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box-box/frontend/src/components/RaceStoryCanvas.tsx

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import { useEffect, useMemo, useRef, useState } from 'react'
import { useQuery } from '@tanstack/react-query'
import { LineChart } from 'lucide-react'
import type { Driver, EnrichedResult, EnrichedGrid, PositionSample, Lap, Meeting, Session, Chapter } from '../types'
import { fetchReplayFrames, fetchTrackOutline } from '../api'
import { ReplayTrackMap } from './ReplayTrackMap'
import { ChapterStrip } from './ChapterStrip'
import { EmptyStateCard } from './EmptyStateCard'
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import { gridDelta, gridDeltaClass, formatDuration, formatGap } from '../utils'
import {
chapterBandFill,
chapterEndScrub,
chapterStartScrub,
chapterTourDurations,
deCollideYPositions,
decimatedPositionLabels,
} from '../lib/chapters'
import { isReplayMapAvailable } from '../lib/replayMap'
import '../styles/race-story.css'
const CHAPTER_TOUR_MS = 90_000
const CHART_W = 640
const CHART_H = 180
const CHART_PL = 40
const CHART_PR = 48
const CHART_PT = 8
const CHART_PB = 20
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interface ChartTiming {
tMin: number
tMax: number
tRange: number
}
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interface Props {
data: {
results: EnrichedResult[]
starting_grid: EnrichedGrid[]
positions: PositionSample[]
laps: Lap[]
datasets: Record<string, any>
race_control?: any[]
pit_stops?: any[]
session?: Session
meeting?: Meeting
drivers?: Driver[]
chapters?: Chapter[]
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}
}
/**
* Position samples are recorded for the entire session, including the pre-race
* grid period. Use the winning driver's laps to define the race window so
* that the x-axis starts at lights-out rather than at the earliest sample.
*/
function raceChartTiming(
positions: PositionSample[],
laps: Lap[],
results: EnrichedResult[],
): ChartTiming | null {
const positionTimes = positions
.map((position) => new Date(position.date).getTime())
.filter(Number.isFinite)
if (positionTimes.length === 0) return null
const fallbackMin = Math.min(...positionTimes)
const fallbackMax = Math.max(...positionTimes)
const fallback = {
tMin: fallbackMin,
tMax: fallbackMax,
tRange: Math.max(fallbackMax - fallbackMin, 1),
}
const winner = results.find((result) => result.position === 1)
if (!winner) return fallback
const winnerLaps = laps
.filter((lap) => lap.driver_number === winner.driver_number && lap.lap_number > 0)
.map((lap) => ({ ...lap, start: new Date(lap.date_start).getTime() }))
.filter((lap) => Number.isFinite(lap.start))
.sort((a, b) => a.lap_number - b.lap_number)
if (winnerLaps.length === 0) return fallback
const firstLap = winnerLaps[0]
const lastLap = winnerLaps[winnerLaps.length - 1]
const finalLapDuration = lastLap.lap_duration ?? 0
const tMax = lastLap.start + (finalLapDuration > 0 ? finalLapDuration * 1000 : 0)
if (tMax <= firstLap.start) return fallback
return { tMin: firstLap.start, tMax, tRange: tMax - firstLap.start }
}
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export function RaceStoryCanvas({ data }: Props) {
const {
results,
starting_grid: grid,
positions,
datasets,
race_control = [],
pit_stops = [],
laps = [],
session,
meeting,
drivers = [],
chapters = [],
} = data
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const hasPositions = datasets['positions']?.status === 'available'
const [scrubTime, setScrubTime] = useState<number | null>(null)
const [hoverDriver, setHoverDriver] = useState<number | null>(null)
const [mapOpen, setMapOpen] = useState(false)
const [isPlaying, setIsPlaying] = useState(false)
const [playbackSpeed, setPlaybackSpeed] = useState(10)
const [chapterTourActive, setChapterTourActive] = useState(false)
const [tourChapterIndex, setTourChapterIndex] = useState<number | null>(null)
const [selectedChapterIndex, setSelectedChapterIndex] = useState<number | null>(null)
const svgRef = useRef<SVGSVGElement>(null)
const tourRef = useRef({ chapterIndex: 0, startedAt: 0, durationMs: 0, startScrub: 0, endScrub: 0 })
