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helix/helix-view/src/document.rs

434 lines
13 KiB
Rust

use anyhow::Error;
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use std::future::Future;
use std::path::{Path, PathBuf};
use std::sync::Arc;
use helix_core::{
syntax::LOADER, ChangeSet, Diagnostic, History, Rope, Selection, State, Syntax, Transaction,
};
#[derive(Copy, Clone, PartialEq, Eq, Hash)]
pub enum Mode {
Normal,
Insert,
Goto,
}
pub struct Document {
pub state: State, // rope + selection
/// File path on disk.
path: Option<PathBuf>,
/// Current editing mode.
pub mode: Mode,
pub restore_cursor: bool,
/// Tree-sitter AST tree
pub syntax: Option<Syntax>,
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/// Corresponding language scope name. Usually `source.<lang>`.
language: Option<String>,
/// Pending changes since last history commit.
changes: ChangeSet,
/// State at last commit. Used for calculating reverts.
old_state: Option<State>,
/// Undo tree.
history: History,
/// Current document version, incremented at each change.
version: i32, // should be usize?
pub diagnostics: Vec<Diagnostic>,
pub language_server: Option<Arc<helix_lsp::Client>>,
}
/// Like std::mem::replace() except it allows the replacement value to be mapped from the
/// original value.
fn take_with<T, F>(mut_ref: &mut T, closure: F)
where
F: FnOnce(T) -> T,
{
use std::{panic, ptr};
unsafe {
let old_t = ptr::read(mut_ref);
let new_t = panic::catch_unwind(panic::AssertUnwindSafe(|| closure(old_t)))
.unwrap_or_else(|_| ::std::process::abort());
ptr::write(mut_ref, new_t);
}
}
use helix_lsp::lsp;
use url::Url;
impl Document {
pub fn new(state: State) -> Self {
let changes = ChangeSet::new(&state.doc);
let old_state = None;
Self {
path: None,
state,
mode: Mode::Normal,
restore_cursor: false,
syntax: None,
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language: None,
changes,
old_state,
diagnostics: Vec::new(),
version: 0,
history: History::default(),
language_server: None,
}
}
// TODO: passing scopes here is awkward
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// TODO: async fn?
pub fn load(path: PathBuf, scopes: &[String]) -> Result<Self, Error> {
use std::{env, fs::File, io::BufReader};
let _current_dir = env::current_dir()?;
let doc = Rope::from_reader(BufReader::new(File::open(path.clone())?))?;
// TODO: create if not found
let mut doc = Self::new(State::new(doc));
let language_config = LOADER.language_config_for_file_name(path.as_path());
doc.set_language(language_config, scopes);
// canonicalize path to absolute value
doc.path = Some(std::fs::canonicalize(path)?);
Ok(doc)
}
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// TODO: do we need some way of ensuring two save operations on the same doc can't run at once?
// or is that handled by the OS/async layer
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pub fn save(&self) -> impl Future<Output = Result<(), anyhow::Error>> {
// we clone and move text + path into the future so that we asynchronously save the current
// state without blocking any further edits.
let text = self.text().clone();
let path = self.path.clone().expect("Can't save with no path set!"); // TODO: handle no path
// TODO: mark changes up to now as saved
// TODO: mark dirty false
async move {
use smol::{fs::File, prelude::*};
let mut file = File::create(path).await?;
// write all the rope chunks to file
for chunk in text.chunks() {
file.write_all(chunk.as_bytes()).await?;
}
// TODO: flush?
Ok(())
} // and_then notify save
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}
pub fn set_language(
&mut self,
language_config: Option<Arc<helix_core::syntax::LanguageConfiguration>>,
scopes: &[String],
) {
if let Some(language_config) = language_config {
// TODO: maybe just keep an Arc<> pointer to the language_config?
self.language = Some(language_config.scope().to_string());
// TODO: this ties lsp support to tree-sitter enabled languages for now. Language
// config should use Option<HighlightConfig> to let us have non-tree-sitter configs.
let highlight_config = language_config
.highlight_config(scopes)
.expect("No highlight_config found!");
// TODO: config.configure(scopes) is now delayed, is that ok?
let syntax = Syntax::new(&self.state.doc, highlight_config);
self.syntax = Some(syntax);
} else {
self.syntax = None;
self.language = None;
};
}
pub fn set_language2(&mut self, scope: &str, scopes: &[String]) {
let language_config = LOADER.language_config_for_scope(scope);
self.set_language(language_config, scopes);
}
pub fn set_language_server(&mut self, language_server: Option<Arc<helix_lsp::Client>>) {
self.language_server = language_server;
}
pub fn set_selection(&mut self, selection: Selection) {
// TODO: use a transaction?
self.state.selection = selection;
}
pub fn _apply(&mut self, transaction: &Transaction) -> bool {
let old_doc = self.text().clone();
let success = transaction.apply(&mut self.state);
if !transaction.changes().is_empty() {
// TODO: self.version += 1;?
