forked from TrueCloudLab/frostfs-contract
a4a9a49a76
This check was useful when there was a single entry point in contract. But right now there is no point in this. Signed-off-by: Alex Vanin <alexey@nspcc.ru>
247 lines
5.4 KiB
Go
247 lines
5.4 KiB
Go
package alphabetcontract
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import (
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"github.com/nspcc-dev/neo-go/pkg/interop"
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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/contract"
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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/native/gas"
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"github.com/nspcc-dev/neo-go/pkg/interop/native/neo"
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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/neofs-contract/common"
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)
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const (
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netmapKey = "netmapScriptHash"
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indexKey = "index"
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totalKey = "threshold"
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nameKey = "name"
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voteKey = "ballots"
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)
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var ctx storage.Context
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func init() {
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ctx = storage.GetContext()
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}
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// OnNEP17Payment is a callback for NEP-17 compatible native GAS and NEO contracts.
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func OnNEP17Payment(from interop.Hash160, amount int, data interface{}) {
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caller := runtime.GetCallingScriptHash()
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if !common.BytesEqual(caller, []byte(gas.Hash)) && !common.BytesEqual(caller, []byte(neo.Hash)) {
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panic("onNEP17Payment: alphabet contract accepts GAS and NEO only")
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}
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}
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func Init(addrNetmap []byte, name string, index, total int) {
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if storage.Get(ctx, netmapKey) != nil {
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panic("contract already deployed")
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}
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if len(addrNetmap) != 20 {
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panic("incorrect length of contract script hash")
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}
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storage.Put(ctx, netmapKey, addrNetmap)
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storage.Put(ctx, nameKey, name)
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storage.Put(ctx, indexKey, index)
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storage.Put(ctx, totalKey, total)
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common.SetSerialized(ctx, voteKey, []common.Ballot{})
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runtime.Log(name + " contract initialized")
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}
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func Gas() int {
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return gas.BalanceOf(runtime.GetExecutingScriptHash())
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}
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func Neo() int {
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return neo.BalanceOf(runtime.GetExecutingScriptHash())
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}
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func irList() []common.IRNode {
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return common.InnerRingListViaStorage(ctx, netmapKey)
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}
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func currentEpoch() int {
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netmapContractAddr := storage.Get(ctx, netmapKey).([]byte)
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return contract.Call(netmapContractAddr, "epoch", contract.ReadOnly).(int)
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}
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func name() string {
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return storage.Get(ctx, nameKey).(string)
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}
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func index() int {
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return storage.Get(ctx, indexKey).(int)
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}
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func total() int {
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return storage.Get(ctx, totalKey).(int)
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}
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func checkPermission(ir []common.IRNode) bool {
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index := index() // read from contract memory
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if len(ir) <= index {
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return false
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}
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node := ir[index]
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return runtime.CheckWitness(node.PublicKey)
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}
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func Emit() bool {
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innerRingKeys := irList()
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if !checkPermission(innerRingKeys) {
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panic("invalid invoker")
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}
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contractHash := runtime.GetExecutingScriptHash()
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_ = neo.Transfer(contractHash, contractHash, neo.BalanceOf(contractHash), nil)
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gasBalance := gas.BalanceOf(contractHash)
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gasPerNode := gasBalance * 7 / 8 / len(innerRingKeys)
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if gasPerNode == 0 {
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runtime.Log("no gas to emit")
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return false
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}
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for i := range innerRingKeys {
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node := innerRingKeys[i]
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address := contract.CreateStandardAccount(node.PublicKey)
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_ = gas.Transfer(contractHash, address, gasPerNode, nil)
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}
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runtime.Log("utility token has been emitted to inner ring nodes")
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return true
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}
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func Vote(epoch int, candidates [][]byte) {
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innerRingKeys := irList()
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threshold := total()/3*2 + 1
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index := index()
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name := name()
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key := common.InnerRingInvoker(innerRingKeys)
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if len(key) == 0 {
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panic("invalid invoker")
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}
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curEpoch := currentEpoch()
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if epoch != curEpoch {
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panic("invalid epoch")
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}
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id := voteID(epoch, candidates)
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n := vote(ctx, curEpoch, id, key)
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if n >= threshold {
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candidate := candidates[index%len(candidates)]
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address := runtime.GetExecutingScriptHash()
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ok := neo.Vote(address, candidate)
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if ok {
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runtime.Log(name + ": successfully voted for validator")
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removeVotes(ctx, id)
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} else {
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runtime.Log(name + ": vote has been failed")
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}
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} else {
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runtime.Log(name + ": saved vote for validator")
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}
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return
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}
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func Name() string {
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return name()
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}
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func vote(ctx storage.Context, epoch int, id, from []byte) int {
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var (
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newCandidates []common.Ballot
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candidates = getBallots(ctx)
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found = -1
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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 common.BytesEqual(cnd.ID, id) {
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voters := cnd.Voters
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for j := range voters {
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if common.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 = common.Ballot{ID: id, Voters: voters, Height: epoch}
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found = len(voters)
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}
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// add only valid ballots with current epochs
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if cnd.Height == epoch {
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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, common.Ballot{
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ID: id,
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Voters: voters,
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Height: epoch})
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found = 1
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}
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common.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 []common.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 !common.BytesEqual(cnd.ID, id) {
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newCandidates = append(newCandidates, cnd)
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}
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}
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common.SetSerialized(ctx, voteKey, newCandidates)
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}
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func getBallots(ctx storage.Context) []common.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)).([]common.Ballot)
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}
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return []common.Ballot{}
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}
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func voteID(epoch interface{}, args [][]byte) []byte {
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var (
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result []byte
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epochBytes = epoch.([]byte)
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)
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result = append(result, epochBytes...)
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for i := range args {
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result = append(result, args[i]...)
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}
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return crypto.SHA256(result)
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}
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