const chartTiming = useMemo(() => raceChartTiming(positions, laps, results), [laps, positions, results])
const hasChartData = hasPositions && chartTiming !== null
const circuitKey = session?.circuit_key ?? meeting?.circuit_key ?? 0
const outlineYear = meeting?.year ?? (session?.date_start ? new Date(session.date_start).getFullYear() : 0)
const canProbeMap = Boolean(session?.session_key) && circuitKey > 0 && outlineYear > 0
const replayQuery = useQuery({
queryKey: ['replay-frames', session?.session_key, 5000],
queryFn: () => fetchReplayFrames(session!.session_key, 5000),
enabled: canProbeMap,
})
const outlineQuery = useQuery({
queryKey: ['track-outline', circuitKey, outlineYear],
queryFn: () => fetchTrackOutline(circuitKey, outlineYear),
enabled: canProbeMap,
})
const mapProbeSettled = !canProbeMap || (!replayQuery.isLoading && !outlineQuery.isLoading)
const mapAvailable = useMemo(
() =>
canProbeMap &&
isReplayMapAvailable(
replayQuery.data,
outlineQuery.data,
replayQuery.isError || outlineQuery.isError,
),
[canProbeMap, outlineQuery.data, outlineQuery.isError, replayQuery.data, replayQuery.isError],
)
const showMapPanel = mapOpen && mapAvailable
useEffect(() => {
if (!mapAvailable && mapOpen) {
setMapOpen(false)
}
}, [mapAvailable, mapOpen])
useEffect(() => {
if (!isPlaying || !chartTiming) return
let frame = 0
let last = performance.now()
const tick = (now: number) => {
const delta = now - last
last = now
setScrubTime((current) => {
const next = Math.min(1, (current ?? 0) + (delta * playbackSpeed) / chartTiming.tRange)
if (next >= 1) {
setIsPlaying(false)
}
return next
})
frame = requestAnimationFrame(tick)
}
frame = requestAnimationFrame(tick)
return () => cancelAnimationFrame(frame)
}, [chartTiming, isPlaying, playbackSpeed])
const stopChapterTour = () => {
setChapterTourActive(false)
setTourChapterIndex(null)
}
const jumpToChapter = (index: number, scrub: number) => {
setIsPlaying(false)
stopChapterTour()
setSelectedChapterIndex(index)
setScrubTime(scrub)
}
const clearChapterSelection = () => {
setSelectedChapterIndex(null)
}
const toggleChapterTour = () => {
if (chapterTourActive) {
stopChapterTour()
return
}
if (!chartTiming || chapters.length === 0) return
setIsPlaying(false)
setSelectedChapterIndex(null)
setChapterTourActive(true)
setTourChapterIndex(0)
const startScrub = chapterStartScrub(chapters[0], chartTiming.tMin, chartTiming.tRange) ?? 0
setScrubTime(startScrub)
const durations = chapterTourDurations(chapters, CHAPTER_TOUR_MS)
tourRef.current = {
chapterIndex: 0,
startedAt: performance.now(),
durationMs: durations[0] ?? CHAPTER_TOUR_MS / chapters.length,
startScrub,
endScrub: chapterEndScrub(chapters[0], chartTiming.tMin, chartTiming.tRange) ?? startScrub,
}
}
useEffect(() => {
if (!chapterTourActive || !chartTiming || chapters.length === 0) return
let frame = 0
const tick = (now: number) => {
const state = tourRef.current
const elapsed = now - state.startedAt
const progress = Math.min(1, elapsed / Math.max(state.durationMs, 1))
const scrub = state.startScrub + (state.endScrub - state.startScrub) * progress
setScrubTime(scrub)
setTourChapterIndex(state.chapterIndex)
if (progress >= 1) {
const nextIndex = state.chapterIndex + 1
if (nextIndex >= chapters.length) {
stopChapterTour()
return
}
const durations = chapterTourDurations(chapters, CHAPTER_TOUR_MS)
const startScrub = chapterStartScrub(chapters[nextIndex], chartTiming.tMin, chartTiming.tRange) ?? 0
const endScrub = chapterEndScrub(chapters[nextIndex], chartTiming.tMin, chartTiming.tRange) ?? startScrub
tourRef.current = {
chapterIndex: nextIndex,
startedAt: now,
durationMs: durations[nextIndex] ?? CHAPTER_TOUR_MS / chapters.length,
startScrub,
endScrub,
}
}
frame = requestAnimationFrame(tick)
}
frame = requestAnimationFrame(tick)
return () => cancelAnimationFrame(frame)
}, [chapterTourActive, chartTiming, chapters])
useEffect(() => {
if (!chapterTourActive) return
const onKeyDown = (event: KeyboardEvent) => {
if (event.key === 'Escape') {
stopChapterTour()
}
}
window.addEventListener('keydown', onKeyDown)
return () => window.removeEventListener('keydown', onKeyDown)
}, [chapterTourActive])
const replayTMs = useMemo(() => {
