docker-volume-backup/cmd/backup/main.go

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// Copyright 2021 - Offen Authors <hioffen@posteo.de>
// SPDX-License-Identifier: MPL-2.0
package main
import (
"context"
"fmt"
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"io"
"os"
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"path"
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"path/filepath"
"time"
"github.com/docker/docker/api/types"
"github.com/docker/docker/api/types/filters"
"github.com/docker/docker/api/types/swarm"
"github.com/docker/docker/client"
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"github.com/gofrs/flock"
"github.com/kelseyhightower/envconfig"
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"github.com/leekchan/timeutil"
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minio "github.com/minio/minio-go/v7"
"github.com/minio/minio-go/v7/pkg/credentials"
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"github.com/sirupsen/logrus"
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"github.com/walle/targz"
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"golang.org/x/crypto/openpgp"
)
func main() {
unlock := lock("/var/lock/dockervolumebackup.lock")
defer unlock()
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s := &script{}
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s.must(s.init())
s.must(s.stopContainersAndRun(s.takeBackup))
s.must(s.encryptBackup())
s.must(s.copyBackup())
s.must(s.cleanBackup())
s.must(s.pruneOldBackups())
s.logger.Info("Finished running backup tasks.")
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}
// script holds all the stateful information required to orchestrate a
// single backup run.
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type script struct {
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ctx context.Context
cli *client.Client
mc *minio.Client
logger *logrus.Logger
start time.Time
file string
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c *config
}
type config struct {
BackupSources string `split_words:"true" default:"/backup"`
BackupFilename string `split_words:"true" default:"backup-%Y-%m-%dT%H-%M-%S.tar.gz"`
BackupArchive string `split_words:"true" default:"/archive"`
BackupRetentionDays int32 `split_words:"true" default:"-1"`
BackupPruningLeeway time.Duration `split_words:"true" default:"1m"`
BackupPruningPrefix string `split_words:"true"`
BackupStopContainerLabel string `split_words:"true" default:"true"`
AwsS3BucketName string `split_words:"true"`
AwsEndpoint string `split_words:"true" default:"s3.amazonaws.com"`
AwsEndpointProto string `split_words:"true" default:"https"`
AwsEndpointInsecure bool `split_words:"true"`
AwsAccessKeyID string `envconfig:"AWS_ACCESS_KEY_ID"`
AwsSecretAccessKey string `split_words:"true"`
GpgPassphrase string `split_words:"true"`
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}
// init creates all resources needed for the script to perform actions against
// remote resources like the Docker engine or remote storage locations. All
// reading from env vars or other configuration sources is expected to happen
// in this method.
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func (s *script) init() error {
s.ctx = context.Background()
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s.logger = logrus.New()
s.logger.SetOutput(os.Stdout)
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s.c = &config{}
if err := envconfig.Process("", s.c); err != nil {
return fmt.Errorf("init: failed to process configuration values: %w", err)
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}
_, err := os.Stat("/var/run/docker.sock")
if !os.IsNotExist(err) {
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cli, err := client.NewClientWithOpts(client.FromEnv, client.WithAPIVersionNegotiation())
if err != nil {
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return fmt.Errorf("init: failed to create docker client")
}
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s.cli = cli
}
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if s.c.AwsS3BucketName != "" {
mc, err := minio.New(s.c.AwsEndpoint, &minio.Options{
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Creds: credentials.NewStaticV4(
s.c.AwsAccessKeyID,
s.c.AwsSecretAccessKey,
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"",
),
Secure: !s.c.AwsEndpointInsecure && s.c.AwsEndpointProto == "https",
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})
if err != nil {
return fmt.Errorf("init: error setting up minio client: %w", err)
}
s.mc = mc
}
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s.file = path.Join("/tmp", s.c.BackupFilename)
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s.start = time.Now()
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return nil
}
// stopContainersAndRun stops all Docker containers that are marked as to being
// stopped during the backup and runs the given thunk. After returning, it makes
// sure containers are being restarted if required. In case the docker cli
// is not configured, it will call the given thunk immediately.
