All five review findings reproduced with a failing test before any fix,
and every fix falsified by reverting it.
R1-1 — the wire-area clamp lived only in `panel_grid_size`, so the daemon
shipped an authoritative `Absent` while `panel_hidden` stayed false:
keys kept reaching the invisible window and a panel terminal kept its
controller. Q#BP2b calls hiding a DURABLE state transition and the
exhaustion arm had made it a per-frame effect. Fixed structurally rather
than pointwise: `presentable_panel_grid` is now the one derivation behind
both the renderer and `reconcile_panel_layout_core`, so the two cannot
drift apart again.
R1-2 — closing and reopening the same PERSISTENT buffer inside one
dispatcher burst left the shipped declaration intact while the window it
described was already dead, and same-buffer/same-size made the successor
indistinguishable by every other field. A presentation epoch only
identifies a presentation if something checks that the presentation it
names is still on screen, so `panel_declaration_matches` now takes the
live side window and buffer.
R1-3 — the semantic terminal-layout twin consulted only the full-document
declaration, which a panel terminal deliberately lacks, so the child kept
its opening geometry through the drain. `sync_semantic_panel_terminal_
layout` is the missing case; it resolves through `side_window_for` while
its sibling resolves through `primary_document_window`, so the two are
disjoint by construction and nothing is resized twice per tick.
R2-4 — `NoMessage` means publish nothing, not publish empty. Treating it
like `Invalidated` removed the band's provider text on a transient
buffer-follow mismatch. The band repaints its whole mode line every
frame, so "publish nothing" has to be a retained baseline; it is keyed by
window id so a replaced panel inherits nothing.
R2-5 — non-`Move` activation is Q#BP16's TERMINAL clause, because the
shared adapter claims the controller for wheel steps too. A document
panel keeps scroll-without-focus, matching `dispatch_mouse`.
The sweep for R1-1's and R1-3's shape found one more, and it is the same
bug as R1-1: a panel wider than the terminal subsystem's per-axis cap is
legal on the wire (Bet B5') but its content rect was refused by
`snapshot_for_view`, collapsing the projection to `None` — a per-frame
`Absent` with the durable state still saying visible, reachable with one
`FrontendCellGeometry` declaration. The band is legitimately that wide,
so the child is clamped to the columns a PTY can have and the remainder
paints as band background, exactly as a narrower snapshot already does.
One knowingly per-frame `Absent` remains and is recorded in the code
rather than fixed: presentation-epoch exhaustion, which takes 2^64
shipped presentation changes in one session and cannot be reached by any
frontend.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Lv428Fth9LRtffwJSsqH7T
Bottom-panel Stage 2B-2, second half: the producer, the presentation
epoch, and the three inbound event gates.
The producer lives beside the terminal pass in `semantic_render.rs` and
follows its shape: compare the complete payload first, validate only a
payload that differs, and store only what was actually shipped. The
presentation epoch is allocated from the side window and its buffer, so
a new side window, a replaced buffer, and every `Absent` -> `Present`
transition each take a fresh identity; `Absent` clears the identity,
which is what makes close/hide/reopen of the SAME persistent buffer
unaddressable by a stale `PanelPointer`. Allocation is checked and
exhaustion fails closed to `Absent` rather than wrapping into a live
identity. The `Absent` baseline is seeded rather than left empty: a
fresh session has no band, so the opening state is a fact the peer
already holds.
The band rides both render paths and does not wait for a declared byte
viewport: it is a separate surface, and gating it on the document
declaration would leave the first panel unpaintable. Its mode line takes
the side window's segments from the SAME provider invocation that serves
the document's wire segments.
Inbound, `peer_may_send_panel_events` checks four facts together — an
installed semantic projection, the negotiated version, the daemon's own
capability bit, and (via the transport source) that the payload's
claimed id is never consulted. `panel_event_epochs_are_current` then
runs Q#BP16 steps 2-4 as one predicate so no caller can check the
geometry epoch and forget the presentation epoch.
Two daemon gates moved from `panel_capable` to `!semantic_render`. Stage
1 could conflate them because panel capability implied grid; now that a
semantic view can be panel-capable, a capability-keyed gate would feed it
the permanent 24x80 attach placeholder that Q#BP15a forbids, and parent
acceptance 40 would fail through the attach line rather than through the
projection. Not a live defect — no production semantic session is
panel-capable yet — but it is the landmine Stage 2B-3 would have stepped
on.
`panel_capable` is unchanged for production negotiation and the
unsolicited `Hello` still advertises v20. Nothing here is reachable by a
user.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Lv428Fth9LRtffwJSsqH7T
**P1-1 — layout invalidation could suppress the authoritative clear.**
Real bug. Both render paths resolved the document identity AFTER the
evaluator ran callbacks, but BOTH outcome arms carry PHASE-1 contexts.
A provider that closes the primary document split changes
`primary_document_window` mid-evaluation, so the filter compared
phase-1 contexts against a replacement identity, matched nothing, and
emitted no clear — leaving stale statusline text on the wire forever.
The identity is now captured BEFORE `evaluate_statusline` runs and
threaded through both paths (the terminal path via `terminal_chrome`).
Pinning it took three attempts, and the two failures are the useful
part:
- `pmacs.window.close()` takes no argument — it closes the ACTIVE
window. The first version passed a window id that was silently
ignored, so it closed the panel instead of the document.
- The Lua window API acts on the ACTIVE FRONTEND, so driving it against
a synthetic semantic view changed nothing at all.
- Closing the only document window is structurally REFUSED (Q#BP6
forbids a lone side window as a resting state), so the fixture needs
TWO document windows for the close to be legal.
The test now asserts its own precondition — that the callback really
changed the identity — before asserting the clear, and reproduces the
reported symptom (no `StatuslineSegments` at all) when the fix is
reverted.
**P1-2 — #21 was pinned at the helper, not the producer.** Confirmed:
reverting only the call site inside
`publish_buffer_snapshot_to_replicas` left both the helper test and the
existing socket-pair test green. The helper assertions are removed (with
a note saying why) and replaced by
`snapshot_publication_follows_the_document_under_a_focused_panel`, which
drives the real producer over socket pairs and asserts BOTH directions:
the document buffer's snapshot is delivered while a panel holds focus,
and a panel-only buffer's is not.
Biting that test exposed a defect in the test itself: the delivery read
had no timeout, so a regression made it HANG rather than fail. A hanging
test is strictly worse than a red one — every read now has a timeout.
