2020-07-21 02:05:23 +00:00
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package derived
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import (
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"context"
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2020-07-21 21:15:47 +00:00
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"encoding/hex"
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"encoding/json"
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"fmt"
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"io/ioutil"
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"strings"
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"testing"
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validatorpb "github.com/prysmaticlabs/prysm/proto/validator/accounts/v2"
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"github.com/prysmaticlabs/prysm/shared/bls"
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"github.com/prysmaticlabs/prysm/shared/bytesutil"
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"github.com/prysmaticlabs/prysm/shared/testutil"
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"github.com/prysmaticlabs/prysm/shared/testutil/assert"
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"github.com/prysmaticlabs/prysm/shared/testutil/require"
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mock "github.com/prysmaticlabs/prysm/validator/accounts/v2/testing"
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v2keymanager "github.com/prysmaticlabs/prysm/validator/keymanager/v2"
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logTest "github.com/sirupsen/logrus/hooks/test"
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keystorev4 "github.com/wealdtech/go-eth2-wallet-encryptor-keystorev4"
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)
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func TestDerivedKeymanager_CreateAccount(t *testing.T) {
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hook := logTest.NewGlobal()
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wallet := &mock.Wallet{
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Files: make(map[string]map[string][]byte),
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AccountPasswords: make(map[string]string),
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}
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seed := make([]byte, 32)
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copy(seed, "hello world")
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password := "secretPassw0rd$1999"
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dr := &Keymanager{
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wallet: wallet,
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seed: seed,
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seedCfg: &SeedConfig{
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NextAccount: 0,
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},
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walletPassword: password,
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}
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ctx := context.Background()
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accountName, err := dr.CreateAccount(ctx)
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require.NoError(t, err)
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assert.Equal(t, "0", accountName)
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// Ensure the keystore file was written to the wallet
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// and ensure we can decrypt it using the EIP-2335 standard.
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validatingAccount0 := fmt.Sprintf(ValidatingKeyDerivationPathTemplate, 0)
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encodedKeystore, ok := wallet.Files[validatingAccount0][KeystoreFileName]
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require.Equal(t, ok, true, fmt.Sprintf("Expected to have stored %s in wallet", KeystoreFileName))
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keystoreFile := &v2keymanager.Keystore{}
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require.NoError(t, json.Unmarshal(encodedKeystore, keystoreFile))
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// We extract the validator signing private key from the keystore
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// by utilizing the password and initialize a new BLS secret key from
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// its raw bytes.
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decryptor := keystorev4.New()
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rawValidatingKey, err := decryptor.Decrypt(keystoreFile.Crypto, []byte(password))
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require.NoError(t, err, "Could not decrypt validator signing key")
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validatingKey, err := bls.SecretKeyFromBytes(rawValidatingKey)
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require.NoError(t, err, "Could not instantiate bls secret key from bytes")
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// Ensure the keystore file was written to the wallet
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// and ensure we can decrypt it using the EIP-2335 standard.
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withdrawalAccount0 := fmt.Sprintf(WithdrawalKeyDerivationPathTemplate, 0)
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encodedKeystore, ok = wallet.Files[withdrawalAccount0][KeystoreFileName]
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require.Equal(t, ok, true, fmt.Sprintf("Expected to have stored %s in wallet", KeystoreFileName))
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keystoreFile = &v2keymanager.Keystore{}
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require.NoError(t, json.Unmarshal(encodedKeystore, keystoreFile))
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// We extract the validator signing private key from the keystore
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// by utilizing the password and initialize a new BLS secret key from
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// its raw bytes.
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rawWithdrawalKey, err := decryptor.Decrypt(keystoreFile.Crypto, []byte(password))
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require.NoError(t, err, "Could not decrypt validator withdrawal key")
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withdrawalKey, err := bls.SecretKeyFromBytes(rawWithdrawalKey)
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require.NoError(t, err, "Could not instantiate bls secret key from bytes")
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// Assert the new value for next account increased and also
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// check the config file was updated on disk with this new value.
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assert.Equal(t, uint64(1), dr.seedCfg.NextAccount, "Wrong value for next account")
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encryptedSeedFile, err := wallet.ReadEncryptedSeedFromDisk(ctx)
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require.NoError(t, err)
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enc, err := ioutil.ReadAll(encryptedSeedFile)
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require.NoError(t, err)
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defer func() {
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assert.NoError(t, encryptedSeedFile.Close())
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}()
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seedConfig := &SeedConfig{}
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require.NoError(t, json.Unmarshal(enc, seedConfig))
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assert.Equal(t, uint64(1), seedConfig.NextAccount, "Wrong value for next account")
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// Ensure the new account information is displayed to stdout.