func (s *script) stopContainersAndRun(thunk func() error) error {
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if s.cli == nil {
return thunk()
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}
allContainers, err := s.cli.ContainerList(s.ctx, types.ContainerListOptions{
Quiet: true,
})
if err != nil {
return fmt.Errorf("stopContainersAndRun: error querying for containers: %w", err)
}
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containerLabel := fmt.Sprintf(
"docker-volume-backup.stop-during-backup=%s",
s.c.BackupStopContainerLabel,
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)
containersToStop, err := s.cli.ContainerList(s.ctx, types.ContainerListOptions{
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Quiet: true,
Filters: filters.NewArgs(filters.KeyValuePair{
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Key: "label",
Value: containerLabel,
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}),
})
if err != nil {
return fmt.Errorf("stopContainersAndRun: error querying for containers to stop: %w", err)
}
if len(containersToStop) == 0 {
return thunk()
}
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s.logger.Infof(
"Stopping %d container(s) labeled `%s` out of %d running container(s).",
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len(containersToStop),
containerLabel,
len(allContainers),
)
var stoppedContainers []types.Container
var stopErrors []error
for _, container := range containersToStop {
if err := s.cli.ContainerStop(s.ctx, container.ID, nil); err != nil {
stopErrors = append(stopErrors, err)
} else {
stoppedContainers = append(stoppedContainers, container)
}
}
defer func() error {
servicesRequiringUpdate := map[string]struct{}{}
var restartErrors []error
for _, container := range stoppedContainers {
if swarmServiceName, ok := container.Labels["com.docker.swarm.service.name"]; ok {
servicesRequiringUpdate[swarmServiceName] = struct{}{}
continue
}
if err := s.cli.ContainerStart(s.ctx, container.ID, types.ContainerStartOptions{}); err != nil {
restartErrors = append(restartErrors, err)
}
}
if len(servicesRequiringUpdate) != 0 {
services, _ := s.cli.ServiceList(s.ctx, types.ServiceListOptions{})
for serviceName := range servicesRequiringUpdate {
var serviceMatch swarm.Service
for _, service := range services {
if service.Spec.Name == serviceName {
serviceMatch = service
break
}
}
if serviceMatch.ID == "" {
return fmt.Errorf("stopContainersAndRun: Couldn't find service with name %s", serviceName)
}
serviceMatch.Spec.TaskTemplate.ForceUpdate = 1
_, err := s.cli.ServiceUpdate(
s.ctx, serviceMatch.ID,
serviceMatch.Version, serviceMatch.Spec, types.ServiceUpdateOptions{},
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)
if err != nil {
restartErrors = append(restartErrors, err)
}
}
}
if len(restartErrors) != 0 {
return fmt.Errorf(
"stopContainersAndRun: %d error(s) restarting containers and services: %w",
len(restartErrors),
err,
)
}
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s.logger.Infof(
"Restarted %d container(s) and the matching service(s).",
len(stoppedContainers),
)
return nil
}()
if len(stopErrors) != 0 {
return fmt.Errorf(
"stopContainersAndRun: %d error(s) stopping containers: %w",
len(stopErrors),
err,
)
}
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return thunk()
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}
// takeBackup creates a tar archive of the configured backup location and
// saves it to disk.
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func (s *script) takeBackup() error {
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s.file = timeutil.Strftime(&s.start, s.file)
if err := targz.Compress(s.c.BackupSources, s.file); err != nil {
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return fmt.Errorf("takeBackup: error compressing backup folder: %w", err)
}
s.logger.Infof("Created backup of `%s` at `%s`.", s.c.BackupSources, s.file)
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return nil
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}
// encryptBackup encrypts the backup file using PGP and the configured passphrase.
