Files
gocryptotrader/engine/sync_manager.go
Gareth Kirwan 54f745e943 SyncManager: Optimise and fixes (#1229)
* SyncManager: Optimise and fixes

This is a fairly invasive change which addresses the amount of work the
sync manager does each cycle and the cycle intervals.
We switch to using discrete locks for each type of work on each pair,
so each worker can take a discrete chunk of work safely.
For performance and simplicity we now use a map for the currencyPairs.

* fix reporting when a websocket is reconnected
* fix not switching REST off after websocket available again
* fix race condition in isProcessing flag

This PR still could go further by avoiding cycling through everything
each time, and by pushing some one-time work for adding enabled pairs
down to a later stage off the hot path.
This was the smallest chunk of refactoring I felt could address
everything without changing too much.

Significant manual testing done with a variety of Timeouts to test for
edgecases and handling.

* SyncManager: Fix ticker/orderbook tracker linked

* SyncManager: Fix sync complete logging in update

* SyncManager: Fix pair format breaking sync key

Kraken seems to always switch to XBT_USDT format, but websockets still
pass around XBTUSDT format. Just to be safe this just removes the
delimiter to avoid any such issues

* SyncManager: Remove unused error

* SyncManager: Remove unused IsProcessing flag

* SyncManager: Fix Update test add() pair format

We had to unify pair format inside sync manager, so test needs to do the
same
2023-07-12 10:17:39 +10:00

888 lines
25 KiB
Go

package engine
import (
"context"
"errors"
"fmt"
"strconv"
"strings"
"sync"
"sync/atomic"
"time"
"github.com/thrasher-corp/gocryptotrader/common"
"github.com/thrasher-corp/gocryptotrader/config"
"github.com/thrasher-corp/gocryptotrader/currency"
exchange "github.com/thrasher-corp/gocryptotrader/exchanges"
"github.com/thrasher-corp/gocryptotrader/exchanges/asset"
"github.com/thrasher-corp/gocryptotrader/exchanges/orderbook"
"github.com/thrasher-corp/gocryptotrader/exchanges/stats"
"github.com/thrasher-corp/gocryptotrader/exchanges/ticker"
"github.com/thrasher-corp/gocryptotrader/log"
)
type syncItemType int
// const holds the sync item types
const (
SyncItemTicker syncItemType = iota
SyncItemOrderbook
SyncItemTrade
SyncManagerName = "exchange_syncer"
)
var (
createdCounter = 0
removedCounter = 0
// DefaultSyncerWorkers limits the number of sync workers
DefaultSyncerWorkers = 15
// DefaultSyncerTimeoutREST the default time to switch from REST to websocket protocols without a response
DefaultSyncerTimeoutREST = time.Second * 15
// DefaultSyncerTimeoutWebsocket the default time to switch from websocket to REST protocols without a response
DefaultSyncerTimeoutWebsocket = time.Minute
errNoSyncItemsEnabled = errors.New("no sync items enabled")
errUnknownSyncItem = errors.New("unknown sync item")
errCouldNotSyncNewData = errors.New("could not sync new data")
)
// setupSyncManager starts a new CurrencyPairSyncer
func setupSyncManager(c *SyncManagerConfig, exchangeManager iExchangeManager, remoteConfig *config.RemoteControlConfig, websocketRoutineManagerEnabled bool) (*syncManager, error) {
if c == nil {
return nil, fmt.Errorf("%T %w", c, common.ErrNilPointer)
}
if !c.SynchronizeOrderbook && !c.SynchronizeTicker && !c.SynchronizeTrades {
return nil, errNoSyncItemsEnabled
}
if exchangeManager == nil {
return nil, errNilExchangeManager
}
if remoteConfig == nil {
return nil, errNilConfig
}
if c.NumWorkers <= 0 {
c.NumWorkers = DefaultSyncerWorkers
}
if c.TimeoutREST <= time.Duration(0) {
c.TimeoutREST = DefaultSyncerTimeoutREST
}
if c.TimeoutWebsocket <= time.Duration(0) {
c.TimeoutWebsocket = DefaultSyncerTimeoutWebsocket
