mirror of
https://github.com/ryujinx-mirror/ryujinx.git
synced 2024-11-23 10:35:10 +00:00
0c1ea1212a
* Add initial implementation of the Tamper Machine * Implement Atmosphere opcodes 0, 4 and 9 * Add missing TamperCompilationException class * Implement Atmosphere conditional and loop opcodes 1, 2 and 3 * Inplement input conditional opcode 8 * Add register store opcode A * Implement extended pause/resume opcodes FF0 and FF1 * Implement extended log opcode FFF * Implement extended register conditional opcode C0 * Refactor TamperProgram to an interface * Moved Atmosphere classes to a separate subdirectory * Fix OpProcCtrl class not setting process * Implement extended register save/restore opcodes C1, C2 and C3 * Refactor code emitters to separate classes * Supress memory access errors from the Tamper Machine * Add debug information to tamper register and memory writes * Add block stack check to Atmosphere Cheat compiler * Add handheld input support to Tamper Machine * Fix code styling * Fix build id and cheat case mismatch * Fix invalid immediate size selection * Print build ids of the title * Prevent Tamper Machine from change code regions * Remove Atmosphere namespace * Remove empty cheats from the list * Prevent code modification without disabling the tampering * Fix missing addressing mode in LoadRegisterWithMemory * Fix wrong addressing in RegisterConditional * Add name to the tamper machine thread * Fix code styling
134 lines
4.7 KiB
C#
134 lines
4.7 KiB
C#
using Ryujinx.HLE.Exceptions;
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using Ryujinx.HLE.HOS.Tamper.Conditions;
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using Ryujinx.HLE.HOS.Tamper.Operations;
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using System;
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using System.Globalization;
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namespace Ryujinx.HLE.HOS.Tamper
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{
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class InstructionHelper
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{
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private const int CodeTypeIndex = 0;
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public static void Emit(IOperation operation, CompilationContext context)
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{
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context.CurrentOperations.Add(operation);
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}
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public static void Emit(Type instruction, byte width, CompilationContext context, params Object[] operands)
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{
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Emit((IOperation)Create(instruction, width, operands), context);
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}
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public static void EmitMov(byte width, CompilationContext context, IOperand destination, IOperand source)
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{
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Emit(typeof(OpMov<>), width, context, destination, source);
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}
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public static ICondition CreateCondition(Comparison comparison, byte width, IOperand lhs, IOperand rhs)
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{
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ICondition Create(Type conditionType)
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{
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return (ICondition)InstructionHelper.Create(conditionType, width, lhs, rhs);
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}
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switch (comparison)
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{
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case Comparison.Greater : return Create(typeof(CondGT<>));
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case Comparison.GreaterOrEqual: return Create(typeof(CondGE<>));
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case Comparison.Less : return Create(typeof(CondLT<>));
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case Comparison.LessOrEqual : return Create(typeof(CondLE<>));
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case Comparison.Equal : return Create(typeof(CondEQ<>));
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case Comparison.NotEqual : return Create(typeof(CondNE<>));
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default:
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throw new TamperCompilationException($"Invalid comparison {comparison} in Atmosphere cheat");
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}
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}
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public static Object Create(Type instruction, byte width, params Object[] operands)
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{
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Type realType;
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switch (width)
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{
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case 1: realType = instruction.MakeGenericType(typeof(byte)); break;
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case 2: realType = instruction.MakeGenericType(typeof(ushort)); break;
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case 4: realType = instruction.MakeGenericType(typeof(uint)); break;
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case 8: realType = instruction.MakeGenericType(typeof(ulong)); break;
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default:
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throw new TamperCompilationException($"Invalid instruction width {width} in Atmosphere cheat");
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}
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return Activator.CreateInstance(realType, operands);
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}
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public static ulong GetImmediate(byte[] instruction, int index, int nybbleCount)
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{
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ulong value = 0;
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for (int i = 0; i < nybbleCount; i++)
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{
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value <<= 4;
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value |= instruction[index + i];
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}
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return value;
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}
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public static CodeType GetCodeType(byte[] instruction)
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{
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int codeType = instruction[CodeTypeIndex];
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if (codeType >= 0xC)
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{
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byte extension = instruction[CodeTypeIndex + 1];
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codeType = (codeType << 4) | extension;
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if (extension == 0xF)
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{
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extension = instruction[CodeTypeIndex + 2];
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codeType = (codeType << 4) | extension;
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}
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}
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return (CodeType)codeType;
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}
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public static byte[] ParseRawInstruction(string rawInstruction)
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{
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const int wordSize = 2 * sizeof(uint);
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// Instructions are multi-word, with 32bit words. Split the raw instruction
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// and parse each word into individual nybbles of bits.
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var words = rawInstruction.Split((char[])null, StringSplitOptions.RemoveEmptyEntries);
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byte[] instruction = new byte[wordSize * words.Length];
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if (words.Length == 0)
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{
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throw new TamperCompilationException("Empty instruction in Atmosphere cheat");
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}
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for (int wordIndex = 0; wordIndex < words.Length; wordIndex++)
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{
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string word = words[wordIndex];
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if (word.Length != wordSize)
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{
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throw new TamperCompilationException($"Invalid word length for {word} in Atmosphere cheat");
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}
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for (int nybbleIndex = 0; nybbleIndex < wordSize; nybbleIndex++)
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{
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int index = wordIndex * wordSize + nybbleIndex;
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string byteData = word.Substring(nybbleIndex, 1);
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instruction[index] = byte.Parse(byteData, NumberStyles.HexNumber, CultureInfo.InvariantCulture);
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}
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}
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return instruction;
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}
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}
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}
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