Phase 2 swaps every consumer: Liveness and its ancestor walk are gone, replaced by ItemContainer — a UUID set plus the container side it lives on, presence the whole test, one selection boundary instead of the old liveness law. Deletion stages by place: board cards move to the trash at a store-minted head rank, trash-side delete is permanent behind its confirmation, Delete Immediately skips the trash from anywhere, lane delete captures the subtree and removes the folder. Restore has no method at all — moveCards resolves members in either container, so drag-out and cut-paste are the ordinary moves 13 calls them, registering ordinary Move steps. The delete inverse moves the card back to its captured lane and rank; redo replays the captured trash rank, a value the gesture actually wrote; lane undo recreates the subtree byte-faithfully in session. Purges register nothing — where 13's trash section contradicts its own Rules on that, Rules wins, filed for ruling. Staleness collapsed to present-or-absent: a container is a path, so a foreign restore fails the delete step's expectation structurally. Legacy tombstones migrate on the loose-file tail hook, cards oldest-first so minting above top reproduces the retired newest-first column, lanes returning live, one folded loss row naming both directions. Put Back, restoreByDrag, receiveRestoredCards, TrashEntry, and the kind machinery are deleted; the trash column renders the container correctly with its full face rework left to phase 3. Claude-Session: https://claude.ai/code/session_01SR4XGjmBE16ZUYWpfFHXwY
77 lines
4.1 KiB
Swift
77 lines
4.1 KiB
Swift
/// Where ⌘V lands (04-interactions.md ▸ Clipboard), as pure functions of the selection, the
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/// last-active lane, and the snapshot (`PasteTargetTests`).
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///
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/// The two rules verbatim, and each clause's branch below:
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///
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/// > Paste lands after the anchor card (or appends to a selected lane); a multi-selection anchors at
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/// > its last member in flatten order — the ⌘N target rule's shared anchor. … **A tombstoned
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/// > selection never anchors paste**: ⌘V stays enabled and behaves exactly as with nothing selected —
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/// > a card payload appends to the last-active lane, a lane payload lands at the board's right end.
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///
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/// > **Lane paste** lands after the anchor lane — the selected lane, or the selected card's lane
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/// > (several selected: the last, per the shared anchor rule); nothing selected = the board's right
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/// > end.
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///
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/// Plus 04 ▸ The map's zero-lane clause: "New Card, Return-creation, and Paste with a *card* payload
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/// disable via menu validation until a lane exists … Paste with a **lane** payload … stays enabled
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/// and lands at the board's right end".
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///
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/// **Pure, for `NewCardTarget`'s reason** — the branches become lines of test rather than gestures to
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/// drive, and the menu item's `disabled` reads the *same* answer as the paste's own target rather
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/// than a second, hand-kept-in-sync condition.
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///
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/// ### What it deliberately reuses
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///
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/// The anchor is `NewCardTarget.flattenAnchor`, not a second walk: 04 says creation and paste share
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/// one anchor ("the ⌘N target rule's shared anchor"), and two derivations of "the last member in
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/// flatten order" would be two chances for them to disagree. The card branch goes further and reuses
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/// `NewCardTarget.resolve` whole, because a card paste's *fallback* is the ⌘N rule's fallback too —
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/// the last-active lane, then the first lane. Only the lane branch stops at the anchor, because its
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/// fallback is the board's right end instead.
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enum PasteTarget {
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/// Where a card payload lands: which lane, and the position among that lane's rendered cards.
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struct Cards: Equatable {
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let laneID: ItemID
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/// A position in the lane's logical card order, counted among what it renders *now* — the
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/// convention every arrival path here takes (`BoardStore.receiveCards`).
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let index: Int
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}
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/// The card payload's target, or `nil` on a **zero-lane board** — which is therefore the menu
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/// item's `disabled` condition as well as the paste's refusal, so the two cannot disagree.
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static func cards(
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selection: ItemReferenceSet,
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lastActiveLaneID: ItemID?,
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snapshot: BoardModel
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) -> Cards? {
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guard let resolution = NewCardTarget.resolve(
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selection: selection,
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lastActiveLaneID: lastActiveLaneID,
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snapshot: snapshot
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),
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let lane = snapshot.lanes.first(where: { $0.id == resolution.laneID })
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else { return nil }
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let rendered = lane.cards
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// `insertionIndex` answers `nil` for "append", which is `rendered.count` — the same position
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// said two ways, and the creation path's own degradation for an anchor that has since gone.
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let index = BoardStore.insertionIndex(after: resolution.anchorCardID, among: rendered) ?? rendered.count
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return Cards(laneID: lane.id, index: index)
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}
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/// The lane payload's slot among the board's live lanes — **always an answer**, zero-lane board
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/// included, because lane paste "stays enabled and lands at the board's right end" whatever the
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/// board holds. That is what makes it the other way out of a board with no lanes.
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static func lanes(selection: ItemReferenceSet, snapshot: BoardModel) -> Int {
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let lanes = snapshot.lanes
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guard let anchor = NewCardTarget.flattenAnchor(selection: selection, snapshot: snapshot),
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let position = lanes.firstIndex(where: { $0.id == anchor.laneID })
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else {
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// Nothing selected, a tombstoned selection, or a stale one: the right end.
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return lanes.count
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}
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return position + 1
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}
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}
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