720 lines
16 KiB
Go
720 lines
16 KiB
Go
package floodsub
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import (
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"context"
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"encoding/binary"
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"fmt"
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"sync/atomic"
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"time"
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pb "github.com/libp2p/go-floodsub/pb"
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logging "github.com/ipfs/go-log"
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host "github.com/libp2p/go-libp2p-host"
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inet "github.com/libp2p/go-libp2p-net"
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peer "github.com/libp2p/go-libp2p-peer"
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protocol "github.com/libp2p/go-libp2p-protocol"
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timecache "github.com/whyrusleeping/timecache"
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)
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const (
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defaultValidateTimeout = 150 * time.Millisecond
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defaultValidateConcurrency = 100
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defaultValidateThrottle = 8192
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)
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var log = logging.Logger("pubsub")
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type PubSub struct {
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// atomic counter for seqnos
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// NOTE: Must be declared at the top of the struct as we perform atomic
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// operations on this field.
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//
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// See: https://golang.org/pkg/sync/atomic/#pkg-note-BUG
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counter uint64
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host host.Host
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rt PubSubRouter
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// incoming messages from other peers
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incoming chan *RPC
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// messages we are publishing out to our peers
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publish chan *Message
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// addSub is a control channel for us to add and remove subscriptions
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addSub chan *addSubReq
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// get list of topics we are subscribed to
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getTopics chan *topicReq
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// get chan of peers we are connected to
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getPeers chan *listPeerReq
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// send subscription here to cancel it
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cancelCh chan *Subscription
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// a notification channel for incoming streams from other peers
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newPeers chan inet.Stream
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// a notification channel for when our peers die
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peerDead chan peer.ID
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// The set of topics we are subscribed to
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myTopics map[string]map[*Subscription]struct{}
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// topics tracks which topics each of our peers are subscribed to
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topics map[string]map[peer.ID]struct{}
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// sendMsg handles messages that have been validated
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sendMsg chan *sendReq
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// addVal handles validator registration requests
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addVal chan *addValReq
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// rmVal handles validator unregistration requests
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rmVal chan *rmValReq
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// topicVals tracks per topic validators
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topicVals map[string]*topicVal
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// validateThrottle limits the number of active validation goroutines
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validateThrottle chan struct{}
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peers map[peer.ID]chan *RPC
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seenMessages *timecache.TimeCache
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ctx context.Context
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}
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// PubSubRouter is the message router component of PubSub
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type PubSubRouter interface {
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Protocols() []protocol.ID
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Attach(*PubSub)
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AddPeer(peer.ID, protocol.ID)
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RemovePeer(peer.ID)
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HandleRPC(*RPC)
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Publish(peer.ID, *pb.Message)
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}
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type Message struct {
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*pb.Message
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}
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func (m *Message) GetFrom() peer.ID {
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return peer.ID(m.Message.GetFrom())
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}
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type RPC struct {
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pb.RPC
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// unexported on purpose, not sending this over the wire
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from peer.ID
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}
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type Option func(*PubSub) error
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// NewFloodSub returns a new PubSub management object
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func NewPubSub(ctx context.Context, h host.Host, rt PubSubRouter, opts ...Option) (*PubSub, error) {
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ps := &PubSub{
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host: h,
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ctx: ctx,
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rt: rt,
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incoming: make(chan *RPC, 32),
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publish: make(chan *Message),
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newPeers: make(chan inet.Stream),
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peerDead: make(chan peer.ID),
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cancelCh: make(chan *Subscription),
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getPeers: make(chan *listPeerReq),
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addSub: make(chan *addSubReq),
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getTopics: make(chan *topicReq),
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sendMsg: make(chan *sendReq, 32),
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addVal: make(chan *addValReq),
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rmVal: make(chan *rmValReq),
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validateThrottle: make(chan struct{}, defaultValidateThrottle),
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myTopics: make(map[string]map[*Subscription]struct{}),
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topics: make(map[string]map[peer.ID]struct{}),
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peers: make(map[peer.ID]chan *RPC),
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topicVals: make(map[string]*topicVal),
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seenMessages: timecache.NewTimeCache(time.Second * 30),
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counter: uint64(time.Now().UnixNano()),
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}
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for _, opt := range opts {
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err := opt(ps)
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if err != nil {
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return nil, err
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}
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}
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rt.Attach(ps)
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for _, id := range rt.Protocols() {
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h.SetStreamHandler(id, ps.handleNewStream)
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}
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h.Network().Notify((*PubSubNotif)(ps))
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go ps.processLoop(ctx)
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return ps, nil
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}
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func WithValidateThrottle(n int) Option {
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return func(ps *PubSub) error {
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ps.validateThrottle = make(chan struct{}, n)
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return nil
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}
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}
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// processLoop handles all inputs arriving on the channels
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func (p *PubSub) processLoop(ctx context.Context) {
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defer func() {
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// Clean up go routines.
