dsh-ops-cron/lib/scheduler.js
Whale-Zhang ef8ff6e10d Initial commit: scheduled tasks plugin for DeepSeek Harness
Sidebar jobs under New Session, isolated run history, cron/at schedules, and model-facing cron_* tools.
2026-08-24 14:16:47 +08:00

458 lines
14 KiB
JavaScript

/**
* Pure schedule math: 5-field cron, one-shot `at`, overlap, misfire.
* No Cordis imports — tests call these with a fake clock.
*/
const MONTH_NAMES = {
jan: 1, feb: 2, mar: 3, apr: 4, may: 5, jun: 6,
jul: 7, aug: 8, sep: 9, oct: 10, nov: 11, dec: 12,
}
const DOW_NAMES = {
sun: 0, mon: 1, tue: 2, wed: 3, thu: 4, fri: 5, sat: 6,
}
const WEEKDAY_FROM_SHORT = {
Sun: 0, Mon: 1, Tue: 2, Wed: 3, Thu: 4, Fri: 5, Sat: 6,
}
export const DEFAULT_GRACE_MS = 60_000
export const OVERLAP_STATUSES = new Set(['queued', 'running'])
/**
* @param {string} expr
* @returns {{ minute: Set<number>, hour: Set<number>, dayOfMonth: Set<number>, month: Set<number>, dayOfWeek: Set<number>, raw: string }}
*/
export function parseCron(expr) {
if (typeof expr !== 'string') throw invalidCron('cron must be a string')
const parts = expr.trim().split(/\s+/)
if (parts.length !== 5) throw invalidCron('cron must have exactly 5 fields (minute hour day-of-month month day-of-week)')
const minute = parseField(parts[0], 0, 59, null, 'minute')
const hour = parseField(parts[1], 0, 23, null, 'hour')
const dayOfMonth = parseField(parts[2], 1, 31, null, 'day-of-month')
const month = parseField(parts[3], 1, 12, MONTH_NAMES, 'month')
const dayOfWeek = parseField(parts[4], 0, 7, DOW_NAMES, 'day-of-week')
if (dayOfWeek.has(7)) {
dayOfWeek.add(0)
dayOfWeek.delete(7)
}
return { minute, hour, dayOfMonth, month, dayOfWeek, raw: parts.join(' ') }
}
function invalidCron(message) {
const error = new Error(message)
error.code = 'INVALID_CRON'
return error
}
function parseField(field, min, max, names, label) {
if (field === undefined || field === '') throw invalidCron(`empty ${label} field`)
const values = new Set()
for (const item of field.split(',')) {
const token = item.trim()
if (!token) throw invalidCron(`empty list item in ${label}`)
const [rangePart, stepPart] = token.split('/')
const step = stepPart === undefined ? 1 : Number(stepPart)
if (!Number.isInteger(step) || step < 1) throw invalidCron(`invalid step in ${label}`)
let start
let end
if (rangePart === '*') {
start = min
end = max
} else if (rangePart.includes('-')) {
const [a, b] = rangePart.split('-')
start = parseAtom(a, min, max, names, label)
end = parseAtom(b, min, max, names, label)
if (start > end) throw invalidCron(`inverted range in ${label}`)
} else {
start = parseAtom(rangePart, min, max, names, label)
end = stepPart === undefined ? start : max
}
for (let value = start; value <= end; value += step) values.add(value)
}
if (values.size === 0) throw invalidCron(`no values in ${label}`)
return values
}
function parseAtom(raw, min, max, names, label) {
const token = String(raw || '').trim().toLowerCase()
let value
if (names && names[token] !== undefined) value = names[token]
else {
if (!/^\d+$/.test(token)) throw invalidCron(`invalid ${label} value "${raw}"`)
value = Number(token)
}
if (!Number.isInteger(value) || value < min || value > max) {
throw invalidCron(`${label} value ${raw} out of range ${min}-${max}`)
}
return value
}
/**
* @param {unknown} schedule
* @returns {{ kind: 'cron', expr: string, timezone: string, parsed: ReturnType<typeof parseCron> } | { kind: 'at', at: number, timezone: string }}
*/
export function validateSchedule(schedule, fallbackTimezone = 'UTC') {
if (!schedule || typeof schedule !== 'object') {
const error = new Error('schedule is required')
error.code = 'INVALID_SCHEDULE'
throw error
}
