forked from TrueCloudLab/neoneo-go
180 lines
5.4 KiB
Go
180 lines
5.4 KiB
Go
package neotest
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import (
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"bytes"
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"fmt"
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"sort"
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"testing"
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"github.com/nspcc-dev/neo-go/pkg/config/netmode"
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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/util"
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"github.com/nspcc-dev/neo-go/pkg/vm"
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"github.com/nspcc-dev/neo-go/pkg/vm/opcode"
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"github.com/nspcc-dev/neo-go/pkg/wallet"
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"github.com/stretchr/testify/require"
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)
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// Signer is a generic interface which can be either simple- or multi-signature signer.
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type Signer interface {
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// ScriptHash returns signer script hash.
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Script() []byte
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// Script returns signer verification script.
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ScriptHash() util.Uint160
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// SignHashable returns invocation script for signing an item.
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SignHashable(uint32, hash.Hashable) []byte
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// SignTx signs a transaction.
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SignTx(netmode.Magic, *transaction.Transaction) error
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}
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// SingleSigner is a generic interface for simple one-signature signer.
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type SingleSigner interface {
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Signer
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// Account returns underlying account which can be used to
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// get public key and/or sign arbitrary things.
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Account() *wallet.Account
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}
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// MultiSigner is the interface for multisignature signing account.
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type MultiSigner interface {
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Signer
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// Single returns simple-signature signer for n-th account in list.
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Single(n int) SingleSigner
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}
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// signer represents simple-signature signer.
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type signer wallet.Account
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// multiSigner represents single multi-signature signer consisting of provided accounts.
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type multiSigner struct {
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accounts []*wallet.Account
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m int
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}
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// NewSingleSigner returns multi-signature signer for the provided account.
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// It must contain exactly as many accounts as needed to sign the script.
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func NewSingleSigner(acc *wallet.Account) SingleSigner {
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if !vm.IsSignatureContract(acc.Contract.Script) {
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panic("account must have simple-signature verification script")
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}
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return (*signer)(acc)
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}
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// Script implements Signer interface.
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func (s *signer) Script() []byte {
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return (*wallet.Account)(s).Contract.Script
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}
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// ScriptHash implements Signer interface.
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func (s *signer) ScriptHash() util.Uint160 {
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return (*wallet.Account)(s).Contract.ScriptHash()
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}
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// SignHashable implements Signer interface.
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func (s *signer) SignHashable(magic uint32, item hash.Hashable) []byte {
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return append([]byte{byte(opcode.PUSHDATA1), 64},
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(*wallet.Account)(s).PrivateKey().SignHashable(magic, item)...)
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}
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// SignTx implements Signer interface.
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func (s *signer) SignTx(magic netmode.Magic, tx *transaction.Transaction) error {
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return (*wallet.Account)(s).SignTx(magic, tx)
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}
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// Account implements SingleSigner interface.
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func (s *signer) Account() *wallet.Account {
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return (*wallet.Account)(s)
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}
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// NewMultiSigner returns multi-signature signer for the provided account.
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// It must contain at least as many accounts as needed to sign the script.
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func NewMultiSigner(accs ...*wallet.Account) MultiSigner {
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if len(accs) == 0 {
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panic("empty account list")
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}
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script := accs[0].Contract.Script
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m, _, ok := vm.ParseMultiSigContract(script)
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if !ok {
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panic("all accounts must have multi-signature verification script")
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}
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if len(accs) < m {
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panic(fmt.Sprintf("verification script requires %d signatures, "+
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"but only %d accounts were provided", m, len(accs)))
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}
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sort.Slice(accs, func(i, j int) bool {
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p1 := accs[i].PrivateKey().PublicKey()
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p2 := accs[j].PrivateKey().PublicKey()
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return p1.Cmp(p2) == -1
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})
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for _, acc := range accs {
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if !bytes.Equal(script, acc.Contract.Script) {
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panic("all accounts must have equal verification script")
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}
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}
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return multiSigner{accounts: accs, m: m}
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}
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// ScriptHash implements Signer interface.
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func (m multiSigner) ScriptHash() util.Uint160 {
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return m.accounts[0].Contract.ScriptHash()
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}
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// Script implements Signer interface.
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func (m multiSigner) Script() []byte {
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return m.accounts[0].Contract.Script
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}
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// SignHashable implements Signer interface.
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func (m multiSigner) SignHashable(magic uint32, item hash.Hashable) []byte {
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var script []byte
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for i := 0; i < m.m; i++ {
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sign := m.accounts[i].PrivateKey().SignHashable(magic, item)
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script = append(script, byte(opcode.PUSHDATA1), 64)
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script = append(script, sign...)
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}
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return script
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}
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// SignTx implements Signer interface.
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func (m multiSigner) SignTx(magic netmode.Magic, tx *transaction.Transaction) error {
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invoc := m.SignHashable(uint32(magic), tx)
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verif := m.Script()
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for i := range tx.Scripts {
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if bytes.Equal(tx.Scripts[i].VerificationScript, verif) {
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tx.Scripts[i].InvocationScript = invoc
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return nil
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}
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}
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tx.Scripts = append(tx.Scripts, transaction.Witness{
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InvocationScript: invoc,
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VerificationScript: verif,
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})
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return nil
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}
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// Single implements MultiSigner interface.
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func (m multiSigner) Single(n int) SingleSigner {
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if len(m.accounts) <= n {
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panic("invalid index")
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}
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return NewSingleSigner(wallet.NewAccountFromPrivateKey(m.accounts[n].PrivateKey()))
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}
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func checkMultiSigner(t testing.TB, s Signer) {
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ms, ok := s.(multiSigner)
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require.True(t, ok, "expected to be a multi-signer")
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accs := ms.accounts
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require.True(t, len(accs) > 0, "empty multi-signer")
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m := len(accs[0].Contract.Parameters)
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require.True(t, m <= len(accs), "honest not count is too big for a multi-signer")
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h := accs[0].Contract.ScriptHash()
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for i := 1; i < len(accs); i++ {
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require.Equal(t, m, len(accs[i].Contract.Parameters), "inconsistent multi-signer accounts")
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require.Equal(t, h, accs[i].Contract.ScriptHash(), "inconsistent multi-signer accounts")
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}
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}
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