291 lines
9.4 KiB
Go
291 lines
9.4 KiB
Go
package wallet
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import (
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"encoding/binary"
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"strings"
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"testing"
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"github.com/lbryio/lbcd/chaincfg"
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"github.com/lbryio/lbcd/txscript"
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btcutil "github.com/lbryio/lbcutil"
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"github.com/lbryio/lbcutil/hdkeychain"
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"github.com/lbryio/lbcwallet/waddrmgr"
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"github.com/stretchr/testify/require"
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)
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func hardenedKey(key uint32) uint32 {
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return key + hdkeychain.HardenedKeyStart
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}
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func deriveAcctPubKey(t *testing.T, root *hdkeychain.ExtendedKey,
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scope waddrmgr.KeyScope, paths ...uint32) *hdkeychain.ExtendedKey {
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path := []uint32{hardenedKey(scope.Purpose), hardenedKey(scope.Coin)}
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path = append(path, paths...)
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var (
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currentKey = root
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err error
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)
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for _, pathPart := range path {
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currentKey, err = currentKey.Derive(pathPart)
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require.NoError(t, err)
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}
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// The Neuter() method checks the version and doesn't know any
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// non-standard methods. We need to convert them to standard, neuter,
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// then convert them back with the target extended public key version.
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pubVersionBytes := make([]byte, 4)
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copy(pubVersionBytes, chaincfg.TestNet3Params.HDPublicKeyID[:])
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switch {
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case strings.HasPrefix(root.String(), "uprv"):
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binary.BigEndian.PutUint32(pubVersionBytes, uint32(
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waddrmgr.HDVersionTestNetBIP0049,
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))
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case strings.HasPrefix(root.String(), "vprv"):
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binary.BigEndian.PutUint32(pubVersionBytes, uint32(
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waddrmgr.HDVersionTestNetBIP0084,
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))
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}
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currentKey, err = currentKey.CloneWithVersion(
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chaincfg.TestNet3Params.HDPrivateKeyID[:],
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)
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require.NoError(t, err)
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currentKey, err = currentKey.Neuter()
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require.NoError(t, err)
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currentKey, err = currentKey.CloneWithVersion(pubVersionBytes)
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require.NoError(t, err)
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return currentKey
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}
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type testCase struct {
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name string
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masterPriv string
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accountIndex uint32
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addrType waddrmgr.AddressType
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expectedScope waddrmgr.KeyScope
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expectedAddr string
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expectedChangeAddr string
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}
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var (
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testCases = []*testCase{{
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name: "bip44 with nested witness address type",
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masterPriv: "tprv8ZgxMBicQKsPeWwrFuNjEGTTDSY4mRLwd2KDJAPGa1AY" +
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"quw38bZqNMSuB3V1Va3hqJBo9Pt8Sx7kBQer5cNMrb8SYquoWPt9" +
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"Y3BZdhdtUcw",
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accountIndex: 0,
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addrType: waddrmgr.NestedWitnessPubKey,
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expectedScope: waddrmgr.KeyScopeBIP0049,
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expectedAddr: "2N5YTxG9XtGXx1YyhZb7N2pwEjoZLLMHGKj",
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expectedChangeAddr: "2N7wpz5Gy2zEJTvq2MAuU6BCTEBLXNQ8dUw",
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}, {
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name: "bip44 with witness address type",
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masterPriv: "tprv8ZgxMBicQKsPeWwrFuNjEGTTDSY4mRLwd2KDJAPGa1AY" +
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"quw38bZqNMSuB3V1Va3hqJBo9Pt8Sx7kBQer5cNMrb8SYquoWPt9" +
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"Y3BZdhdtUcw",
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accountIndex: 777,
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addrType: waddrmgr.WitnessPubKey,
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expectedScope: waddrmgr.KeyScopeBIP0084,
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expectedAddr: "tb1qllxcutkzsukf8u8c8stkp464j0esu9xq7qju8x",
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expectedChangeAddr: "tb1qu6jmqglrthscptjqj3egx54wy8xqvzn5hslgw7",
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}, {
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name: "traditional bip49",
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masterPriv: "uprv8tXDerPXZ1QsVp8y6GAMSMYxPQgWi3LSY8qS5ZH9x1YRu" +
