| The Android Open Source Project | f6c3871 | 2009-03-03 19:28:47 -0800 | [diff] [blame^] | 1 | /* |
| 2 | * Copyright (C) 2008 The Android Open Source Project |
| 3 | * |
| 4 | * Licensed under the Apache License, Version 2.0 (the "License"); |
| 5 | * you may not use this file except in compliance with the License. |
| 6 | * You may obtain a copy of the License at |
| 7 | * |
| 8 | * http://www.apache.org/licenses/LICENSE-2.0 |
| 9 | * |
| 10 | * Unless required by applicable law or agreed to in writing, software |
| 11 | * distributed under the License is distributed on an "AS IS" BASIS, |
| 12 | * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
| 13 | * See the License for the specific language governing permissions and |
| 14 | * limitations under the License. |
| 15 | */ |
| 16 | /* |
| 17 | * Annotations. |
| 18 | * |
| 19 | * We're not expecting to make much use of runtime annotations, so speed vs. |
| 20 | * space choices are weighted heavily toward small size. |
| 21 | * |
| 22 | * It would have been nice to treat "system" annotations in the same way |
| 23 | * we do "real" annotations, but that doesn't work. The chief difficulty |
| 24 | * is that some of them have member types that are not legal in annotations, |
| 25 | * such as Method and Annotation. Another source of pain comes from the |
| 26 | * AnnotationDefault annotation, which by virtue of being an annotation |
| 27 | * could itself have default values, requiring some additional checks to |
| 28 | * prevent recursion. |
| 29 | * |
| 30 | * It's simpler, and more efficient, to handle the system annotations |
| 31 | * entirely inside the VM. There are empty classes defined for the system |
| 32 | * annotation types, but their only purpose is to allow the system |
| 33 | * annotations to share name space with standard annotations. |
| 34 | */ |
| 35 | #include "Dalvik.h" |
| 36 | |
| 37 | // fwd |
| 38 | static Object* processEncodedAnnotation(const ClassObject* clazz,\ |
| 39 | const u1** pPtr); |
| 40 | static bool skipEncodedAnnotation(const ClassObject* clazz, const u1** pPtr); |
| 41 | |
| 42 | /* |
| 43 | * System annotation descriptors. |
| 44 | */ |
| 45 | static const char* kDescrAnnotationDefault |
| 46 | = "Ldalvik/annotation/AnnotationDefault;"; |
| 47 | static const char* kDescrEnclosingClass |
| 48 | = "Ldalvik/annotation/EnclosingClass;"; |
| 49 | static const char* kDescrEnclosingMethod |
| 50 | = "Ldalvik/annotation/EnclosingMethod;"; |
| 51 | static const char* kDescrInnerClass = "Ldalvik/annotation/InnerClass;"; |
| 52 | static const char* kDescrMemberClasses |
| 53 | = "Ldalvik/annotation/MemberClasses;"; |
| 54 | static const char* kDescrSignature = "Ldalvik/annotation/Signature;"; |
| 55 | static const char* kDescrThrows = "Ldalvik/annotation/Throws;"; |
| 56 | |
| 57 | |
| 58 | /* |
| 59 | * Perform Annotation setup. |
| 60 | */ |
| 61 | bool dvmReflectAnnotationStartup(void) |
| 62 | { |
| 63 | Method* meth; |
| 64 | |
| 65 | /* |
| 66 | * Find some standard Annotation classes. |
| 67 | */ |
| 68 | gDvm.classJavaLangAnnotationAnnotationArray = |
| 69 | dvmFindArrayClass("[Ljava/lang/annotation/Annotation;", NULL); |
| 70 | gDvm.classJavaLangAnnotationAnnotationArrayArray = |
| 71 | dvmFindArrayClass("[[Ljava/lang/annotation/Annotation;", NULL); |
| 72 | if (gDvm.classJavaLangAnnotationAnnotationArray == NULL || |
| 73 | gDvm.classJavaLangAnnotationAnnotationArrayArray == NULL) |
| 74 | { |
| 75 | LOGE("Could not find Annotation-array classes\n"); |
| 76 | return false; |
| 77 | } |
| 78 | |
| 79 | /* |
| 80 | * VM-specific annotation classes. |
| 81 | */ |
| 82 | gDvm.classOrgApacheHarmonyLangAnnotationAnnotationFactory = |
| 83 | dvmFindSystemClassNoInit("Lorg/apache/harmony/lang/annotation/AnnotationFactory;"); |
| 84 | gDvm.classOrgApacheHarmonyLangAnnotationAnnotationMember = |
| 85 | dvmFindSystemClassNoInit("Lorg/apache/harmony/lang/annotation/AnnotationMember;"); |
| 86 | gDvm.classOrgApacheHarmonyLangAnnotationAnnotationMemberArray = |
| 87 | dvmFindArrayClass("[Lorg/apache/harmony/lang/annotation/AnnotationMember;", NULL); |
| 88 | if (gDvm.classOrgApacheHarmonyLangAnnotationAnnotationFactory == NULL || |
| 89 | gDvm.classOrgApacheHarmonyLangAnnotationAnnotationMember == NULL || |
| 90 | gDvm.classOrgApacheHarmonyLangAnnotationAnnotationMemberArray == NULL) |
| 91 | { |
| 92 | LOGE("Could not find android.lang annotation classes\n"); |
| 93 | return false; |
| 94 | } |
| 95 | |
| 96 | meth = dvmFindDirectMethodByDescriptor(gDvm.classOrgApacheHarmonyLangAnnotationAnnotationFactory, |
| 97 | "createAnnotation", |
| 98 | "(Ljava/lang/Class;[Lorg/apache/harmony/lang/annotation/AnnotationMember;)Ljava/lang/annotation/Annotation;"); |
| 99 | if (meth == NULL) { |
| 100 | LOGE("Unable to find createAnnotation() in android AnnotationFactory\n"); |
| 101 | return false; |
| 102 | } |
| 103 | gDvm.methOrgApacheHarmonyLangAnnotationAnnotationFactory_createAnnotation = meth; |
| 104 | |
| 105 | meth = dvmFindDirectMethodByDescriptor(gDvm.classOrgApacheHarmonyLangAnnotationAnnotationMember, |
| 106 | "<init>", |
| 107 | "(Ljava/lang/String;Ljava/lang/Object;Ljava/lang/Class;Ljava/lang/reflect/Method;)V"); |
| 108 | if (meth == NULL) { |
| 109 | LOGE("Unable to find 4-arg constructor in android AnnotationMember\n"); |
| 110 | return false; |
| 111 | } |
| 112 | |
| 113 | gDvm.methOrgApacheHarmonyLangAnnotationAnnotationMember_init = meth; |
| 114 | |
| 115 | return true; |
| 116 | } |
| 117 | |
| 118 | /* |
| 119 | * Read an unsigned LEB128 value from a buffer. Advances "pBuf". |
| 120 | */ |
| 121 | static u4 readUleb128(const u1** pBuf) |
| 122 | { |
| 123 | u4 result = 0; |
| 124 | int shift = 0; |
| 125 | const u1* buf = *pBuf; |
| 126 | u1 val; |
| 127 | |
| 128 | do { |
| 129 | /* |
| 130 | * Worst-case on bad data is we read too much data and return a bogus |
| 131 | * result. Safe to assume that we will encounter a byte with its |
| 132 | * high bit clear before the end of the mapped file. |
| 133 | */ |
| 134 | assert(shift < 32); |
| 135 | |
| 136 | val = *buf++; |
| 137 | result |= (val & 0x7f) << shift; |
| 138 | shift += 7; |
| 139 | } while ((val & 0x80) != 0); |
| 140 | |
| 141 | *pBuf = buf; |
| 142 | return result; |
| 143 | } |
| 144 | |
| 145 | /* |
| 146 | * Get the annotations directory item. |
| 147 | */ |
| 148 | static const DexAnnotationsDirectoryItem* getAnnoDirectory(DexFile* pDexFile, |
| 149 | const ClassObject* clazz) |
| 150 | { |
| 151 | const DexClassDef* pClassDef; |
| 152 | |
| 153 | /* |
| 154 | * Find the class def in the DEX file. For better performance we should |
| 155 | * stash this in the ClassObject. |
| 156 | */ |
| 157 | pClassDef = dexFindClass(pDexFile, clazz->descriptor); |
| 158 | assert(pClassDef != NULL); |
| 159 | return dexGetAnnotationsDirectoryItem(pDexFile, pClassDef); |
| 160 | } |
| 161 | |
| 162 | /* |
| 163 | * Return a zero-length array of Annotation objects. |
| 164 | * |
| 165 | * TODO: this currently allocates a new array each time, but I think we |
| 166 | * can get away with returning a canonical copy. |
| 167 | * |
| 168 | * Caller must call dvmReleaseTrackedAlloc(). |
| 169 | */ |
| 170 | static ArrayObject* emptyAnnoArray(void) |
| 171 | { |
| 172 | return dvmAllocArrayByClass( |
| 173 | gDvm.classJavaLangAnnotationAnnotationArray, 0, ALLOC_DEFAULT); |
| 174 | } |
| 175 | |
| 176 | /* |
| 177 | * Return an array of empty arrays of Annotation objects. |
| 178 | * |
| 179 | * Caller must call dvmReleaseTrackedAlloc(). |
| 180 | */ |
| 181 | static ArrayObject* emptyAnnoArrayArray(int numElements) |
| 182 | { |
| 183 | Thread* self = dvmThreadSelf(); |
| 184 | ArrayObject* arr; |
| 185 | int i; |
| 186 | |
| 187 | arr = dvmAllocArrayByClass(gDvm.classJavaLangAnnotationAnnotationArrayArray, |
| 188 | numElements, ALLOC_DEFAULT); |
| 189 | if (arr != NULL) { |
| 190 | ArrayObject** elems = (ArrayObject**) arr->contents; |
| 191 | for (i = 0; i < numElements; i++) { |
| 192 | elems[i] = emptyAnnoArray(); |
| 193 | dvmReleaseTrackedAlloc((Object*)elems[i], self); |
| 194 | } |
| 195 | } |
| 196 | |
| 197 | return arr; |
| 198 | } |
| 199 | |
| 200 | /* |
| 201 | * Read a signed integer. "zwidth" is the zero-based byte count. |
| 202 | */ |
| 203 | static s4 readSignedInt(const u1* ptr, int zwidth) |
| 204 | { |
| 205 | s4 val = 0; |
| 206 | int i; |
| 207 | |
| 208 | for (i = zwidth; i >= 0; --i) |
| 209 | val = ((u4)val >> 8) | (((s4)*ptr++) << 24); |
| 210 | val >>= (3 - zwidth) * 8; |
| 211 | |
| 212 | return val; |
| 213 | } |
| 214 | |
| 215 | /* |
| 216 | * Read an unsigned integer. "zwidth" is the zero-based byte count, |
| 217 | * "fillOnRight" indicates which side we want to zero-fill from. |
| 218 | */ |
| 219 | static u4 readUnsignedInt(const u1* ptr, int zwidth, bool fillOnRight) |
| 220 | { |
| 221 | u4 val = 0; |
| 222 | int i; |
| 223 | |
| 224 | if (!fillOnRight) { |
| 225 | for (i = zwidth; i >= 0; --i) |
| 226 | val = (val >> 8) | (((u4)*ptr++) << 24); |
| 227 | val >>= (3 - zwidth) * 8; |
| 228 | } else { |
| 229 | for (i = zwidth; i >= 0; --i) |
| 230 | val = (val >> 8) | (((u4)*ptr++) << 24); |
| 231 | } |
| 232 | return val; |
| 233 | } |
| 234 | |
| 235 | /* |
| 236 | * Read a signed long. "zwidth" is the zero-based byte count. |
| 237 | */ |
| 238 | static s8 readSignedLong(const u1* ptr, int zwidth) |
| 239 | { |
| 240 | s8 val = 0; |
| 241 | int i; |
| 242 | |
| 243 | for (i = zwidth; i >= 0; --i) |
| 244 | val = ((u8)val >> 8) | (((s8)*ptr++) << 56); |
| 245 | val >>= (7 - zwidth) * 8; |
| 246 | |
| 247 | return val; |
| 248 | } |
| 249 | |
| 250 | /* |
| 251 | * Read an unsigned long. "zwidth" is the zero-based byte count, |
| 252 | * "fillOnRight" indicates which side we want to zero-fill from. |
| 253 | */ |
| 254 | static u8 readUnsignedLong(const u1* ptr, int zwidth, bool fillOnRight) |
| 255 | { |
| 256 | u8 val = 0; |
| 257 | int i; |
| 258 | |
| 259 | if (!fillOnRight) { |
| 260 | for (i = zwidth; i >= 0; --i) |
| 261 | val = (val >> 8) | (((u8)*ptr++) << 56); |
| 262 | val >>= (7 - zwidth) * 8; |
| 263 | } else { |
| 264 | for (i = zwidth; i >= 0; --i) |
| 265 | val = (val >> 8) | (((u8)*ptr++) << 56); |
| 266 | } |
| 267 | return val; |
| 268 | } |
| 269 | |
| 270 | |
