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// +build linux freebsd
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package daemon
import (
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"bytes"
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"encoding/json"
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"fmt"
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"io/ioutil"
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"net"
"os"
"path/filepath"
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"runtime"
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"runtime/debug"
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"strconv"
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"strings"
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"syscall"
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"time"
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"github.com/Sirupsen/logrus"
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"github.com/docker/docker/api/types"
"github.com/docker/docker/api/types/blkiodev"
pblkiodev "github.com/docker/docker/api/types/blkiodev"
containertypes "github.com/docker/docker/api/types/container"
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"github.com/docker/docker/container"
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"github.com/docker/docker/image"
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"github.com/docker/docker/pkg/idtools"
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"github.com/docker/docker/pkg/parsers"
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"github.com/docker/docker/pkg/parsers/kernel"
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"github.com/docker/docker/pkg/sysinfo"
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"github.com/docker/docker/runconfig"
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runconfigopts "github.com/docker/docker/runconfig/opts"
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"github.com/docker/libnetwork"
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nwconfig "github.com/docker/libnetwork/config"
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"github.com/docker/libnetwork/drivers/bridge"
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"github.com/docker/libnetwork/netlabel"
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"github.com/docker/libnetwork/netutils"
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"github.com/docker/libnetwork/options"
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lntypes "github.com/docker/libnetwork/types"
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"github.com/golang/protobuf/ptypes"
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"github.com/opencontainers/runc/libcontainer/cgroups"
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"github.com/opencontainers/runc/libcontainer/label"
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rsystem "github.com/opencontainers/runc/libcontainer/system"
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specs "github.com/opencontainers/runtime-spec/specs-go"
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"github.com/pkg/errors"
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"github.com/vishvananda/netlink"
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)
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const (
// See https://git.kernel.org/cgit/linux/kernel/git/tip/tip.git/tree/kernel/sched/sched.h?id=8cd9234c64c584432f6992fe944ca9e46ca8ea76#n269
linuxMinCPUShares = 2
linuxMaxCPUShares = 262144
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platformSupported = true
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// It's not kernel limit, we want this 4M limit to supply a reasonable functional container
linuxMinMemory = 4194304
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// constants for remapped root settings
defaultIDSpecifier string = "default"
defaultRemappedID string = "dockremap"
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// constant for cgroup drivers
cgroupFsDriver = "cgroupfs"
cgroupSystemdDriver = "systemd"
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)
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func getMemoryResources ( config containertypes . Resources ) * specs . Memory {
memory := specs . Memory { }
if config . Memory > 0 {
limit := uint64 ( config . Memory )
memory . Limit = & limit
}
if config . MemoryReservation > 0 {
reservation := uint64 ( config . MemoryReservation )
memory . Reservation = & reservation
}
if config . MemorySwap != 0 {
swap := uint64 ( config . MemorySwap )
memory . Swap = & swap
}
if config . MemorySwappiness != nil {
swappiness := uint64 ( * config . MemorySwappiness )
memory . Swappiness = & swappiness
}
if config . KernelMemory != 0 {
kernelMemory := uint64 ( config . KernelMemory )
memory . Kernel = & kernelMemory
}
return & memory
}
func getCPUResources ( config containertypes . Resources ) * specs . CPU {
cpu := specs . CPU { }
if config . CPUShares != 0 {
shares := uint64 ( config . CPUShares )
cpu . Shares = & shares
}
if config . CpusetCpus != "" {
cpuset := config . CpusetCpus
cpu . Cpus = & cpuset
}
if config . CpusetMems != "" {
cpuset := config . CpusetMems
cpu . Mems = & cpuset
}
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if config . NanoCPUs > 0 {
// Use the default setting of 100ms, as is specified in:
// https://www.kernel.org/doc/Documentation/scheduler/sched-bwc.txt
// cpu.cfs_period_us=100ms
period := uint64 ( 100 * time . Millisecond / time . Microsecond )
quota := uint64 ( config . NanoCPUs ) * period / 1e9
cpu . Period = & period
cpu . Quota = & quota
}
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if config . CPUPeriod != 0 {
period := uint64 ( config . CPUPeriod )
cpu . Period = & period
}
if config . CPUQuota != 0 {
quota := uint64 ( config . CPUQuota )
cpu . Quota = & quota
}
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if config . CPURealtimePeriod != 0 {
period := uint64 ( config . CPURealtimePeriod )
cpu . RealtimePeriod = & period
}
if config . CPURealtimeRuntime != 0 {
runtime := uint64 ( config . CPURealtimeRuntime )
cpu . RealtimeRuntime = & runtime
}
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return & cpu
}
func getBlkioWeightDevices ( config containertypes . Resources ) ( [ ] specs . WeightDevice , error ) {
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var stat syscall . Stat_t
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var blkioWeightDevices [ ] specs . WeightDevice
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for _ , weightDevice := range config . BlkioWeightDevice {
if err := syscall . Stat ( weightDevice . Path , & stat ) ; err != nil {
return nil , err
}
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weight := weightDevice . Weight
d := specs . WeightDevice { Weight : & weight }
d . Major = int64 ( stat . Rdev / 256 )
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d . Minor = int64 ( stat . Rdev % 256 )
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blkioWeightDevices = append ( blkioWeightDevices , d )
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}
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return blkioWeightDevices , nil
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}
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func parseSecurityOpt ( container * container . Container , config * containertypes . HostConfig ) error {
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var (
labelOpts [ ] string
err error
)
for _ , opt := range config . SecurityOpt {
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if opt == "no-new-privileges" {
container . NoNewPrivileges = true
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continue
}
var con [ ] string
if strings . Contains ( opt , "=" ) {
con = strings . SplitN ( opt , "=" , 2 )
} else if strings . Contains ( opt , ":" ) {
con = strings . SplitN ( opt , ":" , 2 )
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logrus . Warn ( "Security options with `:` as a separator are deprecated and will be completely unsupported in 1.14, use `=` instead." )
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}
if len ( con ) != 2 {
return fmt . Errorf ( "invalid --security-opt 1: %q" , opt )
}
switch con [ 0 ] {
case "label" :
labelOpts = append ( labelOpts , con [ 1 ] )
case "apparmor" :
container . AppArmorProfile = con [ 1 ]
case "seccomp" :
container . SeccompProfile = con [ 1 ]
default :
return fmt . Errorf ( "invalid --security-opt 2: %q" , opt )
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}
}
container . ProcessLabel , container . MountLabel , err = label . InitLabels ( labelOpts )
return err
}
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func getBlkioThrottleDevices ( devs [ ] * blkiodev . ThrottleDevice ) ( [ ] specs . ThrottleDevice , error ) {
var throttleDevices [ ] specs . ThrottleDevice
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var stat syscall . Stat_t
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for _ , d := range devs {
if err := syscall . Stat ( d . Path , & stat ) ; err != nil {
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return nil , err
}
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rate := d . Rate
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d := specs . ThrottleDevice { Rate : & rate }
d . Major = int64 ( stat . Rdev / 256 )
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d . Minor = int64 ( stat . Rdev % 256 )
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throttleDevices = append ( throttleDevices , d )
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}
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return throttleDevices , nil
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}
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func checkKernel ( ) error {
// Check for unsupported kernel versions
// FIXME: it would be cleaner to not test for specific versions, but rather
// test for specific functionalities.
