package itests import ( "context" "fmt" "strings" "testing" "time" "github.com/stretchr/testify/require" "github.com/filecoin-project/lotus/api" "github.com/filecoin-project/lotus/build" sealing "github.com/filecoin-project/lotus/extern/storage-sealing" "github.com/filecoin-project/lotus/itests/kit2" ) func TestPledgeSectors(t *testing.T) { kit2.QuietMiningLogs() blockTime := 50 * time.Millisecond runTest := func(t *testing.T, nSectors int) { ctx, cancel := context.WithCancel(context.Background()) defer cancel() _, miner, ens := kit2.EnsembleMinimal(t, kit2.MockProofs()) ens.InterconnectAll().BeginMining(blockTime) miner.PledgeSectors(ctx, nSectors, 0, nil) } t.Run("1", func(t *testing.T) { runTest(t, 1) }) t.Run("100", func(t *testing.T) { runTest(t, 100) }) t.Run("1000", func(t *testing.T) { if testing.Short() { // takes ~16s t.Skip("skipping test in short mode") } runTest(t, 1000) }) } func TestPledgeBatching(t *testing.T) { blockTime := 50 * time.Millisecond runTest := func(t *testing.T, nSectors int) { ctx, cancel := context.WithCancel(context.Background()) defer cancel() opts := kit2.ConstructorOpts(kit2.LatestActorsAt(-1)) client, miner, ens := kit2.EnsembleMinimal(t, kit2.MockProofs(), opts) ens.InterconnectAll().BeginMining(blockTime) kit2.WaitTillChainHeight(ctx, t, client, blockTime, 10) toCheck := miner.StartPledge(ctx, nSectors, 0, nil) for len(toCheck) > 0 { states := map[api.SectorState]int{} for n := range toCheck { st, err := miner.SectorsStatus(ctx, n, false) require.NoError(t, err) states[st.State]++ if st.State == api.SectorState(sealing.Proving) { delete(toCheck, n) } if strings.Contains(string(st.State), "Fail") { t.Fatal("sector in a failed state", st.State) } } if states[api.SectorState(sealing.SubmitPreCommitBatch)] == nSectors || (states[api.SectorState(sealing.SubmitPreCommitBatch)] > 0 && states[api.SectorState(sealing.PreCommit1)] == 0 && states[api.SectorState(sealing.PreCommit2)] == 0) { pcb, err := miner.SectorPreCommitFlush(ctx) require.NoError(t, err) if pcb != nil { fmt.Printf("PRECOMMIT BATCH: %+v\n", pcb) } } if states[api.SectorState(sealing.SubmitCommitAggregate)] == nSectors || (states[api.SectorState(sealing.SubmitCommitAggregate)] > 0 && states[api.SectorState(sealing.WaitSeed)] == 0 && states[api.SectorState(sealing.Committing)] == 0) { cb, err := miner.SectorCommitFlush(ctx) require.NoError(t, err) if cb != nil { fmt.Printf("COMMIT BATCH: %+v\n", cb) } } build.Clock.Sleep(100 * time.Millisecond) fmt.Printf("WaitSeal: %d %+v\n", len(toCheck), states) } } t.Run("100", func(t *testing.T) { runTest(t, 100) }) } func TestPledgeBeforeNv13(t *testing.T) { blocktime := 50 * time.Millisecond runTest := func(t *testing.T, nSectors int) { ctx, cancel := context.WithCancel(context.Background()) defer cancel() opts := kit2.ConstructorOpts(kit2.LatestActorsAt(1000000000)) client, miner, ens := kit2.EnsembleMinimal(t, kit2.MockProofs(), opts) ens.InterconnectAll().BeginMining(blocktime) kit2.WaitTillChainHeight(ctx, t, client, blocktime, 10) toCheck := miner.StartPledge(ctx, nSectors, 0, nil) for len(toCheck) > 0 { states := map[api.SectorState]int{} for n := range toCheck { st, err := miner.SectorsStatus(ctx, n, false) require.NoError(t, err) states[st.State]++ if st.State == api.SectorState(sealing.Proving) { delete(toCheck, n) } if strings.Contains(string(st.State), "Fail") { t.Fatal("sector in a failed state", st.State) } } build.Clock.Sleep(100 * time.Millisecond) fmt.Printf("WaitSeal: %d %+v\n", len(toCheck), states) } } t.Run("100-before-nv13", func(t *testing.T) { runTest(t, 100) }) }