| 271 | /* |
| 272 | * =========================================================================== |
| 273 | * Element extraction |
| 274 | * =========================================================================== |
| 275 | */ |
| 276 | |
| 277 | /* |
| 278 | * An annotation in "clazz" refers to a method by index. This just gives |
| 279 | * us the name of the class and the name and signature of the method. We |
| 280 | * need to find the method's class, and then find the method within that |
| 281 | * class. If the method has been resolved before, we can just use the |
| 282 | * results of the previous lookup. |
| 283 | * |
| 284 | * Normally we do this as part of method invocation in the interpreter, which |
| 285 | * provides us with a bit of context: is it virtual or direct, do we need |
| 286 | * to initialize the class because it's a static method, etc. We don't have |
| 287 | * that information here, so we have to do a bit of searching. |
| 288 | * |
| 289 | * Returns NULL if the method was not found (exception may be pending). |
| 290 | */ |
| 291 | static Method* resolveAmbiguousMethod(const ClassObject* referrer, u4 methodIdx) |
| 292 | { |
| 293 | DexFile* pDexFile; |
| 294 | ClassObject* resClass; |
| 295 | Method* resMethod; |
| 296 | const DexMethodId* pMethodId; |
| 297 | const char* name; |
| 298 | const char* signature; |
| 299 | |
| 300 | /* if we've already resolved this method, return it */ |
| 301 | resMethod = dvmDexGetResolvedMethod(referrer->pDvmDex, methodIdx); |
| 302 | if (resMethod != NULL) |
| 303 | return resMethod; |
| 304 | |
| 305 | pDexFile = referrer->pDvmDex->pDexFile; |
| 306 | pMethodId = dexGetMethodId(pDexFile, methodIdx); |
| 307 | resClass = dvmResolveClass(referrer, pMethodId->classIdx, true); |
| 308 | if (resClass == NULL) { |
| 309 | /* note exception will be pending */ |
| 310 | LOGD("resolveAmbiguousMethod: unable to find class %d\n", methodIdx); |
| 311 | return NULL; |
| 312 | } |
| 313 | if (dvmIsInterfaceClass(resClass)) { |
| 314 | /* method is part of an interface -- not expecting that */ |
| 315 | LOGD("resolveAmbiguousMethod: method in interface?\n"); |
| 316 | return NULL; |
| 317 | } |
| 318 | |
| 319 | // TODO - consider a method access flag that indicates direct vs. virtual |
| 320 | name = dexStringById(pDexFile, pMethodId->nameIdx); |
| 321 | |
| 322 | DexProto proto; |
| 323 | dexProtoSetFromMethodId(&proto, pDexFile, pMethodId); |
| 324 | |
| 325 | if (name[0] == '<') { |
| 326 | /* |
| 327 | * Constructor or class initializer. Only need to examine the |
| 328 | * "direct" list, and don't need to look up the class hierarchy. |
| 329 | */ |
| 330 | resMethod = dvmFindDirectMethod(resClass, name, &proto); |
| 331 | } else { |
| 332 | /* |
| 333 | * Try both lists, and scan up the tree. |
| 334 | */ |
| 335 | resMethod = dvmFindVirtualMethodHier(resClass, name, &proto); |
| 336 | if (resMethod == NULL) |
| 337 | resMethod = dvmFindDirectMethodHier(resClass, name, &proto); |
| 338 | } |
| 339 | |
| 340 | return resMethod; |
| 341 | } |
| 342 | |
| 343 | /* |
| 344 | * constants for processAnnotationValue indicating what style of |
| 345 | * result is wanted |
| 346 | */ |
| 347 | typedef enum { |
| 348 | kAllObjects, /* return everything as an object */ |
| 349 | kAllRaw, /* return everything as a raw value or index */ |
| 350 | kPrimitivesOrObjects /* return primitives as-is but the rest as objects */ |
| 351 | } AnnotationResultStyle; |
| 352 | |
| 353 | /* |
| 354 | * Recursively process an annotation value. |
| 355 | * |
| 356 | * "clazz" is the class on which the annotations are defined. It may be |
| 357 | * NULL when "resultStyle" is "kAllRaw". |
| 358 | * |
| 359 | * If "resultStyle" is "kAllObjects", the result will always be an Object of an |
| 360 | * appropriate type (in pValue->value.l). For primitive types, the usual |
| 361 | * wrapper objects will be created. |
| 362 | * |
| 363 | * If "resultStyle" is "kAllRaw", numeric constants are stored directly into |
| 364 | * "pValue", and indexed values like String and Method are returned as |
| 365 | * indexes. Complex values like annotations and arrays are not handled. |
| 366 | * |
| 367 | * If "resultStyle" is "kPrimitivesOrObjects", numeric constants are stored |
| 368 | * directly into "pValue", and everything else is constructed as an Object |
| 369 | * of appropriate type (in pValue->value.l). |
| 370 | * |
| 371 | * The caller must call dvmReleaseTrackedAlloc on returned objects, when |
| 372 | * using "kAllObjects" or "kPrimitivesOrObjects". |
| 373 | * |
| 374 | * Returns "true" on success, "false" if the value could not be processed |
| 375 | * or an object could not be allocated. On allocation failure an exception |
| 376 | * will be raised. |
| 377 | */ |
| 378 | static bool processAnnotationValue(const ClassObject* clazz, |
| 379 | const u1** pPtr, AnnotationValue* pValue, |
| 380 | AnnotationResultStyle resultStyle) |
| 381 | { |
| 382 | Thread* self = dvmThreadSelf(); |
| 383 | Object* elemObj = NULL; |
| 384 | bool setObject = false; |
| 385 | const u1* ptr = *pPtr; |
| 386 | u1 valueType, valueArg; |
| 387 | int width; |
| 388 | u4 idx; |
| 389 | |
| 390 | valueType = *ptr++; |
| 391 | valueArg = valueType >> kDexAnnotationValueArgShift; |
| 392 | width = valueArg + 1; /* assume, correct later */ |
| 393 | |
| 394 | LOGV("----- type is 0x%02x %d, ptr=%p [0x%06x]\n", |
| 395 | valueType & kDexAnnotationValueTypeMask, valueArg, ptr-1, |
| 396 | (ptr-1) - (u1*)clazz->pDvmDex->pDexFile->baseAddr); |
| 397 | |
| 398 | pValue->type = valueType & kDexAnnotationValueTypeMask; |
| 399 | |
| 400 | switch (valueType & kDexAnnotationValueTypeMask) { |
| 401 | case kDexAnnotationByte: |
| 402 | pValue->value.i = (s1) readSignedInt(ptr, valueArg); |
| 403 | if (resultStyle == kAllObjects) { |
| 404 | elemObj = (Object*) dvmWrapPrimitive(pValue->value, |
| 405 | dvmFindPrimitiveClass('B')); |
| 406 | setObject = true; |
| 407 | } |
| 408 | break; |
| 409 | case kDexAnnotationShort: |
| 410 | pValue->value.i = (s2) readSignedInt(ptr, valueArg); |
| 411 | if (resultStyle == kAllObjects) { |
| 412 | elemObj = (Object*) dvmWrapPrimitive(pValue->value, |
| 413 | dvmFindPrimitiveClass('S')); |
| 414 | setObject = true; |
| 415 | } |
| 416 | break; |
| 417 | case kDexAnnotationChar: |
| 418 | pValue->value.i = (u2) readUnsignedInt(ptr, valueArg, false); |
| 419 | if (resultStyle == kAllObjects) { |
| 420 | elemObj = (Object*) dvmWrapPrimitive(pValue->value, |
| 421 | dvmFindPrimitiveClass('C')); |
| 422 | setObject = true; |
| 423 | } |
| 424 | break; |
| 425 | case kDexAnnotationInt: |
| 426 | pValue->value.i = readSignedInt(ptr, valueArg); |
| 427 | if (resultStyle == kAllObjects) { |
| 428 | elemObj = (Object*) dvmWrapPrimitive(pValue->value, |
| 429 | dvmFindPrimitiveClass('I')); |
| 430 | setObject = true; |
| 431 | } |
| 432 | break; |
| 433 | case kDexAnnotationLong: |
| 434 | pValue->value.j = readSignedLong(ptr, valueArg); |
| 435 | if (resultStyle == kAllObjects) { |
| 436 | elemObj = (Object*) dvmWrapPrimitive(pValue->value, |
| 437 | dvmFindPrimitiveClass('J')); |
| 438 | setObject = true; |
| 439 | } |
| 440 | break; |
| 441 | case kDexAnnotationFloat: |
| 442 | pValue->value.i = readUnsignedInt(ptr, valueArg, true); |
| 443 | if (resultStyle == kAllObjects) { |
| 444 | elemObj = (Object*) dvmWrapPrimitive(pValue->value, |
| 445 | dvmFindPrimitiveClass('F')); |
| 446 | setObject = true; |
| 447 | } |
| 448 | break; |
| 449 | case kDexAnnotationDouble: |
| 450 | pValue->value.j = readUnsignedLong(ptr, valueArg, true); |
| 451 | if (resultStyle == kAllObjects) { |
| 452 | elemObj = (Object*) dvmWrapPrimitive(pValue->value, |
| 453 | dvmFindPrimitiveClass('D')); |
| 454 | setObject = true; |
| 455 | } |
| 456 | break; |
| 457 | case kDexAnnotationBoolean: |
| 458 | pValue->value.i = (valueArg != 0); |
| 459 | if (resultStyle == kAllObjects) { |
| 460 | elemObj = (Object*) dvmWrapPrimitive(pValue->value, |
| 461 | dvmFindPrimitiveClass('Z')); |
| 462 | setObject = true; |
| 463 | } |
| 464 | width = 0; |
| 465 | break; |
| 466 | |
| 467 | case kDexAnnotationString: |
| 468 | idx = readUnsignedInt(ptr, valueArg, false); |
| 469 | if (resultStyle == kAllRaw) { |
| 470 | pValue->value.i = idx; |
| 471 | } else { |
| 472 | elemObj = (Object*) dvmResolveString(clazz, idx); |
| 473 | setObject = true; |
| 474 | if (elemObj == NULL) |
| 475 | return false; |
| 476 | dvmAddTrackedAlloc(elemObj, self); // balance the Release |
| 477 | } |
| 478 | break; |
| 479 | case kDexAnnotationType: |
| 480 | idx = readUnsignedInt(ptr, valueArg, false); |
| 481 | if (resultStyle == kAllRaw) { |
| 482 | pValue->value.i = idx; |
| 483 | } else { |
| 484 | elemObj = (Object*) dvmResolveClass(clazz, idx, true); |
| 485 | setObject = true; |
| 486 | if (elemObj == NULL) { |
| 487 | /* we're expected to throw a TypeNotPresentException here */ |
| 488 | DexFile* pDexFile = clazz->pDvmDex->pDexFile; |
| 489 | const char* desc = dexStringByTypeIdx(pDexFile, idx); |
| 490 | dvmClearException(self); |
| 491 | dvmThrowExceptionWithClassMessage( |
| 492 | "Ljava/lang/TypeNotPresentException;", desc); |
| 493 | return false; |
| 494 | } else { |
| 495 | dvmAddTrackedAlloc(elemObj, self); // balance the Release |
| 496 | } |
| 497 | } |
| 498 | break; |
| 499 | case kDexAnnotationMethod: |
| 500 | idx = readUnsignedInt(ptr, valueArg, false); |
| 501 | if (resultStyle == kAllRaw) { |
| 502 | pValue->value.i = idx; |
| 503 | } else { |
| 504 | Method* meth = resolveAmbiguousMethod(clazz, idx); |
| 505 | if (meth == NULL) |
| 506 | return false; |
| 507 | elemObj = dvmCreateReflectObjForMethod(clazz, meth); |
| 508 | setObject = true; |
| 509 | if (elemObj == NULL) |
| 510 | return false; |
| 511 | } |
| 512 | break; |
| 513 | case kDexAnnotationField: |
| 514 | idx = readUnsignedInt(ptr, valueArg, false); |
| 515 | assert(false); // TODO |
| 516 | break; |
| 517 | case kDexAnnotationEnum: |
| 518 | /* enum values are the contents of a static field */ |
| 519 | idx = readUnsignedInt(ptr, valueArg, false); |
| 520 | if (resultStyle == kAllRaw) { |
| 521 | pValue->value.i = idx; |
| 522 | } else { |
| 523 | StaticField* sfield; |
| 524 | |
| 525 | sfield = dvmResolveStaticField(clazz, idx); |
