- Handles are now teardrops (stem + filled circle) like the native
Android selector: 20dp circle normally, 28dp while dragging.
- The grab region is a 48dp box around the circle centre, independent
of the visual size; the old 16dp target was not grabbable by finger.
- The copy/cut/paste menu is placed ABOVE the selected line (native
behaviour), flipping below only when there is no room above. The menu
is drawn last (top of the z-order) and Gio routes a touch to the
topmost op whose clip contains it, so a below-placed menu covered the
handles' grab boxes and silently stole every handle-drag press.
- Regressions: menu above-placement arithmetic, first-line flip-below,
and the existing tracking/clamp tests updated for the new policy.
- On-device verified: handle drags work with the menu up (previously
dead lower grab region), first-line handles still grabbable from the
uncovered top strip, menu taps and tap-to-clear unchanged.
- doc/development_plan.md section 15 records the z-order/placement
contract.
- SurfaceView windows are always translucent, so adjustResize cannot
resize them: the keyboard overlapped the bottom of the window and the
top bar sat under the status bar. Consume the insets in app instead:
a smali-injected PadInsetsListener (identical block in build_emu.sh
and build_phone.sh) shrinks the GioView to statusBarBottom..keyboardTop
(or ..navBarTop) on every API 30+ insets dispatch, with
setDecorFitsSystemWindows(false) so IME insets are delivered at
targetSdk 34.
- Fix a change-detection bug in the listener: the height write skipped
the topMargin/bottomMargin checks on every IME state transition, so
the margins were never applied while the keyboard animated. All three
params are now checked with a single requestLayout on any change.
- Selection menu now re-anchors to the selected word every frame while
it is visible and hides when the word scrolls out of the viewport
(positionSelectionMenu + regression test).
- Doc: development_plan.md section 14 (invariants, geometry contract,
build-script identity invariant).
Verified on device: top bar below status bar and clickable, bottom bar
flush with keyboard top (view 128..1517 at 1080x2400), BACK dismiss +
re-tap re-raise without a show loop, typing saves, menu tracks scrolls.
Two user-reported bugs in the post-wrap build:
1. Selection 'jumped' when scrolling: frameOf's chunked branch shadowed the
outer start/end with 'start, end, winLine := cb.VisibleByteRange(...)',
leaving IMEWindowStartByte at 0 for chunked files while scrolled, so the
window-relative selection highlight (and IME commits) mis-mapped near the
file top. Fix: declare winLine outside, assign. Mutation-verified
regression tests: real_file_scroll_selection_test.go.
2. Bottom bar hidden behind the keyboard: GioView extends SurfaceView, which
unconditionally marks the window FORMAT_TRANSLUCENT; translucent windows
are never IME-resized, so adjustResize is dead. Fix (build scripts):
smali-patch a PadInsetsListener OnApplyWindowInsetsListener onto the
GioView (shrinks it by the IME inset bottom) + setDecorFitsSystemWindows
(false) on API 30+ so insets are dispatched. targetSdk kept at 34.
3. (Found while fixing 2) Keyboard could not be dismissed: TextField.Draw
issued SoftKeyboardCmd{Show:true} every frame; with insets-driven
resizes, the hide animation triggered redraws that re-showed the keyboard
mid-animation. Fix: ShowIMESeq pulse from the logic layer (open/tap/
double-tap); renderer shows only on pulse change, re-arming on focus
loss — matching widget.Editor.
On-device (emulator): BACK dismisses and stays down; tap re-shows; typing
works; bottom bar above keyboard; word selection anchored across flick
scroll. go test -race ./... green. Phone APK rebuilt with the same patch.
Every scroll<->content mapping site (window start, sub-line shift, tap
mapping, max-scroll clamp, selection menu/handle positions) assumed
1 logical line = 1 visual line. When the viewport top crossed the
bottom of a wrapped line, the view jumped past the wrapped remainder
(jump magnitude (count-1)*lh) instead of moving pixel-by-pixel.
- WrapIndex (internal/editor/wrap_index.go): Fenwick tree of
per-logical-line visual-line counts, parallel to the LineIndex;
built at index-build time, bookkept by the same
UpdateLineIndexAfter{Insert,Delete} hooks (never under-stale: every
touched line resets to the estimate, the next shaping pass
re-corrects it).
