2020-10-27 12:14:06 +00:00
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package neofsidcontract
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import (
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"github.com/nspcc-dev/neo-go/pkg/interop/binary"
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"github.com/nspcc-dev/neo-go/pkg/interop/blockchain"
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2020-12-10 14:45:45 +00:00
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"github.com/nspcc-dev/neo-go/pkg/interop/contract"
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2020-10-27 12:14:06 +00:00
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"github.com/nspcc-dev/neo-go/pkg/interop/crypto"
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"github.com/nspcc-dev/neo-go/pkg/interop/runtime"
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"github.com/nspcc-dev/neo-go/pkg/interop/storage"
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"github.com/nspcc-dev/neo-go/pkg/interop/util"
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)
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type (
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irNode struct {
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key []byte
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}
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ballot struct {
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id []byte // id of the voting decision
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n [][]byte // already voted inner ring nodes
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block int // block with the last vote
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}
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UserInfo struct {
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Keys [][]byte
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}
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)
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const (
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version = 1
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blockDiff = 20 // change base on performance evaluation
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voteKey = "ballots"
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netmapContractKey = "netmapScriptHash"
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containerContractKey = "containerScriptHash"
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)
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var (
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ctx storage.Context
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)
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func init() {
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if runtime.GetTrigger() != runtime.Application {
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panic("contract has not been called in application node")
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}
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ctx = storage.GetContext()
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}
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func Init(addrNetmap, addrContainer []byte) {
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if storage.Get(ctx, netmapContractKey) != nil {
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panic("init: contract already deployed")
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}
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if len(addrNetmap) != 20 || len(addrContainer) != 20 {
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panic("init: incorrect length of contract script hash")
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}
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storage.Put(ctx, netmapContractKey, addrNetmap)
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storage.Put(ctx, containerContractKey, addrContainer)
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runtime.Log("neofsid contract initialized")
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}
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func AddKey(owner []byte, keys [][]byte) bool {
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var (
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n int // number of votes for inner ring invoke
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id []byte // ballot key of the inner ring invocation
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)
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if len(owner) != 25 {
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panic("addKey: incorrect owner")
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}
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netmapContractAddr := storage.Get(ctx, netmapContractKey).([]byte)
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2020-12-10 14:45:45 +00:00
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innerRing := contract.Call(netmapContractAddr, "innerRingList").([]irNode)
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2020-10-27 12:14:06 +00:00
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threshold := len(innerRing)/3*2 + 1
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irKey := innerRingInvoker(innerRing)
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if len(irKey) == 0 {
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panic("addKey: invocation from non inner ring node")
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}
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info := getUserInfo(ctx, owner)
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addLoop:
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for i := 0; i < len(keys); i++ {
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pubKey := keys[i]
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if len(pubKey) != 33 {
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panic("addKey: incorrect public key")
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}
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for j := range info.Keys {
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key := info.Keys[j]
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if bytesEqual(key, pubKey) {
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continue addLoop
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}
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}
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info.Keys = append(info.Keys, pubKey)
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}
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fromKnownContract := fromKnownContract(runtime.GetCallingScriptHash())
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if fromKnownContract {
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n = threshold
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runtime.Log("addKey: processed indirect invoke")
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} else {
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id := invokeIDKeys(owner, keys, []byte("add"))
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n = vote(ctx, id, irKey)
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}
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if n < threshold {
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runtime.Log("addKey: processed invoke from inner ring")
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return true
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}
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removeVotes(ctx, id)
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setSerialized(ctx, owner, info)
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runtime.Log("addKey: key bound to the owner")
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return true
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}
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func RemoveKey(owner []byte, keys [][]byte) bool {
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if len(owner) != 25 {
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panic("removeKey: incorrect owner")
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}
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netmapContractAddr := storage.Get(ctx, netmapContractKey).([]byte)
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2020-12-10 14:45:45 +00:00
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innerRing := contract.Call(netmapContractAddr, "innerRingList").([]irNode)
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2020-10-27 12:14:06 +00:00
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threshold := len(innerRing)/3*2 + 1
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irKey := innerRingInvoker(innerRing)
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if len(irKey) == 0 {
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panic("removeKey: invocation from non inner ring node")
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}
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id := invokeIDKeys(owner, keys, []byte("remove"))
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n := vote(ctx, id, irKey)
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if n < threshold {
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runtime.Log("removeKey: processed invoke from inner ring")
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return true
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}
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removeVotes(ctx, id)
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info := getUserInfo(ctx, owner)
