mirror of
https://github.com/nspcc-dev/neo-go.git
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d52e79668b
NewMerkleTree is a memory hog, we can do better than that: BenchmarkMerkle/NewMerkleTree-8 13 88434670 ns/op 20828207 B/op 300035 allocs/op BenchmarkMerkle/CalcMerkleRoot-8 15 69264150 ns/op 0 B/op 0 allocs/op
184 lines
5.1 KiB
Go
184 lines
5.1 KiB
Go
package testchain
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import (
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"testing"
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"time"
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"github.com/nspcc-dev/neo-go/pkg/core/block"
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"github.com/nspcc-dev/neo-go/pkg/core/blockchainer"
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"github.com/nspcc-dev/neo-go/pkg/core/transaction"
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"github.com/nspcc-dev/neo-go/pkg/crypto/hash"
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"github.com/nspcc-dev/neo-go/pkg/crypto/keys"
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"github.com/nspcc-dev/neo-go/pkg/encoding/address"
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"github.com/nspcc-dev/neo-go/pkg/io"
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"github.com/nspcc-dev/neo-go/pkg/smartcontract"
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"github.com/nspcc-dev/neo-go/pkg/util"
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"github.com/nspcc-dev/neo-go/pkg/vm/emit"
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"github.com/stretchr/testify/require"
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)
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// privNetKeys is a list of unencrypted WIFs sorted by public key.
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var privNetKeys = []string{
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"KzfPUYDC9n2yf4fK5ro4C8KMcdeXtFuEnStycbZgX3GomiUsvX6W",
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"KzgWE3u3EDp13XPXXuTKZxeJ3Gi8Bsm8f9ijY3ZsCKKRvZUo1Cdn",
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"KxyjQ8eUa4FHt3Gvioyt1Wz29cTUrE4eTqX3yFSk1YFCsPL8uNsY",
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"L2oEXKRAAMiPEZukwR5ho2S6SMeQLhcK9mF71ZnF7GvT8dU4Kkgz",
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// Provide 2 committee extra members so that committee address differs from
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// the validators one.
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"L1Tr1iq5oz1jaFaMXP21sHDkJYDDkuLtpvQ4wRf1cjKvJYvnvpAb",
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"Kz6XTUrExy78q8f4MjDHnwz8fYYyUE8iPXwPRAkHa3qN2JcHYm7e",
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}
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// ValidatorsCount returns number of validators in the testchain.
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const ValidatorsCount = 4
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var (
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// ids maps validators order by public key sorting to validators ID.
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// which is an order of the validator in the StandByValidators list.
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ids = []int{1, 3, 0, 2, 4, 5}
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// orders maps to validators id to it's order by public key sorting.
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orders = []int{2, 0, 3, 1, 4, 5}
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)
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// Size returns testchain initial validators amount.
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func Size() int {
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return ValidatorsCount
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}
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// CommitteeSize returns testchain committee size.
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func CommitteeSize() int {
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return len(privNetKeys)
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}
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// IDToOrder returns node's order in privnet.
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func IDToOrder(id int) int {
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return orders[id]
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}
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// WIF returns unencrypted wif of the specified validator.
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func WIF(i int) string {
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return privNetKeys[i]
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}
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// PrivateKey returns private key of node #i.
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func PrivateKey(i int) *keys.PrivateKey {
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wif := WIF(i)
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priv, err := keys.NewPrivateKeyFromWIF(wif)
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if err != nil {
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panic(err)
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}
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return priv
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}
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// PrivateKeyByID returns private keys of a node with the specified id.
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func PrivateKeyByID(id int) *keys.PrivateKey {
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return PrivateKey(IDToOrder(id))
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}
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// MultisigVerificationScript returns script hash of the consensus multisig address.
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func MultisigVerificationScript() []byte {
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var pubs keys.PublicKeys
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for i := range privNetKeys[:ValidatorsCount] {
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priv := PrivateKey(ids[i])
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pubs = append(pubs, priv.PublicKey())
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}
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script, err := smartcontract.CreateDefaultMultiSigRedeemScript(pubs)
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if err != nil {
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panic(err)
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}
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return script
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}
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// MultisigScriptHash returns consensus address as Uint160.
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func MultisigScriptHash() util.Uint160 {
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return hash.Hash160(MultisigVerificationScript())
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}
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// MultisigAddress return consensus address as string.
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func MultisigAddress() string {
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return address.Uint160ToString(MultisigScriptHash())
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}
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// CommitteeVerificationScript returns script hash of the committee multisig address.
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func CommitteeVerificationScript() []byte {
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var pubs keys.PublicKeys
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for i := range privNetKeys {
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priv := PrivateKey(ids[i])
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pubs = append(pubs, priv.PublicKey())
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}
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script, err := smartcontract.CreateMajorityMultiSigRedeemScript(pubs)
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if err != nil {
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panic(err)
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}
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return script
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}
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// CommitteeScriptHash returns committee address as Uint160.
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func CommitteeScriptHash() util.Uint160 {
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return hash.Hash160(CommitteeVerificationScript())
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}
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// CommitteeAddress return committee address as string.
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func CommitteeAddress() string {
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return address.Uint160ToString(CommitteeScriptHash())
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}
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// Sign signs data by all consensus nodes and returns invocation script.
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func Sign(data []byte) []byte {
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buf := io.NewBufBinWriter()
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for i := 0; i < 3; i++ {
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pKey := PrivateKey(i)
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sig := pKey.Sign(data)
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if len(sig) != 64 {
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panic("wrong signature length")
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}
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emit.Bytes(buf.BinWriter, sig)
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}
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return buf.Bytes()
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}
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// SignCommittee signs data by a majority of committee members.
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func SignCommittee(data []byte) []byte {
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buf := io.NewBufBinWriter()
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for i := 0; i < CommitteeSize()/2+1; i++ {
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pKey := PrivateKey(i)
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sig := pKey.Sign(data)
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if len(sig) != 64 {
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panic("wrong signature length")
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}
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emit.Bytes(buf.BinWriter, sig)
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}
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return buf.Bytes()
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}
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// NewBlock creates new block for the given blockchain with the given offset
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// (usually, 1), primary node index and transactions.
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func NewBlock(t *testing.T, bc blockchainer.Blockchainer, offset uint32, primary uint32, txs ...*transaction.Transaction) *block.Block {
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witness := transaction.Witness{VerificationScript: MultisigVerificationScript()}
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height := bc.BlockHeight()
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h := bc.GetHeaderHash(int(height))
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hdr, err := bc.GetHeader(h)
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require.NoError(t, err)
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b := &block.Block{
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Base: block.Base{
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PrevHash: hdr.Hash(),
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Timestamp: (uint64(time.Now().UTC().Unix()) + uint64(hdr.Index)) * 1000,
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Index: hdr.Index + offset,
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NextConsensus: witness.ScriptHash(),
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Script: witness,
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Network: bc.GetConfig().Magic,
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},
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ConsensusData: block.ConsensusData{
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PrimaryIndex: primary,
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Nonce: 1111,
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},
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Transactions: txs,
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}
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b.RebuildMerkleRoot()
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b.Script.InvocationScript = Sign(b.GetSignedPart())
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return b
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}
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