github.com/rhatdan/docker@v0.7.7-0.20180119204836-47a0dcbcd20a/daemon/graphdriver/devmapper/deviceset.go (about) 1 // +build linux 2 3 package devmapper 4 5 import ( 6 "bufio" 7 "encoding/json" 8 "fmt" 9 "io" 10 "io/ioutil" 11 "os" 12 "os/exec" 13 "path" 14 "path/filepath" 15 "reflect" 16 "strconv" 17 "strings" 18 "sync" 19 "time" 20 21 "github.com/docker/docker/daemon/graphdriver" 22 "github.com/docker/docker/dockerversion" 23 "github.com/docker/docker/pkg/devicemapper" 24 "github.com/docker/docker/pkg/dmesg" 25 "github.com/docker/docker/pkg/idtools" 26 "github.com/docker/docker/pkg/loopback" 27 "github.com/docker/docker/pkg/mount" 28 "github.com/docker/docker/pkg/parsers" 29 "github.com/docker/docker/pkg/parsers/kernel" 30 units "github.com/docker/go-units" 31 "github.com/opencontainers/selinux/go-selinux/label" 32 "github.com/pkg/errors" 33 "github.com/sirupsen/logrus" 34 "golang.org/x/sys/unix" 35 ) 36 37 var ( 38 defaultDataLoopbackSize int64 = 100 * 1024 * 1024 * 1024 39 defaultMetaDataLoopbackSize int64 = 2 * 1024 * 1024 * 1024 40 defaultBaseFsSize uint64 = 10 * 1024 * 1024 * 1024 41 defaultThinpBlockSize uint32 = 128 // 64K = 128 512b sectors 42 defaultUdevSyncOverride = false 43 maxDeviceID = 0xffffff // 24 bit, pool limit 44 deviceIDMapSz = (maxDeviceID + 1) / 8 45 driverDeferredRemovalSupport = false 46 enableDeferredRemoval = false 47 enableDeferredDeletion = false 48 userBaseSize = false 49 defaultMinFreeSpacePercent uint32 = 10 50 lvmSetupConfigForce bool 51 ) 52 53 const deviceSetMetaFile string = "deviceset-metadata" 54 const transactionMetaFile string = "transaction-metadata" 55 56 type transaction struct { 57 OpenTransactionID uint64 `json:"open_transaction_id"` 58 DeviceIDHash string `json:"device_hash"` 59 DeviceID int `json:"device_id"` 60 } 61 62 type devInfo struct { 63 Hash string `json:"-"` 64 DeviceID int `json:"device_id"` 65 Size uint64 `json:"size"` 66 TransactionID uint64 `json:"transaction_id"` 67 Initialized bool `json:"initialized"` 68 Deleted bool `json:"deleted"` 69 devices *DeviceSet 70 71 // The global DeviceSet lock guarantees that we serialize all 72 // the calls to libdevmapper (which is not threadsafe), but we 73 // sometimes release that lock while sleeping. In that case 74 // this per-device lock is still held, protecting against 75 // other accesses to the device that we're doing the wait on. 76 // 77 // WARNING: In order to avoid AB-BA deadlocks when releasing 78 // the global lock while holding the per-device locks all 79 // device locks must be acquired *before* the device lock, and 80 // multiple device locks should be acquired parent before child. 81 lock sync.Mutex 82 } 83 84 type metaData struct { 85 Devices map[string]*devInfo `json:"Devices"` 86 } 87 88 // DeviceSet holds information about list of devices 89 type DeviceSet struct { 90 metaData `json:"-"` 91 sync.Mutex `json:"-"` // Protects all fields of DeviceSet and serializes calls into libdevmapper 92 root string 93 devicePrefix string 94 TransactionID uint64 `json:"-"` 95 NextDeviceID int `json:"next_device_id"` 96 deviceIDMap []byte 97 98 // Options 99 dataLoopbackSize int64 100 metaDataLoopbackSize int64 101 baseFsSize uint64 102 filesystem string 103 mountOptions string 104 mkfsArgs []string 105 dataDevice string // block or loop dev 106 dataLoopFile string // loopback file, if used 107 metadataDevice string // block or loop dev 108 metadataLoopFile string // loopback file, if used 109 doBlkDiscard bool 110 thinpBlockSize uint32 111 thinPoolDevice string 112 transaction `json:"-"` 113 overrideUdevSyncCheck bool 114 deferredRemove bool // use deferred removal 115 deferredDelete bool // use deferred deletion 116 BaseDeviceUUID string // save UUID of base device 117 BaseDeviceFilesystem string // save filesystem of base device 118 nrDeletedDevices uint // number of deleted devices 119 deletionWorkerTicker *time.Ticker 120 uidMaps []idtools.IDMap 121 gidMaps []idtools.IDMap 122 minFreeSpacePercent uint32 //min free space percentage in thinpool 123 xfsNospaceRetries string // max retries when xfs receives ENOSPC 124 lvmSetupConfig directLVMConfig 125 } 126 127 // DiskUsage contains information about disk usage and is used when reporting Status of a device. 128 type DiskUsage struct { 129 // Used bytes on the disk. 130 Used uint64 131 // Total bytes on the disk. 132 Total uint64 133 // Available bytes on the disk. 134 Available uint64 135 } 136 137 // Status returns the information about the device. 138 type Status struct { 139 // PoolName is the name of the data pool. 140 PoolName string 141 // DataFile is the actual block device for data. 142 DataFile string 143 // DataLoopback loopback file, if used. 144 DataLoopback string 145 // MetadataFile is the actual block device for metadata. 146 MetadataFile string 147 // MetadataLoopback is the loopback file, if used. 148 MetadataLoopback string 149 // Data is the disk used for data. 150 Data DiskUsage 151 // Metadata is the disk used for meta data. 152 Metadata DiskUsage 153 // BaseDeviceSize is base size of container and image 154 BaseDeviceSize uint64 155 // BaseDeviceFS is backing filesystem. 156 BaseDeviceFS string 157 // SectorSize size of the vector. 158 SectorSize uint64 159 // UdevSyncSupported is true if sync is supported. 160 UdevSyncSupported bool 161 // DeferredRemoveEnabled is true then the device is not unmounted. 162 DeferredRemoveEnabled bool 163 // True if deferred deletion is enabled. This is different from 164 // deferred removal. "removal" means that device mapper device is 165 // deactivated. Thin device is still in thin pool and can be activated 166 // again. But "deletion" means that thin device will be deleted from 167 // thin pool and it can't be activated again. 168 DeferredDeleteEnabled bool 169 DeferredDeletedDeviceCount uint 170 MinFreeSpace uint64 171 } 172 173 // Structure used to export image/container metadata in docker inspect. 174 type deviceMetadata struct { 175 deviceID int 176 deviceSize uint64 // size in bytes 177 deviceName string // Device name as used during activation 178 } 179 180 // DevStatus returns information about device mounted containing its id, size and sector information. 181 type DevStatus struct { 182 // DeviceID is the id of the device. 183 DeviceID int 184 // Size is the size of the filesystem. 185 Size uint64 186 // TransactionID is a unique integer per device set used to identify an operation on the file system, this number is incremental. 187 TransactionID uint64 188 // SizeInSectors indicates the size of the sectors allocated. 189 SizeInSectors uint64 190 // MappedSectors indicates number of mapped sectors. 191 MappedSectors uint64 192 // HighestMappedSector is the pointer to the highest mapped sector. 193 HighestMappedSector uint64 194 } 195 196 func getDevName(name string) string { 197 return "/dev/mapper/" + name 198 } 199 200 func (info *devInfo) Name() string { 201 hash := info.Hash 202 if hash == "" { 203 hash = "base" 204 } 205 return fmt.Sprintf("%s-%s", info.devices.devicePrefix, hash) 206 } 207 208 func (info *devInfo) DevName() string { 209 return getDevName(info.Name()) 210 } 211 212 func (devices *DeviceSet) loopbackDir() string { 213 return path.Join(devices.root, "devicemapper") 214 } 215 216 func (devices *DeviceSet) metadataDir() string { 217 return path.Join(devices.root, "metadata") 218 } 219 220 func (devices *DeviceSet) metadataFile(info *devInfo) string { 221 file := info.Hash 222 if file == "" { 223 file = "base" 224 } 225 return path.Join(devices.metadataDir(), file) 226 } 227 228 func (devices *DeviceSet) transactionMetaFile() string { 229 return path.Join(devices.metadataDir(), transactionMetaFile) 230 } 231 232 func (devices *DeviceSet) deviceSetMetaFile() string { 233 return path.Join(devices.metadataDir(), deviceSetMetaFile) 234 } 235 236 func (devices *DeviceSet) oldMetadataFile() string { 237 return path.Join(devices.loopbackDir(), "json") 238 } 239 240 func (devices *DeviceSet) getPoolName() string { 241 if devices.thinPoolDevice == "" { 242 return devices.devicePrefix + "-pool" 243 } 244 return devices.thinPoolDevice 245 } 246 247 func (devices *DeviceSet) getPoolDevName() string { 248 return getDevName(devices.getPoolName()) 249 } 250 251 func (devices *DeviceSet) hasImage(name string) bool { 252 dirname := devices.loopbackDir() 253 filename := path.Join(dirname, name) 254 255 _, err := os.Stat(filename) 256 return err == nil 257 } 258 259 // ensureImage creates a sparse file of <size> bytes at the path 260 // <root>/devicemapper/<name>. 261 // If the file already exists and new size is larger than its current size, it grows to the new size. 262 // Either way it returns the full path. 263 func (devices *DeviceSet) ensureImage(name string, size int64) (string, error) { 264 dirname := devices.loopbackDir() 265 filename := path.Join(dirname, name) 266 267 uid, gid, err := idtools.GetRootUIDGID(devices.uidMaps, devices.gidMaps) 268 if err != nil { 269 return "", err 270 } 271 if err := idtools.MkdirAllAndChown(dirname, 0700, idtools.IDPair{UID: uid, GID: gid}); err != nil { 272 return "", err 273 } 274 275 if fi, err := os.Stat(filename); err != nil { 276 if !os.IsNotExist(err) { 277 return "", err 278 } 279 logrus.Debugf("devmapper: Creating loopback file %s for device-manage use", filename) 280 file, err := os.OpenFile(filename, os.O_RDWR|os.O_CREATE, 0600) 281 if err != nil { 282 return "", err 283 } 284 defer file.Close() 285 286 if err := file.Truncate(size); err != nil { 287 return "", err 288 } 289 } else { 290 if fi.Size() < size { 291 file, err := os.OpenFile(filename, os.O_RDWR|os.O_CREATE, 0600) 292 if err != nil { 293 return "", err 294 } 295 defer file.Close() 296 if err := file.Truncate(size); err != nil { 297 return "", fmt.Errorf("devmapper: Unable to grow loopback file %s: %v", filename, err) 298 } 299 } else if fi.Size() > size { 300 logrus.Warnf("devmapper: Can't shrink loopback file %s", filename) 301 } 302 } 303 return filename, nil 304 } 305 306 func (devices *DeviceSet) allocateTransactionID() uint64 { 307 devices.OpenTransactionID = devices.TransactionID + 1 308 return devices.OpenTransactionID 309 } 310 311 func (devices *DeviceSet) updatePoolTransactionID() error { 312 if err := devicemapper.SetTransactionID(devices.getPoolDevName(), devices.TransactionID, devices.OpenTransactionID); err != nil { 313 return fmt.Errorf("devmapper: Error setting devmapper transaction ID: %s", err) 314 } 315 devices.TransactionID = devices.OpenTransactionID 316 return nil 317 } 318 319 func (devices *DeviceSet) removeMetadata(info *devInfo) error { 320 if err := os.RemoveAll(devices.metadataFile(info)); err != nil { 321 return fmt.Errorf("devmapper: Error removing metadata file %s: %s", devices.metadataFile(info), err) 322 } 323 return nil 324 } 325 326 // Given json data and file path, write it to disk 327 func (devices *DeviceSet) writeMetaFile(jsonData []byte, filePath string) error { 328 tmpFile, err := ioutil.TempFile(devices.metadataDir(), ".tmp") 329 if err != nil { 330 return fmt.Errorf("devmapper: Error creating metadata file: %s", err) 331 } 332 333 n, err := tmpFile.Write(jsonData) 334 if err != nil { 335 return fmt.Errorf("devmapper: Error writing metadata to %s: %s", tmpFile.Name(), err) 336 } 337 if n < len(jsonData) { 338 return io.ErrShortWrite 339 } 340 if err := tmpFile.Sync(); err != nil { 341 return fmt.Errorf("devmapper: Error syncing metadata file %s: %s", tmpFile.Name(), err) 342 } 343 if err := tmpFile.Close(); err != nil { 344 return fmt.Errorf("devmapper: Error closing metadata file %s: %s", tmpFile.Name(), err) 345 } 346 if err := os.Rename(tmpFile.Name(), filePath); err != nil { 347 return fmt.Errorf("devmapper: Error committing metadata file %s: %s", tmpFile.Name(), err) 348 } 349 350 return nil 351 } 352 353 func (devices *DeviceSet) saveMetadata(info *devInfo) error { 354 jsonData, err := json.Marshal(info) 355 if err != nil { 356 return fmt.Errorf("devmapper: Error encoding metadata to json: %s", err) 357 } 358 return devices.writeMetaFile(jsonData, devices.metadataFile(info)) 359 } 360 361 func (devices *DeviceSet) markDeviceIDUsed(deviceID int) { 362 var mask byte 363 i := deviceID % 8 364 mask = 1 << uint(i) 365 devices.deviceIDMap[deviceID/8] = devices.deviceIDMap[deviceID/8] | mask 366 } 367 368 func (devices *DeviceSet) markDeviceIDFree(deviceID int) { 369 var mask byte 370 i := deviceID % 8 371 mask = ^(1 << uint(i)) 372 devices.deviceIDMap[deviceID/8] = devices.deviceIDMap[deviceID/8] & mask 373 } 374 375 func (devices *DeviceSet) isDeviceIDFree(deviceID int) bool { 376 var mask byte 377 i := deviceID % 8 378 mask = (1 << uint(i)) 379 return (devices.deviceIDMap[deviceID/8] & mask) == 0 380 } 381 382 // Should be called with devices.Lock() held. 383 func (devices *DeviceSet) lookupDevice(hash string) (*devInfo, error) { 384 info := devices.Devices[hash] 385 if info == nil { 386 info = devices.loadMetadata(hash) 387 if info == nil { 388 return nil, fmt.Errorf("devmapper: Unknown device %s", hash) 389 } 390 391 devices.Devices[hash] = info 392 } 393 return info, nil 394 } 395 396 func (devices *DeviceSet) lookupDeviceWithLock(hash string) (*devInfo, error) { 397 devices.Lock() 398 defer devices.Unlock() 399 info, err := devices.lookupDevice(hash) 400 return info, err 401 } 402 403 // This function relies on that device hash map has been loaded in advance. 