Files
lanework/Kanban/Storage/Ranks.swift
T
rzen 4e016fe8fe Implement Ranks — gapped fractional ordering
Pure ordering math: append at max+1024, head-insert at min−1024,
midpoint insertion with precision-exhaustion detection (nil on ties and
rounding onto an endpoint), renumbering to whole multiples of 1024, the
shared display-order tie-break (order, then folder name), and
tombstone-excluding overloads. 18 tests.

Claude-Session: https://claude.ai/code/session_018BjQRYBR6jQja3jCRi5S3A
2026-07-26 15:12:26 -04:00

88 lines
3.6 KiB
Swift

import Foundation
/// Pure gapped-fractional-ordering math: append, insert, midpoint, and the
/// renumber target, plus the display-order tie-break rule shared by the
/// loader and the writer. No filesystem or model dependency — see
/// DESIGN/01-storage-format.md § Ordering, Deletion.
enum Ranks: Sendable {
/// Gap between successive ranks on append/head-insert, and the multiple
/// used by `renumbered(count:)`.
private static let gap: Double = 1024
// MARK: - Append / insert
/// Rank for a new item appended after all visible siblings.
/// An empty lane's first item lands at `1024` (the board convention).
static func append(toVisible orders: some Sequence<Double>) -> Double {
(orders.max() ?? 0) + gap
}
/// Rank for a new item inserted before all visible siblings.
/// An empty lane's first item lands at `1024` (the board convention).
static func insertAtHead(ofVisible orders: some Sequence<Double>) -> Double {
guard let minOrder = orders.min() else { return gap }
return minOrder - gap
}
/// Rank strictly between `a` and `b`, or `nil` if no `Double` is
/// representable between them — including when `a == b` (a duplicate
/// order, the tie case). Never returns a value ≤ min(a, b) or
/// ≥ max(a, b).
static func midpoint(between a: Double, and b: Double) -> Double? {
let lower = min(a, b)
let upper = max(a, b)
guard lower < upper else { return nil }
let mid = lower + (upper - lower) / 2
guard mid > lower, mid < upper else { return nil }
return mid
}
/// `count` fresh ranks, whole multiples of 1024 in ascending order
/// (1024, 2048, …) — the renumber target when midpoint precision is
/// exhausted. Deterministic by construction; the writer applies these,
/// in order, to the current visible siblings in display order.
static func renumbered(count: Int) -> [Double] {
guard count > 0 else { return [] }
return (1...count).map { Double($0) * gap }
}
// MARK: - Display order
/// Ascending display order: primary key `order`, ties broken by folder
/// name (lexicographic) for deterministic rendering. Shared by the
/// loader and the writer so both apply the same tie-break rule.
static func isOrderedForDisplay<T>(
_ lhs: T, before rhs: T,
order: (T) -> Double, name: (T) -> String
) -> Bool {
let lhsOrder = order(lhs)
let rhsOrder = order(rhs)
return lhsOrder != rhsOrder ? lhsOrder < rhsOrder : name(lhs) < name(rhs)
}
/// Sorts siblings into display order — ascending `order`, ties broken by
/// folder name.
static func sortedForDisplay<T>(
_ items: [T],
order: (T) -> Double,
name: (T) -> String
) -> [T] {
items.sorted { isOrderedForDisplay($0, before: $1, order: order, name: name) }
}
// MARK: - Tombstone exclusion
/// `append(toVisible:)`, ignoring tombstoned siblings. Tombstones are
/// inert to ordering — appends operate on visible siblings only.
static func append(toVisible items: some Sequence<(order: Double, isDeleted: Bool)>) -> Double {
append(toVisible: items.filter { !$0.isDeleted }.map { $0.order })
}
/// `insertAtHead(ofVisible:)`, ignoring tombstoned siblings. Tombstones
/// are inert to ordering — inserts operate on visible siblings only.
static func insertAtHead(ofVisible items: some Sequence<(order: Double, isDeleted: Bool)>) -> Double {
insertAtHead(ofVisible: items.filter { !$0.isDeleted }.map { $0.order })
}
}