const kind = schedule.kind
const timezone = assertTimeZone(schedule.timezone || fallbackTimezone)
if (kind === 'cron') {
const parsed = parseCron(schedule.expr)
return { kind: 'cron', expr: parsed.raw, timezone, parsed }
}
if (kind === 'at') {
const at = parseAt(schedule.at, timezone)
return { kind: 'at', at, timezone }
}
const error = new Error('schedule.kind must be "cron" or "at"')
error.code = 'INVALID_SCHEDULE'
throw error
}
export function parseAt(value, timeZone) {
if (typeof value === 'number' && Number.isFinite(value)) {
if (value <= 0) {
const error = new Error('at timestamp must be positive')
error.code = 'INVALID_AT'
throw error
}
return Math.round(value)
}
if (typeof value !== 'string' || !value.trim()) {
const error = new Error('at must be an ISO 8601 timestamp')
error.code = 'INVALID_AT'
throw error
}
const raw = value.trim()
const timeOnly = raw.match(/^(\d{1,2}):(\d{2})(?::(\d{2}))?$/)
if (timeOnly && timeZone) {
return resolveTodayAt(Number(timeOnly[1]), Number(timeOnly[2]), timeZone)
}
if (/[zZ]|[+-]\d{2}:?\d{2}$/.test(raw)) {
const ms = Date.parse(raw)
if (!Number.isFinite(ms)) {
const error = new Error(`invalid at timestamp: ${value}`)
error.code = 'INVALID_AT'
throw error
}
return ms
}
const match = raw.match(/^(\d{4})-(\d{2})-(\d{2})[T ](\d{2}):(\d{2})(?::(\d{2}))?/)
if (match && timeZone) {
const utc = zonedToUtc({
year: Number(match[1]),
month: Number(match[2]),
day: Number(match[3]),
hour: Number(match[4]),
minute: Number(match[5]),
second: Number(match[6] || 0),
}, timeZone)
if (utc == null) {
const error = new Error(`invalid local time ${raw} in ${timeZone}`)
error.code = 'INVALID_AT'
throw error
}
return utc
}
const ms = Date.parse(raw)
if (!Number.isFinite(ms)) {
const error = new Error(`invalid at timestamp: ${value}`)
error.code = 'INVALID_AT'
throw error
}
return ms
}
export function formatInZone(ms, timeZone) {
if (!Number.isFinite(ms)) return ''
const zone = timeZone || 'UTC'
const p = partsInZone(ms, zone)
const pad = (n) => String(n).padStart(2, '0')
return `${p.year}-${pad(p.month)}-${pad(p.day)} ${pad(p.hour)}:${pad(p.minute)} ${zone}`
}
/**
* One-shot wall clock today in `timeZone`. If that instant is already past,
* roll to the next calendar day (for "tonight 23:34" said after 23:34).
*/
export function resolveTodayAt(hour, minute, timeZone, nowMs = Date.now()) {
const tz = assertTimeZone(timeZone || 'Asia/Shanghai')
const h = Number(hour)
const min = Number(minute)
if (!Number.isInteger(h) || h < 0 || h > 23) {
const error = new Error('hour must be an integer 0-23')
error.code = 'INVALID_AT'
throw error
}
if (!Number.isInteger(min) || min < 0 || min > 59) {
const error = new Error('minute must be an integer 0-59')
error.code = 'INVALID_AT'
throw error
}
const now = partsInZone(nowMs, tz)
let utc = zonedToUtc({
year: now.year, month: now.month, day: now.day, hour: h, minute: min, second: 0,
}, tz)
if (utc == null) {
const error = new Error(`invalid local time ${h}:${String(min).padStart(2, '0')} in ${tz}`)
error.code = 'INVALID_AT'
throw error
}
if (utc <= nowMs) {
const next = partsInZone(utc + 24 * 3600 * 1000, tz)
utc = zonedToUtc({
year: next.year, month: next.month, day: next.day, hour: h, minute: min, second: 0,
}, tz)
}
return utc
}
export function assertTimeZone(timeZone) {
const name = String(timeZone || '').trim()
if (!name) {
const error = new Error('timezone is required')
error.code = 'INVALID_TIMEZONE'
throw error
}
try {
new Intl.DateTimeFormat('en-US', { timeZone: name }).format(new Date(0))
} catch {
const error = new Error(`unknown IANA timezone: ${name}`)
error.code = 'INVALID_TIMEZONE'
throw error
}
return name
}
/**
* Wall-clock parts of `ms` in `timeZone`.
