ArrayMetadata.cpp 27 KB

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  1. #include "il2cpp-config.h"
  2. #include "il2cpp-runtime-stats.h"
  3. #include "os/Mutex.h"
  4. #include "vm/Class.h"
  5. #include "vm/GenericClass.h"
  6. #include "vm/Image.h"
  7. #include "vm/MetadataLock.h"
  8. #include "vm/Method.h"
  9. #include "vm/Type.h"
  10. #include "metadata/ArrayMetadata.h"
  11. #include "metadata/GenericMetadata.h"
  12. #include "metadata/GenericMethod.h"
  13. #include "metadata/Il2CppGenericClassHash.h"
  14. #include "metadata/Il2CppGenericClassCompare.h"
  15. #include "metadata/Il2CppGenericInstCompare.h"
  16. #include "metadata/Il2CppGenericInstHash.h"
  17. #include "metadata/Il2CppTypeCompare.h"
  18. #include "metadata/Il2CppTypeHash.h"
  19. #include "vm/MetadataAlloc.h"
  20. #include "vm/MetadataCache.h"
  21. #include "vm/Runtime.h"
  22. #include "utils/Memory.h"
  23. #include "utils/Il2CppHashMap.h"
  24. #include "utils/StringUtils.h"
  25. #include "il2cpp-class-internals.h"
  26. #include "il2cpp-tabledefs.h"
  27. #include <vector>
  28. #include <limits>
  29. using namespace il2cpp::vm;
  30. using il2cpp::os::FastAutoLock;
  31. using il2cpp::utils::StringUtils;
  32. using il2cpp::vm::MetadataCache;
  33. using il2cpp::vm::MetadataCalloc;
  34. using il2cpp::vm::MetadataMalloc;
  35. using std::vector;
  36. using std::pair;
  37. const size_t kImplicitArrayInterfaceCount = 5;
  38. namespace il2cpp
  39. {
  40. namespace metadata
  41. {
  42. static const char* GetArrayName(const char* elementClassName, uint32_t rank, bool bounded)
  43. {
  44. std::string name;
  45. name += elementClassName;
  46. name += "[";
  47. for (uint32_t i = 1; i < rank; i++)
  48. name += ",";
  49. if (bounded)
  50. name += "*";
  51. name += "]";
  52. return StringUtils::StringDuplicate(name.c_str());
  53. }
  54. static MethodInfo* ConstructArrayMethod(Il2CppClass* declaringType, const char* name, const Il2CppType* returnType, uint8_t parameterCount, const Il2CppType** parameterTypes)
  55. {
  56. MethodInfo* method = (MethodInfo*)MetadataCalloc(1, sizeof(MethodInfo));
  57. method->klass = declaringType;
  58. method->flags = METHOD_ATTRIBUTE_PUBLIC;
  59. method->iflags = METHOD_IMPL_ATTRIBUTE_INTERNAL_CALL;
  60. method->name = name;
  61. method->slot = kInvalidIl2CppMethodSlot;
  62. method->return_type = returnType;
  63. method->parameters_count = parameterCount;
  64. const Il2CppType** parameters = (const Il2CppType**)MetadataCalloc(parameterCount, sizeof(Il2CppType*));
  65. for (uint8_t i = 0; i < parameterCount; i++)
  66. {
  67. parameters[i] = parameterTypes[i];
  68. }
  69. method->parameters = parameters;
  70. if (!strcmp(".ctor", name))
  71. {
  72. method->flags |= METHOD_ATTRIBUTE_RT_SPECIAL_NAME | METHOD_ATTRIBUTE_SPECIAL_NAME;
  73. }
  74. else
  75. {
  76. method->iflags |= METHOD_IMPL_ATTRIBUTE_RUNTIME;
  77. }
  78. ++il2cpp_runtime_stats.method_count;
  79. return method;
  80. }
  81. struct GenericArrayMethod
  82. {
  83. const char* name;
  84. const MethodInfo* method;
  85. const MethodInfo* interfaceMethodDefinition;
  86. };
  87. typedef vector<GenericArrayMethod> GenericArrayMethods;
  88. static GenericArrayMethods s_GenericArrayMethods;
