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104 lines
3.4 KiB
C#
104 lines
3.4 KiB
C#
namespace X86Disassembler.X86.Handlers.And;
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/// <summary>
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/// Handler for AND r/m32, imm8 (sign-extended) instruction (0x83 /4)
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/// </summary>
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public class AndImmToRm32SignExtendedHandler : InstructionHandler
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{
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/// <summary>
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/// Initializes a new instance of the AndImmToRm32SignExtendedHandler class
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/// </summary>
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/// <param name="codeBuffer">The buffer containing the code to decode</param>
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/// <param name="decoder">The instruction decoder that owns this handler</param>
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/// <param name="length">The length of the buffer</param>
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public AndImmToRm32SignExtendedHandler(byte[] codeBuffer, InstructionDecoder decoder, int length)
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: base(codeBuffer, decoder, length)
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{
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}
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/// <summary>
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/// Checks if this handler can decode the given opcode
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/// </summary>
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/// <param name="opcode">The opcode to check</param>
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/// <returns>True if this handler can decode the opcode</returns>
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public override bool CanHandle(byte opcode)
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{
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if (opcode != 0x83)
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{
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return false;
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}
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// Check if we have enough bytes to read the ModR/M byte
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int position = Decoder.GetPosition();
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if (position >= Length)
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{
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return false;
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}
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// Read the ModR/M byte to check the reg field (bits 5-3)
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byte modRM = CodeBuffer[position];
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int reg = (modRM >> 3) & 0x7;
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// reg = 4 means AND operation
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return reg == 4;
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}
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/// <summary>
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/// Decodes an AND r/m32, imm8 (sign-extended) instruction
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/// </summary>
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/// <param name="opcode">The opcode of the instruction</param>
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/// <param name="instruction">The instruction object to populate</param>
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/// <returns>True if the instruction was successfully decoded</returns>
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public override bool Decode(byte opcode, Instruction instruction)
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{
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// Set the mnemonic
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instruction.Mnemonic = "and";
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// Read the ModR/M byte
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var (mod, reg, rm, memOperand) = ModRMDecoder.ReadModRM();
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// Get the position after decoding the ModR/M byte
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int position = Decoder.GetPosition();
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// Check if we have enough bytes for the immediate value
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if (position >= Length)
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{
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return false; // Not enough bytes for the immediate value
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}
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// Read the immediate value as a signed byte and automatically sign-extend it to int
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int signExtendedImm = (sbyte)Decoder.ReadByte();
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// Format the destination operand based on addressing mode
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string destOperand;
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if (mod == 3) // Register addressing mode
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{
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// Get 32-bit register name
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destOperand = ModRMDecoder.GetRegisterName(rm, 32);
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}
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else // Memory addressing mode
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{
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// Memory operand already includes dword ptr prefix
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destOperand = memOperand;
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}
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// Format the immediate value
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string immStr;
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if (signExtendedImm < 0)
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{
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// For negative values, use the full 32-bit representation
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immStr = $"0x{(uint)signExtendedImm:X8}";
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}
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else
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{
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// For positive values, use the regular format with leading zeros
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immStr = $"0x{signExtendedImm:X8}";
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}
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// Set the operands
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instruction.Operands = $"{destOperand}, {immStr}";
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return true;
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}
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}
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