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cairo_language_server/
lib.rs

1//! # CairoLS
2//!
3//! Implements the LSP protocol over stdin/out.
4//!
5//! ## Running vanilla
6//!
7//! This is basically the source code of the `cairo-language-server` and
8//! `scarb cairo-language-server` binaries.
9//!
10//! ```no_run
11//! # #![allow(clippy::needless_doctest_main)]
12//! fn main() {
13//!     cairo_language_server::start();
14//! }
15//! ```
16
17use std::path::PathBuf;
18use std::process::ExitCode;
19use std::time::SystemTime;
20use std::{io, panic};
21
22use anyhow::Result;
23use cairo_lang_filesystem::ids::FileLongId;
24use crossbeam::channel::{self, Receiver, select_biased};
25use lsp_server::Message;
26use lsp_types::RegistrationParams;
27use lsp_types::request::SemanticTokensRefresh;
28use mimalloc::MiMalloc;
29use tracing::{debug, error, info};
30
31use crate::ide::analysis_progress::AnalysisStatus;
32use crate::ide::code_lens::CodeLensController;
33use crate::lang::lsp::LsProtoGroup;
34use crate::lang::proc_macros;
35use crate::lang::proc_macros::client::ServerStatus;
36use crate::lang::proc_macros::controller::ProcMacroChannels;
37use crate::lang::proc_macros::db::ProcMacroGroup;
38use crate::lsp::capabilities::client::ClientCapabilitiesExt;
39use crate::lsp::capabilities::server::{
40    collect_dynamic_registrations, collect_server_capabilities,
41};
42use crate::lsp::result::LSPResult;
43use crate::project::{ProjectController, ProjectUpdate};
44use crate::server::client::{Notifier, Requester, Responder};
45use crate::server::connection::{Connection, ConnectionInitializer};
46use crate::server::panic::is_cancelled;
47use crate::server::schedule::thread::JoinHandle;
48use crate::server::schedule::{Scheduler, Task, event_loop_thread};
49use crate::state::{MetaState, State};
50
51mod config;
52mod env_config;
53mod ide;
54mod lang;
55pub mod lsp;
56mod project;
57mod server;
58mod state;
59#[cfg(feature = "testing")]
60pub mod testing;
61mod toolchain;
62
63#[global_allocator]
64static GLOBAL: MiMalloc = MiMalloc;
65
66/// Starts the language server.
67///
68/// See [the top-level documentation][lib] documentation for usage examples.
69///
70/// [lib]: crate#running-vanilla
71pub fn start() -> ExitCode {
72    // Return freed pages to OS immediately. mimalloc reads this env var on first allocation,
73    // so it must be set before any significant work begins.
74    unsafe { std::env::set_var("MIMALLOC_PURGE_DELAY", "0") };
75
76    let _log_guard = init_logging();
77    set_panic_hook();
78
79    info!("language server starting");
80    env_config::report_to_logs();
81
82    let exit_code = match Backend::new() {
83        Ok(backend) => {
84            if let Err(err) = backend.run().map(|handle| handle.join()) {
85                error!("language server encountered an unrecoverable error: {err}");
86                ExitCode::from(1)
87            } else {
88                ExitCode::from(0)
89            }
90        }
91        Err(err) => {
92            error!("language server failed during initialization: {err}");
93            ExitCode::from(1)
94        }
95    };
96
97    info!("language server stopped");
98    exit_code
99}
100
101/// Initialize logging infrastructure for the language server.
102///
103/// Returns a guard that should be dropped when the LS ends, to flush log files.
104fn init_logging() -> Option<impl Drop> {
105    use std::fs;
106    use std::io::IsTerminal;
107
108    use tracing_chrome::ChromeLayerBuilder;
109    use tracing_subscriber::filter::{EnvFilter, LevelFilter, Targets};
110    use tracing_subscriber::fmt::Layer;
111    use tracing_subscriber::fmt::time::Uptime;
112    use tracing_subscriber::prelude::*;
113
114    let mut guard = None;
115
116    let fmt_layer = Layer::new()
117        .with_writer(io::stderr)
118        .with_timer(Uptime::default())
119        .with_ansi(io::stderr().is_terminal())
120        .with_filter(
121            EnvFilter::builder()
122                .with_default_directive(LevelFilter::WARN.into())
123                .with_env_var(env_config::CAIRO_LS_LOG)
124                .from_env_lossy(),
125        );
126
127    let profile_layer = if env_config::tracing_profile() {
128        let mut path = PathBuf::from(format!(
129            "./cairols-profile-{}.json",
130            SystemTime::UNIX_EPOCH.elapsed().unwrap().as_micros()
131        ));
132
133        // Create the file now, so that we early panic, and `fs::canonicalize` will work.