  89. static size_t GetArrayGenericMethodsCount();
  90. static void PopulateArrayGenericMethods(Il2CppClass* klass, uint16_t offset);
  91. static void CollectImplicitArrayInterfaces(Il2CppClass* elementClass, ::std::vector<Il2CppClass*>& interfaces);
  92. static void SetupArrayMethods(Il2CppClass* arrayClass)
  93. {
  94. size_t methodIndex = 0;
  95. uint8_t rank = arrayClass->rank;
  96. ::std::vector<Il2CppClass*> interfaces;
  97. CollectImplicitArrayInterfaces(arrayClass, interfaces);
  98. size_t methodCount = 3 + (rank > 1 ? 2 : 1) + interfaces.size() * GetArrayGenericMethodsCount();
  99. IL2CPP_ASSERT(methodCount <= std::numeric_limits<uint16_t>::max());
  100. arrayClass->method_count = static_cast<uint16_t>(methodCount);
  101. arrayClass->methods = (const MethodInfo**)MetadataCalloc(methodCount, sizeof(MethodInfo*));
  102. const Il2CppType** parameters = (const Il2CppType**)alloca(rank * sizeof(Il2CppType*));
  103. for (uint8_t i = 0; i < rank; i++)
  104. parameters[i] = &il2cpp_defaults.int32_class->byval_arg;
  105. arrayClass->methods[methodIndex++] = ConstructArrayMethod(arrayClass, ".ctor", &il2cpp_defaults.void_class->byval_arg, rank, parameters);
  106. if (rank > 1)
  107. {
  108. parameters = (const Il2CppType**)alloca(2 * rank * sizeof(Il2CppType*));
  109. for (uint8_t i = 0; i < 2 * rank; i++)
  110. parameters[i] = &il2cpp_defaults.int32_class->byval_arg;
  111. arrayClass->methods[methodIndex++] = ConstructArrayMethod(arrayClass, ".ctor", &il2cpp_defaults.void_class->byval_arg, 2 * rank, parameters);
  112. }
  113. parameters = (const Il2CppType**)alloca((rank + 1) * sizeof(Il2CppType*));
  114. for (uint8_t i = 0; i < rank; i++)
  115. parameters[i] = &il2cpp_defaults.int32_class->byval_arg;
  116. parameters[rank] = &arrayClass->element_class->byval_arg;
  117. arrayClass->methods[methodIndex++] = ConstructArrayMethod(arrayClass, "Set", &il2cpp_defaults.void_class->byval_arg, rank + 1, parameters);
  118. parameters = (const Il2CppType**)alloca(rank * sizeof(Il2CppType*));
  119. for (uint8_t i = 0; i < rank; i++)
  120. parameters[i] = &il2cpp_defaults.int32_class->byval_arg;
  121. arrayClass->methods[methodIndex++] = ConstructArrayMethod(arrayClass, "Address", &arrayClass->element_class->this_arg, rank, parameters);
  122. parameters = (const Il2CppType**)alloca(rank * sizeof(Il2CppType*));
  123. for (uint8_t i = 0; i < rank; i++)
  124. parameters[i] = &il2cpp_defaults.int32_class->byval_arg;
  125. arrayClass->methods[methodIndex++] = ConstructArrayMethod(arrayClass, "Get", &arrayClass->element_class->byval_arg, rank, parameters);
  126. IL2CPP_ASSERT(methodIndex <= std::numeric_limits<uint16_t>::max());
  127. PopulateArrayGenericMethods(arrayClass, static_cast<uint16_t>(methodIndex));
  128. }
  129. static void CollectImplicitArrayInterfacesFromElementClass(Il2CppClass* elementClass, ::std::vector<Il2CppClass*>& interfaces)
  130. {
  131. while (elementClass != NULL)
  132. {
  133. interfaces.push_back(elementClass);
  134. if (!elementClass->byval_arg.valuetype && elementClass != il2cpp_defaults.value_type_class && elementClass != il2cpp_defaults.enum_class)
  135. {
  136. void* iter = NULL;
  137. while (Il2CppClass* itf = Class::GetInterfaces(elementClass, &iter))
  138. interfaces.push_back(itf);
