Files
minio/cmd/erasure-multipart-listing_test.go
T
2026-09-16 16:30:43 +08:00

820 lines
28 KiB
Go

// Copyright (c) 2026 Ruohang Feng
// SPDX-License-Identifier: AGPL-3.0-or-later
package cmd
import (
"context"
"encoding/base64"
"encoding/json"
"encoding/xml"
"errors"
"fmt"
"net/http"
"net/http/httptest"
"slices"
"strconv"
"sync"
"sync/atomic"
"testing"
"time"
"github.com/minio/minio/internal/config/storageclass"
)
// Check the real handler and storage path, including a successful abort between
// pages. Choose IDs increasing in both initiation time and lexical order so the
// failure does not depend on differing interpretations of S3 marker ordering.
func TestMultipartListingAbortBetweenHTTPPages(t *testing.T) {
z, _ := consistencyPools(t)
bucket, router, err := initAPIHandlerTest(t.Context(), z, []string{"ListMultipartUploads", "AbortMultipart"}, MakeBucketOptions{})
if err != nil {
t.Fatal(err)
}
setMultipartListingTestMode(t, false)
var firstID, secondID string
for attempt := 0; attempt < 32; attempt++ {
one, err := z.NewMultipartUpload(t.Context(), bucket, "a", ObjectOptions{})
if err != nil {
t.Fatal(err)
}
two, err := z.NewMultipartUpload(t.Context(), bucket, "a", ObjectOptions{})
if err != nil {
t.Fatal(err)
}
if one.UploadID < two.UploadID {
firstID, secondID = one.UploadID, two.UploadID
break
}
for _, id := range []string{one.UploadID, two.UploadID} {
if err := z.AbortMultipartUpload(t.Context(), bucket, "a", id, ObjectOptions{}); err != nil {
t.Fatal(err)
}
}
}
if firstID == "" {
t.Fatal("could not construct increasing upload IDs")
}
if _, err := z.NewMultipartUpload(t.Context(), bucket, "b", ObjectOptions{}); err != nil {
t.Fatal(err)
}
request := func(method, u string) *httptest.ResponseRecorder {
t.Helper()
req, err := newTestSignedRequestV4(method, u, 0, nil, globalActiveCred.AccessKey, globalActiveCred.SecretKey, nil)
if err != nil {
t.Fatal(err)
}
rec := httptest.NewRecorder()
router.ServeHTTP(rec, req)
return rec
}
list := func(keyMarker, uploadMarker string, limit int) ListMultipartUploadsResponse {
t.Helper()
rec := request(http.MethodGet, getListMultipartUploadsURLWithParams("", bucket, "", keyMarker, uploadMarker, "", strconv.Itoa(limit)))
if rec.Code != http.StatusOK {
t.Fatalf("list HTTP %d: %s", rec.Code, rec.Body.String())
}
var result ListMultipartUploadsResponse
if err := xml.Unmarshal(rec.Body.Bytes(), &result); err != nil {
t.Fatal(err)
}
return result
}
first := list("", "", 1)
if len(first.Uploads) != 1 || first.Uploads[0].UploadID != firstID || !first.IsTruncated {
t.Fatalf("unexpected first page: %+v", first)
}
rec := request(http.MethodDelete, getAbortMultipartUploadURL("", bucket, "a", firstID))
if rec.Code != http.StatusNoContent {
t.Fatalf("abort HTTP %d: %s", rec.Code, rec.Body.String())
}
rest := list(first.NextKeyMarker, first.NextUploadIDMarker, 10)
var keys []string
for _, upload := range rest.Uploads {
keys = append(keys, upload.Key)
}
t.Logf("GET first page=200; DELETE marker=204; GET next page=200 keys=%v truncated=%v", keys, rest.IsTruncated)
if _, err := z.GetMultipartInfo(t.Context(), bucket, "a", secondID, ObjectOptions{}); err != nil {
t.Fatalf("remaining upload is not valid: %v", err)
}
if len(rest.Uploads) != 2 || rest.Uploads[0].UploadID != secondID {
t.Fatalf("valid remaining upload for key a is missing from continuation: %+v", rest.Uploads)
}
}
type multipartListingFaultDisk struct {
StorageAPI
