Update TamperMachine and disable write-to-code prevention (#2506)
* Enable write to memory and improve logging * Update tamper machine opcodes and improve reporting * Add Else support * Add missing private statement
This commit is contained in:
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a27986c311
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@ -1,9 +0,0 @@
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using System;
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namespace Ryujinx.HLE.Exceptions
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{
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public class CodeRegionTamperedException : TamperExecutionException
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{
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public CodeRegionTamperedException(string message) : base(message) { }
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}
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}
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@ -8,13 +8,17 @@ namespace Ryujinx.HLE.HOS.Kernel.Process
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public IEnumerable<string> BuildIds { get; }
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public IEnumerable<ulong> CodeAddresses { get; }
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public ulong HeapAddress { get; }
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public ulong AliasAddress { get; }
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public ulong AslrAddress { get; }
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public ProcessTamperInfo(KProcess process, IEnumerable<string> buildIds, IEnumerable<ulong> codeAddresses, ulong heapAddress)
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public ProcessTamperInfo(KProcess process, IEnumerable<string> buildIds, IEnumerable<ulong> codeAddresses, ulong heapAddress, ulong aliasAddress, ulong aslrAddress)
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{
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Process = process;
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BuildIds = buildIds;
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Process = process;
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BuildIds = buildIds;
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CodeAddresses = codeAddresses;
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HeapAddress = heapAddress;
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HeapAddress = heapAddress;
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AliasAddress = aliasAddress;
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AslrAddress = aslrAddress;
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}
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}
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}
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@ -658,7 +658,7 @@ namespace Ryujinx.HLE.HOS
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Logger.Info?.Print(LogClass.ModLoader, $"Installing cheat '{cheat.Name}'");
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tamperMachine.InstallAtmosphereCheat(cheat.Instructions, tamperInfo, exeAddress);
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tamperMachine.InstallAtmosphereCheat(cheat.Name, cheat.Instructions, tamperInfo, exeAddress);
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}
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}
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@ -280,7 +280,8 @@ namespace Ryujinx.HLE.HOS
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// Keep the build ids because the tamper machine uses them to know which process to associate a
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// tamper to and also keep the starting address of each executable inside a process because some
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// memory modifications are relative to this address.
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tamperInfo = new ProcessTamperInfo(process, buildIds, nsoBase, process.MemoryManager.HeapRegionStart);
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tamperInfo = new ProcessTamperInfo(process, buildIds, nsoBase, process.MemoryManager.HeapRegionStart,
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process.MemoryManager.AliasRegionStart, process.MemoryManager.CodeRegionStart);
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return true;
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}
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@ -9,14 +9,36 @@ namespace Ryujinx.HLE.HOS.Tamper
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{
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class AtmosphereCompiler
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{
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public ITamperProgram Compile(IEnumerable<string> rawInstructions, ulong exeAddress, ulong heapAddress, ITamperedProcess process)
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private ulong _exeAddress;
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private ulong _heapAddress;
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private ulong _aliasAddress;
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private ulong _aslrAddress;
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private ITamperedProcess _process;
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public AtmosphereCompiler(ulong exeAddress, ulong heapAddress, ulong aliasAddress, ulong aslrAddress, ITamperedProcess process)
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{
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Logger.Debug?.Print(LogClass.TamperMachine, $"Executable address: {exeAddress:X16}");
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Logger.Debug?.Print(LogClass.TamperMachine, $"Heap address: {heapAddress:X16}");
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_exeAddress = exeAddress;
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_heapAddress = heapAddress;
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_aliasAddress = aliasAddress;
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_aslrAddress = aslrAddress;
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_process = process;
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}
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public ITamperProgram Compile(string name, IEnumerable<string> rawInstructions)
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{
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string[] addresses = new string[]
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{
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$" Executable address: 0x{_exeAddress:X16}",
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$" Heap address : 0x{_heapAddress:X16}",
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$" Alias address : 0x{_aliasAddress:X16}",
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$" Aslr address : 0x{_aslrAddress:X16}"
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};
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Logger.Debug?.Print(LogClass.TamperMachine, $"Compiling Atmosphere cheat {name}...\n{string.Join('\n', addresses)}");
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try
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{
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return CompileImpl(rawInstructions, exeAddress, heapAddress, process);
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return CompileImpl(name, rawInstructions);
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}
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catch(TamperCompilationException exception)
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{
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@ -33,9 +55,9 @@ namespace Ryujinx.HLE.HOS.Tamper
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return null;
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}
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private ITamperProgram CompileImpl(IEnumerable<string> rawInstructions, ulong exeAddress, ulong heapAddress, ITamperedProcess process)
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private ITamperProgram CompileImpl(string name, IEnumerable<string> rawInstructions)
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{
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CompilationContext context = new CompilationContext(exeAddress, heapAddress, process);
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CompilationContext context = new CompilationContext(_exeAddress, _heapAddress, _aliasAddress, _aslrAddress, _process);
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context.BlockStack.Push(new OperationBlock(null));
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// Parse the instructions.