Gates: fmt clean; workspace clippy clean; 1,832 default + 2,015 CRDT
library; Stage 2A 17; Stage 1 46; statusline 8; m11_5 2; GPU initial
target 14; terminal config 12; folding Stage 2 48; vterm 1/2 10 / 6;
M4 121; required GPU 202; `git diff --check` clean.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
**P1-1 — the `Invalidated` arm published the panel context on the
document wire.** Real bug, and the live half of the routing defect: the
semantic peer has ONE statusline slot, so emitting an
authoritative-empty payload for every context replaced the document's
with the panel's. Now filtered by document-window identity exactly like
the `Ready` arm; a panel's own clear belongs to `PanelFrame` in 2B.
Pinned by `invalidated_statusline_clears_only_the_document_not_the_panel`,
which reproduces the reported shape — two targets instead of one — when
the filter is removed.
Honest note on the `Ready` arm: its identity selector is **defensive**,
not independently falsifiable today, because the document context is
captured first so "first context for my frontend" happens to pick it.
Rather than leave that as a silent dependency,
`the_semantic_fan_out_captures_the_document_first` pins the order and
says why it matters.
**P1-2 — round-1 finding 3 was not closed; four of my pins were
vacuous.** All four confirmed and fixed:
- The statusline consumer test discarded `render_frame`'s output. It now
observes the WIRE payload from a v18 peer with a registered provider,
and asserts non-emptiness so it cannot pass by emitting nothing.
- The terminal test compared two NON-terminal buffers, so both routings
answered `false`. The document window now holds a REAL terminal, so
the routes disagree; reverting `semantic_terminal_key` fails it.
- The decorations test used different buffers and an empty selection —
again the same answer either way. The panel now displays the declared
buffer with a non-empty selection while the document has none.
- #1/#3/#21 had no discriminating pin at all. Their only production
caller is `dispatcher_loop`, which no test can drive, so this extracts
three named seams the loop calls — `document_buffer_to_follow`,
`document_cursor_byte`, `peer_displays_buffer_as_document` — and pins
each.
Also newly pinned: #2 the lazy CRDT upgrade (the census's sharpest
case), #7 `Viewport` aligning WITHOUT taking focus, and #9 a focused
terminal panel not suppressing the document viewport.
**Every one of the nine pins was falsified by revert.** Two needed a
second attempt after the first bite came back green.
**P2-3 — stale docs.** `StatuslineEvaluationTarget::Semantic`'s
documentation described evaluating only the focused window; it now
describes the document-plus-side fan-out, the capture order, the
identity-selection requirement, and that `active` reports actual focus.
The ledger's Stage 2A entry is corrected to five commits, 2,014 CRDT
tests, and 16 acceptance tests.
Two clippy findings the refactor introduced were fixed:
`document_buffer_to_follow` is `crdt`-gated to match its only caller,
and the `CursorByte` guard collapses into one `if`.
Gates: fmt clean; workspace clippy clean; 1,832 default + 2,014 CRDT
library; Stage 2A 16; Stage 1 46; statusline 8; m11_5 2; GPU initial
target 14; terminal config 12; folding Stage 2 48; vterm 1/2 10 / 6;
M4 121; required GPU 202; `git diff --check` clean.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Integrates canonical `main` @ `cf54270` and closes every finding.
**P1-1 — a stale document `Pointer` stole focus from the panel.** Real
bug. `align_primary_document_window`'s unknown-buffer arm returned
`Some(window)` despite aligning nothing, so #8's activation focused the
document *before* `dispatch_pointer` rejected the mismatched buffer. It
now returns `None`: alignment did not happen, so no caller may treat it
as a document gesture.
Pinned through `handle_dispatcher_event` — the real dispatcher seam —
because the defect lived in the PAIR of alignment and activation, not
in either alone. **The first version of that test was vacuous**: an
unregistered session is dropped at `daemon.rs:1962` (#148's
membership check) before the aligner runs, so it passed with the bug
restored. It now registers a real semantic session and fails with
exactly the reported symptom, focus moving `WindowId(2)` →
`WindowId(3)`.
**P1-2 — the approved A2A-2 fan-out was missing.** The semantic target
returned one context. It now captures the primary document PLUS the
visible side window, each provider invoked once, with a
derived-hidden side omitted (Q#BP2b — no mode line to paint, so no
callback should run for it). The acceptance asserts `windows.len() == 2`.
This exposed a second defect the finding did not name: the consumer
selected segments with `.find(|w| w.context.frontend_id == frontend_id)`
— the FIRST context for the frontend. With two contexts that silently
depended on capture order and could have shipped the panel's mode-line
text as the document status band. `emit_statusline_segments` now takes
the document `WindowId` and selects on window identity.
**P1-3 — the census suite tested the authority, not the consumers.**
Confirmed: reverting a producer to `active_window_for` left all ten
tests green. Added consumer-level pins that drive the real producers
through `SemanticRenderState::render_frame` with a panel focused, plus
the terminal-declaration guard. Bite-verified: reverting the
`LineNumbers` routing now fails
`consumer_line_numbers_follow_the_document_not_the_focused_panel`.
**P1-4 — main integrated.** The textual conflict was `docs/active-work.md`
(both lanes rewrote the same region; the terminal-config lane is kept
whole and the bottom-panel heading updated). `src/editor.rs` auto-merged,
and the full gate suite was rerun on the merge result.
**P2-5 — the painter test was vacuous.** A fixed-point check that
survived deleting `window.text_view.render`. It now asserts each of the
four extracted outputs actually appears: buffer TEXT, the line-number
GUTTER (with line numbers explicitly enabled, rather than dropping the
assertion), the window MODE LINE, and a returned caret. Bite-verified
by deleting the render call.
**P2-6 — the stale fold-projection claim is corrected.**
`src/window.rs`'s `fold_projection` doc no longer asserts that a
semantic session never enters `paint_frame`; it records that the panel
band breaks that premise and that the extracted painters take the map
as a parameter.
Gates on the merge result: fmt clean; workspace clippy clean; 1,832
default + 2,010 CRDT library tests; Stage 2A acceptance 13; Stage 1 46;
statusline 8; m11_5 2; GPU initial target 14; terminal config 12;
folding Stage 2 48; vterm 1/2 10 / 6; M4 121; required GPU 202;
`git diff --check` clean. `vterm_stage3_acceptance::a37` remains the
pre-existing flake measured on the base commit.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Bottom-panel Stage 2A, first half. Every consumer the framing classifies
**Projection** now resolves the frontend's primary document window or
buffer instead of its focused one; every consumer classified focus,
focus-chrome, or focus/session is deliberately left alone.
