400 lines
12 KiB
Go
400 lines
12 KiB
Go
package frostfs
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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/iterator"
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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/ledger"
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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/roles"
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"github.com/nspcc-dev/neo-go/pkg/interop/native/std"
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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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type (
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record struct {
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key []byte
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val []byte
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}
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)
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const (
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// CandidateFeeConfigKey contains fee for a candidate registration.
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CandidateFeeConfigKey = "InnerRingCandidateFee"
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withdrawFeeConfigKey = "WithdrawFee"
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alphabetKey = "alphabet"
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candidatesKey = "candidates"
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notaryDisabledKey = "notary"
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processingContractKey = "processingScriptHash"
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maxBalanceAmount = 9000 // Max integer of Fixed12 in JSON bound (2**53-1)
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maxBalanceAmountGAS = int64(maxBalanceAmount) * 1_0000_0000
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// hardcoded value to ignore deposit notification in onReceive
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ignoreDepositNotification = "\x57\x0b"
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)
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var (
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configPrefix = []byte("config")
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)
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// _deploy sets up initial alphabet node keys.
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func _deploy(data interface{}, isUpdate bool) {
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ctx := storage.GetContext()
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common.RmAndCheckNotaryDisabledKey(data, notaryDisabledKey)
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if isUpdate {
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args := data.([]interface{})
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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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//TODO(@acid-ant): #9 remove notaryDisabled in future version
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notaryDisabled bool
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addrProc interop.Hash160
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keys []interop.PublicKey
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config [][]byte
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})
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if len(args.keys) == 0 {
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panic("at least one alphabet key must be provided")
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}
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if len(args.addrProc) != interop.Hash160Len {
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panic("incorrect length of contract script hash")
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}
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for i := 0; i < len(args.keys); i++ {
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pub := args.keys[i]
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if len(pub) != interop.PublicKeyCompressedLen {
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panic("incorrect public key length")
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}
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}
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// initialize all storage slices
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common.SetSerialized(ctx, alphabetKey, args.keys)
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storage.Put(ctx, processingContractKey, args.addrProc)
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ln := len(args.config)
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if ln%2 != 0 {
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panic("bad configuration")
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}
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for i := 0; i < ln/2; i++ {
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key := args.config[i*2]
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val := args.config[i*2+1]
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setConfig(ctx, key, val)
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}
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runtime.Log("frostfs: 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 sidechain committee.
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func Update(script []byte, manifest []byte, data interface{}) {
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blockHeight := ledger.CurrentIndex()
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alphabetKeys := roles.GetDesignatedByRole(roles.NeoFSAlphabet, uint32(blockHeight+1))
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alphabetCommittee := common.Multiaddress(alphabetKeys, true)
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if !runtime.CheckWitness(alphabetCommittee) {
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panic(common.ErrAlphabetWitnessFailed)
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}
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management.UpdateWithData(script, manifest, common.AppendVersion(data))
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runtime.Log("frostfs contract updated")
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}
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// AlphabetAddress returns 2\3n+1 multisignature address of alphabet nodes.
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// It is used in sidechain notary disabled environment.
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func AlphabetAddress() interop.Hash160 {
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ctx := storage.GetReadOnlyContext()
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return multiaddress(getAlphabetNodes(ctx))
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}
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// InnerRingCandidates returns an array of structures that contain an Inner Ring
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// candidate node key.
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func InnerRingCandidates() []common.IRNode {
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ctx := storage.GetReadOnlyContext()
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nodes := []common.IRNode{}
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it := storage.Find(ctx, candidatesKey, storage.KeysOnly|storage.RemovePrefix)
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for iterator.Next(it) {
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pub := iterator.Value(it).([]byte)
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nodes = append(nodes, common.IRNode{PublicKey: pub})
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}
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return nodes
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}
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// InnerRingCandidateRemove removes a key from a list of Inner Ring candidates.
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// It can be invoked by Alphabet nodes or the candidate itself.
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//
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// This method does not return fee back to the candidate.