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"1kGPFjPzR73CFSbVUhdEwJbtsUgucUJ4hGQoJnNepp3RBcE6Jhdom" +
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"FD2KeY6G9",
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accountIndex: 9,
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addrType: waddrmgr.NestedWitnessPubKey,
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expectedScope: waddrmgr.KeyScopeBIP0049,
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expectedAddr: "2NBCJ9WzGXZqpLpXGq3Hacybj3c4eHRcqgh",
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expectedChangeAddr: "2N3bankFu6F3ZNU41iVJQqyS9MXqp9dvn1M",
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}, {
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name: "bip49+",
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masterPriv: "uprv8tXDerPXZ1QsVp8y6GAMSMYxPQgWi3LSY8qS5ZH9x1YRu" +
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"1kGPFjPzR73CFSbVUhdEwJbtsUgucUJ4hGQoJnNepp3RBcE6Jhdom" +
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"FD2KeY6G9",
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accountIndex: 9,
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addrType: waddrmgr.WitnessPubKey,
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expectedScope: waddrmgr.KeyScopeBIP0049,
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expectedAddr: "2NBCJ9WzGXZqpLpXGq3Hacybj3c4eHRcqgh",
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expectedChangeAddr: "tb1qeqn05w2hfq6axpdprhs4y7x65gxkkvfvyxqk4u",
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}, {
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name: "bip84",
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masterPriv: "vprv9DMUxX4ShgxMM7L5vcwyeSeTZNpxefKwTFMerxB3L1vJ" +
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"x7ZVdutxcUmBDTQBVPMYeaRQeM5FNGpqwysyX1CPT4VeHXJegDX8" +
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"5VJrQvaFaz3",
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accountIndex: 1,
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addrType: waddrmgr.WitnessPubKey,
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expectedScope: waddrmgr.KeyScopeBIP0084,
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expectedAddr: "tb1q5vepvcl0z8xj7kps4rsux722r4dvfwlhk6j532",
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expectedChangeAddr: "tb1qlwe2kgxcsa8x4huu79yff4rze0l5mwafg5c7xd",
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}}
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)
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// TestImportAccount tests that extended public keys can successfully be
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// imported into both watch only and normal wallets.
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func _TestImportAccount(t *testing.T) {
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for _, tc := range testCases {
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tc := tc
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t.Run(tc.name, func(t *testing.T) {
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t.Parallel()
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w, cleanup := testWallet(t)
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defer cleanup()
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testImportAccount(t, w, tc, false, tc.name)
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})
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name := tc.name + " watch-only"
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t.Run(name, func(t *testing.T) {
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t.Parallel()
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w, cleanup := testWalletWatchingOnly(t)
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defer cleanup()
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testImportAccount(t, w, tc, true, name)
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})
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}
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}
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func testImportAccount(t *testing.T, w *Wallet, tc *testCase, watchOnly bool,
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name string) {
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// First derive the master public key of the account we want to import.
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root, err := hdkeychain.NewKeyFromString(tc.masterPriv)
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require.NoError(t, err)
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// Derive the extended private and public key for our target account.
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acct1Pub := deriveAcctPubKey(
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t, root, tc.expectedScope, hardenedKey(tc.accountIndex),
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)
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// We want to make sure we can import and handle multiple accounts, so
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// we create another one.
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acct2Pub := deriveAcctPubKey(
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t, root, tc.expectedScope, hardenedKey(tc.accountIndex+1),
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)
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// And we also want to be able to import loose extended public keys
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// without needing to specify an explicit scope.
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acct3ExternalExtPub := deriveAcctPubKey(
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t, root, tc.expectedScope, hardenedKey(tc.accountIndex+2), 0, 0,
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)
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acct3ExternalPub, err := acct3ExternalExtPub.ECPubKey()
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require.NoError(t, err)
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// Do a dry run import first and check that it results in the expected
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// addresses being derived.
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_, extAddrs, intAddrs, err := w.ImportAccountDryRun(
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name+"1", acct1Pub, root.ParentFingerprint(), &tc.addrType, 1,
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)
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require.NoError(t, err)
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require.Len(t, extAddrs, 1)
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require.Equal(t, tc.expectedAddr, extAddrs[0].Address().String())
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require.Len(t, intAddrs, 1)
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require.Equal(t, tc.expectedChangeAddr, intAddrs[0].Address().String())
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// Import the extended public keys into new accounts.