  139. }
  140. if (elementClass->rank == 1)
  141. {
  142. ::std::vector<Il2CppClass*> elementInterfaces;
  143. CollectImplicitArrayInterfacesFromElementClass(elementClass->element_class, elementInterfaces);
  144. for (::std::vector<Il2CppClass*>::iterator iter = elementInterfaces.begin(); iter != elementInterfaces.end(); ++iter)
  145. {
  146. const Il2CppType* genericArgument = &(*iter)->byval_arg;
  147. interfaces.push_back(Class::GetInflatedGenericInstanceClass(il2cpp_defaults.generic_ilist_class, &genericArgument, 1));
  148. interfaces.push_back(Class::GetInflatedGenericInstanceClass(il2cpp_defaults.generic_icollection_class, &genericArgument, 1));
  149. interfaces.push_back(Class::GetInflatedGenericInstanceClass(il2cpp_defaults.generic_ienumerable_class, &genericArgument, 1));
  150. interfaces.push_back(Class::GetInflatedGenericInstanceClass(il2cpp_defaults.generic_ireadonlylist_class, &genericArgument, 1));
  151. interfaces.push_back(Class::GetInflatedGenericInstanceClass(il2cpp_defaults.generic_ireadonlycollection_class, &genericArgument, 1));
  152. }
  153. }
  154. elementClass = Class::GetParent(elementClass);
  155. if (elementClass != NULL && (elementClass->byval_arg.valuetype || elementClass == il2cpp_defaults.value_type_class || elementClass == il2cpp_defaults.enum_class))
  156. break;
  157. }
  158. }
  159. static void CollectImplicitArrayInterfaces(Il2CppClass* arrayClass, ::std::vector<Il2CppClass*>& interfaces)
  160. {
  161. if (arrayClass->byval_arg.type != IL2CPP_TYPE_SZARRAY)
  162. return;
  163. CollectImplicitArrayInterfacesFromElementClass(arrayClass->element_class, interfaces);
  164. }
  165. // note assuming list is ordered as IList, ICollection, IEnumerable
  166. static void CollectGenericArrayMethods()
  167. {
  168. const size_t kNumGenericArrayMethods = 13;
  169. s_GenericArrayMethods.reserve(kNumGenericArrayMethods);
  170. void* iter = NULL;
  171. while (const MethodInfo* method = Class::GetMethods(il2cpp_defaults.array_class, &iter))
  172. {
  173. if (strncmp(method->name, "InternalArray__", 15))
  174. continue;
  175. std::string name;
  176. std::string methodName;
  177. Il2CppClass* implementingInterface = NULL;
  178. if (!strncmp(method->name, "InternalArray__ICollection_", 27))
  179. {
  180. implementingInterface = il2cpp_defaults.generic_icollection_class;
  181. methodName = method->name + 27;
  182. name = StringUtils::Printf("System.Collections.Generic.ICollection`1.%s", method->name + 27);
  183. }
  184. else if (!strncmp(method->name, "InternalArray__IEnumerable_", 27))
  185. {
  186. implementingInterface = il2cpp_defaults.generic_ienumerable_class;
  187. methodName = method->name + 27;
  188. name = StringUtils::Printf("System.Collections.Generic.IEnumerable`1.%s", method->name + 27);
  189. }
  190. else if (!strncmp(method->name, "InternalArray__IReadOnlyList_", 29))
  191. {
  192. implementingInterface = il2cpp_defaults.generic_ireadonlylist_class;
  193. methodName = method->name + 29;
  194. name = StringUtils::Printf("System.Collections.Generic.IReadOnlyList`1.%s", method->name + 29);
  195. }
  196. else if (!strncmp(method->name, "InternalArray__IReadOnlyCollection_", 35))
  197. {
  198. implementingInterface = il2cpp_defaults.generic_ireadonlycollection_class;
