440 lines
14 KiB
Rust
440 lines
14 KiB
Rust
//! ra_ide_api crate provides "ide-centric" APIs for the rust-analyzer. That is,
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//! it generally operates with files and text ranges, and returns results as
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//! Strings, suitable for displaying to the human.
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//!
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//! What powers this API are the `RootDatabase` struct, which defines a `salsa`
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//! database, and the `ra_hir` crate, where majority of the analysis happens.
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//! However, IDE specific bits of the analysis (most notably completion) happen
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//! in this crate.
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//!
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//! The sibling `ra_ide_api_light` handles those bits of IDE functionality
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//! which are restricted to a single file and need only syntax.
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// For proving that RootDatabase is RefUnwindSafe.
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#![recursion_limit = "128"]
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mod db;
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pub mod mock_analysis;
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mod symbol_index;
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mod navigation_target;
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mod change;
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mod status;
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mod completion;
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mod runnables;
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mod goto_definition;
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mod extend_selection;
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mod hover;
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mod call_info;
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mod syntax_highlighting;
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mod parent_module;
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mod references;
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mod impls;
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mod assists;
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mod diagnostics;
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mod syntax_tree;
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#[cfg(test)]
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mod marks;
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use std::sync::Arc;
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use ra_syntax::{SourceFile, TreeArc, TextRange, TextUnit};
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use ra_text_edit::TextEdit;
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use ra_db::{
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SourceDatabase, CheckCanceled,
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salsa::{self, ParallelDatabase},
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};
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use relative_path::RelativePathBuf;
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use crate::{
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symbol_index::FileSymbol,
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db::LineIndexDatabase,
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};
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pub use crate::{
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change::{AnalysisChange, LibraryData},
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completion::{CompletionItem, CompletionItemKind, InsertTextFormat},
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runnables::{Runnable, RunnableKind},
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navigation_target::NavigationTarget,
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references::ReferenceSearchResult,
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assists::{Assist, AssistId},
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hover::{HoverResult},
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};
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pub use ra_ide_api_light::{
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Fold, FoldKind, HighlightedRange, Severity, StructureNode, LocalEdit,
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LineIndex, LineCol, translate_offset_with_edit,
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};
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pub use ra_db::{
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Canceled, CrateGraph, CrateId, FileId, FilePosition, FileRange, SourceRootId,
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Edition
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};
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pub use hir::Documentation;
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// We use jemalloc mainly to get heap usage statistics, actual performance
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// difference is not measures.
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#[cfg(feature = "jemalloc")]
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#[global_allocator]
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static ALLOC: jemallocator::Jemalloc = jemallocator::Jemalloc;
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pub type Cancelable<T> = Result<T, Canceled>;
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#[derive(Debug)]
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pub struct SourceChange {
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pub label: String,
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pub source_file_edits: Vec<SourceFileEdit>,
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pub file_system_edits: Vec<FileSystemEdit>,
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pub cursor_position: Option<FilePosition>,
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}
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#[derive(Debug)]
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pub struct SourceFileEdit {
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pub file_id: FileId,
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pub edit: TextEdit,
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}
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#[derive(Debug)]
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pub enum FileSystemEdit {
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CreateFile { source_root: SourceRootId, path: RelativePathBuf },
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MoveFile { src: FileId, dst_source_root: SourceRootId, dst_path: RelativePathBuf },
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}
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#[derive(Debug)]
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pub struct Diagnostic {
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pub message: String,
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pub range: TextRange,
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pub fix: Option<SourceChange>,
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pub severity: Severity,
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}
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#[derive(Debug)]
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pub struct Query {
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query: String,
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lowercased: String,
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only_types: bool,
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libs: bool,
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exact: bool,
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limit: usize,
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}
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impl Query {
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pub fn new(query: String) -> Query {
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let lowercased = query.to_lowercase();
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Query {
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query,
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lowercased,
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only_types: false,
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libs: false,
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exact: false,
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limit: usize::max_value(),
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}
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}
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pub fn only_types(&mut self) {
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self.only_types = true;
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}
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pub fn libs(&mut self) {
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self.libs = true;
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}
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pub fn exact(&mut self) {
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self.exact = true;
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}
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pub fn limit(&mut self, limit: usize) {
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self.limit = limit
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}
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}
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#[derive(Debug)]
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pub struct RangeInfo<T> {
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pub range: TextRange,
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pub info: T,
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}
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impl<T> RangeInfo<T> {
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pub fn new(range: TextRange, info: T) -> RangeInfo<T> {
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RangeInfo { range, info }
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}
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}
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#[derive(Debug)]
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pub struct CallInfo {
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pub label: String,
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pub doc: Option<Documentation>,
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pub parameters: Vec<String>,
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pub active_parameter: Option<usize>,
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}
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/// `AnalysisHost` stores the current state of the world.
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#[derive(Debug, Default)]
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pub struct AnalysisHost {
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db: db::RootDatabase,
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}
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impl AnalysisHost {
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/// Returns a snapshot of the current state, which you can query for
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/// semantic information.
