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package main
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import (
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"fmt"
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"math/big"
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"math/rand"
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"time"
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msg_pb "github.com/harmony-one/harmony/api/proto/message"
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"github.com/harmony-one/harmony/crypto/bls"
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blockfactory "github.com/harmony-one/harmony/block/factory"
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"github.com/harmony-one/harmony/internal/params"
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"github.com/harmony-one/harmony/internal/utils"
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common2 "github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/crypto"
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"github.com/ethereum/go-ethereum/ethdb"
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bls_core "github.com/harmony-one/bls/ffi/go/bls"
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"github.com/harmony-one/harmony/core"
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"github.com/harmony-one/harmony/core/state"
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"github.com/harmony-one/harmony/core/vm"
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"github.com/harmony-one/harmony/crypto/hash"
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"github.com/harmony-one/harmony/internal/chain"
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"github.com/harmony-one/harmony/internal/common"
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protobuf "github.com/golang/protobuf/proto"
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"github.com/harmony-one/harmony/numeric"
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staking "github.com/harmony-one/harmony/staking/types"
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)
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var (
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validatorAddress = common2.Address(common.MustBech32ToAddress("one1pdv9lrdwl0rg5vglh4xtyrv3wjk3wsqket7zxy"))
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testBLSPubKey = "30b2c38b1316da91e068ac3bd8751c0901ef6c02a1d58bc712104918302c6ed03d5894671d0c816dad2b4d303320f202"
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testBLSPrvKey = "c6d7603520311f7a4e6aac0b26701fc433b75b38df504cd416ef2b900cd66205"
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postStakingEpoch = big.NewInt(200)
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)
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func init() {
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bls_core.Init(bls_core.BLS12_381)
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}
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func generateBLSKeySigPair() (bls.SerializedPublicKey, bls.SerializedSignature) {
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p := &bls_core.PublicKey{}
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p.DeserializeHexStr(testBLSPubKey)
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pub := bls.SerializedPublicKey{}
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pub.FromLibBLSPublicKey(p)
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messageBytes := []byte(staking.BLSVerificationStr)
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privateKey := &bls_core.SecretKey{}
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privateKey.DeserializeHexStr(testBLSPrvKey)
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msgHash := hash.Keccak256(messageBytes)
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signature := privateKey.SignHash(msgHash[:])
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var sig bls.SerializedSignature
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copy(sig[:], signature.Serialize())
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return pub, sig
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}
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func createValidator() *staking.CreateValidator {
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desc := staking.Description{
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Name: "SuperHero",
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Identity: "YouWouldNotKnow",
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Website: "Secret Website",
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SecurityContact: "LicenseToKill",
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Details: "blah blah blah",
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}
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rate, _ := numeric.NewDecFromStr("0.1")
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maxRate, _ := numeric.NewDecFromStr("0.5")
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maxChangeRate, _ := numeric.NewDecFromStr("0.05")
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commission := staking.CommissionRates{
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Rate: rate,
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MaxRate: maxRate,
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MaxChangeRate: maxChangeRate,
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}
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minSelfDel := new(big.Int).Mul(big.NewInt(5e18), big.NewInt(2000))
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maxTotalDel := new(big.Int).Mul(big.NewInt(5e18), big.NewInt(100000))
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pubKey, pubSig := generateBLSKeySigPair()
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slotPubKeys := []bls.SerializedPublicKey{pubKey}
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slotKeySigs := []bls.SerializedSignature{pubSig}
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amount := new(big.Int).Mul(big.NewInt(5e18), big.NewInt(2000))
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v := staking.CreateValidator{
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ValidatorAddress: validatorAddress,
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Description: desc,
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CommissionRates: commission,
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MinSelfDelegation: minSelfDel,
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MaxTotalDelegation: maxTotalDel,
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SlotPubKeys: slotPubKeys,
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SlotKeySigs: slotKeySigs,
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Amount: amount,
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}
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return &v
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}
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func main() {
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key, _ := crypto.GenerateKey()
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gspec := core.Genesis{
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Config: params.TestChainConfig,
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Factory: blockfactory.ForTest,
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Alloc: core.GenesisAlloc{
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crypto.PubkeyToAddress(key.PublicKey): {
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Balance: big.NewInt(8000000000000000000),
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},
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},
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GasLimit: 1e18,
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ShardID: 0,
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}
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database := ethdb.NewMemDatabase()
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genesis := gspec.MustCommit(database)
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_ = genesis
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bc, _ := core.NewBlockChain(database, nil, gspec.Config, chain.Engine, vm.Config{}, nil)
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statedb, _ := state.New(common2.Hash{}, state.NewDatabase(ethdb.NewMemDatabase()))
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msg := createValidator()
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statedb.AddBalance(msg.ValidatorAddress, new(big.Int).Mul(big.NewInt(5e18), big.NewInt(2000)))
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validator, err := core.VerifyAndCreateValidatorFromMsg(
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statedb, bc, postStakingEpoch, big.NewInt(0), msg,
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)
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if err != nil {
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fmt.Print(err)
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}
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for i := 0; i < 100000; i++ {
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validator.Delegations = append(validator.Delegations, staking.Delegation{
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common2.Address{},
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big.NewInt(int64(rand.Intn(100))),
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big.NewInt(0),
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nil,
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})
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}
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statedb.UpdateValidatorWrapper(msg.ValidatorAddress, validator)
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startTime := time.Now()
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validator, _ = statedb.ValidatorWrapper(msg.ValidatorAddress)
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endTime := time.Now()
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fmt.Printf("Time required to read validator: %f seconds\n", endTime.Sub(startTime).Seconds())