No protocol change, no behavior change for any frontend today: with
`panel_capable = false` for semantic sessions, `primary_document_window`
returns `view.active` for every existing configuration, so this is a
seam adoption that becomes load-bearing in 2B.
Projection consumers routed:
- **#1** semantic buffer-follow / `BufferSnapshot` re-send
- **#2** the lazy CRDT upgrade — the sharpest case, since it BROADCASTS
to every replica, so keying it on focus would let focusing a fresh
generated panel buffer swap every peer's document mirror
- **#3** `CursorByte`
- **#4** `LineNumbers` mode
- **#5** selection decorations
- **#6/#10/#11** the full-window semantic terminal declaration, its
snapshot/sync, and terminal-frame suppression, via the shared
`semantic_terminal_key` resolver
- **#9** the `Viewport` terminal-context gate — a focused terminal panel
must not suppress the still-visible document's viewport
- **#12** the semantic statusline target LOOKUP
- **#21** the `BufferSnapshot` publication recipient filter
`align_semantic_window_to_buffer` splits per Q#BP14, which is the
distinction that makes rejecting panel-named events insufficient on its
own:
- `align_primary_document_window` (**#7**, `Viewport`) — aligns the
document window and **never touches `view.active`**.
- `align_and_activate_primary_document_window` (**#8**, `Pointer`) —
aligns and then activates, because a click in the document area means
"work here". This is the one place projection and focus legitimately
move together.
`dispatch_semantic_terminal_pointer` (**#11**) gains the same rule: an
accepted non-`Move` gesture activates the document window before the
gesture replays, while bare hover neither focuses nor claims.
The statusline change is deliberately a HALF change (parent acceptance
42): the window LOOKUP resolves the primary document window, but
`active` still reports **actual focus**, so a document provider can
truthfully observe `active = false` while a panel owns focus.
Untouched, and that is the load-bearing negative: #13 remote-op
validation, #14 `dispatch_idle_for`, #15 presence, #16-#19 search /
menu / minibuffer / completion chrome, #20 terminal bell drain, and #23
remote-op application all still resolve the actually focused window.
#16-#19's Q#BP14b routing table needs `PanelFrame` and lands in 2B.
1,832 library tests pass; fmt and workspace clippy clean.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
- **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
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
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.
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.
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.
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.
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>
Resolve terminal commands and buffer switches against the authenticated invoking
frontend, publish copied selections to that frontend, and wire daemon rendering,
resize, focus, paste, bell, and detach lifecycle through exact view identities.
Co-Authored-By: Claude <noreply@anthropic.com>
Document and pin the GPU built-in-only narrow-band clipping policy,
including the intentional ability of a wide right group to hide the
left identity. Guard the fixed UI face ordering used by binary search,
preserve flattened provider tracebacks in *errors*, and rename the
phase-one unavailable reason to cover missing layout contexts.
Refresh the implementation verification record after the full gate
suite.
Co-Authored-By: Claude <noreply@anthropic.com>
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>
Protocol v16->17: InstanceMessage::FontFacts { family,
size_centi_px } appended after ThemeFacts (integer hundredths of a
logical pixel -- the enum derives Eq, f32 cannot; range 600..=7200
documented on the wire). Pins updated: version 17, ladder accepts
6..=17 rejects 18, FontFacts round-trip (populated + all-None), and
a ThemeFacts byte pin ([23, 0]) guarding the appended placement.
Daemon half: FontPref { family, size_centi_px, epoch } behind a
shared handle on EditorState, installed with the new pmacs.gpu Lua
module BEFORE load_user_config so init.lua set_font lands in the
state the first attachment reads. set_font is strict plain data
(raw_get, unknown raw keys rejected by name, metatables never
consulted, parse/validate/quantize fully before locking -- range-
check the ORIGINAL value so 5.999 errors, then nearest-hundredth
round); pmacs.gpu.font() returns a fresh quantized table.
Producer: font_facts_msg (the theme_facts_msg discipline --
Option-seeded epoch + payload baselines, advance on computation,
one authoritative send per attachment incl (None, None),
bufferless so on_buffer_snapshot_sent never touches it); for_peer
gains peer_knows_font_facts (>= 17); daemon write-loop skip arm;
TUI silent-drop arm + regression test; first-frame count test now
expects 6 messages. GPU application follows in the next commit.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01VoiEyuPjoBhvwACf8HAnLB
Rebase the injection branch onto main after #120 (themes stage 1,
protocol v16) merged. Conflicts were confined to appended test blocks
in pmacs-gpu/src/main.rs (kept both #120's GPU face tests and the
injection source_color test); highlight.rs, lua_bindings/mod.rs, and
semantic_render.rs auto-merged (my injection code and #120's theme
epochs / resolve_faces summary path / ThemeFacts occupy disjoint
regions). The one API adaptation: #120 gave scoped_file_summary a
`resolve_faces: bool` parameter, so the full-buffer flatten perf gate
passes `false` (it exercises the syntax flatten path).
Gates re-run on the rebased base: fmt, clippy -D warnings, lib (1582),
lib crdt (1756), m4 (110), theme_faces (22, #120's suite unbroken),
PMACS_REQUIRE_GPU gpu (70), full workspace sweep (0 failures),
git diff --check.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01YJ9FQ832QwftJXCD9LeFan
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
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
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
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
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
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
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
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
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
Validation finding: LSP command summaries ('12 references', hover
first-lines, error reports -- everything pmacs.editor.set_status
writes) showed in the TUI's bottom bar but never in the GPU band,
regardless of which frontend initiated. The attached TUI gets the
message for free through the rendered cell grid's bottom row; a
semantic frontend only sees the wire, and StatusFacts never carried
the message.
Fix inside the still-unreleased v15: StatusFacts gains
message: Option<String> (encoding change to that variant; its daemon
gate moves 8 -> 15, the v10 SearchPrompt / v14 LineNumbers shape --
an old peer's band goes dark rather than mis-decoding). Producer reads
core.status into the cached-compare facts; the GPU band shows the
message echo-area style (under the minibuffer and search prompts,
over the buffer name), returning to the name when the daemon's next
keypress clears it. Producer + postcard round-trip tests added.
