mirror of https://github.com/minio/minio.git
554 lines
15 KiB
Go
554 lines
15 KiB
Go
// Copyright (c) 2015-2024 MinIO, Inc.
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//
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// This file is part of MinIO Object Storage stack
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Affero General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Affero General Public License for more details.
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//
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// You should have received a copy of the GNU Affero General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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package cmd
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import (
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"context"
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"errors"
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"fmt"
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"math/rand"
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"runtime"
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"sort"
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"time"
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"github.com/dustin/go-humanize"
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"github.com/minio/madmin-go/v3"
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"github.com/minio/minio/internal/bucket/lifecycle"
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objectlock "github.com/minio/minio/internal/bucket/object/lock"
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"github.com/minio/minio/internal/bucket/replication"
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"github.com/minio/minio/internal/bucket/versioning"
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"github.com/minio/minio/internal/color"
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"github.com/minio/minio/internal/config/storageclass"
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"github.com/minio/minio/internal/logger"
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"github.com/minio/pkg/v2/console"
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"github.com/minio/pkg/v2/wildcard"
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"github.com/minio/pkg/v2/workers"
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)
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const (
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bgHealingUUID = "0000-0000-0000-0000"
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)
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// NewBgHealSequence creates a background healing sequence
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// operation which scans all objects and heal them.
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func newBgHealSequence() *healSequence {
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reqInfo := &logger.ReqInfo{API: "BackgroundHeal"}
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ctx, cancelCtx := context.WithCancel(logger.SetReqInfo(GlobalContext, reqInfo))
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hs := madmin.HealOpts{
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// Remove objects that do not have read-quorum
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Remove: healDeleteDangling,
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}
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return &healSequence{
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startTime: UTCNow(),
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clientToken: bgHealingUUID,
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// run-background heal with reserved bucket
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bucket: minioReservedBucket,
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settings: hs,
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currentStatus: healSequenceStatus{
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Summary: healNotStartedStatus,
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HealSettings: hs,
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},
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cancelCtx: cancelCtx,
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ctx: ctx,
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reportProgress: false,
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scannedItemsMap: make(map[madmin.HealItemType]int64),
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healedItemsMap: make(map[madmin.HealItemType]int64),
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healFailedItemsMap: make(map[madmin.HealItemType]int64),
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}
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}
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// getLocalBackgroundHealStatus will return the heal status of the local node
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func getLocalBackgroundHealStatus(ctx context.Context, o ObjectLayer) (madmin.BgHealState, bool) {
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if globalBackgroundHealState == nil {
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return madmin.BgHealState{}, false
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}
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bgSeq, ok := globalBackgroundHealState.getHealSequenceByToken(bgHealingUUID)
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if !ok {
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return madmin.BgHealState{}, false
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}
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status := madmin.BgHealState{
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ScannedItemsCount: bgSeq.getScannedItemsCount(),
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}
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healDisksMap := map[string]struct{}{}
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for _, ep := range getLocalDisksToHeal() {
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healDisksMap[ep.String()] = struct{}{}
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}
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if o == nil {
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healing := globalBackgroundHealState.getLocalHealingDisks()
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for _, disk := range healing {
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status.HealDisks = append(status.HealDisks, disk.Endpoint)
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}
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return status, true
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}
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si := o.LocalStorageInfo(ctx, true)
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indexed := make(map[string][]madmin.Disk)
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for _, disk := range si.Disks {
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setIdx := fmt.Sprintf("%d-%d", disk.PoolIndex, disk.SetIndex)
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indexed[setIdx] = append(indexed[setIdx], disk)
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}
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for id, disks := range indexed {
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ss := madmin.SetStatus{
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ID: id,
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SetIndex: disks[0].SetIndex,
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PoolIndex: disks[0].PoolIndex,
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}
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for _, disk := range disks {
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ss.Disks = append(ss.Disks, disk)
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if disk.Healing {
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ss.HealStatus = "Healing"
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ss.HealPriority = "high"
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status.HealDisks = append(status.HealDisks, disk.Endpoint)
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}
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}
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sortDisks(ss.Disks)
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status.Sets = append(status.Sets, ss)
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}
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sort.Slice(status.Sets, func(i, j int) bool {
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return status.Sets[i].ID < status.Sets[j].ID
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})
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backendInfo := o.BackendInfo()
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status.SCParity = make(map[string]int)
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status.SCParity[storageclass.STANDARD] = backendInfo.StandardSCParity
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status.SCParity[storageclass.RRS] = backendInfo.RRSCParity
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return status, true
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}
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type healEntryResult struct {
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bytes uint64
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success bool
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skipped bool
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entryDone bool
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name string
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}
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// healErasureSet lists and heals all objects in a specific erasure set
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func (er *erasureObjects) healErasureSet(ctx context.Context, buckets []string, tracker *healingTracker) error {
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scanMode := madmin.HealNormalScan
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// Make sure to copy since `buckets slice`
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// is modified in place by tracker.
