p2p/simulations: eliminate concept of pivot (#18426)
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38cce9ac33
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2eb838ed97
@ -351,17 +351,3 @@ func (sn *SimNode) NodeInfo() *p2p.NodeInfo {
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}
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return server.NodeInfo()
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}
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func setSocketBuffer(conn net.Conn, socketReadBuffer int, socketWriteBuffer int) error {
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if v, ok := conn.(*net.UnixConn); ok {
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err := v.SetReadBuffer(socketReadBuffer)
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if err != nil {
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return err
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}
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err = v.SetWriteBuffer(socketWriteBuffer)
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if err != nil {
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return err
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}
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}
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return nil
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}
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@ -25,21 +25,8 @@ import (
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var (
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ErrNodeNotFound = errors.New("node not found")
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ErrNoPivotNode = errors.New("no pivot node set")
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)
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// ConnectToPivotNode connects the node with provided NodeID
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// to the pivot node, already set by Network.SetPivotNode method.
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// It is useful when constructing a star network topology
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// when Network adds and removes nodes dynamically.
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func (net *Network) ConnectToPivotNode(id enode.ID) (err error) {
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pivot := net.GetPivotNode()
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if pivot == nil {
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return ErrNoPivotNode
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}
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return net.connect(pivot.ID(), id)
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}
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// ConnectToLastNode connects the node with provided NodeID
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// to the last node that is up, and avoiding connection to self.
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// It is useful when constructing a chain network topology
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@ -115,35 +102,23 @@ func (net *Network) ConnectNodesRing(ids []enode.ID) (err error) {
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return net.connect(ids[l-1], ids[0])
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}
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// ConnectNodesStar connects all nodes in a star topology
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// with the center at provided NodeID.
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// ConnectNodesStar connects all nodes into a star topology
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// If ids argument is nil, all nodes that are up will be connected.
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func (net *Network) ConnectNodesStar(pivot enode.ID, ids []enode.ID) (err error) {
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func (net *Network) ConnectNodesStar(ids []enode.ID, center enode.ID) (err error) {
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if ids == nil {
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ids = net.getUpNodeIDs()
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}
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for _, id := range ids {
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if pivot == id {
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if center == id {
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continue
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}
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if err := net.connect(pivot, id); err != nil {
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if err := net.connect(center, id); err != nil {
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return err
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}
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}
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return nil
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}
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// ConnectNodesStarPivot connects all nodes in a star topology
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// with the center at already set pivot node.
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// If ids argument is nil, all nodes that are up will be connected.
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func (net *Network) ConnectNodesStarPivot(ids []enode.ID) (err error) {
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pivot := net.GetPivotNode()
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if pivot == nil {
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return ErrNoPivotNode
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}
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return net.ConnectNodesStar(pivot.ID(), ids)
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}
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// connect connects two nodes but ignores already connected error.
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func (net *Network) connect(oneID, otherID enode.ID) error {
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return ignoreAlreadyConnectedErr(net.Connect(oneID, otherID))
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@ -155,22 +130,3 @@ func ignoreAlreadyConnectedErr(err error) error {
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}
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return err
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}
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// SetPivotNode sets the NodeID of the network's pivot node.
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// Pivot node is just a specific node that should be treated
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// differently then other nodes in test. SetPivotNode and
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// GetPivotNode are just a convenient functions to set and
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// retrieve it.
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func (net *Network) SetPivotNode(id enode.ID) {
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net.lock.Lock()
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defer net.lock.Unlock()
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net.pivotNodeID = id
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}
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// GetPivotNode returns NodeID of the pivot node set by
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// Network.SetPivotNode method.