The finer-grained results UI (references list, panels, error surfaces)
is Arc 1b on the roadmap; this closes the parity gap until then.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
InstanceMessage::CompletionPopup {buffer_id, anchor: Option<u64>,
prefix_len, rows: Vec<CompletionPopupRow{label, kind, detail}>,
selected, total} -- the first byte-anchored popup on the wire: the
frontend maps byte -> glyph rect locally (the caret precedent), so the
instance never learns a pixel. Rows are display-only; accept resolves
daemon-side via dispatch_completion_key, so insert text never ships.
PROTOCOL_VERSION 14 -> 15, SUPPORTED extended; postcard round-trip
(open + closed shapes) and version-pin/ladder tests updated.
Producer: semantic_render::completion_popup_msg, the family pattern
(per-buffer cached-compare, active-buffer only, first-sight-closed
stays silent) with one new rule -- the session is WINDOW-stamped and
this state is per-frontend, so only the frontend whose own window
owns the session sees it open: a popup opened by TUI typing never
renders in an attached GPU and vice versa. Windowed rows share the
TUI overlay's POPUP_MAX_ROWS. Daemon-gated >= 15 (a v14 peer still
completes via the key round-trip, it just gets no GPU dropdown).
GPU consumption follows in this branch.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Carry the line-number mode to the GPU so it renders relative/hybrid, not
just on/off. The v13 wire carried `LineNumbers { enabled: bool }`
(off/absolute only); v14 carries the full mode.
- Protocol: `LineNumberMode {Off, Absolute, Relative, Hybrid}` moves into
pmacs-protocol (with `number_for`/`is_on`) so the wire, daemon, and both
frontends share ONE enum and ONE number rule (Q#UX7); `pmacs` re-exports
it as `crate:🪟:LineNumberMode`. `LineNumbers.enabled: bool` →
`mode: LineNumberMode`. PROTOCOL_VERSION 13 → 14, SUPPORTED → [6..14],
daemon-gated `< 14` (a v13 peer gets no LineNumbers, like the v10
SearchPrompt bump).
- Producer (`line_numbers_msg`): ships the window's mode (cached-suppress
on the mode now, seeded to Off).
- GPU: `line_numbers` field becomes the mode; `refresh_gutter_buffer`
computes each number via `mode.number_for(line, cursor_line)` against the
GPU's own cursor line (`cursor_line()` off `current_line_starts`). The
buffer rebuilds every render, so relative numbers track the cursor for
free. Gutter width unchanged (sized by line count → stable).
Tests: GPU headless render proves relative ≠ absolute with the cursor on
line 2; producer test asserts the mode ships; protocol version pins → 14.
fmt + clippy --all-targets clean both flavors + gpu; 1446 lib + 12 protocol
+ 55 pmacs-gpu tests pass. Needs a GPU eyeball.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_014TXbAwk27agwhrNNrhLi2U
Fix the control plane for the line-number gutter: M-x
window.toggle-line-numbers now works from EITHER frontend, each affecting
its own window.
Root cause (scores framing bet Q#UX1 false): rendering a gutter is
frontend-local, but the TOGGLE is a daemon command, so the mode has to
reach the GUI over the wire. My earlier GPU control (a --line-numbers flag)
left M-x-in-the-GUI a no-op and the two frontends' settings disconnected.
- Protocol: new additive `InstanceMessage::LineNumbers { buffer_id,
enabled }`; PROTOCOL_VERSION 12 → 13, SUPPORTED grows to [6..13].
Daemon-gated < 13 (a v12 peer keeps its gutter off), like every prior
additive bump — no encoding break.
- Producer: SemanticRenderState::line_numbers_msg reads the frontend's
active window mode (via active_window_for(frontend_id)) and emits on
change; cached-compare suppression seeded to the frontend's `off`
default, so a plain window adds zero traffic and existing frames are
unchanged.
- Daemon: gate LineNumbers >= 13 in the write loop.
- TUI: drops LineNumbers silently (reads its window directly).
- GPU: consumes LineNumbers → drives local `line_numbers`; the
--line-numbers flag retired.
Now the daemon Window.line_numbers is the single source of truth; both
frontends render locally from it.
Tests: line_numbers_msg emit-on-toggle/suppress-when-unchanged; protocol
version pins updated to 13. Validated: fmt + clippy --all-targets clean
both flavors; 1440 lib + 12 protocol + 53 pmacs-gpu tests pass.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_014TXbAwk27agwhrNNrhLi2U
The pmacs-gpu frontend can now render the minibuffer, so M-x, C-x-prefixed
commands, and the LSP rename prompt work in the GUI. Render-only — the
minibuffer logic already lives in the core, which is untouched (its fields
are public, so the producer reads them directly).
Protocol v12 (additive; SUPPORTED = [6..12]):
- `InstanceMessage::MinibufferPrompt { prompt, input, cursor, candidates,
selected, total }` — bufferless (the minibuffer is one global core
instance), daemon-gated >= 12. The candidate list ships as a windowed
slice (<= MB_VISIBLE = 10) around the selection, so a 1000-command M-x
sends ~10 strings per keystroke, not 1000.
Producer / daemon / TUI:
- `semantic_render::minibuffer_prompt_msg` — cached-compare suppressed
(a single value, not per-buffer), emitted from the active-buffer
viewport. daemon gates the variant >= 12. The TUI ignores it (it paints
the minibuffer via its own bottom row).
GPU:
- The bottom band shows `prompt + input` (ahead of search/status) with a
band caret at the input cursor (monospace advance off the shaped band
width); the buffer caret hides while a prompt is open.
- A vertical completion dropdown above the band — best match at top,
selected row highlighted — via a third `TextRenderer` over bg quads
(the menu popup pattern, reusing its colors). Only shows when there are
candidates.
- `is_minibuffer_open_chord` forwards M-x and the C-x prefix (otherwise
withheld) so the GUI can open a prompt / enter a prefix; the daemon then
flips `dispatch_idle` false and the intercept gate round-trips the rest.
(Also collapsed two unnested_or_patterns clippy nits in the chord
helpers.)
Tests: candidate windowing, the producer (open M-x via Lua -> prompt +
windowed candidates -> cached-compare -> cancel clears), a v12 postcard
round-trip, and the version pin.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_014TXbAwk27agwhrNNrhLi2U
The wiring that makes the menu and OS clipboard work end-to-end. The
protocol bump touches every exhaustive match on the wire enums, so the
daemon / frontend / GPU consumers all land together.
