The core protocol of WoopChain
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woop/drand/drand_test.go

135 lines
4.4 KiB

package drand
import (
"math/big"
"strings"
"testing"
"github.com/ethereum/go-ethereum/common"
"github.com/harmony-one/bls/ffi/go/bls"
blockfactory "github.com/harmony-one/harmony/block/factory"
bls2 "github.com/harmony-one/harmony/crypto/bls"
msg_pb "github.com/harmony-one/harmony/api/proto/message"
"github.com/harmony-one/harmony/core/types"
"github.com/harmony-one/harmony/internal/utils"
"github.com/harmony-one/harmony/p2p"
"github.com/harmony-one/harmony/p2p/p2pimpl"
)
func TestNew(test *testing.T) {
leader := p2p.Peer{IP: "127.0.0.1", Port: "9902"}
validator := p2p.Peer{IP: "127.0.0.1", Port: "9905"}
priKey, _, _ := utils.GenKeyP2P("127.0.0.1", "9902")
host, err := p2pimpl.NewHost(&leader, priKey)
if err != nil {
test.Fatalf("newhost failure: %v", err)
}
dRand := New(host, 0, []p2p.Peer{leader, validator}, leader, nil, bls2.RandPrivateKey())
if !dRand.IsLeader {
test.Error("dRand should belong to a leader")
}
}
func TestResetState(test *testing.T) {
leader := p2p.Peer{IP: "127.0.0.1", Port: "9902"}
validator := p2p.Peer{IP: "127.0.0.1", Port: "9905"}
priKey, _, _ := utils.GenKeyP2P("127.0.0.1", "9902")
host, err := p2pimpl.NewHost(&leader, priKey)
if err != nil {
test.Fatalf("newhost failure: %v", err)
}
dRand := New(host, 0, []p2p.Peer{leader, validator}, leader, nil, bls2.RandPrivateKey())
dRand.ResetState()
}
func TestSetLeaderPubKey(test *testing.T) {
leader := p2p.Peer{IP: "127.0.0.1", Port: "9902"}
validator := p2p.Peer{IP: "127.0.0.1", Port: "9905"}
priKey, _, _ := utils.GenKeyP2P("127.0.0.1", "9902")
host, err := p2pimpl.NewHost(&leader, priKey)
if err != nil {
test.Fatalf("newhost failure: %v", err)
}
dRand := New(host, 0, []p2p.Peer{leader, validator}, leader, nil, bls2.RandPrivateKey())
_, newPublicKey, _ := utils.GenKeyP2P("127.0.0.1", "9902")
newPublicKeyBytes, _ := newPublicKey.Bytes()
if dRand.SetLeaderPubKey(newPublicKeyBytes) == nil {
test.Error("Failed to Set Public Key of Leader")
}
}
func TestUpdatePublicKeys(test *testing.T) {
leader := p2p.Peer{IP: "127.0.0.1", Port: "9902"}
validator := p2p.Peer{IP: "127.0.0.1", Port: "9905"}
priKey, _, _ := utils.GenKeyP2P("127.0.0.1", "9902")
host, err := p2pimpl.NewHost(&leader, priKey)
if err != nil {
test.Fatalf("newhost failure: %v", err)
}
dRand := New(host, 0, []p2p.Peer{leader, validator}, leader, nil, bls2.RandPrivateKey())
pubKey1 := bls2.RandPrivateKey().GetPublicKey()
pubKey2 := bls2.RandPrivateKey().GetPublicKey()
publicKeys := []*bls.PublicKey{pubKey1, pubKey2}
if dRand.UpdatePublicKeys(publicKeys) != 2 {
test.Error("Count of public keys doesn't match")
}
for index, publicKey := range dRand.PublicKeys {
if strings.Compare(publicKey.SerializeToHexStr(), publicKeys[index].SerializeToHexStr()) != 0 {
test.Error("Public keys not updated succssfully")
}
}
}
func TestVerifyMessageSig(test *testing.T) {
leader := p2p.Peer{IP: "127.0.0.1", Port: "9902"}
validator := p2p.Peer{IP: "127.0.0.1", Port: "9905"}
priKey, _, _ := utils.GenKeyP2P("127.0.0.1", "9902")
host, err := p2pimpl.NewHost(&leader, priKey)
if err != nil {
test.Fatalf("newhost failure: %v", err)
}
dRand := New(host, 0, []p2p.Peer{leader, validator}, leader, nil, bls2.RandPrivateKey())
message := &msg_pb.Message{
ServiceType: msg_pb.ServiceType_DRAND,
Type: msg_pb.MessageType_DRAND_INIT,
Request: &msg_pb.Message_Drand{
Drand: &msg_pb.DrandRequest{},
},
}
drandMsg := message.GetDrand()
drandMsg.SenderPubkey = dRand.pubKey.Serialize()
drandMsg.BlockHash = dRand.blockHash[:]
dRand.signDRandMessage(message)
if verifyMessageSig(dRand.pubKey, message) != nil {
test.Error("Failed to verify the signature")
}
}
func TestVrf(test *testing.T) {
leader := p2p.Peer{IP: "127.0.0.1", Port: "9902"}
validator := p2p.Peer{IP: "127.0.0.1", Port: "9905"}
priKey, _, _ := utils.GenKeyP2P("127.0.0.1", "9902")
host, err := p2pimpl.NewHost(&leader, priKey)
if err != nil {
test.Fatalf("newhost failure: %v", err)
}
dRand := New(host, 0, []p2p.Peer{leader, validator}, leader, nil, bls2.RandPrivateKey())
tx1 := types.NewTransaction(1, common.BytesToAddress([]byte{0x11}), 0, big.NewInt(111), 1111, big.NewInt(11111), []byte{0x11, 0x11, 0x11})
txs := []*types.Transaction{tx1}
block := types.NewBlock(blockfactory.NewTestHeader().With().Number(big.NewInt(314)).Header(), txs, nil, nil, nil)
blockHash := block.Hash()
dRand.vrf(blockHash)
}