250 lines
7.6 KiB
Go
250 lines
7.6 KiB
Go
package healthmanager
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import (
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"context"
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"sync"
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status_common "github.com/status-im/status-go/common"
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"github.com/status-im/status-go/healthmanager/aggregator"
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"github.com/status-im/status-go/healthmanager/rpcstatus"
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)
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// BlockchainFullStatus contains the full status of the blockchain, including provider statuses.
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type BlockchainFullStatus struct {
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Status rpcstatus.ProviderStatus `json:"status"`
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StatusPerChain map[uint64]rpcstatus.ProviderStatus `json:"statusPerChain"`
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StatusPerChainPerProvider map[uint64]map[string]rpcstatus.ProviderStatus `json:"statusPerChainPerProvider"`
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}
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// BlockchainStatus contains the status of the blockchain
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type BlockchainStatus struct {
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Status rpcstatus.ProviderStatus `json:"status"`
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StatusPerChain map[uint64]rpcstatus.ProviderStatus `json:"statusPerChain"`
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}
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// BlockchainHealthManager manages the state of all providers and aggregates their statuses.
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type BlockchainHealthManager struct {
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mu sync.RWMutex
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aggregator *aggregator.Aggregator
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subscribers sync.Map // thread-safe
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providers map[uint64]*ProvidersHealthManager
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cancelFuncs map[uint64]context.CancelFunc // Map chainID to cancel functions
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lastStatus *BlockchainStatus
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wg sync.WaitGroup
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}
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// NewBlockchainHealthManager creates a new instance of BlockchainHealthManager.
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func NewBlockchainHealthManager() *BlockchainHealthManager {
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agg := aggregator.NewAggregator("blockchain")
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return &BlockchainHealthManager{
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aggregator: agg,
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providers: make(map[uint64]*ProvidersHealthManager),
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cancelFuncs: make(map[uint64]context.CancelFunc),
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}
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}
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// RegisterProvidersHealthManager registers the provider health manager.
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// It removes any existing provider for the same chain before registering the new one.
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func (b *BlockchainHealthManager) RegisterProvidersHealthManager(ctx context.Context, phm *ProvidersHealthManager) error {
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b.mu.Lock()
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defer b.mu.Unlock()
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chainID := phm.ChainID()
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// Check if a provider for the given chainID is already registered and remove it
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if _, exists := b.providers[chainID]; exists {
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// Cancel the existing context
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if cancel, cancelExists := b.cancelFuncs[chainID]; cancelExists {
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cancel()
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}
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// Remove the old registration
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delete(b.providers, chainID)
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delete(b.cancelFuncs, chainID)
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}
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// Proceed with the registration
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b.providers[chainID] = phm
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// Create a new context for the provider
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providerCtx, cancel := context.WithCancel(ctx)
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b.cancelFuncs[chainID] = cancel
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statusCh := phm.Subscribe()
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b.wg.Add(1)
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go func(phm *ProvidersHealthManager, statusCh chan struct{}, providerCtx context.Context) {
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defer status_common.LogOnPanic()
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defer func() {
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phm.Unsubscribe(statusCh)
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b.wg.Done()
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}()
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for {
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select {
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case <-statusCh:
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// When the provider updates its status, check the statuses of all providers
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b.aggregateAndUpdateStatus(providerCtx)
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case <-providerCtx.Done():
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// Stop processing when the context is cancelled
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return
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}
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}
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}(phm, statusCh, providerCtx)
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return nil
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}
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// Stop stops the event processing and unsubscribes.
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func (b *BlockchainHealthManager) Stop() {
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b.mu.Lock()
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for _, cancel := range b.cancelFuncs {
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cancel()
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}
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clear(b.cancelFuncs)
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clear(b.providers)
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b.mu.Unlock()
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b.wg.Wait()
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}
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// Subscribe allows clients to receive notifications about changes.
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func (b *BlockchainHealthManager) Subscribe() chan struct{} {
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ch := make(chan struct{}, 1)
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b.subscribers.Store(ch, struct{}{})
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return ch
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}
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// Unsubscribe removes a subscriber from receiving notifications.
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func (b *BlockchainHealthManager) Unsubscribe(ch chan struct{}) {
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b.subscribers.Delete(ch) // Удаляем подписчика из sync.Map
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close(ch)
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}
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// aggregateAndUpdateStatus collects statuses from all providers and updates the overall and short status.