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func InnerRingCandidateRemove(key interop.PublicKey) {
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ctx := storage.GetContext()
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keyOwner := runtime.CheckWitness(key)
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if !keyOwner {
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multiaddr := AlphabetAddress()
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if !runtime.CheckWitness(multiaddr) {
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panic("this method must be invoked by candidate or alphabet")
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}
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}
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prefix := []byte(candidatesKey)
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stKey := append(prefix, key...)
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if storage.Get(ctx, stKey) != nil {
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storage.Delete(ctx, stKey)
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runtime.Log("candidate has been removed")
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}
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}
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// InnerRingCandidateAdd adds a key to a list of Inner Ring candidates.
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// It can be invoked only by the candidate itself.
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//
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// This method transfers fee from a candidate to the contract account.
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// Fee value is specified in FrostFS network config with the key InnerRingCandidateFee.
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func InnerRingCandidateAdd(key interop.PublicKey) {
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ctx := storage.GetContext()
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common.CheckWitness(key)
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stKey := append([]byte(candidatesKey), key...)
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if storage.Get(ctx, stKey) != nil {
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panic("candidate already in the list")
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}
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from := contract.CreateStandardAccount(key)
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to := runtime.GetExecutingScriptHash()
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fee := getConfig(ctx, CandidateFeeConfigKey).(int)
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transferred := gas.Transfer(from, to, fee, []byte(ignoreDepositNotification))
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if !transferred {
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panic("failed to transfer funds, aborting")
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}
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storage.Put(ctx, stKey, []byte{1})
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runtime.Log("candidate has been added")
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}
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// OnNEP17Payment is a callback for NEP-17 compatible native GAS contract.
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// It takes no more than 9000.0 GAS. Native GAS has precision 8, and
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// FrostFS balance contract has precision 12. Values bigger than 9000.0 can
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// break JSON limits for integers when precision is converted.
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func OnNEP17Payment(from interop.Hash160, amount int, data interface{}) {
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rcv := data.(interop.Hash160)
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if common.BytesEqual(rcv, []byte(ignoreDepositNotification)) {
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return
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}
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if amount <= 0 {
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common.AbortWithMessage("amount must be positive")
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} else if maxBalanceAmountGAS < int64(amount) {
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common.AbortWithMessage("out of max amount limit")
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}
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caller := runtime.GetCallingScriptHash()
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if !common.BytesEqual(caller, interop.Hash160(gas.Hash)) {
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common.AbortWithMessage("only GAS can be accepted for deposit")
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}
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switch len(rcv) {
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case 20:
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case 0:
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rcv = from
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default:
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common.AbortWithMessage("invalid data argument, expected Hash160")
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}
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runtime.Log("funds have been transferred")
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tx := runtime.GetScriptContainer()
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runtime.Notify("Deposit", from, amount, rcv, tx.Hash)
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}
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// Withdraw initializes gas asset withdraw from FrostFS. It can be invoked only
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// by the specified user.
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//
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// This method produces Withdraw notification to lock assets in the sidechain and
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// transfers withdraw fee from a user account to each Alphabet node. If notary
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// is enabled in the mainchain, fee is transferred to Processing contract.
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// Fee value is specified in FrostFS network config with the key WithdrawFee.
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func Withdraw(user interop.Hash160, amount int) {
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if !runtime.CheckWitness(user) {
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panic("you should be the owner of the wallet")
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}
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if amount < 0 {
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panic("non positive amount number")
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}
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if amount > maxBalanceAmount {
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panic("out of max amount limit")
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}
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ctx := storage.GetContext()
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// transfer fee to proxy contract to pay cheque invocation
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fee := getConfig(ctx, withdrawFeeConfigKey).(int)
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processingAddr := storage.Get(ctx, processingContractKey).(interop.Hash160)
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transferred := gas.Transfer(user, processingAddr, fee, []byte{})
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if !transferred {
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panic("failed to transfer withdraw fee, aborting")
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}
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// notify alphabet nodes
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amount = amount * 100000000
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tx := runtime.GetScriptContainer()
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runtime.Notify("Withdraw", user, amount, tx.Hash)
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}
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// Cheque transfers GAS back to the user from the contract account, if assets were
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// successfully locked in FrostFS balance contract. It can be invoked only by
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// Alphabet nodes.