  199. methodName = method->name + 35;
  200. name = StringUtils::Printf("System.Collections.Generic.IReadOnlyCollection`1.%s", method->name + 35);
  201. }
  202. else
  203. {
  204. implementingInterface = il2cpp_defaults.generic_ilist_class;
  205. methodName = method->name + 15;
  206. name = StringUtils::Printf("System.Collections.Generic.IList`1.%s", method->name + 15);
  207. }
  208. Class::Init(implementingInterface);
  209. const MethodInfo* matchingInterfacesMethod = NULL;
  210. for (int methodIndex = 0; methodIndex < implementingInterface->method_count; methodIndex++)
  211. {
  212. const MethodInfo* interfaceMethod = implementingInterface->methods[methodIndex];
  213. if (methodName == interfaceMethod->name)
  214. matchingInterfacesMethod = interfaceMethod;
  215. }
  216. if (matchingInterfacesMethod != NULL)
  217. {
  218. GenericArrayMethod genericArrayMethod = { StringUtils::StringDuplicate(name.c_str()), method, matchingInterfacesMethod };
  219. s_GenericArrayMethods.push_back(genericArrayMethod);
  220. }
  221. }
  222. }
  223. static size_t GetArrayGenericMethodsCount()
  224. {
  225. if (s_GenericArrayMethods.size() == 0)
  226. CollectGenericArrayMethods();
  227. return s_GenericArrayMethods.size();
  228. }
  229. static MethodInfo* ConstructGenericArrayMethod(const GenericArrayMethod& genericArrayMethod, Il2CppClass* klass, Il2CppGenericContext* context)
  230. {
  231. MethodInfo* inflatedMethod;
  232. if (genericArrayMethod.method->is_generic)
  233. {
  234. inflatedMethod = GenericMethod::AllocateNewMethodInfo(genericArrayMethod.method, context->class_inst, context->method_inst);
  235. }
  236. else
  237. {
  238. inflatedMethod = (MethodInfo*)MetadataCalloc(1, sizeof(MethodInfo));
  239. memcpy(inflatedMethod, genericArrayMethod.method, sizeof(MethodInfo));
  240. }
  241. inflatedMethod->name = genericArrayMethod.name;
  242. // The array methods are owned by the specific array instance, but they do not exist in metadata
  243. // Ensure that the metadata token is zero (and not copied from the method definition) so any
  244. // metadata lookup (e.g. custom attributes) will not find anything
  245. inflatedMethod->klass = klass;
  246. // ==={{ modify by HybridCLR
  247. // 补充元数据需要这个token
  248. // inflatedMethod->token = 0;
  249. inflatedMethod->token = genericArrayMethod.method->token;
  250. // ===}}
  251. return inflatedMethod;
  252. }
  253. static void PopulateArrayGenericMethods(Il2CppClass* klass, uint16_t offset)
  254. {
  255. for (int i = 0; i < klass->interface_offsets_count; i++)
  256. {
  257. Il2CppClass* interfaceType = klass->interfaceOffsets[i].interfaceType;
  258. if (!interfaceType->generic_class)
  259. continue;
  260. Il2CppClass* interfaceDefinition = GenericClass::GetTypeDefinition(interfaceType->generic_class);
  261. Il2CppGenericContext context = { 0 };
  262. context.method_inst = MetadataCache::GetGenericInst(&interfaceType->generic_class->context.class_inst->type_argv[0], 1);
  263. for (GenericArrayMethods::const_iterator iter = s_GenericArrayMethods.begin(); iter != s_GenericArrayMethods.end(); ++iter)
  264. {
  265. if (iter->interfaceMethodDefinition->klass != interfaceDefinition)
  266. continue;
