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Levi Neuwirth 5c5caa9482 fix(panels): follow active buffer on semantic frontends; re-attach overlays on switch
Two PR #94 validation findings.

1. (High, blocking) GPU stuck after leaving a panel: the GPU only
   swaps its displayed buffer on BufferSnapshot, and the daemon only
   sent one on the first CRDT upgrade (F29's ensure returns None for
   an already-backed buffer). A panel's q / RET switched the daemon's
   active buffer back to the already-known source and sent nothing --
   the GPU kept rendering the panel while input targeted the source: a
   typing-into-a-buffer-you-can't-see hazard. Fix: the per-tick loop
   now FOLLOWS each replica frontend's own active buffer -- when it
   differs from the last snapshot sent to that frontend, ship that
   buffer's snapshot to that frontend only (the F29 broadcast records
   itself so the upgrade tick doesn't double-send). First-tick send
   also repairs the attach-time last-snapshot-wins ambiguity. Snapshot
   export extracted and shared with the F29 broadcast; per-fid state
   cleaned on both detach paths.

2. (High, wider than reported) 'LSP doesn't activate on navigate':
   switch_active_buffer clears the window's overlays, and the runtime
   dedup tables (highlighted_buffers, styled_buffers,
   diag_viewed_buffers) blocked re-attachment -- so EVERY buffer
   switch (plain C-x b included, long-latent) permanently stripped
   syntax color, LSP semantic style, and diagnostic underlines;
   verified: overlay kinds [syntax-highlight, lsp-style, diagnostic]
   -> [] after one away-and-back. Fix: a new additive
   buffer.after-switch hook, fired by the window.switch_buffer binding
   and find_or_open's existing-buffer branch; syntax.lua and lsp.lua
   subscribe and re-push their views (the just-cleared window makes
   that exactly-once per switch; fresh loads keep firing after-load).

Regression: tests/overlay_reattach_acceptance.rs (double round-trip
counts exactly one highlight overlay; panel q restores styling).
The daemon follow path is validated live (daemon + GPU) -- its unit
seam is the shared export helper.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-07 20:46:50 -04:00
.github/workflows fix(gpu): F-004 AltGr strip → Ctrl+Alt only; run pmacs-protocol tests in CI 2026-07-03 14:38:19 -04:00
audit V0.2-prerequisite pull-forward + M10.11 clean audit round 2026-05-18 10:31:31 -04:00
builtin fix(panels): follow active buffer on semantic frontends; re-attach overlays on switch 2026-07-07 20:46:50 -04:00
docs docs: LSP panels framing (Arc 1b) 2026-07-07 20:08:43 -04:00
pmacs-gpu fix(completion): buffer-scope the GPU popup mirror; clear status on optimistic edits 2026-07-07 18:08:41 -04:00
pmacs-protocol feat(status): ship the transient status message to semantic frontends 2026-07-07 17:36:02 -04:00
proptest-regressions M10.10 ship gate 2026-05-13 16:28:46 -04:00
src fix(panels): follow active buffer on semantic frontends; re-attach overlays on switch 2026-07-07 20:46:50 -04:00
tests fix(panels): follow active buffer on semantic frontends; re-attach overlays on switch 2026-07-07 20:46:50 -04:00
.gitignore audit remediation: workspace clippy gate + stale metadata + cruft (F-001/F-013/F-015) 2026-07-03 10:31:17 -04:00
CHANGELOG.md M11.5: semantic frontend<->instance glue (SemanticClient + e2e) 2026-05-18 21:24:36 -04:00
Cargo.lock pmacs context menu: protocol v11 + dispatch + TUI/GPU surfaces (Q#CM1/Q#CM5) 2026-06-27 22:19:00 -04:00
Cargo.toml docs(features): document the Lua feature matrix; drop unreachable compile_error idea (F-002) 2026-07-03 19:54:35 -04:00
LICENSE-APACHE Initial commit: v0.1.0 2026-05-03 19:51:06 -04:00
LICENSE-MIT Initial commit: v0.1.0 2026-05-03 19:51:06 -04:00
README.md docs(readme): overhaul for the post-1.0 state 2026-07-07 11:00:09 -04:00
build.rs Initial commit: v0.1.0 2026-05-03 19:51:06 -04:00
rust-toolchain.toml rust-toolchain.toml: add rust-analyzer component (pin regression fix) 2026-05-18 11:58:46 -04:00
rustfmt.toml Initial commit: v0.1.0 2026-05-03 19:51:06 -04:00

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 thin frontends that attach over a typed protocol (currently v14). Two frontends ship today:

  • a TUI (crossterm cell grid), attachable locally over a Unix socket or remotely over SSH, with reconnect-on-drop modeled on mosh; and
  • pmacs-gpu, a GPU frontend (wgpu + winit + glyphon) that renders from a semantic projection of editor state --- style spans, decorations, inlay adornments --- rather than a character grid, and edits optimistically against a local CRDT replica for latency-free typing.