134        let profile_file = fs::File::create(&path).expect("Failed to create profile file.");
135
136        // Try to canonicalize the path, so that it's easier to find the file from logs.
137        if let Ok(canonical) = fs::canonicalize(&path) {
138            path = canonical;
139        }
140
141        eprintln!("this LS run will output tracing profile to: {}", path.display());
142        eprintln!(
143            "open that file with https://ui.perfetto.dev (or chrome://tracing) to analyze it"
144        );
145
146        let (profile_layer, profile_layer_guard) =
147            ChromeLayerBuilder::new().writer(profile_file).include_args(true).build();
148
149        // Filter out less important Salsa logs because they are too verbose,
150        // and with them the profile file quickly grows to several GBs of data.
151        let profile_layer = profile_layer.with_filter(
152            Targets::new().with_default(LevelFilter::TRACE).with_target("salsa", LevelFilter::WARN),
153        );
154
155        guard = Some(profile_layer_guard);
156        Some(profile_layer)
157    } else {
158        None
159    };
160
161    tracing::subscriber::set_global_default(
162        tracing_subscriber::registry().with(fmt_layer).with(profile_layer),
163    )
164    .expect("Could not set up global logger.");
165
166    guard
167}
168
169/// Sets a special panic hook that skips execution for Salsa cancellation panics.
170fn set_panic_hook() {
171    let previous_hook = panic::take_hook();
172    panic::set_hook(Box::new(move |info| {
173        if !is_cancelled(info.payload()) {
174            previous_hook(info);
175        }
176    }))
177}
178
179struct Backend {
180    connection: Connection,
181    state: State,
182}
183
184impl Backend {
185    fn new() -> Result<Self> {
186        let connection_initializer = ConnectionInitializer::stdio();
187
188        Self::initialize(connection_initializer, std::env::current_dir()?)
189    }
190
191    /// Initializes the connection and crate a ready to run [`Backend`] instance.
192    ///
193    /// As part of the initialization flow, this function exchanges client and server capabilities.
194    fn initialize(connection_initializer: ConnectionInitializer, cwd: PathBuf) -> Result<Self> {
195        let (id, init_params) = connection_initializer.initialize_start()?;
196
197        let client_capabilities = init_params.capabilities;
198        let server_capabilities = collect_server_capabilities(&client_capabilities);
199
200        let connection = connection_initializer.initialize_finish(id, server_capabilities)?;
201        let state = State::new(connection.make_sender(), client_capabilities, cwd);
202
203        Ok(Self { connection, state })
204    }
205
206    /// Runs the main event loop thread and wait for its completion.
207    fn run(self) -> Result<JoinHandle<Result<()>>> {
208        event_loop_thread(move || {
209            let Self { mut state, connection } = self;
210            let proc_macro_channels = state.proc_macro_controller.channels();
211            let project_updates_receiver = state.project_controller.response_receiver();
212            let analysis_progress_receiver =
213                state.analysis_progress_controller.get_status_receiver();
214            let code_lens_request_refresh_receiver =
215                state.code_lens_controller.request_refresh_receiver();
216
217            let mut scheduler = Scheduler::new(&mut state, connection.make_sender());
218
219            Self::dispatch_setup_tasks(&mut scheduler);
220
221            // Mutations count as user activity for the inactivity-based swapper.
222            scheduler.on_sync_mut_task(Self::register_mutation_in_swapper);
223
224            // Attempt to swap the database after enough mutations accumulate.
225            scheduler.on_sync_mut_task(Self::maybe_swap_database);
226
227            // Refresh diagnostics each time state changes.
228            // Although it is possible to mutate state without affecting the analysis database,
229            // we basically never hit such a case in CairoLS in happy paths.
230            scheduler.on_sync_mut_task(Self::refresh_diagnostics);
231
232            // Keep it last, marks that db mutation might happened.
233            scheduler.on_sync_mut_task(|state, _, _| {
234                state.analysis_progress_controller.mutation();
235            });
236
237            let inactivity_swap_request_receiver = scheduler
238                .meta_state
239                .lock()
240                .expect("should be able to acquire the MetaState")
241                .inactivity_monitor
242                .swap_request_receiver();
243
244            let result = Self::event_loop(
245                &connection,
246                proc_macro_channels,
247                project_updates_receiver,
248                analysis_progress_receiver,
249                code_lens_request_refresh_receiver,
250                inactivity_swap_request_receiver,
251                scheduler,
252            );
253
254            state.db.cancel_all();
255
256            if let Err(err) = connection.close() {
257                error!("failed to close connection to the language server: {err:?}");
258            }
259
260            result
261        })
262    }
263
264    /// Runs various setup tasks before entering the main event loop.