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func (net *Network) GetPivotNode() (node *Node) {
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net.lock.RLock()
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defer net.lock.RUnlock()
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return net.getNode(net.pivotNodeID)
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}
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@ -58,24 +58,6 @@ func newTestNetwork(t *testing.T, nodeCount int) (*Network, []enode.ID) {
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return network, ids
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}
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func TestConnectToPivotNode(t *testing.T) {
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net, ids := newTestNetwork(t, 2)
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defer net.Shutdown()
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pivot := ids[0]
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net.SetPivotNode(pivot)
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other := ids[1]
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err := net.ConnectToPivotNode(other)
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if err != nil {
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t.Fatal(err)
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}
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if net.GetConn(pivot, other) == nil {
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t.Error("pivot and the other node are not connected")
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}
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}
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func TestConnectToLastNode(t *testing.T) {
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net, ids := newTestNetwork(t, 10)
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defer net.Shutdown()
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@ -125,7 +107,20 @@ func TestConnectToRandomNode(t *testing.T) {
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}
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func TestConnectNodesFull(t *testing.T) {
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net, ids := newTestNetwork(t, 12)
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tests := []struct {
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name string
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nodeCount int
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}{
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{name: "no node", nodeCount: 0},
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{name: "single node", nodeCount: 1},
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{name: "2 nodes", nodeCount: 2},
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{name: "3 nodes", nodeCount: 3},
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{name: "even number of nodes", nodeCount: 12},
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{name: "odd number of nodes", nodeCount: 13},
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}
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for _, test := range tests {
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t.Run(test.name, func(t *testing.T) {
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net, ids := newTestNetwork(t, test.nodeCount)
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defer net.Shutdown()
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err := net.ConnectNodesFull(ids)
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@ -134,6 +129,8 @@ func TestConnectNodesFull(t *testing.T) {
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}
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VerifyFull(t, net, ids)
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})
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}
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}
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func TestConnectNodesChain(t *testing.T) {
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@ -166,23 +163,7 @@ func TestConnectNodesStar(t *testing.T) {
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pivotIndex := 2
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err := net.ConnectNodesStar(ids[pivotIndex], ids)
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if err != nil {
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t.Fatal(err)
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}
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VerifyStar(t, net, ids, pivotIndex)
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}
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func TestConnectNodesStarPivot(t *testing.T) {
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net, ids := newTestNetwork(t, 10)
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defer net.Shutdown()
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pivotIndex := 4
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net.SetPivotNode(ids[pivotIndex])
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err := net.ConnectNodesStarPivot(ids)
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err := net.ConnectNodesStar(ids, ids[pivotIndex])
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if err != nil {
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t.Fatal(err)
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}
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@ -58,8 +58,6 @@ type Network struct {
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Conns []*Conn `json:"conns"`
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connMap map[string]int
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pivotNodeID enode.ID
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nodeAdapter adapters.NodeAdapter
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events event.Feed
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lock sync.RWMutex
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@ -188,7 +188,7 @@ func (s *Simulation) AddNodesAndConnectStar(count int, opts ...AddNodeOption) (i
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if err != nil {
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return nil, err
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}
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err = s.Net.ConnectNodesStar(ids[0], ids[1:])
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err = s.Net.ConnectNodesStar(ids[1:], ids[0])
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if err != nil {
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return nil, err
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}
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@ -241,25 +241,6 @@ func (s *Simulation) UploadSnapshot(snapshotFile string, opts ...AddNodeOption)
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return nil
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}
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// SetPivotNode sets the NodeID of the network's pivot node.
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// Pivot node is just a specific node that should be treated
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// differently then other nodes in test. SetPivotNode and
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// PivotNodeID are just a convenient functions to set and
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// retrieve it.
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func (s *Simulation) SetPivotNode(id enode.ID) {
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s.mu.Lock()
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defer s.mu.Unlock()
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s.pivotNodeID = &id
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}
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// PivotNodeID returns NodeID of the pivot node set by
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// Simulation.SetPivotNode method.
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func (s *Simulation) PivotNodeID() (id *enode.ID) {
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s.mu.Lock()
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defer s.mu.Unlock()
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return s.pivotNodeID
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}
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// StartNode starts a node by NodeID.
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func (s *Simulation) StartNode(id enode.ID) (err error) {
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return s.Net.Start(id)
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@ -314,45 +314,6 @@ func TestUploadSnapshot(t *testing.T) {
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log.Debug("Done.")
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}
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func TestPivotNode(t *testing.T) {
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sim := New(noopServiceFuncMap)
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defer sim.Close()
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id, err := sim.AddNode()
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if err != nil {
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t.Fatal(err)
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}
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id2, err := sim.AddNode()
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if err != nil {
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t.Fatal(err)
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}
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if sim.PivotNodeID() != nil {
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t.Error("expected no pivot node")
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}
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sim.SetPivotNode(id)
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pid := sim.PivotNodeID()
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if pid == nil {
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t.Error("pivot node not set")
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} else if *pid != id {
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t.Errorf("expected pivot node %s, got %s", id, *pid)
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}
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sim.SetPivotNode(id2)
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pid = sim.PivotNodeID()
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if pid == nil {
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t.Error("pivot node not set")
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} else if *pid != id2 {
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t.Errorf("expected pivot node %s, got %s", id2, *pid)
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}
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}
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func TestStartStopNode(t *testing.T) {
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sim := New(noopServiceFuncMap)
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defer sim.Close()
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@ -46,7 +46,6 @@ type Simulation struct {
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serviceNames []string
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cleanupFuncs []func()
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buckets map[enode.ID]*sync.Map
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pivotNodeID *enode.ID
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shutdownWG sync.WaitGroup
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done chan struct{}
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mu sync.RWMutex
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