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Levi Neuwirth 5180a627d1 T M4.5: derive LSP rootUri from the opened file's project (real-server hardening)
The default-bundle auto-attach path (lsp.lua ensure_server) never
forwarded cwd/root_uri to pmacs.lsp.spawn, so build_initialize fell
back to std::env::current_dir() — every auto-attached server received
the *editor's* cwd as rootUri regardless of which project the opened
file belonged to. Module-strict servers (gopls, rust-analyzer) return
nothing unless launched from the project dir; the fake-LSP and clangd
(which finds compile_flags near the file) masked this, gopls exposes
it. Same shape as the #26 transport bugs: lenient fakes hid a gap
strict real servers fall straight into.

Fix: project_root_for(language, path) in lsp.lua —
config[lang].root override -> pmacs.project.detect marker walk (the
canonical detector, honors set_search_boundary) -> the file's own
directory. attach_buffer resolves the path before ensure_server;
spawn now carries cwd/root_uri. Single-root only (fixes which root
the one per-language server uses); one-server-per-root multi-root
scoping stays deferred post-v0.1 (documented: first file of a
language fixes that server's root). New documented
pmacs.lsp.config[lang].root key.

Tests:
- m4_26: deterministic — new fake "rooturi" mode +
  PMACS_FAKE_LSP_ROOT_SINK side-channel; asserts the rootUri sent
  through a real find_or_open auto-attach is the go.mod dir, not the
  cwd, not the file's own dir.
- m4_27: PATH-gated real gopls — documentSymbol + hover round-trip is
  end-to-end proof of the fix against a real strict server.
- m4_28: PATH-gated real clangd — diagnostics arriving is the #26
  deferred-notification-flush + URI-absolutization regression guard;
  also exercises semantic tokens + documentSymbol.

No other latent bugs surfaced; gopls & clangd both clean through the
fixed path. rust-analyzer / basedpyright not installed here, so their
real end-to-end validation is still pending (the fix benefits them
identically — Cargo.toml / pyproject.toml are detect markers).

Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
2026-05-19 15:56:13 -04:00
.github/workflows CI fixes v3 2026-05-18 13:23:18 -04:00
audit V0.2-prerequisite pull-forward + M10.11 clean audit round 2026-05-18 10:31:31 -04:00
builtin T M4.5: derive LSP rootUri from the opened file's project (real-server hardening) 2026-05-19 15:56:13 -04:00
docs docs: land the semantic-frontend-protocol design note 2026-05-18 21:26:21 -04:00
proptest-regressions M10.10 ship gate 2026-05-13 16:28:46 -04:00
src T M4.5: derive LSP rootUri from the opened file's project (real-server hardening) 2026-05-19 15:56:13 -04:00
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Cargo.lock v1.0.0 release prep: CHANGELOG, version bump, README, MSRV 2026-05-18 13:55:27 -04:00
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LICENSE-APACHE Initial commit: v0.1.0 2026-05-03 19:51:06 -04:00
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README.md

Pmacs

Parallel Emacs --- a Rust-cored, Lua-scripted editor in the Emacs tradition.

Pmacs runs the editor's hot path (rope, buffers, views, async runtime, process supervision) in Rust, and exposes the rest --- commands, keymaps, hooks, packages --- through an embedded Lua VM. The design follows Emacs in shape (configurable, introspectable, programmable from inside) but discards the single-threaded substrate; workers, message bus, and a coroutine-based async surface are core primitives, not bolt-ons.

The editor is partitioned into a long-lived instance (the daemon that owns buffers, processes, and language services) and a thin frontend that attaches over a typed protocol. Frontends can run locally over a Unix socket or remotely over SSH; reconnect-on-drop modeled on mosh keeps remote sessions alive across laptop suspends.

The first-class package is a REPL package written entirely against the public Lua API: PTY-spawned shells (bash, zsh, fish, lua), an ECMA-48 ANSI parser, multi-REPL coexistence, and scrollback management with line/byte retention. Successful completion of an audit verifying the package uses zero direct Rust core access was the v0.1 ship gate.

Status

v1.0.0 --- stable. The design described above is implemented and working. Solo development carried the project to 1.0; public contributions are open from this release. Use, evaluate, file issues, and send pull requests.

Build

Builds on the toolchain pinned in rust-toolchain.toml (Rust 1.95.0, edition 2024); rustup selects it automatically. Lua flavor selectable between luajit (default) and lua54; both pass the full test suite.

cargo build --release             # produce target/release/pmacs
cargo run --release -- <file>     # build and run on a file
cargo test                        # unit + integration tests
cargo fmt --check
cargo clippy --all-targets -- -D warnings

Release-only perf gates (M5 keystroke-to-render, M6 ingest/RSS/cancel and scrollback navigation/search) are #[ignore]'d during normal test runs and exercised in CI under dedicated jobs.