265    fn dispatch_setup_tasks(scheduler: &mut Scheduler<'_>) {
266        scheduler.local_mut(Self::register_dynamic_capabilities);
267
268        scheduler.local_mut(|state, _notifier, requester, _responder| {
269            let _ = state.config.reload_on_start(
270                requester,
271                &mut state.db,
272                &mut state.proc_macro_controller,
273                &mut state.analysis_progress_controller,
274                &state.client_capabilities,
275            );
276        });
277    }
278
279    fn register_dynamic_capabilities(
280        state: &mut State,
281        _notifier: Notifier,
282        requester: &mut Requester<'_>,
283        _responder: Responder,
284    ) {
285        let registrations = collect_dynamic_registrations(&state.client_capabilities);
286
287        let _ = requester
288            .request::<lsp_types::request::RegisterCapability>(
289                RegistrationParams { registrations },
290                |()| {
291                    debug!("capabilities successfully registered dynamically");
292                    Task::nothing()
293                },
294            )
295            .inspect_err(|e| {
296                error!(
297                    "failed to register dynamic capabilities, some features may not work \
298                     properly: {e:?}"
299                )
300            });
301    }
302
303    // +--------------------------------------------------+
304    // | Function code adopted from:                      |
305    // | Repository: https://github.com/astral-sh/ruff    |
306    // | File: `crates/ruff_server/src/server.rs`         |
307    // | Commit: 46a457318d8d259376a2b458b3f814b9b795fe69 |
308    // +--------------------------------------------------+
309    fn event_loop(
310        connection: &Connection,
311        proc_macro_channels: ProcMacroChannels,
312        project_updates_receiver: Receiver<ProjectUpdate>,
313        analysis_progress_status_receiver: Receiver<AnalysisStatus>,
314        code_lens_request_refresh_receiver: Receiver<()>,
315        inactivity_swap_request_receiver: Receiver<()>,
316        mut scheduler: Scheduler<'_>,
317    ) -> Result<()> {
318        let incoming = connection.incoming();
319        let (retry_sender, retry_receiver) = channel::unbounded();
320
321        loop {
322            select_biased! {
323                // Project updates may significantly change the state, therefore
324                // they should be handled first in case of multiple operations being ready at once.
325                // To ensure it, keep project updates channel in the first arm of `select_biased!`.
326                recv(project_updates_receiver) -> project_update => {
327                    let Ok(project_update) = project_update else { break };
328
329                    scheduler.local_mut(move |state, notifier, _, _| ProjectController::handle_update(state, notifier, project_update));
330                }
331                recv(incoming) -> msg => {
332                    let Ok(msg) = msg else { break };
333
334                    if connection.handle_shutdown(&msg)? {
335                        break;
336                    }
337                    scheduler.meta_state
338                        .lock()
339                        .expect("should be able to acquire the MetaState")
340                        .inactivity_monitor
341                        .notify_activity();
342                    let task = match msg {
343                        Message::Request(req) => server::request(req, retry_sender.clone()),
344                        Message::Notification(notification) => server::notification(notification),
345                        Message::Response(response) => scheduler.response(response),
346                    };
347                    scheduler.dispatch(task);
348                }
349                recv(proc_macro_channels.poll_responses_receiver) -> response => {
350                    let Ok(()) = response else { break };
351
352                    scheduler.local_mut(Self::on_proc_macro_response);
353                }
354                recv(proc_macro_channels.error_receiver) -> error => {
355                    let Ok(()) = error else { break };
356
357                    scheduler.local_mut(Self::on_proc_macro_error);
358                }
359                recv(retry_receiver) -> retry => {
360                    let Ok((retry_info, handler)) = retry else { break };
361
362                    let task = retry_info.task(handler);
363                    scheduler.dispatch(task);
364                }
365                recv(analysis_progress_status_receiver) -> analysis_progress_status => {
366                    let Ok(analysis_status) = analysis_progress_status else { break };
367
368                    if let AnalysisStatus::Finished = analysis_status {
369                        scheduler.local(|state, _, _notifier, requester, _responder|
370                            Self::on_stopped_analysis(state, requester)
371                        );
372                    }
373                }
374                recv(code_lens_request_refresh_receiver) -> error => {
375                    let Ok(()) = error else { break };
376
377                    scheduler.local(|state: &State, _, _, requester, _| {
378                        if state.client_capabilities.workspace_code_lens_refresh_support() {
379                            CodeLensController::handle_refresh(requester);
380                        }
381                    });
382                }
383                recv(inactivity_swap_request_receiver) -> result => {
384                    let Ok(()) = result else { break };
385
386                    let meta_state = scheduler.meta_state.clone();
387                    scheduler.local_mut(move |state, _, _, _| {
388                        let mut ms = meta_state
389                            .lock()
390                            .expect("should be able to acquire the MetaState");
391                        ms.inactivity_monitor.notify_swap_triggered();
392                        ms.db_swapper.swap_on_inactivity(
393                            &mut state.db,
394                            &state.open_files,
395                        );
396                    });
397                }
398            }
399        }
400
401        Ok(())
402    }
403
404    /// Calls [`lang::proc_macros::controller::ProcMacroClientController::handle_error`] to do its
405    /// work.
