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405 lines
16 KiB
405 lines
16 KiB
// Copyright (c) 2018 Daniel Grunwald |
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// |
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// Permission is hereby granted, free of charge, to any person obtaining a copy of this |
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// software and associated documentation files (the "Software"), to deal in the Software |
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// without restriction, including without limitation the rights to use, copy, modify, merge, |
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// publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons |
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// to whom the Software is furnished to do so, subject to the following conditions: |
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// |
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// The above copyright notice and this permission notice shall be included in all copies or |
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// substantial portions of the Software. |
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// |
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, |
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// INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR |
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// PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE |
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// FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR |
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// OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER |
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// DEALINGS IN THE SOFTWARE. |
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using System; |
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using System.Collections.Generic; |
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using System.Linq; |
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using System.Threading.Tasks; |
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using ICSharpCode.Decompiler.Metadata; |
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using ICSharpCode.Decompiler.TypeSystem.Implementation; |
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using ICSharpCode.Decompiler.Util; |
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using static ICSharpCode.Decompiler.Metadata.MetadataExtensions; |
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using SRM = System.Reflection.Metadata; |
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namespace ICSharpCode.Decompiler.TypeSystem |
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{ |
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/// <summary> |
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/// Options that control how metadata is represented in the type system. |
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/// </summary> |
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[Flags] |
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public enum TypeSystemOptions |
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{ |
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/// <summary> |
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/// No options enabled; stay as close to the metadata as possible. |
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/// </summary> |
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None = 0, |
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/// <summary> |
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/// [DynamicAttribute] is used to replace 'object' types with the 'dynamic' type. |
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/// |
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/// If this option is not active, the 'dynamic' type is not used, and the attribute is preserved. |
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/// </summary> |
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Dynamic = 1, |
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/// <summary> |
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/// Tuple types are represented using the TupleType class. |
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/// [TupleElementNames] is used to name the tuple elements. |
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/// |
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/// If this option is not active, the tuples are represented using their underlying type, and the attribute is preserved. |
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/// </summary> |
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Tuple = 2, |
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/// <summary> |
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/// If this option is active, [ExtensionAttribute] is removed and methods are marked as IsExtensionMethod. |
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/// Otherwise, the attribute is preserved but the methods are not marked. |
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/// </summary> |
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ExtensionMethods = 4, |
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/// <summary> |
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/// Only load the public API into the type system. |
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/// </summary> |
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OnlyPublicAPI = 8, |
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/// <summary> |
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/// Do not cache accessed entities. |
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/// In a normal type system (without this option), every type or member definition has exactly one ITypeDefinition/IMember |
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/// instance. This instance is kept alive until the whole type system can be garbage-collected. |
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/// When this option is specified, the type system avoids these caches. |
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/// This reduces the memory usage in many cases, but increases the number of allocations. |
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/// Also, some code in the decompiler expects to be able to compare type/member definitions by reference equality, |
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/// and thus will fail with uncached type systems. |
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/// </summary> |
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Uncached = 0x10, |
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/// <summary> |
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/// If this option is active, [DecimalConstantAttribute] is removed and constant values are transformed into simple decimal literals. |
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/// </summary> |
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DecimalConstants = 0x20, |
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/// <summary> |
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/// If this option is active, modopt and modreq types are preserved in the type system. |
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/// |
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/// Note: the decompiler currently does not support handling modified types; |
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/// activating this option may lead to incorrect decompilation or internal errors. |
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/// </summary> |
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KeepModifiers = 0x40, |
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/// <summary> |
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/// If this option is active, [IsReadOnlyAttribute] on parameters+structs is removed |
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/// and parameters are marked as in, structs as readonly. |
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/// Otherwise, the attribute is preserved but the parameters and structs are not marked. |
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/// </summary> |
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ReadOnlyStructsAndParameters = 0x80, |
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/// <summary> |
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/// If this option is active, [IsByRefLikeAttribute] is removed and structs are marked as ref. |
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/// Otherwise, the attribute is preserved but the structs are not marked. |
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/// </summary> |
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RefStructs = 0x100, |
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/// <summary> |
