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Author SHA1 Message Date
Claude 05c000118b fix(timer): keep day offset on count-to-end scheduled end
getExpectedEnd compared the offset-laden expectedStart against a raw
`timeStart + duration + delay` planned end. That planned end omits the
`(dayOffset - currentDay) * dayInMs` day shift that expectedStart already
carries, so for a count-to-end event on a later day the Math.max guard
returned the day-shifted start instead of the day-shifted end (wrong by
one duration).

Compute the scheduled end in the same day-normalised space before the
guard. The guard itself (finish on schedule unless the start is
compromised) is unchanged.

Add unit tests for the multi-day case, the compromised-start guard, and
relative mode.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01ACGuFWt5aN7Fv3AkYXgxLm
2026-06-21 09:37:11 +00:00
Carlos Valente daf2cf67f4 fix: count-to-end events break link chain 2026-06-20 10:16:25 +02:00
6 changed files with 251 additions and 18 deletions
+9 -8
View File
@@ -4,6 +4,7 @@ import {
MILLIS_PER_MINUTE,
MILLIS_PER_SECOND,
formatFromMillis,
getExpectedEnd,
getExpectedStart,
} from 'ontime-utils';
@@ -172,13 +173,15 @@ export function getExpectedTimesFromExtendedEvent(
) {
if (event === null) return { expectedStart: 0, timeToStart: 0, expectedEnd: 0, plannedEnd: 0 };
const expectedStartState = {
totalGap: event.totalGap,
isLinkedToLoaded: event.isLinkedToLoaded,
...state,
};
const expectedStart = getExpectedStart(
{ timeStart: event.timeStart, delay: event.delay, dayOffset: event.dayOffset },
{
totalGap: event.totalGap,
isLinkedToLoaded: event.isLinkedToLoaded,
...state,
},
expectedStartState,
);
const plannedEnd = event.timeStart + event.duration + event.delay;
@@ -186,9 +189,7 @@ export function getExpectedTimesFromExtendedEvent(
return {
expectedStart,
timeToStart: expectedStart - state.clock,
expectedEnd: event.countToEnd
? Math.max(expectedStart + event.duration, plannedEnd)
: expectedStart + event.duration,
expectedEnd: getExpectedEnd(event, expectedStartState),
plannedEnd,
};
}
@@ -245,6 +245,52 @@ describe('mutation on runtimeState', () => {
expect(newState.offset.expectedRundownEnd).toBeNull();
});
test('a countToEnd last event absorbs overtime into its fixed rundown end', async () => {
const tenAM = 10 * MILLIS_PER_HOUR;
const elevenAM = 11 * MILLIS_PER_HOUR;
const noon = 12 * MILLIS_PER_HOUR;
const entries = {
event1: {
...mockEvent,
id: 'event1',
timeStart: tenAM,
timeEnd: elevenAM,
duration: MILLIS_PER_HOUR,
parent: null,
},
event2: {
...mockEvent,
id: 'event2',
timeStart: elevenAM,
timeEnd: noon,
duration: MILLIS_PER_HOUR,
countToEnd: true,
linkStart: true,
parent: null,
},
};
const mockRundown = makeRundown({ entries, order: ['event1', 'event2'] });
await initRundown(mockRundown, {});
vi.runAllTimers();
const { metadata, rundown } = rundownCache.get();
// start event1 five minutes behind schedule
vi.setSystemTime('jan 1 10:05');
load(entries.event1, rundown, metadata);
start();
update();
const newState = getState();
expect(newState.offset.absolute).toBe(5 * MILLIS_PER_MINUTE);
// without countToEnd the rundown would end at noon + 5min, but the countToEnd
// event absorbs the overtime so the rundown is still expected to end at noon
expect(newState.offset.expectedRundownEnd).toBe(noon);
});
test('resume restores currentDay from restore point', async () => {
clearState();
const mockRundown = makeRundown({
@@ -956,4 +1002,32 @@ describe('loadGroupFlagAndEnd()', () => {
eventNow: rundown.entries[0],
});
});
test('a countToEnd event breaks the link chain for the events that follow it', () => {
// chain: A (loaded) -> B (countToEnd, flagged) -> C (linked, last event)
// the chain stays intact up to and including B, but breaks for C since it follows a countToEnd event
const rundown = makeRundown({
entries: {
A: makeOntimeEvent({ id: 'A', parent: null, linkStart: false, countToEnd: false, gap: 0 }),
B: makeOntimeEvent({ id: 'B', parent: null, linkStart: true, countToEnd: true, gap: 0, flag: true }),
C: makeOntimeEvent({ id: 'C', parent: null, linkStart: true, countToEnd: false, gap: 0 }),
},
order: ['A', 'B', 'C'],
});
const state = {
groupNow: null,
eventNow: rundown.entries.A,
rundown: { actualGroupStart: null },
} as RuntimeState;
const metadata = { playableEventOrder: ['A', 'B', 'C'], flags: ['B'] } as RundownMetadata;