Runtime requirements

The pmacs binary depends on a small set of POSIX command-line tools at runtime. The dependency exists because the project enforces #![forbid(unsafe_code)] everywhere, including in tests; calls that would otherwise need unsafe (PTY raw-mode setup, signal name translation) are routed through trampolines that exec these tools.

  • /bin/sh (POSIX shell). Used for the PTY raw-mode trampoline: /bin/sh -c 'stty raw -echo </dev/tty 2>/dev/null; exec "$@"' -- configures the controlling TTY's line discipline before exec'ing the actual subprocess. Required by the REPL package and any other caller that spawns a process in raw PTY mode.
  • stty (coreutils). The line-discipline configurator invoked by the trampoline above.
  • coreutils more broadly. The M6 process-supervisor tests spawn cat, yes, and which; absent these the test suite (not the editor itself) degrades. which is also used by the M6.5 shell-locator helper to find bash / zsh / fish for per-shell integration tests. The M7.2 fetcher's timeout test uses sleep.
  • git (added in M7.2). Required for any package operation: the package fetcher shells out to git to clone, fetch, and resolve refs, with a deterministic environment (GIT_TERMINAL_PROMPT=0, GIT_CONFIG_NOSYSTEM=1, LC_ALL=C, inherited GIT_* variables stripped). Authentication for private repositories rides the user's existing git configuration (credential helpers, SSH agent), so packagers do not need a separate auth story. Pre-M7 builds without package operations do not need git.
  • tar (added in M7.3). Required for pmacs.packages.install: the installer materializes a snapshot via git archive --format=tar piped into tar -x -C <dest>, which keeps the on-disk install directory self-contained (no .git linkage back to the bare cache, no working-tree state). GNU tar and bsdtar both work. Pre-M7 builds and any path that doesn't call pmacs.packages.install{...} do not need tar.

Distribution packagers should ensure these are runtime dependencies of the pmacs package. On a typical Linux distribution, busybox or GNU coreutils plus a shell of any kind satisfies the requirement; on macOS the system shell and /usr/bin/stty are both standard.

The Lua VM (LuaJIT or Lua 5.4) is statically vendored via mlua's vendored feature, so there is no external Lua dependency at runtime.

What v0.1 ships with

  • Editor core. Persistent rope with O(log N) edits and snapshots; buffers with chained intercept-views; undo/redo; atomic file I/O; crossterm-driven TUI.
  • Lua surface. Embedded LuaJIT (or Lua 5.4) with pmacs.command, pmacs.keymap (global / mode / buffer scopes), pmacs.hook (typed kinds: all-must-succeed, first-non-nil, last-write-wins), pmacs.buffer, pmacs.window, pmacs.editor. Minibuffer is itself a buffer. describe-key and describe-command for self-introspection.
  • Async runtime. Worker pool + message bus + coroutine-based Lua async surface (pmacs.async). Cancellation is provably correct under load.
  • Language services. Tree-sitter highlighting and LSP integration ride the worker/message infrastructure. Project indexing as a third service. Symbol search across 1M+ symbols completes under a second.
  • Frontend partition. Daemon mode with local Unix-socket transport; cell-delta diffing on the instance side; SSH transport variant for remote attach; reconnect-on-drop preserves session state across laptop suspend / network drop.
  • REPL package. A 691-line Lua package that wires the M6 ANSI parser to PTY-spawned shells with raw-mode line discipline. Three- region buffer (history / prompt / input) with read-only enforcement; RET / C-c / C-d bindings; multi-REPL coexistence; scrollback retention with line- and byte-bounded truncation. Published alongside an audit verifying zero direct Rust core access.

Layout

src/                 Rust core
  rope.rs              persistent byte-sequence backing every buffer
  buffer.rs            buffer + view chain + undo/redo
  editor_core.rs       cursor + commands + edit dispatch
  async_runtime.rs     worker pool + message bus
  process.rs           PTY-aware process supervisor
  ansi.rs              ECMA-48 parser
  daemon.rs            instance side of the frontend partition
  attach.rs            frontend side; protocol + reconnect
  lsp.rs               language-server client
  syntax.rs            tree-sitter integration
  project_index.rs     symbol / file indexing
  text_view.rs         cell-grid renderer
  frontend.rs          crossterm TUI
  lua_bindings.rs      pmacs.* Lua surface installers
  main.rs              entry point (TUI + daemon modes)

builtin/             Lua runtime shipped with the binary
  commands/default.lua  named commands for every editor primitive
  keymaps/default.lua   default key bindings
  hooks/default.lua     built-in hook definitions
  runtime/              packages (async, lsp, repl, syntax)

tests/               integration tests (acceptance gates per milestone)

License

Dual-licensed under either of:

at your option.