500 lines
12 KiB
Go
500 lines
12 KiB
Go
package node
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import (
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"errors"
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"fmt"
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"os"
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"path/filepath"
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"sync"
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"github.com/ethereum/go-ethereum/accounts"
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"github.com/ethereum/go-ethereum/accounts/keystore"
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"github.com/ethereum/go-ethereum/les"
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"github.com/ethereum/go-ethereum/node"
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"github.com/ethereum/go-ethereum/p2p/discover"
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whisper "github.com/ethereum/go-ethereum/whisper/whisperv5"
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"github.com/status-im/status-go/geth/log"
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"github.com/status-im/status-go/geth/params"
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"github.com/status-im/status-go/geth/rpc"
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"github.com/status-im/status-go/geth/signal"
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)
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// errors
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var (
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ErrNodeExists = errors.New("node is already running")
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ErrNoRunningNode = errors.New("there is no running node")
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ErrInvalidNodeManager = errors.New("node manager is not properly initialized")
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ErrInvalidWhisperService = errors.New("whisper service is unavailable")
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ErrInvalidLightEthereumService = errors.New("LES service is unavailable")
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ErrInvalidAccountManager = errors.New("could not retrieve account manager")
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ErrAccountKeyStoreMissing = errors.New("account key store is not set")
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ErrRPCClient = errors.New("failed to init RPC client")
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)
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// NodeManager manages Status node (which abstracts contained geth node)
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type NodeManager struct {
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sync.RWMutex
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config *params.NodeConfig // Status node configuration
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node *node.Node // reference to Geth P2P stack/node
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nodeStarted chan struct{} // channel to wait for start up notifications
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nodeStopped chan struct{} // channel to wait for termination notifications
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whisperService *whisper.Whisper // reference to Whisper service
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lesService *les.LightEthereum // reference to LES service
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rpcClient *rpc.Client // reference to RPC client
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}
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// NewNodeManager makes new instance of node manager
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func NewNodeManager() *NodeManager {
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m := &NodeManager{}
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go HaltOnInterruptSignal(m) // allow interrupting running nodes
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return m
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}
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// StartNode start Status node, fails if node is already started
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func (m *NodeManager) StartNode(config *params.NodeConfig) (<-chan struct{}, error) {
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m.Lock()
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defer m.Unlock()
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return m.startNode(config)
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}
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// startNode start Status node, fails if node is already started
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func (m *NodeManager) startNode(config *params.NodeConfig) (<-chan struct{}, error) {
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if m.node != nil || m.nodeStarted != nil {
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return nil, ErrNodeExists
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}
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m.initLog(config)
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ethNode, err := MakeNode(config)
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if err != nil {
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return nil, err
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}
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m.nodeStarted = make(chan struct{}, 1)
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go func() {
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defer HaltOnPanic()
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// start underlying node
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if err := ethNode.Start(); err != nil {
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close(m.nodeStarted)
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m.Lock()
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m.nodeStarted = nil
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m.Unlock()
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signal.Send(signal.Envelope{
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Type: signal.EventNodeCrashed,
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Event: signal.NodeCrashEvent{
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Error: fmt.Errorf("%v: %v", ErrNodeStartFailure, err).Error(),
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},
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})
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return
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}
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m.Lock()
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m.node = ethNode
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m.nodeStopped = make(chan struct{}, 1)
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m.config = config
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// init RPC client for this node
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m.rpcClient, err = rpc.NewClient(m.node, m.config.UpstreamConfig)
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if err != nil {
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log.Error("Init RPC client failed:", "error", err)
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m.Unlock()
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signal.Send(signal.Envelope{
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Type: signal.EventNodeCrashed,
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Event: signal.NodeCrashEvent{
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Error: ErrRPCClient.Error(),
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},
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})
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return
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}
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m.Unlock()
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// underlying node is started, every method can use it, we use it immediately
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go func() {
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if err := m.PopulateStaticPeers(); err != nil {
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log.Error("Static peers population", "error", err)
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}
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}()
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// notify all subscribers that Status node is started
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close(m.nodeStarted)
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signal.Send(signal.Envelope{
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Type: signal.EventNodeStarted,
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Event: struct{}{},
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})
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// wait up until underlying node is stopped
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m.node.Wait()
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// notify m.Stop() that node has been stopped
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close(m.nodeStopped)
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log.Info("Node is stopped")
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}()
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return m.nodeStarted, nil
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}
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// StopNode stop Status node. Stopped node cannot be resumed.