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pub fn analysis(&self) -> Analysis {
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Analysis { db: self.db.snapshot() }
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}
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/// Applies changes to the current state of the world. If there are
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/// outstanding snapshots, they will be canceled.
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pub fn apply_change(&mut self, change: AnalysisChange) {
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self.db.apply_change(change)
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}
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pub fn maybe_collect_garbage(&mut self) {
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self.db.maybe_collect_garbage();
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}
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pub fn collect_garbage(&mut self) {
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self.db.collect_garbage();
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}
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}
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/// Analysis is a snapshot of a world state at a moment in time. It is the main
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/// entry point for asking semantic information about the world. When the world
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/// state is advanced using `AnalysisHost::apply_change` method, all existing
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/// `Analysis` are canceled (most method return `Err(Canceled)`).
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#[derive(Debug)]
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pub struct Analysis {
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db: salsa::Snapshot<db::RootDatabase>,
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}
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// As a general design guideline, `Analysis` API are intended to be independent
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// from the language server protocol. That is, when exposing some functionality
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// we should think in terms of "what API makes most sense" and not in terms of
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// "what types LSP uses". Although currently LSP is the only consumer of the
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// API, the API should in theory be usable as a library, or via a different
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// protocol.
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impl Analysis {
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// Creates an analysis instance for a single file, without any extenal
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// dependencies, stdlib support or ability to apply changes. See
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// `AnalysisHost` for creating a fully-featured analysis.
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pub fn from_single_file(text: String) -> (Analysis, FileId) {
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let mut host = AnalysisHost::default();
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let source_root = SourceRootId(0);
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let mut change = AnalysisChange::new();
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change.add_root(source_root, true);
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let mut crate_graph = CrateGraph::default();
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let file_id = FileId(0);
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crate_graph.add_crate_root(file_id, Edition::Edition2018);
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change.add_file(source_root, file_id, "main.rs".into(), Arc::new(text));
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change.set_crate_graph(crate_graph);
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host.apply_change(change);
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(host.analysis(), file_id)
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}
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/// Debug info about the current state of the analysis
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pub fn status(&self) -> String {
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status::status(&*self.db)
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}
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/// Gets the text of the source file.
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pub fn file_text(&self, file_id: FileId) -> Arc<String> {
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self.db.file_text(file_id)
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}
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/// Gets the syntax tree of the file.
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pub fn parse(&self, file_id: FileId) -> TreeArc<SourceFile> {
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self.db.parse(file_id).clone()
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}
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/// Gets the file's `LineIndex`: data structure to convert between absolute
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/// offsets and line/column representation.
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pub fn file_line_index(&self, file_id: FileId) -> Arc<LineIndex> {
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self.db.line_index(file_id)
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}
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/// Selects the next syntactic nodes encompassing the range.
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pub fn extend_selection(&self, frange: FileRange) -> Cancelable<TextRange> {
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self.with_db(|db| extend_selection::extend_selection(db, frange))
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}
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/// Returns position of the matching brace (all types of braces are
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/// supported).
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pub fn matching_brace(&self, position: FilePosition) -> Option<TextUnit> {
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let file = self.db.parse(position.file_id);
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ra_ide_api_light::matching_brace(&file, position.offset)
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}
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/// Returns a syntax tree represented as `String`, for debug purposes.
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// FIXME: use a better name here.
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pub fn syntax_tree(&self, file_id: FileId, text_range: Option<TextRange>) -> String {
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syntax_tree::syntax_tree(&self.db, file_id, text_range)
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}
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/// Returns an edit to remove all newlines in the range, cleaning up minor
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/// stuff like trailing commas.
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pub fn join_lines(&self, frange: FileRange) -> SourceChange {
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let file = self.db.parse(frange.file_id);
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SourceChange::from_local_edit(
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frange.file_id,
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ra_ide_api_light::join_lines(&file, frange.range),
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)
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}
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/// Returns an edit which should be applied when opening a new line, fixing
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/// up minor stuff like continuing the comment.
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pub fn on_enter(&self, position: FilePosition) -> Option<SourceChange> {
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let file = self.db.parse(position.file_id);
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let edit = ra_ide_api_light::on_enter(&file, position.offset)?;
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Some(SourceChange::from_local_edit(position.file_id, edit))
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}
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/// Returns an edit which should be applied after `=` was typed. Primarily,
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/// this works when adding `let =`.
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// FIXME: use a snippet completion instead of this hack here.
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pub fn on_eq_typed(&self, position: FilePosition) -> Option<SourceChange> {
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let file = self.db.parse(position.file_id);
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let edit = ra_ide_api_light::on_eq_typed(&file, position.offset)?;
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Some(SourceChange::from_local_edit(position.file_id, edit))
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}
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/// Returns an edit which should be applied when a dot ('.') is typed on a blank line, indenting the line appropriately.
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pub fn on_dot_typed(&self, position: FilePosition) -> Option<SourceChange> {
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let file = self.db.parse(position.file_id);
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let edit = ra_ide_api_light::on_dot_typed(&file, position.offset)?;
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Some(SourceChange::from_local_edit(position.file_id, edit))
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}
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/// Returns a tree representation of symbols in the file. Useful to draw a
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/// file outline.