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healBuckets := make([]string, len(buckets))
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copy(healBuckets, buckets)
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objAPI := newObjectLayerFn()
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if objAPI == nil {
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return errServerNotInitialized
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}
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for _, bucket := range healBuckets {
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_, err := objAPI.HealBucket(ctx, bucket, madmin.HealOpts{ScanMode: scanMode})
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if err != nil {
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// Log bucket healing error if any, we shall retry again.
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healingLogIf(ctx, err)
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}
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}
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info, err := tracker.disk.DiskInfo(ctx, DiskInfoOptions{})
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if err != nil {
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return fmt.Errorf("unable to get disk information before healing it: %w", err)
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}
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var numHealers uint64
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if numCores := uint64(runtime.GOMAXPROCS(0)); info.NRRequests > numCores {
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numHealers = numCores / 4
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} else {
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numHealers = info.NRRequests / 4
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}
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if numHealers < 4 {
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numHealers = 4
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}
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// allow overriding this value as well..
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if v := globalHealConfig.GetWorkers(); v > 0 {
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numHealers = uint64(v)
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}
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healingLogEvent(ctx, fmt.Sprintf("Healing drive '%s' - use %d parallel workers.", tracker.disk.String(), numHealers))
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jt, _ := workers.New(int(numHealers))
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healEntryDone := func(name string) healEntryResult {
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return healEntryResult{
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entryDone: true,
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name: name,
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}
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}
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healEntrySuccess := func(sz uint64) healEntryResult {
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return healEntryResult{
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bytes: sz,
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success: true,
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}
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}
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healEntryFailure := func(sz uint64) healEntryResult {
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return healEntryResult{
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bytes: sz,
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}
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}
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healEntrySkipped := func(sz uint64) healEntryResult {
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return healEntryResult{
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bytes: sz,
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skipped: true,
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}
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}
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// Collect updates to tracker from concurrent healEntry calls
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results := make(chan healEntryResult, 1000)
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defer close(results)
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go func() {
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for res := range results {
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if res.entryDone {
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tracker.setObject(res.name)
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if time.Since(tracker.getLastUpdate()) > time.Minute {
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healingLogIf(ctx, tracker.update(ctx))
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}
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continue
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}
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tracker.updateProgress(res.success, res.skipped, res.bytes)
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}
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}()
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var retErr error
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// Heal all buckets with all objects
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for _, bucket := range healBuckets {
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if tracker.isHealed(bucket) {
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continue
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}
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var forwardTo string
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// If we resume to the same bucket, forward to last known item.
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b := tracker.getBucket()
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if b == bucket {
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forwardTo = tracker.getObject()
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}
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if b != "" {
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// Reset to where last bucket ended if resuming.
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tracker.resume()
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}
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tracker.setObject("")
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tracker.setBucket(bucket)
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// Heal current bucket again in case if it is failed
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// in the beginning of erasure set healing
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if _, err := objAPI.HealBucket(ctx, bucket, madmin.HealOpts{
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ScanMode: scanMode,
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}); err != nil {
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// Set this such that when we return this function
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// we let the caller retry this disk again for the
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// buckets that failed healing.
