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15 Commits

Author SHA1 Message Date
Aman Tahiliani
480e6ca860 Merge pull request #99 from AmanTahiliani/feat/issue-98-keep-completed-analysis-as-the-race-hub-
Keep completed analysis as the Race Hub default until the next Grand Prix is imminent (#98)
2026-07-29 03:58:30 -04:00
AmanTahiliani
81deed4c75 fix(#98): rearm capped race hub refresh 2026-07-29 03:56:22 -04:00
AmanTahiliani
d6d0558c72 fix(#98): expose weekend switcher before sessions 2026-07-29 03:52:51 -04:00
AmanTahiliani
b884ba8885 fix(#98): preserve bare race hub handoff 2026-07-29 03:46:57 -04:00
AmanTahiliani
56ea860101 feat(#98): Keep completed analysis as the Race Hub default until the next Grand Prix is imminent
Implemented by opencode via .agents/dev dispatch.
2026-07-29 03:28:42 -04:00
Aman Tahiliani
7c7886e6c6 Merge pull request #95 from AmanTahiliani/fix/live-stint-history-merge
fix(live): merge stint deltas instead of replacing stint history
2026-07-29 01:25:12 -04:00
Aman Tahiliani
71f81924ee Merge pull request #94 from AmanTahiliani/feat/frontend-design-uxpass
Live page design pass: give the timing tower the fold back
2026-07-29 01:25:09 -04:00
Aman Tahiliani
7b86698b22 Merge pull request #93 from AmanTahiliani/feat/issue-76-availability-truth-backend
Harvest availability and freshness truth, backend only (re-cut of #76)
2026-07-29 01:25:06 -04:00
Aman Tahiliani
e88e0885ec Merge pull request #92 from AmanTahiliani/feat/issue-72-canonical-weekend-context
Harvest canonical Weekend Context API onto main (re-cut of #72)
2026-07-29 01:24:54 -04:00
AmanTahiliani
255b296ecc fix(live): merge stint deltas instead of replacing stint history
The F1 feed sends TimingAppData stints as sparse deltas keyed by stint
index — a mid-stint update is just {"1": {"TotalLaps": 14}}. The parser
replaced the whole stint slice with whatever a delta carried, so pit
history collapsed to a single entry and tyre age was pinned near zero for
the entire race. A partial delta was also dropped outright, because the
parser required a Compound field that mid-stint updates do not send.

Observed live at lap 49 of the 70-lap 2026 Hungarian GP: all 22 drivers
reported exactly one stint with age 0 or 3, after most had pitted twice.
With the fix, the same feed at lap 51 yields 3 stints for 15 drivers and
2 for 6, ages spread 1-30 — e.g. car 1 as MEDIUM 17 / HARD 22 / HARD 11.

Stints now merge by index, and Compound, New and TotalLaps each apply only
when the delta actually carries them.

Also stop folding non-numeric keys into index 0 in indexedRawValues. The
feed's "_kf" key-frame marker parsed as 0 and overwrote the first entry;
only the CurrentTyres path guarded against it, leaving the other five
callers exposed.

This feeds the tyre column, the deg model, stint history and the pit
window, all of which were reading near-zero tyre age all race.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-07-26 10:16:38 -04:00
AmanTahiliani
888378e210 fix(live): give the timing tower the fold back
The tyre deg panel expanded by default during races and rendered a
placeholder row per driver until enough clean laps existed to fit a
degradation model. For the first third of a race that was ~525px of
'warming up' rows above the Timing Tower, pushing the tower — the thing
the page exists for — off the fold entirely.

The panel now opens when it has something to say rather than because the
session is a race, and says 'collecting clean laps' while it waits. A
reader who toggles it keeps their choice.

Also:
- Hoist degradationModel into a memo shared by the readiness check and the
  rows. It is O(laps) per driver and previously re-ran on every render at
  feed rate.
- Order the side rail most-synthesized to most-raw, so a reader arriving
  mid-session gets 'what just happened' before the regulatory log.
- Fade the trailing edge of the nav below 560px. It scrolls with a hidden
  scrollbar, so the cut-off item read as a clipping bug rather than as
  scrollable.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-07-26 09:23:17 -04:00
AmanTahiliani
77a6b0f2dd feat(#76): harvest request-scoped availability and freshness truth
Backend-only re-cut of the #76 availability work onto main, stacked on the
canonical Weekend Context API. Adds request-scoped freshness reporting so
aggregate responses cannot report fresh when a component is stale, plus
local-first driver summary resolution and cache/pacing truth.

The frontend half of #76 is deliberately excluded: it is built on the
Weekend shell that failed owner review, including the full-width Partial
banner treatment. Availability presentation is re-cut with the shell in #89.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-07-26 09:14:37 -04:00
AmanTahiliani
d03e480e03 test(#90): regress analysis selection against later unrun race
Reproduces the production shape from the v0.4.0 release blocker: a run
British race and an unrun Belgian race two weekends apart, both carrying
result rows. Analysis must resolve to the race that actually happened.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-07-26 09:11:03 -04:00
AmanTahiliani
0b9c3fff0a fix: make weekend context transitions truthful 2026-07-26 09:08:38 -04:00
AmanTahiliani
adfa934f9d feat: add canonical weekend context API 2026-07-26 09:08:38 -04:00
38 changed files with 3365 additions and 244 deletions

View File

@@ -15,6 +15,7 @@ import type {
Session,
TrackOutline,
Weekend,
WeekendContext,
} from './types'
export async function fetchRaceHub(sessionKey: number): Promise<RaceHub> {
@@ -114,6 +115,14 @@ export async function fetchWeekend(meetingKey: number): Promise<Weekend> {
return res.json()
}
export async function fetchWeekendContext(): Promise<WeekendContext> {
const res = await fetch('/api/v1/weekend-context')
if (!res.ok) {
throw new Error(`API ${res.status}: ${res.statusText}`)
}
return res.json()
}
export async function fetchChampionshipHub(year?: number): Promise<ChampionshipHub> {
const params = new URLSearchParams({ source: 'auto' })
if (year) params.set('year', year.toString())

View File

@@ -47,7 +47,7 @@ export function WeekendSwitcher({ currentMeetingKey, currentSessionKey, onClose
}
return (
<div className="rh-switcher" data-testid="rh-switcher">
<div id="rh-weekend-switcher" className="rh-switcher" data-testid="rh-switcher">
<div className="rh-switcher-head">
<span className="sec-title">Switch Weekend</span>
<div className="rh-switcher-years">

View File

@@ -53,9 +53,8 @@ function StintSparkline({ seconds }: { seconds: number[] }) {
export function TyreDegPanel({ rows, sessionType, pinned }: Props) {
const isRace = isRaceSession(sessionType)
// In practice/qualifying deg trends are secondary — collapse by default so
// the Timing Tower stays above the fold. Races keep it open.
const [collapsed, setCollapsed] = useState(!isRace)
const [collapsed, setCollapsed] = useState(true)
const [readerChose, setReaderChose] = useState(false)
const [stints, setStints] = useState<StintHistoryMap>({})
// One lap-history update per received snapshot (rows is rebuilt per snapshot).
@@ -75,6 +74,30 @@ export function TyreDegPanel({ rows, sessionType, pinned }: Props) {
[rows, pinned],
)
// One linear fit per driver per snapshot, shared by the readiness check and
// the rows below. degradationModel is O(laps) and this runs at feed rate.
const models = useMemo(() => {
const out: Record<string, ReturnType<typeof degradationModel>> = {}
for (const row of visible) {
out[row.RacingNumber] = degradationModel(stints[row.RacingNumber]?.samples ?? [])
}
return out
}, [visible, stints])
// Before any stint has enough clean laps to fit, every row reads "warming
// up" — a full-height panel of placeholders that pushed the Timing Tower off
// the fold for the first third of a race. Stay collapsed until there is
// something to say, then open. A reader who has toggled it keeps their choice.
const hasSignal = useMemo(
() => visible.some((row) => models[row.RacingNumber] != null),
[visible, models],
)
useEffect(() => {
if (readerChose) return
setCollapsed(!(isRace && hasSignal))
}, [isRace, hasSignal, readerChose])
if (visible.length === 0) return null
return (
@@ -82,18 +105,25 @@ export function TyreDegPanel({ rows, sessionType, pinned }: Props) {
<button
type="button"
className="sec-header tyredeg-toggle"
onClick={() => setCollapsed((prev) => !prev)}
onClick={() => {
setReaderChose(true)
setCollapsed((prev) => !prev)
}}
aria-expanded={!collapsed}
>
<span className="sec-title">Tyre Deg &amp; Pit Window</span>
{isRace && <span className="sec-meta">rejoin assumes ~{PIT_LOSS_SECONDS}s pit loss</span>}
{!hasSignal ? (
<span className="sec-meta">collecting clean laps</span>
) : (
isRace && <span className="sec-meta">rejoin assumes ~{PIT_LOSS_SECONDS}s pit loss</span>
)}
<span className="tyredeg-chevron" aria-hidden="true">{collapsed ? '▸' : '▾'}</span>
</button>
{!collapsed && (
<div className="tyredeg-rows">
{visible.map((row) => {
const model = degradationModel(stints[row.RacingNumber]?.samples ?? [])
const model = models[row.RacingNumber]
const rejoin = isRace ? estimatePitRejoin(rows, row.RacingNumber) : null
const ageAnnotation = tyreAgeMeaning(row.Tyre?.Compound, row.Tyre?.Age)
return (

View File

@@ -145,6 +145,15 @@ export function formatSessionScheduleTime(value: string): string {
})
}
export const MAX_BROWSER_TIMEOUT = 2_147_483_647
export function refreshDeadlineDelay(refreshAt: string | undefined, now = Date.now()): number | null {
if (!refreshAt) return null
const deadline = Date.parse(refreshAt)
if (Number.isNaN(deadline)) return null
return Math.min(Math.max(0, deadline - now), MAX_BROWSER_TIMEOUT)
}
export type FocusMeetingKind = 'current' | 'next' | 'recent' | 'fallback'
export function focusMeetingKind(meeting: Meeting, now: Date): FocusMeetingKind {

View File

@@ -289,14 +289,16 @@ export function LiveTimingPage() {
session={snapshot.Session}
/>
</div>
{/* Rail runs most-synthesized to most-raw: a reader arriving
mid-session wants "what did I miss" before the regulatory log. */}
<div className="live-rc-col">
<EventRail events={events} driverInfo={snapshot.DriverInfo} />
<TeamRadioTicker
captures={snapshot.TeamRadio ?? []}
driverInfo={snapshot.DriverInfo}
session={snapshot.Session}
/>
<RaceControlFeed messages={snapshot.RCMessages ?? []} driverInfo={snapshot.DriverInfo} />
<EventRail events={events} driverInfo={snapshot.DriverInfo} />
</div>
</div>
</>

View File

@@ -1,12 +1,7 @@
import { useEffect, useMemo, useState } from 'react'
import { useEffect, useState } from 'react'
import { useQuery } from '@tanstack/react-query'
import { useNavigate } from '@tanstack/react-router'
import {
fetchLocalMeetings,
fetchRaceHub,
fetchSeasons,
fetchWeekend,
} from '../api'
import { fetchRaceHub, fetchWeekend, fetchWeekendContext } from '../api'
import { DatasetStrip } from '../components/DatasetStrip'
import { RaceStoryCanvas } from '../components/RaceStoryCanvas'
import { TabBar, type Tab } from '../components/TabBar'
@@ -22,76 +17,72 @@ import { SourceBadge } from '../components/SourceBadge'
import { countryAccent, countryDecal, formatGpDateRange } from '../lib/gpIdentity'
import { formatCoverageHint, sessionTypeAbbrev } from '../lib/coverage'
import {
MAX_BROWSER_TIMEOUT,
formatCountdown,
formatSessionScheduleTime,
pickFocusMeeting,
refreshDeadlineDelay,
sortSessionsByStart,
} from '../lib/schedule'
import type { Weekend, WeekendSession } from '../types'
import type { ContextSession, Weekend } from '../types'
interface Props {
sessionKey: number
}
function pickAnalysisSession(weekend: Weekend | undefined): WeekendSession | undefined {
if (!weekend) return undefined
const local = weekend.sessions.filter((s) => s.source === 'local')
const partial = weekend.sessions.filter((s) => s.source === 'partial')
const pool = local.length > 0 ? local : partial.length > 0 ? partial : weekend.sessions
const race = pool.find((s) => s.session.session_type?.toLowerCase().includes('race'))
if (race) return race
const qual = pool.find((s) => s.session.session_type?.toLowerCase().includes('qualifying'))
if (qual) return qual
return pool[0]
}
export function RaceHubPage({ sessionKey }: Props) {
const navigate = useNavigate()
const [activeTab, setActiveTab] = useState<Tab>('overview')
const [switcherOpen, setSwitcherOpen] = useState(false)
const [now, setNow] = useState(() => Date.now())
const [refreshGeneration, setRefreshGeneration] = useState(0)
// ─── Auto-redirect when no session_key is supplied ───
const seasonsQuery = useQuery({
queryKey: ['seasons'],
queryFn: fetchSeasons,
// The server owns bare Race Hub selection so every open tab crosses the
// one-hour handoff at the same instant.
const contextQuery = useQuery({
queryKey: ['weekend-context'],
queryFn: fetchWeekendContext,
enabled: sessionKey === 0,
})
const { refetch: refetchContext } = contextQuery
const latestSeason = seasonsQuery.data?.[0] ?? null
const meetingsQuery = useQuery({
queryKey: ['meetings', latestSeason],
queryFn: () => fetchLocalMeetings(latestSeason!),
enabled: sessionKey === 0 && latestSeason != null,
})
const focusMeeting = useMemo(() => {
if (sessionKey !== 0 || !meetingsQuery.data) return null
return pickFocusMeeting(meetingsQuery.data, new Date())
}, [sessionKey, meetingsQuery.data])
const fallbackWeekendQuery = useQuery({
queryKey: ['weekend', focusMeeting?.meeting_key],
queryFn: () => fetchWeekend(focusMeeting!.meeting_key),
enabled: sessionKey === 0 && focusMeeting != null,
const context = contextQuery.data
const preSession = sessionKey === 0 && context?.race_hub_pre_session === true
const preSessionRef = context?.race_hub_default_session
const preSessionMeetingKey = preSessionRef?.meeting?.meeting_key
const preSessionWeekendQuery = useQuery({
queryKey: ['weekend', preSessionMeetingKey],
queryFn: () => fetchWeekend(preSessionMeetingKey!),
enabled: preSession && preSessionMeetingKey != null && preSessionMeetingKey > 0,
})
useEffect(() => {
if (sessionKey !== 0) return
const weekend = fallbackWeekendQuery.data
if (!weekend) return
const target = pickAnalysisSession(weekend)?.session.session_key
?? weekend.default_session_key
?? weekend.sessions[0]?.session.session_key
if (target) {
navigate({ to: '/race-hub', search: { session_key: target }, replace: true })
}
}, [sessionKey, fallbackWeekendQuery.data, navigate])
const delay = refreshDeadlineDelay(context?.race_hub_refresh_at)
if (delay == null) return
const rearmAfterRefetch = delay === MAX_BROWSER_TIMEOUT
const timer = window.setTimeout(() => {
void refetchContext().finally(() => {
if (rearmAfterRefetch) setRefreshGeneration((generation) => generation + 1)
})
}, delay)
return () => window.clearTimeout(timer)
}, [sessionKey, context?.race_hub_refresh_at, refetchContext, refreshGeneration])
useEffect(() => {
if (!preSession) return
const timer = window.setInterval(() => setNow(Date.now()), 1_000)
return () => window.clearInterval(timer)
}, [preSession])
// A bare route retains canonical context ownership while rendering its
// completed analysis selection. Explicit URLs remain user-owned.
const selectedSessionKey = sessionKey || context?.race_hub_default_session?.session.session_key || 0
// ─── Active session payload ───
const raceHubQuery = useQuery({
queryKey: ['race-hub', sessionKey],
queryFn: () => fetchRaceHub(sessionKey),
enabled: sessionKey > 0,
queryKey: ['race-hub', selectedSessionKey],
queryFn: () => fetchRaceHub(selectedSessionKey),
enabled: selectedSessionKey > 0 && (sessionKey > 0 || !preSession),
staleTime: 30_000,
})
@@ -108,25 +99,36 @@ export function RaceHubPage({ sessionKey }: Props) {
const accent = countryAccent(data?.meeting ?? null)
const accentStyle = { '--gp-accent': accent } as React.CSSProperties
// ─── No session_key: show resolving state, fall back to switcher if no local data ───
// ─── No session_key: resolve exclusively through canonical Weekend Context ───
if (sessionKey === 0) {
if (seasonsQuery.isLoading || meetingsQuery.isLoading || fallbackWeekendQuery.isLoading) {
if (contextQuery.isLoading || (preSession && preSessionWeekendQuery.isLoading)) {
return (
<div className="rh-page" style={accentStyle}>
<div className="loading-state">resolving latest local weekend</div>
</div>
)
}
const seasons = seasonsQuery.data ?? []
if (seasons.length === 0) {
if (preSession && preSessionRef) {
return (
<RaceHubPreSession
session={preSessionRef}
weekend={preSessionWeekendQuery.data}
now={now}
switcherOpen={switcherOpen}
onToggleSwitcher={() => setSwitcherOpen((open) => !open)}
onCloseSwitcher={() => setSwitcherOpen(false)}
/>
)
}
if (!selectedSessionKey) {
return (
<div className="rh-page rh-empty" data-testid="race-hub-empty" style={accentStyle}>
<div className="rh-empty-band">
<span className="rh-empty-eyebrow mono">box-box · race hub</span>
<h1 className="rh-empty-title">No local sessions yet</h1>
<h1 className="rh-empty-title">No completed local analysis yet</h1>
<p className="rh-empty-sub">
The Race Hub reads from local ingest only. Once a weekend is ingested
it will open here automatically.
Race Hub opens completed local analysis between weekends. Check Data Health
to ingest a completed session.
</p>
<div className="rh-empty-actions">
<a href="/admin" className="rh-empty-action">Open Admin · Data Health</a>
@@ -136,18 +138,13 @@ export function RaceHubPage({ sessionKey }: Props) {
</div>
)
}
return (
<div className="rh-page" style={accentStyle}>
<div className="loading-state">resolving latest local weekend</div>
</div>
)
}
// ─── Loading / error for the requested session_key ───
// ─── Loading / error for the selected session ───
if (raceHubQuery.isLoading) {
return (
<div className="rh-page" style={accentStyle}>
<div className="loading-state">loading session {sessionKey}</div>
<div className="loading-state">loading session {selectedSessionKey}</div>
</div>
)
}
@@ -157,7 +154,7 @@ export function RaceHubPage({ sessionKey }: Props) {
<div className="error-box">
{raceHubQuery.error instanceof Error
? raceHubQuery.error.message
: `Failed to load session ${sessionKey}.`}
: `Failed to load session ${selectedSessionKey}.`}
</div>
</div>
)
@@ -168,7 +165,7 @@ export function RaceHubPage({ sessionKey }: Props) {
const sessionMeta = weekend
? Object.fromEntries(weekend.sessions.map((w) => [w.session.session_key, w]))
: {}
const activeSessionMeta = sessionMeta[sessionKey]
const activeSessionMeta = sessionMeta[selectedSessionKey]
return (
<div className="rh-page" data-testid="race-hub" style={accentStyle}>
@@ -194,7 +191,7 @@ export function RaceHubPage({ sessionKey }: Props) {
{switcherOpen && (
<WeekendSwitcher
currentMeetingKey={meetingKey}
currentSessionKey={sessionKey}
currentSessionKey={selectedSessionKey}
onClose={() => setSwitcherOpen(false)}
/>
)}
@@ -225,7 +222,7 @@ export function RaceHubPage({ sessionKey }: Props) {
<nav className="rh-session-rail" aria-label="Weekend sessions" data-testid="rh-session-rail">
{sessions.map((session) => {
const meta = sessionMeta[session.session_key]
const active = session.session_key === sessionKey
const active = session.session_key === selectedSessionKey
return (
<button
key={session.session_key}
@@ -278,7 +275,7 @@ export function RaceHubPage({ sessionKey }: Props) {
{formatCoverageHint(activeSessionMeta.datasets)} datasets local
</span>
)}
<span className="rh-active-key mono">key {sessionKey}</span>
<span className="rh-active-key mono">key {selectedSessionKey}</span>
</div>
)}
@@ -314,7 +311,7 @@ export function RaceHubPage({ sessionKey }: Props) {
<span className="sec-title">Driver Compare</span>
</div>
<CompareView
sessionKey={sessionKey}
sessionKey={selectedSessionKey}
results={data.results}
drivers={data.drivers}
/>
@@ -368,3 +365,72 @@ export function RaceHubPage({ sessionKey }: Props) {
</div>
)
}
function RaceHubPreSession({
session,
weekend,
now,
switcherOpen,
onToggleSwitcher,
onCloseSwitcher,
}: {
session: ContextSession
weekend?: Weekend
now: number
switcherOpen: boolean
onToggleSwitcher: () => void
onCloseSwitcher: () => void
}) {
const meeting = session.meeting
const sessions = sortSessionsByStart((weekend?.sessions ?? []).map((entry) => entry.session))
const target = new Date(session.session.date_start)
const accent = countryAccent(meeting ?? null)
const pendingLiveEvidence = target.getTime() <= now
return (
<div className="rh-page rh-empty" data-testid="race-hub-pre-session" style={{ '--gp-accent': accent } as React.CSSProperties}>
<div className="rh-topbar">
<span className="rh-topbar-label mono">box-box · race hub</span>
<span className="rh-topbar-spacer" />
<button
type="button"
className={`rh-switcher-toggle${switcherOpen ? ' active' : ''}`}
onClick={onToggleSwitcher}
aria-expanded={switcherOpen}
aria-controls="rh-weekend-switcher"
data-testid="rh-switch-weekend"
>
{switcherOpen ? 'Close' : 'Switch Weekend'}
</button>
</div>
{switcherOpen && (
<WeekendSwitcher
currentMeetingKey={meeting?.meeting_key}
currentSessionKey={session.session.session_key}
onClose={onCloseSwitcher}
/>
)}
<section className="rh-empty-band">
<span className="rh-empty-eyebrow mono">box-box · race hub</span>
<h1 className="rh-empty-title">{meeting?.meeting_name ?? 'Next race weekend'}</h1>
<p className="rh-empty-sub">
{pendingLiveEvidence
? `${session.session.session_name} is scheduled; awaiting live timing.`
: <>{session.session.session_name} begins in <span className="mono">{formatCountdown(target, new Date(now))}</span></>}
</p>
{sessions.length > 0 && (
<div className="preview-schedule" data-testid="rh-pre-session-schedule">
{sessions.map((scheduled) => (
<div key={scheduled.session_key} className="preview-schedule-item">
<span className="preview-schedule-name">{scheduled.session_name}</span>
<span className="preview-schedule-time">{formatSessionScheduleTime(scheduled.date_start)}</span>
</div>
))}
</div>
)}
</section>
</div>
)
}

View File

@@ -89,6 +89,16 @@ a { color: inherit; text-decoration: none; }
}
.app-nav::-webkit-scrollbar { display: none; }
/* The nav scrolls horizontally with its scrollbar hidden. Below the width
where the links stop fitting, fade the trailing edge so the cut-off item
reads as "scroll for more" instead of as a clipping bug. */
@media (max-width: 560px) {
.app-nav {
-webkit-mask-image: linear-gradient(to right, #000 calc(100% - 32px), transparent 100%);
mask-image: linear-gradient(to right, #000 calc(100% - 32px), transparent 100%);
}
}
.nav-logo {
font-family: var(--f-mono);
font-size: 15px;

