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296 lines
13 KiB
296 lines
13 KiB
// Copyright (c) 2026 Siegfried Pammer |
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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.Collections.Immutable; |
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using System.Linq; |
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using System.Reflection.Metadata; |
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using System.Reflection.Metadata.Ecma335; |
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using ICSharpCode.Decompiler.Metadata; |
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using ICSharpCode.Decompiler.TypeSystem; |
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using ICSharpCode.Decompiler.TypeSystem.Implementation; |
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using ICSharpCode.Decompiler.Util; |
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namespace ICSharpCode.BamlDecompiler |
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{ |
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/// <summary> |
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/// An artificial stand-in for one of the well-known BAML assemblies (e.g. PresentationFramework) |
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/// when the real assembly cannot be resolved - for instance when a WPF binary is inspected on a |
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/// machine that has no WPF installed (Linux/macOS). |
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/// <para> |
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/// It mirrors <see cref="MinimalCorlib"/>: it materializes type definitions on request but carries |
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/// no members. Only the types the BAML decompiler explicitly seeds via <see cref="RegisterType"/> |
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/// are materialized; every other lookup returns <c>null</c>, so references to non-well-known types |
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/// keep decomposing to <c>UnknownType</c> exactly as they do when the assembly is entirely absent. |
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/// </para> |
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/// </summary> |
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sealed class SyntheticWpfModule : IModule |
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{ |
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/// <summary> |
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/// Creates a module reference that resolves to a <see cref="SyntheticWpfModule"/> standing in |
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/// for <paramref name="assemblyName"/>. When <paramref name="presentationXmlnsNamespace"/> is |
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/// non-null, the synthesized assembly exposes an <c>XmlnsDefinitionAttribute</c> mapping every |
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/// seeded CLR namespace to that XML namespace, so known WPF types serialize with the clean |
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/// presentation xmlns instead of a clr-namespace fallback. |
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/// </summary> |
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public static IModuleReference CreateReference(IAssemblyReference assemblyName, string presentationXmlnsNamespace) |
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{ |
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return new SyntheticModuleReference(assemblyName, presentationXmlnsNamespace); |
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} |
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public ICompilation Compilation { get; } |
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readonly IAssemblyReference assemblyName; |
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readonly string presentationXmlnsNamespace; |
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readonly Dictionary<TopLevelTypeName, SyntheticTypeDefinition> typeDefinitions = new(); |
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readonly SyntheticNamespace rootNamespace; |
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IReadOnlyList<IAttribute> assemblyAttributes; |
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SyntheticWpfModule(ICompilation compilation, IAssemblyReference assemblyName, string presentationXmlnsNamespace) |
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{ |
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this.Compilation = compilation; |
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this.assemblyName = assemblyName; |
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this.presentationXmlnsNamespace = presentationXmlnsNamespace; |
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this.rootNamespace = new SyntheticNamespace(this, null, string.Empty, string.Empty); |
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} |
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/// <summary> |
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/// Seeds this module with a synthetic definition for the given type and returns it. |
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/// Repeated calls for the same type return the cached instance. This is the only way a type |
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/// becomes visible on the module; plain <see cref="GetTypeDefinition(TopLevelTypeName)"/> |
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/// lookups never create new types. |
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/// </summary> |
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public ITypeDefinition RegisterType(string ns, string name) |
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{ |
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var typeName = new TopLevelTypeName(ns, name); |
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if (!typeDefinitions.TryGetValue(typeName, out var typeDef)) |
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{ |
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typeDef = new SyntheticTypeDefinition(this, typeName); |
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typeDefinitions.Add(typeName, typeDef); |
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// Invalidate the cached xmlns attributes; a namespace may have appeared. |
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assemblyAttributes = null; |
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} |
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return typeDef; |
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} |
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bool IModule.IsMainModule => Compilation.MainModule == this; |
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string IModule.AssemblyName => assemblyName.Name; |
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Version IModule.AssemblyVersion => assemblyName.Version; |
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string IModule.FullAssemblyName => assemblyName.FullName; |
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string ISymbol.Name => assemblyName.Name; |
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SymbolKind ISymbol.SymbolKind => SymbolKind.Module; |
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ICSharpCode.Decompiler.Metadata.MetadataFile IModule.MetadataFile => null; |
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INamespace IModule.RootNamespace => rootNamespace; |
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public IEnumerable<ITypeDefinition> TopLevelTypeDefinitions => typeDefinitions.Values; |
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public IEnumerable<ITypeDefinition> TypeDefinitions => typeDefinitions.Values; |
