Manual validation of 9.2 surfaced finding QB1: the CurrentLine wash
never appeared, and 9.1's Selection never actually rendered either.
Root cause: `Selection` and `CurrentLine` are the only two
per-WINDOW-state decorations; every other rendered family (StyleSpans,
diagnostics, inlay hints, minimap) is keyed to the shared BUFFER. The
producer emits both from the viewing frontend's own window
(`active_window_for(self.frontend_id)`). pmacs-gpu is a read-only
mirror with no input path — it never sends Key/cursor events, so its
own window's cursor stays pinned at 0 and its selection stays None.
Both decorations are therefore inert in pmacs-gpu: CurrentLine paints
a static line-0 wash (invisible at alpha 0.08) and Selection never
appears. What the user actually watches is the *editing* frontend's
(their TUI's) cursor — which is peer presence.
Fix is consumer-only — no producer or protocol change. The wire
already carries it: `InstanceMessage::PresenceUpdate { frontend_id,
buffer_id, cursor, selection }` is broadcast by the daemon to every
`multi_frontend` recipient, pmacs-gpu already negotiates
`multi_frontend: true`, and it was simply dropping the message at its
`_ => None` catch-all.
Q#5 (recorded in the framing doc): peer presence is the authoritative
cursor/selection source for a read-only mirror.
- New `peer_presences: HashMap<FrontendId, PeerPresence>` state,
cleared on BufferSnapshot (peer offsets are prior-buffer-relative).
- New `PresenceUpdate` arm stores per-peer (buffer_id, cursor,
selection) and requests a redraw.
- `peer_background_rects` replaces the old
`decoration_background_rects`: renders `CurrentLine` over the source
line holding each peer's cursor (`source_line_range`) and
`Selection` over each peer's selected range, both via the shared
`push_glyph_extent_rects` (the former inline glyph-overlap loop,
extracted). Own-window Selection/CurrentLine in `current_decorations`
are no longer drawn as backgrounds — they're inert for a read-only
mirror. Diagnostic (foreground) decorations are untouched.
- The producer keeps emitting own-window Selection/CurrentLine (9.1/
9.2) unchanged — correct and forward-looking for when pmacs-gpu
gains its own input in Phase B; simply unconsumed-for-backgrounds by
the mirror today.
Deferred within the stance (documented): per-peer stable colors (single
peer reuses the Selection/CurrentLine colors), peer caret glyph +
"user N" label, and own-vs-peer cursor merge once input lands.
New tests: `source_line_range_locates_enclosing_line` +
`source_line_range_handles_empty_and_leading_newline`. The peer
rect generation itself needs a laid-out buffer (font system) and is
covered by the manual probe.
Two pre-existing functions tipped past clippy's 100-line limit by the
additions (`State::new` 101, `apply_attach_message` 116, a per-variant
match dispatcher); both get `#[allow(clippy::too_many_lines)]`,
matching the precedent on `semantic_render::render_frame`.
Gates green:
- cargo fmt --all -- --check
- cargo clippy --all-targets --workspace -- -D warnings
- cargo clippy --all-targets --workspace --features crdt -- -D warnings
- pmacs lib 1329 + pmacs-protocol 11
- pmacs-gpu unit 15 (+2 source_line_range tests)
- m4_acceptance 88, m11_5_semantic_acceptance (--features crdt) 2
Manual probe: daemon + TUI attach + pmacs-gpu attach. Move the cursor
in the TUI — pmacs-gpu's CurrentLine wash should track the TUI's line.
Select text in the TUI — the Selection wash should mirror it. Both
should now actually appear and follow the editing frontend.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
|
||
|---|---|---|
| .github/workflows | ||
| audit | ||
| builtin | ||
| docs | ||
| pmacs-gpu | ||
| pmacs-protocol | ||
| proptest-regressions | ||
| src | ||
| tests | ||
| .gitignore | ||
| CHANGELOG.md | ||
| Cargo.lock | ||
| Cargo.toml | ||
| LICENSE-APACHE | ||
| LICENSE-MIT | ||
| README.md | ||
| build.rs | ||
| rust-toolchain.toml | ||
| rustfmt.toml | ||
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.coreutilsmore broadly. The M6 process-supervisor tests spawncat,yes, andwhich; absent these the test suite (not the editor itself) degrades.whichis also used by the M6.5 shell-locator helper to findbash/zsh/fishfor per-shell integration tests. The M7.2 fetcher's timeout test usessleep.git(added in M7.2). Required for any package operation: the package fetcher shells out togitto clone, fetch, and resolve refs, with a deterministic environment (GIT_TERMINAL_PROMPT=0,GIT_CONFIG_NOSYSTEM=1,LC_ALL=C, inheritedGIT_*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 forpmacs.packages.install: the installer materializes a snapshot viagit archive --format=tarpiped intotar -x -C <dest>, which keeps the on-disk install directory self-contained (no.gitlinkage back to the bare cache, no working-tree state). GNU tar and bsdtar both work. Pre-M7 builds and any path that doesn't callpmacs.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-keyanddescribe-commandfor 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:
- MIT License (LICENSE-MIT)
- Apache License, Version 2.0 (LICENSE-APACHE)
at your option.