| 526 | if (sfield == NULL) { |
| 527 | return false; |
| 528 | } else { |
| 529 | assert(sfield->field.clazz->descriptor[0] == 'L'); |
| 530 | elemObj = sfield->value.l; |
| 531 | setObject = true; |
| 532 | dvmAddTrackedAlloc(elemObj, self); // balance the Release |
| 533 | } |
| 534 | } |
| 535 | break; |
| 536 | case kDexAnnotationArray: |
| 537 | /* |
| 538 | * encoded_array format, which is a size followed by a stream |
| 539 | * of annotation_value. |
| 540 | * |
| 541 | * We create an array of Object, populate it, and return it. |
| 542 | */ |
| 543 | if (resultStyle == kAllRaw) { |
| 544 | return false; |
| 545 | } else { |
| 546 | ArrayObject* newArray; |
| 547 | Object** pObj; |
| 548 | u4 size; |
| 549 | |
| 550 | size = readUleb128(&ptr); |
| 551 | LOGVV("--- annotation array, size is %u at %p\n", size, ptr); |
| 552 | newArray = dvmAllocArrayByClass(gDvm.classJavaLangObjectArray, |
| 553 | size, ALLOC_DEFAULT); |
| 554 | if (newArray == NULL) { |
| 555 | LOGE("annotation element array alloc failed (%d)\n", size); |
| 556 | return false; |
| 557 | } |
| 558 | pObj = (Object**)newArray->contents; |
| 559 | |
| 560 | AnnotationValue avalue; |
| 561 | while (size--) { |
| 562 | if (!processAnnotationValue(clazz, &ptr, &avalue, |
| 563 | kAllObjects)) { |
| 564 | dvmReleaseTrackedAlloc((Object*)newArray, self); |
| 565 | return false; |
| 566 | } |
| 567 | Object* obj = avalue.value.l; |
| 568 | dvmReleaseTrackedAlloc(obj, self); |
| 569 | *pObj++ = obj; |
| 570 | } |
| 571 | |
| 572 | elemObj = (Object*) newArray; |
| 573 | setObject = true; |
| 574 | } |
| 575 | width = 0; |
| 576 | break; |
| 577 | case kDexAnnotationAnnotation: |
| 578 | /* encoded_annotation format */ |
| 579 | if (resultStyle == kAllRaw) |
| 580 | return false; |
| 581 | elemObj = processEncodedAnnotation(clazz, &ptr); |
| 582 | setObject = true; |
| 583 | if (elemObj == NULL) |
| 584 | return false; |
| 585 | dvmAddTrackedAlloc(elemObj, self); // balance the Release |
| 586 | width = 0; |
| 587 | break; |
| 588 | case kDexAnnotationNull: |
| 589 | if (resultStyle == kAllRaw) { |
| 590 | pValue->value.i = 0; |
| 591 | } else { |
| 592 | assert(elemObj == NULL); |
| 593 | setObject = true; |
| 594 | } |
| 595 | width = 0; |
| 596 | break; |
| 597 | default: |
| 598 | LOGE("Bad annotation element value byte 0x%02x (0x%02x)\n", |
| 599 | valueType, valueType & kDexAnnotationValueTypeMask); |
| 600 | assert(false); |
| 601 | return false; |
| 602 | } |
| 603 | |
| 604 | ptr += width; |
| 605 | |
| 606 | *pPtr = ptr; |
| 607 | if (setObject) |
| 608 | pValue->value.l = elemObj; |
| 609 | return true; |
| 610 | } |
| 611 | |
| 612 | |
| 613 | /* |
| 614 | * For most object types, we have nothing to do here, and we just return |
| 615 | * "valueObj". |
| 616 | * |
| 617 | * For an array annotation, the type of the extracted object will always |
| 618 | * be java.lang.Object[], but we want it to match the type that the |
| 619 | * annotation member is expected to return. In theory we can just stomp |
| 620 | * the object's class to have the correct type, but this strikes me as a |
| 621 | * risky proposition (at the very least we would need to call instanceof() |
| 622 | * on every element). |
| 623 | * |
| 624 | * We allocate a second array with the correct type, then copy the data |
| 625 | * over. This releases the tracked allocation on "valueObj" and returns |
| 626 | * a new, tracked object. |
| 627 | * |
| 628 | * On failure, this releases the tracking on "valueObj" and returns NULL |
| 629 | * (allowing the call to say "foo = convertReturnType(foo, ..)"). |
| 630 | */ |
| 631 | static Object* convertReturnType(Object* valueObj, ClassObject* methodReturn) |
| 632 | { |
| 633 | if (valueObj == NULL || |
| 634 | !dvmIsArray((ArrayObject*)valueObj) || !dvmIsArrayClass(methodReturn)) |
| 635 | { |
| 636 | return valueObj; |
| 637 | } |
| 638 | |
| 639 | Thread* self = dvmThreadSelf(); |
| 640 | ClassObject* srcElemClass; |
| 641 | ClassObject* dstElemClass; |
| 642 | |
| 643 | /* |
| 644 | * Strip off one '[' to get element class. Note this is not the |
| 645 | * same as clazz->elementClass. |
| 646 | */ |
| 647 | srcElemClass = dvmFindClass(valueObj->clazz->descriptor+1, |
| 648 | valueObj->clazz->classLoader); |
| 649 | dstElemClass = dvmFindClass(methodReturn->descriptor+1, |
| 650 | methodReturn->classLoader); |
| 651 | if (srcElemClass->primitiveType != PRIM_NOT || |
| 652 | dstElemClass->primitiveType != PRIM_NOT) |
| 653 | { |
| 654 | LOGE("ERROR: array of primitives not expected here\n"); |
| 655 | dvmAbort(); |
| 656 | } |
| 657 | LOGV("HEY: converting valueObj from [%s to [%s\n", |
| 658 | srcElemClass->descriptor, dstElemClass->descriptor); |
| 659 | |
| 660 | ArrayObject* srcArray = (ArrayObject*) valueObj; |
| 661 | u4 length = srcArray->length; |
| 662 | ArrayObject* newArray; |
| 663 | |
| 664 | newArray = dvmAllocArrayByClass(methodReturn, length, ALLOC_DEFAULT); |
| 665 | if (newArray == NULL) { |
| 666 | LOGE("Failed creating duplicate annotation class (%s %d)\n", |
| 667 | methodReturn->descriptor, length); |
| 668 | goto bail; |
| 669 | } |
| 670 | |
| 671 | if (!dvmCopyObjectArray(newArray, srcArray, dstElemClass)) { |
| 672 | LOGE("Annotation array copy failed\n"); |
| 673 | dvmReleaseTrackedAlloc((Object*)newArray, self); |
| 674 | newArray = NULL; |
| 675 | goto bail; |
| 676 | } |
| 677 | |
| 678 | bail: |
| 679 | /* replace old, return new */ |
| 680 | dvmReleaseTrackedAlloc(valueObj, self); |
| 681 | return (Object*) newArray; |
| 682 | } |
| 683 | |
| 684 | /* |
| 685 | * Create a new AnnotationMember. |
| 686 | * |
| 687 | * "clazz" is the class on which the annotations are defined. "pPtr" |
| 688 | * points to a pointer into the annotation data. "annoClass" is the |
| 689 | * annotation's class. |
| 690 | * |
| 691 | * We extract the annotation's value, create a new AnnotationMember object, |
| 692 | * and construct it. |
| 693 | * |
| 694 | * Returns NULL on failure; an exception may or may not be raised. |
| 695 | */ |
| 696 | static Object* createAnnotationMember(const ClassObject* clazz, |
| 697 | const ClassObject* annoClass, const u1** pPtr) |
| 698 | { |
| 699 | Thread* self = dvmThreadSelf(); |
| 700 | const DexFile* pDexFile = clazz->pDvmDex->pDexFile; |
| 701 | StringObject* nameObj = NULL; |
| 702 | Object* valueObj = NULL; |
| 703 | Object* newMember = NULL; |
| 704 | Object* methodObj = NULL; |
| 705 | ClassObject* methodReturn = NULL; |
| 706 | u4 elementNameIdx; |
| 707 | const char* name; |
| 708 | AnnotationValue avalue; |
| 709 | JValue result; |
| 710 | bool failed = true; |
| 711 | |
| 712 | elementNameIdx = readUleb128(pPtr); |
| 713 | |
| 714 | if (!processAnnotationValue(clazz, pPtr, &avalue, kAllObjects)) { |
| 715 | LOGW("Failed processing annotation value\n"); |
| 716 | goto bail; |
| 717 | } |
| 718 | valueObj = avalue.value.l; |
| 719 | |
| 720 | /* new member to hold the element */ |
| 721 | newMember = |
| 722 | dvmAllocObject(gDvm.classOrgApacheHarmonyLangAnnotationAnnotationMember, |
| 723 | ALLOC_DEFAULT); |
| 724 | name = dexStringById(pDexFile, elementNameIdx); |
| 725 | nameObj = dvmCreateStringFromCstr(name, ALLOC_DEFAULT); |
| 726 | |
| 727 | /* find the method in the annotation class, given only the name */ |
| 728 | if (name != NULL) { |
| 729 | Method* annoMeth = dvmFindVirtualMethodByName(annoClass, name); |
| 730 | if (annoMeth == NULL) { |
| 731 | LOGW("WARNING: could not find annotation member %s in %s\n", |
| 732 | name, annoClass->descriptor); |
| 733 | } else { |
| 734 | methodObj = dvmCreateReflectMethodObject(annoMeth); |
| 735 | methodReturn = dvmGetBoxedReturnType(annoMeth); |
| 736 | } |
| 737 | } |
| 738 | if (newMember == NULL || nameObj == NULL || methodObj == NULL || |
| 739 | methodReturn == NULL) |
| 740 | { |
| 741 | LOGE("Failed creating annotation element (m=%p n=%p a=%p r=%p)\n", |
| 742 | newMember, nameObj, methodObj, methodReturn); |
| 743 | goto bail; |
| 744 | } |
| 745 | |
| 746 | /* convert the return type, if necessary */ |
| 747 | valueObj = convertReturnType(valueObj, methodReturn); |
| 748 | if (valueObj == NULL) |
| 749 | goto bail; |
| 750 | |
| 751 | /* call 4-argument constructor */ |
| 752 | dvmCallMethod(self, gDvm.methOrgApacheHarmonyLangAnnotationAnnotationMember_init, |
| 753 | newMember, &result, nameObj, valueObj, methodReturn, methodObj); |
| 754 | if (dvmCheckException(self)) { |
| 755 | LOGD("Failed constructing annotation element\n"); |
| 756 | goto bail; |
| 757 | } |
| 758 | |
| 759 | failed = false; |
| 760 | |
| 761 | bail: |
| 762 | /* release tracked allocations */ |
| 763 | dvmReleaseTrackedAlloc(newMember, self); |
| 764 | dvmReleaseTrackedAlloc((Object*)nameObj, self); |
| 765 | dvmReleaseTrackedAlloc(valueObj, self); |
| 766 | dvmReleaseTrackedAlloc(methodObj, self); |
| 767 | if (failed) |
| 768 | return NULL; |
| 769 | else |
| 770 | return newMember; |
| 771 | } |
| 772 | |
| 773 | /* |
| 774 | * Create a new Annotation object from what we find in the annotation item. |
| 775 | * |
| 776 | * "clazz" is the class on which the annotations are defined. "pPtr" |
| 777 | * points to a pointer into the annotation data. |
| 778 | * |
| 779 | * We use the AnnotationFactory class to create the annotation for us. The |
| 780 | * method we call is: |
| 781 | * |
| 782 | * public static Annotation createAnnotation( |
| 783 | * Class<? extends Annotation> annotationType, |
| 784 | * AnnotationMember[] elements) |
| 785 | * |
| 786 | * Returns a new Annotation, which will NOT be in the local ref table and |
| 787 | * not referenced elsewhere, so store it away soon. On failure, returns NULL |
| 788 | * with an exception raised. |
| 789 | */ |
| 790 | static Object* processEncodedAnnotation(const ClassObject* clazz, |
| 791 | const u1** pPtr) |
| 792 | { |
| 793 | Thread* self = dvmThreadSelf(); |
| 794 | const DexFile* pDexFile = clazz->pDvmDex->pDexFile; |
| 795 | Object* newAnno = NULL; |
| 796 | ArrayObject* elementArray = NULL; |
| 797 | const ClassObject* annoClass; |
| 798 | const u1* ptr; |
| 799 | u4 typeIdx, size; |
| 800 | |
| 801 | ptr = *pPtr; |
| 802 | typeIdx = readUleb128(&ptr); |
| 803 | size = readUleb128(&ptr); |
| 804 | |