404 // Should be called with devices.Lock() held. 405 func (devices *DeviceSet) constructDeviceIDMap() { 406 logrus.Debug("devmapper: constructDeviceIDMap()") 407 defer logrus.Debug("devmapper: constructDeviceIDMap() END") 408 409 for _, info := range devices.Devices { 410 devices.markDeviceIDUsed(info.DeviceID) 411 logrus.Debugf("devmapper: Added deviceId=%d to DeviceIdMap", info.DeviceID) 412 } 413 } 414 415 func (devices *DeviceSet) deviceFileWalkFunction(path string, finfo os.FileInfo) error { 416 417 // Skip some of the meta files which are not device files. 418 if strings.HasSuffix(finfo.Name(), ".migrated") { 419 logrus.Debugf("devmapper: Skipping file %s", path) 420 return nil 421 } 422 423 if strings.HasPrefix(finfo.Name(), ".") { 424 logrus.Debugf("devmapper: Skipping file %s", path) 425 return nil 426 } 427 428 if finfo.Name() == deviceSetMetaFile { 429 logrus.Debugf("devmapper: Skipping file %s", path) 430 return nil 431 } 432 433 if finfo.Name() == transactionMetaFile { 434 logrus.Debugf("devmapper: Skipping file %s", path) 435 return nil 436 } 437 438 logrus.Debugf("devmapper: Loading data for file %s", path) 439 440 hash := finfo.Name() 441 if hash == "base" { 442 hash = "" 443 } 444 445 // Include deleted devices also as cleanup delete device logic 446 // will go through it and see if there are any deleted devices. 447 if _, err := devices.lookupDevice(hash); err != nil { 448 return fmt.Errorf("devmapper: Error looking up device %s:%v", hash, err) 449 } 450 451 return nil 452 } 453 454 func (devices *DeviceSet) loadDeviceFilesOnStart() error { 455 logrus.Debug("devmapper: loadDeviceFilesOnStart()") 456 defer logrus.Debug("devmapper: loadDeviceFilesOnStart() END") 457 458 var scan = func(path string, info os.FileInfo, err error) error { 459 if err != nil { 460 logrus.Debugf("devmapper: Can't walk the file %s", path) 461 return nil 462 } 463 464 // Skip any directories 465 if info.IsDir() { 466 return nil 467 } 468 469 return devices.deviceFileWalkFunction(path, info) 470 } 471 472 return filepath.Walk(devices.metadataDir(), scan) 473 } 474 475 // Should be called with devices.Lock() held. 476 func (devices *DeviceSet) unregisterDevice(hash string) error { 477 logrus.Debugf("devmapper: unregisterDevice(%v)", hash) 478 info := &devInfo{ 479 Hash: hash, 480 } 481 482 delete(devices.Devices, hash) 483 484 if err := devices.removeMetadata(info); err != nil { 485 logrus.Debugf("devmapper: Error removing metadata: %s", err) 486 return err 487 } 488 489 return nil 490 } 491 492 // Should be called with devices.Lock() held. 493 func (devices *DeviceSet) registerDevice(id int, hash string, size uint64, transactionID uint64) (*devInfo, error) { 494 logrus.Debugf("devmapper: registerDevice(%v, %v)", id, hash) 495 info := &devInfo{ 496 Hash: hash, 497 DeviceID: id, 498 Size: size, 499 TransactionID: transactionID, 500 Initialized: false, 501 devices: devices, 502 } 503 504 devices.Devices[hash] = info 505 506 if err := devices.saveMetadata(info); err != nil { 507 // Try to remove unused device 508 delete(devices.Devices, hash) 509 return nil, err 510 } 511 512 return info, nil 513 } 514 515 func (devices *DeviceSet) activateDeviceIfNeeded(info *devInfo, ignoreDeleted bool) error { 516 logrus.Debugf("devmapper: activateDeviceIfNeeded(%v)", info.Hash) 517 518 if info.Deleted && !ignoreDeleted { 519 return fmt.Errorf("devmapper: Can't activate device %v as it is marked for deletion", info.Hash) 520 } 521 522 // Make sure deferred removal on device is canceled, if one was 523 // scheduled. 524 if err := devices.cancelDeferredRemovalIfNeeded(info); err != nil { 525 return fmt.Errorf("devmapper: Device Deferred Removal Cancellation Failed: %s", err) 526 } 527 528 if devinfo, _ := devicemapper.GetInfo(info.Name()); devinfo != nil && devinfo.Exists != 0 { 529 return nil 530 } 531 532 return devicemapper.ActivateDevice(devices.getPoolDevName(), info.Name(), info.DeviceID, info.Size) 533 } 534 535 // xfsSupported checks if xfs is supported, returns nil if it is, otherwise an error 536 func xfsSupported() error { 537 // Make sure mkfs.xfs is available 538 if _, err := exec.LookPath("mkfs.xfs"); err != nil { 539 return err // error text is descriptive enough 540 } 541 542 // Check if kernel supports xfs filesystem or not. 543 exec.Command("modprobe", "xfs").Run() 544 545 f, err := os.Open("/proc/filesystems") 546 if err != nil { 547 return errors.Wrapf(err, "error checking for xfs support") 548 } 549 defer f.Close() 550 551 s := bufio.NewScanner(f) 552 for s.Scan() { 553 if strings.HasSuffix(s.Text(), "\txfs") { 554 return nil 555 } 556 } 557 558 if err := s.Err(); err != nil { 559 return errors.Wrapf(err, "error checking for xfs support") 560 } 561 562 return errors.New(`kernel does not support xfs, or "modprobe xfs" failed`) 563 } 564 565 func determineDefaultFS() string { 566 err := xfsSupported() 567 if err == nil { 568 return "xfs" 569 } 570 571 logrus.Warnf("devmapper: XFS is not supported in your system (%v). Defaulting to ext4 filesystem", err) 572 return "ext4" 573 } 574 575 // mkfsOptions tries to figure out whether some additional mkfs options are required 576 func mkfsOptions(fs string) []string { 577 if fs == "xfs" && !kernel.CheckKernelVersion(3, 16, 0) { 578 // For kernels earlier than 3.16 (and newer xfsutils), 579 // some xfs features need to be explicitly disabled. 580 return []string{"-m", "crc=0,finobt=0"} 581 } 582 583 return []string{} 584 } 585 586 func (devices *DeviceSet) createFilesystem(info *devInfo) (err error) { 587 devname := info.DevName() 588 589 if devices.filesystem == "" { 590 devices.filesystem = determineDefaultFS() 591 } 592 if err := devices.saveBaseDeviceFilesystem(devices.filesystem); err != nil { 593 return err 594 } 595 596 args := mkfsOptions(devices.filesystem) 597 args = append(args, devices.mkfsArgs...) 598 args = append(args, devname) 599 600 logrus.Infof("devmapper: Creating filesystem %s on device %s, mkfs args: %v", devices.filesystem, info.Name(), args) 601 defer func() { 602 if err != nil { 603 logrus.Infof("devmapper: Error while creating filesystem %s on device %s: %v", devices.filesystem, info.Name(), err) 604 } else { 605 logrus.Infof("devmapper: Successfully created filesystem %s on device %s", devices.filesystem, info.Name()) 606 } 607 }() 608 609 switch devices.filesystem { 610 case "xfs": 611 err = exec.Command("mkfs.xfs", args...).Run() 612 case "ext4": 613 err = exec.Command("mkfs.ext4", append([]string{"-E", "nodiscard,lazy_itable_init=0,lazy_journal_init=0"}, args...)...).Run() 614 if err != nil { 615 err = exec.Command("mkfs.ext4", append([]string{"-E", "nodiscard,lazy_itable_init=0"}, args...)...).Run() 616 } 617 if err != nil { 618 return err 619 } 620 err = exec.Command("tune2fs", append([]string{"-c", "-1", "-i", "0"}, devname)...).Run() 621 default: 622 err = fmt.Errorf("devmapper: Unsupported filesystem type %s", devices.filesystem) 623 } 624 return 625 } 626 627 func (devices *DeviceSet) migrateOldMetaData() error { 628 // Migrate old metadata file 629 jsonData, err := ioutil.ReadFile(devices.oldMetadataFile()) 630 if err != nil && !os.IsNotExist(err) { 631 return err 632 } 633 634 if jsonData != nil { 635 m := metaData{Devices: make(map[string]*devInfo)} 636 637 if err := json.Unmarshal(jsonData, &m); err != nil { 638 return err 639 } 640 641 for hash, info := range m.Devices { 642 info.Hash = hash 643 devices.saveMetadata(info) 644 } 645 if err := os.Rename(devices.oldMetadataFile(), devices.oldMetadataFile()+".migrated"); err != nil { 646 return err 647 } 648 649 } 650 651 return nil 652 } 653 654 // Cleanup deleted devices. It assumes that all the devices have been 655 // loaded in the hash table. 656 func (devices *DeviceSet) cleanupDeletedDevices() error { 657 devices.Lock() 658 659 // If there are no deleted devices, there is nothing to do. 660 if devices.nrDeletedDevices == 0 { 661 devices.Unlock() 662 return nil 663 } 664 665 var deletedDevices []*devInfo 666 667 for _, info := range devices.Devices { 668 if !info.Deleted { 669 continue 670 } 671 logrus.Debugf("devmapper: Found deleted device %s.", info.Hash) 672 deletedDevices = append(deletedDevices, info) 673 } 674 675 // Delete the deleted devices. DeleteDevice() first takes the info lock 676 // and then devices.Lock(). So drop it to avoid deadlock. 677 devices.Unlock() 678 679 for _, info := range deletedDevices { 680 // This will again try deferred deletion. 681 if err := devices.DeleteDevice(info.Hash, false); err != nil { 682 logrus.Warnf("devmapper: Deletion of device %s, device_id=%v failed:%v", info.Hash, info.DeviceID, err) 683 } 684 } 685 686 return nil 687 } 688 689 func (devices *DeviceSet) countDeletedDevices() { 690 for _, info := range devices.Devices { 691 if !info.Deleted { 692 continue 693 } 694 devices.nrDeletedDevices++ 695 } 696 } 697 698 func (devices *DeviceSet) startDeviceDeletionWorker() { 699 // Deferred deletion is not enabled. Don't do anything. 