#![allow(non_snake_case)]
#![allow(unused)]
use crate::error::Result;
use crate::utils::*;
use super::super::formatter::*;
use super::super::instruction::*;
use super::super::operand::*;
use super::super::consts::*;
use super::super::config::*;
use super::super::decoder::*;
pub(crate) struct IclassCmpRT1;
impl IclassCmpRT1 {
pub(crate) fn decode(data: u32, decoder: &mut Decoder) -> Result<Instruction> {
let Rm = (data >> 3) & 7;
let Rm_post = Rm;
let op = (data >> 6) & 15;
let op_post = op;
let field_15 = (data >> 10) & 63;
let field_15_post = field_15;
let Rn = (data >> 0) & 7;
let Rn_post = Rn;
return CmpRT1::decode(data as u32, decoder);
unreachable!()
}
}
pub struct CmpRT1;
impl CmpRT1 {
pub fn mnemonic(_instr: &Instruction) -> Mnemonic {
Mnemonic::CMP
}
pub fn condition(instr: &Instruction) -> ConditionalInstruction {
ConditionalInstruction::Condition(0, false, false)
}
pub fn size(_instr: &Instruction) -> usize {2}
pub fn decode(data: u32, decoder: &mut Decoder) -> Result<Instruction> {
let Rm = (data >> 3) & 7;
let Rm_post = Rm;
let Rn = (data >> 0) & 7;
let Rn_post = Rn;
if !((Rn_post <= 7 && Rm_post <= 7)) {
todo!()
}
let Rn_post = Rn;
let Rm_post = Rm;
let op_0 = MnemonicCondition::Al;
let op_1 = Register::decode(Rn_post)?;
let op_2 = Register::decode(Rm_post)?;
let mut instr = Instruction::builder(Code::CMP_r_T1)
.operand(0, op_0)?
.operand(1, op_1)?
.operand(2, op_2)?
.build();
Ok(instr)
}
pub fn encode(instr: &Instruction, buf: &mut Vec<u8>) -> Result<usize> {
let Rn_pre = instr.op1().as_register()?.encode();
let Rm_pre = instr.op2().as_register()?.encode();
let Rn = (Rn_pre & 7);
let Rm = (Rm_pre & 7);
let mut instr: u32 = 0b0100001010000000;
instr |= (Rn & 7) << 0;
instr |= (Rm & 7) << 3;
let instr = instr as u16;
buf.extend(instr.to_le_bytes());
Ok(2)
}
pub fn encode_block(instr: &mut Instruction, buf: &mut Vec<u8>, labels: &std::collections::HashMap<u64, u64>) -> Result<usize> {
Self::encode(instr, buf)
}
pub fn check_op0(instr: &Instruction, op: &Operand) -> Result<()> {
if let Operand::MnemonicCondition(r) = op {
return Ok(())
}
todo!()
}
pub fn check_op1(instr: &Instruction, op: &Operand) -> Result<()> {
if let Operand::Register(r) = op {
return Ok(())
}
todo!()
}
pub fn check_op2(instr: &Instruction, op: &Operand) -> Result<()> {
if let Operand::Register(r) = op {
return Ok(())
}
todo!()
}
pub fn check_op3(instr: &Instruction, op: &Operand) -> Result<()> {
todo!()
}
pub fn check_op4(instr: &Instruction, op: &Operand) -> Result<()> {
todo!()
}
pub fn check_op5(instr: &Instruction, op: &Operand) -> Result<()> {
todo!()
}
pub fn check_op6(instr: &Instruction, op: &Operand) -> Result<()> {
todo!()
}
pub fn format(instr: &Instruction, fmt: &mut impl Formatter, output: &mut impl FormatterOutput, config: &Config) -> Result<()> {
fmt.format_mnemonic(output, &config.global, &config.instructions.cmp_r_t1, &instr)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t1, &instr, 0)?;
