2011-10-27 15:19:26 -0700412 // TODO: we assume unresolved, but we may be able to do better by validating whether the
413 // descriptor string is valid
Ian Rogers84fa0742011-10-25 18:13:30 -0700414 // Unable to resolve so create unresolved register type
Ian Rogers2c8a8572011-10-24 17:11:36 -0700415 DCHECK(Thread::Current()->IsExceptionPending());
Ian Rogers84fa0742011-10-25 18:13:30 -0700416 Thread::Current()->ClearException();
Ian Rogers672297c2012-01-10 14:50:55 -0800417 if (IsValidDescriptor(descriptor)) {
Ian Rogers28ad40d2011-10-27 15:19:26 -0700418 String* string_descriptor =
Ian Rogers672297c2012-01-10 14:50:55 -0800419 Runtime::Current()->GetInternTable()->InternStrong(descriptor);
Ian Rogers28ad40d2011-10-27 15:19:26 -0700420 RegType* entry = new RegType(RegType::kRegTypeUnresolvedReference, string_descriptor, 0,
421 entries_.size());
422 entries_.push_back(entry);
423 return *entry;
424 } else {
425 // The descriptor is broken return the unknown type as there's nothing sensible that
426 // could be done at runtime
427 return Unknown();
428 }
Ian Rogers2c8a8572011-10-24 17:11:36 -0700429 }
Ian Rogersd81871c2011-10-03 13:57:23 -0700430 }
431}
432
433const RegType& RegTypeCache::FromClass(Class* klass) {
434 if (klass->IsPrimitive()) {
435 RegType::Type type = RegTypeFromPrimitiveType(klass->GetPrimitiveType());
436 // entries should be sized greater than primitive types
437 DCHECK_GT(entries_.size(), static_cast<size_t>(type));
438 RegType* entry = entries_[type];
439 if (entry == NULL) {
Ian Rogers84fa0742011-10-25 18:13:30 -0700440 entry = new RegType(type, klass, 0, type);
Ian Rogersd81871c2011-10-03 13:57:23 -0700441 entries_[type] = entry;
442 }
443 return *entry;
444 } else {
Ian Rogers84fa0742011-10-25 18:13:30 -0700445 for (size_t i = RegType::kRegTypeLastFixedLocation + 1; i < entries_.size(); i++) {
Ian Rogersd81871c2011-10-03 13:57:23 -0700446 RegType* cur_entry = entries_[i];
Ian Rogers84fa0742011-10-25 18:13:30 -0700447 if (cur_entry->IsReference() && cur_entry->GetClass() == klass) {
Ian Rogersd81871c2011-10-03 13:57:23 -0700448 return *cur_entry;
449 }
450 }
Ian Rogers84fa0742011-10-25 18:13:30 -0700451 RegType* entry = new RegType(RegType::kRegTypeReference, klass, 0, entries_.size());
Ian Rogersd81871c2011-10-03 13:57:23 -0700452 entries_.push_back(entry);
453 return *entry;
454 }
455}
456
Ian Rogers28ad40d2011-10-27 15:19:26 -0700457const RegType& RegTypeCache::Uninitialized(const RegType& type, uint32_t allocation_pc) {
458 RegType* entry;
459 if (type.IsUnresolvedTypes()) {
460 String* descriptor = type.GetDescriptor();
461 for (size_t i = RegType::kRegTypeLastFixedLocation + 1; i < entries_.size(); i++) {
462 RegType* cur_entry = entries_[i];
463 if (cur_entry->IsUnresolvedAndUninitializedReference() &&
464 cur_entry->GetAllocationPc() == allocation_pc &&
465 cur_entry->GetDescriptor() == descriptor) {
466 return *cur_entry;
467 }
Ian Rogersd81871c2011-10-03 13:57:23 -0700468 }
Ian Rogers28ad40d2011-10-27 15:19:26 -0700469 entry = new RegType(RegType::kRegTypeUnresolvedAndUninitializedReference,
470 descriptor, allocation_pc, entries_.size());
471 } else {
472 Class* klass = type.GetClass();
473 for (size_t i = RegType::kRegTypeLastFixedLocation + 1; i < entries_.size(); i++) {
474 RegType* cur_entry = entries_[i];
475 if (cur_entry->IsUninitializedReference() &&
476 cur_entry->GetAllocationPc() == allocation_pc &&
477 cur_entry->GetClass() == klass) {
478 return *cur_entry;
479 }
480 }
481 entry = new RegType(RegType::kRegTypeUninitializedReference,
482 klass, allocation_pc, entries_.size());
Ian Rogersd81871c2011-10-03 13:57:23 -0700483 }
Ian Rogers28ad40d2011-10-27 15:19:26 -0700484 entries_.push_back(entry);
485 return *entry;
486}
487
488const RegType& RegTypeCache::FromUninitialized(const RegType& uninit_type) {
489 RegType* entry;
490 if (uninit_type.IsUnresolvedTypes()) {
491 String* descriptor = uninit_type.GetDescriptor();
492 for (size_t i = RegType::kRegTypeLastFixedLocation + 1; i < entries_.size(); i++) {
493 RegType* cur_entry = entries_[i];
494 if (cur_entry->IsUnresolvedReference() && cur_entry->GetDescriptor() == descriptor) {
495 return *cur_entry;
496 }
497 }
498 entry = new RegType(RegType::kRegTypeUnresolvedReference, descriptor, 0, entries_.size());
499 } else {
500 Class* klass = uninit_type.GetClass();
501 for (size_t i = RegType::kRegTypeLastFixedLocation + 1; i < entries_.size(); i++) {
502 RegType* cur_entry = entries_[i];
503 if (cur_entry->IsReference() && cur_entry->GetClass() == klass) {
504 return *cur_entry;
505 }
506 }
507 entry = new RegType(RegType::kRegTypeReference, klass, 0, entries_.size());
508 }
Ian Rogersd81871c2011-10-03 13:57:23 -0700509 entries_.push_back(entry);
510 return *entry;
511}
512
513const RegType& RegTypeCache::UninitializedThisArgument(Class* klass) {
Ian Rogers84fa0742011-10-25 18:13:30 -0700514 for (size_t i = RegType::kRegTypeLastFixedLocation + 1; i < entries_.size(); i++) {
Ian Rogersd81871c2011-10-03 13:57:23 -0700515 RegType* cur_entry = entries_[i];
516 if (cur_entry->IsUninitializedThisReference() && cur_entry->GetClass() == klass) {
517 return *cur_entry;
518 }
519 }
Ian Rogers84fa0742011-10-25 18:13:30 -0700520 RegType* entry = new RegType(RegType::kRegTypeUninitializedThisReference, klass, 0,
Ian Rogersd81871c2011-10-03 13:57:23 -0700521 entries_.size());
522 entries_.push_back(entry);
523 return *entry;
524}
525
526const RegType& RegTypeCache::FromType(RegType::Type type) {
527 CHECK(type < RegType::kRegTypeReference);
528 switch (type) {
529 case RegType::kRegTypeBoolean: return From(type, NULL, "Z");
530 case RegType::kRegTypeByte: return From(type, NULL, "B");
531 case RegType::kRegTypeShort: return From(type, NULL, "S");
532 case RegType::kRegTypeChar: return From(type, NULL, "C");
533 case RegType::kRegTypeInteger: return From(type, NULL, "I");
534 case RegType::kRegTypeFloat: return From(type, NULL, "F");
535 case RegType::kRegTypeLongLo:
536 case RegType::kRegTypeLongHi: return From(type, NULL, "J");
537 case RegType::kRegTypeDoubleLo:
538 case RegType::kRegTypeDoubleHi: return From(type, NULL, "D");
539 default: return From(type, NULL, "");
540 }
541}
542
543const RegType& RegTypeCache::FromCat1Const(int32_t value) {
Ian Rogers84fa0742011-10-25 18:13:30 -0700544 for (size_t i = RegType::kRegTypeLastFixedLocation + 1; i < entries_.size(); i++) {
545 RegType* cur_entry = entries_[i];
546 if (cur_entry->IsConstant() && cur_entry->ConstantValue() == value) {
547 return *cur_entry;
548 }
Ian Rogersd81871c2011-10-03 13:57:23 -0700549 }
Ian Rogers84fa0742011-10-25 18:13:30 -0700550 RegType* entry = new RegType(RegType::kRegTypeConst, NULL, value, entries_.size());
551 entries_.push_back(entry);
552 return *entry;
Ian Rogersd81871c2011-10-03 13:57:23 -0700553}
554
Ian Rogers28ad40d2011-10-27 15:19:26 -0700555const RegType& RegTypeCache::GetComponentType(const RegType& array, const ClassLoader* loader) {
Ian Rogers89310de2012-02-01 13:47:30 -0800556 CHECK(array.IsArrayTypes());
Ian Rogers28ad40d2011-10-27 15:19:26 -0700557 if (array.IsUnresolvedTypes()) {
Elliott Hughes95572412011-12-13 18:14:20 -0800558 std::string descriptor(array.GetDescriptor()->ToModifiedUtf8());
559 std::string component(descriptor.substr(1, descriptor.size() - 1));
Ian Rogers672297c2012-01-10 14:50:55 -0800560 return FromDescriptor(loader, component.c_str());
Ian Rogers28ad40d2011-10-27 15:19:26 -0700561 } else {
562 return FromClass(array.GetClass()->GetComponentType());
563 }
564}
565
566
Ian Rogersd81871c2011-10-03 13:57:23 -0700567bool RegisterLine::CheckConstructorReturn() const {
568 for (size_t i = 0; i < num_regs_; i++) {
569 if (GetRegisterType(i).IsUninitializedThisReference()) {
570 verifier_->Fail(VERIFY_ERROR_GENERIC)
571 << "Constructor returning without calling superclass constructor";
572 return false;
573 }
574 }
575 return true;
576}
577
578void RegisterLine::SetRegisterType(uint32_t vdst, const RegType& new_type) {
579 DCHECK(vdst < num_regs_);
580 if (new_type.IsLowHalf()) {
581 line_[vdst] = new_type.GetId();
582 line_[vdst + 1] = new_type.HighHalf(verifier_->GetRegTypeCache()).GetId();
583 } else if (new_type.IsHighHalf()) {
584 /* should never set these explicitly */
585 verifier_->Fail(VERIFY_ERROR_GENERIC) << "Explicit set of high register type";
586 } else if (new_type.IsConflict()) { // should only be set during a merge
587 verifier_->Fail(VERIFY_ERROR_GENERIC) << "Set register to unknown type " << new_type;
588 } else {
589 line_[vdst] = new_type.GetId();
590 }
591 // Clear the monitor entry bits for this register.
592 ClearAllRegToLockDepths(vdst);
593}
594
595void RegisterLine::SetResultTypeToUnknown() {
596 uint16_t unknown_id = verifier_->GetRegTypeCache()->Unknown().GetId();
597 result_[0] = unknown_id;
598 result_[1] = unknown_id;
599}
600
601void RegisterLine::SetResultRegisterType(const RegType& new_type) {
602 result_[0] = new_type.GetId();
603 if(new_type.IsLowHalf()) {
604 DCHECK_EQ(new_type.HighHalf(verifier_->GetRegTypeCache()).GetId(), new_type.GetId() + 1);
605 result_[1] = new_type.GetId() + 1;
606 } else {
607 result_[1] = verifier_->GetRegTypeCache()->Unknown().GetId();
608 }
609}
610
611const RegType& RegisterLine::GetRegisterType(uint32_t vsrc) const {
612 // The register index was validated during the static pass, so we don't need to check it here.
613 DCHECK_LT(vsrc, num_regs_);
614 return verifier_->GetRegTypeCache()->GetFromId(line_[vsrc]);
615}
616
617const RegType& RegisterLine::GetInvocationThis(const Instruction::DecodedInstruction& dec_insn) {
618 if (dec_insn.vA_ < 1) {
619 verifier_->Fail(VERIFY_ERROR_GENERIC) << "invoke lacks 'this'";
620 return verifier_->GetRegTypeCache()->Unknown();
621 }
622 /* get the element type of the array held in vsrc */
623 const RegType& this_type = GetRegisterType(dec_insn.vC_);
624 if (!this_type.IsReferenceTypes()) {
625 verifier_->Fail(VERIFY_ERROR_GENERIC) << "tried to get class from non-reference register v"
626 << dec_insn.vC_ << " (type=" << this_type << ")";
627 return verifier_->GetRegTypeCache()->Unknown();
628 }
629 return this_type;
630}
631
Ian Rogersd81871c2011-10-03 13:57:23 -0700632bool RegisterLine::VerifyRegisterType(uint32_t vsrc, const RegType& check_type) {
633 // Verify the src register type against the check type refining the type of the register
634 const RegType& src_type = GetRegisterType(vsrc);
Ian Rogersb5e95b92011-10-25 23:28:55 -0700635 if (!check_type.IsAssignableFrom(src_type)) {
Ian Rogersd81871c2011-10-03 13:57:23 -0700636 verifier_->Fail(VERIFY_ERROR_GENERIC) << "register v" << vsrc << " has type " << src_type
637 << " but expected " << check_type;
638 return false;
639 }
jeffhao457cc512012-02-02 16:55:13 -0800640 if (check_type.IsLowHalf()) {
641 const RegType& src_type_h = GetRegisterType(vsrc + 1);
642 if (!src_type.CheckWidePair(src_type_h)) {
643 verifier_->Fail(VERIFY_ERROR_GENERIC) << "wide register v" << vsrc << " has type "
644 << src_type << "/" << src_type_h;
645 return false;
646 }
647 }
Ian Rogersd81871c2011-10-03 13:57:23 -0700648 // The register at vsrc has a defined type, we know the lower-upper-bound, but this is less
649 // precise than the subtype in vsrc so leave it for reference types. For primitive types
650 // if they are a defined type then they are as precise as we can get, however, for constant
651 // types we may wish to refine them. Unfortunately constant propagation has rendered this useless.
652 return true;
653}
654
655void RegisterLine::MarkRefsAsInitialized(const RegType& uninit_type) {
Ian Rogers28ad40d2011-10-27 15:19:26 -0700656 DCHECK(uninit_type.IsUninitializedTypes());
657 const RegType& init_type = verifier_->GetRegTypeCache()->FromUninitialized(uninit_type);
658 size_t changed = 0;
659 for (size_t i = 0; i < num_regs_; i++) {
660 if (GetRegisterType(i).Equals(uninit_type)) {
661 line_[i] = init_type.GetId();
662 changed++;
Ian Rogersd81871c2011-10-03 13:57:23 -0700663 }
Ian Rogersd81871c2011-10-03 13:57:23 -0700664 }
Ian Rogers28ad40d2011-10-27 15:19:26 -0700665 DCHECK_GT(changed, 0u);
Ian Rogersd81871c2011-10-03 13:57:23 -0700666}
667
668void RegisterLine::MarkUninitRefsAsInvalid(const RegType& uninit_type) {
669 for (size_t i = 0; i < num_regs_; i++) {
670 if (GetRegisterType(i).Equals(uninit_type)) {
671 line_[i] = verifier_->GetRegTypeCache()->Conflict().GetId();
672 ClearAllRegToLockDepths(i);
673 }
674 }
675}
676
677void RegisterLine::CopyRegister1(uint32_t vdst, uint32_t vsrc, TypeCategory cat) {
678 DCHECK(cat == kTypeCategory1nr || cat == kTypeCategoryRef);
679 const RegType& type = GetRegisterType(vsrc);
680 SetRegisterType(vdst, type);
681 if ((cat == kTypeCategory1nr && !type.IsCategory1Types()) ||
682 (cat == kTypeCategoryRef && !type.IsReferenceTypes())) {
683 verifier_->Fail(VERIFY_ERROR_GENERIC) << "copy1 v" << vdst << "<-v" << vsrc << " type=" << type
684 << " cat=" << static_cast<int>(cat);
685 } else if (cat == kTypeCategoryRef) {
686 CopyRegToLockDepth(vdst, vsrc);
687 }
688}
689
690void RegisterLine::CopyRegister2(uint32_t vdst, uint32_t vsrc) {
691 const RegType& type_l = GetRegisterType(vsrc);
692 const RegType& type_h = GetRegisterType(vsrc + 1);
693
694 if (!type_l.CheckWidePair(type_h)) {
695 verifier_->Fail(VERIFY_ERROR_GENERIC) << "copy2 v" << vdst << "<-v" << vsrc
696 << " type=" << type_l << "/" << type_h;
697 } else {
698 SetRegisterType(vdst, type_l); // implicitly sets the second half
699 }
700}
701
702void RegisterLine::CopyResultRegister1(uint32_t vdst, bool is_reference) {
703 const RegType& type = verifier_->GetRegTypeCache()->GetFromId(result_[0]);
704 if ((!is_reference && !type.IsCategory1Types()) ||
705 (is_reference && !type.IsReferenceTypes())) {
706 verifier_->Fail(VERIFY_ERROR_GENERIC)
707 << "copyRes1 v" << vdst << "<- result0" << " type=" << type;
708 } else {
709 DCHECK(verifier_->GetRegTypeCache()->GetFromId(result_[1]).IsUnknown());
710 SetRegisterType(vdst, type);
711 result_[0] = verifier_->GetRegTypeCache()->Unknown().GetId();
712 }
713}
714
715/*
716 * Implement "move-result-wide". Copy the category-2 value from the result
717 * register to another register, and reset the result register.
718 */
719void RegisterLine::CopyResultRegister2(uint32_t vdst) {
720 const RegType& type_l = verifier_->GetRegTypeCache()->GetFromId(result_[0]);
721 const RegType& type_h = verifier_->GetRegTypeCache()->GetFromId(result_[1]);
722 if (!type_l.IsCategory2Types()) {
723 verifier_->Fail(VERIFY_ERROR_GENERIC)
724 << "copyRes2 v" << vdst << "<- result0" << " type=" << type_l;
725 } else {
726 DCHECK(type_l.CheckWidePair(type_h)); // Set should never allow this case
727 SetRegisterType(vdst, type_l); // also sets the high
728 result_[0] = verifier_->GetRegTypeCache()->Unknown().GetId();
729 result_[1] = verifier_->GetRegTypeCache()->Unknown().GetId();
730 }
731}
732
733void RegisterLine::CheckUnaryOp(const Instruction::DecodedInstruction& dec_insn,
734 const RegType& dst_type, const RegType& src_type) {
735 if (VerifyRegisterType(dec_insn.vB_, src_type)) {
736 SetRegisterType(dec_insn.vA_, dst_type);
737 }
738}
739
740void RegisterLine::CheckBinaryOp(const Instruction::DecodedInstruction& dec_insn,
741 const RegType& dst_type,
742 const RegType& src_type1, const RegType& src_type2,
743 bool check_boolean_op) {
744 if (VerifyRegisterType(dec_insn.vB_, src_type1) &&
745 VerifyRegisterType(dec_insn.vC_, src_type2)) {
746 if (check_boolean_op) {
747 DCHECK(dst_type.IsInteger());
748 if (GetRegisterType(dec_insn.vB_).IsBooleanTypes() &&
749 GetRegisterType(dec_insn.vC_).IsBooleanTypes()) {
750 SetRegisterType(dec_insn.vA_, verifier_->GetRegTypeCache()->Boolean());
751 return;
752 }
753 }
754 SetRegisterType(dec_insn.vA_, dst_type);
755 }
756}
757
758void RegisterLine::CheckBinaryOp2addr(const Instruction::DecodedInstruction& dec_insn,
759 const RegType& dst_type, const RegType& src_type1,
760 const RegType& src_type2, bool check_boolean_op) {
761 if (VerifyRegisterType(dec_insn.vA_, src_type1) &&
762 VerifyRegisterType(dec_insn.vB_, src_type2)) {
763 if (check_boolean_op) {
764 DCHECK(dst_type.IsInteger());
765 if (GetRegisterType(dec_insn.vA_).IsBooleanTypes() &&
766 GetRegisterType(dec_insn.vB_).IsBooleanTypes()) {
767 SetRegisterType(dec_insn.vA_, verifier_->GetRegTypeCache()->Boolean());
768 return;
769 }
770 }
771 SetRegisterType(dec_insn.vA_, dst_type);
772 }
773}
774
775void RegisterLine::CheckLiteralOp(const Instruction::DecodedInstruction& dec_insn,
776 const RegType& dst_type, const RegType& src_type,
777 bool check_boolean_op) {
778 if (VerifyRegisterType(dec_insn.vB_, src_type)) {
779 if (check_boolean_op) {
780 DCHECK(dst_type.IsInteger());
781 /* check vB with the call, then check the constant manually */
782 if (GetRegisterType(dec_insn.vB_).IsBooleanTypes() &&
783 (dec_insn.vC_ == 0 || dec_insn.vC_ == 1)) {
784 SetRegisterType(dec_insn.vA_, verifier_->GetRegTypeCache()->Boolean());
785 return;
786 }
787 }
788 SetRegisterType(dec_insn.vA_, dst_type);
789 }
790}
791
792void RegisterLine::PushMonitor(uint32_t reg_idx, int32_t insn_idx) {
793 const RegType& reg_type = GetRegisterType(reg_idx);
794 if (!reg_type.IsReferenceTypes()) {
795 verifier_->Fail(VERIFY_ERROR_GENERIC) << "monitor-enter on non-object (" << reg_type << ")";
Elliott Hughesfbef9462011-12-14 14:24:40 -0800796 } else if (monitors_.size() >= 32) {
797 verifier_->Fail(VERIFY_ERROR_GENERIC) << "monitor-enter stack overflow: " << monitors_.size();
Ian Rogersd81871c2011-10-03 13:57:23 -0700798 } else {
799 SetRegToLockDepth(reg_idx, monitors_.size());
Ian Rogers55d249f2011-11-02 16:48:09 -0700800 monitors_.push_back(insn_idx);
Ian Rogersd81871c2011-10-03 13:57:23 -0700801 }
802}
803
804void RegisterLine::PopMonitor(uint32_t reg_idx) {
805 const RegType& reg_type = GetRegisterType(reg_idx);
806 if (!reg_type.IsReferenceTypes()) {
807 verifier_->Fail(VERIFY_ERROR_GENERIC) << "monitor-exit on non-object (" << reg_type << ")";
808 } else if (monitors_.empty()) {
809 verifier_->Fail(VERIFY_ERROR_GENERIC) << "monitor-exit stack underflow";
810 } else {
Ian Rogers55d249f2011-11-02 16:48:09 -0700811 monitors_.pop_back();
Ian Rogersd81871c2011-10-03 13:57:23 -0700812 if(!IsSetLockDepth(reg_idx, monitors_.size())) {
813 // Bug 3215458: Locks and unlocks are on objects, if that object is a literal then before
814 // format "036" the constant collector may create unlocks on the same object but referenced
815 // via different registers.
816 ((verifier_->DexFileVersion() >= 36) ? verifier_->Fail(VERIFY_ERROR_GENERIC)
817 : verifier_->LogVerifyInfo())
818 << "monitor-exit not unlocking the top of the monitor stack";
819 } else {
820 // Record the register was unlocked
821 ClearRegToLockDepth(reg_idx, monitors_.size());
822 }
823 }
824}
825
826bool RegisterLine::VerifyMonitorStackEmpty() {
827 if (MonitorStackDepth() != 0) {
828 verifier_->Fail(VERIFY_ERROR_GENERIC) << "expected empty monitor stack";
829 return false;
830 } else {
831 return true;
832 }
833}
834
835bool RegisterLine::MergeRegisters(const RegisterLine* incoming_line) {
836 bool changed = false;
837 for (size_t idx = 0; idx < num_regs_; idx++) {
838 if (line_[idx] != incoming_line->line_[idx]) {
839 const RegType& incoming_reg_type = incoming_line->GetRegisterType(idx);
840 const RegType& cur_type = GetRegisterType(idx);
841 const RegType& new_type = cur_type.Merge(incoming_reg_type, verifier_->GetRegTypeCache());
842 changed = changed || !cur_type.Equals(new_type);
843 line_[idx] = new_type.GetId();
844 }
845 }
Ian Rogers55d249f2011-11-02 16:48:09 -0700846 if(monitors_.size() != incoming_line->monitors_.size()) {
Ian Rogersd81871c2011-10-03 13:57:23 -0700847 verifier_->Fail(VERIFY_ERROR_GENERIC) << "mismatched stack depths (depth="
848 << MonitorStackDepth() << ", incoming depth=" << incoming_line->MonitorStackDepth() << ")";
849 } else if (reg_to_lock_depths_ != incoming_line->reg_to_lock_depths_) {
850 for (uint32_t idx = 0; idx < num_regs_; idx++) {
851 size_t depths = reg_to_lock_depths_.count(idx);
852 size_t incoming_depths = incoming_line->reg_to_lock_depths_.count(idx);
853 if (depths != incoming_depths) {
854 if (depths == 0 || incoming_depths == 0) {
855 reg_to_lock_depths_.erase(idx);
856 } else {
857 verifier_->Fail(VERIFY_ERROR_GENERIC) << "mismatched stack depths for register v" << idx
858 << ": " << depths << " != " << incoming_depths;
859 break;
860 }
861 }
862 }
863 }
864 return changed;
865}
866
Brian Carlstrome7d856b2012-01-11 18:10:55 -0800867void RegisterLine::WriteReferenceBitMap(std::vector<uint8_t>& data, size_t max_bytes) {
Ian Rogersd81871c2011-10-03 13:57:23 -0700868 for (size_t i = 0; i < num_regs_; i += 8) {
869 uint8_t val = 0;
870 for (size_t j = 0; j < 8 && (i + j) < num_regs_; j++) {
871 // Note: we write 1 for a Reference but not for Null
Ian Rogers84fa0742011-10-25 18:13:30 -0700872 if (GetRegisterType(i + j).IsNonZeroReferenceTypes()) {
Ian Rogersd81871c2011-10-03 13:57:23 -0700873 val |= 1 << j;
874 }
875 }
Brian Carlstrome7d856b2012-01-11 18:10:55 -0800876 if ((i / 8) >= max_bytes) {
877 DCHECK_EQ(0, val);
878 continue;
Ian Rogersd81871c2011-10-03 13:57:23 -0700879 }
Brian Carlstrome7d856b2012-01-11 18:10:55 -0800880 DCHECK_LT(i / 8, max_bytes) << "val=" << static_cast<uint32_t>(val);
881 data.push_back(val);
Ian Rogersd81871c2011-10-03 13:57:23 -0700882 }
883}
884
885std::ostream& operator<<(std::ostream& os, const RegisterLine& rhs) {
Ian Rogers2c8a8572011-10-24 17:11:36 -0700886 os << rhs.Dump();
Ian Rogersd81871c2011-10-03 13:57:23 -0700887 return os;
888}
889
890
891void PcToRegisterLineTable::Init(RegisterTrackingMode mode, InsnFlags* flags,
892 uint32_t insns_size, uint16_t registers_size,
893 DexVerifier* verifier) {
894 DCHECK_GT(insns_size, 0U);
895
896 for (uint32_t i = 0; i < insns_size; i++) {
897 bool interesting = false;
898 switch (mode) {
899 case kTrackRegsAll:
900 interesting = flags[i].IsOpcode();
901 break;
902 case kTrackRegsGcPoints:
903 interesting = flags[i].IsGcPoint() || flags[i].IsBranchTarget();
904 break;
905 case kTrackRegsBranches:
906 interesting = flags[i].IsBranchTarget();
907 break;
908 default:
909 break;
910 }
911 if (interesting) {
912 pc_to_register_line_[i] = new RegisterLine(registers_size, verifier);
913 }
914 }
915}
916
Ian Rogers1c5eb702012-02-01 09:18:34 -0800917bool DexVerifier::VerifyClass(const Class* klass, std::string& error) {
jeffhaobdb76512011-09-07 11:43:16 -0700918 if (klass->IsVerified()) {
919 return true;
920 }
Ian Rogersd81871c2011-10-03 13:57:23 -0700921 Class* super = klass->GetSuperClass();
Elliott Hughes91250e02011-12-13 22:30:35 -0800922 if (super == NULL && StringPiece(ClassHelper(klass).GetDescriptor()) != "Ljava/lang/Object;") {
Ian Rogers1c5eb702012-02-01 09:18:34 -0800923 error = "Verifier rejected class ";
924 error += PrettyDescriptor(klass);
925 error += " that has no super class";
Ian Rogersd81871c2011-10-03 13:57:23 -0700926 return false;
927 }
Ian Rogers1c5eb702012-02-01 09:18:34 -0800928 if (super != NULL && super->IsFinal()) {
929 error = "Verifier rejected class ";
930 error += PrettyDescriptor(klass);
931 error += " that attempts to sub-class final class ";
932 error += PrettyDescriptor(super);
933 return false;
Ian Rogersd81871c2011-10-03 13:57:23 -0700934 }
jeffhaobdb76512011-09-07 11:43:16 -0700935 for (size_t i = 0; i < klass->NumDirectMethods(); ++i) {
936 Method* method = klass->GetDirectMethod(i);
937 if (!VerifyMethod(method)) {
Ian Rogers1c5eb702012-02-01 09:18:34 -0800938 error = "Verifier rejected class ";
939 error += PrettyDescriptor(klass);
940 error += " due to bad method ";
941 error += PrettyMethod(method, true);
jeffhaobdb76512011-09-07 11:43:16 -0700942 return false;
943 }
944 }
945 for (size_t i = 0; i < klass->NumVirtualMethods(); ++i) {
946 Method* method = klass->GetVirtualMethod(i);
947 if (!VerifyMethod(method)) {
Ian Rogers1c5eb702012-02-01 09:18:34 -0800948 error = "Verifier rejected class ";
949 error += PrettyDescriptor(klass);
950 error += " due to bad method ";
951 error += PrettyMethod(method, true);
jeffhaobdb76512011-09-07 11:43:16 -0700952 return false;
953 }
954 }
955 return true;
jeffhaoba5ebb92011-08-25 17:24:37 -0700956}
957
jeffhaobdb76512011-09-07 11:43:16 -0700958bool DexVerifier::VerifyMethod(Method* method) {
Ian Rogersd81871c2011-10-03 13:57:23 -0700959 DexVerifier verifier(method);
960 bool success = verifier.Verify();
Brian Carlstrom75412882012-01-18 01:26:54 -0800961 CHECK_EQ(success, verifier.failure_ == VERIFY_ERROR_NONE);
962
Ian Rogersd81871c2011-10-03 13:57:23 -0700963 // We expect either success and no verification error, or failure and a generic failure to
964 // reject the class.
