Commit Graph

268 Commits

Author SHA1 Message Date
Levi Neuwirth 19f48d46c0 fix(lsp,lean): bound the fallback's own failure; heal at point of use
Round 5 review: one P1, a frontend scope hole, and three P2s.

**1. A fallback that SPAWNS and then dies retried forever.** The
once-per-buffer guard bounds calls to `_attach_buffer`, not the server
those calls produce. `ensure_server` still never forwards `cfg.restart`,
so the fallback inherits `OnCrash`; an executable that exits before
`initialize` is respawned by the manager with no attempt ceiling —
silently, because `latched` has already disabled the primary's failure
poll. The fallback now gets its own one-shot die-before-initialize
watch, which retires it (ending the respawn loop) and reports.

The prior failing-fallback test used a NONEXISTENT executable, so it
only ever exercised synchronous ENOENT. To reach "spawned, then died"
the fixture has to actually spawn.

**2. Simultaneous frontends.** Both repair triggers read the ambient
`pmacs.window.buffer()`, and the daemon restores `active_frontend` to
the last-dispatched frontend before `tick_processes` — so a Lean buffer
active in ANOTHER frontend receives no `buffer.after-switch` here and
stays stale after its server is globally retired.

Fixed at the seam that is frontend-agnostic: **make consumption safe.**
`attached_for_active` now rebuilds rather than returning a record whose
server is dead, and `attachment_for_request` reports none (it must not
perturb LSP state, so it cannot rebuild). Whichever frontend runs a
command is the active one while it runs, so healing at the point of use
reaches every buffer no eager sweep can. This also closes the half where
a dead attachment was handed to a command and the request vanished.

**3. The retirement sweep stopped user-managed servers.** Selecting on
`language_id == "lean4"` also names servers the user spawned from
`init.lua`, which are not derived from `pmacs.lsp.config.lean4`. It now
keys on the `default-lean4` label `ensure_server` stamps — the
derivation discriminator.

**4. Repair ran even when no swap occurred.** `swap_to_fallback()`
returning false left `latched` true, so the next tick retried the
UNCHANGED configuration and reported it as a fallback failure. Split
into `probe.fallback_installed`: repair exists to apply a swap, so no
swap means nothing to apply.

**5. The once-per-buffer assertion counted table keys**, which cannot
distinguish "once per buffer" from "every tick for one buffer" —
cardinality stays 1 either way. Replaced with a numeric attempt counter;
the bite reports 174 attempts against the expected 1.

Five bites, each against 7c37bdc: no fallback watch -> attempt reaches
4; retire by language_id -> the user's server is stopped; gate repair on
`latched` -> a repair is attempted with no swap; drop the
once-per-buffer guard -> 174 vs 1; hand back a dead attachment -> a
command receives a `stopped` server.

Two more vacuity shapes recorded in the ledger (8 and 9): counting
distinct keys cannot bound repeated work, and a nonexistent executable
cannot reach any post-spawn failure.
2026-07-25 21:28:11 -04:00
Levi Neuwirth 7c37bdc514 fix(lean): repair every buffer and retire every server on fallback
Round 4 review: one P1, and it is the same defect for the FOURTH time.

`pmacs.lsp.config.lean4` is a single global entry, so swapping its
command invalidates **every** Lean buffer and **every** Lean server —
Q#LN15 gives one server per project root, so there can be several.
Rounds 1-3 each repaired one buffer and retired one server, and round 3
shipped "repair the armed target, strand the rest": status and config
said fallback while a second open Lean buffer stayed on the retired
command, and a second project root's server stayed live.

The shape that actually holds:

  * **Retire ALL `lean4` servers on latch**, not the one the probe
    happened to name. `probe.primary` identifies the server the VERDICT
    is about; it was never the set of servers the swap invalidates.
  * **Repair each buffer lazily and at most once**, when it becomes
    active — on `buffer.after-switch` and on the tick. `_attach_buffer`
    is an active-buffer-only seam, so a global swap cannot be applied to
    every open buffer at once; it has to be applied as they surface.
    lsp.lua's own `after-switch` re-pushes views but does not rebuild a
    stale attachment, so nothing else covered this.
  * The **once-per-buffer bound** is load-bearing: without it a fallback
    that also fails to spawn would retry every tick forever — the
    round-2 defect, which a naive global repair loop would reintroduce
    for every buffer instead of just one.
  * `shutting-down` is deliberately not treated as stale. It is still
    live by `server_is_live`'s reckoning, so attaching would early-return
    the stale record and burn that buffer's single attempt on a no-op.

P2: argument-inclusive attribution was implemented in round 3 but pinned
only by "contains the command name", so a mutation dropping every
argument passed. Now asserted against the exact `<command> <args>`
string.

Also fixed a vacuous assertion this refactor created: a test checked
`_probe.reattach_from == nil` for a field that no longer exists, which
reads as nil and passes for nothing. It now asserts a positive count of
recorded repair attempts.

Three bites, each against 73587b0: repair only the armed buffer -> the
second buffer stays on `lake`; retire only the named server -> one live
stale server remains; drop arguments from attribution -> the exact-string
assertion fails.

The ledger records a second durable lesson beside the vacuity one: **a
scope error repeats until the scope is named.** Four rounds of locally
correct fixes, none of which asked what the config swap invalidates.
When a change edits shared state, enumerate everything derived from it
before repairing anything.
2026-07-25 19:46:29 -04:00
Levi Neuwirth c4b759553d test(m4): wait for a complete sink record, not a substring of one
`m4_5_initial_config_pushed_via_did_change_configuration` fails
intermittently on macOS/lua54 with a truncated payload, observed in CI as:

    the daemon pushed the configured settings after initialized: {"rust":{"probe":

This is a real read-while-writing race, not a platform quirk. The wait
predicate was weaker than the assertion it guards: the pump waited for
`contains("probe")` while the assertion needs `"probe":true`, six bytes
further on. The sink is JSONL written by a separate process, so the test
could read a half-written line. Linux wins that race reliably; macOS does
not.

Wait for the trailing newline instead. `src/bin/pmacs_fake_lsp.rs` writes
the sink with `writeln!`, one record per push, so a trailing newline is
true only once a whole record has landed — it waits for exactly the unit
the assertion reads, and stays correct if the payload's field order or
spelling ever changes.

Note this cannot be falsified locally: reproducing it means losing a
scheduler race that Linux wins, so a passing local run is a regression
check rather than proof. The argument is structural — `writeln!` is the
only writer of this file.

The sibling `rooturi` sink test has the same weak-predicate shape and is
deliberately NOT changed, with a comment recording why: waiting for the
expected value there would convert a genuine regression — `rootUri`
falling back to the cwd, which its `assert_ne!`s exist to catch — into a
five-second timeout with a misleading "server didn't initialize?"
message, trading a precise diff for a vague hang. Closing it properly
means giving that sink a record terminator in the fake server, and it has
never been observed failing, so it is a separate change.

Gates: `cargo fmt --check` clean; strict workspace Clippy clean;
`m4_acceptance -- --skip basedpyright` 121 passed; the previously-racy
test 10/10 in isolation; `git diff --check` clean.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_0126d2sikA6jZpFin3rtLCSK
2026-07-25 19:25:01 -04:00
Levi Neuwirth 73587b0e37 fix(lean): correlate the probe verdict with its own server and buffer
Round 3 review: two P1 asynchronous-correlation defects, with the
focused suite at 25/25 while both were live.

**1. A late version verdict retired nothing and claimed success.**
`probe.watching` is cleared the moment the server initializes — it is
failure-polling state. A slow `lake --version` landing after a
successful initialize therefore reached `fire_latch(nil)`, which retires
nothing: `_attach_buffer` found the still-live primary attachment,
early-returned it, and the retry counted that as done. Status said
"falling back", the config named the fallback, and the buffer stayed on
the old server.

**That is the round-1 silent no-op arriving through a third event
ordering** — first as "no re-attach at all", then as "re-attach cleared
by an unrelated buffer", now as "re-attach satisfied by the server we
were supposed to replace". The fix separates the two facts that were
being carried by one field: `probe.primary` is the server the verdict
applies to and survives initialization; `probe.watching` is the
failure poll and is cleared by it.

The existing fixture could not reach this ordering at all — its `serve`
sleeps, so the primary can never initialize before `--version` returns.
The new one execs the fake LSP for `serve` and delays 0.6s before
reporting 3.0.0.

**2. `buf_key` was the most recently loaded Lean buffer.** Written on
every Lean `buffer.after-load`, so a second Lean file opened before the
verdict became the rebuild target while the latch still watched the
FIRST buffer's server. Target buffer and primary server are one fact and
are now armed together, exactly once. Both files in the new test share a
package, so mis-targeting shows up as a stranded buffer rather than as
two unrelated servers.

**3. The failure message hardcoded `lake serve`** after the latch became
command-agnostic, telling a user whose `my-lean-wrapper` failed to go
debug lake. `configured_command()` names what is actually configured,
arguments included.

**4. The ledger** now records all fifteen bites across the three rounds,
both prior review rounds' findings (the round-2 block was lost when an
earlier edit script aborted before writing), and the durable lesson.

That lesson, recorded for the handoff: **six tests across three rounds
were written, ran green, and pinned nothing** — caught only by biting.
The shapes are enumerated in the ledger; the rule is that a test is not
evidence until the mutation it targets has been shown to fail it. Two
of the six are subtle enough to be worth naming here: a bite that
RAISES is swallowed by the hook's pcall and "passes" for the wrong
reason, and a fixture whose `serve` sleeps cannot reach any ordering
where the primary comes up first.
2026-07-25 19:23:50 -04:00
Levi Neuwirth 664cc25d0c feat(terminal): profiles, scrollback, and a configurable escape key
Stage 1 of the terminal config/copy-mode arc. The terminal had no
configuration surface at all: the command hardcoded $SHELL, scrollback
was a per-open argument only, and the escape chord was a literal in
Rust. No protocol change.

Profiles are a raw Lua table, pmacs.terminal.profiles, not a registry
setting: ConfigValue is four scalars with no table kind, so profiles
join pmacs.lsp.config and pmacs.pair.sets until table-valued settings
exist. The registry gains three scalars whose defaults reproduce the
previous behavior exactly.

Field resolution is explicit open argument, then profile field, then
scalar setting, then $SHELL. env MERGES, with explicit entries
overriding the profile's, because first-wins there would silently drop
half a user's environment. An explicitly named profile that does not
exist is an error even when terminal.default-profile is valid, so a typo
cannot silently fall back.

The two open-time settings resolve through the GLOBAL chain, because
they are read before the identity buffer exists and no caller could have
pinned a local override on a buffer that does not yet exist. Only
terminal.escape-key resolves per buffer, which makes a per-terminal
escape a supported feature.

The escape key is parsed at most once per (terminal, config epoch), and
the cache lives on TerminalSession so its lifetime is the terminal's,
with no purge hook to forget. The epoch alone is not a sufficient key:
it does not advance when focus moves between two terminals with
different buffer-local values, so an epoch-only cache serves one
terminal's chord to the other. An unparseable value falls back to C-c
and reports once per terminal per effective invalid value through the
status line, because a terminal with no escape chord cannot be escaped
to fix the setting that broke it.

Repeating the escape now sends THAT chord to the child through the
ordinary key encoder, rather than a hardcoded ETX. With an escape of
C-x, the previous code sent Ctrl-C and made literal Ctrl-X unreachable.

C-c t opens a terminal. COHERENCE Priority 1 names a terminal
keybinding, and section 2 step 8 grades the terminal works-but-
undiscoverable; C-c is already a live global prefix, so this is a new
leaf rather than a shadow. It is unreachable from inside a terminal,
where C-c is the escape.

Acceptance is tests/terminal_config_acceptance.rs, deliberately NOT
crdt-gated so CI actually runs it. Four bites, each against a different
plausible wrong implementation: a hardcoded ETX fails acc6/9; an
epoch-only cache key fails acc7; a single last-entry cache fails acc8's
parse count; removing the invalid-value fallback fails acc10.

Two test-instrument notes worth keeping. cat -v is the echo probe
because the screen rejects C0 controls before they reach cells, so a raw
echoed Ctrl-X would be invisible. And the probe counts occurrences
rather than testing presence, because a single-character probe collides
with the child's own banner text.
2026-07-25 18:36:18 -04:00
Levi Neuwirth 3377db070a fix(lean): correct the server lifecycle; round 2 review
Three P1 lifecycle defects and two P2s. The focused suite was 20/20 with
every one of them live, which is the part worth keeping.

**1. The crashed primary respawned forever underneath the fallback.**
Round 2 skipped the retire call for terminal servers to avoid corrupting
them — but the crash had already armed `next_restart_at`, and
`maybe_restart` fires on every elapsed backoff with no attempt ceiling.
The broken command kept respawning under the live fallback.

The right call depends on the state, and each is wrong for the other:
`forget` REQUIRES a terminal state and removes the client outright,
which also drops the restart timer; `stop` is for a live one and
corrupts a terminal one (its not-initialized branch parks it in
`ShuttingDown` forever). `retire_server` now dispatches on state.

**2. Re-attachment targeted whatever buffer was active when the
asynchronous verdict landed.** `_attach_buffer` is an active-buffer-only
seam, and "some attachment now names a different server" is satisfied by
an unrelated Rust buffer — clearing the retry and leaving the Lean buffer
stale forever. The initiating buffer is now captured and the retry waits
for it.

**3. A failing fallback retried every tick forever, silently**,
contradicting acceptance 27's promise that a second failure surfaces.
"Waiting for the old server to go" and "attempting the replacement" are
now separate: once the old one is terminal or gone, the replacement is
attempted EXACTLY once, and a spawn failure is reported.

**4. The Lake version parser was being applied to arbitrary wrappers.**
`version_below_3_1` encodes lake's output contract; a working
`my-lean-wrapper` reporting "wrapper 1.0" would have been replaced
despite its server initializing fine. The version probe is now gated on
the command's basename being `lake`. The FAILURE latch stays
command-agnostic — that one keys on the server actually not starting,
which is true of any command.

**5. An unconfigured Lean server was reported as a failure** and latched,
poisoning the session so a later configuration could never take effect.
Absent config or command now means disabled; only a configured command
that produced no attachment is a failure.

**6. The ledger recorded pre-fix counts** after the fixes were pushed.
Now 25/25 and 3,214. That is the #161 fmt-blocker error in a slower
form: verification must describe the pushed tree.

Sign-offs requested in review: `M.fallback` is now `M._fallback`, an
underscored test seam, and its idempotence check compares args as well as
command — the same command with different arguments is not "already
applied". Dropping the `command ~= "lake"` guard stands for the failure
latch only.

Five regression tests added, and **three of them were too weak on first
write; only bite-testing found it**:
  * asserting "no live non-fallback server" misses a respawn loop,
    because a respawning server sits in `crashed` most of the time —
    `attempt` is the observable that counts respawns;
  * returning to a buffer with `find_or_open` re-fires
    `buffer.after-load`, which repairs the attachment regardless of the
    code under test — `switch_buffer` is the honest return;
  * a MISSING command fails synchronously inside `after-load` where the
    rebuild happens inline, so the async race cannot occur — only the
    probe path exercises it.
Each of the five now fails against the exact round-2 mutation it targets.
2026-07-25 18:35:11 -04:00
Levi Neuwirth cdaea66203 fix(lean): make the fallback actually produce a working server
Round 1 review, four P1s. All real; the first two mean the fallback did
not work at all.

**1. The latch swapped the config but never spawned or re-attached.**
Nothing re-fires an attach on a config change and `attach_buffer`
early-returns for a live attachment, so the buffer stayed bound to the
server that had just been stopped. The user got a config edit and no
language server. `fire_latch` now rebuilds through a new
`pmacs.lsp._attach_buffer` export.

Two mechanics had to be right for that rebuild to happen at all:

  * It is **retried on the tick**, because `pmacs.lsp.stop` leaves the
    state `shutting-down`, which `server_is_live` counts as LIVE — an
    inline re-attach early-returns the stale record and the swap is a
    silent no-op.
  * The latch **does not stop an already-terminal server**, and this is
    a substrate bug worked around rather than a style choice.
    `LspManager::stop` on a `Crashed` client takes its not-initialized
    branch, terminates the dead process, and sets `ShuttingDown { ..
    None }` on the premise that "the next exit observation cleans up" —
    but the exit already happened, which is what made it `Crashed`. No
    further event arrives, so the client is stuck in `ShuttingDown`
    forever: `server_is_live` reads it as live so `attach_buffer` never
    rebuilds, and `forget` refuses it for not being terminal. Stopping a
    dead server is what makes it un-replaceable. Named in framing §6; the
    fix belongs in `stop` and changes behavior for every language.

**2. A missing `lake` bypassed probe and latch entirely** — the single
most likely real failure. `ensure_server` swallows a synchronous ENOENT
and returns nil, so there was no attachment, and the hook keyed on
`active_attachment()` returned before arming anything. The hook now keys
on the buffer's LANGUAGE and treats a Lean buffer with no attachment as
the failure itself.

**3. `waitForDiagnostics` omitted `version`.** Lean's
`WaitForDiagnosticsParams` is `{ uri, version }` (v4.9.0,
`src/Lean/Data/Lsp/Extra.lean`); the request is how a client says which
revision it wants. It looked correct only because the fake server echoes
any payload — so the fake server now validates and returns InvalidParams
without it.

**4. The ledger stated the dangerous stacking order** in one sentence
and the correct rule in the next. Fixed to say BEFORE. A safety rule
written twice with opposite senses is worse than not written.

Also (P2): the probe/latch suite now drives the production path —
`buffer.after-load` -> ticks -> probe drain -> latch -> re-attach — with
real executable stubs, and asserts the originally opened buffer ends up
on a LIVE server. Round 1's acceptance 36 asserted every server was
terminal, i.e. pinned the ABSENCE of the fallback it claimed to test.
`M.fallback` is a table so the suite can point it at a working stand-in;
the probe now spawns `cfg.command --version` rather than a hardcoded
`lake`, which is also more correct for a user who configured a wrapper.

`swap_to_fallback`'s `command ~= "lake"` guard is gone: the latch fires
only when the configured server actually failed, one visible fallback
beats no server, and `probe.latched` is what keeps it to exactly one.

Three new bites, all against the committed tree: no re-attach after the
swap -> three latch tests fail; hook keyed on the attachment -> the
missing-`lake` case fails; `waitForDiagnostics` without `version` ->
acc37 fails with the server's InvalidParams.
2026-07-25 18:03:29 -04:00
Levi Neuwirth 1e1be67b49 feat(lean): the Lean 4 language server (Arc 8 Stage 3b)
Framing Q#LN7, Q#LN8, Q#LN16; acceptance 22–28, 24a/24b, 35, 36, 36a, 37.
Stacked on Stage 3a (#167), whose notification/response seams and
`pmacs.fs.canonicalize` this consumes. No protocol change; the only Rust
outside the test helper is one `include_str!` line.

**The Lake-aware root (Q#LN8).** `pmacs.project.detect` cannot express
this rule — it is innermost-wins by construction, and a Lake package's
`lean-toolchain` sits at the outermost level, so a file under
`<pkg>/.lake/packages/dep/` belongs to `<pkg>`'s server rather than
`dep`'s. The resolver walks up collecting markers and returns the
outermost, stopping at `pmacs.project.search_boundary()` so a stray
marker above a fixture cannot leak in.