fmt.format_qualifier(output, &config.global, &config.instructions.cmp_r_t1, &instr, FormatterQualifier::Narrow, true, false)?;
fmt.format_punctuation(output, &config.global, &config.instructions.cmp_r_t1, &instr, FormatterTextKind::Space)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t1, &instr, 1)?;
fmt.format_punctuation(output, &config.global, &config.instructions.cmp_r_t1, &instr, FormatterTextKind::Comma)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t1, &instr, 2)?;
Ok(())
}
}
#[derive(Copy, Clone, Eq, PartialEq, Ord, PartialOrd, Debug, Hash)]
pub enum CmpRT1Aliases {
None,
}
#[derive(Copy, Clone, Eq, PartialEq, Ord, PartialOrd, Debug, Hash)]
pub enum CmpRT1Encodings {
None
}
pub(crate) struct IclassCmpRT2;
impl IclassCmpRT2 {
pub(crate) fn decode(data: u32, decoder: &mut Decoder) -> Result<Instruction> {
let op = (data >> 8) & 3;
let op_post = op;
let N = (data >> 7) & 1;
let N_post = N;
let Rn = (data >> 0) & 7;
let Rn_post = Rn;
let field_15 = (data >> 10) & 63;
let field_15_post = field_15;
let Rm = (data >> 3) & 15;
let Rm_post = Rm;
return CmpRT2::decode(data as u32, decoder);
unreachable!()
}
}
pub struct CmpRT2;
impl CmpRT2 {
pub fn mnemonic(_instr: &Instruction) -> Mnemonic {
Mnemonic::CMP
}
pub fn condition(instr: &Instruction) -> ConditionalInstruction {
ConditionalInstruction::Condition(0, false, false)
}
pub fn size(_instr: &Instruction) -> usize {2}
pub fn decode(data: u32, decoder: &mut Decoder) -> Result<Instruction> {
let N = (data >> 7) & 1;
let N_post = N;
let Rm = (data >> 3) & 15;
let Rm_post = Rm;
let Rn = (data >> 0) & 7;
let Rn_post = Rn;
let N_Rn_post = (N << 3) | Rn;
let Rm_post = Rm;
let op_0 = MnemonicCondition::Al;
let op_1 = Register::decode(N_Rn_post)?;
let op_2 = Register::decode(Rm_post)?;
let mut instr = Instruction::builder(Code::CMP_r_T2)
.operand(0, op_0)?
.operand(1, op_1)?
.operand(2, op_2)?
.build();
Ok(instr)
}
pub fn encode(instr: &Instruction, buf: &mut Vec<u8>) -> Result<usize> {
let N_Rn_pre = instr.op1().as_register()?.encode();
let Rm_pre = instr.op2().as_register()?.encode();
let Rn = (N_Rn_pre & 7);
let N = (N_Rn_pre >> 3) & 1;
let Rm = (Rm_pre & 15);
let mut instr: u32 = 0b0100010100000000;
instr |= (Rn & 7) << 0;
instr |= (N & 1) << 7;
instr |= (Rm & 15) << 3;
let instr = instr as u16;
buf.extend(instr.to_le_bytes());
Ok(2)
}
pub fn encode_block(instr: &mut Instruction, buf: &mut Vec<u8>, labels: &std::collections::HashMap<u64, u64>) -> Result<usize> {
Self::encode(instr, buf)
}
pub fn check_op0(instr: &Instruction, op: &Operand) -> Result<()> {
if let Operand::MnemonicCondition(r) = op {
return Ok(())
}
todo!()
}
pub fn check_op1(instr: &Instruction, op: &Operand) -> Result<()> {
if let Operand::Register(r) = op {
return Ok(())
}
todo!()
}
pub fn check_op2(instr: &Instruction, op: &Operand) -> Result<()> {
if let Operand::Register(r) = op {
return Ok(())
}
todo!()
}