965 if (success) {
966 if (verifier.failure_ != VERIFY_ERROR_NONE) {
967 LOG(FATAL) << "Unhandled failure in verification of " << PrettyMethod(method) << std::endl
968 << verifier.fail_messages_;
969 }
970 } else {
971 LOG(INFO) << "Verification error in " << PrettyMethod(method) << " "
Ian Rogers5ed29bf2011-10-26 12:22:21 -0700972 << verifier.fail_messages_.str();
Ian Rogers2c8a8572011-10-24 17:11:36 -0700973 if (gDebugVerify) {
Ian Rogers5ed29bf2011-10-26 12:22:21 -0700974 std::cout << std::endl << verifier.info_messages_.str();
Ian Rogers2c8a8572011-10-24 17:11:36 -0700975 verifier.Dump(std::cout);
976 }
Ian Rogersd81871c2011-10-03 13:57:23 -0700977 DCHECK_EQ(verifier.failure_, VERIFY_ERROR_GENERIC);
978 }
979 return success;
980}
981
Shih-wei Liao371814f2011-10-27 16:52:10 -0700982void DexVerifier::VerifyMethodAndDump(Method* method) {
983 DexVerifier verifier(method);
984 verifier.Verify();
985
Elliott Hughese0918552011-10-28 17:18:29 -0700986 LOG(INFO) << "Dump of method " << PrettyMethod(method) << " "
987 << verifier.fail_messages_.str() << std::endl
988 << verifier.info_messages_.str() << Dumpable<DexVerifier>(verifier);
Shih-wei Liao371814f2011-10-27 16:52:10 -0700989}
990
Brian Carlstrome7d856b2012-01-11 18:10:55 -0800991DexVerifier::DexVerifier(Method* method)
992 : work_insn_idx_(-1),
993 method_(method),
994 failure_(VERIFY_ERROR_NONE),
995 new_instance_count_(0),
996 monitor_enter_count_(0) {
997 CHECK(method != NULL);
jeffhaobdb76512011-09-07 11:43:16 -0700998 const DexCache* dex_cache = method->GetDeclaringClass()->GetDexCache();
Brian Carlstromc12a17a2012-01-17 18:02:32 -0800999 ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
Ian Rogersd81871c2011-10-03 13:57:23 -07001000 dex_file_ = &class_linker->FindDexFile(dex_cache);
1001 code_item_ = dex_file_->GetCodeItem(method->GetCodeItemOffset());
jeffhaoba5ebb92011-08-25 17:24:37 -07001002}
1003
Ian Rogersd81871c2011-10-03 13:57:23 -07001004bool DexVerifier::Verify() {
1005 // If there aren't any instructions, make sure that's expected, then exit successfully.
1006 if (code_item_ == NULL) {
1007 if (!method_->IsNative() && !method_->IsAbstract()) {
1008 Fail(VERIFY_ERROR_GENERIC) << "zero-length code in concrete non-native method";
jeffhaobdb76512011-09-07 11:43:16 -07001009 return false;
Ian Rogersd81871c2011-10-03 13:57:23 -07001010 } else {
1011 return true;
jeffhaobdb76512011-09-07 11:43:16 -07001012 }
jeffhaobdb76512011-09-07 11:43:16 -07001013 }
Ian Rogersd81871c2011-10-03 13:57:23 -07001014 // Sanity-check the register counts. ins + locals = registers, so make sure that ins <= registers.
1015 if (code_item_->ins_size_ > code_item_->registers_size_) {
1016 Fail(VERIFY_ERROR_GENERIC) << "bad register counts (ins=" << code_item_->ins_size_
1017 << " regs=" << code_item_->registers_size_;
1018 return false;
jeffhaobdb76512011-09-07 11:43:16 -07001019 }
Ian Rogersd81871c2011-10-03 13:57:23 -07001020 // Allocate and initialize an array to hold instruction data.
1021 insn_flags_.reset(new InsnFlags[code_item_->insns_size_in_code_units_]());
1022 // Run through the instructions and see if the width checks out.
1023 bool result = ComputeWidthsAndCountOps();
1024 // Flag instructions guarded by a "try" block and check exception handlers.
1025 result = result && ScanTryCatchBlocks();
1026 // Perform static instruction verification.
1027 result = result && VerifyInstructions();
1028 // Perform code flow analysis.
1029 result = result && VerifyCodeFlow();
jeffhaobdb76512011-09-07 11:43:16 -07001030 return result;
jeffhaoba5ebb92011-08-25 17:24:37 -07001031}
1032
Ian Rogers47a05882012-02-03 12:23:33 -08001033std::ostream& DexVerifier::Fail(VerifyError error) {
1034 CHECK_EQ(failure_, VERIFY_ERROR_NONE);
Ian Rogers9ada79c2012-02-03 14:29:52 -08001035 // If we're optimistically running verification at compile time, turn NO_xxx and ACCESS_xxx
1036 // errors into generic errors so that we re-verify at runtime. We may fail to find or to agree
1037 // on access because of not yet available class loaders, or class loaders that will differ at
1038 // runtime.
Ian Rogers47a05882012-02-03 12:23:33 -08001039 if (Runtime::Current()->IsCompiler()) {
1040 switch(error) {
1041 case VERIFY_ERROR_NO_CLASS:
1042 case VERIFY_ERROR_NO_FIELD:
1043 case VERIFY_ERROR_NO_METHOD:
Ian Rogers9ada79c2012-02-03 14:29:52 -08001044 case VERIFY_ERROR_ACCESS_CLASS:
1045 case VERIFY_ERROR_ACCESS_FIELD:
1046 case VERIFY_ERROR_ACCESS_METHOD:
Ian Rogers47a05882012-02-03 12:23:33 -08001047 error = VERIFY_ERROR_GENERIC;
1048 break;
1049 default:
1050 break;
1051 }
1052 }
1053 failure_ = error;
1054 return fail_messages_ << "VFY: " << PrettyMethod(method_)
1055 << '[' << reinterpret_cast<void*>(work_insn_idx_) << "] : ";
1056}
1057
Ian Rogersd81871c2011-10-03 13:57:23 -07001058bool DexVerifier::ComputeWidthsAndCountOps() {
1059 const uint16_t* insns = code_item_->insns_;
1060 size_t insns_size = code_item_->insns_size_in_code_units_;
1061 const Instruction* inst = Instruction::At(insns);
jeffhaobdb76512011-09-07 11:43:16 -07001062 size_t new_instance_count = 0;
1063 size_t monitor_enter_count = 0;
Ian Rogersd81871c2011-10-03 13:57:23 -07001064 size_t dex_pc = 0;
jeffhaobdb76512011-09-07 11:43:16 -07001065
Ian Rogersd81871c2011-10-03 13:57:23 -07001066 while (dex_pc < insns_size) {
jeffhaobdb76512011-09-07 11:43:16 -07001067 Instruction::Code opcode = inst->Opcode();
1068 if (opcode == Instruction::NEW_INSTANCE) {
1069 new_instance_count++;
1070 } else if (opcode == Instruction::MONITOR_ENTER) {
1071 monitor_enter_count++;
1072 }
Ian Rogersd81871c2011-10-03 13:57:23 -07001073 size_t inst_size = inst->SizeInCodeUnits();
1074 insn_flags_[dex_pc].SetLengthInCodeUnits(inst_size);
1075 dex_pc += inst_size;
jeffhaobdb76512011-09-07 11:43:16 -07001076 inst = inst->Next();
1077 }
1078
Ian Rogersd81871c2011-10-03 13:57:23 -07001079 if (dex_pc != insns_size) {
1080 Fail(VERIFY_ERROR_GENERIC) << "code did not end where expected ("
1081 << dex_pc << " vs. " << insns_size << ")";
jeffhaobdb76512011-09-07 11:43:16 -07001082 return false;
1083 }
1084
Ian Rogersd81871c2011-10-03 13:57:23 -07001085 new_instance_count_ = new_instance_count;
1086 monitor_enter_count_ = monitor_enter_count;
jeffhaobdb76512011-09-07 11:43:16 -07001087 return true;
1088}
1089
Ian Rogersd81871c2011-10-03 13:57:23 -07001090bool DexVerifier::ScanTryCatchBlocks() {
1091 uint32_t tries_size = code_item_->tries_size_;
jeffhaobdb76512011-09-07 11:43:16 -07001092 if (tries_size == 0) {
1093 return true;
1094 }
Ian Rogersd81871c2011-10-03 13:57:23 -07001095 uint32_t insns_size = code_item_->insns_size_in_code_units_;
Ian Rogers0571d352011-11-03 19:51:38 -07001096 const DexFile::TryItem* tries = DexFile::GetTryItems(*code_item_, 0);
jeffhaobdb76512011-09-07 11:43:16 -07001097
1098 for (uint32_t idx = 0; idx < tries_size; idx++) {
1099 const DexFile::TryItem* try_item = &tries[idx];
1100 uint32_t start = try_item->start_addr_;
1101 uint32_t end = start + try_item->insn_count_;
jeffhaobdb76512011-09-07 11:43:16 -07001102 if ((start >= end) || (start >= insns_size) || (end > insns_size)) {
Ian Rogersd81871c2011-10-03 13:57:23 -07001103 Fail(VERIFY_ERROR_GENERIC) << "bad exception entry: startAddr=" << start
1104 << " endAddr=" << end << " (size=" << insns_size << ")";
jeffhaobdb76512011-09-07 11:43:16 -07001105 return false;
1106 }
Ian Rogersd81871c2011-10-03 13:57:23 -07001107 if (!insn_flags_[start].IsOpcode()) {
1108 Fail(VERIFY_ERROR_GENERIC) << "'try' block starts inside an instruction (" << start << ")";
jeffhaobdb76512011-09-07 11:43:16 -07001109 return false;
1110 }
Ian Rogersd81871c2011-10-03 13:57:23 -07001111 for (uint32_t dex_pc = start; dex_pc < end;
1112 dex_pc += insn_flags_[dex_pc].GetLengthInCodeUnits()) {
1113 insn_flags_[dex_pc].SetInTry();
jeffhaobdb76512011-09-07 11:43:16 -07001114 }
1115 }
Brian Carlstrome7d856b2012-01-11 18:10:55 -08001116 // Iterate over each of the handlers to verify target addresses.
Ian Rogers0571d352011-11-03 19:51:38 -07001117 const byte* handlers_ptr = DexFile::GetCatchHandlerData(*code_item_, 0);
jeffhaobdb76512011-09-07 11:43:16 -07001118 uint32_t handlers_size = DecodeUnsignedLeb128(&handlers_ptr);
Ian Rogers28ad40d2011-10-27 15:19:26 -07001119 ClassLinker* linker = Runtime::Current()->GetClassLinker();
jeffhaobdb76512011-09-07 11:43:16 -07001120 for (uint32_t idx = 0; idx < handlers_size; idx++) {
Ian Rogers0571d352011-11-03 19:51:38 -07001121 CatchHandlerIterator iterator(handlers_ptr);
1122 for (; iterator.HasNext(); iterator.Next()) {
1123 uint32_t dex_pc= iterator.GetHandlerAddress();
Ian Rogersd81871c2011-10-03 13:57:23 -07001124 if (!insn_flags_[dex_pc].IsOpcode()) {
1125 Fail(VERIFY_ERROR_GENERIC) << "exception handler starts at bad address (" << dex_pc << ")";
jeffhaobdb76512011-09-07 11:43:16 -07001126 return false;
1127 }
Ian Rogersd81871c2011-10-03 13:57:23 -07001128 insn_flags_[dex_pc].SetBranchTarget();
Ian Rogers28ad40d2011-10-27 15:19:26 -07001129 // Ensure exception types are resolved so that they don't need resolution to be delivered,
1130 // unresolved exception types will be ignored by exception delivery
Ian Rogers0571d352011-11-03 19:51:38 -07001131 if (iterator.GetHandlerTypeIndex() != DexFile::kDexNoIndex16) {
1132 Class* exception_type = linker->ResolveType(iterator.GetHandlerTypeIndex(), method_);
Ian Rogers28ad40d2011-10-27 15:19:26 -07001133 if (exception_type == NULL) {
1134 DCHECK(Thread::Current()->IsExceptionPending());
1135 Thread::Current()->ClearException();
1136 }
1137 }
jeffhaobdb76512011-09-07 11:43:16 -07001138 }
Ian Rogers0571d352011-11-03 19:51:38 -07001139 handlers_ptr = iterator.EndDataPointer();
jeffhaobdb76512011-09-07 11:43:16 -07001140 }
jeffhaobdb76512011-09-07 11:43:16 -07001141 return true;
1142}
1143
Ian Rogersd81871c2011-10-03 13:57:23 -07001144bool DexVerifier::VerifyInstructions() {
1145 const Instruction* inst = Instruction::At(code_item_->insns_);
jeffhaoba5ebb92011-08-25 17:24:37 -07001146
Ian Rogersd81871c2011-10-03 13:57:23 -07001147 /* Flag the start of the method as a branch target. */
1148 insn_flags_[0].SetBranchTarget();
1149
1150 uint32_t insns_size = code_item_->insns_size_in_code_units_;
1151 for(uint32_t dex_pc = 0; dex_pc < insns_size;) {
1152 if (!VerifyInstruction(inst, dex_pc)) {
Ian Rogers2c8a8572011-10-24 17:11:36 -07001153 DCHECK_NE(failure_, VERIFY_ERROR_NONE);
1154 fail_messages_ << "Rejecting opcode " << inst->DumpString(dex_file_) << " at " << dex_pc;
Ian Rogersd81871c2011-10-03 13:57:23 -07001155 return false;
1156 }
1157 /* Flag instructions that are garbage collection points */
1158 if (inst->IsBranch() || inst->IsSwitch() || inst->IsThrow() || inst->IsReturn()) {
1159 insn_flags_[dex_pc].SetGcPoint();
1160 }
1161 dex_pc += inst->SizeInCodeUnits();
1162 inst = inst->Next();
1163 }
1164 return true;
1165}
1166
1167bool DexVerifier::VerifyInstruction(const Instruction* inst, uint32_t code_offset) {
1168 Instruction::DecodedInstruction dec_insn(inst);
1169 bool result = true;
1170 switch (inst->GetVerifyTypeArgumentA()) {
1171 case Instruction::kVerifyRegA:
1172 result = result && CheckRegisterIndex(dec_insn.vA_);
1173 break;
1174 case Instruction::kVerifyRegAWide:
1175 result = result && CheckWideRegisterIndex(dec_insn.vA_);
1176 break;
1177 }
1178 switch (inst->GetVerifyTypeArgumentB()) {
1179 case Instruction::kVerifyRegB:
1180 result = result && CheckRegisterIndex(dec_insn.vB_);
1181 break;
1182 case Instruction::kVerifyRegBField:
1183 result = result && CheckFieldIndex(dec_insn.vB_);
1184 break;
1185 case Instruction::kVerifyRegBMethod:
1186 result = result && CheckMethodIndex(dec_insn.vB_);
1187 break;
1188 case Instruction::kVerifyRegBNewInstance:
1189 result = result && CheckNewInstance(dec_insn.vB_);
1190 break;
1191 case Instruction::kVerifyRegBString:
1192 result = result && CheckStringIndex(dec_insn.vB_);
1193 break;
1194 case Instruction::kVerifyRegBType:
1195 result = result && CheckTypeIndex(dec_insn.vB_);
1196 break;
1197 case Instruction::kVerifyRegBWide:
1198 result = result && CheckWideRegisterIndex(dec_insn.vB_);
1199 break;
1200 }
1201 switch (inst->GetVerifyTypeArgumentC()) {
1202 case Instruction::kVerifyRegC:
1203 result = result && CheckRegisterIndex(dec_insn.vC_);
1204 break;
1205 case Instruction::kVerifyRegCField:
1206 result = result && CheckFieldIndex(dec_insn.vC_);
1207 break;
1208 case Instruction::kVerifyRegCNewArray:
1209 result = result && CheckNewArray(dec_insn.vC_);
1210 break;
1211 case Instruction::kVerifyRegCType:
1212 result = result && CheckTypeIndex(dec_insn.vC_);
1213 break;
1214 case Instruction::kVerifyRegCWide:
1215 result = result && CheckWideRegisterIndex(dec_insn.vC_);
1216 break;
1217 }
1218 switch (inst->GetVerifyExtraFlags()) {
1219 case Instruction::kVerifyArrayData:
1220 result = result && CheckArrayData(code_offset);
1221 break;
1222 case Instruction::kVerifyBranchTarget:
1223 result = result && CheckBranchTarget(code_offset);
1224 break;
1225 case Instruction::kVerifySwitchTargets:
1226 result = result && CheckSwitchTargets(code_offset);
1227 break;
1228 case Instruction::kVerifyVarArg:
1229 result = result && CheckVarArgRegs(dec_insn.vA_, dec_insn.arg_);
1230 break;
1231 case Instruction::kVerifyVarArgRange:
1232 result = result && CheckVarArgRangeRegs(dec_insn.vA_, dec_insn.vC_);
1233 break;
1234 case Instruction::kVerifyError:
1235 Fail(VERIFY_ERROR_GENERIC) << "unexpected opcode " << inst->Name();
1236 result = false;
1237 break;
1238 }
1239 return result;
1240}
1241
1242bool DexVerifier::CheckRegisterIndex(uint32_t idx) {
1243 if (idx >= code_item_->registers_size_) {
1244 Fail(VERIFY_ERROR_GENERIC) << "register index out of range (" << idx << " >= "
1245 << code_item_->registers_size_ << ")";
1246 return false;
1247 }
1248 return true;
1249}
1250
1251bool DexVerifier::CheckWideRegisterIndex(uint32_t idx) {
1252 if (idx + 1 >= code_item_->registers_size_) {
1253 Fail(VERIFY_ERROR_GENERIC) << "wide register index out of range (" << idx
1254 << "+1 >= " << code_item_->registers_size_ << ")";
1255 return false;
1256 }
1257 return true;
1258}
1259
1260bool DexVerifier::CheckFieldIndex(uint32_t idx) {
1261 if (idx >= dex_file_->GetHeader().field_ids_size_) {
1262 Fail(VERIFY_ERROR_GENERIC) << "bad field index " << idx << " (max "
1263 << dex_file_->GetHeader().field_ids_size_ << ")";
1264 return false;
1265 }
1266 return true;
1267}
1268
1269bool DexVerifier::CheckMethodIndex(uint32_t idx) {
1270 if (idx >= dex_file_->GetHeader().method_ids_size_) {
1271 Fail(VERIFY_ERROR_GENERIC) << "bad method index " << idx << " (max "
1272 << dex_file_->GetHeader().method_ids_size_ << ")";
1273 return false;
1274 }
1275 return true;
1276}
1277
1278bool DexVerifier::CheckNewInstance(uint32_t idx) {
1279 if (idx >= dex_file_->GetHeader().type_ids_size_) {
1280 Fail(VERIFY_ERROR_GENERIC) << "bad type index " << idx << " (max "
1281 << dex_file_->GetHeader().type_ids_size_ << ")";
1282 return false;
1283 }
1284 // We don't need the actual class, just a pointer to the class name.
Ian Rogers0571d352011-11-03 19:51:38 -07001285 const char* descriptor = dex_file_->StringByTypeIdx(idx);
Ian Rogersd81871c2011-10-03 13:57:23 -07001286 if (descriptor[0] != 'L') {
1287 Fail(VERIFY_ERROR_GENERIC) << "can't call new-instance on type '" << descriptor << "'";
1288 return false;
1289 }
1290 return true;
1291}
1292
1293bool DexVerifier::CheckStringIndex(uint32_t idx) {
1294 if (idx >= dex_file_->GetHeader().string_ids_size_) {
1295 Fail(VERIFY_ERROR_GENERIC) << "bad string index " << idx << " (max "
1296 << dex_file_->GetHeader().string_ids_size_ << ")";
1297 return false;
1298 }
1299 return true;
1300}
1301
1302bool DexVerifier::CheckTypeIndex(uint32_t idx) {
1303 if (idx >= dex_file_->GetHeader().type_ids_size_) {
1304 Fail(VERIFY_ERROR_GENERIC) << "bad type index " << idx << " (max "
1305 << dex_file_->GetHeader().type_ids_size_ << ")";
1306 return false;
1307 }
1308 return true;
1309}
1310
1311bool DexVerifier::CheckNewArray(uint32_t idx) {
1312 if (idx >= dex_file_->GetHeader().type_ids_size_) {
1313 Fail(VERIFY_ERROR_GENERIC) << "bad type index " << idx << " (max "
1314 << dex_file_->GetHeader().type_ids_size_ << ")";
1315 return false;
1316 }
1317 int bracket_count = 0;
Ian Rogers0571d352011-11-03 19:51:38 -07001318 const char* descriptor = dex_file_->StringByTypeIdx(idx);
Ian Rogersd81871c2011-10-03 13:57:23 -07001319 const char* cp = descriptor;
1320 while (*cp++ == '[') {
1321 bracket_count++;
1322 }
1323 if (bracket_count == 0) {
1324 /* The given class must be an array type. */
1325 Fail(VERIFY_ERROR_GENERIC) << "can't new-array class '" << descriptor << "' (not an array)";
1326 return false;
1327 } else if (bracket_count > 255) {
1328 /* It is illegal to create an array of more than 255 dimensions. */
1329 Fail(VERIFY_ERROR_GENERIC) << "can't new-array class '" << descriptor << "' (exceeds limit)";
1330 return false;
1331 }
1332 return true;
1333}
1334
1335bool DexVerifier::CheckArrayData(uint32_t cur_offset) {
1336 const uint32_t insn_count = code_item_->insns_size_in_code_units_;
1337 const uint16_t* insns = code_item_->insns_ + cur_offset;
1338 const uint16_t* array_data;
1339 int32_t array_data_offset;
1340
1341 DCHECK_LT(cur_offset, insn_count);
1342 /* make sure the start of the array data table is in range */
1343 array_data_offset = insns[1] | (((int32_t) insns[2]) << 16);
1344 if ((int32_t) cur_offset + array_data_offset < 0 ||
1345 cur_offset + array_data_offset + 2 >= insn_count) {
1346 Fail(VERIFY_ERROR_GENERIC) << "invalid array data start: at " << cur_offset
1347 << ", data offset " << array_data_offset << ", count " << insn_count;
1348 return false;
1349 }
1350 /* offset to array data table is a relative branch-style offset */
1351 array_data = insns + array_data_offset;
1352 /* make sure the table is 32-bit aligned */
1353 if ((((uint32_t) array_data) & 0x03) != 0) {
1354 Fail(VERIFY_ERROR_GENERIC) << "unaligned array data table: at " << cur_offset
1355 << ", data offset " << array_data_offset;
1356 return false;
1357 }
1358 uint32_t value_width = array_data[1];
1359 uint32_t value_count = *(uint32_t*) (&array_data[2]);
1360 uint32_t table_size = 4 + (value_width * value_count + 1) / 2;
1361 /* make sure the end of the switch is in range */
1362 if (cur_offset + array_data_offset + table_size > insn_count) {
1363 Fail(VERIFY_ERROR_GENERIC) << "invalid array data end: at " << cur_offset
1364 << ", data offset " << array_data_offset << ", end "
1365 << cur_offset + array_data_offset + table_size
1366 << ", count " << insn_count;
1367 return false;
1368 }
1369 return true;
1370}
1371
1372bool DexVerifier::CheckBranchTarget(uint32_t cur_offset) {
1373 int32_t offset;
1374 bool isConditional, selfOkay;
1375 if (!GetBranchOffset(cur_offset, &offset, &isConditional, &selfOkay)) {
1376 return false;
1377 }
1378 if (!selfOkay && offset == 0) {
1379 Fail(VERIFY_ERROR_GENERIC) << "branch offset of zero not allowed at" << (void*) cur_offset;
1380 return false;
1381 }
1382 // Check for 32-bit overflow. This isn't strictly necessary if we can depend on the VM to have
1383 // identical "wrap-around" behavior, but it's unwise to depend on that.
