brackt/app/services/probability-updater.ts
Chris Parsons 840212c4f8 feat: implement sports season expected value calculations and probability updates
- Added loader and action functions for managing expected values in sports seasons.
- Implemented UI for recalculating probabilities based on participant results.
- Created a service to update probabilities after results are finalized, including handling finished and unfinished participants.
- Developed tests for the probability updater service to ensure correct functionality.
- Introduced a preview feature to show potential changes before applying updates.
2025-11-21 22:05:50 -08:00

299 lines
8.9 KiB
TypeScript

/**
* Probability Updater Service
*
* Updates probability distributions when real results come in.
*
* Key behaviors:
* - Finished participants: Set to 100% at their placement, 0% elsewhere
* - Unfinished participants: Re-run ICM calculation with remaining participants
* - Handles partial results correctly
*/
import { findParticipantResultsBySportsSeasonId } from "~/models/participant-result";
import {
getAllParticipantEVsForSeason,
upsertParticipantEV,
type ParticipantEV,
} from "~/models/participant-expected-value";
import { calculateICMFromOdds } from "./icm-calculator";
import type { ProbabilityDistribution } from "./ev-calculator";
import { database } from "~/database/context";
import * as schema from "~/database/schema";
import { eq } from "drizzle-orm";
/**
* Result of probability update operation
*/
export interface ProbabilityUpdateResult {
finishedParticipants: number;
unfishedParticipants: number;
updated: number;
errors: string[];
}
/**
* Before/after probabilities for display
*/
export interface ProbabilityComparison {
participantId: string;
participantName: string;
before: number[]; // [P(1st), P(2nd), ..., P(8th)]
after: number[]; // [P(1st), P(2nd), ..., P(8th)]
status: 'finished' | 'recalculated' | 'unchanged';
}
/**
* Convert probability array to ProbabilityDistribution
*/
function arrayToProbabilityDistribution(probs: number[]): ProbabilityDistribution {
return {
probFirst: probs[0],
probSecond: probs[1],
probThird: probs[2],
probFourth: probs[3],
probFifth: probs[4],
probSixth: probs[5],
probSeventh: probs[6],
probEighth: probs[7],
};
}
/**
* Convert ParticipantEV to probability array
*/
function evToProbabilityArray(ev: ParticipantEV): number[] {
return [
parseFloat(ev.probFirst),
parseFloat(ev.probSecond),
parseFloat(ev.probThird),
parseFloat(ev.probFourth),
parseFloat(ev.probFifth),
parseFloat(ev.probSixth),
parseFloat(ev.probSeventh),
parseFloat(ev.probEighth),
];
}
/**
* Create a probability distribution where participant finished at a specific position
*
* @param finalPosition The position where participant finished
* - 1-8: 100% at that position, 0% elsewhere
* - 0: Eliminated (didn't make playoffs) - 0% for all positions
* - >8: Finished outside scoring - 0% for all positions
* @returns Array of probabilities with 100% at finalPosition (if 1-8), or all 0%
*/
function createFinishedProbabilities(finalPosition: number): number[] {
const probs = [0, 0, 0, 0, 0, 0, 0, 0];
// Handle positions 1-8
if (finalPosition >= 1 && finalPosition <= 8) {
probs[finalPosition - 1] = 1.0; // 100% at their position
}
// finalPosition = 0 (eliminated) or > 8 (finished outside top 8)
// Keep all probabilities at 0%
return probs;
}
/**
* Update probabilities for a sports season after results come in
*
* Process:
* 1. Get all participant results (finished participants)
* 2. Get all existing participant EVs
* 3. For finished participants: set 100% at their placement
* 4. For unfinished participants: recalculate using ICM with remaining participants
*
* @param sportsSeasonId Sports season to update
* @param recalculateUnfinished Whether to recalculate unfinished participants (default true)
* @returns Update result summary
*/
export async function updateProbabilitiesAfterResult(
sportsSeasonId: string,
recalculateUnfinished: boolean = true
): Promise<ProbabilityUpdateResult> {
const errors: string[] = [];
let updated = 0;
try {
// Get all results (finished participants)
const results = await findParticipantResultsBySportsSeasonId(sportsSeasonId);
// Get all existing EVs
const existingEVs = await getAllParticipantEVsForSeason(sportsSeasonId);
// Create map of participantId -> finalPosition
const finishedMap = new Map(
results
.filter(r => r.finalPosition !== null)
.map(r => [r.participantId, r.finalPosition!])