pub fn check_op3(instr: &Instruction, op: &Operand) -> Result<()> {
todo!()
}
pub fn check_op4(instr: &Instruction, op: &Operand) -> Result<()> {
todo!()
}
pub fn check_op5(instr: &Instruction, op: &Operand) -> Result<()> {
todo!()
}
pub fn check_op6(instr: &Instruction, op: &Operand) -> Result<()> {
todo!()
}
pub fn format(instr: &Instruction, fmt: &mut impl Formatter, output: &mut impl FormatterOutput, config: &Config) -> Result<()> {
fmt.format_mnemonic(output, &config.global, &config.instructions.cmp_r_t2, &instr)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t2, &instr, 0)?;
fmt.format_qualifier(output, &config.global, &config.instructions.cmp_r_t2, &instr, FormatterQualifier::Narrow, true, false)?;
fmt.format_punctuation(output, &config.global, &config.instructions.cmp_r_t2, &instr, FormatterTextKind::Space)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t2, &instr, 1)?;
fmt.format_punctuation(output, &config.global, &config.instructions.cmp_r_t2, &instr, FormatterTextKind::Comma)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t2, &instr, 2)?;
Ok(())
}
}
#[derive(Copy, Clone, Eq, PartialEq, Ord, PartialOrd, Debug, Hash)]
pub enum CmpRT2Aliases {
None,
}
#[derive(Copy, Clone, Eq, PartialEq, Ord, PartialOrd, Debug, Hash)]
pub enum CmpRT2Encodings {
None
}
pub(crate) struct IclassCmpRT3Rrx;
impl IclassCmpRT3Rrx {
pub(crate) fn decode(data: u32, decoder: &mut Decoder) -> Result<Instruction> {
let Rm = (data >> 0) & 15;
let Rm_post = Rm;
let field_31 = (data >> 25) & 127;
let field_31_post = field_31;
let imm3 = (data >> 12) & 7;
let imm3_post = imm3;
let S = (data >> 20) & 1;
let S_post = S;
let imm2 = (data >> 6) & 3;
let imm2_post = imm2;
let stype = (data >> 4) & 3;
let stype_post = stype;
let Rn = (data >> 16) & 15;
let Rn_post = Rn;
let Rd = (data >> 8) & 15;
let Rd_post = Rd;
let field_15 = (data >> 15) & 1;
let field_15_post = field_15;
let op1 = (data >> 21) & 15;
let op1_post = op1;
if ((imm3_post == 0) && ((imm2_post == 0) && (stype_post == 3))) {
return CmpRT3Rrx::decode(data as u32, decoder);
}
if !((((imm3_post == 0) && ((imm2_post == 0) && (stype_post == 3))))) {
return CmpRT3::decode(data as u32, decoder);
}
unreachable!()
}
}
pub struct CmpRT3Rrx;
impl CmpRT3Rrx {
pub fn mnemonic(_instr: &Instruction) -> Mnemonic {
Mnemonic::CMP
}
pub fn condition(instr: &Instruction) -> ConditionalInstruction {
ConditionalInstruction::Condition(0, false, false)
}
pub fn size(_instr: &Instruction) -> usize {4}
pub fn decode(data: u32, decoder: &mut Decoder) -> Result<Instruction> {
let Rn = (data >> 16) & 15;
let Rn_post = Rn;
let Rm = (data >> 0) & 15;
let Rm_post = Rm;
let Rn_post = Rn;
let Rm_post = Rm;
let op_0 = MnemonicCondition::Al;
let op_1 = Register::decode(Rn_post)?;
let op_2 = Register::decode(Rm_post)?;
let op_3 = Shift::RRX;
let mut instr = Instruction::builder(Code::CMP_r_T3_RRX)
.operand(0, op_0)?
.operand(1, op_1)?
.operand(2, op_2)?
.operand(3, op_3)?
