282 lines
7.3 KiB
Go
282 lines
7.3 KiB
Go
package main
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import (
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"bytes"
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"context"
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"fmt"
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"io"
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"os"
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"text/tabwriter"
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"time"
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"github.com/ipfs/go-cid"
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"github.com/streadway/quantile"
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"github.com/urfave/cli/v2"
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"github.com/filecoin-project/go-state-types/big"
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"github.com/filecoin-project/go-state-types/exitcode"
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"github.com/filecoin-project/specs-actors/v5/actors/builtin"
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"github.com/filecoin-project/specs-actors/v5/actors/builtin/miner"
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"github.com/filecoin-project/lotus/chain/actors/builtin/power"
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"github.com/filecoin-project/lotus/chain/stmgr"
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"github.com/filecoin-project/lotus/chain/types"
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"github.com/filecoin-project/lotus/cmd/lotus-sim/simulation"
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"github.com/filecoin-project/lotus/lib/stati"
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)
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func getTotalPower(ctx context.Context, sm *stmgr.StateManager, ts *types.TipSet) (power.Claim, error) {
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actor, err := sm.LoadActor(ctx, power.Address, ts)
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if err != nil {
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return power.Claim{}, err
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}
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state, err := power.Load(sm.ChainStore().ActorStore(ctx), actor)
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if err != nil {
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return power.Claim{}, err
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}
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return state.TotalPower()
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}
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func printInfo(ctx context.Context, sim *simulation.Simulation, out io.Writer) error {
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head := sim.GetHead()
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start := sim.GetStart()
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powerNow, err := getTotalPower(ctx, sim.StateManager, head)
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if err != nil {
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return err
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}
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powerLookbackEpoch := head.Height() - builtin.EpochsInDay
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if powerLookbackEpoch < start.Height() {
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powerLookbackEpoch = start.Height()
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}
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lookbackTs, err := sim.Chainstore.GetTipsetByHeight(ctx, powerLookbackEpoch, head, false)
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if err != nil {
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return err
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}
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powerLookback, err := getTotalPower(ctx, sim.StateManager, lookbackTs)
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if err != nil {
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return err
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}
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// growth rate in size/day
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growthRate := big.Div(
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big.Mul(big.Sub(powerNow.RawBytePower, powerLookback.RawBytePower),
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big.NewInt(builtin.EpochsInDay)),
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big.NewInt(int64(head.Height()-lookbackTs.Height())),
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)
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tw := tabwriter.NewWriter(out, 8, 8, 1, ' ', 0)
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headEpoch := head.Height()
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firstEpoch := start.Height() + 1
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headTime := time.Unix(int64(head.MinTimestamp()), 0)
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startTime := time.Unix(int64(start.MinTimestamp()), 0)
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duration := headTime.Sub(startTime)
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fmt.Fprintf(tw, "Name:\t%s\n", sim.Name())
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fmt.Fprintf(tw, "Head:\t%s\n", head)
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fmt.Fprintf(tw, "Start Epoch:\t%d\n", firstEpoch)
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fmt.Fprintf(tw, "End Epoch:\t%d\n", headEpoch)
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fmt.Fprintf(tw, "Length:\t%d\n", headEpoch-firstEpoch)
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fmt.Fprintf(tw, "Start Date:\t%s\n", startTime)
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fmt.Fprintf(tw, "End Date:\t%s\n", headTime)
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fmt.Fprintf(tw, "Duration:\t%.2f day(s)\n", duration.Hours()/24)
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fmt.Fprintf(tw, "Capacity:\t%s\n", types.SizeStr(powerNow.RawBytePower))
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fmt.Fprintf(tw, "Daily Capacity Growth:\t%s/day\n", types.SizeStr(growthRate))
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fmt.Fprintf(tw, "Network Version:\t%d\n", sim.GetNetworkVersion())
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return tw.Flush()
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}
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var infoSimCommand = &cli.Command{
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Name: "info",
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Description: "Output information about the simulation.",
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Subcommands: []*cli.Command{
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infoCommitGasSimCommand,
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infoWindowPostBandwidthSimCommand,
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},
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Action: func(cctx *cli.Context) error {
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node, err := open(cctx)
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if err != nil {
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return err
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}
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defer node.Close()
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sim, err := node.LoadSim(cctx.Context, cctx.String("simulation"))
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if err != nil {
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return err
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}
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return printInfo(cctx.Context, sim, cctx.App.Writer)
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},
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}
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var infoWindowPostBandwidthSimCommand = &cli.Command{
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Name: "post-bandwidth",
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Description: "List average chain bandwidth used by window posts for each day of the simulation.",
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Action: func(cctx *cli.Context) error {
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node, err := open(cctx)
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if err != nil {
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return err
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}
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defer node.Close()
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sim, err := node.LoadSim(cctx.Context, cctx.String("simulation"))
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if err != nil {
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return err
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}
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var postGas, totalGas int64
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printStats := func() {
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fmt.Fprintf(cctx.App.Writer, "%.4f%%\n", float64(100*postGas)/float64(totalGas))
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}
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idx := 0
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err = sim.Walk(cctx.Context, 0, func(
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sm *stmgr.StateManager, ts *types.TipSet, stCid cid.Cid,
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messages []*simulation.AppliedMessage,
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) error {
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for _, m := range messages {
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totalGas += m.GasUsed
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if m.ExitCode != exitcode.Ok {
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continue
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}
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if m.Method == builtin.MethodsMiner.SubmitWindowedPoSt {
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postGas += m.GasUsed
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}
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}
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idx++
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idx %= builtin.EpochsInDay
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if idx == 0 {
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printStats()
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postGas = 0
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totalGas = 0
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}
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return nil
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})
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if idx > 0 {
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printStats()
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}
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return err
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},
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}
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var infoCommitGasSimCommand = &cli.Command{
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Name: "commit-gas",
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Description: "Output information about the gas for commits",
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Flags: []cli.Flag{
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&cli.Int64Flag{
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Name: "lookback",
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Value: 0,
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},
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},
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Action: func(cctx *cli.Context) error {
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log := func(f string, i ...interface{}) {
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fmt.Fprintf(os.Stderr, f, i...)