Buffers are optionally CRDT-backed (loro, behind --features crdt), so multiple frontends --- TUI and GPU, local and remote --- can edit the same buffers concurrently with live cursor/selection presence.

Status

v1.0.0 --- stable core, active development. The v1.0 gate (the instance/frontend partition, the Lua surface, and a REPL package audited to use zero direct Rust core access) shipped some time ago; development since has landed the GPU frontend at near input/render parity with the TUI, the semantic-frontend protocol (v6 → v14), the LSP feature arc, in-buffer search, the context menu + OS clipboard, the line-number gutter with diagnostic signs, and the package-manager hardening pass. Current direction lives in docs/roadmap-2026-07.md. Public contributions are open: use, evaluate, file issues, send pull requests.

Highlights

Editing & UI. CUA-style region editing plus Emacs kill/yank bindings; linear undo/redo; incremental search, substring and regex (C-s / C-r / C-M-s); line-number gutter with absolute, relative, and hybrid modes; diagnostic gutter signs; right-click context menu; OS clipboard integration (OSC 52 in the TUI, native in the GPU); minibuffer with completion dropdown and per-bucket persisted history; buffer-list mode (C-x C-b); self-navigable help system (describe-command, describe-key); atomic saves (temp + rename + parent fsync, mode-preserving).

Language intelligence. LSP client with async, never-blocking requests: diagnostics (severity-colored underlines/squiggles, gutter signs, statusline counts, M-g n/M-g p navigation), rename with prepareRename, go-to-definition including cross-file navigation, hover, signature help, references, document symbols, code actions, buffer formatting, semantic tokens, and inlay hints (rendered inline in the GPU frontend). Servers are preconfigured for rust-analyzer, clangd (C/C++), basedpyright, gopls, typescript-language-server (TS/TSX/JS/JSX), lua-language-server, bash-language-server, taplo (TOML), and zls (Zig). Syntax highlighting is dual-authority: bundled tree-sitter grammars (Rust, Lua, Markdown, C, C++) paint lexical structure and LSP semantic tokens refine it --- languages without a bundled grammar still get full semantic coloring. A persistent project symbol index (.pmacs/index.json) rides the same worker infrastructure.

Collaboration & frontends. With --features crdt, buffers are CRDT-backed and any number of frontends attach to one daemon and edit concurrently; peers see each other's cursors and selections as translucent washes. The GPU frontend adds a live minimap (click to jump, drag to scrub), wavy diagnostic squiggles, a status band with live diagnostic counts, and optimistic local editing that rebases in-flight edits through authoritative frames.

Extensibility. ~37 pmacs.* Lua namespaces cover buffers, windows, commands, keymaps (global/mode/buffer scope), hooks, themes (truecolor-capable syntax palette), tree-sitter, LSP stores, async workers, and a PTY-aware process supervisor with an ECMA-48 ANSI parser. A package manager installs from git (github:owner/repo, version/branch/commit pins) with transitive dependency resolution and a SHA-256 lockfile. Pmacs is also an MCP client: packages can spawn MCP servers and consume their tools, resources, and prompts --- AI integrations are packages over a transport, not a built-in feature. The bundled REPL package (PTY shells, ANSI rendering, multi-REPL, scrollback retention) is written entirely against the public Lua API.

Running

Single-process TUI:

pmacs [FILE]                 # TUI; -nw reserved for when a GUI default lands

Daemon + attached frontends (build with --features crdt for multi-frontend editing and the GPU frontend):

pmacs --daemon --socket NAME           # foreground daemon; bare NAME →
                                       #   <runtime>/pmacs/NAME.sock
pmacs --attach --socket NAME           # TUI frontend; F12 detaches
pmacs --attach user@host               # remote TUI over SSH
pmacs-gpu --attach /run/user/$UID/pmacs/NAME.sock   # GPU frontend

pmacs --attach also understands ssh:user@host/instance, local:/path.sock, and bare hostnames (treated as SSH). See pmacs --help for the full matrix.

