mirror of
https://github.com/AmanTahiliani/box-box.git
synced 2026-08-07 19:56:18 -04:00
272 lines
9.1 KiB
TypeScript
272 lines
9.1 KiB
TypeScript
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// Tyre degradation + pit-window estimation for the live timing page.
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// Pure functions only — no React, no side effects — so everything is unit-testable.
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//
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// Lap-time samples are accumulated client-side from successive SSE snapshots
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// (mirroring the gapHistory/battles precedent); nothing here talks to the server.
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import type { LiveTimingRow } from './live'
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import { driverCode } from './live'
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import { parseIntervalSeconds } from './gapHistory'
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/**
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* Rough typical pit-lane time loss (entry + stop + exit vs a flying lap), in
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* seconds. Per-track values are deliberately out of scope for v1.
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*/
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export const PIT_LOSS_SECONDS = 22
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/** Minimum clean laps in the current stint before a slope is trustworthy. */
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export const MIN_CLEAN_LAPS = 4
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/**
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* Laps more than this many seconds off the stint median are treated as
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* outliers (traffic, spins, safety car) and excluded from the fit.
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*/
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export const OUTLIER_DELTA_SECONDS = 5
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/**
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* Slope classification thresholds (seconds per lap):
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* slope <= -DEG_SLOPE_THRESHOLD -> 'improving' (track evolution, fuel burn dominating)
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* slope >= +DEG_SLOPE_THRESHOLD -> 'degrading' (tyre wear dominating)
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* otherwise -> 'stable'
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*/
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export const DEG_SLOPE_THRESHOLD = 0.05
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/** Safety cap so a very long stint cannot grow the buffer unbounded. */
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export const MAX_STINT_SAMPLES = 80
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export type DegTrend = 'improving' | 'stable' | 'degrading'
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export interface StintSample {
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lap: number
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seconds: number
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}
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export interface DriverStintHistory {
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compound: string
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tyreAge: number
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lastLapNumber: number
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lastLapTime: string
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/** The next completed lap is an out-lap (fresh stint) and must be discarded. */
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skipNextLap: boolean
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samples: StintSample[]
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}
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/** Per-driver current-stint lap history, keyed by racing number. */
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export type StintHistoryMap = Record<string, DriverStintHistory>
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export interface StintLapInput {
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racingNumber: string
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lapNumber: number
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lastLapTime: string
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compound: string
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tyreAge: number
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inPit: boolean
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pitOut: boolean
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}
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/**
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* Parse an F1 live-timing lap time string ("1:23.456", "83.456") into seconds.
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* Same conventions as parseIntervalSeconds, but a lap time is never signed and
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* never a lapped/leader marker; zero or negative values are rejected.
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*/
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export function parseLapTimeSeconds(raw: string | null | undefined): number | null {
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const value = parseIntervalSeconds(raw)
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if (value === null || value <= 0) return null
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return value
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}
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export function stintInputFromRow(row: LiveTimingRow): StintLapInput {
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return {
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racingNumber: row.RacingNumber,
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lapNumber: row.Driver.NumberOfLaps || 0,
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lastLapTime: row.Driver.LastLapTime || '',
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compound: row.Tyre?.Compound || '',
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tyreAge: row.Tyre?.Age ?? 0,
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inPit: Boolean(row.Driver.InPit),
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pitOut: Boolean(row.Driver.PitOut),
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}
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}
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/**
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* Record one snapshot's worth of lap samples for each driver's current stint.
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* Returns a new map (input is not mutated); drivers missing from `inputs` are
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* pruned.
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*
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* A lap counts as completed when LastLapTime changes to a new non-empty value
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* (NumberOfLaps can tick before the lap time arrives, so the time string is
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* the trigger; a sample for the same lap number is replaced, not duplicated).
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* The stint buffer resets when the compound changes or the tyre age drops
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* (new set fitted), and laps completed in the pit lane (in-lap), on pit exit
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* (out-lap), or immediately after a reset are excluded.
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*/
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export function recordStintSamples(
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history: StintHistoryMap,
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inputs: ReadonlyArray<StintLapInput>,
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): StintHistoryMap {
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const next: StintHistoryMap = {}
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for (const input of inputs) {
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if (!input.racingNumber) continue
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const prior = history[input.racingNumber]
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if (!prior) {
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next[input.racingNumber] = {
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compound: input.compound,
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tyreAge: input.tyreAge,
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lastLapNumber: input.lapNumber,
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lastLapTime: input.lastLapTime,
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skipNextLap: false,
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samples: [],
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}
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continue
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}
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let samples = prior.samples
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let skipNextLap = prior.skipNextLap
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const compoundChanged = Boolean(input.compound) && Boolean(prior.compound) && input.compound !== prior.compound
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const freshSet = input.tyreAge < prior.tyreAge
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if (compoundChanged || freshSet || input.inPit) {
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// Stint over (or a new one starting): drop the old laps and flag the
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// upcoming out-lap for exclusion.