View File

@@ -1,5 +1,5 @@
import { describe, it, expect, vi, beforeEach } from 'vitest'
import { render, screen, waitFor, fireEvent } from '@testing-library/react'
import { describe, it, expect, vi, beforeEach, afterEach } from 'vitest'
import { act, render, screen, waitFor, fireEvent } from '@testing-library/react'
import { QueryClient, QueryClientProvider } from '@tanstack/react-query'
import {
Outlet,
@@ -9,21 +9,24 @@ import {
createRoute,
} from '@tanstack/react-router'
import { RaceHubPage } from '../pages/RaceHubPage'
import type { DatasetInfo, Meeting, RaceHub, Session, Weekend } from '../types'
import { MAX_BROWSER_TIMEOUT } from '../lib/schedule'
import type { ContextAvailability, DatasetInfo, Meeting, RaceHub, Session, Weekend, WeekendContext } from '../types'
vi.mock('../api', () => ({
fetchRaceHub: vi.fn(),
fetchSeasons: vi.fn(),
fetchLocalMeetings: vi.fn(),
fetchWeekend: vi.fn(),
fetchWeekendContext: vi.fn(),
}))
import { fetchRaceHub, fetchSeasons, fetchLocalMeetings, fetchWeekend } from '../api'
import { fetchLocalMeetings, fetchRaceHub, fetchSeasons, fetchWeekend, fetchWeekendContext } from '../api'
const mockFetchRaceHub = vi.mocked(fetchRaceHub)
const mockFetchSeasons = vi.mocked(fetchSeasons)
const mockFetchLocalMeetings = vi.mocked(fetchLocalMeetings)
const mockFetchWeekend = vi.mocked(fetchWeekend)
const mockFetchWeekendContext = vi.mocked(fetchWeekendContext)
const meeting: Meeting = {
meeting_key: 1229,
@@ -169,6 +172,26 @@ const weekend: Weekend = {
],
}
const availability: ContextAvailability = {
source: 'local',
schedule: 'available',
live_transport: 'unknown',
live_session: 'inactive',
archive: 'unavailable',
local_analysis: 'complete',
freshness: 'local',
limitations: [],
}
const analysisContext: WeekendContext = {
temporal_state: 'between_weekends',
default_analysis_session: { session: raceSession, meeting, availability },
race_hub_default_session: { session: raceSession, meeting, availability },
race_hub_pre_session: false,
championship_round: 1,
total_championship_rounds: 24,
}
function renderRaceHub(sessionKey: number) {
const queryClient = new QueryClient({
defaultOptions: { queries: { retry: false } },
@@ -193,23 +216,28 @@ function renderRaceHub(sessionKey: number) {
return <RaceHubPage sessionKey={session_key ?? 0} />
},
})
window.history.pushState({}, '', sessionKey ? `/race-hub?session_key=${sessionKey}` : '/race-hub')
const router = createRouter({
routeTree: rootRoute.addChildren([raceHubRoute]),
history: undefined,
})
// Navigate to the URL before mounting
router.navigate({ to: '/race-hub', search: sessionKey ? { session_key: sessionKey } : {} })
return render(<RouterProvider router={router} />)
return { queryClient, ...render(<RouterProvider router={router} />) }
}
describe('RaceHubPage', () => {
beforeEach(() => {
vi.useRealTimers()
vi.clearAllMocks()
mockFetchSeasons.mockResolvedValue([2025])
mockFetchLocalMeetings.mockResolvedValue([meeting])
mockFetchWeekend.mockResolvedValue(weekend)
mockFetchRaceHub.mockResolvedValue(raceHub)
mockFetchWeekendContext.mockResolvedValue(analysisContext)
})
afterEach(() => {
vi.useRealTimers()
})
it('renders the workspace identity band, session rail, and overview for a known session', async () => {
@@ -256,4 +284,122 @@ describe('RaceHubPage', () => {
fireEvent.click(screen.getByTestId('rh-switch-weekend'))
expect(await screen.findByTestId('rh-switcher')).toBeInTheDocument()
})
it('uses the server-selected completed analysis session for bare Race Hub without changing the URL', async () => {
renderRaceHub(0)
await waitFor(() => expect(mockFetchRaceHub).toHaveBeenCalledWith(9472))
expect(mockFetchWeekendContext).toHaveBeenCalledTimes(1)
})
it('renders the intentional pre-session state without analysis cards', async () => {
mockFetchWeekendContext.mockResolvedValue({
...analysisContext,
race_hub_default_session: {
session: { ...raceSession, session_key: 9473, session_name: 'Practice 1', session_type: 'Practice', date_start: '2099-05-23T13:00:00Z' },
meeting,
availability,
},
race_hub_pre_session: true,
race_hub_refresh_at: '2099-05-23T13:00:00Z',
})
renderRaceHub(0)
expect(await screen.findByTestId('race-hub-pre-session')).toBeInTheDocument()
expect(screen.getByTestId('rh-pre-session-schedule')).toBeInTheDocument()
expect(screen.queryByText('Winner')).not.toBeInTheDocument()
expect(mockFetchRaceHub).not.toHaveBeenCalled()
})
it('opens the weekend switcher from pre-session and navigates to the selected explicit session', async () => {
mockFetchWeekendContext.mockResolvedValue({
...analysisContext,
race_hub_default_session: {
session: { ...raceSession, session_key: 9473, session_name: 'Practice 1', session_type: 'Practice', date_start: '2099-05-23T13:00:00Z' },
meeting,
availability,
},
race_hub_pre_session: true,
race_hub_refresh_at: '2099-05-23T13:00:00Z',
})
renderRaceHub(0)
const switchWeekend = await screen.findByTestId('rh-switch-weekend')
expect(switchWeekend).toHaveAttribute('aria-expanded', 'false')
fireEvent.click(switchWeekend)
expect(await screen.findByTestId('rh-switcher')).toBeInTheDocument()
expect(switchWeekend).toHaveAttribute('aria-expanded', 'true')
fireEvent.click(await screen.findByTestId('rh-switcher-session-9471'))
await waitFor(() => expect(window.location.search).toBe('?session_key=9471'))
})
it('shows recovery instead of selecting an empty future session', async () => {
mockFetchWeekendContext.mockResolvedValue({
...analysisContext,
race_hub_default_session: undefined,
race_hub_pre_session: false,
})
renderRaceHub(0)
expect(await screen.findByTestId('race-hub-empty')).toHaveTextContent('No completed local analysis yet')
expect(mockFetchRaceHub).not.toHaveBeenCalled()
})
it('hands a bare route from completed analysis to pre-session at the supplied refresh boundary', async () => {
vi.useFakeTimers({ shouldAdvanceTime: true })
const handoff = new Date(Date.now() + 10_000).toISOString()
const pendingContext: WeekendContext = {
...analysisContext,
race_hub_default_session: {
session: { ...raceSession, session_key: 9473, session_name: 'Practice 1', session_type: 'Practice', date_start: handoff },
meeting,
availability,
},
race_hub_pre_session: true,
race_hub_refresh_at: new Date(Date.now() + 16_000).toISOString(),
}
mockFetchWeekendContext
.mockResolvedValueOnce({ ...analysisContext, race_hub_refresh_at: handoff })
.mockResolvedValueOnce(pendingContext)
renderRaceHub(0)
await screen.findByTestId('race-hub')
await act(async () => { await vi.advanceTimersByTimeAsync(10_000) })
expect(await screen.findByTestId('race-hub-pre-session')).toBeInTheDocument()
expect(mockFetchWeekendContext).toHaveBeenCalledTimes(2)
expect(mockFetchRaceHub).toHaveBeenCalledWith(9472)
expect(mockFetchRaceHub).not.toHaveBeenCalledWith(9473)
})
it('re-arms a bare route refresh after a capped browser timer', async () => {
vi.useFakeTimers({ shouldAdvanceTime: true })
mockFetchWeekendContext.mockResolvedValue({
...analysisContext,
race_hub_refresh_at: new Date(Date.now() + MAX_BROWSER_TIMEOUT + 1_000).toISOString(),
})
renderRaceHub(0)
await screen.findByTestId('race-hub')
await act(async () => { await vi.advanceTimersByTimeAsync(MAX_BROWSER_TIMEOUT) })
await waitFor(() => expect(mockFetchWeekendContext).toHaveBeenCalledTimes(2))
await act(async () => { await vi.advanceTimersByTimeAsync(1_000) })
await waitFor(() => expect(mockFetchWeekendContext).toHaveBeenCalledTimes(3))
})
it('keeps an explicit session URL stable across the canonical refresh boundary', async () => {
vi.useFakeTimers()
renderRaceHub(9472)
await act(async () => { await vi.advanceTimersByTimeAsync(60_000) })
expect(mockFetchWeekendContext).not.toHaveBeenCalled()
expect(mockFetchRaceHub).toHaveBeenCalledWith(9472)
expect(mockFetchRaceHub).not.toHaveBeenCalledWith(9473)
})
})

View File

@@ -47,9 +47,20 @@ function snapshotRows(lap: number, lastLapTime: string): LiveTimingRow[] {
}
describe('TyreDegPanel', () => {
it('shows a warming-up placeholder until enough clean laps accumulate', () => {
it('stays collapsed while every stint is still warming up', () => {
render(<TyreDegPanel rows={snapshotRows(3, '1:30.000')} sessionType="Race" pinned={[]} />)
const panel = screen.getByTestId('tyredeg-panel')
// A panel of "warming up" placeholders carries no information and used to
// push the Timing Tower off the fold for the first third of a race.
expect(screen.queryAllByTestId('tyredeg-row')).toHaveLength(0)
expect(panel).toHaveTextContent('collecting clean laps')
})
it('shows a warming-up placeholder on each row once expanded', () => {
render(<TyreDegPanel rows={snapshotRows(3, '1:30.000')} sessionType="Race" pinned={[]} />)
fireEvent.click(screen.getByRole('button', { name: /tyre deg/i }))
const panel = screen.getByTestId('tyredeg-panel')
expect(panel).toHaveTextContent('VER')
expect(panel).toHaveTextContent('M +5')
expect(panel).toHaveTextContent('fresh')
@@ -61,6 +72,7 @@ describe('TyreDegPanel', () => {
makeRow('1', 1, 'VER', { NumberOfLaps: 10, LastLapTime: '1:30.000' }, { Compound: 'MEDIUM', Age: 12 }),
]
render(<TyreDegPanel rows={rows} sessionType="Race" pinned={[]} />)
fireEvent.click(screen.getByRole('button', { name: /tyre deg/i }))
expect(screen.getByText('mid-life')).toBeInTheDocument()
})
@@ -92,16 +104,44 @@ describe('TyreDegPanel', () => {
expect(panel).not.toHaveTextContent('~P')
})
it('starts expanded during a race', () => {
render(<TyreDegPanel rows={snapshotRows(3, '1:30.000')} sessionType="Race" pinned={[]} />)
it('opens itself during a race as soon as a stint has signal', () => {
const { rerender } = render(
<TyreDegPanel rows={snapshotRows(1, '1:30.000')} sessionType="Race" pinned={[]} />,
)
expect(screen.queryAllByTestId('tyredeg-row')).toHaveLength(0)
for (let lap = 2; lap <= 6; lap++) {
const time = `1:30.${String((lap - 1) * 100).padStart(3, '0')}`
rerender(<TyreDegPanel rows={snapshotRows(lap, time)} sessionType="Race" pinned={[]} />)
}
expect(screen.getAllByTestId('tyredeg-row')).toHaveLength(2)
})
it('keeps the reader\'s own collapse choice when signal arrives', () => {
const { rerender } = render(
<TyreDegPanel rows={snapshotRows(1, '1:30.000')} sessionType="Race" pinned={[]} />,
)
// Reader opens it early, then closes it again — that decision must stick
// even once the panel would otherwise auto-open.
const toggle = screen.getByRole('button', { name: /tyre deg/i })
fireEvent.click(toggle)
fireEvent.click(toggle)
for (let lap = 2; lap <= 6; lap++) {
const time = `1:30.${String((lap - 1) * 100).padStart(3, '0')}`
rerender(<TyreDegPanel rows={snapshotRows(lap, time)} sessionType="Race" pinned={[]} />)
}
expect(screen.queryAllByTestId('tyredeg-row')).toHaveLength(0)
})
it('limits rows to the top ten plus pinned drivers', () => {
const rows = Array.from({ length: 15 }, (_, index) =>
makeRow(String(index + 1), index + 1, `D${index + 1}`),
)
render(<TyreDegPanel rows={rows} sessionType="Race" pinned={['14']} />)
fireEvent.click(screen.getByRole('button', { name: /tyre deg/i }))
expect(screen.getAllByTestId('tyredeg-row')).toHaveLength(11)
expect(screen.getByText('D14')).toBeInTheDocument()
expect(screen.queryByText('D12')).not.toBeInTheDocument()

View File

@@ -5,8 +5,10 @@ import {
focusMeetingKind,
focusMeetingLabel,
formatCountdown,
MAX_BROWSER_TIMEOUT,
nextUpcomingMeeting,
pickFocusMeeting,
refreshDeadlineDelay,
} from '../lib/schedule'
import type { Meeting, Session } from '../types'
@@ -78,4 +80,15 @@ describe('schedule helpers', () => {
const target = new Date('2025-05-25T13:00:00+00:00')
expect(formatCountdown(target, now)).toBe('0d 01h 00m 00s')
})
it('uses the server refresh deadline without local timezone conversion', () => {
expect(refreshDeadlineDelay('2025-05-25T13:00:00Z', Date.parse('2025-05-25T12:59:30Z'))).toBe(30_000)
expect(refreshDeadlineDelay(undefined)).toBeNull()
})
it('caps a refresh deadline beyond the browser timer maximum', () => {
const now = Date.parse('2025-05-25T12:00:00Z')
const deadline = new Date(now + MAX_BROWSER_TIMEOUT + 1_000).toISOString()
expect(refreshDeadlineDelay(deadline, now)).toBe(MAX_BROWSER_TIMEOUT)
})
})

View File

@@ -217,6 +217,41 @@ export interface Weekend {
default_session_key?: number
}
export interface ContextAvailability {
source: string
schedule: string
live_transport: string
live_session: string
archive: string
local_analysis: string
freshness: string
observed_at?: string
limitations: string[]
}
export interface ContextSession {
session: Session
meeting?: Meeting
availability: ContextAvailability
}
export interface WeekendContext {
season?: number
temporal_state: string
previous_meeting?: Meeting
focus_meeting?: Meeting
next_meeting?: Meeting
previous_completed_session?: ContextSession
active_session?: ContextSession
next_session?: ContextSession
default_analysis_session?: ContextSession
race_hub_default_session?: ContextSession
race_hub_pre_session: boolean
race_hub_refresh_at?: string
championship_round: number
total_championship_rounds: number
}
export interface LiveStateResponse {
is_live: boolean
data: LiveStreamData | null

View File

@@ -164,8 +164,8 @@ func (c *Cache) Get(key string) ([]byte, bool) {
if ttl > 0 {
age := time.Since(time.Unix(createdAt, 0))
if age > ttl {
// Expired — delete and return miss.
_, _ = c.db.Exec(`DELETE FROM cache WHERE key = ?`, key)
// Expired entries remain stored so get() can use them as a stale
// fallback if the live request fails. Prune() owns physical cleanup.
atomic.AddInt64(&c.stats.Misses, 1)
return nil, false
}

View File

@@ -1,6 +1,7 @@
package api
import (
"context"
"net/http"
"sync"
"sync/atomic"
@@ -26,8 +27,12 @@ type requestPacer struct {
// wait blocks until this caller's reserved slot arrives.
func (p *requestPacer) wait() {
_ = p.waitContext(context.Background())
}
func (p *requestPacer) waitContext(ctx context.Context) error {
if p == nil || p.interval <= 0 {
return
return nil
}
p.mu.Lock()
now := time.Now()
@@ -38,9 +43,19 @@ func (p *requestPacer) wait() {
p.next = p.next.Add(p.interval)
p.mu.Unlock()
if sleep > 0 {
time.Sleep(sleep)
timer := time.NewTimer(sleep)
defer timer.Stop()
select {
case <-timer.C:
case <-ctx.Done():
// Keep the unused reservation in the schedule. Blindly reclaiming an
// interval can collide with later callers that already reserved their
// wake times, releasing two requests simultaneously.
return ctx.Err()
}
}
return nil
}
type OpenF1Client struct {
url string
@@ -56,6 +71,26 @@ type OpenF1Client struct {
staleFlag int32
}
// Scoped returns a lightweight request-scoped view of the client. Network,
// pacing and cache resources are shared, while the stale fallback indicator is
// deliberately not shared. Web handlers use this view so a stale fallback in
// one concurrent HTTP request can never mark an unrelated response as stale.
//
// The legacy client-wide stale flag remains available for the TUI, whose loads
// are intentionally aggregated into one navigation-level notice.
func (c *OpenF1Client) Scoped() *OpenF1Client {
if c == nil {
return nil
}
return &OpenF1Client{
url: c.url,
apiKey: c.apiKey,
httpClient: c.httpClient,
cache: c.cache,
pacer: c.pacer,
}
}
func NewOpenF1Client(url string, timeout time.Duration) *OpenF1Client {
return &OpenF1Client{
url: url,

View File

@@ -0,0 +1,123 @@
package api
import (
"fmt"
"net/http"
"net/http/httptest"
"sync/atomic"
"testing"
"time"
)
func expireCacheEntry(t *testing.T, c *OpenF1Client, key string) {
t.Helper()
if _, err := c.cache.db.Exec(`UPDATE cache SET created_at = ? WHERE key = ?`, time.Now().Add(-48*time.Hour).Unix(), key); err != nil {
t.Fatal(err)
}
}
func TestScopedClientReportsStaleFallbackWithoutMutatingParent(t *testing.T) {
year := time.Now().Year()
var fail atomic.Bool
upstream := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
if fail.Load() {
http.Error(w, "unavailable", http.StatusServiceUnavailable)
return
}
w.Header().Set("Content-Type", "application/json")
_, _ = fmt.Fprintf(w, `[{
"meeting_key": 1,
"meeting_name": "British Grand Prix",
"year": %d
}]`, year)
}))
defer upstream.Close()
client := NewOpenF1Client(upstream.URL, time.Second)
defer client.Close()
client.pacer.interval = 0
key := fmt.Sprintf("%s/v1/meetings?year=%d", upstream.URL, year)
_, _ = client.cache.db.Exec(`DELETE FROM cache WHERE key = ?`, key)
defer func() { _, _ = client.cache.db.Exec(`DELETE FROM cache WHERE key = ?`, key) }()
if _, err := client.GetMeetingsForYear(year); err != nil {
t.Fatalf("prime cache: %v", err)
}
expireCacheEntry(t, client, key)
fail.Store(true)
scoped := client.Scoped()
meetings, err := scoped.GetMeetingsForYear(year)
if err != nil || len(meetings) != 1 {
t.Fatalf("stale fallback = (%+v, %v)", meetings, err)
}
if !scoped.LastResponseWasStale() {
t.Fatal("scoped request did not report its stale fallback")
}
if client.LastResponseWasStale() {
t.Fatal("request-scoped fallback leaked into the parent client")
}
}
func TestScopedClientsDoNotLeakFreshnessAcrossConcurrentRequests(t *testing.T) {
year := time.Now().Year()
staleStarted := make(chan struct{})
releaseStale := make(chan struct{})
var failMeetings atomic.Bool
upstream := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
switch r.URL.Path {
case "/v1/meetings":
if failMeetings.Load() {
close(staleStarted)
<-releaseStale
http.Error(w, "unavailable", http.StatusServiceUnavailable)
return
}
_, _ = fmt.Fprintf(w, `[{"meeting_key":1,"meeting_name":"British Grand Prix","year":%d}]`, year)
case "/v1/sessions":
_, _ = w.Write([]byte(`[{"session_key":11,"meeting_key":2,"session_name":"Race"}]`))
default:
http.NotFound(w, r)
}
}))
defer upstream.Close()
client := NewOpenF1Client(upstream.URL, 2*time.Second)
defer client.Close()
client.pacer.interval = 0
meetingKey := fmt.Sprintf("%s/v1/meetings?year=%d", upstream.URL, year)
sessionKey := upstream.URL + "/v1/sessions?meeting_key=2"
_, _ = client.cache.db.Exec(`DELETE FROM cache WHERE key IN (?, ?)`, meetingKey, sessionKey)
defer func() { _, _ = client.cache.db.Exec(`DELETE FROM cache WHERE key IN (?, ?)`, meetingKey, sessionKey) }()
if _, err := client.GetMeetingsForYear(year); err != nil {
t.Fatal(err)
}
expireCacheEntry(t, client, meetingKey)
failMeetings.Store(true)
staleClient := client.Scoped()
staleDone := make(chan error, 1)
go func() {
_, err := staleClient.GetMeetingsForYear(year)
staleDone <- err
}()
<-staleStarted
freshClient := client.Scoped()
if _, err := freshClient.GetSessionsForMeeting(2); err != nil {
t.Fatalf("fresh concurrent request: %v", err)
}
if freshClient.LastResponseWasStale() {
t.Fatal("fresh request inherited concurrent request's stale state")
}
close(releaseStale)
if err := <-staleDone; err != nil {
t.Fatalf("stale request: %v", err)
}
if !staleClient.LastResponseWasStale() {
t.Fatal("stale request lost its own freshness state")
}
if freshClient.LastResponseWasStale() || client.LastResponseWasStale() {
t.Fatal("stale state leaked after concurrent requests completed")
}
}

View File

@@ -2,6 +2,7 @@ package api
import (
"bytes"
"context"
"encoding/json"
"errors"
"fmt"
@@ -59,8 +60,14 @@ func retryAfter429(resp *http.Response) time.Duration {
// Without this, concurrent fan-outs (championship hub, track prefetch) burst
// past the free-tier limit and callers silently treat 429s as missing data.
func (c *OpenF1Client) doPaced(req *http.Request) (*http.Response, error) {
return c.doPacedContext(req.Context(), req)
}
func (c *OpenF1Client) doPacedContext(ctx context.Context, req *http.Request) (*http.Response, error) {
for attempt := 0; ; attempt++ {
c.pacer.wait()
if err := c.pacer.waitContext(ctx); err != nil {
return nil, err
}
resp, err := c.httpClient.Do(req)
if err != nil {
return nil, err
@@ -70,7 +77,14 @@ func (c *OpenF1Client) doPaced(req *http.Request) (*http.Response, error) {
}
delay := retryAfter429(resp)
resp.Body.Close()
time.Sleep(delay)
timer := time.NewTimer(delay)
select {
case <-timer.C:
case <-ctx.Done():
timer.Stop()
return nil, ctx.Err()
}
timer.Stop()
}
}
@@ -83,13 +97,23 @@ func (c *OpenF1Client) doPaced(req *http.Request) (*http.Response, error) {
// entry for this URL, that stale entry is returned instead of propagating the
// error. The client's staleFlag is set so the UI can show a disclaimer.
func (c *OpenF1Client) get(url string) (io.ReadCloser, error) {
return c.getContext(context.Background(), url)
}
// getContext is the cancellable form used by bounded optional web enrichment.
// A caller cancellation never falls back to stale data: the work is no longer
// relevant to that response and must stop instead of continuing in background.
func (c *OpenF1Client) getContext(ctx context.Context, url string) (io.ReadCloser, error) {
if err := ctx.Err(); err != nil {
return nil, err
}
// 1. Check the cache for a fresh (non-expired) entry.
if cachedData, ok := c.cache.Get(url); ok {
return io.NopCloser(bytes.NewReader(cachedData)), nil
}
// 2. Attempt a live network request.
req, err := http.NewRequest("GET", url, nil)
req, err := http.NewRequestWithContext(ctx, "GET", url, nil)
if err != nil {
// Even a request-construction failure warrants a stale fallback.
return c.tryStale(url, err)
@@ -98,8 +122,11 @@ func (c *OpenF1Client) get(url string) (io.ReadCloser, error) {
req.Header.Set("Authorization", "Bearer "+c.apiKey)
}
resp, err := c.doPaced(req)
resp, err := c.doPacedContext(ctx, req)
if err != nil {
if ctx.Err() != nil {
return nil, ctx.Err()
}
return c.tryStale(url, err)
}
defer resp.Body.Close()
@@ -128,6 +155,9 @@ func (c *OpenF1Client) get(url string) (io.ReadCloser, error) {
// 3. Success — read the body, store in cache, return.
data, err := io.ReadAll(resp.Body)
if err != nil {
if ctx.Err() != nil {
return nil, ctx.Err()
}
return c.tryStale(url, err)
}
@@ -245,7 +275,13 @@ func (c *OpenF1Client) GetDriversForSession(sessionKey int) ([]models.Driver, er
}
func (c *OpenF1Client) GetDriver(sessionKey, driverNumber int) (*models.Driver, error) {
body, err := c.get(fmt.Sprintf("%s/v1/drivers?session_key=%d&driver_number=%d", c.url, sessionKey, driverNumber))
return c.GetDriverContext(context.Background(), sessionKey, driverNumber)
}
// GetDriverContext is a cancellable single-driver lookup for optional bounded
// enrichment. Other public methods retain their existing background semantics.
func (c *OpenF1Client) GetDriverContext(ctx context.Context, sessionKey, driverNumber int) (*models.Driver, error) {
body, err := c.getContext(ctx, fmt.Sprintf("%s/v1/drivers?session_key=%d&driver_number=%d", c.url, sessionKey, driverNumber))
if err != nil {
return nil, err
}

