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mirror of https://github.com/ipfs/kubo.git synced 2025-06-29 17:36:38 +08:00

Merge branch 'feat/network-error-propagation-1'

This commit is contained in:
Brian Tiger Chow
2014-09-24 23:36:52 -04:00
9 changed files with 62 additions and 71 deletions

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@ -1,8 +1,6 @@
package bitswap package bitswap
import ( import (
"errors"
context "github.com/jbenet/go-ipfs/Godeps/_workspace/src/code.google.com/p/go.net/context" context "github.com/jbenet/go-ipfs/Godeps/_workspace/src/code.google.com/p/go.net/context"
ds "github.com/jbenet/go-ipfs/Godeps/_workspace/src/github.com/jbenet/datastore.go" ds "github.com/jbenet/go-ipfs/Godeps/_workspace/src/github.com/jbenet/datastore.go"
@ -120,14 +118,16 @@ func (bs *bitswap) HasBlock(ctx context.Context, blk blocks.Block) error {
// TODO(brian): handle errors // TODO(brian): handle errors
func (bs *bitswap) ReceiveMessage(ctx context.Context, p *peer.Peer, incoming bsmsg.BitSwapMessage) ( func (bs *bitswap) ReceiveMessage(ctx context.Context, p *peer.Peer, incoming bsmsg.BitSwapMessage) (
*peer.Peer, bsmsg.BitSwapMessage, error) { *peer.Peer, bsmsg.BitSwapMessage) {
u.DOut("ReceiveMessage from %v\n", p.Key().Pretty()) u.DOut("ReceiveMessage from %v\n", p.Key().Pretty())
if p == nil { if p == nil {
return nil, nil, errors.New("Received nil Peer") // TODO propagate the error upward
return nil, nil
} }
if incoming == nil { if incoming == nil {
return nil, nil, errors.New("Received nil Message") // TODO propagate the error upward
return nil, nil
} }
bs.strategy.MessageReceived(p, incoming) // FIRST bs.strategy.MessageReceived(p, incoming) // FIRST
@ -157,7 +157,12 @@ func (bs *bitswap) ReceiveMessage(ctx context.Context, p *peer.Peer, incoming bs
} }
} }
defer bs.strategy.MessageSent(p, message) defer bs.strategy.MessageSent(p, message)
return p, message, nil return p, message
}
func (bs *bitswap) ReceiveError(err error) {
// TODO log the network error
// TODO bubble the network error up to the parent context/error logger
} }
// send strives to ensure that accounting is always performed when a message is // send strives to ensure that accounting is always performed when a message is

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@ -33,7 +33,9 @@ type Adapter interface {
type Receiver interface { type Receiver interface {
ReceiveMessage( ReceiveMessage(
ctx context.Context, sender *peer.Peer, incoming bsmsg.BitSwapMessage) ( ctx context.Context, sender *peer.Peer, incoming bsmsg.BitSwapMessage) (
destination *peer.Peer, outgoing bsmsg.BitSwapMessage, err error) destination *peer.Peer, outgoing bsmsg.BitSwapMessage)
ReceiveError(error)
} }
// TODO(brian): move this to go-ipfs/net package // TODO(brian): move this to go-ipfs/net package