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/// If this option is active, [IsUnmanagedAttribute] is removed from type parameters, |
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/// and HasUnmanagedConstraint is set instead. |
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/// </summary> |
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UnmanagedConstraints = 0x200, |
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/// <summary> |
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/// If this option is active, [NullableAttribute] is removed and reference types with |
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/// nullability annotations are used instead. |
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/// </summary> |
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NullabilityAnnotations = 0x400, |
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/// <summary> |
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/// If this option is active, [IsReadOnlyAttribute] on methods is removed |
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/// and the method marked as ThisIsRefReadOnly. |
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/// </summary> |
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ReadOnlyMethods = 0x800, |
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/// <summary> |
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/// [NativeIntegerAttribute] is used to replace 'IntPtr' types with the 'nint' type. |
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/// </summary> |
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NativeIntegers = 0x1000, |
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/// <summary> |
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/// Allow function pointer types. If this option is not enabled, function pointers are |
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/// replaced with the 'IntPtr' type. |
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/// </summary> |
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FunctionPointers = 0x2000, |
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/// <summary> |
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/// Allow C# 11 scoped annotation. If this option is not enabled, ScopedRefAttribute |
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/// will be reported as custom attribute. |
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/// </summary> |
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ScopedRef = 0x4000, |
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/// <summary> |
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/// Replace 'IntPtr' types with the 'nint' type even in absence of [NativeIntegerAttribute]. |
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/// Note: DecompilerTypeSystem constructor removes this setting from the options if |
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/// not targeting .NET 7 or later. |
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/// </summary> |
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NativeIntegersWithoutAttribute = 0x8000, |
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/// <summary> |
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/// If this option is active, [RequiresLocationAttribute] on parameters is removed |
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/// and parameters are marked as ref readonly. |
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/// Otherwise, the attribute is preserved but the parameters are not marked |
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/// as if it was a ref parameter without any attributes. |
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/// </summary> |
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RefReadOnlyParameters = 0x10000, |
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/// <summary> |
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/// Default settings: typical options for the decompiler, with all C# languages features enabled. |
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/// </summary> |
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Default = Dynamic | Tuple | ExtensionMethods | DecimalConstants | ReadOnlyStructsAndParameters |
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| RefStructs | UnmanagedConstraints | NullabilityAnnotations | ReadOnlyMethods |
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| NativeIntegers | FunctionPointers | ScopedRef | NativeIntegersWithoutAttribute |
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| RefReadOnlyParameters |
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} |
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/// <summary> |
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/// Manages the NRefactory type system for the decompiler. |
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/// </summary> |
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/// <remarks> |
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/// This class is thread-safe. |
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/// </remarks> |
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public class DecompilerTypeSystem : SimpleCompilation, IDecompilerTypeSystem |
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{ |
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public static TypeSystemOptions GetOptions(DecompilerSettings settings) |
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{ |
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var typeSystemOptions = TypeSystemOptions.None; |
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if (settings.Dynamic) |
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typeSystemOptions |= TypeSystemOptions.Dynamic; |
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if (settings.TupleTypes) |
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typeSystemOptions |= TypeSystemOptions.Tuple; |
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if (settings.ExtensionMethods) |
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typeSystemOptions |= TypeSystemOptions.ExtensionMethods; |
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if (settings.DecimalConstants) |
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typeSystemOptions |= TypeSystemOptions.DecimalConstants; |
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if (settings.IntroduceRefModifiersOnStructs) |
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typeSystemOptions |= TypeSystemOptions.RefStructs; |
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if (settings.IntroduceReadonlyAndInModifiers) |
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typeSystemOptions |= TypeSystemOptions.ReadOnlyStructsAndParameters; |
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if (settings.IntroduceUnmanagedConstraint) |
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typeSystemOptions |= TypeSystemOptions.UnmanagedConstraints; |
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if (settings.NullableReferenceTypes) |
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typeSystemOptions |= TypeSystemOptions.NullabilityAnnotations; |
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if (settings.ReadOnlyMethods) |
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typeSystemOptions |= TypeSystemOptions.ReadOnlyMethods; |
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if (settings.NativeIntegers) |
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typeSystemOptions |= TypeSystemOptions.NativeIntegers; |
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if (settings.FunctionPointers) |
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typeSystemOptions |= TypeSystemOptions.FunctionPointers; |
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if (settings.ScopedRef) |
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typeSystemOptions |= TypeSystemOptions.ScopedRef; |
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if (settings.NumericIntPtr) |
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typeSystemOptions |= TypeSystemOptions.NativeIntegersWithoutAttribute; |
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if (settings.RefReadOnlyParameters) |
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typeSystemOptions |= TypeSystemOptions.RefReadOnlyParameters; |
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return typeSystemOptions; |
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} |
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public static Task<DecompilerTypeSystem> CreateAsync(PEFile mainModule, IAssemblyResolver assemblyResolver) |
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{ |
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return CreateAsync(mainModule, assemblyResolver, TypeSystemOptions.Default); |
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} |