// Unfortunately we can't test for the feature "does not cause a kernel panic"
// without actually causing a kernel panic, so we need this workaround until
// the circumstances of pre-3.10 crashes are clearer.
// For details see https://github.com/docker/docker/issues/407
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// Docker 1.11 and above doesn't actually run on kernels older than 3.4,
// due to containerd-shim usage of PR_SET_CHILD_SUBREAPER (introduced in 3.4).
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if ! kernel . CheckKernelVersion ( 3 , 10 , 0 ) {
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v , _ := kernel . GetKernelVersion ( )
if os . Getenv ( "DOCKER_NOWARN_KERNEL_VERSION" ) == "" {
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logrus . Fatalf ( "Your Linux kernel version %s is not supported for running docker. Please upgrade your kernel to 3.10.0 or newer." , v . String ( ) )
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}
}
return nil
}
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// adaptContainerSettings is called during container creation to modify any
// settings necessary in the HostConfig structure.
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func ( daemon * Daemon ) adaptContainerSettings ( hostConfig * containertypes . HostConfig , adjustCPUShares bool ) error {
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if adjustCPUShares && hostConfig . CPUShares > 0 {
// Handle unsupported CPUShares
if hostConfig . CPUShares < linuxMinCPUShares {
logrus . Warnf ( "Changing requested CPUShares of %d to minimum allowed of %d" , hostConfig . CPUShares , linuxMinCPUShares )
hostConfig . CPUShares = linuxMinCPUShares
} else if hostConfig . CPUShares > linuxMaxCPUShares {
logrus . Warnf ( "Changing requested CPUShares of %d to maximum allowed of %d" , hostConfig . CPUShares , linuxMaxCPUShares )
hostConfig . CPUShares = linuxMaxCPUShares
}
}
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if hostConfig . Memory > 0 && hostConfig . MemorySwap == 0 {
// By default, MemorySwap is set to twice the size of Memory.
hostConfig . MemorySwap = hostConfig . Memory * 2
}
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if hostConfig . ShmSize == 0 {
hostConfig . ShmSize = container . DefaultSHMSize
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}
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var err error
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opts , err := daemon . generateSecurityOpt ( hostConfig . IpcMode , hostConfig . PidMode , hostConfig . Privileged )
if err != nil {
return err
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}
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hostConfig . SecurityOpt = append ( hostConfig . SecurityOpt , opts ... )
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if hostConfig . MemorySwappiness == nil {
defaultSwappiness := int64 ( - 1 )
hostConfig . MemorySwappiness = & defaultSwappiness
}
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if hostConfig . OomKillDisable == nil {
defaultOomKillDisable := false
hostConfig . OomKillDisable = & defaultOomKillDisable
}
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return nil
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}
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func verifyContainerResources ( resources * containertypes . Resources , sysInfo * sysinfo . SysInfo , update bool ) ( [ ] string , error ) {
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warnings := [ ] string { }
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// memory subsystem checks and adjustments
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if resources . Memory != 0 && resources . Memory < linuxMinMemory {
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return warnings , fmt . Errorf ( "Minimum memory limit allowed is 4MB" )
}
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if resources . Memory > 0 && ! sysInfo . MemoryLimit {
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warnings = append ( warnings , "Your kernel does not support memory limit capabilities or the cgroup is not mounted. Limitation discarded." )
logrus . Warn ( "Your kernel does not support memory limit capabilities or the cgroup is not mounted. Limitation discarded." )
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resources . Memory = 0
resources . MemorySwap = - 1
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}
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if resources . Memory > 0 && resources . MemorySwap != - 1 && ! sysInfo . SwapLimit {
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warnings = append ( warnings , "Your kernel does not support swap limit capabilities or the cgroup is not mounted. Memory limited without swap." )
logrus . Warn ( "Your kernel does not support swap limit capabilities,or the cgroup is not mounted. Memory limited without swap." )
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resources . MemorySwap = - 1
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}
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if resources . Memory > 0 && resources . MemorySwap > 0 && resources . MemorySwap < resources . Memory {
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return warnings , fmt . Errorf ( "Minimum memoryswap limit should be larger than memory limit, see usage" )
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}
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if resources . Memory == 0 && resources . MemorySwap > 0 && ! update {
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return warnings , fmt . Errorf ( "You should always set the Memory limit when using Memoryswap limit, see usage" )
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}
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if resources . MemorySwappiness != nil && * resources . MemorySwappiness != - 1 && ! sysInfo . MemorySwappiness {
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warnings = append ( warnings , "Your kernel does not support memory swappiness capabilities or the cgroup is not mounted. Memory swappiness discarded." )
logrus . Warn ( "Your kernel does not support memory swappiness capabilities, or the cgroup is not mounted. Memory swappiness discarded." )
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resources . MemorySwappiness = nil
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}
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if resources . MemorySwappiness != nil {
swappiness := * resources . MemorySwappiness
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if swappiness < - 1 || swappiness > 100 {
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return warnings , fmt . Errorf ( "Invalid value: %v, valid memory swappiness range is 0-100" , swappiness )
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}
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}
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if resources . MemoryReservation > 0 && ! sysInfo . MemoryReservation {
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warnings = append ( warnings , "Your kernel does not support memory soft limit capabilities or the cgroup is not mounted. Limitation discarded." )
logrus . Warn ( "Your kernel does not support memory soft limit capabilities or the cgroup is not mounted. Limitation discarded." )
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resources . MemoryReservation = 0
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}
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if resources . MemoryReservation > 0 && resources . MemoryReservation < linuxMinMemory {
return warnings , fmt . Errorf ( "Minimum memory reservation allowed is 4MB" )
}
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if resources . Memory > 0 && resources . MemoryReservation > 0 && resources . Memory < resources . MemoryReservation {
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return warnings , fmt . Errorf ( "Minimum memory limit can not be less than memory reservation limit, see usage" )
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}
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if resources . KernelMemory > 0 && ! sysInfo . KernelMemory {
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warnings = append ( warnings , "Your kernel does not support kernel memory limit capabilities or the cgroup is not mounted. Limitation discarded." )
logrus . Warn ( "Your kernel does not support kernel memory limit capabilities or the cgroup is not mounted. Limitation discarded." )
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resources . KernelMemory = 0
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}
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if resources . KernelMemory > 0 && resources . KernelMemory < linuxMinMemory {
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return warnings , fmt . Errorf ( "Minimum kernel memory limit allowed is 4MB" )
}
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if resources . KernelMemory > 0 && ! kernel . CheckKernelVersion ( 4 , 0 , 0 ) {
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warnings = append ( warnings , "You specified a kernel memory limit on a kernel older than 4.0. Kernel memory limits are experimental on older kernels, it won't work as expected and can cause your system to be unstable." )
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logrus . Warn ( "You specified a kernel memory limit on a kernel older than 4.0. Kernel memory limits are experimental on older kernels, it won't work as expected and can cause your system to be unstable." )
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}
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if resources . OomKillDisable != nil && ! sysInfo . OomKillDisable {
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// only produce warnings if the setting wasn't to *disable* the OOM Kill; no point
// warning the caller if they already wanted the feature to be off
if * resources . OomKillDisable {
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warnings = append ( warnings , "Your kernel does not support OomKillDisable. OomKillDisable discarded." )
logrus . Warn ( "Your kernel does not support OomKillDisable. OomKillDisable discarded." )
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}
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resources . OomKillDisable = nil
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}
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if resources . PidsLimit != 0 && ! sysInfo . PidsLimit {