}
if c.FiatDisplayCurrency.IsEmpty() {
return nil, fmt.Errorf("FiatDisplayCurrency %w", currency.ErrCurrencyCodeEmpty)
}
if !c.FiatDisplayCurrency.IsFiatCurrency() {
return nil, fmt.Errorf("%s %w", c.FiatDisplayCurrency, currency.ErrFiatDisplayCurrencyIsNotFiat)
}
if c.PairFormatDisplay == nil {
return nil, fmt.Errorf("%T %w", c.PairFormatDisplay, common.ErrNilPointer)
}
s := &syncManager{
config: *c,
remoteConfig: remoteConfig,
exchangeManager: exchangeManager,
websocketRoutineManagerEnabled: websocketRoutineManagerEnabled,
fiatDisplayCurrency: c.FiatDisplayCurrency,
format: *c.PairFormatDisplay,
tickerBatchLastRequested: make(map[string]time.Time),
currencyPairs: make(map[currencyPairKey]*currencyPairSyncAgent),
}
log.Debugf(log.SyncMgr,
"Exchange currency pair syncer config: continuous: %v ticker: %v"+
" orderbook: %v trades: %v workers: %v verbose: %v timeout REST: %v"+
" timeout Websocket: %v",
s.config.SynchronizeContinuously, s.config.SynchronizeTicker, s.config.SynchronizeOrderbook,
s.config.SynchronizeTrades, s.config.NumWorkers, s.config.Verbose, s.config.TimeoutREST,
s.config.TimeoutWebsocket)
s.inService.Add(1)
return s, nil
}
// IsRunning safely checks whether the subsystem is running
func (m *syncManager) IsRunning() bool {
return m != nil && atomic.LoadInt32(&m.started) == 1
}
// Start runs the subsystem
func (m *syncManager) Start() error {
if m == nil {
return fmt.Errorf("exchange CurrencyPairSyncer %w", ErrNilSubsystem)
}
if !atomic.CompareAndSwapInt32(&m.started, 0, 1) {
return ErrSubSystemAlreadyStarted
}
m.shutdown = make(chan bool)
m.initSyncWG.Add(1)
m.inService.Done()
log.Debugln(log.SyncMgr, "Exchange CurrencyPairSyncer started.")
exchanges, err := m.exchangeManager.GetExchanges()
if err != nil {
return err
}
for x := range exchanges {
exchangeName := exchanges[x].GetName()
supportsWebsocket := exchanges[x].SupportsWebsocket()
supportsREST := exchanges[x].SupportsREST()
if !supportsREST && !supportsWebsocket {
log.Warnf(log.SyncMgr,
"Loaded exchange %s does not support REST or Websocket.",
exchangeName)
continue
}
var usingWebsocket bool
var usingREST bool
if m.websocketRoutineManagerEnabled &&
supportsWebsocket &&
exchanges[x].IsWebsocketEnabled() {
usingWebsocket = true
} else if supportsREST {
usingREST = true
}
assetTypes := exchanges[x].GetAssetTypes(false)
for y := range assetTypes {
if exchanges[x].GetBase().CurrencyPairs.IsAssetEnabled(assetTypes[y]) != nil {
log.Warnf(log.SyncMgr,
"%s asset type %s is disabled, fetching enabled pairs is paused",
exchangeName,
assetTypes[y])
continue
}
wsAssetSupported := exchanges[x].IsAssetWebsocketSupported(assetTypes[y])
if !wsAssetSupported {
log.Warnf(log.SyncMgr,
"%s asset type %s websocket functionality is unsupported, REST fetching only.",
exchangeName,
assetTypes[y])
}
enabledPairs, err := exchanges[x].GetEnabledPairs(assetTypes[y])
if err != nil {
log.Errorf(log.SyncMgr,
"%s failed to get enabled pairs. Err: %s",
exchangeName,
err)
continue
}
for i := range enabledPairs {
k := currencyPairKey{
AssetType: assetTypes[y],
Exchange: exchangeName,
Pair: enabledPairs[i].Format(currency.PairFormat{Uppercase: true}),
}
if e := m.get(k); e != nil {
continue
}
sBase := syncBase{
IsUsingREST: usingREST || !wsAssetSupported,
IsUsingWebsocket: usingWebsocket && wsAssetSupported,
}
m.add(k, sBase)
}
}
}
if atomic.CompareAndSwapInt32(&m.initSyncStarted, 0, 1) {
log.Debugf(log.SyncMgr,
"Exchange CurrencyPairSyncer initial sync started. %d items to process.",
createdCounter)
m.initSyncStartTime = time.Now()
}
go func() {
m.initSyncWG.Wait()
if atomic.CompareAndSwapInt32(&m.initSyncCompleted, 0, 1) {
log.Debugf(log.SyncMgr, "Exchange CurrencyPairSyncer initial sync is complete.")