  267. MethodInfo* arrayMethod = ConstructGenericArrayMethod(*iter, klass, &context);
  268. klass->methods[offset++] = arrayMethod;
  269. size_t vtableIndex = klass->interfaceOffsets[i].offset + iter->interfaceMethodDefinition->slot;
  270. klass->vtable[vtableIndex].method = arrayMethod;
  271. klass->vtable[vtableIndex].methodPtr = il2cpp::vm::Method::GetVirtualCallMethodPointer(arrayMethod);
  272. }
  273. }
  274. }
  275. static void SetupArrayVTableAndInterfaceOffsets(Il2CppClass* klass)
  276. {
  277. Il2CppClass* arrayClass = Class::GetParent(klass);
  278. size_t arrayInterfacesCount = arrayClass->interface_offsets_count;
  279. ::std::vector<Il2CppClass*> interfaces;
  280. if (klass->byval_arg.type == IL2CPP_TYPE_SZARRAY)
  281. {
  282. CollectImplicitArrayInterfaces(klass, interfaces);
  283. }
  284. Il2CppRuntimeInterfaceOffsetPair* newInterfaceOffsets = (Il2CppRuntimeInterfaceOffsetPair*)MetadataMalloc((arrayInterfacesCount + kImplicitArrayInterfaceCount * interfaces.size()) * sizeof(Il2CppRuntimeInterfaceOffsetPair));
  285. memcpy(newInterfaceOffsets, arrayClass->interfaceOffsets, (arrayInterfacesCount) * sizeof(Il2CppRuntimeInterfaceOffsetPair));
  286. int32_t arrayVTableSlot = arrayClass->vtable_count;
  287. size_t slots = arrayVTableSlot + interfaces.size() * (il2cpp_defaults.generic_ilist_class->method_count + il2cpp_defaults.generic_icollection_class->method_count + il2cpp_defaults.generic_ienumerable_class->method_count);
  288. slots += interfaces.size() * (il2cpp_defaults.generic_ireadonlylist_class->method_count + il2cpp_defaults.generic_ireadonlycollection_class->method_count);
  289. memcpy(klass->vtable, arrayClass->vtable, arrayVTableSlot * sizeof(VirtualInvokeData));
  290. size_t index = arrayInterfacesCount;
  291. int32_t vtableSlot = arrayVTableSlot;
  292. for (::std::vector<Il2CppClass*>::iterator iter = interfaces.begin(); iter != interfaces.end(); iter++, index += kImplicitArrayInterfaceCount)
  293. {
  294. const Il2CppType* genericArgument = &(*iter)->byval_arg;
  295. newInterfaceOffsets[index].interfaceType = Class::GetInflatedGenericInstanceClass(il2cpp_defaults.generic_ilist_class, &genericArgument, 1);
  296. newInterfaceOffsets[index].offset = vtableSlot;
  297. vtableSlot += newInterfaceOffsets[index].interfaceType->method_count;
  298. newInterfaceOffsets[index + 1].interfaceType = Class::GetInflatedGenericInstanceClass(il2cpp_defaults.generic_icollection_class, &genericArgument, 1);
  299. newInterfaceOffsets[index + 1].offset = vtableSlot;
  300. vtableSlot += newInterfaceOffsets[index + 1].interfaceType->method_count;
  301. newInterfaceOffsets[index + 2].interfaceType = Class::GetInflatedGenericInstanceClass(il2cpp_defaults.generic_ienumerable_class, &genericArgument, 1);
  302. newInterfaceOffsets[index + 2].offset = vtableSlot;
  303. vtableSlot += newInterfaceOffsets[index + 2].interfaceType->method_count;
  304. newInterfaceOffsets[index + 3].interfaceType = Class::GetInflatedGenericInstanceClass(il2cpp_defaults.generic_ireadonlylist_class, &genericArgument, 1);
  305. newInterfaceOffsets[index + 3].offset = vtableSlot;
  306. vtableSlot += newInterfaceOffsets[index + 3].interfaceType->method_count;
  307. newInterfaceOffsets[index + 4].interfaceType = Class::GetInflatedGenericInstanceClass(il2cpp_defaults.generic_ireadonlycollection_class, &genericArgument, 1);
