swarm/pss: WaitTillSnapshotRecreated() func added

This commit is contained in:
Vlad 2019-03-02 18:26:08 +04:00
parent 1c9450442f
commit 243724eb26
2 changed files with 123 additions and 28 deletions

View file

@ -18,12 +18,14 @@ package simulation
import (
"context"
"encoding/binary"
"encoding/hex"
"time"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/log"
"github.com/ethereum/go-ethereum/p2p/enode"
"github.com/ethereum/go-ethereum/p2p/simulations"
"github.com/ethereum/go-ethereum/swarm/network"
)
@ -96,3 +98,70 @@ func (s *Simulation) kademlias() (ks map[enode.ID]*network.Kademlia) {
}
return ks
}
func (s *Simulation) WaitTillSnapshotRecreated(ctx context.Context, snap simulations.Snapshot) error {
expected := listSnapshotConnections(snap.Conns)
ticker := time.NewTicker(256 * time.Millisecond) // todo: reduce
defer ticker.Stop()
for {
select {
case <-ctx.Done():
return ctx.Err()
case <-ticker.C:
actual := listActualConnections(s.kademlias())
if isAllDeployed(expected, actual) {
return nil
}
}
}
}
func listActualConnections(kademlias map[enode.ID]*network.Kademlia) (res []uint64) {
for base, k := range kademlias {
k.EachConn(base[:], 256, func(p *network.Peer, _ int) bool {
res = append(res, getConnectionHash(base, p.ID()))
return true
})
}
return res
}
func listSnapshotConnections(conns []simulations.Conn) (res []uint64) {
for _, c := range conns {
res = append(res, getConnectionHash(c.One, c.Other))
}
return res
}
// returns an integer connection identifier (similar to 8-byte hash)
func getConnectionHash(a, b enode.ID) uint64 {
var h [8]byte
for i := 0; i < 8; i++ {
h[i] = a[i] ^ b[i]
}
res := binary.LittleEndian.Uint64(h[:])
return res
}
// returns true if all connections in expected are listed in actual
func isAllDeployed(expected []uint64, actual []uint64) bool {
exp := make([]uint64, len(expected))
copy(exp, expected)
if len(exp) > 0 {
for _, c := range actual {
// remove value c from exp
for i := 0; i < len(exp); i++ {
if exp[i] == c {
last := len(exp) - 1
if last == 0 {
return true
}
exp[i] = exp[last]
exp = exp[:last]
}
}
}
}
return len(exp) == 0
}

