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  }