Files
minio/cmd/erasure-server-pool-migration_test.go
T
Feng Ruohang fced863036 fix(storage): preserve tags during pool migration
Signed-off-by: Feng Ruohang <rh@vonng.com>
2026-09-16 20:22:37 +08:00

593 lines
24 KiB
Go

// Copyright (c) 2026 Feng Ruohang
//
// This file is part of Silo Object Storage stack
//
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU Affero General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// This program is distributed in the hope that it will be useful
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Affero General Public License for more details.
//
// You should have received a copy of the GNU Affero General Public License
// along with this program. If not, see <http://www.gnu.org/licenses/>.
package cmd
import (
"bytes"
"context"
"errors"
"fmt"
"io"
"maps"
"strings"
"sync"
"testing"
"time"
xhttp "github.com/minio/minio/internal/http"
)
const migrationTagRevision = ReservedMetadataPrefixLower + TaggingTimestamp
var migrationTagStates = []struct {
name, tags, revision string
hasRevision bool
}{
{name: "initial", tags: "team=storage&path=a%2Fb"},
{name: "empty-revision", tags: "team=storage", hasRevision: true},
{name: "invalid-revision", tags: "team=storage", revision: "invalid", hasRevision: true},
{name: "ordered", tags: "team=storage", revision: "2026-09-16T09:00:00Z", hasRevision: true},
{name: "cleared", revision: "2026-09-16T09:00:00Z", hasRevision: true},
{name: "never-tagged"},
{name: "empty-empty-revision", hasRevision: true},
{name: "empty-invalid-revision", revision: "invalid", hasRevision: true},
}
func TestMigrationObjectMetadata(t *testing.T) {
for _, state := range migrationTagStates {
for _, residual := range []bool{false, true} {
t.Run(fmt.Sprintf("%s/residual=%t", state.name, residual), func(t *testing.T) {
raw := map[string]string{
xhttp.AmzObjectTagging: state.tags,
"x-amz-meta-team": "storage",
"x-amz-meta-empty": "",
ReservedMetadataPrefix + "compression": "opaque-compression-state",
ReservedMetadataPrefix + "sealed-key": "opaque-key-state",
"x-amz-object-lock-retain-until-date": "2030-01-01T00:00:00Z",
"x-amz-object-lock-legal-hold": "ON",
"x-amz-tagging": "keep-noncanonical-metadata",
ReservedMetadataPrefix + "actual-size": "42",
ReservedMetadataPrefix + "replica-status": "opaque-replication-state",
}
if state.hasRevision {
raw[migrationTagRevision] = state.revision
}
oi := (FileInfo{Metadata: raw}).ToObjectInfo("bucket", "object", false)
if residual {
oi.UserDefined[xhttp.AmzObjectTagging] = "stale=raw"
}
before := maps.Clone(oi.UserDefined)
got := migrationObjectMetadata(oi)
if got == nil || !maps.Equal(before, oi.UserDefined) {
t.Fatal("helper must return a new non-nil map without changing the read snapshot")
}
value, exists := got[xhttp.AmzObjectTagging]
if value != state.tags || exists != (state.tags != "") {
t.Fatalf("raw tags=(%q,%t), want (%q,%t)", value, exists, state.tags, state.tags != "")
}
stamp, present := got[migrationTagRevision]
if stamp != state.revision || present != state.hasRevision {
t.Fatalf("revision=(%q,%t), want (%q,%t)", stamp, present, state.revision, state.hasRevision)
}
for key, value := range before {
if stored, exists := got[key]; key != xhttp.AmzObjectTagging && (!exists || stored != value) {
t.Errorf("lost metadata %q", key)
}
}
got["x-amz-meta-team"] = "changed"
if !maps.Equal(before, oi.UserDefined) {
t.Fatal("output aliases the read snapshot")
}
})
}
}
for _, metadata := range []map[string]string{nil, {}} {
got := migrationObjectMetadata(ObjectInfo{UserDefined: metadata})
if got == nil || len(got) != 0 {
t.Fatalf("empty input must yield a writable empty map: %#v", got)
}
got["new"] = "value"
if len(metadata) != 0 {
t.Fatal("empty map input was aliased")
}
}
}
// Allocation ignores the host's used-space percentage, as in the existing tag
// fixtures. All object data and metadata still use real erasure-storage disks.