View File

@@ -1,7 +1,9 @@
package api
import (
"context"
"encoding/json"
"errors"
"io"
"net/http"
"net/http/httptest"
@@ -49,6 +51,70 @@ func TestRequestPacerNilSafe(t *testing.T) {
p.wait() // must not panic
}
func TestRequestPacerCancellationDoesNotCollideReservedWaiters(t *testing.T) {
const interval = 80 * time.Millisecond
p := &requestPacer{interval: interval}
if err := p.waitContext(context.Background()); err != nil {
t.Fatal(err)
}
p.mu.Lock()
initialNext := p.next
p.mu.Unlock()
waitForReservation := func(want time.Time) {
t.Helper()
deadline := time.Now().Add(250 * time.Millisecond)
for time.Now().Before(deadline) {
p.mu.Lock()
got := p.next
p.mu.Unlock()
if got.Equal(want) {
return
}
time.Sleep(time.Millisecond)
}
t.Fatalf("reservation did not reach %v", want)
}
ctxB, cancelB := context.WithCancel(context.Background())
bDone := make(chan error, 1)
go func() { bDone <- p.waitContext(ctxB) }()
waitForReservation(initialNext.Add(interval))
cDone := make(chan time.Time, 1)
go func() {
_ = p.waitContext(context.Background())
cDone <- time.Now()
}()
waitForReservation(initialNext.Add(2 * interval))
cancelStarted := time.Now()
cancelB()
select {
case err := <-bDone:
if !errors.Is(err, context.Canceled) {
t.Fatalf("B error = %v, want context.Canceled", err)
}
if elapsed := time.Since(cancelStarted); elapsed > 30*time.Millisecond {
t.Fatalf("B cancellation took %v", elapsed)
}
case <-time.After(50 * time.Millisecond):
t.Fatal("B did not return promptly after cancellation")
}
dDone := make(chan time.Time, 1)
go func() {
_ = p.waitContext(context.Background())
dDone <- time.Now()
}()
waitForReservation(initialNext.Add(3 * interval))
cAt, dAt := <-cDone, <-dDone
if separation := dAt.Sub(cAt); separation < interval/2 {
t.Fatalf("C and D collided: wake separation %v, want at least %v", separation, interval/2)
}
}
func TestGetRetriesOn429(t *testing.T) {
var calls atomic.Int32
srv := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {

View File

@@ -472,6 +472,62 @@ func TestProcessTopicTimingAppData(t *testing.T) {
}
}
// The feed sends stints as sparse deltas keyed by stint index. Replacing the
// slice on each delta collapsed pit history to one entry and pinned tyre age
// near zero — observed live at lap 49 of a 70-lap race, where every driver
// reported a single stint of age 0 despite having pitted.
func TestProcessTopicTimingAppDataMergesSparseStintDeltas(t *testing.T) {
state := live.NewState()
state.ProcessTopic("TimingAppData", json.RawMessage(`{
"Lines": {"4": {"Stints": {"0": {"Compound": "MEDIUM", "New": "true", "TotalLaps": 0}}}}
}`))
// Stint 0 runs to 18 laps, then the driver pits onto a new hard.
state.ProcessTopic("TimingAppData", json.RawMessage(`{
"Lines": {"4": {"Stints": {"0": {"TotalLaps": 18}}}}
}`))
state.ProcessTopic("TimingAppData", json.RawMessage(`{
"Lines": {"4": {"Stints": {"1": {"Compound": "HARD", "New": "true", "TotalLaps": 0}}}}
}`))
state.ProcessTopic("TimingAppData", json.RawMessage(`{
"Lines": {"4": {"Stints": {"1": {"TotalLaps": 12}}}}
}`))
snap := state.Snapshot()
stints := snap.Stints["4"]
if len(stints) != 2 {
t.Fatalf("expected 2 stints after a pit stop, got %d: %+v", len(stints), stints)
}
if stints[0].Compound != "MEDIUM" || stints[0].Laps != 18 {
t.Errorf("first stint lost across deltas: %+v", stints[0])
}
if stints[1].Compound != "HARD" || stints[1].Laps != 12 {
t.Errorf("second stint = %+v", stints[1])
}
if tyre := snap.Tyres["4"]; tyre.Compound != "HARD" || tyre.Age != 12 {
t.Errorf("current tyre should track the latest stint, got %+v", tyre)
}
}
func TestProcessTopicTimingAppDataIgnoresNonNumericStintKeys(t *testing.T) {
state := live.NewState()
state.ProcessTopic("TimingAppData", json.RawMessage(`{
"Lines": {"4": {"Stints": {"0": {"Compound": "SOFT", "New": "true", "TotalLaps": 9}}}}
}`))
// "_kf" is a feed key-frame marker, not a stint index. Parsing it as 0
// would overwrite the real first stint.
state.ProcessTopic("TimingAppData", json.RawMessage(`{
"Lines": {"4": {"Stints": {"_kf": {"Compound": "HARD", "TotalLaps": 99}}}}
}`))
stints := state.Snapshot().Stints["4"]
if len(stints) != 1 {
t.Fatalf("expected 1 stint, got %d: %+v", len(stints), stints)
}
if stints[0].Compound != "SOFT" || stints[0].Laps != 9 {
t.Errorf("key-frame marker corrupted stint 0: %+v", stints[0])
}
}
func TestProcessTopicTimingStats(t *testing.T) {
state := live.NewState()
state.Drivers["55"] = live.LiveDriverData{RacingNumber: "55"}

View File

@@ -10,6 +10,7 @@ import (
"io"
"log"
"sort"
"strconv"
"strings"
"time"
)
@@ -404,22 +405,42 @@ func (s *State) ProcessTopic(topic string, data json.RawMessage) bool {
Stints json.RawMessage `json:"Stints"`
}
if json.Unmarshal(lineRaw, &line) == nil && line.Stints != nil {
var driverStints []LiveStintData
// The feed sends stints as sparse deltas keyed by stint index:
// a mid-stint update is just {"1": {"TotalLaps": 14}}. Merge
// each entry into the stint it addresses. Replacing the slice
// wholesale discarded every earlier stint, so pit history
// collapsed to one entry and tyre age stuck near zero for the
// whole race.
driverStints := append([]LiveStintData(nil), s.Stints[num]...)
changed := false
for _, sRaw := range indexedRawValues(line.Stints) {
var st struct {
Compound string `json:"Compound"`
New string `json:"New"`
TotalLaps int `json:"TotalLaps"`
Compound *string `json:"Compound"`
New *string `json:"New"`
TotalLaps *int `json:"TotalLaps"`
}
if json.Unmarshal(sRaw.Raw, &st) == nil && st.Compound != "" {
driverStints = append(driverStints, LiveStintData{
Compound: st.Compound,
New: st.New == "true" || st.New == "True",
Laps: st.TotalLaps,
})
if json.Unmarshal(sRaw.Raw, &st) != nil {
continue
}
if st.Compound == nil && st.New == nil && st.TotalLaps == nil {
continue
}
if len(driverStints) > 0 {
for len(driverStints) <= sRaw.Index {
driverStints = append(driverStints, LiveStintData{})
}
entry := &driverStints[sRaw.Index]
if st.Compound != nil && *st.Compound != "" {
entry.Compound = *st.Compound
}
if st.New != nil {
entry.New = *st.New == "true" || *st.New == "True"
}
if st.TotalLaps != nil {
entry.Laps = *st.TotalLaps
}
changed = true
}
if changed {
s.Stints[num] = driverStints
lastStint := driverStints[len(driverStints)-1]
t := s.Tyres[num]
@@ -874,8 +895,13 @@ func indexedRawValues(raw json.RawMessage) []indexedRaw {
if err := json.Unmarshal(raw, &obj); err == nil {
values := make([]indexedRaw, 0, len(obj))
for k, v := range obj {
i := 0
fmt.Sscanf(k, "%d", &i)
// Keys are array indices in the feed's delta form. Non-numeric keys
// are feed metadata — "_kf" (key frame) is the common one — and must
// not be folded in as index 0, which would clobber the first entry.
i, err := strconv.Atoi(k)
if err != nil || i < 0 {
continue
}
values = append(values, indexedRaw{Index: i, Raw: v})
}
sort.Slice(values, func(i, j int) bool {

488
internal/query/context.go Normal file
View File

@@ -0,0 +1,488 @@
package query
import (
"sort"
"strings"
"time"
"github.com/AmanTahiliani/box-box/internal/models"
"github.com/AmanTahiliani/box-box/internal/store"
)
// TemporalState describes where the fan is in the current season/weekend.
type TemporalState string
const (
TemporalNoSeason TemporalState = "no_season"
TemporalBetweenWeekends TemporalState = "between_weekends"
TemporalPreSession TemporalState = "pre_session"
TemporalSessionLive TemporalState = "session_live"
TemporalSessionSettling TemporalState = "session_settling"
TemporalBetweenSessions TemporalState = "between_sessions"
TemporalPostWeekend TemporalState = "post_weekend"
TemporalSeasonComplete TemporalState = "season_complete"
preSessionWindow = 48 * time.Hour
postWeekendWindow = 48 * time.Hour
raceHubPendingPollInterval = 15 * time.Second
)
// LiveEvidence is the small, transport-independent subset of FIA state needed
// by the context resolver. Active identity is authoritative over the schedule.
type LiveEvidence struct {
Active bool
Final bool
MeetingName string
CircuitName string
SessionName string
SessionType string
ObservedAt time.Time
}
// ContextAvailability is structured source state for a referenced session.
type ContextAvailability struct {
Source string `json:"source"`
Schedule string `json:"schedule"`
LiveTransport string `json:"live_transport"`
LiveSession string `json:"live_session"`
Archive string `json:"archive"`
LocalAnalysis string `json:"local_analysis"`
Freshness string `json:"freshness"`
ObservedAt string `json:"observed_at,omitempty"`
Limitations []string `json:"limitations"`
}
// ContextSession couples a session identity with its availability contract.
type ContextSession struct {
Session models.Session `json:"session"`
Meeting *models.Meeting `json:"meeting,omitempty"`
Availability ContextAvailability `json:"availability"`
}
// WeekendContext is the canonical local-first previous/current/next model.
type WeekendContext struct {
Season int `json:"season,omitempty"`
TemporalState TemporalState `json:"temporal_state"`
PreviousMeeting *models.Meeting `json:"previous_meeting,omitempty"`
FocusMeeting *models.Meeting `json:"focus_meeting,omitempty"`
NextMeeting *models.Meeting `json:"next_meeting,omitempty"`
PreviousCompletedSession *ContextSession `json:"previous_completed_session,omitempty"`
ActiveSession *ContextSession `json:"active_session,omitempty"`
NextSession *ContextSession `json:"next_session,omitempty"`
DefaultAnalysisSession *ContextSession `json:"default_analysis_session,omitempty"`
RaceHubDefaultSession *ContextSession `json:"race_hub_default_session,omitempty"`
RaceHubPreSession bool `json:"race_hub_pre_session"`
RaceHubRefreshAt string `json:"race_hub_refresh_at,omitempty"`
ChampionshipRound int `json:"championship_round"`
TotalChampionshipRounds int `json:"total_championship_rounds"`
}
type contextCandidate struct {
meeting store.Meeting
session store.Session
start time.Time
end time.Time
counts store.SessionDatasetCounts
complete bool
archived bool
}
// ResolveWeekendContext computes the canonical context using only the domain
// store, the service clock, and optional in-memory FIA evidence.
func (s *Service) ResolveWeekendContext(evidence LiveEvidence) (WeekendContext, error) {
now := s.now().UTC()
out := WeekendContext{TemporalState: TemporalNoSeason}
years, err := s.store.ListYears()
if err != nil || len(years) == 0 {
return out, err
}
out.Season = currentLocalSeason(years, now.Year())
meetings, err := s.store.ListMeetingsByYear(out.Season)
if err != nil {
return WeekendContext{}, err
}
if len(meetings) == 0 {
return out, nil
}
byMeeting := make(map[int][]store.Session, len(meetings))
var candidates []contextCandidate
for i := range meetings {
m := meetings[i]
sessions, listErr := s.store.ListSessionsByMeeting(m.MeetingKey)
if listErr != nil {
return WeekendContext{}, listErr
}
byMeeting[m.MeetingKey] = sessions
applySessionDisplayRange(&meetings[i], sessions)
m = meetings[i]
for _, sess := range sessions {
if m.IsCancelled || sess.IsCancelled {
continue
}
start, _ := parseContextTime(sess.DateStart)
end, _ := parseContextTime(sess.DateEnd)
if end.IsZero() && !start.IsZero() {
end = start.Add(3 * time.Hour)
}
counts, countErr := s.store.CountSessionDatasets(sess.SessionKey)
if countErr != nil {
return WeekendContext{}, countErr
}
archived := evidence.Final && liveMatches(evidence, m, sess)
candidates = append(candidates, contextCandidate{
meeting: m, session: sess, start: start, end: end, counts: counts,
complete: hasMeaningfulAnalysis(counts) || archived, archived: archived,
})
}
}
sort.SliceStable(candidates, func(i, j int) bool { return candidates[i].start.Before(candidates[j].start) })
champMeetings := championshipMeetings(meetings, byMeeting)
out.TotalChampionshipRounds = len(champMeetings)
var active *contextCandidate
if evidence.Active {
for i := range candidates {
if liveMatches(evidence, candidates[i].meeting, candidates[i].session) {
active = &candidates[i]
break
}
}
if active == nil {
active = syntheticLiveCandidate(evidence, now)
}
}
var previous, next, defaultAnalysis, pending *contextCandidate
for i := range candidates {
c := &candidates[i]
isActive := active != nil && active.session.SessionKey != 0 && c.session.SessionKey == active.session.SessionKey
completionEligible := c.start.IsZero() || !c.start.After(now) || c.archived
if !isActive && c.complete && completionEligible && (previous == nil || candidateTime(*c).After(candidateTime(*previous))) {
previous = c
}
if !isActive && c.complete && hasMeaningfulAnalysis(c.counts) && (c.start.IsZero() || !c.start.After(now)) && (defaultAnalysis == nil || candidateTime(*c).After(candidateTime(*defaultAnalysis))) {
defaultAnalysis = c
}
if !isActive && !c.start.IsZero() && !c.start.Before(now) && (next == nil || c.start.Before(next.start)) {
next = c
}
if !isActive && !c.complete && !c.start.IsZero() && !c.start.After(now) &&
(c.end.IsZero() || now.Before(c.end)) && (pending == nil || c.start.After(pending.start)) {
pending = c
}
}
if previous != nil {
out.PreviousCompletedSession = sessionRef(*previous, evidence, now)
out.PreviousMeeting = meetingModelByKey(meetings, previous.meeting.MeetingKey)
}
if defaultAnalysis != nil {
out.DefaultAnalysisSession = sessionRef(*defaultAnalysis, evidence, now)
}
if next != nil {
out.NextSession = sessionRef(*next, evidence, now)
out.NextMeeting = meetingModelByKey(meetings, next.meeting.MeetingKey)
}
if active != nil {
out.ActiveSession = sessionRef(*active, evidence, now)
out.FocusMeeting = out.ActiveSession.Meeting
out.TemporalState = TemporalSessionLive
} else {
out.FocusMeeting = chooseFocusMeeting(meetings, previous, next)
out.TemporalState = classifyTemporalState(now, previous, next, candidates, champMeetings, championshipScheduleUnknown(champMeetings, byMeeting))
}
if out.FocusMeeting != nil {
out.ChampionshipRound = championshipRound(champMeetings, int(out.FocusMeeting.MeetingKey))
}
applyRaceHubDefault(&out, active, defaultAnalysis, next, pending, now)
return out, nil
}
// applyRaceHubDefault is deliberately distinct from TemporalPreSession. Other
// weekend surfaces begin preparation 48 hours ahead; Race Hub remains an
// analysis destination until the one-hour handoff before the next session.
func applyRaceHubDefault(out *WeekendContext, active, analysis, next, pending *contextCandidate, now time.Time) {
if active != nil {
out.RaceHubDefaultSession = out.ActiveSession
return
}
if next != nil {
handoff := next.start.Add(-time.Hour)
if now.Before(handoff) {
out.RaceHubRefreshAt = handoff.Format(time.RFC3339)
} else if now.Before(next.start) {
out.RaceHubDefaultSession = out.NextSession
out.RaceHubPreSession = true
out.RaceHubRefreshAt = next.start.Format(time.RFC3339)
return
}
}
if pending != nil {
out.RaceHubDefaultSession = sessionRef(*pending, LiveEvidence{}, now)
out.RaceHubPreSession = true
out.RaceHubRefreshAt = now.Add(raceHubPendingPollInterval).Format(time.RFC3339)
return
}
if analysis != nil {
out.RaceHubDefaultSession = out.DefaultAnalysisSession
}
}
func currentLocalSeason(years []int, current int) int {
for _, year := range years {
if year == current {
return year
}
}
for _, year := range years {
if year < current {
return year
}
}
return years[len(years)-1]
}
func parseContextTime(value string) (time.Time, bool) {
if value == "" {
return time.Time{}, false
}
for _, layout := range []string{time.RFC3339Nano, time.RFC3339, "2006-01-02T15:04:05"} {
if parsed, err := time.Parse(layout, value); err == nil {
return parsed.UTC(), true
}
}
return time.Time{}, false
}
func hasMeaningfulAnalysis(c store.SessionDatasetCounts) bool {
return c.Results > 0 || c.Laps > 0 || c.Stints > 0 || c.Positions > 0 || c.RaceControl > 0
}
func candidateTime(c contextCandidate) time.Time {
if !c.end.IsZero() {
return c.end
}
return c.start
}
func liveMatches(e LiveEvidence, m store.Meeting, s store.Session) bool {
meetingMatch := normalizedContains(e.MeetingName, m.MeetingName) || normalizedContains(e.CircuitName, m.CircuitShortName)
sessionMatch := normalizedEqual(e.SessionName, s.SessionName)
if normalizeIdentity(e.SessionName) == "" {
sessionMatch = normalizedEqual(e.SessionType, s.SessionType)
}
return meetingMatch && sessionMatch
}
func normalizedEqual(a, b string) bool {
return normalizeIdentity(a) != "" && normalizeIdentity(a) == normalizeIdentity(b)
}
func normalizedContains(a, b string) bool {
a, b = normalizeIdentity(a), normalizeIdentity(b)
return a != "" && b != "" && (strings.Contains(a, b) || strings.Contains(b, a))
}
func normalizeIdentity(v string) string {
return strings.Map(func(r rune) rune {
if r >= 'A' && r <= 'Z' {
return r + ('a' - 'A')
}
if (r >= 'a' && r <= 'z') || (r >= '0' && r <= '9') {
return r
}
return -1
}, v)
}
func syntheticLiveCandidate(e LiveEvidence, now time.Time) *contextCandidate {
return &contextCandidate{meeting: store.Meeting{MeetingName: e.MeetingName, CircuitShortName: e.CircuitName}, session: store.Session{SessionName: e.SessionName, SessionType: e.SessionType, DateStart: now.Format(time.RFC3339)}, start: now}
}
func applySessionDisplayRange(m *store.Meeting, sessions []store.Session) {
var first, last time.Time
for _, sess := range sessions {
if sess.IsCancelled {
continue
}
start, ok := parseContextTime(sess.DateStart)
if ok && (first.IsZero() || start.Before(first)) {
first = start
}
end, ok := parseContextTime(sess.DateEnd)
if !ok {
end = start
}
if !end.IsZero() && (last.IsZero() || end.After(last)) {
last = end
}
}
if !first.IsZero() {
m.DateStart = first.Format(time.RFC3339)
}
if !last.IsZero() {
m.DateEnd = last.Format(time.RFC3339)
}
}
func meetingModelByKey(meetings []store.Meeting, key int) *models.Meeting {
for _, meeting := range meetings {
if meeting.MeetingKey == key {
model := meetingToModel(meeting)
return &model
}
}
return nil
}
func sessionRef(c contextCandidate, evidence LiveEvidence, now time.Time) *ContextSession {
session := sessionToModel(c.session)
meeting := meetingToModel(c.meeting)
// Schedule and analysis are domain-store facts. Without an ingestion
// timestamp the resolver cannot honestly call them network-fresh, so local
// is the baseline freshness vocabulary exposed to clients.
availability := ContextAvailability{Source: "local", Schedule: "available", LiveSession: "inactive", Archive: "unavailable", Freshness: "local", Limitations: []string{}}
availability.LiveTransport = "unknown"
if c.session.SessionKey == 0 {
availability.Schedule = "unavailable"
availability.Limitations = append(availability.Limitations, "schedule_identity_unmatched")
}
if evidence.Active && liveMatches(evidence, c.meeting, c.session) {
availability.Source = "mixed"
availability.LiveTransport = "connected"
availability.LiveSession = "active"
availability.Freshness = "live"
if !evidence.ObservedAt.IsZero() {
availability.ObservedAt = evidence.ObservedAt.Format(time.RFC3339)
}
}
if c.archived {
availability.Source = "mixed"
availability.Archive = "available"
availability.Freshness = "archive"
if !evidence.ObservedAt.IsZero() {
availability.ObservedAt = evidence.ObservedAt.Format(time.RFC3339)
}
}
if c.counts.Results > 0 && (c.counts.Laps+c.counts.Stints+c.counts.Positions+c.counts.RaceControl > 0) {
availability.LocalAnalysis = "complete"
} else if hasMeaningfulAnalysis(c.counts) || c.counts.Drivers+c.counts.StartingGrid+c.counts.Weather > 0 {
availability.LocalAnalysis = "partial"
} else if !c.start.IsZero() && c.start.After(now) {
availability.LocalAnalysis = "not_applicable"
} else {
availability.LocalAnalysis = "pending"
}
if availability.LocalAnalysis == "partial" && availability.Freshness == "local" {
availability.Freshness = "partial"
}
if c.session.SessionKey == 0 && availability.LiveSession == "active" {
availability.Source = "fia"
}
return &ContextSession{Session: session, Meeting: &meeting, Availability: availability}
}
func chooseFocusMeeting(meetings []store.Meeting, previous, next *contextCandidate) *models.Meeting {
if next != nil {
return meetingModelByKey(meetings, next.meeting.MeetingKey)
}
if previous != nil {
return meetingModelByKey(meetings, previous.meeting.MeetingKey)
}
return nil
}
func classifyTemporalState(now time.Time, previous, next *contextCandidate, candidates []contextCandidate, championship []store.Meeting, scheduleUnknown bool) TemporalState {
var latestStarted *contextCandidate
for i := range candidates {
if !candidates[i].start.IsZero() && !candidates[i].start.After(now) && (latestStarted == nil || candidates[i].start.After(latestStarted.start)) {
latestStarted = &candidates[i]
}
}
// Once a new meeting enters its preparation window, an ingest gap from an
// older meeting must not keep the product stuck in settling.
if next != nil && next.start.Sub(now) <= preSessionWindow && (latestStarted == nil || latestStarted.meeting.MeetingKey != next.meeting.MeetingKey) {
return TemporalPreSession
}
if latestStarted != nil && !latestStarted.complete && !latestStarted.end.IsZero() {
if now.Before(latestStarted.end) {
return TemporalPreSession
}
return TemporalSessionSettling
}
if previous != nil && next != nil && previous.meeting.MeetingKey == next.meeting.MeetingKey {
return TemporalBetweenSessions
}
if previous != nil && meetingFinalSession(*previous, candidates) && !candidateTime(*previous).After(now) && now.Sub(candidateTime(*previous)) <= postWeekendWindow {
return TemporalPostWeekend
}
if next != nil && next.start.Sub(now) <= preSessionWindow {
return TemporalPreSession
}
if next == nil && len(championship) > 0 && !scheduleUnknown {
return TemporalSeasonComplete
}
return TemporalBetweenWeekends
}
func championshipScheduleUnknown(meetings []store.Meeting, sessions map[int][]store.Session) bool {
for _, meeting := range meetings {
for _, session := range sessions[meeting.MeetingKey] {
if !session.IsCancelled && isChampionshipRace(session) {
if _, ok := parseContextTime(session.DateStart); !ok {
return true
}
}
}
}
return false
}
func meetingFinalSession(previous contextCandidate, candidates []contextCandidate) bool {
latest := previous.start
for _, c := range candidates {
if c.meeting.MeetingKey == previous.meeting.MeetingKey && c.start.After(latest) {
return false
}
}
return true
}
func championshipMeetings(meetings []store.Meeting, sessions map[int][]store.Session) []store.Meeting {
var out []store.Meeting
for _, m := range meetings {
if m.IsCancelled || isTestMeeting(m) {
continue
}
for _, sess := range sessions[m.MeetingKey] {
if !sess.IsCancelled && isChampionshipRace(sess) {
out = append(out, m)
break
}
}
}
sort.SliceStable(out, func(i, j int) bool {
a, _ := parseContextTime(out[i].DateStart)
b, _ := parseContextTime(out[j].DateStart)
return a.Before(b)
})
return out
}
func isTestMeeting(m store.Meeting) bool {
n := strings.ToLower(m.MeetingName + " " + m.MeetingOfficialName)
return strings.Contains(n, "test")
}
func isChampionshipRace(s store.Session) bool {
n := strings.ToLower(s.SessionName)
t := strings.ToLower(s.SessionType)
return (n == "race" || t == "race") && !strings.Contains(n, "sprint") && !strings.Contains(t, "sprint")
}
func championshipRound(meetings []store.Meeting, key int) int {
for i, m := range meetings {
if m.MeetingKey == key {
return i + 1
}
}
return 0
}