- scrollVisualDecompose: the scroll offset lives in visual-line space:
k = LineForVisual(floor(s/lh)), r = s - V(k)*lh. All mapping sites
go through it, so the viewport top is always exactly s into the
document's visual space (V(k)*lh + r = s) — the jump invariant.
All-ones index reduces to the legacy 1:1 mapping (pre-shaping and
non-wrapped behavior unchanged by construction).
- Correction pipeline: the renderer's per-frame VisualLineStarts are
grouped per logical line and written back (applyWrapCounts). The
layout feedback now carries the exact window text the layout was
shaped for (carried in the frame) plus the window start line and the
content-edit counter; corrections apply only on edit-counter match,
and grouping over the current window text (wrong after a scroll moved
the window) is no longer possible.
- bytePosToScreenXY now applies the sub-line shift and the scaled line
pitch: the selection menu/handles were off by up to a full line.
- maxScroll uses TotalVisuals() with the effective (font-scaled) line
height; the bottom clamp lands exactly on the file end for wrapped
content.
- VisibleByteRange returns the real start line (was hardcoded 0).
- emitFrame: replace the unread handoff frame with the newer snapshot
instead of dropping it — a dropped final frame was never re-emitted
(emission is event-driven), leaving the consumer one state behind
forever; fixes the pre-existing TestRealFile_ShiftSelectionInsert
failure. Still non-blocking.
Tests (mutation-verified where practical): wrap_index_test.go (Fenwick
vs naive model, 3000 ops), wrap_bookkeeping_test.go (edit hooks vs
shadow-string oracle, 400 ops — caught a real m=0 under-marking),
wrap_mapping_test.go (the jump regression: V(k)*lh + r == s over sweeps
+ random offsets; legacy-identity pin; boundary sweep), wrap_apply_test.go
(VisualLineStarts grouping + guards — the first version exposed the
always-true WindowStartByte guard that blocked all post-scroll
corrections). go test -race ./... green.
On-device (emulator, 60 wrapped lines): dp sweep 0/17/50/67/134/340
lands on LINE000-vl0/1/3, LINE001-vl0, LINE002-vl0, LINE005-vl0 —
pixel-exact 1:1, no jump (dp 134 is where the old code jumped to
LINE008); bottom clamp exact.
Docs: architecture.md §6.2 (visual-line space invariant),
development_plan.md (Phase 13), spec.md (wrap + clamp lines).
The review-identified race: saves are async (owner snapshots content,
worker pool writes), nothing serialized per file, and every write of a
file used the SAME deterministic temp ('.<name>.tmp'). Two overlapping
writes (autosave x autosave, retry x autosave, or the synchronous
FlushAll on GoToBrowser/Shutdown x a worker write) interleaved on the
shared temp and could rename a byte-mixture into place; even without
interleaving, last-rename-wins could promote a STALE snapshot.
Owner-side protocol (logic.go, requestSave + result handler):
- at most one write in flight per file (writeInFlight maps filename ->
the file version whose content the in-flight write carries);
- a save requested while one is in flight is deferred (savePending) and
re-issued by the write's result handler with a FRESH snapshot, so
'last rename wins' coincides with 'newest snapshot wins';
- on success the SNAPSHOT version (not the current one) is recorded as
written, so an edit that arrived during the write leaves the file
dirty and triggers the re-issue;
- FlushAll (GoToBrowser, Shutdown) defers via the same protocol instead
of writing concurrently on the shared temp;
- shutdown drain: on done the owner waits (bounded 5 s) for in-flight
writes and armed retries to settle before exiting, so the post-exit
synchronous FlushAll and workerPool.Stop cannot race a straggling
worker write;
- retry timer now sends a non-blocking token (no timer-goroutine stall
on a full channel); emitFrame no longer blocks on a slow/gone main
(frames are snapshots; the next emission wins) - also required so the
drain can never deadlock on frame delivery.