Two things about the marker test are easy to get wrong in opposite
directions, and both are pinned. `io.open` **succeeds on a directory**,
so a truthiness check accepts a `lean-toolchain` directory; but
requiring a non-nil read rejects an **empty** `lean-toolchain`, which is
a legitimate marker — `locate-dominating-file` semantics are existence,
not content. The discriminator is `read`'s second return: decline only
on a non-nil error. Acceptance 24a and 24b each fail against the
implementation that satisfies only the other; both bites are recorded.

The root is canonicalized once up front, because a configured root
reaches `file_uri_for` verbatim and that URI is the affinity key (#161).
Canonicalizing the starting directory suffices — every ancestor of a
canonical path is canonical, since the walk only strips components.

**`lake serve` with a lazy probe and a one-shot latch (Q#LN7).** Nothing
runs at init: `pmacs.lsp.config` is declarative, and spawning a process
at startup for every user, Lean-using or not, is the cost rev 1 refused.
Both the probe and the server spawn are gated on a real Lean attachment.

The probe cannot gate the first attach — there is no blocking process
run, so its verdict arrives after `ensure_server` has already decided.
Hence the optimistic spawn, with the probe and latch correcting it. A
non-zero probe exit is deliberately NOT a trigger: §2.9's elan-shim case
makes `lake --version` fail on machines where `lake serve` still works,
and the server-failure latch covers that better. The probe answers only
the question failure detection would answer slowly — an old-but-working
lake that starts a useless server.

The latch stops the failing server **before** spawning the fallback, and
that ordering is load-bearing rather than defensive: the spec default is
`OnCrash`, the termination handler never consults the exit code, and
`maybe_restart` has no attempt ceiling, so a broken `lake` respawns
forever underneath the latch. `pmacs.lsp.stop` sets `restart = Never`,
which is what disarms it. Bitten: removing the stop fails acceptance 36.

The swap rewrites `command` and `args` only, so a user's `env`,
`settings`, `init_options` and `root` survive — a wholesale table
replacement would discard their `init.lua` at the moment they are least
likely to notice.

**`waitForDiagnostics` (Q#LN16)** resolves through Stage 3a's response
seam, with `M-x lean.wait-for-diagnostics` on top. `$/lean/fileProgress`
subscribes on the notification seam and is pinned end-to-end through a
new `leanprogress` mode on the fake server rather than by calling the
handler directly — the wiring is the only part that can break.

**Attribution (COHERENCE §9/§1.2).** The probe spawns as
`lean:lake-version-probe`, so a user wondering why their editor touched
`lake` finds an owner in `pmacs.process.list`. The latch reports through
`pmacs.editor.set_status` — the channel that exists — and acceptance 36a
observes that channel, so a report made only through the undefined
`pmacs.error` would fail it.

**Stage 1's acceptance 12 is updated, half superseded.** It asserted
`pmacs.lsp.config.lean4 == nil` to guard against a Stage-3 front-run;
Stage 3b is that stage, so keeping it would pin the opposite of the
intended behavior. The half that survives is the one about restraint,
and it matters more now: constructing an editor spawns nothing even
though the config exists and names `lake`, and opening a Lean buffer
with no server configured spawns nothing either. That is what holds
Q#LN7's "not at init" promise.

Bites recorded, all against the committed tree: bare `io.open` -> 24a
fails, 24b passes; require-non-nil-read -> 24b fails, 24a passes; no
canonicalization -> the symlink case spawns two servers; no stop before
fallback -> acceptance 36 fails.
2026-07-25 17:40:02 -04:00
Levi Neuwirth b70393762e test(lsp): gate the non-UTF-8 fixture on linux, not merely unix
CI round 1: both macOS jobs failed on the acceptance case added last
commit. APFS enforces valid UTF-8 in filenames, so `std::fs::write` with
a 0xFF byte in the name fails with EILSEQ ("Illegal byte sequence")
before `pmacs.fs.canonicalize` is ever called. The fixture cannot be
built there.

That is a filesystem refusing to represent the case, not a behavioral
difference: the subject — `to_str()` returning None for a non-UTF-8
resolution — is platform-independent Rust, and the Linux run pins it.
`#[cfg(unix)]` was the wrong granularity; review had asked for unix
gating on the symlink tests and I applied the same gate here without
checking whether the filesystem, rather than the API, was the
constraint.

Gated `#[cfg(target_os = "linux")]` with the reason in place, rather
than skipped at runtime, so a future failure here is a real failure and
not a silent no-op.

Ledger records both CI-round facts: this one, and that
`composition_overhead_under_ten_percent` is load-sensitive under a
parallel workspace sweep (it reported -4.6% realistic overhead in the
same run that tripped its 10% budget at 18.8%, which is noise, not work).
2026-07-25 17:03:10 -04:00
Levi Neuwirth a9ef257930 fix(lsp): decline a non-UTF-8 canonicalization; round 1 review
Six findings from review, one of them a real defect.

**`canonicalize` could emit a path that exists nowhere.**
`p.display().to_string()` substitutes U+FFFD for non-UTF-8 bytes, so a
resolution landing on such a path returned a plausible-looking string
that does not exist on disk — worse than nil, because this value becomes
a server-affinity key through `file_uri_for` and would silently fail to
round-trip, while the doc promised nil for anything unresolvable. Now
`.and_then(|p| p.to_str().map(str::to_owned))`: unrepresentable is a
decline, matching how the fs layer already treats non-UTF-8 symlink
targets.

Pinned by a new acceptance case that reaches a non-UTF-8 target through
an **ASCII** symlink, so the input is representable and only the
resolved output is not — the case a UTF-8 check on the argument would
miss. Bitten: restoring `display()` fails it.

The other five:

- `on_response`'s doc comment now warns that registering against a
  server with no attached buffer is fire-on-death, not fire-on-reply,
  because the drain visits only attached sids. It looks exactly like a
  hung request while debugging, and 3b is the first caller likely to
  hit it.
- `deliver_response`'s comment still carried the pre-correction
  rationale ("removed BEFORE invocation ... must not be re-entered") —
  the claim the bite disproved. It now says what is true: removal is
  unconditional, before-vs-after is unobservable without a re-entrant
  drain, and the reachable bug is gating removal on a clean return.
- Dropped `server_attempt`'s unused second return.
- Deleted a vacuous assertion in the no-attachment test (counting `_G`
  entries to assert "lua globals are readable") — scaffolding that
  pinned nothing, the exact shape the project's own lesson flags.
- `#[cfg(unix)]` on the three symlink-dependent tests.

Gates re-run in full. The sweep's first pass tripped
`composition_overhead_under_ten_percent` at 18.8% against a 10% budget;
it passes 3/3 in isolation here, passes in isolation on main, and the
same run reported the realistic-frame overhead as **-4.6%** — a negative
figure is measurement noise, not added work. Nothing in this diff is on
the render path. Rerun of the full sweep: 3,189 across 93 suites, zero
failures.
2026-07-25 16:53:27 -04:00
Levi Neuwirth 1c9904e217 Merge canonical main (#166) into the dired Stage 1 lane
Main moved again while this lane was gating: the GPU terminal-input fix
merged as #166. One conflict, in COHERENCE.md's journey table, resolved
as the union -- this lane owns step 7's file half, #166 owns step 8's
GPU-terminal addendum.
2026-07-25 16:41:21 -04:00
Levi Neuwirth bdd7611d0e Merge canonical main (#161) into the dired Stage 1 lane
Multi-root LSP affinity merged as #161 (`main` @ `46a1b8f`) while this
lane was in review, which made the PR conflict -- and a conflicting PR
has no merge ref, so GitHub silently stopped running CI on it after the
first push. Integrating rather than rebasing, per the #135/#137
precedent: the review anchors stay addressable and every gate is rerun
against the merged tree.

One conflict, in COHERENCE.md's in-flight list, resolved as the union of
both truths -- and #161 is now merged, which its own text still called a
PR.

The overlap to watch is `src/lua_bindings/mod.rs`: #161 widened the
`lsp.list()` row builder while this lane added `pmacs.path` and the
read_dir listing conversion. The merge was textually clean, which the
folding arc's lesson says is not the same as compiling, so the full gate
suite reruns from here.
2026-07-25 16:04:00 -04:00
Levi Neuwirth 027c7d18e0 test(lsp): name acc32 for what it pins; label the unpinned guard
Two corrections found by bite-testing the suite rather than by reading
it.

**Acceptance 32 was mis-named.** It claimed to pin "the one-shot is
removed BEFORE invocation". Biting that — moving the removal after the
`pcall` — still passes, because `pcall` catches the raise either way and
the removal runs regardless. The before/after ordering is unobservable
unless a handler re-enters the drain, and nothing does. What the test
actually pins is that removal is **unconditional**: the bite that gates
it on `if ok then` fails 2 != 1, because the surviving registration is
invoked a second time by the purge. Renamed and re-commented to say so.
The implementation still removes before invoking, which is the right
defensive order; it is simply not what the assertion proves.

**The purge's generation check is defensive and untested**, now labelled
in place instead of reading as covered. Reaching it needs a crash and
its restart to both land in a gap with no `_async.tick`; the backoff is
500ms, so any tick in that window sees `crashed` and the
absent-or-terminal test fires first. Every attempt to stage it
deterministically exercised the `crashed` path instead. It stays as
insurance for a stalled editor, and says that about itself.

Bites recorded, all against the committed tree:
- removal gated on a clean return -> acc32 fails (2 != 1).
- purge driven by a `crashed`/`stopped` event seen in the drain, the
  design the framing originally implied -> the no-attachment case fails
  ("never called"), while the attached case still passes. That is the
  discrimination acceptance 34's second half exists for.
- a resolver without `pmacs.fs.canonicalize` -> two servers, pinned as
  34b's own falsification.
2026-07-25 15:58:34 -04:00
Levi Neuwirth 12236b265d feat(lsp): notification/response dispatch seams and fs.canonicalize
Arc 8 Stage 3a (framing Q#LN9, Q#LN20). No Lean content: this changes
the event drain every LSP language runs through, and is split from the
Lean server work for the reason Stage 2 was.

**The seams.** `handle_server_requests` handled five `request` methods
and `initialized`, dropping every `notification` and `response` on the
floor. Dropping responses made `pmacs.lsp.send_request` a write-only API
from Lua — the reply was drained and discarded, so nothing outside
Rust's typed stores could consume one. Two new arms route to
`pmacs.lsp.on_notification(method, fn)` (persistent, method-keyed) and
`pmacs.lsp.on_response(sid, request_id, fn)` (one-shot). Both extend the
existing loop rather than opening a second `events_take` caller, which
would steal events from it.

A one-shot is removed **before** invocation, so a raising handler cannot
be re-entered. Every subscriber is `pcall`ed and a raise reports through
`pmacs.editor.set_status` per COHERENCE §1.2 — not `pmacs.error`, which
is defined nowhere in production. The notification list's length is
captured before the walk so a subscriber registering another cannot
extend the list being iterated.

**The purge is driven off `pmacs.lsp.list()`, not off a death event.**
The framing said acceptance 34's second edge was a killed buffer. That
was wrong, and scouting the implementation is what caught it: pmacs
fires exactly five hooks (`buffer.after-edit`, `buffer.after-load`,
`buffer.after-switch`, `frontend.detached`, `process.after-tick`) and
there is no buffer-kill hook at all, so `lsp.lua` never tears an
attachment down and the drain keeps reaching that server. No leak there.

The real leak is a different path with the same root cause. The drain
builds its sid list from `attachments`, and `attach_buffer` drops a sid
from that table the moment `server_is_live` reports false — rebuilding
against a fresh server. So the `crashed` / `stopped` event that should
trigger the purge is precisely the one most likely to go undrained. A
purge wired to that event leaks exactly when it matters.

`pmacs.lsp.list()` enumerates the manager directly and is unaffected by
attachment bookkeeping, so the purge polls it after each drain: a sid
that is absent, terminal, or running a **new generation** settles its
pending one-shots with an error. The generation check uses the `attempt`
field, because a crash-then-restart reuses the sid — without it a
one-shot would sit waiting on a reply the dead generation owed.

**`pmacs.fs.canonicalize`** (Q#LN20) is the one synchronous function on
`pmacs.fs`, and synchronous is the point: its consumer is a
function-valued `config.root` called from `ensure_server` <-
`attach_buffer` <- `buffer.after-load`, where there is no coroutine and
`pmacs.fs.stat`'s awaitable handle is unusable. It is installed from
`install_async` rather than `install_project` purely for load order —
`make_workspace` runs after `fs.lua` is evaluated, so a canonicalizer
placed there reads nil.

Acceptance: `tests/lsp_dispatch_seams_acceptance.rs`, 14 tests, driven
against `pmacs_fake_lsp` through rust so nothing needs a toolchain.
Dispatch integrity is exercised at real co-occurrence — the fake server
writes `workspace/applyEdit` and the `executeCommand` reply back to
back, so both land in one `events_take` batch. 34b asserts affinity
survives a symlinked open and is paired with its own falsification: the
same resolver minus the canonicalize call spawns two servers, so the
positive case cannot be vacuous.
2026-07-25 15:37:48 -04:00
Levi Neuwirth b775f1703a fix(daemon): stop resizing a semantic frontend's PTY twice per tick
The dispatcher loop applied BOTH terminal-layout syncs to EVERY attached
frontend. A semantic session satisfies both conditions, because it has a
term_sizes entry from AttachRequest and a semantic terminal declaration,
so its PTY was resized twice on every tick forever: the grid arm
installed the TUI placement size, the semantic arm installed the declared
content rectangle, and each arm's own idempotence guard only ever saw the
size the other had just written. The child took a SIGWINCH storm at tick
cadence and the screen reflowed continuously, which is what made typing
into a GPU terminal impossible while output kept flowing.

The grid arm is also the only per-tick controller-liveness release a
semantic frontend gets, so simply skipping it for those frontends trades
one defect for another: a GPU window that switches away from its terminal
would hold the controller forever, and no peer could resize that PTY
again. The semantic arm cannot take over that job, because the
buffer-follow snapshot clears the viewport declaration that would drive
it.

sync_terminal_layout is therefore split into a frontend-kind-neutral half
(panel reconciliation plus controller liveness, which read only views,
windows and the controller) and a grid-only geometry half (TUI placement
plus the resize). The dispatcher runs the neutral half for every attached
frontend once per tick, then exactly one geometry arm per frontend kind.
sync_terminal_layout survives as the composition of both halves, so the
in-process editor loop and LOCAL are unchanged.

The loop body is extracted into sync_terminal_layouts_for_tick, which
makes the grid/semantic exclusivity structural rather than two adjacent
ifs, and lets the tests drive the real loop body instead of a
re-implementation.

The release that fires when a window has no placement stays in the grid
half deliberately: a semantic frontend has no window_placements entry at
all, so moving it into the neutral half would release a GPU session's
controller on every tick.

Bite-verified against two pre-images, because one is not enough here --
the naive guard fixes the storm and introduces the controller leak, so a
single revert would score the fix complete when it is not:

  pin                        main    naive guard   split
  settle (acc 2+3)           FAIL    pass          pass
  controller release (acc 6) pass    FAIL          pass
  grid still resizes (acc 5) pass    pass          pass

Real-path acceptance: a quiet child that counts SIGWINCH reports 144
frames in 4 s and WINCH 1..12 on screen against the pre-fix tree, versus
a settled screen with the fix. Acceptance 4 (input reaches the child and
returns) is a keep-working pin and passes on both sides -- key transport
was never the defect.

No protocol change; stays v20.
2026-07-25 15:22:04 -04:00
Levi Neuwirth 531fdf404e fix(dired): address PR #165 review round 1
F1 (real, small-window misbehavior). `dired.revert`'s re-seat runs after
the read settles, and `pmacs.editor.move_to_line` is AMBIENT -- it moves
whatever window is active. A user who switched buffers (or hit `q`)
while the re-read was in flight had an unrelated buffer's cursor moved
to a line index that only means something in the dired listing. The
paint was already safe because it names its buffer; the seat now runs
only while dired is still the active buffer, and `seat_cursor`'s doc
says which callers are unconditionally in the right place and why.
Pinned by a test that starts the revert, switches to a six-line file
before the pump, and asserts that buffer's cursor never moved -- and
that the dired buffer still reverts when it IS active.

F2 (a trap set for Stage 3). `fmt_size` used `%10d`, so a size past ten
digits -- 10 GB and up, ordinary for VM images and core dumps -- widened
the field and shifted mtime and name right on that line alone. Cosmetic
today, but `_layout` is exported as a contract and Stage 3's
column-classifying intercept is planned against it. It now takes
`fmt_mtime`'s discipline: exact bytes while they fit, else a
fixed-width magnitude, so precision yields to the invariant rather than
the other way round. This is not the deferred human-readable column --
the exact count still shows right up to where it cannot. Pinned with a
sparse 12 GB fixture that skips if the filesystem refuses it.

F3 (honesty and a doubled read). The symlink arm claimed the probe cost
"one syscall"; it was a full `read_dir` -- opendir plus one lstat per
child -- and on success `open_directory` immediately read the same
directory again. Since `open_directory` reads before touching editor
state and raises having changed nothing (acceptance 15's invariant), its
failure IS the "not a directory" answer: the probe is gone, one read
remains, and the comment says what it actually does. New test pins both
arms -- a symlink to a directory descends under the path the user walked
(canonicalization is lexical, so the link is not resolved), and a
symlink to a file opens with the target's contents.

F4 (deliberate failure mode). A tolerant listing recorded readdir
iterator errors without bound, and `std::fs::ReadDir` need not terminate
after yielding one. Cancellation is NOT an adequate backstop here --
which is the reason for a constant rather than a comment saying it is: a
dired listing carries no supersede key, so nothing cancels it. A
directory whose iterator produces nothing but errors now fails with the
last error the way an unopenable directory does, after
READDIR_MAX_CONSECUTIVE_ENTRY_ERRORS; the counter resets on any entry
that materializes. Documented as untested and why: faking a failing
iterator needs the walk generic over it, a refactor with no other
consumer.

Smaller notes, all taken: READ_ONLY_LIMIT renamed NAME_VARIANT_LIMIT (it
caps `<2>`..`<99>`, nothing read-only); `fmt_perms`' omission of
setuid/setgid/sticky documented as a decision tied to the M8.3 fixture's
nine-bit parser; `format_outcome` binds the slice in the pattern instead
of re-traversing; and `pmacs.path.canonicalize`'s `to_string_lossy` is
noted as inside the existing non-UTF-8-path deferral rather than an
exception to it.

Process note, learned the hard way twice now: the round-1 dired.lua
fixes were briefly wiped because a mutation-bite helper restores with
`git checkout --`, which reverts to HEAD -- so a fix must be committed
BEFORE it is bitten, not after.
2026-07-25 15:21:26 -04:00
Levi Neuwirth e7fa9e9720 test(dired): teach describe.key about mode scope; drop one overclaim
`describe_key_identifies_every_default_binding` iterated every binding
in the stack and asserted `pmacs.describe.key` resolves it context-free.
That held only because no builtin had ever bound a mode-scoped key:
dired is #129's first non-detection consumer, so its `n` / `p` / `g`
correctly resolved to nothing and the test went red on the feature
rather than on a defect.

