pmacs/src/rename.rs

465 lines
15 KiB
Rust

// rename.rs --- T M4.5 LSP-backed rename / WorkspaceEdit state.
//! `textDocument/rename` (and any other) `WorkspaceEdit` state.
//!
//! A `WorkspaceEdit` may touch many files and, via `documentChanges`,
//! interleave text edits with filesystem *resource operations*
//! (create / rename / delete file). This module parses both carriers —
//!
//! * `changes`: `{ uri: TextEdit[] }`
//! * `documentChanges`: `(TextDocumentEdit | CreateFile |
//! RenameFile | DeleteFile)[]`
//!
//! — into a single **ordered** [`WorkspaceOp`] list
//! ([`WorkspaceEditResponse::ops`]). Order is preserved exactly as the
//! server sent it, because the spec requires sequential application
//! (e.g. a `CreateFile` must precede the `TextDocumentEdit` that fills
//! the new file). The `changes` map, which carries no resource ops and
//! no inherent order, is emitted as URI-sorted edit ops for
//! determinism.
//!
//! The [`crate::formatting::TextEdit`] shape is reused verbatim (same
//! zero-based, UTF-16-column coordinates). As with
//! [`crate::formatting`], nothing here mutates the editor or the disk:
//! Lua reads the ordered ops and drives `pmacs.buffer.*` /
//! `pmacs.editor.*` (text edits) and `pmacs.buffer.apply_resource_op`
//! (filesystem ops) so the application strategy stays configurable.
use std::collections::HashMap;
use std::sync::{Arc, Mutex};
use serde_json::Value;
use crate::formatting::TextEdit;
/// Edits the server wants applied to one document.
#[derive(Clone, Debug, Eq, PartialEq)]
pub struct FileEdits {
/// Target document URI.
pub uri: String,
/// Edits for this document, in server order. Callers apply in
/// reverse-start order so earlier offsets stay valid.
pub edits: Vec<TextEdit>,
}
/// One entry of a `WorkspaceEdit`, in server-sent order.
#[derive(Clone, Debug, Eq, PartialEq)]
pub enum WorkspaceOp {
/// Text edits for a single document.
Edit(FileEdits),
/// `CreateFile`. `overwrite` wins over `ignore_if_exists`.
Create {
/// URI to create.
uri: String,
/// Truncate if it already exists.
overwrite: bool,
/// No-op if it already exists (loses to `overwrite`).
ignore_if_exists: bool,
},
/// `RenameFile`.
Rename {
/// Existing URI.
old_uri: String,
/// Destination URI.
new_uri: String,
/// Overwrite the destination if it exists.
overwrite: bool,
/// No-op if the destination exists (loses to `overwrite`).
ignore_if_exists: bool,
},
/// `DeleteFile`.
Delete {
/// URI to delete.
uri: String,
/// Recurse into a directory.
recursive: bool,
/// Not an error if it is already gone.
ignore_if_not_exists: bool,
},
}
/// A parsed `WorkspaceEdit`: an ordered list of operations.
#[derive(Clone, Debug, Default)]
pub struct WorkspaceEditResponse {
/// Operations in server-sent order.
pub ops: Vec<WorkspaceOp>,
}
impl WorkspaceEditResponse {
/// Parse `WorkspaceEdit | null`.
///
/// Per the LSP spec `documentChanges` supersedes `changes` when
/// both are present, so it is preferred. A `null` / shapeless
/// result yields an empty response.
#[must_use]
pub fn from_lsp_value(v: &Value) -> Self {
if let Some(dc) = v.get("documentChanges").and_then(Value::as_array) {
return Self {
ops: dc.iter().filter_map(parse_document_change).collect(),
};
}
if let Some(changes) = v.get("changes").and_then(Value::as_object) {
let mut edits: Vec<FileEdits> = changes
.iter()
.map(|(uri, e)| FileEdits {
uri: uri.clone(),
edits: parse_edit_array(e),
})
.collect();
// `changes` has no inherent order; sort by URI so the
// applier (and tests) see a deterministic sequence.
edits.sort_by(|a, b| a.uri.cmp(&b.uri));
return Self {
ops: edits.into_iter().map(WorkspaceOp::Edit).collect(),
};
}
Self::default()
}
/// True iff there is nothing to do — no ops, or only empty text
/// edits. Any resource op makes this `false` (the edit is
/// meaningful even with zero text changes).
#[must_use]
pub fn is_empty(&self) -> bool {
self.ops
.iter()
.all(|op| matches!(op, WorkspaceOp::Edit(f) if f.edits.is_empty()))
}
/// Total text edits across every edit op.
#[must_use]
pub fn edit_count(&self) -> usize {
self.ops
.iter()
.map(|op| match op {
WorkspaceOp::Edit(f) => f.edits.len(),
_ => 0,
})
.sum()
}
/// Number of filesystem resource ops (create/rename/delete).