  308. newInterfaceOffsets[index + 4].offset = vtableSlot;
  309. vtableSlot += newInterfaceOffsets[index + 4].interfaceType->method_count;
  310. }
  311. size_t interfaceOffsetsCount = arrayInterfacesCount + kImplicitArrayInterfaceCount * interfaces.size();
  312. IL2CPP_ASSERT(interfaceOffsetsCount <= std::numeric_limits<uint16_t>::max());
  313. klass->interface_offsets_count = static_cast<uint16_t>(interfaceOffsetsCount);
  314. klass->interfaceOffsets = newInterfaceOffsets;
  315. }
  316. void SetupCastClass(Il2CppClass *arrayType)
  317. {
  318. Il2CppClass *elementType = arrayType->element_class;
  319. arrayType->castClass = ArrayMetadata::GetArrayVarianceReducedType(elementType);
  320. arrayType->has_references = Type::IsReference(&elementType->byval_arg) || elementType->has_references;
  321. }
  322. void ArrayMetadata::SetupArrayInterfaces(Il2CppClass* klass, const FastAutoLock& lock)
  323. {
  324. if (klass->byval_arg.type == IL2CPP_TYPE_SZARRAY)
  325. {
  326. IL2CPP_ASSERT(klass->implementedInterfaces == NULL);
  327. const Il2CppType* genericArguments = &klass->element_class->byval_arg;
  328. IL2CPP_ASSERT(klass->interfaces_count == kImplicitArrayInterfaceCount);
  329. klass->implementedInterfaces = (Il2CppClass**)MetadataMalloc(klass->interfaces_count * sizeof(Il2CppClass*));
  330. klass->implementedInterfaces[0] = Class::GetInflatedGenericInstanceClass(il2cpp_defaults.generic_ilist_class, &genericArguments, 1);
  331. IL2CPP_ASSERT(klass->implementedInterfaces[0]);
  332. klass->implementedInterfaces[1] = Class::GetInflatedGenericInstanceClass(il2cpp_defaults.generic_icollection_class, &genericArguments, 1);
  333. IL2CPP_ASSERT(klass->implementedInterfaces[1]);
  334. klass->implementedInterfaces[2] = Class::GetInflatedGenericInstanceClass(il2cpp_defaults.generic_ienumerable_class, &genericArguments, 1);
  335. IL2CPP_ASSERT(klass->implementedInterfaces[2]);
  336. klass->implementedInterfaces[3] = Class::GetInflatedGenericInstanceClass(il2cpp_defaults.generic_ireadonlylist_class, &genericArguments, 1);
  337. IL2CPP_ASSERT(klass->implementedInterfaces[3]);
  338. klass->implementedInterfaces[4] = Class::GetInflatedGenericInstanceClass(il2cpp_defaults.generic_ireadonlycollection_class, &genericArguments, 1);
  339. IL2CPP_ASSERT(klass->implementedInterfaces[4]);
  340. }
  341. }
  342. void ArrayMetadata::SetupArrayVTable(Il2CppClass* klass, const FastAutoLock& lock)
  343. {
  344. // we assume we are being called as part of Class::Init and that the element class has already been initialized
  345. IL2CPP_ASSERT(klass->element_class->initialized);
  346. SetupCastClass(klass);
  347. SetupArrayVTableAndInterfaceOffsets(klass);
  348. SetupArrayMethods(klass);
  349. }
  350. struct SZArrayClassHash
  351. {
  352. size_t operator()(const Il2CppClass* arrayClass) const
  353. {
  354. return Il2CppTypeHash::Hash(&arrayClass->byval_arg);
  355. }
  356. };
  357. struct SZArrayClassCompare
  358. {
  359. bool operator()(const Il2CppClass* arrayClass1, const Il2CppClass* arrayClass2) const
  360. {
  361. return Il2CppTypeEqualityComparer::AreEqual(&arrayClass1->byval_arg, &arrayClass2->byval_arg);
  362. }
  363. };
