mirror of
https://github.com/denoland/deno.git
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331 lines
10 KiB
Rust
331 lines
10 KiB
Rust
// Copyright 2018-2021 the Deno authors. All rights reserved. MIT license.
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use super::analysis::get_lint_references;
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use super::analysis::references_to_diagnostics;
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use super::analysis::ResolvedDependency;
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use super::language_server::StateSnapshot;
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use super::tsc;
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use crate::diagnostics;
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use crate::media_type::MediaType;
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use deno_core::error::AnyError;
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use deno_core::serde_json;
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use deno_core::ModuleSpecifier;
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use lspower::lsp_types;
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use std::collections::HashMap;
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use std::collections::HashSet;
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use std::mem;
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#[derive(Debug, Clone, Hash, PartialEq, Eq)]
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pub enum DiagnosticSource {
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Deno,
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Lint,
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TypeScript,
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}
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#[derive(Debug, Default, Clone)]
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pub struct DiagnosticCollection {
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map: HashMap<(ModuleSpecifier, DiagnosticSource), Vec<lsp_types::Diagnostic>>,
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versions: HashMap<ModuleSpecifier, i32>,
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changes: HashSet<ModuleSpecifier>,
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}
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impl DiagnosticCollection {
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pub fn set(
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&mut self,
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specifier: ModuleSpecifier,
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source: DiagnosticSource,
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version: Option<i32>,
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diagnostics: Vec<lsp_types::Diagnostic>,
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) {
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self.map.insert((specifier.clone(), source), diagnostics);
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if let Some(version) = version {
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self.versions.insert(specifier.clone(), version);
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}
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self.changes.insert(specifier);
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}
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pub fn diagnostics_for(
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&self,
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specifier: &ModuleSpecifier,
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source: &DiagnosticSource,
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) -> impl Iterator<Item = &lsp_types::Diagnostic> {
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self
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.map
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.get(&(specifier.clone(), source.clone()))
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.into_iter()
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.flatten()
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}
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pub fn get_version(&self, specifier: &ModuleSpecifier) -> Option<i32> {
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self.versions.get(specifier).cloned()
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}
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pub fn invalidate(&mut self, specifier: &ModuleSpecifier) {
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self.versions.remove(specifier);
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}
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pub fn take_changes(&mut self) -> Option<HashSet<ModuleSpecifier>> {
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if self.changes.is_empty() {
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return None;
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}
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Some(mem::take(&mut self.changes))
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}
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}
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pub type DiagnosticVec =
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Vec<(ModuleSpecifier, Option<i32>, Vec<lsp_types::Diagnostic>)>;
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pub async fn generate_lint_diagnostics(
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state_snapshot: StateSnapshot,
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diagnostic_collection: DiagnosticCollection,
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) -> DiagnosticVec {
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tokio::task::spawn_blocking(move || {
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let mut diagnostic_list = Vec::new();
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for specifier in state_snapshot.documents.open_specifiers() {
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let version = state_snapshot.documents.version(specifier);
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let current_version = diagnostic_collection.get_version(specifier);
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if version != current_version {
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let media_type = MediaType::from(specifier);
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if let Ok(Some(source_code)) =
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state_snapshot.documents.content(specifier)
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{
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if let Ok(references) =
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get_lint_references(specifier, &media_type, &source_code)
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{
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if !references.is_empty() {
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diagnostic_list.push((
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specifier.clone(),
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version,
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references_to_diagnostics(references),
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));
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} else {
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diagnostic_list.push((specifier.clone(), version, Vec::new()));
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}
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}
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} else {
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error!("Missing file contents for: {}", specifier);
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}
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}
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}
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diagnostic_list
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})
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.await
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.unwrap()
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}
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impl<'a> From<&'a diagnostics::DiagnosticCategory>
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for lsp_types::DiagnosticSeverity
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{
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fn from(category: &'a diagnostics::DiagnosticCategory) -> Self {
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match category {
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diagnostics::DiagnosticCategory::Error => {
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lsp_types::DiagnosticSeverity::Error
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}
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diagnostics::DiagnosticCategory::Warning => {
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lsp_types::DiagnosticSeverity::Warning
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}
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diagnostics::DiagnosticCategory::Suggestion => {
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lsp_types::DiagnosticSeverity::Hint
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}
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diagnostics::DiagnosticCategory::Message => {
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lsp_types::DiagnosticSeverity::Information
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}
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}
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}
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}
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impl<'a> From<&'a diagnostics::Position> for lsp_types::Position {
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fn from(pos: &'a diagnostics::Position) -> Self {
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Self {
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line: pos.line as u32,
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character: pos.character as u32,
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}
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}
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}
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fn to_lsp_range(
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start: &diagnostics::Position,
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end: &diagnostics::Position,
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) -> lsp_types::Range {
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lsp_types::Range {
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start: start.into(),
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end: end.into(),
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}
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}
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type TsDiagnostics = HashMap<String, Vec<diagnostics::Diagnostic>>;
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fn get_diagnostic_message(diagnostic: &diagnostics::Diagnostic) -> String {
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if let Some(message) = diagnostic.message_text.clone() {
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message
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} else if let Some(message_chain) = diagnostic.message_chain.clone() {
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message_chain.format_message(0)
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} else {
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"[missing message]".to_string()
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}
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}
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fn to_lsp_related_information(
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related_information: &Option<Vec<diagnostics::Diagnostic>>,
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) -> Option<Vec<lsp_types::DiagnosticRelatedInformation>> {
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if let Some(related) = related_information {
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Some(
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related
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.iter()
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.filter_map(|ri| {
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if let (Some(source), Some(start), Some(end)) =
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(&ri.source, &ri.start, &ri.end)
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{
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let uri = lsp_types::Url::parse(&source).unwrap();
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Some(lsp_types::DiagnosticRelatedInformation {
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location: lsp_types::Location {
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uri,
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range: to_lsp_range(start, end),
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},
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message: get_diagnostic_message(&ri),
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})
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} else {
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None
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}
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})
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.collect(),
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)
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} else {
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None
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}
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}
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fn ts_json_to_diagnostics(
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diagnostics: &[diagnostics::Diagnostic],
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) -> Vec<lsp_types::Diagnostic> {
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diagnostics
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.iter()
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.filter_map(|d| {
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if let (Some(start), Some(end)) = (&d.start, &d.end) {
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Some(lsp_types::Diagnostic {
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range: to_lsp_range(start, end),
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severity: Some((&d.category).into()),
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code: Some(lsp_types::NumberOrString::Number(d.code as i32)),
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code_description: None,
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source: Some("deno-ts".to_string()),
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message: get_diagnostic_message(d),
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related_information: to_lsp_related_information(
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&d.related_information,
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),
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tags: match d.code {
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// These are codes that indicate the variable is unused.