const replay = replayQuery.data
const frames = replay?.frames ?? []
if (frames.length === 0) return 0
const lastFrameT = frames[frames.length - 1].t
const progress = scrubTime ?? 0
if (!chartTiming || !replay?.start_time) {
return Math.max(0, Math.min(lastFrameT, Math.round(progress * lastFrameT)))
}
const replayStart = new Date(replay.start_time).getTime()
const chartTime = chartTiming.tMin + progress * chartTiming.tRange
return Math.max(0, Math.min(lastFrameT, Math.round(chartTime - replayStart)))
}, [chartTiming, replayQuery.data, scrubTime])
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let chartContent = null
let displayResults = results
if (hasChartData && chartTiming) {
const { tMin, tRange } = chartTiming
const normaliseTime = (time: number) => Math.max(0, Math.min(1, (time - tMin) / tRange))
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const byDriver = new Map<number, Array<{ t: number; pos: number }>>()
for (const p of positions) {
const time = new Date(p.date).getTime()
if (!Number.isFinite(time)) continue
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if (!byDriver.has(p.driver_number)) byDriver.set(p.driver_number, [])
byDriver.get(p.driver_number)!.push({
t: normaliseTime(time),
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pos: p.position,
})
}
const dnfSet = new Set(results.filter((r) => r.dnf || r.dns || r.dsq).map((r) => r.driver_number))
for (const [dNum, samples] of byDriver.entries()) {
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samples.sort((a, b) => a.t - b.t)
if (samples.length > 0 && !dnfSet.has(dNum)) {
samples.push({ t: 1, pos: samples[samples.length - 1].pos })
}
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}
const getInterpPos = (samples: { t: number; pos: number }[], t: number) => {
if (!samples || samples.length === 0) return null
if (t <= samples[0].t) return samples[0].pos
if (t >= samples[samples.length - 1].t) return samples[samples.length - 1].pos
for (let i = 0; i < samples.length - 1; i++) {
if (samples[i].t <= t && samples[i + 1].t >= t) {
const dt = samples[i + 1].t - samples[i].t
if (dt === 0) return samples[i].pos
const frac = (t - samples[i].t) / dt
return samples[i].pos + (samples[i + 1].pos - samples[i].pos) * frac
}
}
return null
}
if (scrubTime !== null) {
const currentPos = new Map<number, number>()
for (const [dNum, samples] of byDriver.entries()) {
const pos = getInterpPos(samples, scrubTime)
if (pos !== null) {
currentPos.set(dNum, pos)
}
}
displayResults = [...results].sort((a, b) => {
const posA = currentPos.get(a.driver_number) ?? 999
const posB = currentPos.get(b.driver_number) ?? 999
return posA - posB
})
}
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const maxPos = Math.max(...positions.map((p) => p.position), results.length, 2)
const colorByDriver = new Map(results.map((r) => [r.driver_number, r.team_colour]))
const acronymByDriver = new Map(results.map((r) => [r.driver_number, r.name_acronym]))
const positionLabels = decimatedPositionLabels(maxPos)
const W = CHART_W
const H = CHART_H
const PL = CHART_PL
const PR = CHART_PR
const PT = CHART_PT
const PB = CHART_PB
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const plotW = W - PL - PR
const plotH = H - PT - PB
const toX = (t: number) => PL + t * plotW
const toY = (pos: number) => PT + ((pos - 1) / Math.max(maxPos - 1, 1)) * plotH
const winner = results.find((r) => r.position === 1)
const winnerLaps = winner ? laps.filter((l) => l.driver_number === winner.driver_number) : []
const lapTicks: { lap: number; t: number }[] = []
const lapInterval = winnerLaps.length < 30 ? 5 : 10
for (let i = 0; i < winnerLaps.length; i++) {
const lap = winnerLaps[i]
if (lap.lap_number > 0 && lap.lap_number % lapInterval === 0) {
const lapStart = new Date(lap.date_start).getTime()
const nextLapStart = winnerLaps[i + 1] ? new Date(winnerLaps[i + 1].date_start).getTime() : NaN
const lapEnd = lap.lap_duration && lap.lap_duration > 0
? lapStart + lap.lap_duration * 1000
: nextLapStart
if (Number.isFinite(lapEnd)) lapTicks.push({ lap: lap.lap_number, t: normaliseTime(lapEnd) })
}
}
const scPeriods: { start: number; end: number | null; type: 'SC' | 'VSC' }[] = []