  364. struct ArrayClassHash
  365. {
  366. size_t operator()(const std::pair<Il2CppClass*, uint32_t>& arrayClass) const
  367. {
  368. return Il2CppTypeHash::Hash(&arrayClass.first->byval_arg) * arrayClass.second;
  369. }
  370. };
  371. struct ArrayClassCompare
  372. {
  373. bool operator()(const std::pair<Il2CppClass*, uint32_t>& arrayClass1, const std::pair<Il2CppClass*, uint32_t>& arrayClass2) const
  374. {
  375. return Il2CppTypeEqualityComparer::AreEqual(&arrayClass1.first->byval_arg, &arrayClass2.first->byval_arg) && arrayClass1.second == arrayClass2.second;
  376. }
  377. };
  378. typedef Il2CppReaderWriterLockedHashMap<Il2CppClass*, Il2CppClass*, SZArrayClassHash, SZArrayClassCompare> SZArrayClassMap;
  379. typedef Il2CppReaderWriterLockedHashMap<std::pair<Il2CppClass*, uint32_t>, Il2CppClass*, ArrayClassHash, ArrayClassCompare> ArrayClassMap;
  380. SZArrayClassMap s_SZArrayClassMap;
  381. ArrayClassMap s_ArrayClassMap;
  382. void ArrayMetadata::Clear()
  383. {
  384. s_SZArrayClassMap.Clear();
  385. s_ArrayClassMap.Clear();
  386. for (auto genericArrayMethod : s_GenericArrayMethods)
  387. IL2CPP_FREE((void*)genericArrayMethod.name);
  388. s_GenericArrayMethods.clear();
  389. }
  390. static Il2CppClass* FindBoundedArrayClass(Il2CppClass* elementClass, uint32_t rank, bool bounded)
  391. {
  392. Il2CppClass* arrayClass = NULL;
  393. if (rank > 1 || bounded)
  394. {
  395. if (s_ArrayClassMap.TryGet(std::make_pair(elementClass, rank), &arrayClass))
  396. return arrayClass;
  397. }
  398. else
  399. {
  400. if (s_SZArrayClassMap.TryGet(elementClass, &arrayClass))
  401. return arrayClass;
  402. }
  403. return NULL;
  404. }
  405. Il2CppClass* ArrayMetadata::GetBoundedArrayClass(Il2CppClass* elementClass, uint32_t rank, bool bounded)
  406. {
  407. IL2CPP_ASSERT(rank <= 255);
  408. if (rank > 1)
  409. bounded = false;
  410. // Check for a cached array class using the reader lock only
  411. Il2CppClass* cachedArrayClass = FindBoundedArrayClass(elementClass, rank, bounded);
  412. if (cachedArrayClass != NULL)
  413. return cachedArrayClass;
  414. FastAutoLock lock(&il2cpp::vm::g_MetadataLock);
  415. // Check if the array class was created while we were waiting for the g_MetadataLock
  416. cachedArrayClass = FindBoundedArrayClass(elementClass, rank, bounded);
  417. if (cachedArrayClass != NULL)
  418. return cachedArrayClass;
  419. Il2CppClass* arrayClass = il2cpp_defaults.array_class;
  420. Class::Init(arrayClass);
  421. //count number of virtual call slots for array class
  422. ::std::vector<Il2CppClass*> interfaces;
  423. if (rank <= 1 && !bounded)
  424. CollectImplicitArrayInterfacesFromElementClass(elementClass, interfaces);
  425. size_t slots = arrayClass->vtable_count + interfaces.size() * (il2cpp_defaults.generic_ilist_class->method_count + il2cpp_defaults.generic_icollection_class->method_count + il2cpp_defaults.generic_ienumerable_class->method_count);
  426. slots += interfaces.size() * (il2cpp_defaults.generic_ireadonlylist_class->method_count + il2cpp_defaults.generic_ireadonlycollection_class->method_count);
  427. Il2CppClass* klass = (Il2CppClass*)MetadataCalloc(1, sizeof(Il2CppClass) + (slots * sizeof(VirtualInvokeData)));
  428. klass->klass = klass;
