de4dot-cex/de4dot.code/deobfuscators/Spices_Net/SpicesMethodCallInliner.cs
2015-10-29 22:45:26 +01:00

248 lines
7.1 KiB
C#

/*
Copyright (C) 2011-2015 de4dot@gmail.com
This file is part of de4dot.
de4dot is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
de4dot is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with de4dot. If not, see <http://www.gnu.org/licenses/>.
*/
using System.Collections.Generic;
using dnlib.DotNet;
using dnlib.DotNet.Emit;
using de4dot.blocks;
using de4dot.blocks.cflow;
namespace de4dot.code.deobfuscators.Spices_Net {
class SpicesMethodCallInliner : MethodCallInliner {
ModuleDefMD module;
TypeDefDict<bool> methodsTypes = new TypeDefDict<bool>();
MethodDefAndDeclaringTypeDict<MethodDef> classMethods = new MethodDefAndDeclaringTypeDict<MethodDef>();
public SpicesMethodCallInliner(ModuleDefMD module)
: base(false) {
this.module = module;
}
protected override bool IsCompatibleType(int paramIndex, IType origType, IType newType) {
if (new SigComparer(SigComparerOptions.IgnoreModifiers).Equals(origType, newType))
return true;
if (paramIndex == -1) {
if (IsValueType(newType) || IsValueType(origType))
return false;
}
return newType.FullName == "System.Object";
}
public bool CheckCanInline(MethodDef method) {
return methodsTypes.Find(method.DeclaringType);
}
protected override bool CanInline(MethodDef method) {
return CheckCanInline(method);
}
public void Initialize(ISimpleDeobfuscator simpleDeobfuscator) {
InitializeMethodsTypes();
RestoreMethodBodies(simpleDeobfuscator);
}
void RestoreMethodBodies(ISimpleDeobfuscator simpleDeobfuscator) {
var methodToOrigMethods = new MethodDefAndDeclaringTypeDict<List<MethodDef>>();
foreach (var t in module.Types) {
var types = new List<TypeDef>(AllTypesHelper.Types(new List<TypeDef> { t }));
foreach (var type in types) {
if (methodsTypes.Find(type))
continue;
foreach (var method in type.Methods) {
if (method.Name == ".ctor" || method.Name == ".cctor")
continue;
MethodDef calledMethod;
if (!CheckRestoreBody(method, out calledMethod))
continue;
if (!CheckSameMethods(method, calledMethod))
continue;
if (!methodsTypes.Find(calledMethod.DeclaringType))
continue;
if (types.IndexOf(calledMethod.DeclaringType) < 0)
continue;
var list = methodToOrigMethods.Find(calledMethod);
if (list == null)
methodToOrigMethods.Add(calledMethod, list = new List<MethodDef>());
list.Add(method);
}
}
}
foreach (var calledMethod in methodToOrigMethods.GetKeys()) {
var list = methodToOrigMethods.Find(calledMethod);
var method = list[0];
Logger.v("Restored method body {0:X8} from method {1:X8}",
method.MDToken.ToInt32(),
calledMethod.MDToken.ToInt32());
DotNetUtils.CopyBodyFromTo(calledMethod, method);
classMethods.Add(calledMethod, method);
simpleDeobfuscator.MethodModified(method);
}
}
bool CheckRestoreBody(MethodDef method, out MethodDef calledMethod) {
calledMethod = null;
if (method.Body == null)
return false;
if (method.Body.Variables.Count > 0)
return false;
if (method.Body.ExceptionHandlers.Count > 0)
return false;
if (!CheckRestoreBody2(method, out calledMethod))
return false;
if (calledMethod == method)
return false;
if (!calledMethod.IsStatic)
return false;
if (calledMethod.GenericParameters.Count > 0)
return false;
if (calledMethod.Body == null || calledMethod.Body.Instructions.Count == 0)
return false;
return true;
}
bool CheckRestoreBody2(MethodDef instanceMethod, out MethodDef calledMethod) {
calledMethod = null;
var instrs = instanceMethod.Body.Instructions;
int index;
for (index = 0; index < instrs.Count; index++) {
if (instrs[index].GetParameterIndex() != index)
break;
}
var call = instrs[index++];
if (call.OpCode.Code != Code.Call)
return false;
calledMethod = call.Operand as MethodDef;
if (calledMethod == null)
return false;
if (instrs[index++].OpCode.Code != Code.Ret)
return false;
return true;
}
void InitializeMethodsTypes() {
foreach (var type in module.GetTypes()) {
if (CheckMethodsType(type))
methodsTypes.Add(type, true);
}
}
static bool CheckMethodsType(TypeDef type) {
if (!type.IsNested)
return false;
if ((type.Attributes & ~TypeAttributes.BeforeFieldInit) != TypeAttributes.NestedAssembly)
return false;
if (type.HasProperties || type.HasEvents || type.HasFields || type.HasNestedTypes)
return false;
if (type.GenericParameters.Count > 0)
return false;
if (type.IsValueType || type.IsInterface)
return false;
if (type.BaseType == null || type.BaseType.FullName != "System.Object")
return false;
if (type.Interfaces.Count > 0)
return false;
if (!CheckMethods(type))
return false;
return true;
}
static bool CheckMethods(TypeDef type) {
bool foundCtor = false;
int numMethods = 0;
foreach (var method in type.Methods) {
if (method.Name == ".cctor")
return false;
if (method.Name == ".ctor") {
if (method.MethodSig.GetParamCount() != 0)
return false;
foundCtor = true;
continue;
}
if (method.Attributes != (MethodAttributes.Assembly | MethodAttributes.Static | MethodAttributes.HideBySig))
return false;
if (method.ImplMap != null)
return false;
if (method.GenericParameters.Count > 0)
return false;
numMethods++;
}
return numMethods > 0 && foundCtor;
}
public List<MethodDef> GetInlinedMethods() {
var list = new List<MethodDef>();
foreach (var type in methodsTypes.GetKeys())
list.AddRange(type.Methods);
return list;
}
public TypeDefDict<bool> GetInlinedTypes(IEnumerable<MethodDef> unusedMethods) {
var unused = new MethodDefAndDeclaringTypeDict<bool>();
foreach (var method in unusedMethods)
unused.Add(method, true);
var types = new TypeDefDict<bool>();
foreach (var type in methodsTypes.GetKeys()) {
if (CheckAllMethodsUnused(unused, type))
types.Add(type, true);
}
return types;
}
static bool CheckAllMethodsUnused(MethodDefAndDeclaringTypeDict<bool> unused, TypeDef type) {
foreach (var method in type.Methods) {
if (!unused.Find(method))
return false;
}
return true;
}
public void Deobfuscate(Blocks blocks) {
foreach (var block in blocks.MethodBlocks.GetAllBlocks()) {
var instrs = block.Instructions;
for (int i = 0; i < instrs.Count; i++) {
var call = instrs[i];
if (call.OpCode.Code != Code.Call)
continue;
var realInstanceMethod = classMethods.Find(call.Operand as IMethod);
if (realInstanceMethod == null)
continue;
call.Operand = realInstanceMethod;
}
}
}
}
}