View File

@@ -0,0 +1,486 @@
package query
import (
"testing"
"time"
"github.com/AmanTahiliani/box-box/internal/store"
)
func contextService(t *testing.T, now time.Time) *Service {
t.Helper()
base := openTestService(t)
return NewServiceWithClock(base.store, func() time.Time { return now })
}
func addContextMeeting(t *testing.T, svc *Service, key int, name, start, end string, cancelled bool) {
t.Helper()
if err := svc.store.UpsertMeeting(store.Meeting{MeetingKey: key, MeetingName: name, MeetingOfficialName: name, CircuitShortName: name, Year: 2026, DateStart: start, DateEnd: end, IsCancelled: cancelled}); err != nil {
t.Fatal(err)
}
}
func addContextSession(t *testing.T, svc *Service, key, meeting int, name, start, end string, cancelled bool) {
t.Helper()
if err := svc.store.UpsertSession(store.Session{SessionKey: key, MeetingKey: meeting, SessionName: name, SessionType: name, DateStart: start, DateEnd: end, IsCancelled: cancelled}); err != nil {
t.Fatal(err)
}
}
func completeContextSession(t *testing.T, svc *Service, key, meeting int) {
t.Helper()
if err := svc.store.UpsertSessionResult(store.SessionResult{SessionKey: key, MeetingKey: meeting, DriverNumber: 1, Position: 1}); err != nil {
t.Fatal(err)
}
}
func TestResolveWeekendContextTemporalStates(t *testing.T) {
tests := []struct {
name string
now string
seed func(*testing.T, *Service)
evidence LiveEvidence
want TemporalState
}{
{name: "no season", now: "2026-06-01T12:00:00Z", want: TemporalNoSeason},
{name: "between weekends", now: "2026-06-10T12:00:00Z", seed: func(t *testing.T, s *Service) {
addContextMeeting(t, s, 1, "Monaco Grand Prix", "2026-06-01T09:00:00Z", "2026-06-02T16:00:00Z", false)
addContextSession(t, s, 11, 1, "Race", "2026-06-02T14:00:00Z", "2026-06-02T16:00:00Z", false)
completeContextSession(t, s, 11, 1)
addContextMeeting(t, s, 2, "Canada Grand Prix", "2026-06-20T09:00:00Z", "2026-06-22T16:00:00Z", false)
addContextSession(t, s, 21, 2, "Practice 1", "2026-06-20T09:00:00Z", "2026-06-20T10:00:00Z", false)
addContextSession(t, s, 22, 2, "Race", "2026-06-22T14:00:00Z", "2026-06-22T16:00:00Z", false)
}, want: TemporalBetweenWeekends},
{name: "pre session", now: "2026-06-19T12:00:00Z", seed: func(t *testing.T, s *Service) {
addContextMeeting(t, s, 2, "Canada Grand Prix", "2026-06-20T09:00:00Z", "2026-06-22T16:00:00Z", false)
addContextSession(t, s, 21, 2, "Practice 1", "2026-06-20T09:00:00Z", "2026-06-20T10:00:00Z", false)
addContextSession(t, s, 22, 2, "Race", "2026-06-22T14:00:00Z", "2026-06-22T16:00:00Z", false)
}, want: TemporalPreSession},
{name: "session live overrides schedule", now: "2026-06-20T12:00:00Z", seed: func(t *testing.T, s *Service) {
addContextMeeting(t, s, 2, "Canada Grand Prix", "2026-06-20T09:00:00Z", "2026-06-22T16:00:00Z", false)
addContextSession(t, s, 21, 2, "Practice 1", "2026-06-20T09:00:00Z", "2026-06-20T10:00:00Z", false)
addContextSession(t, s, 22, 2, "Race", "2026-06-22T14:00:00Z", "2026-06-22T16:00:00Z", false)
}, evidence: LiveEvidence{Active: true, MeetingName: "Canadian Grand Prix", CircuitName: "Canada Grand Prix", SessionName: "Practice 1", SessionType: "Practice 1"}, want: TemporalSessionLive},
{name: "session settling", now: "2026-06-20T11:00:00Z", seed: func(t *testing.T, s *Service) {
addContextMeeting(t, s, 2, "Canada Grand Prix", "2026-06-20T09:00:00Z", "2026-06-22T16:00:00Z", false)
addContextSession(t, s, 21, 2, "Practice 1", "2026-06-20T09:00:00Z", "2026-06-20T10:00:00Z", false)
addContextSession(t, s, 22, 2, "Race", "2026-06-22T14:00:00Z", "2026-06-22T16:00:00Z", false)
}, want: TemporalSessionSettling},
{name: "between sessions", now: "2026-06-20T11:00:00Z", seed: func(t *testing.T, s *Service) {
addContextMeeting(t, s, 2, "Canada Grand Prix", "2026-06-20T09:00:00Z", "2026-06-22T16:00:00Z", false)
addContextSession(t, s, 21, 2, "Practice 1", "2026-06-20T09:00:00Z", "2026-06-20T10:00:00Z", false)
completeContextSession(t, s, 21, 2)
addContextSession(t, s, 22, 2, "Race", "2026-06-22T14:00:00Z", "2026-06-22T16:00:00Z", false)
}, want: TemporalBetweenSessions},
{name: "post weekend", now: "2026-06-22T18:00:00Z", seed: func(t *testing.T, s *Service) {
addContextMeeting(t, s, 2, "Canada Grand Prix", "2026-06-20T09:00:00Z", "2026-06-22T16:00:00Z", false)
addContextSession(t, s, 22, 2, "Race", "2026-06-22T14:00:00Z", "2026-06-22T16:00:00Z", false)
completeContextSession(t, s, 22, 2)
}, want: TemporalPostWeekend},
{name: "season complete", now: "2026-06-30T12:00:00Z", seed: func(t *testing.T, s *Service) {
addContextMeeting(t, s, 2, "Canada Grand Prix", "2026-06-20T09:00:00Z", "2026-06-22T16:00:00Z", false)
addContextSession(t, s, 22, 2, "Race", "2026-06-22T14:00:00Z", "2026-06-22T16:00:00Z", false)
completeContextSession(t, s, 22, 2)
}, want: TemporalSeasonComplete},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
now, _ := time.Parse(time.RFC3339, tt.now)
svc := contextService(t, now)
if tt.seed != nil {
tt.seed(t, svc)
}
got, err := svc.ResolveWeekendContext(tt.evidence)
if err != nil {
t.Fatal(err)
}
if got.TemporalState != tt.want {
t.Fatalf("state = %s, want %s; context=%+v", got.TemporalState, tt.want, got)
}
})
}
}
func TestResolveWeekendContextTruthRules(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-10T12:00:00Z")
svc := contextService(t, now)
addContextMeeting(t, svc, 1, "Pre-Season Testing", "2026-02-01T00:00:00Z", "2026-02-03T00:00:00Z", false)
addContextSession(t, svc, 10, 1, "Race", "2026-02-03T10:00:00Z", "2026-02-03T12:00:00Z", false)
addContextMeeting(t, svc, 2, "Cancelled Grand Prix", "2026-03-01T00:00:00Z", "2026-03-03T00:00:00Z", true)
addContextSession(t, svc, 20, 2, "Race", "2026-03-03T10:00:00Z", "2026-03-03T12:00:00Z", false)
addContextMeeting(t, svc, 3, "British Grand Prix", "2026-07-01T00:00:00Z", "2026-07-05T00:00:00Z", false)
addContextSession(t, svc, 30, 3, "Practice 1", "2026-07-03T09:00:00Z", "2026-07-03T10:00:00Z", false)
addContextSession(t, svc, 31, 3, "Sprint", "2026-07-04T10:00:00Z", "2026-07-04T11:00:00Z", false)
addContextSession(t, svc, 32, 3, "Race", "2026-07-05T14:00:00Z", "2026-07-05T16:00:00Z", false)
completeContextSession(t, svc, 32, 3)
addContextMeeting(t, svc, 4, "Belgian Grand Prix", "2026-07-16T00:00:00Z", "2026-07-18T00:00:00Z", false)
addContextSession(t, svc, 40, 4, "Practice 1", "2026-07-17T09:00:00Z", "2026-07-17T10:00:00Z", false)
addContextSession(t, svc, 41, 4, "Cancelled Practice", "2026-07-18T09:00:00Z", "2026-07-18T10:00:00Z", true)
addContextSession(t, svc, 42, 4, "Race", "2026-07-19T14:00:00Z", "2026-07-19T16:00:00Z", false)
got, err := svc.ResolveWeekendContext(LiveEvidence{})
if err != nil {
t.Fatal(err)
}
if got.TotalChampionshipRounds != 2 || got.ChampionshipRound != 2 {
t.Fatalf("rounds = %d/%d, want 2/2", got.ChampionshipRound, got.TotalChampionshipRounds)
}
if got.DefaultAnalysisSession == nil || got.DefaultAnalysisSession.Session.SessionKey != 32 {
t.Fatalf("default analysis = %+v, want completed race 32", got.DefaultAnalysisSession)
}
if got.NextSession == nil || got.NextSession.Session.SessionKey != 40 {
t.Fatalf("next = %+v, want 40", got.NextSession)
}
if got.NextMeeting.DateStart != "2026-07-17T09:00:00Z" || got.NextMeeting.DateEnd != "2026-07-19T16:00:00Z" {
t.Fatalf("display range = %s..%s", got.NextMeeting.DateStart, got.NextMeeting.DateEnd)
}
}
func TestResolveWeekendContextPassedTimeDoesNotCompleteSession(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-05T18:00:00Z")
svc := contextService(t, now)
addContextMeeting(t, svc, 1, "British Grand Prix", "2026-07-03T00:00:00Z", "2026-07-05T16:00:00Z", false)
addContextSession(t, svc, 11, 1, "Race", "2026-07-05T14:00:00Z", "2026-07-05T16:00:00Z", false)
got, err := svc.ResolveWeekendContext(LiveEvidence{})
if err != nil {
t.Fatal(err)
}
if got.PreviousCompletedSession != nil || got.DefaultAnalysisSession != nil {
t.Fatalf("passed schedule was treated complete: %+v", got)
}
archive, err := svc.ResolveWeekendContext(LiveEvidence{Final: true, MeetingName: "British Grand Prix", CircuitName: "British Grand Prix", SessionName: "Race", SessionType: "Race", ObservedAt: now})
if err != nil {
t.Fatal(err)
}
if archive.PreviousCompletedSession == nil || archive.PreviousCompletedSession.Availability.Archive != "available" {
t.Fatalf("final archive not used: %+v", archive)
}
if archive.DefaultAnalysisSession != nil {
t.Fatal("archive without local analysis must not become default analysis")
}
}
func TestResolveWeekendContextAvailabilityUsesTruthfulSources(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-05T18:00:00Z")
svc := contextService(t, now)
addContextMeeting(t, svc, 1, "British Grand Prix", "2026-07-03T00:00:00Z", "2026-07-05T16:00:00Z", false)
addContextSession(t, svc, 11, 1, "Race", "2026-07-05T14:00:00Z", "2026-07-05T16:00:00Z", false)
// Results without laps/stints/positions are meaningful but incomplete local
// analysis, so they must not be labelled universally fresh.
completeContextSession(t, svc, 11, 1)
addContextMeeting(t, svc, 2, "Belgian Grand Prix", "2026-07-17T00:00:00Z", "2026-07-19T16:00:00Z", false)
addContextSession(t, svc, 21, 2, "Practice 1", "2026-07-17T09:00:00Z", "2026-07-17T10:00:00Z", false)
addContextSession(t, svc, 22, 2, "Race", "2026-07-19T14:00:00Z", "2026-07-19T16:00:00Z", false)
local, err := svc.ResolveWeekendContext(LiveEvidence{})
if err != nil {
t.Fatal(err)
}
if got := local.PreviousCompletedSession.Availability; got.Source != "local" || got.Freshness != "partial" || got.LocalAnalysis != "partial" {
t.Fatalf("partial local availability = %+v", got)
}
if got := local.NextSession.Availability; got.Source != "local" || got.Freshness != "local" {
t.Fatalf("future local availability = %+v", got)
}
liveContext, err := svc.ResolveWeekendContext(LiveEvidence{Active: true, MeetingName: "Belgian Grand Prix", CircuitName: "Belgian Grand Prix", SessionName: "Practice 1", SessionType: "Practice 1", ObservedAt: now})
if err != nil {
t.Fatal(err)
}
if got := liveContext.ActiveSession.Availability; got.Source != "mixed" || got.Freshness != "live" || got.LiveSession != "active" {
t.Fatalf("FIA + local availability = %+v", got)
}
archiveContext, err := svc.ResolveWeekendContext(LiveEvidence{Final: true, MeetingName: "British Grand Prix", CircuitName: "British Grand Prix", SessionName: "Race", SessionType: "Race", ObservedAt: now})
if err != nil {
t.Fatal(err)
}
if got := archiveContext.PreviousCompletedSession.Availability; got.Source != "mixed" || got.Freshness != "archive" || got.Archive != "available" {
t.Fatalf("FIA archive + local availability = %+v", got)
}
synthetic, err := svc.ResolveWeekendContext(LiveEvidence{Active: true, MeetingName: "Unscheduled Grand Prix", SessionName: "Race", SessionType: "Race", ObservedAt: now})
if err != nil {
t.Fatal(err)
}
if got := synthetic.ActiveSession.Availability; got.Source != "fia" || got.Freshness != "live" || got.Schedule != "unavailable" {
t.Fatalf("synthetic FIA availability = %+v", got)
}
}
func TestResolveWeekendContextNeverUsesFutureAnalysis(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-01T12:00:00Z")
svc := contextService(t, now)
addContextMeeting(t, svc, 1, "British Grand Prix", "2026-07-03T00:00:00Z", "2026-07-05T16:00:00Z", false)
addContextSession(t, svc, 11, 1, "Race", "2026-07-05T14:00:00Z", "2026-07-05T16:00:00Z", false)
completeContextSession(t, svc, 11, 1) // bad/preloaded data must not make a future session canonical
got, err := svc.ResolveWeekendContext(LiveEvidence{})
if err != nil {
t.Fatal(err)
}
if got.PreviousCompletedSession != nil || got.DefaultAnalysisSession != nil {
t.Fatalf("future analysis selected: %+v", got)
}
}
// Regression for the v0.4.0 release blocker (#90). Production held a run
// British race (11326) and an unrun Belgian race (11334) two weekends apart.
// Analysis must resolve to the race that actually happened, even when the
// later meeting carries preloaded rows.
func TestResolveWeekendContextPrefersRunRaceOverLaterUnrunRace(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-13T12:00:00Z")
svc := contextService(t, now)
addContextMeeting(t, svc, 1289, "British Grand Prix", "2026-07-03T11:30:00Z", "2026-07-05T16:00:00Z", false)
addContextSession(t, svc, 11326, 1289, "Race", "2026-07-05T14:00:00Z", "2026-07-05T16:00:00Z", false)
completeContextSession(t, svc, 11326, 1289)
addContextMeeting(t, svc, 1290, "Belgian Grand Prix", "2026-07-17T11:30:00Z", "2026-07-19T15:00:00Z", false)
addContextSession(t, svc, 11334, 1290, "Race", "2026-07-19T13:00:00Z", "2026-07-19T15:00:00Z", false)
completeContextSession(t, svc, 11334, 1290)
got, err := svc.ResolveWeekendContext(LiveEvidence{})
if err != nil {
t.Fatal(err)
}
if got.DefaultAnalysisSession == nil {
t.Fatal("no analysis session resolved")
}
if key := got.DefaultAnalysisSession.Session.SessionKey; key != 11326 {
t.Fatalf("analysis session = %d, want 11326 (British); 11334 is the unrun Belgian race", key)
}
if got.PreviousCompletedSession == nil || got.PreviousCompletedSession.Session.SessionKey != 11326 {
t.Fatalf("previous completed = %+v, want 11326", got.PreviousCompletedSession)
}
if got.NextSession == nil || got.NextSession.Session.SessionKey != 11334 {
t.Fatalf("next session = %+v, want 11334", got.NextSession)
}
}
func TestResolveWeekendContextSprintWeekendHandoff(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-04T12:00:00Z")
svc := contextService(t, now)
addContextMeeting(t, svc, 1, "British Grand Prix", "2026-07-03T09:00:00Z", "2026-07-05T16:00:00Z", false)
addContextSession(t, svc, 11, 1, "Sprint", "2026-07-04T10:00:00Z", "2026-07-04T11:00:00Z", false)
addContextSession(t, svc, 12, 1, "Race", "2026-07-05T14:00:00Z", "2026-07-05T16:00:00Z", false)
completeContextSession(t, svc, 11, 1)
got, err := svc.ResolveWeekendContext(LiveEvidence{})
if err != nil {
t.Fatal(err)
}
if got.TemporalState != TemporalBetweenSessions || got.PreviousCompletedSession.Session.SessionKey != 11 || got.NextSession.Session.SessionKey != 12 {
t.Fatalf("sprint handoff = %+v", got)
}
if got.TotalChampionshipRounds != 1 {
t.Fatalf("sprint created extra championship round: %d", got.TotalChampionshipRounds)
}
}
func TestResolveWeekendContextBoundaryTimestamps(t *testing.T) {
t.Run("pre-session window is inclusive", func(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-01T09:00:00Z")
svc := contextService(t, now)
addContextMeeting(t, svc, 1, "British Grand Prix", "2026-07-03T09:00:00Z", "2026-07-05T16:00:00Z", false)
addContextSession(t, svc, 11, 1, "Practice 1", "2026-07-03T09:00:00Z", "2026-07-03T10:00:00Z", false)
addContextSession(t, svc, 12, 1, "Race", "2026-07-05T14:00:00Z", "2026-07-05T16:00:00Z", false)
got, err := svc.ResolveWeekendContext(LiveEvidence{})
if err != nil {
t.Fatal(err)
}
if got.TemporalState != TemporalPreSession {
t.Fatalf("state = %s", got.TemporalState)
}
})
t.Run("scheduled end enters settling", func(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-03T10:00:00Z")
svc := contextService(t, now)
addContextMeeting(t, svc, 1, "British Grand Prix", "2026-07-03T09:00:00Z", "2026-07-05T16:00:00Z", false)
addContextSession(t, svc, 11, 1, "Practice 1", "2026-07-03T09:00:00Z", "2026-07-03T10:00:00Z", false)
addContextSession(t, svc, 12, 1, "Race", "2026-07-05T14:00:00Z", "2026-07-05T16:00:00Z", false)
got, err := svc.ResolveWeekendContext(LiveEvidence{})
if err != nil {
t.Fatal(err)
}
if got.TemporalState != TemporalSessionSettling {
t.Fatalf("state = %s", got.TemporalState)
}
})
t.Run("post-weekend window is inclusive", func(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-07T16:00:00Z")
svc := contextService(t, now)
addContextMeeting(t, svc, 1, "British Grand Prix", "2026-07-03T09:00:00Z", "2026-07-05T16:00:00Z", false)
addContextSession(t, svc, 12, 1, "Race", "2026-07-05T14:00:00Z", "2026-07-05T16:00:00Z", false)
completeContextSession(t, svc, 12, 1)
got, err := svc.ResolveWeekendContext(LiveEvidence{})
if err != nil {
t.Fatal(err)
}
if got.TemporalState != TemporalPostWeekend {
t.Fatalf("state = %s", got.TemporalState)
}
})
}
func TestResolveWeekendContextPartialFutureSchedule(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-01T12:00:00Z")
svc := contextService(t, now)
addContextMeeting(t, svc, 1, "British Grand Prix", "2026-07-03T09:00:00Z", "", false)
addContextSession(t, svc, 11, 1, "Practice 1", "", "", false)
addContextSession(t, svc, 12, 1, "Race", "2026-07-05T14:00:00Z", "", false)
got, err := svc.ResolveWeekendContext(LiveEvidence{})
if err != nil {
t.Fatal(err)
}
if got.NextSession == nil || got.NextSession.Session.SessionKey != 12 {
t.Fatalf("partial schedule next = %+v", got.NextSession)
}
if got.FocusMeeting == nil || got.FocusMeeting.DateStart != "2026-07-05T14:00:00Z" || got.FocusMeeting.DateEnd != "2026-07-05T14:00:00Z" {
t.Fatalf("partial display range = %+v", got.FocusMeeting)
}
}
func TestResolveWeekendContextActiveSessionIsNotCompletedOrDefault(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-05T15:00:00Z")
svc := contextService(t, now)
addContextMeeting(t, svc, 1, "British Grand Prix", "2026-07-03T09:00:00Z", "2026-07-05T16:00:00Z", false)
addContextSession(t, svc, 10, 1, "Qualifying", "2026-07-04T14:00:00Z", "2026-07-04T15:00:00Z", false)
completeContextSession(t, svc, 10, 1)
addContextSession(t, svc, 11, 1, "Race", "2026-07-05T14:00:00Z", "2026-07-05T16:00:00Z", false)
completeContextSession(t, svc, 11, 1)
got, err := svc.ResolveWeekendContext(LiveEvidence{Active: true, MeetingName: "British Grand Prix", CircuitName: "British Grand Prix", SessionName: "Race", SessionType: "Race", ObservedAt: now})
if err != nil {
t.Fatal(err)
}
if got.ActiveSession == nil || got.ActiveSession.Session.SessionKey != 11 {
t.Fatalf("active = %+v", got.ActiveSession)
}
if got.PreviousCompletedSession == nil || got.PreviousCompletedSession.Session.SessionKey != 10 {
t.Fatalf("previous = %+v, want earlier completed session", got.PreviousCompletedSession)
}
if got.DefaultAnalysisSession == nil || got.DefaultAnalysisSession.Session.SessionKey != 10 {
t.Fatalf("default = %+v, want earlier completed session", got.DefaultAnalysisSession)
}
}
func TestResolveWeekendContextOldIncompleteSessionDoesNotSuppressNextWeekend(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-16T12:00:00Z")
svc := contextService(t, now)
addContextMeeting(t, svc, 1, "British Grand Prix", "2026-07-03T09:00:00Z", "2026-07-05T16:00:00Z", false)
addContextSession(t, svc, 11, 1, "Race", "2026-07-05T14:00:00Z", "2026-07-05T16:00:00Z", false)
addContextMeeting(t, svc, 2, "Belgian Grand Prix", "2026-07-17T09:00:00Z", "2026-07-19T16:00:00Z", false)
addContextSession(t, svc, 21, 2, "Practice 1", "2026-07-17T09:00:00Z", "2026-07-17T10:00:00Z", false)
addContextSession(t, svc, 22, 2, "Race", "2026-07-19T14:00:00Z", "2026-07-19T16:00:00Z", false)
got, err := svc.ResolveWeekendContext(LiveEvidence{})
if err != nil {
t.Fatal(err)
}
if got.TemporalState != TemporalPreSession {
t.Fatalf("state = %s, want %s; context=%+v", got.TemporalState, TemporalPreSession, got)
}
if got.FocusMeeting == nil || got.FocusMeeting.MeetingKey != 2 {
t.Fatalf("focus = %+v, want Belgian weekend", got.FocusMeeting)
}
}
func TestResolveWeekendContextMissingScheduleDoesNotClaimSeasonComplete(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-01T12:00:00Z")
svc := contextService(t, now)
addContextMeeting(t, svc, 1, "British Grand Prix", "", "", false)
addContextSession(t, svc, 11, 1, "Race", "", "", false)
got, err := svc.ResolveWeekendContext(LiveEvidence{})
if err != nil {
t.Fatal(err)
}
if got.TemporalState != TemporalBetweenWeekends {
t.Fatalf("state = %s, want limited %s context", got.TemporalState, TemporalBetweenWeekends)
}
if got.TotalChampionshipRounds != 1 {
t.Fatalf("total rounds = %d, want scheduled round retained", got.TotalChampionshipRounds)
}
}
func TestResolveWeekendContextRaceHubDefault(t *testing.T) {
seed := func(t *testing.T, svc *Service) {
addContextMeeting(t, svc, 1, "British Grand Prix", "2026-07-03T09:00:00Z", "2026-07-05T16:00:00Z", false)
addContextSession(t, svc, 11, 1, "Race", "2026-07-05T14:00:00Z", "2026-07-05T16:00:00Z", false)
completeContextSession(t, svc, 11, 1)
addContextMeeting(t, svc, 2, "Belgian Grand Prix", "2026-07-17T09:00:00Z", "2026-07-19T16:00:00Z", false)
addContextSession(t, svc, 21, 2, "Practice 1", "2026-07-17T09:00:00Z", "2026-07-17T10:00:00Z", false)
}
t.Run("keeps completed analysis before handoff", func(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-16T07:59:59Z")
svc := contextService(t, now)
seed(t, svc)
got, err := svc.ResolveWeekendContext(LiveEvidence{})
if err != nil {
t.Fatal(err)
}
if got.RaceHubDefaultSession == nil || got.RaceHubDefaultSession.Session.SessionKey != 11 || got.RaceHubPreSession {
t.Fatalf("race hub default = %+v, pre-session = %t", got.RaceHubDefaultSession, got.RaceHubPreSession)
}
if got.RaceHubRefreshAt != "2026-07-17T08:00:00Z" {
t.Fatalf("refresh = %q", got.RaceHubRefreshAt)
}
})
t.Run("hands off exactly one hour before first session", func(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-17T08:00:00Z")
svc := contextService(t, now)
seed(t, svc)
got, err := svc.ResolveWeekendContext(LiveEvidence{})
if err != nil {
t.Fatal(err)
}
if got.RaceHubDefaultSession == nil || got.RaceHubDefaultSession.Session.SessionKey != 21 || !got.RaceHubPreSession {
t.Fatalf("race hub handoff = %+v, pre-session = %t", got.RaceHubDefaultSession, got.RaceHubPreSession)
}
if got.RaceHubRefreshAt != "2026-07-17T09:00:00Z" {
t.Fatalf("refresh = %q", got.RaceHubRefreshAt)
}
})
t.Run("keeps the scheduled session pending after its start without live evidence", func(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-17T09:00:00Z")
svc := contextService(t, now)
seed(t, svc)
got, err := svc.ResolveWeekendContext(LiveEvidence{})
if err != nil {
t.Fatal(err)
}
if got.RaceHubDefaultSession == nil || got.RaceHubDefaultSession.Session.SessionKey != 21 || !got.RaceHubPreSession {
t.Fatalf("scheduled race hub default = %+v, pre-session = %t", got.RaceHubDefaultSession, got.RaceHubPreSession)
}
if got.RaceHubRefreshAt != "2026-07-17T09:00:15Z" {
t.Fatalf("refresh = %q", got.RaceHubRefreshAt)
}
})
t.Run("active live session wins", func(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-17T08:30:00Z")
svc := contextService(t, now)
seed(t, svc)
got, err := svc.ResolveWeekendContext(LiveEvidence{Active: true, MeetingName: "Belgian Grand Prix", SessionName: "Practice 1", SessionType: "Practice 1"})
if err != nil {
t.Fatal(err)
}
if got.RaceHubDefaultSession == nil || got.RaceHubDefaultSession.Session.SessionKey != 21 || got.RaceHubPreSession {
t.Fatalf("live default = %+v, pre-session = %t", got.RaceHubDefaultSession, got.RaceHubPreSession)
}
})
t.Run("does not select an empty future session before handoff", func(t *testing.T) {
now, _ := time.Parse(time.RFC3339, "2026-07-16T12:00:00Z")
svc := contextService(t, now)
addContextMeeting(t, svc, 2, "Belgian Grand Prix", "2026-07-17T09:00:00Z", "2026-07-19T16:00:00Z", false)
addContextSession(t, svc, 21, 2, "Practice 1", "2026-07-17T09:00:00Z", "2026-07-17T10:00:00Z", false)
got, err := svc.ResolveWeekendContext(LiveEvidence{})
if err != nil {
t.Fatal(err)
}
if got.RaceHubDefaultSession != nil || got.RaceHubPreSession {
t.Fatalf("unexpected empty future default: %+v", got)
}
})
}