let activeSC: { start: number; type: 'SC' | 'VSC' } | null = null
const rc = [...race_control].sort((a, b) => new Date(a.date).getTime() - new Date(b.date).getTime())
for (const msg of rc) {
const t = new Date(msg.date).getTime()
const m = msg.message?.toUpperCase() || ''
const cat = msg.category?.toUpperCase() || ''
if (m.includes('VIRTUAL SAFETY CAR DEPLOYED') || cat === 'VIRTUALSAFETYCAR') {
if (!activeSC) activeSC = { start: t, type: 'VSC' }
} else if (m.includes('SAFETY CAR DEPLOYED') || cat === 'SAFETYCAR') {
if (!activeSC) activeSC = { start: t, type: 'SC' }
} else if (m.includes('TRACK CLEAR') || m.includes('CLEAR')) {
if (activeSC) {
scPeriods.push({ start: activeSC.start, end: t, type: activeSC.type })
activeSC = null
}
}
}
if (activeSC) {
scPeriods.push({ start: activeSC.start, end: null, type: activeSC.type })
}
const chapterBands = chapters
.map((chapter, index) => {
const startT = chapterStartScrub(chapter, tMin, tRange)
const endT = chapterEndScrub(chapter, tMin, tRange)
if (startT === null) return null
const end = endT ?? startT
return {
key: `${chapter.kind}-${index}`,
start: Math.min(startT, end),
end: Math.max(startT, end),
fill: chapterBandFill(chapter.kind),
}
})
.filter((band): band is NonNullable<typeof band> => band !== null)
const labelCandidates = Array.from(byDriver.entries())
.map(([dNum, samples]) => {
const last = samples[samples.length - 1]
if (!last) return null
return { key: dNum, y: toY(last.pos) }
})
.filter((item): item is { key: number; y: number } => item !== null)
const labelYByDriver = deCollideYPositions(labelCandidates, 12)
const handlePointerMove = (e: React.PointerEvent<SVGRectElement>) => {
setIsPlaying(false)
stopChapterTour()
clearChapterSelection()
if (!svgRef.current) return
const rect = svgRef.current.getBoundingClientRect()
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if (rect.width <= 0) return
// Pointer coordinates are CSS pixels; convert them to the SVG viewBox
// before comparing with the fixed chart margins and plot width.
const x = ((e.clientX - rect.left) / rect.width) * W
const t = Math.max(0, Math.min(1, (x - PL) / plotW))
setScrubTime(t)
}
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chartContent = (
<div
className={`rs-chart-container scroll-x${showMapPanel ? '' : ' rs-chart-container--full'}`}
data-testid="position-chart"
>
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<svg
ref={svgRef}
className="rs-position-chart-svg"
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viewBox={`0 0 ${W} ${H}`}
role="img"
aria-label="Position evolution chart"
>
{chapterBands.map((band) => {
const x1 = toX(Math.max(0, band.start))
const x2 = toX(Math.min(1, band.end))
if (x2 <= PL || x1 >= W - PR) return null
return (
<rect
key={band.key}
x={x1}
y={PT}
width={Math.max(0, x2 - x1)}
height={plotH}
fill={band.fill}
data-testid="chapter-band"
/>
)
})}
{scPeriods.map((sc, i) => {
const startT = (sc.start - tMin) / tRange
const endT = sc.end ? (sc.end - tMin) / tRange : 1
const x1 = toX(Math.max(0, startT))
const x2 = toX(Math.min(1, endT))
if (x2 <= PL || x1 >= W - PR) return null
return (
<rect
key={`sc-${i}`}
x={x1}
y={PT}
width={Math.max(0, x2 - x1)}
height={plotH}
fill={sc.type === 'SC' ? 'rgba(255, 153, 0, 0.15)' : 'rgba(255, 204, 0, 0.1)'}
/>
)
})}
{positionLabels.map((pos) => (
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<g key={pos}>
<line
x1={PL}
x2={W - PR}
y1={toY(pos)}
y2={toY(pos)}
className="rs-chart-grid-line"
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/>
<text
x={PL - 4}
y={toY(pos) + 4}
textAnchor="end"
className="rs-chart-axis-label"
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>
P{pos}
</text>
</g>
))}
{lapTicks.map((tick) => (
<g key={`lap-${tick.lap}`}>
<line
x1={toX(tick.t)}
x2={toX(tick.t)}
y1={H - PB}
y2={H - PB + 4}
className="rs-chart-lap-tick"
/>
<text
x={toX(tick.t)}
y={H - PB + 14}
textAnchor="middle"
className="rs-chart-axis-label"
>
L{tick.lap}
</text>
</g>
))}
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{Array.from(byDriver.entries()).map(([dNum, samples]) => {
const colour = colorByDriver.get(dNum)