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for _, ch := range p.peers {
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close(ch)
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}
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p.peers = nil
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p.topics = nil
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}()
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for {
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select {
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case s := <-p.newPeers:
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pid := s.Conn().RemotePeer()
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ch, ok := p.peers[pid]
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if ok {
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log.Error("already have connection to peer: ", pid)
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close(ch)
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}
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messages := make(chan *RPC, 32)
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go p.handleSendingMessages(ctx, s, messages)
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messages <- p.getHelloPacket()
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p.peers[pid] = messages
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p.rt.AddPeer(pid, s.Protocol())
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case pid := <-p.peerDead:
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ch, ok := p.peers[pid]
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if ok {
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close(ch)
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}
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delete(p.peers, pid)
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for _, t := range p.topics {
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delete(t, pid)
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}
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p.rt.RemovePeer(pid)
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case treq := <-p.getTopics:
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var out []string
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for t := range p.myTopics {
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out = append(out, t)
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}
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treq.resp <- out
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case sub := <-p.cancelCh:
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p.handleRemoveSubscription(sub)
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case sub := <-p.addSub:
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p.handleAddSubscription(sub)
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case preq := <-p.getPeers:
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tmap, ok := p.topics[preq.topic]
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if preq.topic != "" && !ok {
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preq.resp <- nil
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continue
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}
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var peers []peer.ID
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for p := range p.peers {
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if preq.topic != "" {
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_, ok := tmap[p]
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if !ok {
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continue
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}
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}
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peers = append(peers, p)
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}
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preq.resp <- peers
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case rpc := <-p.incoming:
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p.handleIncomingRPC(rpc)
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case msg := <-p.publish:
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vals := p.getValidators(msg)
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p.pushMsg(vals, p.host.ID(), msg)
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case req := <-p.sendMsg:
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p.maybePublishMessage(req.from, req.msg.Message)
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case req := <-p.addVal:
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p.addValidator(req)
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case req := <-p.rmVal:
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p.rmValidator(req)
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case <-ctx.Done():
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log.Info("pubsub processloop shutting down")
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return
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}
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}
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}
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// handleRemoveSubscription removes Subscription sub from bookeeping.
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// If this was the last Subscription for a given topic, it will also announce
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// that this node is not subscribing to this topic anymore.
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// Only called from processLoop.
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func (p *PubSub) handleRemoveSubscription(sub *Subscription) {
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subs := p.myTopics[sub.topic]
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if subs == nil {
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return
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}
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sub.err = fmt.Errorf("subscription cancelled by calling sub.Cancel()")
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close(sub.ch)
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delete(subs, sub)
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if len(subs) == 0 {
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delete(p.myTopics, sub.topic)
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p.announce(sub.topic, false)
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}
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}
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// handleAddSubscription adds a Subscription for a particular topic. If it is
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// the first Subscription for the topic, it will announce that this node
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// subscribes to the topic.
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// Only called from processLoop.
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func (p *PubSub) handleAddSubscription(req *addSubReq) {
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sub := req.sub
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subs := p.myTopics[sub.topic]
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// announce we want this topic
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if len(subs) == 0 {
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p.announce(sub.topic, true)
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}
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// make new if not there
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if subs == nil {
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p.myTopics[sub.topic] = make(map[*Subscription]struct{})
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subs = p.myTopics[sub.topic]
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}
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sub.ch = make(chan *Message, 32)
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sub.cancelCh = p.cancelCh
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p.myTopics[sub.topic][sub] = struct{}{}
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req.resp <- sub
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}
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// announce announces whether or not this node is interested in a given topic
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// Only called from processLoop.