View File

@@ -3,6 +3,7 @@ package query
import (
"database/sql"
"errors"
"time"
"github.com/AmanTahiliani/box-box/internal/chapters"
"github.com/AmanTahiliani/box-box/internal/models"
@@ -12,11 +13,20 @@ import (
// Service assembles store-backed read models.
type Service struct {
store *store.Store
now func() time.Time
}
// NewService creates a query service over a domain store.
func NewService(st *store.Store) *Service {
return &Service{store: st}
return NewServiceWithClock(st, time.Now)
}
// NewServiceWithClock creates a query service with an injected clock.
func NewServiceWithClock(st *store.Store, now func() time.Time) *Service {
if now == nil {
now = time.Now
}
return &Service{store: st, now: now}
}
// EnrichedResult is a session result with driver identity fields.

View File

@@ -16,6 +16,7 @@ import (
readability "codeberg.org/readeck/go-readability/v2"
"github.com/AmanTahiliani/box-box/internal/api"
"github.com/AmanTahiliani/box-box/internal/models"
"github.com/AmanTahiliani/box-box/internal/query"
)
@@ -43,6 +44,7 @@ func (s *Server) handleMeetings(w http.ResponseWriter, r *http.Request) {
switch parseSourceMode(r) {
case sourceLocal:
markLocalResponse(w, false)
if !s.hasLocalQuery() {
writeJSON(w, []models.Meeting{})
return
@@ -62,17 +64,20 @@ func (s *Server) handleMeetings(w http.ResponseWriter, r *http.Request) {
return
}
if len(meetings) > 0 {
markLocalResponse(w, false)
writeJSON(w, meetings)
return
}
}
}
meetings, err := s.client.GetMeetingsForYear(year)
client := s.client.Scoped()
meetings, err := client.GetMeetingsForYear(year)
if err != nil {
writeError(w, err, http.StatusInternalServerError, s.client.LastResponseWasStale())
writeError(w, err, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
markOpenF1Response(w, client)
writeJSON(w, meetings)
}
@@ -87,6 +92,7 @@ func (s *Server) handleSessions(w http.ResponseWriter, r *http.Request) {
switch parseSourceMode(r) {
case sourceLocal:
markLocalResponse(w, false)
if !s.hasLocalQuery() {
writeJSON(w, []models.Session{})
return
@@ -106,23 +112,27 @@ func (s *Server) handleSessions(w http.ResponseWriter, r *http.Request) {
return
}
if len(sessions) > 0 {
markLocalResponse(w, false)
writeJSON(w, sessions)
return
}
}
}
sessions, err := s.client.GetSessionsForMeeting(meetingKey)
client := s.client.Scoped()
sessions, err := client.GetSessionsForMeeting(meetingKey)
if err != nil {
writeError(w, err, http.StatusInternalServerError, s.client.LastResponseWasStale())
writeError(w, err, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
markOpenF1Response(w, client)
writeJSON(w, sessions)
}
// --- /api/v1/news ---
func (s *Server) handleNews(w http.ResponseWriter, r *http.Request) {
markLocalResponse(w, false)
if !s.hasLocalQuery() {
writeJSON(w, []query.NewsItem{})
return
@@ -223,6 +233,7 @@ func (s *Server) handleDrivers(w http.ResponseWriter, r *http.Request) {
switch parseSourceMode(r) {
case sourceLocal:
markLocalResponse(w, false)
if !s.hasLocalQuery() {
writeJSON(w, []models.Driver{})
return
@@ -242,6 +253,7 @@ func (s *Server) handleDrivers(w http.ResponseWriter, r *http.Request) {
if s.hasLocalQuery() {
drivers, err := s.query.ListDrivers(sessionKey)
if err == nil && len(drivers) > 0 {
markLocalResponse(w, false)
writeJSON(w, drivers)
return
}
@@ -252,11 +264,13 @@ func (s *Server) handleDrivers(w http.ResponseWriter, r *http.Request) {
}
}
drivers, err := s.client.GetDriversForSession(sessionKey)
client := s.client.Scoped()
drivers, err := client.GetDriversForSession(sessionKey)
if err != nil {
writeError(w, err, http.StatusInternalServerError, s.client.LastResponseWasStale())
writeError(w, err, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
markOpenF1Response(w, client)
writeJSON(w, drivers)
}
@@ -279,6 +293,7 @@ func (s *Server) handleResults(w http.ResponseWriter, r *http.Request) {
switch parseSourceMode(r) {
case sourceLocal:
markLocalResponse(w, false)
if !s.hasLocalQuery() {
writeJSON(w, []resultWithDriver{})
return
@@ -294,6 +309,7 @@ func (s *Server) handleResults(w http.ResponseWriter, r *http.Request) {
if s.hasLocalQuery() {
results, err := s.query.ListResults(sessionKey)
if err == nil && len(results) > 0 {
markLocalResponse(w, false)
writeJSON(w, enrichedResultsToAPI(results))
return
}
@@ -308,30 +324,42 @@ func (s *Server) handleResults(w http.ResponseWriter, r *http.Request) {
results []models.SessionResult
drivers []models.Driver
resultsErr error
driversErr error
wg sync.WaitGroup
)
client := s.client.Scoped()
wg.Add(2)
go func() { defer wg.Done(); results, resultsErr = s.client.GetSessionResult(sessionKey) }()
go func() { defer wg.Done(); drivers, _ = s.client.GetDriversForSession(sessionKey) }()
go func() { defer wg.Done(); results, resultsErr = client.GetSessionResult(sessionKey) }()
go func() { defer wg.Done(); drivers, driversErr = client.GetDriversForSession(sessionKey) }()
wg.Wait()
if resultsErr != nil {
writeError(w, resultsErr, http.StatusInternalServerError, s.client.LastResponseWasStale())
writeError(w, resultsErr, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
driverMap := buildDriverMap(drivers)
incomplete := driversErr != nil
enriched := make([]resultWithDriver, 0, len(results))
for _, res := range results {
e := resultWithDriver{SessionResult: res}
if d, ok := driverMap[res.DriverNumber]; ok {
if d, ok := driverMap[res.DriverNumber]; ok && hasDriverPresentation(d) {
e.NameAcronym = d.NameAcronym
e.FullName = d.FullName
e.TeamName = d.TeamName
e.TeamColour = d.TeamColour
} else {
incomplete = true
}
enriched = append(enriched, e)
}
resultsFreshness := "fresh"
if len(results) == 0 {
resultsFreshness = "limited"
} else if incomplete {
resultsFreshness = "partial"
}
markOpenF1Availability(w, client, resultsFreshness)
writeJSON(w, enriched)
}
@@ -354,6 +382,7 @@ func (s *Server) handleGrid(w http.ResponseWriter, r *http.Request) {
switch parseSourceMode(r) {
case sourceLocal:
markLocalResponse(w, false)
if !s.hasLocalQuery() {
writeJSON(w, []gridWithDriver{})
return
@@ -369,6 +398,7 @@ func (s *Server) handleGrid(w http.ResponseWriter, r *http.Request) {
if s.hasLocalQuery() {
grid, err := s.query.ListStartingGrid(sessionKey)
if err == nil && len(grid) > 0 {
markLocalResponse(w, false)
writeJSON(w, enrichedGridToAPI(grid))
return
}
@@ -383,30 +413,42 @@ func (s *Server) handleGrid(w http.ResponseWriter, r *http.Request) {
grid []models.StartingGrid
drivers []models.Driver
gridErr error
driversErr error
wg sync.WaitGroup
)
client := s.client.Scoped()
wg.Add(2)
go func() { defer wg.Done(); grid, gridErr = s.client.GetStartingGrid(sessionKey) }()
go func() { defer wg.Done(); drivers, _ = s.client.GetDriversForSession(sessionKey) }()
go func() { defer wg.Done(); grid, gridErr = client.GetStartingGrid(sessionKey) }()
go func() { defer wg.Done(); drivers, driversErr = client.GetDriversForSession(sessionKey) }()
wg.Wait()
if gridErr != nil {
writeError(w, gridErr, http.StatusInternalServerError, s.client.LastResponseWasStale())
writeError(w, gridErr, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
driverMap := buildDriverMap(drivers)
incomplete := driversErr != nil
enriched := make([]gridWithDriver, 0, len(grid))
for _, g := range grid {
e := gridWithDriver{StartingGrid: g}
if d, ok := driverMap[g.DriverNumber]; ok {
if d, ok := driverMap[g.DriverNumber]; ok && hasDriverPresentation(d) {
e.NameAcronym = d.NameAcronym
e.FullName = d.FullName
e.TeamName = d.TeamName
e.TeamColour = d.TeamColour
} else {
incomplete = true
}
enriched = append(enriched, e)
}
gridFreshness := "fresh"
if len(grid) == 0 {
gridFreshness = "limited"
} else if incomplete {
gridFreshness = "partial"
}
markOpenF1Availability(w, client, gridFreshness)
writeJSON(w, enriched)
}
@@ -419,26 +461,29 @@ func (s *Server) handleLaps(w http.ResponseWriter, r *http.Request) {
return
}
client := s.client.Scoped()
if dnStr := r.URL.Query().Get("driver_number"); dnStr != "" {
driverNumber, err := strconv.Atoi(dnStr)
if err != nil || driverNumber == 0 {
http.Error(w, "invalid driver_number", http.StatusBadRequest)
return
}
laps, err := s.client.GetLapsForDriver(sessionKey, driverNumber)
laps, err := client.GetLapsForDriver(sessionKey, driverNumber)
if err != nil {
writeError(w, err, http.StatusInternalServerError, s.client.LastResponseWasStale())
writeError(w, err, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
markOpenF1Response(w, client)
writeJSON(w, laps)
return
}
laps, err := s.client.GetLapsForSession(sessionKey)
laps, err := client.GetLapsForSession(sessionKey)
if err != nil {
writeError(w, err, http.StatusInternalServerError, s.client.LastResponseWasStale())
writeError(w, err, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
markOpenF1Response(w, client)
writeJSON(w, laps)
}
@@ -450,11 +495,13 @@ func (s *Server) handleWeather(w http.ResponseWriter, r *http.Request) {
http.Error(w, "session_key required", http.StatusBadRequest)
return
}
weather, err := s.client.GetWeather(sessionKey)
client := s.client.Scoped()
weather, err := client.GetWeather(sessionKey)
if err != nil {
writeError(w, err, http.StatusInternalServerError, s.client.LastResponseWasStale())
writeError(w, err, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
markOpenF1Response(w, client)
writeJSON(w, weather)
}
@@ -466,11 +513,13 @@ func (s *Server) handleRaceControl(w http.ResponseWriter, r *http.Request) {
http.Error(w, "session_key required", http.StatusBadRequest)
return
}
rc, err := s.client.GetRaceControl(sessionKey)
client := s.client.Scoped()
rc, err := client.GetRaceControl(sessionKey)
if err != nil {
writeError(w, err, http.StatusInternalServerError, s.client.LastResponseWasStale())
writeError(w, err, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
markOpenF1Response(w, client)
writeJSON(w, rc)
}
@@ -487,11 +536,13 @@ func (s *Server) handleTelemetry(w http.ResponseWriter, r *http.Request) {
http.Error(w, "driver_number required", http.StatusBadRequest)
return
}
carData, err := s.client.GetCarData(sessionKey, driverNumber)
client := s.client.Scoped()
carData, err := client.GetCarData(sessionKey, driverNumber)
if err != nil {
writeError(w, err, http.StatusInternalServerError, s.client.LastResponseWasStale())
writeError(w, err, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
markOpenF1Response(w, client)
writeJSON(w, carData)
}
@@ -503,11 +554,13 @@ func (s *Server) handleOvertakes(w http.ResponseWriter, r *http.Request) {
http.Error(w, "session_key required", http.StatusBadRequest)
return
}
overtakes, err := s.client.GetOvertakesForSession(sessionKey)
client := s.client.Scoped()
overtakes, err := client.GetOvertakesForSession(sessionKey)
if err != nil {
writeError(w, err, http.StatusInternalServerError, s.client.LastResponseWasStale())
writeError(w, err, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
markOpenF1Response(w, client)
writeJSON(w, overtakes)
}
@@ -524,11 +577,13 @@ func (s *Server) handleTeamRadio(w http.ResponseWriter, r *http.Request) {
http.Error(w, "driver_number required", http.StatusBadRequest)
return
}
radios, err := s.client.GetTeamRadio(sessionKey, driverNumber)
client := s.client.Scoped()
radios, err := client.GetTeamRadio(sessionKey, driverNumber)
if err != nil {
writeError(w, err, http.StatusInternalServerError, s.client.LastResponseWasStale())
writeError(w, err, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
markOpenF1Response(w, client)
writeJSON(w, radios)
}
@@ -547,36 +602,42 @@ func (s *Server) handleChampionshipDrivers(w http.ResponseWriter, r *http.Reques
if year == 0 {
year = time.Now().Year()
}
champ, err := s.client.GetDriverChampionshipForYear(year)
client := s.client.Scoped()
champ, err := client.GetDriverChampionshipForYear(year)
if err != nil {
writeError(w, err, http.StatusInternalServerError, s.client.LastResponseWasStale())
writeError(w, err, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
if len(champ) == 0 {
markOpenF1Availability(w, client, "limited")
writeJSON(w, []any{})
return
}
drivers, _ := s.client.GetDriversForSession(champ[0].SessionKey)
drivers, driversErr := client.GetDriversForSession(champ[0].SessionKey)
driverMap := buildDriverMapFirst(drivers)
incomplete := driversErr != nil
enriched := make([]champDriverWithInfo, 0, len(champ))
for _, c := range champ {
e := champDriverWithInfo{ChampionshipDriver: c}
d, ok := s.championshipDriverInfo(c.SessionKey, c.DriverNumber, driverMap)
if ok {
d, ok := championshipDriverInfo(client, c.SessionKey, c.DriverNumber, driverMap)
if ok && hasDriverPresentation(d) {
e.NameAcronym = d.NameAcronym
e.FullName = d.FullName
e.TeamName = d.TeamName
e.TeamColour = d.TeamColour
} else {
incomplete = true
}
enriched = append(enriched, e)
}
markOpenF1AggregateResponse(w, client, incomplete)
writeJSON(w, enriched)
}
func (s *Server) championshipDriverInfo(sessionKey, driverNumber int, fallback map[int]models.Driver) (models.Driver, bool) {
if d, err := s.client.GetDriver(sessionKey, driverNumber); err == nil && d != nil {
func championshipDriverInfo(client *api.OpenF1Client, sessionKey, driverNumber int, fallback map[int]models.Driver) (models.Driver, bool) {
if d, err := client.GetDriver(sessionKey, driverNumber); err == nil && d != nil {
return *d, true
}
d, ok := fallback[driverNumber]
@@ -590,11 +651,17 @@ func (s *Server) handleChampionshipTeams(w http.ResponseWriter, r *http.Request)
if year == 0 {
year = time.Now().Year()
}
teams, err := s.client.GetTeamChampionshipForYear(year)
client := s.client.Scoped()
teams, err := client.GetTeamChampionshipForYear(year)
if err != nil {
writeError(w, err, http.StatusInternalServerError, s.client.LastResponseWasStale())
writeError(w, err, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
if len(teams) == 0 {
markOpenF1Availability(w, client, "limited")
} else {
markOpenF1Response(w, client)
}
writeJSON(w, teams)
}
@@ -672,6 +739,8 @@ func champHubTTL(year int, now time.Time) time.Duration {
type champHubEntry struct {
resp champHubResponse
source string
freshness string
expires time.Time
}
@@ -693,12 +762,26 @@ func (c *champHubCache) get(year int, now time.Time) (champHubResponse, bool) {
}
func (c *champHubCache) put(year int, resp champHubResponse, now time.Time, ttl time.Duration) {
c.putWithMetadata(year, resp, "local", "local", now, ttl)
}
func (c *champHubCache) getWithMetadata(year int, now time.Time) (champHubResponse, string, string, bool) {
c.mu.Lock()
defer c.mu.Unlock()
e, ok := c.entries[year]
if !ok || now.After(e.expires) {
return champHubResponse{}, "", "", false
}
return e.resp, e.source, e.freshness, true
}
func (c *champHubCache) putWithMetadata(year int, resp champHubResponse, source, freshness string, now time.Time, ttl time.Duration) {
c.mu.Lock()
defer c.mu.Unlock()
if c.entries == nil {
c.entries = map[int]champHubEntry{}
}
c.entries[year] = champHubEntry{resp: resp, expires: now.Add(ttl)}
c.entries[year] = champHubEntry{resp: resp, source: source, freshness: freshness, expires: now.Add(ttl)}
}
// fetchMeetingRaces fans fetch out across meetings with bounded concurrency.
@@ -740,13 +823,6 @@ func (s *Server) handleChampionshipHub(w http.ResponseWriter, r *http.Request) {
}
mode := parseSourceMode(r)
if mode != sourceLocal {
if resp, ok := s.hubCache.get(year, time.Now()); ok {
writeJSON(w, resp)
return
}
}
if mode == sourceLocal || mode == sourceAuto {
resp, ok, err := s.localChampionshipHub(year)
if err != nil {
@@ -754,21 +830,33 @@ func (s *Server) handleChampionshipHub(w http.ResponseWriter, r *http.Request) {
return
}
if ok {
s.hubCache.put(year, resp, time.Now(), champHubTTL(year, time.Now()))
s.hubCache.putWithMetadata(year, resp, "local", "local", time.Now(), champHubTTL(year, time.Now()))
markLocalResponse(w, false)
writeJSON(w, resp)
return
}
if mode == sourceLocal {
markDataResponse(w, "none", "limited")
writeJSON(w, resp)
return
}
}
resp, err := s.openF1ChampionshipHub(year)
if err != nil {
writeError(w, err, http.StatusInternalServerError, s.client.LastResponseWasStale())
// At this point an auto request has no usable domain aggregate and an
// explicit OpenF1 request must not be satisfied by a local cache entry.
if resp, source, freshness, ok := s.hubCache.getWithMetadata(year, time.Now()); ok && source == "openf1" {
markDataResponse(w, source, freshness)
writeJSON(w, resp)
return
}
client := s.client.Scoped()
resp, incomplete, err := s.openF1ChampionshipHub(client, year)
if err != nil {
writeError(w, err, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
markOpenF1AggregateResponse(w, client, incomplete)
writeJSON(w, resp)
}
@@ -797,25 +885,35 @@ func (s *Server) localChampionshipHub(year int) (champHubResponse, bool, error)
return aggregateChampionshipHub(year, races, inputs.Champ, inputs.Teams, inputs.DriverMap), true, nil
}
func (s *Server) openF1ChampionshipHub(year int) (champHubResponse, error) {
champ, err := s.client.GetDriverChampionshipForYear(year)
func (s *Server) openF1ChampionshipHub(client *api.OpenF1Client, year int) (champHubResponse, bool, error) {
champ, err := client.GetDriverChampionshipForYear(year)
if err != nil {
return champHubResponse{}, err
return champHubResponse{}, false, err
}
if len(champ) == 0 {
return champHubResponse{Season: year, RoundLabels: []string{}, Drivers: []champHubDriver{}, Teams: []champHubTeam{}}, nil
return champHubResponse{Season: year, RoundLabels: []string{}, Drivers: []champHubDriver{}, Teams: []champHubTeam{}}, true, nil
}
teams, _ := s.client.GetTeamChampionshipForYear(year)
teams, teamsErr := client.GetTeamChampionshipForYear(year)
driverInfo := map[int]models.Driver{}
if ds, derr := s.client.GetDriversForSession(champ[0].SessionKey); derr == nil {
driversIncomplete := false
if ds, derr := client.GetDriversForSession(champ[0].SessionKey); derr == nil {
driverInfo = buildDriverMapFirst(ds)
} else {
driversIncomplete = true
}
for _, standing := range champ {
if !hasDriverPresentation(driverInfo[standing.DriverNumber]) {
driversIncomplete = true
break
}
}
races, incomplete, err := s.fetchSeasonRaces(year)
races, incomplete, err := fetchSeasonRaces(client, year)
if err != nil {
return champHubResponse{}, err
return champHubResponse{}, false, err
}
incomplete = incomplete || teamsErr != nil || driversIncomplete
resp := aggregateChampionshipHub(year, races, champ, teams, driverInfo)
ttl := champHubTTL(year, time.Now())
@@ -825,16 +923,22 @@ func (s *Server) openF1ChampionshipHub(year int) (champHubResponse, error) {
// so a partial view of the season doesn't stick around for the full TTL.
ttl = champHubIncompleteTTL
}
s.hubCache.put(year, resp, time.Now(), ttl)
return resp, nil
freshness := "fresh"
if client.LastResponseWasStale() {
freshness = "stale"
} else if incomplete {
freshness = "partial"
}
s.hubCache.putWithMetadata(year, resp, "openf1", freshness, time.Now(), ttl)
return resp, incomplete, nil
}
// fetchSeasonRaces returns a season's GP meetings in date order, each bundled
// with its race results and starting grid fetched from OpenF1. incomplete
// reports whether any per-meeting fetch failed, so callers can avoid caching a
// partial view of the season for long.
func (s *Server) fetchSeasonRaces(year int) (races []meetingRace, incomplete bool, err error) {
meetings, err := s.client.GetMeetingsForYear(year)
func fetchSeasonRaces(client *api.OpenF1Client, year int) (races []meetingRace, incomplete bool, err error) {
meetings, err := client.GetMeetingsForYear(year)
if err != nil {
return nil, false, err
}
@@ -842,7 +946,7 @@ func (s *Server) fetchSeasonRaces(year int) (races []meetingRace, incomplete boo
var failed atomic.Bool
races = fetchMeetingRaces(meetings, champHubWorkers, func(m models.Meeting) (meetingRace, bool) {
sessions, serr := s.client.GetSessionsForMeeting(int(m.MeetingKey))
sessions, serr := client.GetSessionsForMeeting(int(m.MeetingKey))
if serr != nil {
failed.Store(true)
return meetingRace{}, false
@@ -855,10 +959,17 @@ func (s *Server) fetchSeasonRaces(year int) (races []meetingRace, incomplete boo
}
}
if raceKey == 0 {
return meetingRace{}, false // not a GP meeting (e.g. pre-season testing)
if isKnownNonChampionshipMeeting(m, sessions) {
return meetingRace{}, false
}
results, rerr := s.client.GetSessionResult(raceKey)
grid, gerr := s.client.GetStartingGrid(raceKey)
failed.Store(true)
// The meeting list does not identify non-championship events. Skipping
// a meeting without a Race may be expected (testing), but the aggregate
// is not proven complete and must be labelled partial.
return meetingRace{}, false
}
results, rerr := client.GetSessionResult(raceKey)
grid, gerr := client.GetStartingGrid(raceKey)
if rerr != nil || gerr != nil {
failed.Store(true)
}
@@ -867,6 +978,29 @@ func (s *Server) fetchSeasonRaces(year int) (races []meetingRace, incomplete boo
return races, failed.Load(), nil
}
func isKnownNonChampionshipMeeting(meeting models.Meeting, sessions []models.Session) bool {
if hasTestingToken(meeting.MeetingName + " " + meeting.MeetingOfficialName) {
return true
}
for _, session := range sessions {
if hasTestingToken(session.SessionName + " " + session.SessionType) {
return true
}
}
return false
}
func hasTestingToken(value string) bool {
for _, token := range strings.FieldsFunc(strings.ToLower(value), func(r rune) bool {
return (r < 'a' || r > 'z') && (r < '0' || r > '9')
}) {
if token == "test" || token == "tests" || token == "testing" {
return true
}
}
return false
}
// aggregateChampionshipHub is the pure aggregation core (no network) so it can be
// unit-tested with synthetic data. races must be ordered ascending by date and
// contain only GP meetings (those with a Race session).
@@ -1077,6 +1211,7 @@ type trackOutlineResponse struct {
}
func (s *Server) handleTrackOutline(w http.ResponseWriter, r *http.Request) {
markLocalResponse(w, false)
year, _ := strconv.Atoi(r.URL.Query().Get("year"))
if year == 0 {
year = time.Now().Year()
@@ -1281,14 +1416,17 @@ func (s *Server) handleStrategy(w http.ResponseWriter, r *http.Request) {
stintsErr error
pitsErr error
resErr error
driversErr error
rcErr error
wg sync.WaitGroup
)
client := s.client.Scoped()
wg.Add(5)
go func() { defer wg.Done(); stints, stintsErr = s.client.GetStintsForSession(sessionKey) }()
go func() { defer wg.Done(); pits, pitsErr = s.client.GetPitStopsForSession(sessionKey) }()
go func() { defer wg.Done(); results, resErr = s.client.GetSessionResult(sessionKey) }()
go func() { defer wg.Done(); drivers, _ = s.client.GetDriversForSession(sessionKey) }()
go func() { defer wg.Done(); rc, _ = s.client.GetRaceControl(sessionKey) }()
go func() { defer wg.Done(); stints, stintsErr = client.GetStintsForSession(sessionKey) }()
go func() { defer wg.Done(); pits, pitsErr = client.GetPitStopsForSession(sessionKey) }()
go func() { defer wg.Done(); results, resErr = client.GetSessionResult(sessionKey) }()
go func() { defer wg.Done(); drivers, driversErr = client.GetDriversForSession(sessionKey) }()
go func() { defer wg.Done(); rc, rcErr = client.GetRaceControl(sessionKey) }()
wg.Wait()
if stintsErr != nil || pitsErr != nil || resErr != nil {
@@ -1299,17 +1437,21 @@ func (s *Server) handleStrategy(w http.ResponseWriter, r *http.Request) {
if e == nil {
e = resErr
}
writeError(w, e, http.StatusInternalServerError, s.client.LastResponseWasStale())
writeError(w, e, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
// Non-race sessions have no stints.
// Empty strategy data may mean a non-race session or a race still settling.
if len(stints) == 0 {
// Without session-type evidence, an empty primary strategy dataset is
// not enough to prove "not applicable" (it may still be settling).
markOpenF1Availability(w, client, "limited")
writeJSON(w, map[string]any{"note": "Not applicable", "drivers": []any{}})
return
}
driverMap := buildDriverMap(drivers)
incomplete := driversErr != nil || rcErr != nil
resultMap := make(map[int]models.SessionResult, len(results))
totalLaps := 0
@@ -1342,6 +1484,9 @@ func (s *Server) handleStrategy(w http.ResponseWriter, r *http.Request) {
stratDrivers := make([]strategyDriver, 0, len(seenDrivers))
for dn := range seenDrivers {
d := driverMap[dn]
if !hasDriverPresentation(d) {
incomplete = true
}
res := resultMap[dn]
sd := strategyDriver{
@@ -1396,6 +1541,7 @@ func (s *Server) handleStrategy(w http.ResponseWriter, r *http.Request) {
return pi < pj
})
markOpenF1AggregateResponse(w, client, incomplete)
writeJSON(w, strategyResponse{
SessionKey: sessionKey,
TotalLaps: totalLaps,
@@ -1495,17 +1641,27 @@ func (s *Server) handleLapsComparison(w http.ResponseWriter, r *http.Request) {
stints []models.Stint
pits []models.Pit
rc []models.RaceControl
lapsErr error
stintsErr error
pitsErr error
rcErr error
wg sync.WaitGroup
)
client := s.client.Scoped()
wg.Add(4)
go func() { defer wg.Done(); allLaps, _ = s.client.GetLapsForSession(sessionKey) }()
go func() { defer wg.Done(); stints, _ = s.client.GetStintsForSession(sessionKey) }()
go func() { defer wg.Done(); pits, _ = s.client.GetPitStopsForSession(sessionKey) }()
go func() { defer wg.Done(); rc, _ = s.client.GetRaceControl(sessionKey) }()
go func() { defer wg.Done(); allLaps, lapsErr = client.GetLapsForSession(sessionKey) }()
go func() { defer wg.Done(); stints, stintsErr = client.GetStintsForSession(sessionKey) }()
go func() { defer wg.Done(); pits, pitsErr = client.GetPitStopsForSession(sessionKey) }()
go func() { defer wg.Done(); rc, rcErr = client.GetRaceControl(sessionKey) }()
wg.Wait()
if lapsErr != nil {
writeError(w, lapsErr, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
allDrivers, _ := s.client.GetDriversForSession(sessionKey)
allDrivers, driversErr := client.GetDriversForSession(sessionKey)
driverMap := buildDriverMap(allDrivers)
incomplete := stintsErr != nil || pitsErr != nil || rcErr != nil || driversErr != nil
// If no filter, default to first 3 unique driver numbers from lap data.
if len(requestedDrivers) == 0 {
@@ -1543,6 +1699,9 @@ func (s *Server) handleLapsComparison(w http.ResponseWriter, r *http.Request) {
compDrivers := make([]comparisonDriver, 0, len(requestedDrivers))
for _, dn := range requestedDrivers {
d := driverMap[dn]
if !hasDriverPresentation(d) {
incomplete = true
}
cd := comparisonDriver{
DriverNumber: dn,
NameAcronym: d.NameAcronym,
@@ -1558,6 +1717,13 @@ func (s *Server) handleLapsComparison(w http.ResponseWriter, r *http.Request) {
compDrivers = append(compDrivers, cd)
}
freshness := "fresh"
if len(allLaps) == 0 {
freshness = "limited"
} else if incomplete {
freshness = "partial"
}
markOpenF1Availability(w, client, freshness)
writeJSON(w, lapsComparisonResponse{
SessionKey: sessionKey,
SCPeriods: extractSCPeriods(rc),