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@ -1,8 +1,6 @@
package network package network
import ( import (
"errors"
context "github.com/jbenet/go-ipfs/Godeps/_workspace/src/code.google.com/p/go.net/context" context "github.com/jbenet/go-ipfs/Godeps/_workspace/src/code.google.com/p/go.net/context"
bsmsg "github.com/jbenet/go-ipfs/exchange/bitswap/message" bsmsg "github.com/jbenet/go-ipfs/exchange/bitswap/message"
@ -31,33 +29,32 @@ type impl struct {
// HandleMessage marshals and unmarshals net messages, forwarding them to the // HandleMessage marshals and unmarshals net messages, forwarding them to the
// BitSwapMessage receiver // BitSwapMessage receiver
func (adapter *impl) HandleMessage( func (adapter *impl) HandleMessage(
ctx context.Context, incoming netmsg.NetMessage) (netmsg.NetMessage, error) { ctx context.Context, incoming netmsg.NetMessage) netmsg.NetMessage {
if adapter.receiver == nil { if adapter.receiver == nil {
return nil, errors.New("No receiver. NetMessage dropped") return nil
} }
received, err := bsmsg.FromNet(incoming) received, err := bsmsg.FromNet(incoming)
if err != nil { if err != nil {
return nil, err go adapter.receiver.ReceiveError(err)
return nil
} }
p, bsmsg, err := adapter.receiver.ReceiveMessage(ctx, incoming.Peer(), received) p, bsmsg := adapter.receiver.ReceiveMessage(ctx, incoming.Peer(), received)
if err != nil {
return nil, err
}
// TODO(brian): put this in a helper function // TODO(brian): put this in a helper function
if bsmsg == nil || p == nil { if bsmsg == nil || p == nil {
return nil, nil return nil
} }
outgoing, err := bsmsg.ToNet(p) outgoing, err := bsmsg.ToNet(p)
if err != nil { if err != nil {
return nil, err go adapter.receiver.ReceiveError(err)
return nil
} }
return outgoing, nil return outgoing
} }
func (adapter *impl) SendMessage( func (adapter *impl) SendMessage(

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@ -76,18 +76,7 @@ func (n *network) deliver(
return errors.New("Invalid input") return errors.New("Invalid input")
} }
nextPeer, nextMsg, err := r.ReceiveMessage(context.TODO(), from, message) nextPeer, nextMsg := r.ReceiveMessage(context.TODO(), from, message)
if err != nil {
// TODO should this error be returned across network boundary?
// TODO this raises an interesting question about network contract. How
// can the network be expected to behave under different failure
// conditions? What if peer is unreachable? Will we know if messages
// aren't delivered?
return err
}
if (nextPeer == nil && nextMsg != nil) || (nextMsg == nil && nextPeer != nil) { if (nextPeer == nil && nextMsg != nil) || (nextMsg == nil && nextPeer != nil) {
return errors.New("Malformed client request") return errors.New("Malformed client request")
@ -119,15 +108,12 @@ func (n *network) SendRequest(
if !ok { if !ok {
return nil, errors.New("Cannot locate peer on network") return nil, errors.New("Cannot locate peer on network")
} }
nextPeer, nextMsg, err := r.ReceiveMessage(context.TODO(), from, message) nextPeer, nextMsg := r.ReceiveMessage(context.TODO(), from, message)
if err != nil {
return nil, err
// TODO return nil, NoResponse
}
// TODO dedupe code // TODO dedupe code
if (nextPeer == nil && nextMsg != nil) || (nextMsg == nil && nextPeer != nil) { if (nextPeer == nil && nextMsg != nil) || (nextMsg == nil && nextPeer != nil) {
return nil, errors.New("Malformed client request") r.ReceiveError(errors.New("Malformed client request"))
return nil, nil
} }
// TODO dedupe code // TODO dedupe code
@ -144,7 +130,7 @@ func (n *network) SendRequest(
} }
n.deliver(nextReceiver, nextPeer, nextMsg) n.deliver(nextReceiver, nextPeer, nextMsg)
}() }()
return nil, NoResponse return nil, nil
} }
return nextMsg, nil return nextMsg, nil
} }

