mirror of
https://github.com/d0zingcat/gocryptotrader.git
synced 2026-05-14 07:26:47 +00:00
* fixes tests * pair formats and extra fixes * quick change before shazbert sees * sneaky lint * adds bybit mock testing and fixes test * whoops * error response instead * classic forgetting to lint * bybit live test no longer auto-records results * ty thrasher- Update exchanges/bybit/bybit_wrapper.go Co-authored-by: Adrian Gallagher <adrian.gallagher@thrasher.io> --------- Co-authored-by: Adrian Gallagher <adrian.gallagher@thrasher.io>
376 lines
12 KiB
Go
376 lines
12 KiB
Go
package order
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import (
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"errors"
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"fmt"
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"sync"
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"github.com/shopspring/decimal"
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"github.com/thrasher-corp/gocryptotrader/currency"
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"github.com/thrasher-corp/gocryptotrader/exchanges/asset"
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)
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var (
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// ErrExchangeLimitNotLoaded defines if an exchange does not have minmax
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// values
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ErrExchangeLimitNotLoaded = errors.New("exchange limits not loaded")
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// ErrPriceBelowMin is when the price is lower than the minimum price
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// limit accepted by the exchange
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ErrPriceBelowMin = errors.New("price below minimum limit")
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// ErrPriceExceedsMax is when the price is higher than the maximum price
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// limit accepted by the exchange
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ErrPriceExceedsMax = errors.New("price exceeds maximum limit")
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// ErrPriceExceedsStep is when the price is not divisible by its step
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ErrPriceExceedsStep = errors.New("price exceeds step limit")
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// ErrAmountBelowMin is when the amount is lower than the minimum amount
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// limit accepted by the exchange
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ErrAmountBelowMin = errors.New("amount below minimum limit")
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// ErrAmountExceedsMax is when the amount is higher than the maximum amount
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// limit accepted by the exchange
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ErrAmountExceedsMax = errors.New("amount exceeds maximum limit")
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// ErrAmountExceedsStep is when the amount is not divisible by its step
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ErrAmountExceedsStep = errors.New("amount exceeds step limit")
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// ErrNotionalValue is when the notional value does not exceed currency pair
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// requirements
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ErrNotionalValue = errors.New("total notional value is under minimum limit")
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// ErrMarketAmountBelowMin is when the amount is lower than the minimum
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// amount limit accepted by the exchange for a market order
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ErrMarketAmountBelowMin = errors.New("market order amount below minimum limit")
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// ErrMarketAmountExceedsMax is when the amount is higher than the maximum
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// amount limit accepted by the exchange for a market order
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ErrMarketAmountExceedsMax = errors.New("market order amount exceeds maximum limit")
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// ErrMarketAmountExceedsStep is when the amount is not divisible by its
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// step for a market order
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ErrMarketAmountExceedsStep = errors.New("market order amount exceeds step limit")
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errCannotValidateAsset = errors.New("cannot check limit, asset not loaded")
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errCannotValidateBaseCurrency = errors.New("cannot check limit, base currency not loaded")
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errCannotValidateQuoteCurrency = errors.New("cannot check limit, quote currency not loaded")
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errExchangeLimitAsset = errors.New("exchange limits not found for asset")
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errExchangeLimitBase = errors.New("exchange limits not found for base currency")
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errExchangeLimitQuote = errors.New("exchange limits not found for quote currency")
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errCannotLoadLimit = errors.New("cannot load limit, levels not supplied")
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errInvalidPriceLevels = errors.New("invalid price levels, cannot load limits")
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errInvalidAmountLevels = errors.New("invalid amount levels, cannot load limits")
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errInvalidQuoteLevels = errors.New("invalid quote levels, cannot load limits")
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)
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// ExecutionLimits defines minimum and maximum values in relation to
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// order size, order pricing, total notional values, total maximum orders etc
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// for execution on an exchange.