// In case no passphrase is given it returns early, leaving the backup file
// untouched.
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func (s *script) encryptBackup() error {
if s.c.GpgPassphrase == "" {
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return nil
}
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gpgFile := fmt.Sprintf("%s.gpg", s.file)
outFile, err := os.Create(gpgFile)
defer outFile.Close()
if err != nil {
return fmt.Errorf("encryptBackup: error opening out file: %w", err)
}
_, name := path.Split(s.file)
dst, err := openpgp.SymmetricallyEncrypt(outFile, []byte(s.c.GpgPassphrase), &openpgp.FileHints{
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IsBinary: true,
FileName: name,
}, nil)
defer dst.Close()
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if err != nil {
return fmt.Errorf("encryptBackup: error encrypting backup file: %w", err)
}
src, err := os.Open(s.file)
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if err != nil {
return fmt.Errorf("encryptBackup: error opening backup file %s: %w", s.file, err)
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}
if _, err := io.Copy(dst, src); err != nil {
return fmt.Errorf("encryptBackup: error writing ciphertext to file: %w", err)
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}
if err := os.Remove(s.file); err != nil {
return fmt.Errorf("encryptBackup: error removing unencrpyted backup: %w", err)
}
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s.file = gpgFile
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s.logger.Infof("Encrypted backup using given passphrase, saving as `%s`.", s.file)
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return nil
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}
// copyBackup makes sure the backup file is copied to both local and remote locations
// as per the given configuration.
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func (s *script) copyBackup() error {
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_, name := path.Split(s.file)
if s.c.AwsS3BucketName != "" {
_, err := s.mc.FPutObject(s.ctx, s.c.AwsS3BucketName, name, s.file, minio.PutObjectOptions{
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ContentType: "application/tar+gzip",
})
if err != nil {
return fmt.Errorf("copyBackup: error uploading backup to remote storage: %w", err)
}
s.logger.Infof("Uploaded a copy of backup `%s` to bucket `%s`", s.file, s.c.AwsS3BucketName)
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}
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if _, err := os.Stat(s.c.BackupArchive); !os.IsNotExist(err) {
if err := copy(s.file, path.Join(s.c.BackupArchive, name)); err != nil {
return fmt.Errorf("copyBackup: error copying file to local archive: %w", err)
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}
s.logger.Infof("Stored copy of backup `%s` in local archive `%s`", s.file, s.c.AwsS3BucketName)
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}
return nil
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}
// cleanBackup removes the backup file from disk.
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func (s *script) cleanBackup() error {
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if err := os.Remove(s.file); err != nil {
return fmt.Errorf("cleanBackup: error removing file: %w", err)
}
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s.logger.Info("Cleaned up local artifacts.")
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return nil
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}
// pruneOldBackups rotates away backups from local and remote storages using
// the given configuration. In case the given configuration would delete all
// backups, it does nothing instead.