// update tree-sitter syntax tree
if let Some(syntax) = &mut self.syntax {
// TODO: no unwrap
syntax
.update(&old_doc, &self.state.doc, transaction.changes())
.unwrap();
}
// TODO: map state.diagnostics over changes::map_pos too
// emit lsp notification
if let Some(language_server) = &self.language_server {
let notify = language_server.text_document_did_change(
self.versioned_identifier(),
&old_doc,
self.text(),
transaction.changes(),
);
smol::block_on(notify).expect("failed to emit textDocument/didChange");
}
}
success
}
pub fn apply(&mut self, transaction: &Transaction) -> bool {
// store the state just before any changes are made. This allows us to undo to the
// state just before a transaction was applied.
if self.changes.is_empty() && !transaction.changes().is_empty() {
self.old_state = Some(self.state.clone());
}
let success = self._apply(&transaction);
if !transaction.changes().is_empty() {
// Compose this transaction with the previous one
take_with(&mut self.changes, |changes| {
changes.compose(transaction.changes().clone())
});
}
success
}
pub fn undo(&mut self) -> bool {
if let Some(transaction) = self.history.undo() {
self.version += 1;
let success = self._apply(&transaction);
// reset changeset to fix len
self.changes = ChangeSet::new(self.text());
return success;
}
false
}
pub fn redo(&mut self) -> bool {
if let Some(transaction) = self.history.redo() {
self.version += 1;
let success = self._apply(&transaction);
// reset changeset to fix len
self.changes = ChangeSet::new(self.text());
return success;
}
false
}
pub fn append_changes_to_history(&mut self) {
if self.changes.is_empty() {
return;
}
// TODO: change -> change -> undo -> change -> change fails, probably old_state needs reset
let new_changeset = ChangeSet::new(self.text());
let changes = std::mem::replace(&mut self.changes, new_changeset);
// Instead of doing this messy merge we could always commit, and based on transaction
// annotations either add a new layer or compose into the previous one.
let transaction = Transaction::from(changes).with_selection(self.selection().clone());
// increment document version
self.version += 1;
// HAXX: we need to reconstruct the state as it was before the changes..
let old_state = self.old_state.take().expect("no old_state available");
self.history.commit_revision(&transaction, &old_state);
}
#[inline]
pub fn mode(&self) -> Mode {
self.mode
}
#[inline]
/// Corresponding language scope name. Usually `source.<lang>`.
pub fn language(&self) -> Option<&str> {
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self.language.as_deref()
}
#[inline]
pub fn version(&self) -> i32 {
self.version
}
#[inline]
pub fn path(&self) -> Option<&PathBuf> {
self.path.as_ref()
}
pub fn url(&self) -> Option<Url> {
self.path().map(|path| Url::from_file_path(path).unwrap())
}
pub fn text(&self) -> &Rope {
&self.state.doc
}
pub fn selection(&self) -> &Selection {
&self.state.selection
}
pub fn relative_path(&self) -> Option<&Path> {
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let cwdir = std::env::current_dir().expect("couldn't determine current directory");
self.path
.as_ref()
.map(|path| path.strip_prefix(cwdir).unwrap_or(path))
}
// pub fn slice<R>(&self, range: R) -> RopeSlice where R: RangeBounds {
// self.state.doc.slice
// }
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// TODO: transact(Fn) ?
// -- LSP methods
pub fn identifier(&self) -> lsp::TextDocumentIdentifier {
lsp::TextDocumentIdentifier::new(self.url().unwrap())
}
pub fn versioned_identifier(&self) -> lsp::VersionedTextDocumentIdentifier {
lsp::VersionedTextDocumentIdentifier::new(self.url().unwrap(), self.version)
}
}
#[cfg(test)]
mod test {
use super::*;
#[test]
fn changeset_to_changes() {
use helix_core::{Rope, State, Transaction};
// use helix_view::Document;
use helix_lsp::{lsp, Client};
let text = Rope::from("hello");
let mut state = State::new(text);
state.selection = Selection::single(5, 5);
let mut doc = Document::new(state);
// insert
let transaction = Transaction::insert(&doc.state, " world".into());
let old_doc = doc.state.clone();
doc.apply(&transaction);
let changes = Client::changeset_to_changes(&old_doc.doc, doc.text(), transaction.changes());
assert_eq!(
changes,
&[lsp::TextDocumentContentChangeEvent {
range: Some(lsp::Range::new(
lsp::Position::new(0, 5),
lsp::Position::new(0, 5)
)),
text: " world".into(),
range_length: None,
}]
);
// delete
let transaction = transaction.invert(&old_doc);
let old_doc = doc.state.clone();
doc.apply(&transaction);
let changes = Client::changeset_to_changes(&old_doc.doc, doc.text(), transaction.changes());
// line: 0-based.
// col: 0-based, gaps between chars.
// 0 1 2 3 4 5 6 7 8 9 0 1
// |h|e|l|l|o| |w|o|r|l|d|
// -------------
// (0, 5)-(0, 11)
assert_eq!(
changes,
&[lsp::TextDocumentContentChangeEvent {
range: Some(lsp::Range::new(
lsp::Position::new(0, 5),
lsp::Position::new(0, 11)
)),
text: "".into(),
range_length: None,
}]
);
// replace
// also tests that changes are layered, positions depend on previous changes.
doc.state.selection = Selection::single(0, 5);
let transaction = Transaction::change(
&doc.state,
vec![(0, 2, Some("aei".into())), (3, 5, Some("ou".into()))].into_iter(),
);
// aeilou
doc.apply(&transaction);
let changes =
Client::changeset_to_changes(&doc.state.doc, doc.text(), transaction.changes());
assert_eq!(
changes,
&[
// 0 1 2 3 4 5
// |h|e|l|l|o|
// ----
//
// aeillo
lsp::TextDocumentContentChangeEvent {
range: Some(lsp::Range::new(
lsp::Position::new(0, 0),
lsp::Position::new(0, 2)
)),
text: "aei".into(),
range_length: None,
},
// 0 1 2 3 4 5 6
// |a|e|i|l|l|o|
// -----
//
// aeilou
lsp::TextDocumentContentChangeEvent {
range: Some(lsp::Range::new(
lsp::Position::new(0, 4),
lsp::Position::new(0, 6)
)),
text: "ou".into(),
range_length: None,
}
]
);
}
}