Protocol v11 (additive; SUPPORTED = [6..11]):
- `PointerKind::Context` (right-click), `FrontendEvent::MenuPointer`
(GPU->daemon navigation, index-only), `InstanceMessage::MenuPrompt` +
`MenuPromptRow` (daemon->GPU rows + highlight, daemon-gated >= 11).
Dispatch + producer:
- `EditorState`: menu interception in `dispatch_key`/`dispatch_mouse`,
`MenuKey`, `dispatch_menu_key`/`_mouse`, `open_context_menu` (TUI) /
`open_menu_at_byte` + `dispatch_menu_pointer` (GPU), `build_menu_rows`
(calls the Lua resolver), `dispatch_idle` now false while a menu is
open. `dispatch_pointer` gains the `Context` arm.
- daemon: routes `Context` -> open, `MenuPointer` -> navigate; gates
`MenuPrompt` >= 11; drains the clipboard publish as
`InstanceSignal::Clipboard`; honors the previously-dropped
`FrontendEvent::Paste` (so paste works for the first time).
- `semantic_render`: `MenuPrompt` producer with cached-compare.
Frontends:
- TUI (`frontend.rs`): OSC 52 clipboard write; ignores `MenuPrompt`
(the cell overlay renders the menu).
- GPU (`pmacs-gpu`): `arboard` dep; clipboard write/read + Ctrl-V inbound
paste; right-click -> `Context`; `MenuLocal` + `MenuPrompt` handler;
the popup (a second `TextRenderer` over bg quads) at the click pixel;
hover/click -> `MenuPointer`; key intercept while open.
Also folds a pre-existing clippy `unnested_or_patterns` nit in a search
test (`Color::Indexed(11 | 3)`) that newer CI clippy surfaced.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_014TXbAwk27agwhrNNrhLi2U
Carries regex mode to the GUI status band and lets the GUI start a
regex search.
SearchPrompt gains `regex` + `invalid` (protocol v10; SUPPORTED grows
to [6,7,8,9,10]). The fields changed that variant's encoding, so the
daemon's per-session gate moves from >= 9 to >= 10 — a v9 peer
negotiates v9 and is simply sent no SearchPrompt (the decorations
still highlight) rather than mis-decoding the wider shape. The
producer fills both from the active SearchSession.
GUI: `is_search_entry_chord` also forwards C-M-s / C-M-r (Ctrl+Alt) so
a regex search can start; M-r (the toggle) already round-trips via the
intercept path once a search runs. The status band reads
`Regex I-search:` in regex mode and `[invalid]` when the pattern won't
compile. Multi-line regex matches needed no GUI change —
push_glyph_extent_rects already fans a byte range across lines.
Tests: SearchPrompt postcard round-trip extended to regex/invalid
shapes; protocol version pin 9→10 + ladder grows to v10; GUI entry
chord accepts C-s/C-r and C-M-s/C-M-r. (last_search_prompt's 5-tuple
factored into a SearchPromptFacts alias to satisfy type_complexity.)
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Brings incremental search to pmacs-gpu, which has no minibuffer, by
reusing the shared daemon-side search core from the previous commit.
Key routing needs no new mechanism: `dispatch_idle` now also reports
false while a search is running, so the GPU's existing M11.6
optimistic-apply gate round-trips every keystroke to the daemon —
where `dispatch_search_key` extends the query / steps — instead of
self-inserting it. The match highlights were already wired (commit
2's SearchMatch / SearchMatchActive decoration colors), so they
light up live the moment keys round-trip.
The one thing a semantic frontend can't derive locally is the query
text, so a new additive `InstanceMessage::SearchPrompt { buffer_id,
query, active, total }` carries it (protocol v9, SUPPORTED grows to
[6,7,8,9]). The producer emits it cached-compare-suppressed like
StatusFacts — `query: Some` while searching, `None` to clear on
accept/cancel (matches keep highlighting via decorations), and
stays silent on a fresh buffer that never searched. The daemon's
per-session filter keeps the variant off wires negotiated < 9. The
GPU mirrors it into the status band: while searching, the band's
left side shows `I-search: <query> (n/m)` (or `[no match]`) in
place of the buffer name, returning to the name when the search
ends.
Tests: protocol version pin + SearchPrompt postcard round-trip
(active / failing / cleared shapes); producer emit-on-change +
suppress + clear-on-accept + first-sight silence; dispatch_idle
flips false during search (the GPU round-trip contract).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
The search store now hangs off EditorCore (reachable by the
producer, the Lua commands, and the TUI view). The decorations
producer emits SearchMatch for every visible match and
SearchMatchActive for the active one, byte-range-direct (no
line/col conversion), viewport-clipped, and stale-skipped on the
M11.8 model. pmacs-gpu wires the two decoration_kind_to_bg_color
arms (translucent yellow / stronger amber). The TUI gets a
SearchView overlay mirroring DiagnosticView (black-on-yellow wash,
brighter for the active match), reusing diag.rs's now-pub(crate)
line/col helpers.
Nothing populates the store yet (commit 3 wires the input), so the
paths are dormant until then — verified by populating the store
directly: producer emits the right kinds + stale-suppresses, the
TUI view washes the cells.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
The wire-authoritative half of the status band (Q#S1): an additive
InstanceMessage::StatusFacts { buffer_id, name, modified,
diag_errors, diag_warnings }, emitted by the semantic producer on
change (cached-compare). Counts freeze at their last value while
the diag store is stale — positions go wrong mid-edit but counts
merely lag, and flickering to zero per keystroke would be worse.
The daemon's write loop keeps the variant off wires negotiated
< 8, the DispatchIdle gate shape; SUPPORTED grows to [6, 7, 8].
GPU side: the band's left shows name + modified dot, the right
gains severity-colored E:n/W:n ahead of the local L:C/scroll
readout (rich-text spans, change-detected per side).
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
User validation found nothing rendered in pmacs-gpu for the
missing-comma error — rust-analyzer's zero-width EOL anchor. The
TUI's anchor-cell fix lives in DiagnosticView, but the semantic
wire ships Decorations straight from line/col conversion: a
zero-width range clips to None at the frontend and overlaps no
glyph, so the GPU drew nothing. Widen at the producer (one byte;
forward mid-line, backward at EOL where forward covers only the
glyph-less newline) so every semantic frontend gets a paintable
range.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
The GPU's gutter-sign equivalent (framing Q#D3). The producer folds
diagnostics into the per-line summary: each touched line's dominant
style gets the severity's canonical underline_color (most severe
wins), skipped while the URI's store entry is stale — same
discipline as the decorations producer. The minimap stroke prefers
underline_color over the syntax fg, so error/warning lines read at
a glance.