It now sets the effective context per binding -- the mode for a
mode-scoped default, and explicitly NO mode for a global one, because a
leaked mode legitimately shadows a global chord of the same name
(dired's `RET` shadows `edit.newline-and-indent`, which is the point of
the mode) and would make the assertion compare the wrong pair. A floor
assertion keeps the new arm from going vacuous if the last mode-scoped
default is ever removed.

Also corrects a doc comment rather than leaving it to be believed:
acceptance 3c does not pin the descent ROUTING. Dired holds focus in its
own panel, so a raw `switch_buffer` lands in the same window and the
mutation is vacuous against that test; dedication is what distinguishes
the two paths, so the discriminating pin is the dedicated-panel test
next to it. Verified by mutation, not assumed.
2026-07-25 15:03:19 -04:00
Levi Neuwirth f71055a206 feat(dired): the directory view (Stage 1)
Dired is the file surface, not a rider on one: before Stage 0 (#162)
pmacs had no way to open a file by path, and browsing is the half a
user reaches for when they do not already know the path. Stage 1 ships
the view.

builtin/runtime/dired.lua: one buffer per directory named by the
canonical path (Q#DR2) with an ownership check before any paint (F7);
read-only intercept plus round-trip input (Q#DR3); a `dired` major mode
carrying mode-scoped keys (Q#DR8) -- RET/f visit, ^ parent, n/p, g
revert, q quit, s sort; cursor re-seated by basename across every
wholesale repaint (Q#DR9); file visits through
`pmacs.window.display_file` and directory descent through dired's own
window (Q#DR10); `C-x d` / `C-x C-j`; and `dired.kill-when-opening`
through the config registry.

Two Rust changes, both narrow:

* `read_dir` grows per-entry tolerance behind an opt (Q#DR6). Five
  per-entry conditions used to fail the entire listing, so a plain
  refresh of a busy directory could just fail; the module doc's claim
  that a tolerant wrapper was "the package's job" was false, because
  the primitive hands Lua one structured error and no partial vec.
  Per-entry readdir/lstat/readlink failures and non-UTF-8 symlink
  targets now land in an `errors` channel; parent-level failures and
  non-UTF-8 *names* stay fatal. The tolerance travels in the settled
  payload, so the Lua boundary keeps the bare-array shape the frozen
  M8.2 fixture consumes and never has to look the job back up. The read
  ops' opts parsing now rejects unknown keys, so a typo'd `tolerant`
  cannot silently degrade to the fatal contract.

* `normalize_buffer_path` is exposed as `pmacs.path.canonicalize`
  rather than mirrored in Lua. Q#DR2 named exposure the preferred end
  state; it needs no borrow plumbing, so dired's name-dedup and
  `display_file`'s `find_buffer_for_path` dedup cannot fork, and the
  mirror's Stage 2 removal is not owed.

tests/dired_acceptance.rs covers framing items 1-16 (22 tests), driven
through real key dispatch. Item 17 is the m8_1/m8_2/m8_3 gate.

One framing claim is corrected by the substrate: R2-3 expected a
dedicated dired panel to carry its dedication across a descent, but
`display_buffer` never replaces the buffer in a slot dedicated to
another one -- it discards every side-specific parameter and falls back
to the document window (Q#BP3 2.iii). Dired does not try to unpin the
user's panel; both arms are pinned.
2026-07-25 14:54:58 -04:00
Levi Neuwirth 3952db9657 Merge remote-tracking branch 'githubsucks/main' into HEAD 2026-07-25 14:26:21 -04:00
Levi Neuwirth ebcd2c4f6f fix(lsp): attribute a failing root resolver (COHERENCE §1.2)
COHERENCE.md §1.2 makes "a `pcall` around background wiring must log
attributed failure, never discard it" a standing rule, and names
`ensure_server`'s swallowed spawn failure as its canonical case — the
exact function this branch modifies. Round 1 deferred the resolver's
silent `pcall` as a Stage 3 concern. Under that rule it is not a
deferral, it is a fresh instance of the named anti-pattern added by a PR
touching the cited function, made worse by the memo: a raised error is
buried permanently for that directory and never observed again.

A resolver that raises, or returns a non-string non-nil, now leaves an
attributed trace naming the language and the directory. Returning nil
remains the documented decline and stays silent — pinned, so "report
failures" cannot be satisfied by reporting every resolution.

The report goes through `pmacs.editor.set_status`, NOT `pmacs.error`,
and that choice is the finding:

**`pmacs.error` does not exist.** Fifteen call sites across `async.lua`
(5), `syntax.lua` (4), `lsp.lua`, `mcp.lua`, `fs.lua`, `editops.lua`,
`autosave.lua`, and `commands/default.lua` report background failures
through it, each guarded `if pmacs.error then ...`. It is defined
nowhere in production; the only assignment in the tree is a test stub at
`src/editor.rs:9881`, and `type(pmacs.error)` is nil in a fresh
`EditorState` (probed, not inferred). `pmacs.errors` (plural) in
compile.lua is an unrelated namespace. So all fifteen reports are dead,
and the guard makes the silence look deliberate — which is why nobody
noticed. Writing the test is what caught it: the first version of this
fix used `pmacs.error` and its pin failed against a working
implementation.

Both bites recorded: dropping the report entirely fails the pin, and so
does reporting ONLY through `pmacs.error` — the dead-channel variant
this nearly shipped.

Not fixed here, deliberately: defining `pmacs.error`, the fifteen dead
sites, and surfacing the spawn failure itself. That last is Priority 1
work and a user-visible product behavior — what message, where, with
what guidance — so it needs its own framing rather than being smuggled
into an affinity PR.
2026-07-25 14:24:59 -04:00
Levi Neuwirth 0b0d5acd81 fix(find-file): review round 1 -- name the real test, pin two gaps
Three of the five review findings land here; the other two are recorded
as named deferrals in the framing on the dired branch.

Finding 1: the command comment cited "acc4", a name from a draft scheme
that no test carries. It now names the real test, and the comment splits
the shadowing consequence into the two cases that actually exist -- a new
bare name that matches an entry (shadowed) versus one that matches
nothing (creates normally) -- each pointing at its test.

Finding 2: the everyday new-file flow had no test. Typing a bare name
that is not a subsequence of any entry is the path users hit first, and
the only route combining free text with a relative join; every existing
new-file test used a name containing a separator.
find_file_bare_new_name_creates_in_the_root covers it, asserting the
parent is the prompt's root so the join itself is pinned.

Finding 3: the failure arm was never exercised, and as the review noted,
deleting the pcall would have passed the whole suite. Accepting a
directory candidate reaches display_file, whose load fails because
File::open on a directory succeeds and the read returns EISDIR;
find_file_accepting_a_directory_reports_instead_of_raising pins that this
surfaces as the command's status message, leaves the active buffer alone,
and closes the prompt. Verified by manual revert: with the pcall replaced
by a direct call, that test and only that test fails. scripts/bite could
not isolate it, since the guard and its test have no separating commit.

Finding 4 is documented at the command rather than left implicit:
accepting on empty input opens the first-sorted candidate, because
fuzzy_score returns Some(0) for an empty needle and filter_and_sort
breaks the tie lexicographically, so dotfiles lead and a directory can
lead. M-x and switch-buffer share the mechanism, so it is inherited
rather than introduced, and it is listed in the framing beside the
accept-semantics change that would close it.
2026-07-25 11:33:46 -04:00
Levi Neuwirth 35085b54d1 fix: rustfmt the acceptance suite and pin two untested arms (round 1)
The blocker was process, not design. The test file was committed before
`cargo fmt` ran, so the reflow of five over-width assertions sat
uncommitted in the working tree while the branch as pushed failed the
first gate in CLAUDE.md. The "fmt clean" reported on the PR described
the worktree, not the branch. Gate results are only meaningful run
against the pushed tree, so this commit lands the formatting first and
the gates are re-run against it.

Two pins review asked for, each covering a branch the nine acceptance
tests left untested:

- A **string** `config.root` as an affinity key. acc17 covers only the
  function form, so `return configured, "config"` had no test. The bite
  puts both files in their own marked project: drop the config arm and
  they key on their own detected roots and spawn two servers, so one
  server on the configured root is only reachable if the override wins.
- `root = false` reads as unset. Defended by a truthiness check rather
  than `~= nil`, previously by comment alone. Under `~= nil` the config
  arm returns `false, "config"` and `file_uri_for(false)` returns nil, so
  the file lands on a rootless server instead of its detected project.

Each was falsified against exactly the mutation it targets and neither
against the other.

Also documents an asymmetry review caught: `project_root_for`'s
"detected" arm is canonicalized for free because `pmacs.project.detect`
canonicalizes before walking, but a **configured** root — string or
resolver return — is fed to `file_uri_for` exactly as written, and the
affinity key is that URI. On macOS a resolver returning `/var/…` and a
detected `/private/var/…` are therefore different keys for one
directory, silently yielding two servers for one project. There is no
Lua-side canonicalizer to normalize it, and Stage 3's Lean resolver is
the first real consumer, so the obligation is stated in the
`config.root` doc comment where that resolver's author will read it.
2026-07-25 11:19:43 -04:00
Levi Neuwirth 4a2aa92510 style: rustfmt the find-file acceptance harness 2026-07-25 11:13:57 -04:00
Levi Neuwirth 2a0884b377 feat(find-file): open a file by path with C-x C-f
Dired arc Stage 0 (docs/dired-framing.md section 10, Q#DR11). Until now
pmacs had no discoverable way to open a file by path: no find-file
command and no C-x C-f binding, so a file entered a session only from
the CLI, an LSP jump, a project-search visit, or C-x C-r, whose prompt
does pass free text through but completes only over the recent list.

The command prompts with completion rooted at the active buffer's
directory, or the process cwd when the buffer has no backing path, and
opens the result through pmacs.window.display_file. A path that does not
exist yet creates a buffer bound to it with the "[new file]" status,
which is Emacs parity and comes from resolve_target_buffer rather than
anything added here. Nothing is written to disk until the user saves.

Two substrate facts shape the design and are documented at the command
rather than left to be rediscovered.

Completion is flat: the files source lists one directory and yields bare
basenames, and a custom function source could not do better, because
sources are called with no arguments and run synchronously outside any
coroutine, so a callback can neither see the input to re-root on nor
await a directory listing. Hierarchical completion is a named Rust
change in the framing.

A selected candidate shadows typed text: recompute_candidates selects
index 0 whenever the candidate list is non-empty, and
resolve_accepted_value returns the candidate over the typed contents. So
typed text reaches the accept handler exactly when the input filters
every candidate away, which for basename candidates under a subsequence
filter means when it contains a separator. That makes the deeper-path
case work verbatim and leaves one hole: a new bare name that is a
subsequence of an existing entry opens the existing file. The acceptance
pins that as a decision rather than an accident; closing it needs a Rust
change to accept semantics that Stage 0 deliberately does not make.

A leading tilde is expanded before the path reaches the core, because
get_or_load_buffer normalizes the path it stores but loads from the raw
one -- so an unexpanded tilde path deduplicates against an already-open
buffer yet fails to load a file that is not open yet.

The prompt field starts empty and names its root in the prompt string
instead: any prefill would contain a separator and silently disable
completion.

Acceptance is dispatch-driven throughout -- a real C-x C-f, real typing,
a real RET -- so a dead binding cannot pass vacuously and the Lua
lifecycle accept(), which bypasses the path interactive input takes, is
not used.
2026-07-25 10:45:50 -04:00
Levi Neuwirth 1ae5963e9d feat(lsp): one server per detected project root (Q#LN15)
`ensure_server` reused any live server whose `language_id` matched,
regardless of project root — its own comment documented this as a known
post-v0.1 limitation. For project-model-strict servers that is a
correctness failure, not a rough edge: `lake serve` is bound to one Lake
package, rust-analyzer and gopls to one workspace, so the second project
a user opens gets a server that cannot resolve its imports.

Server affinity is now keyed on the project root, with one rule that
keeps the change from regressing every other language:

  The affinity key is the root only when a root was actually FOUND.

`project_root_for` never returns nil for a file that has a path — its
last resort is the file's own directory — so a naive `(language_id,
root)` key would give every directory of loose scratch files its own
server, for every language: two stray .py files in different directories
would spawn two pyrights where today they share one. It now returns
`root, source` with source one of "config" / "detected" / "fallback",
and only the first two become an affinity key.

Matching is on the spawned spec's `root_uri`, nil matching nil, so the
fallback spawn passes `root_uri = nil` for the key and the stored spec to
agree. `cwd` still carries the directory, and `build_initialize`
(src/lsp.rs) derives the identical `rootUri` from `cwd` when the field is
None — using a percent-encoder with the same allowed set as Lua's
`file_uri_for`. The initialize payload for that case is therefore
byte-identical to before; only what the reuse loop matches on changes.
`build_initialize` is the only reader of `spec.root_uri` in the tree.

Two consequences, both deliberate and both asserted rather than
discovered:

- A server hand-spawned from init.lua with only `cwd` set also reads
  back nil, so a root-bearing attach will not adopt it. We cannot know
  which root it was meant to serve, and guessing wrongly routes a
  project's files to the wrong server.
- Opening files across N project roots spawns N servers. rust-analyzer
  has the same property and no editor caps it by default; `pmacs.lsp.stop`
  is the manual escape and an LRU reaping policy stays deferred.

`config[language].root` may now be a `function(path) -> string|nil` as
well as a string, for languages whose root rule the shared marker walk
cannot express — an innermost-wins walk cannot find an *outermost*
marker. A resolver returning nil declines and falls through to the marker
walk. Results are memoized per directory because hoisting the root
computation above the reuse loop puts it on every attach rather than
every spawn; the memo is keyed weakly by the resolver function itself, so
replacing `config[lang].root` cannot serve a root the old one computed.

`pmacs.lsp.list()` rows gain `root_uri` and `cwd`. `root_uri` is the spec
field verbatim, deliberately not the URI the server was initialized with.

No protocol change. No Lean content: this is the shared affinity function
for every LSP language, so it ships as its own PR and is exercised
through rust, python, go and typescript against `pmacs_fake_lsp`.

tests/lsp_multi_root_acceptance.rs covers acceptance 13-21. Every fixture
sets `pmacs.project.set_search_boundary` at its own tempdir root:
without it the marker walk climbs to the filesystem root, and a stray
`.git` above the temp directory would turn the markerless cases into
detected ones — the assertions would still pass while testing nothing.

Refs docs/lean4-mode-framing.md Q#LN15, acceptance 13-21.
2026-07-25 10:36:11 -04:00
Levi Neuwirth 34767d332d fix(test): make acc12 pin the claim it names (review round 1)
Review finding: acc12's server-list assertion could not fail for the
regression class it was written to catch. The shared `editor()` helper
runs `pmacs.lsp.config = {}` before any buffer opens, so
`#pmacs.lsp.list() == 0` holds for every language regardless of what
Stage 1 ships -- a Stage-3 front-run that added
`pmacs.lsp.config.lean4` in a builtin runtime file would have slipped
straight past it. The same vacuous-assertion shape as #155 R2.

acc12 now asserts the actual claim against a PRISTINE `EditorState`,
before any config wipe: no builtin runtime file defines
`pmacs.lsp.config.lean4`. A non-vacuity check pins that the same lookup
finds `pmacs.lsp.config.rust`, so this cannot pass merely because the
table is empty or absent.

Bite-verified: adding `pmacs.lsp.config.lean4 = ... { command = "lake",
args = { "serve" } }` to `builtin/runtime/lsp.lua` fails the test; the
stub was reverted.

The process-list half is kept and its comment now says why it survives
the wipe: a direct probe spawn from a future `lean.lua` shows up there
whatever `pmacs.lsp.config` contains.

Also fixes a stale column in a `highlight.rs` comment -- the Lua table
brace in `local t = {}` is at col 10, which is what the code already
used.

Gates rerun: fmt and strict workspace clippy clean; 1,826 default +
2,003 CRDT library tests; lean4 Stage 1 9/9; M4 121; required GPU 152;
isolated-config workspace sweep 3,150 across 90 suites; diff check clean.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-07-25 10:18:27 -04:00
Levi Neuwirth 0c922682c0 feat(lean4): editing surface + Stage 1 acceptance (Q#LN5, LN6, LN17)
Completes Arc 8 Stage 1: the Lua-side tables that turn a recognized
grammar into a usable mode, plus the acceptance suite for all twelve
framing criteria.

comment.lua -- `lean4 = "--"` (Q#LN5). Line comments only; Lean's block
comment `/- -/` and docstring `/-- -/` belong to the comment arc's own
named deferral and this lane does not front-run it.

pair.lua -- `⟨⟩`, `⦃⦄`, `⟮⟯` alongside the ASCII brackets (Q#LN6). The
anonymous constructor is among the most-typed constructs in Lean;
omitting it would make the pair set feel broken. The other two ride along
because the Stage 4 input method can produce them, and a bracket the pair
set does not understand is worse than one it does. All three sit outside
the nine built-in pair chars, so per Q#AP1 their undo is
cross-peer-degraded -- the documented, pre-existing limitation of
user-extended pairs. No `''`: Lean uses the prime as an identifier suffix
(`h'`, `foo'`), the same reason Rust excludes it.

syntax.lua -- the `lean` -> `lean4` modeline alias (Q#LN2), so an Emacs
`-*- mode: lean -*-` or a Vim `ft=lean` line is not stranded by the entry
being named `lean4`.

