finish integration tests
This commit is contained in:
parent
ad4b182bfe
commit
acfa3d7370
338
extern/sector-storage/piece_provider_test.go
vendored
338
extern/sector-storage/piece_provider_test.go
vendored
@ -1,40 +1,36 @@
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package sectorstorage
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import (
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"bytes"
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"context"
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"io/ioutil"
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"strings"
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"math/rand"
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"net"
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"net/http"
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"testing"
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"time"
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"github.com/filecoin-project/go-state-types/abi"
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"github.com/filecoin-project/go-statestore"
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"github.com/filecoin-project/lotus/extern/sector-storage/sealtasks"
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specstorage "github.com/filecoin-project/specs-storage/storage"
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"github.com/gorilla/mux"
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"github.com/ipfs/go-cid"
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"github.com/ipfs/go-datastore"
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"github.com/ipfs/go-datastore/namespace"
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ds_sync "github.com/ipfs/go-datastore/sync"
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logging "github.com/ipfs/go-log/v2"
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"github.com/stretchr/testify/require"
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"github.com/filecoin-project/lotus/extern/sector-storage/sealtasks"
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"github.com/filecoin-project/lotus/extern/sector-storage/stores"
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"github.com/filecoin-project/lotus/extern/sector-storage/storiface"
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)
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// TestPieceProviderReadPiece verifies that the ReadPiece method works correctly
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func TestPieceProviderReadPiece(t *testing.T) {
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ctx, cancel := context.WithTimeout(context.Background(), 5*time.Minute)
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defer cancel()
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// only uses miner and does NOT use any remote worker.
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func TestPieceProviderSimpleNoRemoteWorker(t *testing.T) {
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runTest := func(t *testing.T, alreadyUnsealed bool) {
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// Set up sector storage manager
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storage := newTestStorage(t)
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index := stores.NewIndex()
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localStore, err := stores.NewLocal(ctx, storage, index, nil)
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require.NoError(t, err)
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remoteStore := stores.NewRemote(localStore, index, nil, 6000, &stores.DefaultPartialFileHandler{})
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dstore := ds_sync.MutexWrap(datastore.NewMapDatastore())
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wsts := statestore.New(namespace.Wrap(dstore, datastore.NewKey("/worker/calls")))
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smsts := statestore.New(namespace.Wrap(dstore, datastore.NewKey("/stmgr/calls")))
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sealerCfg := SealerConfig{
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ParallelFetchLimit: 10,
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AllowAddPiece: true,
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@ -43,76 +39,31 @@ func TestPieceProviderReadPiece(t *testing.T) {
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AllowCommit: true,
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AllowUnseal: true,
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}
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mgr, err := New(ctx, localStore, remoteStore, storage, index, sealerCfg, wsts, smsts)
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require.NoError(t, err)
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// Set up worker
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localTasks := []sealtasks.TaskType{
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sealtasks.TTAddPiece, sealtasks.TTPreCommit1, sealtasks.TTCommit1, sealtasks.TTFinalize, sealtasks.TTFetch,
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}
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ppt := newPieceProviderTestHarness(t, sealerCfg, abi.RegisteredSealProof_StackedDrg8MiBV1)
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defer ppt.shutdown(t)
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csts := statestore.New(namespace.Wrap(dstore, datastore.NewKey("/stmgr/calls")))
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// passing a nil executor here mirrors an actual worker setup as it
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// will initialize the worker to use the rust proofs lib under the hood
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worker := newLocalWorker(nil, WorkerConfig{
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TaskTypes: localTasks,
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}, remoteStore, localStore, index, mgr, csts)
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err = mgr.AddWorker(ctx, worker)
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require.NoError(t, err)
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// Create piece provider
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pp := NewPieceProvider(remoteStore, index, mgr)
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// Mock sector
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sector := specstorage.SectorRef{
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ID: abi.SectorID{
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Miner: 1000,
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Number: 1,
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},
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ProofType: abi.RegisteredSealProof_StackedDrg8MiBV1,
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}
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// Create some data that when padded will be 8MB
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pieceData := strings.Repeat("testthis", 127*1024*8)
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// Create some padded data that aligns with the piece boundaries.
