mirror of
https://github.com/nspcc-dev/neo-go.git
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6b21ad9922
Everywhere including examples, external interop APIs, bindings generators code and in other valuable places. A couple of `interface{}` usages are intentionally left in the CHANGELOG.md, documentation and tests.
352 lines
8.4 KiB
Go
352 lines
8.4 KiB
Go
package manifest
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import (
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"crypto/elliptic"
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"encoding/hex"
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"encoding/json"
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"errors"
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"fmt"
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"github.com/nspcc-dev/neo-go/pkg/crypto/keys"
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"github.com/nspcc-dev/neo-go/pkg/util"
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"github.com/nspcc-dev/neo-go/pkg/vm/stackitem"
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)
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// PermissionType represents permission type.
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type PermissionType uint8
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const (
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// PermissionWildcard allows everything.
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PermissionWildcard PermissionType = 0
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// PermissionHash restricts called contracts based on hash.
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PermissionHash PermissionType = 1
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// PermissionGroup restricts called contracts based on public key.
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PermissionGroup PermissionType = 2
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)
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// PermissionDesc is a permission descriptor.
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type PermissionDesc struct {
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Type PermissionType
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Value any
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}
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// Permission describes which contracts may be invoked and which methods are called.
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type Permission struct {
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Contract PermissionDesc `json:"contract"`
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Methods WildStrings `json:"methods"`
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}
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// Permissions is just an array of Permission.
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type Permissions []Permission
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type permissionAux struct {
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Contract PermissionDesc `json:"contract"`
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Methods WildStrings `json:"methods"`
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}
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// NewPermission returns a new permission of the given type.
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func NewPermission(typ PermissionType, args ...any) *Permission {
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return &Permission{
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Contract: *newPermissionDesc(typ, args...),
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}
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}
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func newPermissionDesc(typ PermissionType, args ...any) *PermissionDesc {
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desc := &PermissionDesc{Type: typ}
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switch typ {
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case PermissionWildcard:
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if len(args) != 0 {
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panic("wildcard permission has no arguments")
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}
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case PermissionHash:
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if len(args) == 0 {
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panic("hash permission should have an argument")
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} else if u, ok := args[0].(util.Uint160); !ok {
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panic("hash permission should have util.Uint160 argument")
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} else {
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desc.Value = u
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}
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case PermissionGroup:
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if len(args) == 0 {
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panic("group permission should have an argument")
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} else if pub, ok := args[0].(*keys.PublicKey); !ok {
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panic("group permission should have a public key argument")
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} else {
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desc.Value = pub
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}
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}
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return desc
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}
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// Hash returns hash for hash-permission.
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func (d *PermissionDesc) Hash() util.Uint160 {
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return d.Value.(util.Uint160)
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}
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// Group returns group's public key for group-permission.
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func (d *PermissionDesc) Group() *keys.PublicKey {
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return d.Value.(*keys.PublicKey)
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}
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// Less returns true if this value is less than the given PermissionDesc value.
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func (d *PermissionDesc) Less(d1 PermissionDesc) bool {
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if d.Type < d1.Type {
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return true
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}
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if d.Type != d1.Type {
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return false
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}
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switch d.Type {
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case PermissionHash:
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return d.Hash().Less(d1.Hash())
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case PermissionGroup:
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return d.Group().Cmp(d1.Group()) < 0
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}
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return false
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}
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// Equals returns true if both PermissionDesc values are the same.
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func (d *PermissionDesc) Equals(v PermissionDesc) bool {
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if d.Type != v.Type {
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return false
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}
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switch d.Type {
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case PermissionHash:
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return d.Hash().Equals(v.Hash())
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case PermissionGroup:
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return d.Group().Cmp(v.Group()) == 0
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}
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return false
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}
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// IsValid checks if Permission is correct.
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func (p *Permission) IsValid() error {
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for i := range p.Methods.Value {
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if p.Methods.Value[i] == "" {
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return errors.New("empty method name")
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}
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}
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if len(p.Methods.Value) < 2 {
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return nil
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}
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names := make([]string, len(p.Methods.Value))
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copy(names, p.Methods.Value)
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if stringsHaveDups(names) {
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return errors.New("duplicate method names")
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}
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return nil
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}
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// AreValid checks each Permission and ensures there are no duplicates.
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func (ps Permissions) AreValid() error {
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for i := range ps {
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err := ps[i].IsValid()
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if err != nil {
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return err
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}
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}
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if len(ps) < 2 {
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return nil
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}
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contracts := make([]PermissionDesc, 0, len(ps))
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for i := range ps {
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contracts = append(contracts, ps[i].Contract)
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}
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if permissionDescsHaveDups(contracts) {
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return errors.New("contracts have duplicates")
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}
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return nil
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}
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// IsAllowed checks if the method is allowed to be executed.
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func (p *Permission) IsAllowed(hash util.Uint160, m *Manifest, method string) bool {
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switch p.Contract.Type {
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case PermissionWildcard:
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case PermissionHash:
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if !p.Contract.Hash().Equals(hash) {
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return false
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}
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case PermissionGroup:
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has := false
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g := p.Contract.Group()
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for i := range m.Groups {
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if g.Equal(m.Groups[i].PublicKey) {
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has = true
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break
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}
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}
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if !has {
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return false
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}
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default:
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panic(fmt.Sprintf("unexpected permission: %d", p.Contract.Type))
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}
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if p.Methods.IsWildcard() {
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return true
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}
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return p.Methods.Contains(method)
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}
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// UnmarshalJSON implements the json.Unmarshaler interface.