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retErr = err
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healingLogIf(ctx, err)
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continue
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}
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var (
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vc *versioning.Versioning
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lc *lifecycle.Lifecycle
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lr objectlock.Retention
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rcfg *replication.Config
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)
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if !isMinioMetaBucketName(bucket) {
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vc, err = globalBucketVersioningSys.Get(bucket)
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if err != nil {
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retErr = err
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healingLogIf(ctx, err)
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continue
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}
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// Check if the current bucket has a configured lifecycle policy
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lc, err = globalLifecycleSys.Get(bucket)
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if err != nil && !errors.Is(err, BucketLifecycleNotFound{Bucket: bucket}) {
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retErr = err
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healingLogIf(ctx, err)
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continue
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}
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// Check if bucket is object locked.
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lr, err = globalBucketObjectLockSys.Get(bucket)
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if err != nil {
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retErr = err
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healingLogIf(ctx, err)
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continue
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}
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rcfg, err = getReplicationConfig(ctx, bucket)
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if err != nil {
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retErr = err
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healingLogIf(ctx, err)
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continue
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}
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}
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if serverDebugLog {
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console.Debugf(color.Green("healDrive:")+" healing bucket %s content on %s erasure set\n",
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bucket, humanize.Ordinal(er.setIndex+1))
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}
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disks, _, healing := er.getOnlineDisksWithHealingAndInfo(true)
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if len(disks) == healing {
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// All drives in this erasure set were reformatted for some reasons, abort healing and mark it as successful
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healingLogIf(ctx, errors.New("all drives are in healing state, aborting.."))
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return nil
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}
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disks = disks[:len(disks)-healing] // healing drives are always at the end of the list
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if len(disks) < er.setDriveCount/2 {
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return fmt.Errorf("not enough drives (found=%d, healing=%d, total=%d) are available to heal `%s`", len(disks), healing, er.setDriveCount, tracker.disk.String())
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}
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rand.Shuffle(len(disks), func(i, j int) {
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disks[i], disks[j] = disks[j], disks[i]
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})
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expectedDisks := len(disks)/2 + 1
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fallbackDisks := disks[expectedDisks:]
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disks = disks[:expectedDisks]
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filterLifecycle := func(bucket, object string, fi FileInfo) bool {
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if lc == nil {
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return false
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}
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versioned := vc != nil && vc.Versioned(object)
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objInfo := fi.ToObjectInfo(bucket, object, versioned)
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evt := evalActionFromLifecycle(ctx, *lc, lr, rcfg, objInfo)
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switch {
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case evt.Action.DeleteRestored(): // if restored copy has expired,delete it synchronously
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applyExpiryOnTransitionedObject(ctx, newObjectLayerFn(), objInfo, evt, lcEventSrc_Heal)
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return false
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case evt.Action.Delete():
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globalExpiryState.enqueueByDays(objInfo, evt, lcEventSrc_Heal)
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return true
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default:
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return false
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}
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}
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send := func(result healEntryResult) bool {
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select {
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case <-ctx.Done():
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if !contextCanceled(ctx) {
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healingLogIf(ctx, ctx.Err())
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}
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return false
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case results <- result:
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return true
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}
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}
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// Note: updates from healEntry to tracker must be sent on results channel.
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healEntry := func(bucket string, entry metaCacheEntry) {
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defer jt.Give()
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if entry.name == "" && len(entry.metadata) == 0 {
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// ignore entries that don't have metadata.
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return
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}
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if entry.isDir() {
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// ignore healing entry.name's with `/` suffix.
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return
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}
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// We might land at .metacache, .trash, .multipart
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// no need to heal them skip, only when bucket
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// is '.minio.sys'
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if bucket == minioMetaBucket {
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if wildcard.Match("buckets/*/.metacache/*", entry.name) {
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return
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}
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if wildcard.Match("tmp/.trash/*", entry.name) {
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return
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}
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if wildcard.Match("multipart/*", entry.name) {
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return
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}
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}
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// erasureObjects layer needs object names to be encoded
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encodedEntryName := encodeDirObject(entry.name)
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var result healEntryResult
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fivs, err := entry.fileInfoVersions(bucket)
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if err != nil {
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res, err := er.HealObject(ctx, bucket, encodedEntryName, "",
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madmin.HealOpts{
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ScanMode: scanMode,
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Remove: healDeleteDangling,
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})
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if err != nil {
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if isErrObjectNotFound(err) || isErrVersionNotFound(err) {
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// queueing happens across namespace, ignore
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// objects that are not found.