View File

@@ -1,13 +1,136 @@
package web
import (
"fmt"
"net/http"
"net/http/httptest"
"sync/atomic"
"testing"
"time"
"github.com/AmanTahiliani/box-box/internal/api"
"github.com/AmanTahiliani/box-box/internal/models"
)
func championshipTestUpstream(t *testing.T, driversOK, meetingHasRace bool) *httptest.Server {
t.Helper()
completed := time.Now().Add(-time.Hour).UTC().Format(time.RFC3339)
return httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
w.Header().Set("Content-Type", "application/json")
switch r.URL.Path {
case "/v1/sessions":
if r.URL.Query().Get("session_name") == "Race" {
_, _ = fmt.Fprintf(w, `[{"session_key":99,"session_name":"Race","date_end":%q}]`, completed)
return
}
if meetingHasRace {
_, _ = w.Write([]byte(`[{"session_key":101,"meeting_key":1,"session_name":"Race"}]`))
} else {
_, _ = w.Write([]byte(`[{"session_key":100,"meeting_key":1,"session_name":"Practice 1"}]`))
}
case "/v1/championship_drivers":
_, _ = w.Write([]byte(`[{"driver_number":1,"session_key":99,"position_current":1,"points_current":25}]`))
case "/v1/championship_teams":
_, _ = w.Write([]byte(`[{"team_name":"Red Bull","position_current":1,"points_current":25}]`))
case "/v1/drivers":
if !driversOK {
http.Error(w, "identity unavailable", http.StatusBadGateway)
return
}
_, _ = w.Write([]byte(`[{"driver_number":1,"name_acronym":"VER","full_name":"Max Verstappen","team_name":"Red Bull","team_colour":"3671c6"}]`))
case "/v1/meetings":
_, _ = w.Write([]byte(`[{"meeting_key":1,"meeting_name":"Mystery Grand Prix"}]`))
case "/v1/session_result":
_, _ = w.Write([]byte(`[{"driver_number":1,"position":1,"points":25}]`))
case "/v1/starting_grid":
_, _ = w.Write([]byte(`[{"driver_number":1,"position":1}]`))
default:
http.NotFound(w, r)
}
}))
}
func TestOpenF1ChampionshipHubIdentityFailureIsPartialAndCached(t *testing.T) {
upstream := championshipTestUpstream(t, false, true)
defer upstream.Close()
client := api.NewOpenF1Client(upstream.URL, 2*time.Second)
defer client.Close()
server := NewServer(client, 0, nil)
year := time.Now().Year()
_, incomplete, err := server.openF1ChampionshipHub(client.Scoped(), year)
if err != nil {
t.Fatal(err)
}
if !incomplete {
t.Fatal("missing championship driver identity was labelled complete")
}
_, source, freshness, ok := server.hubCache.getWithMetadata(year, time.Now())
if !ok || source != "openf1" || freshness != "partial" {
t.Fatalf("cached metadata = hit %v, %q/%q", ok, source, freshness)
}
}
func TestFetchSeasonRacesMeetingWithoutRaceIsIncomplete(t *testing.T) {
upstream := championshipTestUpstream(t, true, false)
defer upstream.Close()
client := api.NewOpenF1Client(upstream.URL, 2*time.Second)
defer client.Close()
races, incomplete, err := fetchSeasonRaces(client.Scoped(), time.Now().Year())
if err != nil {
t.Fatal(err)
}
if !incomplete || len(races) != 0 {
t.Fatalf("no-Race meeting = races %d, incomplete %v", len(races), incomplete)
}
}
func TestFetchSeasonRacesRecognizedTestingMeetingIsNotIncomplete(t *testing.T) {
upstream := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
switch r.URL.Path {
case "/v1/meetings":
_, _ = w.Write([]byte(`[{"meeting_key":1253,"meeting_name":"Pre-Season Testing"}]`))
case "/v1/sessions":
_, _ = w.Write([]byte(`[{"session_key":1,"meeting_key":1253,"session_name":"Day 1","session_type":"Testing"}]`))
default:
http.NotFound(w, r)
}
}))
defer upstream.Close()
client := api.NewOpenF1Client(upstream.URL, 2*time.Second)
defer client.Close()
races, incomplete, err := fetchSeasonRaces(client.Scoped(), time.Now().Year())
if err != nil {
t.Fatal(err)
}
if incomplete || len(races) != 0 {
t.Fatalf("recognized testing meeting = races %d, incomplete %v", len(races), incomplete)
}
}
func TestKnownNonChampionshipMeetingRequiresTestingToken(t *testing.T) {
if !isKnownNonChampionshipMeeting(models.Meeting{MeetingName: "Pre-Season Testing"}, nil) {
t.Fatal("pre-season testing was not recognized")
}
if isKnownNonChampionshipMeeting(models.Meeting{MeetingName: "Fastest Grand Prix"}, nil) {
t.Fatal("substring inside a normal word was treated as testing")
}
if !isKnownNonChampionshipMeeting(models.Meeting{MeetingName: "Winter Event"}, []models.Session{{SessionType: "Test"}}) {
t.Fatal("explicit Test session was not recognized")
}
}
func TestHandleChampionshipHubSourceLocalWithoutAggregateIsLimited(t *testing.T) {
server := NewServer(nil, 0, nil)
recorder := httptest.NewRecorder()
server.handleChampionshipHub(recorder, httptest.NewRequest(http.MethodGet, "/api/v1/championship/hub?year=2026&source=local", nil))
if recorder.Code != http.StatusOK || recorder.Header().Get(dataSourceHeader) != "none" || recorder.Header().Get(dataFreshnessHeader) != "limited" {
t.Fatalf("empty local championship = %d %q/%q body=%s", recorder.Code, recorder.Header().Get(dataSourceHeader), recorder.Header().Get(dataFreshnessHeader), recorder.Body.String())
}
}
func raceResult(num, pos int, pts float64) models.SessionResult {
return models.SessionResult{DriverNumber: num, Position: pos, Points: pts}
}

View File

@@ -0,0 +1,120 @@
package web
import (
"net/http"
"net/http/httptest"
"testing"
"time"
"github.com/AmanTahiliani/box-box/internal/api"
)
func componentTestServer(t *testing.T, responses map[string]string, failures map[string]bool) *Server {
t.Helper()
upstream := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
if failures[r.URL.Path] {
http.Error(w, "component unavailable", http.StatusBadGateway)
return
}
body, ok := responses[r.URL.Path]
if !ok {
http.NotFound(w, r)
return
}
w.Header().Set("Content-Type", "application/json")
_, _ = w.Write([]byte(body))
}))
t.Cleanup(upstream.Close)
client := api.NewOpenF1Client(upstream.URL, 2*time.Second)
t.Cleanup(func() { _ = client.Close() })
return NewServer(client, 0, nil)
}
func assertAvailabilityHeaders(t *testing.T, recorder *httptest.ResponseRecorder, source, freshness string) {
t.Helper()
if recorder.Code != http.StatusOK || recorder.Header().Get(dataSourceHeader) != source || recorder.Header().Get(dataFreshnessHeader) != freshness {
t.Fatalf("response = status %d, metadata %q/%q, body=%s", recorder.Code, recorder.Header().Get(dataSourceHeader), recorder.Header().Get(dataFreshnessHeader), recorder.Body.String())
}
}
func TestResultsAndGridIdentityFailuresReportPartial(t *testing.T) {
tests := []struct {
name string
path string
body string
run func(*Server, http.ResponseWriter, *http.Request)
}{
{name: "results", path: "/v1/session_result", body: `[{"driver_number":1,"position":1}]`, run: func(s *Server, w http.ResponseWriter, r *http.Request) { s.handleResults(w, r) }},
{name: "grid", path: "/v1/starting_grid", body: `[{"driver_number":1,"position":1}]`, run: func(s *Server, w http.ResponseWriter, r *http.Request) { s.handleGrid(w, r) }},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
server := componentTestServer(t, map[string]string{tt.path: tt.body}, map[string]bool{"/v1/drivers": true})
recorder := httptest.NewRecorder()
tt.run(server, recorder, httptest.NewRequest(http.MethodGet, "/api/v1/"+tt.name+"?session_key=99&source=openf1", nil))
assertAvailabilityHeaders(t, recorder, "openf1", "partial")
})
}
}
func TestStrategyOptionalComponentFailureReportsPartial(t *testing.T) {
server := componentTestServer(t, map[string]string{
"/v1/stints": `[{"driver_number":1,"stint_number":1,"lap_start":1,"lap_end":10,"compound":"MEDIUM"}]`,
"/v1/pit": `[]`,
"/v1/session_result": `[{"driver_number":1,"position":1,"number_of_laps":10}]`,
"/v1/race_control": `[]`,
}, map[string]bool{"/v1/drivers": true})
recorder := httptest.NewRecorder()
server.handleStrategy(recorder, httptest.NewRequest(http.MethodGet, "/api/v1/strategy?session_key=99", nil))
assertAvailabilityHeaders(t, recorder, "openf1", "partial")
}
func TestStrategyEmptyPrimaryDataReportsLimited(t *testing.T) {
server := componentTestServer(t, map[string]string{
"/v1/stints": `[]`,
"/v1/pit": `[]`,
"/v1/session_result": `[{"driver_number":1,"position":1,"number_of_laps":10}]`,
"/v1/drivers": `[{"driver_number":1,"full_name":"Max Verstappen","team_name":"Red Bull","team_colour":"3671c6"}]`,
"/v1/race_control": `[]`,
}, nil)
recorder := httptest.NewRecorder()
server.handleStrategy(recorder, httptest.NewRequest(http.MethodGet, "/api/v1/strategy?session_key=99", nil))
assertAvailabilityHeaders(t, recorder, "openf1", "limited")
}
func TestLapsComparisonDoesNotLabelMissingComponentsFresh(t *testing.T) {
tests := []struct {
name string
laps string
freshness string
}{
{name: "empty primary data", laps: `[]`, freshness: "limited"},
{name: "optional components failed", laps: `[{"driver_number":1,"lap_number":1}]`, freshness: "partial"},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
server := componentTestServer(t, map[string]string{"/v1/laps": tt.laps}, map[string]bool{
"/v1/stints": true,
"/v1/pit": true,
"/v1/race_control": true,
"/v1/drivers": true,
})
recorder := httptest.NewRecorder()
server.handleLapsComparison(recorder, httptest.NewRequest(http.MethodGet, "/api/v1/laps/comparison?session_key=99", nil))
assertAvailabilityHeaders(t, recorder, "openf1", tt.freshness)
})
}
t.Run("primary laps failure is an error", func(t *testing.T) {
server := componentTestServer(t, nil, map[string]bool{
"/v1/laps": true,
"/v1/stints": true,
"/v1/pit": true,
"/v1/race_control": true,
})
recorder := httptest.NewRecorder()
server.handleLapsComparison(recorder, httptest.NewRequest(http.MethodGet, "/api/v1/laps/comparison?session_key=99", nil))
if recorder.Code != http.StatusInternalServerError {
t.Fatalf("status = %d body=%s", recorder.Code, recorder.Body.String())
}
})
}

77
internal/web/context.go Normal file
View File

@@ -0,0 +1,77 @@
package web
import (
"net/http"
"strings"
"github.com/AmanTahiliani/box-box/internal/live"
"github.com/AmanTahiliani/box-box/internal/query"
)
func (s *Server) handleWeekendContext(w http.ResponseWriter, _ *http.Request) {
if !s.hasLocalQuery() {
markDataResponse(w, "none", "limited")
writeJSON(w, query.WeekendContext{TemporalState: query.TemporalNoSeason})
return
}
state := s.hub.State()
evidence := query.LiveEvidence{}
if state.IsLive && state.Data != nil {
evidence = liveEvidence(state.Data, true, false)
} else if state.LastSnapshot != nil && terminalSessionStatus(state.LastSnapshot.SessionStatus) {
evidence = liveEvidence(state.LastSnapshot, false, true)
if state.LastSnapshotAt != nil {
evidence.ObservedAt = *state.LastSnapshotAt
}
}
context, err := s.query.ResolveWeekendContext(evidence)
if err != nil {
writeError(w, err, http.StatusInternalServerError, false)
return
}
if focus := focusedContextSession(context); focus != nil {
markDataResponse(w, focus.Availability.Source, focus.Availability.Freshness)
} else {
markDataResponse(w, "none", "limited")
}
writeJSON(w, context)
}
// focusedContextSession selects the session whose state the Weekend shell is
// presenting. An older terminal/default session must never override an
// upcoming focus session's metadata.
func focusedContextSession(context query.WeekendContext) *query.ContextSession {
if context.ActiveSession != nil {
return context.ActiveSession
}
if context.FocusMeeting == nil {
return nil
}
focusKey := context.FocusMeeting.MeetingKey
for _, ref := range []*query.ContextSession{context.NextSession, context.PreviousCompletedSession, context.DefaultAnalysisSession} {
if ref != nil && ref.Meeting != nil && ref.Meeting.MeetingKey == focusKey {
return ref
}
}
return nil
}
func liveEvidence(data *live.LiveStreamData, active, final bool) query.LiveEvidence {
return query.LiveEvidence{Active: active, Final: final, MeetingName: data.Session.MeetingName, CircuitName: data.Session.CircuitName, SessionName: data.Session.SessionName, SessionType: data.Session.SessionType}
}
func terminalSessionStatus(status string) bool {
normalized := strings.ToLower(strings.Map(func(r rune) rune {
if (r >= 'a' && r <= 'z') || (r >= 'A' && r <= 'Z') {
return r
}
return -1
}, status))
switch normalized {
case "finished", "finalised", "finalized", "ended", "aborted":
return true
default:
return false
}
}