1384 if (((int64_t) cur_offset + (int64_t) offset) != (int64_t) (cur_offset + offset)) {
1385 Fail(VERIFY_ERROR_GENERIC) << "branch target overflow " << (void*) cur_offset << " +" << offset;
1386 return false;
1387 }
1388 const uint32_t insn_count = code_item_->insns_size_in_code_units_;
1389 int32_t abs_offset = cur_offset + offset;
1390 if (abs_offset < 0 || (uint32_t) abs_offset >= insn_count || !insn_flags_[abs_offset].IsOpcode()) {
1391 Fail(VERIFY_ERROR_GENERIC) << "invalid branch target " << offset << " (-> "
1392 << (void*) abs_offset << ") at " << (void*) cur_offset;
1393 return false;
1394 }
1395 insn_flags_[abs_offset].SetBranchTarget();
1396 return true;
1397}
1398
1399bool DexVerifier::GetBranchOffset(uint32_t cur_offset, int32_t* pOffset, bool* pConditional,
1400 bool* selfOkay) {
1401 const uint16_t* insns = code_item_->insns_ + cur_offset;
1402 *pConditional = false;
1403 *selfOkay = false;
jeffhaoba5ebb92011-08-25 17:24:37 -07001404 switch (*insns & 0xff) {
1405 case Instruction::GOTO:
1406 *pOffset = ((int16_t) *insns) >> 8;
jeffhaoba5ebb92011-08-25 17:24:37 -07001407 break;
1408 case Instruction::GOTO_32:
1409 *pOffset = insns[1] | (((uint32_t) insns[2]) << 16);
jeffhaoba5ebb92011-08-25 17:24:37 -07001410 *selfOkay = true;
1411 break;
1412 case Instruction::GOTO_16:
1413 *pOffset = (int16_t) insns[1];
jeffhaoba5ebb92011-08-25 17:24:37 -07001414 break;
1415 case Instruction::IF_EQ:
1416 case Instruction::IF_NE:
1417 case Instruction::IF_LT:
1418 case Instruction::IF_GE:
1419 case Instruction::IF_GT:
1420 case Instruction::IF_LE:
1421 case Instruction::IF_EQZ:
1422 case Instruction::IF_NEZ:
1423 case Instruction::IF_LTZ:
1424 case Instruction::IF_GEZ:
1425 case Instruction::IF_GTZ:
1426 case Instruction::IF_LEZ:
1427 *pOffset = (int16_t) insns[1];
1428 *pConditional = true;
jeffhaoba5ebb92011-08-25 17:24:37 -07001429 break;
1430 default:
1431 return false;
1432 break;
1433 }
jeffhaoba5ebb92011-08-25 17:24:37 -07001434 return true;
1435}
1436
Ian Rogersd81871c2011-10-03 13:57:23 -07001437bool DexVerifier::CheckSwitchTargets(uint32_t cur_offset) {
1438 const uint32_t insn_count = code_item_->insns_size_in_code_units_;
Brian Carlstrom5b8e4c82011-09-18 01:38:59 -07001439 DCHECK_LT(cur_offset, insn_count);
Ian Rogersd81871c2011-10-03 13:57:23 -07001440 const uint16_t* insns = code_item_->insns_ + cur_offset;
jeffhaoba5ebb92011-08-25 17:24:37 -07001441 /* make sure the start of the switch is in range */
Ian Rogersd81871c2011-10-03 13:57:23 -07001442 int32_t switch_offset = insns[1] | ((int32_t) insns[2]) << 16;
1443 if ((int32_t) cur_offset + switch_offset < 0 || cur_offset + switch_offset + 2 >= insn_count) {
1444 Fail(VERIFY_ERROR_GENERIC) << "invalid switch start: at " << cur_offset
1445 << ", switch offset " << switch_offset << ", count " << insn_count;
jeffhaoba5ebb92011-08-25 17:24:37 -07001446 return false;
1447 }
jeffhaoba5ebb92011-08-25 17:24:37 -07001448 /* offset to switch table is a relative branch-style offset */
Ian Rogersd81871c2011-10-03 13:57:23 -07001449 const uint16_t* switch_insns = insns + switch_offset;
jeffhaoba5ebb92011-08-25 17:24:37 -07001450 /* make sure the table is 32-bit aligned */
1451 if ((((uint32_t) switch_insns) & 0x03) != 0) {
Ian Rogersd81871c2011-10-03 13:57:23 -07001452 Fail(VERIFY_ERROR_GENERIC) << "unaligned switch table: at " << cur_offset
1453 << ", switch offset " << switch_offset;
jeffhaoba5ebb92011-08-25 17:24:37 -07001454 return false;
1455 }
Ian Rogersd81871c2011-10-03 13:57:23 -07001456 uint32_t switch_count = switch_insns[1];
1457 int32_t keys_offset, targets_offset;
1458 uint16_t expected_signature;
jeffhaoba5ebb92011-08-25 17:24:37 -07001459 if ((*insns & 0xff) == Instruction::PACKED_SWITCH) {
1460 /* 0=sig, 1=count, 2/3=firstKey */
1461 targets_offset = 4;
1462 keys_offset = -1;
1463 expected_signature = Instruction::kPackedSwitchSignature;
1464 } else {
1465 /* 0=sig, 1=count, 2..count*2 = keys */
1466 keys_offset = 2;
1467 targets_offset = 2 + 2 * switch_count;
1468 expected_signature = Instruction::kSparseSwitchSignature;
1469 }
Ian Rogersd81871c2011-10-03 13:57:23 -07001470 uint32_t table_size = targets_offset + switch_count * 2;
jeffhaoba5ebb92011-08-25 17:24:37 -07001471 if (switch_insns[0] != expected_signature) {
Brian Carlstrom2e3d1b22012-01-09 18:01:56 -08001472 Fail(VERIFY_ERROR_GENERIC) << StringPrintf("wrong signature for switch table (%x, wanted %x)",
1473 switch_insns[0], expected_signature);
jeffhaoba5ebb92011-08-25 17:24:37 -07001474 return false;
1475 }
jeffhaoba5ebb92011-08-25 17:24:37 -07001476 /* make sure the end of the switch is in range */
1477 if (cur_offset + switch_offset + table_size > (uint32_t) insn_count) {
Ian Rogersd81871c2011-10-03 13:57:23 -07001478 Fail(VERIFY_ERROR_GENERIC) << "invalid switch end: at " << cur_offset << ", switch offset "
1479 << switch_offset << ", end "
1480 << (cur_offset + switch_offset + table_size)
1481 << ", count " << insn_count;
jeffhaoba5ebb92011-08-25 17:24:37 -07001482 return false;
1483 }
jeffhaoba5ebb92011-08-25 17:24:37 -07001484 /* for a sparse switch, verify the keys are in ascending order */
1485 if (keys_offset > 0 && switch_count > 1) {
Ian Rogersd81871c2011-10-03 13:57:23 -07001486 int32_t last_key = switch_insns[keys_offset] | (switch_insns[keys_offset + 1] << 16);
1487 for (uint32_t targ = 1; targ < switch_count; targ++) {
jeffhaoba5ebb92011-08-25 17:24:37 -07001488 int32_t key = (int32_t) switch_insns[keys_offset + targ * 2] |
1489 (int32_t) (switch_insns[keys_offset + targ * 2 + 1] << 16);
1490 if (key <= last_key) {
Ian Rogersd81871c2011-10-03 13:57:23 -07001491 Fail(VERIFY_ERROR_GENERIC) << "invalid packed switch: last key=" << last_key
1492 << ", this=" << key;
jeffhaoba5ebb92011-08-25 17:24:37 -07001493 return false;
1494 }
jeffhaoba5ebb92011-08-25 17:24:37 -07001495 last_key = key;
1496 }
1497 }
jeffhaoba5ebb92011-08-25 17:24:37 -07001498 /* verify each switch target */
Ian Rogersd81871c2011-10-03 13:57:23 -07001499 for (uint32_t targ = 0; targ < switch_count; targ++) {
1500 int32_t offset = (int32_t) switch_insns[targets_offset + targ * 2] |
1501 (int32_t) (switch_insns[targets_offset + targ * 2 + 1] << 16);
1502 int32_t abs_offset = cur_offset + offset;
1503 if (abs_offset < 0 || abs_offset >= (int32_t) insn_count || !insn_flags_[abs_offset].IsOpcode()) {
1504 Fail(VERIFY_ERROR_GENERIC) << "invalid switch target " << offset << " (-> "
1505 << (void*) abs_offset << ") at "
1506 << (void*) cur_offset << "[" << targ << "]";
jeffhaoba5ebb92011-08-25 17:24:37 -07001507 return false;
1508 }
Ian Rogersd81871c2011-10-03 13:57:23 -07001509 insn_flags_[abs_offset].SetBranchTarget();
1510 }
1511 return true;
1512}
1513
1514bool DexVerifier::CheckVarArgRegs(uint32_t vA, uint32_t arg[]) {
1515 if (vA > 5) {
1516 Fail(VERIFY_ERROR_GENERIC) << "invalid arg count (" << vA << ") in non-range invoke)";
1517 return false;
1518 }
1519 uint16_t registers_size = code_item_->registers_size_;
1520 for (uint32_t idx = 0; idx < vA; idx++) {
jeffhao457cc512012-02-02 16:55:13 -08001521 if (arg[idx] >= registers_size) {
Ian Rogersd81871c2011-10-03 13:57:23 -07001522 Fail(VERIFY_ERROR_GENERIC) << "invalid reg index (" << arg[idx]
jeffhao457cc512012-02-02 16:55:13 -08001523 << ") in non-range invoke (>= " << registers_size << ")";
Ian Rogersd81871c2011-10-03 13:57:23 -07001524 return false;
1525 }
jeffhaoba5ebb92011-08-25 17:24:37 -07001526 }
1527
1528 return true;
1529}
1530
Ian Rogersd81871c2011-10-03 13:57:23 -07001531bool DexVerifier::CheckVarArgRangeRegs(uint32_t vA, uint32_t vC) {
1532 uint16_t registers_size = code_item_->registers_size_;
1533 // vA/vC are unsigned 8-bit/16-bit quantities for /range instructions, so there's no risk of
1534 // integer overflow when adding them here.
1535 if (vA + vC > registers_size) {
1536 Fail(VERIFY_ERROR_GENERIC) << "invalid reg index " << vA << "+" << vC << " in range invoke (> "
1537 << registers_size << ")";
jeffhaoba5ebb92011-08-25 17:24:37 -07001538 return false;
1539 }
jeffhaoba5ebb92011-08-25 17:24:37 -07001540 return true;
1541}
1542
Brian Carlstrom75412882012-01-18 01:26:54 -08001543const std::vector<uint8_t>* CreateLengthPrefixedGcMap(const std::vector<uint8_t>& gc_map) {
1544 std::vector<uint8_t>* length_prefixed_gc_map = new std::vector<uint8_t>;
1545 length_prefixed_gc_map->push_back((gc_map.size() & 0xff000000) >> 24);
1546 length_prefixed_gc_map->push_back((gc_map.size() & 0x00ff0000) >> 16);
1547 length_prefixed_gc_map->push_back((gc_map.size() & 0x0000ff00) >> 8);
1548 length_prefixed_gc_map->push_back((gc_map.size() & 0x000000ff) >> 0);
1549 length_prefixed_gc_map->insert(length_prefixed_gc_map->end(),
1550 gc_map.begin(),
1551 gc_map.end());
1552 DCHECK_EQ(gc_map.size() + 4, length_prefixed_gc_map->size());
1553 DCHECK_EQ(gc_map.size(),
1554 static_cast<size_t>((length_prefixed_gc_map->at(0) << 24) |
1555 (length_prefixed_gc_map->at(1) << 16) |
1556 (length_prefixed_gc_map->at(2) << 8) |
1557 (length_prefixed_gc_map->at(3) << 0)));
1558 return length_prefixed_gc_map;
1559}
1560
Ian Rogersd81871c2011-10-03 13:57:23 -07001561bool DexVerifier::VerifyCodeFlow() {
1562 uint16_t registers_size = code_item_->registers_size_;
1563 uint32_t insns_size = code_item_->insns_size_in_code_units_;
jeffhaobdb76512011-09-07 11:43:16 -07001564
Ian Rogersd81871c2011-10-03 13:57:23 -07001565 if (registers_size * insns_size > 4*1024*1024) {
1566 Fail(VERIFY_ERROR_GENERIC) << "warning: method is huge (regs=" << registers_size
1567 << " insns_size=" << insns_size << ")";
1568 }
1569 /* Create and initialize table holding register status */
1570 reg_table_.Init(PcToRegisterLineTable::kTrackRegsGcPoints, insn_flags_.get(), insns_size,
1571 registers_size, this);
jeffhaobdb76512011-09-07 11:43:16 -07001572
Ian Rogersd81871c2011-10-03 13:57:23 -07001573 work_line_.reset(new RegisterLine(registers_size, this));
1574 saved_line_.reset(new RegisterLine(registers_size, this));
jeffhaobdb76512011-09-07 11:43:16 -07001575
Ian Rogersd81871c2011-10-03 13:57:23 -07001576 /* Initialize register types of method arguments. */
1577 if (!SetTypesFromSignature()) {
Ian Rogers2c8a8572011-10-24 17:11:36 -07001578 DCHECK_NE(failure_, VERIFY_ERROR_NONE);
1579 fail_messages_ << "Bad signature in " << PrettyMethod(method_);
Ian Rogersd81871c2011-10-03 13:57:23 -07001580 return false;
1581 }
1582 /* Perform code flow verification. */
1583 if (!CodeFlowVerifyMethod()) {
Brian Carlstrom75412882012-01-18 01:26:54 -08001584 DCHECK_NE(failure_, VERIFY_ERROR_NONE);
Ian Rogersd81871c2011-10-03 13:57:23 -07001585 return false;
jeffhaobdb76512011-09-07 11:43:16 -07001586 }
1587
Ian Rogersd81871c2011-10-03 13:57:23 -07001588 /* Generate a register map and add it to the method. */
Brian Carlstrom75412882012-01-18 01:26:54 -08001589 UniquePtr<const std::vector<uint8_t> > map(GenerateGcMap());
1590 if (map.get() == NULL) {
1591 DCHECK_NE(failure_, VERIFY_ERROR_NONE);
Ian Rogersd81871c2011-10-03 13:57:23 -07001592 return false; // Not a real failure, but a failure to encode
1593 }
Ian Rogersd81871c2011-10-03 13:57:23 -07001594#ifndef NDEBUG
Brian Carlstrome7d856b2012-01-11 18:10:55 -08001595 VerifyGcMap(*map);
Ian Rogersd81871c2011-10-03 13:57:23 -07001596#endif
Brian Carlstrom75412882012-01-18 01:26:54 -08001597 const std::vector<uint8_t>* gc_map = CreateLengthPrefixedGcMap(*(map.get()));
1598 Compiler::MethodReference ref(dex_file_, method_->GetDexMethodIndex());
1599 verifier::DexVerifier::SetGcMap(ref, *gc_map);
1600 method_->SetGcMap(&gc_map->at(0));
jeffhaobdb76512011-09-07 11:43:16 -07001601 return true;
1602}
1603
Ian Rogersd81871c2011-10-03 13:57:23 -07001604void DexVerifier::Dump(std::ostream& os) {
1605 if (method_->IsNative()) {
1606 os << "Native method" << std::endl;
1607 return;
jeffhaobdb76512011-09-07 11:43:16 -07001608 }
Ian Rogersd81871c2011-10-03 13:57:23 -07001609 DCHECK(code_item_ != NULL);
1610 const Instruction* inst = Instruction::At(code_item_->insns_);
1611 for (size_t dex_pc = 0; dex_pc < code_item_->insns_size_in_code_units_;
1612 dex_pc += insn_flags_[dex_pc].GetLengthInCodeUnits()) {
Elliott Hughesaa6e1cd2012-01-18 19:26:06 -08001613 os << StringPrintf("0x%04zx", dex_pc) << ": " << insn_flags_[dex_pc].Dump()
Ian Rogers2c8a8572011-10-24 17:11:36 -07001614 << " " << inst->DumpHex(5) << " " << inst->DumpString(dex_file_) << std::endl;
Ian Rogersd81871c2011-10-03 13:57:23 -07001615 RegisterLine* reg_line = reg_table_.GetLine(dex_pc);
1616 if (reg_line != NULL) {
Ian Rogers2c8a8572011-10-24 17:11:36 -07001617 os << reg_line->Dump() << std::endl;
jeffhaobdb76512011-09-07 11:43:16 -07001618 }
jeffhaoba5ebb92011-08-25 17:24:37 -07001619 inst = inst->Next();
1620 }
jeffhaobdb76512011-09-07 11:43:16 -07001621}
1622
Ian Rogersd81871c2011-10-03 13:57:23 -07001623static bool IsPrimitiveDescriptor(char descriptor) {
1624 switch (descriptor) {
jeffhaobdb76512011-09-07 11:43:16 -07001625 case 'I':
1626 case 'C':
1627 case 'S':
1628 case 'B':
1629 case 'Z':
jeffhaobdb76512011-09-07 11:43:16 -07001630 case 'F':
1631 case 'D':
1632 case 'J':
Ian Rogersd81871c2011-10-03 13:57:23 -07001633 return true;
jeffhaobdb76512011-09-07 11:43:16 -07001634 default:
1635 return false;
1636 }
jeffhaoba5ebb92011-08-25 17:24:37 -07001637}
1638
Ian Rogersd81871c2011-10-03 13:57:23 -07001639bool DexVerifier::SetTypesFromSignature() {
1640 RegisterLine* reg_line = reg_table_.GetLine(0);
1641 int arg_start = code_item_->registers_size_ - code_item_->ins_size_;
1642 size_t expected_args = code_item_->ins_size_; /* long/double count as two */
jeffhaobdb76512011-09-07 11:43:16 -07001643
Ian Rogersd81871c2011-10-03 13:57:23 -07001644 DCHECK_GE(arg_start, 0); /* should have been verified earlier */
1645 //Include the "this" pointer.
1646 size_t cur_arg = 0;
1647 if (!method_->IsStatic()) {
1648 // If this is a constructor for a class other than java.lang.Object, mark the first ("this")
1649 // argument as uninitialized. This restricts field access until the superclass constructor is
1650 // called.
1651 Class* declaring_class = method_->GetDeclaringClass();
1652 if (method_->IsConstructor() && !declaring_class->IsObjectClass()) {
1653 reg_line->SetRegisterType(arg_start + cur_arg,
1654 reg_types_.UninitializedThisArgument(declaring_class));
1655 } else {
1656 reg_line->SetRegisterType(arg_start + cur_arg, reg_types_.FromClass(declaring_class));
jeffhaobdb76512011-09-07 11:43:16 -07001657 }
Ian Rogersd81871c2011-10-03 13:57:23 -07001658 cur_arg++;
jeffhaobdb76512011-09-07 11:43:16 -07001659 }
1660
Ian Rogers6d4d9fc2011-11-30 16:24:48 -08001661 const DexFile::ProtoId& proto_id =
1662 dex_file_->GetMethodPrototype(dex_file_->GetMethodId(method_->GetDexMethodIndex()));
Ian Rogers0571d352011-11-03 19:51:38 -07001663 DexFileParameterIterator iterator(*dex_file_, proto_id);
Ian Rogersd81871c2011-10-03 13:57:23 -07001664
1665 for (; iterator.HasNext(); iterator.Next()) {
1666 const char* descriptor = iterator.GetDescriptor();
1667 if (descriptor == NULL) {
1668 LOG(FATAL) << "Null descriptor";
1669 }
1670 if (cur_arg >= expected_args) {
1671 Fail(VERIFY_ERROR_GENERIC) << "expected " << expected_args
1672 << " args, found more (" << descriptor << ")";
1673 return false;
1674 }
1675 switch (descriptor[0]) {
1676 case 'L':
1677 case '[':
1678 // We assume that reference arguments are initialized. The only way it could be otherwise
1679 // (assuming the caller was verified) is if the current method is <init>, but in that case
1680 // it's effectively considered initialized the instant we reach here (in the sense that we
1681 // can return without doing anything or call virtual methods).
1682 {
1683 const RegType& reg_type =
1684 reg_types_.FromDescriptor(method_->GetDeclaringClass()->GetClassLoader(), descriptor);
Ian Rogers84fa0742011-10-25 18:13:30 -07001685 reg_line->SetRegisterType(arg_start + cur_arg, reg_type);
Ian Rogersd81871c2011-10-03 13:57:23 -07001686 }
1687 break;
1688 case 'Z':
1689 reg_line->SetRegisterType(arg_start + cur_arg, reg_types_.Boolean());
1690 break;
1691 case 'C':
1692 reg_line->SetRegisterType(arg_start + cur_arg, reg_types_.Char());
1693 break;
1694 case 'B':
1695 reg_line->SetRegisterType(arg_start + cur_arg, reg_types_.Byte());
1696 break;
1697 case 'I':
1698 reg_line->SetRegisterType(arg_start + cur_arg, reg_types_.Integer());
1699 break;
1700 case 'S':
1701 reg_line->SetRegisterType(arg_start + cur_arg, reg_types_.Short());
1702 break;
1703 case 'F':
1704 reg_line->SetRegisterType(arg_start + cur_arg, reg_types_.Float());
1705 break;
1706 case 'J':
1707 case 'D': {
1708 const RegType& low_half = descriptor[0] == 'J' ? reg_types_.Long() : reg_types_.Double();
1709 reg_line->SetRegisterType(arg_start + cur_arg, low_half); // implicitly sets high-register
1710 cur_arg++;
1711 break;
1712 }
1713 default:
1714 Fail(VERIFY_ERROR_GENERIC) << "unexpected signature type char '" << descriptor << "'";
1715 return false;
1716 }
1717 cur_arg++;
1718 }
1719 if (cur_arg != expected_args) {
1720 Fail(VERIFY_ERROR_GENERIC) << "expected " << expected_args << " arguments, found " << cur_arg;
1721 return false;
1722 }
1723 const char* descriptor = dex_file_->GetReturnTypeDescriptor(proto_id);
1724 // Validate return type. We don't do the type lookup; just want to make sure that it has the right
1725 // format. Only major difference from the method argument format is that 'V' is supported.
1726 bool result;
1727 if (IsPrimitiveDescriptor(descriptor[0]) || descriptor[0] == 'V') {
1728 result = descriptor[1] == '\0';
1729 } else if (descriptor[0] == '[') { // single/multi-dimensional array of object/primitive
1730 size_t i = 0;
1731 do {
1732 i++;
1733 } while (descriptor[i] == '['); // process leading [
1734 if (descriptor[i] == 'L') { // object array
1735 do {
1736 i++; // find closing ;
1737 } while (descriptor[i] != ';' && descriptor[i] != '\0');
1738 result = descriptor[i] == ';';
1739 } else { // primitive array
1740 result = IsPrimitiveDescriptor(descriptor[i]) && descriptor[i + 1] == '\0';
1741 }
1742 } else if (descriptor[0] == 'L') {
1743 // could be more thorough here, but shouldn't be required
1744 size_t i = 0;
1745 do {
1746 i++;
1747 } while (descriptor[i] != ';' && descriptor[i] != '\0');
1748 result = descriptor[i] == ';';
1749 } else {
1750 result = false;
1751 }
1752 if (!result) {
1753 Fail(VERIFY_ERROR_GENERIC) << "unexpected char in return type descriptor '"
1754 << descriptor << "'";
1755 }
1756 return result;
jeffhaobdb76512011-09-07 11:43:16 -07001757}
1758
Ian Rogersd81871c2011-10-03 13:57:23 -07001759bool DexVerifier::CodeFlowVerifyMethod() {
1760 const uint16_t* insns = code_item_->insns_;
1761 const uint32_t insns_size = code_item_->insns_size_in_code_units_;
jeffhaoba5ebb92011-08-25 17:24:37 -07001762
jeffhaobdb76512011-09-07 11:43:16 -07001763 /* Begin by marking the first instruction as "changed". */
Ian Rogersd81871c2011-10-03 13:57:23 -07001764 insn_flags_[0].SetChanged();
1765 uint32_t start_guess = 0;
jeffhaoba5ebb92011-08-25 17:24:37 -07001766
jeffhaobdb76512011-09-07 11:43:16 -07001767 /* Continue until no instructions are marked "changed". */
1768 while (true) {
Ian Rogersd81871c2011-10-03 13:57:23 -07001769 // Find the first marked one. Use "start_guess" as a way to find one quickly.
1770 uint32_t insn_idx = start_guess;
1771 for (; insn_idx < insns_size; insn_idx++) {
1772 if (insn_flags_[insn_idx].IsChanged())
jeffhaobdb76512011-09-07 11:43:16 -07001773 break;
1774 }
jeffhaobdb76512011-09-07 11:43:16 -07001775 if (insn_idx == insns_size) {
1776 if (start_guess != 0) {
1777 /* try again, starting from the top */
1778 start_guess = 0;
1779 continue;
1780 } else {
1781 /* all flags are clear */
1782 break;
1783 }
1784 }
Ian Rogersd81871c2011-10-03 13:57:23 -07001785 // We carry the working set of registers from instruction to instruction. If this address can
1786 // be the target of a branch (or throw) instruction, or if we're skipping around chasing
1787 // "changed" flags, we need to load the set of registers from the table.
1788 // Because we always prefer to continue on to the next instruction, we should never have a
1789 // situation where we have a stray "changed" flag set on an instruction that isn't a branch
1790 // target.
1791 work_insn_idx_ = insn_idx;
1792 if (insn_flags_[insn_idx].IsBranchTarget()) {
1793 work_line_->CopyFromLine(reg_table_.GetLine(insn_idx));
jeffhaobdb76512011-09-07 11:43:16 -07001794 } else {
1795#ifndef NDEBUG
1796 /*
1797 * Sanity check: retrieve the stored register line (assuming
1798 * a full table) and make sure it actually matches.
1799 */
Ian Rogersd81871c2011-10-03 13:57:23 -07001800 RegisterLine* register_line = reg_table_.GetLine(insn_idx);
1801 if (register_line != NULL) {
1802 if (work_line_->CompareLine(register_line) != 0) {
1803 Dump(std::cout);
1804 std::cout << info_messages_.str();
1805 LOG(FATAL) << "work_line diverged in " << PrettyMethod(method_)
1806 << "@" << (void*)work_insn_idx_ << std::endl
1807 << " work_line=" << *work_line_ << std::endl
1808 << " expected=" << *register_line;
1809 }
jeffhaobdb76512011-09-07 11:43:16 -07001810 }
1811#endif
1812 }
Ian Rogersd81871c2011-10-03 13:57:23 -07001813 if (!CodeFlowVerifyInstruction(&start_guess)) {
1814 fail_messages_ << std::endl << PrettyMethod(method_) << " failed to verify";
jeffhaoba5ebb92011-08-25 17:24:37 -07001815 return false;
1816 }
jeffhaobdb76512011-09-07 11:43:16 -07001817 /* Clear "changed" and mark as visited. */
Ian Rogersd81871c2011-10-03 13:57:23 -07001818 insn_flags_[insn_idx].SetVisited();
1819 insn_flags_[insn_idx].ClearChanged();
jeffhaobdb76512011-09-07 11:43:16 -07001820 }
jeffhaoba5ebb92011-08-25 17:24:37 -07001821
Ian Rogersd81871c2011-10-03 13:57:23 -07001822 if (DEAD_CODE_SCAN && ((method_->GetAccessFlags() & kAccWritable) == 0)) {
jeffhaobdb76512011-09-07 11:43:16 -07001823 /*
jeffhaod1f0fde2011-09-08 17:25:33 -07001824 * Scan for dead code. There's nothing "evil" about dead code
jeffhaobdb76512011-09-07 11:43:16 -07001825 * (besides the wasted space), but it indicates a flaw somewhere
1826 * down the line, possibly in the verifier.
1827 *
1828 * If we've substituted "always throw" instructions into the stream,
1829 * we are almost certainly going to have some dead code.
1830 */
1831 int dead_start = -1;
Ian Rogersd81871c2011-10-03 13:57:23 -07001832 uint32_t insn_idx = 0;
1833 for (; insn_idx < insns_size; insn_idx += insn_flags_[insn_idx].GetLengthInCodeUnits()) {
jeffhaobdb76512011-09-07 11:43:16 -07001834 /*
jeffhaod1f0fde2011-09-08 17:25:33 -07001835 * Switch-statement data doesn't get "visited" by scanner. It
jeffhaobdb76512011-09-07 11:43:16 -07001836 * may or may not be preceded by a padding NOP (for alignment).
1837 */
1838 if (insns[insn_idx] == Instruction::kPackedSwitchSignature ||
1839 insns[insn_idx] == Instruction::kSparseSwitchSignature ||
1840 insns[insn_idx] == Instruction::kArrayDataSignature ||
1841 (insns[insn_idx] == Instruction::NOP &&
1842 (insns[insn_idx + 1] == Instruction::kPackedSwitchSignature ||
1843 insns[insn_idx + 1] == Instruction::kSparseSwitchSignature ||
1844 insns[insn_idx + 1] == Instruction::kArrayDataSignature))) {
Ian Rogersd81871c2011-10-03 13:57:23 -07001845 insn_flags_[insn_idx].SetVisited();
jeffhaobdb76512011-09-07 11:43:16 -07001846 }
1847
Ian Rogersd81871c2011-10-03 13:57:23 -07001848 if (!insn_flags_[insn_idx].IsVisited()) {
jeffhaobdb76512011-09-07 11:43:16 -07001849 if (dead_start < 0)
1850 dead_start = insn_idx;
1851 } else if (dead_start >= 0) {
Ian Rogersd81871c2011-10-03 13:57:23 -07001852 LogVerifyInfo() << "dead code " << (void*) dead_start << "-" << (void*) (insn_idx - 1);
jeffhaobdb76512011-09-07 11:43:16 -07001853 dead_start = -1;
1854 }
1855 }
1856 if (dead_start >= 0) {
Ian Rogersd81871c2011-10-03 13:57:23 -07001857 LogVerifyInfo() << "dead code " << (void*) dead_start << "-" << (void*) (insn_idx - 1);
jeffhaoba5ebb92011-08-25 17:24:37 -07001858 }
1859 }
jeffhaobdb76512011-09-07 11:43:16 -07001860 return true;
1861}
1862
Ian Rogersd81871c2011-10-03 13:57:23 -07001863bool DexVerifier::CodeFlowVerifyInstruction(uint32_t* start_guess) {
jeffhaobdb76512011-09-07 11:43:16 -07001864#ifdef VERIFIER_STATS
Ian Rogersd81871c2011-10-03 13:57:23 -07001865 if (CurrentInsnFlags().IsVisited()) {
jeffhaobdb76512011-09-07 11:43:16 -07001866 gDvm.verifierStats.instrsReexamined++;
1867 } else {
1868 gDvm.verifierStats.instrsExamined++;
1869 }
1870#endif
1871
1872 /*
1873 * Once we finish decoding the instruction, we need to figure out where
jeffhaod1f0fde2011-09-08 17:25:33 -07001874 * we can go from here. There are three possible ways to transfer
jeffhaobdb76512011-09-07 11:43:16 -07001875 * control to another statement:
1876 *
jeffhaod1f0fde2011-09-08 17:25:33 -07001877 * (1) Continue to the next instruction. Applies to all but
jeffhaobdb76512011-09-07 11:43:16 -07001878 * unconditional branches, method returns, and exception throws.
jeffhaod1f0fde2011-09-08 17:25:33 -07001879 * (2) Branch to one or more possible locations. Applies to branches
jeffhaobdb76512011-09-07 11:43:16 -07001880 * and switch statements.
jeffhaod1f0fde2011-09-08 17:25:33 -07001881 * (3) Exception handlers. Applies to any instruction that can
jeffhaobdb76512011-09-07 11:43:16 -07001882 * throw an exception that is handled by an encompassing "try"
1883 * block.
1884 *
1885 * We can also return, in which case there is no successor instruction
1886 * from this point.
1887 *
1888 * The behavior can be determined from the OpcodeFlags.