700 if !devices.deferredDelete { 701 return 702 } 703 704 logrus.Debug("devmapper: Worker to cleanup deleted devices started") 705 for range devices.deletionWorkerTicker.C { 706 devices.cleanupDeletedDevices() 707 } 708 } 709 710 func (devices *DeviceSet) initMetaData() error { 711 devices.Lock() 712 defer devices.Unlock() 713 714 if err := devices.migrateOldMetaData(); err != nil { 715 return err 716 } 717 718 _, transactionID, _, _, _, _, err := devices.poolStatus() 719 if err != nil { 720 return err 721 } 722 723 devices.TransactionID = transactionID 724 725 if err := devices.loadDeviceFilesOnStart(); err != nil { 726 return fmt.Errorf("devmapper: Failed to load device files:%v", err) 727 } 728 729 devices.constructDeviceIDMap() 730 devices.countDeletedDevices() 731 732 if err := devices.processPendingTransaction(); err != nil { 733 return err 734 } 735 736 // Start a goroutine to cleanup Deleted Devices 737 go devices.startDeviceDeletionWorker() 738 return nil 739 } 740 741 func (devices *DeviceSet) incNextDeviceID() { 742 // IDs are 24bit, so wrap around 743 devices.NextDeviceID = (devices.NextDeviceID + 1) & maxDeviceID 744 } 745 746 func (devices *DeviceSet) getNextFreeDeviceID() (int, error) { 747 devices.incNextDeviceID() 748 for i := 0; i <= maxDeviceID; i++ { 749 if devices.isDeviceIDFree(devices.NextDeviceID) { 750 devices.markDeviceIDUsed(devices.NextDeviceID) 751 return devices.NextDeviceID, nil 752 } 753 devices.incNextDeviceID() 754 } 755 756 return 0, fmt.Errorf("devmapper: Unable to find a free device ID") 757 } 758 759 func (devices *DeviceSet) poolHasFreeSpace() error { 760 if devices.minFreeSpacePercent == 0 { 761 return nil 762 } 763 764 _, _, dataUsed, dataTotal, metadataUsed, metadataTotal, err := devices.poolStatus() 765 if err != nil { 766 return err 767 } 768 769 minFreeData := (dataTotal * uint64(devices.minFreeSpacePercent)) / 100 770 if minFreeData < 1 { 771 minFreeData = 1 772 } 773 dataFree := dataTotal - dataUsed 774 if dataFree < minFreeData { 775 return fmt.Errorf("devmapper: Thin Pool has %v free data blocks which is less than minimum required %v free data blocks. Create more free space in thin pool or use dm.min_free_space option to change behavior", (dataTotal - dataUsed), minFreeData) 776 } 777 778 minFreeMetadata := (metadataTotal * uint64(devices.minFreeSpacePercent)) / 100 779 if minFreeMetadata < 1 { 780 minFreeMetadata = 1 781 } 782 783 metadataFree := metadataTotal - metadataUsed 784 if metadataFree < minFreeMetadata { 785 return fmt.Errorf("devmapper: Thin Pool has %v free metadata blocks which is less than minimum required %v free metadata blocks. Create more free metadata space in thin pool or use dm.min_free_space option to change behavior", (metadataTotal - metadataUsed), minFreeMetadata) 786 } 787 788 return nil 789 } 790 791 func (devices *DeviceSet) createRegisterDevice(hash string) (*devInfo, error) { 792 devices.Lock() 793 defer devices.Unlock() 794 795 deviceID, err := devices.getNextFreeDeviceID() 796 if err != nil { 797 return nil, err 798 } 799 800 if err := devices.openTransaction(hash, deviceID); err != nil { 801 logrus.Debugf("devmapper: Error opening transaction hash = %s deviceID = %d", hash, deviceID) 802 devices.markDeviceIDFree(deviceID) 803 return nil, err 804 } 805 806 for { 807 if err := devicemapper.CreateDevice(devices.getPoolDevName(), deviceID); err != nil { 808 if devicemapper.DeviceIDExists(err) { 809 // Device ID already exists. This should not 810 // happen. Now we have a mechanism to find 811 // a free device ID. So something is not right. 812 // Give a warning and continue. 813 logrus.Errorf("devmapper: Device ID %d exists in pool but it is supposed to be unused", deviceID) 814 deviceID, err = devices.getNextFreeDeviceID() 815 if err != nil { 816 return nil, err 817 } 818 // Save new device id into transaction 819 devices.refreshTransaction(deviceID) 820 continue 821 } 822 logrus.Debugf("devmapper: Error creating device: %s", err) 823 devices.markDeviceIDFree(deviceID) 824 return nil, err 825 } 826 break 827 } 828 829 logrus.Debugf("devmapper: Registering device (id %v) with FS size %v", deviceID, devices.baseFsSize) 830 info, err := devices.registerDevice(deviceID, hash, devices.baseFsSize, devices.OpenTransactionID) 831 if err != nil { 832 _ = devicemapper.DeleteDevice(devices.getPoolDevName(), deviceID) 833 devices.markDeviceIDFree(deviceID) 834 return nil, err 835 } 836 837 if err := devices.closeTransaction(); err != nil { 838 devices.unregisterDevice(hash) 839 devicemapper.DeleteDevice(devices.getPoolDevName(), deviceID) 840 devices.markDeviceIDFree(deviceID) 841 return nil, err 842 } 843 return info, nil 844 } 845 846 func (devices *DeviceSet) takeSnapshot(hash string, baseInfo *devInfo, size uint64) error { 847 var ( 848 devinfo *devicemapper.Info 849 err error 850 ) 851 852 if err = devices.poolHasFreeSpace(); err != nil { 853 return err 854 } 855 856 if devices.deferredRemove { 857 devinfo, err = devicemapper.GetInfoWithDeferred(baseInfo.Name()) 858 if err != nil { 859 return err 860 } 861 if devinfo != nil && devinfo.DeferredRemove != 0 { 862 err = devices.cancelDeferredRemoval(baseInfo) 863 if err != nil { 864 // If Error is ErrEnxio. Device is probably already gone. Continue. 865 if err != devicemapper.ErrEnxio { 866 return err 867 } 868 devinfo = nil 869 } else { 870 defer devices.deactivateDevice(baseInfo) 871 } 872 } 873 } else { 874 devinfo, err = devicemapper.GetInfo(baseInfo.Name()) 875 if err != nil { 876 return err 877 } 878 } 879 880 doSuspend := devinfo != nil && devinfo.Exists != 0 881 882 if doSuspend { 883 if err = devicemapper.SuspendDevice(baseInfo.Name()); err != nil { 884 return err 885 } 886 defer devicemapper.ResumeDevice(baseInfo.Name()) 887 } 888 889 return devices.createRegisterSnapDevice(hash, baseInfo, size) 890 } 891 892 func (devices *DeviceSet) createRegisterSnapDevice(hash string, baseInfo *devInfo, size uint64) error { 893 deviceID, err := devices.getNextFreeDeviceID() 894 if err != nil { 895 return err 896 } 897 898 if err := devices.openTransaction(hash, deviceID); err != nil { 899 logrus.Debugf("devmapper: Error opening transaction hash = %s deviceID = %d", hash, deviceID) 900 devices.markDeviceIDFree(deviceID) 901 return err 902 } 903 904 for { 905 if err := devicemapper.CreateSnapDeviceRaw(devices.getPoolDevName(), deviceID, baseInfo.DeviceID); err != nil { 906 if devicemapper.DeviceIDExists(err) { 907 // Device ID already exists. This should not 908 // happen. Now we have a mechanism to find 909 // a free device ID. So something is not right. 910 // Give a warning and continue. 911 logrus.Errorf("devmapper: Device ID %d exists in pool but it is supposed to be unused", deviceID) 912 deviceID, err = devices.getNextFreeDeviceID() 913 if err != nil { 914 return err 915 } 916 // Save new device id into transaction 917 devices.refreshTransaction(deviceID) 918 continue 919 } 920 logrus.Debugf("devmapper: Error creating snap device: %s", err) 921 devices.markDeviceIDFree(deviceID) 922 return err 923 } 924 break 925 } 926 927 if _, err := devices.registerDevice(deviceID, hash, size, devices.OpenTransactionID); err != nil { 928 devicemapper.DeleteDevice(devices.getPoolDevName(), deviceID) 929 devices.markDeviceIDFree(deviceID) 930 logrus.Debugf("devmapper: Error registering device: %s", err) 931 return err 932 } 933 934 if err := devices.closeTransaction(); err != nil { 935 devices.unregisterDevice(hash) 936 devicemapper.DeleteDevice(devices.getPoolDevName(), deviceID) 937 devices.markDeviceIDFree(deviceID) 938 return err 939 } 940 return nil 941 } 942 943 func (devices *DeviceSet) loadMetadata(hash string) *devInfo { 944 info := &devInfo{Hash: hash, devices: devices} 945 946 jsonData, err := ioutil.ReadFile(devices.metadataFile(info)) 947 if err != nil { 948 logrus.Debugf("devmapper: Failed to read %s with err: %v", devices.metadataFile(info), err) 949 return nil 950 } 951 952 if err := json.Unmarshal(jsonData, &info); err != nil { 953 logrus.Debugf("devmapper: Failed to unmarshal devInfo from %s with err: %v", devices.metadataFile(info), err) 954 return nil 955 } 956 957 if info.DeviceID > maxDeviceID { 958 logrus.Errorf("devmapper: Ignoring Invalid DeviceId=%d", info.DeviceID) 959 return nil 960 } 961 962 return info 963 } 964 965 func getDeviceUUID(device string) (string, error) { 966 out, err := exec.Command("blkid", "-s", "UUID", "-o", "value", device).Output() 967 if err != nil { 968 return "", fmt.Errorf("devmapper: Failed to find uuid for device %s:%v", device, err) 969 } 970 971 uuid := strings.TrimSuffix(string(out), "\n") 972 uuid = strings.TrimSpace(uuid) 973 logrus.Debugf("devmapper: UUID for device: %s is:%s", device, uuid) 974 return uuid, nil 975 } 976 977 func (devices *DeviceSet) getBaseDeviceSize() uint64 { 978 info, _ := devices.lookupDevice("") 979 if info == nil { 980 return 0 981 } 982 return info.Size 983 } 984 985 func (devices *DeviceSet) getBaseDeviceFS() string { 986 return devices.BaseDeviceFilesystem 987 } 988 989 func (devices *DeviceSet) verifyBaseDeviceUUIDFS(baseInfo *devInfo) error { 990 devices.Lock() 991 defer devices.Unlock() 992 993 if err := devices.activateDeviceIfNeeded(baseInfo, false); err != nil { 994 return err 995 } 996 defer devices.deactivateDevice(baseInfo) 997 998 uuid, err := getDeviceUUID(baseInfo.DevName()) 999 if err != nil { 1000 return err 1001 } 1002 1003 if devices.BaseDeviceUUID != uuid { 1004 return fmt.Errorf("devmapper: Current Base Device UUID:%s does not match with stored UUID:%s. Possibly using a different thin pool than last invocation", uuid, devices.BaseDeviceUUID) 1005 } 1006 1007 if devices.BaseDeviceFilesystem == "" { 1008 fsType, err := ProbeFsType(baseInfo.DevName()) 1009 if err != nil { 1010 return err 1011 } 1012 if err := devices.saveBaseDeviceFilesystem(fsType); err != nil { 1013 return err 1014 } 1015 } 1016 1017 // If user specified a filesystem using dm.fs option and current 1018 // file system of base image is not same, warn user that dm.fs 1019 // will be ignored. 1020 if devices.BaseDeviceFilesystem != devices.filesystem { 1021 logrus.Warnf("devmapper: Base device already exists and has filesystem %s on it. User specified filesystem %s will be ignored.", devices.BaseDeviceFilesystem, devices.filesystem) 1022 devices.filesystem = devices.BaseDeviceFilesystem 1023 } 1024 return nil 1025 } 1026 1027 func (devices *DeviceSet) saveBaseDeviceFilesystem(fs string) error { 1028 devices.BaseDeviceFilesystem = fs 1029 return devices.saveDeviceSetMetaData() 1030 } 1031 1032 func (devices *DeviceSet) saveBaseDeviceUUID(baseInfo *devInfo) error { 1033 devices.Lock() 1034 defer devices.Unlock() 1035 1036 if err := devices.activateDeviceIfNeeded(baseInfo, false); err != nil { 1037 return err 1038 } 1039 defer devices.deactivateDevice(baseInfo) 1040 1041 uuid, err := getDeviceUUID(baseInfo.DevName()) 1042 if err != nil { 1043 return err 1044 } 1045 1046 devices.BaseDeviceUUID = uuid 1047 return devices.saveDeviceSetMetaData() 1048 } 1049 1050 func (devices *DeviceSet) createBaseImage() error { 1051 logrus.Debug("devmapper: Initializing base device-mapper thin volume") 1052 1053 // Create initial device 1054 info, err := devices.createRegisterDevice("") 1055 if err != nil { 1056 return err 1057 } 1058 1059 logrus.Debug("devmapper: Creating filesystem on base device-mapper thin volume") 1060 1061 if err := devices.activateDeviceIfNeeded(info, false); err != nil { 1062 return err 1063 } 1064 1065 if err := devices.createFilesystem(info); err != nil { 1066 return err 1067 } 1068 1069 info.Initialized = true 1070 if err := devices.saveMetadata(info); err != nil { 1071 info.Initialized = false 1072 return err 1073 } 1074 1075 if err := devices.saveBaseDeviceUUID(info); err != nil { 1076 return fmt.Errorf("devmapper: Could not query and save base device UUID:%v", err) 1077 } 1078 1079 return nil 1080 } 1081 1082 // Returns if thin pool device exists or not. If device exists, also makes 1083 // sure it is a thin pool device and not some other type of device. 1084 func (devices *DeviceSet) thinPoolExists(thinPoolDevice string) (bool, error) { 1085 logrus.Debugf("devmapper: Checking for existence of the pool %s", thinPoolDevice) 1086 1087 info, err := devicemapper.GetInfo(thinPoolDevice) 1088 if err != nil { 1089 return false, fmt.Errorf("devmapper: GetInfo() on device %s failed: %v", thinPoolDevice, err) 1090 } 1091 1092 // Device does not exist. 