312 lines
9.1 KiB
Go
312 lines
9.1 KiB
Go
package whisper
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import (
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"context"
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"errors"
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"sync"
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"github.com/status-im/status-go/protocol/transport"
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"go.uber.org/zap"
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"github.com/status-im/status-go/eth-node/types"
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)
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// EnvelopeState in local tracker
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type EnvelopeState int
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const (
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// NotRegistered returned if asked hash wasn't registered in the tracker.
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NotRegistered EnvelopeState = -1
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// EnvelopePosted is set when envelope was added to a local whisper queue.
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EnvelopePosted EnvelopeState = iota
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// EnvelopeSent is set when envelope is sent to at least one peer.
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EnvelopeSent
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)
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// EnvelopeEventsHandler used for two different event types.
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type EnvelopeEventsHandler interface {
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EnvelopeSent([][]byte)
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EnvelopeExpired([][]byte, error)
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MailServerRequestCompleted(types.Hash, types.Hash, []byte, error)
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MailServerRequestExpired(types.Hash)
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}
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// NewEnvelopesMonitor returns a pointer to an instance of the EnvelopesMonitor.
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func NewEnvelopesMonitor(w types.Whisper, config transport.EnvelopesMonitorConfig) *EnvelopesMonitor {
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logger := config.Logger
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if logger == nil {
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logger = zap.NewNop()
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}
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var whisperAPI types.PublicWhisperAPI
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if w != nil {
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whisperAPI = w.PublicWhisperAPI()
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}
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return &EnvelopesMonitor{
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w: w,
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whisperAPI: whisperAPI,
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handler: config.EnvelopeEventsHandler,
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mailServerConfirmation: config.MailserverConfirmationsEnabled,
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maxAttempts: config.MaxAttempts,
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isMailserver: config.IsMailserver,
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logger: logger.With(zap.Namespace("EnvelopesMonitor")),
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// key is envelope hash (event.Hash)
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envelopes: map[types.Hash]EnvelopeState{},
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messages: map[types.Hash]*types.NewMessage{},
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attempts: map[types.Hash]int{},
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identifiers: make(map[types.Hash][][]byte),
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// key is hash of the batch (event.Batch)
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batches: map[types.Hash]map[types.Hash]struct{}{},
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}
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}
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// EnvelopesMonitor is responsible for monitoring whisper envelopes state.
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type EnvelopesMonitor struct {
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w types.Whisper
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whisperAPI types.PublicWhisperAPI
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handler EnvelopeEventsHandler
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mailServerConfirmation bool
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maxAttempts int
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mu sync.Mutex
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envelopes map[types.Hash]EnvelopeState
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batches map[types.Hash]map[types.Hash]struct{}
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messages map[types.Hash]*types.NewMessage
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attempts map[types.Hash]int
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identifiers map[types.Hash][][]byte
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wg sync.WaitGroup
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quit chan struct{}
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isMailserver func(peer types.EnodeID) bool
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logger *zap.Logger
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}
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// Start processing events.
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func (m *EnvelopesMonitor) Start() {
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m.quit = make(chan struct{})
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m.wg.Add(1)
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go func() {
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m.handleEnvelopeEvents()
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m.wg.Done()
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}()
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}
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// Stop process events.
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func (m *EnvelopesMonitor) Stop() {
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close(m.quit)
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m.wg.Wait()
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}
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// Add hash to a tracker.
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func (m *EnvelopesMonitor) Add(identifiers [][]byte, envelopeHash types.Hash, message types.NewMessage) {
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m.mu.Lock()
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defer m.mu.Unlock()
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m.envelopes[envelopeHash] = EnvelopePosted
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m.identifiers[envelopeHash] = identifiers
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m.messages[envelopeHash] = &message
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m.attempts[envelopeHash] = 1
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}
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func (m *EnvelopesMonitor) GetState(hash types.Hash) EnvelopeState {
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m.mu.Lock()
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defer m.mu.Unlock()
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state, exist := m.envelopes[hash]
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if !exist {
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return NotRegistered
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}
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return state
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}
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// handleEnvelopeEvents processes whisper envelope events
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func (m *EnvelopesMonitor) handleEnvelopeEvents() {
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events := make(chan types.EnvelopeEvent, 100) // must be buffered to prevent blocking whisper
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sub := m.w.SubscribeEnvelopeEvents(events)
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defer func() {
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close(events)
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sub.Unsubscribe()
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}()
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for {
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select {
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case <-m.quit:
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return
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case event := <-events:
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m.handleEvent(event)
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}
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}
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}
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// handleEvent based on type of the event either triggers
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// confirmation handler or removes hash from tracker
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func (m *EnvelopesMonitor) handleEvent(event types.EnvelopeEvent) {
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handlers := map[types.EventType]func(types.EnvelopeEvent){
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types.EventEnvelopeSent: m.handleEventEnvelopeSent,
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types.EventEnvelopeExpired: m.handleEventEnvelopeExpired,
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types.EventBatchAcknowledged: m.handleAcknowledgedBatch,
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types.EventEnvelopeReceived: m.handleEventEnvelopeReceived,
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}
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if handler, ok := handlers[event.Event]; ok {
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handler(event)
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}
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}
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func (m *EnvelopesMonitor) handleEventEnvelopeSent(event types.EnvelopeEvent) {
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if m.mailServerConfirmation {
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if !m.isMailserver(event.Peer) {
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return
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}
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}
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m.mu.Lock()
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defer m.mu.Unlock()
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state, ok := m.envelopes[event.Hash]