.build();
Ok(instr)
}
pub fn encode(instr: &Instruction, buf: &mut Vec<u8>) -> Result<usize> {
let Rn_pre = instr.op1().as_register()?.encode();
let Rm_pre = instr.op2().as_register()?.encode();
let Rn = (Rn_pre & 15);
let Rm = (Rm_pre & 15);
let mut instr: u32 = 0b11101011101100000000111100110000;
instr |= (Rn & 15) << 16;
instr |= (Rm & 15) << 0;
let instr_1 = (instr & 0xffff) as u16;
let instr_2 = ((instr >> 16) & 0xffff) as u16;
buf.extend(instr_2.to_le_bytes());
buf.extend(instr_1.to_le_bytes());
Ok(4)
}
pub fn encode_block(instr: &mut Instruction, buf: &mut Vec<u8>, labels: &std::collections::HashMap<u64, u64>) -> Result<usize> {
Self::encode(instr, buf)
}
pub fn check_op0(instr: &Instruction, op: &Operand) -> Result<()> {
if let Operand::MnemonicCondition(r) = op {
return Ok(())
}
todo!()
}
pub fn check_op1(instr: &Instruction, op: &Operand) -> Result<()> {
if let Operand::Register(r) = op {
return Ok(())
}
todo!()
}
pub fn check_op2(instr: &Instruction, op: &Operand) -> Result<()> {
if let Operand::Register(r) = op {
return Ok(())
}
todo!()
}
pub fn check_op3(instr: &Instruction, op: &Operand) -> Result<()> {
if let Operand::Shift(Shift::RRX) = op {
return Ok(())
}
todo!()
}
pub fn check_op4(instr: &Instruction, op: &Operand) -> Result<()> {
todo!()
}
pub fn check_op5(instr: &Instruction, op: &Operand) -> Result<()> {
todo!()
}
pub fn check_op6(instr: &Instruction, op: &Operand) -> Result<()> {
todo!()
}
pub fn format(instr: &Instruction, fmt: &mut impl Formatter, output: &mut impl FormatterOutput, config: &Config) -> Result<()> {
fmt.format_mnemonic(output, &config.global, &config.instructions.cmp_r_t3_rrx, &instr)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t3_rrx, &instr, 0)?;
fmt.format_qualifier(output, &config.global, &config.instructions.cmp_r_t3_rrx, &instr, FormatterQualifier::Wide, true, false)?;
fmt.format_punctuation(output, &config.global, &config.instructions.cmp_r_t3_rrx, &instr, FormatterTextKind::Space)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t3_rrx, &instr, 1)?;
fmt.format_punctuation(output, &config.global, &config.instructions.cmp_r_t3_rrx, &instr, FormatterTextKind::Comma)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t3_rrx, &instr, 2)?;
fmt.format_punctuation(output, &config.global, &config.instructions.cmp_r_t3_rrx, &instr, FormatterTextKind::Comma)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t3_rrx, &instr, 3)?;
Ok(())
}
}
#[derive(Copy, Clone, Eq, PartialEq, Ord, PartialOrd, Debug, Hash)]
pub enum CmpRT3RrxAliases {
None,
}
#[derive(Copy, Clone, Eq, PartialEq, Ord, PartialOrd, Debug, Hash)]
pub enum CmpRT3RrxEncodings {
None
}
pub struct CmpRT3;
impl CmpRT3 {
pub fn mnemonic(instr: &Instruction) -> Mnemonic {
match instr.encoding {
Encoding::Alt1 => Mnemonic::CMP,
Encoding::Alt2 => Mnemonic::CMP,
_ => todo!()
}
}
pub fn condition(instr: &Instruction) -> ConditionalInstruction {
match instr.encoding {
Encoding::Alt1 => {
ConditionalInstruction::Condition(0, false, false)
}
Encoding::Alt2 => {
ConditionalInstruction::Condition(0, false, false)
}
_ => todo!()
}
}
pub fn size(instr: &Instruction) -> usize {
match instr.encoding {
Encoding::Alt2 => 4,
Encoding::Alt1 => 4,
_ => todo!()
}
}
pub fn decode(data: u32, decoder: &mut Decoder) -> Result<Instruction> {
let Rn = (data >> 16) & 15;
let Rn_post = Rn;
let imm3 = (data >> 12) & 7;
let imm3_post = imm3;
let imm2 = (data >> 6) & 3;
let imm2_post = imm2;
let stype = (data >> 4) & 3;
let stype_post = stype;
let Rm = (data >> 0) & 15;
let Rm_post = Rm;
let imm2_imm3_post = (imm3 << 2) | imm2;
let Rn_post = Rn;
let Rm_post = Rm;
if let Some(encoding) = decoder.config.instructions.cmp_r_t3.encodings {
match encoding {
CmpRT3Encodings::Alt2 => {
let op_0 = MnemonicCondition::Al;
let Rn_post = Rn;
let op_1 = Register::decode(Rn_post)?;
let Rm_post = Rm;
let op_2 = Register::decode(Rm_post)?;
let mut instr = Instruction::builder_multi(Code::CMP_r_T3, Encoding::Alt2)
.operand(0, op_0)?