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public ITypeDefinition GetTypeDefinition(TopLevelTypeName topLevelTypeName) |
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{ |
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return typeDefinitions.TryGetValue(topLevelTypeName, out var typeDef) ? typeDef : null; |
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} |
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IEnumerable<IAttribute> IModule.GetAssemblyAttributes() => GetAssemblyAttributes(); |
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IEnumerable<IAttribute> IModule.GetModuleAttributes() => EmptyList<IAttribute>.Instance; |
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bool IModule.InternalsVisibleTo(IModule module) => module == this; |
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IReadOnlyList<IAttribute> GetAssemblyAttributes() |
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{ |
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if (presentationXmlnsNamespace == null) |
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return EmptyList<IAttribute>.Instance; |
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var attributes = assemblyAttributes; |
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if (attributes != null) |
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return attributes; |
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// Reconstruct the XmlnsDefinitionAttribute set that the real WPF assembly would carry: |
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// one entry per seeded CLR namespace, all mapping to the presentation XML namespace. |
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var attributeType = new SyntheticTypeDefinition(this, |
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new TopLevelTypeName("System.Windows.Markup", "XmlnsDefinitionAttribute")); |
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var stringType = Compilation.FindType(KnownTypeCode.String); |
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var namespaces = typeDefinitions.Keys.Select(t => t.Namespace).Distinct(); |
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var list = new List<IAttribute>(); |
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foreach (var ns in namespaces) |
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{ |
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var fixedArguments = ImmutableArray.Create( |
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new CustomAttributeTypedArgument<IType>(stringType, presentationXmlnsNamespace), |
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new CustomAttributeTypedArgument<IType>(stringType, ns)); |
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list.Add(new DefaultAttribute(attributeType, fixedArguments, |
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ImmutableArray<CustomAttributeNamedArgument<IType>>.Empty)); |
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} |
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attributes = list; |
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assemblyAttributes = attributes; |
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return attributes; |
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} |
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sealed class SyntheticModuleReference : IModuleReference |
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{ |
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readonly IAssemblyReference assemblyName; |
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readonly string presentationXmlnsNamespace; |
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public SyntheticModuleReference(IAssemblyReference assemblyName, string presentationXmlnsNamespace) |
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{ |
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this.assemblyName = assemblyName; |
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this.presentationXmlnsNamespace = presentationXmlnsNamespace; |
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} |
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IModule IModuleReference.Resolve(ITypeResolveContext context) |
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{ |
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return new SyntheticWpfModule(context.Compilation, assemblyName, presentationXmlnsNamespace); |
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} |
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} |
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sealed class SyntheticNamespace : INamespace |
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{ |
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readonly SyntheticWpfModule module; |
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public INamespace ParentNamespace { get; } |
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public string FullName { get; } |
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public string Name { get; } |
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public SyntheticNamespace(SyntheticWpfModule module, INamespace parentNamespace, string fullName, string name) |
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{ |
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this.module = module; |
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this.ParentNamespace = parentNamespace; |
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this.FullName = fullName; |
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this.Name = name; |
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} |
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string INamespace.ExternAlias => string.Empty; |
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IEnumerable<INamespace> INamespace.ChildNamespaces => EmptyList<INamespace>.Instance; |
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IEnumerable<ITypeDefinition> INamespace.Types => module.TopLevelTypeDefinitions.Where(td => td.Namespace == FullName); |
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IEnumerable<IModule> INamespace.ContributingModules => new[] { module }; |
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SymbolKind ISymbol.SymbolKind => SymbolKind.Namespace; |
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ICompilation ICompilationProvider.Compilation => module.Compilation; |
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INamespace INamespace.GetChildNamespace(string name) => null; |
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ITypeDefinition INamespace.GetTypeDefinition(string name, int typeParameterCount) |
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{ |
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if (typeParameterCount != 0) |
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return null; |
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return module.GetTypeDefinition(new TopLevelTypeName(FullName, name)); |
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} |
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} |
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sealed class SyntheticTypeDefinition : ITypeDefinition |
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{ |
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readonly SyntheticWpfModule module; |
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readonly TopLevelTypeName typeName; |
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public SyntheticTypeDefinition(SyntheticWpfModule module, TopLevelTypeName typeName) |
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{ |
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this.module = module; |
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this.typeName = typeName; |
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} |
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IReadOnlyList<ITypeDefinition> ITypeDefinition.NestedTypes => EmptyList<ITypeDefinition>.Instance; |