#[must_use]
pub fn resource_op_count(&self) -> usize {
self.ops
.iter()
.filter(|op| !matches!(op, WorkspaceOp::Edit(_)))
.count()
}
/// The edit ops only, in order — the back-compat view for callers
/// that just want per-file text edits.
#[must_use]
pub fn files(&self) -> Vec<&FileEdits> {
self.ops
.iter()
.filter_map(|op| match op {
WorkspaceOp::Edit(f) => Some(f),
_ => None,
})
.collect()
}
}
fn parse_document_change(entry: &Value) -> Option<WorkspaceOp> {
// A resource op is tagged with a string `kind`; a
// TextDocumentEdit has `textDocument` + `edits` and no `kind`.
match entry.get("kind").and_then(Value::as_str) {
Some("create") => Some(WorkspaceOp::Create {
uri: entry.get("uri")?.as_str()?.to_owned(),
overwrite: opt_bool(entry, "overwrite"),
ignore_if_exists: opt_bool(entry, "ignoreIfExists"),
}),
Some("rename") => Some(WorkspaceOp::Rename {
old_uri: entry.get("oldUri")?.as_str()?.to_owned(),
new_uri: entry.get("newUri")?.as_str()?.to_owned(),
overwrite: opt_bool(entry, "overwrite"),
ignore_if_exists: opt_bool(entry, "ignoreIfExists"),
}),
Some("delete") => Some(WorkspaceOp::Delete {
uri: entry.get("uri")?.as_str()?.to_owned(),
recursive: opt_bool(entry, "recursive"),
ignore_if_not_exists: opt_bool(entry, "ignoreIfNotExists"),
}),
// Unknown future resource kind — skip rather than misapply.
Some(_) => None,
None => {
let uri = entry.get("textDocument")?.get("uri")?.as_str()?.to_owned();
let edits = entry.get("edits").map(parse_edit_array).unwrap_or_default();
Some(WorkspaceOp::Edit(FileEdits { uri, edits }))
}
}
}
fn opt_bool(entry: &Value, key: &str) -> bool {
entry
.get("options")
.and_then(|o| o.get(key))
.and_then(Value::as_bool)
.unwrap_or(false)
}
/// Parse a `(TextEdit | AnnotatedTextEdit)[]` value into edits,
/// dropping malformed entries. `AnnotatedTextEdit` is a `TextEdit`
/// with an extra `annotationId`; the range/newText parse identically.
fn parse_edit_array(v: &Value) -> Vec<TextEdit> {
let Some(arr) = v.as_array() else {
return Vec::new();
};
let mut out = Vec::with_capacity(arr.len());
for item in arr {
if let Some(e) = parse_text_edit(item) {
out.push(e);
}
}
out
}
fn parse_text_edit(v: &Value) -> Option<TextEdit> {
let range = v.get("range")?;
let start = range.get("start")?;
let end = range.get("end")?;
let new_text = v.get("newText")?.as_str()?.to_owned();
Some(TextEdit {
start_line: start.get("line")?.as_u64()? as u32,
start_col: start.get("character")?.as_u64()? as u32,
end_line: end.get("line")?.as_u64()? as u32,
end_col: end.get("character")?.as_u64()? as u32,
new_text,
})
}
/// Per-server, per-origin-uri rename response state. The key URI is
/// the document the rename was *requested* on (the symbol's home
/// file), not the files the edit happens to touch.
#[derive(Default)]
pub struct RenameStore {
by_key: HashMap<RenameKey, WorkspaceEditResponse>,
}
/// Key into [`RenameStore`].
#[derive(Clone, Eq, PartialEq, Hash, Debug)]
pub struct RenameKey {
/// Decimal LSP server id.
pub server: String,
/// The URI the rename was requested on.
pub uri: String,
}
impl RenameKey {
/// Construct a key.
#[must_use]
pub fn new(server: impl Into<String>, uri: impl Into<String>) -> Self {
Self {
server: server.into(),
uri: uri.into(),
}
}
}
impl RenameStore {
/// Empty store.
#[must_use]
pub fn new() -> Self {
Self::default()
}
/// Replace the response at `key`.
pub fn set(&mut self, key: RenameKey, response: WorkspaceEditResponse) {
self.by_key.insert(key, response);
}
/// Drop the entry at `key`.
pub fn clear(&mut self, key: &RenameKey) {
self.by_key.remove(key);
}
/// Look up the entry at `key`.
#[must_use]
pub fn get(&self, key: &RenameKey) -> Option<&WorkspaceEditResponse> {
self.by_key.get(key)
}
}
/// Cheaply-cloneable shared handle.
pub type SharedRenameStore = Arc<Mutex<RenameStore>>;
/// Build a fresh shared store.
