#![crate_type = "dylib"]
extern crate unicode_names2;
#[macro_use]
extern crate syn;
struct CharByName(syn::LitChar);
impl syn::parse::Parse for CharByName {
fn parse(input: syn::parse::ParseStream) -> syn::Result<Self> {
let string: syn::LitStr = input.parse()?;
let name = string.value();
match unicode_names2::character(&name) {
None => Err(syn::Error::new(
string.span(),
format!("`{}` does not name a character", name),
)),
Some(c) => Ok(CharByName(syn::LitChar::new(c, string.span()))),
}
}
}
#[proc_macro]
pub fn named_char(stream: proc_macro::TokenStream) -> proc_macro::TokenStream {
let CharByName(c) = parse_macro_input!(stream as CharByName);
proc_macro::TokenTree::Literal(proc_macro::Literal::character(c.value())).into()
}
struct StringWithCharNames(syn::LitStr);
impl syn::parse::Parse for StringWithCharNames {
fn parse(input: syn::parse::ParseStream) -> syn::Result<Self> {
let string: syn::LitStr = input.parse()?;
let names_re = regex::Regex::new(r"\\N\{(.*?)(?:\}|$)").unwrap();
let mut errors = Vec::new();
let string_value = string.value();
let new = names_re.replace_all(string_value.as_str(), |c: ®ex::Captures| {
let full = c.get(0).unwrap().as_str();
if !full.ends_with('}') {
errors.push(format!("unclosed escape in `named!`: {}", full));
} else {
let name = c.get(1).unwrap().as_str();
match unicode_names2::character(name) {
Some(c) => return c.to_string(),
None => {
errors.push(format!("`{}` does not name a character", name));
}
}
}
String::new()
});
if !errors.is_empty() {
Err(syn::Error::new(string.span(), errors.get(0).unwrap()))
} else {
Ok(StringWithCharNames(syn::LitStr::new(&new, string.span())))
}
}
}
#[proc_macro]
pub fn named(stream: proc_macro::TokenStream) -> proc_macro::TokenStream {
let StringWithCharNames(s) = parse_macro_input!(stream as StringWithCharNames);
proc_macro::TokenTree::Literal(proc_macro::Literal::string(&s.value())).into()
}