Files
lanework/Kanban/UI/Board/LaneResizeHandle.swift
T
rzen 273c182ef4 Build the VoiceOver tree and actions
The board window's accessibility tree per DESIGN/10: lanes are containers
labeled "<title>, lane, N cards" (filter-aware count = renderedCards, the
badge's own collection); cards are one flattened element each — label =
title or the untitled placeholder, value = attachment count + "cut,
pending paste", selection via trait; face icon, stripe, and paperclip are
decorative and hidden. Masonry never leaks into traversal: slots carry
order-keyed accessibilitySortPriority, so a wide lane reads by card order,
not column-major. Lane titles carry the heading trait for the rotor.

VO-Space is the ⌘-click analogue routed through the existing
BoardStore.click funnel (SelectionGrammar stays the single answer for
toggle and container-boundary rules) — cards and lane headers both.
Context-menu rows double as custom accessibility actions, each calling
the same private method as its menu row so the surfaces cannot drift;
trash cards expose Delete and Reveal in Finder and never Open. The trash
column is pinned last via sort priority 0, its label/value re-routed
through the new AccessibilityPhrases seam; toggling trash visibility
posts a one-line announcement from the store seam (both command faces).
The invisible lane-resize drag strip leaves the tree — the stepper and
menu items are the accessible width path.

AccessibilityPhrases is the pure vocabulary seam (labels, values, plural
folding shared with TrashModel.phrase), pinned by its own test suite.
Both schemes build; 1466 unit tests green.

Claude-Session: https://claude.ai/code/session_01SR4XGjmBE16ZUYWpfFHXwY
2026-07-29 07:38:38 -04:00

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Swift
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import AppKit
import SwiftUI
/// The invisible 12pt grab strip overlaid at a lane's trailing edge that drives a
/// `LaneResizeSession` from a `DragGesture` (03-board-ui.md § Lane, right-edge drag-to-resize).
///
/// Overlaid so ~8pt hangs into the inter-lane gap and only ~4pt sits over the lane itself (clear of
/// the lane's own vertical scrollbar, which lives at that inner edge). **Every lane gets one, the
/// last included** — the rightmost lane's drag is the one that grows the window into free screen
/// space, which is the interaction's headline case.
///
/// It carries no drop target of its own, so it never participates in card/lane/file drops, and as an
/// overlay it hit-tests above the lane body's own gestures.
struct LaneResizeHandle: View {
let store: BoardStore
let session: LaneResizeSession
let laneID: ItemID
/// The lane's committed unit count — the k the session starts from.
let committedUnits: Int
/// The strip's standard (1×) width THIS render; captured as the frozen standard the instant the
/// drag begins.
let standard: CGFloat
let gap: CGFloat
/// How the session reaches the host window it resizes. A closure rather than a stored
/// `NSWindow?` because the window attaches asynchronously (`WindowAccessor`), and a value
/// captured in an early body evaluation would be `nil` for the window's whole life.
let window: @MainActor () -> NSWindow?
/// Guards `NSCursor` push/pop balance — a fast cursor can leave the strip mid-drag, and the drag
/// can end on or off it, so pushes and pops must be idempotent to never leave a stuck resize
/// cursor.
@State private var cursorPushed = false
private let handleWidth: CGFloat = 12
/// Rightward shift: with the strip trailing-aligned, +8 leaves 4pt over the lane and hangs 8pt
/// into the gap (clear of the scrollbar).
private let overhang: CGFloat = 8
var body: some View {
Color.clear
.frame(width: handleWidth)
.frame(maxHeight: .infinity)
.contentShape(Rectangle())
.offset(x: overhang)
.onHover { inside in
if inside { pushCursor() } else { popCursor() }
}
// `.global` (window-fixed) space, NOT the handle's own: a tick moves the handle with its
// lane, but the window's top-left is pinned (right-edge growth), so a window-fixed
// translation stays a faithful physical-cursor delta throughout the drag.
.gesture(
DragGesture(minimumDistance: 2, coordinateSpace: .global)
.onChanged { value in
if !session.isResizing(laneID) {
// m5-drag: a resize and a card/lane move must not run at once — they
// would both mutate the same strip layout. The board's drag state does
// not exist yet; when it does, this is where the `isDragging` guard goes.
pushCursor()
session.begin(laneID: laneID, units: committedUnits,
standard: standard, gap: gap, window: window())
}
session.update(translation: value.translation.width)
}
.onEnded { _ in
guard session.isResizing(laneID) else { return }
session.end { id, units in store.setLaneWidth(id, units: units) }
popCursor()
}
)
// **Pointer-only, and out of the tree** — "the header context menu's width stepper — and
// its keyboard face, the Increase/Decrease Lane Width menu items — is the accessible
// path; edge drag is enhancement only" (10-accessibility.md ▸ Moving without dragging).
// An invisible strip that can only be dragged is a stop with nothing behind it, and it
// would sit between two lane containers in the strip's traversal.
.accessibilityHidden(true)
}
private func pushCursor() {
guard !cursorPushed else { return }
NSCursor.resizeLeftRight.push()
cursorPushed = true
}
private func popCursor() {
guard cursorPushed else { return }
NSCursor.pop()
cursorPushed = false
}
}