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func (b *BlockchainHealthManager) aggregateAndUpdateStatus(ctx context.Context) {
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newShortStatus := b.aggregateStatus()
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// If status has changed, update the last status and emit notifications
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if b.shouldUpdateStatus(newShortStatus) {
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b.updateStatus(newShortStatus)
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b.emitBlockchainHealthStatus(ctx)
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}
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}
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// aggregateStatus aggregates provider statuses and returns the new short status.
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func (b *BlockchainHealthManager) aggregateStatus() BlockchainStatus {
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b.mu.Lock()
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defer b.mu.Unlock()
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// Collect statuses from all providers
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providerStatuses := make([]rpcstatus.ProviderStatus, 0)
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for _, provider := range b.providers {
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providerStatuses = append(providerStatuses, provider.Status())
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}
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// Update the aggregator with the new list of provider statuses
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b.aggregator.UpdateBatch(providerStatuses)
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// Get the new aggregated full and short status
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return b.getStatusPerChain()
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}
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// shouldUpdateStatus checks if the status has changed and needs to be updated.
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func (b *BlockchainHealthManager) shouldUpdateStatus(newShortStatus BlockchainStatus) bool {
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b.mu.RLock()
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defer b.mu.RUnlock()
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return b.lastStatus == nil || !compareShortStatus(newShortStatus, *b.lastStatus)
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}
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// updateStatus updates the last known status with the new status.
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func (b *BlockchainHealthManager) updateStatus(newShortStatus BlockchainStatus) {
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b.mu.Lock()
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defer b.mu.Unlock()
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b.lastStatus = &newShortStatus
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}
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// compareShortStatus compares two BlockchainStatus structs and returns true if they are identical.
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func compareShortStatus(newStatus, previousStatus BlockchainStatus) bool {
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if newStatus.Status.Status != previousStatus.Status.Status {
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return false
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}
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if len(newStatus.StatusPerChain) != len(previousStatus.StatusPerChain) {
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return false
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}
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for chainID, newChainStatus := range newStatus.StatusPerChain {
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if prevChainStatus, ok := previousStatus.StatusPerChain[chainID]; !ok || newChainStatus.Status != prevChainStatus.Status {
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return false
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}
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}
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return true
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}
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// emitBlockchainHealthStatus sends a notification to all subscribers about the new blockchain status.
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func (b *BlockchainHealthManager) emitBlockchainHealthStatus(ctx context.Context) {
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b.subscribers.Range(func(key, value interface{}) bool {
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subscriber := key.(chan struct{})
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select {
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case <-ctx.Done():
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// Stop sending notifications when the context is cancelled
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return false
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case subscriber <- struct{}{}:
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default:
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// Skip notification if the subscriber's channel is full (non-blocking)
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}
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return true
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})
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}
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func (b *BlockchainHealthManager) GetFullStatus() BlockchainFullStatus {
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b.mu.RLock()
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defer b.mu.RUnlock()
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statusPerChainPerProvider := make(map[uint64]map[string]rpcstatus.ProviderStatus)
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for chainID, phm := range b.providers {
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providerStatuses := phm.GetStatuses()
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statusPerChainPerProvider[chainID] = providerStatuses
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}
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statusPerChain := b.getStatusPerChain()
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return BlockchainFullStatus{
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Status: statusPerChain.Status,
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StatusPerChain: statusPerChain.StatusPerChain,
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StatusPerChainPerProvider: statusPerChainPerProvider,
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}
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}
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func (b *BlockchainHealthManager) getStatusPerChain() BlockchainStatus {
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statusPerChain := make(map[uint64]rpcstatus.ProviderStatus)
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for chainID, phm := range b.providers {
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chainStatus := phm.Status()
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statusPerChain[chainID] = chainStatus
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}
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blockchainStatus := b.aggregator.GetAggregatedStatus()
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return BlockchainStatus{
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Status: blockchainStatus,
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StatusPerChain: statusPerChain,
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}
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}
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func (b *BlockchainHealthManager) GetStatusPerChain() BlockchainStatus {
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b.mu.RLock()
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defer b.mu.RUnlock()
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return b.getStatusPerChain()
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}
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// Status returns the current aggregated status.
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func (b *BlockchainHealthManager) Status() rpcstatus.ProviderStatus {
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b.mu.RLock()
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defer b.mu.RUnlock()
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return b.aggregator.GetAggregatedStatus()
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}
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