* @returns {{ year: number, month: number, day: number, hour: number, minute: number, second: number, weekday: number }}
*/
export function partsInZone(ms, timeZone) {
const dtf = new Intl.DateTimeFormat('en-US', {
timeZone,
year: 'numeric',
month: '2-digit',
day: '2-digit',
hour: '2-digit',
minute: '2-digit',
second: '2-digit',
hourCycle: 'h23',
weekday: 'short',
})
const map = {}
for (const part of dtf.formatToParts(new Date(ms))) {
if (part.type !== 'literal') map[part.type] = part.value
}
const weekday = WEEKDAY_FROM_SHORT[map.weekday]
if (weekday === undefined) throw new Error(`cannot read weekday in ${timeZone}`)
return {
year: Number(map.year),
month: Number(map.month),
day: Number(map.day),
hour: Number(map.hour),
minute: Number(map.minute),
second: Number(map.second),
weekday,
}
}
/**
* Convert a local wall time in `timeZone` to UTC epoch ms.
* DST gaps return null (that local time does not exist).
*/
export function zonedToUtc(parts, timeZone) {
const utcGuess = Date.UTC(parts.year, parts.month - 1, parts.day, parts.hour, parts.minute, parts.second || 0)
const asZone = partsInZone(utcGuess, timeZone)
const asZoneUtc = Date.UTC(asZone.year, asZone.month - 1, asZone.day, asZone.hour, asZone.minute, asZone.second)
const result = utcGuess - (asZoneUtc - utcGuess)
const check = partsInZone(result, timeZone)
if (
check.year !== parts.year
|| check.month !== parts.month
|| check.day !== parts.day
|| check.hour !== parts.hour
|| check.minute !== parts.minute
) {
return null
}
return result
}
function daysInMonth(year, month) {
return new Date(Date.UTC(year, month, 0)).getUTCDate()
}
function cronMatches(parsed, parts) {
if (!parsed.minute.has(parts.minute)) return false
if (!parsed.hour.has(parts.hour)) return false
if (!parsed.month.has(parts.month)) return false
const domStar = parsed.dayOfMonth.size === 31
const dowStar = parsed.dayOfWeek.size === 7
const domHit = parsed.dayOfMonth.has(parts.day)
const dowHit = parsed.dayOfWeek.has(parts.weekday)
if (!domStar && !dowStar) return domHit || dowHit
if (!domStar && !domHit) return false
if (!dowStar && !dowHit) return false
return true
}
/**
* Next fire strictly after `afterMs`. Returns epoch ms, or null if none
* (one-shot `at` already passed, or cron search exhausted).
*/
export function nextFire(schedule, afterMs, fallbackTimezone = 'UTC') {
const spec = schedule.parsed && schedule.kind === 'cron'
? schedule
: validateSchedule(schedule, fallbackTimezone)
const after = Number(afterMs)
if (!Number.isFinite(after)) throw new Error('afterMs must be a number')
if (spec.kind === 'at') return spec.at > after ? spec.at : null
return nextCronFire(spec.parsed, spec.timezone, after)
}
function nextCronFire(parsed, timeZone, afterMs) {
const start = partsInZone(afterMs, timeZone)
// Next whole local minute strictly after afterMs.
