use crate::types::*;
use proc_macro2::TokenStream;
use quote::{ToTokens, quote};
pub(crate) struct ImplParts {
pub(crate) impl_generics: Vec<(TokenStream, Option<Ty>)>,
pub(crate) trait_generic_names: Vec<TokenStream>,
pub(crate) associated_types: Vec<(TokenStream, TokenStream)>,
pub(crate) target_type: Ty,
pub(crate) body: Option<TokenStream>,
pub(crate) attrs: Vec<TokenStream>,
pub(crate) is_unsafe_impl: bool,
pub(crate) where_clauses: Vec<TokenStream>,
}
impl ImplParts {
fn leaf(target_type: Ty) -> Self {
ImplParts {
impl_generics: vec![],
trait_generic_names: vec![],
associated_types: vec![],
target_type,
body: None,
attrs: vec![],
is_unsafe_impl: false,
where_clauses: vec![],
}
}
}
pub(crate) fn extract_impl_parts(ty: Ty) -> ImplParts {
match ty {
Ty::WithType(wt) => {
let mut parts = extract_impl_parts(*wt.1);
let (impl_generics, associated_types) =
(parts.impl_generics, parts.associated_types);
parts.impl_generics = wt.0.params;
parts.associated_types = wt.0.bindings;
parts.impl_generics.extend(impl_generics);
parts.associated_types.extend(associated_types);
parts
}
Ty::WithTrait(wt) => {
let mut parts = extract_impl_parts(*wt.1);
parts.trait_generic_names.extend(wt.0.1.params.into_iter().map(|p| p.0));
parts.associated_types.extend(wt.0.1.bindings);
parts
}
Ty::WithCode(wc) => match wc.0 {
Some(inner) => {
let mut parts = extract_impl_parts(*inner);
match &mut parts.body {
Some(t) => t.extend(wc.1.0),
None => parts.body = Some(wc.1.0),
}
parts
}
None => ImplParts::leaf(Ty::WithCode(wc)),
},
Ty::WithWhere(ww) => match ww.0 {
Some(inner) => {
let mut parts = extract_impl_parts(*inner);
parts.where_clauses.push(ww.1.0);
parts
}
None => ImplParts::leaf(Ty::WithWhere(ww)),
},
Ty::WithAttr(wa) => match wa.1 {
Some(inner) => {
let mut parts = extract_impl_parts(*inner);
let stream = &wa.0.0;
parts.attrs.push(quote!(#[#stream]));
parts
}
None => ImplParts::leaf(Ty::WithAttr(wa)),
},
Ty::WithPrefix(wp) => match wp.1 {
Some(inner) => {
let mut parts = extract_impl_parts(*inner);
match wp.0 {
TyPrefix::Unsafe => parts.is_unsafe_impl = true,
_ => {
parts.target_type =
TyWithPrefix(wp.0, Some(parts.target_type.into())).into()
}
}
parts
}
None => ImplParts::leaf(Ty::WithPrefix(wp)),
},
Ty::Error(e) => ImplParts::leaf(e.into()),
o => ImplParts::leaf(o),
}
}
pub(crate) fn generate_impl(
ty: Ty, trait_name: &TokenStream, is_unsafe_trait: bool,
) -> TokenStream {
if let Ty::Error(e) = ty {
return e.0;
}
let parts = extract_impl_parts(ty);
let is_unsafe = is_unsafe_trait || parts.is_unsafe_impl;
let unsafe_kw = if is_unsafe { quote!(unsafe) } else { quote!() };
let impl_gen = if parts.impl_generics.is_empty() {
quote!()
} else {
let params = parts
.impl_generics
.iter()
.map(|(name, bound)| match bound {
Some(b) => {
let b_tokens = b.to_token_stream();
quote!(#name: #b_tokens)
}
None => name.clone(),
})
.collect::<Vec<_>>();
quote!(<#(#params),*>)
};
let trait_gen = if parts.trait_generic_names.is_empty() {
quote!()
} else {
let names = &parts.trait_generic_names;
quote!(<#(#names),*>)
};
let target = &parts.target_type;
let mut body_tokens = vec![];
for (name, value) in &parts.associated_types {
body_tokens.push(quote!(type #name = #value;));
}
if let Some(body) = &parts.body {
body_tokens.push(body.clone());
}
let attrs = parts.attrs;
let where_clause = if parts.where_clauses.is_empty() {
quote!()
} else {
let preds = &parts.where_clauses;
quote!(where #(#preds),*)
};
quote! {
#(#attrs)*
#unsafe_kw impl #impl_gen #trait_name #trait_gen for #target #where_clause {
#(#body_tokens)*
}
}
}