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func (p *PubSub) announce(topic string, sub bool) {
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subopt := &pb.RPC_SubOpts{
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Topicid: &topic,
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Subscribe: &sub,
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}
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out := rpcWithSubs(subopt)
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for pid, peer := range p.peers {
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select {
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case peer <- out:
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default:
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log.Infof("dropping announce message to peer %s: queue full", pid)
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}
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}
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}
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// notifySubs sends a given message to all corresponding subscribers.
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// Only called from processLoop.
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func (p *PubSub) notifySubs(msg *pb.Message) {
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for _, topic := range msg.GetTopicIDs() {
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subs := p.myTopics[topic]
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for f := range subs {
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select {
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case f.ch <- &Message{msg}:
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default:
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log.Infof("Can't deliver message to subscription for topic %s; subscriber too slow", topic)
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}
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}
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}
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}
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// seenMessage returns whether we already saw this message before
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func (p *PubSub) seenMessage(id string) bool {
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return p.seenMessages.Has(id)
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}
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// markSeen marks a message as seen such that seenMessage returns `true' for the given id
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func (p *PubSub) markSeen(id string) {
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p.seenMessages.Add(id)
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}
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// subscribedToMessage returns whether we are subscribed to one of the topics
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// of a given message
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func (p *PubSub) subscribedToMsg(msg *pb.Message) bool {
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if len(p.myTopics) == 0 {
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return false
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}
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for _, t := range msg.GetTopicIDs() {
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if _, ok := p.myTopics[t]; ok {
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return true
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}
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}
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return false
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}
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func (p *PubSub) handleIncomingRPC(rpc *RPC) {
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for _, subopt := range rpc.GetSubscriptions() {
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t := subopt.GetTopicid()
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if subopt.GetSubscribe() {
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tmap, ok := p.topics[t]
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if !ok {
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tmap = make(map[peer.ID]struct{})
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p.topics[t] = tmap
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}
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tmap[rpc.from] = struct{}{}
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} else {
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tmap, ok := p.topics[t]
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if !ok {
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continue
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}
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delete(tmap, rpc.from)
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}
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}
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for _, pmsg := range rpc.GetPublish() {
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if !p.subscribedToMsg(pmsg) {
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log.Warning("received message we didn't subscribe to. Dropping.")
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continue
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}
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msg := &Message{pmsg}
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vals := p.getValidators(msg)
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p.pushMsg(vals, rpc.from, msg)
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}
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p.rt.HandleRPC(rpc)
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}
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// msgID returns a unique ID of the passed Message
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func msgID(pmsg *pb.Message) string {
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return string(pmsg.GetFrom()) + string(pmsg.GetSeqno())
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}
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// pushMsg pushes a message performing validation as necessary
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func (p *PubSub) pushMsg(vals []*topicVal, src peer.ID, msg *Message) {
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if len(vals) > 0 {
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// validation is asynchronous and globally throttled with the throttleValidate semaphore.
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// the purpose of the global throttle is to bound the goncurrency possible from incoming
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// network traffic; each validator also has an individual throttle to preclude
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// slow (or faulty) validators from starving other topics; see validate below.