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@ -124,7 +146,7 @@ namespace Ryujinx.HLE.HOS.Tamper
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throw new TamperCompilationException($"Reached end of compilation with unmatched conditional(s) or loop(s)");
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}
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return new AtmosphereProgram(process, context.PressedKeys, new Block(context.CurrentOperations));
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return new AtmosphereProgram(name, _process, context.PressedKeys, new Block(context.CurrentOperations));
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}
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}
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}
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@ -8,10 +8,13 @@ namespace Ryujinx.HLE.HOS.Tamper
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private Parameter<long> _pressedKeys;
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private IOperation _entryPoint;
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public string Name { get; }
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public bool TampersCodeMemory { get; set; } = false;
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public ITamperedProcess Process { get; }
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public AtmosphereProgram(ITamperedProcess process, Parameter<long> pressedKeys, IOperation entryPoint)
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public AtmosphereProgram(string name, ITamperedProcess process, Parameter<long> pressedKeys, IOperation entryPoint)
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{
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Name = name;
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Process = process;
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_pressedKeys = pressedKeys;
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_entryPoint = entryPoint;
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@ -10,32 +10,73 @@ namespace Ryujinx.HLE.HOS.Tamper.CodeEmitters
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/// </summary>
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class EndConditionalBlock
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{
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const int TerminationTypeIndex = 1;
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private const byte End = 0; // True end of the conditional.
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private const byte Else = 1; // End of the 'then' block and beginning of 'else' block.
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public static void Emit(byte[] instruction, CompilationContext context)
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{
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// 20000000
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Emit(instruction, context, null);
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}
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private static void Emit(byte[] instruction, CompilationContext context, IEnumerable<IOperation> operationsElse)
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{
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// 2X000000
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// X: End type (0 = End, 1 = Else).
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byte terminationType = instruction[TerminationTypeIndex];
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switch (terminationType)
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{
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case End:
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break;
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case Else:
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// Start a new operation block with the 'else' instruction to signal that there is the 'then' block just above it.
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context.BlockStack.Push(new OperationBlock(instruction));
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return;
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default:
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throw new TamperCompilationException($"Unknown conditional termination type {terminationType}");
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}
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// Use the conditional begin instruction stored in the stack.
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instruction = context.CurrentBlock.BaseInstruction;
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CodeType codeType = InstructionHelper.GetCodeType(instruction);
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var upperInstruction = context.CurrentBlock.BaseInstruction;
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CodeType codeType = InstructionHelper.GetCodeType(upperInstruction);
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// Pop the current block of operations from the stack so control instructions
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// for the conditional can be emitted in the upper block.
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IEnumerable<IOperation> operations = context.CurrentOperations;
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context.BlockStack.Pop();
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// If the else operations are already set, then the upper block must not be another end.
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if (operationsElse != null && codeType == CodeType.EndConditionalBlock)
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{
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throw new TamperCompilationException($"Expected an upper 'if' conditional instead of 'end conditional'");
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}
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ICondition condition;
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switch (codeType)
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{
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case CodeType.BeginMemoryConditionalBlock:
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condition = MemoryConditional.Emit(instruction, context);
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condition = MemoryConditional.Emit(upperInstruction, context);
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break;
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case CodeType.BeginKeypressConditionalBlock:
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condition = KeyPressConditional.Emit(instruction, context);
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condition = KeyPressConditional.Emit(upperInstruction, context);
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break;
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case CodeType.BeginRegisterConditionalBlock:
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condition = RegisterConditional.Emit(instruction, context);
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condition = RegisterConditional.Emit(upperInstruction, context);
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break;
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case CodeType.EndConditionalBlock:
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terminationType = upperInstruction[TerminationTypeIndex];
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// If there is an end instruction above then it must be an else.
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if (terminationType != Else)
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{
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throw new TamperCompilationException($"Expected an upper 'else' conditional instead of {terminationType}");
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}
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// Re-run the Emit with the else operations set.
