mirror of
https://github.com/denoland/deno.git
synced 2024-12-28 01:59:06 -05:00
579 lines
16 KiB
Rust
579 lines
16 KiB
Rust
// Copyright 2018-2021 the Deno authors. All rights reserved. MIT license.
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use super::analysis;
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use super::document_source::DocumentSource;
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use super::text::LineIndex;
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use super::tsc;
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use deno_ast::MediaType;
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use deno_core::error::custom_error;
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use deno_core::error::AnyError;
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use deno_core::ModuleSpecifier;
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use lspower::lsp;
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use std::collections::HashMap;
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use std::collections::HashSet;
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use std::ops::Range;
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use std::str::FromStr;
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use std::sync::Arc;
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/// A representation of the language id sent from the LSP client, which is used
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/// to determine how the document is handled within the language server.
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#[derive(Debug, Clone, PartialEq, Eq, Copy)]
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pub enum LanguageId {
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JavaScript,
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Jsx,
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TypeScript,
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Tsx,
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Json,
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JsonC,
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Markdown,
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Unknown,
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}
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impl FromStr for LanguageId {
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type Err = AnyError;
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fn from_str(s: &str) -> Result<Self, Self::Err> {
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match s {
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"javascript" => Ok(Self::JavaScript),
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"javascriptreact" => Ok(Self::Jsx),
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"jsx" => Ok(Self::Jsx),
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"typescript" => Ok(Self::TypeScript),
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"typescriptreact" => Ok(Self::Tsx),
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"tsx" => Ok(Self::Tsx),
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"json" => Ok(Self::Json),
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"jsonc" => Ok(Self::JsonC),
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"markdown" => Ok(Self::Markdown),
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_ => Ok(Self::Unknown),
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}
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}
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}
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impl<'a> From<&'a LanguageId> for MediaType {
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fn from(id: &'a LanguageId) -> MediaType {
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match id {
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LanguageId::JavaScript => MediaType::JavaScript,
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LanguageId::Json => MediaType::Json,
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LanguageId::JsonC => MediaType::Json,
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LanguageId::Jsx => MediaType::Jsx,
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LanguageId::Markdown => MediaType::Unknown,
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LanguageId::Tsx => MediaType::Tsx,
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LanguageId::TypeScript => MediaType::TypeScript,
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LanguageId::Unknown => MediaType::Unknown,
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}
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}
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}
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#[derive(Debug, PartialEq, Eq)]
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enum IndexValid {
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All,
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UpTo(u32),
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}
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impl IndexValid {
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fn covers(&self, line: u32) -> bool {
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match *self {
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IndexValid::UpTo(to) => to > line,
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IndexValid::All => true,
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}
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}
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}
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#[derive(Debug, Clone)]
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pub struct DocumentData {
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source: DocumentSource,
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dependencies: Option<HashMap<String, analysis::Dependency>>,
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dependency_ranges: Option<analysis::DependencyRanges>,
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pub(crate) language_id: LanguageId,
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maybe_navigation_tree: Option<tsc::NavigationTree>,
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specifier: ModuleSpecifier,
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version: Option<i32>,
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}
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impl DocumentData {
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pub fn new(
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specifier: ModuleSpecifier,
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version: i32,
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language_id: LanguageId,
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source_text: Arc<String>,
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) -> Self {
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let line_index = LineIndex::new(&source_text);
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Self {
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source: DocumentSource::new(
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&specifier,
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MediaType::from(&language_id),
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source_text,
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line_index,
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),
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dependencies: None,
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dependency_ranges: None,
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language_id,
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maybe_navigation_tree: None,
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specifier,
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version: Some(version),
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}
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}
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pub fn apply_content_changes(
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&mut self,
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content_changes: Vec<lsp::TextDocumentContentChangeEvent>,
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) -> Result<(), AnyError> {
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let mut content = self.source.text_info().text_str().to_string();
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let mut line_index = self.source.line_index().clone();
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let mut index_valid = IndexValid::All;
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for change in content_changes {
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if let Some(range) = change.range {
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if !index_valid.covers(range.start.line) {
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line_index = LineIndex::new(&content);
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}
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index_valid = IndexValid::UpTo(range.start.line);
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let range = line_index.get_text_range(range)?;
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content.replace_range(Range::<usize>::from(range), &change.text);
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} else {
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content = change.text;
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index_valid = IndexValid::UpTo(0);
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}
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}
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let line_index = if index_valid == IndexValid::All {
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line_index
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} else {
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LineIndex::new(&content)
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};
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self.source = DocumentSource::new(
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&self.specifier,
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MediaType::from(&self.language_id),
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Arc::new(content),
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line_index,
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);
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self.maybe_navigation_tree = None;
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Ok(())
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}
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pub fn source(&self) -> &DocumentSource {
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&self.source
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}
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/// Determines if a position within the document is within a dependency range
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/// and if so, returns the range with the text of the specifier.