1889 */
Ian Rogersd81871c2011-10-03 13:57:23 -07001890 const uint16_t* insns = code_item_->insns_ + work_insn_idx_;
1891 const Instruction* inst = Instruction::At(insns);
jeffhaobdb76512011-09-07 11:43:16 -07001892 Instruction::DecodedInstruction dec_insn(inst);
1893 int opcode_flag = inst->Flag();
1894
jeffhaobdb76512011-09-07 11:43:16 -07001895 int32_t branch_target = 0;
jeffhaobdb76512011-09-07 11:43:16 -07001896 bool just_set_result = false;
Ian Rogers2c8a8572011-10-24 17:11:36 -07001897 if (gDebugVerify) {
Ian Rogersd81871c2011-10-03 13:57:23 -07001898 // Generate processing back trace to debug verifier
Ian Rogers5ed29bf2011-10-26 12:22:21 -07001899 LogVerifyInfo() << "Processing " << inst->DumpString(dex_file_) << std::endl
1900 << *work_line_.get() << std::endl;
Ian Rogersd81871c2011-10-03 13:57:23 -07001901 }
jeffhaobdb76512011-09-07 11:43:16 -07001902
1903 /*
jeffhaod1f0fde2011-09-08 17:25:33 -07001904 * Make a copy of the previous register state. If the instruction
jeffhaobdb76512011-09-07 11:43:16 -07001905 * can throw an exception, we will copy/merge this into the "catch"
1906 * address rather than work_line, because we don't want the result
1907 * from the "successful" code path (e.g. a check-cast that "improves"
1908 * a type) to be visible to the exception handler.
1909 */
Ian Rogersd81871c2011-10-03 13:57:23 -07001910 if ((opcode_flag & Instruction::kThrow) != 0 && CurrentInsnFlags().IsInTry()) {
1911 saved_line_->CopyFromLine(work_line_.get());
jeffhaobdb76512011-09-07 11:43:16 -07001912 } else {
1913#ifndef NDEBUG
Ian Rogersd81871c2011-10-03 13:57:23 -07001914 saved_line_->FillWithGarbage();
jeffhaobdb76512011-09-07 11:43:16 -07001915#endif
1916 }
1917
1918 switch (dec_insn.opcode_) {
1919 case Instruction::NOP:
1920 /*
jeffhaod1f0fde2011-09-08 17:25:33 -07001921 * A "pure" NOP has no effect on anything. Data tables start with
jeffhaobdb76512011-09-07 11:43:16 -07001922 * a signature that looks like a NOP; if we see one of these in
1923 * the course of executing code then we have a problem.
1924 */
1925 if (dec_insn.vA_ != 0) {
Ian Rogersd81871c2011-10-03 13:57:23 -07001926 Fail(VERIFY_ERROR_GENERIC) << "encountered data table in instruction stream";
jeffhaobdb76512011-09-07 11:43:16 -07001927 }
1928 break;
1929
1930 case Instruction::MOVE:
1931 case Instruction::MOVE_FROM16:
1932 case Instruction::MOVE_16:
Ian Rogersd81871c2011-10-03 13:57:23 -07001933 work_line_->CopyRegister1(dec_insn.vA_, dec_insn.vB_, kTypeCategory1nr);
jeffhaobdb76512011-09-07 11:43:16 -07001934 break;
1935 case Instruction::MOVE_WIDE:
1936 case Instruction::MOVE_WIDE_FROM16:
1937 case Instruction::MOVE_WIDE_16:
Ian Rogersd81871c2011-10-03 13:57:23 -07001938 work_line_->CopyRegister2(dec_insn.vA_, dec_insn.vB_);
jeffhaobdb76512011-09-07 11:43:16 -07001939 break;
1940 case Instruction::MOVE_OBJECT:
1941 case Instruction::MOVE_OBJECT_FROM16:
1942 case Instruction::MOVE_OBJECT_16:
Ian Rogersd81871c2011-10-03 13:57:23 -07001943 work_line_->CopyRegister1(dec_insn.vA_, dec_insn.vB_, kTypeCategoryRef);
jeffhaobdb76512011-09-07 11:43:16 -07001944 break;
1945
1946 /*
1947 * The move-result instructions copy data out of a "pseudo-register"
jeffhaod1f0fde2011-09-08 17:25:33 -07001948 * with the results from the last method invocation. In practice we
jeffhaobdb76512011-09-07 11:43:16 -07001949 * might want to hold the result in an actual CPU register, so the
1950 * Dalvik spec requires that these only appear immediately after an
1951 * invoke or filled-new-array.
1952 *
jeffhaod1f0fde2011-09-08 17:25:33 -07001953 * These calls invalidate the "result" register. (This is now
jeffhaobdb76512011-09-07 11:43:16 -07001954 * redundant with the reset done below, but it can make the debug info
1955 * easier to read in some cases.)
1956 */
1957 case Instruction::MOVE_RESULT:
Ian Rogersd81871c2011-10-03 13:57:23 -07001958 work_line_->CopyResultRegister1(dec_insn.vA_, false);
jeffhaobdb76512011-09-07 11:43:16 -07001959 break;
1960 case Instruction::MOVE_RESULT_WIDE:
Ian Rogersd81871c2011-10-03 13:57:23 -07001961 work_line_->CopyResultRegister2(dec_insn.vA_);
jeffhaobdb76512011-09-07 11:43:16 -07001962 break;
1963 case Instruction::MOVE_RESULT_OBJECT:
Ian Rogersd81871c2011-10-03 13:57:23 -07001964 work_line_->CopyResultRegister1(dec_insn.vA_, true);
jeffhaobdb76512011-09-07 11:43:16 -07001965 break;
1966
Ian Rogersd81871c2011-10-03 13:57:23 -07001967 case Instruction::MOVE_EXCEPTION: {
jeffhaobdb76512011-09-07 11:43:16 -07001968 /*
Ian Rogersd81871c2011-10-03 13:57:23 -07001969 * This statement can only appear as the first instruction in an exception handler (though not
1970 * all exception handlers need to have one of these). We verify that as part of extracting the
jeffhaobdb76512011-09-07 11:43:16 -07001971 * exception type from the catch block list.
jeffhaobdb76512011-09-07 11:43:16 -07001972 */
Ian Rogers28ad40d2011-10-27 15:19:26 -07001973 const RegType& res_type = GetCaughtExceptionType();
1974 work_line_->SetRegisterType(dec_insn.vA_, res_type);
jeffhaobdb76512011-09-07 11:43:16 -07001975 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07001976 }
jeffhaobdb76512011-09-07 11:43:16 -07001977 case Instruction::RETURN_VOID:
Ian Rogersd81871c2011-10-03 13:57:23 -07001978 if (!method_->IsConstructor() || work_line_->CheckConstructorReturn()) {
1979 if (!GetMethodReturnType().IsUnknown()) {
1980 Fail(VERIFY_ERROR_GENERIC) << "return-void not expected";
1981 }
jeffhaobdb76512011-09-07 11:43:16 -07001982 }
1983 break;
1984 case Instruction::RETURN:
Ian Rogersd81871c2011-10-03 13:57:23 -07001985 if (!method_->IsConstructor() || work_line_->CheckConstructorReturn()) {
jeffhaobdb76512011-09-07 11:43:16 -07001986 /* check the method signature */
Ian Rogersd81871c2011-10-03 13:57:23 -07001987 const RegType& return_type = GetMethodReturnType();
1988 if (!return_type.IsCategory1Types()) {
1989 Fail(VERIFY_ERROR_GENERIC) << "unexpected non-category 1 return type " << return_type;
1990 } else {
1991 // Compilers may generate synthetic functions that write byte values into boolean fields.
1992 // Also, it may use integer values for boolean, byte, short, and character return types.
1993 const RegType& src_type = work_line_->GetRegisterType(dec_insn.vA_);
1994 bool use_src = ((return_type.IsBoolean() && src_type.IsByte()) ||
1995 ((return_type.IsBoolean() || return_type.IsByte() ||
1996 return_type.IsShort() || return_type.IsChar()) &&
1997 src_type.IsInteger()));
1998 /* check the register contents */
1999 work_line_->VerifyRegisterType(dec_insn.vA_, use_src ? src_type : return_type);
2000 if (failure_ != VERIFY_ERROR_NONE) {
Ian Rogers84fa0742011-10-25 18:13:30 -07002001 fail_messages_ << " return-1nr on invalid register v" << dec_insn.vA_;
Ian Rogersd81871c2011-10-03 13:57:23 -07002002 }
jeffhaobdb76512011-09-07 11:43:16 -07002003 }
2004 }
2005 break;
2006 case Instruction::RETURN_WIDE:
Ian Rogersd81871c2011-10-03 13:57:23 -07002007 if (!method_->IsConstructor() || work_line_->CheckConstructorReturn()) {
jeffhaobdb76512011-09-07 11:43:16 -07002008 /* check the method signature */
Ian Rogersd81871c2011-10-03 13:57:23 -07002009 const RegType& return_type = GetMethodReturnType();
2010 if (!return_type.IsCategory2Types()) {
2011 Fail(VERIFY_ERROR_GENERIC) << "return-wide not expected";
2012 } else {
2013 /* check the register contents */
2014 work_line_->VerifyRegisterType(dec_insn.vA_, return_type);
2015 if (failure_ != VERIFY_ERROR_NONE) {
Ian Rogers84fa0742011-10-25 18:13:30 -07002016 fail_messages_ << " return-wide on invalid register pair v" << dec_insn.vA_;
Ian Rogersd81871c2011-10-03 13:57:23 -07002017 }
jeffhaobdb76512011-09-07 11:43:16 -07002018 }
2019 }
2020 break;
2021 case Instruction::RETURN_OBJECT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002022 if (!method_->IsConstructor() || work_line_->CheckConstructorReturn()) {
2023 const RegType& return_type = GetMethodReturnType();
2024 if (!return_type.IsReferenceTypes()) {
2025 Fail(VERIFY_ERROR_GENERIC) << "return-object not expected";
2026 } else {
2027 /* return_type is the *expected* return type, not register value */
2028 DCHECK(!return_type.IsZero());
2029 DCHECK(!return_type.IsUninitializedReference());
Ian Rogers9074b992011-10-26 17:41:55 -07002030 const RegType& reg_type = work_line_->GetRegisterType(dec_insn.vA_);
2031 // Disallow returning uninitialized values and verify that the reference in vAA is an
2032 // instance of the "return_type"
2033 if (reg_type.IsUninitializedTypes()) {
2034 Fail(VERIFY_ERROR_GENERIC) << "returning uninitialized object '" << reg_type << "'";
2035 } else if (!return_type.IsAssignableFrom(reg_type)) {
2036 Fail(VERIFY_ERROR_GENERIC) << "returning '" << reg_type
2037 << "', but expected from declaration '" << return_type << "'";
jeffhaobdb76512011-09-07 11:43:16 -07002038 }
2039 }
2040 }
2041 break;
2042
2043 case Instruction::CONST_4:
2044 case Instruction::CONST_16:
2045 case Instruction::CONST:
2046 /* could be boolean, int, float, or a null reference */
Ian Rogersd81871c2011-10-03 13:57:23 -07002047 work_line_->SetRegisterType(dec_insn.vA_, reg_types_.FromCat1Const((int32_t) dec_insn.vB_));
jeffhaobdb76512011-09-07 11:43:16 -07002048 break;
2049 case Instruction::CONST_HIGH16:
2050 /* could be boolean, int, float, or a null reference */
Ian Rogersd81871c2011-10-03 13:57:23 -07002051 work_line_->SetRegisterType(dec_insn.vA_,
2052 reg_types_.FromCat1Const((int32_t) dec_insn.vB_ << 16));
jeffhaobdb76512011-09-07 11:43:16 -07002053 break;
2054 case Instruction::CONST_WIDE_16:
2055 case Instruction::CONST_WIDE_32:
2056 case Instruction::CONST_WIDE:
2057 case Instruction::CONST_WIDE_HIGH16:
2058 /* could be long or double; resolved upon use */
Ian Rogersd81871c2011-10-03 13:57:23 -07002059 work_line_->SetRegisterType(dec_insn.vA_, reg_types_.ConstLo());
jeffhaobdb76512011-09-07 11:43:16 -07002060 break;
2061 case Instruction::CONST_STRING:
2062 case Instruction::CONST_STRING_JUMBO:
Ian Rogersd81871c2011-10-03 13:57:23 -07002063 work_line_->SetRegisterType(dec_insn.vA_, reg_types_.JavaLangString());
jeffhaobdb76512011-09-07 11:43:16 -07002064 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002065 case Instruction::CONST_CLASS: {
Ian Rogers28ad40d2011-10-27 15:19:26 -07002066 // Get type from instruction if unresolved then we need an access check
2067 // TODO: check Compiler::CanAccessTypeWithoutChecks returns false when res_type is unresolved
2068 const RegType& res_type = ResolveClassAndCheckAccess(dec_insn.vB_);
2069 // Register holds class, ie its type is class, but on error we keep it Unknown
2070 work_line_->SetRegisterType(dec_insn.vA_,
2071 res_type.IsUnknown() ? res_type : reg_types_.JavaLangClass());
jeffhaobdb76512011-09-07 11:43:16 -07002072 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002073 }
jeffhaobdb76512011-09-07 11:43:16 -07002074 case Instruction::MONITOR_ENTER:
Ian Rogersd81871c2011-10-03 13:57:23 -07002075 work_line_->PushMonitor(dec_insn.vA_, work_insn_idx_);
jeffhaobdb76512011-09-07 11:43:16 -07002076 break;
2077 case Instruction::MONITOR_EXIT:
2078 /*
jeffhaod1f0fde2011-09-08 17:25:33 -07002079 * monitor-exit instructions are odd. They can throw exceptions,
jeffhaobdb76512011-09-07 11:43:16 -07002080 * but when they do they act as if they succeeded and the PC is
jeffhaod1f0fde2011-09-08 17:25:33 -07002081 * pointing to the following instruction. (This behavior goes back
jeffhaobdb76512011-09-07 11:43:16 -07002082 * to the need to handle asynchronous exceptions, a now-deprecated
2083 * feature that Dalvik doesn't support.)
2084 *
jeffhaod1f0fde2011-09-08 17:25:33 -07002085 * In practice we don't need to worry about this. The only
jeffhaobdb76512011-09-07 11:43:16 -07002086 * exceptions that can be thrown from monitor-exit are for a
jeffhaod1f0fde2011-09-08 17:25:33 -07002087 * null reference and -exit without a matching -enter. If the
jeffhaobdb76512011-09-07 11:43:16 -07002088 * structured locking checks are working, the former would have
2089 * failed on the -enter instruction, and the latter is impossible.
2090 *
2091 * This is fortunate, because issue 3221411 prevents us from
2092 * chasing the "can throw" path when monitor verification is
jeffhaod1f0fde2011-09-08 17:25:33 -07002093 * enabled. If we can fully verify the locking we can ignore
jeffhaobdb76512011-09-07 11:43:16 -07002094 * some catch blocks (which will show up as "dead" code when
2095 * we skip them here); if we can't, then the code path could be
2096 * "live" so we still need to check it.
2097 */
Ian Rogersd81871c2011-10-03 13:57:23 -07002098 opcode_flag &= ~Instruction::kThrow;
2099 work_line_->PopMonitor(dec_insn.vA_);
jeffhaobdb76512011-09-07 11:43:16 -07002100 break;
2101
Ian Rogers28ad40d2011-10-27 15:19:26 -07002102 case Instruction::CHECK_CAST:
Ian Rogersd81871c2011-10-03 13:57:23 -07002103 case Instruction::INSTANCE_OF: {
Ian Rogers28ad40d2011-10-27 15:19:26 -07002104 /*
2105 * If this instruction succeeds, we will "downcast" register vA to the type in vB. (This
2106 * could be a "upcast" -- not expected, so we don't try to address it.)
2107 *
2108 * If it fails, an exception is thrown, which we deal with later by ignoring the update to
2109 * dec_insn.vA_ when branching to a handler.
2110 */
2111 bool is_checkcast = dec_insn.opcode_ == Instruction::CHECK_CAST;
2112 const RegType& res_type =
2113 ResolveClassAndCheckAccess(is_checkcast ? dec_insn.vB_ : dec_insn.vC_);
Ian Rogers9f1ab122011-12-12 08:52:43 -08002114 if (res_type.IsUnknown()) {
2115 CHECK_NE(failure_, VERIFY_ERROR_NONE);
2116 break; // couldn't resolve class
2117 }
Ian Rogers28ad40d2011-10-27 15:19:26 -07002118 // TODO: check Compiler::CanAccessTypeWithoutChecks returns false when res_type is unresolved
2119 const RegType& orig_type =
2120 work_line_->GetRegisterType(is_checkcast ? dec_insn.vA_ : dec_insn.vB_);
2121 if (!res_type.IsNonZeroReferenceTypes()) {
2122 Fail(VERIFY_ERROR_GENERIC) << "check-cast on unexpected class " << res_type;
2123 } else if (!orig_type.IsReferenceTypes()) {
2124 Fail(VERIFY_ERROR_GENERIC) << "check-cast on non-reference in v" << dec_insn.vA_;
jeffhao2a8a90e2011-09-26 14:25:31 -07002125 } else {
Ian Rogers28ad40d2011-10-27 15:19:26 -07002126 if (is_checkcast) {
2127 work_line_->SetRegisterType(dec_insn.vA_, res_type);
Ian Rogersd81871c2011-10-03 13:57:23 -07002128 } else {
Ian Rogersd81871c2011-10-03 13:57:23 -07002129 work_line_->SetRegisterType(dec_insn.vA_, reg_types_.Boolean());
jeffhaobdb76512011-09-07 11:43:16 -07002130 }
jeffhaobdb76512011-09-07 11:43:16 -07002131 }
jeffhao2a8a90e2011-09-26 14:25:31 -07002132 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002133 }
2134 case Instruction::ARRAY_LENGTH: {
Ian Rogers28ad40d2011-10-27 15:19:26 -07002135 const RegType& res_type = work_line_->GetRegisterType(dec_insn.vB_);
2136 if (res_type.IsReferenceTypes()) {
Ian Rogers89310de2012-02-01 13:47:30 -08002137 if (!res_type.IsArrayTypes() && !res_type.IsZero()) { // ie not an array or null
Ian Rogers28ad40d2011-10-27 15:19:26 -07002138 Fail(VERIFY_ERROR_GENERIC) << "array-length on non-array " << res_type;
Ian Rogersd81871c2011-10-03 13:57:23 -07002139 } else {
2140 work_line_->SetRegisterType(dec_insn.vA_, reg_types_.Integer());
2141 }
2142 }
2143 break;
2144 }
2145 case Instruction::NEW_INSTANCE: {
Ian Rogers28ad40d2011-10-27 15:19:26 -07002146 const RegType& res_type = ResolveClassAndCheckAccess(dec_insn.vB_);
2147 // TODO: check Compiler::CanAccessTypeWithoutChecks returns false when res_type is unresolved
2148 // can't create an instance of an interface or abstract class */
2149 if (!res_type.IsInstantiableTypes()) {
2150 Fail(VERIFY_ERROR_INSTANTIATION)
2151 << "new-instance on primitive, interface or abstract class" << res_type;
Ian Rogersd81871c2011-10-03 13:57:23 -07002152 } else {
Ian Rogers28ad40d2011-10-27 15:19:26 -07002153 const RegType& uninit_type = reg_types_.Uninitialized(res_type, work_insn_idx_);
2154 // Any registers holding previous allocations from this address that have not yet been
2155 // initialized must be marked invalid.
2156 work_line_->MarkUninitRefsAsInvalid(uninit_type);
2157 // add the new uninitialized reference to the register state
2158 work_line_->SetRegisterType(dec_insn.vA_, uninit_type);
Ian Rogersd81871c2011-10-03 13:57:23 -07002159 }
2160 break;
2161 }
2162 case Instruction::NEW_ARRAY: {
Ian Rogers28ad40d2011-10-27 15:19:26 -07002163 const RegType& res_type = ResolveClassAndCheckAccess(dec_insn.vC_);
Ian Rogers9ada79c2012-02-03 14:29:52 -08002164 if (res_type.IsUnknown()) {
2165 CHECK_NE(failure_, VERIFY_ERROR_NONE);
jeffhaobdb76512011-09-07 11:43:16 -07002166 } else {
Ian Rogers9ada79c2012-02-03 14:29:52 -08002167 // TODO: check Compiler::CanAccessTypeWithoutChecks returns false when res_type is unresolved
2168 if (!res_type.IsArrayTypes()) {
2169 Fail(VERIFY_ERROR_GENERIC) << "new-array on non-array class " << res_type;
2170 } else {
2171 /* make sure "size" register is valid type */
2172 work_line_->VerifyRegisterType(dec_insn.vB_, reg_types_.Integer());
2173 /* set register type to array class */
2174 work_line_->SetRegisterType(dec_insn.vA_, res_type);
2175 }
jeffhaobdb76512011-09-07 11:43:16 -07002176 }
2177 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002178 }
jeffhaobdb76512011-09-07 11:43:16 -07002179 case Instruction::FILLED_NEW_ARRAY:
Ian Rogersd81871c2011-10-03 13:57:23 -07002180 case Instruction::FILLED_NEW_ARRAY_RANGE: {
Ian Rogers28ad40d2011-10-27 15:19:26 -07002181 const RegType& res_type = ResolveClassAndCheckAccess(dec_insn.vB_);
Ian Rogers9ada79c2012-02-03 14:29:52 -08002182 if (res_type.IsUnknown()) {
2183 CHECK_NE(failure_, VERIFY_ERROR_NONE);
jeffhaobdb76512011-09-07 11:43:16 -07002184 } else {
Ian Rogers9ada79c2012-02-03 14:29:52 -08002185 // TODO: check Compiler::CanAccessTypeWithoutChecks returns false when res_type is unresolved
2186 if (!res_type.IsArrayTypes()) {
2187 Fail(VERIFY_ERROR_GENERIC) << "filled-new-array on non-array class";
2188 } else {
2189 bool is_range = (dec_insn.opcode_ == Instruction::FILLED_NEW_ARRAY_RANGE);
2190 /* check the arguments to the instruction */
2191 VerifyFilledNewArrayRegs(dec_insn, res_type, is_range);
2192 /* filled-array result goes into "result" register */
2193 work_line_->SetResultRegisterType(res_type);
2194 just_set_result = true;
2195 }
jeffhaobdb76512011-09-07 11:43:16 -07002196 }
2197 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002198 }
jeffhaobdb76512011-09-07 11:43:16 -07002199 case Instruction::CMPL_FLOAT:
2200 case Instruction::CMPG_FLOAT:
jeffhao457cc512012-02-02 16:55:13 -08002201 if (!work_line_->VerifyRegisterType(dec_insn.vB_, reg_types_.Float())) {
2202 break;
2203 }
2204 if (!work_line_->VerifyRegisterType(dec_insn.vC_, reg_types_.Float())) {
2205 break;
2206 }
Ian Rogersd81871c2011-10-03 13:57:23 -07002207 work_line_->SetRegisterType(dec_insn.vA_, reg_types_.Integer());
jeffhaobdb76512011-09-07 11:43:16 -07002208 break;
2209 case Instruction::CMPL_DOUBLE:
2210 case Instruction::CMPG_DOUBLE:
jeffhao457cc512012-02-02 16:55:13 -08002211 if (!work_line_->VerifyRegisterType(dec_insn.vB_, reg_types_.Double())) {
2212 break;
2213 }
2214 if (!work_line_->VerifyRegisterType(dec_insn.vC_, reg_types_.Double())) {
2215 break;
2216 }
Ian Rogersd81871c2011-10-03 13:57:23 -07002217 work_line_->SetRegisterType(dec_insn.vA_, reg_types_.Integer());
jeffhaobdb76512011-09-07 11:43:16 -07002218 break;
2219 case Instruction::CMP_LONG:
jeffhao457cc512012-02-02 16:55:13 -08002220 if (!work_line_->VerifyRegisterType(dec_insn.vB_, reg_types_.Long())) {
2221 break;
2222 }
2223 if (!work_line_->VerifyRegisterType(dec_insn.vC_, reg_types_.Long())) {
2224 break;
2225 }
Ian Rogersd81871c2011-10-03 13:57:23 -07002226 work_line_->SetRegisterType(dec_insn.vA_, reg_types_.Integer());
jeffhaobdb76512011-09-07 11:43:16 -07002227 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002228 case Instruction::THROW: {
Ian Rogers28ad40d2011-10-27 15:19:26 -07002229 const RegType& res_type = work_line_->GetRegisterType(dec_insn.vA_);
2230 if (!reg_types_.JavaLangThrowable().IsAssignableFrom(res_type)) {
2231 Fail(VERIFY_ERROR_GENERIC) << "thrown class " << res_type << " not instanceof Throwable";
jeffhaobdb76512011-09-07 11:43:16 -07002232 }
2233 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002234 }
jeffhaobdb76512011-09-07 11:43:16 -07002235 case Instruction::GOTO:
2236 case Instruction::GOTO_16:
2237 case Instruction::GOTO_32:
2238 /* no effect on or use of registers */
2239 break;
2240
2241 case Instruction::PACKED_SWITCH:
2242 case Instruction::SPARSE_SWITCH:
2243 /* verify that vAA is an integer, or can be converted to one */
Ian Rogersd81871c2011-10-03 13:57:23 -07002244 work_line_->VerifyRegisterType(dec_insn.vA_, reg_types_.Integer());
jeffhaobdb76512011-09-07 11:43:16 -07002245 break;
2246
Ian Rogersd81871c2011-10-03 13:57:23 -07002247 case Instruction::FILL_ARRAY_DATA: {
2248 /* Similar to the verification done for APUT */
Ian Rogers89310de2012-02-01 13:47:30 -08002249 const RegType& array_type = work_line_->GetRegisterType(dec_insn.vA_);
2250 /* array_type can be null if the reg type is Zero */
2251 if (!array_type.IsZero()) {
jeffhao457cc512012-02-02 16:55:13 -08002252 if (!array_type.IsArrayTypes()) {
2253 Fail(VERIFY_ERROR_GENERIC) << "invalid fill-array-data with array type " << array_type;
Ian Rogers89310de2012-02-01 13:47:30 -08002254 } else {
jeffhao457cc512012-02-02 16:55:13 -08002255 const RegType& component_type = reg_types_.GetComponentType(array_type,
2256 method_->GetDeclaringClass()->GetClassLoader());
2257 DCHECK(!component_type.IsUnknown());
2258 if (component_type.IsNonZeroReferenceTypes()) {
2259 Fail(VERIFY_ERROR_GENERIC) << "invalid fill-array-data with component type "
2260 << component_type;
Ian Rogersd81871c2011-10-03 13:57:23 -07002261 } else {
jeffhao457cc512012-02-02 16:55:13 -08002262 // Now verify if the element width in the table matches the element width declared in
2263 // the array
2264 const uint16_t* array_data = insns + (insns[1] | (((int32_t) insns[2]) << 16));
2265 if (array_data[0] != Instruction::kArrayDataSignature) {
2266 Fail(VERIFY_ERROR_GENERIC) << "invalid magic for array-data";
2267 } else {
2268 size_t elem_width = Primitive::ComponentSize(component_type.GetPrimitiveType());
2269 // Since we don't compress the data in Dex, expect to see equal width of data stored
2270 // in the table and expected from the array class.
2271 if (array_data[1] != elem_width) {
2272 Fail(VERIFY_ERROR_GENERIC) << "array-data size mismatch (" << array_data[1]
2273 << " vs " << elem_width << ")";
2274 }
Ian Rogersd81871c2011-10-03 13:57:23 -07002275 }
2276 }
jeffhaobdb76512011-09-07 11:43:16 -07002277 }
2278 }
2279 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002280 }
jeffhaobdb76512011-09-07 11:43:16 -07002281 case Instruction::IF_EQ:
Ian Rogersd81871c2011-10-03 13:57:23 -07002282 case Instruction::IF_NE: {
2283 const RegType& reg_type1 = work_line_->GetRegisterType(dec_insn.vA_);
2284 const RegType& reg_type2 = work_line_->GetRegisterType(dec_insn.vB_);
2285 bool mismatch = false;
2286 if (reg_type1.IsZero()) { // zero then integral or reference expected
2287 mismatch = !reg_type2.IsReferenceTypes() && !reg_type2.IsIntegralTypes();
2288 } else if (reg_type1.IsReferenceTypes()) { // both references?
2289 mismatch = !reg_type2.IsReferenceTypes();
2290 } else { // both integral?
