#![allow(unused)]
use crate::lexer::PtxToken;
use crate::unparser::{PtxUnparser, common::*};
pub mod section_0 {
use super::*;
use crate::r#type::instruction::div::section_0::*;
impl PtxUnparser for DivType {
fn unparse_tokens(&self, tokens: &mut ::std::vec::Vec<PtxToken>) {
self.unparse_tokens_mode(tokens, false);
}
fn unparse_tokens_mode(&self, tokens: &mut ::std::vec::Vec<PtxToken>, spaced: bool) {
push_opcode(tokens, "div");
match &self.type_ {
Type::U16 => {
push_directive(tokens, "u16");
}
Type::U32 => {
push_directive(tokens, "u32");
}
Type::U64 => {
push_directive(tokens, "u64");
}
Type::S16 => {
push_directive(tokens, "s16");
}
Type::S32 => {
push_directive(tokens, "s32");
}
Type::S64 => {
push_directive(tokens, "s64");
}
}
if spaced {
tokens.push(PtxToken::Space);
}
self.d.unparse_tokens_mode(tokens, spaced);
tokens.push(PtxToken::Comma);
if spaced {
tokens.push(PtxToken::Space);
}
self.a.unparse_tokens_mode(tokens, spaced);
tokens.push(PtxToken::Comma);
if spaced {
tokens.push(PtxToken::Space);
}
self.b.unparse_tokens_mode(tokens, spaced);
tokens.push(PtxToken::Semicolon);
if spaced {
tokens.push(PtxToken::Newline);
}
}
}
impl PtxUnparser for DivApproxFtzF32 {
fn unparse_tokens(&self, tokens: &mut ::std::vec::Vec<PtxToken>) {
self.unparse_tokens_mode(tokens, false);
}
fn unparse_tokens_mode(&self, tokens: &mut ::std::vec::Vec<PtxToken>, spaced: bool) {
push_opcode(tokens, "div");
push_directive(tokens, "approx");
if self.ftz {
push_directive(tokens, "ftz");
}
push_directive(tokens, "f32");
if spaced {
tokens.push(PtxToken::Space);
}
self.d.unparse_tokens_mode(tokens, spaced);
tokens.push(PtxToken::Comma);
if spaced {
tokens.push(PtxToken::Space);
}
self.a.unparse_tokens_mode(tokens, spaced);
tokens.push(PtxToken::Comma);
if spaced {
tokens.push(PtxToken::Space);
}
self.b.unparse_tokens_mode(tokens, spaced);
tokens.push(PtxToken::Semicolon);
if spaced {
tokens.push(PtxToken::Newline);
}
}
}
impl PtxUnparser for DivFullFtzF32 {
fn unparse_tokens(&self, tokens: &mut ::std::vec::Vec<PtxToken>) {
self.unparse_tokens_mode(tokens, false);
}
fn unparse_tokens_mode(&self, tokens: &mut ::std::vec::Vec<PtxToken>, spaced: bool) {
push_opcode(tokens, "div");
push_directive(tokens, "full");
if self.ftz {
push_directive(tokens, "ftz");
}
push_directive(tokens, "f32");
if spaced {
tokens.push(PtxToken::Space);
}
self.d.unparse_tokens_mode(tokens, spaced);
tokens.push(PtxToken::Comma);
if spaced {
tokens.push(PtxToken::Space);
}
self.a.unparse_tokens_mode(tokens, spaced);
tokens.push(PtxToken::Comma);
if spaced {
tokens.push(PtxToken::Space);
}
self.b.unparse_tokens_mode(tokens, spaced);
tokens.push(PtxToken::Semicolon);
if spaced {
tokens.push(PtxToken::Newline);
}
}
}
impl PtxUnparser for DivRndFtzF32 {
fn unparse_tokens(&self, tokens: &mut ::std::vec::Vec<PtxToken>) {
self.unparse_tokens_mode(tokens, false);
}
fn unparse_tokens_mode(&self, tokens: &mut ::std::vec::Vec<PtxToken>, spaced: bool) {
push_opcode(tokens, "div");
match &self.rnd {
Rnd::Rn => {
push_directive(tokens, "rn");
}
Rnd::Rz => {
push_directive(tokens, "rz");
}
Rnd::Rm => {
push_directive(tokens, "rm");
}
Rnd::Rp => {
push_directive(tokens, "rp");
}
}
if self.ftz {
push_directive(tokens, "ftz");
}
push_directive(tokens, "f32");
if spaced {
tokens.push(PtxToken::Space);
}
self.d.unparse_tokens_mode(tokens, spaced);
tokens.push(PtxToken::Comma);
if spaced {
tokens.push(PtxToken::Space);
}
self.a.unparse_tokens_mode(tokens, spaced);
tokens.push(PtxToken::Comma);
if spaced {
tokens.push(PtxToken::Space);
}
self.b.unparse_tokens_mode(tokens, spaced);
tokens.push(PtxToken::Semicolon);
if spaced {
tokens.push(PtxToken::Newline);
}
}
}
impl PtxUnparser for DivRndF64 {
fn unparse_tokens(&self, tokens: &mut ::std::vec::Vec<PtxToken>) {
self.unparse_tokens_mode(tokens, false);
}
fn unparse_tokens_mode(&self, tokens: &mut ::std::vec::Vec<PtxToken>, spaced: bool) {
push_opcode(tokens, "div");
match &self.rnd {
Rnd::Rn => {
push_directive(tokens, "rn");
}
Rnd::Rz => {
push_directive(tokens, "rz");
}
Rnd::Rm => {
push_directive(tokens, "rm");
}
Rnd::Rp => {
push_directive(tokens, "rp");
}
}
push_directive(tokens, "f64");
if spaced {
tokens.push(PtxToken::Space);
}
self.d.unparse_tokens_mode(tokens, spaced);
tokens.push(PtxToken::Comma);
if spaced {
tokens.push(PtxToken::Space);
}
self.a.unparse_tokens_mode(tokens, spaced);
tokens.push(PtxToken::Comma);
if spaced {
tokens.push(PtxToken::Space);
}
self.b.unparse_tokens_mode(tokens, spaced);
tokens.push(PtxToken::Semicolon);
if spaced {
tokens.push(PtxToken::Newline);
}
}
}
}