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2695 | 6133 | 6138 | 6192 | 6196 | 6198 | 6199 | 7027 | 7028 => {
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Some(vec![lsp_types::DiagnosticTag::Unnecessary])
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}
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_ => None,
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},
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data: None,
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})
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} else {
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None
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}
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})
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.collect()
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}
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pub async fn generate_ts_diagnostics(
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state_snapshot: StateSnapshot,
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diagnostic_collection: DiagnosticCollection,
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ts_server: &tsc::TsServer,
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) -> Result<DiagnosticVec, AnyError> {
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let mut diagnostics = Vec::new();
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let mut specifiers = Vec::new();
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for specifier in state_snapshot.documents.open_specifiers() {
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let version = state_snapshot.documents.version(specifier);
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let current_version = diagnostic_collection.get_version(specifier);
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if version != current_version {
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specifiers.push(specifier.clone());
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}
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}
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if !specifiers.is_empty() {
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let req = tsc::RequestMethod::GetDiagnostics(specifiers);
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let res = ts_server.request(state_snapshot.clone(), req).await?;
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let ts_diagnostic_map: TsDiagnostics = serde_json::from_value(res)?;
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for (specifier_str, ts_diagnostics) in ts_diagnostic_map.iter() {
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let specifier = ModuleSpecifier::resolve_url(specifier_str)?;
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let version = state_snapshot.documents.version(&specifier);
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diagnostics.push((
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specifier,
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version,
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ts_json_to_diagnostics(ts_diagnostics),
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));
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}
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}
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Ok(diagnostics)
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}
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pub async fn generate_dependency_diagnostics(
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mut state_snapshot: StateSnapshot,
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diagnostic_collection: DiagnosticCollection,
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) -> Result<DiagnosticVec, AnyError> {
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tokio::task::spawn_blocking(move || {
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let mut diagnostics = Vec::new();
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let sources = &mut state_snapshot.sources;
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for specifier in state_snapshot.documents.open_specifiers() {
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let version = state_snapshot.documents.version(specifier);
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let current_version = diagnostic_collection.get_version(specifier);
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if version != current_version {
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let mut diagnostic_list = Vec::new();
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if let Some(dependencies) = state_snapshot.documents.dependencies(specifier) {
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for (_, dependency) in dependencies.iter() {
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if let (Some(code), Some(range)) = (
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&dependency.maybe_code,
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&dependency.maybe_code_specifier_range,
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) {
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match code.clone() {
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ResolvedDependency::Err(message) => {
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diagnostic_list.push(lsp_types::Diagnostic {
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range: *range,
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severity: Some(lsp_types::DiagnosticSeverity::Error),
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code: None,
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code_description: None,
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source: Some("deno".to_string()),
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message,
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related_information: None,
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tags: None,
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data: None,
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})
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}
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ResolvedDependency::Resolved(specifier) => {
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if !(state_snapshot.documents.contains(&specifier) || sources.contains(&specifier)) {
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let is_local = specifier.as_url().scheme() == "file";
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diagnostic_list.push(lsp_types::Diagnostic {
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range: *range,
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severity: Some(lsp_types::DiagnosticSeverity::Error),
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code: None,
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code_description: None,
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source: Some("deno".to_string()),
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message: if is_local {
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format!("Unable to load a local module: \"{}\".\n Please check the file path.", specifier)
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} else {
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format!("Unable to load the module: \"{}\".\n If the module exists, running `deno cache {}` should resolve this error.", specifier, specifier)
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},
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related_information: None,
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tags: None,
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data: None,
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})
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}
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},
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}
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}
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}
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}
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diagnostics.push((specifier.clone(), version, diagnostic_list))
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}
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}
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Ok(diagnostics)
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})
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.await
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.unwrap()
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}
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