mod scope;
use std::sync::Arc;
use ra_syntax::{TreeArc, ast::{self, NameOwner}};
use crate::{
DefId, HirDatabase, Name, AsName, Function, FnSignature, Module,
type_ref::{TypeRef, Mutability},
expr::Body,
impl_block::ImplBlock,
code_model_impl::def_id_to_ast,
};
pub use self::scope::{FnScopes, ScopesWithSyntaxMapping, ScopeEntryWithSyntax};
impl Function {
pub(crate) fn new(def_id: DefId) -> Function {
Function { def_id }
}
pub(crate) fn body(&self, db: &impl HirDatabase) -> Arc
{
db.body_hir(self.def_id)
}
pub(crate) fn module(&self, db: &impl HirDatabase) -> Module {
self.def_id.module(db)
}
/// The containing impl block, if this is a method.
pub(crate) fn impl_block(&self, db: &impl HirDatabase) -> Option {
self.def_id.impl_block(db)
}
}
impl FnSignature {
pub(crate) fn fn_signature_query(db: &impl HirDatabase, def_id: DefId) -> Arc {
// FIXME: we're using def_id_to_ast here to avoid returning Cancelable... this is a bit hacky
let node: TreeArc = def_id_to_ast(db, def_id).1;
let name = node
.name()
.map(|n| n.as_name())
.unwrap_or_else(Name::missing);
let mut params = Vec::new();
let mut has_self_param = false;
if let Some(param_list) = node.param_list() {
if let Some(self_param) = param_list.self_param() {
let self_type = if let Some(type_ref) = self_param.type_ref() {
TypeRef::from_ast(type_ref)
} else {
let self_type = TypeRef::Path(Name::self_type().into());
match self_param.flavor() {
ast::SelfParamFlavor::Owned => self_type,
ast::SelfParamFlavor::Ref => {
TypeRef::Reference(Box::new(self_type), Mutability::Shared)
}
ast::SelfParamFlavor::MutRef => {
TypeRef::Reference(Box::new(self_type), Mutability::Mut)
}
}
};
params.push(self_type);
has_self_param = true;
}
for param in param_list.params() {
let type_ref = TypeRef::from_ast_opt(param.type_ref());
params.push(type_ref);
}
}
let ret_type = if let Some(type_ref) = node.ret_type().and_then(|rt| rt.type_ref()) {
TypeRef::from_ast(type_ref)
} else {
TypeRef::unit()
};
let sig = FnSignature {
name,
params,
ret_type,
has_self_param,
};
Arc::new(sig)
}
}