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@ -26,7 +26,7 @@ func TestSendRequestToCooperativePeer(t *testing.T) {
ctx context.Context, ctx context.Context,
from *peer.Peer, from *peer.Peer,
incoming bsmsg.BitSwapMessage) ( incoming bsmsg.BitSwapMessage) (
*peer.Peer, bsmsg.BitSwapMessage, error) { *peer.Peer, bsmsg.BitSwapMessage) {
t.Log("Recipient received a message from the network") t.Log("Recipient received a message from the network")
@ -35,7 +35,7 @@ func TestSendRequestToCooperativePeer(t *testing.T) {
m := bsmsg.New() m := bsmsg.New()
m.AppendBlock(testutil.NewBlockOrFail(t, expectedStr)) m.AppendBlock(testutil.NewBlockOrFail(t, expectedStr))
return from, m, nil return from, m
})) }))
t.Log("Build a message and send a synchronous request to recipient") t.Log("Build a message and send a synchronous request to recipient")
@ -74,19 +74,19 @@ func TestSendMessageAsyncButWaitForResponse(t *testing.T) {
ctx context.Context, ctx context.Context,
fromWaiter *peer.Peer, fromWaiter *peer.Peer,
msgFromWaiter bsmsg.BitSwapMessage) ( msgFromWaiter bsmsg.BitSwapMessage) (
*peer.Peer, bsmsg.BitSwapMessage, error) { *peer.Peer, bsmsg.BitSwapMessage) {
msgToWaiter := bsmsg.New() msgToWaiter := bsmsg.New()
msgToWaiter.AppendBlock(testutil.NewBlockOrFail(t, expectedStr)) msgToWaiter.AppendBlock(testutil.NewBlockOrFail(t, expectedStr))
return fromWaiter, msgToWaiter, nil return fromWaiter, msgToWaiter
})) }))
waiter.SetDelegate(lambda(func( waiter.SetDelegate(lambda(func(
ctx context.Context, ctx context.Context,
fromResponder *peer.Peer, fromResponder *peer.Peer,
msgFromResponder bsmsg.BitSwapMessage) ( msgFromResponder bsmsg.BitSwapMessage) (
*peer.Peer, bsmsg.BitSwapMessage, error) { *peer.Peer, bsmsg.BitSwapMessage) {
// TODO assert that this came from the correct peer and that the message contents are as expected // TODO assert that this came from the correct peer and that the message contents are as expected
ok := false ok := false
@ -101,7 +101,7 @@ func TestSendMessageAsyncButWaitForResponse(t *testing.T) {
t.Fatal("Message not received from the responder") t.Fatal("Message not received from the responder")
} }
return nil, nil, nil return nil, nil
})) }))
messageSentAsync := bsmsg.New() messageSentAsync := bsmsg.New()
@ -116,7 +116,7 @@ func TestSendMessageAsyncButWaitForResponse(t *testing.T) {
} }
type receiverFunc func(ctx context.Context, p *peer.Peer, type receiverFunc func(ctx context.Context, p *peer.Peer,
incoming bsmsg.BitSwapMessage) (*peer.Peer, bsmsg.BitSwapMessage, error) incoming bsmsg.BitSwapMessage) (*peer.Peer, bsmsg.BitSwapMessage)
// lambda returns a Receiver instance given a receiver function // lambda returns a Receiver instance given a receiver function
func lambda(f receiverFunc) bsnet.Receiver { func lambda(f receiverFunc) bsnet.Receiver {
@ -126,13 +126,16 @@ func lambda(f receiverFunc) bsnet.Receiver {
} }
type lambdaImpl struct { type lambdaImpl struct {
f func(ctx context.Context, p *peer.Peer, f func(ctx context.Context, p *peer.Peer, incoming bsmsg.BitSwapMessage) (
incoming bsmsg.BitSwapMessage) ( *peer.Peer, bsmsg.BitSwapMessage)
*peer.Peer, bsmsg.BitSwapMessage, error)
} }
func (lam *lambdaImpl) ReceiveMessage(ctx context.Context, func (lam *lambdaImpl) ReceiveMessage(ctx context.Context,
p *peer.Peer, incoming bsmsg.BitSwapMessage) ( p *peer.Peer, incoming bsmsg.BitSwapMessage) (
*peer.Peer, bsmsg.BitSwapMessage, error) { *peer.Peer, bsmsg.BitSwapMessage) {
return lam.f(ctx, p, incoming) return lam.f(ctx, p, incoming)
} }
func (lam *lambdaImpl) ReceiveError(err error) {
// TODO log error
}

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@ -20,7 +20,7 @@ type Handler interface {
// HandleMessage receives an incoming message, and potentially returns // HandleMessage receives an incoming message, and potentially returns
// a response message to send back. // a response message to send back.
HandleMessage(context.Context, msg.NetMessage) (msg.NetMessage, error) HandleMessage(context.Context, msg.NetMessage) msg.NetMessage
} }
// Service is a networking component that protocols can use to multiplex // Service is a networking component that protocols can use to multiplex
@ -181,11 +181,7 @@ func (s *Service) handleIncomingMessage(ctx context.Context, m msg.NetMessage) {
} }
// should this be "go HandleMessage ... ?" // should this be "go HandleMessage ... ?"
r1, err := s.Handler.HandleMessage(ctx, m2) r1 := s.Handler.HandleMessage(ctx, m2)
if err != nil {
u.PErr("handled message yielded error %v\n", err)
return
}
// if handler gave us a response, send it back out! // if handler gave us a response, send it back out!
if r1 != nil { if r1 != nil {