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warnings = append ( warnings , "Your kernel does not support pids limit capabilities or the cgroup is not mounted. PIDs limit discarded." )
logrus . Warn ( "Your kernel does not support pids limit capabilities or the cgroup is not mounted. PIDs limit discarded." )
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resources . PidsLimit = 0
}
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// cpu subsystem checks and adjustments
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if resources . NanoCPUs > 0 && resources . CPUPeriod > 0 {
return warnings , fmt . Errorf ( "Conflicting options: Nano CPUs and CPU Period cannot both be set" )
}
if resources . NanoCPUs > 0 && resources . CPUQuota > 0 {
return warnings , fmt . Errorf ( "Conflicting options: Nano CPUs and CPU Quota cannot both be set" )
}
if resources . NanoCPUs > 0 && ( ! sysInfo . CPUCfsPeriod || ! sysInfo . CPUCfsQuota ) {
return warnings , fmt . Errorf ( "NanoCPUs can not be set, as your kernel does not support CPU cfs period/quota or the cgroup is not mounted" )
}
if resources . NanoCPUs < 0 || resources . NanoCPUs > int64 ( sysinfo . NumCPU ( ) ) * 1e9 {
return warnings , fmt . Errorf ( "Range of Nano CPUs is from 1 to %d" , int64 ( sysinfo . NumCPU ( ) ) * 1e9 )
}
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if resources . CPUShares > 0 && ! sysInfo . CPUShares {
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warnings = append ( warnings , "Your kernel does not support CPU shares or the cgroup is not mounted. Shares discarded." )
logrus . Warn ( "Your kernel does not support CPU shares or the cgroup is not mounted. Shares discarded." )
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resources . CPUShares = 0
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}
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if resources . CPUPeriod > 0 && ! sysInfo . CPUCfsPeriod {
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warnings = append ( warnings , "Your kernel does not support CPU cfs period or the cgroup is not mounted. Period discarded." )
logrus . Warn ( "Your kernel does not support CPU cfs period or the cgroup is not mounted. Period discarded." )
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resources . CPUPeriod = 0
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}
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if resources . CPUPeriod != 0 && ( resources . CPUPeriod < 1000 || resources . CPUPeriod > 1000000 ) {
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return warnings , fmt . Errorf ( "CPU cfs period can not be less than 1ms (i.e. 1000) or larger than 1s (i.e. 1000000)" )
}
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if resources . CPUQuota > 0 && ! sysInfo . CPUCfsQuota {
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warnings = append ( warnings , "Your kernel does not support CPU cfs quota or the cgroup is not mounted. Quota discarded." )
logrus . Warn ( "Your kernel does not support CPU cfs quota or the cgroup is not mounted. Quota discarded." )
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resources . CPUQuota = 0
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}
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if resources . CPUQuota > 0 && resources . CPUQuota < 1000 {
return warnings , fmt . Errorf ( "CPU cfs quota can not be less than 1ms (i.e. 1000)" )
}
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if resources . CPUPercent > 0 {
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warnings = append ( warnings , fmt . Sprintf ( "%s does not support CPU percent. Percent discarded." , runtime . GOOS ) )
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logrus . Warnf ( "%s does not support CPU percent. Percent discarded." , runtime . GOOS )
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resources . CPUPercent = 0
}
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// cpuset subsystem checks and adjustments
if ( resources . CpusetCpus != "" || resources . CpusetMems != "" ) && ! sysInfo . Cpuset {
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warnings = append ( warnings , "Your kernel does not support cpuset or the cgroup is not mounted. Cpuset discarded." )
logrus . Warn ( "Your kernel does not support cpuset or the cgroup is not mounted. Cpuset discarded." )
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resources . CpusetCpus = ""
resources . CpusetMems = ""
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}
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cpusAvailable , err := sysInfo . IsCpusetCpusAvailable ( resources . CpusetCpus )
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if err != nil {
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return warnings , fmt . Errorf ( "Invalid value %s for cpuset cpus" , resources . CpusetCpus )
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}
if ! cpusAvailable {
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return warnings , fmt . Errorf ( "Requested CPUs are not available - requested %s, available: %s" , resources . CpusetCpus , sysInfo . Cpus )
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}
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memsAvailable , err := sysInfo . IsCpusetMemsAvailable ( resources . CpusetMems )
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if err != nil {
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return warnings , fmt . Errorf ( "Invalid value %s for cpuset mems" , resources . CpusetMems )
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}
if ! memsAvailable {
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return warnings , fmt . Errorf ( "Requested memory nodes are not available - requested %s, available: %s" , resources . CpusetMems , sysInfo . Mems )
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}
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// blkio subsystem checks and adjustments
if resources . BlkioWeight > 0 && ! sysInfo . BlkioWeight {
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warnings = append ( warnings , "Your kernel does not support Block I/O weight or the cgroup is not mounted. Weight discarded." )
logrus . Warn ( "Your kernel does not support Block I/O weight or the cgroup is not mounted. Weight discarded." )
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resources . BlkioWeight = 0
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}
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if resources . BlkioWeight > 0 && ( resources . BlkioWeight < 10 || resources . BlkioWeight > 1000 ) {
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return warnings , fmt . Errorf ( "Range of blkio weight is from 10 to 1000" )
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}
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if resources . IOMaximumBandwidth != 0 || resources . IOMaximumIOps != 0 {
return warnings , fmt . Errorf ( "Invalid QoS settings: %s does not support Maximum IO Bandwidth or Maximum IO IOps" , runtime . GOOS )
}
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if len ( resources . BlkioWeightDevice ) > 0 && ! sysInfo . BlkioWeightDevice {
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warnings = append ( warnings , "Your kernel does not support Block I/O weight_device or the cgroup is not mounted. Weight-device discarded." )
logrus . Warn ( "Your kernel does not support Block I/O weight_device or the cgroup is not mounted. Weight-device discarded." )
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resources . BlkioWeightDevice = [ ] * pblkiodev . WeightDevice { }
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}
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if len ( resources . BlkioDeviceReadBps ) > 0 && ! sysInfo . BlkioReadBpsDevice {
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warnings = append ( warnings , "Your kernel does not support BPS Block I/O read limit or the cgroup is not mounted. Block I/O BPS read limit discarded." )
logrus . Warn ( "Your kernel does not support BPS Block I/O read limit or the cgroup is not mounted. Block I/O BPS read limit discarded" )
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resources . BlkioDeviceReadBps = [ ] * pblkiodev . ThrottleDevice { }
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}
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if len ( resources . BlkioDeviceWriteBps ) > 0 && ! sysInfo . BlkioWriteBpsDevice {
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warnings = append ( warnings , "Your kernel does not support BPS Block I/O write limit or the cgroup is not mounted. Block I/O BPS write limit discarded." )
logrus . Warn ( "Your kernel does not support BPS Block I/O write limit or the cgroup is not mounted. Block I/O BPS write limit discarded." )
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resources . BlkioDeviceWriteBps = [ ] * pblkiodev . ThrottleDevice { }
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}
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if len ( resources . BlkioDeviceReadIOps ) > 0 && ! sysInfo . BlkioReadIOpsDevice {
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warnings = append ( warnings , "Your kernel does not support IOPS Block read limit or the cgroup is not mounted. Block I/O IOPS read limit discarded." )
logrus . Warn ( "Your kernel does not support IOPS Block I/O read limit in IO or the cgroup is not mounted. Block I/O IOPS read limit discarded." )
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resources . BlkioDeviceReadIOps = [ ] * pblkiodev . ThrottleDevice { }
}
if len ( resources . BlkioDeviceWriteIOps ) > 0 && ! sysInfo . BlkioWriteIOpsDevice {
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warnings = append ( warnings , "Your kernel does not support IOPS Block write limit or the cgroup is not mounted. Block I/O IOPS write limit discarded." )
logrus . Warn ( "Your kernel does not support IOPS Block I/O write limit or the cgroup is not mounted. Block I/O IOPS write limit discarded." )
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resources . BlkioDeviceWriteIOps = [ ] * pblkiodev . ThrottleDevice { }
}
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return warnings , nil
}
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func ( daemon * Daemon ) getCgroupDriver ( ) string {
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cgroupDriver := cgroupFsDriver
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if UsingSystemd ( daemon . configStore ) {
cgroupDriver = cgroupSystemdDriver
}
return cgroupDriver
}
// getCD gets the raw value of the native.cgroupdriver option, if set.