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}
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node, err := open(cctx)
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if err != nil {
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return err
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}
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defer node.Close()
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sim, err := node.LoadSim(cctx.Context, cctx.String("simulation"))
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if err != nil {
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return err
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}
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var gasAgg, proofsAgg uint64
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var gasAggMax, proofsAggMax uint64
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var gasSingle, proofsSingle uint64
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qpoints := []struct{ q, tol float64 }{
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{0.01, 0.0005},
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{0.05, 0.001},
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{0.20, 0.01},
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{0.25, 0.01},
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{0.30, 0.01},
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{0.40, 0.01},
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{0.45, 0.01},
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{0.50, 0.01},
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{0.60, 0.01},
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{0.80, 0.01},
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{0.95, 0.001},
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{0.99, 0.0005},
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}
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estims := make([]quantile.Estimate, len(qpoints))
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for i, p := range qpoints {
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estims[i] = quantile.Known(p.q, p.tol)
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}
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qua := quantile.New(estims...)
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hist, err := stati.NewHistogram([]float64{
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1, 3, 5, 7, 15, 30, 50, 100, 200, 400, 600, 700, 819})
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if err != nil {
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return err
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}
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err = sim.Walk(cctx.Context, cctx.Int64("lookback"), func(
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sm *stmgr.StateManager, ts *types.TipSet, stCid cid.Cid,
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messages []*simulation.AppliedMessage,
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) error {
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for _, m := range messages {
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if m.ExitCode != exitcode.Ok {
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continue
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}
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if m.Method == builtin.MethodsMiner.ProveCommitAggregate {
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param := miner.ProveCommitAggregateParams{}
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err := param.UnmarshalCBOR(bytes.NewReader(m.Params))
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if err != nil {
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log("failed to decode params: %+v", err)
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return nil
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}
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c, err := param.SectorNumbers.Count()
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if err != nil {
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log("failed to count sectors")
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return nil
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}
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gasAgg += uint64(m.GasUsed)
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proofsAgg += c
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if c == 819 {
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gasAggMax += uint64(m.GasUsed)
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proofsAggMax += c
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}
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for i := uint64(0); i < c; i++ {
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qua.Add(float64(c))
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}
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hist.Observe(float64(c))
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}
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if m.Method == builtin.MethodsMiner.ProveCommitSector {
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gasSingle += uint64(m.GasUsed)
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proofsSingle++
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qua.Add(1)
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hist.Observe(1)
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}
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}
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return nil
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})
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if err != nil {
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return err
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}
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idealGassUsed := float64(gasAggMax) / float64(proofsAggMax) * float64(proofsAgg+proofsSingle)
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fmt.Printf("Gas usage efficiency in comparison to all 819: %f%%\n", 100*idealGassUsed/float64(gasAgg+gasSingle))
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fmt.Printf("Proofs in singles: %d\n", proofsSingle)
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fmt.Printf("Proofs in Aggs: %d\n", proofsAgg)
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fmt.Printf("Proofs in Aggs(819): %d\n", proofsAggMax)
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fmt.Println()
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fmt.Println("Quantiles of proofs in given aggregate size:")
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for _, p := range qpoints {
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fmt.Printf("%.0f%%\t%.0f\n", p.q*100, qua.Get(p.q))
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}
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fmt.Println()
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fmt.Println("Histogram of messages:")
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fmt.Printf("Total\t%d\n", hist.Total())
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for i, b := range hist.Buckets[1:] {
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fmt.Printf("%.0f\t%d\n", b, hist.Get(i))
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}
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return nil
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},
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}
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