func migrationTestPools(t *testing.T) (*erasureServerPools, string) {
t.Helper()
z, bucket := consistencyPools(t)
for _, pool := range z.serverPools {
for _, set := range pool.sets {
original := set.getDisks
disks := append([]StorageAPI(nil), original()...)
for i := range disks {
disks[i] = tagTestCapacityDisk{StorageAPI: disks[i]}
}
set.getDisks = func() []StorageAPI { return disks }
t.Cleanup(func() { set.getDisks = original })
}
}
return z, bucket
}
func migrationTestMover(t *testing.T, z *erasureServerPools, source int, kind string) func(context.Context, int, string, *GetObjectReader) error {
t.Helper()
if kind == "rebalance" {
z.rebalMu.Lock()
z.rebalMeta = &rebalanceMeta{PoolStats: []*rebalanceStats{{}, {}}}
z.rebalMeta.PoolStats[source] = &rebalanceStats{Participating: true, Info: rebalanceInfo{Status: rebalStarted}}
z.rebalMu.Unlock()
t.Cleanup(func() { z.rebalMu.Lock(); z.rebalMeta = nil; z.rebalMu.Unlock() })
return z.rebalanceObject
}
z.poolMetaMutex.Lock()
z.poolMeta.Pools[source].Decommission = &PoolDecommissionInfo{}
z.poolMetaMutex.Unlock()
t.Cleanup(func() { z.poolMetaMutex.Lock(); z.poolMeta.Pools[source].Decommission = nil; z.poolMetaMutex.Unlock() })
return z.decommissionObject
}
func migrationTestObject(t *testing.T, z *erasureServerPools, bucket, object string, source int, multipart bool, parts []string, opts ObjectOptions) ObjectInfo {
t.Helper()
if !multipart {
oi := putConsistencyObject(t, z, bucket, object, source, strings.Join(parts, ""), opts)
return migrationTestPersistedInfo(t, z, source, oi)
}
mp, err := z.serverPools[source].NewMultipartUpload(t.Context(), bucket, object, opts)
if err != nil {
t.Fatal(err)
}
completed := make([]CompletePart, len(parts))
for i, body := range parts {
part, err := z.serverPools[source].PutObjectPart(t.Context(), bucket, object, mp.UploadID, i+1,
mustGetPutObjReader(t, strings.NewReader(body), int64(len(body)), "", ""), ObjectOptions{})
if err != nil {
t.Fatal(err)
}
completed[i] = CompletePart{PartNumber: i + 1, ETag: part.ETag}
}
oi, err := z.serverPools[source].CompleteMultipartUpload(t.Context(), bucket, object, mp.UploadID, completed, opts)
if err != nil {
t.Fatal(err)
}
if !oi.isMultipart() {
t.Fatal("fixture did not create a multipart object")
}
return migrationTestPersistedInfo(t, z, source, oi)
}
func migrationTestPersistedInfo(t *testing.T, z *erasureServerPools, pool int, oi ObjectInfo) ObjectInfo {
t.Helper()
// PUT can return transient fields such as tier-free-versionID that are not
// stored. Take the same persisted read representation used by the movers.