let year = start.year
let month = start.month
let day = start.day
let hour = start.hour
let minute = start.minute + 1
const limitYear = year + 5
while (year <= limitYear) {
if (!parsed.month.has(month)) {
month += 1
day = 1
hour = 0
minute = 0
if (month > 12) {
month = 1
year += 1
}
continue
}
const dim = daysInMonth(year, month)
if (day > dim) {
day = 1
hour = 0
minute = 0
month += 1
if (month > 12) {
month = 1
year += 1
}
continue
}
if (hour > 23) {
hour = 0
minute = 0
day += 1
continue
}
if (minute > 59) {
minute = 0
hour += 1
continue
}
const utc = zonedToUtc({ year, month, day, hour, minute, second: 0 }, timeZone)
if (utc === null) {
minute += 1
continue
}
if (utc <= afterMs) {
minute += 1
continue
}
const weekday = partsInZone(utc, timeZone).weekday
if (cronMatches(parsed, { minute, hour, day, month, weekday })) return utc
minute += 1
}
return null
}
export function hasOverlap(runs, jobId) {
if (!Array.isArray(runs)) return false
return runs.some((run) => (
run
&& run.jobId === jobId
&& OVERLAP_STATUSES.has(run.status)
))
}
/**
* Decide whether a job should fire at `now`.
* At most one occurrence is returned — missed ticks are never expanded into a backlog.
*
* @param {object} input
* @param {object} input.job
* @param {object[]} [input.runs]
* @param {number} input.now
* @param {'skip'} [input.overlapPolicy]
* @param {'skip'} [input.misfirePolicy]
* @param {number} [input.graceMs]
*/
export function decideDispatch(input) {
const job = input?.job
const now = Number(input?.now)
if (!job || typeof job !== 'object') throw new Error('job is required')
if (!Number.isFinite(now)) throw new Error('now must be a number')
const overlapPolicy = input.overlapPolicy || 'skip'
const misfirePolicy = input.misfirePolicy || 'skip'
const graceMs = Number.isFinite(input.graceMs) ? input.graceMs : DEFAULT_GRACE_MS
const timezone = job.schedule?.timezone
if (job.nextRunAt === null) {
return { action: 'wait', reason: 'complete', nextRunAt: null }
}
const due = Number.isFinite(job.nextRunAt) ? job.nextRunAt : nextFire(job.schedule, job.createdAt || now, timezone)
if (job.enabled === false) {
return { action: 'wait', reason: 'disabled', nextRunAt: due ?? null }
}
if (due == null) {
return { action: 'wait', reason: 'complete', nextRunAt: null }
}
if (due > now) {
return { action: 'wait', reason: 'not-due', nextRunAt: due }
}
if (overlapPolicy === 'skip' && hasOverlap(input.runs, job.id)) {
const nextRunAt = advanceAfter(job.schedule, Math.max(due, now), timezone)
return { action: 'skip', reason: 'overlap', scheduledAt: due, nextRunAt }
}
if (misfirePolicy === 'skip' && now - due > graceMs) {
const nextRunAt = advanceAfter(job.schedule, now, timezone)
return { action: 'skip', reason: 'misfire', scheduledAt: due, nextRunAt }
}
const nextRunAt = advanceAfter(job.schedule, Math.max(due, now), timezone)
return { action: 'fire', scheduledAt: due, nextRunAt }
}
function advanceAfter(schedule, afterMs, timezone) {
if (schedule?.kind === 'at') return null
return nextFire(schedule, afterMs, timezone)
}
/**
* Scan jobs at `now` and return at most one action per job.
* Never expands a downtime gap into N queued occurrences.
*/
export function tickJobs(jobs, runsByJobId, now, policies = {}) {
const out = []
for (const job of jobs || []) {
const runs = runsByJobId?.get?.(job.id) || runsByJobId?.[job.id] || []
const decision = decideDispatch({
job,
runs,
now,
overlapPolicy: policies.overlapPolicy,
misfirePolicy: policies.misfirePolicy,
graceMs: policies.graceMs,
})
out.push({ jobId: job.id, ...decision })
}
return out
}