const color = colour ? `#${colour}` : '#888'
const pts = samples.map((s) => `${toX(s.t)},${toY(s.pos)}`).join(' ')
const last = samples[samples.length - 1]
const isHovered = hoverDriver === dNum
const isFaded = hoverDriver !== null && !isHovered
const labelY = last ? (labelYByDriver.get(dNum) ?? toY(last.pos)) : 0
const driverPits = pit_stops.filter((p) => p.driver_number === dNum)
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return (
<g
key={dNum}
style={{ opacity: isFaded ? 0.2 : 1, transition: 'opacity 0.2s' }}
onMouseEnter={() => setHoverDriver(dNum)}
onMouseLeave={() => setHoverDriver(null)}
>
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<polyline
points={pts}
fill="none"
stroke={color}
strokeWidth={isHovered ? 3 : 2}
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strokeLinejoin="round"
strokeLinecap="round"
className="rs-driver-line"
pathLength={1}
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/>
{driverPits.map((p, i) => {
const time = new Date(p.date).getTime()
if (!Number.isFinite(time) || time < tMin || time > tMin + tRange) return null
const t = normaliseTime(time)
const pos = getInterpPos(samples, t)
if (pos === null) return null
return (
<circle
key={`pit-${i}`}
cx={toX(t)}
cy={toY(pos)}
r={3}
fill="var(--bg)"
stroke={color}
strokeWidth={2}
className="rs-pit-dot"
/>
)
})}
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{last && (
<text
x={toX(last.t) + 6}
y={labelY + 4}
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fill={color}
fontSize={isHovered ? 11 : 9}
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fontFamily="var(--f-mono)"
fontWeight={700}
style={{ cursor: 'default' }}
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>
{acronymByDriver.get(dNum) ?? dNum}
</text>
)}
</g>
)
})}
{scrubTime !== null && (
<line
x1={toX(scrubTime)}
x2={toX(scrubTime)}
y1={PT}
y2={H - PB}
stroke="var(--text)"
strokeWidth={1}
strokeDasharray="4 2"
className="rs-playhead"
style={{ pointerEvents: 'none' }}
/>
)}
<rect
x={PL}
y={PT}
width={plotW}
height={plotH}
fill="transparent"
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data-testid="position-chart-interaction"
onPointerMove={handlePointerMove}
onPointerLeave={() => {
if (!isPlaying) {
clearChapterSelection()
setScrubTime(null)
}
}}
style={{ cursor: 'crosshair', touchAction: 'none' }}
/>
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</svg>
<div className="rs-segmented-control" aria-label="Race replay controls" data-testid="replay-controls">
<button
type="button"
className={`rs-segment ${isPlaying ? 'active' : ''}`}
onClick={() => {
setScrubTime((current) => current ?? 0)
stopChapterTour()
clearChapterSelection()
setIsPlaying((current) => !current)
}}
aria-pressed={isPlaying}
>
{isPlaying ? 'Pause' : 'Play'}
</button>
<span className="rs-segment-divider" aria-hidden />
{[1, 10, 30].map((speed) => (
<button
key={speed}
type="button"
className={`rs-segment ${playbackSpeed === speed ? 'active' : ''}`}
onClick={() => setPlaybackSpeed(speed)}
aria-pressed={playbackSpeed === speed}
>
{speed}x
</button>
))}
{mapProbeSettled && mapAvailable && (
<>
<span className="rs-segment-divider" aria-hidden />
<button
type="button"
className={`rs-segment ${mapOpen ? 'active' : ''}`}
onClick={() => setMapOpen((current) => !current)}
aria-pressed={mapOpen}
data-testid="replay-map-toggle"
>
Map
</button>
</>
)}
</div>
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</div>
)
}
return (
<div className="race-story-canvas">
{hasChartData && chartTiming && chapters.length > 0 && (
<ChapterStrip
chapters={chapters}
scrubTime={scrubTime}
tMin={chartTiming.tMin}
tRange={chartTiming.tRange}
tourActive={chapterTourActive}
tourChapterIndex={tourChapterIndex}
selectedChapterIndex={selectedChapterIndex}
onChapterClick={jumpToChapter}
onTourToggle={toggleChapterTour}
/>
)}
<div className={`rs-replay-shell${showMapPanel ? ' rs-replay-shell--split' : ''}`}>
<div className="rs-replay-main">
{hasChartData ? (
chartContent
) : (
<EmptyStateCard
icon={LineChart}
title="Lap-by-lap positions not available"
hint={
<>
This session does not have ingested position samples in{' '}
<code>/api/v1/race-hub</code>.