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func (p *Permission) UnmarshalJSON(data []byte) error {
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aux := new(permissionAux)
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if err := json.Unmarshal(data, aux); err != nil {
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return err
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}
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p.Contract = aux.Contract
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p.Methods = aux.Methods
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return nil
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}
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// MarshalJSON implements the json.Marshaler interface.
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func (d *PermissionDesc) MarshalJSON() ([]byte, error) {
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switch d.Type {
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case PermissionHash:
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return json.Marshal("0x" + d.Hash().StringLE())
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case PermissionGroup:
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return json.Marshal(hex.EncodeToString(d.Group().Bytes()))
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default:
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return []byte(`"*"`), nil
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}
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}
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// UnmarshalJSON implements the json.Unmarshaler interface.
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func (d *PermissionDesc) UnmarshalJSON(data []byte) error {
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var s string
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if err := json.Unmarshal(data, &s); err != nil {
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return err
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}
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const uint160HexSize = 2 * util.Uint160Size
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switch len(s) {
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case 2 + uint160HexSize:
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// allow to unmarshal both hex and 0xhex forms
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if s[0] != '0' || s[1] != 'x' {
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return errors.New("invalid uint160")
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}
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s = s[2:]
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fallthrough
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case uint160HexSize:
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u, err := util.Uint160DecodeStringLE(s)
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if err != nil {
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return err
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}
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d.Type = PermissionHash
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d.Value = u
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return nil
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case 66:
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pub, err := keys.NewPublicKeyFromString(s)
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if err != nil {
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return err
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}
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d.Type = PermissionGroup
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d.Value = pub
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return nil
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case 1:
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if s == "*" {
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d.Type = PermissionWildcard
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return nil
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}
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}
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return errors.New("unknown permission")
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}
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// ToStackItem converts PermissionDesc to stackitem.Item.
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func (d *PermissionDesc) ToStackItem() stackitem.Item {
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switch d.Type {
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case PermissionWildcard:
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return stackitem.Null{}
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case PermissionHash:
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return stackitem.NewByteArray(d.Hash().BytesBE())
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case PermissionGroup:
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return stackitem.NewByteArray(d.Group().Bytes())
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default:
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panic("unsupported PermissionDesc type")
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}
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}
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// FromStackItem converts stackitem.Item to PermissionDesc.
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func (d *PermissionDesc) FromStackItem(item stackitem.Item) error {
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if _, ok := item.(stackitem.Null); ok {
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d.Type = PermissionWildcard
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return nil
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}
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if item.Type() != stackitem.ByteArrayT {
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return fmt.Errorf("unsupported permission descriptor type: %s", item.Type())
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}
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byteArr, err := item.TryBytes()
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if err != nil {
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return err
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}
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switch len(byteArr) {
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case util.Uint160Size:
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hash, _ := util.Uint160DecodeBytesBE(byteArr)
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d.Type = PermissionHash
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d.Value = hash
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case 33:
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pKey, err := keys.NewPublicKeyFromBytes(byteArr, elliptic.P256())
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if err != nil {
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return err
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}
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d.Type = PermissionGroup
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d.Value = pKey
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default:
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return errors.New("invalid ByteArray length")
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}
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return nil
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}
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// ToStackItem converts Permission to stackitem.Item.
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func (p *Permission) ToStackItem() stackitem.Item {
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var methods stackitem.Item
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contract := p.Contract.ToStackItem()
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if p.Methods.IsWildcard() {
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methods = stackitem.Null{}
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} else {
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m := make([]stackitem.Item, len(p.Methods.Value))
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for i := range p.Methods.Value {
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m[i] = stackitem.Make(p.Methods.Value[i])
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}
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methods = stackitem.Make(m)
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}
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return stackitem.NewStruct([]stackitem.Item{
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contract,
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methods,
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})
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}
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// FromStackItem converts stackitem.Item to Permission.
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func (p *Permission) FromStackItem(item stackitem.Item) error {
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var err error
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if item.Type() != stackitem.StructT {
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return errors.New("invalid Permission stackitem type")
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}
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str := item.Value().([]stackitem.Item)
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if len(str) != 2 {
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return errors.New("invalid Permission stackitem length")
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}
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desc := new(PermissionDesc)
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err = desc.FromStackItem(str[0])
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if err != nil {
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return fmt.Errorf("invalid Contract stackitem: %w", err)
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}
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p.Contract = *desc
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if _, ok := str[1].(stackitem.Null); ok {
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p.Methods = WildStrings{Value: nil}
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} else {
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if str[1].Type() != stackitem.ArrayT {
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return errors.New("invalid Methods stackitem type")
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}
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methods := str[1].Value().([]stackitem.Item)
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p.Methods = WildStrings{
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Value: make([]string, len(methods)),
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}
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for i := range methods {
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p.Methods.Value[i], err = stackitem.ToString(methods[i])
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if err != nil {
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return err
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}
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}
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}
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return nil
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}
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