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public static Task<DecompilerTypeSystem> CreateAsync(PEFile mainModule, IAssemblyResolver assemblyResolver, DecompilerSettings settings) |
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{ |
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return CreateAsync(mainModule, assemblyResolver, GetOptions(settings ?? throw new ArgumentNullException(nameof(settings)))); |
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} |
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public static async Task<DecompilerTypeSystem> CreateAsync(PEFile mainModule, IAssemblyResolver assemblyResolver, TypeSystemOptions typeSystemOptions) |
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{ |
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if (mainModule == null) |
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throw new ArgumentNullException(nameof(mainModule)); |
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if (assemblyResolver == null) |
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throw new ArgumentNullException(nameof(assemblyResolver)); |
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var ts = new DecompilerTypeSystem(); |
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await ts.InitializeAsync(mainModule, assemblyResolver, typeSystemOptions) |
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.ConfigureAwait(false); |
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return ts; |
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} |
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private MetadataModule mainModule; |
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private DecompilerTypeSystem() |
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{ |
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} |
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public DecompilerTypeSystem(MetadataFile mainModule, IAssemblyResolver assemblyResolver) |
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: this(mainModule, assemblyResolver, TypeSystemOptions.Default) |
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{ |
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} |
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public DecompilerTypeSystem(MetadataFile mainModule, IAssemblyResolver assemblyResolver, DecompilerSettings settings) |
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: this(mainModule, assemblyResolver, GetOptions(settings ?? throw new ArgumentNullException(nameof(settings)))) |
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{ |
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} |
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public DecompilerTypeSystem(MetadataFile mainModule, IAssemblyResolver assemblyResolver, TypeSystemOptions typeSystemOptions) |
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{ |
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if (mainModule == null) |
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throw new ArgumentNullException(nameof(mainModule)); |
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if (assemblyResolver == null) |
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throw new ArgumentNullException(nameof(assemblyResolver)); |
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InitializeAsync(mainModule, assemblyResolver, typeSystemOptions).GetAwaiter().GetResult(); |
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} |
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static readonly string[] implicitReferences = new[] { |
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"System.Runtime.InteropServices", |
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"System.Runtime.CompilerServices.Unsafe" |
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}; |
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private async Task InitializeAsync(MetadataFile mainModule, IAssemblyResolver assemblyResolver, TypeSystemOptions typeSystemOptions) |
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{ |
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// Load referenced assemblies and type-forwarder references. |
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// This is necessary to make .NET Core/PCL binaries work better. |
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var referencedAssemblies = new List<MetadataFile>(); |
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var assemblyReferenceQueue = new Queue<(bool IsAssembly, MetadataFile MainModule, object Reference, Task<MetadataFile> ResolveTask)>(); |
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var comparer = KeyComparer.Create(((bool IsAssembly, MetadataFile MainModule, object Reference) reference) => |
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reference.IsAssembly ? "A:" + ((IAssemblyReference)reference.Reference).FullName : |
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"M:" + reference.Reference); |
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var assemblyReferencesInQueue = new HashSet<(bool IsAssembly, MetadataFile Parent, object Reference)>(comparer); |
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var mainMetadata = mainModule.Metadata; |
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var tfm = mainModule.DetectTargetFrameworkId(); |
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var (identifier, version) = UniversalAssemblyResolver.ParseTargetFramework(tfm); |
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foreach (var h in mainMetadata.GetModuleReferences()) |
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{ |
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try |
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{ |
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var moduleRef = mainMetadata.GetModuleReference(h); |
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var moduleName = mainMetadata.GetString(moduleRef.Name); |
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foreach (var fileHandle in mainMetadata.AssemblyFiles) |
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{ |
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var file = mainMetadata.GetAssemblyFile(fileHandle); |
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if (mainMetadata.StringComparer.Equals(file.Name, moduleName) && file.ContainsMetadata) |
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{ |
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AddToQueue(false, mainModule, moduleName); |
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break; |
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} |
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} |
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} |
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catch (BadImageFormatException) |
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{ |
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} |
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} |
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foreach (var refs in mainModule.AssemblyReferences) |
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{ |
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AddToQueue(true, mainModule, refs); |
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} |
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while (assemblyReferenceQueue.Count > 0) |
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{ |
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var asmRef = assemblyReferenceQueue.Dequeue(); |
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var asm = await asmRef.ResolveTask.ConfigureAwait(false); |
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if (asm != null) |
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{ |
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referencedAssemblies.Add(asm); |
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var metadata = asm.Metadata; |
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foreach (var h in metadata.ExportedTypes) |
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{ |
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var exportedType = metadata.GetExportedType(h); |
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switch (exportedType.Implementation.Kind) |
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{ |
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case SRM.HandleKind.AssemblyReference: |
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AddToQueue(true, asm, new AssemblyReference(asm, (SRM.AssemblyReferenceHandle)exportedType.Implementation)); |
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break; |
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case SRM.HandleKind.AssemblyFile: |
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var file = metadata.GetAssemblyFile((SRM.AssemblyFileHandle)exportedType.Implementation); |
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AddToQueue(false, asm, metadata.GetString(file.Name)); |
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break; |