func getCD ( config * Config ) string {
for _ , option := range config . ExecOptions {
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key , val , err := parsers . ParseKeyValueOpt ( option )
if err != nil || ! strings . EqualFold ( key , "native.cgroupdriver" ) {
continue
}
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return val
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}
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return ""
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}
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// VerifyCgroupDriver validates native.cgroupdriver
func VerifyCgroupDriver ( config * Config ) error {
cd := getCD ( config )
if cd == "" || cd == cgroupFsDriver || cd == cgroupSystemdDriver {
return nil
}
return fmt . Errorf ( "native.cgroupdriver option %s not supported" , cd )
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}
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// UsingSystemd returns true if cli option includes native.cgroupdriver=systemd
func UsingSystemd ( config * Config ) bool {
return getCD ( config ) == cgroupSystemdDriver
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}
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// verifyPlatformContainerSettings performs platform-specific validation of the
// hostconfig and config structures.
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func verifyPlatformContainerSettings ( daemon * Daemon , hostConfig * containertypes . HostConfig , config * containertypes . Config , update bool ) ( [ ] string , error ) {
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warnings := [ ] string { }
sysInfo := sysinfo . New ( true )
warnings , err := daemon . verifyExperimentalContainerSettings ( hostConfig , config )
if err != nil {
return warnings , err
}
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w , err := verifyContainerResources ( & hostConfig . Resources , sysInfo , update )
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// no matter err is nil or not, w could have data in itself.
warnings = append ( warnings , w ... )
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if err != nil {
return warnings , err
}
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if hostConfig . ShmSize < 0 {
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return warnings , fmt . Errorf ( "SHM size can not be less than 0" )
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}
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if hostConfig . OomScoreAdj < - 1000 || hostConfig . OomScoreAdj > 1000 {
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return warnings , fmt . Errorf ( "Invalid value %d, range for oom score adj is [-1000, 1000]" , hostConfig . OomScoreAdj )
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}
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// ip-forwarding does not affect container with '--net=host' (or '--net=none')
if sysInfo . IPv4ForwardingDisabled && ! ( hostConfig . NetworkMode . IsHost ( ) || hostConfig . NetworkMode . IsNone ( ) ) {
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warnings = append ( warnings , "IPv4 forwarding is disabled. Networking will not work." )
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logrus . Warn ( "IPv4 forwarding is disabled. Networking will not work" )
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}
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// check for various conflicting options with user namespaces
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if daemon . configStore . RemappedRoot != "" && hostConfig . UsernsMode . IsPrivate ( ) {
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if hostConfig . Privileged {
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return warnings , fmt . Errorf ( "Privileged mode is incompatible with user namespaces" )
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}
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if hostConfig . NetworkMode . IsHost ( ) && ! hostConfig . UsernsMode . IsHost ( ) {
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return warnings , fmt . Errorf ( "Cannot share the host's network namespace when user namespaces are enabled" )
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}
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if hostConfig . PidMode . IsHost ( ) && ! hostConfig . UsernsMode . IsHost ( ) {
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return warnings , fmt . Errorf ( "Cannot share the host PID namespace when user namespaces are enabled" )
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}
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}
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if hostConfig . CgroupParent != "" && UsingSystemd ( daemon . configStore ) {
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// CgroupParent for systemd cgroup should be named as "xxx.slice"
if len ( hostConfig . CgroupParent ) <= 6 || ! strings . HasSuffix ( hostConfig . CgroupParent , ".slice" ) {
return warnings , fmt . Errorf ( "cgroup-parent for systemd cgroup should be a valid slice named as \"xxx.slice\"" )
}
}
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if hostConfig . Runtime == "" {
hostConfig . Runtime = daemon . configStore . GetDefaultRuntimeName ( )
}
if rt := daemon . configStore . GetRuntime ( hostConfig . Runtime ) ; rt == nil {
return warnings , fmt . Errorf ( "Unknown runtime specified %s" , hostConfig . Runtime )
}
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return warnings , nil
}
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// platformReload update configuration with platform specific options
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func ( daemon * Daemon ) platformReload ( config * Config ) map [ string ] string {
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if config . IsValueSet ( "runtimes" ) {
daemon . configStore . Runtimes = config . Runtimes
// Always set the default one
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daemon . configStore . Runtimes [ stockRuntimeName ] = types . Runtime { Path : DefaultRuntimeBinary }
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}
if config . DefaultRuntime != "" {
daemon . configStore . DefaultRuntime = config . DefaultRuntime
}
// Update attributes
var runtimeList bytes . Buffer
for name , rt := range daemon . configStore . Runtimes {
if runtimeList . Len ( ) > 0 {
runtimeList . WriteRune ( ' ' )
}
runtimeList . WriteString ( fmt . Sprintf ( "%s:%s" , name , rt ) )
}
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return map [ string ] string {
"runtimes" : runtimeList . String ( ) ,
"default-runtime" : daemon . configStore . DefaultRuntime ,
}
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}
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// verifyDaemonSettings performs validation of daemon config struct
func verifyDaemonSettings ( config * Config ) error {
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// Check for mutually incompatible config options