| 805 | LOGVV("----- processEnc ptr=%p type=%d size=%d\n", ptr, typeIdx, size); |
| 806 | |
| 807 | annoClass = dvmDexGetResolvedClass(clazz->pDvmDex, typeIdx); |
| 808 | if (annoClass == NULL) { |
| 809 | annoClass = dvmResolveClass(clazz, typeIdx, true); |
| 810 | if (annoClass == NULL) { |
| 811 | LOGE("Unable to resolve %s annotation class %d\n", |
| 812 | clazz->descriptor, typeIdx); |
| 813 | assert(dvmCheckException(self)); |
| 814 | return NULL; |
| 815 | } |
| 816 | } |
| 817 | |
| 818 | LOGV("----- processEnc ptr=%p [0x%06x] typeIdx=%d size=%d class=%s\n", |
| 819 | *pPtr, *pPtr - (u1*) clazz->pDvmDex->pDexFile->baseAddr, |
| 820 | typeIdx, size, annoClass->descriptor); |
| 821 | |
| 822 | /* |
| 823 | * Elements are parsed out and stored in an array. The Harmony |
| 824 | * constructor wants an array with just the declared elements -- |
| 825 | * default values get merged in later. |
| 826 | */ |
| 827 | JValue result; |
| 828 | Object** pElement = NULL; |
| 829 | |
| 830 | if (size > 0) { |
| 831 | elementArray = dvmAllocArrayByClass( |
| 832 | gDvm.classOrgApacheHarmonyLangAnnotationAnnotationMemberArray, |
| 833 | size, ALLOC_DEFAULT); |
| 834 | if (elementArray == NULL) { |
| 835 | LOGE("failed to allocate annotation member array (%d elements)\n", |
| 836 | size); |
| 837 | goto bail; |
| 838 | } |
| 839 | pElement = (Object**) elementArray->contents; |
| 840 | } |
| 841 | |
| 842 | /* |
| 843 | * "ptr" points to a byte stream with "size" occurrences of |
| 844 | * annotation_element. |
| 845 | */ |
| 846 | while (size--) { |
| 847 | Object* newMember = createAnnotationMember(clazz, annoClass, &ptr); |
| 848 | if (newMember == NULL) |
| 849 | goto bail; |
| 850 | |
| 851 | /* add it to the array */ |
| 852 | *pElement++ = newMember; |
| 853 | } |
| 854 | |
| 855 | dvmCallMethod(self, |
| 856 | gDvm.methOrgApacheHarmonyLangAnnotationAnnotationFactory_createAnnotation, |
| 857 | NULL, &result, annoClass, elementArray); |
| 858 | if (dvmCheckException(self)) { |
| 859 | LOGD("Failed creating an annotation\n"); |
| 860 | //dvmLogExceptionStackTrace(); |
| 861 | goto bail; |
| 862 | } |
| 863 | |
| 864 | newAnno = result.l; |
| 865 | |
| 866 | bail: |
| 867 | dvmReleaseTrackedAlloc((Object*) elementArray, NULL); |
| 868 | *pPtr = ptr; |
| 869 | if (newAnno == NULL && !dvmCheckException(self)) { |
| 870 | /* make sure an exception is raised */ |
| 871 | dvmThrowException("Ljava/lang/RuntimeException;", |
| 872 | "failure in processEncodedAnnotation"); |
| 873 | } |
| 874 | return newAnno; |
| 875 | } |
| 876 | |
| 877 | /* |
| 878 | * Run through an annotation set and convert each entry into an Annotation |
| 879 | * object. |
| 880 | * |
| 881 | * Returns an array of Annotation objects, or NULL with an exception raised |
| 882 | * on alloc failure. |
| 883 | */ |
| 884 | static ArrayObject* processAnnotationSet(const ClassObject* clazz, |
| 885 | const DexAnnotationSetItem* pAnnoSet, int visibility) |
| 886 | { |
| 887 | DexFile* pDexFile = clazz->pDvmDex->pDexFile; |
| 888 | const DexAnnotationItem* pAnnoItem; |
| 889 | ArrayObject* annoArray; |
| 890 | Object** pContents; |
| 891 | int i, count; |
| 892 | |
| 893 | /* we need these later; make sure they're initialized */ |
| 894 | if (!dvmIsClassInitialized(gDvm.classOrgApacheHarmonyLangAnnotationAnnotationFactory)) |
| 895 | dvmInitClass(gDvm.classOrgApacheHarmonyLangAnnotationAnnotationFactory); |
| 896 | if (!dvmIsClassInitialized(gDvm.classOrgApacheHarmonyLangAnnotationAnnotationMember)) |
| 897 | dvmInitClass(gDvm.classOrgApacheHarmonyLangAnnotationAnnotationMember); |
| 898 | |
| 899 | /* count up the number of visible elements */ |
| 900 | for (i = count = 0; i < (int) pAnnoSet->size; i++) { |
| 901 | pAnnoItem = dexGetAnnotationItem(pDexFile, pAnnoSet, i); |
| 902 | if (pAnnoItem->visibility == visibility) |
| 903 | count++; |
| 904 | } |
| 905 | |
| 906 | annoArray =dvmAllocArrayByClass(gDvm.classJavaLangAnnotationAnnotationArray, |
| 907 | count, ALLOC_DEFAULT); |
| 908 | if (annoArray == NULL) |
| 909 | return NULL; |
| 910 | pContents = (Object**) annoArray->contents; |
| 911 | |
| 912 | /* |
| 913 | * Generate Annotation objects. We must put them into the array |
| 914 | * immediately (or add them to the tracked ref table). |
| 915 | */ |
| 916 | for (i = 0; i < (int) pAnnoSet->size; i++) { |
| 917 | pAnnoItem = dexGetAnnotationItem(pDexFile, pAnnoSet, i); |
| 918 | if (pAnnoItem->visibility != visibility) |
| 919 | continue; |
| 920 | const u1* ptr = pAnnoItem->annotation; |
| 921 | *pContents = processEncodedAnnotation(clazz, &ptr); |
| 922 | if (*pContents == NULL) { |
| 923 | dvmReleaseTrackedAlloc((Object*) annoArray, NULL); |
| 924 | return NULL; |
| 925 | } |
| 926 | pContents++; |
| 927 | } |
| 928 | |
| 929 | return annoArray; |
| 930 | } |
| 931 | |
| 932 | |
| 933 | /* |
| 934 | * =========================================================================== |
| 935 | * Skipping and scanning |
| 936 | * =========================================================================== |
| 937 | */ |
| 938 | |
| 939 | /* |
| 940 | * Skip past an annotation value. |
| 941 | * |
| 942 | * "clazz" is the class on which the annotations are defined. |
| 943 | * |
| 944 | * Returns "true" on success, "false" on parsing failure. |
| 945 | */ |
| 946 | static bool skipAnnotationValue(const ClassObject* clazz, const u1** pPtr) |
| 947 | { |
| 948 | const u1* ptr = *pPtr; |
| 949 | u1 valueType, valueArg; |
| 950 | int width; |
| 951 | |
| 952 | valueType = *ptr++; |
| 953 | valueArg = valueType >> kDexAnnotationValueArgShift; |
| 954 | width = valueArg + 1; /* assume */ |
| 955 | |
| 956 | LOGV("----- type is 0x%02x %d, ptr=%p [0x%06x]\n", |
| 957 | valueType & kDexAnnotationValueTypeMask, valueArg, ptr-1, |
| 958 | (ptr-1) - (u1*)clazz->pDvmDex->pDexFile->baseAddr); |
| 959 | |
| 960 | switch (valueType & kDexAnnotationValueTypeMask) { |
| 961 | case kDexAnnotationByte: break; |
| 962 | case kDexAnnotationShort: break; |
| 963 | case kDexAnnotationChar: break; |
| 964 | case kDexAnnotationInt: break; |
| 965 | case kDexAnnotationLong: break; |
| 966 | case kDexAnnotationFloat: break; |
| 967 | case kDexAnnotationDouble: break; |
| 968 | case kDexAnnotationString: break; |
| 969 | case kDexAnnotationType: break; |
| 970 | case kDexAnnotationMethod: break; |
| 971 | case kDexAnnotationField: break; |
| 972 | case kDexAnnotationEnum: break; |
| 973 | |
| 974 | case kDexAnnotationArray: |
| 975 | /* encoded_array format */ |
| 976 | { |
| 977 | u4 size = readUleb128(&ptr); |
| 978 | while (size--) { |
| 979 | if (!skipAnnotationValue(clazz, &ptr)) |
| 980 | return false; |
| 981 | } |
| 982 | } |
| 983 | width = 0; |
| 984 | break; |
| 985 | case kDexAnnotationAnnotation: |
| 986 | /* encoded_annotation format */ |
| 987 | if (!skipEncodedAnnotation(clazz, &ptr)) |
| 988 | return false; |
| 989 | width = 0; |
| 990 | break; |
| 991 | case kDexAnnotationBoolean: |
| 992 | case kDexAnnotationNull: |
| 993 | width = 0; |
| 994 | break; |
| 995 | default: |
| 996 | LOGE("Bad annotation element value byte 0x%02x\n", valueType); |
| 997 | assert(false); |
| 998 | return false; |
| 999 | } |
| 1000 | |
| 1001 | ptr += width; |
| 1002 | |
| 1003 | *pPtr = ptr; |
| 1004 | return true; |
| 1005 | } |
| 1006 | |
| 1007 | /* |
| 1008 | * Skip past an encoded annotation. Mainly useful for annotations embedded |
| 1009 | * in other annotations. |
| 1010 | */ |
| 1011 | static bool skipEncodedAnnotation(const ClassObject* clazz, const u1** pPtr) |
| 1012 | { |
| 1013 | const DexFile* pDexFile = clazz->pDvmDex->pDexFile; |
| 1014 | const u1* ptr; |
| 1015 | u4 size; |
| 1016 | |
| 1017 | ptr = *pPtr; |
| 1018 | (void) readUleb128(&ptr); |
| 1019 | size = readUleb128(&ptr); |
| 1020 | |
| 1021 | /* |
| 1022 | * "ptr" points to a byte stream with "size" occurrences of |
| 1023 | * annotation_element. |
| 1024 | */ |
| 1025 | while (size--) { |
| 1026 | (void) readUleb128(&ptr); |
| 1027 | |
| 1028 | if (!skipAnnotationValue(clazz, &ptr)) |
| 1029 | return false; |
| 1030 | } |
| 1031 | |
| 1032 | *pPtr = ptr; |
| 1033 | return true; |
| 1034 | } |
| 1035 | |
| 1036 | |
| 1037 | /* |
| 1038 | * Compare the name of the class in the DEX file to the supplied descriptor. |
| 1039 | * Return value is equivalent to strcmp. |
| 1040 | */ |
| 1041 | static int compareClassDescriptor(DexFile* pDexFile, u4 typeIdx, |
| 1042 | const char* descriptor) |
| 1043 | { |
| 1044 | const char* str = dexStringByTypeIdx(pDexFile, typeIdx); |
| 1045 | |
| 1046 | return strcmp(str, descriptor); |
| 1047 | } |
| 1048 | |
| 1049 | /* |
| 1050 | * Search through the annotation set for an annotation with a matching |
| 1051 | * descriptor. |
| 1052 | * |
| 1053 | * Comparing the string descriptor is slower than comparing an integer class |
| 1054 | * index. If annotation lists are expected to be long, we could look up |
| 1055 | * the class' index by name from the DEX file, rather than doing a class |
| 1056 | * lookup and string compare on each entry. (Note the index will be |
| 1057 | * different for each DEX file, so we can't cache annotation class indices |
| 1058 | * globally.) |
| 1059 | */ |
| 1060 | static const DexAnnotationItem* searchAnnotationSet(const ClassObject* clazz, |
| 1061 | const DexAnnotationSetItem* pAnnoSet, const char* descriptor, |
| 1062 | int visibility) |
| 1063 | { |
| 1064 | DexFile* pDexFile = clazz->pDvmDex->pDexFile; |
| 1065 | const DexAnnotationItem* result = NULL; |
| 1066 | u4 typeIdx; |
| 1067 | int i; |
| 1068 | |
| 1069 | //printf("##### searchAnnotationSet %s %d\n", descriptor, visibility); |
| 1070 | |
| 1071 | for (i = 0; i < (int) pAnnoSet->size; i++) { |
| 1072 | const DexAnnotationItem* pAnnoItem; |
| 1073 | |
| 1074 | pAnnoItem = dexGetAnnotationItem(pDexFile, pAnnoSet, i); |
| 1075 | if (pAnnoItem->visibility != visibility) |
| 1076 | continue; |
| 1077 | const u1* ptr = pAnnoItem->annotation; |
| 1078 | typeIdx = readUleb128(&ptr); |
| 1079 | |
| 1080 | if (compareClassDescriptor(pDexFile, typeIdx, descriptor) == 0) { |
| 1081 | //printf("##### match on %x/%p at %d\n", typeIdx, pDexFile, i); |
| 1082 | result = pAnnoItem; |
| 1083 | break; |
| 1084 | } |
| 1085 | } |
| 1086 | |
| 1087 | return result; |
