rust-analyzer/crates/ra_hir/src/source_binder.rs

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/// Lookup hir elements using positions in the source code. This is a lossy
/// transformation: in general, a single source might correspond to several
/// modules, functions, etc, due to macros, cfgs and `#[path=]` attributes on
/// modules.
///
/// So, this modules should not be used during hir construction, it exists
/// purely for "IDE needs".
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use ra_db::{FileId, FilePosition};
use ra_syntax::{
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SmolStr, TextRange, SyntaxNode,
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ast::{self, AstNode, NameOwner},
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algo::{find_node_at_offset, find_leaf_at_offset},
};
use crate::{
HirDatabase, Function, ModuleDef, Struct, Enum,
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AsName, Module, HirFileId, Crate, Trait, Resolver,
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ids::{LocationCtx, SourceFileItemId},
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expr
};
/// Locates the module by `FileId`. Picks topmost module in the file.
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pub fn module_from_file_id(db: &impl HirDatabase, file_id: FileId) -> Option<Module> {
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module_from_source(db, file_id.into(), None)
}
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/// Locates the child module by `mod child;` declaration.
pub fn module_from_declaration(
db: &impl HirDatabase,
file_id: FileId,
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decl: &ast::Module,
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) -> Option<Module> {
let parent_module = module_from_file_id(db, file_id);
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let child_name = decl.name();
match (parent_module, child_name) {
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(Some(parent_module), Some(child_name)) => parent_module.child(db, &child_name.as_name()),
_ => None,
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}
}
/// Locates the module by position in the source code.
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pub fn module_from_position(db: &impl HirDatabase, position: FilePosition) -> Option<Module> {
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let file = db.parse(position.file_id);
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match find_node_at_offset::<ast::Module>(file.syntax(), position.offset) {
Some(m) if !m.has_semi() => module_from_inline(db, position.file_id.into(), m),
_ => module_from_file_id(db, position.file_id.into()),
}
}
fn module_from_inline(
db: &impl HirDatabase,
file_id: FileId,
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module: &ast::Module,
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) -> Option<Module> {
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assert!(!module.has_semi());
let file_id = file_id.into();
let file_items = db.file_items(file_id);
let item_id = file_items.id_of(file_id, module.syntax());
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module_from_source(db, file_id, Some(item_id))
}
/// Locates the module by child syntax element within the module
pub fn module_from_child_node(
db: &impl HirDatabase,
file_id: FileId,
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child: &SyntaxNode,
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) -> Option<Module> {
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if let Some(m) = child.ancestors().filter_map(ast::Module::cast).find(|it| !it.has_semi()) {
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module_from_inline(db, file_id.into(), m)
} else {
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module_from_file_id(db, file_id.into())
}
}
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fn module_from_source(
db: &impl HirDatabase,
file_id: HirFileId,
decl_id: Option<SourceFileItemId>,
) -> Option<Module> {
let source_root_id = db.file_source_root(file_id.as_original_file());
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db.source_root_crates(source_root_id).iter().map(|&crate_id| Crate { crate_id }).find_map(
|krate| {
let module_tree = db.module_tree(krate);
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let module_id = module_tree.find_module_by_source(file_id, decl_id)?;
Some(Module { krate, module_id })
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},
)
}
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pub fn function_from_position(db: &impl HirDatabase, position: FilePosition) -> Option<Function> {
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let file = db.parse(position.file_id);
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let fn_def = find_node_at_offset::<ast::FnDef>(file.syntax(), position.offset)?;
function_from_source(db, position.file_id, fn_def)
}
pub fn function_from_source(
db: &impl HirDatabase,
file_id: FileId,
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fn_def: &ast::FnDef,
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) -> Option<Function> {
let module = module_from_child_node(db, file_id, fn_def.syntax())?;
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let res = function_from_module(db, module, fn_def);
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Some(res)
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}
pub fn function_from_module(
db: &impl HirDatabase,
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module: Module,
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fn_def: &ast::FnDef,
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) -> Function {
let (file_id, _) = module.definition_source(db);
let file_id = file_id.into();
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let ctx = LocationCtx::new(db, module, file_id);
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Function { id: ctx.to_def(fn_def) }