func (s *script) pruneOldBackups() error {
if s.c.BackupRetentionDays < 0 {
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return nil
}
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if s.c.BackupPruningLeeway != 0 {
s.logger.Infof("Sleeping for %s before pruning backups.", s.c.BackupPruningLeeway)
time.Sleep(s.c.BackupPruningLeeway)
}
s.logger.Infof("Trying to prune backups older than %d day(s) now.", s.c.BackupRetentionDays)
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deadline := time.Now().AddDate(0, 0, -int(s.c.BackupRetentionDays))
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if s.c.AwsS3BucketName != "" {
candidates := s.mc.ListObjects(s.ctx, s.c.AwsS3BucketName, minio.ListObjectsOptions{
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WithMetadata: true,
Prefix: s.c.BackupPruningPrefix,
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})
var matches []minio.ObjectInfo
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var lenCandidates int
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for candidate := range candidates {
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lenCandidates++
if candidate.Err != nil {
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return fmt.Errorf(
"pruneOldBackups: error looking up candidates from remote storage: %w",
candidate.Err,
)
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}
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if candidate.LastModified.Before(deadline) {
matches = append(matches, candidate)
}
}
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if len(matches) != 0 && len(matches) != lenCandidates {
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objectsCh := make(chan minio.ObjectInfo)
go func() {
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for _, match := range matches {
objectsCh <- match
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}
close(objectsCh)
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}()
errChan := s.mc.RemoveObjects(s.ctx, s.c.AwsS3BucketName, objectsCh, minio.RemoveObjectsOptions{})
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var errors []error
for result := range errChan {
if result.Err != nil {
errors = append(errors, result.Err)
}
}
if len(errors) != 0 {
return fmt.Errorf(
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"pruneOldBackups: %d error(s) removing files from remote storage: %w",
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len(errors),
errors[0],
)
}
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s.logger.Infof(
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"Pruned %d out of %d remote backup(s) as their age exceeded the configured retention period.",
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len(matches),
lenCandidates,
)
} else if len(matches) != 0 && len(matches) == lenCandidates {
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s.logger.Warnf(
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"The current configuration would delete all %d remote backup copies.",
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len(matches),
)
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s.logger.Warn("Refusing to do so, please check your configuration.")
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} else {
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s.logger.Infof("None of %d remote backup(s) were pruned.", lenCandidates)
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}
}
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if _, err := os.Stat(s.c.BackupArchive); !os.IsNotExist(err) {
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candidates, err := filepath.Glob(
path.Join(s.c.BackupArchive, fmt.Sprintf("%s*", s.c.BackupPruningPrefix)),
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)
if err != nil {
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return fmt.Errorf(
"pruneOldBackups: error looking up matching files, starting with: %w", err,
)
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}
var matches []string
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for _, candidate := range candidates {
fi, err := os.Stat(candidate)
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if err != nil {
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return fmt.Errorf(
"pruneOldBackups: error calling stat on file %s: %w",
candidate,
err,
)
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}
if fi.ModTime().Before(deadline) {
matches = append(matches, candidate)
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}
}
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if len(matches) != 0 && len(matches) != len(candidates) {
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var errors []error
for _, candidate := range matches {
if err := os.Remove(candidate); err != nil {
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errors = append(errors, err)
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}
}
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if len(errors) != 0 {
return fmt.Errorf(
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"pruneOldBackups: %d error(s) deleting local files, starting with: %w",
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len(errors),
errors[0],
)
}
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s.logger.Infof(
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"Pruned %d out of %d local backup(s) as their age exceeded the configured retention period.",
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len(matches),
len(candidates),
)
} else if len(matches) != 0 && len(matches) == len(candidates) {
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s.logger.Warnf(
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"The current configuration would delete all %d local backup copies.",
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len(matches),
)
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s.logger.Warn("Refusing to do so, please check your configuration.")
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} else {
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s.logger.Infof("None of %d local backup(s) were pruned.", len(candidates))
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}
}
return nil
}
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func (s *script) must(err error) {
if err != nil {
if s.logger == nil {
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panic(err)
}
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s.logger.Errorf("Fatal error running backup: %s", err)
os.Exit(1)
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}
}
// lock opens a lockfile at the given location, keeping it locked until the
// caller invokes the returned release func. When invoked while the file is
// still locked the function panics.
func lock(lockfile string) func() error {
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fileLock := flock.New(lockfile)
acquired, err := fileLock.TryLock()
if err != nil {
panic(err)
}
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if !acquired {
panic("unable to acquire file lock")
}
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return fileLock.Unlock
}
// copy creates a copy of the file located at `dst` at `src`.
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func copy(src, dst string) error {
in, err := os.Open(src)
if err != nil {
return err
}
defer in.Close()
out, err := os.Create(dst)
if err != nil {
return err
}
_, err = io.Copy(out, in)
if err != nil {
out.Close()
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return err
}
return out.Close()
}