read func(context.Context, string, string, string, string, ReadOptions) (FileInfo, error)
delete func(context.Context, string, string, DeleteOptions) error
}
func (d multipartListingFaultDisk) ReadVersion(ctx context.Context, original, volume, object, version string, opts ReadOptions) (FileInfo, error) {
if d.read != nil {
return d.read(ctx, original, volume, object, version, opts)
}
return d.StorageAPI.ReadVersion(ctx, original, volume, object, version, opts)
}
func (d multipartListingFaultDisk) Delete(ctx context.Context, volume, object string, opts DeleteOptions) error {
if d.delete != nil {
return d.delete(ctx, volume, object, opts)
}
return d.StorageAPI.Delete(ctx, volume, object, opts)
}
func TestMultipartListingLegacyPreflight(t *testing.T) {
z, set, bucket := multipartListingFixture(t)
const other = "multipart-legacy-other"
if err := z.MakeBucket(t.Context(), other, MakeBucketOptions{}); err != nil {
t.Fatal(err)
}
old, err := z.NewMultipartUpload(t.Context(), other, "old", ObjectOptions{})
if err != nil {
t.Fatal(err)
}
fi, metadata, err := set.checkUploadIDExists(t.Context(), other, "old", old.UploadID, true)
if err != nil {
t.Fatal(err)
}
for i := range metadata {
delete(metadata[i].Metadata, multipartMetaBucket)
delete(metadata[i].Metadata, multipartMetaObject)
}
if _, err = writeAllMetadata(t.Context(), set.getDisks(), other, minioMetaMultipartBucket,
set.getUploadIDDir(other, "old", old.UploadID), metadata, fi.WriteQuorum(set.defaultWQuorum())); err != nil {
t.Fatal(err)
}
if _, err = z.NewMultipartUpload(t.Context(), bucket, "a", ObjectOptions{}); err != nil {
t.Fatal(err)
}
z.mpCache.Clear()
t.Run("legacy-upgrade", func(t *testing.T) {
setMultipartListingTestMode(t, true)
exact, err := z.ListMultipartUploads(t.Context(), other, "old", "", "", "", 10)
if err != nil {
t.Fatal(err)
}
requireMultipartUploadKeys(t, exact, "old")
const empty = "multipart-legacy-empty"
if err := z.MakeBucket(t.Context(), empty, MakeBucketOptions{}); err != nil {
t.Fatal(err)
}
got, err := z.ListMultipartUploads(t.Context(), empty, "", "", "", "", 10)
if err != nil || len(got.Uploads) != 0 {
t.Fatalf("old upload in another bucket broke legacy listing: %+v %v", got, err)
}
})
_, err = z.ListMultipartUploads(t.Context(), bucket, "", "", "", "", 10)
if !errors.Is(err, errMultipartListingLegacy) {
t.Fatalf("old upload in another bucket: %v", err)
}
report, err := z.multipartPreflight(t.Context())
if err != nil || report.Ready || !report.Complete || report.LegacyUploads != 1 {
t.Fatalf("legacy preflight: %+v %v", report, err)
}
if err = z.AbortMultipartUpload(t.Context(), other, "old", old.UploadID, ObjectOptions{}); err != nil {
t.Fatal(err)
}
report, err = z.multipartPreflight(t.Context())
if err != nil || !report.Ready || report.LegacyUploads != 0 {
t.Fatalf("drained preflight: %+v %v", report, err)
}
got, err := z.ListMultipartUploads(t.Context(), bucket, "", "", "", "", 10)
if err != nil {
t.Fatal(err)
}
requireMultipartUploadKeys(t, got, "a")
}
func TestMultipartListingIdentityFallback(t *testing.T) {
for _, kind := range []string{"old", "corrupt", "read-failure", "wrong-bucket"} {
t.Run(kind, func(t *testing.T) {
z, set, bucket := multipartListingFixture(t)
if _, err := z.NewMultipartUpload(t.Context(), bucket, "a", ObjectOptions{}); err != nil {
t.Fatal(err)
}
original := set.getDisks
t.Cleanup(func() { set.getDisks = original })
var first atomic.Bool
set.getDisks = func() []StorageAPI {
disks := append([]StorageAPI(nil), original()...)