| 1088 | } |
| 1089 | |
| 1090 | /* |
| 1091 | * Find an annotation value in the annotation_item whose name matches "name". |
| 1092 | * A pointer to the annotation_value is returned, or NULL if it's not found. |
| 1093 | */ |
| 1094 | static const u1* searchEncodedAnnotation(const ClassObject* clazz, |
| 1095 | const u1* ptr, const char* name) |
| 1096 | { |
| 1097 | DexFile* pDexFile = clazz->pDvmDex->pDexFile; |
| 1098 | u4 typeIdx, size; |
| 1099 | |
| 1100 | typeIdx = readUleb128(&ptr); |
| 1101 | size = readUleb128(&ptr); |
| 1102 | //printf("##### searching ptr=%p type=%u size=%u\n", ptr, typeIdx, size); |
| 1103 | |
| 1104 | while (size--) { |
| 1105 | u4 elementNameIdx; |
| 1106 | const char* elemName; |
| 1107 | |
| 1108 | elementNameIdx = readUleb128(&ptr); |
| 1109 | elemName = dexStringById(pDexFile, elementNameIdx); |
| 1110 | if (strcmp(name, elemName) == 0) { |
| 1111 | //printf("##### item match on %s\n", name); |
| 1112 | return ptr; /* points to start of value */ |
| 1113 | } |
| 1114 | |
| 1115 | skipAnnotationValue(clazz, &ptr); |
| 1116 | } |
| 1117 | |
| 1118 | //printf("##### no item match on %s\n", name); |
| 1119 | return NULL; |
| 1120 | } |
| 1121 | |
| 1122 | #define GAV_FAILED ((Object*) 0x10000001) |
| 1123 | |
| 1124 | /* |
| 1125 | * Extract an encoded annotation value from the field specified by "annoName". |
| 1126 | * |
| 1127 | * "expectedType" is an annotation value type, e.g. kDexAnnotationString. |
| 1128 | * "debugAnnoName" is only used in debug messages. |
| 1129 | * |
| 1130 | * Returns GAV_FAILED on failure. If an allocation failed, an exception |
| 1131 | * will be raised. |
| 1132 | */ |
| 1133 | static Object* getAnnotationValue(const ClassObject* clazz, |
| 1134 | const DexAnnotationItem* pAnnoItem, const char* annoName, |
| 1135 | int expectedType, const char* debugAnnoName) |
| 1136 | { |
| 1137 | const u1* ptr; |
| 1138 | Object* obj; |
| 1139 | AnnotationValue avalue; |
| 1140 | |
| 1141 | /* find the annotation */ |
| 1142 | ptr = searchEncodedAnnotation(clazz, pAnnoItem->annotation, annoName); |
| 1143 | if (ptr == NULL) { |
| 1144 | LOGW("%s annotation lacks '%s' member\n", debugAnnoName, annoName); |
| 1145 | return GAV_FAILED; |
| 1146 | } |
| 1147 | |
| 1148 | if (!processAnnotationValue(clazz, &ptr, &avalue, kAllObjects)) |
| 1149 | return GAV_FAILED; |
| 1150 | |
| 1151 | /* make sure it has the expected format */ |
| 1152 | if (avalue.type != expectedType) { |
| 1153 | LOGW("%s %s has wrong type (0x%02x, expected 0x%02x)\n", |
| 1154 | debugAnnoName, annoName, avalue.type, expectedType); |
| 1155 | return GAV_FAILED; |
| 1156 | } |
| 1157 | |
| 1158 | return avalue.value.l; |
| 1159 | } |
| 1160 | |
| 1161 | |
| 1162 | /* |
| 1163 | * Find the Signature attribute and extract its value. (Signatures can |
| 1164 | * be found in annotations on classes, constructors, methods, and fields.) |
| 1165 | * |
| 1166 | * Caller must call dvmReleaseTrackedAlloc(). |
| 1167 | * |
| 1168 | * Returns NULL if not found. On memory alloc failure, returns NULL with an |
| 1169 | * exception raised. |
| 1170 | */ |
| 1171 | static ArrayObject* getSignatureValue(const ClassObject* clazz, |
| 1172 | const DexAnnotationSetItem* pAnnoSet) |
| 1173 | { |
| 1174 | const DexAnnotationItem* pAnnoItem; |
| 1175 | Object* obj; |
| 1176 | |
| 1177 | pAnnoItem = searchAnnotationSet(clazz, pAnnoSet, kDescrSignature, |
| 1178 | kDexVisibilitySystem); |
| 1179 | if (pAnnoItem == NULL) |
| 1180 | return NULL; |
| 1181 | |
| 1182 | /* |
| 1183 | * The Signature annotation has one member, "String value". |
| 1184 | */ |
| 1185 | obj = getAnnotationValue(clazz, pAnnoItem, "value", kDexAnnotationArray, |
| 1186 | "Signature"); |
| 1187 | if (obj == GAV_FAILED) |
| 1188 | return NULL; |
| 1189 | assert(obj->clazz == gDvm.classJavaLangObjectArray); |
| 1190 | |
| 1191 | return (ArrayObject*)obj; |
| 1192 | } |
| 1193 | |
| 1194 | |
| 1195 | /* |
| 1196 | * =========================================================================== |
| 1197 | * Class |
| 1198 | * =========================================================================== |
| 1199 | */ |
| 1200 | |
| 1201 | /* |
| 1202 | * Find the DexAnnotationSetItem for this class. |
| 1203 | */ |
| 1204 | static const DexAnnotationSetItem* findAnnotationSetForClass( |
| 1205 | const ClassObject* clazz) |
| 1206 | { |
| 1207 | DexFile* pDexFile; |
| 1208 | const DexAnnotationsDirectoryItem* pAnnoDir; |
| 1209 | |
| 1210 | if (clazz->pDvmDex == NULL) /* generated class (Proxy, array) */ |
| 1211 | return NULL; |
| 1212 | |
| 1213 | pDexFile = clazz->pDvmDex->pDexFile; |
| 1214 | pAnnoDir = getAnnoDirectory(pDexFile, clazz); |
| 1215 | if (pAnnoDir != NULL) |
| 1216 | return dexGetClassAnnotationSet(pDexFile, pAnnoDir); |
| 1217 | else |
| 1218 | return NULL; |
| 1219 | } |
| 1220 | |
| 1221 | /* |
| 1222 | * Return an array of Annotation objects for the class. Returns an empty |
| 1223 | * array if there are no annotations. |
| 1224 | * |
| 1225 | * Caller must call dvmReleaseTrackedAlloc(). |
| 1226 | * |
| 1227 | * On allocation failure, this returns NULL with an exception raised. |
| 1228 | */ |
| 1229 | ArrayObject* dvmGetClassAnnotations(const ClassObject* clazz) |
| 1230 | { |
| 1231 | ArrayObject* annoArray; |
| 1232 | const DexAnnotationSetItem* pAnnoSet = NULL; |
| 1233 | |
| 1234 | pAnnoSet = findAnnotationSetForClass(clazz); |
| 1235 | if (pAnnoSet == NULL) { |
| 1236 | /* no annotations for anything in class, or no class annotations */ |
| 1237 | annoArray = emptyAnnoArray(); |
| 1238 | } else { |
| 1239 | annoArray = processAnnotationSet(clazz, pAnnoSet, |
| 1240 | kDexVisibilityRuntime); |
| 1241 | } |
| 1242 | |
| 1243 | return annoArray; |
| 1244 | } |
| 1245 | |
| 1246 | /* |
| 1247 | * Retrieve the Signature annotation, if any. Returns NULL if no signature |
| 1248 | * exists. |
| 1249 | * |
| 1250 | * Caller must call dvmReleaseTrackedAlloc(). |
| 1251 | */ |
| 1252 | ArrayObject* dvmGetClassSignatureAnnotation(const ClassObject* clazz) |
| 1253 | { |
| 1254 | ArrayObject* signature = NULL; |
| 1255 | const DexAnnotationSetItem* pAnnoSet; |
| 1256 | |
| 1257 | pAnnoSet = findAnnotationSetForClass(clazz); |
| 1258 | if (pAnnoSet != NULL) |
| 1259 | signature = getSignatureValue(clazz, pAnnoSet); |
| 1260 | |
| 1261 | return signature; |
| 1262 | } |
| 1263 | |
| 1264 | /* |
| 1265 | * Get the EnclosingMethod attribute from an annotation. Returns a Method |
| 1266 | * object, or NULL. |
| 1267 | * |
| 1268 | * Caller must call dvmReleaseTrackedAlloc(). |
| 1269 | */ |
| 1270 | Object* dvmGetEnclosingMethod(const ClassObject* clazz) |
| 1271 | { |
| 1272 | const DexAnnotationItem* pAnnoItem; |
| 1273 | const DexAnnotationSetItem* pAnnoSet; |
| 1274 | Object* obj; |
| 1275 | |
| 1276 | pAnnoSet = findAnnotationSetForClass(clazz); |
| 1277 | if (pAnnoSet == NULL) |
| 1278 | return NULL; |
| 1279 | |
| 1280 | pAnnoItem = searchAnnotationSet(clazz, pAnnoSet, kDescrEnclosingMethod, |
| 1281 | kDexVisibilitySystem); |
| 1282 | if (pAnnoItem == NULL) |
| 1283 | return NULL; |
| 1284 | |
| 1285 | /* |
| 1286 | * The EnclosingMethod annotation has one member, "Method value". |
| 1287 | */ |
| 1288 | obj = getAnnotationValue(clazz, pAnnoItem, "value", kDexAnnotationMethod, |
| 1289 | "EnclosingMethod"); |
| 1290 | if (obj == GAV_FAILED) |
| 1291 | return NULL; |
| 1292 | assert(obj->clazz == gDvm.classJavaLangReflectConstructor || |
| 1293 | obj->clazz == gDvm.classJavaLangReflectMethod); |
| 1294 | |
| 1295 | return obj; |
| 1296 | } |
| 1297 | |
| 1298 | /* |
| 1299 | * Find a class' enclosing class. We return what we find in the |
| 1300 | * EnclosingClass attribute. |
| 1301 | * |
| 1302 | * Returns a Class object, or NULL. |
| 1303 | * |
| 1304 | * Caller must call dvmReleaseTrackedAlloc(). |
| 1305 | */ |
| 1306 | ClassObject* dvmGetDeclaringClass(const ClassObject* clazz) |
| 1307 | { |
| 1308 | const DexAnnotationItem* pAnnoItem; |
| 1309 | const DexAnnotationSetItem* pAnnoSet; |
| 1310 | Object* obj; |
| 1311 | |
| 1312 | pAnnoSet = findAnnotationSetForClass(clazz); |
| 1313 | if (pAnnoSet == NULL) |
| 1314 | return NULL; |
| 1315 | |
| 1316 | pAnnoItem = searchAnnotationSet(clazz, pAnnoSet, kDescrEnclosingClass, |
| 1317 | kDexVisibilitySystem); |
| 1318 | if (pAnnoItem == NULL) |
| 1319 | return NULL; |
| 1320 | |
| 1321 | /* |
| 1322 | * The EnclosingClass annotation has one member, "Class value". |
| 1323 | */ |
| 1324 | obj = getAnnotationValue(clazz, pAnnoItem, "value", kDexAnnotationType, |
| 1325 | "EnclosingClass"); |
| 1326 | if (obj == GAV_FAILED) |
| 1327 | return NULL; |
| 1328 | |
| 1329 | assert(obj->clazz == gDvm.classJavaLangClass); |
| 1330 | return (ClassObject*)obj; |
| 1331 | } |
| 1332 | |
| 1333 | /* |
| 1334 | * Find a class' enclosing class. We first search for an EnclosingClass |
| 1335 | * attribute, and if that's not found we look for an EnclosingMethod. |
| 1336 | * |
| 1337 | * Returns a Class object, or NULL. |
| 1338 | * |
| 1339 | * Caller must call dvmReleaseTrackedAlloc(). |
| 1340 | */ |
| 1341 | ClassObject* dvmGetEnclosingClass(const ClassObject* clazz) |
| 1342 | { |
| 1343 | const DexAnnotationItem* pAnnoItem; |
| 1344 | const DexAnnotationSetItem* pAnnoSet; |
| 1345 | Object* obj; |
| 1346 | |
| 1347 | pAnnoSet = findAnnotationSetForClass(clazz); |
| 1348 | if (pAnnoSet == NULL) |
| 1349 | return NULL; |
| 1350 | |
| 1351 | pAnnoItem = searchAnnotationSet(clazz, pAnnoSet, kDescrEnclosingClass, |
| 1352 | kDexVisibilitySystem); |
| 1353 | if (pAnnoItem != NULL) { |
| 1354 | /* |
| 1355 | * The EnclosingClass annotation has one member, "Class value". |
| 1356 | */ |
| 1357 | obj = getAnnotationValue(clazz, pAnnoItem, "value", kDexAnnotationType, |
| 1358 | "EnclosingClass"); |
| 1359 | if (obj != GAV_FAILED) { |
| 1360 | assert(obj->clazz == gDvm.classJavaLangClass); |
| 1361 | return (ClassObject*)obj; |
| 1362 | } |
| 1363 | } |
| 1364 | |
| 1365 | /* |
| 1366 | * That didn't work. Look for an EnclosingMethod. |
| 1367 | * |
| 1368 | * We could create a java.lang.reflect.Method object and extract the |
| 1369 | * declaringClass from it, but that's more work than we want to do. |
| 1370 | * Instead, we find the "value" item and parse the index out ourselves. |
