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@burglekitt/gmt

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Temporal-based date and time utilities with timezone support and polyfill integration

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import { Temporal } from "@js-temporal/polyfill"; import { plainDateTime } from "../../regex/index.js"; /** * Return the symmetric difference of two datetime intervals — time covered by exactly one interval. * * - Uses `Temporal.PlainDateTime.compare` for comparison. * - Returns `[]` when intervals are identical or both invalid. * - Returns `[{ start, end }]` when one interval fully contains the other. * - Returns `[{ start, end }, { start, end }]` when intervals partially overlap. * - Returns `[]` if either interval is invalid (`start > end`). * - Returns `[]` on invalid input (wrong type, malformed strings). * * @param aStart ISO 8601 datetime string for the first interval start * @param aEnd ISO 8601 datetime string for the first interval end * @param bStart ISO 8601 datetime string for the second interval start * @param bEnd ISO 8601 datetime string for the second interval end * @returns array of `{ start, end }` records representing the symmetric difference, or `[]` on invalid input * * @example intervalXorDateTime("2024-01-01T09:00:00", "2024-06-30T12:00:00", "2024-04-01T11:00:00", "2024-12-31T17:00:00") // [{ start: "2024-01-01T09:00:00", end: "2024-03-31T17:00:00" }, { start: "2024-06-30T12:00:01", end: "2024-12-31T17:00:00" }] * @example intervalXorDateTime("2024-01-01T09:00:00", "2024-12-31T17:00:00", "2024-04-01T11:00:00", "2024-06-30T12:00:00") // [{ start: "2024-01-01T09:00:00", end: "2024-03-31T17:00:00" }, { start: "2024-06-30T12:00:01", end: "2024-12-31T17:00:00" }] * @example intervalXorDateTime("2024-01-01T09:00:00", "2024-12-31T17:00:00", "2024-01-01T09:00:00", "2024-12-31T17:00:00") // [] * @example intervalXorDateTime("invalid", "2024-06-30T12:00:00", "2024-07-01T13:00:00", "2024-12-31T17:00:00") // [] */ export function intervalXorDateTime(aStart, aEnd, bStart, bEnd) { if (typeof aStart !== "string" || typeof aEnd !== "string" || typeof bStart !== "string" || typeof bEnd !== "string") { return []; } if (!plainDateTime.test(aStart) || !plainDateTime.test(aEnd) || !plainDateTime.test(bStart) || !plainDateTime.test(bEnd)) { return []; } try { const aS = Temporal.PlainDateTime.from(aStart); const aE = Temporal.PlainDateTime.from(aEnd); const bS = Temporal.PlainDateTime.from(bStart); const bE = Temporal.PlainDateTime.from(bEnd); if (Temporal.PlainDateTime.compare(aS, aE) > 0) { return []; } if (Temporal.PlainDateTime.compare(bS, bE) > 0) { return []; } const result = []; // If intervals don't overlap, return both as-is if (Temporal.PlainDateTime.compare(aE, bS) < 0 || Temporal.PlainDateTime.compare(bE, aS) < 0) { return [ { start: aS.toString(), end: aE.toString() }, { start: bS.toString(), end: bE.toString() }, ]; } // Left piece: A before B starts if (Temporal.PlainDateTime.compare(aS, bS) < 0) { result.push({ start: aS.toString(), end: bS.subtract({ nanoseconds: 1 }).toString(), }); } // Right piece: A after B ends if (Temporal.PlainDateTime.compare(aE, bE) > 0) { result.push({ start: bE.add({ nanoseconds: 1 }).toString(), end: aE.toString(), }); } // Left piece: B before A starts if (Temporal.PlainDateTime.compare(bS, aS) < 0) { result.push({ start: bS.toString(), end: aS.subtract({ nanoseconds: 1 }).toString(), }); } // Right piece: B after A ends if (Temporal.PlainDateTime.compare(bE, aE) > 0) { result.push({ start: aE.add({ nanoseconds: 1 }).toString(), end: bE.toString(), }); } return result; } catch { return []; } }