for i, d := range disks {
disks[i] = multipartListingFaultDisk{StorageAPI: d, read: func(ctx context.Context, b, v, p, version string, opts ReadOptions) (FileInfo, error) {
fi, err := d.ReadVersion(ctx, b, v, p, version, opts)
if v == minioMetaMultipartBucket && first.CompareAndSwap(false, true) {
if kind == "read-failure" {
return FileInfo{}, errDiskNotFound
}
if kind == "corrupt" {
return FileInfo{}, errFileCorrupt
}
fi.Metadata = cloneMSS(fi.Metadata)
if kind == "old" {
delete(fi.Metadata, multipartMetaBucket)
} else {
fi.Metadata[multipartMetaBucket] = "another-bucket"
}
}
return fi, err
}}
}
return disks
}
got, err := z.ListMultipartUploads(t.Context(), bucket, "", "", "", "", 10)
if err != nil {
t.Fatal(err)
}
requireMultipartUploadKeys(t, got, "a")
})
}
}
func TestMultipartAbortPoolsAndRetry(t *testing.T) {
z, bucket := consistencyPools(t)
setMultipartListingTestMode(t, false)
mp, err := z.serverPools[1].NewMultipartUpload(t.Context(), bucket, "a", ObjectOptions{})
if err != nil {
t.Fatal(err)
}
emptySet := z.serverPools[0].getHashedSet("a")
original := emptySet.getDisks
t.Cleanup(func() { emptySet.getDisks = original })
emptySet.getDisks = func() []StorageAPI {
disks := append([]StorageAPI(nil), original()...)
for i, d := range disks {
disks[i] = multipartListingFaultDisk{StorageAPI: d, read: func(context.Context, string, string, string, string, ReadOptions) (FileInfo, error) {
return FileInfo{}, errDiskNotFound
}}
}
return disks
}
err = z.AbortMultipartUpload(t.Context(), bucket, "a", mp.UploadID, ObjectOptions{})
if err == nil || toAPIError(t.Context(), err).HTTPStatusCode != 503 {
t.Fatalf("unknown pool must not acknowledge cancellation: %v", err)
}
emptySet.getDisks = original
err = z.AbortMultipartUpload(t.Context(), bucket, "a", mp.UploadID, ObjectOptions{})
if _, ok := err.(InvalidUploadID); !ok {
t.Fatalf("retry after all pools confirm absence: %v", err)
}
mp, err = z.serverPools[1].NewMultipartUpload(t.Context(), bucket, "a", ObjectOptions{})
if err != nil {
t.Fatal(err)
}
if err = z.AbortMultipartUpload(t.Context(), bucket, "a", mp.UploadID, ObjectOptions{}); err != nil {
t.Fatal(err)
}
if _, err = z.serverPools[1].GetMultipartInfo(t.Context(), bucket, "a", mp.UploadID, ObjectOptions{}); err == nil {
t.Fatal("empty first pool hid the actual upload")
}
}
func TestMultipartAbortRetryBelowReadQuorum(t *testing.T) {
z, set, bucket := multipartListingFixture(t)
mp, err := z.NewMultipartUpload(t.Context(), bucket, "a", ObjectOptions{})
if err != nil {
t.Fatal(err)
}
original := set.getDisks
t.Cleanup(func() { set.getDisks = original })
set.getDisks = func() []StorageAPI {
disks := append([]StorageAPI(nil), original()...)