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pieceData := generatePieceData(8 * 127 * 1024 * 8)
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size := abi.UnpaddedPieceSize(len(pieceData))
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pieceInfo, err := mgr.AddPiece(ctx, sector, nil, size, strings.NewReader(pieceData))
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require.NoError(t, err)
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ppt.addPiece(t, pieceData)
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// pre-commit 1
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pieces := []abi.PieceInfo{pieceInfo}
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ticket := abi.SealRandomness{9, 9, 9, 9, 9, 9, 9, 9}
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preCommit1, err := mgr.SealPreCommit1(ctx, sector, ticket, pieces)
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require.NoError(t, err)
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preCommit1 := ppt.preCommit1(t)
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// pre-commit 2
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sectorCids, err := mgr.SealPreCommit2(ctx, sector, preCommit1)
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require.NoError(t, err)
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commD := sectorCids.Unsealed
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ppt.preCommit2(t, preCommit1)
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// If we want to test what happens when the data must be unsealed
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// (ie there is not an unsealed copy already available)
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if !alreadyUnsealed {
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// Remove the unsealed copy from local storage
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err = localStore.Remove(ctx, sector.ID, storiface.FTUnsealed, false)
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require.NoError(t, err)
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ppt.removeAllUnsealedSectorFiles(t)
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}
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// Read the piece
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offset := storiface.UnpaddedByteIndex(0)
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require.NoError(t, err)
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reader, unsealed, err := pp.ReadPiece(ctx, sector, offset, size, ticket, commD)
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require.NoError(t, err)
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requiresUnseal := !alreadyUnsealed
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require.Equal(t, requiresUnseal, unsealed)
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defer func() { _ = reader.Close() }()
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// Make sure the input matches the output
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readData, err := ioutil.ReadAll(reader)
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require.NoError(t, err)
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require.Equal(t, pieceData, string(readData))
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ppt.readPiece(t, storiface.UnpaddedByteIndex(0), size,
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!alreadyUnsealed, pieceData)
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}
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t.Run("already unsealed", func(t *testing.T) {
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@ -122,3 +73,252 @@ func TestPieceProviderReadPiece(t *testing.T) {
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runTest(t, false)
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})
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}
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func TestReadPieceRemoteWorkers(t *testing.T) {
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logging.SetAllLoggers(logging.LevelDebug)
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// miner's worker can only add pieces to an unsealed sector.
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sealerCfg := SealerConfig{
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ParallelFetchLimit: 10,
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AllowAddPiece: true,
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AllowPreCommit1: false,
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AllowPreCommit2: false,
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AllowCommit: false,
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AllowUnseal: false,
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}
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// test harness for an 8M sector.
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ppt := newPieceProviderTestHarness(t, sealerCfg, abi.RegisteredSealProof_StackedDrg8MiBV1)
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defer ppt.shutdown(t)
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// worker 2 will ONLY help with the sealing by first fetching
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// the unsealed file from the miner.
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ppt.addRemoteWorker(t, []sealtasks.TaskType{
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sealtasks.TTPreCommit1, sealtasks.TTPreCommit2, sealtasks.TTCommit1,
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sealtasks.TTFetch, sealtasks.TTFinalize,
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})
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// create a worker that can ONLY unseal and fetch
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ppt.addRemoteWorker(t, []sealtasks.TaskType{
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sealtasks.TTUnseal, sealtasks.TTFetch,
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})
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// run the test
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// add one piece that aligns with the padding/piece boundaries.
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pd1 := generatePieceData(8 * 127 * 4 * 1024)
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pi1 := ppt.addPiece(t, pd1)
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pd1size := pi1.Size.Unpadded()
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pd2 := generatePieceData(8 * 127 * 4 * 1024)
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pi2 := ppt.addPiece(t, pd2)
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pd2size := pi2.Size.Unpadded()
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// pre-commit 1
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pC1 := ppt.preCommit1(t)
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// pre-commit 2
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ppt.preCommit2(t, pC1)
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// finalize the sector so we declare to the index we have the sealed file
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// so the unsealing worker can later look it up and fetch it if needed
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// sending nil here will remove all unsealed files after sector is finalized.