syntax.rs -- the `lean` -> `lean4` injection alias (Q#LN17), so both
```lean and ```lean4 fences highlight. The Lean 3 spelling is mapped
forward deliberately: a ```lean fence is overwhelmingly Lean 4 in
practice.

highlight.rs -- `warning` moves from bold red to bold BRIGHT red. Writing
the test found the collision: `number` is plain `fg(1)`, so `sorry` and
the literal `42` beside it were the same colour, differing only in the
bold flag. `sorry` means "admitted, not proved" and is the one token in a
proof file a reader must never skim past, so it now gets the loudest
entry in the table and the test asserts the full style rather than the
colour.

Twelve criteria, seventeen tests. Notes on the ones that could have been
vacuous:

  * acc4 uses a `.txt` fixture, not `.lean` -- on a `.lean` path the
    extension alone yields `lean4` and the assertion would pass with the
    alias table empty. acc4b removes the alias and pins that the raw name
    survives, so acc4 cannot silently stop testing anything.
  * acc11 goes through the real `_parse_now` injection path and asserts a
    `lean4` CHILD LAYER appears. `pmacs.parse.injection_aliases` is a
    documented write-only proxy, so an alias-table read would have proven
    nothing about the parser; acc11b pins that a misspelled fence still
    resolves to nothing.
  * acc12 asserts through the process supervisor and the server list that
    opening a Lean buffer spawns nothing. This is not decorative: the
    machine this arc was scouted on has elan installed with no default
    toolchain, where `lake --version` itself fails, and Stage 1 must be
    unaffected by that.

Gates: fmt and strict workspace clippy clean; 1,826 default + 2,003 CRDT
library tests; lean4 Stage 1 9, comment toggle 14, auto-pair 45,
injection 4; M4 121; required GPU 152; isolated-config workspace sweep
3,150 across 90 suites; `git diff --check` clean.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-07-25 09:59:48 -04:00
Levi Neuwirth e74506879f
Merge pull request #155 from levineuwirth/bottom-panel
Bottom panel Stage 1: window placement + TUI side windows
2026-07-25 00:21:07 +00:00
Levi Neuwirth 9110f9f32c fix(window): keep pmacs.window.buffer() infallible with no argument
PR #155 review round 2, self-review of the round-2 commit.

The round-2 change labelled "minor" — resolving both arms of
pmacs.window.buffer() through the acting frontend for uniformity — made
the NO-ARGUMENT arm fallible. `acting_frontend` follows the interactive
origin, which can name a frontend that has no registered view: a bare
`dispatch_key` from an unattached peer does exactly that. `selected_window`
then raises "acting frontend has no layout" instead of answering.

Nothing surfaced that error, because the runtime callers do not pcall it.
killring, syntax, autosave, pair, indent and comment all read
pmacs.window.buffer() on ordinary edits, so the raise silently dropped
the operation: kill_ring_acceptance went 30/30 to 25/5, with
frontend_detached_drops_per_frontend_state reporting only "B has kill
state". main is 30/30, and reverting this one file restored it.

The no-arg arm is back on ambient active_buffer_id() and now documents
why that is deliberate rather than an oversight: dispatch sets
active_frontend to the acting frontend before running a command, so the
two agree on every real path, while only the ambient resolver has the
fallback that makes it total. The explicit-window arm keeps its Q#BP11
layout validation, which is what the arc actually needed.

acc19c pins it through the real path — a buffer.after-edit subscriber
reading pmacs.window.buffer() during a viewless peer's dispatch_key —
rather than by calling the binding directly. Bite-verified:
scripts/bite bbe4152 src/lua_bindings/mod.rs --test
bottom_panel_stage1_acceptance -- acc19c goes red with the exact
"acting frontend has no layout" traceback.

The ledger also records two gating facts found on the way: the workspace
sweep must run with an isolated XDG_CONFIG_HOME, because the real user
init.lua installs a local package and the losing race leaks a status
message into painted-frame comparisons; and a latent pre-existing main
bug in the buffer CRDT undo path, which is not this branch's and whose
proptest seed is deliberately not committed here.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_012j4omtTMn9v1UfmHQb9ap6
2026-07-24 20:05:51 -04:00
Levi Neuwirth 52e7598da0 test(window): press the peer's own mode line in acc30c
The round-2 peer press landed in the peer's CONTENT area, so it never
reached `arm_window_drag` — the exact path Finding 5 names — and the
case bit nothing. It now presses the peer's own mode-line row, where a
single global drag slot is overwritten (and, since that lone window owns
no boundary, cleared outright).

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-07-24 18:37:10 -04:00
Levi Neuwirth 4d44be5d7b fix(terminal): implement the Q#BP7 growth re-arm and pin it honestly
PR #155 review round 2.

Finding 1 (must fix): Q#BP7 item 1 — "growth reaching the live tail
re-arms follow (top -> None), only when no selection is active" — was
never implemented. `at_bottom` is the instantaneous geometric readout
`scroll_offset == 0`, which a still-anchored view satisfies whenever it
happens to be tall enough to reach the tail, so the round-1 assertion
could not see the gap: the next rows the child printed pushed the
anchored view back into history.

`rearm_follow_on_growth` now clears `top` when a viewport-size
declaration makes the view cover the tail and no selection is frozen,
and every size-declaring path (`snapshot_for_view`, `record_view_size`,
`view_status_for_size`) routes through one `declare_view_size` helper so
grid and semantic declarations cannot disagree. `scroll_view` and
`begin_selection` deliberately stay out: they write `top` themselves,
and `scroll_view` already owns the scroll-driven arm.

New acc32b is the pin the review asked for: scroll into history, grow
past the tail, then release a SECOND burst of child output through a
filesystem gate and assert the view moved with it.

Finding 2: the PTY fixtures emitted LF-only output, which staircases
rightward until every row clips to blanks past the viewport width — so
the round-1 anchor assertions compared "" with "" and could not fail.
Both fixtures now emit CRLF, and each anchor comparison is guarded by
`assert!(!top_before.is_empty())`.

Finding 3: acc33's contrast case asserted nothing, and the behavior it
claimed was false as coded. With the re-arm in place it is true and now
asserted: clearing the selection at the same geometry re-arms follow and
leaves the frozen anchor.

Finding 4: `start_run` gated the panel branch on `display == "panel" or
already_in_panel(..)`, so an explicit `display = "current"` lost to the
inference — and that value is the documented user-facing opt-out from
the Stage 3 default flip. Now gated on OMISSION. acc19b gains the
explicit-"current" case.

Finding 5: `window_drag` is a `HashMap<FrontendId, WindowDragState>`, so
a peer's mode-line press can no longer steal or clear another
frontend's in-flight gesture, and concurrent drags are legal. Cleared on
detach. acc30c gains the mode-line-press case.

Minor: `pmacs.window.buffer()` resolves both arms through the acting
frontend using the shared `lookup_window` / `selected_window` validators
rather than re-implementing them beside an ambient `active_buffer_id()`.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-07-24 18:32:23 -04:00
Levi Neuwirth 7e1bfb6dc5 test(window): pin the terminal anchor, not the tail-relative offset
`TerminalViewStatus.scroll_offset` is the retained rows between the
VIEWPORT and the live tail, so it necessarily tracks viewport height: an
assertion that it survives a panel height change unchanged is either
vacuous or wrong, and it went red once under a loaded sweep for exactly
that reason. Q#BP7's invariant is that the ANCHOR is frozen, so acc32
and acc33 now compare the first visible row's text across the change,
and additionally pin the follow behavior that distinguishes them: a
shrink never re-arms follow, growth reaching the tail does, and growth
with a frozen selection does not.

Both also wait for the child's last line before sampling, so neither
races further output.

Also records the round in docs/active-work.md.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-07-24 15:21:48 -04:00
Levi Neuwirth 90fc7a913e fix(window): wire the side-window split guard and scope the divider drag
PR #155 review round 1.

Finding 1 (must fix): `try_split_active` had no production caller —
`pmacs.window.split_horizontal` / `split_vertical`, and therefore
`C-x 2` / `C-x 3`, still went through plain `split_active`. Splitting a
focused panel made the root wrapper's final child a split rather than
`Leaf(side)`, which both `Layout::compute`'s fixed pass and
`document_subtree` key on: the panel band reverted to 1:1 weight
division and an ordinary window ended up living inside it. Both bindings
now route through the guard, and acc26 asserts through the real Lua
path — a direct core call passes with the guard unwired, which is how it
survived the first round.

Finding 2: the armed-drag early return now checks the arming frontend,
so one frontend's in-flight gesture cannot cancel or swallow another's
mouse events. New acc30c.

Finding 3: `paint_mode_line_graphemes`'s doc block was left heading
`paint_divider_segment`; moved back.

Finding 4: a recompile carries no `display`, so it took the raw switch
and duplicated a panel-placed `*compilation*` into the document window.
`start_run` now detects that the buffer already owns the panel slot.
`pmacs.window.buffer` gained an optional window argument so an adopter
can ask without selecting the panel first. New acc19b.

Stage-2 hazard pins the review asked for, both in `src/daemon.rs`:
a fresh attach while LOCAL is focused in a panel inherits LOCAL's
document buffer, and an initial-target bootstrap whose `after-load`
hook creates and selects a panel still reasserts into a document window.

Minor: dropped listview's dead `p.side`; documented `focus_window`'s
caller-validates contract; `jump_back` restores through `focus_window`
so the "every focus change" contract holds; `params` / `resize` default
to the acting frontend's selected window rather than the ambient one;
widened the flexible-division math to u64 intermediates.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-07-24 15:07:35 -04:00
Levi Neuwirth 85a07f378c test(vterm): gate terminal readiness on a file, not on host bytes
Both earlier attempts in this branch were wrong, and the diagnostic they
added is what proved it: the macOS failure reported a stable
`rendered prefix: 6/15 ("VTERM_")` BEFORE and AFTER the CRLF change, with an
identical cursor, across two completely different child layouts. Identical
truncation under different layouts cannot be a layout problem.

The real mechanism is pinned by the repository's own unit test,
`cell::tests::diff_split_by_unchanged_cell_is_two_spans`: `cell::diff` splits
a run at any cell where `prev == next` and never transmits that cell. So when
a character of the marker already happens to sit at its destination, the host
receives the marker with that byte MISSING, not merely escaped around. The
constant 6 is the distance to the first such hole.

That makes escape-stripped matching unsound in kind rather than merely
insufficient: no matching strategy recovers a byte that was never sent. It is
removed, and `wait_for_output` is strict again. What remains asserted through
host bytes are protocol escapes pmacs writes directly — the OSC 52 clipboard
reply, the alternate-screen and bracketed-paste resets — which are not painted
cells and which the differ never touches.

Readiness now gates on a file the child publishes, the pattern the reliable
sibling test in this file already uses. That the child's output reaches the
SCREEN stays asserted in-process over `snapshot_text`, at the layer that can
actually see it; this test keeps what it uniquely owns, the host lifecycle.

`strip_ansi` and `longest_rendered_prefix` are kept as failure diagnostics
only, and now carry a case pinning the dropped-cell shape so the wrong remedy
is not reached for again. The new readiness wait reports startup breadcrumbs
on timeout; the plain helper reports only the missing path, which is the least
useful thing to know at exactly that moment.

Both the readiness gate and its timeout diagnostic were falsified by pointing
the child at a path the test does not watch.

Test-only; no runtime code.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-07-24 14:27:21 -04:00
Levi Neuwirth 683c9b86aa feat(window): adopter placement opt-in and the Stage 1 acceptance suite
- `listview.open`, `compile.run`, and `pmacs.terminal.open` all take the
  same strict `display = "current" | "panel"`, validated before any
  buffer, session, process, or wrapper exists. Omission keeps today's
  behavior; Stage 3 flips the default.
- `listview.quit` / `compile.quit` delegate to `window.quit` only when
  the buffer really is in a side window, so the presentation is deleted
  or restored instead of leaving a source buffer stranded in the slot.
- LSP `visit_location`, LSP go-to-definition, and compile `visit_error`
  route through `display_file`, so a visit from a panel lands in the
  document target and fires its hook with that window active.
- `window.quit`'s Delete arm focuses the revalidated remembered origin.
- Capability fallback discards an accompanying `height` rather than
  rejecting the call.
- `window.min-height` clamps a below-floor value on read instead of
  refusing the write.
- `tests/bottom_panel_stage1_acceptance.rs`: 42 tests over the framing's
  Stage 1 criteria, including the two production `Layout::compute`
  callers, the recursive minima, hide/reappear, the final-focus matrix,
  quit chains at the depth cap, per-frontend jump origins, the divider,
  and a real-PTY pin of Bet B1.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-07-24 14:10:45 -04:00
Levi Neuwirth f77ff3074d test(vterm): write CRLF from the raw-mode probe
The diagnostic added in the previous commit answered the question on its
first macOS run:

    rendered prefix: 6/15 bytes ("VTERM_") — child text rendered only partially

So the child wrote and the host received part of the marker, but stripping
escapes did not rejoin the rest: other repainted cells sit between the two
pieces, not just cursor moves.

Six characters is exactly what fits before the right margin of this
session's 40-column child. The probe writes bare `\n`, and the supervisor's
PTY trampoline runs `stty raw`, which clears OPOST — so a lone `\n` moves
down without returning to column 1 and every line staircases five columns
right. After twenty lines the marker starts in the right margin, wraps
mid-word, and reaches the host as two pieces that no contiguous match can
join.

That also explains the intermittency: the wrap column depends on whether
pmacs has already resized the PTY from the requested 40 columns to the
window width, which races the child's first writes.

Write explicit carriage returns so every line returns to column 1 and the
markers start there. The fixture was wrong about its own line discipline;
the emulator was behaving correctly throughout.

The escape-stripped matching and the rendered-prefix diagnostic from the
previous commit are kept: they are what produced this answer, and they keep
the next such failure legible.

Test-only; no runtime code.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-07-24 14:02:25 -04:00
Levi Neuwirth 6c8a76e235 feat(window): window parameters, fixed extents, and the display policy
Stage 1 substrate for the bottom-panel arc (docs/bottom-panel-framing.md).

- `WindowParams` (side / fixed_rows / dedicated + implementation-owned
  quit action and remembered document origin), `Side`, `QuitAction` with
  a bounded replacement history, and the `MIN_WINDOW_OUTER_ROWS` floor.
- `Layout::compute(area, fixed)` allocates fixed rows before dividing the
  remainder by weight; both production callers feed the same shared map,
  including the peer-presence overlay pass that derives its own rect.
- `subtree_min_rows` / `interactive_min_rows`: the recursive minima, and
  `boundary_below` for the shared drag / keyboard resize boundary rule.
- `FrontendView` gains `panel_capable`, `frame_geometry`, and the derived
  `panel_hidden`, each spelled explicitly at every construction site.
- `EditorCore`: `primary_document_window`, the non-side target rule,
  `display_buffer` + placement policy, `quit_window`, side-window removal
  on `kill_buffer`, per-frontend jump entries with origin windows, and the
  shared resolve/load-without-switch seam the initial-target bootstrap now
  uses too.
- `EditorState`: the panel reconciliation transaction, geometry
  declaration, the side-window `dispatch_idle_for` gate, divider paint,
  and divider drag.
- `pmacs.window.display / display_file / quit / panel / params /
  set_params / resize / display_target`, plus `builtin/runtime/window.lua`
  with `window.panel-height`, `window.min-height`, and the resize commands.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-07-24 13:53:14 -04:00
Levi Neuwirth 8ef2fa0793 test(vterm): match host output past the differ's cell-skipping
The macOS `VTERM_ALT_READY` flake finally reported itself through #151's
breadcrumbs, identically in two runs: pmacs still running, `init.lua`
reached, `terminal.open` ok, and a settled screen whose tail is nothing but
`\x1b[22;42H` repeated 133 times.

That cursor is the evidence. A blank terminal parks at 1;1. Column 42 is
where the cursor lands after writing a 15-byte marker that ends at column
41 — so the child DID write and the emulator DID receive it. What failed
was the assertion: `wait_for_output` required the needle to appear as
contiguous bytes, but the TUI differ paints only changed cells and skips
ones that already match, so a run held contiguously on one screen row can
still reach the host as `PREF<cursor-move>IX`.

Match over escape-stripped bytes when the needle is plain text. This cannot
mask the failure that matters: text the child never wrote is absent from
the stripped stream too, so a genuinely silent child still fails. Needles
carrying their own escape (the OSC 52 clipboard reply) keep the strict path,
since stripping would consume the bytes under test.

The failure arm now also reports how much of the needle rendered, so the
next occurrence distinguishes "nothing reached the host" — a PTY/spawn
fault — from a partial render, instead of leaving a tail of pure escapes
that cannot tell them apart.

Both helpers are pinned directly, including that stripping rejoins a split
run without inventing absent text. `strip_ansi`'s first draft mishandled
`ESC ( B`, whose intermediate byte makes it three bytes rather than two;
its test caught that.

Test-only; no runtime code.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-07-24 13:49:14 -04:00
Levi Neuwirth 0dd16a56e8
Merge pull request #148 from levineuwirth/gpu-initial-target
feat(gpu): open an initial file before window startup
2026-07-24 15:18:03 +00:00
Levi Neuwirth 861a048c88 test(ci): diagnose the vterm PTY flake; drop the macOS outline budget
18 of the last 60 CI runs failed (30%), including repeatedly on `main`.
Every failure is macOS-only and hits BOTH Lua flavors, so it is the
runner, not LuaJIT. Sampling 7 showed only two tests.

**m8_9 outline budget** — `outline_5_level_100_entry_renders_within_100ms`
is a wall-clock budget observed at 147ms and 149ms against 100ms on
GitHub's shared macOS runners, while Linux lands comfortably under. The
measurement and its printout now always run; only the ASSERTION is gated
on `!cfg!(target_os = "macos")`, exactly as
`composition_overhead_under_ten_percent` already is in `src/editor.rs`
for the same reason. A real regression still surfaces on Linux, on the
perf gates, and in the number printed to the log.

**vterm PTY smoke** — deliberately NOT a timeout bump. Instrumenting
locally showed the failing wait completes in 40ms against a 10s budget
(250x headroom), while the genuinely tight wait in the same test (2.86s
against 5s) never fails. Four hypotheses were eliminated with evidence:

  - python3 cold start: the sibling test at :494 spawns the same
    /usr/bin/python3 with a TIGHTER 5s budget and passes in the very
    runs where the smoke fails ("3 passed; 1 failed");
  - config resolution: XDG_CONFIG_HOME is read straight from the env
    (src/config.rs:49), no platform branch;
  - a stalled idle loop: the run loop polls on a 60Hz frame timeout and
    ticks the supervisor every frame (src/editor.rs:2522), so child