1093 if info.Exists == 0 { 1094 return false, nil 1095 } 1096 1097 _, _, deviceType, _, err := devicemapper.GetStatus(thinPoolDevice) 1098 if err != nil { 1099 return false, fmt.Errorf("devmapper: GetStatus() on device %s failed: %v", thinPoolDevice, err) 1100 } 1101 1102 if deviceType != "thin-pool" { 1103 return false, fmt.Errorf("devmapper: Device %s is not a thin pool", thinPoolDevice) 1104 } 1105 1106 return true, nil 1107 } 1108 1109 func (devices *DeviceSet) checkThinPool() error { 1110 _, transactionID, dataUsed, _, _, _, err := devices.poolStatus() 1111 if err != nil { 1112 return err 1113 } 1114 if dataUsed != 0 { 1115 return fmt.Errorf("devmapper: Unable to take ownership of thin-pool (%s) that already has used data blocks", 1116 devices.thinPoolDevice) 1117 } 1118 if transactionID != 0 { 1119 return fmt.Errorf("devmapper: Unable to take ownership of thin-pool (%s) with non-zero transaction ID", 1120 devices.thinPoolDevice) 1121 } 1122 return nil 1123 } 1124 1125 // Base image is initialized properly. Either save UUID for first time (for 1126 // upgrade case or verify UUID. 1127 func (devices *DeviceSet) setupVerifyBaseImageUUIDFS(baseInfo *devInfo) error { 1128 // If BaseDeviceUUID is nil (upgrade case), save it and return success. 1129 if devices.BaseDeviceUUID == "" { 1130 if err := devices.saveBaseDeviceUUID(baseInfo); err != nil { 1131 return fmt.Errorf("devmapper: Could not query and save base device UUID:%v", err) 1132 } 1133 return nil 1134 } 1135 1136 if err := devices.verifyBaseDeviceUUIDFS(baseInfo); err != nil { 1137 return fmt.Errorf("devmapper: Base Device UUID and Filesystem verification failed: %v", err) 1138 } 1139 1140 return nil 1141 } 1142 1143 func (devices *DeviceSet) checkGrowBaseDeviceFS(info *devInfo) error { 1144 1145 if !userBaseSize { 1146 return nil 1147 } 1148 1149 if devices.baseFsSize < devices.getBaseDeviceSize() { 1150 return fmt.Errorf("devmapper: Base device size cannot be smaller than %s", units.HumanSize(float64(devices.getBaseDeviceSize()))) 1151 } 1152 1153 if devices.baseFsSize == devices.getBaseDeviceSize() { 1154 return nil 1155 } 1156 1157 info.lock.Lock() 1158 defer info.lock.Unlock() 1159 1160 devices.Lock() 1161 defer devices.Unlock() 1162 1163 info.Size = devices.baseFsSize 1164 1165 if err := devices.saveMetadata(info); err != nil { 1166 // Try to remove unused device 1167 delete(devices.Devices, info.Hash) 1168 return err 1169 } 1170 1171 return devices.growFS(info) 1172 } 1173 1174 func (devices *DeviceSet) growFS(info *devInfo) error { 1175 if err := devices.activateDeviceIfNeeded(info, false); err != nil { 1176 return fmt.Errorf("Error activating devmapper device: %s", err) 1177 } 1178 1179 defer devices.deactivateDevice(info) 1180 1181 fsMountPoint := "/run/docker/mnt" 1182 if _, err := os.Stat(fsMountPoint); os.IsNotExist(err) { 1183 if err := os.MkdirAll(fsMountPoint, 0700); err != nil { 1184 return err 1185 } 1186 defer os.RemoveAll(fsMountPoint) 1187 } 1188 1189 options := "" 1190 if devices.BaseDeviceFilesystem == "xfs" { 1191 // XFS needs nouuid or it can't mount filesystems with the same fs 1192 options = joinMountOptions(options, "nouuid") 1193 } 1194 options = joinMountOptions(options, devices.mountOptions) 1195 1196 if err := mount.Mount(info.DevName(), fsMountPoint, devices.BaseDeviceFilesystem, options); err != nil { 1197 return fmt.Errorf("Error mounting '%s' on '%s' (fstype='%s' options='%s'): %s\n%v", info.DevName(), fsMountPoint, devices.BaseDeviceFilesystem, options, err, string(dmesg.Dmesg(256))) 1198 } 1199 1200 defer unix.Unmount(fsMountPoint, unix.MNT_DETACH) 1201 1202 switch devices.BaseDeviceFilesystem { 1203 case "ext4": 1204 if out, err := exec.Command("resize2fs", info.DevName()).CombinedOutput(); err != nil { 1205 return fmt.Errorf("Failed to grow rootfs:%v:%s", err, string(out)) 1206 } 1207 case "xfs": 1208 if out, err := exec.Command("xfs_growfs", info.DevName()).CombinedOutput(); err != nil { 1209 return fmt.Errorf("Failed to grow rootfs:%v:%s", err, string(out)) 1210 } 1211 default: 1212 return fmt.Errorf("Unsupported filesystem type %s", devices.BaseDeviceFilesystem) 1213 } 1214 return nil 1215 } 1216 1217 func (devices *DeviceSet) setupBaseImage() error { 1218 oldInfo, _ := devices.lookupDeviceWithLock("") 1219 1220 // base image already exists. If it is initialized properly, do UUID 1221 // verification and return. Otherwise remove image and set it up 1222 // fresh. 1223 1224 if oldInfo != nil { 1225 if oldInfo.Initialized && !oldInfo.Deleted { 1226 if err := devices.setupVerifyBaseImageUUIDFS(oldInfo); err != nil { 1227 return err 1228 } 1229 return devices.checkGrowBaseDeviceFS(oldInfo) 1230 } 1231 1232 logrus.Debug("devmapper: Removing uninitialized base image") 1233 // If previous base device is in deferred delete state, 1234 // that needs to be cleaned up first. So don't try 1235 // deferred deletion. 1236 if err := devices.DeleteDevice("", true); err != nil { 1237 return err 1238 } 1239 } 1240 1241 // If we are setting up base image for the first time, make sure 1242 // thin pool is empty. 1243 if devices.thinPoolDevice != "" && oldInfo == nil { 1244 if err := devices.checkThinPool(); err != nil { 1245 return err 1246 } 1247 } 1248 1249 // Create new base image device 1250 return devices.createBaseImage() 1251 } 1252 1253 func setCloseOnExec(name string) { 1254 fileInfos, _ := ioutil.ReadDir("/proc/self/fd") 1255 for _, i := range fileInfos { 1256 link, _ := os.Readlink(filepath.Join("/proc/self/fd", i.Name())) 1257 if link == name { 1258 fd, err := strconv.Atoi(i.Name()) 1259 if err == nil { 1260 unix.CloseOnExec(fd) 1261 } 1262 } 1263 } 1264 } 1265 1266 func major(device uint64) uint64 { 1267 return (device >> 8) & 0xfff 1268 } 1269 1270 func minor(device uint64) uint64 { 1271 return (device & 0xff) | ((device >> 12) & 0xfff00) 1272 } 1273 1274 // ResizePool increases the size of the pool. 1275 func (devices *DeviceSet) ResizePool(size int64) error { 1276 dirname := devices.loopbackDir() 1277 datafilename := path.Join(dirname, "data") 1278 if len(devices.dataDevice) > 0 { 1279 datafilename = devices.dataDevice 1280 } 1281 metadatafilename := path.Join(dirname, "metadata") 1282 if len(devices.metadataDevice) > 0 { 1283 metadatafilename = devices.metadataDevice 1284 } 1285 1286 datafile, err := os.OpenFile(datafilename, os.O_RDWR, 0) 1287 if datafile == nil { 1288 return err 1289 } 1290 defer datafile.Close() 1291 1292 fi, err := datafile.Stat() 1293 if fi == nil { 1294 return err 1295 } 1296 1297 if fi.Size() > size { 1298 return fmt.Errorf("devmapper: Can't shrink file") 1299 } 1300 1301 dataloopback := loopback.FindLoopDeviceFor(datafile) 1302 if dataloopback == nil { 1303 return fmt.Errorf("devmapper: Unable to find loopback mount for: %s", datafilename) 1304 } 1305 defer dataloopback.Close() 1306 1307 metadatafile, err := os.OpenFile(metadatafilename, os.O_RDWR, 0) 1308 if metadatafile == nil { 1309 return err 1310 } 1311 defer metadatafile.Close() 1312 1313 metadataloopback := loopback.FindLoopDeviceFor(metadatafile) 1314 if metadataloopback == nil { 1315 return fmt.Errorf("devmapper: Unable to find loopback mount for: %s", metadatafilename) 1316 } 1317 defer metadataloopback.Close() 1318 1319 // Grow loopback file 1320 if err := datafile.Truncate(size); err != nil { 1321 return fmt.Errorf("devmapper: Unable to grow loopback file: %s", err) 1322 } 1323 1324 // Reload size for loopback device 1325 if err := loopback.SetCapacity(dataloopback); err != nil { 1326 return fmt.Errorf("Unable to update loopback capacity: %s", err) 1327 } 1328 1329 // Suspend the pool 1330 if err := devicemapper.SuspendDevice(devices.getPoolName()); err != nil { 1331 return fmt.Errorf("devmapper: Unable to suspend pool: %s", err) 1332 } 1333 1334 // Reload with the new block sizes 1335 if err := devicemapper.ReloadPool(devices.getPoolName(), dataloopback, metadataloopback, devices.thinpBlockSize); err != nil { 1336 return fmt.Errorf("devmapper: Unable to reload pool: %s", err) 1337 } 1338 1339 // Resume the pool 1340 if err := devicemapper.ResumeDevice(devices.getPoolName()); err != nil { 1341 return fmt.Errorf("devmapper: Unable to resume pool: %s", err) 1342 } 1343 1344 return nil 1345 } 1346 1347 func (devices *DeviceSet) loadTransactionMetaData() error { 1348 jsonData, err := ioutil.ReadFile(devices.transactionMetaFile()) 1349 if err != nil { 1350 // There is no active transaction. This will be the case 1351 // during upgrade. 1352 if os.IsNotExist(err) { 1353 devices.OpenTransactionID = devices.TransactionID 1354 return nil 1355 } 1356 return err 1357 } 1358 1359 json.Unmarshal(jsonData, &devices.transaction) 1360 return nil 1361 } 1362 1363 func (devices *DeviceSet) saveTransactionMetaData() error { 1364 jsonData, err := json.Marshal(&devices.transaction) 1365 if err != nil { 1366 return fmt.Errorf("devmapper: Error encoding metadata to json: %s", err) 1367 } 1368 1369 return devices.writeMetaFile(jsonData, devices.transactionMetaFile()) 1370 } 1371 1372 func (devices *DeviceSet) removeTransactionMetaData() error { 1373 return os.RemoveAll(devices.transactionMetaFile()) 1374 } 1375 1376 func (devices *DeviceSet) rollbackTransaction() error { 1377 logrus.Debugf("devmapper: Rolling back open transaction: TransactionID=%d hash=%s device_id=%d", devices.OpenTransactionID, devices.DeviceIDHash, devices.DeviceID) 1378 1379 // A device id might have already been deleted before transaction 1380 // closed. In that case this call will fail. Just leave a message 1381 // in case of failure. 1382 if err := devicemapper.DeleteDevice(devices.getPoolDevName(), devices.DeviceID); err != nil { 1383 logrus.Errorf("devmapper: Unable to delete device: %s", err) 1384 } 1385 1386 dinfo := &devInfo{Hash: devices.DeviceIDHash} 1387 if err := devices.removeMetadata(dinfo); err != nil { 1388 logrus.Errorf("devmapper: Unable to remove metadata: %s", err) 1389 } else { 1390 devices.markDeviceIDFree(devices.DeviceID) 1391 } 1392 1393 if err := devices.removeTransactionMetaData(); err != nil { 1394 logrus.Errorf("devmapper: Unable to remove transaction meta file %s: %s", devices.transactionMetaFile(), err) 1395 } 1396 1397 return nil 1398 } 1399 1400 func (devices *DeviceSet) processPendingTransaction() error { 1401 if err := devices.loadTransactionMetaData(); err != nil { 1402 return err 1403 } 1404 1405 // If there was open transaction but pool transaction ID is same 1406 // as open transaction ID, nothing to roll back. 1407 if devices.TransactionID == devices.OpenTransactionID { 1408 return nil 1409 } 1410 1411 // If open transaction ID is less than pool transaction ID, something 1412 // is wrong. Bail out. 1413 if devices.OpenTransactionID < devices.TransactionID { 1414 logrus.Errorf("devmapper: Open Transaction id %d is less than pool transaction id %d", devices.OpenTransactionID, devices.TransactionID) 1415 return nil 1416 } 1417 1418 // Pool transaction ID is not same as open transaction. There is 1419 // a transaction which was not completed. 1420 if err := devices.rollbackTransaction(); err != nil { 1421 return fmt.Errorf("devmapper: Rolling back open transaction failed: %s", err) 1422 } 1423 1424 devices.OpenTransactionID = devices.TransactionID 1425 return nil 1426 } 1427 1428 func (devices *DeviceSet) loadDeviceSetMetaData() error { 1429 jsonData, err := ioutil.ReadFile(devices.deviceSetMetaFile()) 1430 if err != nil { 1431 // For backward compatibility return success if file does 1432 // not exist. 