loadGroupFlagAndEnd(rundown, metadata, 0, state);
// the flag (B) is still part of the chain
expect(state._flag).toMatchObject({ event: rundown.entries.B, isLinkedToLoaded: true });
// the rundown end (C) follows the countToEnd event, so the chain is broken
expect(state._end).toMatchObject({ event: rundown.entries.C, isLinkedToLoaded: false });
});
});
+10 -7
View File
@@ -23,6 +23,7 @@ import {
calculateDuration,
checkIsNow,
dayInMs,
getExpectedEnd,
getExpectedStart,
getLastEventNormal,
isPlaybackActive,
@@ -836,8 +837,8 @@ function getExpectedTimes(state = runtimeState) {
const { _group } = state;
if (_group !== null) {
const { event: lastEvent, accumulatedGap, isLinkedToLoaded } = _group;
const lastEventExpectedStart = getExpectedStart(lastEvent, {
currentDay: state.rundown.currentDay!,
state.offset.expectedGroupEnd = getExpectedEnd(lastEvent, {
currentDay: state.rundown.currentDay ?? 0,
totalGap: accumulatedGap,
isLinkedToLoaded,
mode: offset.mode,
@@ -845,7 +846,6 @@ function getExpectedTimes(state = runtimeState) {
plannedStart,
actualStart,
});
state.offset.expectedGroupEnd = lastEventExpectedStart + lastEvent.duration;
}
}
@@ -868,8 +868,8 @@ function getExpectedTimes(state = runtimeState) {
if (state._end) {
const { event, accumulatedGap, isLinkedToLoaded } = state._end;
const expectedStart = getExpectedStart(event, {
currentDay: state.rundown.currentDay!,
state.offset.expectedRundownEnd = getExpectedEnd(event, {
currentDay: state.rundown.currentDay ?? 0,
totalGap: accumulatedGap,
isLinkedToLoaded,
mode: offset.mode,
@@ -877,7 +877,6 @@ function getExpectedTimes(state = runtimeState) {
plannedStart,
actualStart,
});
state.offset.expectedRundownEnd = expectedStart + event.duration;
}
}
@@ -920,6 +919,8 @@ export function loadGroupFlagAndEnd(
let accumulatedGap = 0;
let isLinkedToLoaded = true;
// a countToEnd event absorbs overtime and breaks the chain
let previousWasCountToEnd = false;
for (let idx = currentIndex; idx < playableEventOrder.length; idx++) {
const entry = entries[playableEventOrder[idx]];
@@ -928,7 +929,7 @@ export function loadGroupFlagAndEnd(
if (idx !== currentIndex) {
// we only accumulate data after the loaded event
accumulatedGap += entry.gap;
isLinkedToLoaded = isLinkedToLoaded && entry.linkStart;
isLinkedToLoaded = isLinkedToLoaded && entry.linkStart && !previousWasCountToEnd;
// and the loaded event is not allowed to be the next flag
if (!foundFlag && metadata.flags.includes(entry.id)) {
@@ -942,6 +943,8 @@ export function loadGroupFlagAndEnd(
foundGroupEnd = true;
state._group = { event: lastEventInGroup, isLinkedToLoaded, accumulatedGap };
}
previousWasCountToEnd = entry.countToEnd;
}
}
+1 -1
View File
@@ -80,7 +80,7 @@ export { validateEndAction, validateTimerType } from './src/validate-events/vali
// feature business logic
export { getExpectedStart } from './src/date-utils/getExpectedStart.js';
export { getExpectedStart, getExpectedEnd } from './src/date-utils/getExpected.js';
// feature business logic - rundown
export { checkIsNow } from './src/date-utils/checkIsNow.js';
@@ -1,7 +1,7 @@
import { Day, OffsetMode } from 'ontime-types';
import { MILLIS_PER_HOUR, dayInMs } from './conversionUtils';
import { getExpectedStart } from './getExpectedStart';
import { getExpectedEnd, getExpectedStart } from './getExpected';
describe('getExpectedStart()', () => {
describe('Absolute offset mode', () => {
@@ -315,3 +315,123 @@ describe('getExpectedStart()', () => {
expect(getExpectedStart(testEvent, { ...testState, currentDay: 0 })).toBe(23 * MILLIS_PER_HOUR + 5);
});
});
describe('getExpectedEnd()', () => {
const baseState = {
currentDay: 0,
totalGap: 0,
mode: OffsetMode.Absolute,
actualStart: null,
plannedStart: null,
isLinkedToLoaded: true,
};
test('a regular event ends at its expected start plus duration', () => {
const testEvent = {
timeStart: 100,
duration: 50,
delay: 0,
dayOffset: 0 as Day,
countToEnd: false,
};
// on schedule
expect(getExpectedEnd(testEvent, { ...baseState, offset: 0 })).toBe(150);
// running 20 behind pushes the end out
expect(getExpectedEnd(testEvent, { ...baseState, offset: 20 })).toBe(170);
});
test('a countToEnd event pins to the planned end while in overtime', () => {
const testEvent = {
timeStart: 100,
duration: 50,
delay: 0,
dayOffset: 0 as Day,
countToEnd: true,
};