    output drains without input;
  - a too-small budget: see the 250x headroom above.

The real defect this commit fixes is that NONE of those could be
distinguished from the CI log, which carried only "host output never
contained VTERM_ALT_READY" plus a tail of escape bytes. init.lua now
writes breadcrumbs (reached / terminal.open ok-or-error) and the timeout
reports whether pmacs is still alive plus each breadcrumb, so the next
occurrence names its own cause:

  startup: pmacs still running; init.lua reached="1"; terminal.open="ok"

Verified non-vacuous: forcing the needle to never appear produces the
line above, which also proves io.open works in pmacs's Lua — otherwise
the breadcrumbs would silently read MISSING and mislead.

Test-only; no runtime code.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Q5BkezMppbpCgGAYk2ftxV
2026-07-24 10:34:36 -04:00
Levi Neuwirth 6c06815ee4 Merge githubsucks/main into gpu-initial-target
Integrate folding Stage 2 and its landed-state documentation with the
protocol-v20 GPU initial-target branch. Preserve per-session fold projection
selection in the target bootstrap transaction and retain v19 compatibility
coverage after the later protocol bump.
2026-07-24 10:21:37 -04:00
Levi Neuwirth be8c67c30c fix(daemon): contain failed target sessions
Shut down bootstrap sockets on every dispatcher-side failure and reject
frontend events whose session state was never installed. This prevents a
lingering failed client from reaching absent render/size state.

Track target-side CRDT upgrades independently from load/create status so a
deduplicated hidden buffer is published to every existing grid replica. Add
real-daemon regressions for both failure containment and replica publication.
2026-07-24 10:10:31 -04:00
Levi Neuwirth b750000d06 fix(fold): key the managed Lua widening on the EFFECTIVE edit site
PR #149 review round 5, finding 1 — correct, and both round-4 bugs did
survive through the intercept path.

Round 4 moved the widening off the point and onto `edit_start_of(&op)`,
but ran it in `run_buffer_edit` BEFORE `run_managed_edit`. A managed
buffer intercept may legally rewrite `pos` / `start` / `end`
(`LuaInterceptView::intercept_edit`), so the requested op is not where
the edit lands:

  - requested outside -> intercept relocates inside: the edit stayed
    hidden;
  - requested inside -> intercept relocates outside: an unrelated fold
    opened.

The seam still covers BOTH paths — hooking only `run_managed_edit` would
let an interactive `bypass_intercept` edit escape, which is why the
framing put it on the common entry — but each path now keys on its own
effective site:

  - `run_bypass_edit` applies its op verbatim, so `run_buffer_edit`
    hooks it there;
  - `run_managed_edit` hooks after the intercept chain settles and
    before the apply, on the op the chain returned. A chain that raises
    applies nothing, so it unfolds nothing.

The registry borrow is released at that point, and the helper reads only
`SharedCore` + the fold registry, so no borrow conflicts with phase 3.

Three new tests, all through real `M-x` with a real
`pmacs.buffer.add_intercept`: relocate-into-a-fold must unfold,
relocate-out-of-a-fold must not, and a rejected chain must not. Each
asserts the buffer text first, so the test fails loudly if the intercept
stops relocating rather than silently passing.

Suite 45 -> 48.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Q5BkezMppbpCgGAYk2ftxV
2026-07-23 21:45:33 -04:00
Levi Neuwirth 90bb86d355 fix(fold): address PR #149 review round 4
All four findings were correct.

F1 (major) — the Lua widening keyed on the POINT, not the edit site.
Q#FD19 condition (iii) is `edit.range.start`; `run_buffer_edit` discarded
`op` and opened whatever fold contained `window.cursor`. Two wrong
behaviors followed: a command inserting elsewhere opened an unrelated
fold at the point, and — worse — a command editing INTO a fold from an
outside point left its edit hidden. `run_buffer_edit` now reads
`edit_start_of(&op)` before `op` is consumed and passes it down. The
`apply_active_edit` funnel stays point-keyed, which is correct and
deliberate: the six primitives, yank, and query-replace all place point
at the edit site first, and only the Lua path can diverge — now said so
in the doc comment.

The acceptance test encoded the wrong behavior (inserted at byte 0,
expected the cursor's fold to open). Replaced by two tests that pin both
directions, plus the framing's named **comment-toggle** case driven
through the real `M-;` on a file-backed Rust buffer rather than a
synthetic mutator.

F2 (major) — hidden-cursor motion normalized only the row. `move_up` /
`move_down` clamped `coord.row` but derived `goal` from the hidden
line's raw column, and returned early at a buffer boundary without
normalizing at all, so `Up` inside a fold headed on line 0 left the
logical cursor hidden. Added `normalize_cursor_to_visible`, which
projects the whole POSITION through `visible_position` as a real
mutation before any step is computed (and drops the sticky goal column,
since the jump is discontinuous). Paging shares it — the same latent
bug. The old test used equal-width lines and asserted only the line, so
it could not tell the two apart; the new fixture is deliberately ragged
and asserts the resulting BYTE in both directions, plus the boundary
case.

F3 (moderate) — `set_view_top` bypassed the fold clamp. Q#FD12/Q#FD18
say `view_top` is always set through `clamp_view_top`, naming the
`set_view_top` contract specifically. Rendering repaired it at the next
frame, but until then `view_top()` handed out a hidden line and
command/event reckoning could start from a non-visible origin. The
clamp now lives in the setter — the contract's home, what `saveplace`
and `pmacs.editor.set_view_top` call. New test reads `view_top()`
directly after the setter, before any paint.

F4 (moderate) — the suite claimed items 1–14 but omitted approved
clauses. Added: peer SELECTION endpoint projection with hidden interiors
dropped; the crossing-fold repeat for the peer cursor AND a peer
selection endpoint; a style/syntax span straddling a fold (alignment on
the shifted row); the completion popup anchored below a fold; and peer
presence in the split-buffer case using the RECIPIENT window's map.

Suite: 35 -> 45 tests. Eight new bite cases, each falsifying exactly the
line that implements its claim.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Q5BkezMppbpCgGAYk2ftxV
2026-07-23 20:46:47 -04:00
Levi Neuwirth b3e18150cc test(fold): make the inactive-buffer unfold guard actually bite
Bite-verification found the Q#FD19 active-window-buffer requirement's
test vacuous: `other` held no fold, so removing the guard changed
nothing — `unfold_containing` on a store-less buffer is a no-op either
way. The guard's real job is to stop the invoking frontend's POINT from
naming a place in a buffer it is not looking at, so the fixture now
gives `other` a fold whose range contains the active window's cursor
byte. Reverting the guard now opens it (0 != 1).

Verified: with `if window.buffer_id != id { return; }` replaced by a
no-op, the test fails on a clean assertion.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Q5BkezMppbpCgGAYk2ftxV
2026-07-23 19:33:35 -04:00
Levi Neuwirth 313b1ff77a feat(fold): Stage 2 — grid (daemon-rendered) collapse
Implements docs/folding-stage2-framing.md rev 4. The daemon grid
renderer now consults the fold store: hidden lines are omitted, rows
below shift up, and every consumer that assumed
`display_row = source_line - view_top` routes through one shared
projection. No wire schema change and no protocol bump (Bet B6) — the
collapse is entirely daemon-side; the GPU path is Stage 3.

The spine (Q#FD12) is `src/fold_view.rs`: a `VisibleLineMap` derived
from `FoldRegistry::folds` plus a window's line offsets and never
stored. Its unit is a merged **hidden component** — overlapping OR
adjacent hidden intervals unioned, each keeping the one visible
`head_line` and that line's exact `head_position`. Adjacent intervals
merge because the later fold's head is itself hidden, which is what
makes nesting, shared heads, and crossing overlap all resolve to a
head that can actually render (round-3 F2).

Instances are short-lived and built **per rendered window** and **per
command/event operation**, never once per frame: `paint_frame` renders
several windows that may show different buffers, so a singleton would
leak one pane's folds into another (round-2 F2). The render instance
rides on a lifetime-bearing `Viewport<'a>` as `Option<&'a
VisibleLineMap>` — a shared ref is `Copy`, so `Viewport` stays `Copy`
(Bet B7).

Rendering:
- `TextView::render` walks visible lines; the head line gets a
  trailing content-area ellipsis (Q#FD13).
- The gutter walks visible lines too: Absolute keeps the raw `line+1`,
  Relative/Hybrid measure VISIBLE distance anchored on the cursor's
  visible head (Q#FD14). The fold glyph takes the col-0 sign cell only
  when a gutter exists — line numbers default to Off, so with no gutter
  the ellipsis is the sole marker (Q#FD20, round-1 F3). A diagnostic
  clamped onto the head wins that cell by paint order.
- A diagnostic on a hidden line clamps its SIGN to the outermost
  visible head (most-severe merge); the squiggle needs a real row, so
  only the sign clamps (Q#FD15).
- Caret, local selection endpoints, and peer cursors project via
  `visible_position_of` — the head row AND the head's end-of-content
  column, never an arbitrary column (round-2 F3). Peer presence derives
  the RECIPIENT window's map.
- Style/search/completion overlays route through
  `Viewport::row_offset_of`; the mode-line indicator reckons in
  visible-line space.

Command/event time is scoped per frontend (Q#FD21): a
`fold_projection` flag on `FrontendView`, set at attach from the
negotiated `semantic_render` bit (grid ⇒ true, semantic ⇒ false until
Stage 3, LOCAL ⇒ true) and never inferred from a `FrontendId` (Bet
B8). Without it, shared `EditorCore` motion would make a simultaneous
unfolded GPU session's cursor skip lines it still displays. The map's
two axes stay separate (round-3 F1): the acting frontend supplies the
policy, the operation's TARGET window supplies the buffer — a wheel
event names a pane without activating it.

Motion (Q#FD17, ruled: include), paging, wheel, the click inverse, and
the auto-scroll clamp all step by visible lines under that gate;
motion from a hidden logical cursor normalizes to the visible head
first. `view_top` stays a source-line index (Bet B5), set only via
`clamp_view_top` so it never rests hidden.

Unfold widening (Q#FD19): the pre-edit unfold moves to the top of
`apply_active_edit` — one funnel that subsumes the six primitives'
calls and covers yank + query-replace, both of which place point at
the edit site first. Interactive Lua mutators hook the common
`run_buffer_edit`, above the managed/bypass split, gated on
`InteractiveCommandOrigin` AND the edit targeting that frontend's
active-window buffer. The remote/optimistic-CRDT path stays excluded
(Stage 3); undo/redo unfold stays deferred.

Acceptance: `tests/folding_stage2_acceptance.rs`, 35 tests asserting
on the real `paint_frame` cell grid, covering framing items 1–14
including crossing folds, a nested deeply-hidden cursor, a split of
two different buffers with an inactive-pane wheel, and simultaneous
grid+semantic motion.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Q5BkezMppbpCgGAYk2ftxV
2026-07-23 19:24:07 -04:00
Levi Neuwirth 2dd30ec730 Implement session-scoped GPU initial targets
Add protocol-v20 semantic bootstrap and readiness result framing so
`pmacs --gpu FILE` opens the requested path before the GPU window becomes
ready. Keep target identity scoped to the authenticated frontend, preserve
legacy/no-target attach behavior, and publish fresh buffers coherently to
existing replicas.

Carry Unix path bytes and launcher cwd through the root broker, resolve paths
lexically in the daemon, reuse or create buffers without ambient-view state,
and preserve the managed daemon lifecycle from #141. Add focused parser,
wire, lifecycle, hook, isolation, and real-connector acceptance coverage.
2026-07-23 19:03:25 -04:00
Levi Neuwirth c49a8c71be
Merge pull request #142 from levineuwirth/folding
Arc 6 folding — Stage 1: instance fold engine
2026-07-23 18:50:02 +00:00
Levi Neuwirth 036a994639 test(fold): address PR #142 review round 2 — pin the round-1 wiring
Round 2 correctly found the Finding-2/3 fixes were unpinned (reverting
them left the suite green). Both are now bite-verified:

- **Kill-path purge (Finding 2).** Replaced the direct
  `forget_buffer(id)` unit test with
  `killing_a_buffer_through_the_real_path_purges_its_fold_store`, which
  drives `pmacs.buffer.remove` — the production route through
  `after_buffer_removed` — and asserts the store is gone via the dead id
  (BufferIds never recycle). Mirrors config_registry's real-kill-path
  test. Bite-verified: reverting the `after_buffer_removed` fold branch
  turns it red.
- **close-all point move (Finding 3).** Added
  `close_all_command_moves_point_to_enclosing_head`, which invokes the
  `fold.close-all` command with the point inside the second of two
  top-level fns and asserts the cursor landed on that fn's head-line
  content end (and both folds exist). Bite-verified: reverting close_all's
  `maybe_move_point` loop turns it red.
- Ledger: `docs/active-work.md` folding lane now records PR #142 OPEN +
  the two landed review rounds (was "opens once the gate suite is green").

Correction to the round-1 gate report: the acceptance suite is **21**
tests (round 1 was 20, not 24 — a tally slip), green under default and
`--features crdt`. Full gate suite otherwise green (fmt, clippy
--workspace --all-targets, git diff --check).

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Q5BkezMppbpCgGAYk2ftxV
2026-07-23 14:25:28 -04:00
Levi Neuwirth 9691dd4e9f fix(fold): address PR #142 review round 1
- **Finding 1 (bug):** a delete starting exactly at a fold's `end`
  removed the `\n` that `end` names — the last hidden line's terminator —
  but the strictly-after arm (`os >= e`) kept the fold, leaving a mid-line
  end. `translate`'s after-arm is now `os > e || (os == e && old_len == 0)`
  so a pure insert at `e` still stays outside while a delete at `e` falls
  to the drop arm, symmetric with the head side. New unit test
  `delete_starting_at_tail_boundary_drops_fold` (bite-verified).
- **Finding 2:** `pmacs.buffer.kill` didn't clean the fold registry.
  Added `FoldRegistry::forget_buffer(id)` (id-keyed; the view died with the
  buffer) and wired it into `after_buffer_removed`, mirroring the
  keymap/config cleanup; the registry is now stashed as Lua app-data.
  `forget(&mut Buffer)` is clarified as the revert/reload reset.
- **Finding 3:** `fold.close-all` now moves the invoking point to the head
  when it closes a fold around it (Q#FD3); the data-API `fold` exemption
  (programmatic, no invoking point) is named in the module doc.
- Nits: dropped the dead `!(both empty)` conjunct in `fold_state_msg`;
  replaced the trivial fresh-registry assert; added coverage for the
  stale-tree refuse via a fold command, the read-only-buffer rejection
  (Q#FD11), and unfold normalizing an arbitrary range.

Gates green: fmt, clippy --workspace --all-targets, --lib (1786),
--features crdt (1962), folding_acceptance (24), m4 (skip basedpyright),
required-GPU, git diff --check.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Q5BkezMppbpCgGAYk2ftxV
2026-07-23 13:42:20 -04:00
Levi Neuwirth 154cb9f08d Close remaining GPU invocation review nits
Throttle the managed probe after its event channel closes, reject option-like
path operands, and document the connector test seam. Strengthen non-CRDT and
Ctrl-C acceptance so socket side effects and a pre-signal surviving frontend
are exercised, while avoiding cleanup signals to already-reaped daemon PIDs.
2026-07-23 12:38:11 -04:00
Levi Neuwirth 3b411dbb2a feat(fold): Arc 6 Stage 1 — instance fold engine (headless)
The fold engine behind `docs/folding-framing.md` (approved rev 5): a
per-buffer fold store, a structural tree-sitter fold source, the
state-aware Lua command + data-API surface with the Emacs hideshow
`C-c @` bindings, the dispatch-layer pre-edit unfold, and `FoldState`
production. No rendering — Stages 2 (grid) and 3 (GPU) consume the store.

- `src/fold.rs`: `FoldStore` (a buffer-attached `View` that translates
  ranges on every edit and drops any whose head/tail the edit crosses,
  provenance-blind — Q#FD6), the structural source (nearest block-like
  node >= 2 source lines -> introducer<->body -> **derived head line**,
  the line immediately above the first hidden line, so wrapped signatures
  and `where` clauses stay visible per R3-1 -> **closer-aware tail**, a
  closing-delimiter line stays visible per R2-5), injection-layer walk,
  `(start, end]` containment, and the state-aware ops (close innermost
  open / open outermost closed / org-TAB cycle). Stale/absent tree
  refuses (Q#FD10).
- `src/lua_bindings/fold.rs`: `pmacs.fold.*` — explicit-buffer data API
  (`fold`/`unfold`/`folds`/`toggle`) + interactive helpers, validation
  (Q#FD11: document buffer, UTF-8 boundaries, >= 1 hidden line — Q#FD9
  falls out of the last clause), point-moves-to-head (Q#FD3).
- `builtin/runtime/fold.lua`: `fold.toggle/close/open/close-all/open-all`
  commands + the `C-c @` prefix set (Q#FD4).
- `src/editor_core.rs`: the six point-anchored edit primitives run the
  pre-edit unfold keyed on the authenticated source's point (Q#FD5,
  command path); `EditorCore` owns the shared `FoldRegistry`.
- `src/semantic_render.rs`: the `FoldState` producer —
  authoritative-empty, diff-suppressed, baseline resets on
  `BufferSnapshot` (Q#FD8); the "never emitted" pin split so
  `BlockAdornments` stays unproduced.
- `tests/folding_acceptance.rs` (16) over real Rust/Python/markdown
  grammars + `fold_state_producer_transitions` + 15 engine unit tests.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Q5BkezMppbpCgGAYk2ftxV
2026-07-23 12:14:00 -04:00
Levi Neuwirth 82355ca529 Address GPU invocation review findings
Buffer attach events until winit state exists, keep spawned daemon ownership
until the reaper handoff, and detach daemon stderr from the launcher terminal.
Tighten direct GPU CLI guidance and sibling discovery. Strengthen managed
connector unit and process acceptance coverage for transient retries, timeout
reporting, hermetic paths, and deterministic loser reaping.
2026-07-23 11:50:33 -04:00
Levi Neuwirth 6fd583417b Add one-command managed GPU invocation
Add the root --gpu broker, strict GPU entry points, daemon connect-or-start orchestration, process-group isolation, bounded retry, named child reaping, and a deterministic headless lifecycle probe. Cover the complete launch matrix with real subprocess acceptance, make root Cargo runs unambiguous, and document the coherent build and one-command workflow.
2026-07-23 11:02:09 -04:00
Levi Neuwirth 3c4d969aba Merge canonical main into vterm stage 3
Integrates canonical `main` @ 2625ec7 after PR #137 (tab-width parity)
merged. The agreed order was #137 first, this lane second: #137 was
approved and FROZEN at 5b23e11, and "frozen" is incompatible with
"rebase onto the resulting main" — landing it second would have broken
its freeze and voided its approval.

Integrated by MERGING main into the branch rather than rebasing, matching
repo precedent (Merge canonical main into vterm-tui, ... into modeline
detection). A rebase would have force-pushed away the review anchors on
the two completed review rounds of #135.

Main had also moved past this lane's base by #133/#134/#136, so the
integration surface was wider than the #135/#137 overlap: src/
semantic_render.rs was a fourth overlapping code file. It auto-merged, as
did pmacs-protocol/src/lib.rs. The single code conflict was the
pmacs_protocol import list in pmacs-gpu/src/main.rs — TAB_STOP_COLUMNS
against the terminal types — resolved as a union.

The feared semantic collision did not occur, and this is verified rather
than assumed: terminal cell geometry still uses the monospace advance and
never TAB_STOP_COLUMNS. pmacs-gpu/src/terminal.rs references neither the
constant nor display_width, and terminal_cell_viewport / terminal_run_rect
/ hit_test_cell derive from mono_advance() and code_line_height() alone.
That separation is correct by construction: a terminal's columns come
from the child, while tab expansion is a document projection concern.

Doc conflicts resolved toward landed state: the tab-width lane moves to
"Closed since the last snapshot", the #135/#137 coordination section is
