177 lines
6.5 KiB
C#
177 lines
6.5 KiB
C#
using NoisyCowStudios.Bin2Object;
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using System.Text;
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using System;
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using System.Diagnostics;
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using System.IO;
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namespace Il2CppInspector.Utils;
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public static class BlobReader
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{
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public static object GetConstantValueFromBlob(Il2CppInspector inspector, Il2CppTypeEnum type, BinaryObjectStream blob)
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{
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const byte kArrayTypeWithDifferentElements = 1;
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object value = null;
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switch (type)
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{
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case Il2CppTypeEnum.IL2CPP_TYPE_BOOLEAN:
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value = blob.ReadBoolean();
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break;
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case Il2CppTypeEnum.IL2CPP_TYPE_U1:
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case Il2CppTypeEnum.IL2CPP_TYPE_I1:
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value = blob.ReadByte();
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break;
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case Il2CppTypeEnum.IL2CPP_TYPE_CHAR:
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// UTF-8 character assumed
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value = BitConverter.ToChar(blob.ReadBytes(2), 0);
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break;
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case Il2CppTypeEnum.IL2CPP_TYPE_U2:
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value = blob.ReadUInt16();
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break;
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case Il2CppTypeEnum.IL2CPP_TYPE_I2:
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value = blob.ReadInt16();
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break;
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case Il2CppTypeEnum.IL2CPP_TYPE_U4:
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value = ReadUInt32();
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break;
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case Il2CppTypeEnum.IL2CPP_TYPE_I4:
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value = ReadInt32();
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break;
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case Il2CppTypeEnum.IL2CPP_TYPE_U8:
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value = blob.ReadUInt64();
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break;
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case Il2CppTypeEnum.IL2CPP_TYPE_I8:
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value = blob.ReadInt64();
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break;
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case Il2CppTypeEnum.IL2CPP_TYPE_R4:
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value = blob.ReadSingle();
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break;
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case Il2CppTypeEnum.IL2CPP_TYPE_R8:
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value = blob.ReadDouble();
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break;
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case Il2CppTypeEnum.IL2CPP_TYPE_STRING:
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var uiLen = ReadInt32();
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if (uiLen != -1)
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value = Encoding.UTF8.GetString(blob.ReadBytes(uiLen));
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break;
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case Il2CppTypeEnum.IL2CPP_TYPE_SZARRAY:
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var length = ReadInt32();
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if (length == -1)
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break;
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// This is only used in custom arguments.
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// We actually want the reflection TypeInfo here, but as we do not have it yet
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// we store everything in a custom array type to be changed out later in the TypeModel.
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var arrayElementType = ReadEncodedTypeEnum(inspector, blob, out var arrayElementDef);
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var arrayElementsAreDifferent = blob.ReadByte();
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var array = new ConstantBlobArrayElement[length];
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if (arrayElementsAreDifferent == kArrayTypeWithDifferentElements)
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{
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for (int i = 0; i < length; i++)
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{
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var elementType = ReadEncodedTypeEnum(inspector, blob, out var elementTypeDef);
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array[i] = new ConstantBlobArrayElement(elementTypeDef, GetConstantValueFromBlob(inspector, elementType, blob), elementType);
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}
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}
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else
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{
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for (int i = 0; i < length; i++)
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{
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array[i] = new ConstantBlobArrayElement(arrayElementDef, GetConstantValueFromBlob(inspector, arrayElementType, blob), arrayElementType);
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}
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}
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value = new ConstantBlobArray(arrayElementDef, array, arrayElementType);
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break;
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case Il2CppTypeEnum.IL2CPP_TYPE_CLASS:
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case Il2CppTypeEnum.IL2CPP_TYPE_OBJECT:
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case Il2CppTypeEnum.IL2CPP_TYPE_GENERICINST:
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break;
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case Il2CppTypeEnum.IL2CPP_TYPE_IL2CPP_TYPE_INDEX:
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var index = blob.ReadCompressedInt32();
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if (index != -1)
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value = inspector.TypeReferences[index];
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break;
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case Il2CppTypeEnum.IL2CPP_TYPE_VALUETYPE:
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break;
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default:
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Debugger.Break();
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break;
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}
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return value;
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int ReadInt32()
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{
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if (blob.Version >= 29)
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{
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var address = blob.Position;
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try
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{
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return blob.ReadCompressedInt32();
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}
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catch (InvalidDataException)
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{
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Console.WriteLine($"Found invalid compressed int at metadata address 0x{address:x8}. Reading as normal int.");
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return blob.ReadInt32(address);
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}
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}
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return blob.ReadInt32();
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}
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uint ReadUInt32()
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{
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if (blob.Version >= 29)
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{
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var address = blob.Position;
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try
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{
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return blob.ReadCompressedUInt32();
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}
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catch (InvalidDataException)
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{
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Console.WriteLine($"Found invalid compressed uint at metadata address 0x{address:x8}. Reading as normal uint.");
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return blob.ReadUInt32(address);
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}
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}
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return blob.ReadUInt32();
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}
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}
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public static Il2CppTypeEnum ReadEncodedTypeEnum(Il2CppInspector inspector, BinaryObjectStream blob,
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out Il2CppTypeDefinition enumType)
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{
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enumType = null;
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var typeEnum = (Il2CppTypeEnum)blob.ReadByte();
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if (typeEnum == Il2CppTypeEnum.IL2CPP_TYPE_ENUM)
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{
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var typeIndex = blob.ReadCompressedInt32();
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var typeHandle = (uint)inspector.TypeReferences[typeIndex].datapoint;
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enumType = inspector.TypeDefinitions[typeHandle];
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var elementTypeHandle = inspector.TypeReferences[enumType.elementTypeIndex].datapoint;
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var elementType = inspector.TypeDefinitions[elementTypeHandle];
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typeEnum = inspector.TypeReferences[elementType.byvalTypeIndex].type;
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}
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// This technically also handles SZARRAY (System.Array) and all others by just returning their system type
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return typeEnum;
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}
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public record ConstantBlobArray(Il2CppTypeDefinition ArrayTypeDef, ConstantBlobArrayElement[] Elements, Il2CppTypeEnum ArrayTypeEnum);
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public record ConstantBlobArrayElement(Il2CppTypeDefinition TypeDef, object Value, Il2CppTypeEnum TypeEnum);
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} |