3e9c578e62
Unified format uses transfer type as the first byte and extra details next. List of transfer types used in contracts defined in `details.go`. It includes: - audit settlement, - basic income collection, - basic income distribution. Signed-off-by: Alex Vanin <alexey@nspcc.ru>
326 lines
6.9 KiB
Go
326 lines
6.9 KiB
Go
package audit
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import (
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"bytes"
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"encoding/hex"
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"math/big"
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"github.com/nspcc-dev/neofs-api-go/pkg/audit"
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"github.com/nspcc-dev/neofs-api-go/pkg/container"
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"github.com/nspcc-dev/neofs-api-go/pkg/object"
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"github.com/nspcc-dev/neofs-api-go/pkg/owner"
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crypto "github.com/nspcc-dev/neofs-crypto"
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"github.com/nspcc-dev/neofs-node/pkg/innerring/processors/settlement/common"
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"github.com/nspcc-dev/neofs-node/pkg/util/logger"
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"go.uber.org/zap"
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)
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// CalculatePrm groups required parameters of
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// Calculator.CalculateForEpoch call.
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type CalculatePrm struct {
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// Number of epoch to perform the calculation.
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Epoch uint64
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}
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type singleResultCtx struct {
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eAudit uint64
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auditResult *audit.Result
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log *logger.Logger
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cid *container.ID
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txTable *common.TransferTable
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cnrInfo common.ContainerInfo
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cnrNodes []common.NodeInfo
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passNodes map[string]common.NodeInfo
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sumSGSize *big.Int
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auditFee *big.Int
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}
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var (
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bigGB = big.NewInt(1 << 30)
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bigZero = big.NewInt(0)
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bigOne = big.NewInt(1)
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)
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// Calculate calculates payments for audit results in a specific epoch of the network.
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// Wraps the results in a money transfer transaction and sends it to the network.
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func (c *Calculator) Calculate(p *CalculatePrm) {
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log := c.opts.log.With(
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zap.Uint64("current epoch", p.Epoch),
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)
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if p.Epoch == 0 {
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log.Info("settlements are ignored for zero epoch")
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return
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}
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log.Info("calculate audit settlements")
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log.Debug("getting results for the previous epoch")
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prevEpoch := p.Epoch - 1
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auditResults, err := c.prm.ResultStorage.AuditResultsForEpoch(prevEpoch)
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if err != nil {
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log.Error("could not collect audit results")
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return
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} else if len(auditResults) == 0 {
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log.Debug("no audit results in previous epoch")
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return
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}
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auditFee, err := c.prm.AuditFeeFetcher.AuditFee()
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if err != nil {
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log.Warn("can't fetch audit fee from network config",
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zap.String("error", err.Error()))
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auditFee = 0
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}
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log.Debug("processing audit results",
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zap.Int("number", len(auditResults)),
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)
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table := common.NewTransferTable()
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for i := range auditResults {
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c.processResult(&singleResultCtx{
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log: log,
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auditResult: auditResults[i],
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txTable: table,
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auditFee: big.NewInt(0).SetUint64(auditFee),
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})
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}
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log.Debug("processing transfers")
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common.TransferAssets(c.prm.Exchanger, table, common.AuditSettlementDetails(prevEpoch))
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}
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func (c *Calculator) processResult(ctx *singleResultCtx) {
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ctx.log = ctx.log.With(
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zap.Stringer("cid", ctx.containerID()),
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zap.Uint64("audit epoch", ctx.auditResult.AuditEpoch()),
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)
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ctx.log.Debug("reading information about the container")
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ok := c.readContainerInfo(ctx)
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if !ok {
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return
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}
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ctx.log.Debug("building placement")
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ok = c.buildPlacement(ctx)
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if !ok {
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return
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}
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ctx.log.Debug("collecting passed nodes")
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ok = c.collectPassNodes(ctx)
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if !ok {
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return
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}
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ctx.log.Debug("calculating sum of the sizes of all storage groups")
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ok = c.sumSGSizes(ctx)
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if !ok {
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return
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}
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ctx.log.Debug("filling transfer table")
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c.fillTransferTable(ctx)
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}
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func (c *Calculator) readContainerInfo(ctx *singleResultCtx) bool {
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var err error
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ctx.cnrInfo, err = c.prm.ContainerStorage.ContainerInfo(ctx.auditResult.ContainerID())
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if err != nil {
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ctx.log.Error("could not get container info",
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zap.String("error", err.Error()),
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)
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}
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return err == nil
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}
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func (c *Calculator) buildPlacement(ctx *singleResultCtx) bool {
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var err error
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ctx.cnrNodes, err = c.prm.PlacementCalculator.ContainerNodes(ctx.auditEpoch(), ctx.containerID())