kept as a resolved worked example, and the Arc 5 lines in the roadmap and
handoff now read "implemented and in review". While resolving, restored a
clause main had dropped from the handoff's injection-follow-ups list
("literals, doc-comment code);"), keeping main's strikethrough-and-SHIPPED
convention for the modeline entry.

Post-integration gates, from a clean tree: cargo fmt --check; strict
workspace clippy; pmacs-protocol 17; cargo test --lib 1,768; --features
crdt 1,944 (3 ignored each); vterm Stage 1 9/10, Stage 2 4/4, Stage 3
5/7, statusline 7/8, tab-width 2/2 (default/CRDT); M4 121 passed (3
ignored, 1 filtered); required GPU 139; workspace sweep 2,946 passed
across 84 suites (19 ignored), one invocation; git diff --check clean.
2026-07-22 17:39:58 -04:00
Levi Neuwirth 9f7bc77f44 feat(render): unify tab-width projection
Share one fixed eight-column tab-stop contract across core and GPU renderers. Consolidate byte-to-display-column accounting, expand GPU code tabs with source provenance, align caret/hit/decoration geometry, and refresh minimap projection on edits.
2026-07-22 15:03:30 -04:00
Levi Neuwirth 50fd9a08e4 fix(vterm): address stage 3 review round 1
Five findings, all addressed. One was a real defect; one prediction did not
reproduce and is documented as such rather than papered over.

Hover no longer claims durable terminal control (finding 2, the real one).
apply_terminal_gesture claimed the controller before dispatching, including
for Move, which does nothing. A semantic frontend reports motion at pixel
rate, so sweeping the mouse across a passive split's terminal took durable
control, and the next layout sync resized the shared PTY to that background
view's geometry — precisely the theft the controller rule exists to prevent.
Bare motion no longer claims; every deliberate gesture still does.
scripts/bite HEAD src/editor.rs on the new test is a clean behavioral bite.

The terminal-mode presence-sweep skip is removed (finding 1), but the
predicted failure did NOT reproduce. The review reasoned that skipping the
sweep freezes last_broadcast at the abandoned document position. It does
not: the buffer-follow clears the terminal declaration when it ships the
snapshot, so terminal_active is false on the tick a window first shows a
terminal, and the declaration cannot arrive until a later tick — the
frontend learns the buffer id from that very snapshot. One truthful sweep
always lands first. The real-daemon two-frontend test written to catch the
freeze passes against the pre-fix tree; the bite is vacuous and the test is
labelled a regression guard, not fix evidence. The skip goes anyway: it was
load-bearing on tick ordering and bought nothing, and removing it makes
"presence follows the frontend" structural.

Terminal motion is deduplicated by cell (finding 3). Sub-cell motion
resolved to the same coordinate and still crossed the wire, where every
event is a daemon-side gesture. Press and release re-arm the memo so the
first drag after a press still reports. Its unit test cannot bite — the
seam did not exist pre-fix — and says so.

Declarations record only once sent (finding 4).
terminal_declaration_if_changed is now a pure query;
note_terminal_declaration_sent records. A failed write is retried instead of
suppressed as already-declared. The existing a35 test caught the contract
change and now pins both halves.

Unchanged frames skip revalidation (finding 5). The complete-payload
comparison runs before validate; only validated frames are ever stored, so a
frame equal to the baseline has already passed. The chrome tail is factored
into terminal_chrome so both exits emit it identically.

Gates: fmt; strict workspace clippy; 1,757 default + 1,933 CRDT library
tests; Stage 1 9/10, Stage 2 4/4, Stage 3 5/7, statusline 7/8
(default/CRDT); M4 120; required GPU 128; workspace sweep 2,921 across 83
suites; diff check clean.
2026-07-22 14:49:23 -04:00
Levi Neuwirth bdf2b6e4b4 feat(vterm): protocol v19 terminal frames and a native GPU terminal
Vterm Stage 3 — the final vterm stage. A semantic frontend can now host a
terminal: the daemon ships complete validated cell grids, and pmacs-gpu
renders them with fixed-cell geometry, its own input path, and no document
projection at all.

Protocol v19 appends three variants after their enums' final v18 members:
InstanceMessage::TerminalFrame (daemon-gated), and FrontendEvent::
TerminalResize / TerminalPointer (frontend-gated). It is the first bump to
gate in both directions, so criterion 28 pins each filter independently and
byte pins on StatuslineSegments and MenuPointer guard the placements.

pmacs-protocol gains src/terminal.rs: the shared row/column/visible-cell/
grapheme/metadata bounds, TerminalProcessState, TerminalSelectionSpan, and
TerminalFrame::validate — the ONE structural policy the daemon runs before
emission and the frontend runs after decode. src/terminal/* re-exports them
so no duplicate type exists, and unicode-width becomes a workspace dependency
so the screen and the validator measure glyph columns with one table. A new
8 MiB aggregate glyph bound keeps the largest legal frame (measured:
13,437,863 bytes) under the unchanged 16 MiB transport cap rather than
widening every connection's allocation ceiling.

The semantic producer suppresses the whole document family for a terminal
buffer while keeping the status band, theme, font, statusline, menu, and
minibuffer, and compares the complete ordered payload rather than
screen_generation — scroll, selection, and process state all change without
advancing it.

Two things the framing did not spell out, both found by the real-daemon
acceptance:

The Viewport gate keys on the authenticated source's ACTIVE buffer, not the
buffer the message names. Viewport also aligns the window to what it
declares, so a stale document viewport in flight when a command opened a
terminal dragged the frontend straight back off it: the window oscillated,
every terminal declaration was refused, and no frame ever arrived, with
nothing logged anywhere.

The producer clears terminal mode on every exit path. The daemon uses that
flag to suppress CursorByte and the presence sweep, so an early return that
left it set kept both suppressed after the frontend returned to a document.

pmacs-gpu/src/terminal.rs is a pure cell-space paint planner, unit-testable
without a GPU. The renderer builds one shaped buffer per text run, so a wide
or cluster glyph's advance can never choose the next column's origin.

Criterion 37 needed a seam rather than a fixture: pmacs-gpu depends only on
pmacs-protocol, so attach::connect's reader sink was generalized and a
--headless-probe mode added. The acceptance drives a real daemon, a real
/bin/sh child, the real attach client, and real composited pixels in one
path — which is how both defects above were found.

Gates: fmt; strict workspace clippy; 1,757 default + 1,933 CRDT library
tests; vterm Stage 1 9/10, Stage 2 4/4, Stage 3 4/5 acceptance
(default/CRDT); statusline 7/8; M4 120; required GPU 127; workspace sweep
2,919 across 83 suites; diff check clean.
2026-07-22 13:28:35 -04:00
Levi Neuwirth 47ffe5dcff syntax: process bundled locals queries
Compile grammar locals metadata, resolve lexical definitions and references
once per settled layer, and apply local property predicates in both highlight
producers. Restore non-shadowed JavaScript builtins while suppressing local
shadows, with lexical, viewport, render, and edit-freshness regressions.
2026-07-22 12:28:31 -04:00
Levi Neuwirth b45e5ee5ec Merge canonical main into modeline detection
Integrate landed Vterm Stage 2 before the approved modeline merge. Preserve the
active modeline lane in the volatile ledger and record the full integrated gate
results.
2026-07-22 10:56:35 -04:00
Levi Neuwirth 3f0252fb97 Merge canonical main into vterm-tui
Integrate mode-system wiring and handoff updates before PR #130 lands.
Preserve per-frontend terminal dispatch while resolving major-mode keymaps,
and expose mode, terminal, and LSP statusline providers together.
2026-07-22 10:28:56 -04:00
Levi Neuwirth f8d05d2134 feat: detect language from modelines
Parse bounded Emacs and Vim modelines, normalize common aliases, and give
explicit file metadata precedence over inferred language. Pin one fresh-load
language decision for syntax, LSP, pairing, comments, and initial major mode,
while preserving the LSP path guard and explicit mode overrides.

Cover supported forms, rejection boundaries, precedence, unknown modes,
shebang and modeline pinning, reopen behavior, and pathless buffers.
2026-07-22 10:02:20 -04:00
Levi Neuwirth b9a7e40855 fix(vterm): harden view anchors and interactive authority
Clamp anchors into partially evicted wrapped lines, require authenticated
interactive origins, and avoid per-mouse cell snapshots. Restore dispatcher
rationale, named context errors, and focused regressions for the corrected
contracts.

Co-authored-by: OpenAI Codex <codex@openai.com>
2026-07-22 09:09:44 -04:00
Levi Neuwirth 1b4d022fd1 test: preserve mode segments with long paths
Widen the daemon acceptance grid so each split can show a macOS temporary
path and the following mode segment without protected-right clipping.
2026-07-22 08:28:57 -04:00
Levi Neuwirth 8702791de9 fix(vterm): honor terminal escape and view contracts
Require the fixed C-c escape before editor-local terminal bindings, reject context-implicit Lua operations from document windows, and make controller replacement atomic per frontend. Borrow screen rows during view projection instead of deep-cloning retained history, preserve view anchors through zero-area layouts, and remove redundant detach paths.

Add focused child-input coverage for unescaped bound keys and C-c C-c, plus controller, zero-area, context-error, and clone-free projection assertions.

Co-authored-by: OpenAI Codex <codex@openai.com>
2026-07-22 08:28:18 -04:00
Levi Neuwirth 4c382ae797 fix: harden mode acceptance startup
Give the daemon its normal five-second handshake window before switching
the mode-system acceptance client to short frame polling. Document reload
and session-persistence boundaries and correct stale describe-key guidance.
2026-07-22 08:18:18 -04:00
Levi Neuwirth da8f6aeae4 fix(vterm): harden integrated Stage 2 behavior
Resolve post-main integration drift in authenticated routing, terminal view projection, Lua installation, and inherited acceptance callers. Preserve the terminal statusline provider alongside the landed Themes provider and record the final Stage 2 gate evidence.

Co-authored-by: OpenAI Codex <codex@openai.com>
2026-07-21 21:38:08 -04:00
Levi Neuwirth 99cd7ec240 feat: wire major modes through key dispatch
Store a detected major mode on each buffer and expose it through Lua.
Resolve mode-scoped bindings in dispatch, describe-key, and help links,
including exact encoded mode context after entering the help buffer.

Initialize modes once at buffer load, preserve explicit overrides and
clears across switches, and publish the mode through a per-window
statusline provider. Add daemon acceptance for the complete mode lifecycle.
2026-07-21 20:25:48 -04:00
Levi Neuwirth 0ddff24589 Merge canonical main into vterm-tui
Integrate config-registry and handoff updates landed after the Stage 2
framing branch was cut.
2026-07-21 20:18:53 -04:00
Levi Neuwirth dc9225778a test(vterm): prove Stage 2 TUI integration
Add cross-surface Lua, shared-view, clipboard, authenticated routing,
BEL, resize, and real-host PTY acceptance. Ensure terminal-local keymaps
run before raw child transport and document the criterion-to-test map.

Co-Authored-By: Claude <noreply@anthropic.com>
2026-07-21 20:16:23 -04:00
Levi Neuwirth f86c966090 fix(config): reject wrongly-typed spec fields; make trim-on-save buffer-aware
Review round 1, findings 2-4 plus doc notes. Finding 1 landed in fd80bcb.

Finding 3 --- spec fields meaningless for the declared type are now
rejected. DEFINE_SPEC_FIELDS whitelists all nine keys for every type and
the kind parser only reads its own arm's fields, so
`{ type = "string", choices = {...} }` silently defined a string that
accepts anything (the author meant enum) and `min` on a boolean was
dropped. These are typo-shaped bugs the R50 whitelist structurally
cannot see: the key is spelled correctly, it is on the wrong type.
`check_fields_relevant_to_kind` closes it with a pointed error naming
the misplaced field, and a companion test pins that each field is still
accepted where it belongs, including `min`/`max` on number as well as
integer.

Finding 4 --- the after_buffer_removed purge had no end-to-end test.
Every existing test called ConfigRegistry::remove_buffer directly, so
deleting the three lines wired into mod.rs would have left the whole
suite green. The new acceptance test kills a buffer through
pmacs.buffer.remove (the real remove_buffer_and_fire route) and asserts
the locals are gone; bite-verified by removing the hunk and watching it
fail.

Finding 2 (the half with a natural buffer) --- editing.trim-on-save is
now resolved against the buffer being saved rather than the global
chain. Reading globally meant set_local was accepted, stored, and
reported by describe, then never consulted: a pin the user believes in
that does nothing, which is the shape F1 exists to prevent. Two tests,
one for the override and one for the global fallback the change could
have broken; the override test fails against the old global read.

Both new save tests initially passed VACUOUSLY and were rewritten:
pmacs.editor.save() is the raw save, while buffer.before-save fires
inside the buffer.save COMMAND (default.lua:224), and save() no-ops on
an unmodified buffer --- so the original form asserted on a file that
was never rewritten. They now insert content to dirty the buffer and go
through pmacs.command.invoke("buffer.save").

The other half of finding 2 --- a per-buffer autosave.interval-ms is
semantically meaningless yet still accepted --- is recorded as a named
deferral proposing a define-time `scope = "global"` flag, alongside
deferrals for bound-parse field naming and StartupOnly reset symmetry.
Also recorded: interval_ms(1e30) now raises instead of storing a
nonsense float, an improvement but a real divergence from "the wrapper's
shape stays exactly as it was".

Doc: the module header cited framing revision 2; the shipped doc is
revision 3, whose corrections are what the code implements.

Gates: fmt, clippy -D warnings, --lib (1691), --lib --features crdt
(1865), lua54 backend, config_registry_acceptance (16), editops (72),
autosave (29), PMACS_REQUIRE_GPU=1 pmacs-gpu (109), and the full
workspace sweep (2806 tests, exit 0). git diff --check clean.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-21 18:29:18 -04:00
Levi Neuwirth 6844262495 feat(config): typed configuration registry with buffer-local scope
A third registry beside CommandRegistry and HookRegistry, per
docs/config-registry-framing.md. Unblocks the per-buffer auto-pair
toggle, the first of the five backlog items the missing config surface
was gating.

Substrate (src/config_registry.rs):

  * ConfigRegistry keyed by name with definition order preserved, R42
    mandatory descriptions, R50 typo detection, duplicate rejection,
    and SourceLocation provenance -- the command/hook vocabulary.
  * Closed scalar kinds: boolean, integer, number, string, enum. Owned
    Rust values; Lua tables, functions and userdata are never stored.
    Integer exactness is checked by value, never math.type, so the
    luajit and lua54 builds agree.
  * Two scopes. get(name, buf) resolves buffer-local -> global ->
    default; get(name) with no buffer resolves the global chain only
    and never consults an ambient buffer. Buffer-locals live in a
    registry-owned side table purged at after_buffer_removed, beside
    the keymap purge already there.
  * An override is ALWAYS stored, even when equal to the value it
    shadows; only value_epoch and listener dispatch key on effective
    change. Without this a buffer pinned to the current value stores
    nothing and a later global set flips it -- the pin silently never
    existed. equal_valued_local_override_is_still_stored_and_shields_buffer
    fails against the naive reading.

Bindings (src/lua_bindings/config.rs):

  * define/get/set/set_local/reset/is_set/describe/list/on_change.
    Spec tables are read raw, so neither an unknown key nor a
    metatable-provided value can smuggle a field in.
  * Listeners commit inside the borrow, snapshot, drop the borrow, and
    only then re-enter Lua -- verified by holding the borrow and
    watching the test panic with "RefCell already borrowed". A raising
    listener is logged without blocking later ones or rolling back, and
    a depth bound turns an accidental cycle into a pointed error.
    Listeners persist until explicitly disposed; there is no Gc path,
    matching the rest of the codebase.
  * StartupOnly freezes off the existing InitCompleteFlag at write
    time, so this arc adds no editor.rs call at all.

Adopters, each defining its own key so SourceLocation names the owning
module: editing.auto-pair (pair.lua, read per-buffer against the typed
edit's SOURCE buffer), editing.trim-on-save (editops.lua),
autosave.interval-ms (autosave.lua). No public function is removed or
deprecated, and both migration wrappers keep their legacy coercion --
trim_on_save("yes") still enables, interval_ms(1500.7) still floors to
1500 -- coercing before handing the strict registry a conforming value.

M-x describe-setting renders into *help*, modeled on describe-command.

Framing revision 3 records four defects implementation found in the
document itself: acceptance 30 and 31 contradicted each other; the
planned builtin/runtime/config.lua had nothing to hold and would have
broken the source-location contract had it held the one helper it might
have; F5 asked define to police a call it cannot see, moved to
set_local; and list() ordering was underspecified.

No protocol change; SUPPORTED stays [6..18]. No wire surface. Zero
changes to src/editor.rs.

Gates: fmt, clippy -D warnings, --lib (1683), --lib --features crdt
(1857), the new config_registry_acceptance (13) plus auto_pair (45),
editops (72), autosave (29) and m9_6 (25), m4 --skip basedpyright
(114), PMACS_REQUIRE_GPU=1 pmacs-gpu (109), the lua54 backend build,
and the full workspace sweep (2795 tests, exit 0). git diff --check
clean.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-21 18:29:18 -04:00
Levi Neuwirth 9797adaa0b fix(vterm): harden terminal cell and input invariants
Reject C0/C1 controls before terminal text reaches screen cells, and preserve
the released button code in SGR mouse reports.

Remove dead screen branches, keep logical-line allocation saturating, and clear
round-trip input state when pruning externally removed terminal buffers.
2026-07-21 16:27:43 -04:00
Levi Neuwirth f0a235f635 fix(vterm): harden Stage 1 terminal contracts
Add typed IND, NEL, and RI operations with exact screen semantics, preserve
application tab stops across resize, and default terminal children to the
supported xterm-256color capability set.

Make shutdown liveness acceptance portable with kill(pid, 0), and document the
public TerminalScreen methods consumed by later stages.
2026-07-21 15:30:06 -04:00
Levi Neuwirth bbc1f33a7c feat(vterm): add Stage 1 terminal core
Add compatibility-preserving full-screen ANSI operations, the bounded terminal
screen and input encoders, and a transactional TerminalManager owning one
read-only identity buffer, PTY process, and screen per session.

Drain terminal-owned process events before process.after-tick, retain exact
final output and PID/outcome annotations, reap killed buffers and shutdown
children safely, and enforce buffer-owned read-only checks across ordinary,
host, undo/redo, and CRDT mutation paths.

Cover split parser and grapheme boundaries, screen/reflow/history invariants,
device responses, lifecycle cleanup, and a real adversarial alternate-screen
PTY. Record the fully gated Stage 1 delivery and downstream TUI/GPU contracts.

Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
2026-07-21 14:20:28 -04:00
Levi Neuwirth 4b65b9e1e5 feat(statusline): add composable modeline segments at protocol v18
Add the strict pmacs.statusline provider registry, deterministic
borrow-released per-window evaluation, context-scoped failure latches,
and a pure built-in LSP provider.

Preserve the legacy TUI modeline while composing faced custom runs,
and append authoritative complete StatuslineSegments replacements for
semantic frontends. Expand dynamic ThemeFacts, reset producer/frontend
baselines symmetrically, and gate all provider work off protocol v18.