completedTime := time.Now()
log.Debugf(log.SyncMgr, "Exchange CurrencyPairSyncer initial sync took %v [%v sync items].",
completedTime.Sub(m.initSyncStartTime), createdCounter)
if !m.config.SynchronizeContinuously {
log.Debugln(log.SyncMgr, "Exchange CurrencyPairSyncer stopping.")
err := m.Stop()
if err != nil {
log.Errorln(log.SyncMgr, err)
}
return
}
}
}()
if atomic.LoadInt32(&m.initSyncCompleted) == 1 && !m.config.SynchronizeContinuously {
return nil
}
for i := 0; i < m.config.NumWorkers; i++ {
go m.worker()
}
m.initSyncWG.Done()
return nil
}
// Stop shuts down the exchange currency pair syncer
func (m *syncManager) Stop() error {
if m == nil {
return fmt.Errorf("exchange CurrencyPairSyncer %w", ErrNilSubsystem)
}
if !atomic.CompareAndSwapInt32(&m.started, 1, 0) {
return fmt.Errorf("exchange CurrencyPairSyncer %w", ErrSubSystemNotStarted)
}
close(m.shutdown)
m.inService.Add(1)
log.Debugln(log.SyncMgr, "Exchange CurrencyPairSyncer stopped.")
return nil
}
func (m *syncManager) get(k currencyPairKey) *currencyPairSyncAgent {
m.mux.Lock()
defer m.mux.Unlock()
return m.currencyPairs[k]
}
func newCurrencyPairSyncAgent(k currencyPairKey) *currencyPairSyncAgent {
return &currencyPairSyncAgent{
currencyPairKey: k,
Created: time.Now(),
locks: make([]sync.Mutex, SyncItemTrade+1),
trackers: make([]*syncBase, SyncItemTrade+1),
}
}
func (m *syncManager) add(k currencyPairKey, s syncBase) *currencyPairSyncAgent {
m.mux.Lock()
defer m.mux.Unlock()
c := newCurrencyPairSyncAgent(k)
if m.config.SynchronizeTicker {
s := s
c.trackers[SyncItemTicker] = &s
}
if m.config.SynchronizeOrderbook {
s := s
c.trackers[SyncItemOrderbook] = &s
}
if m.config.SynchronizeTrades {
s := s
c.trackers[SyncItemTrade] = &s
}
if m.config.SynchronizeTicker {
if m.config.Verbose {
log.Debugf(log.SyncMgr,
"%s: Added ticker sync item %v: using websocket: %v using REST: %v",
c.Exchange, m.FormatCurrency(c.Pair).String(), c.trackers[SyncItemTicker].IsUsingWebsocket,
c.trackers[SyncItemTicker].IsUsingREST)
}
if atomic.LoadInt32(&m.initSyncCompleted) != 1 {
m.initSyncWG.Add(1)
createdCounter++
}
}
if m.config.SynchronizeOrderbook {
if m.config.Verbose {
log.Debugf(log.SyncMgr,
"%s: Added orderbook sync item %v: using websocket: %v using REST: %v",
c.Exchange, m.FormatCurrency(c.Pair).String(), c.trackers[SyncItemOrderbook].IsUsingWebsocket,
c.trackers[SyncItemOrderbook].IsUsingREST)
}
if atomic.LoadInt32(&m.initSyncCompleted) != 1 {
m.initSyncWG.Add(1)
createdCounter++
}
}
if m.config.SynchronizeTrades {
if m.config.Verbose {
log.Debugf(log.SyncMgr,
"%s: Added trade sync item %v: using websocket: %v using REST: %v",
c.Exchange, m.FormatCurrency(c.Pair).String(), c.trackers[SyncItemTrade].IsUsingWebsocket,
