obfuz/Editor/ObfusPasses/FieldEncrypt/DefaultFieldEncryptor.cs

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// Copyright 2025 Code Philosophy
//
// Permission is hereby granted, free of charge, to any person obtaining a copy
// of this software and associated documentation files (the "Software"), to deal
// in the Software without restriction, including without limitation the rights
// to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
// copies of the Software, and to permit persons to whom the Software is
// furnished to do so, subject to the following conditions:
//
// The above copyright notice and this permission notice shall be included in all
// copies or substantial portions of the Software.
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
// SOFTWARE.
using dnlib.DotNet;
using dnlib.DotNet.Emit;
using Obfuz.Emit;
using Obfuz.Settings;
using Obfuz.Utils;
using System;
using System.Collections.Generic;
using UnityEngine.Assertions;
namespace Obfuz.ObfusPasses.FieldEncrypt
{
public class DefaultFieldEncryptor : FieldEncryptorBase
{
private readonly GroupByModuleEntityManager _moduleEntityManager;
private readonly FieldEncryptionSettingsFacade _settings;
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public DefaultFieldEncryptor(GroupByModuleEntityManager moduleEntityManager, FieldEncryptionSettingsFacade settings)
{
_moduleEntityManager = moduleEntityManager;
_settings = settings;
}
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class FieldEncryptInfo
{
public int encryptOps;
public int salt;
public ElementType fieldType;
public long xorValueForZero;
}
private readonly Dictionary<FieldDef, FieldEncryptInfo> _fieldEncryptInfoCache = new Dictionary<FieldDef, FieldEncryptInfo>();
private long CalcXorValueForZero(IEncryptor encryptor, ElementType type, int encryptOps, int salt)
{
switch (type)
{
case ElementType.I4:
case ElementType.U4:
case ElementType.R4:
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return encryptor.Encrypt(0, encryptOps, salt);
case ElementType.I8:
case ElementType.U8:
case ElementType.R8:
return encryptor.Encrypt(0L, encryptOps, salt);
default:
throw new NotSupportedException($"Unsupported field type: {type} for encryption");
}
}
private IRandom CreateRandomForField(RandomCreator randomCreator, FieldDef field)
{
return randomCreator(FieldEqualityComparer.CompareDeclaringTypes.GetHashCode(field));
}
private int GenerateEncryptionOperations(IRandom random, IEncryptor encryptor)
{
return EncryptionUtil.GenerateEncryptionOpCodes(random, encryptor, _settings.encryptionLevel);
}
public int GenerateSalt(IRandom random)
{
return random.NextInt();
}
private FieldEncryptInfo GetFieldEncryptInfo(FieldDef field)
{
if (_fieldEncryptInfoCache.TryGetValue(field, out var info))
{
return info;
}
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EncryptionScopeInfo encryptionScope = _moduleEntityManager.EncryptionScopeProvider.GetScope(field.Module);
IRandom random = CreateRandomForField(encryptionScope.localRandomCreator, field);
IEncryptor encryptor = encryptionScope.encryptor;
int encryptOps = GenerateEncryptionOperations(random, encryptor);
int salt = GenerateSalt(random);
ElementType fieldType = field.FieldSig.Type.RemovePinnedAndModifiers().ElementType;
long xorValueForZero = CalcXorValueForZero(encryptor, fieldType, encryptOps, salt);
info = new FieldEncryptInfo
{
encryptOps = encryptOps,
salt = salt,
fieldType = fieldType,
xorValueForZero = xorValueForZero,
};
_fieldEncryptInfoCache[field] = info;
return info;
}
public override void Encrypt(MethodDef method, FieldDef field, List<Instruction> outputInstructions, Instruction currentInstruction)
{
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DefaultMetadataImporter importer = _moduleEntityManager.GetEntity<DefaultMetadataImporter>(method.Module);
EncryptionServiceMetadataImporter encryptionServiceMetadataImporter = importer.GetEncryptionServiceMetadataImporterOfModule(field.Module);