Mechanism (real/filesystem.go):
- WriteFileAtomic uses a unique per-call temp ('.<name>.tmp.<pid>.<seq>'),
making same-file staging-file interleaving structurally impossible even
if the serialization regressed (defense in depth);
- each successful write best-effort removes stale temps of the same file
(crash leftovers, plus the legacy deterministic name for upgraded
installs); a failed write removes its own temp.
Tests:
- write_serialization_test.go (e2e): a counting FS wrapper proves the
peak concurrent same-file saves is 1 across two deliberately
overlapping autosaves (2 s saves; the second edit lands inside the
first save's window and its token is deferred, then re-issued with the
newer content), and that a Flush during an in-flight save adds no
concurrent writer and the newest snapshot still wins. Mutation-verified:
disabling the deferral fails it with peak = 2. (The pool's WriteFileTask
calls FS.WriteFile, not WriteFileAtomic - the real FS is atomic only
because WriteFile delegates to WriteFileAtomic; the wrapper mirrors that
delegation or the overlap window does not exist.)
- filesystem_test.go: stale-temp test updated to the new pattern, also
covering the legacy name and asserting a different file's temp is
untouched.
- real_file_fuzz_test.go: stray-temp check matches both patterns.
Docs: architecture.md 6.5 rewritten (protocol invariants), spec.md
autosave line, development_plan.md v11 + Phase 12.
On-device smoke: open, type, autosave lands exact content on disk, no
temp files left, clean relaunch. Full suite green under -race.
Residuals (documented): no fsync before rename (power-loss window only);
external-change detection absent; a drain-deadline exit with a straggling
write can only lose freshness (unique temps keep every rename a complete
snapshot).
Adds the corruption-proofing layer for the edit/persist path:
- chunked_buffer_fuzz_test.go: differential fuzz of ChunkedBuffer
Insert/Delete against a plain []byte shadow model (arbitrary byte
positions/text, chunk sizes 1..64KB, 500-2000 ops each) verifying
FileLen, FullContent, Content probes and the chunk-size invariant
after every op; rune-aligned variant adds UTF-8 validity and an
independent RuneIndexToByte oracle.
- line_index_fuzz_test.go: differential fuzz of the incremental
LineIndex updates against a full-recomputation oracle (mixed,
no-newline, single-line, CRLF, trailing-newline shapes), plus a
trailing-empty-line structural invariant test.
- state_api_fuzz_test.go: differential fuzz of the production edit
entry points (HandleInsert/Backspace/Delete/ReplaceRange, incl.
selection variants) checking content, UTF-8 validity, chunk
invariant, line index and exact cursor after every op.
- real_file_fuzz_test.go (e2e): random edit sequences (incl.
window-relative IME replaces) against the REAL filesystem with
per-batch IME-window-consistency checks, forced-flush disk
byte-comparison, then a second logic instance (restart simulation)
must reload byte-identical content with a fresh line index;
asserts no stray temp files.
- filesystem_test.go (real): atomicity contract - exact round trip
at edge sizes, concurrent reader never sees a torn file across 150
alternating 2MB writes, failed write (read-only dir) leaves the
original byte-identical, stale temp file is consumed.
Fixes a real invariant violation the fuzzing exposed: Insert halved
an oversized spliced result once, so a large paste into a non-empty
buffer left chunks up to ~P/2 (8x target at 1MB/64KB), breaking the
documented 'no chunk > 2x target' invariant. Insert now re-chunks the
oversized result into pieces of at most chunkSize, making the
invariant hold after every edit. Mutation-tested: dropping one byte
in Insert and one entry in UpdateLineIndexAfterInsert are both
caught by the fuzz suite.
Density (pure hi-DPI) was already scale-free: all bookkeeping is in
density-dp and the scale enters only at the px<->dp boundary. But Android
also has a second axis, the user font-size setting (PxPerSp = fontScale *
PxPerDp), and the shaper draws baselines in sp. At a non-default font
scale the rendered line pitch is 16.8*fontScale dp while every logic-side
consumer used the raw 16.8 dp: taps would misplace by up to (fontScale-1)
viewportfuls of lines and scroll clamping would stop short of the bottom.