| 1371 | */ |
| 1372 | pAnnoItem = searchAnnotationSet(clazz, pAnnoSet, kDescrEnclosingMethod, |
| 1373 | kDexVisibilitySystem); |
| 1374 | if (pAnnoItem == NULL) |
| 1375 | return NULL; |
| 1376 | |
| 1377 | /* find the value member */ |
| 1378 | const u1* ptr; |
| 1379 | ptr = searchEncodedAnnotation(clazz, pAnnoItem->annotation, "value"); |
| 1380 | if (ptr == NULL) { |
| 1381 | LOGW("EnclosingMethod annotation lacks 'value' member\n"); |
| 1382 | return NULL; |
| 1383 | } |
| 1384 | |
| 1385 | /* parse it, verify the type */ |
| 1386 | AnnotationValue avalue; |
| 1387 | if (!processAnnotationValue(clazz, &ptr, &avalue, kAllRaw)) { |
| 1388 | LOGW("EnclosingMethod parse failed\n"); |
| 1389 | return NULL; |
| 1390 | } |
| 1391 | if (avalue.type != kDexAnnotationMethod) { |
| 1392 | LOGW("EnclosingMethod value has wrong type (0x%02x, expected 0x%02x)\n", |
| 1393 | avalue.type, kDexAnnotationMethod); |
| 1394 | return NULL; |
| 1395 | } |
| 1396 | |
| 1397 | /* pull out the method index and resolve the method */ |
| 1398 | Method* meth = resolveAmbiguousMethod(clazz, avalue.value.i); |
| 1399 | if (meth == NULL) |
| 1400 | return NULL; |
| 1401 | |
| 1402 | ClassObject* methClazz = meth->clazz; |
| 1403 | dvmAddTrackedAlloc((Object*) methClazz, NULL); // balance the Release |
| 1404 | return methClazz; |
| 1405 | } |
| 1406 | |
| 1407 | /* |
| 1408 | * Get the EnclosingClass attribute from an annotation. If found, returns |
| 1409 | * "true". A String with the original name of the class and the original |
| 1410 | * access flags are returned through the arguments. (The name will be NULL |
| 1411 | * for an anonymous inner class.) |
| 1412 | * |
| 1413 | * Caller must call dvmReleaseTrackedAlloc(). |
| 1414 | */ |
| 1415 | bool dvmGetInnerClass(const ClassObject* clazz, StringObject** pName, |
| 1416 | int* pAccessFlags) |
| 1417 | { |
| 1418 | const DexAnnotationItem* pAnnoItem; |
| 1419 | const DexAnnotationSetItem* pAnnoSet; |
| 1420 | |
| 1421 | pAnnoSet = findAnnotationSetForClass(clazz); |
| 1422 | if (pAnnoSet == NULL) |
| 1423 | return false; |
| 1424 | |
| 1425 | pAnnoItem = searchAnnotationSet(clazz, pAnnoSet, kDescrInnerClass, |
| 1426 | kDexVisibilitySystem); |
| 1427 | if (pAnnoItem == NULL) |
| 1428 | return false; |
| 1429 | |
| 1430 | /* |
| 1431 | * The InnerClass annotation has two members, "String name" and |
| 1432 | * "int accessFlags". We don't want to get the access flags as an |
| 1433 | * Integer, so we process that as a simple value. |
| 1434 | */ |
| 1435 | const u1* ptr; |
| 1436 | ptr = searchEncodedAnnotation(clazz, pAnnoItem->annotation, "name"); |
| 1437 | if (ptr == NULL) { |
| 1438 | LOGW("InnerClass annotation lacks 'name' member\n"); |
| 1439 | return false; |
| 1440 | } |
| 1441 | |
| 1442 | /* parse it into an Object */ |
| 1443 | AnnotationValue avalue; |
| 1444 | if (!processAnnotationValue(clazz, &ptr, &avalue, kAllObjects)) { |
| 1445 | LOGD("processAnnotationValue failed on InnerClass member 'name'\n"); |
| 1446 | return false; |
| 1447 | } |
| 1448 | |
| 1449 | /* make sure it has the expected format */ |
| 1450 | if (avalue.type != kDexAnnotationNull && |
| 1451 | avalue.type != kDexAnnotationString) |
| 1452 | { |
| 1453 | LOGW("InnerClass name has bad type (0x%02x, expected STRING or NULL)\n", |
| 1454 | avalue.type); |
| 1455 | return false; |
| 1456 | } |
| 1457 | |
| 1458 | *pName = (StringObject*) avalue.value.l; |
| 1459 | assert(*pName == NULL || (*pName)->obj.clazz == gDvm.classJavaLangString); |
| 1460 | |
| 1461 | ptr = searchEncodedAnnotation(clazz, pAnnoItem->annotation, "accessFlags"); |
| 1462 | if (ptr == NULL) { |
| 1463 | LOGW("InnerClass annotation lacks 'accessFlags' member\n"); |
| 1464 | return false; |
| 1465 | } |
| 1466 | |
| 1467 | /* parse it, verify the type */ |
| 1468 | if (!processAnnotationValue(clazz, &ptr, &avalue, kAllRaw)) { |
| 1469 | LOGW("InnerClass accessFlags parse failed\n"); |
| 1470 | return false; |
| 1471 | } |
| 1472 | if (avalue.type != kDexAnnotationInt) { |
| 1473 | LOGW("InnerClass value has wrong type (0x%02x, expected 0x%02x)\n", |
| 1474 | avalue.type, kDexAnnotationInt); |
| 1475 | return false; |
| 1476 | } |
| 1477 | |
| 1478 | *pAccessFlags = avalue.value.i; |
| 1479 | |
| 1480 | return true; |
| 1481 | } |
| 1482 | |
| 1483 | /* |
| 1484 | * Extract an array of Class objects from the MemberClasses annotation |
| 1485 | * for this class. |
| 1486 | * |
| 1487 | * Caller must call dvmReleaseTrackedAlloc(). |
| 1488 | * |
| 1489 | * Returns NULL if we don't find any member classes. |
| 1490 | */ |
| 1491 | ArrayObject* dvmGetDeclaredClasses(const ClassObject* clazz) |
| 1492 | { |
| 1493 | const DexAnnotationSetItem* pAnnoSet; |
| 1494 | const DexAnnotationItem* pAnnoItem; |
| 1495 | Object* obj; |
| 1496 | |
| 1497 | pAnnoSet = findAnnotationSetForClass(clazz); |
| 1498 | if (pAnnoSet == NULL) |
| 1499 | return NULL; |
| 1500 | |
| 1501 | pAnnoItem = searchAnnotationSet(clazz, pAnnoSet, kDescrMemberClasses, |
| 1502 | kDexVisibilitySystem); |
| 1503 | if (pAnnoItem == NULL) |
| 1504 | return NULL; |
| 1505 | |
| 1506 | /* |
| 1507 | * The MemberClasses annotation has one member, "Class[] value". |
| 1508 | */ |
| 1509 | obj = getAnnotationValue(clazz, pAnnoItem, "value", |
| 1510 | kDexAnnotationArray, "MemberClasses"); |
| 1511 | if (obj == GAV_FAILED) |
| 1512 | return NULL; |
| 1513 | assert(dvmIsArray((ArrayObject*)obj)); |
| 1514 | obj = convertReturnType(obj, gDvm.classJavaLangClassArray); |
| 1515 | return (ArrayObject*)obj; |
| 1516 | } |
| 1517 | |
| 1518 | |
| 1519 | /* |
| 1520 | * =========================================================================== |
| 1521 | * Method (and Constructor) |
| 1522 | * =========================================================================== |
| 1523 | */ |
| 1524 | |
| 1525 | /* |
| 1526 | * Compare the attributes (class name, method name, method signature) of |
| 1527 | * the specified method to "method". |
| 1528 | */ |
| 1529 | static int compareMethodStr(DexFile* pDexFile, u4 methodIdx, |
| 1530 | const Method* method) |
| 1531 | { |
| 1532 | const DexMethodId* pMethodId = dexGetMethodId(pDexFile, methodIdx); |
| 1533 | const char* str = dexStringByTypeIdx(pDexFile, pMethodId->classIdx); |
| 1534 | int result = strcmp(str, method->clazz->descriptor); |
| 1535 | |
| 1536 | if (result == 0) { |
| 1537 | str = dexStringById(pDexFile, pMethodId->nameIdx); |
| 1538 | result = strcmp(str, method->name); |
| 1539 | if (result == 0) { |
| 1540 | DexProto proto; |
| 1541 | dexProtoSetFromMethodId(&proto, pDexFile, pMethodId); |
| 1542 | result = dexProtoCompare(&proto, &method->prototype); |
| 1543 | } |
| 1544 | } |
| 1545 | |
| 1546 | return result; |
| 1547 | } |
| 1548 | |
| 1549 | /* |
| 1550 | * Given a method, determine the method's index. |
| 1551 | * |
| 1552 | * We could simply store this in the Method*, but that would cost 4 bytes |
| 1553 | * per method. Instead we plow through the DEX data. |
| 1554 | * |
| 1555 | * We have two choices: look through the class method data, or look through |
| 1556 | * the global method_ids table. The former is awkward because the method |
| 1557 | * could have been defined in a superclass or interface. The latter works |
| 1558 | * out reasonably well because it's in sorted order, though we're still left |
| 1559 | * doing a fair number of string comparisons. |
| 1560 | */ |
| 1561 | static u4 getMethodIdx(const Method* method) |
| 1562 | { |
| 1563 | DexFile* pDexFile = method->clazz->pDvmDex->pDexFile; |
| 1564 | u4 hi = pDexFile->pHeader->methodIdsSize -1; |
| 1565 | u4 lo = 0; |
| 1566 | u4 cur; |
| 1567 | |
| 1568 | while (hi >= lo) { |
| 1569 | int cmp; |
| 1570 | cur = (lo + hi) / 2; |
| 1571 | |
| 1572 | cmp = compareMethodStr(pDexFile, cur, method); |
| 1573 | if (cmp < 0) { |
| 1574 | lo = cur + 1; |
| 1575 | } else if (cmp > 0) { |
| 1576 | hi = cur - 1; |
| 1577 | } else { |
| 1578 | break; |
| 1579 | } |
| 1580 | } |
| 1581 | |
| 1582 | if (hi < lo) { |
| 1583 | /* this should be impossible -- the method came out of this DEX */ |
| 1584 | char* desc = dexProtoCopyMethodDescriptor(&method->prototype); |
| 1585 | LOGE("Unable to find method %s.%s %s in DEX file!\n", |
| 1586 | method->clazz->descriptor, method->name, desc); |
| 1587 | free(desc); |
| 1588 | dvmAbort(); |
| 1589 | } |
| 1590 | |
| 1591 | return cur; |
| 1592 | } |
| 1593 | |
| 1594 | /* |
| 1595 | * Find the DexAnnotationSetItem for this method. |
| 1596 | * |
| 1597 | * Returns NULL if none found. |
| 1598 | */ |
| 1599 | static const DexAnnotationSetItem* findAnnotationSetForMethod( |
| 1600 | const Method* method) |
| 1601 | { |
| 1602 | ClassObject* clazz = method->clazz; |
| 1603 | DexFile* pDexFile; |
| 1604 | const DexAnnotationsDirectoryItem* pAnnoDir; |
| 1605 | const DexMethodAnnotationsItem* pMethodList; |
| 1606 | const DexAnnotationSetItem* pAnnoSet = NULL; |
| 1607 | |
| 1608 | if (clazz->pDvmDex == NULL) /* generated class (Proxy, array) */ |
| 1609 | return NULL; |
| 1610 | pDexFile = clazz->pDvmDex->pDexFile; |
| 1611 | |
| 1612 | pAnnoDir = getAnnoDirectory(pDexFile, clazz); |
| 1613 | if (pAnnoDir != NULL) { |
| 1614 | pMethodList = dexGetMethodAnnotations(pDexFile, pAnnoDir); |
| 1615 | if (pMethodList != NULL) { |
| 1616 | /* |
| 1617 | * Run through the list and find a matching method. We compare the |
| 1618 | * method ref indices in the annotation list with the method's DEX |
| 1619 | * method_idx value. |
| 1620 | * |
| 1621 | * TODO: use a binary search for long lists |
| 1622 | * |
| 1623 | * Alternate approach: for each entry in the annotations list, |
| 1624 | * find the method definition in the DEX file and perform string |
| 1625 | * comparisons on class name, method name, and signature. |
| 1626 | */ |
| 1627 | u4 methodIdx = getMethodIdx(method); |
| 1628 | u4 count = dexGetMethodAnnotationsSize(pDexFile, pAnnoDir); |
| 1629 | u4 idx; |
| 1630 | |
| 1631 | for (idx = 0; idx < count; idx++) { |
| 1632 | if (pMethodList[idx].methodIdx == methodIdx) { |
| 1633 | /* found! */ |
| 1634 | pAnnoSet = dexGetMethodAnnotationSetItem(pDexFile, |
| 1635 | &pMethodList[idx]); |
| 1636 | break; |
| 1637 | } |
| 1638 | } |
| 1639 | } |