Teach the GPU to atomically validate, resolve, shape, clip, and cache
custom modeline runs without displacing the protected status suffix.
Document the public Lua lifecycle, wire ownership, snapshot semantics,
and the fully gated Arc 4 stage-3 delivery state.

Co-authored-by: Claude Opus 4.7 <noreply@anthropic.com>
2026-07-21 12:01:25 -04:00
Levi Neuwirth ffcb903fc1 docs(json-yaml): refresh final review state
Remove stale transfer-task wording and record the rebased, fully gated
JSON/YAML provider validation in the framing and handoff.
2026-07-21 09:34:54 -04:00
Levi Neuwirth 5c202c54c1 test(json-yaml): verify real YAML provider through pmacs
Drive Red Hat yaml-language-server 1.24.0 through the default YAML
auto-attach path. Disable SchemaStore and the Kubernetes CRD catalog for
network-free determinism, require language-specific initialization and a
real syntax diagnostic, and prove the server remains alive afterward.

Update the framing and runtime commentary with the completed live-provider
evidence. The test passes against the pinned provider and fails against the
pre-JSON/YAML runtime under scripts/bite.

Co-Authored-By: OpenAI Codex <noreply@openai.com>
2026-07-20 17:00:20 -04:00
Levi Neuwirth 19ad5cc8ac fix(json-yaml): checkpoint reviewed LSP configuration fixes
Preserve PR #123's unpushed review fixes on a transfer branch: initial
didChangeConfiguration delivery, explicit JSON validation, the pinned
JSON server provider, corrected YAML configuration sections, and
deterministic plus real-provider acceptance coverage. Record the
observed yaml-language-server 1.24.0 standalone smoke and leave the
real YAML-through-pmacs test, rebase, and full gates explicitly pending
for the destination machine.
2026-07-20 16:49:37 -04:00
Levi Neuwirth 9ce6f1abf3 feat(json-yaml): JSON + YAML grammars and language servers
Add tree-sitter-json (0.24) and tree-sitter-yaml (0.7) to
BUILTIN_LANGUAGES (both ABI-current via tree-sitter-language, verified
compiling under tree-sitter 0.26), each self-contained highlights, no
injections of their own. Extensions json=.json, yaml=.yaml/.yml; root
kinds json `document`, yaml `stream`.

The payoff from the #122 injection engine is free: the markdown block
injection query already sets injection.language "yaml" for `---`
frontmatter (minus_metadata) and "toml" for `+++` (plus_metadata), so
registering yaml lights up YAML frontmatter highlighting with no extra
wiring, and ```json / ```yaml / ```yml fences resolve through the engine
(yml->yaml alias already present). Two acceptance tests pin this synergy.

LSP (builtin/runtime/lsp.lua): pmacs.lsp.config.json uses the maintained
extracted-bundle binary `vscode-json-language-server --stdio` (NOT the
stale standalone vscode-json-languageserver); MIT, no telemetry, remote
$schema fetch left enabled (no handledSchemaProtocols). pmacs.lsp.config
.yaml uses `yaml-language-server --stdio` with Red Hat telemetry
disabled by default. Both ship the exact workspace/configuration sections
each server pulls (json+http; yaml+http+redhat.telemetry) present-not-null
so the servers get defaults rather than erroring — the CMake #117 lesson.
Sections derived from server source/docs (neither binary installed on
this build machine to observe live; verify where present). Filetype
fallback entries added. JSON is the standing prerequisite for the Jupyter
.ipynb arc; handoff §6 updated.

Nine acceptance tests (grammar ABI, highlights compile, detection,
grammar<->LSP-key alignment, the two frontmatter/fence synergy proofs,
and the pinned LSP-config sections).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01YJ9FQ832QwftJXCD9LeFan
2026-07-20 16:49:37 -04:00
Levi Neuwirth 6cd78f0870 test(font): wire acceptance suite + protocol/design docs (items 2-8, 15)
tests/gpu_font_acceptance.rs (items 2-7; the header manifest routes
item 1 to src/protocol.rs pins, item 8 to the src/frontend.rs TUI
drop unit, items 9-14/16-19 to pmacs-gpu's headless suite, and item
15 to the docs):

- 2: a fresh attachment's first frame carries the REAL (None, None)
     default; unchanged ticks are silent; a late joiner receives the
     current preference without post-attach mutation
- 3: a mid-session set_font emits exactly one FontFacts on the next
     frame; an identical re-set advances the epoch without emitting
- 4 (producer half): on_buffer_snapshot_sent re-ships buffer facts
     but never the bufferless FontFacts
- 5: real-daemon probe -- a v17 semantic session receives FontFacts,
     a v16 peer never does (crdt feature)
- 6: the strict Lua contract -- 5.999/72.01/0/-16/NaN/inf/non-number
     sizes error naming `size`; empty/non-string family errors
     naming `family`; unknown keys rejected by name; hostile
     __index/__pairs metatables never invoked and never inject
     values; quantization pins 15.994->1599 / 15.996->1600 and both
     boundaries; set_font {} resets both axes; the getter returns a
     fresh quantized plain table; every rejected shape leaves the
     preference and the wire untouched
- 7: a load_user_config_at fixture's init.lua set_font lands in the
     handle installed before user config, and a pre-attach
     preference ships on the first frame

Bites (mutate, observe the acceptance test fail, restore): the
Option-seeded first-frame send, the payload compare, the snapshot
survival of the font baselines, the v17 gate (BOTH halves widened --
producer for_peer alone leaks nothing because the daemon skip arm
still filters; the wire test only fails when belt AND braces are
cut), the unknown-key rejection, the range-check-original ordering,
and the raw_get metatable isolation.

Docs (item 15): docs/semantic-frontend-protocol.md gains the
FontFacts variant entry (v17 gate, authoritative default, no-pixels
preference relay, fail-closed receiver) and folds FontFacts into the
BufferSnapshot reset-contract paragraph (bufferless facts survive;
the frontend's caret-follow scroll residual is the buffer-scoped
part). docs/pmacs-gpu-design.md's "future customization needs no
wire-protocol changes" claim is corrected in place and points at the
framing as design of record; the Lua-override bullet now names the
landed set_font shape. The framing status bumps to implemented.

Also re-homes the ProcessSupervisor doc comment that the make_font_pref
insertion had orphaned onto the wrong function.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01VoiEyuPjoBhvwACf8HAnLB
2026-07-18 11:46:44 +01:00
Levi Neuwirth bc0922bea2 test(m4): keep injection work outside root parse gate 2026-07-15 14:50:45 +01:00
Levi Neuwirth 325dcd553f fix(injections): PR #122 round 2 — sibling precedence, observable cap, docs
Two follow-ups + doc cleanup.

[P2] Same-depth sibling precedence was reversed. The wire priority was
(depth, capture_order), omitting the layer ordinal, so two overlapping
spans from different sibling layers tied — and the active-set insert
then applied the later one first, making the earlier sibling win, the
opposite of the grid's layer-by-layer paint. Priority is now
(layer_index, capture_order): layer_index is the depth-ascending
position in bundle.layers, so a deeper layer AND a later same-depth
sibling both override, matching the grid exactly. New
flatten_same_depth_sibling_later_layer_wins pins it.

[P2] Cap surfacing had no end-to-end test. Added
injection_cap_surfaced_once_and_rearms_via_lua, which drives the real
Lua settle path (syntax.lua tick -> _injection_capped -> pmacs.error)
and asserts surfaced-once, suppressed-on-unchanged-reparse, and
re-armed-after-dropping-below-then-exceeding-the-cap.

Docs:
- Q#IJ6 now states the accurate bound O(n log n + Sum active) for the
  event sweep, not O(boundaries).
- The full-buffer perf test is renamed/narrowed to guard the FLATTENER
  regression; the summary's per-line dominant-style tally is a separate
  pre-existing O(lines x spans) loop, not claimed linear.
- Framing #9 now matches the test: it drives spans_from_segments (the
  extracted replace_style_spans transform) + source_color_at, not a live
  State render.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01YJ9FQ832QwftJXCD9LeFan
2026-07-15 12:07:21 +01:00
Levi Neuwirth 79d75a29e0 fix(injections): PR #122 round 1 — sweep flatten, sync aliases, real multi-range, surfaced cap
Four review findings + a cleanup bundle.

[P1] Wire flattener was O(spans²) and ran over the WHOLE buffer (the
file-style summary uses a whole-buffer viewport, not the visible one).
Replaced the per-interval full scan with an ordered active-set event
sweep (activate on start, expire on end, fold the active set) — linear
in practice. Added full_buffer_summary_scales_on_large_grammar_file
(1500-line rust) as the perf gate.

[P2] _parse_now used the empty alias map from make_request while
_dispatch snapshotted the registry map, so a `py` fence injected async
but not sync. Snapshot aliases on both paths; pinned by
sync_parse_now_resolves_alias.

[P2] The multi-range inline test used a one-line paragraph, whose block
inline node has no named children (link/emphasis are child-grammar
structures) — one range, so it couldn't falsify multi-range. Replaced
with a multi-line blockquote whose inline node carries a named
block_continuation: content_node_ranges now asserts >1 collected range
and emphasis parses on both lines.

[P2] The layer backstop dropped regions silently; the framing requires
a surfaced warning. run_parse now sets ParseTreeBundle::injection_capped;
syntax.lua's settle tick raises it once per buffer via pmacs.error
(_injection_capped). Added injection_layer_cap_surfaces_and_preserves_root
(drives >4096 fences, asserts the flag + bounded count + intact root).

Cleanup:
- The GPU acceptance test now drives the real StyleSpans full-frame
  transform (spans_from_segments, extracted from replace_style_spans)
  instead of a hand-rolled sort.
- content_node_ranges excludes NAMED children (documented as a round-1
  refinement); framing mechanic #3 / Q#IJ5 updated to match.
- parse_duration doc now says root parse; the markdown entry no longer
  describes inline as unhighlighted/future.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01YJ9FQ832QwftJXCD9LeFan
2026-07-15 12:07:21 +01:00
Levi Neuwirth 4282b1c333 feat(injections): multi-language injection layers
Teach the syntax engine that one buffer can hold more than one
language. After the root parse, run the grammar's injections.scm, parse
each embedded region with the injected language, and merge every
layer's highlight spans. First consumer: markdown fenced code + inline
(zero new grammars — the block grammar already ships an injection query
and the injected langs already have grammars from #118).

Engine (src/syntax.rs):
- ParseTreeBundle now holds Vec<Layer> (root layer 0 + injected
  children, depth-ascending); installed atomically so the existing
  Arc::ptr_eq style gate and highlight cache keep working (Q#IJ1).
- run_parse builds layers on the worker: run injections.scm, resolve
  the injected language, compute Vec<Range> (exclude NAMED children,
  intersect the parent's ranges), set_included_ranges cold-parse,
  recurse — bounded by depth (3), a layer backstop (4096), and a
  (lang,ranges) visited guard; any child failure drops that child only
  (Q#IJ3/IJ5). LanguageEntry gains injections_query; markdown_inline is
  registered (retires the M9.7 block-only floor); markdown/rust carry
  injection queries.
- Injected languages resolve off the static BUILTIN_LANGUAGES table
  (Send loaders + query sources), preserving lazy loading. Dynamic
  fence names go through a case-folded alias map seeded with defaults
  and Lua-extensible via pmacs.parse.injection_aliases, snapshotted into
  ParseRequest at dispatch so the worker never touches the Rc registry
  or a Lua table (Q#IJ2/IJ4). Highlight queries are resolved at settle
  (resolve_layer_queries), keeping query compilation main-thread/cached.

Producers:
- SyntaxHighlightView (grid) iterates layers shallow-to-deep so a
  deeper layer's styling wins within its region (Q#IJ6/IJ7).
- scoped_style_spans (wire) flattens all layers into DISJOINT effective
  spans via a boundary sweep, since the GPU re-sorts spans by start
  (replace_style_spans / merge_style_spans) and would otherwise destroy
  producer order. The GPU source_color_at consumer is fixed to fold all
  covering spans (matching semantic_client's effective_style_at) rather
  than returning the first.

Named-children exclusion: content ranges exclude only NAMED children
(matching tree-sitter-md's own inline splitter) — excluding a block
inline node's anonymous text tokens would shred the paragraph into
unparseable fragments.

13 acceptance gates (framing docs/multi-language-injections-framing.md):
layer structure, absolute child offsets, alias resolution (static +
case-folded dynamic + unknown-skip + Lua-async override), multi-range
inline, recursion bounds, wire + grid + GPU producers, incremental edit
/ new fence, many-paragraph settle budget with tail coverage, and the
single-layer regression guard.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01YJ9FQ832QwftJXCD9LeFan
2026-07-15 12:07:21 +01:00
Levi Neuwirth 8ce2e9cb0f
Merge pull request #120 from levineuwirth/theme-faces
feat(themes): named UI faces + ThemeFacts channel (protocol v16) — Arc 4 stage 1
2026-07-15 10:30:31 +00:00
Levi Neuwirth b75d45b1d4 perf(themes): PR #120 round 5 -- O(1) frozen counts via store totals
The round-4 freeze read counted the retained for_uri vector inside
status_facts_msg -- correct, but StatusFacts runs at frame cadence
for every semantic session under the shared store mutex, so a long
stale interval cost O(frames x diagnostics x sessions).
DiagnosticStore now maintains per-URI severity totals alongside
by_uri: set replaces them (an empty publication removes them with
the vector), clear removes them, and mark_stale deliberately
preserves both -- entries exist exactly when by_uri entries do, and
set/clear are the store's only by_uri mutators. status_facts_msg
reads the tuple in O(1), and the all-URI severity_totals sum reuses
the cached tuples.

Store unit (acceptance item 34) pins the invariant: all four totals
replace correctly, survive staleness, and clear with the diagnostic
vector; empty_set_clears_uri asserts the totals drop too. The
rounds 3-4 freeze acceptance passes unchanged -- behavior parity,
so the unit pin is the evidence (no runtime bite exists for a
behavior-preserving refactor). Round-5 implementation
user-authored; this commit folds it with framing revision 9, the
protocol doc's O(1) note, and the acceptance manifest pointer to
the item-34 unit.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01VoiEyuPjoBhvwACf8HAnLB
2026-07-15 11:19:03 +01:00
Levi Neuwirth 3d6336a912 fix(themes): PR #120 round 4 -- freeze sourced from the store
A session first rendering during diagnostic staleness emitted zero
counts: round 3's frozen_diag_counts cache was per-session and only
seeded from fresh computations, so a late joiner attaching mid-edit
(or a buffer first visited between didChange and fresh diagnostics)
had no entry and fell back to (0, 0), contradicting the documented
"frozen counts, never zeros" contract.

mark_stale (T M11.8) keeps the last published diagnostic vector --
only the positions are invalid -- so status_facts_msg now counts
the retained for_uri entries even while stale: the retained entries
ARE the frozen value. The per-session cache is deleted; sourcing
the freeze from the store means there is no session state to lose
to a snapshot reset and no history needed at attach, so the round-3
reset-survival property holds by construction and its round-trip
test passes unchanged against the new mechanism.

Acceptance item 33 marks a populated store stale BEFORE the
SemanticRenderState exists and asserts the first frame reports the
preserved counts; runtime bite vs pre-fix semantic_render.rs.
Framing revision 8; the protocol doc's freeze sentence now says
store knowledge, including the late-joiner case.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01VoiEyuPjoBhvwACf8HAnLB
2026-07-15 11:07:19 +01:00
Levi Neuwirth 2fe6738d68 fix(themes): PR #120 round 3 -- GPU snapshot symmetry, count freeze
Finding 1: the round-2 reset contract was asymmetric. The producer
resets search/menu/status baselines on every snapshot send, but the
GPU's BufferSnapshot arm only cleared spans, decorations,
adornments, summary, and the completion popup -- a menu or search
open at switch time survived the snapshot with no close message
ever coming (the new buffer's first CLOSED state is suppressed
daemon-side), leaving a stale popup that also held
daemon_intercepts_keys true and swallowed pointer events
indefinitely. The arm now clears search_prompt, menu, and
status_facts; the minibuffer is deliberately exempt on both sides
(one global core instance, matching the producer's surviving
last_minibuffer baseline). GPU test opens search + menu + status
via the real wire arms, applies a snapshot, and asserts all three
clear, the intercept gate releases, and the popup pixels vanish --
hand-bitten by disabling the three clears (fix and test share
main.rs).

Finding 2: the round-2 reset broke the diagnostic-count freeze.
last_status was both the peer emission baseline and the
stale-store freeze source, so a snapshot between didChange and
fresh diagnostics re-shipped StatusFacts with zeroed counts. The
freeze source now lives apart: frozen_diag_counts advances on every
fresh count, is read when the store is stale, and survives
on_buffer_snapshot_sent -- which keeps killing the emission
baseline to force the re-send. Acceptance renders (1,1), marks the
store stale, applies the reset, and asserts the re-sent StatusFacts
still carries (1,1); runtime bite vs pre-fix semantic_render.rs
fails exactly as predicted (Some((0,0)) vs Some((1,1))).

Framing revision 7; acceptance items 31-32; the protocol doc's
snapshot-reset paragraph now lists the full frontend drop set and
names the count freeze as daemon knowledge, not peer state.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01VoiEyuPjoBhvwACf8HAnLB
2026-07-15 10:49:10 +01:00
Levi Neuwirth d91ff1a9e2 fix(themes): PR #120 round 2 -- snapshot/baseline reset contract
Finding 1: a BufferSnapshot wipes the frontend's buffer-scoped
render state (spans, decorations, adornments, minimap summary,
completion popup), but the producer's per-buffer emission baselines
survived the switch -- on an unchanged A -> B -> A round trip,
last_summary[A]'s key still matched and the daemon emitted nothing,
so the frontend never regained A's themed minimap (or A's
StatusFacts: the band kept B's name) until an edit, republish, or
theme mutation happened to move the key.

The fix is the general contract, not a minimap special case:
SemanticRenderState::on_buffer_snapshot_sent(buffer_id) kills every
buffer-scoped baseline for that buffer (spans + style gate,
decorations, adornments, summary, status, search/menu prompts,
completion popup), called wherever the daemon writes a snapshot --
the active-buffer-follow path and the F29 upgrade broadcast; the
attach bootstrap constructs its session state fresh. Deliberately
surviving: the bufferless ThemeFacts pair, the global minibuffer
baseline, the per-frontend gutter mode, the revision-keyed diag
line cache, and other buffers' baselines.

Evidence: a producer round-trip acceptance test (themed summary and
StatusFacts return at the SAME generation; identical payload), a
real-daemon wire test driving A -> B -> A via dispatched keys
(runtime bite: times out against pre-fix daemon.rs), a Rust unit
pinning the reset's scope, and a GPU test where the re-shipped
summary restores the first visit's pixels exactly (frontend half --
no GPU code change, coverage only). The semantic_render.rs bite is
compile-fail (the hook is absent pre-fix), disclosed as weaker.
The protocol doc's composition section now states the snapshot
reset contract on both sides of the wire.

Finding 2: the acceptance-suite manifest header now lists the true
item split (1-19, 24-26, 28-29 here; 20-23, 27, 30 in the GPU
suite). Framing revision 6 folds the round; acceptance items 28-30.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01VoiEyuPjoBhvwACf8HAnLB
2026-07-15 10:13:20 +01:00
Levi Neuwirth 3083458cb0 fix(themes): PR #120 round 1 -- minimap cache, __index holes, v15 face leak
Finding 1: accepting a FileStyleSummary drops the GPU minimap vertex
cache -- theme recolors and diagnostic republishes arrive at an
unchanged generation, and the cache keys only on (generation, dims,
scroll), so stale strokes survived until an edit/resize/scroll. The
daemon payload-suppresses identical summaries, so the invalidation