Diagnostics publish without a CRDT generation bump, so the
summary's generation-keyed cache gains a second key: a new per-URI
epoch on DiagnosticStore (bumped on set/clear, not mark_stale). A
republish re-emits the summary; everything else stays suppressed
(framing bet #3 — the gate widens precisely, not naively).
DiagnosticSeverity::underline_color() becomes the canonical palette
(TUI squiggles, col-0 markers, and minimap marks all share it).
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Typing was fixed but arrow navigation after a burst — especially
Shift+arrows — stayed slow. Three compounding mechanisms:
1. Edge navigation ran the FULL pipeline per scrolled line: slice
reshape + viewport re-declaration + a full StyleSpans frame +
another full reshape on its arrival. The shaped slice is now
rebuilt by REUSING retained BufferLines (their shape caches
survive; only newly exposed lines shape), keyed by absolute line
index — sound because every builder keeps the per-line chunk
cache current.
2. Every incoming frame (StyleSpans / fg Decorations /
InlineAdornments) re-shaped the whole slice even when one line's
styling changed. refresh_changed_lines compares each line's fresh
chunk set against the cache and re-shapes only differing lines —
a parse-settle frame after a burst recolors a line or two, and a
scroll-triggered resync only the newly exposed ones.
3. Daemon: a selection change during the post-burst stale window
(didChange debounce + server latency) broke the diagnostics hold
with a FULL Decorations frame per Shift+arrow press that also
dropped the held diagnostics (blink + churn). The producer now
CARRIES the previously shipped diagnostic items through the
frame set while stale — selection motion diffs as a tiny
selection-only segment, carried diag ranges never re-ship at
stale positions, and the baseline's generation stays current so
the eventual unstale frame diffs instead of full-resyncing.
set_rich_text is gone: full reshape, line surgery, scroll reuse, and
frame refresh all assemble lines through one builder
(chunks_for_line + line_from_chunks), so all paths agree by
construction and the per-line chunk cache is always authoritative.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Typing-perf + render-churn fixes in the semantic producer:
- Grammar styling waits for parse settle (pending edits, in-flight
parse job, or no installed bundle ⇒ hold the previous spans rather
than querying stale syntax per typed byte); FileStyleSummary
debounces on the same condition.
- CurrentLine is no longer emitted for semantic frontends — the GPU
paints its own caret/current-line and the derivation forced a
whole-buffer line table every frame.
- Hold-while-stale: while the diag / inlay-hint / semantic-token
stores are stale (document edited since the last server response),
emit NOTHING instead of a clearing frame. The frontend's
last-received set — which it translates through its own local
edits — is strictly better than an empty wipe (diagnostics blinked
out per typing burst and back in per publish, a full frontend
reshape each way; inlay wipes visibly shifted line layout; the
LSP-token path blanked C++ colors). A selection change during the
stale window still ships, without the diagnostic kinds.
- Diagnostics byte<->line table cached per buffer revision (was an
O(buffer) rope copy + scan on every tick a diagnostic was visible).
- Empty->empty Decorations frames on generation bumps suppressed.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Scrolling became fast after S1 but typing stayed slow: scrolling
doesn't bump the CRDT generation, so the daemon's StyleGate caches and
no query runs — but every keystroke bumps the generation and forced
TWO whole-file tree-sitter passes on the daemon, which S1 deferred as
Q#S6. With the GPU now O(visible), this was the remaining O(file)
per-keystroke cost.
1. StyleSpans query scoped to the viewport. New
`compute_highlight_spans_in_range` sets `QueryCursor::set_byte_range`
so the capture walk is proportional to the visible range, not the
whole tree; `scoped_style_spans` passes the declared viewport. The
StyleGate still recomputes on the edit's generation bump (M11.7
resync), but that recompute is now O(visible).
2. FileStyleSummary (the minimap — inherently a whole-file pass)
debounced to reparse-completion: skip the recompute while a reparse
is in flight (`pending_edit_count() > 0`). During continuous typing
the whole-file pass runs at reparse rate, not keystroke rate;
when typing settles and the parse lands, it recomputes once.
Together these drop the daemon's per-keystroke cost from two whole-file
tree-sitter passes to one viewport-scoped pass (+ an amortized
whole-file summary). Only the semantic (pmacs-gpu) path is affected;
the grid/TUI path doesn't use this producer.
Gates green: fmt; clippy --all-targets --workspace -D warnings (default
+ crdt); pmacs lib 1334; syntax 6; semantic_render 28;
m11_5_semantic_acceptance 2; m4_acceptance 88.
Awaiting visual confirmation: typing in a large file is now responsive.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Root cause of "slow only when the GUI is attached": the daemon's
single-threaded dispatcher loop runs the semantic frontend's
render_frame every tick, and `scoped_style_spans` runs the tree-sitter
highlights query over the *whole declared viewport* — which the GPU
frontend sets to the entire buffer — plus clones the theme, on EVERY
tick. Since render_frame recomputes the projection to diff it, every
TUI keystroke forced a full-file tree-sitter query in the daemon
before TUI input could be serviced. Smooth without the GUI; the
attached semantic frontend is what loads the loop.
Fix: a recompute gate. Style spans for a grammar-backed buffer are a
pure function of (parse bundle, CRDT generation, viewport) — never the
cursor — so a cursor-only tick can skip the query and the diff
entirely. `StyleGate` holds the current parse bundle `Arc` (kept alive
so its address is stable; compared via `Arc::ptr_eq`, immune to the
ABA a raw-pointer compare would hit) plus generation + viewport.
`render_frame` skips `emit_style_spans` when the gate matches the
last one and a baseline was already sent.
Correctness:
- Edit → generation bumps → gate differs → recompute → full=true
resync preserved (M11.7).
- Async reparse lands → bundle Arc changes → gate differs → recompute
→ incremental emit. The fresh parse is never missed.
- Cursor move → bundle, generation, viewport all unchanged → skip.
- LSP-token path (no grammar, e.g. C/C++) has no cheap bundle handle,
so `grammar_style_key` returns None and that path recomputes every
tick exactly as before — no behavior change, no new staleness.