- ScaleEvent.FontScale + Frame.FontScale closed loop (main reads
gtx.Metric, logic tracks it in State.fontScale).
- EffectiveLineHeight()/EffectiveLineHeightAt(): the font-scale-applied
line height, now used by every consumer (window start, sub-line
remainder, tap mapping, scroll clamp, page size, cursor vertical move,
menu position, chunk-prefetch fallbacks).
- Renderer: GlyphLayout.LineHeight, caret, selection handles, and
highlight all use the scaled ascent/line-height from gtx.Metric.
- font_scale_test.go: 2000-pair tap property test at fontScale 1.3 with
the glyph layout fabricated at the scaled pitch (independent ground
truth), plus EffectiveLineHeight unit test.
- On-device: tap markers landed on exactly the tapped line at font_scale
1.3 (fsline060/080/081) and 0.8 (fsline039); rendered pitch measured
57/35/44 px at 1.3/0.8/1.0 (matches 16.8*fs*2.625); settled-position
window start k = floor(s/lh_eff) verified against the visible top line.
- Docs: architecture.md 6.2 font-scale axis, README two-scale note +
profiler 2s flush staleness note, development plan v10 Phase 11.
The screen->line tap mapping only needs the sub-line scroll remainder
(tapLocalY adds r, never the full scroll) because the visible glyph
layout is window-relative and IMEWindowStartByte re-anchors it to the
file. That holds for every scroll offset IF the window start line
k=floor(s/lh) and the sub-line remainder r stay consistent.
Property test (4000 random scroll/tap pairs, asserting against an
independent drawn-geometry ground truth, not the tap code's own math)
exposed a real bug: int(s/lh) in the Dp float32 domain rounds the
quotient to nearest and can round UP across an integer boundary while
the float64 mod still reflects the line below. In a sub-pixel-wide
band of scroll offsets the window started one line too far while the
draw shift lagged by one line - the whole rendered window (and every
tapped line) shifted by one.
Fix: one shared float64 floor decomposition (scrollDecompose) used by
the window start (visibleByteRangePrecise/Estimate), the renderer's
sub-line shift (visibleScrollOffset), the tap mapping (tapLocalY), and
chunk prefetching. Also route the shaper's line height (previously
ignored by visibleByteRangePrecise) through VisibleByteRange.
On-device cross-check: at s=4246.9 (r=13.3) and s=4210.7 (r=10.7),
taps on visually identified lines typed markers that landed on exactly
those lines in the file on disk; profiler ScrollDP, screenshot,
formula, and disk all agreed.
Docs: scroll decomposition invariant in architecture.md §6.2, pipeline
hop 2 in doc/README.md, Phase 10 in development_plan.md.
Implement the Android-native touch selection model, verified on-device:
- long-press selects the word under the finger (blank -> caret + paste-only
menu); double-tap selects the word; drag handles resize the selection,
drag the highlighted body to move it; floating menu offers copy/cut/paste
(selection) or paste (bare caret), closing on any item tap.
- Renderer reports finger positions (app-local Dp) as tap/double-tap/
long-press/selection-drag events; the logic goroutine owns all geometry
(EditorRegion, menu rect, hit-testing, handles) and the renderer only
draws the frame snapshot.
- Long press: 400 ms still-press on the editor, cancelled by movement
(non-grabbing raw pointer probe) or by a scroll/handle grab. The main
loop keeps invalidating while a press is pending (Gio renders on demand;
a stationary finger produces no frames).
- Clipboard crosses the goroutine boundary via buffered channels
(clipboardSetChan/pasteReqChan logic->main, pasteChan main->logic);
main executes the Gio ops and, on Android, invalidates after ReadCmd
because a queued transfer.DataEvent schedules no frame of its own.
Renderer fixes found while validating on-device:
- clickReg was stored by value in a map; range yielded copies so per-frame
press bookkeeping (long-press state) was silently discarded. Now pointers.
- On Android a tap's press+release arrive in the same frame and
gesture.Click/Drag return one event per Update call; without draining
each gesture's queue every frame the release was lost on an idle window
and every menu tap was swallowed (needed a second tap to 'rescue' it).
Click and drag loops now drain to exhaustion (scroll already does).
