397 lines
12 KiB
Go
397 lines
12 KiB
Go
//stm: #integration
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package itests
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import (
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"context"
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"testing"
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"time"
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"github.com/filecoin-project/go-address"
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"github.com/filecoin-project/go-bitfield"
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"github.com/filecoin-project/go-state-types/crypto"
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"github.com/filecoin-project/go-state-types/dline"
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"github.com/filecoin-project/lotus/api"
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"github.com/filecoin-project/lotus/build"
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"github.com/filecoin-project/lotus/chain/actors"
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minerActor "github.com/filecoin-project/lotus/chain/actors/builtin/miner"
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"github.com/filecoin-project/lotus/chain/types"
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"github.com/filecoin-project/lotus/itests/kit"
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proof3 "github.com/filecoin-project/specs-actors/v3/actors/runtime/proof"
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"github.com/stretchr/testify/require"
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)
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func TestWindowPostDispute(t *testing.T) {
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//stm: @CHAIN_SYNCER_LOAD_GENESIS_001, @CHAIN_SYNCER_FETCH_TIPSET_001,
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//stm: @CHAIN_SYNCER_START_001, @CHAIN_SYNCER_SYNC_001, @BLOCKCHAIN_BEACON_VALIDATE_BLOCK_VALUES_01
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//stm: @CHAIN_SYNCER_COLLECT_CHAIN_001, @CHAIN_SYNCER_COLLECT_HEADERS_001, @CHAIN_SYNCER_VALIDATE_TIPSET_001
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//stm: @CHAIN_SYNCER_NEW_PEER_HEAD_001, @CHAIN_SYNCER_VALIDATE_MESSAGE_META_001, @CHAIN_SYNCER_STOP_001
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//stm: @CHAIN_INCOMING_HANDLE_INCOMING_BLOCKS_001, @CHAIN_INCOMING_VALIDATE_BLOCK_PUBSUB_001, @CHAIN_INCOMING_VALIDATE_MESSAGE_PUBSUB_001
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kit.Expensive(t)
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kit.QuietMiningLogs()
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blocktime := 2 * time.Millisecond
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ctx, cancel := context.WithCancel(context.Background())
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defer cancel()
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var (
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client kit.TestFullNode
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chainMiner kit.TestMiner
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evilMiner kit.TestMiner
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)
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// First, we configure two miners. After sealing, we're going to turn off the first miner so
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// it doesn't submit proofs.
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//
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// Then we're going to manually submit bad proofs.
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opts := []kit.NodeOpt{kit.WithAllSubsystems()}
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ens := kit.NewEnsemble(t, kit.MockProofs()).
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FullNode(&client, opts...).
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Miner(&chainMiner, &client, opts...).
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Miner(&evilMiner, &client, append(opts, kit.PresealSectors(0))...).
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Start()
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defaultFrom, err := client.WalletDefaultAddress(ctx)
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require.NoError(t, err)
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// Mine with the _second_ node (the good one).
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ens.InterconnectAll().BeginMining(blocktime, &chainMiner)
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// Give the chain miner enough sectors to win every block.
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chainMiner.PledgeSectors(ctx, 10, 0, nil)
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// And the evil one 1 sector. No cookie for you.
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evilMiner.PledgeSectors(ctx, 1, 0, nil)
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// Let the evil miner's sectors gain power.
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evilMinerAddr, err := evilMiner.ActorAddress(ctx)
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require.NoError(t, err)
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//stm: @CHAIN_STATE_MINER_CALCULATE_DEADLINE_001
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di, err := client.StateMinerProvingDeadline(ctx, evilMinerAddr, types.EmptyTSK)
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require.NoError(t, err)
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t.Logf("Running one proving period\n")
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waitUntil := di.PeriodStart + di.WPoStProvingPeriod*2 + 1
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t.Logf("End for head.Height > %d", waitUntil)
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ts := client.WaitTillChain(ctx, kit.HeightAtLeast(waitUntil))
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t.Logf("Now head.Height = %d", ts.Height())
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//stm: @CHAIN_STATE_MINER_POWER_001
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p, err := client.StateMinerPower(ctx, evilMinerAddr, types.EmptyTSK)
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require.NoError(t, err)
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ssz, err := evilMiner.ActorSectorSize(ctx, evilMinerAddr)
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require.NoError(t, err)
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// make sure it has gained power.
