// Copyright (C) 2019 Storj Labs, Inc. // See LICENSE for copying information package testplanet_test import ( "crypto/rand" "testing" "github.com/stretchr/testify/assert" "github.com/stretchr/testify/require" "storj.io/storj/internal/memory" "storj.io/storj/internal/testcontext" "storj.io/storj/internal/testplanet" "storj.io/storj/pkg/pb" "storj.io/storj/pkg/storj" "storj.io/storj/uplink" ) func TestUploadDownload(t *testing.T) { ctx := testcontext.New(t) defer ctx.Cleanup() planet, err := testplanet.New(t, 1, 6, 1) require.NoError(t, err) defer ctx.Check(planet.Shutdown) planet.Start(ctx) expectedData := make([]byte, 1*memory.MiB) _, err = rand.Read(expectedData) assert.NoError(t, err) err = planet.Uplinks[0].Upload(ctx, planet.Satellites[0], "testbucket", "test/path", expectedData) assert.NoError(t, err) data, err := planet.Uplinks[0].Download(ctx, planet.Satellites[0], "testbucket", "test/path") assert.NoError(t, err) assert.Equal(t, expectedData, data) } func TestDownloadWithSomeNodesOffline(t *testing.T) { testplanet.Run(t, testplanet.Config{ SatelliteCount: 1, StorageNodeCount: 5, UplinkCount: 1, }, func(t *testing.T, ctx *testcontext.Context, planet *testplanet.Planet) { t.Skip("flaky") // first, upload some remote data ul := planet.Uplinks[0] satellite := planet.Satellites[0] testData := make([]byte, 1*memory.MiB) _, err := rand.Read(testData) require.NoError(t, err) err = ul.UploadWithConfig(ctx, satellite, &uplink.RSConfig{ MinThreshold: 2, RepairThreshold: 3, SuccessThreshold: 4, MaxThreshold: 5, }, "testbucket", "test/path", testData) require.NoError(t, err) // get a remote segment from pointerdb pdb := satellite.Metainfo.Service listResponse, _, err := pdb.List("", "", "", true, 0, 0) require.NoError(t, err) var path string var pointer *pb.Pointer for _, v := range listResponse { path = v.GetPath() pointer, err = pdb.Get(path) require.NoError(t, err) if pointer.GetType() == pb.Pointer_REMOTE { break } } // calculate how many storagenodes to kill redundancy := pointer.GetRemote().GetRedundancy() remotePieces := pointer.GetRemote().GetRemotePieces() minReq := redundancy.GetMinReq() numPieces := len(remotePieces) toKill := numPieces - int(minReq) nodesToKill := make(map[storj.NodeID]bool) for i, piece := range remotePieces { if i >= toKill { continue } nodesToKill[piece.NodeId] = true } for _, node := range planet.StorageNodes { if nodesToKill[node.ID()] { err = planet.StopPeer(node) require.NoError(t, err) // mark node as offline in overlay cache _, err = satellite.Overlay.Service.UpdateUptime(ctx, node.ID(), false) require.NoError(t, err) } } // we should be able to download data without any of the original nodes newData, err := ul.Download(ctx, satellite, "testbucket", "test/path") require.NoError(t, err) require.Equal(t, testData, newData) }) }