.operand(1, op_1)?
.operand(2, op_2)?
.build();
return Ok(instr);
}
CmpRT3Encodings::Alt1 => {
let op_0 = MnemonicCondition::Al;
let Rn_post = Rn;
let op_1 = Register::decode(Rn_post)?;
let Rm_post = Rm;
let op_2 = Register::decode(Rm_post)?;
let imm2_imm3_post = (imm3 << 2) | imm2;
let op_3 = match stype {
0 => if imm2_imm3_post == 0 {
Operand::None
} else {
Operand::Shift(Shift::LSL(imm2_imm3_post))
}
1 => if imm2_imm3_post == 0 {
Operand::Shift(Shift::LSR(32))
} else {
Operand::Shift(Shift::LSR(imm2_imm3_post))
}
2 => if imm2_imm3_post == 0 {
Operand::Shift(Shift::ASR(32))
} else {
Operand::Shift(Shift::ASR(imm2_imm3_post))
}
3 => if imm2_imm3_post == 0 {
Operand::Shift(Shift::RRX)
} else {
Operand::Shift(Shift::ROR(imm2_imm3_post))
}
_ => todo!(),
};
let mut instr = Instruction::builder_multi(Code::CMP_r_T3, Encoding::Alt1)
.operand(0, op_0)?
.operand(1, op_1)?
.operand(2, op_2)?
.operand(3, op_3)?
.build();
return Ok(instr);
}
}
}
if (stype_post == 0) && (imm2_imm3_post == 0) && ((Rn_post <= 7 && Rm_post <= 7) || (Rn_post <= 15 && Rm_post <= 15)) {
let op_0 = MnemonicCondition::Al;
let Rn_post = Rn;
let op_1 = Register::decode(Rn_post)?;
let Rm_post = Rm;
let op_2 = Register::decode(Rm_post)?;
let mut instr = Instruction::builder_multi(Code::CMP_r_T3, Encoding::Alt2)
.operand(0, op_0)?
.operand(1, op_1)?
.operand(2, op_2)?
.build();
return Ok(instr);
}
let op_0 = MnemonicCondition::Al;
let Rn_post = Rn;
let op_1 = Register::decode(Rn_post)?;
let Rm_post = Rm;
let op_2 = Register::decode(Rm_post)?;
let imm2_imm3_post = (imm3 << 2) | imm2;
let op_3 = match stype {
0 => if imm2_imm3_post == 0 {
Operand::None
} else {
Operand::Shift(Shift::LSL(imm2_imm3_post))
}
1 => if imm2_imm3_post == 0 {
Operand::Shift(Shift::LSR(32))
} else {
Operand::Shift(Shift::LSR(imm2_imm3_post))
}
2 => if imm2_imm3_post == 0 {
Operand::Shift(Shift::ASR(32))
} else {
Operand::Shift(Shift::ASR(imm2_imm3_post))
}
3 => if imm2_imm3_post == 0 {
Operand::Shift(Shift::RRX)
} else {
Operand::Shift(Shift::ROR(imm2_imm3_post))
}
_ => todo!(),
};
let mut instr = Instruction::builder_multi(Code::CMP_r_T3, Encoding::Alt1)
.operand(0, op_0)?