disks[3] = nil
d := disks[2]
disks[2] = multipartListingFaultDisk{StorageAPI: d, delete: func(ctx context.Context, v, p string, opts DeleteOptions) error {
if err := d.Delete(ctx, v, p, opts); err != nil {
return err
}
return context.DeadlineExceeded // operation finished, acknowledgement lost
}}
return disks
}
if err = z.AbortMultipartUpload(t.Context(), bucket, "a", mp.UploadID, ObjectOptions{}); err == nil {
t.Fatal("lost acknowledgement must fail")
}
set.getDisks = original
if err = z.AbortMultipartUpload(t.Context(), bucket, "a", mp.UploadID, ObjectOptions{}); err != nil {
t.Fatalf("one remaining metadata copy prevented retry: %v", err)
}
}
func TestMultipartListingMarkerHTTP(t *testing.T) {
z, _ := consistencyPools(t)
bucket, router, err := initAPIHandlerTest(t.Context(), z, []string{"ListMultipartUploads"}, MakeBucketOptions{})
if err != nil {
t.Fatal(err)
}
setMultipartListingTestMode(t, false)
for _, tc := range []struct {
key, marker string
status int
}{
{"", "not-base64=", 200},
{"a", "not-base64=", 404},
{"a", base64.RawURLEncoding.EncodeToString([]byte("not-native")), 400},
{"a", multipartListingTestID(time.Unix(100, 0), 1), 200},
} {
u := getListMultipartUploadsURLWithParams("", bucket, "", tc.key, tc.marker, "", "10")
req, err := newTestSignedRequestV4(http.MethodGet, u, 0, nil, globalActiveCred.AccessKey, globalActiveCred.SecretKey, nil)
if err != nil {
t.Fatal(err)
}
rec := httptest.NewRecorder()
router.ServeHTTP(rec, req)
if rec.Code != tc.status {
t.Fatalf("key=%q marker=%q: %d %s", tc.key, tc.marker, rec.Code, rec.Body.String())
}
}
}
func TestMultipartPreflightAdminHTTP(t *testing.T) {
bed, err := prepareAdminErasureTestBed(t.Context())
if err != nil {
t.Fatal(err)
}
t.Cleanup(func() { bed.done(); bed.objLayer.Shutdown(context.Background()); removeRoots(bed.erasureDirs) })
const target = "/minio/admin/v3/multipart-preflight"
rec := httptest.NewRecorder()
bed.router.ServeHTTP(rec, httptest.NewRequest(http.MethodGet, target, nil))
if rec.Code != 403 {
t.Fatalf("anonymous preflight: %d", rec.Code)
}
req, err := newTestSignedRequestV4(http.MethodGet, target, 0, nil, globalActiveCred.AccessKey, globalActiveCred.SecretKey, nil)
if err != nil {
t.Fatal(err)
}
rec = httptest.NewRecorder()
bed.router.ServeHTTP(rec, req)
if rec.Code != 200 {
t.Fatalf("admin preflight: %d %s", rec.Code, rec.Body.String())
}
var report multipartPreflightReport
if err = json.Unmarshal(rec.Body.Bytes(), &report); err != nil || !report.Ready || !report.Complete {
t.Fatalf("preflight: %+v %v", report, err)
}
for range cap(multipartScanSlots) {
scan, err := startMultipartScan(t.Context(), false)
if err != nil {
t.Fatal(err)
}
defer scan.close()
}
rec = httptest.NewRecorder()
bed.router.ServeHTTP(rec, req)
if rec.Code != http.StatusServiceUnavailable {
t.Fatalf("busy admin preflight: %d %s", rec.Code, rec.Body.String())
}
}
type multipartLateCreateDisk struct {
StorageAPI
late chan<- func() error
}
func (d multipartLateCreateDisk) WriteMetadata(_ context.Context, original, volume, object string, fi FileInfo) error {
if volume == minioMetaMultipartBucket {
d.late <- func() error { return d.StorageAPI.WriteMetadata(context.Background(), original, volume, object, fi) }
return context.DeadlineExceeded
}
return d.StorageAPI.WriteMetadata(context.Background(), original, volume, object, fi)
}
// This characterization is deliberately NOT an assertion of terminal abort
// correctness. It preserves an executable example of the separately scoped
// late-creation-write limitation. Change the expectation when fencing is added.
func TestMultipartAbortLateCreateBoundary(t *testing.T) {
obj, dirs, err := prepareErasure(t.Context(), 16)
if err != nil {
t.Fatal(err)
}
z := obj.(*erasureServerPools)
setMultipartListingTestMode(t, false)
t.Cleanup(func() { z.Shutdown(context.Background()); removeRoots(dirs) })
saved := globalStorageClass
globalStorageClass.Update(storageclass.Config{Standard: storageclass.StorageClass{Parity: 8}})
t.Cleanup(func() { globalStorageClass.Update(saved) })
const bucket = "multipart-late-create"
if err = z.MakeBucket(t.Context(), bucket, MakeBucketOptions{}); err != nil {
t.Fatal(err)
}
set := z.serverPools[0].getHashedSet("a")
original := set.getDisks
t.Cleanup(func() { set.getDisks = original })
late := make(chan func() error, 16)
set.getDisks = func() []StorageAPI {
disks := append([]StorageAPI(nil), original()...)