- pointer.Filter queries must name Kinds: a zero-kinds filter matches
nothing (the press-probe query was dead).
- Menu.Draw offsets items by the menu origin; the clippable drawElement
branch registers SelDrag (handles now draw for the TextField).
Tests: internal/editor/touch_selection_test.go (word range, long-press,
double-tap, tap/menu guards, handle drags, menu actions, selection edits)
and internal/test/e2e/touch_selection_e2e_test.go; full suite green under
-race. Docs: spec.md §2.2 + §7, architecture.md §6.3a, development_plan.md
Phases 8-9.
Selection: shift+arrow extends a selection (absolute byte offsets,
anchor/caret model); insert/backspace/delete replace the selection; the
IME unions its reported range with the active selection; the highlight
is drawn in the TextField and the selection is pushed to the IME.
Android key input (the blocker found during on-device validation):
Gio v0.10 on Android (a) drops modifier state in the JNI bridge and
(b) wraps plain arrow-key presses in input.SystemEvent for focus
navigation, so arrow keys never reached the editor. main.go now
registers explicit named key.Filters for the four arrows (delivers the
press and suppresses the focus jump) and tracks the shift key itself.
Verified on the emulator: plain arrows move the caret, shift+arrow
shows a highlight, typing replaces the selection.
Real-file e2e tests (real on-disk files via the real FileSystem,
multi-chunk 256KB files, chunk-boundary and multi-byte edits) found
and fixed two real bugs:
1. Line index: UpdateLineIndexAfterEdit only shifted offsets; edits
involving newlines left it permanently inconsistent. Replaced with
newline-aware UpdateLineIndexAfterInsert/UpdateLineIndexAfterDelete.
2. Rune granularity: HandleBackspace/HandleDelete deleted one byte,
corrupting multi-byte UTF-8 characters (e.g. a 2-byte char
straddling a chunk boundary). Now rune-granular.
Also: airtight e2e harness load-wait (StatFile/ReadFile/BuildLineIndex
interleaving could satisfy the old condition early).
Full suite green under -race; on-device verified.
The chunked buffer was the right structure for this workload, but the
implementation let the edited chunk grow without bound (the type comment
even admitted 'not rebalanced'): sustained typing at one spot made that
chunk grow monotonically, so each subsequent insert copied the whole
grown chunk -- quadratic total copy work for sustained typing.
Insert now splits any chunk that grows past 2x the target size in half,
and the empty-buffer path chunks a large first paste directly instead of
creating one oversized chunk. The per-edit copy cost is now bounded by
O(chunkSize) by construction. The split cut is an arbitrary byte offset
(like SetContent boundaries): chunk edges may fall inside multi-byte
sequences, which is fine because readers reassemble whole line-aligned
windows from chunk bytes.
Shrunken/empty chunks from deletes are left in place: chunk count never
grows with deletes, all readers walk actual lengths, and removal would be
pure churn with no reader-side benefit.
No behavior change visible to readers (Content/FullContent/LineIndex all
walk actual chunk lengths); covered by three new tests: sustained-typing
chunk-size invariant + content, large paste into empty buffer, and
content integrity across newly created split boundaries. Full suite green
under -race.
Cover the base-offset conversion in HandleEnd (the path that slices the full
file content by the end-of-line offset), mirroring the tap-to-position
regression test.
The GlyphLayout is shaped from the visible window alone, so its
ByteOffsets are relative to the window start (IMEWindowStartByte). But
SetCursorFromPoint, HandleHome, HandleEnd and HandleVerticalCursorMove
treated them as absolute file offsets. On a large file scrolled deep, the
cursor was set to a window-relative offset (near the file start), so the
next EditorLayout computed visibleCursorPos = CursorPosition - start as a
small/negative value and the IME selection snapped to the window top
(regardless of where the user tapped).
Add glyphBase() and convert at the four cursor boundaries: subtract the
base before searching the window-relative offsets, add it back before
storing the absolute CursorPosition. For small files (window == whole
file) the base is 0 and the change is a no-op.
