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Merge pull request #752 from nspcc-dev/fix/fixed8
cli: implement Fixed8Flag
This commit is contained in:
commit
d742733e26
7 changed files with 99 additions and 45 deletions
75
cli/flags/fixed8.go
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75
cli/flags/fixed8.go
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@ -0,0 +1,75 @@
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package flags
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import (
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"flag"
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"strings"
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"github.com/nspcc-dev/neo-go/pkg/util"
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"github.com/urfave/cli"
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)
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// Fixed8 is a wrapper for Uint160 with flag.Value methods.
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type Fixed8 struct {
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Value util.Fixed8
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}
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// Fixed8Flag is a flag with type string.
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type Fixed8Flag struct {
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Name string
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Usage string
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Value Fixed8
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}
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var (
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_ flag.Value = (*Fixed8)(nil)
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_ cli.Flag = Fixed8Flag{}
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)
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// String implements fmt.Stringer interface.
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func (a Fixed8) String() string {
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return a.Value.String()
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}
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// Set implements flag.Value interface.
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func (a *Fixed8) Set(s string) error {
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f, err := util.Fixed8FromString(s)
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if err != nil {
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return cli.NewExitError(err, 1)
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}
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a.Value = f
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return nil
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}
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// Fixed8 casts address to util.Fixed8.
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func (a *Fixed8) Fixed8() util.Fixed8 {
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return a.Value
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}
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// String returns a readable representation of this value
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// (for usage defaults).
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func (f Fixed8Flag) String() string {
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var names []string
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eachName(f.Name, func(name string) {
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names = append(names, getNameHelp(name))
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})
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return strings.Join(names, ", ") + "\t" + f.Usage
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}
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// GetName returns the name of the flag.
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func (f Fixed8Flag) GetName() string {
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return f.Name
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}
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// Apply populates the flag given the flag set and environment
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// Ignores errors.
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func (f Fixed8Flag) Apply(set *flag.FlagSet) {
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eachName(f.Name, func(name string) {
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set.Var(&f.Value, name, f.Usage)
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})
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}
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// Fixed8FromContext returns parsed util.Fixed8 value provided flag name.
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func Fixed8FromContext(ctx *cli.Context, name string) util.Fixed8 {
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return ctx.Generic(name).(*Fixed8Flag).Value.Fixed8()
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}
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@ -51,7 +51,7 @@ var (
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Name: "address, a",
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Usage: "address to use as transaction signee (and gas source)",
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}
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gasFlag = cli.Float64Flag{
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gasFlag = flags.Fixed8Flag{
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Name: "gas, g",
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Usage: "gas to add to the transaction",
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}
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@ -411,7 +411,7 @@ func invokeInternal(ctx *cli.Context, withMethod bool, signAndPush bool) error {
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}
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if signAndPush {
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gas = util.Fixed8FromFloat(ctx.Float64("gas"))
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gas = flags.Fixed8FromContext(ctx, "gas")
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acc, err = getAccFromContext(ctx)
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if err != nil {
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return err
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@ -593,7 +593,7 @@ func contractDeploy(ctx *cli.Context) error {
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if len(endpoint) == 0 {
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return cli.NewExitError(errNoEndpoint, 1)
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}
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gas := util.Fixed8FromFloat(ctx.Float64("gas"))
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gas := flags.Fixed8FromContext(ctx, "gas")
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acc, err := getAccFromContext(ctx)
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if err != nil {
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@ -85,7 +85,7 @@ func newNEP5Commands() []cli.Command {
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Name: "amount",
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Usage: "Amount of asset to send",
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},
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cli.StringFlag{
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flags.Fixed8Flag{
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Name: "gas",
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Usage: "Amount of GAS to attach to a tx",
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},
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@ -309,19 +309,9 @@ func transferNEP5(ctx *cli.Context) error {
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emit.AppCall(w.BinWriter, token.Hash, false)
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emit.Opcode(w.BinWriter, opcode.THROWIFNOT)
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var gas util.Fixed8
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if gasString := ctx.String("gas"); gasString != "" {
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gas, err = util.Fixed8FromString(gasString)
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if err != nil {
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return cli.NewExitError(fmt.Errorf("invalid GAS amount: %v", err), 1)
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}
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}
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gas := flags.Fixed8FromContext(ctx, "gas")
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tx := transaction.NewInvocationTX(w.Bytes(), gas)
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tx.Attributes = append(tx.Attributes, transaction.Attribute{
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Usage: transaction.Script,
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Data: from.BytesBE(),
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})
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tx.AddVerificationHash(from)
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if err := request.AddInputsAndUnspentsToTx(tx, fromFlag.String(), core.UtilityTokenID(), gas, c); err != nil {
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return cli.NewExitError(fmt.Errorf("can't add GAS to a tx: %v", err), 1)
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@ -559,37 +559,26 @@ func (dao *dao) StoreAsTransaction(tx *transaction.Transaction, index uint32) er
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// IsDoubleSpend verifies that the input transactions are not double spent.