2291 mismatch = !reg_type1.IsIntegralTypes() || !reg_type2.IsIntegralTypes();
2292 }
2293 if (mismatch) {
2294 Fail(VERIFY_ERROR_GENERIC) << "args to if-eq/if-ne (" << reg_type1 << "," << reg_type2
2295 << ") must both be references or integral";
jeffhaobdb76512011-09-07 11:43:16 -07002296 }
2297 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002298 }
jeffhaobdb76512011-09-07 11:43:16 -07002299 case Instruction::IF_LT:
2300 case Instruction::IF_GE:
2301 case Instruction::IF_GT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002302 case Instruction::IF_LE: {
2303 const RegType& reg_type1 = work_line_->GetRegisterType(dec_insn.vA_);
2304 const RegType& reg_type2 = work_line_->GetRegisterType(dec_insn.vB_);
2305 if (!reg_type1.IsIntegralTypes() || !reg_type2.IsIntegralTypes()) {
2306 Fail(VERIFY_ERROR_GENERIC) << "args to 'if' (" << reg_type1 << ","
2307 << reg_type2 << ") must be integral";
jeffhaobdb76512011-09-07 11:43:16 -07002308 }
2309 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002310 }
jeffhaobdb76512011-09-07 11:43:16 -07002311 case Instruction::IF_EQZ:
Ian Rogersd81871c2011-10-03 13:57:23 -07002312 case Instruction::IF_NEZ: {
2313 const RegType& reg_type = work_line_->GetRegisterType(dec_insn.vA_);
2314 if (!reg_type.IsReferenceTypes() && !reg_type.IsIntegralTypes()) {
2315 Fail(VERIFY_ERROR_GENERIC) << "type " << reg_type << " unexpected as arg to if-eqz/if-nez";
2316 }
jeffhaobdb76512011-09-07 11:43:16 -07002317 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002318 }
jeffhaobdb76512011-09-07 11:43:16 -07002319 case Instruction::IF_LTZ:
2320 case Instruction::IF_GEZ:
2321 case Instruction::IF_GTZ:
Ian Rogersd81871c2011-10-03 13:57:23 -07002322 case Instruction::IF_LEZ: {
2323 const RegType& reg_type = work_line_->GetRegisterType(dec_insn.vA_);
2324 if (!reg_type.IsIntegralTypes()) {
2325 Fail(VERIFY_ERROR_GENERIC) << "type " << reg_type
2326 << " unexpected as arg to if-ltz/if-gez/if-gtz/if-lez";
2327 }
jeffhaobdb76512011-09-07 11:43:16 -07002328 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002329 }
jeffhaobdb76512011-09-07 11:43:16 -07002330 case Instruction::AGET_BOOLEAN:
Ian Rogersd81871c2011-10-03 13:57:23 -07002331 VerifyAGet(dec_insn, reg_types_.Boolean(), true);
2332 break;
jeffhaobdb76512011-09-07 11:43:16 -07002333 case Instruction::AGET_BYTE:
Ian Rogersd81871c2011-10-03 13:57:23 -07002334 VerifyAGet(dec_insn, reg_types_.Byte(), true);
2335 break;
jeffhaobdb76512011-09-07 11:43:16 -07002336 case Instruction::AGET_CHAR:
Ian Rogersd81871c2011-10-03 13:57:23 -07002337 VerifyAGet(dec_insn, reg_types_.Char(), true);
2338 break;
jeffhaobdb76512011-09-07 11:43:16 -07002339 case Instruction::AGET_SHORT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002340 VerifyAGet(dec_insn, reg_types_.Short(), true);
jeffhaobdb76512011-09-07 11:43:16 -07002341 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002342 case Instruction::AGET:
2343 VerifyAGet(dec_insn, reg_types_.Integer(), true);
2344 break;
jeffhaobdb76512011-09-07 11:43:16 -07002345 case Instruction::AGET_WIDE:
Ian Rogersd81871c2011-10-03 13:57:23 -07002346 VerifyAGet(dec_insn, reg_types_.Long(), true);
2347 break;
2348 case Instruction::AGET_OBJECT:
2349 VerifyAGet(dec_insn, reg_types_.JavaLangObject(), false);
jeffhaobdb76512011-09-07 11:43:16 -07002350 break;
2351
Ian Rogersd81871c2011-10-03 13:57:23 -07002352 case Instruction::APUT_BOOLEAN:
2353 VerifyAPut(dec_insn, reg_types_.Boolean(), true);
2354 break;
2355 case Instruction::APUT_BYTE:
2356 VerifyAPut(dec_insn, reg_types_.Byte(), true);
2357 break;
2358 case Instruction::APUT_CHAR:
2359 VerifyAPut(dec_insn, reg_types_.Char(), true);
2360 break;
2361 case Instruction::APUT_SHORT:
2362 VerifyAPut(dec_insn, reg_types_.Short(), true);
jeffhaobdb76512011-09-07 11:43:16 -07002363 break;
2364 case Instruction::APUT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002365 VerifyAPut(dec_insn, reg_types_.Integer(), true);
jeffhaobdb76512011-09-07 11:43:16 -07002366 break;
2367 case Instruction::APUT_WIDE:
Ian Rogersd81871c2011-10-03 13:57:23 -07002368 VerifyAPut(dec_insn, reg_types_.Long(), true);
jeffhaobdb76512011-09-07 11:43:16 -07002369 break;
2370 case Instruction::APUT_OBJECT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002371 VerifyAPut(dec_insn, reg_types_.JavaLangObject(), false);
jeffhaobdb76512011-09-07 11:43:16 -07002372 break;
2373
jeffhaobdb76512011-09-07 11:43:16 -07002374 case Instruction::IGET_BOOLEAN:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002375 VerifyISGet(dec_insn, reg_types_.Boolean(), true, false);
Ian Rogersd81871c2011-10-03 13:57:23 -07002376 break;
jeffhaobdb76512011-09-07 11:43:16 -07002377 case Instruction::IGET_BYTE:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002378 VerifyISGet(dec_insn, reg_types_.Byte(), true, false);
Ian Rogersd81871c2011-10-03 13:57:23 -07002379 break;
jeffhaobdb76512011-09-07 11:43:16 -07002380 case Instruction::IGET_CHAR:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002381 VerifyISGet(dec_insn, reg_types_.Char(), true, false);
Ian Rogersd81871c2011-10-03 13:57:23 -07002382 break;
jeffhaobdb76512011-09-07 11:43:16 -07002383 case Instruction::IGET_SHORT:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002384 VerifyISGet(dec_insn, reg_types_.Short(), true, false);
Ian Rogersd81871c2011-10-03 13:57:23 -07002385 break;
2386 case Instruction::IGET:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002387 VerifyISGet(dec_insn, reg_types_.Integer(), true, false);
jeffhaobdb76512011-09-07 11:43:16 -07002388 break;
2389 case Instruction::IGET_WIDE:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002390 VerifyISGet(dec_insn, reg_types_.Long(), true, false);
jeffhaobdb76512011-09-07 11:43:16 -07002391 break;
2392 case Instruction::IGET_OBJECT:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002393 VerifyISGet(dec_insn, reg_types_.JavaLangObject(), false, false);
Ian Rogersd81871c2011-10-03 13:57:23 -07002394 break;
jeffhaobdb76512011-09-07 11:43:16 -07002395
Ian Rogersd81871c2011-10-03 13:57:23 -07002396 case Instruction::IPUT_BOOLEAN:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002397 VerifyISPut(dec_insn, reg_types_.Boolean(), true, false);
Ian Rogersd81871c2011-10-03 13:57:23 -07002398 break;
2399 case Instruction::IPUT_BYTE:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002400 VerifyISPut(dec_insn, reg_types_.Byte(), true, false);
Ian Rogersd81871c2011-10-03 13:57:23 -07002401 break;
2402 case Instruction::IPUT_CHAR:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002403 VerifyISPut(dec_insn, reg_types_.Char(), true, false);
Ian Rogersd81871c2011-10-03 13:57:23 -07002404 break;
2405 case Instruction::IPUT_SHORT:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002406 VerifyISPut(dec_insn, reg_types_.Short(), true, false);
jeffhaobdb76512011-09-07 11:43:16 -07002407 break;
2408 case Instruction::IPUT:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002409 VerifyISPut(dec_insn, reg_types_.Integer(), true, false);
jeffhaobdb76512011-09-07 11:43:16 -07002410 break;
2411 case Instruction::IPUT_WIDE:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002412 VerifyISPut(dec_insn, reg_types_.Long(), true, false);
Ian Rogersd81871c2011-10-03 13:57:23 -07002413 break;
jeffhaobdb76512011-09-07 11:43:16 -07002414 case Instruction::IPUT_OBJECT:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002415 VerifyISPut(dec_insn, reg_types_.JavaLangObject(), false, false);
jeffhaobdb76512011-09-07 11:43:16 -07002416 break;
2417
jeffhaobdb76512011-09-07 11:43:16 -07002418 case Instruction::SGET_BOOLEAN:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002419 VerifyISGet(dec_insn, reg_types_.Boolean(), true, true);
Ian Rogersd81871c2011-10-03 13:57:23 -07002420 break;
jeffhaobdb76512011-09-07 11:43:16 -07002421 case Instruction::SGET_BYTE:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002422 VerifyISGet(dec_insn, reg_types_.Byte(), true, true);
Ian Rogersd81871c2011-10-03 13:57:23 -07002423 break;
jeffhaobdb76512011-09-07 11:43:16 -07002424 case Instruction::SGET_CHAR:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002425 VerifyISGet(dec_insn, reg_types_.Char(), true, true);
Ian Rogersd81871c2011-10-03 13:57:23 -07002426 break;
jeffhaobdb76512011-09-07 11:43:16 -07002427 case Instruction::SGET_SHORT:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002428 VerifyISGet(dec_insn, reg_types_.Short(), true, true);
Ian Rogersd81871c2011-10-03 13:57:23 -07002429 break;
2430 case Instruction::SGET:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002431 VerifyISGet(dec_insn, reg_types_.Integer(), true, true);
jeffhaobdb76512011-09-07 11:43:16 -07002432 break;
2433 case Instruction::SGET_WIDE:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002434 VerifyISGet(dec_insn, reg_types_.Long(), true, true);
jeffhaobdb76512011-09-07 11:43:16 -07002435 break;
2436 case Instruction::SGET_OBJECT:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002437 VerifyISGet(dec_insn, reg_types_.JavaLangObject(), false, true);
Ian Rogersd81871c2011-10-03 13:57:23 -07002438 break;
2439
2440 case Instruction::SPUT_BOOLEAN:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002441 VerifyISPut(dec_insn, reg_types_.Boolean(), true, true);
Ian Rogersd81871c2011-10-03 13:57:23 -07002442 break;
2443 case Instruction::SPUT_BYTE:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002444 VerifyISPut(dec_insn, reg_types_.Byte(), true, true);
Ian Rogersd81871c2011-10-03 13:57:23 -07002445 break;
2446 case Instruction::SPUT_CHAR:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002447 VerifyISPut(dec_insn, reg_types_.Char(), true, true);
Ian Rogersd81871c2011-10-03 13:57:23 -07002448 break;
2449 case Instruction::SPUT_SHORT:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002450 VerifyISPut(dec_insn, reg_types_.Short(), true, true);
jeffhaobdb76512011-09-07 11:43:16 -07002451 break;
2452 case Instruction::SPUT:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002453 VerifyISPut(dec_insn, reg_types_.Integer(), true, true);
jeffhaobdb76512011-09-07 11:43:16 -07002454 break;
2455 case Instruction::SPUT_WIDE:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002456 VerifyISPut(dec_insn, reg_types_.Long(), true, true);
jeffhaobdb76512011-09-07 11:43:16 -07002457 break;
2458 case Instruction::SPUT_OBJECT:
Ian Rogersb94a27b2011-10-26 00:33:41 -07002459 VerifyISPut(dec_insn, reg_types_.JavaLangObject(), false, true);
jeffhaobdb76512011-09-07 11:43:16 -07002460 break;
2461
2462 case Instruction::INVOKE_VIRTUAL:
2463 case Instruction::INVOKE_VIRTUAL_RANGE:
2464 case Instruction::INVOKE_SUPER:
Ian Rogersd81871c2011-10-03 13:57:23 -07002465 case Instruction::INVOKE_SUPER_RANGE: {
2466 bool is_range = (dec_insn.opcode_ == Instruction::INVOKE_VIRTUAL_RANGE ||
2467 dec_insn.opcode_ == Instruction::INVOKE_SUPER_RANGE);
2468 bool is_super = (dec_insn.opcode_ == Instruction::INVOKE_SUPER ||
2469 dec_insn.opcode_ == Instruction::INVOKE_SUPER_RANGE);
2470 Method* called_method = VerifyInvocationArgs(dec_insn, METHOD_VIRTUAL, is_range, is_super);
2471 if (failure_ == VERIFY_ERROR_NONE) {
Ian Rogers28ad40d2011-10-27 15:19:26 -07002472 const char* descriptor;
2473 if (called_method == NULL) {
2474 uint32_t method_idx = dec_insn.vB_;
2475 const DexFile::MethodId& method_id = dex_file_->GetMethodId(method_idx);
2476 uint32_t return_type_idx = dex_file_->GetProtoId(method_id.proto_idx_).return_type_idx_;
Ian Rogers0571d352011-11-03 19:51:38 -07002477 descriptor = dex_file_->StringByTypeIdx(return_type_idx);
Ian Rogers28ad40d2011-10-27 15:19:26 -07002478 } else {
Ian Rogers6d4d9fc2011-11-30 16:24:48 -08002479 descriptor = MethodHelper(called_method).GetReturnTypeDescriptor();
Ian Rogers28ad40d2011-10-27 15:19:26 -07002480 }
Ian Rogers9074b992011-10-26 17:41:55 -07002481 const RegType& return_type =
Ian Rogers28ad40d2011-10-27 15:19:26 -07002482 reg_types_.FromDescriptor(method_->GetDeclaringClass()->GetClassLoader(), descriptor);
Ian Rogersd81871c2011-10-03 13:57:23 -07002483 work_line_->SetResultRegisterType(return_type);
jeffhaobdb76512011-09-07 11:43:16 -07002484 just_set_result = true;
2485 }
2486 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002487 }
jeffhaobdb76512011-09-07 11:43:16 -07002488 case Instruction::INVOKE_DIRECT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002489 case Instruction::INVOKE_DIRECT_RANGE: {
2490 bool is_range = (dec_insn.opcode_ == Instruction::INVOKE_DIRECT_RANGE);
2491 Method* called_method = VerifyInvocationArgs(dec_insn, METHOD_DIRECT, is_range, false);
2492 if (failure_ == VERIFY_ERROR_NONE) {
jeffhaobdb76512011-09-07 11:43:16 -07002493 /*
Ian Rogersd81871c2011-10-03 13:57:23 -07002494 * Some additional checks when calling a constructor. We know from the invocation arg check
2495 * that the "this" argument is an instance of called_method->klass. Now we further restrict
2496 * that to require that called_method->klass is the same as this->klass or this->super,
2497 * allowing the latter only if the "this" argument is the same as the "this" argument to
2498 * this method (which implies that we're in a constructor ourselves).
jeffhaobdb76512011-09-07 11:43:16 -07002499 */
Ian Rogers28ad40d2011-10-27 15:19:26 -07002500 bool is_constructor;
2501 if (called_method != NULL) {
2502 is_constructor = called_method->IsConstructor();
2503 } else {
2504 uint32_t method_idx = dec_insn.vB_;
2505 const DexFile::MethodId& method_id = dex_file_->GetMethodId(method_idx);
2506 const char* name = dex_file_->GetMethodName(method_id);
2507 is_constructor = strcmp(name, "<init>") == 0;
2508 }
2509 if (is_constructor) {
Ian Rogersd81871c2011-10-03 13:57:23 -07002510 const RegType& this_type = work_line_->GetInvocationThis(dec_insn);
2511 if (failure_ != VERIFY_ERROR_NONE)
jeffhaobdb76512011-09-07 11:43:16 -07002512 break;
2513
2514 /* no null refs allowed (?) */
Ian Rogersd81871c2011-10-03 13:57:23 -07002515 if (this_type.IsZero()) {
2516 Fail(VERIFY_ERROR_GENERIC) << "unable to initialize null ref";
jeffhaobdb76512011-09-07 11:43:16 -07002517 break;
2518 }
Ian Rogers28ad40d2011-10-27 15:19:26 -07002519 if (called_method != NULL) {
2520 Class* this_class = this_type.GetClass();
2521 DCHECK(this_class != NULL);
2522 /* must be in same class or in superclass */
2523 if (called_method->GetDeclaringClass() == this_class->GetSuperClass()) {
2524 if (this_class != method_->GetDeclaringClass()) {
2525 Fail(VERIFY_ERROR_GENERIC)
2526 << "invoke-direct <init> on super only allowed for 'this' in <init>";
2527 break;
2528 }
2529 } else if (called_method->GetDeclaringClass() != this_class) {
2530 Fail(VERIFY_ERROR_GENERIC) << "invoke-direct <init> must be on current class or super";
jeffhaobdb76512011-09-07 11:43:16 -07002531 break;
2532 }
jeffhaobdb76512011-09-07 11:43:16 -07002533 }
2534
2535 /* arg must be an uninitialized reference */
Ian Rogers84fa0742011-10-25 18:13:30 -07002536 if (!this_type.IsUninitializedTypes()) {
Ian Rogersd81871c2011-10-03 13:57:23 -07002537 Fail(VERIFY_ERROR_GENERIC) << "Expected initialization on uninitialized reference "
2538 << this_type;
jeffhaobdb76512011-09-07 11:43:16 -07002539 break;
2540 }
2541
2542 /*
Ian Rogers84fa0742011-10-25 18:13:30 -07002543 * Replace the uninitialized reference with an initialized one. We need to do this for all
2544 * registers that have the same object instance in them, not just the "this" register.
jeffhaobdb76512011-09-07 11:43:16 -07002545 */
Ian Rogersd81871c2011-10-03 13:57:23 -07002546 work_line_->MarkRefsAsInitialized(this_type);
2547 if (failure_ != VERIFY_ERROR_NONE)
jeffhaobdb76512011-09-07 11:43:16 -07002548 break;
jeffhao2a8a90e2011-09-26 14:25:31 -07002549 }
Ian Rogers28ad40d2011-10-27 15:19:26 -07002550 const char* descriptor;
2551 if (called_method == NULL) {
2552 uint32_t method_idx = dec_insn.vB_;
2553 const DexFile::MethodId& method_id = dex_file_->GetMethodId(method_idx);
2554 uint32_t return_type_idx = dex_file_->GetProtoId(method_id.proto_idx_).return_type_idx_;
Ian Rogers0571d352011-11-03 19:51:38 -07002555 descriptor = dex_file_->StringByTypeIdx(return_type_idx);
Ian Rogers28ad40d2011-10-27 15:19:26 -07002556 } else {
Ian Rogers6d4d9fc2011-11-30 16:24:48 -08002557 descriptor = MethodHelper(called_method).GetReturnTypeDescriptor();
Ian Rogers28ad40d2011-10-27 15:19:26 -07002558 }
Ian Rogers9074b992011-10-26 17:41:55 -07002559 const RegType& return_type =
Ian Rogers28ad40d2011-10-27 15:19:26 -07002560 reg_types_.FromDescriptor(method_->GetDeclaringClass()->GetClassLoader(), descriptor);
Ian Rogersd81871c2011-10-03 13:57:23 -07002561 work_line_->SetResultRegisterType(return_type);
jeffhaobdb76512011-09-07 11:43:16 -07002562 just_set_result = true;
2563 }
2564 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002565 }
jeffhaobdb76512011-09-07 11:43:16 -07002566 case Instruction::INVOKE_STATIC:
Ian Rogersd81871c2011-10-03 13:57:23 -07002567 case Instruction::INVOKE_STATIC_RANGE: {
2568 bool is_range = (dec_insn.opcode_ == Instruction::INVOKE_STATIC_RANGE);
2569 Method* called_method = VerifyInvocationArgs(dec_insn, METHOD_STATIC, is_range, false);
2570 if (failure_ == VERIFY_ERROR_NONE) {
Ian Rogers28ad40d2011-10-27 15:19:26 -07002571 const char* descriptor;
2572 if (called_method == NULL) {
2573 uint32_t method_idx = dec_insn.vB_;
2574 const DexFile::MethodId& method_id = dex_file_->GetMethodId(method_idx);
2575 uint32_t return_type_idx = dex_file_->GetProtoId(method_id.proto_idx_).return_type_idx_;
Ian Rogers0571d352011-11-03 19:51:38 -07002576 descriptor = dex_file_->StringByTypeIdx(return_type_idx);
Ian Rogers28ad40d2011-10-27 15:19:26 -07002577 } else {
Ian Rogers6d4d9fc2011-11-30 16:24:48 -08002578 descriptor = MethodHelper(called_method).GetReturnTypeDescriptor();
Ian Rogers28ad40d2011-10-27 15:19:26 -07002579 }
Ian Rogers9074b992011-10-26 17:41:55 -07002580 const RegType& return_type =
Ian Rogers28ad40d2011-10-27 15:19:26 -07002581 reg_types_.FromDescriptor(method_->GetDeclaringClass()->GetClassLoader(), descriptor);
Ian Rogersd81871c2011-10-03 13:57:23 -07002582 work_line_->SetResultRegisterType(return_type);
2583 just_set_result = true;
2584 }
jeffhaobdb76512011-09-07 11:43:16 -07002585 }
2586 break;
2587 case Instruction::INVOKE_INTERFACE:
Ian Rogersd81871c2011-10-03 13:57:23 -07002588 case Instruction::INVOKE_INTERFACE_RANGE: {
2589 bool is_range = (dec_insn.opcode_ == Instruction::INVOKE_INTERFACE_RANGE);
2590 Method* abs_method = VerifyInvocationArgs(dec_insn, METHOD_INTERFACE, is_range, false);
2591 if (failure_ == VERIFY_ERROR_NONE) {
Ian Rogers28ad40d2011-10-27 15:19:26 -07002592 if (abs_method != NULL) {
2593 Class* called_interface = abs_method->GetDeclaringClass();
Ian Rogersf3c1f782011-11-02 14:12:15 -07002594 if (!called_interface->IsInterface() && !called_interface->IsObjectClass()) {
Ian Rogers28ad40d2011-10-27 15:19:26 -07002595 Fail(VERIFY_ERROR_CLASS_CHANGE) << "expected interface class in invoke-interface '"
2596 << PrettyMethod(abs_method) << "'";
2597 break;
2598 }
2599 }
2600 /* Get the type of the "this" arg, which should either be a sub-interface of called
2601 * interface or Object (see comments in RegType::JoinClass).
2602 */
2603 const RegType& this_type = work_line_->GetInvocationThis(dec_insn);
2604 if (failure_ == VERIFY_ERROR_NONE) {
2605 if (this_type.IsZero()) {
2606 /* null pointer always passes (and always fails at runtime) */
2607 } else {
2608 if (this_type.IsUninitializedTypes()) {
2609 Fail(VERIFY_ERROR_GENERIC) << "interface call on uninitialized object "
2610 << this_type;
2611 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002612 }
Ian Rogers28ad40d2011-10-27 15:19:26 -07002613 // In the past we have tried to assert that "called_interface" is assignable
2614 // from "this_type.GetClass()", however, as we do an imprecise Join
2615 // (RegType::JoinClass) we don't have full information on what interfaces are
2616 // implemented by "this_type". For example, two classes may implement the same
2617 // interfaces and have a common parent that doesn't implement the interface. The
2618 // join will set "this_type" to the parent class and a test that this implements
2619 // the interface will incorrectly fail.
jeffhaobdb76512011-09-07 11:43:16 -07002620 }
2621 }
jeffhaobdb76512011-09-07 11:43:16 -07002622 /*
Ian Rogersd81871c2011-10-03 13:57:23 -07002623 * We don't have an object instance, so we can't find the concrete method. However, all of
2624 * the type information is in the abstract method, so we're good.
