extern crate proc_macro;
use proc_macro::TokenStream;
use proc_macro2::{Span, TokenStream as TokenStream2};
use quote::{format_ident, quote, quote_spanned};
use syn::spanned::Spanned;
use syn::{parse_macro_input, Data, DeriveInput, Error, Fields};
use convert_case::{Case, Casing};
macro_rules! derive_error {
($string: tt) => {
Error::new(Span::call_site(), $string)
.to_compile_error()
.into();
};
}
#[proc_macro_derive(IsVariant)]
pub fn derive_is_variant(input: TokenStream) -> TokenStream {
let input = parse_macro_input!(input as DeriveInput);
let ref name = input.ident;
let ref data = input.data;
let mut variant_checker_functions;
match data {
Data::Enum(data_enum) => {
variant_checker_functions = TokenStream2::new();
for variant in &data_enum.variants {
let ref variant_name = variant.ident;
let fields_in_variant = match &variant.fields {
Fields::Unnamed(_) => quote_spanned! {variant.span()=> (..) },
Fields::Unit => quote_spanned! { variant.span()=> },
Fields::Named(_) => quote_spanned! {variant.span()=> {..} },
};
let mut is_variant_func_name =
format_ident!("is_{}", variant_name.to_string().to_case(Case::Snake));
is_variant_func_name.set_span(variant_name.span());
variant_checker_functions.extend(quote_spanned! {variant.span()=>
fn #is_variant_func_name(&self) -> bool {
match self {
#name::#variant_name #fields_in_variant => true,
_ => false,
}
}
});
}
}
_ => return derive_error!("IsVariant is only implemented for enums"),
};
let (impl_generics, ty_generics, where_clause) = input.generics.split_for_impl();
let expanded = quote! {
impl #impl_generics #name #ty_generics #where_clause {
#variant_checker_functions
}
};
TokenStream::from(expanded)
}