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return
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}
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result = healEntryFailure(0)
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healingLogIf(ctx, fmt.Errorf("unable to heal object %s/%s: %w", bucket, entry.name, err))
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} else {
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result = healEntrySuccess(uint64(res.ObjectSize))
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}
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send(result)
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return
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}
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var versionNotFound int
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for _, version := range fivs.Versions {
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// Ignore a version with a modtime newer than healing start time.
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if version.ModTime.After(tracker.Started) {
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continue
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}
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// Apply lifecycle rules on the objects that are expired.
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if filterLifecycle(bucket, version.Name, version) {
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versionNotFound++
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if !send(healEntrySkipped(uint64(version.Size))) {
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return
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}
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continue
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}
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res, err := er.HealObject(ctx, bucket, encodedEntryName,
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version.VersionID, madmin.HealOpts{
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ScanMode: scanMode,
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Remove: healDeleteDangling,
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})
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if err != nil {
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if isErrObjectNotFound(err) || isErrVersionNotFound(err) {
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// queueing happens across namespace, ignore
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// objects that are not found.
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versionNotFound++
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continue
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}
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// If not deleted, assume they failed.
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result = healEntryFailure(uint64(version.Size))
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if version.VersionID != "" {
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healingLogIf(ctx, fmt.Errorf("unable to heal object %s/%s-v(%s): %w", bucket, version.Name, version.VersionID, err))
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} else {
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healingLogIf(ctx, fmt.Errorf("unable to heal object %s/%s: %w", bucket, version.Name, err))
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}
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} else {
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result = healEntrySuccess(uint64(res.ObjectSize))
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}
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if !send(result) {
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return
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}
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}
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// All versions resulted in 'ObjectNotFound/VersionNotFound'
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if versionNotFound == len(fivs.Versions) {
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return
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}
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send(healEntryDone(entry.name))
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// Wait and proceed if there are active requests
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waitForLowHTTPReq()
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}
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// How to resolve partial results.
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resolver := metadataResolutionParams{
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dirQuorum: 1,
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objQuorum: 1,
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bucket: bucket,
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}
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err = listPathRaw(ctx, listPathRawOptions{
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disks: disks,
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fallbackDisks: fallbackDisks,
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bucket: bucket,
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recursive: true,
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forwardTo: forwardTo,
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minDisks: 1,
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reportNotFound: false,
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agreed: func(entry metaCacheEntry) {
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jt.Take()
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go healEntry(bucket, entry)
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},
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partial: func(entries metaCacheEntries, _ []error) {
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entry, ok := entries.resolve(&resolver)
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if !ok {
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// check if we can get one entry at least
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// proceed to heal nonetheless.
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entry, _ = entries.firstFound()
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}
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jt.Take()
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go healEntry(bucket, *entry)
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},
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finished: nil,
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})
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jt.Wait() // synchronize all the concurrent heal jobs
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if err != nil {
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// Set this such that when we return this function
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// we let the caller retry this disk again for the
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// buckets it failed to list.
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retErr = err
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healingLogIf(ctx, err)
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continue
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}
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select {
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// If context is canceled don't mark as done...
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case <-ctx.Done():
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return ctx.Err()
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default:
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tracker.bucketDone(bucket)
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healingLogIf(ctx, tracker.update(ctx))
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}
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}
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tracker.setObject("")
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tracker.setBucket("")
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return retErr
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}
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func healBucket(bucket string, scan madmin.HealScanMode) error {
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// Get background heal sequence to send elements to heal
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bgSeq, ok := globalBackgroundHealState.getHealSequenceByToken(bgHealingUUID)
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if ok {
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return bgSeq.queueHealTask(healSource{bucket: bucket}, madmin.HealItemBucket)
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}
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return nil
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}
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|
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// healObject sends the given object/version to the background healing workers
|
|
func healObject(bucket, object, versionID string, scan madmin.HealScanMode) error {
|
|
// Get background heal sequence to send elements to heal
|
|
bgSeq, ok := globalBackgroundHealState.getHealSequenceByToken(bgHealingUUID)
|
|
if ok {
|
|
return bgSeq.healObject(bucket, object, versionID, scan)
|
|
}
|
|
return nil
|
|
}
|