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if err != nil {
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ctx.log.Error("could not get container nodes",
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zap.String("error", err.Error()),
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)
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}
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empty := len(ctx.cnrNodes) == 0
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if empty {
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ctx.log.Debug("empty list of container nodes")
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}
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return err == nil && !empty
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}
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func (c *Calculator) collectPassNodes(ctx *singleResultCtx) bool {
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ctx.passNodes = make(map[string]common.NodeInfo)
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loop:
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for _, cnrNode := range ctx.cnrNodes {
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for _, passNode := range ctx.auditResult.PassNodes() {
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if !bytes.Equal(cnrNode.PublicKey(), passNode) {
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continue
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}
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for _, failNode := range ctx.auditResult.FailNodes() {
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if bytes.Equal(cnrNode.PublicKey(), failNode) {
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continue loop
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}
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}
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ctx.passNodes[hex.EncodeToString(passNode)] = cnrNode
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}
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}
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empty := len(ctx.passNodes) == 0
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if empty {
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ctx.log.Debug("none of the container nodes passed the audit")
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}
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return !empty
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}
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func (c *Calculator) sumSGSizes(ctx *singleResultCtx) bool {
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passedSG := ctx.auditResult.PassSG()
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if len(passedSG) == 0 {
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ctx.log.Debug("empty list of passed SG")
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return false
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}
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sumPassSGSize := uint64(0)
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addr := object.NewAddress()
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addr.SetContainerID(ctx.containerID())
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for _, sgID := range ctx.auditResult.PassSG() {
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addr.SetObjectID(sgID)
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sgInfo, err := c.prm.SGStorage.SGInfo(addr)
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if err != nil {
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ctx.log.Error("could not get SG info",
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zap.Stringer("id", sgID),
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)
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return false // we also can continue and calculate at least some part
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}
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sumPassSGSize += sgInfo.Size()
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}
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if sumPassSGSize == 0 {
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ctx.log.Debug("zero sum SG size")
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return false
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}
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ctx.sumSGSize = big.NewInt(int64(sumPassSGSize))
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return true
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}
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func (c *Calculator) fillTransferTable(ctx *singleResultCtx) bool {
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cnrOwner := ctx.cnrInfo.Owner()
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// add txs to pay for storage node
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for k, info := range ctx.passNodes {
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ownerID, err := c.prm.AccountStorage.ResolveKey(info)
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if err != nil {
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ctx.log.Error("could not resolve public key of the storage node",
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zap.String("error", err.Error()),
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zap.String("key", k),
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)
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return false // we also can continue and calculate at least some part
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}
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price := info.Price()
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ctx.log.Debug("calculating storage node salary for audit (GASe-12)",
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zap.Stringer("sum SG size", ctx.sumSGSize),
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zap.Stringer("price", price),
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)
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fee := big.NewInt(0).Mul(price, ctx.sumSGSize)
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fee.Div(fee, bigGB)
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if fee.Cmp(bigZero) == 0 {
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fee.Add(fee, bigOne)
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}
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ctx.txTable.Transfer(&common.TransferTx{
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From: cnrOwner,
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To: ownerID,
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Amount: fee,
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})
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}
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// add txs to pay inner ring node for audit result
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auditIR, err := ownerFromKey(ctx.auditResult.PublicKey())
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if err != nil {
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ctx.log.Error("could not parse public key of the inner ring node",
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zap.String("error", err.Error()),
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zap.String("key", hex.EncodeToString(ctx.auditResult.PublicKey())),
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)
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return false
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}
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ctx.txTable.Transfer(&common.TransferTx{
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From: cnrOwner,
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To: auditIR,
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Amount: ctx.auditFee,
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})
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return false
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}
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func (c *singleResultCtx) containerID() *container.ID {
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if c.cid == nil {
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c.cid = c.auditResult.ContainerID()
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}
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return c.cid
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}
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func (c *singleResultCtx) auditEpoch() uint64 {
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if c.eAudit == 0 {
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c.eAudit = c.auditResult.AuditEpoch()
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}
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return c.eAudit
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}
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func ownerFromKey(key []byte) (*owner.ID, error) {
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pubKey := crypto.UnmarshalPublicKey(key)
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n3wallet, err := owner.NEO3WalletFromPublicKey(pubKey)
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if err != nil {
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return nil, err
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}
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o := owner.NewID()
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o.SetNeo3Wallet(n3wallet)
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return o, nil
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}
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