1433 if os.IsNotExist(err) { 1434 return nil 1435 } 1436 return err 1437 } 1438 1439 return json.Unmarshal(jsonData, devices) 1440 } 1441 1442 func (devices *DeviceSet) saveDeviceSetMetaData() error { 1443 jsonData, err := json.Marshal(devices) 1444 if err != nil { 1445 return fmt.Errorf("devmapper: Error encoding metadata to json: %s", err) 1446 } 1447 1448 return devices.writeMetaFile(jsonData, devices.deviceSetMetaFile()) 1449 } 1450 1451 func (devices *DeviceSet) openTransaction(hash string, DeviceID int) error { 1452 devices.allocateTransactionID() 1453 devices.DeviceIDHash = hash 1454 devices.DeviceID = DeviceID 1455 if err := devices.saveTransactionMetaData(); err != nil { 1456 return fmt.Errorf("devmapper: Error saving transaction metadata: %s", err) 1457 } 1458 return nil 1459 } 1460 1461 func (devices *DeviceSet) refreshTransaction(DeviceID int) error { 1462 devices.DeviceID = DeviceID 1463 if err := devices.saveTransactionMetaData(); err != nil { 1464 return fmt.Errorf("devmapper: Error saving transaction metadata: %s", err) 1465 } 1466 return nil 1467 } 1468 1469 func (devices *DeviceSet) closeTransaction() error { 1470 if err := devices.updatePoolTransactionID(); err != nil { 1471 logrus.Debug("devmapper: Failed to close Transaction") 1472 return err 1473 } 1474 return nil 1475 } 1476 1477 func determineDriverCapabilities(version string) error { 1478 // Kernel driver version >= 4.27.0 support deferred removal 1479 1480 logrus.Debugf("devicemapper: kernel dm driver version is %s", version) 1481 1482 versionSplit := strings.Split(version, ".") 1483 major, err := strconv.Atoi(versionSplit[0]) 1484 if err != nil { 1485 return graphdriver.ErrNotSupported 1486 } 1487 1488 if major > 4 { 1489 driverDeferredRemovalSupport = true 1490 return nil 1491 } 1492 1493 if major < 4 { 1494 return nil 1495 } 1496 1497 minor, err := strconv.Atoi(versionSplit[1]) 1498 if err != nil { 1499 return graphdriver.ErrNotSupported 1500 } 1501 1502 /* 1503 * If major is 4 and minor is 27, then there is no need to 1504 * check for patch level as it can not be less than 0. 1505 */ 1506 if minor >= 27 { 1507 driverDeferredRemovalSupport = true 1508 return nil 1509 } 1510 1511 return nil 1512 } 1513 1514 // Determine the major and minor number of loopback device 1515 func getDeviceMajorMinor(file *os.File) (uint64, uint64, error) { 1516 var stat unix.Stat_t 1517 err := unix.Stat(file.Name(), &stat) 1518 if err != nil { 1519 return 0, 0, err 1520 } 1521 1522 dev := stat.Rdev 1523 majorNum := major(dev) 1524 minorNum := minor(dev) 1525 1526 logrus.Debugf("devmapper: Major:Minor for device: %s is:%v:%v", file.Name(), majorNum, minorNum) 1527 return majorNum, minorNum, nil 1528 } 1529 1530 // Given a file which is backing file of a loop back device, find the 1531 // loopback device name and its major/minor number. 1532 func getLoopFileDeviceMajMin(filename string) (string, uint64, uint64, error) { 1533 file, err := os.Open(filename) 1534 if err != nil { 1535 logrus.Debugf("devmapper: Failed to open file %s", filename) 1536 return "", 0, 0, err 1537 } 1538 1539 defer file.Close() 1540 loopbackDevice := loopback.FindLoopDeviceFor(file) 1541 if loopbackDevice == nil { 1542 return "", 0, 0, fmt.Errorf("devmapper: Unable to find loopback mount for: %s", filename) 1543 } 1544 defer loopbackDevice.Close() 1545 1546 Major, Minor, err := getDeviceMajorMinor(loopbackDevice) 1547 if err != nil { 1548 return "", 0, 0, err 1549 } 1550 return loopbackDevice.Name(), Major, Minor, nil 1551 } 1552 1553 // Get the major/minor numbers of thin pool data and metadata devices 1554 func (devices *DeviceSet) getThinPoolDataMetaMajMin() (uint64, uint64, uint64, uint64, error) { 1555 var params, poolDataMajMin, poolMetadataMajMin string 1556 1557 _, _, _, params, err := devicemapper.GetTable(devices.getPoolName()) 1558 if err != nil { 1559 return 0, 0, 0, 0, err 1560 } 1561 1562 if _, err = fmt.Sscanf(params, "%s %s", &poolMetadataMajMin, &poolDataMajMin); err != nil { 1563 return 0, 0, 0, 0, err 1564 } 1565 1566 logrus.Debugf("devmapper: poolDataMajMin=%s poolMetaMajMin=%s\n", poolDataMajMin, poolMetadataMajMin) 1567 1568 poolDataMajMinorSplit := strings.Split(poolDataMajMin, ":") 1569 poolDataMajor, err := strconv.ParseUint(poolDataMajMinorSplit[0], 10, 32) 1570 if err != nil { 1571 return 0, 0, 0, 0, err 1572 } 1573 1574 poolDataMinor, err := strconv.ParseUint(poolDataMajMinorSplit[1], 10, 32) 1575 if err != nil { 1576 return 0, 0, 0, 0, err 1577 } 1578 1579 poolMetadataMajMinorSplit := strings.Split(poolMetadataMajMin, ":") 1580 poolMetadataMajor, err := strconv.ParseUint(poolMetadataMajMinorSplit[0], 10, 32) 1581 if err != nil { 1582 return 0, 0, 0, 0, err 1583 } 1584 1585 poolMetadataMinor, err := strconv.ParseUint(poolMetadataMajMinorSplit[1], 10, 32) 1586 if err != nil { 1587 return 0, 0, 0, 0, err 1588 } 1589 1590 return poolDataMajor, poolDataMinor, poolMetadataMajor, poolMetadataMinor, nil 1591 } 1592 1593 func (devices *DeviceSet) loadThinPoolLoopBackInfo() error { 1594 poolDataMajor, poolDataMinor, poolMetadataMajor, poolMetadataMinor, err := devices.getThinPoolDataMetaMajMin() 1595 if err != nil { 1596 return err 1597 } 1598 1599 dirname := devices.loopbackDir() 1600 1601 // data device has not been passed in. So there should be a data file 1602 // which is being mounted as loop device. 1603 if devices.dataDevice == "" { 1604 datafilename := path.Join(dirname, "data") 1605 dataLoopDevice, dataMajor, dataMinor, err := getLoopFileDeviceMajMin(datafilename) 1606 if err != nil { 1607 return err 1608 } 1609 1610 // Compare the two 1611 if poolDataMajor == dataMajor && poolDataMinor == dataMinor { 1612 devices.dataDevice = dataLoopDevice 1613 devices.dataLoopFile = datafilename 1614 } 1615 1616 } 1617 1618 // metadata device has not been passed in. So there should be a 1619 // metadata file which is being mounted as loop device. 1620 if devices.metadataDevice == "" { 1621 metadatafilename := path.Join(dirname, "metadata") 1622 metadataLoopDevice, metadataMajor, metadataMinor, err := getLoopFileDeviceMajMin(metadatafilename) 1623 if err != nil { 1624 return err 1625 } 1626 if poolMetadataMajor == metadataMajor && poolMetadataMinor == metadataMinor { 1627 devices.metadataDevice = metadataLoopDevice 1628 devices.metadataLoopFile = metadatafilename 1629 } 1630 } 1631 1632 return nil 1633 } 1634 1635 func (devices *DeviceSet) enableDeferredRemovalDeletion() error { 1636 1637 // If user asked for deferred removal then check both libdm library 1638 // and kernel driver support deferred removal otherwise error out. 1639 if enableDeferredRemoval { 1640 if !driverDeferredRemovalSupport { 1641 return fmt.Errorf("devmapper: Deferred removal can not be enabled as kernel does not support it") 1642 } 1643 if !devicemapper.LibraryDeferredRemovalSupport { 1644 return fmt.Errorf("devmapper: Deferred removal can not be enabled as libdm does not support it") 1645 } 1646 logrus.Debug("devmapper: Deferred removal support enabled.") 1647 devices.deferredRemove = true 1648 } 1649 1650 if enableDeferredDeletion { 1651 if !devices.deferredRemove { 1652 return fmt.Errorf("devmapper: Deferred deletion can not be enabled as deferred removal is not enabled. Enable deferred removal using --storage-opt dm.use_deferred_removal=true parameter") 1653 } 1654 logrus.Debug("devmapper: Deferred deletion support enabled.") 1655 devices.deferredDelete = true 1656 } 1657 return nil 1658 } 1659 1660 func (devices *DeviceSet) initDevmapper(doInit bool) (retErr error) { 1661 if err := devices.enableDeferredRemovalDeletion(); err != nil { 1662 return err 1663 } 1664 1665 // https://github.com/docker/docker/issues/4036 1666 if supported := devicemapper.UdevSetSyncSupport(true); !supported { 1667 if dockerversion.IAmStatic == "true" { 1668 logrus.Error("devmapper: Udev sync is not supported. This will lead to data loss and unexpected behavior. Install a dynamic binary to use devicemapper or select a different storage driver. For more information, see https://docs.docker.com/engine/reference/commandline/dockerd/#storage-driver-options") 1669 } else { 1670 logrus.Error("devmapper: Udev sync is not supported. This will lead to data loss and unexpected behavior. Install a more recent version of libdevmapper or select a different storage driver. For more information, see https://docs.docker.com/engine/reference/commandline/dockerd/#storage-driver-options") 1671 } 1672 1673 if !devices.overrideUdevSyncCheck { 1674 return graphdriver.ErrNotSupported 1675 } 1676 } 1677 1678 //create the root dir of the devmapper driver ownership to match this 1679 //daemon's remapped root uid/gid so containers can start properly 1680 uid, gid, err := idtools.GetRootUIDGID(devices.uidMaps, devices.gidMaps) 1681 if err != nil { 1682 return err 1683 } 1684 if err := idtools.MkdirAndChown(devices.root, 0700, idtools.IDPair{UID: uid, GID: gid}); err != nil { 1685 return err 1686 } 1687 if err := os.MkdirAll(devices.metadataDir(), 0700); err != nil { 1688 return err 1689 } 1690 1691 prevSetupConfig, err := readLVMConfig(devices.root) 1692 if err != nil { 1693 return err 1694 } 1695 1696 if !reflect.DeepEqual(devices.lvmSetupConfig, directLVMConfig{}) { 1697 if devices.thinPoolDevice != "" { 1698 return errors.New("cannot setup direct-lvm when `dm.thinpooldev` is also specified") 1699 } 1700 1701 if !reflect.DeepEqual(prevSetupConfig, devices.lvmSetupConfig) { 1702 if !reflect.DeepEqual(prevSetupConfig, directLVMConfig{}) { 1703 return errors.New("changing direct-lvm config is not supported") 1704 } 1705 logrus.WithField("storage-driver", "devicemapper").WithField("direct-lvm-config", devices.lvmSetupConfig).Debugf("Setting up direct lvm mode") 1706 if err := verifyBlockDevice(devices.lvmSetupConfig.Device, lvmSetupConfigForce); err != nil { 1707 return err 1708 } 1709 if err := setupDirectLVM(devices.lvmSetupConfig); err != nil { 1710 return err 1711 } 1712 if err := writeLVMConfig(devices.root, devices.lvmSetupConfig); err != nil { 1713 return err 1714 } 1715 } 1716 devices.thinPoolDevice = "docker-thinpool" 1717 logrus.WithField("storage-driver", "devicemapper").Debugf("Setting dm.thinpooldev to %q", devices.thinPoolDevice) 1718 } 1719 1720 // Set the device prefix from the device id and inode of the docker root dir 1721 var st unix.Stat_t 1722 if err := unix.Stat(devices.root, &st); err != nil { 1723 return fmt.Errorf("devmapper: Error looking up dir %s: %s", devices.root, err) 1724 } 1725 // "reg-" stands for "regular file". 1726 // In the future we might use "dev-" for "device file", etc. 1727 // docker-maj,min[-inode] stands for: 1728 // - Managed by docker 1729 // - The target of this device is at major <maj> and minor <min> 1730 // - If <inode> is defined, use that file inside the device as a loopback image. Otherwise use the device itself. 