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func (dao *dao) IsDoubleSpend(tx *transaction.Transaction) bool {
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if len(tx.Inputs) == 0 {
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return false
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}
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for _, inputs := range transaction.GroupInputsByPrevHash(tx.Inputs) {
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prevHash := inputs[0].PrevHash
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unspent, err := dao.GetUnspentCoinState(prevHash)
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if err != nil {
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return false
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}
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for _, input := range inputs {
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if int(input.PrevIndex) >= len(unspent.States) || (unspent.States[input.PrevIndex].State&state.CoinSpent) != 0 {
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return true
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}
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}
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}
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return false
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return dao.checkUsedInputs(tx.Inputs, state.CoinSpent)
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}
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// IsDoubleClaim verifies that given claim inputs are not already claimed by another tx.
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func (dao *dao) IsDoubleClaim(claim *transaction.ClaimTX) bool {
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if len(claim.Claims) == 0 {
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return dao.checkUsedInputs(claim.Claims, state.CoinClaimed)
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}
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func (dao *dao) checkUsedInputs(inputs []transaction.Input, coin state.Coin) bool {
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if len(inputs) == 0 {
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return false
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}
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for _, inputs := range transaction.GroupInputsByPrevHash(claim.Claims) {
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for _, inputs := range transaction.GroupInputsByPrevHash(inputs) {
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prevHash := inputs[0].PrevHash
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unspent, err := dao.GetUnspentCoinState(prevHash)
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if err != nil {
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return true
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}
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for _, input := range inputs {
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if int(input.PrevIndex) >= len(unspent.States) || (unspent.States[input.PrevIndex].State&state.CoinClaimed) != 0 {
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if int(input.PrevIndex) >= len(unspent.States) || (unspent.States[input.PrevIndex].State&coin) != 0 {
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return true
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}
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}
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@ -91,6 +91,14 @@ func (t *Transaction) AddInput(in *Input) {
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t.Inputs = append(t.Inputs, *in)
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}
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// AddVerificationHash adds a script attribute for transaction verification.
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func (t *Transaction) AddVerificationHash(addr util.Uint160) {
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t.Attributes = append(t.Attributes, Attribute{
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Usage: Script,
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Data: addr.BytesBE(),
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})
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}
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// DecodeBinary implements Serializable interface.
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func (t *Transaction) DecodeBinary(br *io.BinReader) {
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t.Type = TXType(br.ReadB())
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@ -515,11 +515,7 @@ func (c *Client) SignAndPushInvocationTx(script []byte, acc *wallet.Account, sys
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if err != nil {
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return txHash, errors.Wrap(err, "failed to get address")
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}
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tx.Attributes = append(tx.Attributes,
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transaction.Attribute{
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Usage: transaction.Script,
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Data: addr.BytesBE(),
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})
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tx.AddVerificationHash(addr)
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}
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if err = acc.SignTx(tx); err != nil {
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@ -38,11 +38,7 @@ func CreateRawContractTransaction(params ContractTxParams) (*transaction.Transac
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if toAddressHash, err = address.StringToUint160(toAddress); err != nil {
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return nil, errs.Wrapf(err, "Failed to take script hash from address: %v", toAddress)
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}
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tx.Attributes = append(tx.Attributes,
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transaction.Attribute{
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Usage: transaction.Script,
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Data: fromAddressHash.BytesBE(),
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})
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tx.AddVerificationHash(fromAddressHash)
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if err = AddInputsAndUnspentsToTx(tx, fromAddress, assetID, amount, balancer); err != nil {
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return nil, errs.Wrap(err, "failed to add inputs and unspents to transaction")
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