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//
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// This method produces Cheque notification to burn assets in sidechain.
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func Cheque(id []byte, user interop.Hash160, amount int, lockAcc []byte) {
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common.CheckAlphabetWitness()
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from := runtime.GetExecutingScriptHash()
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transferred := gas.Transfer(from, user, amount, nil)
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if !transferred {
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panic("failed to transfer funds, aborting")
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}
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runtime.Log("funds have been transferred")
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runtime.Notify("Cheque", id, user, amount, lockAcc)
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}
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// Bind method produces notification to bind the specified public keys in FrostFSID
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// contract in the sidechain. It can be invoked only by specified user.
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//
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// This method produces Bind notification. This method panics if keys are not
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// 33 byte long. User argument must be a valid 20 byte script hash.
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func Bind(user []byte, keys []interop.PublicKey) {
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if !runtime.CheckWitness(user) {
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panic("you should be the owner of the wallet")
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}
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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) != interop.PublicKeyCompressedLen {
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panic("incorrect public key size")
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}
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}
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runtime.Notify("Bind", user, keys)
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}
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// Unbind method produces notification to unbind the specified public keys in FrostFSID
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// contract in the sidechain. It can be invoked only by the specified user.
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//
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// This method produces Unbind notification. This method panics if keys are not
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// 33 byte long. User argument must be a valid 20 byte script hash.
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func Unbind(user []byte, keys []interop.PublicKey) {
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if !runtime.CheckWitness(user) {
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panic("you should be the owner of the wallet")
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}
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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) != interop.PublicKeyCompressedLen {
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panic("incorrect public key size")
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}
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}
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runtime.Notify("Unbind", user, keys)
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}
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// Config returns configuration value of FrostFS configuration. If the key does
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// not exists, returns nil.
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func Config(key []byte) interface{} {
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ctx := storage.GetReadOnlyContext()
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return getConfig(ctx, key)
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}
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// SetConfig key-value pair as a FrostFS runtime configuration value. It can be invoked
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// only by Alphabet nodes.
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func SetConfig(id, key, val []byte) {
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ctx := storage.GetContext()
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common.CheckAlphabetWitness()
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setConfig(ctx, key, val)
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runtime.Notify("SetConfig", id, key, val)
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runtime.Log("configuration has been updated")
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}
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// ListConfig returns an array of structures that contain a key and a value of all
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// FrostFS configuration records. Key and value are both byte arrays.
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func ListConfig() []record {
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ctx := storage.GetReadOnlyContext()
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var config []record
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it := storage.Find(ctx, configPrefix, storage.None)
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for iterator.Next(it) {
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pair := iterator.Value(it).(struct {
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key []byte
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val []byte
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})
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r := record{key: pair.key[len(configPrefix):], val: pair.val}
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config = append(config, r)
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}
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return config
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}
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// Version returns 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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// getAlphabetNodes returns a deserialized slice of nodes from storage.
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func getAlphabetNodes(ctx storage.Context) []interop.PublicKey {
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data := storage.Get(ctx, alphabetKey)
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if data != nil {
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return std.Deserialize(data.([]byte)).([]interop.PublicKey)
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}
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return []interop.PublicKey{}
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}
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// getConfig returns the installed frostfs configuration value or nil if it is not set.
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func getConfig(ctx storage.Context, key interface{}) interface{} {
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postfix := key.([]byte)
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storageKey := append(configPrefix, postfix...)
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return storage.Get(ctx, storageKey)
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}
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// setConfig sets a frostfs configuration value in the contract storage.
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func setConfig(ctx storage.Context, key, val interface{}) {
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postfix := key.([]byte)
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storageKey := append(configPrefix, postfix...)
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storage.Put(ctx, storageKey, val)
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}
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// multiaddress returns a multisignature address from the list of IRNode structures
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// with m = 2/3n+1.
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func multiaddress(keys []interop.PublicKey) []byte {
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threshold := len(keys)*2/3 + 1
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return contract.CreateMultisigAccount(threshold, keys)
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}
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