c.trackers[SyncItemTrade].IsUsingREST)
}
if atomic.LoadInt32(&m.initSyncCompleted) != 1 {
m.initSyncWG.Add(1)
createdCounter++
}
}
if m.currencyPairs == nil {
m.currencyPairs = make(map[currencyPairKey]*currencyPairSyncAgent)
}
m.currencyPairs[k] = c
return c
}
// Update notifies the syncManager to change the last updated time for a exchange asset pair
// And set IsUsingWebsocket to true. It should be used externally only from websocket updaters
func (m *syncManager) Update(exchangeName string, p currency.Pair, a asset.Item, syncType syncItemType, err error) error {
if m == nil {
return fmt.Errorf("exchange CurrencyPairSyncer %w", ErrNilSubsystem)
}
if atomic.LoadInt32(&m.started) == 0 {
return fmt.Errorf("exchange CurrencyPairSyncer %w", ErrSubSystemNotStarted)
}
if atomic.LoadInt32(&m.initSyncStarted) != 1 {
return nil
}
switch syncType {
case SyncItemOrderbook:
if !m.config.SynchronizeOrderbook {
return nil
}
case SyncItemTicker:
if !m.config.SynchronizeTicker {
return nil
}
case SyncItemTrade:
if !m.config.SynchronizeTrades {
return nil
}
default:
return fmt.Errorf("%v %w", syncType, errUnknownSyncItem)
}
k := currencyPairKey{
AssetType: a,
Exchange: exchangeName,
Pair: p.Format(currency.PairFormat{Uppercase: true}),
}
c, exists := m.currencyPairs[k]
if !exists {
return fmt.Errorf("%w for %s %s %s %s", errCouldNotSyncNewData, k.Exchange, k.Pair, k.AssetType, syncType)
}
c.locks[syncType].Lock()
defer c.locks[syncType].Unlock()
if c.trackers[syncType] == nil {
c.trackers[syncType] = &syncBase{}
}
s := c.trackers[syncType]
if !s.IsUsingWebsocket {
s.IsUsingWebsocket = true
s.IsUsingREST = false
log.Warnf(log.SyncMgr,
"%s %s %s: %s Websocket re-enabled, switching from rest to websocket",
c.Exchange,
m.FormatCurrency(c.Pair),
strings.ToUpper(c.AssetType.String()),
syncType,
)
}
return m.update(c, syncType, err)
}
// update notifies the syncManager to change the last updated time for a exchange asset pair
func (m *syncManager) update(c *currencyPairSyncAgent, syncType syncItemType, err error) error {
if syncType < SyncItemTicker || syncType > SyncItemTrade {
return fmt.Errorf("%v %w", syncType, errUnknownSyncItem)
}
s := c.trackers[syncType]
origHadData := s.HaveData
s.LastUpdated = time.Now()
if err != nil {
s.NumErrors++
}
s.HaveData = true
if atomic.LoadInt32(&m.initSyncCompleted) != 1 && !origHadData {
removedCounter++
log.Debugf(log.SyncMgr, "%s %s sync complete %v [%d/%d].",
c.Exchange,
syncType,
m.FormatCurrency(c.Pair),
removedCounter,
createdCounter)
m.initSyncWG.Done()
}
return nil
}
func (m *syncManager) worker() {
cleanup := func() {
log.Debugln(log.SyncMgr,
"Exchange CurrencyPairSyncer worker shutting down.")