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fn is_specifier_position(
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&self,
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position: &lsp::Position,
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) -> Option<analysis::DependencyRange> {
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let import_ranges = self.dependency_ranges.as_ref()?;
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import_ranges.contains(position)
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}
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}
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#[derive(Debug, Clone, Default)]
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pub struct DocumentCache {
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dependents_graph: HashMap<ModuleSpecifier, HashSet<ModuleSpecifier>>,
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pub(crate) docs: HashMap<ModuleSpecifier, DocumentData>,
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}
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impl DocumentCache {
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/// Calculate a graph of dependents and set it on the structure.
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fn calculate_dependents(&mut self) {
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let mut dependents_graph: HashMap<
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ModuleSpecifier,
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HashSet<ModuleSpecifier>,
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> = HashMap::new();
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for (specifier, data) in &self.docs {
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if let Some(dependencies) = &data.dependencies {
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for dependency in dependencies.values() {
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if let Some(analysis::ResolvedDependency::Resolved(dep_specifier)) =
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&dependency.maybe_code
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{
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dependents_graph
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.entry(dep_specifier.clone())
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.or_default()
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.insert(specifier.clone());
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}
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if let Some(analysis::ResolvedDependency::Resolved(dep_specifier)) =
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&dependency.maybe_type
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{
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dependents_graph
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.entry(dep_specifier.clone())
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.or_default()
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.insert(specifier.clone());
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}
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}
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}
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}
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self.dependents_graph = dependents_graph;
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}
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pub fn change(
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&mut self,
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specifier: &ModuleSpecifier,
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version: i32,
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content_changes: Vec<lsp::TextDocumentContentChangeEvent>,
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) -> Result<(), AnyError> {
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if !self.contains_key(specifier) {
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return Err(custom_error(
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"NotFound",
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format!(
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"The specifier (\"{}\") does not exist in the document cache.",
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specifier
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),
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));
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}
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let doc = self.docs.get_mut(specifier).unwrap();
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doc.apply_content_changes(content_changes)?;
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doc.version = Some(version);
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Ok(())
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}
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pub fn close(&mut self, specifier: &ModuleSpecifier) {
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self.docs.remove(specifier);
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self.calculate_dependents();
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}
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pub fn contains_key(&self, specifier: &ModuleSpecifier) -> bool {
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self.docs.contains_key(specifier)
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}
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pub fn get(&self, specifier: &ModuleSpecifier) -> Option<&DocumentData> {
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self.docs.get(specifier)
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}
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pub fn content(&self, specifier: &ModuleSpecifier) -> Option<Arc<String>> {
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self
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.docs
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.get(specifier)
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.map(|d| d.source().text_info().text())
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}
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// For a given specifier, get all open documents which directly or indirectly
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// depend upon the specifier.
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pub fn dependents(
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&self,
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specifier: &ModuleSpecifier,
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) -> Vec<ModuleSpecifier> {
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let mut dependents = HashSet::new();
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self.recurse_dependents(specifier, &mut dependents);
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dependents.into_iter().collect()
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}
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pub fn dependencies(
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&self,
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specifier: &ModuleSpecifier,
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) -> Option<HashMap<String, analysis::Dependency>> {
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self
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.docs
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.get(specifier)
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.map(|doc| doc.dependencies.clone())
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.flatten()
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}
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pub fn get_navigation_tree(
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&self,
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specifier: &ModuleSpecifier,
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) -> Option<tsc::NavigationTree> {
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self
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.docs
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.get(specifier)
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.map(|doc| doc.maybe_navigation_tree.clone())
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.flatten()
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}
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/// Determines if the specifier should be processed for diagnostics and other
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/// related language server features.
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pub fn is_diagnosable(&self, specifier: &ModuleSpecifier) -> bool {
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if specifier.scheme() != "file" {
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// otherwise we look at the media type for the specifier.
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matches!(
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MediaType::from(specifier),
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MediaType::JavaScript
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| MediaType::Jsx
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| MediaType::TypeScript
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| MediaType::Tsx
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| MediaType::Dts
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)
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} else if let Some(doc_data) = self.docs.get(specifier) {
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// if the document is in the document cache, then use the client provided
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// language id to determine if the specifier is diagnosable.