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type ExecutionLimits struct {
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m map[asset.Item]map[*currency.Item]map[*currency.Item]MinMaxLevel
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mtx sync.RWMutex
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}
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// MinMaxLevel defines the minimum and maximum parameters for a currency pair
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// for outbound exchange execution
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type MinMaxLevel struct {
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Pair currency.Pair
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Asset asset.Item
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MinPrice float64
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MaxPrice float64
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PriceStepIncrementSize float64
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MultiplierUp float64
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MultiplierDown float64
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MultiplierDecimal float64
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AveragePriceMinutes int64
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MinimumBaseAmount float64
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MaximumBaseAmount float64
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MinimumQuoteAmount float64
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MaximumQuoteAmount float64
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AmountStepIncrementSize float64
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QuoteStepIncrementSize float64
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MinNotional float64
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MaxIcebergParts int64
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MarketMinQty float64
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MarketMaxQty float64
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MarketStepIncrementSize float64
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MaxTotalOrders int64
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MaxAlgoOrders int64
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}
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// LoadLimits loads all limits levels into memory
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func (e *ExecutionLimits) LoadLimits(levels []MinMaxLevel) error {
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if len(levels) == 0 {
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return errCannotLoadLimit
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}
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e.mtx.Lock()
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defer e.mtx.Unlock()
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if e.m == nil {
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e.m = make(map[asset.Item]map[*currency.Item]map[*currency.Item]MinMaxLevel)
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}
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for x := range levels {
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if !levels[x].Asset.IsValid() {
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return fmt.Errorf("cannot load levels for '%s': %w",
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levels[x].Asset,
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asset.ErrNotSupported)
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}
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m1, ok := e.m[levels[x].Asset]
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if !ok {
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m1 = make(map[*currency.Item]map[*currency.Item]MinMaxLevel)
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e.m[levels[x].Asset] = m1
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}
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if levels[x].Pair.IsEmpty() {
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return currency.ErrCurrencyPairEmpty
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}
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m2, ok := m1[levels[x].Pair.Base.Item]
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if !ok {
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m2 = make(map[*currency.Item]MinMaxLevel)
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m1[levels[x].Pair.Base.Item] = m2
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}
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if levels[x].MinPrice > 0 &&
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levels[x].MaxPrice > 0 &&
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levels[x].MinPrice > levels[x].MaxPrice {
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return fmt.Errorf("%w for %s %s supplied min: %f max: %f",
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errInvalidPriceLevels,
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levels[x].Asset,
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levels[x].Pair,
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levels[x].MinPrice,
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levels[x].MaxPrice)
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}
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if levels[x].MinimumBaseAmount > 0 &&
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levels[x].MaximumBaseAmount > 0 &&
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levels[x].MinimumBaseAmount > levels[x].MaximumBaseAmount {
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return fmt.Errorf("%w for %s %s supplied min: %f max: %f",
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errInvalidAmountLevels,
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levels[x].Asset,
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levels[x].Pair,
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levels[x].MinimumBaseAmount,
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levels[x].MaximumBaseAmount)
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}
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if levels[x].MinimumQuoteAmount > 0 &&
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levels[x].MaximumQuoteAmount > 0 &&
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levels[x].MinimumQuoteAmount > levels[x].MaximumQuoteAmount {
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return fmt.Errorf("%w for %s %s supplied min: %f max: %f",
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errInvalidQuoteLevels,
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levels[x].Asset,
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levels[x].Pair,
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levels[x].MinimumQuoteAmount,
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levels[x].MaximumQuoteAmount)
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}
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m2[levels[x].Pair.Quote.Item] = levels[x]
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}
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return nil
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}
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// GetOrderExecutionLimits returns the exchange limit parameters for a currency
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func (e *ExecutionLimits) GetOrderExecutionLimits(a asset.Item, cp currency.Pair) (MinMaxLevel, error) {
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e.mtx.RLock()
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defer e.mtx.RUnlock()
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if e.m == nil {
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return MinMaxLevel{}, ErrExchangeLimitNotLoaded
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}
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m1, ok := e.m[a]
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if !ok {
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return MinMaxLevel{}, fmt.Errorf("%w %v", errExchangeLimitAsset, a)
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}
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m2, ok := m1[cp.Base.Item]
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if !ok {
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return MinMaxLevel{}, fmt.Errorf("%w %v", errExchangeLimitBase, cp.Base)
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}
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limit, ok := m2[cp.Quote.Item]
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if !ok {
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return MinMaxLevel{}, fmt.Errorf("%w %v", errExchangeLimitQuote, cp.Quote)
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}
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return limit, nil
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}
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// CheckOrderExecutionLimits checks to see if the price and amount conforms with
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// exchange level order execution limits
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func (e *ExecutionLimits) CheckOrderExecutionLimits(a asset.Item, cp currency.Pair, price, amount float64, orderType Type) error {
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e.mtx.RLock()
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defer e.mtx.RUnlock()
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if e.m == nil {
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// No exchange limits loaded so we can nil this
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return nil
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}
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m1, ok := e.m[a]
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if !ok {
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return errCannotValidateAsset
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}
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m2, ok := m1[cp.Base.Item]
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if !ok {
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return errCannotValidateBaseCurrency
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}
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limit, ok := m2[cp.Quote.Item]
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if !ok {
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return errCannotValidateQuoteCurrency
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}
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err := limit.Conforms(price, amount, orderType)
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if err != nil {
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return fmt.Errorf("%w for %s %s", err, a, cp)
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}
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return nil
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}
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// Conforms checks outbound parameters
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func (m *MinMaxLevel) Conforms(price, amount float64, orderType Type) error {
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// TODO: Update to take in account Quote amounts as well as Base amounts.