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require.Equal(t, p.MinerPower.RawBytePower, types.NewInt(uint64(ssz)))
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//stm: @MINER_SECTOR_LIST_001
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evilSectors, err := evilMiner.SectorsList(ctx)
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require.NoError(t, err)
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evilSectorNo := evilSectors[0] // only one.
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//stm: @CHAIN_STATE_SECTOR_PARTITION_001
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evilSectorLoc, err := client.StateSectorPartition(ctx, evilMinerAddr, evilSectorNo, types.EmptyTSK)
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require.NoError(t, err)
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t.Log("evil miner stopping")
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// Now stop the evil miner, and start manually submitting bad proofs.
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require.NoError(t, evilMiner.Stop(ctx))
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t.Log("evil miner stopped")
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// Wait until we need to prove our sector.
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for {
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//stm: @CHAIN_STATE_MINER_CALCULATE_DEADLINE_001
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di, err = client.StateMinerProvingDeadline(ctx, evilMinerAddr, types.EmptyTSK)
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require.NoError(t, err)
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if di.Index == evilSectorLoc.Deadline && di.CurrentEpoch-di.PeriodStart > 1 {
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break
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}
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build.Clock.Sleep(blocktime)
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}
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err = submitBadProof(ctx, client, evilMiner.OwnerKey.Address, evilMinerAddr, di, evilSectorLoc.Deadline, evilSectorLoc.Partition)
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require.NoError(t, err, "evil proof not accepted")
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// Wait until after the proving period.
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for {
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//stm: @CHAIN_STATE_MINER_CALCULATE_DEADLINE_001
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di, err = client.StateMinerProvingDeadline(ctx, evilMinerAddr, types.EmptyTSK)
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require.NoError(t, err)
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if di.Index != evilSectorLoc.Deadline {
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break
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}
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build.Clock.Sleep(blocktime)
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}
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t.Log("accepted evil proof")
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//stm: @CHAIN_STATE_MINER_POWER_001
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// Make sure the evil node didn't lose any power.
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p, err = client.StateMinerPower(ctx, evilMinerAddr, types.EmptyTSK)
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require.NoError(t, err)
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require.Equal(t, p.MinerPower.RawBytePower, types.NewInt(uint64(ssz)))
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// OBJECTION! The good miner files a DISPUTE!!!!
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{
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params := &minerActor.DisputeWindowedPoStParams{
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Deadline: evilSectorLoc.Deadline,
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PoStIndex: 0,
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}
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enc, aerr := actors.SerializeParams(params)
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require.NoError(t, aerr)
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msg := &types.Message{
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To: evilMinerAddr,
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Method: minerActor.Methods.DisputeWindowedPoSt,
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Params: enc,
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Value: types.NewInt(0),
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From: defaultFrom,
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}
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sm, err := client.MpoolPushMessage(ctx, msg, nil)
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require.NoError(t, err)
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t.Log("waiting dispute")
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//stm: @CHAIN_STATE_WAIT_MSG_001
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rec, err := client.StateWaitMsg(ctx, sm.Cid(), build.MessageConfidence, api.LookbackNoLimit, true)
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require.NoError(t, err)
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require.Zero(t, rec.Receipt.ExitCode, "dispute not accepted: %s", rec.Receipt.ExitCode.Error())
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}
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//stm: @CHAIN_STATE_MINER_POWER_001
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// Objection SUSTAINED!
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// Make sure the evil node lost power.
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p, err = client.StateMinerPower(ctx, evilMinerAddr, types.EmptyTSK)
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require.NoError(t, err)
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require.True(t, p.MinerPower.RawBytePower.IsZero())
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// Now we begin the redemption arc.
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require.True(t, p.MinerPower.RawBytePower.IsZero())
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// First, recover the sector.