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var leftKeys [][]byte
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rmLoop:
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for i := range info.Keys {
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key := info.Keys[i]
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for j := 0; j < len(keys); j++ {
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pubKey := keys[j]
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if len(pubKey) != 33 {
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panic("removeKey: incorrect public key")
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}
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if bytesEqual(key, pubKey) {
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continue rmLoop
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}
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}
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leftKeys = append(leftKeys, key)
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}
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info.Keys = leftKeys
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setSerialized(ctx, owner, info)
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return true
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}
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func Key(owner []byte) [][]byte {
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if len(owner) != 25 {
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panic("key: incorrect owner")
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}
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info := getUserInfo(ctx, owner)
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return info.Keys
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}
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func Version() int {
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return version
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}
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func getUserInfo(ctx storage.Context, key interface{}) UserInfo {
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data := storage.Get(ctx, key)
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if data != nil {
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return binary.Deserialize(data.([]byte)).(UserInfo)
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}
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return UserInfo{Keys: [][]byte{}}
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}
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func getBallots(ctx storage.Context) []ballot {
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data := storage.Get(ctx, voteKey)
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if data != nil {
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return binary.Deserialize(data.([]byte)).([]ballot)
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}
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return []ballot{}
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}
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func setSerialized(ctx storage.Context, key interface{}, value interface{}) {
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data := binary.Serialize(value)
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storage.Put(ctx, key, data)
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}
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func innerRingInvoker(ir []irNode) []byte {
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for i := 0; i < len(ir); i++ {
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node := ir[i]
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if runtime.CheckWitness(node.key) {
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return node.key
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}
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}
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return nil
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}
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func vote(ctx storage.Context, id, from []byte) int {
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var (
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newCandidates []ballot
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candidates = getBallots(ctx)
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found = -1
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blockHeight = blockchain.GetHeight()
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)
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for i := 0; i < len(candidates); i++ {
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cnd := candidates[i]
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if bytesEqual(cnd.id, id) {
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voters := cnd.n
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for j := range voters {
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if bytesEqual(voters[j], from) {
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return len(voters)
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}
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}
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voters = append(voters, from)
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cnd = ballot{id: id, n: voters, block: blockHeight}
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found = len(voters)
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}
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// do not add old ballots, they are invalid
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if blockHeight-cnd.block <= blockDiff {
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newCandidates = append(newCandidates, cnd)
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}
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}
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if found < 0 {
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voters := [][]byte{from}
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newCandidates = append(newCandidates, ballot{
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id: id,
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n: voters,
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block: blockHeight})
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found = 1
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}
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setSerialized(ctx, voteKey, newCandidates)
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return found
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}
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func removeVotes(ctx storage.Context, id []byte) {
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var (
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newCandidates []ballot
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candidates = getBallots(ctx)
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)
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for i := 0; i < len(candidates); i++ {
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cnd := candidates[i]
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if !bytesEqual(cnd.id, id) {
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newCandidates = append(newCandidates, cnd)
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}
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}
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setSerialized(ctx, voteKey, newCandidates)
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}
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func invokeID(args []interface{}, prefix []byte) []byte {
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for i := range args {
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arg := args[i].([]byte)
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prefix = append(prefix, arg...)
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}
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return crypto.SHA256(prefix)
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}
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func invokeIDKeys(owner []byte, keys [][]byte, prefix []byte) []byte {
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prefix = append(prefix, owner...)
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for i := range keys {
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prefix = append(prefix, keys[i]...)
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}
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return crypto.SHA256(prefix)
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}
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// neo-go#1176
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func bytesEqual(a []byte, b []byte) bool {
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return util.Equals(string(a), string(b))
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}
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func fromKnownContract(caller []byte) bool {
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containerContractAddr := storage.Get(ctx, containerContractKey).([]byte)
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if bytesEqual(caller, containerContractAddr) {
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return true
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}
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return false
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}
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