Fix: normalize buffer paths to absolute before they become identity
A buffer opened by a relative or `~`-prefixed path (e.g. `pmacs ipc.cpp` from within the project) kept that literal string as its file_path. The LSP layer turns file_path into a `file://` URI by straight prefixing, so `ipc.cpp` became `file://ipc.cpp` — host `ipc.cpp`, empty path — which clangd rejects with `-32602 unresolvable URI at (root).textDocument.uri`, breaking every request for the buffer. Normalize at the single chokepoint EditorCore::set_buffer_path (CLI open, Lua find-file, WorkspaceEdit rename ops all flow through it): expand a leading `~`/`~/…` against $HOME, join onto cwd if relative, then fold `.`/`..` lexically. No fs access / no symlink resolution, so a not-yet-created "[new file]" buffer and already-absolute tempdir paths are unchanged (acceptance tests' exact-path asserts still hold). Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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@ -333,7 +333,18 @@ impl EditorCore {
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/// Bind a path (and clear metadata) on a specific buffer. Used by
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/// Bind a path (and clear metadata) on a specific buffer. Used by
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/// file open / `pmacs.buffer.from_file`.
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/// file open / `pmacs.buffer.from_file`.
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///
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/// The path is normalized to an absolute, lexically-clean form
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/// first ([`normalize_buffer_path`]). This is the single seam
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/// every buffer identity flows through (CLI open, Lua find-file,
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/// `WorkspaceEdit` rename ops), so doing it here keeps the invariant
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/// "a buffer's `file_path` is always absolute" — which the LSP
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/// layer relies on to build a resolvable `file:///…` URI (a
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/// relative or `~`-prefixed path produced `file://ipc.cpp`, which
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/// clangd rejected with `-32602 unresolvable URI`) and which
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/// cross-file navigation relies on for buffer-identity matching.
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pub fn set_buffer_path(&mut self, id: BufferId, path: Option<PathBuf>) {
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pub fn set_buffer_path(&mut self, id: BufferId, path: Option<PathBuf>) {
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let path = path.map(normalize_buffer_path);
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if let Ok(b) = self.registry.borrow_mut().get_mut(id) {
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if let Ok(b) = self.registry.borrow_mut().get_mut(id) {
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b.set_file_path(path);
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b.set_file_path(path);
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}
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}
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@ -1479,6 +1490,79 @@ fn backward_word(buf: &Buffer, mut pos: Position) -> Position {
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pos
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pos
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}
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}
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/// Normalize a buffer path to an absolute, lexically-clean form:
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///
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/// 1. expand a leading `~` / `~/…` against `$HOME`,
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/// 2. join onto the process cwd if still relative,
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/// 3. fold `.` / `..` purely lexically.
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///
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/// No filesystem access and no symlink resolution (unlike
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/// [`std::fs::canonicalize`]): the result is correct for a
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/// not-yet-created "[new file]" buffer and never silently rewrites a
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/// path's on-disk identity. Every step is best-effort — if `$HOME`
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/// or the cwd is unavailable the path is returned as far as it could
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/// be resolved rather than panicking.
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fn normalize_buffer_path(path: PathBuf) -> PathBuf {
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let path = expand_tilde(path);
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let abs = if path.is_absolute() {
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path
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} else if let Ok(cwd) = std::env::current_dir() {
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cwd.join(path)
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} else {
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path
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};
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lexical_normalize(&abs)
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}
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/// Expand a leading `~` (whole component only) using `$HOME`. A bare
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/// `~` becomes `$HOME`; `~/x` becomes `$HOME/x`. `~user` is left
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/// untouched (no passwd lookup). Returns the input unchanged if it
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/// has no leading `~`, isn't valid UTF-8, or `$HOME` is unset.