Add TestTapToPosition_WindowBaseOffset, a regression test that sets a
non-zero IMEWindowStartByte and asserts the cursor lands at base + window
byte (fails on the pre-fix window-relative assignment).
Verified on-device: with a 6 MB file scrolled to ~line 1200, a tap now
places the cursor on the tapped line (typed text lands ~16 lines below the
window top), where before it always landed on the window top.
Drop the log.Printf/fmt.Printf traces that fired on every config/input/
click/scroll/open/worker-result during IME and tap debugging. These were
noise (and some were commented out). Error, limit, and recovery logs are
kept; the default-off profiler and gated IME debug remain untouched.
Tapping in the editor repositions the cursor, but it was never actually
verified (the old unit test only checked in-bounds/no-panic). On-device
verification found that on a large file scrolled deep, the cursor clamped to
the bottom of the viewport regardless of tap position.
Root cause: the tap handler computed the tap's text-local Y in content space
(pt.Y - region.Y + full ScrollOffset) and passed it to SetCursorFromPoint,
whose visualLine = y/lineHeight then produced a huge content-line number
(e.g. 91,640). But the GlyphLayout is window-relative (layout.Y==0 is the top
of the visible window), so the number far exceeded the window's line count and
clamped to the last group (bottom line). The Phase 3 windowing refactor
introduced the windowed layout without updating the tap handler.
Fix: tapLocalY() converts the tap Y to window-relative space by adding only the
sub-line remainder (ScrollOffset mod lineHeight), never the full scroll.
Extracted as a named helper so it is unit-testable. Added two regression tests
that fail on the pre-fix formula (cursor clamps to the bottom line) and pass on
the fix. Verified on-device: taps now map linearly across the viewport.
Also removed the per-tap/per-glyph log.Printf debug lines in SetCursorFromPoint.
internal/perf: single-goroutine profiler (no locks). When enabled by the
/storage/emulated/0/PadPerf/enable marker it records one CSV row per logic
frame (seq, ms, frame delta, page, scroll Dp, max-scroll Dp, total lines,
visible byte range), logs a rolling ~1/s summary, and on Stop reports
nearest-rank p50/p90/p99/max. Flushes per row-batch but never fsyncs per
flush (avoids periodic hitches in the logic path).
editor: PerfRecord package-level hook (nil when off) + ProbeRecord;
Logic.emitFrame() now centralizes every frame emission so the profiler sees
each logic frame exactly once, on the owner goroutine. State gains
VisibleStart/VisibleEnd so the probe can confirm shaping stays
viewport-bounded.
logic: optional debug cmd poller (off by default) watches <dir>/cmd as a
one-shot file (top/bottom/frac <0..1>/dp <int>) and the owner applies a
clamped [0,MaxScroll] jump + frame. Enables deterministic large-offset scroll
tests without pixel taps.
main: wires the profiler when the marker file exists; logs present-fps
every 2s; stops the profiler on Destroy.
docs: README package inventory (add internal/perf); architecture §11
profiler facility; spec §5 invariant 7 (scroll always clamped to
[0,maxScroll]) + §6 measured rows; development_plan v5 + Phase 6 results.
Verified: go build/vet + full -race green. On-device 10 MB file:
logic-frame cadence flat across offsets 0.02->1.0 (no large-offset
degradation), visible byte range <=4.3 KB at every offset, clamping exact
across 2->130,955-line files, PSS plateaus ~250 MB (bounded, no leak);
profiler overhead negligible.
Root cause of the ~1GB 'Unknown' memory on large files: with word wrap
on (the default), VisibleByteRange used the previously-shaped
GlyphLayout.VisualLineStarts to bound the visible byte range. That layout
only covers the visible window (~50 lines), not the whole document, so
whenever the viewport's line count exceeded the window's visual-line count
the range fell back to end=fileLen. The text shaper then laid out the ENTIRE
file each frame; its internal line/glyph buffers grow to the largest layout
ever shaped and are never released (document.reset() keeps the backing cap),
so memory ballooned to the file size (~1.1 GB for 10 MB) and OOM-killed the
process under scroll.