1731 devices.devicePrefix = fmt.Sprintf("docker-%d:%d-%d", major(st.Dev), minor(st.Dev), st.Ino) 1732 logrus.Debugf("devmapper: Generated prefix: %s", devices.devicePrefix) 1733 1734 // Check for the existence of the thin-pool device 1735 poolExists, err := devices.thinPoolExists(devices.getPoolName()) 1736 if err != nil { 1737 return err 1738 } 1739 1740 // It seems libdevmapper opens this without O_CLOEXEC, and go exec will not close files 1741 // that are not Close-on-exec, 1742 // so we add this badhack to make sure it closes itself 1743 setCloseOnExec("/dev/mapper/control") 1744 1745 // Make sure the sparse images exist in <root>/devicemapper/data and 1746 // <root>/devicemapper/metadata 1747 1748 createdLoopback := false 1749 1750 // If the pool doesn't exist, create it 1751 if !poolExists && devices.thinPoolDevice == "" { 1752 logrus.Debug("devmapper: Pool doesn't exist. Creating it.") 1753 1754 var ( 1755 dataFile *os.File 1756 metadataFile *os.File 1757 ) 1758 1759 if devices.dataDevice == "" { 1760 // Make sure the sparse images exist in <root>/devicemapper/data 1761 1762 hasData := devices.hasImage("data") 1763 1764 if !doInit && !hasData { 1765 return errors.New("loopback data file not found") 1766 } 1767 1768 if !hasData { 1769 createdLoopback = true 1770 } 1771 1772 data, err := devices.ensureImage("data", devices.dataLoopbackSize) 1773 if err != nil { 1774 logrus.Debugf("devmapper: Error device ensureImage (data): %s", err) 1775 return err 1776 } 1777 1778 dataFile, err = loopback.AttachLoopDevice(data) 1779 if err != nil { 1780 return err 1781 } 1782 devices.dataLoopFile = data 1783 devices.dataDevice = dataFile.Name() 1784 } else { 1785 dataFile, err = os.OpenFile(devices.dataDevice, os.O_RDWR, 0600) 1786 if err != nil { 1787 return err 1788 } 1789 } 1790 defer dataFile.Close() 1791 1792 if devices.metadataDevice == "" { 1793 // Make sure the sparse images exist in <root>/devicemapper/metadata 1794 1795 hasMetadata := devices.hasImage("metadata") 1796 1797 if !doInit && !hasMetadata { 1798 return errors.New("loopback metadata file not found") 1799 } 1800 1801 if !hasMetadata { 1802 createdLoopback = true 1803 } 1804 1805 metadata, err := devices.ensureImage("metadata", devices.metaDataLoopbackSize) 1806 if err != nil { 1807 logrus.Debugf("devmapper: Error device ensureImage (metadata): %s", err) 1808 return err 1809 } 1810 1811 metadataFile, err = loopback.AttachLoopDevice(metadata) 1812 if err != nil { 1813 return err 1814 } 1815 devices.metadataLoopFile = metadata 1816 devices.metadataDevice = metadataFile.Name() 1817 } else { 1818 metadataFile, err = os.OpenFile(devices.metadataDevice, os.O_RDWR, 0600) 1819 if err != nil { 1820 return err 1821 } 1822 } 1823 defer metadataFile.Close() 1824 1825 if err := devicemapper.CreatePool(devices.getPoolName(), dataFile, metadataFile, devices.thinpBlockSize); err != nil { 1826 return err 1827 } 1828 defer func() { 1829 if retErr != nil { 1830 err = devices.deactivatePool() 1831 if err != nil { 1832 logrus.Warnf("devmapper: Failed to deactivatePool: %v", err) 1833 } 1834 } 1835 }() 1836 } 1837 1838 // Pool already exists and caller did not pass us a pool. That means 1839 // we probably created pool earlier and could not remove it as some 1840 // containers were still using it. Detect some of the properties of 1841 // pool, like is it using loop devices. 1842 if poolExists && devices.thinPoolDevice == "" { 1843 if err := devices.loadThinPoolLoopBackInfo(); err != nil { 1844 logrus.Debugf("devmapper: Failed to load thin pool loopback device information:%v", err) 1845 return err 1846 } 1847 } 1848 1849 // If we didn't just create the data or metadata image, we need to 1850 // load the transaction id and migrate old metadata 1851 if !createdLoopback { 1852 if err := devices.initMetaData(); err != nil { 1853 return err 1854 } 1855 } 1856 1857 if devices.thinPoolDevice == "" { 1858 if devices.metadataLoopFile != "" || devices.dataLoopFile != "" { 1859 logrus.Warn("devmapper: Usage of loopback devices is strongly discouraged for production use. Please use `--storage-opt dm.thinpooldev` or use `man dockerd` to refer to dm.thinpooldev section.") 1860 } 1861 } 1862 1863 // Right now this loads only NextDeviceID. If there is more metadata 1864 // down the line, we might have to move it earlier. 1865 if err := devices.loadDeviceSetMetaData(); err != nil { 1866 return err 1867 } 1868 1869 // Setup the base image 1870 if doInit { 1871 if err := devices.setupBaseImage(); err != nil { 1872 logrus.Debugf("devmapper: Error device setupBaseImage: %s", err) 1873 return err 1874 } 1875 } 1876 1877 return nil 1878 } 1879 1880 // AddDevice adds a device and registers in the hash. 1881 func (devices *DeviceSet) AddDevice(hash, baseHash string, storageOpt map[string]string) error { 1882 logrus.Debugf("devmapper: AddDevice START(hash=%s basehash=%s)", hash, baseHash) 1883 defer logrus.Debugf("devmapper: AddDevice END(hash=%s basehash=%s)", hash, baseHash) 1884 1885 // If a deleted device exists, return error. 1886 baseInfo, err := devices.lookupDeviceWithLock(baseHash) 1887 if err != nil { 1888 return err 1889 } 1890 1891 if baseInfo.Deleted { 1892 return fmt.Errorf("devmapper: Base device %v has been marked for deferred deletion", baseInfo.Hash) 1893 } 1894 1895 baseInfo.lock.Lock() 1896 defer baseInfo.lock.Unlock() 1897 1898 devices.Lock() 1899 defer devices.Unlock() 1900 1901 // Also include deleted devices in case hash of new device is 1902 // same as one of the deleted devices. 1903 if info, _ := devices.lookupDevice(hash); info != nil { 1904 return fmt.Errorf("devmapper: device %s already exists. Deleted=%v", hash, info.Deleted) 1905 } 1906 1907 size, err := devices.parseStorageOpt(storageOpt) 1908 if err != nil { 1909 return err 1910 } 1911 1912 if size == 0 { 1913 size = baseInfo.Size 1914 } 1915 1916 if size < baseInfo.Size { 1917 return fmt.Errorf("devmapper: Container size cannot be smaller than %s", units.HumanSize(float64(baseInfo.Size))) 1918 } 1919 1920 if err := devices.takeSnapshot(hash, baseInfo, size); err != nil { 1921 return err 1922 } 1923 1924 // Grow the container rootfs. 1925 if size > baseInfo.Size { 1926 info, err := devices.lookupDevice(hash) 1927 if err != nil { 1928 return err 1929 } 1930 1931 if err := devices.growFS(info); err != nil { 1932 return err 1933 } 1934 } 1935 1936 return nil 1937 } 1938 1939 func (devices *DeviceSet) parseStorageOpt(storageOpt map[string]string) (uint64, error) { 1940 1941 // Read size to change the block device size per container. 1942 for key, val := range storageOpt { 1943 key := strings.ToLower(key) 1944 switch key { 1945 case "size": 1946 size, err := units.RAMInBytes(val) 1947 if err != nil { 1948 return 0, err 1949 } 1950 return uint64(size), nil 1951 default: 1952 return 0, fmt.Errorf("Unknown option %s", key) 1953 } 1954 } 1955 1956 return 0, nil 1957 } 1958 1959 func (devices *DeviceSet) markForDeferredDeletion(info *devInfo) error { 1960 // If device is already in deleted state, there is nothing to be done. 1961 if info.Deleted { 1962 return nil 1963 } 1964 1965 logrus.Debugf("devmapper: Marking device %s for deferred deletion.", info.Hash) 1966 1967 info.Deleted = true 1968 1969 // save device metadata to reflect deleted state. 1970 if err := devices.saveMetadata(info); err != nil { 1971 info.Deleted = false 1972 return err 1973 } 1974 1975 devices.nrDeletedDevices++ 1976 return nil 1977 } 1978 1979 // Should be called with devices.Lock() held. 1980 func (devices *DeviceSet) deleteTransaction(info *devInfo, syncDelete bool) error { 1981 if err := devices.openTransaction(info.Hash, info.DeviceID); err != nil { 1982 logrus.Debugf("devmapper: Error opening transaction hash = %s deviceId = %d", "", info.DeviceID) 1983 return err 1984 } 1985 1986 defer devices.closeTransaction() 1987 1988 err := devicemapper.DeleteDevice(devices.getPoolDevName(), info.DeviceID) 1989 if err != nil { 1990 // If syncDelete is true, we want to return error. If deferred 1991 // deletion is not enabled, we return an error. If error is 1992 // something other then EBUSY, return an error. 1993 if syncDelete || !devices.deferredDelete || err != devicemapper.ErrBusy { 1994 logrus.Debugf("devmapper: Error deleting device: %s", err) 1995 return err 1996 } 1997 } 1998 1999 if err == nil { 2000 if err := devices.unregisterDevice(info.Hash); err != nil { 2001 return err 2002 } 2003 // If device was already in deferred delete state that means 2004 // deletion was being tried again later. Reduce the deleted 2005 // device count. 2006 if info.Deleted { 2007 devices.nrDeletedDevices-- 2008 } 2009 devices.markDeviceIDFree(info.DeviceID) 2010 } else { 2011 if err := devices.markForDeferredDeletion(info); err != nil { 2012 return err 2013 } 2014 } 2015 2016 return nil 2017 } 2018 2019 // Issue discard only if device open count is zero. 2020 func (devices *DeviceSet) issueDiscard(info *devInfo) error { 2021 logrus.Debugf("devmapper: issueDiscard START(device: %s).", info.Hash) 2022 defer logrus.Debugf("devmapper: issueDiscard END(device: %s).", info.Hash) 2023 // This is a workaround for the kernel not discarding block so 2024 // on the thin pool when we remove a thinp device, so we do it 2025 // manually. 2026 // Even if device is deferred deleted, activate it and issue 2027 // discards. 2028 if err := devices.activateDeviceIfNeeded(info, true); err != nil { 2029 return err 2030 } 2031 2032 devinfo, err := devicemapper.GetInfo(info.Name()) 2033 if err != nil { 2034 return err 2035 } 2036 2037 if devinfo.OpenCount != 0 { 2038 logrus.Debugf("devmapper: Device: %s is in use. OpenCount=%d. Not issuing discards.", info.Hash, devinfo.OpenCount) 2039 return nil 2040 } 2041 2042 if err := devicemapper.BlockDeviceDiscard(info.DevName()); err != nil { 2043 logrus.Debugf("devmapper: Error discarding block on device: %s (ignoring)", err) 2044 } 2045 return nil 2046 } 2047 2048 // Should be called with devices.Lock() held. 2049 func (devices *DeviceSet) deleteDevice(info *devInfo, syncDelete bool) error { 2050 if devices.doBlkDiscard { 2051 devices.issueDiscard(info) 2052 } 2053 2054 // Try to deactivate device in case it is active. 2055 // If deferred removal is enabled and deferred deletion is disabled 2056 // then make sure device is removed synchronously. There have been 2057 // some cases of device being busy for short duration and we would 2058 // rather busy wait for device removal to take care of these cases. 2059 deferredRemove := devices.deferredRemove 2060 if !devices.deferredDelete { 2061 deferredRemove = false 2062 } 2063 2064 if err := devices.deactivateDeviceMode(info, deferredRemove); err != nil { 2065 logrus.Debugf("devmapper: Error deactivating device: %s", err) 2066 return err 2067 } 2068 2069 return devices.deleteTransaction(info, syncDelete) 2070 } 2071 2072 // DeleteDevice will return success if device has been marked for deferred 2073 // removal. If one wants to override that and want DeleteDevice() to fail if 2074 // device was busy and could not be deleted, set syncDelete=true. 2075 func (devices *DeviceSet) DeleteDevice(hash string, syncDelete bool) error { 2076 logrus.Debugf("devmapper: DeleteDevice START(hash=%v syncDelete=%v)", hash, syncDelete) 2077 defer logrus.Debugf("devmapper: DeleteDevice END(hash=%v syncDelete=%v)", hash, syncDelete) 2078 info, err := devices.lookupDeviceWithLock(hash) 2079 if err != nil { 2080 return err 2081 } 2082 2083 info.lock.Lock() 2084 defer info.lock.Unlock() 2085 2086 devices.Lock() 2087 defer devices.Unlock() 2088 2089 return devices.deleteDevice(info, syncDelete) 2090 } 2091 2092 func (devices *DeviceSet) deactivatePool() error { 2093 logrus.Debug("devmapper: deactivatePool() START") 2094 defer logrus.Debug("devmapper: deactivatePool() END") 2095 devname := devices.getPoolDevName() 2096 2097 devinfo, err := devicemapper.GetInfo(devname) 2098 if err != nil { 2099 return err 2100 } 2101 2102 if devinfo.Exists == 0 { 2103 return nil 2104 } 2105 if err := devicemapper.RemoveDevice(devname); err != nil { 2106 return err 2107 } 2108 2109 if d, err := devicemapper.GetDeps(devname); err == nil { 2110 logrus.Warnf("devmapper: device %s still has %d active dependents", devname, d.Count) 2111 } 2112 2113 return nil 2114 } 2115 2116 func (devices *DeviceSet) deactivateDevice(info *devInfo) error { 2117 return devices.deactivateDeviceMode(info, devices.deferredRemove) 2118 } 2119 2120 func (devices *DeviceSet) deactivateDeviceMode(info *devInfo, deferredRemove bool) error { 2121 var err error 2122 logrus.Debugf("devmapper: deactivateDevice START(%s)", info.Hash) 2123 defer logrus.Debugf("devmapper: deactivateDevice END(%s)", info.Hash) 2124 2125 devinfo, err := devicemapper.GetInfo(info.Name()) 2126 if err != nil { 2127 return err 2128 } 2129 2130 if devinfo.Exists == 0 { 2131 return nil 2132 } 2133 2134 if deferredRemove { 2135 err = devicemapper.RemoveDeviceDeferred(info.Name()) 2136 } else { 2137 err = devices.removeDevice(info.Name()) 2138 } 2139 2140 // This function's semantics is such that it does not return an 2141 // error if device does not exist. So if device went away by 2142 // the time we actually tried to remove it, do not return error. 