jeffhaobdb76512011-09-07 11:43:16 -07002625 */
Ian Rogers28ad40d2011-10-27 15:19:26 -07002626 const char* descriptor;
2627 if (abs_method == NULL) {
2628 uint32_t method_idx = dec_insn.vB_;
2629 const DexFile::MethodId& method_id = dex_file_->GetMethodId(method_idx);
2630 uint32_t return_type_idx = dex_file_->GetProtoId(method_id.proto_idx_).return_type_idx_;
Ian Rogers0571d352011-11-03 19:51:38 -07002631 descriptor = dex_file_->StringByTypeIdx(return_type_idx);
Ian Rogers28ad40d2011-10-27 15:19:26 -07002632 } else {
Ian Rogers6d4d9fc2011-11-30 16:24:48 -08002633 descriptor = MethodHelper(abs_method).GetReturnTypeDescriptor();
Ian Rogers28ad40d2011-10-27 15:19:26 -07002634 }
Ian Rogers9074b992011-10-26 17:41:55 -07002635 const RegType& return_type =
Ian Rogers28ad40d2011-10-27 15:19:26 -07002636 reg_types_.FromDescriptor(method_->GetDeclaringClass()->GetClassLoader(), descriptor);
2637 work_line_->SetResultRegisterType(return_type);
Ian Rogersd81871c2011-10-03 13:57:23 -07002638 work_line_->SetResultRegisterType(return_type);
jeffhaobdb76512011-09-07 11:43:16 -07002639 just_set_result = true;
2640 }
2641 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07002642 }
jeffhaobdb76512011-09-07 11:43:16 -07002643 case Instruction::NEG_INT:
2644 case Instruction::NOT_INT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002645 work_line_->CheckUnaryOp(dec_insn, reg_types_.Integer(), reg_types_.Integer());
jeffhaobdb76512011-09-07 11:43:16 -07002646 break;
2647 case Instruction::NEG_LONG:
2648 case Instruction::NOT_LONG:
Ian Rogersd81871c2011-10-03 13:57:23 -07002649 work_line_->CheckUnaryOp(dec_insn, reg_types_.Long(), reg_types_.Long());
jeffhaobdb76512011-09-07 11:43:16 -07002650 break;
2651 case Instruction::NEG_FLOAT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002652 work_line_->CheckUnaryOp(dec_insn, reg_types_.Float(), reg_types_.Float());
jeffhaobdb76512011-09-07 11:43:16 -07002653 break;
2654 case Instruction::NEG_DOUBLE:
Ian Rogersd81871c2011-10-03 13:57:23 -07002655 work_line_->CheckUnaryOp(dec_insn, reg_types_.Double(), reg_types_.Double());
jeffhaobdb76512011-09-07 11:43:16 -07002656 break;
2657 case Instruction::INT_TO_LONG:
Ian Rogersd81871c2011-10-03 13:57:23 -07002658 work_line_->CheckUnaryOp(dec_insn, reg_types_.Long(), reg_types_.Integer());
jeffhaobdb76512011-09-07 11:43:16 -07002659 break;
2660 case Instruction::INT_TO_FLOAT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002661 work_line_->CheckUnaryOp(dec_insn, reg_types_.Float(), reg_types_.Integer());
jeffhaobdb76512011-09-07 11:43:16 -07002662 break;
2663 case Instruction::INT_TO_DOUBLE:
Ian Rogersd81871c2011-10-03 13:57:23 -07002664 work_line_->CheckUnaryOp(dec_insn, reg_types_.Double(), reg_types_.Integer());
jeffhaobdb76512011-09-07 11:43:16 -07002665 break;
2666 case Instruction::LONG_TO_INT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002667 work_line_->CheckUnaryOp(dec_insn, reg_types_.Integer(), reg_types_.Long());
jeffhaobdb76512011-09-07 11:43:16 -07002668 break;
2669 case Instruction::LONG_TO_FLOAT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002670 work_line_->CheckUnaryOp(dec_insn, reg_types_.Float(), reg_types_.Long());
jeffhaobdb76512011-09-07 11:43:16 -07002671 break;
2672 case Instruction::LONG_TO_DOUBLE:
Ian Rogersd81871c2011-10-03 13:57:23 -07002673 work_line_->CheckUnaryOp(dec_insn, reg_types_.Double(), reg_types_.Long());
jeffhaobdb76512011-09-07 11:43:16 -07002674 break;
2675 case Instruction::FLOAT_TO_INT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002676 work_line_->CheckUnaryOp(dec_insn, reg_types_.Integer(), reg_types_.Float());
jeffhaobdb76512011-09-07 11:43:16 -07002677 break;
2678 case Instruction::FLOAT_TO_LONG:
Ian Rogersd81871c2011-10-03 13:57:23 -07002679 work_line_->CheckUnaryOp(dec_insn, reg_types_.Long(), reg_types_.Float());
jeffhaobdb76512011-09-07 11:43:16 -07002680 break;
2681 case Instruction::FLOAT_TO_DOUBLE:
Ian Rogersd81871c2011-10-03 13:57:23 -07002682 work_line_->CheckUnaryOp(dec_insn, reg_types_.Double(), reg_types_.Float());
jeffhaobdb76512011-09-07 11:43:16 -07002683 break;
2684 case Instruction::DOUBLE_TO_INT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002685 work_line_->CheckUnaryOp(dec_insn, reg_types_.Integer(), reg_types_.Double());
jeffhaobdb76512011-09-07 11:43:16 -07002686 break;
2687 case Instruction::DOUBLE_TO_LONG:
Ian Rogersd81871c2011-10-03 13:57:23 -07002688 work_line_->CheckUnaryOp(dec_insn, reg_types_.Long(), reg_types_.Double());
jeffhaobdb76512011-09-07 11:43:16 -07002689 break;
2690 case Instruction::DOUBLE_TO_FLOAT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002691 work_line_->CheckUnaryOp(dec_insn, reg_types_.Float(), reg_types_.Double());
jeffhaobdb76512011-09-07 11:43:16 -07002692 break;
2693 case Instruction::INT_TO_BYTE:
Ian Rogersd81871c2011-10-03 13:57:23 -07002694 work_line_->CheckUnaryOp(dec_insn, reg_types_.Byte(), reg_types_.Integer());
jeffhaobdb76512011-09-07 11:43:16 -07002695 break;
2696 case Instruction::INT_TO_CHAR:
Ian Rogersd81871c2011-10-03 13:57:23 -07002697 work_line_->CheckUnaryOp(dec_insn, reg_types_.Char(), reg_types_.Integer());
jeffhaobdb76512011-09-07 11:43:16 -07002698 break;
2699 case Instruction::INT_TO_SHORT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002700 work_line_->CheckUnaryOp(dec_insn, reg_types_.Short(), reg_types_.Integer());
jeffhaobdb76512011-09-07 11:43:16 -07002701 break;
2702
2703 case Instruction::ADD_INT:
2704 case Instruction::SUB_INT:
2705 case Instruction::MUL_INT:
2706 case Instruction::REM_INT:
2707 case Instruction::DIV_INT:
2708 case Instruction::SHL_INT:
2709 case Instruction::SHR_INT:
2710 case Instruction::USHR_INT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002711 work_line_->CheckBinaryOp(dec_insn, reg_types_.Integer(), reg_types_.Integer(), reg_types_.Integer(), false);
jeffhaobdb76512011-09-07 11:43:16 -07002712 break;
2713 case Instruction::AND_INT:
2714 case Instruction::OR_INT:
2715 case Instruction::XOR_INT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002716 work_line_->CheckBinaryOp(dec_insn, reg_types_.Integer(), reg_types_.Integer(), reg_types_.Integer(), true);
jeffhaobdb76512011-09-07 11:43:16 -07002717 break;
2718 case Instruction::ADD_LONG:
2719 case Instruction::SUB_LONG:
2720 case Instruction::MUL_LONG:
2721 case Instruction::DIV_LONG:
2722 case Instruction::REM_LONG:
2723 case Instruction::AND_LONG:
2724 case Instruction::OR_LONG:
2725 case Instruction::XOR_LONG:
Ian Rogersd81871c2011-10-03 13:57:23 -07002726 work_line_->CheckBinaryOp(dec_insn, reg_types_.Long(), reg_types_.Long(), reg_types_.Long(), false);
jeffhaobdb76512011-09-07 11:43:16 -07002727 break;
2728 case Instruction::SHL_LONG:
2729 case Instruction::SHR_LONG:
2730 case Instruction::USHR_LONG:
Ian Rogersd81871c2011-10-03 13:57:23 -07002731 /* shift distance is Int, making these different from other binary operations */
2732 work_line_->CheckBinaryOp(dec_insn, reg_types_.Long(), reg_types_.Long(), reg_types_.Integer(), false);
jeffhaobdb76512011-09-07 11:43:16 -07002733 break;
2734 case Instruction::ADD_FLOAT:
2735 case Instruction::SUB_FLOAT:
2736 case Instruction::MUL_FLOAT:
2737 case Instruction::DIV_FLOAT:
2738 case Instruction::REM_FLOAT:
Ian Rogersd81871c2011-10-03 13:57:23 -07002739 work_line_->CheckBinaryOp(dec_insn, reg_types_.Float(), reg_types_.Float(), reg_types_.Float(), false);
jeffhaobdb76512011-09-07 11:43:16 -07002740 break;
2741 case Instruction::ADD_DOUBLE:
2742 case Instruction::SUB_DOUBLE:
2743 case Instruction::MUL_DOUBLE:
2744 case Instruction::DIV_DOUBLE:
2745 case Instruction::REM_DOUBLE:
Ian Rogersd81871c2011-10-03 13:57:23 -07002746 work_line_->CheckBinaryOp(dec_insn, reg_types_.Double(), reg_types_.Double(), reg_types_.Double(), false);
jeffhaobdb76512011-09-07 11:43:16 -07002747 break;
2748 case Instruction::ADD_INT_2ADDR:
2749 case Instruction::SUB_INT_2ADDR:
2750 case Instruction::MUL_INT_2ADDR:
2751 case Instruction::REM_INT_2ADDR:
2752 case Instruction::SHL_INT_2ADDR:
2753 case Instruction::SHR_INT_2ADDR:
2754 case Instruction::USHR_INT_2ADDR:
Ian Rogersd81871c2011-10-03 13:57:23 -07002755 work_line_->CheckBinaryOp2addr(dec_insn, reg_types_.Integer(), reg_types_.Integer(), reg_types_.Integer(), false);
jeffhaobdb76512011-09-07 11:43:16 -07002756 break;
2757 case Instruction::AND_INT_2ADDR:
2758 case Instruction::OR_INT_2ADDR:
2759 case Instruction::XOR_INT_2ADDR:
Ian Rogersd81871c2011-10-03 13:57:23 -07002760 work_line_->CheckBinaryOp2addr(dec_insn, reg_types_.Integer(), reg_types_.Integer(), reg_types_.Integer(), true);
jeffhaobdb76512011-09-07 11:43:16 -07002761 break;
2762 case Instruction::DIV_INT_2ADDR:
Ian Rogersd81871c2011-10-03 13:57:23 -07002763 work_line_->CheckBinaryOp2addr(dec_insn, reg_types_.Integer(), reg_types_.Integer(), reg_types_.Integer(), false);
jeffhaobdb76512011-09-07 11:43:16 -07002764 break;
2765 case Instruction::ADD_LONG_2ADDR:
2766 case Instruction::SUB_LONG_2ADDR:
2767 case Instruction::MUL_LONG_2ADDR:
2768 case Instruction::DIV_LONG_2ADDR:
2769 case Instruction::REM_LONG_2ADDR:
2770 case Instruction::AND_LONG_2ADDR:
2771 case Instruction::OR_LONG_2ADDR:
2772 case Instruction::XOR_LONG_2ADDR:
Ian Rogersd81871c2011-10-03 13:57:23 -07002773 work_line_->CheckBinaryOp2addr(dec_insn, reg_types_.Long(), reg_types_.Long(), reg_types_.Long(), false);
jeffhaobdb76512011-09-07 11:43:16 -07002774 break;
2775 case Instruction::SHL_LONG_2ADDR:
2776 case Instruction::SHR_LONG_2ADDR:
2777 case Instruction::USHR_LONG_2ADDR:
Ian Rogersd81871c2011-10-03 13:57:23 -07002778 work_line_->CheckBinaryOp2addr(dec_insn, reg_types_.Long(), reg_types_.Long(), reg_types_.Integer(), false);
jeffhaobdb76512011-09-07 11:43:16 -07002779 break;
2780 case Instruction::ADD_FLOAT_2ADDR:
2781 case Instruction::SUB_FLOAT_2ADDR:
2782 case Instruction::MUL_FLOAT_2ADDR:
2783 case Instruction::DIV_FLOAT_2ADDR:
2784 case Instruction::REM_FLOAT_2ADDR:
Ian Rogersd81871c2011-10-03 13:57:23 -07002785 work_line_->CheckBinaryOp2addr(dec_insn, reg_types_.Float(), reg_types_.Float(), reg_types_.Float(), false);
jeffhaobdb76512011-09-07 11:43:16 -07002786 break;
2787 case Instruction::ADD_DOUBLE_2ADDR:
2788 case Instruction::SUB_DOUBLE_2ADDR:
2789 case Instruction::MUL_DOUBLE_2ADDR:
2790 case Instruction::DIV_DOUBLE_2ADDR:
2791 case Instruction::REM_DOUBLE_2ADDR:
Ian Rogersd81871c2011-10-03 13:57:23 -07002792 work_line_->CheckBinaryOp2addr(dec_insn, reg_types_.Double(), reg_types_.Double(), reg_types_.Double(), false);
jeffhaobdb76512011-09-07 11:43:16 -07002793 break;
2794 case Instruction::ADD_INT_LIT16:
2795 case Instruction::RSUB_INT:
2796 case Instruction::MUL_INT_LIT16:
2797 case Instruction::DIV_INT_LIT16:
2798 case Instruction::REM_INT_LIT16:
Ian Rogersd81871c2011-10-03 13:57:23 -07002799 work_line_->CheckLiteralOp(dec_insn, reg_types_.Integer(), reg_types_.Integer(), false);
jeffhaobdb76512011-09-07 11:43:16 -07002800 break;
2801 case Instruction::AND_INT_LIT16:
2802 case Instruction::OR_INT_LIT16:
2803 case Instruction::XOR_INT_LIT16:
Ian Rogersd81871c2011-10-03 13:57:23 -07002804 work_line_->CheckLiteralOp(dec_insn, reg_types_.Integer(), reg_types_.Integer(), true);
jeffhaobdb76512011-09-07 11:43:16 -07002805 break;
2806 case Instruction::ADD_INT_LIT8:
2807 case Instruction::RSUB_INT_LIT8:
2808 case Instruction::MUL_INT_LIT8:
2809 case Instruction::DIV_INT_LIT8:
2810 case Instruction::REM_INT_LIT8:
2811 case Instruction::SHL_INT_LIT8:
jeffhaobdb76512011-09-07 11:43:16 -07002812 case Instruction::SHR_INT_LIT8:
jeffhaobdb76512011-09-07 11:43:16 -07002813 case Instruction::USHR_INT_LIT8:
Ian Rogersd81871c2011-10-03 13:57:23 -07002814 work_line_->CheckLiteralOp(dec_insn, reg_types_.Integer(), reg_types_.Integer(), false);
jeffhaobdb76512011-09-07 11:43:16 -07002815 break;
2816 case Instruction::AND_INT_LIT8:
2817 case Instruction::OR_INT_LIT8:
2818 case Instruction::XOR_INT_LIT8:
Ian Rogersd81871c2011-10-03 13:57:23 -07002819 work_line_->CheckLiteralOp(dec_insn, reg_types_.Integer(), reg_types_.Integer(), true);
jeffhaobdb76512011-09-07 11:43:16 -07002820 break;
2821
2822 /*
2823 * This falls into the general category of "optimized" instructions,
jeffhaod1f0fde2011-09-08 17:25:33 -07002824 * which don't generally appear during verification. Because it's
jeffhaobdb76512011-09-07 11:43:16 -07002825 * inserted in the course of verification, we can expect to see it here.
2826 */
jeffhaob4df5142011-09-19 20:25:32 -07002827 case Instruction::THROW_VERIFICATION_ERROR:
jeffhaobdb76512011-09-07 11:43:16 -07002828 break;
2829
Ian Rogersd81871c2011-10-03 13:57:23 -07002830 /* These should never appear during verification. */
jeffhaobdb76512011-09-07 11:43:16 -07002831 case Instruction::UNUSED_EE:
2832 case Instruction::UNUSED_EF:
2833 case Instruction::UNUSED_F2:
2834 case Instruction::UNUSED_F3:
2835 case Instruction::UNUSED_F4:
2836 case Instruction::UNUSED_F5:
2837 case Instruction::UNUSED_F6:
2838 case Instruction::UNUSED_F7:
2839 case Instruction::UNUSED_F8:
2840 case Instruction::UNUSED_F9:
2841 case Instruction::UNUSED_FA:
2842 case Instruction::UNUSED_FB:
jeffhaobdb76512011-09-07 11:43:16 -07002843 case Instruction::UNUSED_F0:
2844 case Instruction::UNUSED_F1:
2845 case Instruction::UNUSED_E3:
2846 case Instruction::UNUSED_E8:
2847 case Instruction::UNUSED_E7:
2848 case Instruction::UNUSED_E4:
2849 case Instruction::UNUSED_E9:
2850 case Instruction::UNUSED_FC:
2851 case Instruction::UNUSED_E5:
2852 case Instruction::UNUSED_EA:
2853 case Instruction::UNUSED_FD:
2854 case Instruction::UNUSED_E6:
2855 case Instruction::UNUSED_EB:
2856 case Instruction::UNUSED_FE:
jeffhaobdb76512011-09-07 11:43:16 -07002857 case Instruction::UNUSED_3E:
2858 case Instruction::UNUSED_3F:
2859 case Instruction::UNUSED_40:
2860 case Instruction::UNUSED_41:
2861 case Instruction::UNUSED_42:
2862 case Instruction::UNUSED_43:
2863 case Instruction::UNUSED_73:
2864 case Instruction::UNUSED_79:
2865 case Instruction::UNUSED_7A:
2866 case Instruction::UNUSED_EC:
2867 case Instruction::UNUSED_FF:
Ian Rogers2c8a8572011-10-24 17:11:36 -07002868 Fail(VERIFY_ERROR_GENERIC) << "Unexpected opcode " << inst->DumpString(dex_file_);
jeffhaobdb76512011-09-07 11:43:16 -07002869 break;
2870
2871 /*
jeffhaod1f0fde2011-09-08 17:25:33 -07002872 * DO NOT add a "default" clause here. Without it the compiler will
jeffhaobdb76512011-09-07 11:43:16 -07002873 * complain if an instruction is missing (which is desirable).
2874 */
Ian Rogersd81871c2011-10-03 13:57:23 -07002875 } // end - switch (dec_insn.opcode_)
jeffhaobdb76512011-09-07 11:43:16 -07002876
Ian Rogersd81871c2011-10-03 13:57:23 -07002877 if (failure_ != VERIFY_ERROR_NONE) {
2878 if (failure_ == VERIFY_ERROR_GENERIC) {
jeffhaobdb76512011-09-07 11:43:16 -07002879 /* immediate failure, reject class */
Ian Rogers2c8a8572011-10-24 17:11:36 -07002880 fail_messages_ << std::endl << "Rejecting opcode " << inst->DumpString(dex_file_);
jeffhaobdb76512011-09-07 11:43:16 -07002881 return false;
2882 } else {
2883 /* replace opcode and continue on */
Ian Rogers2c8a8572011-10-24 17:11:36 -07002884 fail_messages_ << std::endl << "Replacing opcode " << inst->DumpString(dex_file_);
Ian Rogersd81871c2011-10-03 13:57:23 -07002885 ReplaceFailingInstruction();
jeffhaobdb76512011-09-07 11:43:16 -07002886 /* IMPORTANT: method->insns may have been changed */
Ian Rogersd81871c2011-10-03 13:57:23 -07002887 insns = code_item_->insns_ + work_insn_idx_;
jeffhaobdb76512011-09-07 11:43:16 -07002888 /* continue on as if we just handled a throw-verification-error */
Ian Rogersd81871c2011-10-03 13:57:23 -07002889 failure_ = VERIFY_ERROR_NONE;
jeffhaobdb76512011-09-07 11:43:16 -07002890 opcode_flag = Instruction::kThrow;
2891 }
2892 }
jeffhaobdb76512011-09-07 11:43:16 -07002893 /*
Ian Rogersd81871c2011-10-03 13:57:23 -07002894 * If we didn't just set the result register, clear it out. This ensures that you can only use
2895 * "move-result" immediately after the result is set. (We could check this statically, but it's
2896 * not expensive and it makes our debugging output cleaner.)
jeffhaobdb76512011-09-07 11:43:16 -07002897 */
2898 if (!just_set_result) {
Ian Rogersd81871c2011-10-03 13:57:23 -07002899 work_line_->SetResultTypeToUnknown();
jeffhaobdb76512011-09-07 11:43:16 -07002900 }
2901
jeffhaoa0a764a2011-09-16 10:43:38 -07002902 /* Handle "continue". Tag the next consecutive instruction. */
jeffhaobdb76512011-09-07 11:43:16 -07002903 if ((opcode_flag & Instruction::kContinue) != 0) {
Ian Rogersd81871c2011-10-03 13:57:23 -07002904 uint32_t next_insn_idx = work_insn_idx_ + CurrentInsnFlags().GetLengthInCodeUnits();
2905 if (next_insn_idx >= code_item_->insns_size_in_code_units_) {
2906 Fail(VERIFY_ERROR_GENERIC) << "Execution can walk off end of code area";
jeffhaobdb76512011-09-07 11:43:16 -07002907 return false;
2908 }
Ian Rogersd81871c2011-10-03 13:57:23 -07002909 // The only way to get to a move-exception instruction is to get thrown there. Make sure the
2910 // next instruction isn't one.
2911 if (!CheckMoveException(code_item_->insns_, next_insn_idx)) {
jeffhaobdb76512011-09-07 11:43:16 -07002912 return false;
Ian Rogersd81871c2011-10-03 13:57:23 -07002913 }
2914 RegisterLine* next_line = reg_table_.GetLine(next_insn_idx);
2915 if (next_line != NULL) {
2916 // Merge registers into what we have for the next instruction, and set the "changed" flag if
2917 // needed.
2918 if (!UpdateRegisters(next_insn_idx, work_line_.get())) {
jeffhaobdb76512011-09-07 11:43:16 -07002919 return false;
Ian Rogersd81871c2011-10-03 13:57:23 -07002920 }
jeffhaobdb76512011-09-07 11:43:16 -07002921 } else {
2922 /*
Ian Rogersd81871c2011-10-03 13:57:23 -07002923 * We're not recording register data for the next instruction, so we don't know what the prior
2924 * state was. We have to assume that something has changed and re-evaluate it.
jeffhaobdb76512011-09-07 11:43:16 -07002925 */
Ian Rogersd81871c2011-10-03 13:57:23 -07002926 insn_flags_[next_insn_idx].SetChanged();
jeffhaobdb76512011-09-07 11:43:16 -07002927 }
2928 }
2929
2930 /*
jeffhaod1f0fde2011-09-08 17:25:33 -07002931 * Handle "branch". Tag the branch target.
jeffhaobdb76512011-09-07 11:43:16 -07002932 *
2933 * NOTE: instructions like Instruction::EQZ provide information about the
jeffhaod1f0fde2011-09-08 17:25:33 -07002934 * state of the register when the branch is taken or not taken. For example,
jeffhaobdb76512011-09-07 11:43:16 -07002935 * somebody could get a reference field, check it for zero, and if the
2936 * branch is taken immediately store that register in a boolean field
jeffhaod1f0fde2011-09-08 17:25:33 -07002937 * since the value is known to be zero. We do not currently account for
jeffhaobdb76512011-09-07 11:43:16 -07002938 * that, and will reject the code.
2939 *
2940 * TODO: avoid re-fetching the branch target
2941 */
2942 if ((opcode_flag & Instruction::kBranch) != 0) {
2943 bool isConditional, selfOkay;
Ian Rogersd81871c2011-10-03 13:57:23 -07002944 if (!GetBranchOffset(work_insn_idx_, &branch_target, &isConditional, &selfOkay)) {
jeffhaobdb76512011-09-07 11:43:16 -07002945 /* should never happen after static verification */
Ian Rogersd81871c2011-10-03 13:57:23 -07002946 Fail(VERIFY_ERROR_GENERIC) << "bad branch";
jeffhaobdb76512011-09-07 11:43:16 -07002947 return false;
2948 }
Brian Carlstrom5b8e4c82011-09-18 01:38:59 -07002949 DCHECK_EQ(isConditional, (opcode_flag & Instruction::kContinue) != 0);
Ian Rogersd81871c2011-10-03 13:57:23 -07002950 if (!CheckMoveException(code_item_->insns_, work_insn_idx_ + branch_target)) {
jeffhaobdb76512011-09-07 11:43:16 -07002951 return false;
Ian Rogersd81871c2011-10-03 13:57:23 -07002952 }
jeffhaobdb76512011-09-07 11:43:16 -07002953 /* update branch target, set "changed" if appropriate */
Ian Rogersd81871c2011-10-03 13:57:23 -07002954 if (!UpdateRegisters(work_insn_idx_ + branch_target, work_line_.get())) {
jeffhaobdb76512011-09-07 11:43:16 -07002955 return false;
Ian Rogersd81871c2011-10-03 13:57:23 -07002956 }
jeffhaobdb76512011-09-07 11:43:16 -07002957 }
2958
2959 /*
jeffhaod1f0fde2011-09-08 17:25:33 -07002960 * Handle "switch". Tag all possible branch targets.
jeffhaobdb76512011-09-07 11:43:16 -07002961 *
2962 * We've already verified that the table is structurally sound, so we
2963 * just need to walk through and tag the targets.
2964 */
2965 if ((opcode_flag & Instruction::kSwitch) != 0) {
2966 int offset_to_switch = insns[1] | (((int32_t) insns[2]) << 16);
2967 const uint16_t* switch_insns = insns + offset_to_switch;
2968 int switch_count = switch_insns[1];
2969 int offset_to_targets, targ;
2970
2971 if ((*insns & 0xff) == Instruction::PACKED_SWITCH) {
2972 /* 0 = sig, 1 = count, 2/3 = first key */
2973 offset_to_targets = 4;
2974 } else {
2975 /* 0 = sig, 1 = count, 2..count * 2 = keys */
Brian Carlstrom5b8e4c82011-09-18 01:38:59 -07002976 DCHECK((*insns & 0xff) == Instruction::SPARSE_SWITCH);
jeffhaobdb76512011-09-07 11:43:16 -07002977 offset_to_targets = 2 + 2 * switch_count;
2978 }
2979
2980 /* verify each switch target */
2981 for (targ = 0; targ < switch_count; targ++) {
2982 int offset;
2983 uint32_t abs_offset;
2984
2985 /* offsets are 32-bit, and only partly endian-swapped */
2986 offset = switch_insns[offset_to_targets + targ * 2] |
2987 (((int32_t) switch_insns[offset_to_targets + targ * 2 + 1]) << 16);
Ian Rogersd81871c2011-10-03 13:57:23 -07002988 abs_offset = work_insn_idx_ + offset;
2989 DCHECK_LT(abs_offset, code_item_->insns_size_in_code_units_);
2990 if (!CheckMoveException(code_item_->insns_, abs_offset)) {
jeffhaobdb76512011-09-07 11:43:16 -07002991 return false;
Ian Rogersd81871c2011-10-03 13:57:23 -07002992 }
2993 if (!UpdateRegisters(abs_offset, work_line_.get()))
jeffhaobdb76512011-09-07 11:43:16 -07002994 return false;
2995 }
2996 }
2997
2998 /*
Ian Rogersd81871c2011-10-03 13:57:23 -07002999 * Handle instructions that can throw and that are sitting in a "try" block. (If they're not in a
3000 * "try" block when they throw, control transfers out of the method.)
jeffhaobdb76512011-09-07 11:43:16 -07003001 */
Ian Rogersd81871c2011-10-03 13:57:23 -07003002 if ((opcode_flag & Instruction::kThrow) != 0 && insn_flags_[work_insn_idx_].IsInTry()) {
3003 bool within_catch_all = false;
Ian Rogers0571d352011-11-03 19:51:38 -07003004 CatchHandlerIterator iterator(*code_item_, work_insn_idx_);
jeffhaobdb76512011-09-07 11:43:16 -07003005
Ian Rogers0571d352011-11-03 19:51:38 -07003006 for (; iterator.HasNext(); iterator.Next()) {
3007 if (iterator.GetHandlerTypeIndex() == DexFile::kDexNoIndex16) {
Ian Rogersd81871c2011-10-03 13:57:23 -07003008 within_catch_all = true;
3009 }
jeffhaobdb76512011-09-07 11:43:16 -07003010 /*
Ian Rogersd81871c2011-10-03 13:57:23 -07003011 * Merge registers into the "catch" block. We want to use the "savedRegs" rather than
3012 * "work_regs", because at runtime the exception will be thrown before the instruction
3013 * modifies any registers.
jeffhaobdb76512011-09-07 11:43:16 -07003014 */
Ian Rogers0571d352011-11-03 19:51:38 -07003015 if (!UpdateRegisters(iterator.GetHandlerAddress(), saved_line_.get())) {
jeffhaobdb76512011-09-07 11:43:16 -07003016 return false;
Ian Rogersd81871c2011-10-03 13:57:23 -07003017 }
jeffhaobdb76512011-09-07 11:43:16 -07003018 }
3019
3020 /*
Ian Rogersd81871c2011-10-03 13:57:23 -07003021 * If the monitor stack depth is nonzero, there must be a "catch all" handler for this
3022 * instruction. This does apply to monitor-exit because of async exception handling.
jeffhaobdb76512011-09-07 11:43:16 -07003023 */
Ian Rogersd81871c2011-10-03 13:57:23 -07003024 if (work_line_->MonitorStackDepth() > 0 && !within_catch_all) {
jeffhaobdb76512011-09-07 11:43:16 -07003025 /*
Ian Rogersd81871c2011-10-03 13:57:23 -07003026 * The state in work_line reflects the post-execution state. If the current instruction is a
3027 * monitor-enter and the monitor stack was empty, we don't need a catch-all (if it throws,
jeffhaobdb76512011-09-07 11:43:16 -07003028 * it will do so before grabbing the lock).
3029 */
Ian Rogersd81871c2011-10-03 13:57:23 -07003030 if (dec_insn.opcode_ != Instruction::MONITOR_ENTER || work_line_->MonitorStackDepth() != 1) {
3031 Fail(VERIFY_ERROR_GENERIC)
3032 << "expected to be within a catch-all for an instruction where a monitor is held";
jeffhaobdb76512011-09-07 11:43:16 -07003033 return false;
3034 }
3035 }
3036 }
3037
jeffhaod1f0fde2011-09-08 17:25:33 -07003038 /* If we're returning from the method, make sure monitor stack is empty. */
Ian Rogersd81871c2011-10-03 13:57:23 -07003039 if ((opcode_flag & Instruction::kReturn) != 0) {
3040 if(!work_line_->VerifyMonitorStackEmpty()) {
3041 return false;
3042 }
jeffhaobdb76512011-09-07 11:43:16 -07003043 }
3044
3045 /*
jeffhaod1f0fde2011-09-08 17:25:33 -07003046 * Update start_guess. Advance to the next instruction of that's
3047 * possible, otherwise use the branch target if one was found. If
jeffhaobdb76512011-09-07 11:43:16 -07003048 * neither of those exists we're in a return or throw; leave start_guess
3049 * alone and let the caller sort it out.
3050 */
3051 if ((opcode_flag & Instruction::kContinue) != 0) {
Ian Rogersd81871c2011-10-03 13:57:23 -07003052 *start_guess = work_insn_idx_ + insn_flags_[work_insn_idx_].GetLengthInCodeUnits();
jeffhaobdb76512011-09-07 11:43:16 -07003053 } else if ((opcode_flag & Instruction::kBranch) != 0) {
3054 /* we're still okay if branch_target is zero */
Ian Rogersd81871c2011-10-03 13:57:23 -07003055 *start_guess = work_insn_idx_ + branch_target;
jeffhaobdb76512011-09-07 11:43:16 -07003056 }
3057
Ian Rogersd81871c2011-10-03 13:57:23 -07003058 DCHECK_LT(*start_guess, code_item_->insns_size_in_code_units_);
3059 DCHECK(insn_flags_[*start_guess].IsOpcode());
jeffhaobdb76512011-09-07 11:43:16 -07003060
3061 return true;
3062}
3063
Ian Rogers28ad40d2011-10-27 15:19:26 -07003064const RegType& DexVerifier::ResolveClassAndCheckAccess(uint32_t class_idx) {
Ian Rogers0571d352011-11-03 19:51:38 -07003065 const char* descriptor = dex_file_->StringByTypeIdx(class_idx);
Ian Rogers28ad40d2011-10-27 15:19:26 -07003066 Class* referrer = method_->GetDeclaringClass();
3067 Class* klass = method_->GetDexCacheResolvedTypes()->Get(class_idx);
3068 const RegType& result =
3069 klass != NULL ? reg_types_.FromClass(klass)
3070 : reg_types_.FromDescriptor(referrer->GetClassLoader(), descriptor);
3071 if (klass == NULL && !result.IsUnresolvedTypes()) {
3072 method_->GetDexCacheResolvedTypes()->Set(class_idx, result.GetClass());
Ian Rogersd81871c2011-10-03 13:57:23 -07003073 }
Ian Rogers28ad40d2011-10-27 15:19:26 -07003074 // Check if access is allowed. Unresolved types use AllocObjectFromCodeWithAccessCheck to
3075 // check at runtime if access is allowed and so pass here.