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{
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//stm: @CHAIN_STATE_MINER_INFO_001
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minerInfo, err := client.StateMinerInfo(ctx, evilMinerAddr, types.EmptyTSK)
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require.NoError(t, err)
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params := &minerActor.DeclareFaultsRecoveredParams{
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Recoveries: []minerActor.RecoveryDeclaration{{
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Deadline: evilSectorLoc.Deadline,
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Partition: evilSectorLoc.Partition,
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Sectors: bitfield.NewFromSet([]uint64{uint64(evilSectorNo)}),
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}},
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}
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enc, aerr := actors.SerializeParams(params)
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require.NoError(t, aerr)
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msg := &types.Message{
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To: evilMinerAddr,
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Method: minerActor.Methods.DeclareFaultsRecovered,
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Params: enc,
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Value: types.FromFil(30), // repay debt.
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From: minerInfo.Owner,
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}
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sm, err := client.MpoolPushMessage(ctx, msg, nil)
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require.NoError(t, err)
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//stm: @CHAIN_STATE_WAIT_MSG_001
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rec, err := client.StateWaitMsg(ctx, sm.Cid(), build.MessageConfidence, api.LookbackNoLimit, true)
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require.NoError(t, err)
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require.Zero(t, rec.Receipt.ExitCode, "recovery not accepted: %s", rec.Receipt.ExitCode.Error())
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}
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// Then wait for the deadline.
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for {
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//stm: @CHAIN_STATE_MINER_CALCULATE_DEADLINE_001
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di, err = client.StateMinerProvingDeadline(ctx, evilMinerAddr, types.EmptyTSK)
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require.NoError(t, err)
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if di.Index == evilSectorLoc.Deadline {
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break
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}
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build.Clock.Sleep(blocktime)
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}
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// Now try to be evil again
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err = submitBadProof(ctx, client, evilMiner.OwnerKey.Address, evilMinerAddr, di, evilSectorLoc.Deadline, evilSectorLoc.Partition)
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require.Error(t, err)
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require.Equal(t, 16, err)
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// It didn't work because we're recovering.
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}
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func TestWindowPostDisputeFails(t *testing.T) {
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//stm: @CHAIN_SYNCER_LOAD_GENESIS_001, @CHAIN_SYNCER_FETCH_TIPSET_001,
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//stm: @CHAIN_SYNCER_START_001, @CHAIN_SYNCER_SYNC_001, @BLOCKCHAIN_BEACON_VALIDATE_BLOCK_VALUES_01
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//stm: @CHAIN_SYNCER_COLLECT_CHAIN_001, @CHAIN_SYNCER_COLLECT_HEADERS_001, @CHAIN_SYNCER_VALIDATE_TIPSET_001
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//stm: @CHAIN_SYNCER_NEW_PEER_HEAD_001, @CHAIN_SYNCER_VALIDATE_MESSAGE_META_001, @CHAIN_SYNCER_STOP_001
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//stm: @CHAIN_STATE_MINER_GET_DEADLINES_001
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kit.Expensive(t)
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kit.QuietMiningLogs()
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blocktime := 2 * time.Millisecond
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ctx, cancel := context.WithCancel(context.Background())
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defer cancel()
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client, miner, ens := kit.EnsembleMinimal(t, kit.MockProofs())
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ens.InterconnectAll().BeginMining(blocktime)
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defaultFrom, err := client.WalletDefaultAddress(ctx)
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require.NoError(t, err)
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maddr, err := miner.ActorAddress(ctx)
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require.NoError(t, err)
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build.Clock.Sleep(time.Second)
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miner.PledgeSectors(ctx, 10, 0, nil)
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//stm: @CHAIN_STATE_MINER_CALCULATE_DEADLINE_001
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di, err := client.StateMinerProvingDeadline(ctx, maddr, types.EmptyTSK)
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require.NoError(t, err)
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t.Log("Running one proving period")
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waitUntil := di.PeriodStart + di.WPoStProvingPeriod*2 + 1
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t.Logf("End for head.Height > %d", waitUntil)
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ts := client.WaitTillChain(ctx, kit.HeightAtLeast(waitUntil))
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t.Logf("Now head.Height = %d", ts.Height())
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ssz, err := miner.ActorSectorSize(ctx, maddr)
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require.NoError(t, err)
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expectedPower := types.NewInt(uint64(ssz) * (kit.DefaultPresealsPerBootstrapMiner + 10))
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//stm: @CHAIN_STATE_MINER_POWER_001
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p, err := client.StateMinerPower(ctx, maddr, types.EmptyTSK)
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require.NoError(t, err)
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// make sure it has gained power.