View file

@ -30,29 +30,6 @@ import (
"github.com/ethereum/go-ethereum/swarm/state"
)
var (
runNodes = flag.Int("nodes", 0, "nodes to start in the network")
runMessages = flag.Int("messages", 0, "messages to send during test")
topic = BytesToTopic([]byte{0x00, 0x00, 0x06, 0x82})
mu sync.Mutex // keeps handlerDonc in sync
kademlias = make(map[enode.ID]*network.Kademlia)
nodeAddrs = make(map[enode.ID][]byte) // make predictable overlay addresses from the generated random enode ids
msgsToReceive int // total count of messages to receive, used for terminating the simulation run
recipients = make(map[int][]enode.ID) // for logging output only
msgs [][]byte // recipient addresses of messages
expectedMsgs = make(map[enode.ID][]uint64) // message serials we expect respective nodes to receive
senders = make(map[int]enode.ID) // originating nodes of the messages (intention is to choose as far as possible from the receiving neighborhood)
pof = pot.DefaultPof(256) // generate messages and index them
sim *simulation.Simulation
handlerDone bool // set to true on termination of the simulation run
handlerC = make(chan handlerNotification) // passes message from pss message handler to simulation driver
doneC = make(chan struct{}) // terminates the handler channel listener
errC = make(chan error) // error to pass to main sim thread
msgC = make(chan handlerNotification) // message receipt notification to main sim thread
debugCnt int
)
// needed to make the enode id of the receiving node available to the handler for triggers
type handlerContextFunc func(*adapters.NodeConfig) *handler
@ -65,6 +42,48 @@ type handlerNotification struct {
serial uint64
}
var (
runNodes = flag.Int("nodes", 0, "nodes to start in the network")
runMessages = flag.Int("messages", 0, "messages to send during test")
pof = pot.DefaultPof(256) // generate messages and index them
topic = BytesToTopic([]byte{0x00, 0x00, 0x06, 0x82})
mu sync.Mutex // keeps handlerDonc in sync
sim *simulation.Simulation
handlerDone bool // set to true on termination of the simulation run
msgsToReceive int // total count of messages to receive, used for terminating the simulation run
debugCnt int
kademlias map[enode.ID]*network.Kademlia
nodeAddrs map[enode.ID][]byte // make predictable overlay addresses from the generated random enode ids
recipients map[int][]enode.ID // for logging output only
expectedMsgs map[enode.ID][]uint64 // message serials we expect respective nodes to receive
senders map[int]enode.ID // originating nodes of the messages (intention is to choose as far as possible from the receiving neighborhood)
handlerC chan handlerNotification // passes message from pss message handler to simulation driver
doneC chan struct{} // terminates the handler channel listener
errC chan error // error to pass to main sim thread
msgC chan handlerNotification // message receipt notification to main sim thread
msgs [][]byte // recipient addresses of messages
)
func resetTestVariables() {
handlerDone = false
msgsToReceive = 0
debugCnt = 0
msgs = nil
kademlias = make(map[enode.ID]*network.Kademlia)
nodeAddrs = make(map[enode.ID][]byte)
recipients = make(map[int][]enode.ID)
expectedMsgs = make(map[enode.ID][]uint64)
senders = make(map[int]enode.ID)
handlerC = make(chan handlerNotification)
doneC = make(chan struct{})
errC = make(chan error)
msgC = make(chan handlerNotification)
}
func init() {
log.Root().SetHandler(log.LvlFilterHandler(log.LvlTrace, log.StreamHandler(os.Stderr, log.TerminalFormat(true))))
}
@ -111,7 +130,7 @@ func readSnapshot(t *testing.T, nodeCount int) simulations.Snapshot {
return snap
}
func initTestVariables(sim *simulation.Simulation, msgCount int) {
func assingTestVariables(sim *simulation.Simulation, msgCount int) {
log.Debug("-------------------------------------------------------------------------")
var targets string
for _, nodeId := range sim.NodeIDs() {
@ -169,6 +188,7 @@ func TestProxNetwork(t *testing.T) {
// Upon sending the messages, it verifies that the respective message is passed to the message handlers of these recipients.
// It will fail if a recipient handles a message it should not, or if after propagation not all expected messages are handled (timeout)
func testProxNetwork(t *testing.T) {
resetTestVariables()
msgCount, nodeCount := getCmdParams(t)
handlerContextFuncs := make(map[Topic]handlerContextFunc)
handlerContextFuncs[topic] = nodeMsgHandler
@ -180,10 +200,14 @@ func testProxNetwork(t *testing.T) {
if err != nil {
t.Fatal(err)
}
ctx, cancel := context.WithTimeout(context.Background(), time.Second*4)
ctx, cancel := context.WithTimeout(context.Background(), time.Second*3)
defer cancel()
waitTillSerenity(t, snap, sim, 1000)
initTestVariables(sim, msgCount)
err = sim.WaitTillSnapshotRecreated(ctx, snap)
if err != nil {
t.Fatalf("failed to recreate snapshot: %s", err)
}
//waitTillSerenity(t, snap, sim, 1000)
assingTestVariables(sim, msgCount)
result := sim.Run(ctx, runFunc)
if result.Error != nil {
log.Debug("--------------------------------------------------------------------------------", "rcv", debugCnt)
@ -192,6 +216,7 @@ func testProxNetwork(t *testing.T) {
t.Logf("completed %d", result.Duration)
}
/*
func waitTillSerenity(t *testing.T, snap simulations.Snapshot, sim *simulation.Simulation, timeout int) {
interval := 16
expected := listSnapConnections(snap.Conns)
@ -203,7 +228,7 @@ func waitTillSerenity(t *testing.T, snap simulations.Snapshot, sim *simulation.S
time.Sleep(time.Millisecond * time.Duration(interval))
}
}
time.Sleep(time.Millisecond * 10) // todo: remove this later
time.Sleep(time.Millisecond * 16) // todo: remove this later
}
func listSnapConnections(conns []simulations.Conn) (res []uint64) {
@ -251,6 +276,7 @@ func isSerenity(expected []uint64, actual []uint64) bool {
}
return len(exp) == 0
}
*/
func sendAllMsgs(sim *simulation.Simulation, msgs [][]byte, senders map[int]enode.ID) {
for i, msg := range msgs {