use std::hash::Hash;
use chrono::NaiveTime;
use percent_encoding::{AsciiSet, CONTROLS};
use crate::dmp::{Diff, DiffMatchPatch};
// Appending controls to ensure exact same encoding as cpp variant
const ENCODE_SET: &AsciiSet = &CONTROLS
.add(b'"')
.add(b'<')
.add(b'>')
.add(b'`')
.add(b'{')
.add(b'}')
.add(b'%')
.add(b'[')
.add(b'\\')
.add(b']')
.add(b'^')
.add(b'|');
pub trait DType: Copy + Ord + Eq + Hash {
fn differ(dmp: &DiffMatchPatch, txt_old: &str, txt_new: &str) -> Result<Vec<Diff<Self>>, crate::errors::Error>;
fn bisect_split(
dmp: &DiffMatchPatch,
old: &[Self],
new: &[Self],
x: usize,
y: usize,
deadline: Option<NaiveTime>,
) -> Result<Vec<Diff<Self>>, crate::errors::Error>;
fn from_char(c: char) -> Self;
fn as_char(&self) -> Option<char>;
fn from_str(str: &str) -> Vec<Self>;
fn to_string(data: &[Self]) -> Result<String, crate::Error>;
fn is_linebreak_end(input: &[Self]) -> bool;
fn is_linebreak_start(input: &[Self]) -> bool;
fn percent_encode(input: &[Self]) -> Vec<Self>;
fn percent_decode(input: &[Self]) -> Vec<Self>;
}
impl DType for u8 {
fn differ(dmp: &DiffMatchPatch, txt_old: &str, txt_new: &str) -> Result<Vec<Diff<Self>>, crate::errors::Error> {
dmp.diff_main(txt_old, txt_new)
}
fn bisect_split(
dmp: &DiffMatchPatch,
old: &[u8],
new: &[u8],
x: usize,
y: usize,
deadline: Option<NaiveTime>,
) -> Result<Vec<Diff<u8>>, crate::errors::Error> {
let old_a = &old[..x];
let new_a = &new[..y];
let old_b = &old[x..];
let new_b = &new[y..];
// Compute both diffs serially.
let mut diffs_a = dmp.diff_internal(old_a, new_a, false, deadline)?;
diffs_a.append(&mut dmp.diff_internal(old_b, new_b, false, deadline)?);
Ok(diffs_a)
}
fn from_char(c: char) -> Self {
c as u8
}
fn as_char(&self) -> Option<char> {
Some(*self as char)
}
fn from_str(str: &str) -> Vec<Self> {
str.as_bytes().to_vec()
}
#[inline]
fn to_string(data: &[Self]) -> Result<String, crate::Error> {
std::str::from_utf8(data).map_err(|_| crate::Error::Utf8Error).map(|s| s.to_string())
}
#[inline]
fn is_linebreak_end(input: &[Self]) -> bool {
input.ends_with(b"\n\n") || input.ends_with(b"\n\r\n")
}
#[inline]
fn is_linebreak_start(input: &[Self]) -> bool {
input.starts_with(b"\r\n\n")
|| input.starts_with(b"\r\n\r\n")
|| input.starts_with(b"\n\r\n")
|| input.starts_with(b"\n\n")
}
#[inline]
fn percent_encode(input: &[Self]) -> Vec<Self> {
percent_encoding::percent_encode(input, ENCODE_SET).collect::<String>().as_bytes().to_vec()
}
#[inline]
fn percent_decode(input: &[Self]) -> Vec<Self> {
// percent_encoding::percent_encode(input, ENCODE_SET).collect::<String>().as_bytes().to_vec()
todo!()
}
}
impl DType for char {
fn differ(dmp: &DiffMatchPatch, txt_old: &str, txt_new: &str) -> Result<Vec<Diff<Self>>, crate::errors::Error> {
dmp.diff_main_compat(txt_old, txt_new)
}
fn bisect_split(
dmp: &DiffMatchPatch,
old: &[char],
new: &[char],
x: usize,
y: usize,
deadline: Option<NaiveTime>,
) -> Result<Vec<Diff<char>>, crate::errors::Error> {
let old_a = &old[..x];
let new_a = &new[..y];
let old_b = &old[x..];
let new_b = &new[y..];
// Compute both diffs serially.
let mut diffs_a = dmp.diff_internal(old_a, new_a, false, deadline)?;
diffs_a.append(&mut dmp.diff_internal(old_b, new_b, false, deadline)?);
Ok(diffs_a)
}
fn from_char(c: char) -> Self {
c
}
fn as_char(&self) -> Option<char> {
Some(*self)
}
fn from_str(str: &str) -> Vec<Self> {
str.chars().collect::<Vec<_>>()
}
#[inline]
fn to_string(data: &[Self]) -> Result<String, crate::Error> {
Ok(data.iter().collect::<String>())
}
#[inline]
fn is_linebreak_end(input: &[Self]) -> bool {
input.ends_with(&['\n', '\n']) || input.ends_with(&['\n', '\r', '\n'])
}
#[inline]
fn is_linebreak_start(input: &[Self]) -> bool {
input.starts_with(&['\r', '\n', '\n'])
|| input.starts_with(&['\r', '\n', '\r', '\n'])
|| input.starts_with(&['\n', '\r', '\n'])
|| input.starts_with(&['\n', '\n'])
}
#[inline]
fn percent_encode(input: &[Self]) -> Vec<Self> {
let d = input
.iter()
.map(|c| {
let mut b = vec![0; c.len_utf8()];
c.encode_utf8(&mut b);
b
}).collect::<Vec<_>>()
.concat();
let encoded = percent_encoding::percent_encode(&d[..], ENCODE_SET).collect::<String>();
Self::from_str(&encoded)
}
#[inline]
fn percent_decode(input: &[Self]) -> Vec<Self> {
todo!()
}
}
impl DType for usize {
fn differ(_: &DiffMatchPatch, _: &str, _: &str) -> Result<Vec<Diff<Self>>, crate::errors::Error> {
unimplemented!()
}
fn bisect_split(
dmp: &DiffMatchPatch,
old: &[usize],
new: &[usize],
x: usize,
y: usize,
deadline: Option<NaiveTime>,
) -> Result<Vec<Diff<usize>>, crate::errors::Error> {
let old_a = &old[..x];
let new_a = &new[..y];
let old_b = &old[x..];
let new_b = &new[y..];
// Compute both diffs serially.
let mut diffs_a = dmp.diff_lines(old_a, new_a, deadline)?;
diffs_a.append(&mut dmp.diff_lines(old_b, new_b, deadline)?);
Ok(diffs_a)
}
fn from_char(c: char) -> Self {
(c as u8) as usize
}
fn as_char(&self) -> Option<char> {
char::from_digit(*self as u32, 10)
}
fn from_str(_: &str) -> Vec<Self> {
unimplemented!()
}
fn to_string(_: &[Self]) -> Result<String, crate::Error> {
unimplemented!()
}
fn is_linebreak_end(_: &[Self]) -> bool {
unimplemented!()
}
#[inline]
fn is_linebreak_start(_: &[Self]) -> bool {
unimplemented!()
}
#[inline]
fn percent_encode(_: &[Self]) -> Vec<Self> {
unimplemented!()
}
#[inline]
fn percent_decode(_: &[Self]) -> Vec<Self> {
unimplemented!()
}
}