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samples = []
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skipNextLap = true
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}
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const lapCompleted = Boolean(input.lastLapTime) && input.lastLapTime !== prior.lastLapTime
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if (lapCompleted) {
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const seconds = parseLapTimeSeconds(input.lastLapTime)
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const dirty = input.inPit || input.pitOut || skipNextLap
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if (seconds !== null && !dirty) {
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const last = samples[samples.length - 1]
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if (last && last.lap === input.lapNumber) {
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samples = [...samples.slice(0, -1), { lap: input.lapNumber, seconds }]
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} else {
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samples = [...samples, { lap: input.lapNumber, seconds }]
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if (samples.length > MAX_STINT_SAMPLES) {
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samples = samples.slice(samples.length - MAX_STINT_SAMPLES)
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}
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}
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}
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if (!input.inPit) skipNextLap = false
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}
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next[input.racingNumber] = {
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compound: input.compound || prior.compound,
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tyreAge: input.tyreAge,
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lastLapNumber: input.lapNumber,
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lastLapTime: input.lastLapTime || prior.lastLapTime,
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skipNextLap,
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samples,
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}
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}
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return next
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}
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export interface DegModel {
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/** Least-squares slope of lap time vs lap number, in seconds per lap. */
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slope: number
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trend: DegTrend
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/** Clean (outlier-filtered) samples the fit ran over, in lap order. */
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samples: StintSample[]
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}
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/** Drop laps more than OUTLIER_DELTA_SECONDS off the stint median. */
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export function cleanStintSamples(
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samples: ReadonlyArray<StintSample>,
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maxDelta = OUTLIER_DELTA_SECONDS,
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): StintSample[] {
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if (samples.length === 0) return []
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const sorted = samples.map((sample) => sample.seconds).sort((a, b) => a - b)
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const mid = Math.floor(sorted.length / 2)
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const median = sorted.length % 2 === 1 ? sorted[mid] : (sorted[mid - 1] + sorted[mid]) / 2
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return samples.filter((sample) => Math.abs(sample.seconds - median) <= maxDelta)
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}
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/**
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* Fit a linear degradation model over the stint's clean laps.
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* Returns null with fewer than MIN_CLEAN_LAPS clean samples — the caller
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* should show a "warming up" placeholder rather than a junk slope.
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*/
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export function degradationModel(samples: ReadonlyArray<StintSample>): DegModel | null {
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const clean = cleanStintSamples(samples)
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if (clean.length < MIN_CLEAN_LAPS) return null
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const n = clean.length
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const meanLap = clean.reduce((sum, s) => sum + s.lap, 0) / n
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const meanSec = clean.reduce((sum, s) => sum + s.seconds, 0) / n
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let numerator = 0
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let denominator = 0
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for (const sample of clean) {
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numerator += (sample.lap - meanLap) * (sample.seconds - meanSec)
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denominator += (sample.lap - meanLap) ** 2
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}
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if (denominator === 0) return null
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const slope = numerator / denominator
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const trend: DegTrend =
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slope <= -DEG_SLOPE_THRESHOLD ? 'improving' : slope >= DEG_SLOPE_THRESHOLD ? 'degrading' : 'stable'
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return { slope, trend, samples: clean }
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}
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/** "+0.08s/lap" / "-0.12s/lap" display form. */
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export function formatSlope(slope: number): string {
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const sign = slope >= 0 ? '+' : '−'
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return `${sign}${Math.abs(slope).toFixed(2)}s/lap`
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}
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export interface PitRejoinEstimate {
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rejoinPosition: number
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/** Cars behind that would get past during the stop. */
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positionsLost: number
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/** Driver code directly ahead after rejoining, if any. */
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aheadCode: string | null
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/** Driver code directly behind after rejoining, if any. */
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behindCode: string | null
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}
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/**
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* Estimate where a driver rejoins after a pit stop costing `pitLoss` seconds.
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*
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* Walks the cars behind the driver, accumulating their Interval (gap to car
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* ahead) values: every car whose cumulative gap to the driver is under the
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* pit loss gets past. An unparsable interval (lapped marker like "1L") ends
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* the walk — those cars are at least a lap down and stay behind. Cars in the
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* pits or retired are excluded from the ladder.
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*/
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export function estimatePitRejoin(
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rows: ReadonlyArray<LiveTimingRow>,
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racingNumber: string,
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pitLoss = PIT_LOSS_SECONDS,
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): PitRejoinEstimate | null {
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const ladder = rows
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.filter((row) => row.Position > 0 && !row.Driver.Retired && !row.Driver.InPit)
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.sort((a, b) => a.Position - b.Position)
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const index = ladder.findIndex((row) => row.RacingNumber === racingNumber)
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if (index === -1) return null
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let cumulative = 0
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let positionsLost = 0
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for (let i = index + 1; i < ladder.length; i++) {
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const gap = parseIntervalSeconds(ladder[i].Driver.Interval)
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if (gap === null) break
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cumulative += Math.max(0, gap)
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if (cumulative >= pitLoss) break
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positionsLost += 1
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}
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const ahead = positionsLost > 0 ? ladder[index + positionsLost] : ladder[index - 1]
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const behind = ladder[index + positionsLost + 1]
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return {
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rejoinPosition: ladder[index].Position + positionsLost,
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positionsLost,
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aheadCode: ahead ? driverCode(ahead) : null,
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behindCode: behind ? driverCode(behind) : null,
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}
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}
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