mirror of
https://source.quilibrium.com/quilibrium/ceremonyclient.git
synced 2024-12-25 08:05:17 +00:00
205 lines
4.2 KiB
Go
205 lines
4.2 KiB
Go
package app
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import (
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"encoding/binary"
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"errors"
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"fmt"
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"go.uber.org/zap"
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"golang.org/x/crypto/sha3"
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"source.quilibrium.com/quilibrium/monorepo/node/consensus"
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"source.quilibrium.com/quilibrium/monorepo/node/consensus/master"
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"source.quilibrium.com/quilibrium/monorepo/node/crypto"
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"source.quilibrium.com/quilibrium/monorepo/node/execution"
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"source.quilibrium.com/quilibrium/monorepo/node/keys"
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"source.quilibrium.com/quilibrium/monorepo/node/p2p"
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"source.quilibrium.com/quilibrium/monorepo/node/store"
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)
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type Node struct {
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logger *zap.Logger
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dataProofStore store.DataProofStore
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clockStore store.ClockStore
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coinStore store.CoinStore
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keyManager keys.KeyManager
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pubSub p2p.PubSub
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execEngines map[string]execution.ExecutionEngine
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engine consensus.ConsensusEngine
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}
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type DHTNode struct {
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pubSub p2p.PubSub
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quit chan struct{}
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}
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func newDHTNode(
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pubSub p2p.PubSub,
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) (*DHTNode, error) {
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return &DHTNode{
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pubSub: pubSub,
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quit: make(chan struct{}),
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}, nil
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}
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func newNode(
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logger *zap.Logger,
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dataProofStore store.DataProofStore,
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clockStore store.ClockStore,
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coinStore store.CoinStore,
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keyManager keys.KeyManager,
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pubSub p2p.PubSub,
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// execution engines wire in here
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engine consensus.ConsensusEngine,
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) (*Node, error) {
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if engine == nil {
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return nil, errors.New("engine must not be nil")
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}
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execEngines := make(map[string]execution.ExecutionEngine)
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return &Node{
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logger,
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dataProofStore,
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clockStore,
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coinStore,
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keyManager,
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pubSub,
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execEngines,
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engine,
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}, nil
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}
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func GetOutputs(output []byte) (
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index uint32,
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indexProof []byte,
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kzgCommitment []byte,
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kzgProof []byte,
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) {
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index = binary.BigEndian.Uint32(output[:4])
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indexProof = output[4:520]
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kzgCommitment = output[520:594]
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kzgProof = output[594:668]
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return index, indexProof, kzgCommitment, kzgProof
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}
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func nearestApplicablePowerOfTwo(number uint64) uint64 {
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power := uint64(128)
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if number > 2048 {
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power = 65536
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} else if number > 1024 {
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power = 2048
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} else if number > 128 {
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power = 1024
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}
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return power
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}
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func (n *Node) VerifyProofIntegrity() {
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i, _, _, e := n.dataProofStore.GetLatestDataTimeProof(n.pubSub.GetPeerID())
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if e != nil {
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panic(e)
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}
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dataProver := crypto.NewKZGInclusionProver(n.logger)
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wesoProver := crypto.NewWesolowskiFrameProver(n.logger)
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for j := int(i); j >= 0; j-- {
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fmt.Println(j)
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_, parallelism, input, o, err := n.dataProofStore.GetDataTimeProof(n.pubSub.GetPeerID(), uint32(j))
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if err != nil {
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panic(err)
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}
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idx, idxProof, idxCommit, idxKP := GetOutputs(o)
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ip := sha3.Sum512(idxProof)
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v, err := dataProver.VerifyRaw(
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ip[:],
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idxCommit,
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int(idx),
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idxKP,
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nearestApplicablePowerOfTwo(uint64(parallelism)),
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)
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if err != nil {
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panic(err)
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}
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if !v {
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panic(fmt.Sprintf("bad kzg proof at increment %d", j))
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}
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wp := []byte{}
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wp = append(wp, n.pubSub.GetPeerID()...)
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wp = append(wp, input...)
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fmt.Printf("%x\n", wp)
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v = wesoProver.VerifyPreDuskChallengeProof(wp, uint32(j), idx, idxProof)
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if !v {
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panic(fmt.Sprintf("bad weso proof at increment %d", j))
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}
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}
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}
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func (d *DHTNode) Start() {
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<-d.quit
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}
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func (d *DHTNode) Stop() {
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go func() {
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d.quit <- struct{}{}
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}()
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}
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func (n *Node) Start() {
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err := <-n.engine.Start()
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if err != nil {
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panic(err)
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}
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// TODO: add config mapping to engine name/frame registration
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for _, e := range n.execEngines {
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n.engine.RegisterExecutor(e, 0)
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}
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}
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func (n *Node) Stop() {
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err := <-n.engine.Stop(false)
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if err != nil {
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panic(err)
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}
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}
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func (n *Node) GetLogger() *zap.Logger {
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return n.logger
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}
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func (n *Node) GetClockStore() store.ClockStore {
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return n.clockStore
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}
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func (n *Node) GetCoinStore() store.CoinStore {
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return n.coinStore
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}
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func (n *Node) GetDataProofStore() store.DataProofStore {
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return n.dataProofStore
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}
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func (n *Node) GetKeyManager() keys.KeyManager {
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return n.keyManager
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}
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func (n *Node) GetPubSub() p2p.PubSub {
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return n.pubSub
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}
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func (n *Node) GetMasterClock() *master.MasterClockConsensusEngine {
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return n.engine.(*master.MasterClockConsensusEngine)
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}
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func (n *Node) GetExecutionEngines() []execution.ExecutionEngine {
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list := []execution.ExecutionEngine{}
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for _, e := range n.execEngines {
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list = append(list, e)
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}
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return list
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}
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