3076 if (!result.IsUnresolvedTypes() && !referrer->CanAccess(result.GetClass())) {
3077 Fail(VERIFY_ERROR_ACCESS_CLASS) << "illegal class access: '"
Ian Rogers6d4d9fc2011-11-30 16:24:48 -08003078 << PrettyDescriptor(referrer) << "' -> '"
Ian Rogers28ad40d2011-10-27 15:19:26 -07003079 << result << "'";
3080 return reg_types_.Unknown();
3081 } else {
3082 return result;
3083 }
Ian Rogersd81871c2011-10-03 13:57:23 -07003084}
3085
Ian Rogers28ad40d2011-10-27 15:19:26 -07003086const RegType& DexVerifier::GetCaughtExceptionType() {
3087 const RegType* common_super = NULL;
Ian Rogersd81871c2011-10-03 13:57:23 -07003088 if (code_item_->tries_size_ != 0) {
Ian Rogers0571d352011-11-03 19:51:38 -07003089 const byte* handlers_ptr = DexFile::GetCatchHandlerData(*code_item_, 0);
Ian Rogersd81871c2011-10-03 13:57:23 -07003090 uint32_t handlers_size = DecodeUnsignedLeb128(&handlers_ptr);
3091 for (uint32_t i = 0; i < handlers_size; i++) {
Ian Rogers0571d352011-11-03 19:51:38 -07003092 CatchHandlerIterator iterator(handlers_ptr);
3093 for (; iterator.HasNext(); iterator.Next()) {
3094 if (iterator.GetHandlerAddress() == (uint32_t) work_insn_idx_) {
3095 if (iterator.GetHandlerTypeIndex() == DexFile::kDexNoIndex16) {
Ian Rogers28ad40d2011-10-27 15:19:26 -07003096 common_super = &reg_types_.JavaLangThrowable();
Ian Rogersd81871c2011-10-03 13:57:23 -07003097 } else {
Ian Rogers0571d352011-11-03 19:51:38 -07003098 const RegType& exception = ResolveClassAndCheckAccess(iterator.GetHandlerTypeIndex());
Ian Rogersc4762272012-02-01 15:55:55 -08003099 if (common_super == NULL) {
3100 // Unconditionally assign for the first handler. We don't assert this is a Throwable
3101 // as that is caught at runtime
3102 common_super = &exception;
3103 } else if(!reg_types_.JavaLangThrowable().IsAssignableFrom(exception)) {
3104 // We don't know enough about the type and the common path merge will result in
3105 // Conflict. Fail here knowing the correct thing can be done at runtime.
Ian Rogers28ad40d2011-10-27 15:19:26 -07003106 Fail(VERIFY_ERROR_GENERIC) << "unexpected non-exception class " << exception;
3107 return reg_types_.Unknown();
Ian Rogers28ad40d2011-10-27 15:19:26 -07003108 } else if (common_super->Equals(exception)) {
Ian Rogersc4762272012-02-01 15:55:55 -08003109 // odd case, but nothing to do
Ian Rogersd81871c2011-10-03 13:57:23 -07003110 } else {
Ian Rogers28ad40d2011-10-27 15:19:26 -07003111 common_super = &common_super->Merge(exception, &reg_types_);
3112 CHECK(reg_types_.JavaLangThrowable().IsAssignableFrom(*common_super));
Ian Rogersd81871c2011-10-03 13:57:23 -07003113 }
3114 }
3115 }
3116 }
Ian Rogers0571d352011-11-03 19:51:38 -07003117 handlers_ptr = iterator.EndDataPointer();
Ian Rogersd81871c2011-10-03 13:57:23 -07003118 }
3119 }
3120 if (common_super == NULL) {
3121 /* no catch blocks, or no catches with classes we can find */
3122 Fail(VERIFY_ERROR_GENERIC) << "unable to find exception handler";
Ian Rogersc4762272012-02-01 15:55:55 -08003123 return reg_types_.Unknown();
Ian Rogersd81871c2011-10-03 13:57:23 -07003124 }
Ian Rogers28ad40d2011-10-27 15:19:26 -07003125 return *common_super;
Ian Rogersd81871c2011-10-03 13:57:23 -07003126}
3127
3128Method* DexVerifier::ResolveMethodAndCheckAccess(uint32_t method_idx, bool is_direct) {
Ian Rogers90040192011-12-16 08:54:29 -08003129 const DexFile::MethodId& method_id = dex_file_->GetMethodId(method_idx);
3130 const RegType& klass_type = ResolveClassAndCheckAccess(method_id.class_idx_);
3131 if (failure_ != VERIFY_ERROR_NONE) {
3132 fail_messages_ << " in attempt to access method " << dex_file_->GetMethodName(method_id);
3133 return NULL;
3134 }
3135 if(klass_type.IsUnresolvedTypes()) {
3136 return NULL; // Can't resolve Class so no more to do here
3137 }
Ian Rogersd81871c2011-10-03 13:57:23 -07003138 Class* referrer = method_->GetDeclaringClass();
3139 DexCache* dex_cache = referrer->GetDexCache();
3140 Method* res_method = dex_cache->GetResolvedMethod(method_idx);
3141 if (res_method == NULL) {
Ian Rogers28ad40d2011-10-27 15:19:26 -07003142 Class* klass = klass_type.GetClass();
Brian Carlstrom6b4ef022011-10-23 14:59:04 -07003143 const char* name = dex_file_->GetMethodName(method_id);
Ian Rogers0571d352011-11-03 19:51:38 -07003144 std::string signature(dex_file_->CreateMethodSignature(method_id.proto_idx_, NULL));
Ian Rogersd81871c2011-10-03 13:57:23 -07003145 if (is_direct) {
3146 res_method = klass->FindDirectMethod(name, signature);
3147 } else if (klass->IsInterface()) {
3148 res_method = klass->FindInterfaceMethod(name, signature);
3149 } else {
3150 res_method = klass->FindVirtualMethod(name, signature);
3151 }
3152 if (res_method != NULL) {
3153 dex_cache->SetResolvedMethod(method_idx, res_method);
3154 } else {
3155 Fail(VERIFY_ERROR_NO_METHOD) << "couldn't find method "
Ian Rogers6d4d9fc2011-11-30 16:24:48 -08003156 << PrettyDescriptor(klass) << "." << name
Ian Rogersd81871c2011-10-03 13:57:23 -07003157 << " " << signature;
3158 return NULL;
3159 }
3160 }
3161 /* Check if access is allowed. */
3162 if (!referrer->CanAccessMember(res_method->GetDeclaringClass(), res_method->GetAccessFlags())) {
3163 Fail(VERIFY_ERROR_ACCESS_METHOD) << "illegal method access (call " << PrettyMethod(res_method)
Ian Rogers6d4d9fc2011-11-30 16:24:48 -08003164 << " from " << PrettyDescriptor(referrer) << ")";
Ian Rogersd81871c2011-10-03 13:57:23 -07003165 return NULL;
3166 }
3167 return res_method;
3168}
3169
3170Method* DexVerifier::VerifyInvocationArgs(const Instruction::DecodedInstruction& dec_insn,
3171 MethodType method_type, bool is_range, bool is_super) {
3172 // Resolve the method. This could be an abstract or concrete method depending on what sort of call
3173 // we're making.
3174 Method* res_method = ResolveMethodAndCheckAccess(dec_insn.vB_,
3175 (method_type == METHOD_DIRECT || method_type == METHOD_STATIC));
Ian Rogers28ad40d2011-10-27 15:19:26 -07003176 if (res_method == NULL) { // error or class is unresolved
Ian Rogersd81871c2011-10-03 13:57:23 -07003177 return NULL;
3178 }
3179 // Make sure calls to constructors are "direct". There are additional restrictions but we don't
3180 // enforce them here.
3181 if (res_method->IsConstructor() && method_type != METHOD_DIRECT) {
3182 Fail(VERIFY_ERROR_GENERIC) << "rejecting non-direct call to constructor "
3183 << PrettyMethod(res_method);
3184 return NULL;
3185 }
3186 // See if the method type implied by the invoke instruction matches the access flags for the
3187 // target method.
3188 if ((method_type == METHOD_DIRECT && !res_method->IsDirect()) ||
3189 (method_type == METHOD_STATIC && !res_method->IsStatic()) ||
3190 ((method_type == METHOD_VIRTUAL || method_type == METHOD_INTERFACE) && res_method->IsDirect())
3191 ) {
Ian Rogers573db4a2011-12-13 15:30:50 -08003192 Fail(VERIFY_ERROR_CLASS_CHANGE) << "invoke type does not match method type of "
3193 << PrettyMethod(res_method);
Ian Rogersd81871c2011-10-03 13:57:23 -07003194 return NULL;
3195 }
3196 // If we're using invoke-super(method), make sure that the executing method's class' superclass
3197 // has a vtable entry for the target method.
3198 if (is_super) {
3199 DCHECK(method_type == METHOD_VIRTUAL);
3200 Class* super = method_->GetDeclaringClass()->GetSuperClass();
3201 if (super == NULL || res_method->GetMethodIndex() > super->GetVTable()->GetLength()) {
3202 if (super == NULL) { // Only Object has no super class
3203 Fail(VERIFY_ERROR_NO_METHOD) << "invalid invoke-super from " << PrettyMethod(method_)
3204 << " to super " << PrettyMethod(res_method);
3205 } else {
Ian Rogers6d4d9fc2011-11-30 16:24:48 -08003206 MethodHelper mh(res_method);
Ian Rogersd81871c2011-10-03 13:57:23 -07003207 Fail(VERIFY_ERROR_NO_METHOD) << "invalid invoke-super from " << PrettyMethod(method_)
Ian Rogers6d4d9fc2011-11-30 16:24:48 -08003208 << " to super " << PrettyDescriptor(super)
3209 << "." << mh.GetName()
3210 << mh.GetSignature();
Ian Rogersd81871c2011-10-03 13:57:23 -07003211 }
3212 return NULL;
3213 }
3214 }
3215 // We use vAA as our expected arg count, rather than res_method->insSize, because we need to
3216 // match the call to the signature. Also, we might might be calling through an abstract method
3217 // definition (which doesn't have register count values).
3218 int expected_args = dec_insn.vA_;
3219 /* caught by static verifier */
3220 DCHECK(is_range || expected_args <= 5);
3221 if (expected_args > code_item_->outs_size_) {
3222 Fail(VERIFY_ERROR_GENERIC) << "invalid arg count (" << expected_args
3223 << ") exceeds outsSize (" << code_item_->outs_size_ << ")";
3224 return NULL;
3225 }
Ian Rogers6d4d9fc2011-11-30 16:24:48 -08003226 std::string sig(MethodHelper(res_method).GetSignature());
Ian Rogersd81871c2011-10-03 13:57:23 -07003227 if (sig[0] != '(') {
3228 Fail(VERIFY_ERROR_GENERIC) << "rejecting call to " << res_method
3229 << " as descriptor doesn't start with '(': " << sig;
3230 return NULL;
3231 }
jeffhaobdb76512011-09-07 11:43:16 -07003232 /*
Ian Rogersd81871c2011-10-03 13:57:23 -07003233 * Check the "this" argument, which must be an instance of the class
3234 * that declared the method. For an interface class, we don't do the
3235 * full interface merge, so we can't do a rigorous check here (which
3236 * is okay since we have to do it at runtime).
jeffhaobdb76512011-09-07 11:43:16 -07003237 */
Ian Rogersd81871c2011-10-03 13:57:23 -07003238 int actual_args = 0;
3239 if (!res_method->IsStatic()) {
3240 const RegType& actual_arg_type = work_line_->GetInvocationThis(dec_insn);
3241 if (failure_ != VERIFY_ERROR_NONE) {
3242 return NULL;
3243 }
3244 if (actual_arg_type.IsUninitializedReference() && !res_method->IsConstructor()) {
3245 Fail(VERIFY_ERROR_GENERIC) << "'this' arg must be initialized";
3246 return NULL;
3247 }
3248 if (method_type != METHOD_INTERFACE && !actual_arg_type.IsZero()) {
Ian Rogers9074b992011-10-26 17:41:55 -07003249 const RegType& res_method_class = reg_types_.FromClass(res_method->GetDeclaringClass());
3250 if (!res_method_class.IsAssignableFrom(actual_arg_type)) {
3251 Fail(VERIFY_ERROR_GENERIC) << "'this' arg '" << actual_arg_type << "' not instance of '"
3252 << res_method_class << "'";
Ian Rogersd81871c2011-10-03 13:57:23 -07003253 return NULL;
3254 }
3255 }
3256 actual_args++;
3257 }
3258 /*
3259 * Process the target method's signature. This signature may or may not
3260 * have been verified, so we can't assume it's properly formed.
3261 */
3262 size_t sig_offset = 0;
3263 for (sig_offset = 1; sig_offset < sig.size() && sig[sig_offset] != ')'; sig_offset++) {
3264 if (actual_args >= expected_args) {
3265 Fail(VERIFY_ERROR_GENERIC) << "Rejecting invalid call to '" << PrettyMethod(res_method)
3266 << "'. Expected " << expected_args << " args, found more ("
3267 << sig.substr(sig_offset) << ")";
3268 return NULL;
3269 }
3270 std::string descriptor;
3271 if ((sig[sig_offset] == 'L') || (sig[sig_offset] == '[')) {
3272 size_t end;
3273 if (sig[sig_offset] == 'L') {
3274 end = sig.find(';', sig_offset);
3275 } else {
3276 for(end = sig_offset + 1; sig[end] == '['; end++) ;
3277 if (sig[end] == 'L') {
3278 end = sig.find(';', end);
3279 }
3280 }
3281 if (end == std::string::npos) {
3282 Fail(VERIFY_ERROR_GENERIC) << "Rejecting invocation of " << PrettyMethod(res_method)
3283 << "bad signature component '" << sig << "' (missing ';')";
3284 return NULL;
3285 }
3286 descriptor = sig.substr(sig_offset, end - sig_offset + 1);
3287 sig_offset = end;
3288 } else {
3289 descriptor = sig[sig_offset];
3290 }
3291 const RegType& reg_type =
Ian Rogers672297c2012-01-10 14:50:55 -08003292 reg_types_.FromDescriptor(method_->GetDeclaringClass()->GetClassLoader(),
3293 descriptor.c_str());
Ian Rogers84fa0742011-10-25 18:13:30 -07003294 uint32_t get_reg = is_range ? dec_insn.vC_ + actual_args : dec_insn.arg_[actual_args];
3295 if (!work_line_->VerifyRegisterType(get_reg, reg_type)) {
3296 return NULL;
Ian Rogersd81871c2011-10-03 13:57:23 -07003297 }
3298 actual_args = reg_type.IsLongOrDoubleTypes() ? actual_args + 2 : actual_args + 1;
3299 }
3300 if (sig[sig_offset] != ')') {
3301 Fail(VERIFY_ERROR_GENERIC) << "invocation target: bad signature" << PrettyMethod(res_method);
3302 return NULL;
3303 }
3304 if (actual_args != expected_args) {
3305 Fail(VERIFY_ERROR_GENERIC) << "Rejecting invocation of " << PrettyMethod(res_method)
3306 << " expected " << expected_args << " args, found " << actual_args;
3307 return NULL;
3308 } else {
3309 return res_method;
3310 }
3311}
3312
Ian Rogers6d4d9fc2011-11-30 16:24:48 -08003313const RegType& DexVerifier::GetMethodReturnType() {
3314 return reg_types_.FromDescriptor(method_->GetDeclaringClass()->GetClassLoader(),
3315 MethodHelper(method_).GetReturnTypeDescriptor());
3316}
3317
Ian Rogersd81871c2011-10-03 13:57:23 -07003318void DexVerifier::VerifyAGet(const Instruction::DecodedInstruction& dec_insn,
3319 const RegType& insn_type, bool is_primitive) {
3320 const RegType& index_type = work_line_->GetRegisterType(dec_insn.vC_);
3321 if (!index_type.IsArrayIndexTypes()) {
3322 Fail(VERIFY_ERROR_GENERIC) << "Invalid reg type for array index (" << index_type << ")";
3323 } else {
Ian Rogers89310de2012-02-01 13:47:30 -08003324 const RegType& array_type = work_line_->GetRegisterType(dec_insn.vB_);
3325 if (array_type.IsZero()) {
3326 // Null array class; this code path will fail at runtime. Infer a merge-able type from the
3327 // instruction type. TODO: have a proper notion of bottom here.
3328 if (!is_primitive || insn_type.IsCategory1Types()) {
3329 // Reference or category 1
3330 work_line_->SetRegisterType(dec_insn.vA_, reg_types_.Zero());
Ian Rogersd81871c2011-10-03 13:57:23 -07003331 } else {
Ian Rogers89310de2012-02-01 13:47:30 -08003332 // Category 2
3333 work_line_->SetRegisterType(dec_insn.vA_, reg_types_.ConstLo());
3334 }
jeffhaofc3144e2012-02-01 17:21:15 -08003335 } else if (!array_type.IsArrayTypes()) {
3336 Fail(VERIFY_ERROR_GENERIC) << "not array type " << array_type << " with aget";
Ian Rogers89310de2012-02-01 13:47:30 -08003337 } else {
3338 /* verify the class */
3339 const RegType& component_type = reg_types_.GetComponentType(array_type,
3340 method_->GetDeclaringClass()->GetClassLoader());
jeffhaofc3144e2012-02-01 17:21:15 -08003341 if (!component_type.IsReferenceTypes() && !is_primitive) {
Ian Rogers89310de2012-02-01 13:47:30 -08003342 Fail(VERIFY_ERROR_GENERIC) << "primitive array type " << array_type
3343 << " source for aget-object";
3344 } else if (component_type.IsNonZeroReferenceTypes() && is_primitive) {
3345 Fail(VERIFY_ERROR_GENERIC) << "reference array type " << array_type
3346 << " source for category 1 aget";
3347 } else if (is_primitive && !insn_type.Equals(component_type) &&
3348 !((insn_type.IsInteger() && component_type.IsFloat()) ||
3349 (insn_type.IsLong() && component_type.IsDouble()))) {
3350 Fail(VERIFY_ERROR_GENERIC) << "array type " << array_type
Ian Rogersd81871c2011-10-03 13:57:23 -07003351 << " incompatible with aget of type " << insn_type;
Ian Rogers89310de2012-02-01 13:47:30 -08003352 } else {
Ian Rogersd81871c2011-10-03 13:57:23 -07003353 // Use knowledge of the field type which is stronger than the type inferred from the
3354 // instruction, which can't differentiate object types and ints from floats, longs from
3355 // doubles.
3356 work_line_->SetRegisterType(dec_insn.vA_, component_type);
Ian Rogersd81871c2011-10-03 13:57:23 -07003357 }
3358 }
3359 }
3360}
3361
3362void DexVerifier::VerifyAPut(const Instruction::DecodedInstruction& dec_insn,
3363 const RegType& insn_type, bool is_primitive) {
3364 const RegType& index_type = work_line_->GetRegisterType(dec_insn.vC_);
3365 if (!index_type.IsArrayIndexTypes()) {
3366 Fail(VERIFY_ERROR_GENERIC) << "Invalid reg type for array index (" << index_type << ")";
3367 } else {
Ian Rogers89310de2012-02-01 13:47:30 -08003368 const RegType& array_type = work_line_->GetRegisterType(dec_insn.vB_);
3369 if (array_type.IsZero()) {
3370 // Null array type; this code path will fail at runtime. Infer a merge-able type from the
3371 // instruction type.
jeffhaofc3144e2012-02-01 17:21:15 -08003372 } else if (!array_type.IsArrayTypes()) {
3373 Fail(VERIFY_ERROR_GENERIC) << "not array type " << array_type << " with aput";
Ian Rogers89310de2012-02-01 13:47:30 -08003374 } else {
3375 /* verify the class */
3376 const RegType& component_type = reg_types_.GetComponentType(array_type,
3377 method_->GetDeclaringClass()->GetClassLoader());
jeffhaofc3144e2012-02-01 17:21:15 -08003378 if (!component_type.IsReferenceTypes() && !is_primitive) {
Ian Rogers89310de2012-02-01 13:47:30 -08003379 Fail(VERIFY_ERROR_GENERIC) << "primitive array type " << array_type
3380 << " source for aput-object";
3381 } else if (component_type.IsNonZeroReferenceTypes() && is_primitive) {
3382 Fail(VERIFY_ERROR_GENERIC) << "reference array type " << array_type
3383 << " source for category 1 aput";
3384 } else if (is_primitive && !insn_type.Equals(component_type) &&
3385 !((insn_type.IsInteger() && component_type.IsFloat()) ||
3386 (insn_type.IsLong() && component_type.IsDouble()))) {
3387 Fail(VERIFY_ERROR_GENERIC) << "array type " << array_type
3388 << " incompatible with aput of type " << insn_type;
Ian Rogersd81871c2011-10-03 13:57:23 -07003389 } else {
Ian Rogers89310de2012-02-01 13:47:30 -08003390 // The instruction agrees with the type of array, confirm the value to be stored does too
3391 // Note: we use the instruction type (rather than the component type) for aput-object as
3392 // incompatible classes will be caught at runtime as an array store exception
3393 work_line_->VerifyRegisterType(dec_insn.vA_, is_primitive ? component_type : insn_type);
Ian Rogersd81871c2011-10-03 13:57:23 -07003394 }
3395 }
3396 }
3397}
3398
3399Field* DexVerifier::GetStaticField(int field_idx) {
Ian Rogers90040192011-12-16 08:54:29 -08003400 const DexFile::FieldId& field_id = dex_file_->GetFieldId(field_idx);
3401 // Check access to class
3402 const RegType& klass_type = ResolveClassAndCheckAccess(field_id.class_idx_);
3403 if (failure_ != VERIFY_ERROR_NONE) {
3404 fail_messages_ << " in attempt to access static field " << field_idx << " ("
3405 << dex_file_->GetFieldName(field_id) << ") in "
3406 << dex_file_->GetFieldDeclaringClassDescriptor(field_id);
3407 return NULL;
3408 }
3409 if(klass_type.IsUnresolvedTypes()) {
3410 return NULL; // Can't resolve Class so no more to do here
3411 }
Ian Rogersb067ac22011-12-13 18:05:09 -08003412 Field* field = Runtime::Current()->GetClassLinker()->ResolveFieldJLS(field_idx, method_);
Ian Rogersd81871c2011-10-03 13:57:23 -07003413 if (field == NULL) {
Ian Rogersf4028cc2011-11-02 14:56:39 -07003414 LOG(INFO) << "unable to resolve static field " << field_idx << " ("
3415 << dex_file_->GetFieldName(field_id) << ") in "
3416 << dex_file_->GetFieldDeclaringClassDescriptor(field_id);
Ian Rogersd81871c2011-10-03 13:57:23 -07003417 DCHECK(Thread::Current()->IsExceptionPending());
3418 Thread::Current()->ClearException();
3419 return NULL;
3420 } else if (!method_->GetDeclaringClass()->CanAccessMember(field->GetDeclaringClass(),
3421 field->GetAccessFlags())) {
3422 Fail(VERIFY_ERROR_ACCESS_FIELD) << "cannot access static field " << PrettyField(field)
3423 << " from " << PrettyClass(method_->GetDeclaringClass());
3424 return NULL;
3425 } else if (!field->IsStatic()) {
3426 Fail(VERIFY_ERROR_CLASS_CHANGE) << "expected field " << PrettyField(field) << " to be static";
3427 return NULL;
3428 } else {
3429 return field;
3430 }
3431}
3432
Ian Rogersd81871c2011-10-03 13:57:23 -07003433Field* DexVerifier::GetInstanceField(const RegType& obj_type, int field_idx) {
Ian Rogers90040192011-12-16 08:54:29 -08003434 const DexFile::FieldId& field_id = dex_file_->GetFieldId(field_idx);
3435 // Check access to class
3436 const RegType& klass_type = ResolveClassAndCheckAccess(field_id.class_idx_);
3437 if (failure_ != VERIFY_ERROR_NONE) {
3438 fail_messages_ << " in attempt to access instance field " << field_idx << " ("
3439 << dex_file_->GetFieldName(field_id) << ") in "
3440 << dex_file_->GetFieldDeclaringClassDescriptor(field_id);
3441 return NULL;
3442 }
3443 if(klass_type.IsUnresolvedTypes()) {
3444 return NULL; // Can't resolve Class so no more to do here
3445 }
Ian Rogersb067ac22011-12-13 18:05:09 -08003446 Field* field = Runtime::Current()->GetClassLinker()->ResolveFieldJLS(field_idx, method_);
Ian Rogersd81871c2011-10-03 13:57:23 -07003447 if (field == NULL) {
Ian Rogersf4028cc2011-11-02 14:56:39 -07003448 LOG(INFO) << "unable to resolve instance field " << field_idx << " ("
3449 << dex_file_->GetFieldName(field_id) << ") in "
3450 << dex_file_->GetFieldDeclaringClassDescriptor(field_id);
Ian Rogersd81871c2011-10-03 13:57:23 -07003451 DCHECK(Thread::Current()->IsExceptionPending());
3452 Thread::Current()->ClearException();
3453 return NULL;
3454 } else if (!method_->GetDeclaringClass()->CanAccessMember(field->GetDeclaringClass(),
3455 field->GetAccessFlags())) {
3456 Fail(VERIFY_ERROR_ACCESS_FIELD) << "cannot access instance field " << PrettyField(field)
3457 << " from " << PrettyClass(method_->GetDeclaringClass());
3458 return NULL;
3459 } else if (field->IsStatic()) {
3460 Fail(VERIFY_ERROR_CLASS_CHANGE) << "expected field " << PrettyField(field)
3461 << " to not be static";
3462 return NULL;
3463 } else if (obj_type.IsZero()) {
3464 // Cannot infer and check type, however, access will cause null pointer exception
3465 return field;
3466 } else if(obj_type.IsUninitializedReference() &&
3467 (!method_->IsConstructor() || method_->GetDeclaringClass() != obj_type.GetClass() ||
3468 field->GetDeclaringClass() != method_->GetDeclaringClass())) {
3469 // Field accesses through uninitialized references are only allowable for constructors where
3470 // the field is declared in this class
3471 Fail(VERIFY_ERROR_GENERIC) << "cannot access instance field " << PrettyField(field)
3472 << " of a not fully initialized object within the context of "
3473 << PrettyMethod(method_);
3474 return NULL;
3475 } else if(!field->GetDeclaringClass()->IsAssignableFrom(obj_type.GetClass())) {
3476 // Trying to access C1.field1 using reference of type C2, which is neither C1 or a sub-class
3477 // of C1. For resolution to occur the declared class of the field must be compatible with
3478 // obj_type, we've discovered this wasn't so, so report the field didn't exist.