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fn expand_tilde(path: PathBuf) -> PathBuf {
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let Some(s) = path.to_str() else {
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return path;
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};
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if s == "~" {
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return std::env::var_os("HOME").map_or(path, PathBuf::from);
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}
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if let Some(rest) = s.strip_prefix("~/")
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&& let Some(home) = std::env::var_os("HOME")
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{
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return Path::new(&home).join(rest);
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}
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path
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}
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/// Fold `.` and `..` components without touching the filesystem.
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/// `..` pops a preceding normal segment; against the root (or a
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/// Windows prefix) it is dropped, since you cannot ascend past it.
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fn lexical_normalize(path: &Path) -> PathBuf {
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use std::path::Component;
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let mut stack: Vec<Component> = Vec::new();
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for comp in path.components() {
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match comp {
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Component::CurDir => {}
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Component::ParentDir => match stack.last() {
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Some(Component::Normal(_)) => {
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stack.pop();
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}
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Some(Component::RootDir | Component::Prefix(_)) => {}
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_ => stack.push(Component::ParentDir),
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},
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c => stack.push(c),
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}
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}
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let mut out = PathBuf::new();
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for c in stack {
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out.push(c.as_os_str());
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}
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if out.as_os_str().is_empty() {
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PathBuf::from(".")
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} else {
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out
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}
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}
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// ---------------------------------------------------------------------------
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// ---------------------------------------------------------------------------
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// Tests
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// Tests
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// ---------------------------------------------------------------------------
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// ---------------------------------------------------------------------------
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@ -1489,6 +1573,54 @@ mod tests {
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use std::cell::RefCell;
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use std::cell::RefCell;
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use std::rc::Rc;
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use std::rc::Rc;
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#[test]
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fn lexical_normalize_folds_dot_and_dotdot() {
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assert_eq!(
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lexical_normalize(Path::new("/a/./b/../c")),
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PathBuf::from("/a/c")
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);
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// `..` cannot ascend past the root.
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assert_eq!(
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lexical_normalize(Path::new("/../../x")),
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PathBuf::from("/x")
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);
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// Already clean ⇒ unchanged (keeps tempdir paths stable so
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// the LSP acceptance tests' exact-path asserts still hold).
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assert_eq!(
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lexical_normalize(Path::new("/tmp/quickshell/ipc.cpp")),
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PathBuf::from("/tmp/quickshell/ipc.cpp")
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);
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}
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#[test]
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fn expand_tilde_only_at_leading_component() {
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// `~user` (no passwd lookup) and a non-leading `~` are left
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// exactly as-is, independent of `$HOME`.
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assert_eq!(
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expand_tilde(PathBuf::from("~bob/x")),
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PathBuf::from("~bob/x")
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);
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assert_eq!(expand_tilde(PathBuf::from("a/~/b")), PathBuf::from("a/~/b"));
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// With `$HOME` set (the case in any normal test environment)
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// a leading `~` / `~/…` expands against its real value.
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if let Some(home) = std::env::var_os("HOME") {
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assert_eq!(expand_tilde(PathBuf::from("~")), PathBuf::from(&home));
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assert_eq!(
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expand_tilde(PathBuf::from("~/src/ipc.cpp")),
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Path::new(&home).join("src/ipc.cpp")
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);
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}
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}
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#[test]
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fn normalize_buffer_path_yields_absolute() {
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// A relative path becomes absolute (joined onto cwd) — this
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// is exactly what made clangd reject `file://ipc.cpp`.
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let p = normalize_buffer_path(PathBuf::from("ipc.cpp"));
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assert!(p.is_absolute(), "expected absolute, got {p:?}");
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assert!(p.ends_with("ipc.cpp"));
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}
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fn fresh() -> EditorCore {
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fn fresh() -> EditorCore {
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let reg: SharedRegistry =
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let reg: SharedRegistry =
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Rc::new(RefCell::new(crate::buffer_registry::BufferRegistry::new()));
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Rc::new(RefCell::new(crate::buffer_registry::BufferRegistry::new()));
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