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288 lines
8.5 KiB
Go
288 lines
8.5 KiB
Go
package bbgo
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import (
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"context"
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"errors"
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log "github.com/sirupsen/logrus"
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"github.com/c9s/bbgo/pkg/fixedpoint"
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"github.com/c9s/bbgo/pkg/types"
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)
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type TrailingStop struct {
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// CallbackRate is the callback rate from the previous high price
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CallbackRate fixedpoint.Value `json:"callbackRate,omitempty"`
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// ClosePosition is a percentage of the position to be closed
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ClosePosition fixedpoint.Value `json:"closePosition,omitempty"`
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// MinProfit is the percentage of the minimum profit ratio.
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// Stop order will be activiated only when the price reaches above this threshold.
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MinProfit fixedpoint.Value `json:"minProfit,omitempty"`
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// Interval is the time resolution to update the stop order
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// KLine per Interval will be used for updating the stop order
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Interval types.Interval `json:"interval,omitempty"`
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// Virtual is used when you don't want to place the real order on the exchange and lock the balance.
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// You want to handle the stop order by the strategy itself.
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Virtual bool `json:"virtual,omitempty"`
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}
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type TrailingStopController struct {
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*TrailingStop
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Symbol string
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position *types.Position
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latestHigh fixedpoint.Value
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averageCost fixedpoint.Value
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// activated: when the price reaches the min profit price, we set the activated to true to enable trailing stop
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activated bool
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}
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func NewTrailingStopController(symbol string, config *TrailingStop) *TrailingStopController {
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return &TrailingStopController{
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TrailingStop: config,
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Symbol: symbol,
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}
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}
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func (c *TrailingStopController) Subscribe(session *ExchangeSession) {
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session.Subscribe(types.KLineChannel, c.Symbol, types.SubscribeOptions{
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Interval: c.Interval,
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})
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}
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func (c *TrailingStopController) Run(ctx context.Context, session *ExchangeSession, tradeCollector *TradeCollector) {
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// store the position
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c.position = tradeCollector.Position()
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c.averageCost = c.position.AverageCost
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// Use trade collector to get the position update event
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tradeCollector.OnPositionUpdate(func(position *types.Position) {
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// update average cost if we have it.
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c.averageCost = position.AverageCost
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})
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session.MarketDataStream.OnKLineClosed(func(kline types.KLine) {
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if kline.Symbol != c.Symbol || kline.Interval != c.Interval {
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return
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}
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// if average cost is zero, we don't need trailing stop
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if c.averageCost.IsZero() || c.position == nil {
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return
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}
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closePrice := kline.Close
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// if we don't hold position, we just skip dust position
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if c.position.Base.Abs().Compare(c.position.Market.MinQuantity) < 0 || c.position.Base.Abs().Mul(closePrice).Compare(c.position.Market.MinNotional) < 0 {
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return
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}
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if c.MinProfit.Sign() <= 0 {
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// when minProfit is not set, we should always activate the trailing stop order
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c.activated = true
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} else if closePrice.Compare(c.averageCost) > 0 ||
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changeRate(closePrice, c.averageCost).Compare(c.MinProfit) > 0 {
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if !c.activated {
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log.Infof("%s trailing stop activated at price %s", c.Symbol, closePrice.String())
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c.activated = true
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}
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} else {
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return
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}
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if !c.activated {
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return
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}
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// if the trailing stop order is activated, we should update the latest high
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// update the latest high
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c.latestHigh = fixedpoint.Max(closePrice, c.latestHigh)
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// if it's in the callback rate, we don't want to trigger stop
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if closePrice.Compare(c.latestHigh) < 0 && changeRate(closePrice, c.latestHigh).Compare(c.CallbackRate) < 0 {
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return
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}
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if c.Virtual {
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// if the profit rate is defined, and it is less than our minimum profit rate, we skip stop
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if c.MinProfit.Sign() > 0 &&
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closePrice.Compare(c.averageCost) < 0 ||
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changeRate(closePrice, c.averageCost).Compare(c.MinProfit) < 0 {
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return
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}
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log.Infof("%s trailing stop emitted, latest high: %s, closed price: %s, average cost: %s, profit spread: %s",
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c.Symbol,
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c.latestHigh.String(),
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closePrice.String(),
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c.averageCost.String(),
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closePrice.Sub(c.averageCost).String())
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log.Infof("current %s position: %s", c.Symbol, c.position.String())
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marketOrder := c.position.NewMarketCloseOrder(c.ClosePosition)
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if marketOrder != nil {
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log.Infof("submitting %s market order to stop: %+v", c.Symbol, marketOrder)
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// skip dust order
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if marketOrder.Quantity.Mul(closePrice).Compare(c.position.Market.MinNotional) < 0 {
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log.Warnf("%s market order quote quantity %s < min notional %s, skip placing order", c.Symbol, marketOrder.Quantity.Mul(closePrice).String(), c.position.Market.MinNotional.String())
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return
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}
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createdOrders, err := session.Exchange.SubmitOrders(ctx, *marketOrder)
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if err != nil {
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log.WithError(err).Errorf("stop market order place error")
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return
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}
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tradeCollector.OrderStore().Add(createdOrders...)