for i := 9; i < 16; i++ {
disks[i] = multipartLateCreateDisk{disks[i], late}
}
return disks
}
mp, err := z.NewMultipartUpload(t.Context(), bucket, "a", ObjectOptions{})
if err != nil {
t.Fatal(err)
}
if len(late) != 7 {
t.Fatalf("expected seven timed-out creation writes, got %d", len(late))
}
set.getDisks = func() []StorageAPI {
disks := append([]StorageAPI(nil), original()...)
for i := 2; i < 9; i++ {
disks[i] = nil
}
return disks
}
if err = z.AbortMultipartUpload(t.Context(), bucket, "a", mp.UploadID, ObjectOptions{}); err != nil {
t.Fatal(err)
}
for range 7 {
if err = (<-late)(); err != nil {
t.Fatal(err)
}
}
set.getDisks = original
_, metadata, err := set.checkUploadIDExists(t.Context(), bucket, "a", mp.UploadID, true)
if err != nil {
t.Fatalf("late creation boundary changed; review and remove the documented limitation: %v", err)
}
count := 0
for _, fi := range metadata {
if fi.IsValid() {
count++
}
}
if count != 14 {
t.Fatalf("expected fourteen resurrected copies, got %d", count)
}
t.Log("KNOWN UNRESOLVED BOUNDARY: seven delayed creation writes plus seven offline copies restore a writable upload after acknowledged cancellation")
}
type multipartListingCountingDisk struct {
StorageAPI
directoryCalls *atomic.Int64
metadataCalls *atomic.Int64
}
func (d multipartListingCountingDisk) ListDir(ctx context.Context, original, volume, dir string, count int) ([]string, error) {
if volume == minioMetaMultipartBucket {
d.directoryCalls.Add(1)
}
return d.StorageAPI.ListDir(ctx, original, volume, dir, count)
}
func (d multipartListingCountingDisk) ReadVersion(ctx context.Context, original, volume, object, version string, opts ReadOptions) (FileInfo, error) {
if volume == minioMetaMultipartBucket {
d.metadataCalls.Add(1)
}
return d.StorageAPI.ReadVersion(ctx, original, volume, object, version, opts)
}
// Counts storage API calls; this is not a deployment throughput benchmark.
func TestMultipartListingScanCosts(t *testing.T) {
obj, dirs, err := prepareErasure(t.Context(), 4)
if err != nil {
t.Fatal(err)
}
z := obj.(*erasureServerPools)
setMultipartListingTestMode(t, false)
t.Cleanup(func() { z.Shutdown(context.Background()); removeRoots(dirs) })
const bucket, otherBucket = "r9-scan-target", "r9-scan-unrelated"
for _, name := range []string{bucket, otherBucket} {
if err := z.MakeBucket(t.Context(), name, MakeBucketOptions{}); err != nil {
t.Fatal(err)
}
}
if _, err := z.NewMultipartUpload(t.Context(), bucket, "dir/target", ObjectOptions{}); err != nil {
t.Fatal(err)
}
var directoryCalls, metadataCalls atomic.Int64
for _, pool := range z.serverPools {
for _, set := range pool.sets {
original := set.getDisks
set.getDisks = func() []StorageAPI {
disks := original()
wrapped := make([]StorageAPI, len(disks))
for i, disk := range disks {
if disk != nil {
wrapped[i] = multipartListingCountingDisk{disk, &directoryCalls, &metadataCalls}
}
}
return wrapped
}
t.Cleanup(func() { set.getDisks = original })
}
}
measure := func(label string) (int64, int64) {
t.Helper()
directoryCalls.Store(0)
metadataCalls.Store(0)
result, err := z.ListMultipartUploads(t.Context(), bucket, "dir/", "", "", "", 1)
if err != nil {
t.Fatal(err)
}
requireMultipartUploadKeys(t, result, "dir/target")
d, m := directoryCalls.Load(), metadataCalls.Load()
