forked from TrueCloudLab/frostfs-contract
226 lines
5.6 KiB
Go
226 lines
5.6 KiB
Go
package audit
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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/iterator"
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"github.com/nspcc-dev/neo-go/pkg/interop/native/crypto"
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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/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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auditHeader struct {
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epoch int
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cid []byte
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from interop.PublicKey
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}
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)
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// Audit key is a combination of the epoch, the container ID and the public key of the node that
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// has executed the audit. Together, it shouldn't be more than 64 bytes. We can't shrink
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// epoch and container ID since we iterate over these values. But we can shrink
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// public key by using first bytes of the hashed value.
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// V2 format
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const maxKeySize = 24 // 24 + 32 (container ID length) + 8 (epoch length) = 64
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func (a auditHeader) ID() []byte {
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var buf interface{} = a.epoch
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hashedKey := crypto.Sha256(a.from)
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shortedKey := hashedKey[:maxKeySize]
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return append(buf.([]byte), append(a.cid, shortedKey...)...)
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}
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const (
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netmapContractKey = "netmapScriptHash"
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notaryDisabledKey = "notary"
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)
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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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addrNetmap interop.Hash160
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})
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if len(args.addrNetmap) != interop.Hash160Len {
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panic("incorrect length of contract script hash")
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}
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storage.Put(ctx, netmapContractKey, args.addrNetmap)
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runtime.Log("audit 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 interface{}) {
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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("audit contract updated")
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}
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// Put method stores a stable marshalled `DataAuditResult` structure. It can be
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// invoked only by Inner Ring nodes.
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//
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// Inner Ring nodes perform audit of containers and produce `DataAuditResult`
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// structures. They are stored in audit contract and used for settlements
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// in later epochs.
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func Put(rawAuditResult []byte) {
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ctx := storage.GetContext()
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innerRing := common.InnerRingNodes()
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hdr := newAuditHeader(rawAuditResult)
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presented := false
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for i := range innerRing {
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ir := innerRing[i]
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if common.BytesEqual(ir, hdr.from) {
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presented = true
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break
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}
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}
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if !runtime.CheckWitness(hdr.from) || !presented {
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panic("put access denied")
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}
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storage.Put(ctx, hdr.ID(), rawAuditResult)
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runtime.Log("audit: result has been saved")
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}
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// Get method returns a stable marshaled DataAuditResult structure.
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//
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// The ID of the DataAuditResult can be obtained from listing methods.
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func Get(id []byte) []byte {
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ctx := storage.GetReadOnlyContext()
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return storage.Get(ctx, id).([]byte)
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}
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// List method returns a list of all available DataAuditResult IDs from
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// the contract storage.
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func List() [][]byte {
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ctx := storage.GetReadOnlyContext()
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it := storage.Find(ctx, []byte{}, storage.KeysOnly)
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return list(it)
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}
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// ListByEpoch method returns a list of DataAuditResult IDs generated during
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// the specified epoch.
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func ListByEpoch(epoch int) [][]byte {
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ctx := storage.GetReadOnlyContext()
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var buf interface{} = epoch
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it := storage.Find(ctx, buf.([]byte), storage.KeysOnly)
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return list(it)
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}
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// ListByCID method returns a list of DataAuditResult IDs generated during
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// the specified epoch for the specified container.
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func ListByCID(epoch int, cid []byte) [][]byte {
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ctx := storage.GetReadOnlyContext()
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var buf interface{} = epoch
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prefix := append(buf.([]byte), cid...)
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it := storage.Find(ctx, prefix, storage.KeysOnly)
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return list(it)
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}
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// ListByNode method returns a list of DataAuditResult IDs generated in
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// the specified epoch for the specified container by the specified Inner Ring node.
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func ListByNode(epoch int, cid []byte, key interop.PublicKey) [][]byte {
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ctx := storage.GetReadOnlyContext()
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hdr := auditHeader{
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epoch: epoch,
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cid: cid,
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from: key,
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}
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it := storage.Find(ctx, hdr.ID(), storage.KeysOnly)
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return list(it)
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}
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func list(it iterator.Iterator) [][]byte {
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var result [][]byte
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ignore := [][]byte{
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[]byte(netmapContractKey),
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}
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loop:
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for iterator.Next(it) {
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key := iterator.Value(it).([]byte) // iterator MUST BE `storage.KeysOnly`
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for _, ignoreKey := range ignore {
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if common.BytesEqual(key, ignoreKey) {
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continue loop
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}
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}
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result = append(result, key)
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}
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return result
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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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// readNext reads the length from the first byte, and then reads data (max 127 bytes).
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func readNext(input []byte) ([]byte, int) {
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var buf interface{} = input[0]
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ln := buf.(int)
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return input[1 : 1+ln], 1 + ln
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}
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func newAuditHeader(input []byte) auditHeader {
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// V2 format
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offset := int(input[1])
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offset = 2 + offset + 1 // version prefix + version len + epoch prefix
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var buf interface{} = input[offset : offset+8] // [ 8 integer bytes ]
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epoch := buf.(int)
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offset = offset + 8
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// cid is a nested structure with raw bytes
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// [ cid struct prefix (wireType + len = 2 bytes), cid value wireType (1 byte), ... ]
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cid, cidOffset := readNext(input[offset+2+1:])
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// key is a raw byte
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// [ public key wireType (1 byte), ... ]
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key, _ := readNext(input[offset+2+1+cidOffset+1:])
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return auditHeader{
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epoch,
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cid,
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key,
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}
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}
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