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if config . bridgeConfig . Iface != "" && config . bridgeConfig . IP != "" {
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return fmt . Errorf ( "You specified -b & --bip, mutually exclusive options. Please specify only one" )
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}
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if ! config . bridgeConfig . EnableIPTables && ! config . bridgeConfig . InterContainerCommunication {
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return fmt . Errorf ( "You specified --iptables=false with --icc=false. ICC=false uses iptables to function. Please set --icc or --iptables to true" )
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}
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if ! config . bridgeConfig . EnableIPTables && config . bridgeConfig . EnableIPMasq {
config . bridgeConfig . EnableIPMasq = false
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}
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if err := VerifyCgroupDriver ( config ) ; err != nil {
return err
}
if config . CgroupParent != "" && UsingSystemd ( config ) {
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if len ( config . CgroupParent ) <= 6 || ! strings . HasSuffix ( config . CgroupParent , ".slice" ) {
return fmt . Errorf ( "cgroup-parent for systemd cgroup should be a valid slice named as \"xxx.slice\"" )
}
}
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if config . DefaultRuntime == "" {
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config . DefaultRuntime = stockRuntimeName
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}
if config . Runtimes == nil {
config . Runtimes = make ( map [ string ] types . Runtime )
}
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config . Runtimes [ stockRuntimeName ] = types . Runtime { Path : DefaultRuntimeBinary }
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2015-05-15 19:34:26 -04:00
return nil
}
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// checkSystem validates platform-specific requirements
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func checkSystem ( ) error {
if os . Geteuid ( ) != 0 {
return fmt . Errorf ( "The Docker daemon needs to be run as root" )
}
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return checkKernel ( )
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}
2015-12-02 05:26:30 -05:00
// configureMaxThreads sets the Go runtime max threads threshold
// which is 90% of the kernel setting from /proc/sys/kernel/threads-max
func configureMaxThreads ( config * Config ) error {
mt , err := ioutil . ReadFile ( "/proc/sys/kernel/threads-max" )
if err != nil {
return err
}
mtint , err := strconv . Atoi ( strings . TrimSpace ( string ( mt ) ) )
if err != nil {
return err
}
maxThreads := ( mtint / 100 ) * 90
debug . SetMaxThreads ( maxThreads )
logrus . Debugf ( "Golang's threads limit set to %d" , maxThreads )
return nil
}
2016-03-24 11:57:11 -04:00
// configureKernelSecuritySupport configures and validates security support for the kernel
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func configureKernelSecuritySupport ( config * Config , driverName string ) error {
if config . EnableSelinuxSupport {
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if ! selinuxEnabled ( ) {
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logrus . Warn ( "Docker could not enable SELinux on the host system" )
}
} else {
selinuxSetDisabled ( )
}
return nil
}
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func ( daemon * Daemon ) initNetworkController ( config * Config , activeSandboxes map [ string ] interface { } ) ( libnetwork . NetworkController , error ) {
2016-10-07 17:53:17 -04:00
netOptions , err := daemon . networkOptions ( config , daemon . PluginStore , activeSandboxes )
2015-05-20 08:20:19 -04:00
if err != nil {
return nil , err
}
controller , err := libnetwork . New ( netOptions ... )
2015-05-15 19:34:26 -04:00
if err != nil {
return nil , fmt . Errorf ( "error obtaining controller instance: %v" , err )
}
2016-06-14 12:13:53 -04:00
if len ( activeSandboxes ) > 0 {
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logrus . Info ( "There are old running containers, the network config will not take affect" )
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return controller , nil
}
2015-05-15 19:34:26 -04:00
// Initialize default network on "null"
2016-06-14 12:13:53 -04:00
if n , _ := controller . NetworkByName ( "none" ) ; n == nil {
if _ , err := controller . NewNetwork ( "null" , "none" , "" , libnetwork . NetworkOptionPersist ( true ) ) ; err != nil {
return nil , fmt . Errorf ( "Error creating default \"null\" network: %v" , err )
}
2015-05-15 19:34:26 -04:00
}
// Initialize default network on "host"
2016-06-14 12:13:53 -04:00
if n , _ := controller . NetworkByName ( "host" ) ; n == nil {
if _ , err := controller . NewNetwork ( "host" , "host" , "" , libnetwork . NetworkOptionPersist ( true ) ) ; err != nil {
return nil , fmt . Errorf ( "Error creating default \"host\" network: %v" , err )
}
2015-05-15 19:34:26 -04:00
}
2016-09-27 16:16:00 -04:00
// Clear stale bridge network
if n , err := controller . NetworkByName ( "bridge" ) ; err == nil {
if err = n . Delete ( ) ; err != nil {
return nil , fmt . Errorf ( "could not delete the default bridge network: %v" , err )
}
}
2015-06-30 13:34:15 -04:00
if ! config . DisableBridge {
// Initialize default driver "bridge"
if err := initBridgeDriver ( controller , config ) ; err != nil {
return nil , err
}
2016-09-27 16:16:00 -04:00
} else {
removeDefaultBridgeInterface ( )
2015-06-30 13:34:15 -04:00
}
return controller , nil
}
2015-09-24 23:00:05 -04:00
func driverOptions ( config * Config ) [ ] nwconfig . Option {
bridgeConfig := options . Generic {
2016-01-25 16:30:33 -05:00
"EnableIPForwarding" : config . bridgeConfig . EnableIPForward ,
"EnableIPTables" : config . bridgeConfig . EnableIPTables ,
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"EnableUserlandProxy" : config . bridgeConfig . EnableUserlandProxy ,
"UserlandProxyPath" : config . bridgeConfig . UserlandProxyPath }
2015-09-24 23:00:05 -04:00
bridgeOption := options . Generic { netlabel . GenericData : bridgeConfig }
2015-05-15 19:34:26 -04:00
2015-09-24 23:00:05 -04:00
dOptions := [ ] nwconfig . Option { }
dOptions = append ( dOptions , nwconfig . OptionDriverConfig ( "bridge" , bridgeOption ) )
return dOptions
}
2015-05-15 19:34:26 -04:00
2015-09-24 23:00:05 -04:00
func initBridgeDriver ( controller libnetwork . NetworkController , config * Config ) error {
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bridgeName := bridge . DefaultBridgeName
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if config . bridgeConfig . Iface != "" {
bridgeName = config . bridgeConfig . Iface
2015-10-10 12:43:03 -04:00
}
netOption := map [ string ] string {
bridge . BridgeName : bridgeName ,
bridge . DefaultBridge : strconv . FormatBool ( true ) ,
netlabel . DriverMTU : strconv . Itoa ( config . Mtu ) ,
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bridge . EnableIPMasquerade : strconv . FormatBool ( config . bridgeConfig . EnableIPMasq ) ,
