c183e00d47
* cpmm initial commit: common logic, cloud functions * remove unnecessary property * contract type * rename 'calculate.ts' => 'calculate-dpm.ts' * rename dpm calculations * use focus hook * mechanism-agnostic calculations * bet panel: use new calculations * use new calculations * delete markets cloud function * use correct contract type in scripts / functions * calculate fixed payouts; bets list calculations * new bet: use calculateCpmmPurchase * getOutcomeProbabilityAfterBet * use deductFixedFees * fix auto-refactor * fix antes * separate logic to payouts-dpm, payouts-fixed * liquidity provision tracking * remove comment * liquidity label * create liquidity provision even if no ante bet * liquidity fee * use all bets for getFixedCancelPayouts * updateUserBalance: allow negative balances * store initialProbability in contracts * turn on liquidity fee; turn off creator fee * Include time param in tweet url, so image preview is re-fetched * share redemption * cpmm ContractBetsTable display * formatMoney: handle minus zero * filter out redemption bets * track fees on contract and bets; change fee schedule for cpmm markets; only pay out creator fees at resolution * small fixes * small fixes * Redeem shares pays back loans first * Fix initial point on graph * calculateCpmmPurchase: deduct creator fee * Filter out redemption bets from feed * set env to dev for user-testing purposes * creator fees messaging * new cfmm: k = y^(1-p) * n^p * addCpmmLiquidity * correct price function * enable fees * handle overflow * liquidity provision tracking * raise fees * Fix merge error * fix dpm free response payout for single outcome * Fix DPM payout calculation * Remove hardcoding as dev Co-authored-by: James Grugett <jahooma@gmail.com>
294 lines
7.7 KiB
TypeScript
294 lines
7.7 KiB
TypeScript
import * as _ from 'lodash'
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import { Bet } from './bet'
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import { Binary, DPM, FullContract } from './contract'
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import { DPM_FEES } from './fees'
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export function getDpmProbability(totalShares: { [outcome: string]: number }) {
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// For binary contracts only.
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return getDpmOutcomeProbability(totalShares, 'YES')
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}
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export function getDpmOutcomeProbability(
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totalShares: {
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[outcome: string]: number
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},
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outcome: string
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) {
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const squareSum = _.sumBy(Object.values(totalShares), (shares) => shares ** 2)
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const shares = totalShares[outcome] ?? 0
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return shares ** 2 / squareSum
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}
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export function getDpmOutcomeProbabilityAfterBet(
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totalShares: {
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[outcome: string]: number
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},
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outcome: string,
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bet: number
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) {
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const shares = calculateDpmShares(totalShares, bet, outcome)
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const prevShares = totalShares[outcome] ?? 0
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const newTotalShares = { ...totalShares, [outcome]: prevShares + shares }
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return getDpmOutcomeProbability(newTotalShares, outcome)
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}
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export function getDpmProbabilityAfterSale(
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totalShares: {
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[outcome: string]: number
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},
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outcome: string,
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shares: number
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) {
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const prevShares = totalShares[outcome] ?? 0
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const newTotalShares = { ...totalShares, [outcome]: prevShares - shares }
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const predictionOutcome = outcome === 'NO' ? 'YES' : outcome
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return getDpmOutcomeProbability(newTotalShares, predictionOutcome)
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}
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export function calculateDpmShares(
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totalShares: {
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[outcome: string]: number
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},
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bet: number,
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betChoice: string
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) {
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const squareSum = _.sumBy(Object.values(totalShares), (shares) => shares ** 2)
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const shares = totalShares[betChoice] ?? 0
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const c = 2 * bet * Math.sqrt(squareSum)
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return Math.sqrt(bet ** 2 + shares ** 2 + c) - shares
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}
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export function calculateDpmRawShareValue(
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totalShares: {
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[outcome: string]: number
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},
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shares: number,
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betChoice: string
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) {
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const currentValue = Math.sqrt(
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_.sumBy(Object.values(totalShares), (shares) => shares ** 2)
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)
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const postSaleValue = Math.sqrt(
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_.sumBy(Object.keys(totalShares), (outcome) =>
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outcome === betChoice
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? Math.max(0, totalShares[outcome] - shares) ** 2
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: totalShares[outcome] ** 2
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)
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)
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return currentValue - postSaleValue
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}
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export function calculateDpmMoneyRatio(
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contract: FullContract<DPM, any>,
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bet: Bet,
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shareValue: number
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) {
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const { totalShares, totalBets, pool } = contract
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const { outcome, amount } = bet
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const p = getDpmOutcomeProbability(totalShares, outcome)
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const actual = _.sum(Object.values(pool)) - shareValue
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const betAmount = p * amount
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const expected =
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_.sumBy(
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Object.keys(totalBets),
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(outcome) =>
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getDpmOutcomeProbability(totalShares, outcome) *
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(totalBets as { [outcome: string]: number })[outcome]
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) - betAmount
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if (actual <= 0 || expected <= 0) return 0
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return actual / expected
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}
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export function calculateDpmShareValue(
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contract: FullContract<DPM, any>,
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bet: Bet
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) {
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const { pool, totalShares } = contract
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const { shares, outcome } = bet
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const shareValue = calculateDpmRawShareValue(totalShares, shares, outcome)
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const f = calculateDpmMoneyRatio(contract, bet, shareValue)
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const myPool = pool[outcome]
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const adjShareValue = Math.min(Math.min(1, f) * shareValue, myPool)
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return adjShareValue
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}
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export function calculateDpmSaleAmount(
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contract: FullContract<DPM, any>,
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bet: Bet
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) {
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const { amount } = bet