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select {
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case p.validateThrottle <- struct{}{}:
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go func() {
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p.validate(vals, src, msg)
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<-p.validateThrottle
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}()
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default:
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log.Warningf("message validation throttled; dropping message from %s", src)
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}
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return
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}
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p.maybePublishMessage(src, msg.Message)
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}
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// validate performs validation and only sends the message if all validators succeed
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func (p *PubSub) validate(vals []*topicVal, src peer.ID, msg *Message) {
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ctx, cancel := context.WithCancel(p.ctx)
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defer cancel()
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rch := make(chan bool, len(vals))
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rcount := 0
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throttle := false
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loop:
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for _, val := range vals {
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rcount++
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select {
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case val.validateThrottle <- struct{}{}:
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go func(val *topicVal) {
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rch <- val.validateMsg(ctx, msg)
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<-val.validateThrottle
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}(val)
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default:
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log.Debugf("validation throttled for topic %s", val.topic)
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throttle = true
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break loop
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}
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}
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if throttle {
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log.Warningf("message validation throttled; dropping message from %s", src)
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return
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}
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for i := 0; i < rcount; i++ {
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valid := <-rch
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if !valid {
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log.Warningf("message validation failed; dropping message from %s", src)
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return
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}
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}
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// all validators were successful, send the message
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p.sendMsg <- &sendReq{
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from: src,
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msg: msg,
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}
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}
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func (p *PubSub) maybePublishMessage(from peer.ID, pmsg *pb.Message) {
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id := msgID(pmsg)
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if p.seenMessage(id) {
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return
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}
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p.markSeen(id)
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p.notifySubs(pmsg)
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p.rt.Publish(from, pmsg)
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}
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// getValidators returns all validators that apply to a given message
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func (p *PubSub) getValidators(msg *Message) []*topicVal {
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var vals []*topicVal
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for _, topic := range msg.GetTopicIDs() {
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val, ok := p.topicVals[topic]
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if !ok {
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continue
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}
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vals = append(vals, val)
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}
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return vals
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}
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type addSubReq struct {
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sub *Subscription
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resp chan *Subscription
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}
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type SubOpt func(sub *Subscription) error
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// Subscribe returns a new Subscription for the given topic
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func (p *PubSub) Subscribe(topic string, opts ...SubOpt) (*Subscription, error) {
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td := pb.TopicDescriptor{Name: &topic}
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return p.SubscribeByTopicDescriptor(&td, opts...)
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}
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// SubscribeByTopicDescriptor lets you subscribe a topic using a pb.TopicDescriptor
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func (p *PubSub) SubscribeByTopicDescriptor(td *pb.TopicDescriptor, opts ...SubOpt) (*Subscription, error) {
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if td.GetAuth().GetMode() != pb.TopicDescriptor_AuthOpts_NONE {
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return nil, fmt.Errorf("auth mode not yet supported")
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}
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if td.GetEnc().GetMode() != pb.TopicDescriptor_EncOpts_NONE {
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return nil, fmt.Errorf("encryption mode not yet supported")
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}
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sub := &Subscription{
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topic: td.GetName(),
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}
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for _, opt := range opts {
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err := opt(sub)
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if err != nil {
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return nil, err
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}
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}
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out := make(chan *Subscription, 1)
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p.addSub <- &addSubReq{
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sub: sub,
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resp: out,
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}
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return <-out, nil
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}
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type topicReq struct {
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resp chan []string
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}
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// GetTopics returns the topics this node is subscribed to
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func (p *PubSub) GetTopics() []string {
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out := make(chan []string, 1)
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p.getTopics <- &topicReq{resp: out}
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return <-out
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}
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// Publish publishes data under the given topic
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func (p *PubSub) Publish(topic string, data []byte) error {
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seqno := make([]byte, 8)
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counter := atomic.AddUint64(&p.counter, 1)
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binary.BigEndian.PutUint64(seqno, counter)
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p.publish <- &Message{
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&pb.Message{
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Data: data,
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TopicIDs: []string{topic},
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From: []byte(p.host.ID()),
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Seqno: seqno,
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},
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}
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return nil
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}
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type listPeerReq struct {
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resp chan []peer.ID
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topic string
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}
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// sendReq is a request to call maybePublishMessage. It is issued after the subscription verification is done.
|
|
type sendReq struct {
|
|
from peer.ID
|
|
msg *Message
|
|
}
|
|
|
|
// ListPeers returns a list of peers we are connected to.