#[must_use]
pub fn make_shared_store() -> SharedRenameStore {
Arc::new(Mutex::new(RenameStore::new()))
}
#[cfg(test)]
mod tests {
use super::*;
use serde_json::json;
fn one_edit(new_text: &str) -> Value {
json!({
"range": {
"start": { "line": 0, "character": 3 },
"end": { "line": 0, "character": 6 }
},
"newText": new_text
})
}
#[test]
fn parses_changes_map_sorted_by_uri() {
let v = json!({
"changes": {
"file:///b.rs": [one_edit("Y")],
"file:///a.rs": [one_edit("X"), one_edit("Z")]
}
});
let r = WorkspaceEditResponse::from_lsp_value(&v);
let files = r.files();
assert_eq!(files.len(), 2);
assert_eq!(files[0].uri, "file:///a.rs");
assert_eq!(files[0].edits.len(), 2);
assert_eq!(files[1].uri, "file:///b.rs");
assert_eq!(r.edit_count(), 3);
assert_eq!(r.resource_op_count(), 0);
}
#[test]
fn document_changes_preserves_order_with_resource_ops() {
let v = json!({
"changes": { "file:///ignored.rs": [one_edit("NO")] },
"documentChanges": [
{ "kind": "create", "uri": "file:///new.rs",
"options": { "ignoreIfExists": true } },
{ "textDocument": { "uri": "file:///new.rs", "version": 1 },
"edits": [one_edit("A")] },
{ "kind": "rename", "oldUri": "file:///a.rs",
"newUri": "file:///c.rs", "options": { "overwrite": true } },
{ "kind": "delete", "uri": "file:///d.rs",
"options": { "recursive": true, "ignoreIfNotExists": true } }
]
});
let r = WorkspaceEditResponse::from_lsp_value(&v);
assert_eq!(r.ops.len(), 4);
assert_eq!(r.resource_op_count(), 3);
assert_eq!(r.edit_count(), 1);
match &r.ops[0] {
WorkspaceOp::Create {
uri,
overwrite,
ignore_if_exists,
} => {
assert_eq!(uri, "file:///new.rs");
assert!(!overwrite);
assert!(ignore_if_exists);
}
other => panic!("expected Create, got {other:?}"),
}
match &r.ops[1] {
WorkspaceOp::Edit(f) => assert_eq!(f.uri, "file:///new.rs"),
other => panic!("expected Edit, got {other:?}"),
}
match &r.ops[2] {
WorkspaceOp::Rename {
old_uri,
new_uri,
overwrite,
..
} => {
assert_eq!(old_uri, "file:///a.rs");
assert_eq!(new_uri, "file:///c.rs");
assert!(overwrite);
}
other => panic!("expected Rename, got {other:?}"),
}
match &r.ops[3] {
WorkspaceOp::Delete {
uri,
recursive,
ignore_if_not_exists,
} => {
assert_eq!(uri, "file:///d.rs");
assert!(recursive);
assert!(ignore_if_not_exists);
}
other => panic!("expected Delete, got {other:?}"),
}
}
#[test]
fn unknown_resource_kind_is_skipped() {
let v = json!({
"documentChanges": [
{ "kind": "teleport", "uri": "file:///x" },
{ "textDocument": { "uri": "file:///a.rs", "version": 1 },
"edits": [one_edit("A")] }
]
});
let r = WorkspaceEditResponse::from_lsp_value(&v);
assert_eq!(r.ops.len(), 1);
assert_eq!(r.edit_count(), 1);
}
#[test]
fn null_response_is_empty() {
let r = WorkspaceEditResponse::from_lsp_value(&Value::Null);
assert!(r.is_empty());
assert_eq!(r.edit_count(), 0);
}
#[test]
fn resource_only_edit_is_not_empty() {
let v = json!({ "documentChanges": [
{ "kind": "delete", "uri": "file:///gone.rs" }
]});
let r = WorkspaceEditResponse::from_lsp_value(&v);
assert!(!r.is_empty());
assert_eq!(r.edit_count(), 0);
assert_eq!(r.resource_op_count(), 1);
}
#[test]
fn annotated_text_edit_parses_like_plain() {
let v = json!({
"documentChanges": [{
"textDocument": { "uri": "file:///a.rs", "version": 1 },
"edits": [{
"range": {
"start": { "line": 2, "character": 0 },
"end": { "line": 2, "character": 4 }
},
"newText": "Q",
"annotationId": "ann1"
}]
}]
});
let r = WorkspaceEditResponse::from_lsp_value(&v);
let f = r.files();
assert_eq!(f[0].edits[0].new_text, "Q");
assert_eq!(f[0].edits[0].start_line, 2);
}
#[test]
fn store_set_get_clear() {
let mut s = RenameStore::new();
let key = RenameKey::new("1", "file:///a");
s.set(
key.clone(),
WorkspaceEditResponse {
ops: vec![WorkspaceOp::Edit(FileEdits {
uri: "file:///a".into(),
edits: vec![TextEdit {
start_line: 0,
start_col: 0,
end_line: 0,
end_col: 1,
new_text: "x".into(),
}],
})],
},
);
assert_eq!(s.get(&key).unwrap().files().len(), 1);
s.clear(&key);
assert!(s.get(&key).is_none());
}
}