406    fn on_proc_macro_error(state: &mut State, _: Notifier, _: &mut Requester<'_>, _: Responder) {
407        state.proc_macro_controller.force_restart(&mut state.db, &state.config);
408    }
409
410    /// Calls [`lang::proc_macros::controller::ProcMacroClientController::on_response`] to do its
411    /// work.
412    fn on_proc_macro_response(
413        state: &mut State,
414        _: Notifier,
415        requester: &mut Requester<'_>,
416        _: Responder,
417    ) {
418        // Check for responses without keeping the Arc alive past this block.
419        // The Arc must be dropped before calling `handle_response`, because `handle_response` may
420        // call `force_restart` which calls `Arc::try_unwrap` and panics if any extra strong
421        // references exist.
422        let has_responses = match state.db.proc_macro_input().proc_macro_server_status(&state.db) {
423            ServerStatus::Connected(client) => client.available_responses().len() != 0,
424            _ => false,
425        };
426
427        if has_responses {
428            state.proc_macro_controller.handle_response(
429                &mut state.db,
430                &state.config,
431                &state.client_capabilities,
432                requester,
433            );
434        }
435    }
436
437    fn on_stopped_analysis(state: &State, requester: &mut Requester<'_>) {
438        proc_macros::cache::save_proc_macro_cache(&state.db);
439        state
440            .code_lens_controller
441            .schedule_refreshing_all_lenses(state.db.clone(), state.config.clone());
442
443        if state.client_capabilities.workspace_semantic_tokens_refresh_support()
444            && let Err(err) = requester.request::<SemanticTokensRefresh>((), |_| Task::nothing())
445        {
446            error!("semantic tokens refresh failed: {err:#?}");
447        }
448    }
449
450    fn register_mutation_in_swapper(
451        _state: &mut State,
452        meta_state: MetaState,
453        _notifier: Notifier,
454    ) {
455        let mut ms = meta_state.lock().expect("should be able to acquire the MetaState");
456        ms.db_swapper.register_mutation();
457        ms.inactivity_monitor.notify_activity();
458    }
459
460    /// Calls [`lang::db::AnalysisDatabaseSwapper::maybe_swap`] to do its work.
461    fn maybe_swap_database(state: &mut State, meta_state: MetaState, _notifier: Notifier) {
462        meta_state
463            .lock()
464            .expect("should be able to acquire the MetaState")
465            .db_swapper
466            .maybe_swap(&mut state.db, &state.open_files);
467    }
468
469    /// Calls [`lang::diagnostics::DiagnosticsController::refresh`] to do its work.
470    fn refresh_diagnostics(state: &mut State, _meta_state: MetaState, _notifier: Notifier) {
471        state.diagnostics_controller.refresh(
472            &state.db,
473            &state.open_files,
474            &state.config,
475            &state.project_controller.configs_registry(),
476        );
477    }
478
479    /// Reload config and update project model for all open files.
480    fn reload(state: &mut State, requester: &mut Requester<'_>) -> LSPResult<()> {
481        state.project_controller.clear_loaded_workspaces();
482        state.config.reload(requester, &state.client_capabilities)?;
483
484        for uri in state.open_files.iter() {
485            let Some(file_id) = state.db.file_for_url(uri) else { continue };
486            if let FileLongId::OnDisk(file_path) = file_id.long(&state.db) {
487                state.project_controller.request_updating_project_for_file(file_path.clone());
488            }
489        }
490
491        Ok(())
492    }
493}