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tradeCollector.Process()
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// reset the state
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c.latestHigh = fixedpoint.Zero
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c.activated = false
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}
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} else {
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// place stop order only when the closed price is greater than the current average cost
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if c.MinProfit.Sign() > 0 && closePrice.Compare(c.averageCost) > 0 &&
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changeRate(closePrice, c.averageCost).Compare(c.MinProfit) >= 0 {
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stopPrice := c.averageCost.Mul(fixedpoint.One.Add(c.MinProfit))
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orderForm := c.GenerateStopOrder(stopPrice, c.averageCost)
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if orderForm != nil {
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log.Infof("updating %s stop limit order to simulate trailing stop order...", c.Symbol)
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createdOrders, err := session.Exchange.SubmitOrders(ctx, *orderForm)
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if err != nil {
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log.WithError(err).Errorf("%s stop order place error", c.Symbol)
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return
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}
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tradeCollector.OrderStore().Add(createdOrders...)
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tradeCollector.Process()
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}
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}
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}
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})
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}
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func (c *TrailingStopController) GenerateStopOrder(stopPrice, price fixedpoint.Value) *types.SubmitOrder {
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base := c.position.GetBase()
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if base.IsZero() {
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return nil
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}
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quantity := base.Abs()
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quoteQuantity := price.Mul(quantity)
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if c.ClosePosition.Sign() > 0 {
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quantity = quantity.Mul(c.ClosePosition)
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}
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// skip dust orders
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if quantity.Compare(c.position.Market.MinQuantity) < 0 ||
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quoteQuantity.Compare(c.position.Market.MinNotional) < 0 {
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return nil
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}
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side := types.SideTypeSell
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if base.Sign() < 0 {
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side = types.SideTypeBuy
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}
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return &types.SubmitOrder{
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Symbol: c.Symbol,
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Market: c.position.Market,
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Type: types.OrderTypeStopLimit,
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Side: side,
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StopPrice: stopPrice,
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Price: price,
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Quantity: quantity,
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}
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}
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type FixedStop struct{}
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type Stop struct {
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TrailingStop *TrailingStop `json:"trailingStop,omitempty"`
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FixedStop *FixedStop `json:"fixedStop,omitempty"`
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}
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// SmartStops shares the stop order logics between different strategies
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//
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// See also:
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// - Stop-Loss order: https://www.investopedia.com/terms/s/stop-lossorder.asp
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// - Trailing Stop-loss order: https://www.investopedia.com/articles/trading/08/trailing-stop-loss.asp
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//
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// How to integrate this into your strategy?
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//
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// To use the stop controllers, you can embed this struct into your Strategy struct
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//
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// func (s *Strategy) Initialize() error {
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// return s.SmartStops.InitializeStopControllers(s.Symbol)
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// }
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// func (s *Strategy) Subscribe(session *bbgo.ExchangeSession) {
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// s.SmartStops.Subscribe(session)
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// }
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//
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// func (s *Strategy) Run() {
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// s.SmartStops.RunStopControllers(ctx, session, s.tradeCollector)
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// }
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//
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type SmartStops struct {
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// Stops is the slice of the stop order config
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Stops []Stop `json:"stops,omitempty"`
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// StopControllers are constructed from the stop config
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StopControllers []StopController `json:"-"`
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}
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type StopController interface {
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Subscribe(session *ExchangeSession)
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Run(ctx context.Context, session *ExchangeSession, tradeCollector *TradeCollector)
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}
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func (s *SmartStops) newStopController(symbol string, config Stop) (StopController, error) {
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if config.TrailingStop != nil {
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return NewTrailingStopController(symbol, config.TrailingStop), nil
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}
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return nil, errors.New("incorrect stop controller setup")
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}
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func (s *SmartStops) InitializeStopControllers(symbol string) error {
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for _, stop := range s.Stops {
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controller, err := s.newStopController(symbol, stop)
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if err != nil {
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return err
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}
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s.StopControllers = append(s.StopControllers, controller)
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}
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return nil
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}
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func (s *SmartStops) Subscribe(session *ExchangeSession) {
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for _, stopController := range s.StopControllers {
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stopController.Subscribe(session)
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}
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}
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func (s *SmartStops) RunStopControllers(ctx context.Context, session *ExchangeSession, tradeCollector *TradeCollector) {
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for _, stopController := range s.StopControllers {
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stopController.Run(ctx, session, tradeCollector)
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}
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}
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func changeRate(a, b fixedpoint.Value) fixedpoint.Value {
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return a.Sub(b).Div(b).Abs()
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}
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