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https://github.com/nspcc-dev/neo-go.git
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b2bd8e4a0a
Close #3451 Signed-off-by: Ekaterina Pavlova <ekt@morphbits.io>
141 lines
5.7 KiB
Text
141 lines
5.7 KiB
Text
// Code generated by neo-go contract generate-rpcwrapper --manifest <file.json> --out <file.go> [--hash <hash>] [--config <config>]; DO NOT EDIT.
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// Package nft contains RPC wrappers for NeoFS Object NFT contract.
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package nft
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import (
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"github.com/nspcc-dev/neo-go/pkg/core/transaction"
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"github.com/nspcc-dev/neo-go/pkg/rpcclient/nep11"
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"github.com/nspcc-dev/neo-go/pkg/rpcclient/nep24"
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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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)
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// Invoker is used by ContractReader to call various safe methods.
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type Invoker interface {
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nep11.Invoker
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}
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// Actor is used by Contract to call state-changing methods.
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type Actor interface {
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Invoker
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nep11.Actor
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MakeCall(contract util.Uint160, method string, params ...any) (*transaction.Transaction, error)
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MakeRun(script []byte) (*transaction.Transaction, error)
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MakeUnsignedCall(contract util.Uint160, method string, attrs []transaction.Attribute, params ...any) (*transaction.Transaction, error)
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MakeUnsignedRun(script []byte, attrs []transaction.Attribute) (*transaction.Transaction, error)
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SendCall(contract util.Uint160, method string, params ...any) (util.Uint256, uint32, error)
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SendRun(script []byte) (util.Uint256, uint32, error)
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}
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// ContractReader implements safe contract methods.
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type ContractReader struct {
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nep11.DivisibleReader
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nep24.RoyaltyReader
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invoker Invoker
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hash util.Uint160
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}
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// Contract implements all contract methods.
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type Contract struct {
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ContractReader
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nep11.DivisibleWriter
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actor Actor
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hash util.Uint160
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}
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// NewReader creates an instance of ContractReader using provided contract hash and the given Invoker.
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func NewReader(invoker Invoker, hash util.Uint160) *ContractReader {
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return &ContractReader{*nep11.NewDivisibleReader(invoker, hash), *nep24.NewRoyaltyReader(invoker, hash), invoker, hash}
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}
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// New creates an instance of Contract using provided contract hash and the given Actor.
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func New(actor Actor, hash util.Uint160) *Contract {
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var nep11dt = nep11.NewDivisible(actor, hash)
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var nep24t = nep24.NewRoyaltyReader(actor, hash)
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return &Contract{ContractReader{nep11dt.DivisibleReader, *nep24t, actor, hash}, nep11dt.DivisibleWriter, actor, hash}
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}
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// Destroy creates a transaction invoking `destroy` method of the contract.
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// This transaction is signed and immediately sent to the network.
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// The values returned are its hash, ValidUntilBlock value and error if any.
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func (c *Contract) Destroy() (util.Uint256, uint32, error) {
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return c.actor.SendCall(c.hash, "destroy")
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}
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// DestroyTransaction creates a transaction invoking `destroy` method of the contract.
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// This transaction is signed, but not sent to the network, instead it's
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// returned to the caller.
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func (c *Contract) DestroyTransaction() (*transaction.Transaction, error) {
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return c.actor.MakeCall(c.hash, "destroy")
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}
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// DestroyUnsigned creates a transaction invoking `destroy` method of the contract.
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// This transaction is not signed, it's simply returned to the caller.
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// Any fields of it that do not affect fees can be changed (ValidUntilBlock,
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// Nonce), fee values (NetworkFee, SystemFee) can be increased as well.
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func (c *Contract) DestroyUnsigned() (*transaction.Transaction, error) {
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return c.actor.MakeUnsignedCall(c.hash, "destroy", nil)
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}
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// Update creates a transaction invoking `update` method of the contract.
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// This transaction is signed and immediately sent to the network.
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// The values returned are its hash, ValidUntilBlock value and error if any.
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func (c *Contract) Update(nef []byte, manifest []byte) (util.Uint256, uint32, error) {
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return c.actor.SendCall(c.hash, "update", nef, manifest)
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}
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// UpdateTransaction creates a transaction invoking `update` method of the contract.
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// This transaction is signed, but not sent to the network, instead it's
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// returned to the caller.
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func (c *Contract) UpdateTransaction(nef []byte, manifest []byte) (*transaction.Transaction, error) {
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return c.actor.MakeCall(c.hash, "update", nef, manifest)
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}
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// UpdateUnsigned creates a transaction invoking `update` method of the contract.
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// This transaction is not signed, it's simply returned to the caller.
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// Any fields of it that do not affect fees can be changed (ValidUntilBlock,
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// Nonce), fee values (NetworkFee, SystemFee) can be increased as well.
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func (c *Contract) UpdateUnsigned(nef []byte, manifest []byte) (*transaction.Transaction, error) {
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return c.actor.MakeUnsignedCall(c.hash, "update", nil, nef, manifest)
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}
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func (c *Contract) scriptForVerify() ([]byte, error) {
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return smartcontract.CreateCallWithAssertScript(c.hash, "verify")
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}
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// Verify creates a transaction invoking `verify` method of the contract.
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// This transaction is signed and immediately sent to the network.
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// The values returned are its hash, ValidUntilBlock value and error if any.
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func (c *Contract) Verify() (util.Uint256, uint32, error) {
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script, err := c.scriptForVerify()
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if err != nil {
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return util.Uint256{}, 0, err
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}
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return c.actor.SendRun(script)
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}
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// VerifyTransaction creates a transaction invoking `verify` method of the contract.
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// This transaction is signed, but not sent to the network, instead it's
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// returned to the caller.
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func (c *Contract) VerifyTransaction() (*transaction.Transaction, error) {
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script, err := c.scriptForVerify()
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if err != nil {
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return nil, err
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}
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return c.actor.MakeRun(script)
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}
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// VerifyUnsigned creates a transaction invoking `verify` method of the contract.
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// This transaction is not signed, it's simply returned to the caller.
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// Any fields of it that do not affect fees can be changed (ValidUntilBlock,
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// Nonce), fee values (NetworkFee, SystemFee) can be increased as well.
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func (c *Contract) VerifyUnsigned() (*transaction.Transaction, error) {
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script, err := c.scriptForVerify()
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if err != nil {
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return nil, err
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}
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return c.actor.MakeUnsignedRun(script, nil)
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}
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