}
pub fn function_from_child_node(
db: &impl HirDatabase,
file_id: FileId,
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node: &SyntaxNode,
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) -> Option<Function> {
let fn_def = node.ancestors().find_map(ast::FnDef::cast)?;
function_from_source(db, file_id, fn_def)
}
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pub fn struct_from_module(
db: &impl HirDatabase,
module: Module,
struct_def: &ast::StructDef,
) -> Struct {
let (file_id, _) = module.definition_source(db);
let file_id = file_id.into();
let ctx = LocationCtx::new(db, module, file_id);
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Struct { id: ctx.to_def(struct_def) }
}
pub fn enum_from_module(db: &impl HirDatabase, module: Module, enum_def: &ast::EnumDef) -> Enum {
let (file_id, _) = module.definition_source(db);
let file_id = file_id.into();
let ctx = LocationCtx::new(db, module, file_id);
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Enum { id: ctx.to_def(enum_def) }
}
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pub fn trait_from_module(
db: &impl HirDatabase,
module: Module,
trait_def: &ast::TraitDef,
) -> Trait {
let (file_id, _) = module.definition_source(db);
let file_id = file_id.into();
let ctx = LocationCtx::new(db, module, file_id);
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Trait { id: ctx.to_def(trait_def) }
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}
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pub fn macro_symbols(db: &impl HirDatabase, file_id: FileId) -> Vec<(SmolStr, TextRange)> {
let module = match module_from_file_id(db, file_id) {
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Some(it) => it,
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None => return Vec::new(),
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};
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let items = db.lower_module(module);
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let mut res = Vec::new();
for macro_call_id in items
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.declarations
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.iter()
.filter_map(|(_, it)| it.clone().take_types())
.filter_map(|it| match it {
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ModuleDef::Trait(it) => Some(it),
_ => None,
})
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.filter_map(|it| it.source(db).0.as_macro_call_id())
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{
if let Some(exp) = db.expand_macro_invocation(macro_call_id) {
let loc = macro_call_id.loc(db);
let syntax = db.file_item(loc.source_item_id);
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let macro_call = ast::MacroCall::cast(&syntax).unwrap();
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let off = macro_call.token_tree().unwrap().syntax().range().start();
let file = exp.file();
for trait_def in file.syntax().descendants().filter_map(ast::TraitDef::cast) {
if let Some(name) = trait_def.name() {
let dst_range = name.syntax().range();
if let Some(src_range) = exp.map_range_back(dst_range) {
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res.push((name.text().clone(), src_range + off))
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}
}
}
}
}
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res
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}
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pub fn resolver_for_position(db: &impl HirDatabase, position: FilePosition) -> Resolver {
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let file_id = position.file_id;
let file = db.parse(file_id);
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find_leaf_at_offset(file.syntax(), position.offset)
.find_map(|node| {
node.ancestors().find_map(|node| {
if ast::Expr::cast(node).is_some() || ast::Block::cast(node).is_some() {
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if let Some(func) = function_from_child_node(db, file_id, node) {
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let scopes = func.scopes(db);
let scope = scopes.scope_for_offset(position.offset);
Some(expr::resolver_for_scope(func.body(db), db, scope))
} else {
// TODO const/static/array length
None
}
} else {
try_get_resolver_for_node(db, file_id, node)
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}
})
})
.unwrap_or_default()
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}
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pub fn resolver_for_node(db: &impl HirDatabase, file_id: FileId, node: &SyntaxNode) -> Resolver {
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node.ancestors()
.find_map(|node| {
if ast::Expr::cast(node).is_some() || ast::Block::cast(node).is_some() {
if let Some(func) = function_from_child_node(db, file_id, node) {
let scopes = func.scopes(db);
let scope = scopes.scope_for(&node);
Some(expr::resolver_for_scope(func.body(db), db, scope))
} else {
// TODO const/static/array length
None
}
} else {
try_get_resolver_for_node(db, file_id, node)
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}
})
.unwrap_or_default()
}
fn try_get_resolver_for_node(
db: &impl HirDatabase,
file_id: FileId,
node: &SyntaxNode,
) -> Option<Resolver> {
if let Some(module) = ast::Module::cast(node) {
Some(module_from_declaration(db, file_id, module)?.resolver(db))
} else if let Some(_) = ast::SourceFile::cast(node) {
Some(module_from_source(db, file_id.into(), None)?.resolver(db))
} else if let Some(s) = ast::StructDef::cast(node) {
let module = module_from_child_node(db, file_id, s.syntax())?;
Some(struct_from_module(db, module, s).resolver(db))
} else if let Some(e) = ast::EnumDef::cast(node) {
let module = module_from_child_node(db, file_id, e.syntax())?;
Some(enum_from_module(db, module, e).resolver(db))
} else if let Some(f) = ast::FnDef::cast(node) {
function_from_source(db, file_id, f).map(|f| f.resolver(db))
} else {
// TODO add missing cases
None
}
}