`emit_style_spans` is the former inline StyleSpans block extracted
verbatim so the gate can wrap it.
Combined with the earlier scoped_decorations single-materialization
fix, the per-tick daemon cost for an idle (cursor-only) semantic
frontend drops from "full-file tree-sitter query + theme clone + 2
rope copies" to "one rope copy for the current-line/diagnostic
decoration set."
Gates green:
- cargo fmt --all -- --check
- cargo clippy --all-targets --workspace -- -D warnings
- cargo clippy --all-targets --workspace --features crdt -- -D warnings
- pmacs lib 1329 + pmacs-protocol 11; semantic_render unit 33
- m4_acceptance 88, m11_5_semantic_acceptance (--features crdt) 2
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Investigating the cursor slowdown reported after the wash became
visible.
Confident daemon-side win: `scoped_decorations` (run every tick per
semantic frontend, in the daemon's single-threaded loop that also
serves the TUI) was materializing the whole buffer via
`buffer_source_bytes` — an O(n) rope→Vec copy — TWICE per tick: once
in the 9.2 CurrentLine branch and again in the diagnostics branch. For
an LSP buffer (diagnostics present, the common case) that doubled the
per-tick copy cost, and the daemon's tick latency gates TUI cursor
responsiveness. Now the source + line-start table is materialized at
most once per call via `get_or_insert_with` and shared between both
branches (and skipped entirely when neither branch needs it).
Consumer instrumentation to localize any remaining cost:
- `PMACS_GPU_DEBUG_FRAME=1` logs per-`render()` sub-phase timings
(background rects / minimap rects / glyph prepare+submit / total /
peer count). winit defaults to ControlFlow::Wait, so renders are
on-demand (one per coalesced redraw request), not a continuous
loop — the timing isolates the cost of a single cursor-driven frame.
- The `PMACS_GPU_DEBUG_PRESENCE` check is now one-shot via OnceLock
instead of a per-message `std::env::var_os` (which locks the global
env table); same for the new frame flag.
No behavior change to the rendered output. `render()` gains the
clippy too_many_lines allow (now 115 lines with the timing block),
matching the precedent on the other linear GPU-setup functions.
Gates green:
- cargo fmt --all -- --check
- cargo clippy --all-targets --workspace -- -D warnings
- cargo clippy --all-targets --workspace --features crdt -- -D warnings
- pmacs lib 1329 + pmacs-protocol 11; pmacs-gpu unit 15
- m4_acceptance 88, m11_5_semantic_acceptance (--features crdt) 2
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Closes the second half of Phase A's deferred finding A8. The producer
now emits DecorationKind::CurrentLine derived from the active window's
cursor; pmacs-gpu paints it as a very subtle blue-grey wash under the
line carrying the cursor.
## Q-stance implementation status
- **Q#1 stance (α) — producer-side emission**: `scoped_decorations`
reads `core.active_window_for(self.frontend_id).cursor`, derives the
enclosing line via a new `current_line_range` helper, and pushes a
`Decoration { kind: CurrentLine, range }` clipped to the viewport.
Same per-frontend access path used for Selection (line 378).
- **Q#3 stance (β) — per-line cadence**: implementation-revealed
simplification. The framing doc proposed a `last_cursor_line` cache
on SemanticRenderState; in practice the existing M11.4 diff
(`changed_intervals`) already gives this for free. A same-line
cursor move produces a byte-identical decoration Vec, so
`changed_intervals` returns empty and nothing ships. A line change
produces a different range and re-emission fires. No extra state
needed. Recorded as a small finding under rule (iii); the stance
holds, only the implementation tightens.
- **Q#2 (render order)** continues to apply from 9.1 — quad
backgrounds first, text second, minimap last.
- **Q#4 (search backgrounds)** still deferred awaiting search.
## Producer
- New `current_line_range(line_starts, source_len, cursor) -> (u64,
u64)` helper at `src/semantic_render.rs`: binary-searches line_starts
for the largest `start <= cursor`, returns the half-open byte range
`(line_start, next_line_start_or_source_len)`. Clamps to source_len
so a cursor at or past EOF resolves to the last line cleanly.
- `scoped_decorations` restructured: the Selection branch and the new
CurrentLine branch share the `win.buffer_id == vp.buffer_id` gate so
per-window state never leaks into a viewport projecting a different
buffer (the `decorations_use_vp_buffer_not_active_buffer` invariant).
- Four new tests:
- `current_line_range_finds_enclosing_line` — unit test covering
line-zero, mid-line, start-of-line, last-line, and past-EOF.
- `current_line_projects_as_a_decoration_for_cursor_on_seed` —
cursor at byte 0 of "abc\\nde" emits CurrentLine for [0, 4).
- `current_line_skipped_when_active_window_is_a_different_buffer` —
multi-frontend invariant: projecting a non-active buffer does not
emit CurrentLine.
- `same_line_cursor_motion_does_not_re_emit_decorations` — Q#3
cadence: horizontal motion within a line is silent; crossing `\n`
re-emits.
- Existing test `diagnostics_project_with_line_col_to_byte_and_severity`
updated: the seeded "abc\\nde" buffer now produces both a
DiagnosticWarning and a CurrentLine. The test now finds the warning
by `kind` and asserts its byte range rather than asserting a total
count of 1.
## Consumer
- `decoration_kind_to_bg_color` in pmacs-gpu/src/main.rs adds the
CurrentLine arm: `[0.55, 0.60, 0.75, 0.08]` — a very subtle blue-grey
with low alpha. CurrentLine is always on, so it wants to be visually
quietest of the four background kinds; just enough tint to track
cursor line, not enough to compete with Selection or syntax color.
- `bg_color_helper_covers_selection_and_returns_none_for_unrendered_kinds`
renamed to `bg_color_helper_covers_selection_and_current_line` and
updated to assert CurrentLine now returns Some.
- `fg_and_bg_helpers_are_disjoint_total_cover` updated: CurrentLine is
no longer in the "deferred neither yet" set, only the search pair.
## Bet status
- **Bet #2 (overlap composition between Selection and CurrentLine)**:
exercised. CurrentLine has alpha 0.08, Selection 0.30. When both
cover the same bytes (cursor on a selected line), they alpha-blend
in draw order. Composition is left to the M11.4 dirty-merge ordering
(decorations sorted by range.start): CurrentLine paints first
(covers the whole line, lower start), Selection paints on top. The
resulting visual is selection-blue with a slight CurrentLine tint
visible at the line's non-selected ends. Honest composition rule
if surfaced as wrong: refine.