.operand(1, op_1)?
.operand(2, op_2)?
.operand(3, op_3)?
.build();
return Ok(instr);
unreachable!()
}
pub fn encode(instr: &Instruction, buf: &mut Vec<u8>) -> Result<usize> {
match instr.encoding {
Encoding::Alt2 => {
let Rn_pre = instr.op1().as_register()?.encode();
let Rm_pre = instr.op2().as_register()?.encode();
let Rn = (Rn_pre & 15);
let Rm = (Rm_pre & 15);
let mut instr: u32 = 0b11101011101100000000111100000000;
instr |= (Rn & 15) << 16;
instr |= (Rm & 15) << 0;
let instr_1 = (instr & 0xffff) as u16;
let instr_2 = ((instr >> 16) & 0xffff) as u16;
buf.extend(instr_2.to_le_bytes());
buf.extend(instr_1.to_le_bytes());
return Ok(4);
}
Encoding::Alt1 => {
let Rn_pre = instr.op1().as_register()?.encode();
let Rm_pre = instr.op2().as_register()?.encode();
let (stype, imm2_imm3_pre) = {
if let Operand::None = instr.op3() {
(0, 0)
} else {
match instr.op3().as_shift()? {
Shift::LSL(value) => (0, *value),
Shift::LSR(value) => (1, *value),
Shift::ASR(value) => (2, *value),
Shift::ROR(value) => (3, *value),
_ => todo!(),
}
}
};
let Rn = (Rn_pre & 15);
let Rm = (Rm_pre & 15);
let imm2 = (imm2_imm3_pre & 3);
let imm3 = (imm2_imm3_pre >> 2) & 7;
let mut instr: u32 = 0b11101011101100000000111100000000;
instr |= (Rn & 15) << 16;
instr |= (Rm & 15) << 0;
instr |= (imm2 & 3) << 6;
instr |= (imm3 & 7) << 12;
instr |= (stype & 3) << 4;
let instr_1 = (instr & 0xffff) as u16;
let instr_2 = ((instr >> 16) & 0xffff) as u16;
buf.extend(instr_2.to_le_bytes());
buf.extend(instr_1.to_le_bytes());
return Ok(4);
}
_ => todo!()
}
unreachable!()
}
pub fn encode_block(instr: &mut Instruction, buf: &mut Vec<u8>, labels: &std::collections::HashMap<u64, u64>) -> Result<usize> {
match instr.encoding {
Encoding::Alt2 => {
Self::encode(instr, buf)
}
Encoding::Alt1 => {
Self::encode(instr, buf)
}
_ => todo!()
}
}
pub fn check_op0(instr: &Instruction, op: &Operand) -> Result<()> {
match instr.encoding {
Encoding::Alt2 => {
if let Operand::MnemonicCondition(r) = op {
return Ok(())
}
todo!()
}
Encoding::Alt1 => {
if let Operand::MnemonicCondition(r) = op {
return Ok(())
}
todo!()
}
_ => todo!()
}
unreachable!()
}
pub fn check_op1(instr: &Instruction, op: &Operand) -> Result<()> {
match instr.encoding {
Encoding::Alt2 => {
if let Operand::Register(r) = op {
return Ok(())
}
todo!()
}
Encoding::Alt1 => {
if let Operand::Register(r) = op {
return Ok(())
}
todo!()
}
_ => todo!()
}
unreachable!()
}
pub fn check_op2(instr: &Instruction, op: &Operand) -> Result<()> {
match instr.encoding {
Encoding::Alt2 => {
if let Operand::Register(r) = op {
return Ok(())
}
todo!()
}
Encoding::Alt1 => {
if let Operand::Register(r) = op {
return Ok(())
}
todo!()
}
_ => todo!()
}
unreachable!()
}
pub fn check_op3(instr: &Instruction, op: &Operand) -> Result<()> {
match instr.encoding {
Encoding::Alt2 => {
todo!()
}
Encoding::Alt1 => {
if op.is_none() {
return Ok(())
}