// overtime would otherwise push the end to 170, but countToEnd absorbs it and pins to 150
expect(getExpectedEnd(testEvent, { ...baseState, offset: 20 })).toBe(150);
});
test('a countToEnd event pins to the planned end while ahead of schedule', () => {
const testEvent = {
timeStart: 100,
duration: 50,
delay: 0,
dayOffset: 0 as Day,
countToEnd: true,
};
// ahead of schedule the start moves earlier (90) but the end stays pinned to 150
expect(getExpectedEnd(testEvent, { ...baseState, offset: -10 })).toBe(150);
});
test('an overnight countToEnd event returns a normalised end', () => {
// event starts at 23:00 and counts to 01:00 the next day -> duration spans midnight
const timeStart = 23 * MILLIS_PER_HOUR;
const duration = 2 * MILLIS_PER_HOUR;
const testEvent = {
timeStart,
duration,
delay: 0,
dayOffset: 0 as Day,
countToEnd: true,
};
expect(getExpectedEnd(testEvent, { ...baseState, offset: 0 })).toBe(timeStart + duration);
});
test('a countToEnd event drifts when the start is compromised', () => {
const testEvent = {
timeStart: 100,
duration: 50,
delay: 0,
dayOffset: 0 as Day,
countToEnd: true,
};
// the offset pushes the start (160) past the scheduled end (150) so it can no longer
// finish on schedule - the end follows the compromised start
expect(getExpectedEnd(testEvent, { ...baseState, offset: 60 })).toBe(160);
});
test('a countToEnd event on a later day keeps the day offset on the end', () => {
const testEvent = {
timeStart: 100,
duration: 50,
delay: 0,
dayOffset: 1 as Day,
countToEnd: true,
};
// the scheduled end must include the day offset (delayedStart + dayInMs + duration),
// not collapse to the day-shifted start
expect(getExpectedEnd(testEvent, { ...baseState, currentDay: 0, offset: 0 })).toBe(150 + dayInMs);
// when the running event is already on the same day, no extra day is added
expect(getExpectedEnd({ ...testEvent, dayOffset: 0 as Day }, { ...baseState, currentDay: 0, offset: 0 })).toBe(150);
});
test('a countToEnd event is anchored to its wall-clock end in relative mode', () => {
const testEvent = {
timeStart: 100,
duration: 50,
delay: 0,
dayOffset: 0 as Day,
countToEnd: true,
};
const relativeState = {
...baseState,
mode: OffsetMode.Relative,
actualStart: 30,
plannedStart: 0,
offset: 0,
};
// a regular event in the same state is shifted by the relative-start offset to 180
expect(getExpectedEnd({ ...testEvent, countToEnd: false }, relativeState)).toBe(180);
// the countToEnd event stays pinned to its wall-clock end (150), not shifted
expect(getExpectedEnd(testEvent, relativeState)).toBe(150);
});
});
@@ -8,7 +8,6 @@ import { dayInMs } from './conversionUtils.js';
* @param currentDay the day offset of the currently running event
* @param totalGap accumulated gap from the current event
* @param isLinkedToLoaded is this event part of a chain linking back to the current loaded event
* @param clock
* @param offset
* @returns
*/
@@ -60,3 +59,39 @@ export function getExpectedStart(
const offsetStartTimeBufferedByGaps = offsetStartTime - totalGap;
return offsetStartTimeBufferedByGaps;
}
/**
* @param event the event that we are counting to
* @param currentDay the day offset of the currently running event
* @param totalGap accumulated gap from the current event
* @param isLinkedToLoaded is this event part of a chain linking back to the current loaded event
* @param offset
* @returns
*/
export function getExpectedEnd(
event: Pick<OntimeEvent, 'timeStart' | 'dayOffset' | 'delay' | 'duration' | 'countToEnd'>,
state: {
currentDay: number; // the current day from the rundown
totalGap: number;
isLinkedToLoaded: boolean;
offset: number;
mode: OffsetMode;
actualStart: MaybeNumber;
plannedStart: MaybeNumber;
},
): number {
// expected start encodes the offset from current delays
const expectedStart = getExpectedStart(event, state);
// count to end events should finish on schedule unlesss the start is compromised
if (event.countToEnd) {
// the scheduled end, normalised to the same day-space as expectedStart
// (a raw timeStart + duration would miss the day offset on multi-day rundowns)
const delayedStart = Math.max(0, event.timeStart + event.delay);
const relativeDayOffset = event.dayOffset - state.currentDay;
const scheduledEnd = delayedStart + relativeDayOffset * dayInMs + event.duration;
return Math.max(expectedStart, scheduledEnd);
}
return expectedStart + event.duration;
}