|
|
func (p *PubSub) ListPeers(topic string) []peer.ID {
|
|
out := make(chan []peer.ID)
|
|
p.getPeers <- &listPeerReq{
|
|
resp: out,
|
|
topic: topic,
|
|
}
|
|
return <-out
|
|
}
|
|
|
|
// per topic validators
|
|
type addValReq struct {
|
|
topic string
|
|
validate Validator
|
|
timeout time.Duration
|
|
throttle int
|
|
resp chan error
|
|
}
|
|
|
|
type rmValReq struct {
|
|
topic string
|
|
resp chan error
|
|
}
|
|
|
|
type topicVal struct {
|
|
topic string
|
|
validate Validator
|
|
validateTimeout time.Duration
|
|
validateThrottle chan struct{}
|
|
}
|
|
|
|
// Validator is a function that validates a message
|
|
type Validator func(context.Context, *Message) bool
|
|
|
|
// ValidatorOpt is an option for RegisterTopicValidator
|
|
type ValidatorOpt func(addVal *addValReq) error
|
|
|
|
// WithValidatorTimeout is an option that sets the topic validator timeout
|
|
func WithValidatorTimeout(timeout time.Duration) ValidatorOpt {
|
|
return func(addVal *addValReq) error {
|
|
addVal.timeout = timeout
|
|
return nil
|
|
}
|
|
}
|
|
|
|
// WithValidatorConcurrency is an option that sets topic validator throttle
|
|
func WithValidatorConcurrency(n int) ValidatorOpt {
|
|
return func(addVal *addValReq) error {
|
|
addVal.throttle = n
|
|
return nil
|
|
}
|
|
}
|
|
|
|
// RegisterTopicValidator registers a validator for topic
|
|
func (p *PubSub) RegisterTopicValidator(topic string, val Validator, opts ...ValidatorOpt) error {
|
|
addVal := &addValReq{
|
|
topic: topic,
|
|
validate: val,
|
|
resp: make(chan error, 1),
|
|
}
|
|
|
|
for _, opt := range opts {
|
|
err := opt(addVal)
|
|
if err != nil {
|
|
return err
|
|
}
|
|
}
|
|
|
|
p.addVal <- addVal
|
|
return <-addVal.resp
|
|
}
|
|
|
|
func (ps *PubSub) addValidator(req *addValReq) {
|
|
topic := req.topic
|
|
|
|
_, ok := ps.topicVals[topic]
|
|
if ok {
|
|
req.resp <- fmt.Errorf("Duplicate validator for topic %s", topic)
|
|
return
|
|
}
|
|
|
|
val := &topicVal{
|
|
topic: topic,
|
|
validate: req.validate,
|
|
validateTimeout: defaultValidateTimeout,
|
|
validateThrottle: make(chan struct{}, defaultValidateConcurrency),
|
|
}
|
|
|
|
if req.timeout > 0 {
|
|
val.validateTimeout = req.timeout
|
|
}
|
|
|
|
if req.throttle > 0 {
|
|
val.validateThrottle = make(chan struct{}, req.throttle)
|
|
}
|
|
|
|
ps.topicVals[topic] = val
|
|
req.resp <- nil
|
|
}
|
|
|
|
// UnregisterTopicValidator removes a validator from a topic
|
|
// returns an error if there was no validator registered with the topic
|
|
func (p *PubSub) UnregisterTopicValidator(topic string) error {
|
|
rmVal := &rmValReq{
|
|
topic: topic,
|
|
resp: make(chan error, 1),
|
|
}
|
|
|
|
p.rmVal <- rmVal
|
|
return <-rmVal.resp
|
|
}
|
|
|
|
func (ps *PubSub) rmValidator(req *rmValReq) {
|
|
topic := req.topic
|
|
|
|
_, ok := ps.topicVals[topic]
|
|
if ok {
|
|
delete(ps.topicVals, topic)
|
|
req.resp <- nil
|
|
} else {
|
|
req.resp <- fmt.Errorf("No validator for topic %s", topic)
|
|
}
|
|
}
|
|
|
|
func (val *topicVal) validateMsg(ctx context.Context, msg *Message) bool {
|
|
vctx, cancel := context.WithTimeout(ctx, val.validateTimeout)
|
|
defer cancel()
|
|
|
|
valid := val.validate(vctx, msg)
|
|
if !valid {
|
|
log.Debugf("validation failed for topic %s", val.topic)
|
|
}
|
|
|
|
return valid
|
|
}
|