View File

@@ -0,0 +1,196 @@
package web
import (
"encoding/json"
"net/http"
"net/http/httptest"
"path/filepath"
"testing"
"time"
"github.com/AmanTahiliani/box-box/internal/live"
"github.com/AmanTahiliani/box-box/internal/query"
"github.com/AmanTahiliani/box-box/internal/store"
)
func openContextStore(t *testing.T) *store.Store {
t.Helper()
st, err := store.Open(filepath.Join(t.TempDir(), "context.db"))
if err != nil {
t.Fatal(err)
}
t.Cleanup(func() { _ = st.Close() })
return st
}
func seedContextHandler(t *testing.T, st *store.Store) {
t.Helper()
if err := st.UpsertMeeting(store.Meeting{MeetingKey: 1, MeetingName: "British Grand Prix", CircuitShortName: "Silverstone", Year: 2026, DateStart: "2026-07-03T09:00:00Z", DateEnd: "2026-07-05T16:00:00Z"}); err != nil {
t.Fatal(err)
}
if err := st.UpsertSession(store.Session{SessionKey: 11, MeetingKey: 1, SessionName: "Race", SessionType: "Race", DateStart: "2026-07-05T14:00:00Z", DateEnd: "2026-07-05T16:00:00Z"}); err != nil {
t.Fatal(err)
}
}
func TestWeekendContextHandlerWithoutStoreReturnsNoSeason(t *testing.T) {
s := NewServer(nil, 0, nil)
rr := httptest.NewRecorder()
s.handleWeekendContext(rr, httptest.NewRequest(http.MethodGet, "/api/v1/weekend-context", nil))
if rr.Code != http.StatusOK {
t.Fatalf("status = %d", rr.Code)
}
var got query.WeekendContext
if err := json.Unmarshal(rr.Body.Bytes(), &got); err != nil {
t.Fatal(err)
}
if got.TemporalState != query.TemporalNoSeason {
t.Fatalf("state = %s", got.TemporalState)
}
if rr.Header().Get(dataSourceHeader) != "none" || rr.Header().Get(dataFreshnessHeader) != "limited" {
t.Fatalf("missing context metadata = %q/%q", rr.Header().Get(dataSourceHeader), rr.Header().Get(dataFreshnessHeader))
}
}
func TestWeekendContextHandlerEmptyStoreReportsLimited(t *testing.T) {
st := openContextStore(t)
s := NewServer(nil, 0, st)
rr := httptest.NewRecorder()
s.handleWeekendContext(rr, httptest.NewRequest(http.MethodGet, "/api/v1/weekend-context", nil))
if rr.Code != http.StatusOK || rr.Header().Get(dataSourceHeader) != "none" || rr.Header().Get(dataFreshnessHeader) != "limited" {
t.Fatalf("empty context = %d %q/%q body=%s", rr.Code, rr.Header().Get(dataSourceHeader), rr.Header().Get(dataFreshnessHeader), rr.Body.String())
}
}
func TestWeekendContextHandlerUsesLiveHubIdentityWithoutOpenF1(t *testing.T) {
st := openContextStore(t)
seedContextHandler(t, st)
now, _ := time.Parse(time.RFC3339, "2026-07-05T13:55:00Z")
s := NewServer(nil, 0, st) // a nil OpenF1 client makes any REST dependency panic
s.query = query.NewServiceWithClock(st, func() time.Time { return now })
s.hub.applySnapshot(live.LiveStreamData{SessionStatus: "Started", Session: live.LiveSessionMeta{MeetingName: "British Grand Prix", CircuitName: "Silverstone", SessionName: "Race", SessionType: "Race"}}, now)
handler, err := s.routes()
if err != nil {
t.Fatal(err)
}
rr := httptest.NewRecorder()
handler.ServeHTTP(rr, httptest.NewRequest(http.MethodGet, "/api/v1/weekend-context", nil))
if rr.Code != http.StatusOK {
t.Fatalf("status = %d body=%s", rr.Code, rr.Body.String())
}
var got query.WeekendContext
if err := json.Unmarshal(rr.Body.Bytes(), &got); err != nil {
t.Fatal(err)
}
if got.TemporalState != query.TemporalSessionLive || got.ActiveSession == nil || got.ActiveSession.Session.SessionKey != 11 {
t.Fatalf("live context = %+v", got)
}
if got.ActiveSession.Availability.LiveTransport != "connected" || got.ActiveSession.Availability.LiveSession != "active" {
t.Fatalf("availability = %+v", got.ActiveSession.Availability)
}
if got.ActiveSession.Availability.Source != "mixed" || got.ActiveSession.Availability.Freshness != "live" {
t.Fatalf("live source/freshness = %+v", got.ActiveSession.Availability)
}
if rr.Header().Get(dataSourceHeader) != "mixed" || rr.Header().Get(dataFreshnessHeader) != "live" {
t.Fatalf("response source/freshness = %q/%q", rr.Header().Get(dataSourceHeader), rr.Header().Get(dataFreshnessHeader))
}
}
func TestWeekendContextHandlerUsesTerminalArchiveAsCompletionEvidence(t *testing.T) {
st := openContextStore(t)
seedContextHandler(t, st)
now, _ := time.Parse(time.RFC3339, "2026-07-05T16:05:00Z")
s := NewServer(nil, 0, st)
s.query = query.NewServiceWithClock(st, func() time.Time { return now })
s.hub.applySnapshot(live.LiveStreamData{SessionStatus: "Finished", Session: live.LiveSessionMeta{MeetingName: "British Grand Prix", CircuitName: "Silverstone", SessionName: "Race", SessionType: "Race"}}, now)
rr := httptest.NewRecorder()
s.handleWeekendContext(rr, httptest.NewRequest(http.MethodGet, "/api/v1/weekend-context", nil))
var got query.WeekendContext
if err := json.Unmarshal(rr.Body.Bytes(), &got); err != nil {
t.Fatal(err)
}
if got.PreviousCompletedSession == nil || got.PreviousCompletedSession.Availability.Archive != "available" {
t.Fatalf("archive context = %+v", got)
}
if got.PreviousCompletedSession.Availability.Source != "mixed" || got.PreviousCompletedSession.Availability.Freshness != "archive" {
t.Fatalf("archive source/freshness = %+v", got.PreviousCompletedSession.Availability)
}
if rr.Header().Get(dataSourceHeader) != "mixed" || rr.Header().Get(dataFreshnessHeader) != "archive" {
t.Fatalf("archive response source/freshness = %q/%q", rr.Header().Get(dataSourceHeader), rr.Header().Get(dataFreshnessHeader))
}
if got.DefaultAnalysisSession != nil {
t.Fatal("archive-only session must not become local default analysis")
}
}
func TestWeekendContextMetadataFollowsUpcomingFocusNotTerminalPrevious(t *testing.T) {
st := openContextStore(t)
seedContextHandler(t, st)
if err := st.UpsertMeeting(store.Meeting{MeetingKey: 2, MeetingName: "Belgian Grand Prix", CircuitShortName: "Spa", Year: 2026, DateStart: "2026-07-10T09:00:00Z", DateEnd: "2026-07-12T16:00:00Z"}); err != nil {
t.Fatal(err)
}
if err := st.UpsertSession(store.Session{SessionKey: 21, MeetingKey: 2, SessionName: "Practice 1", SessionType: "Practice", DateStart: "2026-07-10T09:00:00Z", DateEnd: "2026-07-10T10:00:00Z"}); err != nil {
t.Fatal(err)
}
now, _ := time.Parse(time.RFC3339, "2026-07-05T16:05:00Z")
s := NewServer(nil, 0, st)
s.query = query.NewServiceWithClock(st, func() time.Time { return now })
s.hub.applySnapshot(live.LiveStreamData{SessionStatus: "Finished", Session: live.LiveSessionMeta{MeetingName: "British Grand Prix", CircuitName: "Silverstone", SessionName: "Race", SessionType: "Race"}}, now)
rr := httptest.NewRecorder()
s.handleWeekendContext(rr, httptest.NewRequest(http.MethodGet, "/api/v1/weekend-context", nil))
var got query.WeekendContext
if err := json.Unmarshal(rr.Body.Bytes(), &got); err != nil {
t.Fatal(err)
}
if got.FocusMeeting == nil || got.FocusMeeting.MeetingKey != 2 || got.NextSession == nil {
t.Fatalf("focus context = %+v", got)
}
if got.PreviousCompletedSession == nil || got.PreviousCompletedSession.Availability.Freshness != "archive" {
t.Fatalf("terminal previous missing = %+v", got.PreviousCompletedSession)
}
if rr.Header().Get(dataSourceHeader) != "local" || rr.Header().Get(dataFreshnessHeader) != "local" {
t.Fatalf("focus metadata was overridden by archive = %q/%q", rr.Header().Get(dataSourceHeader), rr.Header().Get(dataFreshnessHeader))
}
}
func TestTerminalSessionStatus(t *testing.T) {
for _, status := range []string{"Finished", "Finalised", "ENDED", "Aborted"} {
if !terminalSessionStatus(status) {
t.Errorf("%q should be terminal", status)
}
}
for _, status := range []string{"Started", "Resumed", "Inactive", ""} {
if terminalSessionStatus(status) {
t.Errorf("%q should not be terminal", status)
}
}
}
func TestWeekendContextHandlerSerializesRaceHubRefreshDeadline(t *testing.T) {
st := openContextStore(t)
seedContextHandler(t, st)
if err := st.UpsertSessionResult(store.SessionResult{SessionKey: 11, MeetingKey: 1, DriverNumber: 1, Position: 1}); err != nil {
t.Fatal(err)
}
if err := st.UpsertMeeting(store.Meeting{MeetingKey: 2, MeetingName: "Belgian Grand Prix", CircuitShortName: "Spa", Year: 2026, DateStart: "2026-07-17T09:00:00Z", DateEnd: "2026-07-19T16:00:00Z"}); err != nil {
t.Fatal(err)
}
if err := st.UpsertSession(store.Session{SessionKey: 21, MeetingKey: 2, SessionName: "Practice 1", SessionType: "Practice", DateStart: "2026-07-17T09:00:00Z", DateEnd: "2026-07-17T10:00:00Z"}); err != nil {
t.Fatal(err)
}
s := NewServer(nil, 0, st)
s.query = query.NewServiceWithClock(st, func() time.Time {
return time.Date(2026, 7, 17, 8, 0, 0, 0, time.UTC)
})
rr := httptest.NewRecorder()
s.handleWeekendContext(rr, httptest.NewRequest(http.MethodGet, "/api/v1/weekend-context", nil))
var got query.WeekendContext
if err := json.Unmarshal(rr.Body.Bytes(), &got); err != nil {
t.Fatal(err)
}
if !got.RaceHubPreSession || got.RaceHubRefreshAt != "2026-07-17T09:00:00Z" || got.RaceHubDefaultSession == nil || got.RaceHubDefaultSession.Session.SessionKey != 21 {
t.Fatalf("race hub context = %+v", got)
}
}

View File

@@ -1,18 +1,25 @@
package web
import (
"context"
"fmt"
"net/http"
"strconv"
"time"
"github.com/AmanTahiliani/box-box/internal/api"
"github.com/AmanTahiliani/box-box/internal/models"
)
// --- /api/v1/driver/summary ---
// Per-driver season summary: championship standing plus per-round race results,
// aggregated server-side from the same sources as the championship hub. Caching
// relies on the OpenF1 client's HTTP cache TTLs — no extra layer here.
// Per-driver season summary: championship standing plus per-round race results.
// Current-season identity/results are local-first from the domain DB. Optional
// OpenF1 enrichment (headshot / polished identity) is bounded so it cannot hang
// the profile when remote data is slow or unavailable.
// driverEnrichmentTimeout bounds optional remote enrichment so a hung OpenF1
// call never blocks a local-first profile response. Overridable in tests.
var driverEnrichmentTimeout = 2 * time.Second
type driverSummaryRound struct {
MeetingKey int `json:"meeting_key"`
@@ -49,6 +56,11 @@ type driverSummaryResponse struct {
Cumulative []float64 `json:"cumulative"`
RoundLabels []string `json:"round_labels"`
Rounds []driverSummaryRound `json:"rounds"`
// Source is "local" when served from the domain DB, else "openf1".
Source string `json:"source,omitempty"`
// Enrichment is "full" when optional remote identity landed, "limited"
// when it timed out/failed, or "none" when no enrichment was attempted.
Enrichment string `json:"enrichment,omitempty"`
}
func (s *Server) handleDriverSummary(w http.ResponseWriter, r *http.Request) {
@@ -61,12 +73,102 @@ func (s *Server) handleDriverSummary(w http.ResponseWriter, r *http.Request) {
if year == 0 {
year = time.Now().Year()
}
mode := parseSourceMode(r)
// Driver summary is local-first for current-season identity/results. When the
// caller omits ?source=, prefer auto (local then OpenF1) rather than the
// package default of openf1-only.
if r.URL.Query().Get("source") == "" {
mode = sourceAuto
}
client := s.client.Scoped()
champ, err := s.client.GetDriverChampionshipForYear(year)
if err != nil {
writeError(w, err, http.StatusInternalServerError, s.client.LastResponseWasStale())
if mode == sourceLocal || mode == sourceAuto {
resp, sessionKey, ok, lerr := s.localDriverSummary(year, driverNumber)
if lerr != nil {
writeError(w, lerr, http.StatusInternalServerError, false)
return
}
if ok {
if mode != sourceLocal {
tryEnrichDriverSummary(r.Context(), client, &resp, sessionKey)
}
switch resp.Enrichment {
case "full":
markMixedResponse(w, client, false)
case "limited":
markDataResponse(w, "local", "limited")
default:
markLocalResponse(w, false)
}
writeJSON(w, resp)
return
}
if mode == sourceLocal {
http.Error(w, fmt.Sprintf("driver %d not found in %d championship", driverNumber, year), http.StatusNotFound)
return
}
}
resp, incomplete, err := openF1DriverSummary(client, year, driverNumber)
if err != nil {
writeError(w, err, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
if resp == nil {
http.Error(w, fmt.Sprintf("driver %d not found in %d championship", driverNumber, year), http.StatusNotFound)
return
}
markOpenF1AggregateResponse(w, client, incomplete)
writeJSON(w, resp)
}
func (s *Server) localDriverSummary(year, driverNumber int) (driverSummaryResponse, int, bool, error) {
if !s.hasLocalQuery() {
return driverSummaryResponse{}, 0, false, nil
}
inputs, err := s.query.GetChampionshipInputs(year)
if err != nil {
return driverSummaryResponse{}, 0, false, err
}
if len(inputs.Champ) == 0 {
return driverSummaryResponse{}, 0, false, nil
}
races := make([]meetingRace, 0, len(inputs.Races))
for _, race := range inputs.Races {
races = append(races, meetingRace{
Meeting: race.Meeting,
RaceSessionKey: race.RaceSessionKey,
Results: race.Results,
Grid: race.Grid,
})
}
resp, ok := aggregateDriverSummary(year, driverNumber, races, inputs.Champ, inputs.DriverMap)
if !ok {
return driverSummaryResponse{}, 0, false, nil
}
resp.Source = "local"
resp.Enrichment = "none"
sessionKey := 0
for _, c := range inputs.Champ {
if c.DriverNumber == driverNumber && c.SessionKey > 0 {
sessionKey = c.SessionKey
break
}
if sessionKey == 0 && c.SessionKey > 0 {
sessionKey = c.SessionKey
}
}
return resp, sessionKey, true, nil
}
func openF1DriverSummary(client *api.OpenF1Client, year, driverNumber int) (*driverSummaryResponse, bool, error) {
champ, err := client.GetDriverChampionshipForYear(year)
if err != nil {
return nil, false, err
}
var entry *models.ChampionshipDriver
for i := range champ {
if champ[i].DriverNumber == driverNumber {
@@ -75,30 +177,83 @@ func (s *Server) handleDriverSummary(w http.ResponseWriter, r *http.Request) {
}
}
if entry == nil {
http.Error(w, fmt.Sprintf("driver %d not found in %d championship", driverNumber, year), http.StatusNotFound)
return
return nil, false, nil
}
driverInfo := map[int]models.Driver{}
if ds, derr := s.client.GetDriversForSession(champ[0].SessionKey); derr == nil {
sessionKey := champ[0].SessionKey
if ds, derr := client.GetDriversForSession(sessionKey); derr == nil {
driverInfo = buildDriverMapFirst(ds)
}
if d, ok := s.championshipDriverInfo(entry.SessionKey, driverNumber, driverInfo); ok {
driverInfo[driverNumber] = d
d, directErr := client.GetDriver(entry.SessionKey, driverNumber)
if directErr == nil && d != nil {
driverInfo[driverNumber] = *d
} else if fallback, ok := driverInfo[driverNumber]; ok {
driverInfo[driverNumber] = fallback
}
races, _, err := s.fetchSeasonRaces(year)
identityIncomplete := !hasDriverPresentation(driverInfo[driverNumber])
races, racesIncomplete, err := fetchSeasonRaces(client, year)
if err != nil {
writeError(w, err, http.StatusInternalServerError, s.client.LastResponseWasStale())
return
return nil, false, err
}
resp, ok := aggregateDriverSummary(year, driverNumber, races, champ, driverInfo)
if !ok {
http.Error(w, fmt.Sprintf("driver %d not found in %d championship", driverNumber, year), http.StatusNotFound)
return nil, false, nil
}
incomplete := identityIncomplete || racesIncomplete
resp.Source = "openf1"
if identityIncomplete {
resp.Enrichment = "limited"
} else {
resp.Enrichment = "full"
}
return &resp, incomplete, nil
}
func hasDriverPresentation(driver models.Driver) bool {
hasName := driver.FullName != "" || driver.NameAcronym != "" || driver.BroadcastName != ""
return hasName && driver.TeamName != "" && driver.TeamColour != ""
}
// tryEnrichDriverSummary optionally fills headshot / polished identity from
// OpenF1. It never blocks longer than driverEnrichmentTimeout — on timeout or
// failure the local profile remains intact with enrichment=limited.
func tryEnrichDriverSummary(parent context.Context, client *api.OpenF1Client, resp *driverSummaryResponse, sessionKey int) {
if resp == nil || client == nil || sessionKey <= 0 {
if resp != nil && resp.Enrichment == "none" {
// No session to enrich from — leave as none (local identity only).
}
return
}
writeJSON(w, resp)
ctx, cancel := context.WithTimeout(parent, driverEnrichmentTimeout)
defer cancel()
driver, err := client.GetDriverContext(ctx, sessionKey, resp.DriverNumber)
if err != nil || driver == nil {
resp.Enrichment = "limited"
return
}
applyDriverEnrichment(resp, *driver)
resp.Enrichment = "full"
}
func applyDriverEnrichment(resp *driverSummaryResponse, d models.Driver) {
if d.HeadshotURL != "" {
resp.HeadshotURL = d.HeadshotURL
}
if d.FullName != "" {
resp.FullName = d.FullName
}
if d.NameAcronym != "" {
resp.NameAcronym = d.NameAcronym
}
if d.TeamName != "" {
resp.TeamName = d.TeamName
}
if d.TeamColour != "" {
resp.TeamColour = d.TeamColour
}
}
// aggregateDriverSummary is the pure aggregation core (no network) so it can be

View File

@@ -1,11 +1,16 @@
package web
import (
"encoding/json"
"fmt"
"net/http"
"net/http/httptest"
"testing"
"time"
"github.com/AmanTahiliani/box-box/internal/api"
"github.com/AmanTahiliani/box-box/internal/models"
"github.com/AmanTahiliani/box-box/internal/store"
)
func driverSummaryFixtures() ([]meetingRace, []models.ChampionshipDriver, map[int]models.Driver) {
@@ -134,3 +139,234 @@ func TestHandleDriverSummaryBadRequest(t *testing.T) {
}
}
}
func seedDriverSummaryStore(t *testing.T, st *store.Store) {
t.Helper()
meetingKey := 1201
sessionKey := 9901
if err := st.UpsertMeeting(store.Meeting{
MeetingKey: meetingKey,
MeetingName: "Bahrain GP",
CountryCode: "BHR",
CountryName: "Bahrain",
Year: 2025,
DateStart: "2025-03-02",
}); err != nil {
t.Fatalf("UpsertMeeting: %v", err)
}
if err := st.UpsertSession(store.Session{
SessionKey: sessionKey,
MeetingKey: meetingKey,
SessionName: "Race",
SessionType: "Race",
DateStart: "2025-03-02T15:00:00Z",
}); err != nil {
t.Fatalf("UpsertSession: %v", err)
}
if err := st.UpsertDriver(store.Driver{
DriverNumber: 1,
FullName: "Max Verstappen",
NameAcronym: "VER",
TeamName: "Red Bull",
TeamColour: "3671c6",
}); err != nil {
t.Fatalf("UpsertDriver: %v", err)
}
if err := st.UpsertSessionDriver(store.SessionDriver{
SessionKey: sessionKey,
DriverNumber: 1,
MeetingKey: meetingKey,
FullName: "Max Verstappen",
NameAcronym: "VER",
TeamName: "Red Bull",
TeamColour: "3671c6",
}); err != nil {
t.Fatalf("UpsertSessionDriver: %v", err)
}
if err := st.UpsertSessionResult(store.SessionResult{
SessionKey: sessionKey,
DriverNumber: 1,
MeetingKey: meetingKey,
Position: 1,
Points: 25,
}); err != nil {
t.Fatalf("UpsertSessionResult: %v", err)
}
if err := st.UpsertStartingGridEntry(store.StartingGridEntry{
SessionKey: sessionKey,
DriverNumber: 1,
MeetingKey: meetingKey,
Position: 1,
}); err != nil {
t.Fatalf("UpsertStartingGridEntry: %v", err)
}
}
func TestHandleDriverSummaryLocalFirstIgnoresHangingEnrichment(t *testing.T) {
prev := driverEnrichmentTimeout
driverEnrichmentTimeout = 40 * time.Millisecond
t.Cleanup(func() { driverEnrichmentTimeout = prev })
st := openTestStore(t)
seedDriverSummaryStore(t, st)
// Enrichment seam: OpenF1 hangs until released. Local summary must still return.
release := make(chan struct{})
cancelObserved := make(chan struct{})
hang := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
select {
case <-release:
case <-r.Context().Done():
close(cancelObserved)
}
}))
t.Cleanup(func() {
close(release)
hang.Close()
})
client := api.NewOpenF1Client(hang.URL, 15*time.Second)
t.Cleanup(func() { _ = client.Close() })
srv := NewServer(client, 8080, st)
start := time.Now()
req := httptest.NewRequest(http.MethodGet, "/api/v1/driver/summary?year=2025&driver_number=1", nil)
rec := httptest.NewRecorder()
srv.handleDriverSummary(rec, req)
elapsed := time.Since(start)
if rec.Code != http.StatusOK {
t.Fatalf("status = %d body=%s", rec.Code, rec.Body.String())
}
if elapsed > 500*time.Millisecond {
t.Fatalf("handler blocked on enrichment for %v", elapsed)
}
select {
case <-cancelObserved:
case <-time.After(250 * time.Millisecond):
t.Fatal("timed-out enrichment did not cancel its upstream request")
}
var resp driverSummaryResponse
if err := json.NewDecoder(rec.Body).Decode(&resp); err != nil {
t.Fatalf("decode: %v", err)
}
if resp.Source != "local" {
t.Errorf("source = %q, want local", resp.Source)
}
if resp.Enrichment != "limited" {
t.Errorf("enrichment = %q, want limited", resp.Enrichment)
}
if rec.Header().Get(dataSourceHeader) != "local" || rec.Header().Get(dataFreshnessHeader) != "limited" {
t.Errorf("limited metadata = %q/%q", rec.Header().Get(dataSourceHeader), rec.Header().Get(dataFreshnessHeader))
}
if resp.DriverNumber != 1 || resp.NameAcronym != "VER" || resp.Points != 25 {
t.Errorf("local identity/results missing: %+v", resp)
}
}
func TestHandleDriverSummaryLocalFirstWithFailingEnrichment(t *testing.T) {
prev := driverEnrichmentTimeout
driverEnrichmentTimeout = 200 * time.Millisecond
t.Cleanup(func() { driverEnrichmentTimeout = prev })
st := openTestStore(t)
seedDriverSummaryStore(t, st)
fail := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
http.Error(w, "boom", http.StatusBadGateway)
}))
t.Cleanup(fail.Close)
client := api.NewOpenF1Client(fail.URL, 2*time.Second)
t.Cleanup(func() { _ = client.Close() })
srv := NewServer(client, 8080, st)
req := httptest.NewRequest(http.MethodGet, "/api/v1/driver/summary?year=2025&driver_number=1&source=auto", nil)
rec := httptest.NewRecorder()
srv.handleDriverSummary(rec, req)
if rec.Code != http.StatusOK {
t.Fatalf("status = %d body=%s", rec.Code, rec.Body.String())
}
var resp driverSummaryResponse
if err := json.NewDecoder(rec.Body).Decode(&resp); err != nil {
t.Fatalf("decode: %v", err)
}
if resp.Source != "local" {
t.Errorf("source = %q, want local", resp.Source)
}
if resp.Enrichment != "limited" {
t.Errorf("enrichment = %q, want limited", resp.Enrichment)
}
if rec.Header().Get(dataSourceHeader) != "local" || rec.Header().Get(dataFreshnessHeader) != "limited" {
t.Errorf("limited metadata = %q/%q", rec.Header().Get(dataSourceHeader), rec.Header().Get(dataFreshnessHeader))
}
if resp.FullName != "Max Verstappen" {
t.Errorf("full_name = %q, want local identity", resp.FullName)
}
}
func TestHandleDriverSummarySourceLocalOnly(t *testing.T) {
st := openTestStore(t)
seedDriverSummaryStore(t, st)
// Even with a broken OpenF1 client, source=local must succeed from the DB.
fail := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
http.Error(w, "nope", http.StatusInternalServerError)
}))
t.Cleanup(fail.Close)
client := api.NewOpenF1Client(fail.URL, time.Second)
t.Cleanup(func() { _ = client.Close() })
srv := NewServer(client, 8080, st)
req := httptest.NewRequest(http.MethodGet, "/api/v1/driver/summary?year=2025&driver_number=1&source=local", nil)
rec := httptest.NewRecorder()
srv.handleDriverSummary(rec, req)
if rec.Code != http.StatusOK {
t.Fatalf("status = %d body=%s", rec.Code, rec.Body.String())
}
if rec.Header().Get(dataSourceHeader) != "local" || rec.Header().Get(dataFreshnessHeader) != "local" {
t.Fatalf("local metadata = %q/%q", rec.Header().Get(dataSourceHeader), rec.Header().Get(dataFreshnessHeader))
}
}
func TestHandleRemoteDriverSummaryReportsIdentityAndRoundLimitations(t *testing.T) {
tests := []struct {
name string
driversOK bool
meetingHasRace bool
wantEnrichment string
}{
{name: "missing identity", driversOK: false, meetingHasRace: true, wantEnrichment: "limited"},
{name: "missing race round", driversOK: true, meetingHasRace: false, wantEnrichment: "full"},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
upstream := championshipTestUpstream(t, tt.driversOK, tt.meetingHasRace)
defer upstream.Close()
client := api.NewOpenF1Client(upstream.URL, 2*time.Second)
defer client.Close()
server := NewServer(client, 0, nil)
year := time.Now().Year()
recorder := httptest.NewRecorder()
request := httptest.NewRequest(http.MethodGet, fmt.Sprintf("/api/v1/driver/summary?year=%d&driver_number=1&source=openf1", year), nil)
server.handleDriverSummary(recorder, request)
if recorder.Code != http.StatusOK {
t.Fatalf("status = %d body=%s", recorder.Code, recorder.Body.String())
}
var response driverSummaryResponse
if err := json.Unmarshal(recorder.Body.Bytes(), &response); err != nil {
t.Fatal(err)
}
if response.Enrichment != tt.wantEnrichment {
t.Fatalf("enrichment = %q, want %q", response.Enrichment, tt.wantEnrichment)
}
if recorder.Header().Get(dataSourceHeader) != "openf1" || recorder.Header().Get(dataFreshnessHeader) != "partial" {
t.Fatalf("remote limitation metadata = %q/%q", recorder.Header().Get(dataSourceHeader), recorder.Header().Get(dataFreshnessHeader))
}
})
}
}