- **Bet #3 (cadence)**: predicted producer-side `last_cursor_line`
cache; implementation revealed the M11.4 diff already throttles.
Score: predicted category surfaced (true positive on the cadence
concern), but the *implementation* category for the resolution did
not match. Recorded as rule-(iii) small finding.
## Gates (all green)
- `cargo fmt --all -- --check`
- `cargo clippy --all-targets --workspace -- -D warnings`
- `cargo clippy --all-targets --workspace --features crdt -- -D warnings`
- pmacs lib + pmacs-protocol: **1329 + 11 = 1340** (+4 new producer
tests)
- pmacs-gpu unit: **13** (unchanged count; one test renamed +
re-scoped)
- m4_acceptance: **88**, m11_5_semantic_acceptance (--features crdt):
**2**
## Manual validation walkthrough
Same daemon + TUI attach + pmacs-gpu attach shape. In the GPU window:
- Verify a subtle blue-grey wash appears under the cursor's line.
- Move the cursor up/down — the wash tracks the new line.
- Move the cursor left/right within a line — visible behavior should
be identical (Q#3 cadence: no re-render needed).
- Select text crossing the current line — Selection paints over
CurrentLine; both alpha-blends visible at the line's non-selected
edges.
- Resize the window — both backgrounds reshape correctly.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
Surfaced during session-5 manual validation as the final iteration
of bet #1 from the framing pass: edits that shift byte positions
left old diagnostic colors painted over post-edit text in both
`pmacs-gpu` and (now-visible) the TUI. Persisted for the full LSP
re-analysis window (100ms–5s).
PR #47 fixed the StyleSpans side via generation-tracked full=true
emission, but Decorations remained vulnerable: the producer's diff
shipped old diagnostics from the diag store, whose entries were
indexed at pre-edit byte positions until clangd republished.
Fix: a per-URI `stale_uris` flag in `DiagnosticStore`. The LSP
layer's `did_change_full` marks the URI stale right after sending
the notification; the next `publishDiagnostics` absorb path's
`set` clears it. The `semantic_render` producer reads `is_stale`
and skips diagnostic emission entirely while stale.
Effect: between an edit and clangd's next publish, the producer
ships zero diagnostic decorations. Frontend's replace/merge clears
old positions cleanly. Brief uncolored window (≤ LSP re-analysis
latency) replaces the previous wrong-position-color persistence.
The correct visual tradeoff: honest emptiness over deceptive
staleness.
Files changed:
- `src/diag.rs` — `DiagnosticStore` gains `stale_uris: HashSet<String>`;
new `mark_stale` / `is_stale` API; `set` and `clear` reset the
flag on the assumption that absorption / explicit removal mean
the LSP has caught up.
- `src/lsp.rs` — `LspManager::did_change_full` calls
`diag_store.lock().mark_stale(uri)` after `send_notification`.
- `src/semantic_render.rs` — `scoped_decorations` reads `is_stale`
alongside `for_uri`; when stale, suppresses the diagnostic
loop (selection and other non-diagnostic kinds still emit).
Tests (all crdt-gated where they reference semantic_render):
- `diag::tests::stale_flag_default_false`
- `diag::tests::mark_stale_sets_flag` (per-URI scoping)
- `diag::tests::set_clears_stale_flag`
- `diag::tests::empty_set_clears_stale_flag_too`
- `diag::tests::clear_drops_stale_flag`
- `semantic_render::tests::diagnostics_suppressed_while_diag_store_stale`
— assert no diagnostic kinds emit while stale; assert they
re-emit after a fresh `set` clears the flag.
Gates: cargo fmt + clippy (workspace, with/without `crdt`) clean;
lib 1482 (+6) with crdt; 1319 (+6) without; m4 83; m11_5 2.
This is approach (A) from the session-5 ask: track per-URI freshness
relative to buffer edits, suppress emission until LSP catches up.
Approach (B) — clangd's didChange/publishDiagnostics version
matching — would be more precise but requires plumbing version
tracking through the LspManager's document state, which is a
larger change deferred. The stale-flag captures the same semantic
("any edit since last publish ⇒ stale") at a cheaper cost.
🤖 Generated with [Claude Code](https://claude.com/claude-code)
Co-authored-by: Claude Opus 4.7 <noreply@anthropic.com>
Surfaced during session-5 manual validation (probe #3, the bet-#1
shape from the framing pass): editing at a diagnostic boundary in
the TUI left stale color fragments visible in pmacs-gpu against
shifted text.
Root cause: SemanticRenderState ships `full=true` styling only on
viewport-region changes, not on text-edit transitions. When the
buffer's CRDT generation advances (an edit) but the viewport stays
the same, the producer ships an incremental — but the frontend's
cached spans + decorations are indexed at *pre-edit* byte
positions. The incremental only ships dirty-range items, expecting
the frontend to retain everything else; combined with shifted
positions, the result is wrong-position color persisting until
the next viewport change.
Fix: track `generation` per buffer in `LastFrame`. Force `full=true`
when generation differs from the last-shipped value, so the
frontend's next `replace_*` operation rebuilds the cache wholesale
at the new positions.
Tradeoff: one extra full-viewport ship per edit. Negligible over
the local Unix socket; bounded by viewport size; and exactly what
the contract requires after position shifts.
Affects both diff-shaped families:
- `StyleSpans` — tree-sitter / LSP semantic tokens
- `Decorations` — diagnostics + selection
`InlineAdornments` uses whole-set replacement (M11.2-level
suppression), not dirty-segment diff, so doesn't have the same
issue. Tracking `generation` in its `LastFrame` for struct
uniformity; predicate unchanged.
Regression test: `full_resync_on_generation_transition` upgrades a
buffer to CRDT-backed, lands an initial full frame, edits the
buffer to bump `version_scalar`, asserts the next StyleSpans +
Decorations both ship `full=true`.
Gates: cargo fmt + clippy (workspace, with/without `crdt`) clean;
lib 1476 (+1) with crdt; 1313 unchanged without (new test is
crdt-gated); m4 83; m11_5 2.
This closes the bet-#1 surface for the consumer side. A separate
follow-up to session-5 PR #43 will document the resolution.
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Co-authored-by: Claude Opus 4.7 <noreply@anthropic.com>