The design corpus ratified that ranges are part of a sensible reading: an exact-integer width below 1 now coerces to 1 read-side (bytes untouched) instead of reading as malformed — the width division must never see a zero or negative unit — while a non-finite order (.nan, .inf) is now the same loud malformed-order rejection as a non-numeric one, guarded at the single point where the double arrives so loader and Writer inherit it together. The symlink-never-traversed rule turned out to be already enforced (the loader has filtered symlinks ahead of the directory check since the first commit); it and the copy-preserves-the-link-verbatim behavior are now pinned by tests, alongside the two hostile shapes the corpus names (width: 0, order: .nan). Five new tests. Claude-Session: https://claude.ai/code/session_01SR4XGjmBE16ZUYWpfFHXwY
142 lines
6.5 KiB
Swift
142 lines
6.5 KiB
Swift
import Foundation
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import Yams
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/// One top-level frontmatter entry: what YAML made of it plus the text as written.
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public struct FrontmatterField: Sendable, Equatable {
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public let key: String
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public let value: YAMLValue
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public let rawValue: String
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}
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/// The result of reading a typed field. `malformed` is what keeps strict fields (`schema`,
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/// `order`) from being silently coerced — they fail the load instead. Lenient fields (colors,
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/// icons, `width`) coerce where a sensible reading exists (01-storage-format.md § Frontmatter)
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/// and only fall back to `.malformed` — rendered as the field's default — when none does.
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public enum FieldValue<Value: Sendable & Equatable>: Sendable, Equatable {
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case missing
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case valid(Value)
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case malformed(raw: String)
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public var value: Value? {
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if case let .valid(value) = self { return value }
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return nil
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}
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public var isMissing: Bool {
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if case .missing = self { return true }
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return false
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}
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public var isMalformed: Bool {
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if case .malformed = self { return true }
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return false
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}
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/// The value as written, for a malformed field.
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public var rawText: String? {
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if case let .malformed(raw) = self { return raw }
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return nil
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}
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}
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extension FrontmatterDocument {
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// MARK: - Strict (structure — the loader fails fast on `.malformed`)
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public var schema: FieldValue<Int> {
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read(FrontmatterKeys.schema) { value, _ in if case let .int(value) = value { value } else { nil } }
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}
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/// A non-finite reading (`.nan`, `.inf`) has no place in the total order the tie-break and
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/// midpoint math assume (01-storage-format.md § Frontmatter, settled) — it is the same loud
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/// malformed-input rejection as a non-numeric value, not a `.valid(Double.nan)` silently
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/// poisoning every comparison downstream. An `Int` reading is always finite, so only the
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/// `.double` case needs the check.
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public var order: FieldValue<Double> {
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read(FrontmatterKeys.order) { value, _ in
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switch value {
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case let .int(value): Double(value)
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case let .double(value): value.isFinite ? value : nil
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default: nil
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}
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}
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}
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// MARK: - Lenient (coerce where a sensible reading exists, else malformed → UI default)
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/// Any scalar coerces to the text the author typed — a quoted string's own text (quotes and
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/// escapes already resolved by the parser), or an unquoted scalar's exact source span
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/// (`title: 2048` reads as `"2048"`). Only a sequence or mapping — no scalar reading exists
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/// — is malformed.
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public var title: FieldValue<String> { read(FrontmatterKeys.title, Self.string) }
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public var background: FieldValue<String> { read(FrontmatterKeys.background, Self.string) }
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public var icon: FieldValue<String> { read(FrontmatterKeys.icon, Self.string) }
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public var iconColor: FieldValue<String> { read(FrontmatterKeys.iconColor, Self.string) }
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/// Width multiplier. An exact-integer reading — from an int, a double, or a numeric string —
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/// always coerces: at or above 1 to itself (`"2"`, `2.0` → `2`), below 1 to 1 (**ranges are
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/// part of the sensible reading**, 01-storage-format.md § Frontmatter, settled — the table's
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/// "≥ 1" is a validity bound on the coerced reading, not a gate on which readings are
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/// sensible). Everything else — fractional, non-numeric, bool, a sequence/mapping — has no
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/// integer reading at all and is malformed, rendering as the default 1.
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public var width: FieldValue<Int> {
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read(FrontmatterKeys.width) { value, _ in
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switch value {
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case let .int(value): value >= 1 ? value : 1
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case let .double(value): Self.exactIntWidth(value)
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case let .string(text): Double(text).flatMap(Self.exactIntWidth)
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default: nil
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}
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}
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}
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public var created: FieldValue<Date> { read(FrontmatterKeys.created) { value, _ in Self.date(value) } }
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public var modified: FieldValue<Date> { read(FrontmatterKeys.modified) { value, _ in Self.date(value) } }
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public var deleted: FieldValue<Date> { read(FrontmatterKeys.deleted) { value, _ in Self.date(value) } }
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/// Schema-owned, not an unknown key: the app clears it on every app-mediated write.
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public var modifiedBy: FieldValue<String> { read(FrontmatterKeys.modifiedBy, Self.string) }
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// MARK: -
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private func read<Value>(_ key: String, _ transform: (YAMLValue, String) -> Value?) -> FieldValue<Value> {
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guard let value = value(for: key) else { return .missing }
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if case .null = value { return .missing }
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let raw = rawValue(for: key) ?? value.description
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if let typed = transform(value, raw) { return .valid(typed) }
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return .malformed(raw: raw)
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}
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/// A quoted string reads as its own (already-unquoted, already-unescaped) text; any other
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/// scalar reads as its raw source span — what the author typed. Only a sequence/mapping has
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/// no sensible string reading.
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private static func string(_ value: YAMLValue, raw: String) -> String? {
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switch value {
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case let .string(text): text
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case .int, .double, .bool, .date: raw
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default: nil
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}
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}
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/// An integer-valued double or numeric string coerces — below 1 to 1, at or above 1 to the
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/// value itself; a fractional reading, a non-numeric one, or one outside `Int` range on the
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/// high end has no sensible width reading at all. The high-end guard is what makes `Int(value)`
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/// safe below; there is no matching low-end guard because anything below 1 short-circuits to
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/// the literal `1` without ever converting the (possibly enormous negative) double to `Int`.
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private static func exactIntWidth(_ value: Double) -> Int? {
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guard value.truncatingRemainder(dividingBy: 1) == 0, value <= Double(Int.max) else { return nil }
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return value >= 1 ? Int(value) : 1
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}
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/// A quoted timestamp reads the same as an unquoted one — same YAML 1.1 timestamp grammar,
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/// a superset of ISO-8601. Anything that isn't a valid timestamp either way has no sensible
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/// date reading and is malformed; per the tombstone rule (`Lane`/`Card.isDeleted`), a
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/// malformed `deleted` still deletes — presence, not validity, is what counts.
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private static func date(_ value: YAMLValue) -> Date? {
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switch value {
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case let .date(date): date
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case let .string(text): Date.construct(from: Node.Scalar(text))
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default: nil
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}
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}
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}
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