is precise. GPU test drives two same-generation summaries;
hand-bitten by reverting the single invalidation line (script-bite
is vacuous here: fix and test share main.rs).

Finding 2: lua_to_style propagates every Table::get error -- the
lookups run __index, so a raising metatable previously parsed as an
all-default style and the merge SUCCEEDED, committing valid siblings
against the Q#TH6 all-or-nothing contract. Boolean fields keep Lua
truthiness by design (mlua bool), so only raising lookups fail the
transaction. Acceptance reproduces the reviewer's trap shape;
runtime bite vs pre-fix mod.rs.

Finding 3: SemanticRenderState::for_peer records the negotiated
version; below v16 no ThemeFacts is produced and no ui.diag.* face
folds into the FileStyleSummary marks -- the summary is an ungated
pre-v16 channel, and a v15 peer must not get face-derived minimap
colors while its other severity surfaces stay unthemed. The summary
cache key zeroes its face-epoch component for such peers. Acceptance
drives v15/v16 producers side by side; compile-fail bite disclosed
(the test needs for_peer, absent pre-fix).

Finding 4: framing revision 5 weakens the canonical-severity claim
to what is true -- the daemon-RESOLVED color is canonical, while the
GPU's built-in squiggle/sign/counter defaults are historical bright
RGBs that differ from the minimap's converted Indexed marks, a
pre-existing divergence kept because unset faces must render
byte-identically to before.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01VoiEyuPjoBhvwACf8HAnLB
2026-07-14 19:36:31 +01:00
Levi Neuwirth 665fd82860 fix(highlight): PR #118 round 1 — drop locals-predicate captures; stale comments
[P2] The shared JavaScript highlights query guards its builtin captures
(console, require, …) with `#is-not? local`, a PROPERTY predicate
(`Query::property_predicates`) that needs a scope map from the grammar's
LOCALS_QUERY — which pmacs does not run. `compute_highlight_spans` took
every capture, so a locally-shadowed `console`/`require` still surfaced
as `@variable.builtin`/`@function.builtin`; a theme distinguishing
`.builtin` would mis-style the shadowed local.

Full locals processing is substrate work; conservatively fail-closed
instead: drop captures whose pattern carries an `#is?`/`#is-not? local`
property predicate (the identifier falls back to its non-builtin
capture). The text predicates (`#eq?`/`#match?`/`#any-of?`, already
applied by the capture iterator) and `#set!` settings are untouched.
This is a general engine fix — it corrects the same latent mis-styling
for any grammar using the locals predicate, not just JS/TS.

- javascript_shadowed_builtin_is_not_mislabeled: a local `const console`
  produces no `*.builtin` capture (directly observed to fail — two
  `variable.builtin` captures — before the fix).

[P3] Comments this PR invalidated: `lsp.lua` no longer claims Python has
no grammar; `syntax.lua`'s `_has_language` gate comment uses a
still-grammarless example (an init.lua `shebangs.ruby`) instead of
python/javascript; and the rewritten Ruby shebang test's doc no longer
describes it as a Python test.

Gates: fmt; clippy -D warnings; test --lib; --features crdt;
m4_acceptance --skip basedpyright; GPU; full workspace sweep;
git diff --check.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01YJ9FQ832QwftJXCD9LeFan
2026-07-14 17:45:09 +01:00
Levi Neuwirth bcec61e020 feat(highlight): grammars for python/go/typescript/javascript/toml/zig
These five languages already had LSP configs (basedpyright, gopls,
tsserver, taplo, zls) but shipped no tree-sitter grammar, so they
rendered with no lexical color. Fill the gap — 8 BUILTIN_LANGUAGES
entries across 6 crates:

- python (`tree-sitter-python`, root `module`), go (`tree-sitter-go`),
  toml (`tree-sitter-toml-ng`), zig (`tree-sitter-zig`, +`.zon`) — each a
  single self-contained highlights query.
- JavaScript/TypeScript family: `tree-sitter-javascript` parses both
  `.js` and `.jsx`; `tree-sitter-typescript` ships two grammars
  (LANGUAGE_TYPESCRIPT, LANGUAGE_TSX). The four entries — javascript,
  javascriptreact, typescript, typescriptreact — mirror the LSP filetype
  map so tsserver enables the JSX parser. Highlights inherit: the TS
  query is a ~5-capture delta over JavaScript and JSX is a further
  delta, so the entries compose base-first (js → jsx → ts), the same
  pattern as `cuda` over C/C++ (typescript resolves ~22 capture classes,
  typescriptreact ~24).

Each grammar's name equals its existing `pmacs.lsp.config.<name>` key,
so grammar detection (which wins over the filetype map) resolves the id
the server keys off — the file now gets BOTH highlighting and the right
server. No lsp.lua change needed. All crates ride `tree-sitter-language
0.1` with tree-sitter dev-only — no second core in the graph.

Bite-verified acceptance:
- gap_grammars_load_and_parse — each grammar's ABI accepted by the 0.26
  core; a snippet parses without error at its root (covers both TS
  grammars, incl. JSX).
- typescript_highlights_compose_the_javascript_base — the compiled
  typescript/typescriptreact queries resolve >= 15 captures, not just the
  ~5-capture TS delta (the JS base is really composed in).
- builtin_languages_include_gap_grammars /
  gap_grammar_extensions_resolve — entry presence + extension detection
  across all 8 ids.
- m4_gap_grammars_align_with_lsp_configs — through the loaded runtime,
  each path's grammar id matches an existing LSP config. Bite-verified
  against pre-feature src/syntax.rs.

Ripple: two #116 shebang tests used python as their "has-LSP-but-no-
grammar" example, which this PR invalidates. Updated both — the .py +
`#!/bin/sh` precedence test now asserts a python grammar tree (not "no
tree"), and the grammarless-language-is-silent gate test switches to
`ruby` (genuinely grammarless) via a test-local shebang mapping.

Gates: fmt; clippy -D warnings; test --lib; --features crdt;
m4_acceptance --skip basedpyright; GPU; full workspace sweep;
git diff --check.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01YJ9FQ832QwftJXCD9LeFan
2026-07-14 17:29:54 +01:00
Levi Neuwirth ff2ce0f197 fix(lsp): PR #117 round 1 — CMake config via initializationOptions
cmake-language-server does NOT pull a `workspace/configuration` section:
it reads `buildDirectory` from the `initialize` request's
`initializationOptions`, and drives its project model off CMake's File
API under `<buildDirectory>/.cmake/api/` (not `compile_commands.json`).
The `settings = { cmake = {} }` block — and the documented
`settings.cmake.buildDirectory` override — were therefore inert, leaving
conventional out-of-source project data unavailable.

Replace it with `init_options = { buildDirectory = "build" }` (the
conventional out-of-source dir; users override `init_options.buildDirectory`
from init.lua), and correct the comment. The wiring test now asserts
`config.cmake.init_options.buildDirectory == "build"` — bite-verified
against the pre-fix lsp.lua.

Gates: fmt; clippy -D warnings; --features crdt (1720); m4_acceptance
--skip basedpyright (109); GPU (59); full workspace sweep (zero
failures); git diff --check — all green. One `--lib` run flaked on
process::m6_1_pty_mode_lifecycle_started_then_exited (PTY-lifecycle
timing, the m6/m8 daemon-timing family); it passed in the crdt run, the
full sweep, and 4/4 isolated — unrelated to this Lua config change.
Change is Lua config + the acceptance assertion.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01YJ9FQ832QwftJXCD9LeFan
2026-07-14 17:03:05 +01:00
Levi Neuwirth 7646dda583 feat(highlight): filename detection + Dockerfile/Make/CMake grammars
Files identified by their whole basename — Dockerfile, Makefile,
CMakeLists.txt, rc dotfiles — had no detection path (extension-, then
shebang-keyed). Add a filename layer and the three grammars behind it.

- **Grammars** (BUILTIN_LANGUAGES): dockerfile via `tree-sitter-containerfile`
  (the ABI-current grammar; the old `tree-sitter-dockerfile` pins
  `tree-sitter ^0.20` and would fork the graph — containerfile rides
  `tree-sitter-language 0.1`, tree-sitter dev-only, like the others),
  make via `tree-sitter-make`, cmake via `tree-sitter-cmake`. All ship
  self-contained highlights (single fragment). Extensions:
  `.dockerfile`/`.containerfile`, `.mk`/`.make`, `.cmake`.
- **Filename layer**: `pmacs.parse.language_from_filename(name)` backed by
  an extensible `pmacs.parse.filenames` map, wired into the precedence
  chain in both syntax.lua (grammar) and lsp.lua (LSP): grammar-ext →
  filetype map → filename → shebang. A recognized extension still wins;
  the basename map only fires when the extension misses. Seeds the three
  filenames plus shell rc dotfiles (`.bashrc`/`.zshrc`/`PKGBUILD`/… →
  bash) — highlighting them against the grammar shipped in #115.
- **LSP**: `config.dockerfile` (docker-langserver --stdio) and
  `config.cmake` (cmake-language-server). Make has no server, so no
  `config.make` — grammar highlight only. Extension filetype fallbacks
  added for id stability.

Bite-verified acceptance:
- filename_grammars_load_and_parse — each grammar's ABI is accepted by
  the tree-sitter 0.26 core and parses a representative snippet without
  error (dockerfile/cmake root at source_file, make at makefile).
- builtin_languages_include_dockerfile_make_cmake /
  language_for_path_resolves_dockerfile_make_cmake_extensions — entry
  presence and extension detection.
- m4_filename_map_resolves_special_files — the basename map (incl. path
  form and dotfiles→bash), config.dockerfile/cmake commands, and no
  config.make. Bite-verified against pre-feature syntax.lua.
- m4_filename_extensionless_dockerfile_highlights — an extensionless
  `Dockerfile` resolves to dockerfile for LSP and gets a dockerfile parse
  tree; reachable only via the filename map. Bite-verified.

Gates: fmt; clippy -D warnings; test --lib; --features crdt;
m4_acceptance --skip basedpyright; GPU; full workspace sweep;
git diff --check.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01YJ9FQ832QwftJXCD9LeFan
2026-07-14 16:40:50 +01:00
Levi Neuwirth 7975eeda87 feat(themes): named UI faces + ThemeFacts channel (protocol v16)
Arc 4 stage 1 (docs/theme-faces-framing.md, revision 4). Faces are
theme entries under the reserved ui/ui.* namespace -- zero new Lua
API. Theme::face() resolves with the dotted-prefix walk but never
falls back to default_style; each face applies owns-surface within
its stage-1 component mask, identical on both frontends.

Substrate: two monotonic theme mutation counters (syntax/face) with
transactional set/merge/clear/default (parse before locking, commit
all-or-nothing, bump from the prior value); the StyleGate and the
minimap summary key on the counters -- fixing the pre-existing bug
where a mid-session pmacs.theme.set never re-shipped StyleSpans --
with the summary gaining payload-equality suppression that still
advances its key on computation.

Wire: InstanceMessage::ThemeFacts appended after CompletionPopup
(postcard discriminants are ordinal; a byte pin guards placement),
PROTOCOL_VERSION 15 -> 16, daemon-gated >= 16, one authoritative
table per attachment (None-seeded baselines), TUI silent-drop arm.

Grid: paint_frame resolves ui.modeline / ui.statusline /
ui.minibuffer(.candidate) / ui.gutter / ui.selection faces;
SearchView and DiagnosticView take the theme handle through the real
attachment paths (EditorCore injection, install_diag threading); the
canonical severity color resolves ui.diag.* with the Default ->
built-in policy that keeps the minimap presence encoding sound.

GPU: exact-name face table applied per draw with the Q#TH5 Default
mapping (plain text / window bg, reverse swap), local/peer wash
split, candidate-dropdown glyph site, and the status-band
shaping-cache invalidation without which a diag-face recolor with
constant counts kept stale counter colors.

Tests: 18-test acceptance suite (grid, wire, daemon gate, atomicity,
monotonicity, late join), 7 GPU headless tests incl. decoded vertex
colors, units for the face walk / transactional commits / producer
caches; protocol pins for v16 + the CompletionPopup byte pin.
Bites vs 3cbb9de (scripts/bite): semantic_render.rs (8 runtime test
failures), editor.rs (5 runtime), daemon.rs (v15 gate, runtime);
lua_bindings/mod.rs, pmacs-gpu/main.rs, search.rs, diag.rs, and
highlight.rs bite as compile failures (weaker evidence, disclosed).

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01VoiEyuPjoBhvwACf8HAnLB
2026-07-14 16:11:09 +01:00
Levi Neuwirth 7479213c3f fix(highlight): env -S payload is a full arg list, not a bare interpreter
The attached split-string payload (`-Spython3`, `--split-string=...`) can
itself begin with env options or VAR=value assignments before the
interpreter: `-S-i python3`, `-SFOO=bar python3`,
`--split-string=-u FOO python3`. Rather than taking the payload's first
word as the interpreter, re-inject the attached payload into the token
stream so it flows through the same option / operand / assignment state
machine as a separated payload. Adds the three cases as resolver tests.
2026-07-14 16:00:47 +01:00
Levi Neuwirth 558d00020f fix(highlight): PR #116 round 2 — pin grammar across switch, attached env -S
Two follow-ups from review, both in builtin/runtime/syntax.lua.

1. [P2] Buffer switching bypassed the pinned grammar. after-edit already
   reparsed the pinned language, but the after-switch reattach path
   (attach_for_active_buffer) re-resolved from scratch — so open an
   extensionless `#!/bin/sh` (bash), edit its shebang to lua, switch away
   and back, and the grammar flipped to lua while the LSP side kept its
   bash attachment (lsp.lua's after-switch reuses the existing record).
   attach_for_active_buffer now reuses the language pinned at first attach
   whenever a parse view already exists; only a first-seen buffer
   resolves. A language change still needs a close/reopen, matching both
   the after-edit behavior and how extensions work.

2. [P2] Attached `env -S`/`--split-string` forms failed. The walk skipped
   the whole option token, but for split-string the interpreter rides
   inside it: `-Spython3`, `-vSpython3` (after no-operand short flags
   i/v/0), and `--split-string=python3` all resolved to nil (the last was
   also eaten by the earlier `=` branch). The env walk now extracts the
   interpreter from the attached value (`^-[iv0]*S(.+)$` /
   `^--split-string=(.+)$`); the separated forms (`-S python3`) still work
   by walking on to the next token.

Tests (bite-verified against the round-1 syntax.lua — both fail there;
scripts/bite HEAD builtin/runtime/syntax.lua):
- m4_shebang_edit_keeps_pinned_grammar now adds a switch-away/back cycle
  (via pmacs.window.switch_buffer, which fires after-switch
  synchronously) and asserts the tree stays bash.
- m4_shebang_resolver_maps_interpreters adds the attached split-string
  cases (`-Spython3`, `--split-string=python3`, `-vSpython3`).

Gates: fmt; clippy -D warnings; m4_acceptance --skip basedpyright; GPU;
git diff --check green. Only-known-flake caveat as round 1
(editor::composition_overhead_under_ten_percent perf microbenchmark,
unrelated to this Lua change). Change is Lua-only plus the acceptance
tests.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01YJ9FQ832QwftJXCD9LeFan
2026-07-14 15:20:22 +01:00
Levi Neuwirth f300b77533 fix(highlight): PR #116 round 1 — shebang precedence, pinned grammar, env operands
Three review findings, all in builtin/runtime/syntax.lua.

1. [P1] Syntax bypassed extension precedence and grammar availability.
   attach_for_active_buffer resolved `language_for_path or shebang`, but
   language_for_path knows only grammar-backed extensions — so a `.py`
   file opening with `#!/bin/sh` fell through to the shebang and got a
   bash parse tree, and an extensionless `#!/usr/bin/env python3` script
   dispatched "python" (no grammar) and raised "unknown language". A new
   resolve_active_language walks the full precedence chain — grammar
   extension -> LSP filetype map -> shebang — consulting the shebang only
   when the extension is unrecognized (a recognized non-grammar extension
   like .py is authoritative). Dispatch is then gated on
   pmacs.parse._has_language(lang), so grammarless languages are skipped
   silently. The extension parts stay keyed on buf:name() (unchanged from
   before), so path-less buffers that resolve a grammar by name — e.g.
   generated markdown buffers — are unaffected.

2. [P2] Editing an open script's shebang left parsing/highlighting stale.
   The after-edit path re-sniffed the mutable shebang: sh -> python
   raised "unknown language" while leaving the old bash tree, and
   sh -> lua swapped the parse tree under a highlight overlay still
   holding the original grammar's query. Reparse now uses the language
   pinned at first attach (parse_lang_by_buffer), never re-resolving —
   a language change needs a close/reopen, as it does for extensions.

3. [P2] `env` options with operands were mistaken for interpreters.
   `#!/usr/bin/env -u FOO python3` skipped `-u` but took `FOO`. The env
   walk now skips the operand of the operand-consuming GNU-env options
   (-u/--unset, -C/--chdir, -a/--argv0) before selecting the interpreter.
   -S/--split-string stays excluded (its string carries the interpreter).

Tests (bite-verified against pre-fix syntax.lua — each fails without its
fix; scripts/bite HEAD builtin/runtime/syntax.lua):
- m4_shebang_does_not_override_extension now also asserts _has_view is
  false (no bash grammar tree for a `.py` + `#!/bin/sh`), not only the
  LSP language.
- m4_shebang_extensionless_grammarless_language_is_silent — extensionless
  python resolves for LSP, gets no grammar view, and records no error.
- m4_shebang_edit_keeps_pinned_grammar — rewriting a `#!/bin/sh` script's
  shebang to lua keeps the bash tree and reports no error.
- m4_shebang_resolver_maps_interpreters — added the env-operand cases
  (`-u FOO`, `-C /tmp`, combined).

Gates: fmt; clippy -D warnings; m4_acceptance --skip basedpyright; GPU;
git diff --check all green. The only sweep failure is the pre-existing
editor::composition_overhead_under_ten_percent render microbenchmark
(ratio hovers at the 1.10 cutoff; flakes ~1/3 even isolated single-
threaded, already asserted-off on macOS) — a pure-Rust render loop this
Lua-only change cannot touch. Change is Lua-only plus the acceptance
tests.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01YJ9FQ832QwftJXCD9LeFan
2026-07-14 15:02:59 +01:00
Levi Neuwirth 4a60e4c858 feat(highlight): shebang-based language detection for extensionless scripts
Extension detection missed extensionless scripts — `scripts/deploy`, git
hooks, `configure`, and `scripts/bite` itself — so they got neither
highlighting nor an LSP server. Add a first-line shebang fallback.

- New `pmacs.parse.language_from_shebang(buf)` (builtin/runtime/syntax.lua):
  sniffs the first line (capped at 256 bytes), maps the interpreter's
  basename to a language, and resolves the `#!/usr/bin/env python3`
  indirection (skipping env's own `-S`/flags and `VAR=val` assignments).
  Backed by `pmacs.parse.shebangs`, a user-extensible map seeded with the
  interpreters pmacs can act on: sh-family -> bash, python* -> python,
  node -> javascript, lua* -> lua.
- Wired as a strict *fallback* on both resolution paths: syntax.lua's
  grammar attach (`language_for_path or language_from_shebang`) and
  lsp.lua's `buffer_language` (grammar -> filetypes -> shebang). A
  recognized extension always wins, so a `.py`/`.sh` file is never
  re-classified by a stray shebang.
- Cross-language, not shell-only: `#!/usr/bin/env python` /`node` /`lua`
  resolve too. Special filenames (`.bashrc`, `Dockerfile`, `Makefile`)
  are intentionally deferred until there are grammars behind them.

Bite-verified acceptance (tests/m4_acceptance.rs):
- m4_shebang_resolver_maps_interpreters — the mapping incl. env
  indirection and `env -S`; non-shebangs and unmapped interpreters
  (ruby) resolve to nil.
- m4_shebang_extensionless_script_resolves_bash — opening an
  extensionless `#!/bin/sh` script resolves to bash on BOTH paths:
  lsp.lua's `active_buffer_language()` and a settled bash parse tree
  (grammar attach). Reachable only via the shebang, since the file has
  no extension.
- m4_shebang_does_not_override_extension — a `.py` file opening with
  `#!/bin/sh` still resolves to python (extension precedence).

Gates green: fmt; clippy -D warnings; test --lib; --features crdt;
m4_acceptance --skip basedpyright; GPU; full workspace sweep;
git diff --check. Change is Lua-only plus the acceptance tests.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01YJ9FQ832QwftJXCD9LeFan
2026-07-14 14:33:06 +01:00