bridge . EnableICC : strconv . FormatBool ( config . bridgeConfig . InterContainerCommunication ) ,
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}
// --ip processing
2016-01-25 16:30:33 -05:00
if config . bridgeConfig . DefaultIP != nil {
netOption [ bridge . DefaultBindingIP ] = config . bridgeConfig . DefaultIP . String ( )
2015-10-10 12:43:03 -04:00
}
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var (
ipamV4Conf * libnetwork . IpamConf
ipamV6Conf * libnetwork . IpamConf
)
2015-10-10 12:43:03 -04:00
2016-01-12 02:47:44 -05:00
ipamV4Conf = & libnetwork . IpamConf { AuxAddresses : make ( map [ string ] string ) }
2015-10-10 12:43:03 -04:00
2016-09-17 01:46:20 -04:00
nwList , nw6List , err := netutils . ElectInterfaceAddresses ( bridgeName )
if err != nil {
return errors . Wrap ( err , "list bridge addresses failed" )
}
nw := nwList [ 0 ]
if len ( nwList ) > 1 && config . bridgeConfig . FixedCIDR != "" {
_ , fCIDR , err := net . ParseCIDR ( config . bridgeConfig . FixedCIDR )
if err != nil {
return errors . Wrap ( err , "parse CIDR failed" )
2015-10-10 12:43:03 -04:00
}
2016-09-17 01:46:20 -04:00
// Iterate through in case there are multiple addresses for the bridge
for _ , entry := range nwList {
if fCIDR . Contains ( entry . IP ) {
nw = entry
break
}
}
}
ipamV4Conf . PreferredPool = lntypes . GetIPNetCanonical ( nw ) . String ( )
hip , _ := lntypes . GetHostPartIP ( nw . IP , nw . Mask )
if hip . IsGlobalUnicast ( ) {
ipamV4Conf . Gateway = nw . IP . String ( )
2015-05-15 19:34:26 -04:00
}
2016-01-25 16:30:33 -05:00
if config . bridgeConfig . IP != "" {
ipamV4Conf . PreferredPool = config . bridgeConfig . IP
ip , _ , err := net . ParseCIDR ( config . bridgeConfig . IP )
2015-05-15 19:34:26 -04:00
if err != nil {
2015-06-30 13:34:15 -04:00
return err
2015-05-15 19:34:26 -04:00
}
2015-10-10 12:43:03 -04:00
ipamV4Conf . Gateway = ip . String ( )
2015-10-26 14:46:20 -04:00
} else if bridgeName == bridge . DefaultBridgeName && ipamV4Conf . PreferredPool != "" {
logrus . Infof ( "Default bridge (%s) is assigned with an IP address %s. Daemon option --bip can be used to set a preferred IP address" , bridgeName , ipamV4Conf . PreferredPool )
2015-05-15 19:34:26 -04:00
}
2016-01-25 16:30:33 -05:00
if config . bridgeConfig . FixedCIDR != "" {
_ , fCIDR , err := net . ParseCIDR ( config . bridgeConfig . FixedCIDR )
2015-05-15 19:34:26 -04:00
if err != nil {
2015-06-30 13:34:15 -04:00
return err
2015-05-15 19:34:26 -04:00
}
2015-10-10 12:43:03 -04:00
ipamV4Conf . SubPool = fCIDR . String ( )
2015-05-15 19:34:26 -04:00
}
2016-01-25 16:30:33 -05:00
if config . bridgeConfig . DefaultGatewayIPv4 != nil {
ipamV4Conf . AuxAddresses [ "DefaultGatewayIPv4" ] = config . bridgeConfig . DefaultGatewayIPv4 . String ( )
2015-10-10 12:43:03 -04:00
}
2016-01-12 02:47:44 -05:00
var deferIPv6Alloc bool
2016-01-25 16:30:33 -05:00
if config . bridgeConfig . FixedCIDRv6 != "" {
_ , fCIDRv6 , err := net . ParseCIDR ( config . bridgeConfig . FixedCIDRv6 )
2015-05-15 19:34:26 -04:00
if err != nil {
2015-06-30 13:34:15 -04:00
return err
2015-05-15 19:34:26 -04:00
}
2015-11-11 00:14:05 -05:00
// In case user has specified the daemon flag --fixed-cidr-v6 and the passed network has
// at least 48 host bits, we need to guarantee the current behavior where the containers'
// IPv6 addresses will be constructed based on the containers' interface MAC address.
// We do so by telling libnetwork to defer the IPv6 address allocation for the endpoints
// on this network until after the driver has created the endpoint and returned the
// constructed address. Libnetwork will then reserve this address with the ipam driver.
ones , _ := fCIDRv6 . Mask . Size ( )
deferIPv6Alloc = ones <= 80
2015-10-10 12:43:03 -04:00
if ipamV6Conf == nil {
2015-12-30 17:51:51 -05:00
ipamV6Conf = & libnetwork . IpamConf { AuxAddresses : make ( map [ string ] string ) }
2015-10-10 12:43:03 -04:00
}
ipamV6Conf . PreferredPool = fCIDRv6 . String ( )
2016-01-12 02:47:44 -05:00
// In case the --fixed-cidr-v6 is specified and the current docker0 bridge IPv6
// address belongs to the same network, we need to inform libnetwork about it, so
// that it can be reserved with IPAM and it will not be given away to somebody else
for _ , nw6 := range nw6List {
if fCIDRv6 . Contains ( nw6 . IP ) {
ipamV6Conf . Gateway = nw6 . IP . String ( )
break
}
}
2015-05-15 19:34:26 -04:00
}
2016-01-25 16:30:33 -05:00
if config . bridgeConfig . DefaultGatewayIPv6 != nil {
2015-10-10 12:43:03 -04:00
if ipamV6Conf == nil {
2015-12-30 17:51:51 -05:00
ipamV6Conf = & libnetwork . IpamConf { AuxAddresses : make ( map [ string ] string ) }
2015-10-10 12:43:03 -04:00
}
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ipamV6Conf . AuxAddresses [ "DefaultGatewayIPv6" ] = config . bridgeConfig . DefaultGatewayIPv6 . String ( )
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}
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v4Conf := [ ] * libnetwork . IpamConf { ipamV4Conf }
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v6Conf := [ ] * libnetwork . IpamConf { }
if ipamV6Conf != nil {
v6Conf = append ( v6Conf , ipamV6Conf )
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}
// Initialize default network on "bridge" with the same name
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_ , err = controller . NewNetwork ( "bridge" , "bridge" , "" ,
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libnetwork . NetworkOptionEnableIPv6 ( config . bridgeConfig . EnableIPv6 ) ,
libnetwork . NetworkOptionDriverOpts ( netOption ) ,
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libnetwork . NetworkOptionIpam ( "default" , "" , v4Conf , v6Conf , nil ) ,
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libnetwork . NetworkOptionDeferIPv6Alloc ( deferIPv6Alloc ) )
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if err != nil {
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return fmt . Errorf ( "Error creating default \"bridge\" network: %v" , err )
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}
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return nil
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}
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// Remove default bridge interface if present (--bridge=none use case)
func removeDefaultBridgeInterface ( ) {
if lnk , err := netlink . LinkByName ( bridge . DefaultBridgeName ) ; err == nil {
if err := netlink . LinkDel ( lnk ) ; err != nil {
logrus . Warnf ( "Failed to remove bridge interface (%s): %v" , bridge . DefaultBridgeName , err )
}
}
}
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func ( daemon * Daemon ) getLayerInit ( ) func ( string ) error {
return daemon . setupInitLayer
}
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// setupInitLayer populates a directory with mountpoints suitable
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// for bind-mounting things into the container.
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//
// This extra layer is used by all containers as the top-most ro layer. It protects
// the container from unwanted side-effects on the rw layer.