t.Logf("%s: max-uploads=1 returned=%d ListDir=%d ReadVersion=%d", label, len(result.Uploads), d, m)
return d, m
}
_, baseline := measure("no unrelated uploads")
for n := 0; n < 32; n++ {
if _, err := z.NewMultipartUpload(t.Context(), otherBucket, fmt.Sprintf("other/%03d", n), ObjectOptions{}); err != nil {
t.Fatal(err)
}
}
_, loaded := measure("32 uploads in another bucket")
_, repeated := measure("same query repeated")
if loaded != baseline+32 || repeated != loaded {
t.Fatalf("unexpected scan accounting: baseline=%d loaded=%d repeated=%d", baseline, loaded, repeated)
}
}
func multipartListingTestID(created time.Time, n int) string {
return base64.RawURLEncoding.EncodeToString([]byte(fmt.Sprintf("00000000-0000-4000-8000-000000000000.00000000-0000-4000-8000-%012xx%d", n, created.UnixNano())))
}
func multipartListingFixture(t *testing.T) (*erasureServerPools, *erasureObjects, string) {
t.Helper()
obj, dirs, err := prepareErasure(t.Context(), 4)
if err != nil {
t.Fatal(err)
}
z := obj.(*erasureServerPools)
t.Cleanup(func() { z.Shutdown(context.Background()); removeRoots(dirs) })
const bucket = "multipart-listing-test"
if err := z.MakeBucket(t.Context(), bucket, MakeBucketOptions{}); err != nil {
t.Fatal(err)
}
setMultipartListingTestMode(t, false)
return z, z.serverPools[0].getHashedSet("a"), bucket
}
func TestMultipartListingMissingMarkers(t *testing.T) {
base := time.Unix(100, 0)
sameTime := []string{multipartListingTestID(base.Add(time.Second), 1), multipartListingTestID(base.Add(time.Second), 2), multipartListingTestID(base.Add(time.Second), 3)}
slices.Sort(sameTime)
uploads := []MultipartInfo{
{Bucket: "bucket", Object: "a", UploadID: multipartListingTestID(base, 1), Initiated: base},
{Bucket: "bucket", Object: "a", UploadID: sameTime[1], Initiated: base.Add(time.Second)},
{Bucket: "bucket", Object: "b", UploadID: multipartListingTestID(base, 4), Initiated: base},
}
for _, tc := range []struct {
name string
created time.Time
id int
want []string
}{
{"before", base.Add(-time.Second), 0, []string{"a", "a", "b"}},
{"between", base.Add(time.Second / 2), 2, []string{"a", "b"}},
{"same-time-before", base.Add(time.Second), 2, []string{"a", "b"}},
{"same-time-after", base.Add(time.Second), 4, []string{"b"}},
{"after", base.Add(2 * time.Second), 5, []string{"b"}},
} {
t.Run(tc.name, func(t *testing.T) {
marker := multipartListingTestID(tc.created, tc.id)
if tc.name == "same-time-before" {
marker = sameTime[0]
}
if tc.name == "same-time-after" {
marker = sameTime[2]
}
if err := checkListMultipartArgs(t.Context(), "bucket", "", "a", marker, ""); err != nil {
t.Fatal(err)
}
got := paginateMultipartUploads(uploads, "", "a", marker, "", 10)
if !slices.Equal(multipartUploadKeys(got.Uploads), tc.want) {
t.Fatalf("got %v want %v", multipartUploadKeys(got.Uploads), tc.want)
}
})
}
}
func TestMultipartListingAbortRecovery(t *testing.T) {
for _, offline := range []int{1, 2} {
t.Run(fmt.Sprint(offline), func(t *testing.T) {
z, set, bucket := multipartListingFixture(t)
mp, err := z.NewMultipartUpload(t.Context(), bucket, "a", ObjectOptions{})
if err != nil {
t.Fatal(err)
}
original := set.getDisks
t.Cleanup(func() { set.getDisks = original })
set.getDisks = func() []StorageAPI {
disks := append([]StorageAPI(nil), original()...)