| 1640 | } |
| 1641 | |
| 1642 | return pAnnoSet; |
| 1643 | } |
| 1644 | |
| 1645 | /* |
| 1646 | * Return an array of Annotation objects for the method. Returns an empty |
| 1647 | * array if there are no annotations. |
| 1648 | * |
| 1649 | * Caller must call dvmReleaseTrackedAlloc(). |
| 1650 | * |
| 1651 | * On allocation failure, this returns NULL with an exception raised. |
| 1652 | */ |
| 1653 | ArrayObject* dvmGetMethodAnnotations(const Method* method) |
| 1654 | { |
| 1655 | ClassObject* clazz = method->clazz; |
| 1656 | const DexAnnotationSetItem* pAnnoSet; |
| 1657 | ArrayObject* annoArray = NULL; |
| 1658 | |
| 1659 | pAnnoSet = findAnnotationSetForMethod(method); |
| 1660 | if (pAnnoSet == NULL) { |
| 1661 | /* no matching annotations found */ |
| 1662 | annoArray = emptyAnnoArray(); |
| 1663 | } else { |
| 1664 | annoArray = processAnnotationSet(clazz, pAnnoSet,kDexVisibilityRuntime); |
| 1665 | } |
| 1666 | |
| 1667 | return annoArray; |
| 1668 | } |
| 1669 | |
| 1670 | /* |
| 1671 | * Retrieve the Signature annotation, if any. Returns NULL if no signature |
| 1672 | * exists. |
| 1673 | * |
| 1674 | * Caller must call dvmReleaseTrackedAlloc(). |
| 1675 | */ |
| 1676 | ArrayObject* dvmGetMethodSignatureAnnotation(const Method* method) |
| 1677 | { |
| 1678 | ClassObject* clazz = method->clazz; |
| 1679 | const DexAnnotationSetItem* pAnnoSet; |
| 1680 | ArrayObject* signature = NULL; |
| 1681 | |
| 1682 | pAnnoSet = findAnnotationSetForMethod(method); |
| 1683 | if (pAnnoSet != NULL) |
| 1684 | signature = getSignatureValue(clazz, pAnnoSet); |
| 1685 | |
| 1686 | return signature; |
| 1687 | } |
| 1688 | |
| 1689 | /* |
| 1690 | * Extract an array of exception classes from the "system" annotation list |
| 1691 | * for this method. |
| 1692 | * |
| 1693 | * Caller must call dvmReleaseTrackedAlloc(). |
| 1694 | * |
| 1695 | * Returns NULL if we don't find any exceptions for this method. |
| 1696 | */ |
| 1697 | ArrayObject* dvmGetMethodThrows(const Method* method) |
| 1698 | { |
| 1699 | ClassObject* clazz = method->clazz; |
| 1700 | const DexAnnotationSetItem* pAnnoSet; |
| 1701 | const DexAnnotationItem* pAnnoItem; |
| 1702 | |
| 1703 | /* find the set for this method */ |
| 1704 | pAnnoSet = findAnnotationSetForMethod(method); |
| 1705 | if (pAnnoSet == NULL) |
| 1706 | return NULL; /* nothing for this method */ |
| 1707 | |
| 1708 | /* find the "Throws" annotation, if any */ |
| 1709 | pAnnoItem = searchAnnotationSet(clazz, pAnnoSet, kDescrThrows, |
| 1710 | kDexVisibilitySystem); |
| 1711 | if (pAnnoItem == NULL) |
| 1712 | return NULL; /* no Throws */ |
| 1713 | |
| 1714 | /* |
| 1715 | * The Throws annotation has one member, "Class[] value". |
| 1716 | */ |
| 1717 | Object* obj = getAnnotationValue(clazz, pAnnoItem, "value", |
| 1718 | kDexAnnotationArray, "Throws"); |
| 1719 | if (obj == GAV_FAILED) |
| 1720 | return NULL; |
| 1721 | assert(dvmIsArray((ArrayObject*)obj)); |
| 1722 | obj = convertReturnType(obj, gDvm.classJavaLangClassArray); |
| 1723 | return (ArrayObject*)obj; |
| 1724 | } |
| 1725 | |
| 1726 | /* |
| 1727 | * Given an Annotation's method, find the default value, if any. |
| 1728 | * |
| 1729 | * If this is a CLASS annotation, and we can't find a match for the |
| 1730 | * default class value, we need to throw a TypeNotPresentException. |
| 1731 | * |
| 1732 | * Caller must call dvmReleaseTrackedAlloc(). |
| 1733 | */ |
| 1734 | Object* dvmGetAnnotationDefaultValue(const Method* method) |
| 1735 | { |
| 1736 | const ClassObject* clazz = method->clazz; |
| 1737 | DexFile* pDexFile = clazz->pDvmDex->pDexFile; |
| 1738 | const DexAnnotationsDirectoryItem* pAnnoDir; |
| 1739 | const DexAnnotationSetItem* pAnnoSet = NULL; |
| 1740 | |
| 1741 | /* |
| 1742 | * The method's declaring class (the annotation) will have an |
| 1743 | * AnnotationDefault "system" annotation associated with it if any |
| 1744 | * of its methods have default values. Start by finding the |
| 1745 | * DexAnnotationItem associated with the class. |
| 1746 | */ |
| 1747 | pAnnoDir = getAnnoDirectory(pDexFile, clazz); |
| 1748 | if (pAnnoDir != NULL) |
| 1749 | pAnnoSet = dexGetClassAnnotationSet(pDexFile, pAnnoDir); |
| 1750 | if (pAnnoSet == NULL) { |
| 1751 | /* no annotations for anything in class, or no class annotations */ |
| 1752 | return NULL; |
| 1753 | } |
| 1754 | |
| 1755 | /* find the "AnnotationDefault" annotation, if any */ |
| 1756 | const DexAnnotationItem* pAnnoItem; |
| 1757 | pAnnoItem = searchAnnotationSet(clazz, pAnnoSet, kDescrAnnotationDefault, |
| 1758 | kDexVisibilitySystem); |
| 1759 | if (pAnnoItem == NULL) { |
| 1760 | /* no default values for any member in this annotation */ |
| 1761 | //printf("##### no default annotations for %s.%s\n", |
| 1762 | // method->clazz->descriptor, method->name); |
| 1763 | return NULL; |
| 1764 | } |
| 1765 | |
| 1766 | /* |
| 1767 | * The AnnotationDefault annotation has one member, "Annotation value". |
| 1768 | * We need to pull that out. |
| 1769 | */ |
| 1770 | const u1* ptr; |
| 1771 | ptr = searchEncodedAnnotation(clazz, pAnnoItem->annotation, "value"); |
| 1772 | if (ptr == NULL) { |
| 1773 | LOGW("AnnotationDefault annotation lacks 'value'\n"); |
| 1774 | return NULL; |
| 1775 | } |
| 1776 | if ((*ptr & kDexAnnotationValueTypeMask) != kDexAnnotationAnnotation) { |
| 1777 | LOGW("AnnotationDefault value has wrong type (0x%02x)\n", |
| 1778 | *ptr & kDexAnnotationValueTypeMask); |
| 1779 | return NULL; |
| 1780 | } |
| 1781 | |
| 1782 | /* |
| 1783 | * The value_type byte for VALUE_ANNOTATION is followed by |
| 1784 | * encoded_annotation data. We want to scan through it to find an |
| 1785 | * entry whose name matches our method name. |
| 1786 | */ |
| 1787 | ptr++; |
| 1788 | ptr = searchEncodedAnnotation(clazz, ptr, method->name); |
| 1789 | if (ptr == NULL) |
| 1790 | return NULL; /* no default annotation for this method */ |
| 1791 | |
| 1792 | /* got it, pull it out */ |
| 1793 | AnnotationValue avalue; |
| 1794 | if (!processAnnotationValue(clazz, &ptr, &avalue, kAllObjects)) { |
| 1795 | LOGD("processAnnotationValue failed on default for '%s'\n", |
| 1796 | method->name); |
| 1797 | return NULL; |
| 1798 | } |
| 1799 | |
| 1800 | /* convert the return type, if necessary */ |
| 1801 | ClassObject* methodReturn = dvmGetBoxedReturnType(method); |
| 1802 | Object* obj = avalue.value.l; |
| 1803 | obj = convertReturnType(obj, methodReturn); |
| 1804 | |
| 1805 | return obj; |
| 1806 | } |
| 1807 | |
| 1808 | |
| 1809 | /* |
| 1810 | * =========================================================================== |
| 1811 | * Field |
| 1812 | * =========================================================================== |
| 1813 | */ |
| 1814 | |
| 1815 | /* |
| 1816 | * Compare the attributes (class name, field name, field signature) of |
| 1817 | * the specified field to "field". |
| 1818 | */ |
| 1819 | static int compareFieldStr(DexFile* pDexFile, u4 idx, const Field* field) |
| 1820 | { |
| 1821 | const DexFieldId* pFieldId = dexGetFieldId(pDexFile, idx); |
| 1822 | const char* str = dexStringByTypeIdx(pDexFile, pFieldId->classIdx); |
| 1823 | int result = strcmp(str, field->clazz->descriptor); |
| 1824 | |
| 1825 | if (result == 0) { |
| 1826 | str = dexStringById(pDexFile, pFieldId->nameIdx); |
| 1827 | result = strcmp(str, field->name); |
| 1828 | if (result == 0) { |
| 1829 | str = dexStringByTypeIdx(pDexFile, pFieldId->typeIdx); |
| 1830 | result = strcmp(str, field->signature); |
| 1831 | } |
| 1832 | } |
| 1833 | |
| 1834 | return result; |
| 1835 | } |
| 1836 | |
| 1837 | /* |
| 1838 | * Given a field, determine the field's index. |
| 1839 | * |
| 1840 | * This has the same tradeoffs as getMethodIdx. |
| 1841 | */ |
| 1842 | static u4 getFieldIdx(const Field* field) |
| 1843 | { |
| 1844 | DexFile* pDexFile = field->clazz->pDvmDex->pDexFile; |
| 1845 | u4 hi = pDexFile->pHeader->fieldIdsSize -1; |
| 1846 | u4 lo = 0; |
| 1847 | u4 cur; |
| 1848 | |
| 1849 | while (hi >= lo) { |
| 1850 | int cmp; |
| 1851 | cur = (lo + hi) / 2; |
| 1852 | |
| 1853 | cmp = compareFieldStr(pDexFile, cur, field); |
| 1854 | if (cmp < 0) { |
| 1855 | lo = cur + 1; |
| 1856 | } else if (cmp > 0) { |
| 1857 | hi = cur - 1; |
| 1858 | } else { |
| 1859 | break; |
| 1860 | } |
| 1861 | } |
| 1862 | |
| 1863 | if (hi < lo) { |
| 1864 | /* this should be impossible -- the field came out of this DEX */ |
| 1865 | LOGE("Unable to find field %s.%s %s in DEX file!\n", |
| 1866 | field->clazz->descriptor, field->name, field->signature); |
| 1867 | dvmAbort(); |
| 1868 | } |
| 1869 | |
| 1870 | return cur; |
| 1871 | } |
| 1872 | |
| 1873 | /* |
| 1874 | * Find the DexAnnotationSetItem for this field. |
| 1875 | * |
| 1876 | * Returns NULL if none found. |
| 1877 | */ |
| 1878 | static const DexAnnotationSetItem* findAnnotationSetForField(const Field* field) |
| 1879 | { |
| 1880 | ClassObject* clazz = field->clazz; |
| 1881 | DexFile* pDexFile = clazz->pDvmDex->pDexFile; |
| 1882 | const DexAnnotationsDirectoryItem* pAnnoDir; |
| 1883 | const DexFieldAnnotationsItem* pFieldList; |
| 1884 | const DexAnnotationSetItem* pAnnoSet = NULL; |
| 1885 | |
| 1886 | pAnnoDir = getAnnoDirectory(pDexFile, clazz); |
| 1887 | if (pAnnoDir == NULL) |
| 1888 | return NULL; |
| 1889 | |
| 1890 | pFieldList = dexGetFieldAnnotations(pDexFile, pAnnoDir); |
| 1891 | if (pFieldList == NULL) |
| 1892 | return NULL; |
| 1893 | |
| 1894 | /* |
| 1895 | * Run through the list and find a matching field. We compare the |
| 1896 | * field ref indices in the annotation list with the field's DEX |
| 1897 | * field_idx value. |
| 1898 | * |
| 1899 | * TODO: use a binary search for long lists |
| 1900 | * |
| 1901 | * Alternate approach: for each entry in the annotations list, |
| 1902 | * find the field definition in the DEX file and perform string |
| 1903 | * comparisons on class name, field name, and signature. |
| 1904 | */ |
| 1905 | u4 fieldIdx = getFieldIdx(field); |
| 1906 | u4 count = dexGetFieldAnnotationsSize(pDexFile, pAnnoDir); |
| 1907 | u4 idx; |
| 1908 | |
| 1909 | for (idx = 0; idx < count; idx++) { |
| 1910 | if (pFieldList[idx].fieldIdx == fieldIdx) { |
| 1911 | /* found! */ |
| 1912 | return dexGetFieldAnnotationSetItem(pDexFile, &pFieldList[idx]); |