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startTime = time.Now()
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shares, _ := lookupDelegatorShares(validator)
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endTime = time.Now()
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fmt.Printf("Time required to calc percentage %d delegations: %f seconds\n", len(validator.Delegations), endTime.Sub(startTime).Seconds())
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startTime = time.Now()
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statedb.AddReward(validator, big.NewInt(1000), shares)
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endTime = time.Now()
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fmt.Printf("Time required to reward a validator with %d delegations: %f seconds\n", len(validator.Delegations), endTime.Sub(startTime).Seconds())
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message := &msg_pb.Message{
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ServiceType: msg_pb.ServiceType_CONSENSUS,
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Type: msg_pb.MessageType_PREPARE,
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Request: &msg_pb.Message_Consensus{
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Consensus: &msg_pb.ConsensusRequest{},
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},
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}
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blsPriKey := bls.RandPrivateKey()
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pubKeyWrapper := bls.PublicKeyWrapper{Object: blsPriKey.GetPublicKey()}
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pubKeyWrapper.Bytes.FromLibBLSPublicKey(pubKeyWrapper.Object)
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request := message.GetConsensus()
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request.ViewId = 5
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request.BlockNum = 5
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request.ShardId = 1
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// 32 byte block hash
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request.BlockHash = []byte("stasdlkfjsadlkjfkdsljflksadjf")
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// sender address
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request.SenderPubkey = pubKeyWrapper.Bytes[:]
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message.Signature = nil
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// TODO: use custom serialization method rather than protobuf
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marshaledMessage, err := protobuf.Marshal(message)
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// 64 byte of signature on previous data
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hash1 := hash.Keccak256(marshaledMessage)
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startTime = time.Now()
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for i := 0; i < 1000; i++ {
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blsPriKey.SignHash(hash1[:])
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}
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endTime = time.Now()
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fmt.Printf("Time required to sign: %f seconds\n", endTime.Sub(startTime).Seconds())
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sig := blsPriKey.SignHash(hash1[:])
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message.Signature = sig.Serialize()
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marshaledMessage2, _ := protobuf.Marshal(message)
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message = &msg_pb.Message{}
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if err := protobuf.Unmarshal(marshaledMessage2, message); err != nil {
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return
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}
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startTime = time.Now()
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for i := 0; i < 1000; i++ {
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if err := protobuf.Unmarshal(marshaledMessage2, message); err != nil {
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return
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}
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}
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endTime = time.Now()
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fmt.Printf("Time required to unmarshall: %f seconds\n", endTime.Sub(startTime).Seconds())
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signature := message.Signature
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message.Signature = nil
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startTime = time.Now()
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for i := 0; i < 1000; i++ {
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protobuf.Marshal(message)
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}
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endTime = time.Now()
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fmt.Printf("Time required to marshal: %f seconds\n", endTime.Sub(startTime).Seconds())
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messageBytes, err := protobuf.Marshal(message)
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msgSig := bls_core.Sign{}
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err = msgSig.Deserialize(signature)
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startTime = time.Now()
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for i := 0; i < 1000; i++ {
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msgSig.Deserialize(signature)
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}
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endTime = time.Now()
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fmt.Printf("Time required to deserialize sig: %f seconds\n", endTime.Sub(startTime).Seconds())
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msgHash := hash.Keccak256(messageBytes)
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if !msgSig.VerifyHash(pubKeyWrapper.Object, msgHash[:]) {
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return
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}
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startTime = time.Now()
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for i := 0; i < 1000; i++ {
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hash.Keccak256(messageBytes)
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}
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endTime = time.Now()
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fmt.Printf("Time required to hash message: %f seconds\n", endTime.Sub(startTime).Seconds())
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startTime = time.Now()
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for i := 0; i < 1000; i++ {
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msgSig.VerifyHash(pubKeyWrapper.Object, msgHash[:])
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}
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endTime = time.Now()
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fmt.Printf("Time required to verify sig: %f seconds\n", endTime.Sub(startTime).Seconds())
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message.Signature = signature
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// A example result of a single run:
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//
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//Time required to calc percentage 100001 delegations: 0.058205 seconds
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//Time required to reward a validator with 100001 delegations: 0.015543 seconds
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//Time required to sign: 0.479827 seconds
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//Time required to unmarshall: 0.000662 seconds
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//Time required to marshal: 0.000453 seconds
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//Time required to deserialize sig: 0.517965 seconds
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//Time required to hash message: 0.001191 seconds
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//Time required to verify sig: 1.444604 seconds
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}
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func lookupDelegatorShares(
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snapshot *staking.ValidatorWrapper,
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) (result map[common2.Address]numeric.Dec, err error) {
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result = map[common2.Address]numeric.Dec{}
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totalDelegationDec := numeric.NewDecFromBigInt(snapshot.TotalDelegation())
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for i := range snapshot.Delegations {
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delegation := snapshot.Delegations[i]
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// NOTE percentage = <this_delegator_amount>/<total_delegation>
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if totalDelegationDec.IsZero() {
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utils.Logger().Info().
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RawJSON("validator-snapshot", []byte(snapshot.String())).
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Msg("zero total delegation during AddReward delegation payout")
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return nil, nil
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}
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percentage := numeric.NewDecFromBigInt(delegation.Amount).Quo(totalDelegationDec)
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result[delegation.DelegatorAddress] = percentage
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}
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return result, nil
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}
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