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func (m *NodeManager) StopNode() (<-chan struct{}, error) {
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m.Lock()
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defer m.Unlock()
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if err := m.isNodeAvailable(); err != nil {
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return nil, err
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}
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if m.nodeStopped == nil {
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return nil, ErrNoRunningNode
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}
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<-m.nodeStarted // make sure you operate on fully started node
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return m.stopNode()
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}
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// stopNode stop Status node. Stopped node cannot be resumed.
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func (m *NodeManager) stopNode() (<-chan struct{}, error) {
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// now attempt to stop
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if err := m.node.Stop(); err != nil {
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return nil, err
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}
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nodeStopped := make(chan struct{}, 1)
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go func() {
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<-m.nodeStopped // Status node is stopped (code after Wait() is executed)
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log.Info("Ready to reset node")
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// reset node params
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m.Lock()
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m.config = nil
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m.lesService = nil
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m.whisperService = nil
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m.rpcClient = nil
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m.nodeStarted = nil
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m.node = nil
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m.Unlock()
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close(nodeStopped) // Status node is stopped, and we can create another
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log.Info("Node manager resets node params")
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// notify application that it can send more requests now
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signal.Send(signal.Envelope{
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Type: signal.EventNodeStopped,
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Event: struct{}{},
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})
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log.Info("Node manager notifed app, that node has stopped")
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}()
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return nodeStopped, nil
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}
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// IsNodeRunning confirm that node is running
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func (m *NodeManager) IsNodeRunning() bool {
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m.RLock()
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defer m.RUnlock()
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if err := m.isNodeAvailable(); err != nil {
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return false
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}
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<-m.nodeStarted
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return true
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}
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// Node returns underlying Status node
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func (m *NodeManager) Node() (*node.Node, error) {
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m.RLock()
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defer m.RUnlock()
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if err := m.isNodeAvailable(); err != nil {
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return nil, err
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}
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<-m.nodeStarted
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return m.node, nil
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}
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// PopulateStaticPeers connects current node with our publicly available LES/SHH/Swarm cluster
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func (m *NodeManager) PopulateStaticPeers() error {
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m.RLock()
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defer m.RUnlock()
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if err := m.isNodeAvailable(); err != nil {
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return err
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}
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<-m.nodeStarted
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return m.populateStaticPeers()
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}
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// populateStaticPeers connects current node with our publicly available LES/SHH/Swarm cluster
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func (m *NodeManager) populateStaticPeers() error {
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if !m.config.BootClusterConfig.Enabled {
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log.Info("Boot cluster is disabled")
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return nil
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}
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for _, enode := range m.config.BootClusterConfig.BootNodes {
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err := m.addPeer(enode)
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if err != nil {
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log.Warn("Boot node addition failed", "error", err)
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continue
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}
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log.Info("Boot node added", "enode", enode)
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}
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return nil
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}
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// AddPeer adds new static peer node
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func (m *NodeManager) AddPeer(url string) error {
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m.RLock()
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defer m.RUnlock()
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if err := m.isNodeAvailable(); err != nil {
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return err
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}
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<-m.nodeStarted
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return m.addPeer(url)
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}
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// addPeer adds new static peer node
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func (m *NodeManager) addPeer(url string) error {
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server := m.node.Server()
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if server == nil {
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return ErrNoRunningNode
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}
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// Try to add the url as a static peer and return
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parsedNode, err := discover.ParseNode(url)
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if err != nil {
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return err
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}
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server.AddPeer(parsedNode)
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return nil
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}
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// ResetChainData remove chain data from data directory.
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// Node is stopped, and new node is started, with clean data directory.
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func (m *NodeManager) ResetChainData() (<-chan struct{}, error) {
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m.Lock()
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defer m.Unlock()
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if err := m.isNodeAvailable(); err != nil {
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return nil, err
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}
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<-m.nodeStarted
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return m.resetChainData()
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}
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// resetChainData remove chain data from data directory.
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// Node is stopped, and new node is started, with clean data directory.
