namespace X86Disassembler.X86.Handlers.Test;
///
/// Handler for TEST r/m8, imm8 instruction (0xF6 /0)
///
public class TestImmWithRm8Handler : InstructionHandler
{
///
/// Initializes a new instance of the TestImmWithRm8Handler class
///
/// The buffer containing the code to decode
/// The instruction decoder that owns this handler
/// The length of the buffer
public TestImmWithRm8Handler(byte[] codeBuffer, InstructionDecoder decoder, int length)
: base(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)
{
// This handler only handles opcode 0xF6
if (opcode != 0xF6)
{
return false;
}
// Check if we have enough bytes to read the ModR/M byte
if (!Decoder.CanReadByte())
{
return false;
}
// Check if the reg field is 0 (TEST operation)
byte modRM = CodeBuffer[Decoder.GetPosition()];
byte reg = (byte)((modRM & 0x38) >> 3);
return reg == 0; // 0 = TEST
}
///
/// Decodes a TEST r/m8, imm8 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";
// Read the ModR/M byte
var (mod, reg, rm, destOperand) = ModRMDecoder.ReadModRM();
// Get the destination operand based on addressing mode
if (mod == 3) // Register operand
{
// For direct register addressing, use the correct 8-bit register name
destOperand = ModRMDecoder.GetRegisterName(rm, 8);
}
// Check if we have enough bytes for the immediate value
if (!Decoder.CanReadByte())
{
return false;
}
// Read the immediate value
byte imm8 = Decoder.ReadByte();
// Set the operands
instruction.Operands = $"{destOperand}, 0x{imm8:X2}";
return true;
}
}