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func setupInitLayer ( initLayer string , rootUID , rootGID int ) error {
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for pth , typ := range map [ string ] string {
"/dev/pts" : "dir" ,
"/dev/shm" : "dir" ,
"/proc" : "dir" ,
"/sys" : "dir" ,
"/.dockerenv" : "file" ,
"/etc/resolv.conf" : "file" ,
"/etc/hosts" : "file" ,
"/etc/hostname" : "file" ,
"/dev/console" : "file" ,
"/etc/mtab" : "/proc/mounts" ,
} {
parts := strings . Split ( pth , "/" )
prev := "/"
for _ , p := range parts [ 1 : ] {
prev = filepath . Join ( prev , p )
syscall . Unlink ( filepath . Join ( initLayer , prev ) )
}
if _ , err := os . Stat ( filepath . Join ( initLayer , pth ) ) ; err != nil {
if os . IsNotExist ( err ) {
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if err := idtools . MkdirAllNewAs ( filepath . Join ( initLayer , filepath . Dir ( pth ) ) , 0755 , rootUID , rootGID ) ; err != nil {
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return err
}
switch typ {
case "dir" :
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if err := idtools . MkdirAllNewAs ( filepath . Join ( initLayer , pth ) , 0755 , rootUID , rootGID ) ; err != nil {
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return err
}
case "file" :
f , err := os . OpenFile ( filepath . Join ( initLayer , pth ) , os . O_CREATE , 0755 )
if err != nil {
return err
}
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f . Chown ( rootUID , rootGID )
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f . Close ( )
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default :
if err := os . Symlink ( typ , filepath . Join ( initLayer , pth ) ) ; err != nil {
return err
}
}
} else {
return err
}
}
}
// Layer is ready to use, if it wasn't before.
return nil
}
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// Parse the remapped root (user namespace) option, which can be one of:
// username - valid username from /etc/passwd
// username:groupname - valid username; valid groupname from /etc/group
// uid - 32-bit unsigned int valid Linux UID value
// uid:gid - uid value; 32-bit unsigned int Linux GID value
//
// If no groupname is specified, and a username is specified, an attempt
// will be made to lookup a gid for that username as a groupname
//
// If names are used, they are verified to exist in passwd/group
func parseRemappedRoot ( usergrp string ) ( string , string , error ) {
var (
userID , groupID int
username , groupname string
)
idparts := strings . Split ( usergrp , ":" )
if len ( idparts ) > 2 {
return "" , "" , fmt . Errorf ( "Invalid user/group specification in --userns-remap: %q" , usergrp )
}
if uid , err := strconv . ParseInt ( idparts [ 0 ] , 10 , 32 ) ; err == nil {
// must be a uid; take it as valid
userID = int ( uid )
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luser , err := idtools . LookupUID ( userID )
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if err != nil {
return "" , "" , fmt . Errorf ( "Uid %d has no entry in /etc/passwd: %v" , userID , err )
}
username = luser . Name
if len ( idparts ) == 1 {
// if the uid was numeric and no gid was specified, take the uid as the gid
groupID = userID
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lgrp , err := idtools . LookupGID ( groupID )
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if err != nil {
return "" , "" , fmt . Errorf ( "Gid %d has no entry in /etc/group: %v" , groupID , err )
}
groupname = lgrp . Name
}
} else {
lookupName := idparts [ 0 ]
// special case: if the user specified "default", they want Docker to create or
// use (after creation) the "dockremap" user/group for root remapping
if lookupName == defaultIDSpecifier {
lookupName = defaultRemappedID
}
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luser , err := idtools . LookupUser ( lookupName )
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if err != nil && idparts [ 0 ] != defaultIDSpecifier {
// error if the name requested isn't the special "dockremap" ID
return "" , "" , fmt . Errorf ( "Error during uid lookup for %q: %v" , lookupName , err )
} else if err != nil {
// special case-- if the username == "default", then we have been asked
// to create a new entry pair in /etc/{passwd,group} for which the /etc/sub{uid,gid}
// ranges will be used for the user and group mappings in user namespaced containers
_ , _ , err := idtools . AddNamespaceRangesUser ( defaultRemappedID )
if err == nil {
return defaultRemappedID , defaultRemappedID , nil
}
return "" , "" , fmt . Errorf ( "Error during %q user creation: %v" , defaultRemappedID , err )
}
username = luser . Name
if len ( idparts ) == 1 {
// we only have a string username, and no group specified; look up gid from username as group
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group , err := idtools . LookupGroup ( lookupName )
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if err != nil {
return "" , "" , fmt . Errorf ( "Error during gid lookup for %q: %v" , lookupName , err )
}
groupID = group . Gid
groupname = group . Name
}
}
if len ( idparts ) == 2 {
// groupname or gid is separately specified and must be resolved
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// to an unsigned 32-bit gid
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if gid , err := strconv . ParseInt ( idparts [ 1 ] , 10 , 32 ) ; err == nil {
// must be a gid, take it as valid
groupID = int ( gid )
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lgrp , err := idtools . LookupGID ( groupID )
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if err != nil {
return "" , "" , fmt . Errorf ( "Gid %d has no entry in /etc/passwd: %v" , groupID , err )
}
groupname = lgrp . Name
} else {
// not a number; attempt a lookup
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if _ , err := idtools . LookupGroup ( idparts [ 1 ] ) ; err != nil {
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return "" , "" , fmt . Errorf ( "Error during groupname lookup for %q: %v" , idparts [ 1 ] , err )
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}
groupname = idparts [ 1 ]
}
}
return username , groupname , nil
}
func setupRemappedRoot ( config * Config ) ( [ ] idtools . IDMap , [ ] idtools . IDMap , error ) {
if runtime . GOOS != "linux" && config . RemappedRoot != "" {
return nil , nil , fmt . Errorf ( "User namespaces are only supported on Linux" )
}
// if the daemon was started with remapped root option, parse
// the config option to the int uid,gid values
var (
uidMaps , gidMaps [ ] idtools . IDMap
)
if config . RemappedRoot != "" {
username , groupname , err := parseRemappedRoot ( config . RemappedRoot )
if err != nil {
return nil , nil , err
}
if username == "root" {
// Cannot setup user namespaces with a 1-to-1 mapping; "--root=0:0" is a no-op
// effectively
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logrus . Warn ( "User namespaces: root cannot be remapped with itself; user namespaces are OFF" )
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return uidMaps , gidMaps , nil
}
logrus . Infof ( "User namespaces: ID ranges will be mapped to subuid/subgid ranges of: %s:%s" , username , groupname )
// update remapped root setting now that we have resolved them to actual names
config . RemappedRoot = fmt . Sprintf ( "%s:%s" , username , groupname )
uidMaps , gidMaps , err = idtools . CreateIDMappings ( username , groupname )
if err != nil {
return nil , nil , fmt . Errorf ( "Can't create ID mappings: %v" , err )
}
}
return uidMaps , gidMaps , nil
}
func setupDaemonRoot ( config * Config , rootDir string , rootUID , rootGID int ) error {
config . Root = rootDir
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// the docker root metadata directory needs to have execute permissions for all users (g+x,o+x)
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// so that syscalls executing as non-root, operating on subdirectories of the graph root
// (e.g. mounted layers of a container) can traverse this path.