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matches!(
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doc_data.language_id,
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LanguageId::JavaScript
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| LanguageId::Jsx
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| LanguageId::TypeScript
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| LanguageId::Tsx
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)
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} else {
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false
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}
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}
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/// Determines if the specifier can be processed for formatting.
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pub fn is_formattable(&self, specifier: &ModuleSpecifier) -> bool {
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self.docs.contains_key(specifier)
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}
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/// Determines if the position in the document is within a range of a module
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/// specifier, returning the text range if true.
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pub fn is_specifier_position(
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&self,
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specifier: &ModuleSpecifier,
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position: &lsp::Position,
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) -> Option<analysis::DependencyRange> {
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let document = self.docs.get(specifier)?;
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document.is_specifier_position(position)
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}
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pub fn len(&self) -> usize {
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self.docs.len()
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}
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pub fn line_index(&self, specifier: &ModuleSpecifier) -> Option<LineIndex> {
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self
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.docs
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.get(specifier)
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.map(|d| d.source().line_index().clone())
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}
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pub fn open(
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&mut self,
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specifier: ModuleSpecifier,
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version: i32,
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language_id: LanguageId,
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source: Arc<String>,
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) {
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self.docs.insert(
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specifier.clone(),
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DocumentData::new(specifier, version, language_id, source),
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);
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}
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pub fn open_specifiers(&self) -> Vec<&ModuleSpecifier> {
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self
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.docs
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.iter()
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.filter_map(|(key, data)| {
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if data.version.is_some() {
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Some(key)
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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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fn recurse_dependents(
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&self,
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specifier: &ModuleSpecifier,
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dependents: &mut HashSet<ModuleSpecifier>,
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) {
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if let Some(deps) = self.dependents_graph.get(specifier) {
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for dep in deps {
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if !dependents.contains(dep) {
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dependents.insert(dep.clone());
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self.recurse_dependents(dep, dependents);
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}
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}
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}
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}
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pub fn set_dependencies(
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&mut self,
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specifier: &ModuleSpecifier,
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maybe_dependencies: Option<HashMap<String, analysis::Dependency>>,
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maybe_dependency_ranges: Option<analysis::DependencyRanges>,
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) -> Result<(), AnyError> {
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if let Some(doc) = self.docs.get_mut(specifier) {
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doc.dependencies = maybe_dependencies;
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doc.dependency_ranges = maybe_dependency_ranges;
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self.calculate_dependents();
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Ok(())
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} else {
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Err(custom_error(
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"NotFound",
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format!(
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"The specifier (\"{}\") does not exist in the document cache.",
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specifier
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),
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))
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}
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}
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pub fn set_navigation_tree(
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&mut self,
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specifier: &ModuleSpecifier,
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navigation_tree: tsc::NavigationTree,
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) -> Result<(), AnyError> {
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if let Some(doc) = self.docs.get_mut(specifier) {
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doc.maybe_navigation_tree = Some(navigation_tree);
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Ok(())
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} else {
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Err(custom_error(
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"NotFound",
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format!(
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"The specifier (\"{}\") does not exist in the document cache.",
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specifier
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),
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))
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}
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}
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pub fn specifiers(&self) -> Vec<ModuleSpecifier> {
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self.docs.keys().cloned().collect()
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}
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pub fn version(&self, specifier: &ModuleSpecifier) -> Option<i32> {
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self.docs.get(specifier).and_then(|doc| doc.version)
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}
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use deno_core::resolve_url;
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use lspower::lsp;
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#[test]
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fn test_language_id() {
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assert_eq!(
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"javascript".parse::<LanguageId>().unwrap(),
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LanguageId::JavaScript
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);
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assert_eq!(
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"javascriptreact".parse::<LanguageId>().unwrap(),
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LanguageId::Jsx