}
defer cleanup()
interval := greatestCommonDivisor(m.config.TimeoutWebsocket, m.config.TimeoutREST)
if interval > time.Second {
interval = time.Second
}
t := time.NewTicker(interval)
for {
select {
case <-m.shutdown:
return
case <-t.C:
exchanges, err := m.exchangeManager.GetExchanges()
if err != nil {
log.Errorf(log.SyncMgr, "Sync manager cannot get exchanges: %v", err)
continue
}
for _, e := range exchanges {
exchangeName := e.GetName()
supportsREST := e.SupportsREST()
// TODO: These vars are only used for enabling new pairs, deriving them every cycle is sub-optimal
var usingREST bool
var usingWebsocket bool
if e.SupportsWebsocket() && e.IsWebsocketEnabled() {
ws, err := e.GetWebsocket()
if err != nil {
log.Errorf(log.SyncMgr,
"%s unable to get websocket pointer. Err: %s",
exchangeName,
err)
usingREST = true
}
if ws.IsConnected() {
usingWebsocket = true
} else {
usingREST = true
}
} else if supportsREST {
usingREST = true
}
assetTypes := e.GetAssetTypes(true)
for y := range assetTypes {
wsAssetSupported := e.IsAssetWebsocketSupported(assetTypes[y])
enabledPairs, err := e.GetEnabledPairs(assetTypes[y])
if err != nil {
log.Errorf(log.SyncMgr,
"%s failed to get enabled pairs. Err: %s",
e.GetName(),
err)
continue
}
for i := range enabledPairs {
if atomic.LoadInt32(&m.started) == 0 {
return
}
k := currencyPairKey{
AssetType: assetTypes[y],
Exchange: exchangeName,
Pair: enabledPairs[i].Format(currency.PairFormat{Uppercase: true}),
}
c := m.get(k)
if c == nil {
c = m.add(k, syncBase{
IsUsingREST: usingREST || !wsAssetSupported,
IsUsingWebsocket: usingWebsocket && wsAssetSupported,
})
}
if m.config.SynchronizeTicker {
m.syncTicker(c, e)
}
if m.config.SynchronizeOrderbook {
m.syncOrderbook(c, e)
}
if m.config.SynchronizeTrades {
m.syncTrades(c)
}
}
}
}
}
}
}
func (m *syncManager) syncTicker(c *currencyPairSyncAgent, e exchange.IBotExchange) {
if !c.locks[SyncItemTicker].TryLock() {
return
}
defer c.locks[SyncItemTicker].Unlock()
exchangeName := e.GetName()
s := c.trackers[SyncItemTicker]
if s.IsUsingWebsocket &&
e.SupportsREST() &&
time.Since(s.LastUpdated) > m.config.TimeoutWebsocket &&
time.Since(c.Created) > m.config.TimeoutWebsocket {
// Downgrade to REST
s.IsUsingWebsocket = false
s.IsUsingREST = true
log.Warnf(log.SyncMgr,
"%s %s %s: No ticker update after %s, switching from websocket to rest",
c.Exchange,
m.FormatCurrency(c.Pair),
strings.ToUpper(c.AssetType.String()),
m.config.TimeoutWebsocket,
)
}
if s.IsUsingREST && time.Since(s.LastUpdated) > m.config.TimeoutREST {
var result *ticker.Price
var err error
if e.SupportsRESTTickerBatchUpdates() {
m.mux.Lock()
batchLastDone, ok := m.tickerBatchLastRequested[e.GetName()]
if !ok {
m.tickerBatchLastRequested[exchangeName] = time.Time{}
}
m.mux.Unlock()
if batchLastDone.IsZero() || time.Since(batchLastDone) > m.config.TimeoutREST {
m.mux.Lock()
if m.config.Verbose {
log.Debugf(log.SyncMgr, "Initialising %s REST ticker batching", exchangeName)
}
err = e.UpdateTickers(context.TODO(), c.AssetType)