2143 if err != devicemapper.ErrEnxio { 2144 return err 2145 } 2146 return nil 2147 } 2148 2149 // Issues the underlying dm remove operation. 2150 func (devices *DeviceSet) removeDevice(devname string) error { 2151 var err error 2152 2153 logrus.Debugf("devmapper: removeDevice START(%s)", devname) 2154 defer logrus.Debugf("devmapper: removeDevice END(%s)", devname) 2155 2156 for i := 0; i < 200; i++ { 2157 err = devicemapper.RemoveDevice(devname) 2158 if err == nil { 2159 break 2160 } 2161 if err != devicemapper.ErrBusy { 2162 return err 2163 } 2164 2165 // If we see EBUSY it may be a transient error, 2166 // sleep a bit a retry a few times. 2167 devices.Unlock() 2168 time.Sleep(100 * time.Millisecond) 2169 devices.Lock() 2170 } 2171 2172 return err 2173 } 2174 2175 func (devices *DeviceSet) cancelDeferredRemovalIfNeeded(info *devInfo) error { 2176 if !devices.deferredRemove { 2177 return nil 2178 } 2179 2180 logrus.Debugf("devmapper: cancelDeferredRemovalIfNeeded START(%s)", info.Name()) 2181 defer logrus.Debugf("devmapper: cancelDeferredRemovalIfNeeded END(%s)", info.Name()) 2182 2183 devinfo, err := devicemapper.GetInfoWithDeferred(info.Name()) 2184 if err != nil { 2185 return err 2186 } 2187 2188 if devinfo != nil && devinfo.DeferredRemove == 0 { 2189 return nil 2190 } 2191 2192 // Cancel deferred remove 2193 if err := devices.cancelDeferredRemoval(info); err != nil { 2194 // If Error is ErrEnxio. Device is probably already gone. Continue. 2195 if err != devicemapper.ErrEnxio { 2196 return err 2197 } 2198 } 2199 return nil 2200 } 2201 2202 func (devices *DeviceSet) cancelDeferredRemoval(info *devInfo) error { 2203 logrus.Debugf("devmapper: cancelDeferredRemoval START(%s)", info.Name()) 2204 defer logrus.Debugf("devmapper: cancelDeferredRemoval END(%s)", info.Name()) 2205 2206 var err error 2207 2208 // Cancel deferred remove 2209 for i := 0; i < 100; i++ { 2210 err = devicemapper.CancelDeferredRemove(info.Name()) 2211 if err != nil { 2212 if err == devicemapper.ErrBusy { 2213 // If we see EBUSY it may be a transient error, 2214 // sleep a bit a retry a few times. 2215 devices.Unlock() 2216 time.Sleep(100 * time.Millisecond) 2217 devices.Lock() 2218 continue 2219 } 2220 } 2221 break 2222 } 2223 return err 2224 } 2225 2226 // Shutdown shuts down the device by unmounting the root. 2227 func (devices *DeviceSet) Shutdown(home string) error { 2228 logrus.Debugf("devmapper: [deviceset %s] Shutdown()", devices.devicePrefix) 2229 logrus.Debugf("devmapper: Shutting down DeviceSet: %s", devices.root) 2230 defer logrus.Debugf("devmapper: [deviceset %s] Shutdown() END", devices.devicePrefix) 2231 2232 // Stop deletion worker. This should start delivering new events to 2233 // ticker channel. That means no new instance of cleanupDeletedDevice() 2234 // will run after this call. If one instance is already running at 2235 // the time of the call, it must be holding devices.Lock() and 2236 // we will block on this lock till cleanup function exits. 2237 devices.deletionWorkerTicker.Stop() 2238 2239 devices.Lock() 2240 // Save DeviceSet Metadata first. Docker kills all threads if they 2241 // don't finish in certain time. It is possible that Shutdown() 2242 // routine does not finish in time as we loop trying to deactivate 2243 // some devices while these are busy. In that case shutdown() routine 2244 // will be killed and we will not get a chance to save deviceset 2245 // metadata. Hence save this early before trying to deactivate devices. 2246 devices.saveDeviceSetMetaData() 2247 2248 // ignore the error since it's just a best effort to not try to unmount something that's mounted 2249 mounts, _ := mount.GetMounts() 2250 mounted := make(map[string]bool, len(mounts)) 2251 for _, mnt := range mounts { 2252 mounted[mnt.Mountpoint] = true 2253 } 2254 2255 if err := filepath.Walk(path.Join(home, "mnt"), func(p string, info os.FileInfo, err error) error { 2256 if err != nil { 2257 return err 2258 } 2259 if !info.IsDir() { 2260 return nil 2261 } 2262 2263 if mounted[p] { 2264 // We use MNT_DETACH here in case it is still busy in some running 2265 // container. This means it'll go away from the global scope directly, 2266 // and the device will be released when that container dies. 2267 if err := unix.Unmount(p, unix.MNT_DETACH); err != nil { 2268 logrus.Debugf("devmapper: Shutdown unmounting %s, error: %s", p, err) 2269 } 2270 } 2271 2272 if devInfo, err := devices.lookupDevice(path.Base(p)); err != nil { 2273 logrus.Debugf("devmapper: Shutdown lookup device %s, error: %s", path.Base(p), err) 2274 } else { 2275 if err := devices.deactivateDevice(devInfo); err != nil { 2276 logrus.Debugf("devmapper: Shutdown deactivate %s , error: %s", devInfo.Hash, err) 2277 } 2278 } 2279 2280 return nil 2281 }); err != nil && !os.IsNotExist(err) { 2282 devices.Unlock() 2283 return err 2284 } 2285 2286 devices.Unlock() 2287 2288 info, _ := devices.lookupDeviceWithLock("") 2289 if info != nil { 2290 info.lock.Lock() 2291 devices.Lock() 2292 if err := devices.deactivateDevice(info); err != nil { 2293 logrus.Debugf("devmapper: Shutdown deactivate base , error: %s", err) 2294 } 2295 devices.Unlock() 2296 info.lock.Unlock() 2297 } 2298 2299 devices.Lock() 2300 if devices.thinPoolDevice == "" { 2301 if err := devices.deactivatePool(); err != nil { 2302 logrus.Debugf("devmapper: Shutdown deactivate pool , error: %s", err) 2303 } 2304 } 2305 devices.Unlock() 2306 2307 return nil 2308 } 2309 2310 // Recent XFS changes allow changing behavior of filesystem in case of errors. 2311 // When thin pool gets full and XFS gets ENOSPC error, currently it tries 2312 // IO infinitely and sometimes it can block the container process 2313 // and process can't be killWith 0 value, XFS will not retry upon error 2314 // and instead will shutdown filesystem. 2315 2316 func (devices *DeviceSet) xfsSetNospaceRetries(info *devInfo) error { 2317 dmDevicePath, err := os.Readlink(info.DevName()) 2318 if err != nil { 2319 return fmt.Errorf("devmapper: readlink failed for device %v:%v", info.DevName(), err) 2320 } 2321 2322 dmDeviceName := path.Base(dmDevicePath) 2323 filePath := "/sys/fs/xfs/" + dmDeviceName + "/error/metadata/ENOSPC/max_retries" 2324 maxRetriesFile, err := os.OpenFile(filePath, os.O_WRONLY, 0) 2325 if err != nil { 2326 return fmt.Errorf("devmapper: user specified daemon option dm.xfs_nospace_max_retries but it does not seem to be supported on this system :%v", err) 2327 } 2328 defer maxRetriesFile.Close() 2329 2330 // Set max retries to 0 2331 _, err = maxRetriesFile.WriteString(devices.xfsNospaceRetries) 2332 if err != nil { 2333 return fmt.Errorf("devmapper: Failed to write string %v to file %v:%v", devices.xfsNospaceRetries, filePath, err) 2334 } 2335 return nil 2336 } 2337 2338 // MountDevice mounts the device if not already mounted. 2339 func (devices *DeviceSet) MountDevice(hash, path, mountLabel string) error { 2340 info, err := devices.lookupDeviceWithLock(hash) 2341 if err != nil { 2342 return err 2343 } 2344 2345 if info.Deleted { 2346 return fmt.Errorf("devmapper: Can't mount device %v as it has been marked for deferred deletion", info.Hash) 2347 } 2348 2349 info.lock.Lock() 2350 defer info.lock.Unlock() 2351 2352 devices.Lock() 2353 defer devices.Unlock() 2354 2355 if err := devices.activateDeviceIfNeeded(info, false); err != nil { 2356 return fmt.Errorf("devmapper: Error activating devmapper device for '%s': %s", hash, err) 2357 } 2358 2359 fstype, err := ProbeFsType(info.DevName()) 2360 if err != nil { 2361 return err 2362 } 2363 2364 options := "" 2365 2366 if fstype == "xfs" { 2367 // XFS needs nouuid or it can't mount filesystems with the same fs 2368 options = joinMountOptions(options, "nouuid") 2369 } 2370 2371 options = joinMountOptions(options, devices.mountOptions) 2372 options = joinMountOptions(options, label.FormatMountLabel("", mountLabel)) 2373 2374 if err := mount.Mount(info.DevName(), path, fstype, options); err != nil { 2375 return fmt.Errorf("devmapper: Error mounting '%s' on '%s' (fstype='%s' options='%s'): %s\n%v", info.DevName(), path, fstype, options, err, string(dmesg.Dmesg(256))) 2376 } 2377 2378 if fstype == "xfs" && devices.xfsNospaceRetries != "" { 2379 if err := devices.xfsSetNospaceRetries(info); err != nil { 2380 unix.Unmount(path, unix.MNT_DETACH) 2381 devices.deactivateDevice(info) 2382 return err 2383 } 2384 } 2385 2386 return nil 2387 } 2388 2389 // UnmountDevice unmounts the device and removes it from hash. 2390 func (devices *DeviceSet) UnmountDevice(hash, mountPath string) error { 2391 logrus.Debugf("devmapper: UnmountDevice START(hash=%s)", hash) 2392 defer logrus.Debugf("devmapper: UnmountDevice END(hash=%s)", hash) 2393 2394 info, err := devices.lookupDeviceWithLock(hash) 2395 if err != nil { 2396 return err 2397 } 2398 2399 info.lock.Lock() 2400 defer info.lock.Unlock() 2401 2402 devices.Lock() 2403 defer devices.Unlock() 2404 2405 logrus.Debugf("devmapper: Unmount(%s)", mountPath) 2406 if err := unix.Unmount(mountPath, unix.MNT_DETACH); err != nil { 2407 return err 2408 } 2409 logrus.Debug("devmapper: Unmount done") 2410 2411 // Remove the mountpoint here. Removing the mountpoint (in newer kernels) 2412 // will cause all other instances of this mount in other mount namespaces 2413 // to be killed (this is an anti-DoS measure that is necessary for things 2414 // like devicemapper). This is necessary to avoid cases where a libdm mount 2415 // that is present in another namespace will cause subsequent RemoveDevice 2416 // operations to fail. We ignore any errors here because this may fail on 2417 // older kernels which don't have 2418 // torvalds/linux@8ed936b5671bfb33d89bc60bdcc7cf0470ba52fe applied. 2419 if err := os.Remove(mountPath); err != nil { 2420 logrus.Debugf("devmapper: error doing a remove on unmounted device %s: %v", mountPath, err) 2421 } 2422 2423 return devices.deactivateDevice(info) 2424 } 2425 2426 // HasDevice returns true if the device metadata exists. 