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);
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assert_eq!("jsx".parse::<LanguageId>().unwrap(), LanguageId::Jsx);
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assert_eq!(
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"typescript".parse::<LanguageId>().unwrap(),
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LanguageId::TypeScript
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);
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assert_eq!(
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"typescriptreact".parse::<LanguageId>().unwrap(),
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LanguageId::Tsx
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);
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assert_eq!("tsx".parse::<LanguageId>().unwrap(), LanguageId::Tsx);
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assert_eq!("json".parse::<LanguageId>().unwrap(), LanguageId::Json);
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assert_eq!("jsonc".parse::<LanguageId>().unwrap(), LanguageId::JsonC);
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assert_eq!(
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"markdown".parse::<LanguageId>().unwrap(),
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LanguageId::Markdown
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);
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assert_eq!("rust".parse::<LanguageId>().unwrap(), LanguageId::Unknown);
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}
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|
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#[test]
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fn test_document_cache_contains() {
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let mut document_cache = DocumentCache::default();
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let specifier = resolve_url("file:///a/b.ts").unwrap();
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let missing_specifier = resolve_url("file:///a/c.ts").unwrap();
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document_cache.open(
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specifier.clone(),
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1,
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LanguageId::TypeScript,
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Arc::new("console.log(\"Hello Deno\");\n".to_string()),
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);
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assert!(document_cache.contains_key(&specifier));
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assert!(!document_cache.contains_key(&missing_specifier));
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}
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|
|
|
#[test]
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|
fn test_document_cache_change() {
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let mut document_cache = DocumentCache::default();
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let specifier = resolve_url("file:///a/b.ts").unwrap();
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document_cache.open(
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specifier.clone(),
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1,
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LanguageId::TypeScript,
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Arc::new("console.log(\"Hello deno\");\n".to_string()),
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);
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document_cache
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.change(
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&specifier,
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2,
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vec![lsp::TextDocumentContentChangeEvent {
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range: Some(lsp::Range {
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start: lsp::Position {
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line: 0,
|
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character: 19,
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},
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end: lsp::Position {
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line: 0,
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character: 20,
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},
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}),
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range_length: Some(1),
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text: "D".to_string(),
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}],
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)
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.expect("failed to make changes");
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let actual = document_cache
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.content(&specifier)
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.expect("failed to get content")
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.to_string();
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assert_eq!(actual, "console.log(\"Hello Deno\");\n");
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}
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|
|
|
#[test]
|
|
fn test_document_cache_change_utf16() {
|
|
let mut document_cache = DocumentCache::default();
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|
let specifier = resolve_url("file:///a/b.ts").unwrap();
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document_cache.open(
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specifier.clone(),
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1,
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LanguageId::TypeScript,
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Arc::new("console.log(\"Hello 🦕\");\n".to_string()),
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);
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document_cache
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.change(
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&specifier,
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2,
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vec![lsp::TextDocumentContentChangeEvent {
|
|
range: Some(lsp::Range {
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|
start: lsp::Position {
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line: 0,
|
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character: 19,
|
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},
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end: lsp::Position {
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line: 0,
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character: 21,
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},
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}),
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range_length: Some(2),
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text: "Deno".to_string(),
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}],
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)
|
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.expect("failed to make changes");
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let actual = document_cache
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.content(&specifier)
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.expect("failed to get content")
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.to_string();
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assert_eq!(actual, "console.log(\"Hello Deno\");\n");
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}
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|
|
#[test]
|
|
fn test_is_diagnosable() {
|
|
let mut document_cache = DocumentCache::default();
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let specifier = resolve_url("file:///a/file.ts").unwrap();
|
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assert!(!document_cache.is_diagnosable(&specifier));
|
|
document_cache.open(
|
|
specifier.clone(),
|
|
1,
|
|
"typescript".parse().unwrap(),
|
|
Arc::new("console.log(\"hello world\");\n".to_string()),
|
|
);
|
|
assert!(document_cache.is_diagnosable(&specifier));
|
|
let specifier = resolve_url("file:///a/file.rs").unwrap();
|
|
document_cache.open(
|
|
specifier.clone(),
|
|
1,
|
|
"rust".parse().unwrap(),
|
|
Arc::new("pub mod a;".to_string()),
|
|
);
|
|
assert!(!document_cache.is_diagnosable(&specifier));
|
|
let specifier =
|
|
resolve_url("asset:///lib.es2015.symbol.wellknown.d.ts").unwrap();
|
|
assert!(document_cache.is_diagnosable(&specifier));
|
|
let specifier = resolve_url("data:application/typescript;base64,ZXhwb3J0IGNvbnN0IGEgPSAiYSI7CgpleHBvcnQgZW51bSBBIHsKICBBLAogIEIsCiAgQywKfQo=").unwrap();
|
|
assert!(document_cache.is_diagnosable(&specifier));
|
|
let specifier = resolve_url("data:application/json;base64,ZXhwb3J0IGNvbnN0IGEgPSAiYSI7CgpleHBvcnQgZW51bSBBIHsKICBBLAogIEIsCiAgQywKfQo=").unwrap();
|
|
assert!(!document_cache.is_diagnosable(&specifier));
|
|
}
|
|
}
|