  429. klass->image = elementClass->image;
  430. // can share the const char* since it's immutable
  431. klass->namespaze = elementClass->namespaze;
  432. klass->name = GetArrayName(elementClass->name, rank, bounded);
  433. klass->parent = il2cpp_defaults.array_class;
  434. klass->flags = TYPE_ATTRIBUTE_AUTO_LAYOUT | TYPE_ATTRIBUTE_ANSI_CLASS | TYPE_ATTRIBUTE_CLASS | TYPE_ATTRIBUTE_PUBLIC | TYPE_ATTRIBUTE_SEALED | TYPE_ATTRIBUTE_SERIALIZABLE;
  435. klass->rank = rank;
  436. klass->instance_size = Class::GetInstanceSize(arrayClass);
  437. klass->vtable_count = static_cast<uint16_t>(slots);
  438. // need this before we access the size or has_references
  439. Class::SetupFields(elementClass);
  440. klass->element_size = Class::GetArrayElementSize(elementClass);
  441. klass->native_size = klass->thread_static_fields_offset = -1;
  442. klass->has_references = Type::IsReference(&elementClass->byval_arg) || elementClass->has_references;
  443. klass->size_inited = true; // set only after instance_size and has_references are set
  444. klass->element_class = elementClass;
  445. SetupCastClass(klass);
  446. if (rank > 1 || bounded)
  447. {
  448. Il2CppArrayType *at = (Il2CppArrayType*)MetadataCalloc(1, sizeof(Il2CppArrayType));
  449. klass->byval_arg.type = IL2CPP_TYPE_ARRAY;
  450. klass->byval_arg.data.array = at;
  451. at->etype = &elementClass->byval_arg;
  452. at->rank = rank;
  453. }
  454. else
  455. {
  456. klass->byval_arg.type = IL2CPP_TYPE_SZARRAY;
  457. klass->byval_arg.data.type = &elementClass->byval_arg;
  458. }
  459. klass->this_arg = klass->byval_arg;
  460. klass->this_arg.byref = 1;
  461. if (rank > 1 || bounded)
  462. {
  463. klass->interfaces_count = 0;
  464. }
  465. else
  466. {
  467. klass->interfaces_count = kImplicitArrayInterfaceCount;
  468. }
  469. klass->interopData = MetadataCache::GetInteropDataForType(&klass->byval_arg);
  470. // Insert the new array class while still holding the g_MetadataLock
  471. // This ensures that the class is only added once
  472. // And WalkSZArrays and WalkArrays (see below) only take the g_MetadataLock and assume that the maps won't be changed
  473. // It's not safe to take the reader/writer lock there because those locks aren't re-entrant and those methods take
  474. // call backs that call arbitrary code
  475. if (rank > 1 || bounded)
  476. s_ArrayClassMap.Add(ArrayClassMap::key_type(std::make_pair(klass->element_class, klass->rank)), klass);
  477. else
  478. s_SZArrayClassMap.Add(klass->element_class, klass);
  479. return klass;
  480. }
  481. void ArrayMetadata::WalkSZArrays(ArrayTypeWalkCallback callback, void* context)
  482. {
  483. FastAutoLock lock(&il2cpp::vm::g_MetadataLock);
  484. for (SZArrayClassMap::iterator it = s_SZArrayClassMap.UnlockedBegin(); it != s_SZArrayClassMap.UnlockedEnd(); it++)
  485. {
  486. callback(it->second, context);
  487. }
  488. }
  489. void ArrayMetadata::WalkArrays(ArrayTypeWalkCallback callback, void* context)
  490. {
  491. FastAutoLock lock(&il2cpp::vm::g_MetadataLock);
  492. for (ArrayClassMap::iterator it = s_ArrayClassMap.UnlockedBegin(); it != s_ArrayClassMap.UnlockedEnd(); it++)
  493. {
  494. callback(it->second, context);
  495. }
  496. }
  497. } /* namespace vm */
  498. } /* namespace il2cpp */