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use super::pattern::is_valid_pattern_identifier;
use super::ParseCtx;
use super::Parser;
use crate::ast::ClassOrObjectMemberKey;
use crate::error::SyntaxError;
use crate::error::SyntaxErrorType;
use crate::error::SyntaxResult;
use crate::num::JsNumber;
use crate::session::SessionString;
use crate::source::SourceRange;
use crate::token::TokenType;
use core::str::FromStr;
use memchr::memchr;
use std::str::from_utf8_unchecked;
fn parse_radix(raw: &str, radix: u32) -> Result<f64, ()> {
u64::from_str_radix(raw, radix)
.map_err(|_| ())
.map(|v| v as f64)
}
pub fn normalise_literal_number<'a>(raw: SourceRange<'a>) -> SyntaxResult<'a, JsNumber> {
match raw.as_str() {
s if s.starts_with("0b") || s.starts_with("0B") => parse_radix(&s[2..], 2),
s if s.starts_with("0o") || s.starts_with("0o") => parse_radix(&s[2..], 8),
s if s.starts_with("0x") || s.starts_with("0X") => parse_radix(&s[2..], 16),
s => f64::from_str(s).map_err(|_| ()),
}
.map(|n| JsNumber(n))
.map_err(|_| SyntaxError::from_loc(raw, SyntaxErrorType::MalformedLiteralNumber, None))
}
pub fn normalise_literal_bigint<'a>(
ctx: ParseCtx<'a>,
raw: SourceRange<'a>,
) -> SyntaxResult<'a, SessionString<'a>> {
let mut norm = ctx.session.new_string();
norm.push_str(raw.as_str());
Ok(norm)
}
pub fn normalise_literal_string_or_template_inner<'a>(
ctx: ParseCtx<'a>,
mut raw: &[u8],
) -> Option<&'a str> {
let mut norm = ctx.session.new_vec();
while !raw.is_empty() {
let Some(escape_pos) = memchr(b'\\', raw) else {
norm.extend_from_slice(raw);
break;
};
norm.extend_from_slice(&raw[..escape_pos]);
raw = &raw[escape_pos + 1..];
let mut tmp = [0u8; 4];
let (skip, add): (usize, &[u8]) = match raw[0] {
b'\n' => (1, b""),
b'b' => (1, b"\x08"),
b'f' => (1, b"\x0c"),
b'n' => (1, b"\n"),
b'r' => (1, b"\r"),
b't' => (1, b"\t"),
b'v' => (1, b"\x0b"),
b'0'..=b'7' => {
let mut len = 1;
if raw.get(len).filter(|&&c| c >= b'0' && c <= b'7').is_some() {
len += 1;
if raw.get(len).filter(|&&c| c >= b'0' && c <= b'7').is_some() {
len += 1;
};
};
char::from_u32(
u32::from_str_radix(unsafe { from_utf8_unchecked(&raw[..len]) }, 8).unwrap(),
)
.unwrap()
.encode_utf8(&mut tmp);
(len, tmp.as_slice())
}
b'x' => {
if raw.len() < 3 || !raw[1].is_ascii_hexdigit() || !raw[2].is_ascii_hexdigit() {
return None;
};
char::from_u32(
u32::from_str_radix(unsafe { from_utf8_unchecked(&raw[1..3]) }, 16).unwrap(),
)
.unwrap()
.encode_utf8(&mut tmp);
(3, tmp.as_slice())
}
b'u' => match raw.get(1) {
Some(b'{') => {
let Some(end_pos) = memchr(b'}', raw) else {
return None;
};
if end_pos < 3 || end_pos > 8 {
return None;
};
let cp =
u32::from_str_radix(unsafe { from_utf8_unchecked(&raw[2..end_pos]) }, 16).ok()?;
let c = char::from_u32(cp)?;
c.encode_utf8(&mut tmp);
(end_pos + 1, tmp.as_slice())
}
Some(_) => {
if raw.len() < 5 {
return None;
};
let cp = u32::from_str_radix(unsafe { from_utf8_unchecked(&raw[1..5]) }, 16).ok()?;
let c = char::from_u32(cp)?;
c.encode_utf8(&mut tmp);
(5, tmp.as_slice())
}
None => {
return None;
}
},
c => (1, {
tmp[0] = c;
&tmp[..1]
}),
};
norm.extend_from_slice(add);
raw = &raw[skip..];
}
Some(unsafe { from_utf8_unchecked(ctx.session.get_allocator().alloc_slice_copy(&norm)) })
}
pub fn normalise_literal_string<'a>(
ctx: ParseCtx<'a>,
raw: SourceRange<'a>,
) -> SyntaxResult<'a, &'a str> {
normalise_literal_string_or_template_inner(ctx, &raw.as_slice()[1..raw.len() - 1])
.ok_or_else(|| raw.error(SyntaxErrorType::InvalidCharacterEscape, None))
}
impl<'a> Parser<'a> {
pub fn parse_and_normalise_literal_string(
&mut self,
ctx: ParseCtx<'a>,
) -> SyntaxResult<'a, &'a str> {
let t = self.require(TokenType::LiteralString)?;
let s = normalise_literal_string(ctx, t.loc)?;
Ok(s)
}
}