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Emit(instruction, context, operations);
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return;
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default:
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throw new TamperCompilationException($"Conditional end does not match code type {codeType} in Atmosphere cheat");
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}
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@ -43,7 +84,7 @@ namespace Ryujinx.HLE.HOS.Tamper.CodeEmitters
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// Create a conditional block with the current operations and nest it in the upper
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// block of the stack.
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IfBlock block = new IfBlock(condition, operations);
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IfBlock block = new IfBlock(condition, operations, operationsElse);
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context.CurrentOperations.Add(block);
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}
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}
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@ -20,17 +20,21 @@ namespace Ryujinx.HLE.HOS.Tamper
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public Dictionary<byte, Register> StaticRegisters { get; }
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public ulong ExeAddress { get; }
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public ulong HeapAddress { get; }
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public ulong AliasAddress { get; }
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public ulong AslrAddress { get; }
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public CompilationContext(ulong exeAddress, ulong heapAddress, ITamperedProcess process)
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public CompilationContext(ulong exeAddress, ulong heapAddress, ulong aliasAddress, ulong aslrAddress, ITamperedProcess process)
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{
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Process = process;
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PressedKeys = new Parameter<long>(0);
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BlockStack = new Stack<OperationBlock>();
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Registers = new Dictionary<byte, Register>();
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SavedRegisters = new Dictionary<byte, Register>();
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Process = process;
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PressedKeys = new Parameter<long>(0);
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BlockStack = new Stack<OperationBlock>();
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Registers = new Dictionary<byte, Register>();
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SavedRegisters = new Dictionary<byte, Register>();
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StaticRegisters = new Dictionary<byte, Register>();
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ExeAddress = exeAddress;
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HeapAddress = heapAddress;
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ExeAddress = exeAddress;
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HeapAddress = heapAddress;
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AliasAddress = aliasAddress;
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AslrAddress = aslrAddress;
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}
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public Register GetRegister(byte index)
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@ -4,6 +4,8 @@ namespace Ryujinx.HLE.HOS.Tamper
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{
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interface ITamperProgram
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{
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string Name { get; }
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bool TampersCodeMemory { get; set; }
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ITamperedProcess Process { get; }
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void Execute(ControllerKeys pressedKeys);
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}
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@ -5,6 +5,9 @@ namespace Ryujinx.HLE.HOS.Tamper
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interface ITamperedProcess
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{
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ProcessState State { get; }
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bool TamperedCodeMemory { get; set; }
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T ReadMemory<T>(ulong va) where T : unmanaged;
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void WriteMemory<T>(ulong va, T value) where T : unmanaged;
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void PauseProcess();
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@ -15,6 +15,12 @@ namespace Ryujinx.HLE.HOS.Tamper
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case MemoryRegion.Heap:
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// Memory address is relative to the heap.
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return context.HeapAddress;
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case MemoryRegion.Alias:
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// Memory address is relative to the alias region.
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return context.AliasAddress;
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case MemoryRegion.Asrl:
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// Memory address is relative to the asrl region, which matches the code region.
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return context.AslrAddress;
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default:
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throw new TamperCompilationException($"Invalid memory source {source} in Atmosphere cheat");
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}
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@ -20,6 +20,16 @@ namespace Ryujinx.HLE.HOS.Tamper
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/// <summary>
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/// The address of the heap, as determined by the kernel.
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/// </summary>
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Heap = 0x1
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Heap = 0x1,
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/// <summary>
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/// The address of the alias region, as determined by the kernel.
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/// </summary>
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Alias = 0x2,
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/// <summary>
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/// The address of the code region with address space layout randomization included.