FieldEncryptInfo fei = GetFieldEncryptInfo(field);
if (fei.fieldType == ElementType.I4 || fei.fieldType == ElementType.U4 || fei.fieldType == ElementType.R4)
{
// value has been put on stack
if (fei.fieldType == ElementType.R4)
{
outputInstructions.Add(Instruction.Create(OpCodes.Call, importer.CastFloatAsInt));
}
// encrypt
outputInstructions.Add(Instruction.CreateLdcI4(fei.encryptOps));
outputInstructions.Add(Instruction.CreateLdcI4(fei.salt));
outputInstructions.Add(Instruction.Create(OpCodes.Call, encryptionServiceMetadataImporter.EncryptInt));
// xor
outputInstructions.Add(Instruction.CreateLdcI4((int)fei.xorValueForZero));
outputInstructions.Add(Instruction.Create(OpCodes.Xor));
if (fei.fieldType == ElementType.R4)
{
outputInstructions.Add(Instruction.Create(OpCodes.Call, importer.CastIntAsFloat));
}
}
else if (fei.fieldType == ElementType.I8 || fei.fieldType == ElementType.U8 || fei.fieldType == ElementType.R8)
{
// value has been put on stack
if (fei.fieldType == ElementType.R8)
{
outputInstructions.Add(Instruction.Create(OpCodes.Call, importer.CastDoubleAsLong));
}
// encrypt
outputInstructions.Add(Instruction.CreateLdcI4(fei.encryptOps));
outputInstructions.Add(Instruction.CreateLdcI4(fei.salt));
outputInstructions.Add(Instruction.Create(OpCodes.Call, encryptionServiceMetadataImporter.EncryptLong));
// xor
outputInstructions.Add(Instruction.Create(OpCodes.Ldc_I8, fei.xorValueForZero));
outputInstructions.Add(Instruction.Create(OpCodes.Xor));
if (fei.fieldType == ElementType.R8)
{
outputInstructions.Add(Instruction.Create(OpCodes.Call, importer.CastLongAsDouble));
}
}
else
{
Assert.IsTrue(false, $"Unsupported field type: {fei.fieldType} for encryption");
}
outputInstructions.Add(currentInstruction.Clone());
}
public override void Decrypt(MethodDef method, FieldDef field, List<Instruction> outputInstructions, Instruction currentInstruction)
{
outputInstructions.Add(currentInstruction.Clone());
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DefaultMetadataImporter importer = _moduleEntityManager.GetEntity<DefaultMetadataImporter>(method.Module);
EncryptionServiceMetadataImporter encryptionServiceMetadataImporter = importer.GetEncryptionServiceMetadataImporterOfModule(field.Module);
FieldEncryptInfo fei = GetFieldEncryptInfo(field);
if (fei.fieldType == ElementType.I4 || fei.fieldType == ElementType.U4 || fei.fieldType == ElementType.R4)
{
// value has been put on stack
// xor
if (fei.fieldType == ElementType.R4)
{
outputInstructions.Add(Instruction.Create(OpCodes.Call, importer.CastFloatAsInt));
}
outputInstructions.Add(Instruction.CreateLdcI4((int)fei.xorValueForZero));
outputInstructions.Add(Instruction.Create(OpCodes.Xor));
// decrypt
outputInstructions.Add(Instruction.CreateLdcI4(fei.encryptOps));
outputInstructions.Add(Instruction.CreateLdcI4(fei.salt));
outputInstructions.Add(Instruction.Create(OpCodes.Call, encryptionServiceMetadataImporter.DecryptInt));
if (fei.fieldType == ElementType.R4)
{
outputInstructions.Add(Instruction.Create(OpCodes.Call, importer.CastIntAsFloat));
}
}
else if (fei.fieldType == ElementType.I8 || fei.fieldType == ElementType.U8 || fei.fieldType == ElementType.R8)
{
// value has been put on stack
// xor
if (fei.fieldType == ElementType.R8)
{
outputInstructions.Add(Instruction.Create(OpCodes.Call, importer.CastDoubleAsLong));
}
outputInstructions.Add(Instruction.Create(OpCodes.Ldc_I8, fei.xorValueForZero));
outputInstructions.Add(Instruction.Create(OpCodes.Xor));
// decrypt
outputInstructions.Add(Instruction.CreateLdcI4(fei.encryptOps));
outputInstructions.Add(Instruction.CreateLdcI4(fei.salt));
outputInstructions.Add(Instruction.Create(OpCodes.Call, encryptionServiceMetadataImporter.DecryptLong));
if (fei.fieldType == ElementType.R8)
{
outputInstructions.Add(Instruction.Create(OpCodes.Call, importer.CastLongAsDouble));
}
}
else
{
Assert.IsTrue(false, $"Unsupported field type: {fei.fieldType} for decryption");
}
}
}
}