if err == nil {
result, err = e.FetchTicker(context.TODO(), c.Pair, c.AssetType)
}
m.tickerBatchLastRequested[exchangeName] = time.Now()
m.mux.Unlock()
} else {
if m.config.Verbose {
log.Debugf(log.SyncMgr, "%s Using recent batching cache", exchangeName)
}
result, err = e.FetchTicker(context.TODO(),
c.Pair,
c.AssetType)
}
} else {
result, err = e.UpdateTicker(context.TODO(),
c.Pair,
c.AssetType)
}
m.PrintTickerSummary(result, "REST", err)
if err == nil {
if m.remoteConfig.WebsocketRPC.Enabled {
relayWebsocketEvent(result, "ticker_update", c.AssetType.String(), exchangeName)
}
}
updateErr := m.update(c, SyncItemTicker, err)
if updateErr != nil {
log.Errorln(log.SyncMgr, updateErr)
}
}
}
func (m *syncManager) syncOrderbook(c *currencyPairSyncAgent, e exchange.IBotExchange) {
if !c.locks[SyncItemOrderbook].TryLock() {
return
}
defer c.locks[SyncItemOrderbook].Unlock()
s := c.trackers[SyncItemOrderbook]
if s.IsUsingWebsocket &&
e.SupportsREST() &&
time.Since(s.LastUpdated) > m.config.TimeoutWebsocket &&
time.Since(c.Created) > m.config.TimeoutWebsocket {
// Downgrade to REST
s.IsUsingWebsocket = false
s.IsUsingREST = true
log.Warnf(log.SyncMgr,
"%s %s %s: No orderbook update after %s, switching from websocket to rest",
c.Exchange,
m.FormatCurrency(c.Pair).String(),
strings.ToUpper(c.AssetType.String()),
m.config.TimeoutWebsocket,
)
}
if s.IsUsingREST && time.Since(s.LastUpdated) > m.config.TimeoutREST {
result, err := e.UpdateOrderbook(context.TODO(),
c.Pair,
c.AssetType)
m.PrintOrderbookSummary(result, "REST", err)
if err == nil {
if m.remoteConfig.WebsocketRPC.Enabled {
relayWebsocketEvent(result, "orderbook_update", c.AssetType.String(), e.GetName())
}
}
updateErr := m.update(c, SyncItemOrderbook, err)
if updateErr != nil {
log.Errorln(log.SyncMgr, updateErr)
}
}
}
func (m *syncManager) syncTrades(c *currencyPairSyncAgent) {
if !c.locks[SyncItemTrade].TryLock() {
return
}
defer c.locks[SyncItemTrade].Unlock()
if time.Since(c.trackers[SyncItemTrade].LastUpdated) > m.config.TimeoutREST {
err := m.update(c, SyncItemTrade, nil)
if err != nil {
log.Errorln(log.SyncMgr, err)
}
}
}
func printCurrencyFormat(price float64, displayCurrency currency.Code) string {
displaySymbol, err := currency.GetSymbolByCurrencyName(displayCurrency)
if err != nil {
log.Errorf(log.SyncMgr, "Failed to get display symbol: %s", err)
}
return fmt.Sprintf("%s%.8f", displaySymbol, price)
}
func printConvertCurrencyFormat(origPrice float64, origCurrency, displayCurrency currency.Code) string {
var conv float64
if origPrice > 0 {
var err error
conv, err = currency.ConvertFiat(origPrice, origCurrency, displayCurrency)
if err != nil {
log.Errorf(log.SyncMgr, "Failed to convert currency: %s", err)
}
}
displaySymbol, err := currency.GetSymbolByCurrencyName(displayCurrency)
if err != nil {
log.Errorf(log.SyncMgr, "Failed to get display symbol: %s", err)
}
origSymbol, err := currency.GetSymbolByCurrencyName(origCurrency)
if err != nil {