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acct1, err := w.ImportAccount(
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name+"1", acct1Pub, root.ParentFingerprint(), &tc.addrType,
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)
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require.NoError(t, err)
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require.Equal(t, tc.expectedScope, acct1.KeyScope)
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acct2, err := w.ImportAccount(
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name+"2", acct2Pub, root.ParentFingerprint(), &tc.addrType,
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)
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require.NoError(t, err)
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require.Equal(t, tc.expectedScope, acct2.KeyScope)
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err = w.ImportPublicKey(acct3ExternalPub, tc.addrType)
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require.NoError(t, err)
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// If the wallet is watch only, there is no default account and our
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// imported account will be index 0.
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firstAccountIndex := uint32(1)
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if watchOnly {
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firstAccountIndex = 0
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}
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// We should have 3 additional accounts now.
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acctResult, err := w.Accounts(tc.expectedScope)
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require.NoError(t, err)
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require.Len(t, acctResult.Accounts, int(firstAccountIndex*2)+2)
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// Validate the state of the accounts.
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require.Equal(t, firstAccountIndex, acct1.AccountNumber)
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require.Equal(t, name+"1", acct1.AccountName)
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require.Equal(t, true, acct1.IsWatchOnly)
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require.Equal(t, root.ParentFingerprint(), acct1.MasterKeyFingerprint)
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require.NotNil(t, acct1.AccountPubKey)
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require.Equal(t, acct1Pub.String(), acct1.AccountPubKey.String())
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require.Equal(t, uint32(0), acct1.InternalKeyCount)
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require.Equal(t, uint32(0), acct1.ExternalKeyCount)
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require.Equal(t, uint32(0), acct1.ImportedKeyCount)
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require.Equal(t, firstAccountIndex+1, acct2.AccountNumber)
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require.Equal(t, name+"2", acct2.AccountName)
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require.Equal(t, true, acct2.IsWatchOnly)
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require.Equal(t, root.ParentFingerprint(), acct2.MasterKeyFingerprint)
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require.NotNil(t, acct2.AccountPubKey)
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require.Equal(t, acct2Pub.String(), acct2.AccountPubKey.String())
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require.Equal(t, uint32(0), acct2.InternalKeyCount)
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require.Equal(t, uint32(0), acct2.ExternalKeyCount)
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require.Equal(t, uint32(0), acct2.ImportedKeyCount)
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// Test address derivation.
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extAddr, err := w.NewAddress(acct1.AccountNumber, tc.expectedScope)
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require.NoError(t, err)
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require.Equal(t, tc.expectedAddr, extAddr.String())
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intAddr, err := w.NewChangeAddress(acct1.AccountNumber, tc.expectedScope)
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require.NoError(t, err)
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require.Equal(t, tc.expectedChangeAddr, intAddr.String())
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// Make sure the key count was increased.
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acct1, err = w.AccountProperties(tc.expectedScope, acct1.AccountNumber)
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require.NoError(t, err)
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require.Equal(t, uint32(1), acct1.InternalKeyCount)
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require.Equal(t, uint32(1), acct1.ExternalKeyCount)
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require.Equal(t, uint32(0), acct1.ImportedKeyCount)
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// Make sure we can't get private keys for the imported accounts.
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_, err = w.DumpWIFPrivateKey(intAddr)
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require.True(t, waddrmgr.IsError(err, waddrmgr.ErrWatchingOnly))
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// Get the address info for the single key we imported.
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switch tc.addrType {
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case waddrmgr.NestedWitnessPubKey:
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witnessAddr, err := btcutil.NewAddressWitnessPubKeyHash(
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btcutil.Hash160(acct3ExternalPub.SerializeCompressed()),
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&chaincfg.TestNet3Params,
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)
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require.NoError(t, err)
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witnessProg, err := txscript.PayToAddrScript(witnessAddr)
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require.NoError(t, err)
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intAddr, err = btcutil.NewAddressScriptHash(
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witnessProg, &chaincfg.TestNet3Params,
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)
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require.NoError(t, err)
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case waddrmgr.WitnessPubKey:
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intAddr, err = btcutil.NewAddressWitnessPubKeyHash(
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btcutil.Hash160(acct3ExternalPub.SerializeCompressed()),
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&chaincfg.TestNet3Params,
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)
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require.NoError(t, err)
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default:
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t.Fatalf("unhandled address type %v", tc.addrType)
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}
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addrManaged, err := w.AddressInfo(intAddr)
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require.NoError(t, err)
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require.Equal(t, true, addrManaged.Imported())
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}
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