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func (m *NodeManager) resetChainData() (<-chan struct{}, error) {
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prevConfig := *m.config
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nodeStopped, err := m.stopNode()
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if err != nil {
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return nil, err
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}
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m.Unlock()
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<-nodeStopped
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m.Lock()
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chainDataDir := filepath.Join(prevConfig.DataDir, prevConfig.Name, "lightchaindata")
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if _, err := os.Stat(chainDataDir); os.IsNotExist(err) {
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return nil, err
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}
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if err := os.RemoveAll(chainDataDir); err != nil {
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return nil, err
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}
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// send signal up to native app
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signal.Send(signal.Envelope{
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Type: signal.EventChainDataRemoved,
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Event: struct{}{},
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})
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log.Info("Chain data has been removed", "dir", chainDataDir)
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return m.startNode(&prevConfig)
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}
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// RestartNode restart running Status node, fails if node is not running
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func (m *NodeManager) RestartNode() (<-chan struct{}, error) {
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m.Lock()
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defer m.Unlock()
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if err := m.isNodeAvailable(); err != nil {
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return nil, err
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}
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<-m.nodeStarted
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return m.restartNode()
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}
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// restartNode restart running Status node, fails if node is not running
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func (m *NodeManager) restartNode() (<-chan struct{}, error) {
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prevConfig := *m.config
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nodeStopped, err := m.stopNode()
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if err != nil {
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return nil, err
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}
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m.Unlock()
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<-nodeStopped
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m.Lock()
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return m.startNode(&prevConfig)
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}
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// NodeConfig exposes reference to running node's configuration
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func (m *NodeManager) NodeConfig() (*params.NodeConfig, error) {
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m.RLock()
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defer m.RUnlock()
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if err := m.isNodeAvailable(); err != nil {
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return nil, err
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}
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<-m.nodeStarted
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return m.config, nil
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}
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// LightEthereumService exposes reference to LES service running on top of the node
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func (m *NodeManager) LightEthereumService() (*les.LightEthereum, error) {
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m.RLock()
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defer m.RUnlock()
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if err := m.isNodeAvailable(); err != nil {
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return nil, err
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}
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<-m.nodeStarted
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if m.lesService == nil {
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if err := m.node.Service(&m.lesService); err != nil {
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log.Warn("Cannot obtain LES service", "error", err)
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return nil, ErrInvalidLightEthereumService
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}
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}
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if m.lesService == nil {
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return nil, ErrInvalidLightEthereumService
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}
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return m.lesService, nil
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}
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// WhisperService exposes reference to Whisper service running on top of the node
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func (m *NodeManager) WhisperService() (*whisper.Whisper, error) {
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m.RLock()
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defer m.RUnlock()
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if err := m.isNodeAvailable(); err != nil {
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return nil, err
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}
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<-m.nodeStarted
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if m.whisperService == nil {
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if err := m.node.Service(&m.whisperService); err != nil {
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log.Warn("Cannot obtain whisper service", "error", err)
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return nil, ErrInvalidWhisperService
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}
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}
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if m.whisperService == nil {
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return nil, ErrInvalidWhisperService
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}
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return m.whisperService, nil
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}
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// AccountManager exposes reference to node's accounts manager
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func (m *NodeManager) AccountManager() (*accounts.Manager, error) {
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m.RLock()
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defer m.RUnlock()
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if err := m.isNodeAvailable(); err != nil {
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return nil, err
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}
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<-m.nodeStarted
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accountManager := m.node.AccountManager()
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if accountManager == nil {
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return nil, ErrInvalidAccountManager
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}
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return accountManager, nil
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}
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// AccountKeyStore exposes reference to accounts key store
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func (m *NodeManager) AccountKeyStore() (*keystore.KeyStore, error) {
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m.RLock()
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defer m.RUnlock()
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if err := m.isNodeAvailable(); err != nil {
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return nil, err
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}
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<-m.nodeStarted
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accountManager := m.node.AccountManager()
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if accountManager == nil {
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return nil, ErrInvalidAccountManager
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}
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backends := accountManager.Backends(keystore.KeyStoreType)
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if len(backends) == 0 {
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return nil, ErrAccountKeyStoreMissing
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}
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keyStore, ok := backends[0].(*keystore.KeyStore)
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if !ok {
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return nil, ErrAccountKeyStoreMissing
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}
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return keyStore, nil
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}
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// RPCClient exposes reference to RPC client connected to the running node.
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func (m *NodeManager) RPCClient() *rpc.Client {
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m.Lock()
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defer m.Unlock()
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return m.rpcClient
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}
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// initLog initializes global logger parameters based on
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// provided node configurations.
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func (m *NodeManager) initLog(config *params.NodeConfig) {
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log.SetLevel(config.LogLevel)
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if config.LogFile != "" {
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err := log.SetLogFile(config.LogFile)
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if err != nil {
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fmt.Println("Failed to open log file, using stdout")
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}
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}
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}
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// isNodeAvailable check if we have a node running and make sure is fully started
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func (m *NodeManager) isNodeAvailable() error {
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if m.nodeStarted == nil || m.node == nil {
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return ErrNoRunningNode
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}
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return nil
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}
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