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} |
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} |
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} |
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if (assemblyReferenceQueue.Count == 0) |
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{ |
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// For .NET Core and .NET 5 and newer, we need to pull in implicit references which are not included in the metadata, |
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// as they contain compile-time-only types, such as System.Runtime.InteropServices.dll (for DllImport, MarshalAs, etc.) |
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switch (identifier) |
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{ |
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case TargetFrameworkIdentifier.NETCoreApp: |
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case TargetFrameworkIdentifier.NETStandard: |
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case TargetFrameworkIdentifier.NET: |
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foreach (var item in implicitReferences) |
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{ |
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var existing = referencedAssemblies.FirstOrDefault(asm => asm.Name == item); |
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if (existing == null) |
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{ |
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AddToQueue(true, mainModule, AssemblyNameReference.Parse(item + ", Version=" + version.ToString(3) + ".0, Culture=neutral")); |
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} |
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} |
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break; |
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} |
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} |
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} |
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if (!(identifier == TargetFrameworkIdentifier.NET && version >= new Version(7, 0))) |
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{ |
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typeSystemOptions &= ~TypeSystemOptions.NativeIntegersWithoutAttribute; |
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} |
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var mainModuleWithOptions = mainModule.WithOptions(typeSystemOptions); |
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// create IModuleReferences for all references |
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var referencedAssembliesWithOptions = new List<IModuleReference>(referencedAssemblies.Count); |
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Dictionary<string, (Version version, int insertionIndex)> referenceAssemblyVersionMap = new(); |
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foreach (var file in referencedAssemblies) |
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{ |
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// if the file is an assembly, we need to make sure to deduplicate all assemblies, |
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// with the same name, but different version. We keep the highest version number. |
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if (file.IsAssembly) |
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{ |
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var newFileVersion = file.Metadata.GetAssemblyDefinition().Version; |
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if (referenceAssemblyVersionMap.TryGetValue(file.Name, out var info)) |
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{ |
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if (newFileVersion >= info.version) |
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{ |
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referencedAssembliesWithOptions[info.insertionIndex] = file.WithOptions(typeSystemOptions); |
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referenceAssemblyVersionMap[file.Name] = (newFileVersion, info.insertionIndex); |
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} |
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continue; |
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} |
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else |
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{ |
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referenceAssemblyVersionMap[file.Name] = (file.Metadata.GetAssemblyDefinition().Version, referencedAssembliesWithOptions.Count); |
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} |
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} |
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referencedAssembliesWithOptions.Add(file.WithOptions(typeSystemOptions)); |
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} |
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// Primitive types are necessary to avoid assertions in ILReader. |
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// Other known types are necessary in order for transforms to work (e.g. Task<T> for async transform). |
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// Figure out which known types are missing from our type system so far: |
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var missingKnownTypes = KnownTypeReference.AllKnownTypes.Where(IsMissing).ToList(); |
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if (missingKnownTypes.Count > 0) |
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{ |
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Init(mainModuleWithOptions, referencedAssembliesWithOptions.Concat(new[] { MinimalCorlib.CreateWithTypes(missingKnownTypes) })); |
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} |
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else |
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{ |
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Init(mainModuleWithOptions, referencedAssembliesWithOptions); |
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} |
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this.mainModule = (MetadataModule)base.MainModule; |
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void AddToQueue(bool isAssembly, MetadataFile mainModule, object reference) |
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{ |
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if (assemblyReferencesInQueue.Add((isAssembly, mainModule, reference))) |
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{ |
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// Immediately start loading the referenced module as we add the entry to the queue. |
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// This allows loading multiple modules in parallel. |
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Task<MetadataFile> asm; |
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if (isAssembly) |
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{ |
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asm = assemblyResolver.ResolveAsync((IAssemblyReference)reference); |
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} |
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else |
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{ |
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asm = assemblyResolver.ResolveModuleAsync(mainModule, (string)reference); |
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} |
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assemblyReferenceQueue.Enqueue((isAssembly, mainModule, reference, asm)); |
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} |
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} |
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bool IsMissing(KnownTypeReference knownType) |
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{ |
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var name = knownType.TypeName; |
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if (!mainModule.GetTypeDefinition(name).IsNil) |
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return false; |
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foreach (var file in referencedAssemblies) |
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{ |
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if (!file.GetTypeDefinition(name).IsNil) |
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return false; |
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} |
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return true; |
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} |
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} |
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public new MetadataModule MainModule => mainModule; |
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} |
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}
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