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package syncing
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import (
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"bufio"
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"net"
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"sync"
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"time"
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"github.com/Workiva/go-datastructures/queue"
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"github.com/simple-rules/harmony-benchmark/blockchain"
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"github.com/simple-rules/harmony-benchmark/p2p"
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proto_node "github.com/simple-rules/harmony-benchmark/proto/node"
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)
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type SyncPeerConfig struct {
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peer p2p.Peer
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conn net.Conn
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w *bufio.Writer
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err error
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trusted bool
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blockHashes [][32]byte
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}
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type SyncBlockTask struct {
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index int
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blockHash [32]byte
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}
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type SyncConfig struct {
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peers []SyncPeerConfig
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}
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func StartBlockSyncing(peers []p2p.Peer) *blockchain.Blockchain {
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peer_number := len(peers)
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syncConfig := SyncConfig{
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peers: make([]SyncPeerConfig, peer_number),
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}
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for id := range syncConfig.peers {
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syncConfig.peers[id].peer = peers[id]
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syncConfig.peers[id].trusted = false
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}
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var wg sync.WaitGroup
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wg.Add(peer_number)
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for id := range syncConfig.peers {
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go func(peerConfig *SyncPeerConfig) {
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defer wg.Done()
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peerConfig.conn, peerConfig.err = p2p.DialWithSocketClient(peerConfig.peer.Ip, peerConfig.peer.Port)
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}(&syncConfig.peers[id])
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}
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wg.Wait()
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activePeerNumber := 0
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for _, configPeer := range syncConfig.peers {
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if configPeer.err == nil {
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activePeerNumber++
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configPeer.w = bufio.NewWriter(configPeer.conn)
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configPeer.trusted = true
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}
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}
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// Looping to get an array of block hashes from honest nodes.
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LOOP_HONEST_NODE:
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for {
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var wg sync.WaitGroup
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wg.Add(activePeerNumber)
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for _, configPeer := range syncConfig.peers {
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if configPeer.err != nil {
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continue
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}
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go func(peerConfig *SyncPeerConfig) {
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defer wg.Done()
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msg := proto_node.ConstructBlockchainSyncMessage(proto_node.GetLastBlockHashes, [32]byte{})
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peerConfig.w.Write(msg)
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peerConfig.w.Flush()
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var content []byte
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content, peerConfig.err = p2p.ReadMessageContent(peerConfig.conn)
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if peerConfig.err != nil {
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peerConfig.trusted = false
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return
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}
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var blockchainSyncMessage *proto_node.BlockchainSyncMessage
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blockchainSyncMessage, peerConfig.err = proto_node.DeserializeBlockchainSyncMessage(content)
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if peerConfig.err != nil {
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peerConfig.trusted = false
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return
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}
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peerConfig.blockHashes = blockchainSyncMessage.BlockHashes
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}(&configPeer)
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}
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wg.Wait()
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if getConsensus(&syncConfig) {
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break LOOP_HONEST_NODE
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}
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}
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taskSyncQueue := queue.New(0)
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blockSize := 0
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TASK_LOOP:
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for _, configPeer := range syncConfig.peers {
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if configPeer.trusted {
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for id, blockHash := range configPeer.blockHashes {
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taskSyncQueue.Put(SyncBlockTask{index: id, blockHash: blockHash})
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}
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blockSize = len(configPeer.blockHashes)
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break TASK_LOOP
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}
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}
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// Initialize blockchain
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bc := &blockchain.Blockchain{
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Blocks: make([]*blockchain.Block, blockSize),
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}
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wg.Add(activePeerNumber)
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for _, configPeer := range syncConfig.peers {
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if configPeer.err != nil {
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continue
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}
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go func(peerConfig *SyncPeerConfig, taskSyncQueue *queue.Queue, bc *blockchain.Blockchain) {
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defer wg.Done()
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for !taskSyncQueue.Empty() {
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task, err := taskSyncQueue.Poll(1, time.Millisecond)
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if err == queue.ErrTimeout {
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break
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}
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syncTask := task[0].(SyncBlockTask)
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msg := proto_node.ConstructBlockchainSyncMessage(proto_node.GetBlock, syncTask.blockHash)
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peerConfig.w.Write(msg)
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peerConfig.w.Flush()
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var content []byte
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content, peerConfig.err = p2p.ReadMessageContent(peerConfig.conn)
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if peerConfig.err != nil {
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peerConfig.trusted = false
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return
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}
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block, err := blockchain.DeserializeBlock(content)
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if err == nil {
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bc.Blocks[syncTask.index] = block
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}
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}
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}(&configPeer, taskSyncQueue, bc)
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}
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wg.Wait()
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return bc
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}
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func getConsensus(syncConfig *SyncConfig) bool {
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return true
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}
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