for i := 0; i < offline; i++ {
disks[i] = nil
}
return disks
}
err = z.AbortMultipartUpload(t.Context(), bucket, "a", mp.UploadID, ObjectOptions{})
if offline == 1 && err != nil {
t.Fatal(err)
}
if offline == 2 && (err == nil || toAPIError(t.Context(), err).HTTPStatusCode != 503) {
t.Fatalf("two offline drives must not acknowledge cancellation: %v", err)
}
set.getDisks = original
if offline == 2 {
// Retry a partially completed deletion after the original disks return.
if err = z.AbortMultipartUpload(t.Context(), bucket, "a", mp.UploadID, ObjectOptions{}); err != nil {
t.Fatal(err)
}
}
got, err := z.ListMultipartUploads(t.Context(), bucket, "", "", "", "", 100)
if err != nil || len(got.Uploads) != 0 {
t.Fatalf("canceled upload reappeared: %+v %v", got, err)
}
})
}
}
func TestMultipartListingCoverage(t *testing.T) {
z, set, bucket := multipartListingFixture(t)
mp, err := z.NewMultipartUpload(t.Context(), bucket, "a", ObjectOptions{})
if err != nil {
t.Fatal(err)
}
original := set.getDisks
t.Cleanup(func() { set.getDisks = original })
disks := original()
// Leave a readable two-copy record, simulating a partially failed abort.
for _, d := range disks[:2] {
if err = d.Delete(t.Context(), minioMetaMultipartBucket, set.getUploadIDDir(bucket, "a", mp.UploadID), DeleteOptions{Recursive: true}); err != nil {
t.Fatal(err)
}
}
set.getDisks = func() []StorageAPI { return []StorageAPI{disks[0], disks[1], nil, nil} }
_, err = z.ListMultipartUploads(t.Context(), bucket, "", "", "", "", 10)
if err == nil || toAPIError(t.Context(), err).HTTPStatusCode != 503 {
t.Fatalf("incomplete discovery returned success: %v", err)
}
set.getDisks = func() []StorageAPI { return []StorageAPI{nil, disks[1], disks[2], disks[3]} }
got, err := z.ListMultipartUploads(t.Context(), bucket, "", "", "", "", 10)
if err != nil {
t.Fatal(err)
}
requireMultipartUploadKeys(t, got, "a")
report, err := z.multipartPreflight(t.Context())
if err != nil || report.Ready || report.Complete || len(report.Sets[0].UncoveredDrives) != 1 {
t.Fatalf("offline upgrade preflight: %+v %v", report, err)
}
}
func TestMultipartListingBudgetAndAdmission(t *testing.T) {
_, set, bucket := multipartListingFixture(t)
if _, err := set.NewMultipartUpload(t.Context(), bucket, "a", ObjectOptions{}); err != nil {
t.Fatal(err)
}
scan, err := startMultipartScan(t.Context(), false)
if err != nil {
t.Fatal(err)
}
defer scan.close()
scan.remaining.Store(1)
_, _, err = set.scanMultipartUploads(scan, bucket, 0, 0)
var limited SlowDown
if !errors.As(err, &limited) {
t.Fatalf("budget: %v", err)
}
if apiErr := toAPIError(t.Context(), err); apiErr.HTTPStatusCode != http.StatusServiceUnavailable || apiErr.Code != "SlowDown" {
t.Fatalf("budget error mapping: %+v", apiErr)
}
second, err := startMultipartScan(t.Context(), false)
if err != nil {
t.Fatal(err)
}
defer second.close()
if third, err := startMultipartScan(t.Context(), false); err == nil {
third.close()
t.Fatal("third scan admitted")
}
}
func TestMultipartListingAdmissionHTTP(t *testing.T) {
z, _, _ := multipartListingFixture(t)
bucket, router, err := initAPIHandlerTest(t.Context(), z, []string{"ListMultipartUploads"}, MakeBucketOptions{})
if err != nil {
t.Fatal(err)
}
setMultipartListingTestMode(t, false)
for range cap(multipartScanSlots) {
scan, err := startMultipartScan(t.Context(), false)
if err != nil {
t.Fatal(err)
}
defer scan.close()
}
req, err := newTestSignedRequestV4(http.MethodGet,
getListMultipartUploadsURLWithParams("", bucket, "", "", "", "", "1"),