| 1913 | } |
| 1914 | } |
| 1915 | |
| 1916 | return NULL; |
| 1917 | } |
| 1918 | |
| 1919 | /* |
| 1920 | * Return an array of Annotation objects for the field. Returns an empty |
| 1921 | * array if there are no annotations. |
| 1922 | * |
| 1923 | * Caller must call dvmReleaseTrackedAlloc(). |
| 1924 | * |
| 1925 | * On allocation failure, this returns NULL with an exception raised. |
| 1926 | */ |
| 1927 | ArrayObject* dvmGetFieldAnnotations(const Field* field) |
| 1928 | { |
| 1929 | ClassObject* clazz = field->clazz; |
| 1930 | ArrayObject* annoArray = NULL; |
| 1931 | DexFile* pDexFile = clazz->pDvmDex->pDexFile; |
| 1932 | const DexAnnotationsDirectoryItem* pAnnoDir; |
| 1933 | const DexAnnotationSetItem* pAnnoSet = NULL; |
| 1934 | |
| 1935 | pAnnoSet = findAnnotationSetForField(field); |
| 1936 | if (pAnnoSet == NULL) { |
| 1937 | /* no matching annotations found */ |
| 1938 | annoArray = emptyAnnoArray(); |
| 1939 | } else { |
| 1940 | annoArray = processAnnotationSet(clazz, pAnnoSet, |
| 1941 | kDexVisibilityRuntime); |
| 1942 | } |
| 1943 | |
| 1944 | return annoArray; |
| 1945 | } |
| 1946 | |
| 1947 | /* |
| 1948 | * Retrieve the Signature annotation, if any. Returns NULL if no signature |
| 1949 | * exists. |
| 1950 | * |
| 1951 | * Caller must call dvmReleaseTrackedAlloc(). |
| 1952 | */ |
| 1953 | ArrayObject* dvmGetFieldSignatureAnnotation(const Field* field) |
| 1954 | { |
| 1955 | ClassObject* clazz = field->clazz; |
| 1956 | const DexAnnotationSetItem* pAnnoSet; |
| 1957 | ArrayObject* signature = NULL; |
| 1958 | |
| 1959 | pAnnoSet = findAnnotationSetForField(field); |
| 1960 | if (pAnnoSet != NULL) |
| 1961 | signature = getSignatureValue(clazz, pAnnoSet); |
| 1962 | |
| 1963 | return signature; |
| 1964 | } |
| 1965 | |
| 1966 | |
| 1967 | /* |
| 1968 | * =========================================================================== |
| 1969 | * Parameter |
| 1970 | * =========================================================================== |
| 1971 | */ |
| 1972 | |
| 1973 | /* |
| 1974 | * We have an annotation_set_ref_list, which is essentially a list of |
| 1975 | * entries that we pass to processAnnotationSet(). |
| 1976 | * |
| 1977 | * The returned object must be released with dvmReleaseTrackedAlloc. |
| 1978 | */ |
| 1979 | static ArrayObject* processAnnotationSetRefList(const ClassObject* clazz, |
| 1980 | const DexAnnotationSetRefList* pAnnoSetList, u4 count) |
| 1981 | { |
| 1982 | DexFile* pDexFile = clazz->pDvmDex->pDexFile; |
| 1983 | ArrayObject* annoArrayArray = NULL; |
| 1984 | ArrayObject** pContents; |
| 1985 | u4 idx; |
| 1986 | |
| 1987 | /* allocate an array of Annotation arrays to hold results */ |
| 1988 | annoArrayArray = dvmAllocArrayByClass( |
| 1989 | gDvm.classJavaLangAnnotationAnnotationArrayArray, count, ALLOC_DEFAULT); |
| 1990 | if (annoArrayArray == NULL) { |
| 1991 | LOGW("annotation set ref array alloc failed\n"); |
| 1992 | goto bail; |
| 1993 | } |
| 1994 | |
| 1995 | pContents = (ArrayObject**) annoArrayArray->contents; |
| 1996 | |
| 1997 | for (idx = 0; idx < count; idx++) { |
| 1998 | Thread* self = dvmThreadSelf(); |
| 1999 | const DexAnnotationSetRefItem* pItem; |
| 2000 | const DexAnnotationSetItem* pAnnoSet; |
| 2001 | |
| 2002 | pItem = dexGetParameterAnnotationSetRef(pAnnoSetList, idx); |
| 2003 | pAnnoSet = dexGetSetRefItemItem(pDexFile, pItem); |
| 2004 | *pContents = processAnnotationSet(clazz, pAnnoSet, |
| 2005 | kDexVisibilityRuntime); |
| 2006 | if (*pContents == NULL) { |
| 2007 | LOGW("processAnnotationSet failed\n"); |
| 2008 | annoArrayArray = NULL; |
| 2009 | goto bail; |
| 2010 | } |
| 2011 | dvmReleaseTrackedAlloc((Object*) *pContents, self); |
| 2012 | pContents++; |
| 2013 | } |
| 2014 | |
| 2015 | bail: |
| 2016 | return annoArrayArray; |
| 2017 | } |
| 2018 | |
| 2019 | /* |
| 2020 | * Find the DexAnnotationSetItem for this parameter. |
| 2021 | * |
| 2022 | * Returns NULL if none found. |
| 2023 | */ |
| 2024 | static const DexParameterAnnotationsItem* findAnnotationsItemForMethod( |
| 2025 | const Method* method) |
| 2026 | { |
| 2027 | ClassObject* clazz = method->clazz; |
| 2028 | DexFile* pDexFile; |
| 2029 | const DexAnnotationsDirectoryItem* pAnnoDir; |
| 2030 | const DexParameterAnnotationsItem* pParameterList; |
| 2031 | |
| 2032 | if (clazz->pDvmDex == NULL) /* generated class (Proxy, array) */ |
| 2033 | return NULL; |
| 2034 | |
| 2035 | pDexFile = clazz->pDvmDex->pDexFile; |
| 2036 | pAnnoDir = getAnnoDirectory(pDexFile, clazz); |
| 2037 | if (pAnnoDir == NULL) |
| 2038 | return NULL; |
| 2039 | |
| 2040 | pParameterList = dexGetParameterAnnotations(pDexFile, pAnnoDir); |
| 2041 | if (pParameterList == NULL) |
| 2042 | return NULL; |
| 2043 | |
| 2044 | /* |
| 2045 | * Run through the list and find a matching method. We compare the |
| 2046 | * method ref indices in the annotation list with the method's DEX |
| 2047 | * method_idx value. |
| 2048 | * |
| 2049 | * TODO: use a binary search for long lists |
| 2050 | * |
| 2051 | * Alternate approach: for each entry in the annotations list, |
| 2052 | * find the method definition in the DEX file and perform string |
| 2053 | * comparisons on class name, method name, and signature. |
| 2054 | */ |
| 2055 | u4 methodIdx = getMethodIdx(method); |
| 2056 | u4 count = dexGetParameterAnnotationsSize(pDexFile, pAnnoDir); |
| 2057 | u4 idx; |
| 2058 | |
| 2059 | for (idx = 0; idx < count; idx++) { |
| 2060 | if (pParameterList[idx].methodIdx == methodIdx) { |
| 2061 | /* found! */ |
| 2062 | return &pParameterList[idx]; |
| 2063 | } |
| 2064 | } |
| 2065 | |
| 2066 | return NULL; |
| 2067 | } |
| 2068 | |
| 2069 | |
| 2070 | /* |
| 2071 | * Count up the number of arguments the method takes. The "this" pointer |
| 2072 | * doesn't count. |
| 2073 | */ |
| 2074 | static int countMethodArguments(const Method* method) |
| 2075 | { |
| 2076 | /* method->shorty[0] is the return type */ |
| 2077 | return strlen(method->shorty + 1); |
| 2078 | } |
| 2079 | |
| 2080 | /* |
| 2081 | * Return an array of arrays of Annotation objects. The outer array has |
| 2082 | * one entry per method parameter, the inner array has the list of annotations |
| 2083 | * associated with that parameter. |
| 2084 | * |
| 2085 | * If the method has no parameters, we return an array of length zero. If |
| 2086 | * the method has one or more parameters, we return an array whose length |
| 2087 | * is equal to the number of parameters; if a given parameter does not have |
| 2088 | * an annotation, the corresponding entry will be null. |
| 2089 | * |
| 2090 | * Caller must call dvmReleaseTrackedAlloc(). |
| 2091 | */ |
| 2092 | ArrayObject* dvmGetParameterAnnotations(const Method* method) |
| 2093 | { |
| 2094 | ClassObject* clazz = method->clazz; |
| 2095 | const DexParameterAnnotationsItem* pItem; |
| 2096 | ArrayObject* annoArrayArray = NULL; |
| 2097 | |
| 2098 | pItem = findAnnotationsItemForMethod(method); |
| 2099 | if (pItem != NULL) { |
| 2100 | DexFile* pDexFile = clazz->pDvmDex->pDexFile; |
| 2101 | const DexAnnotationSetRefList* pAnnoSetList; |
| 2102 | u4 size; |
| 2103 | |
| 2104 | size = dexGetParameterAnnotationSetRefSize(pDexFile, pItem); |
| 2105 | pAnnoSetList = dexGetParameterAnnotationSetRefList(pDexFile, pItem); |
| 2106 | annoArrayArray = processAnnotationSetRefList(clazz, pAnnoSetList, size); |
| 2107 | } else { |
| 2108 | /* no matching annotations found */ |
| 2109 | annoArrayArray = emptyAnnoArrayArray(countMethodArguments(method)); |
| 2110 | } |
| 2111 | |
| 2112 | return annoArrayArray; |
| 2113 | } |
| 2114 | |
| 2115 | |
| 2116 | /* |
| 2117 | * =========================================================================== |
| 2118 | * DexEncodedArray interpretation |
| 2119 | * =========================================================================== |
| 2120 | */ |
| 2121 | |
| 2122 | /** |
| 2123 | * Initializes an encoded array iterator. |
| 2124 | * |
| 2125 | * @param iterator iterator to initialize |
| 2126 | * @param encodedArray encoded array to iterate over |
| 2127 | * @param clazz class to use when resolving strings and types |
| 2128 | */ |
| 2129 | void dvmEncodedArrayIteratorInitialize(EncodedArrayIterator* iterator, |
| 2130 | const DexEncodedArray* encodedArray, const ClassObject* clazz) { |
| 2131 | iterator->encodedArray = encodedArray; |
| 2132 | iterator->cursor = encodedArray->array; |
| 2133 | iterator->size = readUleb128(&iterator->cursor); |
| 2134 | iterator->elementsLeft = iterator->size; |
| 2135 | iterator->clazz = clazz; |
| 2136 | } |
| 2137 | |
| 2138 | /** |
| 2139 | * Returns whether there are more elements to be read. |
| 2140 | */ |
| 2141 | bool dvmEncodedArrayIteratorHasNext(const EncodedArrayIterator* iterator) { |
| 2142 | return (iterator->elementsLeft != 0); |
| 2143 | } |
| 2144 | |
| 2145 | /** |
| 2146 | * Returns the next decoded value from the iterator, advancing its |
| 2147 | * cursor. This returns primitive values in their corresponding union |
| 2148 | * slots, and returns everything else (including nulls) as object |
| 2149 | * references in the "l" union slot. |
| 2150 | * |
| 2151 | * The caller must call dvmReleaseTrackedAlloc() on any returned reference. |
| 2152 | * |
| 2153 | * @param value pointer to store decoded value into |
| 2154 | * @returns true if a value was decoded and the cursor advanced; false if |
| 2155 | * the last value had already been decoded or if there was a problem decoding |
| 2156 | */ |
| 2157 | bool dvmEncodedArrayIteratorGetNext(EncodedArrayIterator* iterator, |
| 2158 | AnnotationValue* value) { |
| 2159 | bool processed; |
| 2160 | |
| 2161 | if (iterator->elementsLeft == 0) { |
| 2162 | return false; |
| 2163 | } |
| 2164 | |
| 2165 | processed = processAnnotationValue(iterator->clazz, &iterator->cursor, |
| 2166 | value, kPrimitivesOrObjects); |
| 2167 | |
| 2168 | if (! processed) { |
| 2169 | LOGE("Failed to process array element %d from %p", |
| 2170 | iterator->size - iterator->elementsLeft, |
| 2171 | iterator->encodedArray); |
| 2172 | iterator->elementsLeft = 0; |
| 2173 | return false; |
| 2174 | } |
| 2175 | |
| 2176 | iterator->elementsLeft--; |
| 2177 | return true; |
| 2178 | } |
| 2179 | |