</>
}
testId="race-story-no-positions"
className="race-story-empty-card"
/>
)}
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</div>
{showMapPanel && (
<div className="rs-replay-map-slot" data-testid="replay-map-slot">
<ReplayTrackMap
outline={outlineQuery.data}
replay={replayQuery.data}
tMs={replayTMs}
drivers={drivers}
results={results}
loading={outlineQuery.isLoading || replayQuery.isLoading}
error={outlineQuery.isError || replayQuery.isError}
/>
</div>
)}
</div>
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{displayResults.length > 0 && (
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<div className="rs-field-list">
{displayResults.map((r, i) => {
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const gridPos = grid.find((g) => g.driver_number === r.driver_number)?.position ?? 0
const currentPos = scrubTime !== null ? i + 1 : r.position
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const isWinner = i === 0 && r.position === 1
const pClass =
currentPos === 1 ? 'rs-pos-p1' : currentPos === 2 ? 'rs-pos-p2' : currentPos === 3 ? 'rs-pos-p3' : ''
let currentPoints: number | string = r.points
if (scrubTime !== null) {
const isSprint = data.session?.session_type?.toLowerCase().includes('sprint')
const ptsArray = isSprint ? [8, 7, 6, 5, 4, 3, 2, 1] : [25, 18, 15, 12, 10, 8, 6, 4, 2, 1]
currentPoints = currentPos <= ptsArray.length ? ptsArray[currentPos - 1] : 0
}
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return (
<div
key={r.driver_number}
className={`rs-driver-row ${hoverDriver === r.driver_number ? 'rs-driver-row-hover' : ''}`}
onMouseEnter={() => setHoverDriver(r.driver_number)}
onMouseLeave={() => setHoverDriver(null)}
>
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<div className="rs-driver-left">
<div className={`rs-pos-col ${pClass}`}>{currentPos}</div>
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<div className="rs-driver-cell">
<div
className="rs-driver-color"
style={{ background: r.team_colour ? `#${r.team_colour}` : 'var(--border)' }}
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/>
<div className="rs-driver-identity">
<span className="rs-driver-name">{r.name_acronym || r.driver_number}</span>
<span className="rs-driver-team">{r.team_name}</span>
</div>
</div>
</div>
<div className="rs-driver-right">
<div className="rs-metric">
<span>
<span className={gridDeltaClass(currentPos, gridPos)}>
{gridDelta(currentPos, gridPos)}
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</span>
</span>
<span className="rs-metric-label">Grid</span>
</div>
<div className="rs-metric" style={{ width: '80px', opacity: scrubTime !== null ? 0.3 : 1 }}>
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<span>{isWinner ? formatDuration(r.duration) : formatGap(r.gap_to_leader)}</span>
<span className="rs-metric-label">{isWinner ? 'Time' : 'Gap'}</span>
</div>
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<div className="rs-metric" style={{ width: '40px' }}>
<span style={{ color: Number(currentPoints) > 0 ? 'var(--text)' : 'var(--text-3)' }}>
{currentPoints}
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</span>
<span className="rs-metric-label">Pts</span>
</div>
</div>
</div>
)
})}
</div>
)}
</div>
)
}