0, nil, globalActiveCred.AccessKey, globalActiveCred.SecretKey, nil)
if err != nil {
t.Fatal(err)
}
rec := httptest.NewRecorder()
router.ServeHTTP(rec, req)
var response APIErrorResponse
if err := xml.Unmarshal(rec.Body.Bytes(), &response); err != nil {
t.Fatal(err)
}
if rec.Code != http.StatusServiceUnavailable || response.Code != "SlowDown" {
t.Fatalf("admission returned %d %s", rec.Code, rec.Body.String())
}
}
func TestMultipartListingPreflightMinorityLegacy(t *testing.T) {
z, set, bucket := multipartListingFixture(t)
mp, err := z.NewMultipartUpload(t.Context(), bucket, "old", ObjectOptions{})
if err != nil {
t.Fatal(err)
}
path := set.getUploadIDDir(bucket, "old", mp.UploadID)
disks := set.getDisks()
fi, err := disks[0].ReadVersion(t.Context(), bucket, minioMetaMultipartBucket, path, "", ReadOptions{})
if err != nil {
t.Fatal(err)
}
delete(fi.Metadata, multipartMetaBucket)
delete(fi.Metadata, multipartMetaObject)
if err = disks[0].WriteMetadata(t.Context(), bucket, minioMetaMultipartBucket, path, fi); err != nil {
t.Fatal(err)
}
for _, d := range disks[1:] {
if err = d.Delete(t.Context(), minioMetaMultipartBucket, path, DeleteOptions{Recursive: true}); err != nil {
t.Fatal(err)
}
}
report, err := z.multipartPreflight(t.Context())
if err != nil || report.Ready || !report.Complete || report.LegacyUploads != 1 {
t.Fatalf("minority legacy copy must prevent readiness: %+v %v", report, err)
}
}
func TestMultipartListingCancellationRetainsAdmission(t *testing.T) {
z, set, bucket := multipartListingFixture(t)
for i := range 40 {
if _, err := z.NewMultipartUpload(t.Context(), bucket, fmt.Sprintf("key-%02d", i), ObjectOptions{}); err != nil {
t.Fatal(err)
}
}
original := set.getDisks
t.Cleanup(func() { set.getDisks = original })
entered := make(chan struct{}, 40)
release := make(chan struct{})
var once sync.Once
defer once.Do(func() { close(release) })
var reads atomic.Int32
set.getDisks = func() []StorageAPI {
disks := append([]StorageAPI(nil), original()...)
for i, d := range disks {
disks[i] = multipartListingFaultDisk{StorageAPI: d, read: func(ctx context.Context, b, v, p, version string, opts ReadOptions) (FileInfo, error) {
if v != minioMetaMultipartBucket {
return d.ReadVersion(ctx, b, v, p, version, opts)
}
reads.Add(1)
entered <- struct{}{}
// Model an RPC which does not return immediately on cancellation.
<-release
return FileInfo{}, ctx.Err()
}}
}
return disks
}
second, err := startMultipartScan(t.Context(), false)
if err != nil {
t.Fatal(err)
}
defer second.close()
ctx, cancel := context.WithCancel(t.Context())
defer cancel()
done := make(chan error, 1)
go func() {
_, err := z.ListMultipartUploads(ctx, bucket, "", "", "", "", 10)
done <- err
}()
for range 16 {
select {
case <-entered:
case <-time.After(5 * time.Second):
t.Fatal("identity workers did not start")
}
}
cancel()
if extra, err := startMultipartScan(t.Context(), false); err == nil {
extra.close()
t.Fatal("canceled request released admission while RPCs were still running")
}
start := time.Now()
once.Do(func() { close(release) })
select {
case err := <-done:
if err == nil {
t.Fatal("canceled scan returned a successful partial list")
}
case <-time.After(2 * time.Second):
t.Fatal("scan did not stop after blocked RPCs returned")
}
if got := reads.Load(); got != 16 {
t.Fatalf("scheduled more identity/metadata reads after cancellation: %d", got)
}
t.Logf("16 identity RPCs bounded; admission held until return; cancellation settled in %s", time.Since(start))
}