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ppt.finalizeSector(t, nil)
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// Read the piece -> have to unseal since we removed the file.
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ppt.readPiece(t, storiface.UnpaddedByteIndex(0), pd1size,
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true, pd1)
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// Read the same piece again -> will NOT have to unseal.
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ppt.readPiece(t, storiface.UnpaddedByteIndex(0), pd1size, false, pd1)
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// remove the unsealed file and read again -> will have to unseal.
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ppt.removeAllUnsealedSectorFiles(t)
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ppt.readPiece(t, storiface.UnpaddedByteIndex(0), pd1size,
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true, pd1)
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// Read Piece 2 -> no unsealing as it got unsealed above.
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ppt.readPiece(t, storiface.UnpaddedByteIndex(pd1size), pd2size, false, pd2)
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// remove all unseal files -> Read Piece 2 -> will have to Unseal.
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ppt.removeAllUnsealedSectorFiles(t)
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ppt.readPiece(t, storiface.UnpaddedByteIndex(pd1size), pd2size, true, pd2)
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}
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type pieceProviderTestHarness struct {
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ctx context.Context
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index *stores.Index
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pp PieceProvider
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sector specstorage.SectorRef
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mgr *Manager
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ticket abi.SealRandomness
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commD cid.Cid
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localStores []*stores.Local
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servers []*http.Server
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addedPieces []abi.PieceInfo
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}
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func generatePieceData(size uint64) []byte {
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bz := make([]byte, size)
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rand.Read(bz)
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return bz
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}
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func newPieceProviderTestHarness(t *testing.T, mgrConfig SealerConfig, sectorProofType abi.RegisteredSealProof) *pieceProviderTestHarness {
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ctx := context.Background()
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// listen on tcp socket to create an http server later
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address := "0.0.0.0:0"
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nl, err := net.Listen("tcp", address)
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require.NoError(t, err)
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// create index, storage, local store & remote store.
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index := stores.NewIndex()
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storage := newTestStorage(t)
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localStore, err := stores.NewLocal(ctx, storage, index, []string{"http://" + nl.Addr().String() + "/remote"})
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require.NoError(t, err)
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remoteStore := stores.NewRemote(localStore, index, nil, 6000, &stores.DefaultPartialFileHandler{})
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// data stores for state tracking.
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dstore := ds_sync.MutexWrap(datastore.NewMapDatastore())
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wsts := statestore.New(namespace.Wrap(dstore, datastore.NewKey("/worker/calls")))
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smsts := statestore.New(namespace.Wrap(dstore, datastore.NewKey("/stmgr/calls")))
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mgr, err := New(ctx, localStore, remoteStore, storage, index, mgrConfig, wsts, smsts)
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require.NoError(t, err)
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// start a http server on the manager to serve sector file requests.
