Files
ita-ito-horaires/lib/schedule/civil.ts
T
vliaudatandClaude Opus 5 72aff310d6 feat: build the frozen screen payload from resolved schedule data
Every string the panel shows is computed here, server-side and in both
languages: the status word, the formatted hours, the next-change line,
the week strip and the banner. The renderer downstream only draws, so it
has no access to the schedule and cannot disagree with this file about
what the shop's hours are.

Closing soon is still open and opening soon is still closed: the large
word states the fact and the line under it carries the nuance, which is
the only thing a passer-by can read from the pavement.

A message someone took the trouble to write always wins the banner over
the automatic notice. When its English translation has not landed yet,
the French line shows alone rather than a placeholder.

The snapshot test is the regression guard for the whole display
pipeline: any change to the shape or to a computed string has to be
acknowledged there before it can reach the panel. lib/screen is at 100%
statements and 96% branches.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_012cSY9pVhZmJUKNN7wf1Myd
2026-09-20 17:42:15 +02:00

154 lines
5.4 KiB
TypeScript

/**
* Civil (wall-clock) date and time helpers.
*
* The whole scheduling core works on civil values — "2026-09-20" and "18:30"
* as the shop would read them off a wall — rather than on instants. That is a
* deliberate choice: a slot that runs 10:00-18:30 runs 10:00-18:30 on the day
* the clocks change too, and no UTC arithmetic can accidentally shift it by an
* hour twice a year.
*
* Conversions from an instant to a civil value happen exactly once, at the
* edge, through Intl with an explicit timezone. Everything downstream is
* string and integer arithmetic.
*/
/** A civil date, `YYYY-MM-DD`. */
export type CivilDate = string;
/** A civil time of day, `HH:mm`, 24-hour. */
export type CivilTime = string;
const MS_PER_DAY = 86_400_000;
const dateFormatters = new Map<string, Intl.DateTimeFormat>();
const timeFormatters = new Map<string, Intl.DateTimeFormat>();
function dateFormatter(timeZone: string): Intl.DateTimeFormat {
let formatter = dateFormatters.get(timeZone);
if (!formatter) {
formatter = new Intl.DateTimeFormat('en-CA', {
timeZone,
year: 'numeric',
month: '2-digit',
day: '2-digit',
});
dateFormatters.set(timeZone, formatter);
}
return formatter;
}
function timeFormatter(timeZone: string): Intl.DateTimeFormat {
let formatter = timeFormatters.get(timeZone);
if (!formatter) {
formatter = new Intl.DateTimeFormat('en-GB', {
timeZone,
hour: '2-digit',
minute: '2-digit',
hourCycle: 'h23',
});
timeFormatters.set(timeZone, formatter);
}
return formatter;
}
function part(parts: Intl.DateTimeFormatPart[], type: Intl.DateTimeFormatPartTypes): string {
const found = parts.find((candidate) => candidate.type === type);
if (!found) {
throw new Error(`Missing "${type}" in formatted date`);
}
return found.value;
}
/** The civil date the given instant falls on, in `timeZone`. */
export function toCivilDate(instant: Date, timeZone: string): CivilDate {
const parts = dateFormatter(timeZone).formatToParts(instant);
return `${part(parts, 'year')}-${part(parts, 'month')}-${part(parts, 'day')}`;
}
/** The wall-clock time the given instant shows, in `timeZone`. */
export function toCivilTime(instant: Date, timeZone: string): CivilTime {
const parts = timeFormatter(timeZone).formatToParts(instant);
return `${part(parts, 'hour')}:${part(parts, 'minute')}`;
}
/**
* Adds whole days to a civil date.
*
* The arithmetic goes through UTC on purpose: UTC has no daylight saving, so
* "one day later" is always exactly 86 400 000 ms and the result is the civil
* date a human would name, including on the nights the clocks change.
*/
export function addCivilDays(date: CivilDate, days: number): CivilDate {
const shifted = new Date(civilToUtcMs(date) + days * MS_PER_DAY);
const year = shifted.getUTCFullYear().toString().padStart(4, '0');
const month = (shifted.getUTCMonth() + 1).toString().padStart(2, '0');
const day = shifted.getUTCDate().toString().padStart(2, '0');
return `${year}-${month}-${day}`;
}
/** Day of the week, 0 = Sunday .. 6 = Saturday, matching `Date.prototype.getDay`. */
export function civilDayOfWeek(date: CivilDate): number {
return new Date(civilToUtcMs(date)).getUTCDay();
}
/** Chronological comparator; civil dates are lexicographically ordered too. */
export function compareCivil(a: CivilDate, b: CivilDate): number {
return a < b ? -1 : a > b ? 1 : 0;
}
/** True when `date` falls within `[start, end]`, both inclusive. */
export function isWithinCivilRange(date: CivilDate, start: CivilDate, end: CivilDate): boolean {
return compareCivil(date, start) >= 0 && compareCivil(date, end) <= 0;
}
/** The Monday of the week containing `date`. */
export function startOfCivilWeek(date: CivilDate): CivilDate {
const dayOfWeek = civilDayOfWeek(date);
// getDay() puts Sunday at 0; the shop's week starts on Monday.
const daysSinceMonday = (dayOfWeek + 6) % 7;
return addCivilDays(date, -daysSinceMonday);
}
/**
* The instant as an ISO 8601 string carrying the shop's UTC offset, e.g.
* "2026-09-20T10:15:00+02:00".
*
* The offset is derived from the zone itself rather than assumed, so the same
* code prints +01:00 in winter and +02:00 in summer without being told.
*/
export function toIsoWithOffset(instant: Date, timeZone: string): string {
const date = toCivilDate(instant, timeZone);
const time = toCivilTime(instant, timeZone);
const seconds = instant.getUTCSeconds().toString().padStart(2, '0');
// Reading the wall clock back as if it were UTC gives the offset directly.
const asUtc = Date.UTC(
Number(date.slice(0, 4)),
Number(date.slice(5, 7)) - 1,
Number(date.slice(8, 10)),
Number(time.slice(0, 2)),
Number(time.slice(3, 5)),
instant.getUTCSeconds(),
);
const offsetMinutes = Math.round((asUtc - instant.getTime()) / 60_000);
const sign = offsetMinutes < 0 ? '-' : '+';
const absolute = Math.abs(offsetMinutes);
const hours = Math.floor(absolute / 60)
.toString()
.padStart(2, '0');
const minutes = (absolute % 60).toString().padStart(2, '0');
return `${date}T${time}:${seconds}${sign}${hours}:${minutes}`;
}
/** Minutes since midnight for a `HH:mm` wall-clock time. */
export function minutesOfTime(time: CivilTime): number {
const [hours, minutes] = time.split(':');
return Number(hours) * 60 + Number(minutes);
}
function civilToUtcMs(date: CivilDate): number {
const [year, month, day] = date.split('-');
return Date.UTC(Number(year), Number(month) - 1, Number(day));
}