User configuration is plain Lua at $XDG_CONFIG_HOME/pmacs/init.lua (default ~/.config/pmacs/init.lua), loaded after the builtin runtime so plain assignments override defaults --- keybindings, pmacs.lsp.config, theme overrides, and package installs all live there.

Build

Builds on the toolchain pinned in rust-toolchain.toml (Rust 1.95.0, edition 2024); rustup selects it automatically.

cargo build --release             # target/release/pmacs (LuaJIT flavor)
cargo build --release --features crdt        # + CRDT buffers (daemon use)
cargo build --release -p pmacs-gpu           # the GPU frontend binary
cargo run --release -- <file>     # build and run on a file
cargo test --workspace            # unit + integration tests (all crates)
cargo fmt --check
cargo clippy --workspace --all-targets -- -D warnings   # incl. pmacs-gpu

Feature matrix

Cargo features fall into two independent axes. Do not use --all-features — it enables both Lua flavors at once, which cannot build (see below).

Feature Axis Notes
luajit Lua flavor Default. LuaJIT backend via mlua (vendored).
lua54 Lua flavor Lua 5.4 fallback for hosts without LuaJIT (big-endian, …).
crdt Buffer Opt-in CRDT-backed buffer mode (adds the loro dep). v1.0 builds enable it; orthogonal to the flavor.

Exactly one Lua flavor must be enabledluajit or lua54, never both (and never neither). They map to mlua's mutually-exclusive Lua backends, so --all-features (or --features luajit,lua54, or --no-default-features with no flavor) fails in the mlua-sys build script with "You can enable only one of the features: …". That check lives in a dependency cargo builds first, so pmacs can't replace it with a friendlier error — the fix is to build a specific flavor. Supported build lines:

cargo build --release                                   # luajit (default)
cargo build --release --no-default-features --features lua54
cargo build --release --features crdt                   # luajit + crdt
cargo build --release --no-default-features --features lua54,crdt

CI, cargo hack, and distro tooling should iterate the flavors explicitly (--no-default-features --features <flavor>[,crdt]) rather than reaching for --all-features. Both flavors pass the full test suite; CI runs the matrix on every push.

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. The GPU frontend has headless render tests (offscreen wgpu, pixels read back) that run in CI under lavapipe and skip gracefully on machines without a Vulkan adapter (PMACS_REQUIRE_GPU=1 turns a missing adapter into a hard failure).

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.

The GPU frontend additionally needs a Vulkan-capable driver stack (any real GPU driver, or lavapipe for software rendering); its font (JetBrains Mono, OFL-licensed) is bundled into the binary.

Layout

The workspace has three first-party crates:

src/                 pmacs — the core + TUI + daemon
  rope.rs              persistent byte-sequence backing every buffer
  buffer.rs            buffer + view chain + undo/redo
  editor_core.rs       cursor + commands + edit dispatch
  crdt.rs              loro-backed CRDT buffer state (feature `crdt`)
  daemon.rs            instance side of the frontend partition
  attach.rs            frontend side; transports + reconnect
  semantic_render.rs   semantic-frame producer (StyleSpans, Decorations, …)
  lsp.rs               language-server client
  diag.rs, highlight.rs  diagnostic + syntax/semantic-token rendering
  syntax.rs            tree-sitter integration
  search.rs            incremental search (substring + regex)
  minibuffer.rs        prompt, completion, persisted history
  menu.rs              context-menu model
  file_io.rs           atomic saves + external-modification detection
  async_runtime.rs     worker pool + message bus
  process.rs           PTY-aware process supervisor
  ansi.rs              ECMA-48 parser
  project.rs, project_index.rs  project detection + symbol index
  packages/            resolver, fetcher, installer, lockfile, loader
  mcp.rs               MCP client (packages speak to MCP servers)
  lua_bindings/        pmacs.* Lua surface installers
  text_view.rs         cell-grid renderer
  frontend.rs          crossterm TUI
  main.rs              entry point (TUI / daemon / attach modes)

pmacs-protocol/      wire types + framing codec shared by all frontends
pmacs-gpu/           the GPU frontend (wgpu + winit + glyphon)

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
  menus/default.lua     context-menu items
  runtime/              async, lsp, syntax, mcp, fs runtimes
  packages/repl/        the bundled REPL package

docs/                design notes, framing docs, and the roadmap
tests/               integration tests (acceptance gates per milestone)

License

Dual-licensed under either of:

at your option.