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pub fn file_structure(&self, file_id: FileId) -> Vec<StructureNode> {
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let file = self.db.parse(file_id);
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ra_ide_api_light::file_structure(&file)
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}
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/// Returns the set of folding ranges.
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pub fn folding_ranges(&self, file_id: FileId) -> Vec<Fold> {
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let file = self.db.parse(file_id);
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ra_ide_api_light::folding_ranges(&file)
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}
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/// Fuzzy searches for a symbol.
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pub fn symbol_search(&self, query: Query) -> Cancelable<Vec<NavigationTarget>> {
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self.with_db(|db| {
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symbol_index::world_symbols(db, query)
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.into_iter()
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.map(NavigationTarget::from_symbol)
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.collect::<Vec<_>>()
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})
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}
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pub fn goto_definition(
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&self,
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position: FilePosition,
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) -> Cancelable<Option<RangeInfo<Vec<NavigationTarget>>>> {
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self.with_db(|db| goto_definition::goto_definition(db, position))
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}
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pub fn goto_implementation(
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&self,
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position: FilePosition,
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) -> Cancelable<Option<RangeInfo<Vec<NavigationTarget>>>> {
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self.with_db(|db| impls::goto_implementation(db, position))
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}
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/// Finds all usages of the reference at point.
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pub fn find_all_refs(
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&self,
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position: FilePosition,
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) -> Cancelable<Option<ReferenceSearchResult>> {
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self.with_db(|db| references::find_all_refs(db, position))
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}
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/// Returns a short text describing element at position.
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pub fn hover(&self, position: FilePosition) -> Cancelable<Option<RangeInfo<HoverResult>>> {
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self.with_db(|db| hover::hover(db, position))
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}
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/// Computes parameter information for the given call expression.
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pub fn call_info(&self, position: FilePosition) -> Cancelable<Option<CallInfo>> {
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self.with_db(|db| call_info::call_info(db, position))
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}
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/// Returns a `mod name;` declaration which created the current module.
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pub fn parent_module(&self, position: FilePosition) -> Cancelable<Vec<NavigationTarget>> {
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self.with_db(|db| parent_module::parent_module(db, position))
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}
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/// Returns crates this file belongs too.
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pub fn crate_for(&self, file_id: FileId) -> Cancelable<Vec<CrateId>> {
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self.with_db(|db| parent_module::crate_for(db, file_id))
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}
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/// Returns the root file of the given crate.
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pub fn crate_root(&self, crate_id: CrateId) -> Cancelable<FileId> {
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self.with_db(|db| db.crate_graph().crate_root(crate_id))
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}
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/// Returns the set of possible targets to run for the current file.
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pub fn runnables(&self, file_id: FileId) -> Cancelable<Vec<Runnable>> {
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self.with_db(|db| runnables::runnables(db, file_id))
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}
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/// Computes syntax highlighting for the given file.
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pub fn highlight(&self, file_id: FileId) -> Cancelable<Vec<HighlightedRange>> {
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self.with_db(|db| syntax_highlighting::highlight(db, file_id))
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}
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/// Computes completions at the given position.
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pub fn completions(&self, position: FilePosition) -> Cancelable<Option<Vec<CompletionItem>>> {
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self.with_db(|db| completion::completions(db, position).map(Into::into))
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}
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/// Computes assists (aks code actons aka intentions) for the given
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/// position.
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pub fn assists(&self, frange: FileRange) -> Cancelable<Vec<Assist>> {
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self.with_db(|db| assists::assists(db, frange))
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}
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/// Computes the set of diagnostics for the given file.
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pub fn diagnostics(&self, file_id: FileId) -> Cancelable<Vec<Diagnostic>> {
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self.with_db(|db| diagnostics::diagnostics(db, file_id))
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}
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/// Computes the type of the expression at the given position.
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pub fn type_of(&self, frange: FileRange) -> Cancelable<Option<String>> {
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self.with_db(|db| hover::type_of(db, frange))
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}
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/// Returns the edit required to rename reference at the position to the new
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/// name.
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pub fn rename(
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&self,
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position: FilePosition,
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new_name: &str,
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) -> Cancelable<Option<SourceChange>> {
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self.with_db(|db| references::rename(db, position, new_name))
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}
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fn with_db<F: FnOnce(&db::RootDatabase) -> T + std::panic::UnwindSafe, T>(
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&self,
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f: F,
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) -> Cancelable<T> {
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self.db.catch_canceled(f)
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}
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}
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impl SourceChange {
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pub(crate) fn from_local_edit(file_id: FileId, edit: LocalEdit) -> SourceChange {
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let file_edit = SourceFileEdit { file_id, edit: edit.edit };
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SourceChange {
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label: edit.label,
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source_file_edits: vec![file_edit],
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file_system_edits: vec![],
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cursor_position: edit.cursor_position.map(|offset| FilePosition { offset, file_id }),
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}
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}
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}
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#[test]
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fn analysis_is_send() {
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fn is_send<T: Send>() {}
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is_send::<Analysis>();
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}
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