got, err := z.serverPools[pool].GetObjectInfo(t.Context(), oi.Bucket, oi.Name, ObjectOptions{VersionID: migrationTestVersion(oi)})
if err != nil {
t.Fatal(err)
}
return got
}
func migrationTestVersion(oi ObjectInfo) string {
if oi.VersionID == "" {
return nullVersionID
}
return oi.VersionID
}
func migrationTestReader(t *testing.T, z *erasureServerPools, source int, oi ObjectInfo) *GetObjectReader {
t.Helper()
gr, err := z.serverPools[source].GetObjectNInfo(t.Context(), oi.Bucket, oi.Name, nil, nil,
ObjectOptions{VersionID: migrationTestVersion(oi), NoLock: true, NoDecryption: true})
if err != nil {
t.Fatal(err)
}
t.Cleanup(func() { gr.Close() })
return gr
}
func migrationTestStored(t *testing.T, z *erasureServerPools, pool int, original ObjectInfo, tags, revision string, hasRevision bool, body string) {
t.Helper()
version := migrationTestVersion(original)
got, err := z.serverPools[pool].GetObjectInfo(t.Context(), original.Bucket, original.Name, ObjectOptions{VersionID: version})
if err != nil {
t.Fatal(err)
}
if got.UserTags != tags || got.ETag != original.ETag || !got.ModTime.Equal(original.ModTime) || got.VersionID != original.VersionID || got.Size != original.Size {
t.Errorf("pool %d changed tags/object identity: tags=%q want=%q version=%q/%q etag=%q/%q size=%d/%d mtime=%v/%v", pool, got.UserTags, tags, got.VersionID, original.VersionID, got.ETag, original.ETag, got.Size, original.Size, got.ModTime, original.ModTime)
}
infos, errs := readAllFileInfo(t.Context(), z.serverPools[pool].getHashedSet(original.Name).getDisks(), "", original.Bucket, original.Name, version, false, false)
for disk, fi := range infos {
if errs[disk] != nil {
t.Fatalf("pool %d disk %d: %v", pool, disk, errs[disk])
}
stamp, exists := fi.Metadata[migrationTagRevision]
if fi.Metadata[xhttp.AmzObjectTagging] != tags || stamp != revision || exists != hasRevision {
t.Errorf("pool %d disk %d: tags=%q revision=(%q,%t), want %q (%q,%t)", pool, disk, fi.Metadata[xhttp.AmzObjectTagging], stamp, exists, tags, revision, hasRevision)
}
for key, value := range original.UserDefined {
if key != migrationTagRevision && fi.Metadata[key] != value {
t.Errorf("pool %d disk %d lost metadata %q", pool, disk, key)
}
}
}
gr, err := z.serverPools[pool].GetObjectNInfo(t.Context(), original.Bucket, original.Name, nil, nil, ObjectOptions{VersionID: version})
if err != nil {
t.Fatal(err)
}
data, err := io.ReadAll(gr)
gr.Close()
if err != nil || !bytes.Equal(data, []byte(body)) {
t.Fatalf("pool %d content changed: bytes=%d err=%v", pool, len(data), err)
}
}
func TestPoolsMigrationPreservesTagState(t *testing.T) {
z, bucket := migrationTestPools(t)
for _, kind := range []string{"rebalance", "decommission"} {
for _, method := range []string{"put", "multipart"} {
for source := range 2 {
for _, state := range migrationTagStates {
t.Run(fmt.Sprintf("%s/%s/source=%d/%s", kind, method, source, state.name), func(t *testing.T) {
move := migrationTestMover(t, z, source, kind)
meta := map[string]string{xhttp.AmzObjectTagging: state.tags, "x-amz-meta-owner": "retained"}
if state.hasRevision {
meta[migrationTagRevision] = state.revision
}
oi := migrationTestObject(t, z, bucket, t.Name(), source, method == "multipart", []string{"payload"}, ObjectOptions{Versioned: true, UserDefined: meta})
migrationTestStored(t, z, source, oi, state.tags, state.revision, state.hasRevision, "payload")
gr := migrationTestReader(t, z, source, oi)
before := maps.Clone(gr.ObjInfo.UserDefined)
if err := move(t.Context(), source, bucket, gr); err != nil {
t.Fatal(err)
}
if !maps.Equal(before, gr.ObjInfo.UserDefined) {
t.Error("migration modified its source snapshot")
}
migrationTestStored(t, z, 1-source, oi, state.tags, state.revision, state.hasRevision, "payload")
})
}
}
}
}
}
type migrationTestGate struct {
entered, resume chan struct{}
once, release sync.Once
}
func newMigrationTestGate() *migrationTestGate {
return &migrationTestGate{entered: make(chan struct{}), resume: make(chan struct{})}
}
func (g *migrationTestGate) wait(ctx context.Context) error {
g.once.Do(func() { close(g.entered) })
select {
case <-g.resume:
return nil
case <-ctx.Done():
return ctx.Err()
}
}
func (g *migrationTestGate) unblock() { g.release.Do(func() { close(g.resume) }) }
type migrationTestGateReader struct {
io.Reader
ctx context.Context
gate *migrationTestGate
}
func (r migrationTestGateReader) Read(p []byte) (int, error) {
if err := r.gate.wait(r.ctx); err != nil {
return 0, err
}
return r.Reader.Read(p)
}
func TestPoolsMigrationRechecksTags(t *testing.T) {
z, bucket := migrationTestPools(t)
const recent = "2026-09-16T10:00:00Z"
for _, kind := range []string{"rebalance", "decommission"} {
for _, method := range []string{"put", "multipart"} {
for source := range 2 {
for _, tags := range []string{"state=after", ""} {
t.Run(fmt.Sprintf("%s/%s/source=%d/clear=%t", kind, method, source, tags == ""), func(t *testing.T) {
move := migrationTestMover(t, z, source, kind)
oi := migrationTestObject(t, z, bucket, t.Name(), source, method == "multipart", []string{"payload"}, ObjectOptions{
Versioned: true, UserDefined: map[string]string{xhttp.AmzObjectTagging: "state=before"},
})
gr := migrationTestReader(t, z, source, oi)
before := maps.Clone(gr.ObjInfo.UserDefined)
ctx, cancel := context.WithTimeout(t.Context(), 30*time.Second)
defer cancel()
gate := newMigrationTestGate()
done, finished := make(chan error, 1), make(chan struct{})
if method == "multipart" {
// The first part read is after persisted upload initialization,
// but before completion takes the object lock and reconciles.