Fix: always derive the visible range from the real-line LineIndex (or the
heuristic estimate before it is ready). Word wrap needs no separate path:
each real line yields >= 1 visual line, so shaping viewportHeight/lineHeight
real lines always fills the viewport, and the range can never collapse to the
whole file.
Also fixed the pre-existing LineIndex storage mismatch: EditorLayout read
TheState.Editor.LineIndex (never set; SetLineIndex had zero callers) for
maxScroll and scrollByteOffset, so it always used the huge pre-index estimate.
It now reads cb.LineIndex, the single source of truth; the dead
EditorState.LineIndex field and SetLineIndex are removed.
On-device (emulator/SwiftShader), a 10 MB file now uses ~150 MB PSS / ~230 MB
RSS at steady state and stays flat under scroll (was 1.13 GB PSS / 1.5 GB RSS,
growing, OOM-killed). go test -race ./... green.
- Viewport: swallow the opening tap/scroll (justOpenedAt window) and
re-clamp ScrollOffset to [0,MaxScroll] in EditorLayout so a short file
never opens past its content (blank viewport).
- Chunked buffer: replace the fixed i*chunkSize slot model (which drifted
after length-changing edits and could re-read stale disk for shifted
tail chunks) with an ordered chunk slice + prefix-sum byte offsets.
In-range files now load fully on open (SetContent), so there is no lazy
load and no stale-disk re-read. Edits splice only the affected chunk(s).
- Size guard: files > MaxEditableFileSize (50 MB) show a 'too large to
edit' notice instead of loading; the browser still lists them. Edit
handlers (KeyDown/ReplaceRange) are no-ops for too-large files.
- Tests: rewrite chunked_buffer_test.go for prefix-sum correctness (insert/
delete across chunk boundaries, rune->byte after edit); fix the large-file
e2e expectation to the shift-correct ground truth.
- ui.OpenFile now calls the in-app editor OpenFile(path) instead of the
external openfunc (Android Termux bridge). The old wiring sent every
browser-row tap through the Termux bridge, which crashed on Android 7+
with FileUriExposedException (file:// Intent URI) and bypassed the editor.
- OpenFile no longer invokes TheState.open; it is retained as a dormant
external hook for a future 'open externally' action.
- Add imeDebugLog (off by default) verbose per-commit IME logging in
HandleReplaceRange, plus currentEditorText helper, to aid on-device
IME commit/cursor-sync debugging.
Finish Phase 1 items 1, 2, 4, on top of the range-handling done in 9b78219:
- TextField.Draw now emits, when focused:
* key.InputHintOp{HintText} (item 4: enable text keyboard/autocorrect)
* key.SnippetCmd (the visible window as the snippet, Range {0,len})
(item 2: swipe/autocorrect source)
* key.SelectionCmd (caret, window-relative rune index)
(item 1: IME selection sync)
The snippet is the visible window (not the whole file), so the IME treats
the window as the document and reports EditEvent.Range window-relative.
- HandleReplaceRange now resolves the window-relative range against
IMEWindowText and offsets by IMEWindowStartByte to address the buffer
(string and chunked paths). Falls back to the whole buffer when layout
has not set the window (tests).
- EditorState gains IMEWindowStartByte / IMEWindowText, set during layout.
- Add runeCount helper (utf8 leading-byte scan) in the ui package.
- Fix a data race in three editor e2e/integration tests: they called
OpenFile from the test goroutine while the logic goroutine ran layout;
now wrapped in withState so the state write happens on the owner.
Tests: ime_range_test.go gains windowed-path coverage (string+chunked).
go build, go test, go vet, and go test -race are all green.
The IME commit path (swipe-to-type, autocorrect replacement) sends a
key.EditEvent with a Range that the editor ignored, causing the replaced
region to be duplicated. Add Logic.HandleReplaceRange which deletes the
rune range [start,end) and inserts text, converting rune indices to byte
offsets (string path: utf8.DecodeRuneInString; chunked path: leading-byte
scan). HandleKeyDown now routes key.EditEvent through it.
Also fixes two pre-existing ChunkedBuffer correctness bugs the tests
exposed:
- Delete mis-computed the per-chunk end using a shrinking 'remaining'
instead of the absolute end, corrupting multi-chunk deletes.