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@ -15,15 +15,14 @@ import (
// ReverseHandler reverses all Data it receives and sends it back. // ReverseHandler reverses all Data it receives and sends it back.
type ReverseHandler struct{} type ReverseHandler struct{}
func (t *ReverseHandler) HandleMessage(ctx context.Context, m msg.NetMessage) ( func (t *ReverseHandler) HandleMessage(ctx context.Context, m msg.NetMessage) msg.NetMessage {
msg.NetMessage, error) {
d := m.Data() d := m.Data()
for i, j := 0, len(d)-1; i < j; i, j = i+1, j-1 { for i, j := 0, len(d)-1; i < j; i, j = i+1, j-1 {
d[i], d[j] = d[j], d[i] d[i], d[j] = d[j], d[i]
} }
return msg.New(m.Peer(), d), nil return msg.New(m.Peer(), d)
} }
func newPeer(t *testing.T, id string) *peer.Peer { func newPeer(t *testing.T, id string) *peer.Peer {

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@ -103,23 +103,26 @@ func (dht *IpfsDHT) Connect(ctx context.Context, npeer *peer.Peer) (*peer.Peer,
} }
// HandleMessage implements the inet.Handler interface. // HandleMessage implements the inet.Handler interface.
func (dht *IpfsDHT) HandleMessage(ctx context.Context, mes msg.NetMessage) (msg.NetMessage, error) { func (dht *IpfsDHT) HandleMessage(ctx context.Context, mes msg.NetMessage) msg.NetMessage {
mData := mes.Data() mData := mes.Data()
if mData == nil { if mData == nil {
return nil, errors.New("message did not include Data") // TODO handle/log err
return nil
} }
mPeer := mes.Peer() mPeer := mes.Peer()
if mPeer == nil { if mPeer == nil {
return nil, errors.New("message did not include a Peer") // TODO handle/log err
return nil
} }
// deserialize msg // deserialize msg
pmes := new(Message) pmes := new(Message)
err := proto.Unmarshal(mData, pmes) err := proto.Unmarshal(mData, pmes)
if err != nil { if err != nil {
return nil, fmt.Errorf("Failed to decode protobuf message: %v\n", err) // TODO handle/log err
return nil
} }
// update the peer (on valid msgs only) // update the peer (on valid msgs only)
@ -133,27 +136,30 @@ func (dht *IpfsDHT) HandleMessage(ctx context.Context, mes msg.NetMessage) (msg.
// get handler for this msg type. // get handler for this msg type.
handler := dht.handlerForMsgType(pmes.GetType()) handler := dht.handlerForMsgType(pmes.GetType())
if handler == nil { if handler == nil {
return nil, errors.New("Recieved invalid message type") // TODO handle/log err
return nil
} }
// dispatch handler. // dispatch handler.
rpmes, err := handler(mPeer, pmes) rpmes, err := handler(mPeer, pmes)
if err != nil { if err != nil {
return nil, err // TODO handle/log err
return nil
} }
// if nil response, return it before serializing // if nil response, return it before serializing
if rpmes == nil { if rpmes == nil {
return nil, nil return nil
} }
// serialize response msg // serialize response msg
rmes, err := msg.FromObject(mPeer, rpmes) rmes, err := msg.FromObject(mPeer, rpmes)
if err != nil { if err != nil {
return nil, fmt.Errorf("Failed to encode protobuf message: %v\n", err) // TODO handle/log err
return nil
} }
return rmes, nil return rmes
} }
// sendRequest sends out a request using dht.sender, but also makes sure to // sendRequest sends out a request using dht.sender, but also makes sure to

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@ -161,10 +161,7 @@ func TestGetFailures(t *testing.T) {
t.Error(err) t.Error(err)
} }
mes, err = d.HandleMessage(ctx, mes) mes = d.HandleMessage(ctx, mes)
if err != nil {
t.Error(err)
}
pmes := new(Message) pmes := new(Message)
err = proto.Unmarshal(mes.Data(), pmes) err = proto.Unmarshal(mes.Data(), pmes)