65
internal/web/freshness.go Normal file
View File

@@ -0,0 +1,65 @@
package web
import (
"net/http"
)
const (
dataSourceHeader = "X-BoxBox-Data-Source"
dataFreshnessHeader = "X-BoxBox-Data-Freshness"
)
type staleResponseReporter interface {
LastResponseWasStale() bool
}
// markOpenF1Response publishes request-scoped success provenance. Callers must
// pass the scoped client used for this response, never Server.client.
func markOpenF1Response(w http.ResponseWriter, client staleResponseReporter) {
markOpenF1AggregateResponse(w, client, false)
}
func markOpenF1AggregateResponse(w http.ResponseWriter, client staleResponseReporter, partial bool) {
freshness := "fresh"
if partial {
freshness = "partial"
}
markOpenF1Availability(w, client, freshness)
}
func markOpenF1Availability(w http.ResponseWriter, client staleResponseReporter, freshness string) {
w.Header().Set(dataSourceHeader, "openf1")
if client != nil && client.LastResponseWasStale() {
w.Header().Set(dataFreshnessHeader, "stale")
return
}
if freshness == "" {
freshness = "fresh"
}
w.Header().Set(dataFreshnessHeader, freshness)
}
func markDataResponse(w http.ResponseWriter, source, freshness string) {
w.Header().Set(dataSourceHeader, source)
w.Header().Set(dataFreshnessHeader, freshness)
}
func markLocalResponse(w http.ResponseWriter, partial bool) {
w.Header().Set(dataSourceHeader, "local")
if partial {
w.Header().Set(dataFreshnessHeader, "partial")
return
}
w.Header().Set(dataFreshnessHeader, "local")
}
func markMixedResponse(w http.ResponseWriter, client staleResponseReporter, partial bool) {
w.Header().Set(dataSourceHeader, "mixed")
if client != nil && client.LastResponseWasStale() {
w.Header().Set(dataFreshnessHeader, "stale")
} else if partial {
w.Header().Set(dataFreshnessHeader, "partial")
} else {
w.Header().Set(dataFreshnessHeader, "local")
}
}

View File

@@ -0,0 +1,86 @@
package web
import (
"database/sql"
"fmt"
"net/http"
"net/http/httptest"
"testing"
"time"
"github.com/AmanTahiliani/box-box/internal/api"
_ "modernc.org/sqlite"
)
type fakeStaleReporter bool
func (f fakeStaleReporter) LastResponseWasStale() bool { return bool(f) }
func TestStaleFreshnessTakesPrecedenceOverPartialAndLimited(t *testing.T) {
for _, fallback := range []string{"partial", "limited"} {
recorder := httptest.NewRecorder()
markOpenF1Availability(recorder, fakeStaleReporter(true), fallback)
if recorder.Header().Get(dataFreshnessHeader) != "stale" {
t.Fatalf("fallback %q overrode stale: %q", fallback, recorder.Header().Get(dataFreshnessHeader))
}
}
}
func TestOpenF1HandlerReportsFreshThenStaleSuccess(t *testing.T) {
year := time.Now().Year()
upstream := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
_, _ = fmt.Fprintf(w, `[{"meeting_key":1,"meeting_name":"British Grand Prix","year":%d}]`, year)
}))
client := api.NewOpenF1Client(upstream.URL, time.Second)
t.Cleanup(func() { _ = client.Close() })
server := NewServer(client, 0, nil)
cacheKey := fmt.Sprintf("%s/v1/meetings?year=%d", upstream.URL, year)
requestURL := fmt.Sprintf("/api/v1/meetings?year=%d&source=openf1", year)
defer func() {
// Keep the shared application cache clean even if this test fails.
db, err := sql.Open("sqlite", api.DefaultCacheDBPath()+"?_busy_timeout=5000")
if err == nil {
_, _ = db.Exec(`DELETE FROM cache WHERE key = ?`, cacheKey)
_ = db.Close()
}
}()
fresh := httptest.NewRecorder()
server.handleMeetings(fresh, httptest.NewRequest(http.MethodGet, requestURL, nil))
if fresh.Code != http.StatusOK || fresh.Header().Get(dataSourceHeader) != "openf1" || fresh.Header().Get(dataFreshnessHeader) != "fresh" {
t.Fatalf("fresh response status/metadata = %d %q/%q body=%s", fresh.Code, fresh.Header().Get(dataSourceHeader), fresh.Header().Get(dataFreshnessHeader), fresh.Body.String())
}
db, err := sql.Open("sqlite", api.DefaultCacheDBPath()+"?_busy_timeout=5000")
if err != nil {
t.Fatal(err)
}
if _, err := db.Exec(`UPDATE cache SET created_at = ? WHERE key = ?`, time.Now().Add(-48*time.Hour).Unix(), cacheKey); err != nil {
_ = db.Close()
t.Fatal(err)
}
_ = db.Close()
upstream.Close()
stale := httptest.NewRecorder()
server.handleMeetings(stale, httptest.NewRequest(http.MethodGet, requestURL, nil))
if stale.Code != http.StatusOK || stale.Header().Get(dataSourceHeader) != "openf1" || stale.Header().Get(dataFreshnessHeader) != "stale" {
t.Fatalf("stale response status/metadata = %d %q/%q body=%s", stale.Code, stale.Header().Get(dataSourceHeader), stale.Header().Get(dataFreshnessHeader), stale.Body.String())
}
}
func TestFreshnessHeadersAreExposedToBrowserClients(t *testing.T) {
handler := withCORS(http.HandlerFunc(func(w http.ResponseWriter, _ *http.Request) {
markDataResponse(w, "local", "partial")
writeJSON(w, map[string]bool{"ok": true})
}))
recorder := httptest.NewRecorder()
handler.ServeHTTP(recorder, httptest.NewRequest(http.MethodGet, "/api/v1/test", nil))
if got := recorder.Header().Get("Access-Control-Expose-Headers"); got != dataSourceHeader+", "+dataFreshnessHeader {
t.Fatalf("exposed headers = %q", got)
}
if recorder.Header().Get(dataSourceHeader) != "local" || recorder.Header().Get(dataFreshnessHeader) != "partial" {
t.Fatalf("data metadata = %q/%q", recorder.Header().Get(dataSourceHeader), recorder.Header().Get(dataFreshnessHeader))
}
}

View File

@@ -364,7 +364,15 @@ func cloneLivePositions(in map[string]live.LivePositionData) map[string]live.Liv
// handleLiveState returns the current live data snapshot as JSON.
func (s *Server) handleLiveState(w http.ResponseWriter, r *http.Request) {
writeJSON(w, s.hub.State())
state := s.hub.State()
freshness := "limited"
if state.IsLive {
freshness = "live"
} else if state.LastSnapshot != nil {
freshness = "archive"
}
markDataResponse(w, "fia", freshness)
writeJSON(w, state)
}
// handleSSEStream is the persistent SSE endpoint for live data.

View File

@@ -9,6 +9,7 @@ import (
)
func (s *Server) handleSeasons(w http.ResponseWriter, r *http.Request) {
markLocalResponse(w, false)
if !s.hasLocalQuery() {
writeJSON(w, []int{})
return
@@ -26,6 +27,7 @@ func (s *Server) handleSeasons(w http.ResponseWriter, r *http.Request) {
}
func (s *Server) handleWeekend(w http.ResponseWriter, r *http.Request) {
markLocalResponse(w, false)
meetingKey, err := strconv.Atoi(r.URL.Query().Get("meeting_key"))
if err != nil || meetingKey == 0 {
http.Error(w, "meeting_key required", http.StatusBadRequest)
@@ -46,5 +48,6 @@ func (s *Server) handleWeekend(w http.ResponseWriter, r *http.Request) {
writeError(w, err, http.StatusInternalServerError, false)
return
}
markLocalResponse(w, weekend.Source == query.ResponseSourcePartial)
writeJSON(w, weekend)
}

View File

@@ -17,6 +17,7 @@ func (s *Server) handleRaceHub(w http.ResponseWriter, r *http.Request) {
}
if !s.hasLocalQuery() {
markDataResponse(w, "none", "limited")
writeJSON(w, emptyRaceHub(sessionKey))
return
}
@@ -26,6 +27,14 @@ func (s *Server) handleRaceHub(w http.ResponseWriter, r *http.Request) {
writeError(w, err, http.StatusInternalServerError, false)
return
}
switch hub.Source {
case query.ResponseSourceNone:
markDataResponse(w, "none", "limited")
case query.ResponseSourcePartial:
markLocalResponse(w, true)
default:
markLocalResponse(w, false)
}
writeJSON(w, hub)
}

View File

@@ -86,11 +86,29 @@ func TestHandleRaceHubWithoutStore(t *testing.T) {
if hub.Source != query.ResponseSourceNone {
t.Fatalf("source = %q, want %q", hub.Source, query.ResponseSourceNone)
}
if rec.Header().Get(dataSourceHeader) != "none" || rec.Header().Get(dataFreshnessHeader) != "limited" {
t.Fatalf("missing hub metadata = %q/%q", rec.Header().Get(dataSourceHeader), rec.Header().Get(dataFreshnessHeader))
}
if hub.Datasets["session"].Status != query.DatasetStatusMissing {
t.Fatalf("session dataset = %+v, want missing", hub.Datasets["session"])
}
}
func TestHandleRaceHubUnknownSessionWithStoreReportsLimited(t *testing.T) {
st := openTestStore(t)
srv := testServer(t, st)
rec := httptest.NewRecorder()
srv.handleRaceHub(rec, httptest.NewRequest(http.MethodGet, "/api/v1/race-hub?session_key=999999", nil))
var hub query.RaceHub
if err := json.Unmarshal(rec.Body.Bytes(), &hub); err != nil {
t.Fatal(err)
}
if hub.Source != query.ResponseSourceNone || rec.Header().Get(dataSourceHeader) != "none" || rec.Header().Get(dataFreshnessHeader) != "limited" {
t.Fatalf("unknown session = source %q, metadata %q/%q", hub.Source, rec.Header().Get(dataSourceHeader), rec.Header().Get(dataFreshnessHeader))
}
}
func TestHandleRaceHubWithLocalData(t *testing.T) {
st := openTestStore(t)
seedRaceHubStore(t, st)
@@ -117,6 +135,12 @@ func TestHandleRaceHubWithLocalData(t *testing.T) {
if hub.Datasets["results"].Status != query.DatasetStatusMissing {
t.Fatalf("results dataset = %+v, want missing", hub.Datasets["results"])
}
if hub.Source != query.ResponseSourcePartial {
t.Fatalf("source = %q, want partial", hub.Source)
}
if rec.Header().Get(dataSourceHeader) != "local" || rec.Header().Get(dataFreshnessHeader) != "partial" {
t.Fatalf("partial hub metadata = %q/%q", rec.Header().Get(dataSourceHeader), rec.Header().Get(dataFreshnessHeader))
}
}
func TestHandleRaceHubIncludesChapters(t *testing.T) {

View File

@@ -61,15 +61,27 @@ func (s *Server) handleReplayFrames(w http.ResponseWriter, r *http.Request) {
}
}
resp, err := assembleReplayFrames(r.Context(), s.client, sessionKey, intervalMS)
client := s.client.Scoped()
resp, incomplete, err := assembleReplayFrames(r.Context(), client, sessionKey, intervalMS)
if err != nil {
writeError(w, err, http.StatusInternalServerError, s.client.LastResponseWasStale())
writeError(w, err, http.StatusInternalServerError, client.LastResponseWasStale())
return
}
markOpenF1Availability(w, client, replayResponseFreshness(resp, incomplete))
writeJSON(w, resp)
}
func assembleReplayFrames(ctx context.Context, client replayDataClient, sessionKey, intervalMS int) (replayFramesResponse, error) {
func replayResponseFreshness(resp replayFramesResponse, incomplete bool) string {
if !incomplete {
return "fresh"
}
if len(resp.Frames) == 0 {
return "limited"
}
return "partial"
}
func assembleReplayFrames(ctx context.Context, client replayDataClient, sessionKey, intervalMS int) (replayFramesResponse, bool, error) {
if intervalMS < defaultReplayIntervalMS {
intervalMS = defaultReplayIntervalMS
}
@@ -82,26 +94,26 @@ func assembleReplayFrames(ctx context.Context, client replayDataClient, sessionK
drivers, err := client.GetDriversForSession(sessionKey)
if err != nil {
return resp, err
return resp, false, err
}
driverNumbers := uniqueDriverNumbers(drivers)
if len(driverNumbers) == 0 {
return resp, nil
return resp, true, nil
}
series, err := fetchReplayLocationSeries(ctx, client, sessionKey, driverNumbers)
if err != nil && len(series) == 0 {
return resp, err
return resp, false, err
}
start, ok := earliestReplayLocationTime(series)
if !ok {
return resp, nil
return resp, true, nil
}
resp.StartTime = start.Format(time.RFC3339Nano)
resp.Frames = snapReplayFrames(series, start, intervalMS)
return resp, nil
return resp, err != nil || len(series) < len(driverNumbers) || len(resp.Frames) == 0, nil
}
func uniqueDriverNumbers(drivers []models.Driver) []int {

View File

@@ -3,6 +3,7 @@ package web
import (
"context"
"encoding/json"
"errors"
"net/http"
"net/http/httptest"
"sync"
@@ -16,6 +17,7 @@ type fakeReplayClient struct {
drivers []models.Driver
locs map[int][]models.Location
err error
locErrs map[int]error
mu sync.Mutex
inFlight int
@@ -46,7 +48,38 @@ func (f *fakeReplayClient) GetLocation(sessionKey, driverNumber int) ([]models.L
f.inFlight--
f.mu.Unlock()
return f.locs[driverNumber], nil
return f.locs[driverNumber], f.locErrs[driverNumber]
}
func TestAssembleReplayFramesReportsPartialDriverSeries(t *testing.T) {
start := time.Date(2025, 5, 25, 13, 0, 0, 0, time.UTC)
client := &fakeReplayClient{
drivers: []models.Driver{{DriverNumber: 1}, {DriverNumber: 4}},
locs: map[int][]models.Location{
1: {{Date: start.Format(time.RFC3339Nano), X: 1, Y: 2}},
},
locErrs: map[int]error{4: errors.New("location unavailable")},
}
resp, incomplete, err := assembleReplayFrames(context.Background(), client, 99, defaultReplayIntervalMS)
if err != nil {
t.Fatalf("partial replay should remain usable: %v", err)
}
if !incomplete || len(resp.Frames) != 1 {
t.Fatalf("partial replay = incomplete %v, frames %+v", incomplete, resp.Frames)
}
if got := replayResponseFreshness(resp, incomplete); got != "partial" {
t.Fatalf("partial replay freshness = %q", got)
}
}
func TestAssembleReplayFramesEmptyDriverSetIsLimited(t *testing.T) {
resp, incomplete, err := assembleReplayFrames(context.Background(), &fakeReplayClient{}, 99, defaultReplayIntervalMS)
if err != nil {
t.Fatal(err)
}
if !incomplete || replayResponseFreshness(resp, incomplete) != "limited" {
t.Fatalf("empty replay = incomplete %v, freshness %q", incomplete, replayResponseFreshness(resp, incomplete))
}
}
func TestAssembleReplayFramesSnapsNearestSamplesAndOmitsEmptyDrivers(t *testing.T) {
@@ -70,10 +103,16 @@ func TestAssembleReplayFramesSnapsNearestSamplesAndOmitsEmptyDrivers(t *testing.
},
}
resp, err := assembleReplayFrames(context.Background(), client, 99, 5000)
resp, incomplete, err := assembleReplayFrames(context.Background(), client, 99, 5000)
if err != nil {
t.Fatalf("assembleReplayFrames() error = %v", err)
}
if !incomplete {
t.Fatal("empty entrant location series was labelled complete")
}
if got := replayResponseFreshness(resp, incomplete); got != "partial" {
t.Fatalf("empty entrant freshness = %q", got)
}
if resp.SessionKey != 99 || resp.Interval != 5000 {
t.Fatalf("response metadata = %+v", resp)
}
@@ -112,7 +151,7 @@ func TestAssembleReplayFramesCapsFrameCount(t *testing.T) {
locs: map[int][]models.Location{1: locs},
}
resp, err := assembleReplayFrames(context.Background(), client, 99, defaultReplayIntervalMS)
resp, _, err := assembleReplayFrames(context.Background(), client, 99, defaultReplayIntervalMS)
if err != nil {
t.Fatalf("assembleReplayFrames() error = %v", err)
}
@@ -139,7 +178,7 @@ func TestAssembleReplayFramesBoundsLocationFanOut(t *testing.T) {
delay: 5 * time.Millisecond,
}
if _, err := assembleReplayFrames(context.Background(), client, 99, defaultReplayIntervalMS); err != nil {
if _, _, err := assembleReplayFrames(context.Background(), client, 99, defaultReplayIntervalMS); err != nil {
t.Fatalf("assembleReplayFrames() error = %v", err)
}
if client.maxInFlight > replayFetchConcurrency {
@@ -167,7 +206,7 @@ func TestHandleReplayFramesValidatesParamsAndFloorsInterval(t *testing.T) {
client := &fakeReplayClient{drivers: []models.Driver{{DriverNumber: 1}}, locs: map[int][]models.Location{
1: {{Date: time.Date(2025, 5, 25, 13, 0, 0, 0, time.UTC).Format(time.RFC3339Nano), X: 1, Y: 2}},
}}
resp, err := assembleReplayFrames(context.Background(), client, 99, 1000)
resp, _, err := assembleReplayFrames(context.Background(), client, 99, 1000)
if err != nil {
t.Fatalf("assembleReplayFrames() error = %v", err)
}

View File

@@ -62,6 +62,7 @@ func (s *Server) routes() (http.Handler, error) {
// REST API — /api/v1/laps/comparison must be registered before /api/v1/laps
// because Go's ServeMux uses longest-prefix matching.
mux.HandleFunc("/api/v1/weekend-context", s.handleWeekendContext)
mux.HandleFunc("/api/v1/race-hub", s.handleRaceHub)
mux.HandleFunc("/api/v1/seasons", s.handleSeasons)
mux.HandleFunc("/api/v1/weekend", s.handleWeekend)
@@ -158,6 +159,7 @@ func withCORS(next http.Handler) http.Handler {
w.Header().Set("Access-Control-Allow-Origin", "*")
w.Header().Set("Access-Control-Allow-Methods", "GET, OPTIONS")
w.Header().Set("Access-Control-Allow-Headers", "Content-Type")
w.Header().Set("Access-Control-Expose-Headers", dataSourceHeader+", "+dataFreshnessHeader)
if r.Method == http.MethodOptions {
w.WriteHeader(http.StatusNoContent)
return

View File

@@ -2,6 +2,42 @@ import { test, expect } from '@playwright/test'
const FULL_SESSION = 9472
const CORE_ONLY_SESSION = 9000
const CONTEXT_MEETING = {
meeting_key: 1229,
meeting_name: 'Monaco',
country_code: 'MON',
}
const CONTEXT_AVAILABILITY = {
source: 'local', schedule: 'available', live_transport: 'unknown', live_session: 'inactive',
archive: 'unavailable', local_analysis: 'complete', freshness: 'local', limitations: [],
}
function completedContext(refreshAt?: string) {
return {
temporal_state: 'between_weekends',
race_hub_default_session: {
session: { session_key: FULL_SESSION }, meeting: CONTEXT_MEETING, availability: CONTEXT_AVAILABILITY,
},
race_hub_pre_session: false,
race_hub_refresh_at: refreshAt,
}
}
function pendingContext(refreshAt: string) {
return {
temporal_state: 'pre_session',
race_hub_default_session: {
session: {
session_key: 9473, meeting_key: 1229, session_name: 'Practice 1', session_type: 'Practice',
date_start: '2030-01-01T00:00:01Z', date_end: '2030-01-01T01:00:01Z', gmt_offset: '00:00:00',
},
meeting: CONTEXT_MEETING,
availability: { ...CONTEXT_AVAILABILITY, local_analysis: 'not_applicable' },
},
race_hub_pre_session: true,
race_hub_refresh_at: refreshAt,
}
}
test.describe('Race Hub Weekend Workspace', () => {
test('lands on the Overview tab with workspace identity', async ({ page }) => {
@@ -102,9 +138,87 @@ test.describe('Race Hub Weekend Workspace', () => {
)
})
test('bare /race-hub redirects to the focus session', async ({ page }) => {
test('bare /race-hub shows server-selected completed analysis without changing the URL', async ({ page }) => {
await page.route('**/api/v1/weekend-context', (route) =>
route.fulfill({ contentType: 'application/json', body: JSON.stringify(completedContext()) }),
)
await page.goto('/race-hub')
await expect(page).toHaveURL(/session_key=\d+/)
await expect(page).toHaveURL(/\/race-hub$/)
await expect(page.getByTestId('race-hub')).toBeVisible()
})
test('bare /race-hub hands off to pending pre-session state at the refresh deadline', async ({ page }) => {
await page.clock.install({ time: new Date('2030-01-01T00:00:00Z') })
let requests = 0
const raceHubRequests: number[] = []
page.on('request', (request) => {
const url = new URL(request.url())
if (url.pathname === '/api/v1/race-hub') {
raceHubRequests.push(Number(url.searchParams.get('session_key')))
}
})
await page.route('**/api/v1/weekend-context', (route) => {
requests += 1
const body = requests === 1
? completedContext('2030-01-01T00:00:01Z')
: pendingContext('2030-01-01T00:00:16Z')
return route.fulfill({ contentType: 'application/json', body: JSON.stringify(body) })
})
await page.goto('/race-hub')
await expect(page.getByTestId('race-hub')).toBeVisible()
await page.clock.fastForward(1_000)
await expect(page.getByTestId('race-hub-pre-session')).toBeVisible()
await expect(page).toHaveURL(/\/race-hub$/)
expect(raceHubRequests).toContain(FULL_SESSION)
expect(raceHubRequests).not.toContain(9473)
})
test('pre-session state opens the weekend switcher and navigates to an explicit session', async ({ page }) => {
await page.route('**/api/v1/weekend-context', (route) =>
route.fulfill({
contentType: 'application/json',
body: JSON.stringify(pendingContext('2030-01-01T00:00:16Z')),
}),
)
await page.goto('/race-hub')
await expect(page.getByTestId('race-hub-pre-session')).toBeVisible()
const switchWeekend = page.getByTestId('rh-switch-weekend')
await expect(switchWeekend).toHaveAttribute('aria-expanded', 'false')
await switchWeekend.click()
await expect(page.getByTestId('rh-switcher')).toBeVisible()
await expect(switchWeekend).toHaveAttribute('aria-expanded', 'true')
await page.getByTestId(`rh-switcher-session-${FULL_SESSION}`).click()
await expect(page).toHaveURL(new RegExp(`/race-hub\\?session_key=${FULL_SESSION}`))
await expect(page.getByTestId('race-hub')).toBeVisible()
})
test('bare /race-hub recovers when no completed local analysis exists', async ({ page }) => {
await page.route('**/api/v1/weekend-context', (route) =>
route.fulfill({
contentType: 'application/json',
body: JSON.stringify({ temporal_state: 'between_weekends', race_hub_pre_session: false }),
}),
)
await page.goto('/race-hub')
await expect(page.getByTestId('race-hub-empty')).toContainText('No completed local analysis yet')
})
test('an explicit session URL remains stable when canonical context would refresh', async ({ page }) => {
let contextRequested = false
await page.route('**/api/v1/weekend-context', (route) => {
contextRequested = true
return route.fulfill({ contentType: 'application/json', body: JSON.stringify(pendingContext('2030-01-01T00:00:01Z')) })
})
await page.goto(`/race-hub?session_key=${FULL_SESSION}`)
await expect(page.getByTestId('race-hub')).toBeVisible()
await expect(page).toHaveURL(new RegExp(`session_key=${FULL_SESSION}`))
expect(contextRequested).toBe(false)
})
})