forked from TrueCloudLab/frostfs-contract
201 lines
5.6 KiB
Go
201 lines
5.6 KiB
Go
package alphabet
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import (
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"git.frostfs.info/TrueCloudLab/frostfs-contract/common"
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"github.com/nspcc-dev/neo-go/pkg/interop"
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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/native/gas"
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"github.com/nspcc-dev/neo-go/pkg/interop/native/management"
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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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)
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const (
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netmapKey = "netmapScriptHash"
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proxyKey = "proxyScriptHash"
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indexKey = "index"
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totalKey = "threshold"
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nameKey = "name"
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)
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// OnNEP17Payment is a callback for NEP-17 compatible native GAS and NEO
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// contracts.
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func OnNEP17Payment(from interop.Hash160, amount int, data any) {
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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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common.AbortWithMessage("alphabet contract accepts GAS and NEO only")
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}
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}
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func _deploy(data any, isUpdate bool) {
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ctx := storage.GetContext()
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if isUpdate {
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args := data.([]any)
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common.CheckVersion(args[len(args)-1].(int))
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return
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}
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args := data.(struct {
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addrNetmap interop.Hash160
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addrProxy interop.Hash160
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name string
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index int
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total int
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})
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if len(args.addrNetmap) != interop.Hash160Len || len(args.addrProxy) != interop.Hash160Len {
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panic("incorrect length of contract script hash")
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}
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storage.Put(ctx, netmapKey, args.addrNetmap)
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storage.Put(ctx, proxyKey, args.addrProxy)
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storage.Put(ctx, nameKey, args.name)
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storage.Put(ctx, indexKey, args.index)
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storage.Put(ctx, totalKey, args.total)
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runtime.Log(args.name + " contract initialized")
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}
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// Update method updates contract source code and manifest. It can be invoked
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// only by committee.
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func Update(script []byte, manifest []byte, data any) {
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if !common.HasUpdateAccess() {
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panic("only committee can update contract")
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}
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management.UpdateWithData(script, manifest, common.AppendVersion(data))
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runtime.Log("alphabet contract updated")
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}
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// GAS returns the amount of the sidechain GAS stored in the contract account.
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func Gas() int {
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return gas.BalanceOf(runtime.GetExecutingScriptHash())
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}
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// NEO returns the amount of sidechain NEO stored in the contract account.
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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 currentEpoch(ctx storage.Context) int {
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netmapContractAddr := storage.Get(ctx, netmapKey).(interop.Hash160)
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return contract.Call(netmapContractAddr, "epoch", contract.ReadOnly).(int)
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}
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func name(ctx storage.Context) string {
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return storage.Get(ctx, nameKey).(string)
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}
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func index(ctx storage.Context) int {
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return storage.Get(ctx, indexKey).(int)
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}
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func checkPermission(ir []interop.PublicKey) bool {
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ctx := storage.GetReadOnlyContext()
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index := index(ctx) // 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)
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}
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// Emit method produces sidechain GAS and distributes it among Inner Ring nodes
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// and proxy contract. It can be invoked only by an Alphabet node of the Inner Ring.
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//
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// To produce GAS, an alphabet contract transfers all available NEO from the contract
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// account to itself. 50% of the GAS in the contract account
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// are transferred to proxy contract. 43.75% of the GAS are equally distributed
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// among all Inner Ring nodes. Remaining 6.25% of the GAS stay in the contract.
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func Emit() {
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ctx := storage.GetReadOnlyContext()
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alphabet := common.AlphabetNodes()
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if !checkPermission(alphabet) {
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panic("invalid invoker")
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}
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contractHash := runtime.GetExecutingScriptHash()
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if !neo.Transfer(contractHash, contractHash, neo.BalanceOf(contractHash), nil) {
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panic("failed to transfer funds, aborting")
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}
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gasBalance := gas.BalanceOf(contractHash)
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proxyAddr := storage.Get(ctx, proxyKey).(interop.Hash160)
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proxyGas := gasBalance / 2
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if proxyGas == 0 {
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panic("no gas to emit")
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}
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if !gas.Transfer(contractHash, proxyAddr, proxyGas, nil) {
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runtime.Log("could not transfer GAS to proxy contract")
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}
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gasBalance -= proxyGas
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runtime.Log("utility token has been emitted to proxy contract")
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innerRing := common.InnerRingNodes()
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gasPerNode := gasBalance * 7 / 8 / len(innerRing)
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if gasPerNode != 0 {
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for _, node := range innerRing {
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address := contract.CreateStandardAccount(node)
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if !gas.Transfer(contractHash, address, gasPerNode, nil) {
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runtime.Log("could not transfer GAS to one of IR node")
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}
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}
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runtime.Log("utility token has been emitted to inner ring nodes")
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}
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}
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// Vote method votes for the sidechain committee. It requires multisignature from
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// Alphabet nodes of the Inner Ring.
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//
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// This method is used when governance changes the list of Alphabet nodes of the
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// Inner Ring. Alphabet nodes share keys with sidechain validators, therefore
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// it is required to change them as well. To do that, NEO holders (which are
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// alphabet contracts) should vote for a new committee.
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func Vote(epoch int, candidates []interop.PublicKey) {
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ctx := storage.GetContext()
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index := index(ctx)
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name := name(ctx)
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common.CheckAlphabetWitness()
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curEpoch := currentEpoch(ctx)
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if epoch != curEpoch {
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panic("invalid epoch")
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}
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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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} else {
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runtime.Log(name + ": vote has been failed")
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}
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}
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// Name returns the Glagolitic name of the contract.
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func Name() string {
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ctx := storage.GetReadOnlyContext()
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return name(ctx)
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}
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// Version returns the version of the contract.
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func Version() int {
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return common.Version
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}
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