3479 Fail(VERIFY_ERROR_NO_FIELD) << "cannot access instance field " << PrettyField(field)
3480 << " from object of type " << PrettyClass(obj_type.GetClass());
3481 return NULL;
3482 } else {
3483 return field;
3484 }
3485}
3486
Ian Rogersb94a27b2011-10-26 00:33:41 -07003487void DexVerifier::VerifyISGet(const Instruction::DecodedInstruction& dec_insn,
3488 const RegType& insn_type, bool is_primitive, bool is_static) {
Ian Rogersf4028cc2011-11-02 14:56:39 -07003489 uint32_t field_idx = is_static ? dec_insn.vB_ : dec_insn.vC_;
Ian Rogersb94a27b2011-10-26 00:33:41 -07003490 Field* field;
3491 if (is_static) {
Ian Rogersf4028cc2011-11-02 14:56:39 -07003492 field = GetStaticField(field_idx);
Ian Rogersb94a27b2011-10-26 00:33:41 -07003493 } else {
3494 const RegType& object_type = work_line_->GetRegisterType(dec_insn.vB_);
Ian Rogersf4028cc2011-11-02 14:56:39 -07003495 field = GetInstanceField(object_type, field_idx);
Ian Rogersb94a27b2011-10-26 00:33:41 -07003496 }
Ian Rogersf4028cc2011-11-02 14:56:39 -07003497 if (failure_ != VERIFY_ERROR_NONE) {
3498 work_line_->SetRegisterType(dec_insn.vA_, reg_types_.Unknown());
3499 } else {
3500 const char* descriptor;
3501 const ClassLoader* loader;
3502 if (field != NULL) {
Ian Rogers6d4d9fc2011-11-30 16:24:48 -08003503 descriptor = FieldHelper(field).GetTypeDescriptor();
Ian Rogersf4028cc2011-11-02 14:56:39 -07003504 loader = field->GetDeclaringClass()->GetClassLoader();
3505 } else {
3506 const DexFile::FieldId& field_id = dex_file_->GetFieldId(field_idx);
3507 descriptor = dex_file_->GetFieldTypeDescriptor(field_id);
3508 loader = method_->GetDeclaringClass()->GetClassLoader();
3509 }
3510 const RegType& field_type = reg_types_.FromDescriptor(loader, descriptor);
Ian Rogersd81871c2011-10-03 13:57:23 -07003511 if (is_primitive) {
Ian Rogersb5e95b92011-10-25 23:28:55 -07003512 if (field_type.Equals(insn_type) ||
3513 (field_type.IsFloat() && insn_type.IsIntegralTypes()) ||
3514 (field_type.IsDouble() && insn_type.IsLongTypes())) {
Ian Rogersd81871c2011-10-03 13:57:23 -07003515 // expected that read is of the correct primitive type or that int reads are reading
3516 // floats or long reads are reading doubles
3517 } else {
3518 // This is a global failure rather than a class change failure as the instructions and
3519 // the descriptors for the type should have been consistent within the same file at
3520 // compile time
3521 Fail(VERIFY_ERROR_GENERIC) << "expected field " << PrettyField(field)
Ian Rogersb5e95b92011-10-25 23:28:55 -07003522 << " to be of type '" << insn_type
Ian Rogersb94a27b2011-10-26 00:33:41 -07003523 << "' but found type '" << field_type << "' in get";
Ian Rogersd81871c2011-10-03 13:57:23 -07003524 return;
3525 }
3526 } else {
Ian Rogersb5e95b92011-10-25 23:28:55 -07003527 if (!insn_type.IsAssignableFrom(field_type)) {
Ian Rogersd81871c2011-10-03 13:57:23 -07003528 Fail(VERIFY_ERROR_GENERIC) << "expected field " << PrettyField(field)
Ian Rogersb5e95b92011-10-25 23:28:55 -07003529 << " to be compatible with type '" << insn_type
3530 << "' but found type '" << field_type
Ian Rogersb94a27b2011-10-26 00:33:41 -07003531 << "' in get-object";
Ian Rogersd81871c2011-10-03 13:57:23 -07003532 return;
3533 }
3534 }
Ian Rogersb5e95b92011-10-25 23:28:55 -07003535 work_line_->SetRegisterType(dec_insn.vA_, field_type);
Ian Rogersd81871c2011-10-03 13:57:23 -07003536 }
3537}
3538
Ian Rogersb94a27b2011-10-26 00:33:41 -07003539void DexVerifier::VerifyISPut(const Instruction::DecodedInstruction& dec_insn,
3540 const RegType& insn_type, bool is_primitive, bool is_static) {
Ian Rogers55d249f2011-11-02 16:48:09 -07003541 uint32_t field_idx = is_static ? dec_insn.vB_ : dec_insn.vC_;
Ian Rogersb94a27b2011-10-26 00:33:41 -07003542 Field* field;
3543 if (is_static) {
Ian Rogers55d249f2011-11-02 16:48:09 -07003544 field = GetStaticField(field_idx);
Ian Rogersb94a27b2011-10-26 00:33:41 -07003545 } else {
3546 const RegType& object_type = work_line_->GetRegisterType(dec_insn.vB_);
Ian Rogers55d249f2011-11-02 16:48:09 -07003547 field = GetInstanceField(object_type, field_idx);
Ian Rogersb94a27b2011-10-26 00:33:41 -07003548 }
Ian Rogers55d249f2011-11-02 16:48:09 -07003549 if (failure_ != VERIFY_ERROR_NONE) {
3550 work_line_->SetRegisterType(dec_insn.vA_, reg_types_.Unknown());
3551 } else {
3552 const char* descriptor;
3553 const ClassLoader* loader;
3554 if (field != NULL) {
Ian Rogers6d4d9fc2011-11-30 16:24:48 -08003555 descriptor = FieldHelper(field).GetTypeDescriptor();
Ian Rogers55d249f2011-11-02 16:48:09 -07003556 loader = field->GetDeclaringClass()->GetClassLoader();
3557 } else {
3558 const DexFile::FieldId& field_id = dex_file_->GetFieldId(field_idx);
3559 descriptor = dex_file_->GetFieldTypeDescriptor(field_id);
3560 loader = method_->GetDeclaringClass()->GetClassLoader();
Ian Rogersd81871c2011-10-03 13:57:23 -07003561 }
Ian Rogers55d249f2011-11-02 16:48:09 -07003562 const RegType& field_type = reg_types_.FromDescriptor(loader, descriptor);
3563 if (field != NULL) {
3564 if (field->IsFinal() && field->GetDeclaringClass() != method_->GetDeclaringClass()) {
3565 Fail(VERIFY_ERROR_ACCESS_FIELD) << "cannot modify final field " << PrettyField(field)
3566 << " from other class " << PrettyClass(method_->GetDeclaringClass());
3567 return;
3568 }
3569 }
Ian Rogersd81871c2011-10-03 13:57:23 -07003570 if (is_primitive) {
Ian Rogers2c8a8572011-10-24 17:11:36 -07003571 // Primitive field assignability rules are weaker than regular assignability rules
3572 bool instruction_compatible;
3573 bool value_compatible;
3574 const RegType& value_type = work_line_->GetRegisterType(dec_insn.vA_);
3575 if (field_type.IsIntegralTypes()) {
3576 instruction_compatible = insn_type.IsIntegralTypes();
3577 value_compatible = value_type.IsIntegralTypes();
3578 } else if (field_type.IsFloat()) {
Ian Rogersb94a27b2011-10-26 00:33:41 -07003579 instruction_compatible = insn_type.IsInteger(); // no [is]put-float, so expect [is]put-int
Ian Rogers2c8a8572011-10-24 17:11:36 -07003580 value_compatible = value_type.IsFloatTypes();
3581 } else if (field_type.IsLong()) {
3582 instruction_compatible = insn_type.IsLong();
3583 value_compatible = value_type.IsLongTypes();
3584 } else if (field_type.IsDouble()) {
Ian Rogersb94a27b2011-10-26 00:33:41 -07003585 instruction_compatible = insn_type.IsLong(); // no [is]put-double, so expect [is]put-long
Ian Rogers2c8a8572011-10-24 17:11:36 -07003586 value_compatible = value_type.IsDoubleTypes();
Ian Rogersd81871c2011-10-03 13:57:23 -07003587 } else {
Ian Rogers2c8a8572011-10-24 17:11:36 -07003588 instruction_compatible = false; // reference field with primitive store
3589 value_compatible = false; // unused
3590 }
3591 if (!instruction_compatible) {
Ian Rogersd81871c2011-10-03 13:57:23 -07003592 // This is a global failure rather than a class change failure as the instructions and
3593 // the descriptors for the type should have been consistent within the same file at
3594 // compile time
3595 Fail(VERIFY_ERROR_GENERIC) << "expected field " << PrettyField(field)
Ian Rogersb5e95b92011-10-25 23:28:55 -07003596 << " to be of type '" << insn_type
3597 << "' but found type '" << field_type
Ian Rogersb94a27b2011-10-26 00:33:41 -07003598 << "' in put";
Ian Rogersd81871c2011-10-03 13:57:23 -07003599 return;
3600 }
Ian Rogers2c8a8572011-10-24 17:11:36 -07003601 if (!value_compatible) {
3602 Fail(VERIFY_ERROR_GENERIC) << "unexpected value in v" << dec_insn.vA_
3603 << " of type " << value_type
3604 << " but expected " << field_type
Ian Rogersb94a27b2011-10-26 00:33:41 -07003605 << " for store to " << PrettyField(field) << " in put";
Ian Rogers2c8a8572011-10-24 17:11:36 -07003606 return;
3607 }
Ian Rogersd81871c2011-10-03 13:57:23 -07003608 } else {
Ian Rogersb5e95b92011-10-25 23:28:55 -07003609 if (!insn_type.IsAssignableFrom(field_type)) {
Ian Rogersd81871c2011-10-03 13:57:23 -07003610 Fail(VERIFY_ERROR_GENERIC) << "expected field " << PrettyField(field)
Ian Rogersb5e95b92011-10-25 23:28:55 -07003611 << " to be compatible with type '" << insn_type
3612 << "' but found type '" << field_type
Ian Rogersb94a27b2011-10-26 00:33:41 -07003613 << "' in put-object";
Ian Rogersd81871c2011-10-03 13:57:23 -07003614 return;
3615 }
Ian Rogers2c8a8572011-10-24 17:11:36 -07003616 work_line_->VerifyRegisterType(dec_insn.vA_, field_type);
Ian Rogersd81871c2011-10-03 13:57:23 -07003617 }
Ian Rogersd81871c2011-10-03 13:57:23 -07003618 }
3619}
3620
3621bool DexVerifier::CheckMoveException(const uint16_t* insns, int insn_idx) {
3622 if ((insns[insn_idx] & 0xff) == Instruction::MOVE_EXCEPTION) {
3623 Fail(VERIFY_ERROR_GENERIC) << "invalid use of move-exception";
3624 return false;
3625 }
3626 return true;
3627}
3628
3629void DexVerifier::VerifyFilledNewArrayRegs(const Instruction::DecodedInstruction& dec_insn,
Ian Rogers28ad40d2011-10-27 15:19:26 -07003630 const RegType& res_type, bool is_range) {
Ian Rogers89310de2012-02-01 13:47:30 -08003631 DCHECK(res_type.IsArrayTypes()) << res_type; // Checked before calling.
Ian Rogersd81871c2011-10-03 13:57:23 -07003632 /*
3633 * Verify each register. If "arg_count" is bad, VerifyRegisterType() will run off the end of the
3634 * list and fail. It's legal, if silly, for arg_count to be zero.
3635 */
Ian Rogers28ad40d2011-10-27 15:19:26 -07003636 const RegType& expected_type = reg_types_.GetComponentType(res_type,
3637 method_->GetDeclaringClass()->GetClassLoader());
Ian Rogersd81871c2011-10-03 13:57:23 -07003638 uint32_t arg_count = dec_insn.vA_;
3639 for (size_t ui = 0; ui < arg_count; ui++) {
3640 uint32_t get_reg;
3641
3642 if (is_range)
3643 get_reg = dec_insn.vC_ + ui;
3644 else
3645 get_reg = dec_insn.arg_[ui];
3646
3647 if (!work_line_->VerifyRegisterType(get_reg, expected_type)) {
Ian Rogersd81871c2011-10-03 13:57:23 -07003648 return;
3649 }
3650 }
3651}
3652
3653void DexVerifier::ReplaceFailingInstruction() {
Ian Rogersf1864ef2011-12-09 12:39:48 -08003654 if (Runtime::Current()->IsStarted()) {
3655 LOG(ERROR) << "Verification attempting to replacing instructions in " << PrettyMethod(method_)
3656 << " " << fail_messages_.str();
3657 return;
3658 }
Ian Rogersd81871c2011-10-03 13:57:23 -07003659 const Instruction* inst = Instruction::At(code_item_->insns_ + work_insn_idx_);
3660 DCHECK(inst->IsThrow()) << "Expected instruction that will throw " << inst->Name();
3661 VerifyErrorRefType ref_type;
3662 switch (inst->Opcode()) {
3663 case Instruction::CONST_CLASS: // insn[1] == class ref, 2 code units (4 bytes)
jeffhaobdb76512011-09-07 11:43:16 -07003664 case Instruction::CHECK_CAST:
3665 case Instruction::INSTANCE_OF:
3666 case Instruction::NEW_INSTANCE:
3667 case Instruction::NEW_ARRAY:
Ian Rogersd81871c2011-10-03 13:57:23 -07003668 case Instruction::FILLED_NEW_ARRAY: // insn[1] == class ref, 3 code units (6 bytes)
jeffhaobdb76512011-09-07 11:43:16 -07003669 case Instruction::FILLED_NEW_ARRAY_RANGE:
3670 ref_type = VERIFY_ERROR_REF_CLASS;
3671 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07003672 case Instruction::IGET: // insn[1] == field ref, 2 code units (4 bytes)
jeffhaobdb76512011-09-07 11:43:16 -07003673 case Instruction::IGET_BOOLEAN:
3674 case Instruction::IGET_BYTE:
3675 case Instruction::IGET_CHAR:
3676 case Instruction::IGET_SHORT:
3677 case Instruction::IGET_WIDE:
3678 case Instruction::IGET_OBJECT:
3679 case Instruction::IPUT:
3680 case Instruction::IPUT_BOOLEAN:
3681 case Instruction::IPUT_BYTE:
3682 case Instruction::IPUT_CHAR:
3683 case Instruction::IPUT_SHORT:
3684 case Instruction::IPUT_WIDE:
3685 case Instruction::IPUT_OBJECT:
3686 case Instruction::SGET:
3687 case Instruction::SGET_BOOLEAN:
3688 case Instruction::SGET_BYTE:
3689 case Instruction::SGET_CHAR:
3690 case Instruction::SGET_SHORT:
3691 case Instruction::SGET_WIDE:
3692 case Instruction::SGET_OBJECT:
3693 case Instruction::SPUT:
3694 case Instruction::SPUT_BOOLEAN:
3695 case Instruction::SPUT_BYTE:
3696 case Instruction::SPUT_CHAR:
3697 case Instruction::SPUT_SHORT:
3698 case Instruction::SPUT_WIDE:
3699 case Instruction::SPUT_OBJECT:
3700 ref_type = VERIFY_ERROR_REF_FIELD;
3701 break;
Ian Rogersd81871c2011-10-03 13:57:23 -07003702 case Instruction::INVOKE_VIRTUAL: // insn[1] == method ref, 3 code units (6 bytes)
jeffhaobdb76512011-09-07 11:43:16 -07003703 case Instruction::INVOKE_VIRTUAL_RANGE:
3704 case Instruction::INVOKE_SUPER:
3705 case Instruction::INVOKE_SUPER_RANGE:
3706 case Instruction::INVOKE_DIRECT:
3707 case Instruction::INVOKE_DIRECT_RANGE:
3708 case Instruction::INVOKE_STATIC:
3709 case Instruction::INVOKE_STATIC_RANGE:
3710 case Instruction::INVOKE_INTERFACE:
3711 case Instruction::INVOKE_INTERFACE_RANGE:
3712 ref_type = VERIFY_ERROR_REF_METHOD;
3713 break;
jeffhaobdb76512011-09-07 11:43:16 -07003714 default:
Ian Rogers2c8a8572011-10-24 17:11:36 -07003715 LOG(FATAL) << "Error: verifier asked to replace instruction " << inst->DumpString(dex_file_);
jeffhaobdb76512011-09-07 11:43:16 -07003716 return;
jeffhaoba5ebb92011-08-25 17:24:37 -07003717 }
Ian Rogersd81871c2011-10-03 13:57:23 -07003718 uint16_t* insns = const_cast<uint16_t*>(code_item_->insns_);
3719 // THROW_VERIFICATION_ERROR is a 2 code unit instruction. We shouldn't be rewriting a 1 code unit
3720 // instruction, so assert it.
3721 size_t width = inst->SizeInCodeUnits();
3722 CHECK_GT(width, 1u);
Ian Rogersf1864ef2011-12-09 12:39:48 -08003723 // If the instruction is larger than 2 code units, rewrite subsequent code unit sized chunks with
Ian Rogersd81871c2011-10-03 13:57:23 -07003724 // NOPs
3725 for (size_t i = 2; i < width; i++) {
3726 insns[work_insn_idx_ + i] = Instruction::NOP;
3727 }
3728 // Encode the opcode, with the failure code in the high byte
3729 uint16_t new_instruction = Instruction::THROW_VERIFICATION_ERROR |
3730 (failure_ << 8) | // AA - component
3731 (ref_type << (8 + kVerifyErrorRefTypeShift));
3732 insns[work_insn_idx_] = new_instruction;
3733 // The 2nd code unit (higher in memory) with the reference in, comes from the instruction we
3734 // rewrote, so nothing to do here.
Ian Rogers9fdfc182011-10-26 23:12:52 -07003735 LOG(INFO) << "Verification error, replacing instructions in " << PrettyMethod(method_) << " "
3736 << fail_messages_.str();
3737 if (gDebugVerify) {
3738 std::cout << std::endl << info_messages_.str();
3739 Dump(std::cout);
3740 }
jeffhaobdb76512011-09-07 11:43:16 -07003741}
jeffhaoba5ebb92011-08-25 17:24:37 -07003742
Ian Rogersd81871c2011-10-03 13:57:23 -07003743bool DexVerifier::UpdateRegisters(uint32_t next_insn, const RegisterLine* merge_line) {
3744 const bool merge_debug = true;
3745 bool changed = true;
3746 RegisterLine* target_line = reg_table_.GetLine(next_insn);
3747 if (!insn_flags_[next_insn].IsVisitedOrChanged()) {
jeffhaobdb76512011-09-07 11:43:16 -07003748 /*
Ian Rogersd81871c2011-10-03 13:57:23 -07003749 * We haven't processed this instruction before, and we haven't touched the registers here, so
3750 * there's nothing to "merge". Copy the registers over and mark it as changed. (This is the
3751 * only way a register can transition out of "unknown", so this is not just an optimization.)
jeffhaobdb76512011-09-07 11:43:16 -07003752 */
Ian Rogersd81871c2011-10-03 13:57:23 -07003753 target_line->CopyFromLine(merge_line);
jeffhaobdb76512011-09-07 11:43:16 -07003754 } else {
Ian Rogersd81871c2011-10-03 13:57:23 -07003755 UniquePtr<RegisterLine> copy(merge_debug ? new RegisterLine(target_line->NumRegs(), this) : NULL);
3756 copy->CopyFromLine(target_line);
3757 changed = target_line->MergeRegisters(merge_line);
3758 if (failure_ != VERIFY_ERROR_NONE) {
3759 return false;
jeffhaobdb76512011-09-07 11:43:16 -07003760 }
Ian Rogers2c8a8572011-10-24 17:11:36 -07003761 if (gDebugVerify && changed) {
Ian Rogersd81871c2011-10-03 13:57:23 -07003762 LogVerifyInfo() << "Merging at [" << (void*)work_insn_idx_ << "] to [" <<(void*)next_insn << "]: " << std::endl
3763 << *copy.get() << " MERGE" << std::endl
3764 << *merge_line << " ==" << std::endl
3765 << *target_line << std::endl;
jeffhaobdb76512011-09-07 11:43:16 -07003766 }
3767 }
Ian Rogersd81871c2011-10-03 13:57:23 -07003768 if (changed) {
3769 insn_flags_[next_insn].SetChanged();
jeffhaobdb76512011-09-07 11:43:16 -07003770 }
3771 return true;
3772}
3773
Ian Rogersd81871c2011-10-03 13:57:23 -07003774void DexVerifier::ComputeGcMapSizes(size_t* gc_points, size_t* ref_bitmap_bits,
3775 size_t* log2_max_gc_pc) {
3776 size_t local_gc_points = 0;
3777 size_t max_insn = 0;
3778 size_t max_ref_reg = -1;
3779 for (size_t i = 0; i < code_item_->insns_size_in_code_units_; i++) {
3780 if (insn_flags_[i].IsGcPoint()) {
3781 local_gc_points++;
3782 max_insn = i;
3783 RegisterLine* line = reg_table_.GetLine(i);
Ian Rogers84fa0742011-10-25 18:13:30 -07003784 max_ref_reg = line->GetMaxNonZeroReferenceReg(max_ref_reg);
jeffhaobdb76512011-09-07 11:43:16 -07003785 }
3786 }
Ian Rogersd81871c2011-10-03 13:57:23 -07003787 *gc_points = local_gc_points;
3788 *ref_bitmap_bits = max_ref_reg + 1; // if max register is 0 we need 1 bit to encode (ie +1)
3789 size_t i = 0;
Ian Rogers6b0870d2011-12-15 19:38:12 -08003790 while ((1U << i) <= max_insn) {
Ian Rogersd81871c2011-10-03 13:57:23 -07003791 i++;
3792 }
3793 *log2_max_gc_pc = i;
jeffhaobdb76512011-09-07 11:43:16 -07003794}
3795
Brian Carlstrome7d856b2012-01-11 18:10:55 -08003796const std::vector<uint8_t>* DexVerifier::GenerateGcMap() {
Ian Rogersd81871c2011-10-03 13:57:23 -07003797 size_t num_entries, ref_bitmap_bits, pc_bits;
3798 ComputeGcMapSizes(&num_entries, &ref_bitmap_bits, &pc_bits);
3799 // There's a single byte to encode the size of each bitmap
3800 if (ref_bitmap_bits >= (8 /* bits per byte */ * 256 /* max unsigned byte + 1 */ )) {
3801 // TODO: either a better GC map format or per method failures
3802 Fail(VERIFY_ERROR_GENERIC) << "Cannot encode GC map for method with "
3803 << ref_bitmap_bits << " registers";
jeffhaobdb76512011-09-07 11:43:16 -07003804 return NULL;
3805 }
Ian Rogersd81871c2011-10-03 13:57:23 -07003806 size_t ref_bitmap_bytes = (ref_bitmap_bits + 7) / 8;
3807 // There are 2 bytes to encode the number of entries
3808 if (num_entries >= 65536) {
3809 // TODO: either a better GC map format or per method failures
3810 Fail(VERIFY_ERROR_GENERIC) << "Cannot encode GC map for method with "
3811 << num_entries << " entries";
jeffhaobdb76512011-09-07 11:43:16 -07003812 return NULL;
3813 }
Ian Rogersd81871c2011-10-03 13:57:23 -07003814 size_t pc_bytes;
jeffhaod1f0fde2011-09-08 17:25:33 -07003815 RegisterMapFormat format;
Ian Rogers6b0870d2011-12-15 19:38:12 -08003816 if (pc_bits <= 8) {
jeffhaod1f0fde2011-09-08 17:25:33 -07003817 format = kRegMapFormatCompact8;
Ian Rogersd81871c2011-10-03 13:57:23 -07003818 pc_bytes = 1;
Ian Rogers6b0870d2011-12-15 19:38:12 -08003819 } else if (pc_bits <= 16) {
jeffhaod1f0fde2011-09-08 17:25:33 -07003820 format = kRegMapFormatCompact16;
Ian Rogersd81871c2011-10-03 13:57:23 -07003821 pc_bytes = 2;
jeffhaoa0a764a2011-09-16 10:43:38 -07003822 } else {
Ian Rogersd81871c2011-10-03 13:57:23 -07003823 // TODO: either a better GC map format or per method failures
3824 Fail(VERIFY_ERROR_GENERIC) << "Cannot encode GC map for method with "
3825 << (1 << pc_bits) << " instructions (number is rounded up to nearest power of 2)";
3826 return NULL;
3827 }
3828 size_t table_size = ((pc_bytes + ref_bitmap_bytes) * num_entries ) + 4;
Brian Carlstrome7d856b2012-01-11 18:10:55 -08003829 std::vector<uint8_t>* table = new std::vector<uint8_t>;
Ian Rogersd81871c2011-10-03 13:57:23 -07003830 if (table == NULL) {
3831 Fail(VERIFY_ERROR_GENERIC) << "Failed to encode GC map (size=" << table_size << ")";
3832 return NULL;
3833 }
3834 // Write table header
Brian Carlstrome7d856b2012-01-11 18:10:55 -08003835 table->push_back(format);
3836 table->push_back(ref_bitmap_bytes);
3837 table->push_back(num_entries & 0xFF);
3838 table->push_back((num_entries >> 8) & 0xFF);
Ian Rogersd81871c2011-10-03 13:57:23 -07003839 // Write table data
Ian Rogersd81871c2011-10-03 13:57:23 -07003840 for (size_t i = 0; i < code_item_->insns_size_in_code_units_; i++) {
3841 if (insn_flags_[i].IsGcPoint()) {
Brian Carlstrome7d856b2012-01-11 18:10:55 -08003842 table->push_back(i & 0xFF);
Ian Rogersd81871c2011-10-03 13:57:23 -07003843 if (pc_bytes == 2) {
Brian Carlstrome7d856b2012-01-11 18:10:55 -08003844 table->push_back((i >> 8) & 0xFF);
Ian Rogersd81871c2011-10-03 13:57:23 -07003845 }
3846 RegisterLine* line = reg_table_.GetLine(i);
Brian Carlstrome7d856b2012-01-11 18:10:55 -08003847 line->WriteReferenceBitMap(*table, ref_bitmap_bytes);
Ian Rogersd81871c2011-10-03 13:57:23 -07003848 }
3849 }
Brian Carlstrome7d856b2012-01-11 18:10:55 -08003850 DCHECK_EQ(table->size(), table_size);
Ian Rogersd81871c2011-10-03 13:57:23 -07003851 return table;
3852}
jeffhaoa0a764a2011-09-16 10:43:38 -07003853
Brian Carlstrome7d856b2012-01-11 18:10:55 -08003854void DexVerifier::VerifyGcMap(const std::vector<uint8_t>& data) {
Ian Rogersd81871c2011-10-03 13:57:23 -07003855 // Check that for every GC point there is a map entry, there aren't entries for non-GC points,
3856 // that the table data is well formed and all references are marked (or not) in the bitmap
Brian Carlstrome7d856b2012-01-11 18:10:55 -08003857 PcToReferenceMap map(&data[0], data.size());
Ian Rogersd81871c2011-10-03 13:57:23 -07003858 size_t map_index = 0;
3859 for(size_t i = 0; i < code_item_->insns_size_in_code_units_; i++) {
3860 const uint8_t* reg_bitmap = map.FindBitMap(i, false);
3861 if (insn_flags_[i].IsGcPoint()) {
3862 CHECK_LT(map_index, map.NumEntries());
3863 CHECK_EQ(map.GetPC(map_index), i);
3864 CHECK_EQ(map.GetBitMap(map_index), reg_bitmap);
3865 map_index++;
3866 RegisterLine* line = reg_table_.GetLine(i);
3867 for(size_t j = 0; j < code_item_->registers_size_; j++) {
Ian Rogers84fa0742011-10-25 18:13:30 -07003868 if (line->GetRegisterType(j).IsNonZeroReferenceTypes()) {
Ian Rogersd81871c2011-10-03 13:57:23 -07003869 CHECK_LT(j / 8, map.RegWidth());
3870 CHECK_EQ((reg_bitmap[j / 8] >> (j % 8)) & 1, 1);
3871 } else if ((j / 8) < map.RegWidth()) {
3872 CHECK_EQ((reg_bitmap[j / 8] >> (j % 8)) & 1, 0);
3873 } else {
3874 // If a register doesn't contain a reference then the bitmap may be shorter than the line
3875 }
3876 }
3877 } else {
3878 CHECK(reg_bitmap == NULL);
3879 }
3880 }
3881}
jeffhaoa0a764a2011-09-16 10:43:38 -07003882
Ian Rogersd81871c2011-10-03 13:57:23 -07003883const uint8_t* PcToReferenceMap::FindBitMap(uint16_t dex_pc, bool error_if_not_present) const {
3884 size_t num_entries = NumEntries();
3885 // Do linear or binary search?
3886 static const size_t kSearchThreshold = 8;
3887 if (num_entries < kSearchThreshold) {
3888 for (size_t i = 0; i < num_entries; i++) {
3889 if (GetPC(i) == dex_pc) {
3890 return GetBitMap(i);
3891 }
3892 }
3893 } else {
3894 int lo = 0;
3895 int hi = num_entries -1;
jeffhaoa0a764a2011-09-16 10:43:38 -07003896 while (hi >= lo) {
Ian Rogersd81871c2011-10-03 13:57:23 -07003897 int mid = (hi + lo) / 2;
3898 int mid_pc = GetPC(mid);
3899 if (dex_pc > mid_pc) {
jeffhaoa0a764a2011-09-16 10:43:38 -07003900 lo = mid + 1;
Ian Rogersd81871c2011-10-03 13:57:23 -07003901 } else if (dex_pc < mid_pc) {
jeffhaoa0a764a2011-09-16 10:43:38 -07003902 hi = mid - 1;
3903 } else {
Ian Rogersd81871c2011-10-03 13:57:23 -07003904 return GetBitMap(mid);
jeffhaoa0a764a2011-09-16 10:43:38 -07003905 }
3906 }
3907 }
Ian Rogersd81871c2011-10-03 13:57:23 -07003908 if (error_if_not_present) {
3909 LOG(ERROR) << "Didn't find reference bit map for dex_pc " << dex_pc;
3910 }
jeffhaoa0a764a2011-09-16 10:43:38 -07003911 return NULL;
3912}
3913
Elliott Hughesd9c67be2012-02-02 19:54:06 -08003914Mutex DexVerifier::gc_maps_lock_("verifier gc maps lock");
Brian Carlstrome7d856b2012-01-11 18:10:55 -08003915DexVerifier::GcMapTable DexVerifier::gc_maps_;
3916
3917void DexVerifier::SetGcMap(Compiler::MethodReference ref, const std::vector<uint8_t>& gc_map) {
Elliott Hughesd9c67be2012-02-02 19:54:06 -08003918 MutexLock mu(gc_maps_lock_);
Brian Carlstrom73a15f42012-01-17 18:14:39 -08003919 const std::vector<uint8_t>* existing_gc_map = GetGcMap(ref);
3920 if (existing_gc_map != NULL) {
3921 CHECK(*existing_gc_map == gc_map);
3922 delete existing_gc_map;
3923 }
Brian Carlstrome7d856b2012-01-11 18:10:55 -08003924 gc_maps_[ref] = &gc_map;
3925 CHECK(GetGcMap(ref) != NULL);
3926}
3927
3928const std::vector<uint8_t>* DexVerifier::GetGcMap(Compiler::MethodReference ref) {
Elliott Hughesd9c67be2012-02-02 19:54:06 -08003929 MutexLock mu(gc_maps_lock_);
Brian Carlstrome7d856b2012-01-11 18:10:55 -08003930 GcMapTable::const_iterator it = gc_maps_.find(ref);
3931 if (it == gc_maps_.end()) {
3932 return NULL;
3933 }
3934 CHECK(it->second != NULL);
3935 return it->second;
3936}
3937
3938void DexVerifier::DeleteGcMaps() {
Elliott Hughesd9c67be2012-02-02 19:54:06 -08003939 MutexLock mu(gc_maps_lock_);
Brian Carlstrome7d856b2012-01-11 18:10:55 -08003940 STLDeleteValues(&gc_maps_);
3941}
3942
Ian Rogersd81871c2011-10-03 13:57:23 -07003943} // namespace verifier
Carl Shapiro0e5d75d2011-07-06 18:28:37 -07003944} // namespace art