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testutil.AssertLogsContain(t, hook, "Successfully created new validator account")
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testutil.AssertLogsContain(t, hook, fmt.Sprintf("%#x", validatingKey.PublicKey().Marshal()))
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testutil.AssertLogsContain(t, hook, fmt.Sprintf("%#x", withdrawalKey.PublicKey().Marshal()))
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}
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func TestDerivedKeymanager_FetchValidatingPublicKeys(t *testing.T) {
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wallet := &mock.Wallet{
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Files: make(map[string]map[string][]byte),
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AccountPasswords: make(map[string]string),
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}
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dr := &Keymanager{
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wallet: wallet,
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keysCache: make(map[[48]byte]bls.SecretKey),
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seedCfg: &SeedConfig{
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NextAccount: 0,
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},
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seed: make([]byte, 32),
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walletPassword: "hello world",
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}
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// First, generate accounts and their keystore.json files.
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ctx := context.Background()
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numAccounts := 20
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wantedPublicKeys := make([][48]byte, numAccounts)
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var err error
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var accountName string
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for i := 0; i < numAccounts; i++ {
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accountName, err = dr.CreateAccount(ctx)
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require.NoError(t, err)
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validatingKeyPath := fmt.Sprintf(ValidatingKeyDerivationPathTemplate, i)
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enc, err := wallet.ReadFileAtPath(ctx, validatingKeyPath, KeystoreFileName)
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require.NoError(t, err)
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keystore := &v2keymanager.Keystore{}
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require.NoError(t, json.Unmarshal(enc, keystore))
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pubKey, err := hex.DecodeString(keystore.Pubkey)
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require.NoError(t, err)
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wantedPublicKeys[i] = bytesutil.ToBytes48(pubKey)
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}
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assert.Equal(t, fmt.Sprintf("%d", numAccounts-1), accountName)
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publicKeys, err := dr.FetchValidatingPublicKeys(ctx)
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require.NoError(t, err)
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// The results are not guaranteed to be ordered, so we ensure each
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// key we expect exists in the results via a map.
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keysMap := make(map[[48]byte]bool)
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for _, key := range publicKeys {
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keysMap[key] = true
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}
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for _, wanted := range wantedPublicKeys {
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if _, ok := keysMap[wanted]; !ok {
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t.Errorf("Could not find expected public key %#x in results", wanted)
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}
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}
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}
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func TestDerivedKeymanager_Sign(t *testing.T) {
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wallet := &mock.Wallet{
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Files: make(map[string]map[string][]byte),
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AccountPasswords: make(map[string]string),
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}
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seed := make([]byte, 32)
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copy(seed, "hello world")
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dr := &Keymanager{
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wallet: wallet,
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seed: seed,
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keysCache: make(map[[48]byte]bls.SecretKey),
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seedCfg: &SeedConfig{
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NextAccount: 0,
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},
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walletPassword: "hello world",
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}
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// First, generate some accounts.
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numAccounts := 2
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ctx := context.Background()
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var err error
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var accountName string
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for i := 0; i < numAccounts; i++ {
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accountName, err = dr.CreateAccount(ctx)
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require.NoError(t, err)
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}
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assert.Equal(t, fmt.Sprintf("%d", numAccounts-1), accountName)
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// Initialize the secret keys cache for the keymanager.
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require.NoError(t, dr.initializeSecretKeysCache())
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publicKeys, err := dr.FetchValidatingPublicKeys(ctx)
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require.NoError(t, err)
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// We prepare naive data to sign.
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data := []byte("eth2data")
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signRequest := &validatorpb.SignRequest{
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PublicKey: publicKeys[0][:],
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SigningRoot: data,
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}
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sig, err := dr.Sign(ctx, signRequest)
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require.NoError(t, err)
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pubKey, err := bls.PublicKeyFromBytes(publicKeys[0][:])
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require.NoError(t, err)
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wrongPubKey, err := bls.PublicKeyFromBytes(publicKeys[1][:])
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require.NoError(t, err)
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// Check if the signature verifies.
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assert.Equal(t, true, sig.Verify(pubKey, data))
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// Check if the bad signature fails.
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assert.Equal(t, false, sig.Verify(wrongPubKey, data))
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}
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func TestDerivedKeymanager_Sign_NoPublicKeySpecified(t *testing.T) {
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req := &validatorpb.SignRequest{
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PublicKey: nil,
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}
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dr := &Keymanager{}
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_, err := dr.Sign(context.Background(), req)
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assert.NotNil(t, err)
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assert.Equal(t, strings.Contains(err.Error(), "nil public key"), true)
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}
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func TestDerivedKeymanager_Sign_NoPublicKeyInCache(t *testing.T) {
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req := &validatorpb.SignRequest{
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PublicKey: []byte("hello world"),
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}
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dr := &Keymanager{
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keysCache: make(map[[48]byte]bls.SecretKey),
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}
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_, err := dr.Sign(context.Background(), req)
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assert.NotNil(t, err)
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assert.Equal(t, strings.Contains(err.Error(), "no signing key found"), true)
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}
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