gr.Reader = migrationTestGateReader{Reader: gr.Reader, ctx: ctx, gate: gate}
go func() { defer close(finished); done <- move(ctx, source, bucket, gr) }()
defer func() { gate.unblock(); cancel(); <-finished }()
select {
case <-gate.entered:
case err := <-done:
t.Fatalf("migration finished before the part barrier: %v", err)
case <-ctx.Done():
t.Fatal(ctx.Err())
}
uploads, err := z.serverPools[1-source].listMultipartUploadsExact(ctx, bucket, oi.Name)
if err != nil || len(uploads.Uploads) != 1 {
t.Fatalf("upload not persisted at barrier: %+v, %v", uploads, err)
}
info, err := z.serverPools[1-source].GetMultipartInfo(ctx, bucket, oi.Name, uploads.Uploads[0].UploadID, ObjectOptions{})
if err != nil || info.UserDefined[xhttp.AmzObjectTagging] != "state=before" {
t.Fatalf("upload lost snapshot tags: %v, %v", info.UserDefined, err)
}
}
// For ordinary PUT this must finish before calling the mover:
// blocking its data Read would already hold the object lock.
opts := ObjectOptions{VersionID: migrationTestVersion(oi), UserDefined: map[string]string{migrationTagRevision: recent}}
var err error
if tags == "" {
_, err = z.DeleteObjectTags(ctx, bucket, oi.Name, opts)
} else {
_, err = z.PutObjectTags(ctx, bucket, oi.Name, tags, opts)
}
if err != nil {
t.Fatal(err)
}
if gr.ObjInfo.UserTags != "state=before" || !maps.Equal(before, gr.ObjInfo.UserDefined) {
t.Fatal("test must retain the old source snapshot")
}
migrationTestStored(t, z, source, oi, tags, recent, true, "payload")
if method == "multipart" {
gate.unblock()
err = <-done
} else {
err = move(ctx, source, bucket, gr)
}
if err != nil {
t.Fatal(err)
}
if !maps.Equal(before, gr.ObjInfo.UserDefined) {
t.Error("reconciliation changed the reader's map")
}
migrationTestStored(t, z, 1-source, oi, tags, recent, true, "payload")
})
}
}
}
}
}
type migrationTestMetadataGateDisk struct {
StorageAPI
bucket, object string
gate *migrationTestGate
}
func (d migrationTestMetadataGateDisk) UpdateMetadata(ctx context.Context, volume, path string, fi FileInfo, opts UpdateMetadataOpts) error {
if volume == d.bucket && path == d.object {
if err := d.gate.wait(ctx); err != nil {
return err
}
}
return d.StorageAPI.UpdateMetadata(ctx, volume, path, fi, opts)
}
func TestPoolsMigrationTagsDuringCleanup(t *testing.T) {
z, bucket := migrationTestPools(t)
const recent = "2026-09-16T10:00:00Z"
for _, kind := range []string{"rebalance", "decommission"} {
for source := range 2 {
for _, tags := range []string{"state=after", ""} {
for _, interrupt := range []bool{false, true} {
t.Run(fmt.Sprintf("%s/source=%d/clear=%t/interrupt=%t", kind, source, tags == "", interrupt), func(t *testing.T) {
move := migrationTestMover(t, z, source, kind)
oi := migrationTestObject(t, z, bucket, t.Name(), source, false, []string{"payload"}, ObjectOptions{
Versioned: true, UserDefined: map[string]string{xhttp.AmzObjectTagging: "state=before"},
})
if err := move(t.Context(), source, bucket, migrationTestReader(t, z, source, oi)); err != nil {
t.Fatal(err)
}
migrationTestStored(t, z, 1-source, oi, "state=before", "", false, "payload")
ctx, cancel := context.WithTimeout(t.Context(), 30*time.Second)
defer cancel()
mutate := func() (ObjectInfo, error) {
opts := ObjectOptions{VersionID: migrationTestVersion(oi), UserDefined: map[string]string{migrationTagRevision: recent}}
if tags == "" {
return z.DeleteObjectTags(ctx, bucket, oi.Name, opts)
}
return z.PutObjectTags(ctx, bucket, oi.Name, tags, opts)
}
set := z.serverPools[source].getHashedSet(oi.Name)
cleanup := func() {
// Use the same source prefix cleanup as both outer movers.
