use crate::{imp::*, prelude::*};
#[derive(Debug, FromMeta)]
pub struct Tuple {
#[darling(default, skip)]
pub(crate) def: Def,
#[darling(default)]
pub(crate) name: Option<LitStr>,
#[darling(multiple, rename = "value")]
pub(crate) values: Vec<Value>,
#[darling(default)]
pub(crate) ty: Type,
#[darling(default)]
pub(crate) typed_adapters: bool,
#[darling(default)]
pub(crate) traits: TraitBuilder,
}
impl HasDef for Tuple {
fn def(&self) -> &Def {
&self.def
}
}
impl ValidateNode for Tuple {
fn validate(&self) -> Result<(), DarlingError> {
self.traits.with_type_traits().validate()?;
for value in &self.values {
value.validate()?;
}
Ok(())
}
}
impl HasSchema for Tuple {
fn schema_node_kind() -> SchemaNodeKind {
SchemaNodeKind::Tuple
}
}
impl HasSchemaPart for Tuple {
fn schema_part(&self) -> TokenStream {
let def = self.def.schema_part();
let name = self.current_name_literal(self.name.as_ref());
let values = quote_slice(&self.values, Value::schema_part);
let ty = &self.ty.schema_part();
quote! {
::icydb_model::node::Tuple::new(#def, #name, #values, #ty)
}
}
}
impl HasTraits for Tuple {
fn traits(&self) -> Vec<TraitKind> {
let traits = self.traits.with_type_traits().build();
traits.into_vec()
}
fn map_trait(&self, t: TraitKind) -> Option<TraitStrategy> {
match t {
TraitKind::Default => DefaultTrait::strategy(self),
TraitKind::Visitable => VisitableTrait::strategy(self),
_ => None,
}
}
}
impl HasType for Tuple {
fn type_part(&self) -> TokenStream {
let ident = self.def.ident();
let values = self.values.iter().map(HasTypeExpr::type_expr);
quote! {
pub struct #ident(#(pub #values),*);
}
}
}
impl ToTokens for Tuple {
fn to_tokens(&self, tokens: &mut TokenStream) {
let base = self.all_tokens();
let typed_adapter = crate::node::typed_adapter::tuple_adapter_tokens(self);
tokens.extend(quote! {
#base
#typed_adapter
});
}
}