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if m == nil {
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return nil
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}
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if m.MinimumBaseAmount != 0 && amount < m.MinimumBaseAmount {
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return fmt.Errorf("%w min: %.8f supplied %.8f",
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ErrAmountBelowMin,
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m.MinimumBaseAmount,
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amount)
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}
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if m.MaximumBaseAmount != 0 && amount > m.MaximumBaseAmount {
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return fmt.Errorf("%w min: %.8f supplied %.8f",
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ErrAmountExceedsMax,
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m.MaximumBaseAmount,
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amount)
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}
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if m.AmountStepIncrementSize != 0 {
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dAmount := decimal.NewFromFloat(amount)
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dStep := decimal.NewFromFloat(m.AmountStepIncrementSize)
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if !dAmount.Mod(dStep).IsZero() {
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return fmt.Errorf("%w stepSize: %.8f supplied %.8f",
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ErrAmountExceedsStep,
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m.AmountStepIncrementSize,
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amount)
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}
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}
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// Multiplier checking not done due to the fact we need coherence with the
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// last average price (TODO)
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// m.multiplierUp will be used to determine how far our price can go up
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// m.multiplierDown will be used to determine how far our price can go down
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// m.averagePriceMinutes will be used to determine mean over this period
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// Max iceberg parts checking not done as we do not have that
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// functionality yet (TODO)
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// m.maxIcebergParts // How many components in an iceberg order
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// Max total orders not done due to order manager limitations (TODO)
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// m.maxTotalOrders
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// Max algo orders not done due to order manager limitations (TODO)
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// m.maxAlgoOrders
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// If order type is Market we do not need to do price checks
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if orderType != Market {
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if m.MinPrice != 0 && price < m.MinPrice {
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return fmt.Errorf("%w min: %.8f supplied %.8f",
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ErrPriceBelowMin,
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m.MinPrice,
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price)
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}
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if m.MaxPrice != 0 && price > m.MaxPrice {
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return fmt.Errorf("%w max: %.8f supplied %.8f",
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ErrPriceExceedsMax,
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m.MaxPrice,
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price)
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}
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if m.MinNotional != 0 && (amount*price) < m.MinNotional {
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return fmt.Errorf("%w minimum notional: %.8f value of order %.8f",
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ErrNotionalValue,
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m.MinNotional,
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amount*price)
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}
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if m.PriceStepIncrementSize != 0 {
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dPrice := decimal.NewFromFloat(price)
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dMinPrice := decimal.NewFromFloat(m.MinPrice)
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dStep := decimal.NewFromFloat(m.PriceStepIncrementSize)
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if !dPrice.Sub(dMinPrice).Mod(dStep).IsZero() {
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return fmt.Errorf("%w stepSize: %.8f supplied %.8f",
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ErrPriceExceedsStep,
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m.PriceStepIncrementSize,
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price)
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}
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}
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return nil
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}
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if m.MarketMinQty != 0 &&
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m.MinimumBaseAmount < m.MarketMinQty &&
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amount < m.MarketMinQty {
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return fmt.Errorf("%w min: %.8f supplied %.8f",
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ErrMarketAmountBelowMin,
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m.MarketMinQty,
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amount)
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}
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if m.MarketMaxQty != 0 &&
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m.MaximumBaseAmount > m.MarketMaxQty &&
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amount > m.MarketMaxQty {
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return fmt.Errorf("%w max: %.8f supplied %.8f",
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ErrMarketAmountExceedsMax,
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m.MarketMaxQty,
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amount)
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}
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if m.MarketStepIncrementSize != 0 &&
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m.AmountStepIncrementSize != m.MarketStepIncrementSize {
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dAmount := decimal.NewFromFloat(amount)
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dMinMAmount := decimal.NewFromFloat(m.MarketMinQty)
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dStep := decimal.NewFromFloat(m.MarketStepIncrementSize)
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if !dAmount.Sub(dMinMAmount).Mod(dStep).IsZero() {
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return fmt.Errorf("%w stepSize: %.8f supplied %.8f",
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ErrMarketAmountExceedsStep,
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m.MarketStepIncrementSize,
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amount)
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}
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}
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return nil
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}
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// ConformToDecimalAmount (POC) conforms amount to its amount interval
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func (m *MinMaxLevel) ConformToDecimalAmount(amount decimal.Decimal) decimal.Decimal {
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if m == nil {
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return amount
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}
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dStep := decimal.NewFromFloat(m.AmountStepIncrementSize)
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if dStep.IsZero() || amount.Equal(dStep) {
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return amount
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}
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if amount.LessThan(dStep) {
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return decimal.Zero
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}
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mod := amount.Mod(dStep)
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// subtract modulus to get the floor
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return amount.Sub(mod)
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}
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// ConformToAmount (POC) conforms amount to its amount interval
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func (m *MinMaxLevel) ConformToAmount(amount float64) float64 {
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if m == nil {
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return amount
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}
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if m.AmountStepIncrementSize == 0 || amount == m.AmountStepIncrementSize {
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return amount
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}
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if amount < m.AmountStepIncrementSize {
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return 0
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}
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// Convert floats to decimal types
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dAmount := decimal.NewFromFloat(amount)
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dStep := decimal.NewFromFloat(m.AmountStepIncrementSize)
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// derive modulus
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mod := dAmount.Mod(dStep)
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// subtract modulus to get the floor
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return dAmount.Sub(mod).InexactFloat64()
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}
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