lotus/node/impl/full/gas.go

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package full
import (
"context"
"math"
"math/rand"
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"sort"
"github.com/filecoin-project/lotus/build"
"github.com/filecoin-project/lotus/chain/messagepool"
"github.com/filecoin-project/lotus/chain/stmgr"
"github.com/filecoin-project/lotus/chain/store"
"github.com/filecoin-project/lotus/chain/types"
"github.com/filecoin-project/go-address"
"github.com/filecoin-project/specs-actors/actors/abi/big"
"github.com/filecoin-project/specs-actors/actors/runtime/exitcode"
"go.uber.org/fx"
"golang.org/x/xerrors"
)
type GasAPI struct {
fx.In
Stmgr *stmgr.StateManager
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Chain *store.ChainStore
Mpool *messagepool.MessagePool
}
const MinGasPremium = 100e3
const MaxSpendOnFeeDenom = 100
func (a *GasAPI) GasEstimateFeeCap(ctx context.Context, msg *types.Message, maxqueueblks int64,
tsk types.TipSetKey) (types.BigInt, error) {
ts := a.Chain.GetHeaviestTipSet()
var act types.Actor
err := a.Stmgr.WithParentState(ts, a.Stmgr.WithActor(msg.From, stmgr.GetActor(&act)))
if err != nil {
return types.NewInt(0), xerrors.Errorf("getting actor: %w", err)
}
parentBaseFee := ts.Blocks()[0].ParentBaseFee
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increaseFactor := math.Pow(1.+1./float64(build.BaseFeeMaxChangeDenom), float64(maxqueueblks))
feeInFuture := types.BigMul(parentBaseFee, types.NewInt(uint64(increaseFactor*(1<<8))))
feeInFuture = types.BigDiv(feeInFuture, types.NewInt(1<<8))
gasLimitBig := types.NewInt(uint64(msg.GasLimit))
maxAccepted := types.BigDiv(act.Balance, types.NewInt(MaxSpendOnFeeDenom))
expectedFee := types.BigMul(feeInFuture, gasLimitBig)
out := feeInFuture
if types.BigCmp(expectedFee, maxAccepted) > 0 {
log.Warnf("Expected fee for message higher than tolerance: %s > %s, setting to tolerance",
types.FIL(expectedFee), types.FIL(maxAccepted))
out = types.BigDiv(maxAccepted, gasLimitBig)
}
return out, nil
}
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func (a *GasAPI) GasEstimateGasPremium(ctx context.Context, nblocksincl uint64,
sender address.Address, gaslimit int64, _ types.TipSetKey) (types.BigInt, error) {
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if nblocksincl == 0 {
nblocksincl = 1
}
type gasMeta struct {
price big.Int
limit int64
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}
var prices []gasMeta
var blocks int
ts := a.Chain.GetHeaviestTipSet()
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for i := uint64(0); i < nblocksincl*2; i++ {
if ts.Height() == 0 {
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break // genesis
}
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pts, err := a.Chain.LoadTipSet(ts.Parents())
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if err != nil {
return types.BigInt{}, err
}
blocks += len(pts.Blocks())
msgs, err := a.Chain.MessagesForTipset(pts)
if err != nil {
return types.BigInt{}, xerrors.Errorf("loading messages: %w", err)
}
for _, msg := range msgs {
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prices = append(prices, gasMeta{
price: msg.VMMessage().GasPremium,
limit: msg.VMMessage().GasLimit,
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})
}
ts = pts
}
sort.Slice(prices, func(i, j int) bool {
// sort desc by price
return prices[i].price.GreaterThan(prices[j].price)
})
// todo: account for how full blocks are
at := build.BlockGasTarget * int64(blocks) / 2
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prev := big.Zero()
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premium := big.Zero()
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for _, price := range prices {
at -= price.limit
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if at > 0 {
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prev = price.price
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continue
}
if prev.Equals(big.Zero()) {
return types.BigAdd(price.price, big.NewInt(1)), nil
}
premium = types.BigAdd(big.Div(types.BigAdd(price.price, prev), types.NewInt(2)), big.NewInt(1))
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}
if types.BigCmp(premium, big.Zero()) == 0 {
switch nblocksincl {
case 1:
premium = types.NewInt(2 * MinGasPremium)
case 2:
premium = types.NewInt(1.5 * MinGasPremium)
default:
premium = types.NewInt(MinGasPremium)
}
}
// add some noise to normalize behaviour of message selection
const precision = 32
// mean 1, stddev 0.005 => 95% within +-1%
noise := 1 + rand.NormFloat64()*0.005
premium = types.BigMul(premium, types.NewInt(uint64(noise*(1<<precision))))
premium = types.BigDiv(premium, types.NewInt(1<<precision))
return premium, nil
}
func (a *GasAPI) GasEstimateGasLimit(ctx context.Context, msgIn *types.Message, _ types.TipSetKey) (int64, error) {
msg := *msgIn
msg.GasLimit = build.BlockGasLimit
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msg.GasFeeCap = types.NewInt(uint64(build.MinimumBaseFee) + 1)
msg.GasPremium = types.NewInt(1)
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currTs := a.Chain.GetHeaviestTipSet()
fromA, err := a.Stmgr.ResolveToKeyAddress(ctx, msgIn.From, currTs)
if err != nil {
return -1, xerrors.Errorf("getting key address: %w", err)
}
pending, ts := a.Mpool.PendingFor(fromA)
priorMsgs := make([]types.ChainMsg, 0, len(pending))
for _, m := range pending {
priorMsgs = append(priorMsgs, m)
}
res, err := a.Stmgr.CallWithGas(ctx, &msg, priorMsgs, ts)
if err != nil {
return -1, xerrors.Errorf("CallWithGas failed: %w", err)
}
if res.MsgRct.ExitCode != exitcode.Ok {
return -1, xerrors.Errorf("message execution failed: exit %s, reason: %s", res.MsgRct.ExitCode, res.Error)
}
return res.MsgRct.GasUsed, nil
}