if _, err := set.DeleteObject(ctx, bucket, oi.Name, ObjectOptions{DeletePrefix: true, DeletePrefixObject: true}); err != nil {
t.Fatal(err)
}
}
var updated ObjectInfo
if !interrupt {
var err error
updated, err = mutate()
if err != nil {
t.Fatal(err)
}
cleanup()
} else {
gate := newMigrationTestGate()
original := set.getDisks
disks := append([]StorageAPI(nil), original()...)
for i := range disks {
disks[i] = migrationTestMetadataGateDisk{StorageAPI: disks[i], bucket: bucket, object: oi.Name, gate: gate}
}
set.getDisks = func() []StorageAPI { return disks }
defer func() { set.getDisks = original }()
done, finished := make(chan error, 1), make(chan struct{})
go func() { defer close(finished); _, err := mutate(); done <- err }()
defer func() { gate.unblock(); cancel(); <-finished }()
select {
case <-gate.entered:
case err := <-done:
t.Fatalf("metadata update missed the barrier: %v", err)
case <-ctx.Done():
t.Fatal(ctx.Err())
}
cleanup()
gate.unblock()
if err := <-done; err == nil {
t.Fatal("update reported success after its source copy was removed")
}
<-finished
set.getDisks = original
var err error
updated, err = mutate()
if err != nil {
t.Fatalf("metadata retry did not converge: %v", err)
}
}
if _, err := z.serverPools[source].GetObjectInfo(ctx, bucket, oi.Name, ObjectOptions{VersionID: oi.VersionID}); !isErrVersionNotFound(err) && !isErrObjectNotFound(err) {
t.Fatalf("source cleanup left a copy: %v", err)
}
migrationTestStored(t, z, 1-source, oi, tags, updated.UserDefined[migrationTagRevision], true, "payload")
})
}
}
}
}
}
func TestPoolsMigrationVersionHistory(t *testing.T) {
z, bucket := migrationTestPools(t)
for _, kind := range []string{"rebalance", "decommission"} {
for _, method := range []string{"put", "multipart"} {
for _, versioning := range []string{"unversioned", "null", "history"} {
t.Run(kind+"/"+method+"/"+versioning, func(t *testing.T) {
move := migrationTestMover(t, z, 0, kind)
opts := ObjectOptions{
Versioned: versioning == "history", VersionSuspended: versioning == "null",
MTime: time.Date(2026, 9, 16, 8, 0, 0, 0, time.UTC),
UserDefined: map[string]string{xhttp.AmzObjectTagging: "version=old"},
}
versions := []ObjectInfo{migrationTestObject(t, z, bucket, t.Name(), 0, method == "multipart", []string{"old"}, opts)}
if versioning == "history" {
opts.MTime = opts.MTime.Add(time.Minute)
versions = append(versions, migrationTestObject(t, z, bucket, t.Name(), 0, method == "multipart", []string{"old"}, opts))
}
var newest ObjectInfo
if versioning != "unversioned" {
newest = migrationTestObject(t, z, bucket, t.Name(), 0, false, []string{"latest"}, ObjectOptions{
Versioned: true, MTime: opts.MTime.Add(time.Minute),
UserDefined: map[string]string{xhttp.AmzObjectTagging: "version=new"},
})
}
for _, oi := range versions {
if err := move(t.Context(), 0, bucket, migrationTestReader(t, z, 0, oi)); err != nil {
t.Fatal(err)
}
migrationTestStored(t, z, 1, oi, "version=old", "", false, "old")
}
if versioning != "unversioned" {
migrationTestStored(t, z, 0, newest, "version=new", "", false, "latest")
if _, err := z.serverPools[1].GetObjectInfo(t.Context(), bucket, t.Name(), ObjectOptions{VersionID: newest.VersionID}); !isErrVersionNotFound(err) {