);
// Update finished participants
// Use default scoring rules (we only care about setting probabilities, not EV for finished)
const defaultScoringRules = {
pointsFor1st: 100,
pointsFor2nd: 70,
pointsFor3rd: 50,
pointsFor4th: 40,
pointsFor5th: 25,
pointsFor6th: 25,
pointsFor7th: 15,
pointsFor8th: 15,
};
for (const [participantId, finalPosition] of finishedMap.entries()) {
try {
const probs = createFinishedProbabilities(finalPosition);
const probabilities = arrayToProbabilityDistribution(probs);
await upsertParticipantEV({
participantId,
sportsSeasonId,
probabilities,
scoringRules: defaultScoringRules,
source: 'manual', // Result is from actual outcome
});
updated++;
} catch (error) {
errors.push(`Failed to update participant ${participantId}: ${error}`);
}
}
// Recalculate unfinished participants if requested
if (recalculateUnfinished) {
const unfinishedEVs = existingEVs.filter(
ev => !finishedMap.has(ev.participantId)
);
if (unfinishedEVs.length > 0) {
// Get their current championship probabilities (use existing P(1st) as proxy)
const unfinishedOdds = unfinishedEVs.map(ev => {
const pFirst = parseFloat(ev.probFirst);
// Convert probability back to odds (approximate)
// probability = 100 / (odds + 100) => odds = (100 / probability) - 100
const odds = pFirst > 0 ? Math.round((100 / pFirst) - 100) : 100000;
return {
participantId: ev.participantId,
odds: odds,
};
});
// Recalculate ICM for unfinished participants
const icmResults = calculateICMFromOdds(unfinishedOdds);
// Update each unfinished participant
for (const [participantId, icmResult] of icmResults.entries()) {
try {
const probs = [
icmResult.probabilities.first,
icmResult.probabilities.second,
icmResult.probabilities.third,
icmResult.probabilities.fourth,
icmResult.probabilities.fifth,
icmResult.probabilities.sixth,
icmResult.probabilities.seventh,
icmResult.probabilities.eighth,
];
const probabilities = arrayToProbabilityDistribution(probs);
await upsertParticipantEV({
participantId,
sportsSeasonId,
probabilities,
scoringRules: defaultScoringRules,
source: 'futures_odds', // Recalculated from remaining odds
});
updated++;
} catch (error) {
errors.push(`Failed to recalculate participant ${participantId}: ${error}`);
}
}
}
}
return {
finishedParticipants: finishedMap.size,
unfishedParticipants: existingEVs.length - finishedMap.size,
updated,
errors,
};
} catch (error) {
errors.push(`Failed to update probabilities: ${error}`);
return {
finishedParticipants: 0,
unfishedParticipants: 0,
updated,
errors,
};
}
}
/**
* Get before/after comparison of probabilities for display
*
* Shows what will change when updateProbabilitiesAfterResult runs.
* Useful for preview before committing changes.
*
* @param sportsSeasonId Sports season to preview
* @returns Array of probability comparisons
*/
export async function previewProbabilityUpdate(
sportsSeasonId: string
): Promise<ProbabilityComparison[]> {
const db = database();
// Get all results (finished participants)
const results = await findParticipantResultsBySportsSeasonId(sportsSeasonId);
// Get all existing EVs with participant names
const existingEVs = await db.query.participantExpectedValues.findMany({
where: eq(schema.participantExpectedValues.sportsSeasonId, sportsSeasonId),
with: {
participant: true,
},
});
// Create map of participantId -> finalPosition
const finishedMap = new Map(
results
.filter(r => r.finalPosition !== null)
.map(r => [r.participantId, r.finalPosition!])
);
const comparisons: ProbabilityComparison[] = [];
for (const ev of existingEVs) {
const before = evToProbabilityArray(ev);
const finalPosition = finishedMap.get(ev.participantId);
let after: number[];
let status: 'finished' | 'recalculated' | 'unchanged';
if (finalPosition !== undefined) {
// Finished participant
after = createFinishedProbabilities(finalPosition);
status = 'finished';
} else {
// For preview, we'd need to recalculate - for now just show unchanged
// In a real implementation, we'd run the ICM calculation here too
after = before;
status = 'unchanged';
}
comparisons.push({
participantId: ev.participantId,
participantName: ev.participant?.name || 'Unknown',
before,
after,
status,
});
}
return comparisons;
}