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/// </summary>
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Asrl = 0x3,
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}
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}
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@ -6,27 +6,26 @@ namespace Ryujinx.HLE.HOS.Tamper.Operations
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class IfBlock : IOperation
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{
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private ICondition _condition;
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private IEnumerable<IOperation> _operations;
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private IEnumerable<IOperation> _operationsThen;
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private IEnumerable<IOperation> _operationsElse;
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public IfBlock(ICondition condition, IEnumerable<IOperation> operations)
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public IfBlock(ICondition condition, IEnumerable<IOperation> operationsThen, IEnumerable<IOperation> operationsElse)
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{
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_condition = condition;
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_operations = operations;
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}
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public IfBlock(ICondition condition, params IOperation[] operations)
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{
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_operations = operations;
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_operationsThen = operationsThen;
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_operationsElse = operationsElse;
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}
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public void Execute()
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{
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if (!_condition.Evaluate())
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IEnumerable<IOperation> operations = _condition.Evaluate() ? _operationsThen : _operationsElse;
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if (operations == null)
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{
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return;
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}
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foreach (IOperation op in _operations)
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foreach (IOperation op in operations)
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{
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op.Execute();
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}
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@ -11,9 +11,11 @@ namespace Ryujinx.HLE.HOS.Tamper
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public ProcessState State => _process.State;
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public bool TamperedCodeMemory { get; set; } = false;
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public TamperedKProcess(KProcess process)
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{
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this._process = process;
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_process = process;
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}
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private void AssertMemoryRegion<T>(ulong va, bool isWrite) where T : unmanaged
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@ -32,11 +34,11 @@ namespace Ryujinx.HLE.HOS.Tamper
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return;
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}
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// TODO (Caian): It is unknown how PPTC behaves if the tamper modifies memory regions
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// belonging to code. So for now just prevent code tampering.
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if ((va >= _process.MemoryManager.CodeRegionStart) && (va + size <= _process.MemoryManager.CodeRegionEnd))
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// TODO (Caian): The JIT does not support invalidating a code region so writing to code memory may not work
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// as intended, so taint the operation to issue a warning later.
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if (isWrite && (va >= _process.MemoryManager.CodeRegionStart) && (va + size <= _process.MemoryManager.CodeRegionEnd))
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{
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throw new CodeRegionTamperedException($"Writing {size} bytes to address 0x{va:X16} alters code");
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TamperedCodeMemory = true;
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}
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}
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@ -31,7 +31,7 @@ namespace Ryujinx.HLE.HOS
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}
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}
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internal void InstallAtmosphereCheat(IEnumerable<string> rawInstructions, ProcessTamperInfo info, ulong exeAddress)
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internal void InstallAtmosphereCheat(string name, IEnumerable<string> rawInstructions, ProcessTamperInfo info, ulong exeAddress)
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{
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if (!CanInstallOnPid(info.Process.Pid))
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{
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@ -39,11 +39,13 @@ namespace Ryujinx.HLE.HOS
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}
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ITamperedProcess tamperedProcess = new TamperedKProcess(info.Process);
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AtmosphereCompiler compiler = new AtmosphereCompiler();
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ITamperProgram program = compiler.Compile(rawInstructions, exeAddress, info.HeapAddress, tamperedProcess);
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AtmosphereCompiler compiler = new AtmosphereCompiler(exeAddress, info.HeapAddress, info.AliasAddress, info.AslrAddress, tamperedProcess);
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ITamperProgram program = compiler.Compile(name, rawInstructions);
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if (program != null)
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{
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program.TampersCodeMemory = false;
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_programs.Enqueue(program);
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}
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@ -116,27 +118,27 @@ namespace Ryujinx.HLE.HOS
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// Re-enqueue the tampering program because the process is still valid.
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_programs.Enqueue(program);
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Logger.Debug?.Print(LogClass.TamperMachine, "Running tampering program");
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Logger.Debug?.Print(LogClass.TamperMachine, $"Running tampering program {program.Name}");
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try
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{
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ControllerKeys pressedKeys = (ControllerKeys)Thread.VolatileRead(ref _pressedKeys);
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program.Process.TamperedCodeMemory = false;
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program.Execute(pressedKeys);
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}
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catch (CodeRegionTamperedException ex)
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{
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Logger.Debug?.Print(LogClass.TamperMachine, $"Prevented tampering program from modifing code memory");
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if (!String.IsNullOrEmpty(ex.Message))
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// Detect the first attempt to tamper memory and log it.
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if (!program.TampersCodeMemory && program.Process.TamperedCodeMemory)
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{
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Logger.Debug?.Print(LogClass.TamperMachine, ex.Message);
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program.TampersCodeMemory = true;
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Logger.Warning?.Print(LogClass.TamperMachine, $"Tampering program {program.Name} modifies code memory so it may not work properly");
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}
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}
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catch (Exception ex)
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{
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Logger.Debug?.Print(LogClass.TamperMachine, $"The tampering program crashed, this can happen while the game is starting");
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Logger.Debug?.Print(LogClass.TamperMachine, $"The tampering program {program.Name} crashed, this can happen while the game is starting");
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if (!String.IsNullOrEmpty(ex.Message))
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if (!string.IsNullOrEmpty(ex.Message))
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{
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Logger.Debug?.Print(LogClass.TamperMachine, ex.Message);
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}
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