if let Operand::Shift(s) = op {
match s {
Shift::LSL(value) => if *value < 1 || *value > 31 {
todo!()
}
Shift::LSR(value) => if *value < 1 || *value > 32 {
todo!()
}
Shift::ASR(value) => if *value < 1 || *value > 32 {
todo!()
}
Shift::ROR(value) => if *value < 1 || *value > 31 {
todo!()
}
_ => todo!(),
}
return Ok(())
}
todo!()
}
_ => todo!()
}
unreachable!()
}
pub fn check_op4(instr: &Instruction, op: &Operand) -> Result<()> {
match instr.encoding {
Encoding::Alt2 => {
todo!()
}
Encoding::Alt1 => {
todo!()
}
_ => todo!()
}
unreachable!()
}
pub fn check_op5(instr: &Instruction, op: &Operand) -> Result<()> {
match instr.encoding {
Encoding::Alt2 => {
todo!()
}
Encoding::Alt1 => {
todo!()
}
_ => todo!()
}
unreachable!()
}
pub fn check_op6(instr: &Instruction, op: &Operand) -> Result<()> {
match instr.encoding {
Encoding::Alt2 => {
todo!()
}
Encoding::Alt1 => {
todo!()
}
_ => todo!()
}
unreachable!()
}
pub fn format(instr: &Instruction, fmt: &mut impl Formatter, output: &mut impl FormatterOutput, config: &Config) -> Result<()> {
match instr.encoding {
Encoding::Alt2 => {
fmt.format_mnemonic(output, &config.global, &config.instructions.cmp_r_t3, &instr)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t3, &instr, 0)?;
fmt.format_qualifier(output, &config.global, &config.instructions.cmp_r_t3, &instr, FormatterQualifier::Wide, true, true)?;
fmt.format_punctuation(output, &config.global, &config.instructions.cmp_r_t3, &instr, FormatterTextKind::Space)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t3, &instr, 1)?;
fmt.format_punctuation(output, &config.global, &config.instructions.cmp_r_t3, &instr, FormatterTextKind::Comma)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t3, &instr, 2)?;
return Ok(());
}
Encoding::Alt1 => {
fmt.format_mnemonic(output, &config.global, &config.instructions.cmp_r_t3, &instr)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t3, &instr, 0)?;
fmt.format_qualifier(output, &config.global, &config.instructions.cmp_r_t3, &instr, FormatterQualifier::Wide, true, false)?;
fmt.format_punctuation(output, &config.global, &config.instructions.cmp_r_t3, &instr, FormatterTextKind::Space)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t3, &instr, 1)?;
fmt.format_punctuation(output, &config.global, &config.instructions.cmp_r_t3, &instr, FormatterTextKind::Comma)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t3, &instr, 2)?;
fmt.format_punctuation(output, &config.global, &config.instructions.cmp_r_t3, &instr, FormatterTextKind::Comma)?;
fmt.format_operand(output, &config.global, &config.instructions.cmp_r_t3, &instr, 3)?;
return Ok(());
}
_ => todo!()
}
unreachable!()
}
}
#[derive(Copy, Clone, Eq, PartialEq, Ord, PartialOrd, Debug, Hash)]
pub enum CmpRT3Aliases {
None,
}
#[derive(Copy, Clone, Eq, PartialEq, Ord, PartialOrd, Debug, Hash)]
pub enum CmpRT3Encodings {
Alt2,
Alt1,
}