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require.Equal(t, p.MinerPower.RawBytePower, expectedPower)
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// Wait until a proof has been submitted.
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var targetDeadline uint64
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waitForProof:
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for {
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deadlines, err := client.StateMinerDeadlines(ctx, maddr, types.EmptyTSK)
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require.NoError(t, err)
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for dlIdx, dl := range deadlines {
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nonEmpty, err := dl.PostSubmissions.IsEmpty()
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require.NoError(t, err)
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if nonEmpty {
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targetDeadline = uint64(dlIdx)
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break waitForProof
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}
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}
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build.Clock.Sleep(blocktime)
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}
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for {
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//stm: @CHAIN_STATE_MINER_CALCULATE_DEADLINE_001
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di, err := client.StateMinerProvingDeadline(ctx, maddr, types.EmptyTSK)
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require.NoError(t, err)
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// wait until the deadline finishes.
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if di.Index == ((targetDeadline + 1) % di.WPoStPeriodDeadlines) {
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break
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}
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build.Clock.Sleep(blocktime)
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}
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// Try to object to the proof. This should fail.
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{
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params := &minerActor.DisputeWindowedPoStParams{
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Deadline: targetDeadline,
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PoStIndex: 0,
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}
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enc, aerr := actors.SerializeParams(params)
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require.NoError(t, aerr)
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msg := &types.Message{
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To: maddr,
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Method: minerActor.Methods.DisputeWindowedPoSt,
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Params: enc,
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Value: types.NewInt(0),
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From: defaultFrom,
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}
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_, err := client.MpoolPushMessage(ctx, msg, nil)
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require.Error(t, err)
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require.Equal(t, err, 16)
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}
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}
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func submitBadProof(
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ctx context.Context,
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client api.FullNode, owner address.Address, maddr address.Address,
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di *dline.Info, dlIdx, partIdx uint64,
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) error {
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head, err := client.ChainHead(ctx)
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if err != nil {
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return err
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}
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//stm: @CHAIN_STATE_MINER_INFO_001
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minerInfo, err := client.StateMinerInfo(ctx, maddr, head.Key())
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if err != nil {
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return err
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}
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//stm: @CHAIN_STATE_GET_RANDOMNESS_FROM_TICKETS_001
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commEpoch := di.Open
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commRand, err := client.StateGetRandomnessFromTickets(
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ctx, crypto.DomainSeparationTag_PoStChainCommit,
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commEpoch, nil, head.Key(),
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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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params := &minerActor.SubmitWindowedPoStParams{
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ChainCommitEpoch: commEpoch,
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ChainCommitRand: commRand,
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Deadline: dlIdx,
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Partitions: []minerActor.PoStPartition{{Index: partIdx}},
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Proofs: []proof3.PoStProof{{
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PoStProof: minerInfo.WindowPoStProofType,
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ProofBytes: []byte("I'm soooo very evil."),
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}},
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}
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enc, aerr := actors.SerializeParams(params)
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if aerr != nil {
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return aerr
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}
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msg := &types.Message{
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To: maddr,
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Method: minerActor.Methods.SubmitWindowedPoSt,
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Params: enc,
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Value: types.NewInt(0),
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From: owner,
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}
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sm, err := client.MpoolPushMessage(ctx, msg, nil)
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if err != nil {
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return err
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}
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//stm: @CHAIN_STATE_WAIT_MSG_001
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rec, err := client.StateWaitMsg(ctx, sm.Cid(), build.MessageConfidence, api.LookbackNoLimit, true)
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if err != nil {
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return err
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}
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if rec.Receipt.ExitCode.IsError() {
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return rec.Receipt.ExitCode
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}
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return nil
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}
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