log.Errorf(log.SyncMgr, "Failed to get original currency symbol for %s: %s",
origCurrency,
err)
}
return fmt.Sprintf("%s%.2f %s (%s%.2f %s)",
displaySymbol,
conv,
displayCurrency,
origSymbol,
origPrice,
origCurrency,
)
}
// PrintTickerSummary outputs the ticker results
func (m *syncManager) PrintTickerSummary(result *ticker.Price, protocol string, err error) {
if m == nil || atomic.LoadInt32(&m.started) == 0 {
return
}
if err != nil {
if err == common.ErrNotYetImplemented {
log.Warnf(log.SyncMgr, "Failed to get %s ticker. Error: %s",
protocol,
err)
return
}
log.Errorf(log.SyncMgr, "Failed to get %s ticker. Error: %s",
protocol,
err)
return
}
// ignoring error as not all tickers have volume populated and error is not actionable
_ = stats.Add(result.ExchangeName, result.Pair, result.AssetType, result.Last, result.Volume)
if result.Pair.Quote.IsFiatCurrency() &&
!result.Pair.Quote.Equal(m.fiatDisplayCurrency) &&
!m.fiatDisplayCurrency.IsEmpty() {
origCurrency := result.Pair.Quote.Upper()
log.Infof(log.SyncMgr, "%s %s %s %s TICKER: Last %s Ask %s Bid %s High %s Low %s Volume %.8f",
result.ExchangeName,
protocol,
m.FormatCurrency(result.Pair),
strings.ToUpper(result.AssetType.String()),
printConvertCurrencyFormat(result.Last, origCurrency, m.fiatDisplayCurrency),
printConvertCurrencyFormat(result.Ask, origCurrency, m.fiatDisplayCurrency),
printConvertCurrencyFormat(result.Bid, origCurrency, m.fiatDisplayCurrency),
printConvertCurrencyFormat(result.High, origCurrency, m.fiatDisplayCurrency),
printConvertCurrencyFormat(result.Low, origCurrency, m.fiatDisplayCurrency),
result.Volume)
} else {
if result.Pair.Quote.IsFiatCurrency() &&
result.Pair.Quote.Equal(m.fiatDisplayCurrency) &&
!m.fiatDisplayCurrency.IsEmpty() {
log.Infof(log.SyncMgr, "%s %s %s %s TICKER: Last %s Ask %s Bid %s High %s Low %s Volume %.8f",
result.ExchangeName,
protocol,
m.FormatCurrency(result.Pair),
strings.ToUpper(result.AssetType.String()),
printCurrencyFormat(result.Last, m.fiatDisplayCurrency),
printCurrencyFormat(result.Ask, m.fiatDisplayCurrency),
printCurrencyFormat(result.Bid, m.fiatDisplayCurrency),
printCurrencyFormat(result.High, m.fiatDisplayCurrency),
printCurrencyFormat(result.Low, m.fiatDisplayCurrency),
result.Volume)
} else {
log.Infof(log.SyncMgr, "%s %s %s %s TICKER: Last %.8f Ask %.8f Bid %.8f High %.8f Low %.8f Volume %.8f",
result.ExchangeName,
protocol,
m.FormatCurrency(result.Pair),
strings.ToUpper(result.AssetType.String()),
result.Last,
result.Ask,
result.Bid,
result.High,
result.Low,
result.Volume)
}
}
}
// FormatCurrency is a method that formats and returns a currency pair
// based on the user currency display preferences
func (m *syncManager) FormatCurrency(p currency.Pair) currency.Pair {
if m == nil || atomic.LoadInt32(&m.started) == 0 {
return p
}
return p.Format(m.format)
}
const (
book = "%s %s %s %s ORDERBOOK: Bids len: %d Amount: %f %s. Total value: %s Asks len: %d Amount: %f %s. Total value: %s"
)
// PrintOrderbookSummary outputs orderbook results