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svc := &http.Server{
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Addr: nl.Addr().String(),
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Handler: mgr,
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}
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go func() {
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_ = svc.Serve(nl)
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}()
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pp := NewPieceProvider(remoteStore, index, mgr)
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sector := specstorage.SectorRef{
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ID: abi.SectorID{
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Miner: 100,
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Number: 10,
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},
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ProofType: sectorProofType,
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}
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ticket := abi.SealRandomness{9, 9, 9, 9, 9, 9, 9, 9}
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ppt := &pieceProviderTestHarness{
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ctx: ctx,
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index: index,
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pp: pp,
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sector: sector,
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mgr: mgr,
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ticket: ticket,
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}
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ppt.servers = append(ppt.servers, svc)
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ppt.localStores = append(ppt.localStores, localStore)
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return ppt
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}
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func (p *pieceProviderTestHarness) addRemoteWorker(t *testing.T, tasks []sealtasks.TaskType) {
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// start an http Server
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address := "0.0.0.0:0"
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nl, err := net.Listen("tcp", address)
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require.NoError(t, err)
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localStore, err := stores.NewLocal(p.ctx, newTestStorage(t), p.index, []string{"http://" + nl.Addr().String() + "/remote"})
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require.NoError(t, err)
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fh := &stores.FetchHandler{
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Local: localStore,
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PfHandler: &stores.DefaultPartialFileHandler{},
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}
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mux := mux.NewRouter()
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mux.PathPrefix("/remote").HandlerFunc(fh.ServeHTTP)
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svc := &http.Server{
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Addr: nl.Addr().String(),
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Handler: mux,
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}
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go func() {
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_ = svc.Serve(nl)
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}()
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remote := stores.NewRemote(localStore, p.index, nil, 1000,
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&stores.DefaultPartialFileHandler{})
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dstore := ds_sync.MutexWrap(datastore.NewMapDatastore())
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csts := statestore.New(namespace.Wrap(dstore, datastore.NewKey("/stmgr/calls")))
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worker := newLocalWorker(nil, WorkerConfig{
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TaskTypes: tasks,
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}, remote, localStore, p.index, p.mgr, csts)
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p.servers = append(p.servers, svc)
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p.localStores = append(p.localStores, localStore)
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// register self with manager
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require.NoError(t, p.mgr.AddWorker(p.ctx, worker))
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}
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func (p *pieceProviderTestHarness) removeAllUnsealedSectorFiles(t *testing.T) {
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for i := range p.localStores {
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ls := p.localStores[i]
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require.NoError(t, ls.Remove(p.ctx, p.sector.ID, storiface.FTUnsealed, false))
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}
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}
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func (p *pieceProviderTestHarness) addPiece(t *testing.T, pieceData []byte) abi.PieceInfo {
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var existing []abi.UnpaddedPieceSize
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for _, pi := range p.addedPieces {
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existing = append(existing, pi.Size.Unpadded())
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}
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size := abi.UnpaddedPieceSize(len(pieceData))
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pieceInfo, err := p.mgr.AddPiece(p.ctx, p.sector, existing, size, bytes.NewReader(pieceData))
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require.NoError(t, err)
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p.addedPieces = append(p.addedPieces, pieceInfo)
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return pieceInfo
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}
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func (p *pieceProviderTestHarness) preCommit1(t *testing.T) specstorage.PreCommit1Out {
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preCommit1, err := p.mgr.SealPreCommit1(p.ctx, p.sector, p.ticket, p.addedPieces)
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require.NoError(t, err)
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return preCommit1
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}
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func (p *pieceProviderTestHarness) preCommit2(t *testing.T, pc1 specstorage.PreCommit1Out) {
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sectorCids, err := p.mgr.SealPreCommit2(p.ctx, p.sector, pc1)
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require.NoError(t, err)
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commD := sectorCids.Unsealed
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p.commD = commD
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}
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func (p *pieceProviderTestHarness) readPiece(t *testing.T, offset storiface.UnpaddedByteIndex, size abi.UnpaddedPieceSize,
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expectedHadToUnseal bool, expectedBytes []byte) {
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rd, isUnsealed, err := p.pp.ReadPiece(p.ctx, p.sector, offset, size, p.ticket, p.commD)
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require.NoError(t, err)
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require.NotNil(t, rd)
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require.Equal(t, expectedHadToUnseal, isUnsealed)
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defer func() { _ = rd.Close() }()
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// Make sure the input matches the output
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readData, err := ioutil.ReadAll(rd)
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require.NoError(t, err)
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require.Equal(t, expectedBytes, readData)
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}
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func (p *pieceProviderTestHarness) finalizeSector(t *testing.T, keepUnseal []specstorage.Range) {
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require.NoError(t, p.mgr.FinalizeSector(p.ctx, p.sector, keepUnseal))
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}
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func (p *pieceProviderTestHarness) shutdown(t *testing.T) {
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for _, svc := range p.servers {
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s := svc
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require.NoError(t, s.Shutdown(p.ctx))
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}
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}
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