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IReadOnlyList<IMember> ITypeDefinition.Members => EmptyList<IMember>.Instance; |
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IEnumerable<IField> ITypeDefinition.Fields => EmptyList<IField>.Instance; |
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IEnumerable<IMethod> ITypeDefinition.Methods => EmptyList<IMethod>.Instance; |
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IEnumerable<IProperty> ITypeDefinition.Properties => EmptyList<IProperty>.Instance; |
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IEnumerable<IEvent> ITypeDefinition.Events => EmptyList<IEvent>.Instance; |
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KnownTypeCode ITypeDefinition.KnownTypeCode => KnownTypeCode.None; |
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IType ITypeDefinition.EnumUnderlyingType => SpecialType.UnknownType; |
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public FullTypeName FullTypeName => typeName; |
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public string MetadataName => typeName.Name; |
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ITypeDefinition IEntity.DeclaringTypeDefinition => null; |
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IType ITypeDefinition.DeclaringType => null; |
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IType IType.DeclaringType => null; |
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IType IEntity.DeclaringType => null; |
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bool ITypeDefinition.HasExtensions => false; |
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ExtensionInfo ITypeDefinition.ExtensionInfo => null; |
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bool ITypeDefinition.IsReadOnly => false; |
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// Materialized WPF types carry no metadata, so treat them all as (reference-type) classes. |
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// The BAML decompiler only reads their identity and null-guards everything else. |
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TypeKind IType.Kind => TypeKind.Class; |
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bool? IType.IsReferenceType => true; |
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bool IType.IsByRefLike => false; |
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Nullability IType.Nullability => Nullability.Oblivious; |
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Nullability ITypeDefinition.NullableContext => Nullability.Oblivious; |
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// Synthetic WPF types are always nullability-oblivious and BAML never annotates them. |
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IType IType.ChangeNullability(Nullability nullability) => this; |
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int IType.TypeParameterCount => 0; |
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IReadOnlyList<ITypeParameter> IType.TypeParameters => EmptyList<ITypeParameter>.Instance; |
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IReadOnlyList<IType> IType.TypeArguments => EmptyList<IType>.Instance; |
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IEnumerable<IType> IType.DirectBaseTypes => EmptyList<IType>.Instance; |
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EntityHandle IEntity.MetadataToken => MetadataTokens.TypeDefinitionHandle(0); |
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public string Name => typeName.Name; |
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IModule IEntity.ParentModule => module; |
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Accessibility IEntity.Accessibility => Accessibility.Public; |
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bool IEntity.IsStatic => false; |
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bool IEntity.IsAbstract => false; |
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bool IEntity.IsSealed => false; |
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SymbolKind ISymbol.SymbolKind => SymbolKind.TypeDefinition; |
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ICompilation ICompilationProvider.Compilation => module.Compilation; |
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string INamedElement.FullName => typeName.ReflectionName; |
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string INamedElement.ReflectionName => typeName.ReflectionName; |
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string INamedElement.Namespace => typeName.Namespace; |
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bool IEquatable<IType>.Equals(IType other) => this == other; |
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IEnumerable<IMethod> IType.GetAccessors(Predicate<IMethod> filter, GetMemberOptions options) => EmptyList<IMethod>.Instance; |
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IEnumerable<IAttribute> IEntity.GetAttributes() => EmptyList<IAttribute>.Instance; |
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bool IEntity.HasAttribute(KnownAttribute attribute) => false; |
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IAttribute IEntity.GetAttribute(KnownAttribute attribute) => null; |
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IEnumerable<IMethod> IType.GetConstructors(Predicate<IMethod> filter, GetMemberOptions options) => EmptyList<IMethod>.Instance; |
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IEnumerable<IEvent> IType.GetEvents(Predicate<IEvent> filter, GetMemberOptions options) => EmptyList<IEvent>.Instance; |
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IEnumerable<IField> IType.GetFields(Predicate<IField> filter, GetMemberOptions options) => EmptyList<IField>.Instance; |
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IEnumerable<IMember> IType.GetMembers(Predicate<IMember> filter, GetMemberOptions options) => EmptyList<IMember>.Instance; |
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IEnumerable<IMethod> IType.GetMethods(Predicate<IMethod> filter, GetMemberOptions options) => EmptyList<IMethod>.Instance; |
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IEnumerable<IMethod> IType.GetMethods(IReadOnlyList<IType> typeArguments, Predicate<IMethod> filter, GetMemberOptions options) => EmptyList<IMethod>.Instance; |
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IEnumerable<IType> IType.GetNestedTypes(Predicate<ITypeDefinition> filter, GetMemberOptions options) => EmptyList<IType>.Instance; |
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IEnumerable<IType> IType.GetNestedTypes(IReadOnlyList<IType> typeArguments, Predicate<ITypeDefinition> filter, GetMemberOptions options) => EmptyList<IType>.Instance; |
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IEnumerable<IProperty> IType.GetProperties(Predicate<IProperty> filter, GetMemberOptions options) => EmptyList<IProperty>.Instance; |
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bool ITypeDefinition.IsRecord => false; |
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ITypeDefinition IType.GetDefinition() => this; |
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ITypeDefinitionOrUnknown IType.GetDefinitionOrUnknown() => this; |
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TypeParameterSubstitution IType.GetSubstitution() => TypeParameterSubstitution.Identity; |
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IType IType.AcceptVisitor(TypeVisitor visitor) => visitor.VisitTypeDefinition(this); |
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IType IType.VisitChildren(TypeVisitor visitor) => this; |
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public override string ToString() => $"[SyntheticWpfType {typeName.ReflectionName}]"; |
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} |
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} |
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}
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