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const winnings = calculateDpmShareValue(contract, bet)
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return deductDpmFees(amount, winnings)
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}
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export function calculateDpmPayout(
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contract: FullContract<DPM, any>,
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bet: Bet,
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outcome: string
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) {
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if (outcome === 'CANCEL') return calculateDpmCancelPayout(contract, bet)
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if (outcome === 'MKT') return calculateMktDpmPayout(contract, bet)
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return calculateStandardDpmPayout(contract, bet, outcome)
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}
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export function calculateDpmCancelPayout(
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contract: FullContract<DPM, any>,
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bet: Bet
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) {
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const { totalBets, pool } = contract
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const betTotal = _.sum(Object.values(totalBets))
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const poolTotal = _.sum(Object.values(pool))
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return (bet.amount / betTotal) * poolTotal
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}
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export function calculateStandardDpmPayout(
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contract: FullContract<DPM, any>,
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bet: Bet,
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outcome: string
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) {
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const { amount, outcome: betOutcome, shares } = bet
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if (betOutcome !== outcome) return 0
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const { totalShares, phantomShares, pool } = contract
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if (!totalShares[outcome]) return 0
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const poolTotal = _.sum(Object.values(pool))
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const total =
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totalShares[outcome] - (phantomShares ? phantomShares[outcome] : 0)
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const winnings = (shares / total) * poolTotal
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// profit can be negative if using phantom shares
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return amount + (1 - DPM_FEES) * Math.max(0, winnings - amount)
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}
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export function calculateDpmPayoutAfterCorrectBet(
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contract: FullContract<DPM, any>,
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bet: Bet
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) {
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const { totalShares, pool, totalBets } = contract
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const { shares, amount, outcome } = bet
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const prevShares = totalShares[outcome] ?? 0
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const prevPool = pool[outcome] ?? 0
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const prevTotalBet = totalBets[outcome] ?? 0
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const newContract = {
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...contract,
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totalShares: {
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...totalShares,
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[outcome]: prevShares + shares,
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},
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pool: {
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...pool,
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[outcome]: prevPool + amount,
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},
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totalBets: {
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...totalBets,
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[outcome]: prevTotalBet + amount,
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},
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}
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return calculateStandardDpmPayout(newContract, bet, outcome)
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}
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function calculateMktDpmPayout(contract: FullContract<DPM, any>, bet: Bet) {
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if (contract.outcomeType === 'BINARY')
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return calculateBinaryMktDpmPayout(contract, bet)
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const { totalShares, pool } = contract
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const totalPool = _.sum(Object.values(pool))
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const sharesSquareSum = _.sumBy(
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Object.values(totalShares) as number[],
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(shares) => shares ** 2
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)
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const weightedShareTotal = _.sumBy(Object.keys(totalShares), (outcome) => {
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// Avoid O(n^2) by reusing sharesSquareSum for prob.
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const shares = totalShares[outcome]
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const prob = shares ** 2 / sharesSquareSum
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return prob * shares
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})
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const { outcome, amount, shares } = bet
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const betP = getDpmOutcomeProbability(totalShares, outcome)
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const winnings = ((betP * shares) / weightedShareTotal) * totalPool
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return deductDpmFees(amount, winnings)
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}
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function calculateBinaryMktDpmPayout(
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contract: FullContract<DPM, Binary>,
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bet: Bet
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) {
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const { resolutionProbability, totalShares, phantomShares } = contract
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const p =
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resolutionProbability !== undefined
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? resolutionProbability
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: getDpmProbability(totalShares)
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const pool = contract.pool.YES + contract.pool.NO
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const weightedShareTotal =
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p * (totalShares.YES - (phantomShares?.YES ?? 0)) +
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(1 - p) * (totalShares.NO - (phantomShares?.NO ?? 0))
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const { outcome, amount, shares } = bet
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const betP = outcome === 'YES' ? p : 1 - p
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const winnings = ((betP * shares) / weightedShareTotal) * pool
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return deductDpmFees(amount, winnings)
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}
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export function resolvedDpmPayout(contract: FullContract<DPM, any>, bet: Bet) {
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if (contract.resolution)
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return calculateDpmPayout(contract, bet, contract.resolution)
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throw new Error('Contract was not resolved')
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}
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export const deductDpmFees = (betAmount: number, winnings: number) => {
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return winnings > betAmount
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? betAmount + (1 - DPM_FEES) * (winnings - betAmount)
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: winnings
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}
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export const calcDpmInitialPool = (
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initialProbInt: number,
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ante: number,
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phantomAnte: number
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) => {
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const p = initialProbInt / 100.0
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const totalAnte = phantomAnte + ante
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const sharesYes = Math.sqrt(p * totalAnte ** 2)
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const sharesNo = Math.sqrt(totalAnte ** 2 - sharesYes ** 2)
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const poolYes = p * ante
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const poolNo = (1 - p) * ante
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const phantomYes = Math.sqrt(p) * phantomAnte
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const phantomNo = Math.sqrt(1 - p) * phantomAnte
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return { sharesYes, sharesNo, poolYes, poolNo, phantomYes, phantomNo }
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}
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