func (m *syncManager) PrintOrderbookSummary(result *orderbook.Base, protocol string, err error) {
if m == nil || atomic.LoadInt32(&m.started) == 0 {
return
}
if err != nil {
if result == nil {
log.Errorf(log.OrderBook, "Failed to get %s orderbook. Error: %s",
protocol,
err)
return
}
if err == common.ErrNotYetImplemented {
log.Warnf(log.OrderBook, "Failed to get %s orderbook for %s %s %s. Error: %s",
protocol,
result.Exchange,
result.Pair,
result.Asset,
err)
return
}
log.Errorf(log.OrderBook, "Failed to get %s orderbook for %s %s %s. Error: %s",
protocol,
result.Exchange,
result.Pair,
result.Asset,
err)
return
}
bidsAmount, bidsValue := result.TotalBidsAmount()
asksAmount, asksValue := result.TotalAsksAmount()
var bidValueResult, askValueResult string
switch {
case result.Pair.Quote.IsFiatCurrency() && !result.Pair.Quote.Equal(m.fiatDisplayCurrency) && !m.fiatDisplayCurrency.IsEmpty():
origCurrency := result.Pair.Quote.Upper()
if bidsValue > 0 {
bidValueResult = printConvertCurrencyFormat(bidsValue, origCurrency, m.fiatDisplayCurrency)
}
if asksValue > 0 {
askValueResult = printConvertCurrencyFormat(asksValue, origCurrency, m.fiatDisplayCurrency)
}
case result.Pair.Quote.IsFiatCurrency() && result.Pair.Quote.Equal(m.fiatDisplayCurrency) && !m.fiatDisplayCurrency.IsEmpty():
bidValueResult = printCurrencyFormat(bidsValue, m.fiatDisplayCurrency)
askValueResult = printCurrencyFormat(asksValue, m.fiatDisplayCurrency)
default:
bidValueResult = strconv.FormatFloat(bidsValue, 'f', -1, 64)
askValueResult = strconv.FormatFloat(asksValue, 'f', -1, 64)
}
log.Infof(log.SyncMgr, book,
result.Exchange,
protocol,
m.FormatCurrency(result.Pair),
strings.ToUpper(result.Asset.String()),
len(result.Bids),
bidsAmount,
result.Pair.Base,
bidValueResult,
len(result.Asks),
asksAmount,
result.Pair.Base,
askValueResult,
)
}
// WaitForInitialSync allows for a routine to wait for an initial sync to be
// completed without exposing the underlying type. This needs to be called in a
// separate routine.
func (m *syncManager) WaitForInitialSync() error {
if m == nil {
return fmt.Errorf("sync manager %w", ErrNilSubsystem)
}
m.inService.Wait()
if atomic.LoadInt32(&m.started) == 0 {
return fmt.Errorf("sync manager %w", ErrSubSystemNotStarted)
}
m.initSyncWG.Wait()
return nil
}
func relayWebsocketEvent(result interface{}, event, assetType, exchangeName string) {
evt := WebsocketEvent{
Data: result,
Event: event,
AssetType: assetType,
Exchange: exchangeName,
}
err := BroadcastWebsocketMessage(evt)
if !errors.Is(err, ErrWebsocketServiceNotRunning) {
log.Errorf(log.APIServerMgr, "Failed to broadcast websocket event %v. Error: %s",
event, err)
}
}
func greatestCommonDivisor(a, b time.Duration) time.Duration {
for b != 0 {
t := b
b = a % b
a = t
}
return a
}
func (s syncItemType) String() string {
switch s {
case SyncItemTicker:
return "Ticker"
case SyncItemOrderbook:
return "Orderbook"
case SyncItemTrade:
return "Trade"
default:
return fmt.Sprintf("Invalid syncItemType: %d", s)
}
}