- FullContent derived its chunk bound solely from fileLen, truncating
in-memory chunks grown past the old bound by an insert.
Adds ime_range_test.go covering insert/replace/delete, unicode, chunked,
and swapped bounds. go test -race ./... green.
Frame now carries view state (scale/focus/query) to the main goroutine,
which reads only the frame-receiver-stored snapshot. Renderer owns Gio
widget editors (registered by ID) and the draw scale. Autosave timer
sends a token to the logic goroutine instead of touching state;
Shutdown waits for the owner to exit before FlushAll.
Tests access state only through owner-side Inspect/WithState helpers
(harness + in-package). Fixed double-Harness.Run race in two e2e tests,
made TestWorkerPool_PriorityPreemption deterministic, and raised the
lazy-loading test timeout that was too short under -race.
go test -race ./... is now green.
- JNI: open_file_in_termux via ACTION_SEND intent (text/plain + file:// uri),
global context ref kept from registerFragment
- impl_android.go: OpenFile(path) attaches current thread if needed
- NewLogic takes openfunc; State.open + ui.OpenFile now func(string)
- ChunkedBuffer.VisibleByteRange: word-wrap path using
GlyphLayout.VisualLineStarts (+byteOffset, lineHeight, visual index param)
- GlyphLayout gains LineHeight; drawWrappedText records VisualLineStarts
- WordWrap default true; State.ByteOffset tracks first visible line
- types: VisualLineIndex
- scroll_fix_test.go (new)
- debug prints left in place (WIP; cleanup in later phase)
NewLogic now takes (FileSystem, path, openfunc); update the e2e harness
and editor tests accordingly. The harness uses a no-op openfunc, matching
impl_other.go (the real app's OpenFile is a platform bridge, no-op off
Android).
Also adds doc/development_plan.md (draft, with corrections note re: the
live repo state).
- Initialize browser path to the actual startup directory instead of '/'
- Improve '..' navigation to be relative to the filesystem root
- Fix path duplication issues by avoiding redundant absolute path joining
- Fix ChunkedBuffer.Insert to always update file length.
- Fix UpdateLineIndexAfterEdit to not shift the first line offset.
- Remove redundant ReadFileTask dispatch in HandleBrowserTap.
- Add end-to-end test for typing at start of buffer.
- Add WriteFile method to mock filesystem (non-atomic path, creates files)
- Implement WriteFileAtomic in mock with temp file + rename pattern
using .tmp/ directory, matching real filesystem semantics
- Update WriteFileTask.Execute() to use WriteFileAtomic
- Update FlushAll() to use WriteFileAtomic
- Fix mock to create files on write (matching os.WriteFile behavior)
- Update tests to match new semantics (create-if-not-exists)
- Define pool.FileSystem interface in internal/io/pool/filesystem.go
- Move DirEntry interface to internal/io/pool/types/types.go to break
the pool <-> mock import cycle
- Implement real.FileSystem with atomic writes (temp file + os.Rename)
- Update mock.FileSystem to satisfy pool.FileSystem interface
- Update worker pool tasks to accept pool.FileSystem interface
- Update main.go to use RealFileSystem by default, with -root flag
- Update all browser/editor/test references to types.DirEntry
- Rewrite cursor_test.go to use the current GlyphLayout-based API
instead of the deleted byteOffsetToLineCol function
- Add guard for empty/missing layout slices in SetCursorFromPoint
to prevent index-out-of-range panic on empty documents
- Add missing Advance field to e2e test GlyphLayout initialization
- Add cmd/pad/pad binary to .gitignore
- Fix cursor vertical alignment and ensure it respects ScrollOffset.
- Fix scrolling in editor page by correctly registering scroll interactions in the renderer.
- Ensure cursor is clipped to the editor text area to prevent drawing over status bars.
- Replace gtx.Event(nil) with key.Filter{Focus: focusedID} and
key.FocusFilter{Target: focusedID} so Gio correctly routes key
and edit events to the focused editor text field.
- Convert EditorState.CursorPosition (byte offset) to line/column
coordinates for accurate cursor rendering.
- Add debug logging in HandleKeyDown and HandleCursorMove.