namespace X86Disassembler.X86.Handlers; /// /// Handler for TEST r/m8, r8 instruction (0x84) /// public class TestRegMem8Handler : InstructionHandler { // ModR/M decoder private readonly ModRMDecoder _modRMDecoder; /// /// Initializes a new instance of the TestRegMem8Handler class /// /// The buffer containing the code to decode /// The instruction decoder that owns this handler /// The length of the buffer public TestRegMem8Handler(byte[] codeBuffer, InstructionDecoder decoder, int length) : base(codeBuffer, decoder, length) { _modRMDecoder = new ModRMDecoder(codeBuffer, decoder, length); } /// /// Checks if this handler can decode the given opcode /// /// The opcode to check /// True if this handler can decode the opcode public override bool CanHandle(byte opcode) { return opcode == 0x84; } /// /// Decodes a TEST r/m8, r8 instruction /// /// The opcode of the instruction /// The instruction object to populate /// True if the instruction was successfully decoded public override bool Decode(byte opcode, Instruction instruction) { // Set the mnemonic instruction.Mnemonic = "test"; int position = Decoder.GetPosition(); if (position >= Length) { return false; } // Read the ModR/M byte byte modRM = CodeBuffer[position++]; Decoder.SetPosition(position); // Extract the fields from the ModR/M byte byte mod = (byte)((modRM & 0xC0) >> 6); byte reg = (byte)((modRM & 0x38) >> 3); byte rm = (byte)(modRM & 0x07); // Decode the destination operand string destOperand = _modRMDecoder.DecodeModRM(mod, rm, true); // Get the source register string srcReg = GetRegister8(reg); // Set the operands instruction.Operands = $"{destOperand}, {srcReg}"; return true; } /// /// Gets the 8-bit register name for the given register index /// /// The register index /// The register name private static string GetRegister8(byte reg) { string[] registerNames = { "al", "cl", "dl", "bl", "ah", "ch", "dh", "bh" }; return registerNames[reg & 0x07]; } }