2427 func (devices *DeviceSet) HasDevice(hash string) bool { 2428 info, _ := devices.lookupDeviceWithLock(hash) 2429 return info != nil 2430 } 2431 2432 // List returns a list of device ids. 2433 func (devices *DeviceSet) List() []string { 2434 devices.Lock() 2435 defer devices.Unlock() 2436 2437 ids := make([]string, len(devices.Devices)) 2438 i := 0 2439 for k := range devices.Devices { 2440 ids[i] = k 2441 i++ 2442 } 2443 return ids 2444 } 2445 2446 func (devices *DeviceSet) deviceStatus(devName string) (sizeInSectors, mappedSectors, highestMappedSector uint64, err error) { 2447 var params string 2448 _, sizeInSectors, _, params, err = devicemapper.GetStatus(devName) 2449 if err != nil { 2450 return 2451 } 2452 if _, err = fmt.Sscanf(params, "%d %d", &mappedSectors, &highestMappedSector); err == nil { 2453 return 2454 } 2455 return 2456 } 2457 2458 // GetDeviceStatus provides size, mapped sectors 2459 func (devices *DeviceSet) GetDeviceStatus(hash string) (*DevStatus, error) { 2460 info, err := devices.lookupDeviceWithLock(hash) 2461 if err != nil { 2462 return nil, err 2463 } 2464 2465 info.lock.Lock() 2466 defer info.lock.Unlock() 2467 2468 devices.Lock() 2469 defer devices.Unlock() 2470 2471 status := &DevStatus{ 2472 DeviceID: info.DeviceID, 2473 Size: info.Size, 2474 TransactionID: info.TransactionID, 2475 } 2476 2477 if err := devices.activateDeviceIfNeeded(info, false); err != nil { 2478 return nil, fmt.Errorf("devmapper: Error activating devmapper device for '%s': %s", hash, err) 2479 } 2480 2481 sizeInSectors, mappedSectors, highestMappedSector, err := devices.deviceStatus(info.DevName()) 2482 2483 if err != nil { 2484 return nil, err 2485 } 2486 2487 status.SizeInSectors = sizeInSectors 2488 status.MappedSectors = mappedSectors 2489 status.HighestMappedSector = highestMappedSector 2490 2491 return status, nil 2492 } 2493 2494 func (devices *DeviceSet) poolStatus() (totalSizeInSectors, transactionID, dataUsed, dataTotal, metadataUsed, metadataTotal uint64, err error) { 2495 var params string 2496 if _, totalSizeInSectors, _, params, err = devicemapper.GetStatus(devices.getPoolName()); err == nil { 2497 _, err = fmt.Sscanf(params, "%d %d/%d %d/%d", &transactionID, &metadataUsed, &metadataTotal, &dataUsed, &dataTotal) 2498 } 2499 return 2500 } 2501 2502 // DataDevicePath returns the path to the data storage for this deviceset, 2503 // regardless of loopback or block device 2504 func (devices *DeviceSet) DataDevicePath() string { 2505 return devices.dataDevice 2506 } 2507 2508 // MetadataDevicePath returns the path to the metadata storage for this deviceset, 2509 // regardless of loopback or block device 2510 func (devices *DeviceSet) MetadataDevicePath() string { 2511 return devices.metadataDevice 2512 } 2513 2514 func (devices *DeviceSet) getUnderlyingAvailableSpace(loopFile string) (uint64, error) { 2515 buf := new(unix.Statfs_t) 2516 if err := unix.Statfs(loopFile, buf); err != nil { 2517 logrus.Warnf("devmapper: Couldn't stat loopfile filesystem %v: %v", loopFile, err) 2518 return 0, err 2519 } 2520 return buf.Bfree * uint64(buf.Bsize), nil 2521 } 2522 2523 func (devices *DeviceSet) isRealFile(loopFile string) (bool, error) { 2524 if loopFile != "" { 2525 fi, err := os.Stat(loopFile) 2526 if err != nil { 2527 logrus.Warnf("devmapper: Couldn't stat loopfile %v: %v", loopFile, err) 2528 return false, err 2529 } 2530 return fi.Mode().IsRegular(), nil 2531 } 2532 return false, nil 2533 } 2534 2535 // Status returns the current status of this deviceset 2536 func (devices *DeviceSet) Status() *Status { 2537 devices.Lock() 2538 defer devices.Unlock() 2539 2540 status := &Status{} 2541 2542 status.PoolName = devices.getPoolName() 2543 status.DataFile = devices.DataDevicePath() 2544 status.DataLoopback = devices.dataLoopFile 2545 status.MetadataFile = devices.MetadataDevicePath() 2546 status.MetadataLoopback = devices.metadataLoopFile 2547 status.UdevSyncSupported = devicemapper.UdevSyncSupported() 2548 status.DeferredRemoveEnabled = devices.deferredRemove 2549 status.DeferredDeleteEnabled = devices.deferredDelete 2550 status.DeferredDeletedDeviceCount = devices.nrDeletedDevices 2551 status.BaseDeviceSize = devices.getBaseDeviceSize() 2552 status.BaseDeviceFS = devices.getBaseDeviceFS() 2553 2554 totalSizeInSectors, _, dataUsed, dataTotal, metadataUsed, metadataTotal, err := devices.poolStatus() 2555 if err == nil { 2556 // Convert from blocks to bytes 2557 blockSizeInSectors := totalSizeInSectors / dataTotal 2558 2559 status.Data.Used = dataUsed * blockSizeInSectors * 512 2560 status.Data.Total = dataTotal * blockSizeInSectors * 512 2561 status.Data.Available = status.Data.Total - status.Data.Used 2562 2563 // metadata blocks are always 4k 2564 status.Metadata.Used = metadataUsed * 4096 2565 status.Metadata.Total = metadataTotal * 4096 2566 status.Metadata.Available = status.Metadata.Total - status.Metadata.Used 2567 2568 status.SectorSize = blockSizeInSectors * 512 2569 2570 if check, _ := devices.isRealFile(devices.dataLoopFile); check { 2571 actualSpace, err := devices.getUnderlyingAvailableSpace(devices.dataLoopFile) 2572 if err == nil && actualSpace < status.Data.Available { 2573 status.Data.Available = actualSpace 2574 } 2575 } 2576 2577 if check, _ := devices.isRealFile(devices.metadataLoopFile); check { 2578 actualSpace, err := devices.getUnderlyingAvailableSpace(devices.metadataLoopFile) 2579 if err == nil && actualSpace < status.Metadata.Available { 2580 status.Metadata.Available = actualSpace 2581 } 2582 } 2583 2584 minFreeData := (dataTotal * uint64(devices.minFreeSpacePercent)) / 100 2585 status.MinFreeSpace = minFreeData * blockSizeInSectors * 512 2586 } 2587 2588 return status 2589 } 2590 2591 // Status returns the current status of this deviceset 2592 func (devices *DeviceSet) exportDeviceMetadata(hash string) (*deviceMetadata, error) { 2593 info, err := devices.lookupDeviceWithLock(hash) 2594 if err != nil { 2595 return nil, err 2596 } 2597 2598 info.lock.Lock() 2599 defer info.lock.Unlock() 2600 2601 metadata := &deviceMetadata{info.DeviceID, info.Size, info.Name()} 2602 return metadata, nil 2603 } 2604 2605 // NewDeviceSet creates the device set based on the options provided. 2606 func NewDeviceSet(root string, doInit bool, options []string, uidMaps, gidMaps []idtools.IDMap) (*DeviceSet, error) { 2607 devicemapper.SetDevDir("/dev") 2608 2609 devices := &DeviceSet{ 2610 root: root, 2611 metaData: metaData{Devices: make(map[string]*devInfo)}, 2612 dataLoopbackSize: defaultDataLoopbackSize, 2613 metaDataLoopbackSize: defaultMetaDataLoopbackSize, 2614 baseFsSize: defaultBaseFsSize, 2615 overrideUdevSyncCheck: defaultUdevSyncOverride, 2616 doBlkDiscard: true, 2617 thinpBlockSize: defaultThinpBlockSize, 2618 deviceIDMap: make([]byte, deviceIDMapSz), 2619 deletionWorkerTicker: time.NewTicker(time.Second * 30), 2620 uidMaps: uidMaps, 2621 gidMaps: gidMaps, 2622 minFreeSpacePercent: defaultMinFreeSpacePercent, 2623 } 2624 2625 version, err := devicemapper.GetDriverVersion() 2626 if err != nil { 2627 // Can't even get driver version, assume not supported 2628 return nil, graphdriver.ErrNotSupported 2629 } 2630 2631 if err := determineDriverCapabilities(version); err != nil { 2632 return nil, graphdriver.ErrNotSupported 2633 } 2634 2635 if driverDeferredRemovalSupport && devicemapper.LibraryDeferredRemovalSupport { 2636 // enable deferred stuff by default 2637 enableDeferredDeletion = true 2638 enableDeferredRemoval = true 2639 } 2640 2641 foundBlkDiscard := false 2642 var lvmSetupConfig directLVMConfig 2643 for _, option := range options { 2644 key, val, err := parsers.ParseKeyValueOpt(option) 2645 if err != nil { 2646 return nil, err 2647 } 2648 key = strings.ToLower(key) 2649 switch key { 2650 case "dm.basesize": 2651 size, err := units.RAMInBytes(val) 2652 if err != nil { 2653 return nil, err 2654 } 2655 userBaseSize = true 2656 devices.baseFsSize = uint64(size) 2657 case "dm.loopdatasize": 2658 size, err := units.RAMInBytes(val) 2659 if err != nil { 2660 return nil, err 2661 } 2662 devices.dataLoopbackSize = size 2663 case "dm.loopmetadatasize": 2664 size, err := units.RAMInBytes(val) 2665 if err != nil { 2666 return nil, err 2667 } 2668 devices.metaDataLoopbackSize = size 2669 case "dm.fs": 2670 if val != "ext4" && val != "xfs" { 2671 return nil, fmt.Errorf("devmapper: Unsupported filesystem %s", val) 2672 } 2673 devices.filesystem = val 2674 case "dm.mkfsarg": 2675 devices.mkfsArgs = append(devices.mkfsArgs, val) 2676 case "dm.mountopt": 2677 devices.mountOptions = joinMountOptions(devices.mountOptions, val) 2678 case "dm.metadatadev": 2679 devices.metadataDevice = val 2680 case "dm.datadev": 2681 devices.dataDevice = val 2682 case "dm.thinpooldev": 2683 devices.thinPoolDevice = strings.TrimPrefix(val, "/dev/mapper/") 2684 case "dm.blkdiscard": 2685 foundBlkDiscard = true 2686 devices.doBlkDiscard, err = strconv.ParseBool(val) 2687 if err != nil { 2688 return nil, err 2689 } 2690 case "dm.blocksize": 2691 size, err := units.RAMInBytes(val) 2692 if err != nil { 2693 return nil, err 2694 } 2695 // convert to 512b sectors 2696 devices.thinpBlockSize = uint32(size) >> 9 2697 case "dm.override_udev_sync_check": 2698 devices.overrideUdevSyncCheck, err = strconv.ParseBool(val) 2699 if err != nil { 2700 return nil, err 2701 } 2702 2703 case "dm.use_deferred_removal": 2704 enableDeferredRemoval, err = strconv.ParseBool(val) 2705 if err != nil { 2706 return nil, err 2707 } 2708 2709 case "dm.use_deferred_deletion": 2710 enableDeferredDeletion, err = strconv.ParseBool(val) 2711 if err != nil { 2712 return nil, err 2713 } 2714 2715 case "dm.min_free_space": 2716 if !strings.HasSuffix(val, "%") { 2717 return nil, fmt.Errorf("devmapper: Option dm.min_free_space requires %% suffix") 2718 } 2719 2720 valstring := strings.TrimSuffix(val, "%") 2721 minFreeSpacePercent, err := strconv.ParseUint(valstring, 10, 32) 2722 if err != nil { 2723 return nil, err 2724 } 2725 2726 if minFreeSpacePercent >= 100 { 2727 return nil, fmt.Errorf("devmapper: Invalid value %v for option dm.min_free_space", val) 2728 } 2729 2730 devices.minFreeSpacePercent = uint32(minFreeSpacePercent) 2731 case "dm.xfs_nospace_max_retries": 2732 _, err := strconv.ParseUint(val, 10, 64) 2733 if err != nil { 2734 return nil, err 2735 } 2736 devices.xfsNospaceRetries = val 2737 case "dm.directlvm_device": 2738 lvmSetupConfig.Device = val 2739 case "dm.directlvm_device_force": 2740 lvmSetupConfigForce, err = strconv.ParseBool(val) 2741 if err != nil { 2742 return nil, err 2743 } 2744 case "dm.thinp_percent": 2745 per, err := strconv.ParseUint(strings.TrimSuffix(val, "%"), 10, 32) 2746 if err != nil { 2747 return nil, errors.Wrapf(err, "could not parse `dm.thinp_percent=%s`", val) 2748 } 2749 if per >= 100 { 2750 return nil, errors.New("dm.thinp_percent must be greater than 0 and less than 100") 2751 } 2752 lvmSetupConfig.ThinpPercent = per 2753 case "dm.thinp_metapercent": 2754 per, err := strconv.ParseUint(strings.TrimSuffix(val, "%"), 10, 32) 2755 if err != nil { 2756 return nil, errors.Wrapf(err, "could not parse `dm.thinp_metapercent=%s`", val) 2757 } 2758 if per >= 100 { 2759 return nil, errors.New("dm.thinp_metapercent must be greater than 0 and less than 100") 2760 } 2761 lvmSetupConfig.ThinpMetaPercent = per 2762 case "dm.thinp_autoextend_percent": 2763 per, err := strconv.ParseUint(strings.TrimSuffix(val, "%"), 10, 32) 2764 if err != nil { 2765 return nil, errors.Wrapf(err, "could not parse `dm.thinp_autoextend_percent=%s`", val) 2766 } 2767 if per > 100 { 2768 return nil, errors.New("dm.thinp_autoextend_percent must be greater than 0 and less than 100") 2769 } 2770 lvmSetupConfig.AutoExtendPercent = per 2771 case "dm.thinp_autoextend_threshold": 2772 per, err := strconv.ParseUint(strings.TrimSuffix(val, "%"), 10, 32) 2773 if err != nil { 2774 return nil, errors.Wrapf(err, "could not parse `dm.thinp_autoextend_threshold=%s`", val) 2775 } 2776 if per > 100 { 2777 return nil, errors.New("dm.thinp_autoextend_threshold must be greater than 0 and less than 100") 2778 } 2779 lvmSetupConfig.AutoExtendThreshold = per 2780 case "dm.libdm_log_level": 2781 level, err := strconv.ParseInt(val, 10, 32) 2782 if err != nil { 2783 return nil, errors.Wrapf(err, "could not parse `dm.libdm_log_level=%s`", val) 2784 } 2785 if level < devicemapper.LogLevelFatal || level > devicemapper.LogLevelDebug { 2786 return nil, errors.Errorf("dm.libdm_log_level must be in range [%d,%d]", devicemapper.LogLevelFatal, devicemapper.LogLevelDebug) 2787 } 2788 // Register a new logging callback with the specified level. 2789 devicemapper.LogInit(devicemapper.DefaultLogger{ 2790 Level: int(level), 2791 }) 2792 default: 2793 return nil, fmt.Errorf("devmapper: Unknown option %s", key) 2794 } 2795 } 2796 2797 if err := validateLVMConfig(lvmSetupConfig); err != nil { 2798 return nil, err 2799 } 2800 2801 devices.lvmSetupConfig = lvmSetupConfig 2802 2803 // By default, don't do blk discard hack on raw devices, its rarely useful and is expensive 2804 if !foundBlkDiscard && (devices.dataDevice != "" || devices.thinPoolDevice != "") { 2805 devices.doBlkDiscard = false 2806 } 2807 2808 if err := devices.initDevmapper(doInit); err != nil { 2809 return nil, err 2810 } 2811 2812 return devices, nil 2813 }