t.Fatalf("moving an addressed version affected the newer version: %v", err)
}
}
})
}
}
}
}
func TestPoolsMigrationMultipartParts(t *testing.T) {
z, bucket := migrationTestPools(t)
parts := []string{strings.Repeat("a", 5<<20), "tail-with-tags"}
body := strings.Join(parts, "")
for _, kind := range []string{"rebalance", "decommission"} {
for source := range 2 {
t.Run(fmt.Sprintf("%s/source=%d", kind, source), func(t *testing.T) {
move := migrationTestMover(t, z, source, kind)
oi := migrationTestObject(t, z, bucket, t.Name(), source, true, parts, ObjectOptions{
Versioned: true, UserDefined: map[string]string{xhttp.AmzObjectTagging: "multipart=kept"},
})
if err := move(t.Context(), source, bucket, migrationTestReader(t, z, source, oi)); err != nil {
t.Fatal(err)
}
migrationTestStored(t, z, 1-source, oi, "multipart=kept", "", false, body)
got, err := z.serverPools[1-source].GetObjectInfo(t.Context(), bucket, oi.Name, ObjectOptions{VersionID: oi.VersionID})
if err != nil || len(got.Parts) != len(oi.Parts) {
t.Fatalf("parts changed: %+v, %v", got.Parts, err)
}
for i, part := range got.Parts {
old := oi.Parts[i]
if part.Number != old.Number || part.Size != old.Size || part.ActualSize != old.ActualSize || part.ETag != old.ETag || !bytes.Equal(part.Index, old.Index) {
t.Errorf("part %d changed: %+v / %+v", i, part, old)
}
}
start := int64(len(parts[0]) - 3)
gr, err := z.serverPools[1-source].GetObjectNInfo(t.Context(), bucket, oi.Name, &HTTPRangeSpec{Start: start, End: start + 7}, nil, ObjectOptions{VersionID: oi.VersionID})
if err != nil {
t.Fatal(err)
}
data, err := io.ReadAll(gr)
gr.Close()
if err != nil || string(data) != body[start:start+8] {
t.Fatalf("cross-part range changed: %q, %v", data, err)
}
})
}
}
}
func TestPoolsMigrationUnreadablePool(t *testing.T) {
z, bucket := migrationTestPools(t)
for _, kind := range []string{"rebalance", "decommission"} {
for _, method := range []string{"put", "multipart"} {
t.Run(kind+"/"+method, func(t *testing.T) {
move := migrationTestMover(t, z, 0, kind)
oi := migrationTestObject(t, z, bucket, t.Name(), 0, method == "multipart", []string{"payload"}, ObjectOptions{
Versioned: true, UserDefined: map[string]string{xhttp.AmzObjectTagging: "keep=source"},
})
gr := migrationTestReader(t, z, 0, oi)
set := z.serverPools[0].getHashedSet(oi.Name)
original := set.getDisks
disks := append([]StorageAPI(nil), original()...)
for i := range disks {
disks[i] = consistencyReadFaultDisk{StorageAPI: disks[i], bucket: bucket, object: oi.Name}
}
set.getDisks = func() []StorageAPI { return disks }
defer func() { set.getDisks = original }()
err := move(t.Context(), 0, bucket, gr)
var quorum InsufficientReadQuorum
if !errors.As(err, &quorum) {
t.Fatalf("unreadable pool must fail migration with read quorum error: %v", err)
}
set.getDisks = original
migrationTestStored(t, z, 0, oi, "keep=source", "", false, "payload")
if _, err := z.serverPools[1].GetObjectInfo(t.Context(), bucket, oi.Name, ObjectOptions{VersionID: oi.VersionID}); !isErrVersionNotFound(err) && !isErrObjectNotFound(err) {
t.Fatalf("failed migration committed a target version: %v", err)
}
})
}
}
}