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// if we didn't send a message using extension - skip it
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// if message was already confirmed - skip it
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if !ok || state == EnvelopeSent {
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return
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}
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m.logger.Debug("envelope is sent", zap.String("hash", event.Hash.String()), zap.String("peer", event.Peer.String()))
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if event.Batch != (types.Hash{}) {
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if _, ok := m.batches[event.Batch]; !ok {
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m.batches[event.Batch] = map[types.Hash]struct{}{}
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}
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m.batches[event.Batch][event.Hash] = struct{}{}
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m.logger.Debug("waiting for a confirmation", zap.String("batch", event.Batch.String()))
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} else {
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m.envelopes[event.Hash] = EnvelopeSent
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if m.handler != nil {
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m.handler.EnvelopeSent(m.identifiers[event.Hash])
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}
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}
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}
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func (m *EnvelopesMonitor) handleAcknowledgedBatch(event types.EnvelopeEvent) {
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if m.mailServerConfirmation {
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if !m.isMailserver(event.Peer) {
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return
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}
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}
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m.mu.Lock()
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defer m.mu.Unlock()
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envelopes, ok := m.batches[event.Batch]
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if !ok {
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m.logger.Debug("batch is not found", zap.String("batch", event.Batch.String()))
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}
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m.logger.Debug("received a confirmation", zap.String("batch", event.Batch.String()), zap.String("peer", event.Peer.String()))
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envelopeErrors, ok := event.Data.([]types.EnvelopeError)
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if event.Data != nil && !ok {
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m.logger.Error("received unexpected data in the the confirmation event", zap.Any("data", event.Data))
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}
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failedEnvelopes := map[types.Hash]struct{}{}
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for i := range envelopeErrors {
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envelopeError := envelopeErrors[i]
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_, exist := m.envelopes[envelopeError.Hash]
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if exist {
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m.logger.Warn("envelope that was posted by us is discarded", zap.String("hash", envelopeError.Hash.String()), zap.String("peer", event.Peer.String()), zap.String("error", envelopeError.Description))
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var err error
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switch envelopeError.Code {
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case types.EnvelopeTimeNotSynced:
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err = errors.New("envelope wasn't delivered due to time sync issues")
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}
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m.handleEnvelopeFailure(envelopeError.Hash, err)
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}
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failedEnvelopes[envelopeError.Hash] = struct{}{}
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}
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for hash := range envelopes {
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if _, exist := failedEnvelopes[hash]; exist {
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continue
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}
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state, ok := m.envelopes[hash]
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if !ok || state == EnvelopeSent {
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continue
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}
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m.envelopes[hash] = EnvelopeSent
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if m.handler != nil {
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m.handler.EnvelopeSent(m.identifiers[hash])
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}
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}
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delete(m.batches, event.Batch)
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}
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func (m *EnvelopesMonitor) handleEventEnvelopeExpired(event types.EnvelopeEvent) {
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m.mu.Lock()
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defer m.mu.Unlock()
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m.handleEnvelopeFailure(event.Hash, errors.New("envelope expired due to connectivity issues"))
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}
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// handleEnvelopeFailure is a common code path for processing envelopes failures. not thread safe, lock
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// must be used on a higher level.
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func (m *EnvelopesMonitor) handleEnvelopeFailure(hash types.Hash, err error) {
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if state, ok := m.envelopes[hash]; ok {
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message, exist := m.messages[hash]
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if !exist {
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m.logger.Error("message was deleted erroneously", zap.String("envelope hash", hash.String()))
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}
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attempt := m.attempts[hash]
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identifiers := m.identifiers[hash]
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m.clearMessageState(hash)
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if state == EnvelopeSent {
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return
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}
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if attempt < m.maxAttempts {
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m.logger.Debug("retrying to send a message", zap.String("hash", hash.String()), zap.Int("attempt", attempt+1))
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hex, err := m.whisperAPI.Post(context.TODO(), *message)
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if err != nil {
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m.logger.Error("failed to retry sending message", zap.String("hash", hash.String()), zap.Int("attempt", attempt+1), zap.Error(err))
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if m.handler != nil {
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m.handler.EnvelopeExpired(identifiers, err)
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}
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}
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envelopeID := types.BytesToHash(hex)
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m.envelopes[envelopeID] = EnvelopePosted
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m.messages[envelopeID] = message
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m.attempts[envelopeID] = attempt + 1
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m.identifiers[envelopeID] = identifiers
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} else {
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m.logger.Debug("envelope expired", zap.String("hash", hash.String()))
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if m.handler != nil {
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m.handler.EnvelopeExpired(identifiers, err)
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}
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}
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}
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}
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func (m *EnvelopesMonitor) handleEventEnvelopeReceived(event types.EnvelopeEvent) {
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if m.mailServerConfirmation {
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if !m.isMailserver(event.Peer) {
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return
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}
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}
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m.mu.Lock()
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defer m.mu.Unlock()
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state, ok := m.envelopes[event.Hash]
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if !ok || state != EnvelopePosted {
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return
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}
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m.logger.Debug("expected envelope received", zap.String("hash", event.Hash.String()), zap.String("peer", event.Peer.String()))
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m.envelopes[event.Hash] = EnvelopeSent
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if m.handler != nil {
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m.handler.EnvelopeSent(m.identifiers[event.Hash])
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}
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}
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// clearMessageState removes all message and envelope state.
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// not thread-safe, should be protected on a higher level.
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func (m *EnvelopesMonitor) clearMessageState(envelopeID types.Hash) {
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delete(m.envelopes, envelopeID)
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delete(m.messages, envelopeID)
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delete(m.attempts, envelopeID)
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delete(m.identifiers, envelopeID)
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}
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