// The user namespace support will create subdirectories for the remapped root host uid:gid
// pair owned by that same uid:gid pair for proper write access to those needed metadata and
// layer content subtrees.
if _ , err := os . Stat ( rootDir ) ; err == nil {
// root current exists; verify the access bits are correct by setting them
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if err = os . Chmod ( rootDir , 0711 ) ; err != nil {
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return err
}
} else if os . IsNotExist ( err ) {
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// no root exists yet, create it 0711 with root:root ownership
if err := os . MkdirAll ( rootDir , 0711 ) ; err != nil {
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return err
}
}
// if user namespaces are enabled we will create a subtree underneath the specified root
// with any/all specified remapped root uid/gid options on the daemon creating
// a new subdirectory with ownership set to the remapped uid/gid (so as to allow
// `chdir()` to work for containers namespaced to that uid/gid)
if config . RemappedRoot != "" {
config . Root = filepath . Join ( rootDir , fmt . Sprintf ( "%d.%d" , rootUID , rootGID ) )
logrus . Debugf ( "Creating user namespaced daemon root: %s" , config . Root )
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// Create the root directory if it doesn't exist
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if err := idtools . MkdirAllAs ( config . Root , 0700 , rootUID , rootGID ) ; err != nil {
return fmt . Errorf ( "Cannot create daemon root: %s: %v" , config . Root , err )
}
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// we also need to verify that any pre-existing directories in the path to
// the graphroot won't block access to remapped root--if any pre-existing directory
// has strict permissions that don't allow "x", container start will fail, so
// better to warn and fail now
dirPath := config . Root
for {
dirPath = filepath . Dir ( dirPath )
if dirPath == "/" {
break
}
if ! idtools . CanAccess ( dirPath , rootUID , rootGID ) {
return fmt . Errorf ( "A subdirectory in your graphroot path (%s) restricts access to the remapped root uid/gid; please fix by allowing 'o+x' permissions on existing directories." , config . Root )
}
}
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}
return nil
}
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// registerLinks writes the links to a file.
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func ( daemon * Daemon ) registerLinks ( container * container . Container , hostConfig * containertypes . HostConfig ) error {
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if hostConfig == nil || hostConfig . NetworkMode . IsUserDefined ( ) {
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return nil
}
for _ , l := range hostConfig . Links {
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name , alias , err := runconfigopts . ParseLink ( l )
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if err != nil {
return err
}
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child , err := daemon . GetContainer ( name )
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if err != nil {
return fmt . Errorf ( "Could not get container for %s" , name )
}
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for child . HostConfig . NetworkMode . IsContainer ( ) {
parts := strings . SplitN ( string ( child . HostConfig . NetworkMode ) , ":" , 2 )
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child , err = daemon . GetContainer ( parts [ 1 ] )
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if err != nil {
return fmt . Errorf ( "Could not get container for %s" , parts [ 1 ] )
}
}
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if child . HostConfig . NetworkMode . IsHost ( ) {
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return runconfig . ErrConflictHostNetworkAndLinks
}
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if err := daemon . registerLink ( container , child , alias ) ; err != nil {
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return err
}
}
// After we load all the links into the daemon
// set them to nil on the hostconfig
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return container . WriteHostConfig ( )
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}
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// conditionalMountOnStart is a platform specific helper function during the
// container start to call mount.
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func ( daemon * Daemon ) conditionalMountOnStart ( container * container . Container ) error {
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return daemon . Mount ( container )
}
// conditionalUnmountOnCleanup is a platform specific helper function called
// during the cleanup of a container to unmount.
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func ( daemon * Daemon ) conditionalUnmountOnCleanup ( container * container . Container ) error {
return daemon . Unmount ( container )
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}
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func ( daemon * Daemon ) stats ( c * container . Container ) ( * types . StatsJSON , error ) {
if ! c . IsRunning ( ) {
return nil , errNotRunning { c . ID }
}
stats , err := daemon . containerd . Stats ( c . ID )
if err != nil {
return nil , err
}
s := & types . StatsJSON { }
cgs := stats . CgroupStats
if cgs != nil {
s . BlkioStats = types . BlkioStats {
IoServiceBytesRecursive : copyBlkioEntry ( cgs . BlkioStats . IoServiceBytesRecursive ) ,
IoServicedRecursive : copyBlkioEntry ( cgs . BlkioStats . IoServicedRecursive ) ,
IoQueuedRecursive : copyBlkioEntry ( cgs . BlkioStats . IoQueuedRecursive ) ,
IoServiceTimeRecursive : copyBlkioEntry ( cgs . BlkioStats . IoServiceTimeRecursive ) ,
IoWaitTimeRecursive : copyBlkioEntry ( cgs . BlkioStats . IoWaitTimeRecursive ) ,
IoMergedRecursive : copyBlkioEntry ( cgs . BlkioStats . IoMergedRecursive ) ,
IoTimeRecursive : copyBlkioEntry ( cgs . BlkioStats . IoTimeRecursive ) ,
SectorsRecursive : copyBlkioEntry ( cgs . BlkioStats . SectorsRecursive ) ,
}
cpu := cgs . CpuStats
s . CPUStats = types . CPUStats {
CPUUsage : types . CPUUsage {
TotalUsage : cpu . CpuUsage . TotalUsage ,
PercpuUsage : cpu . CpuUsage . PercpuUsage ,
UsageInKernelmode : cpu . CpuUsage . UsageInKernelmode ,
UsageInUsermode : cpu . CpuUsage . UsageInUsermode ,
} ,
ThrottlingData : types . ThrottlingData {
Periods : cpu . ThrottlingData . Periods ,
ThrottledPeriods : cpu . ThrottlingData . ThrottledPeriods ,
ThrottledTime : cpu . ThrottlingData . ThrottledTime ,
} ,
}
mem := cgs . MemoryStats . Usage
s . MemoryStats = types . MemoryStats {
Usage : mem . Usage ,
MaxUsage : mem . MaxUsage ,
Stats : cgs . MemoryStats . Stats ,
Failcnt : mem . Failcnt ,
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Limit : mem . Limit ,
}
// if the container does not set memory limit, use the machineMemory
if mem . Limit > daemon . statsCollector . machineMemory && daemon . statsCollector . machineMemory > 0 {
s . MemoryStats . Limit = daemon . statsCollector . machineMemory
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}
if cgs . PidsStats != nil {
s . PidsStats = types . PidsStats {
Current : cgs . PidsStats . Current ,
}
}
}
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s . Read , err = ptypes . Timestamp ( stats . Timestamp )
if err != nil {
return nil , err
}
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return s , nil
}
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// setDefaultIsolation determines the default isolation mode for the
2016-03-18 14:50:19 -04:00
// daemon to run in. This is only applicable on Windows
func ( daemon * Daemon ) setDefaultIsolation ( ) error {
return nil
}
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func rootFSToAPIType ( rootfs * image . RootFS ) types . RootFS {
var layers [ ] string
for _ , l := range rootfs . DiffIDs {
layers = append ( layers , l . String ( ) )
}
return types . RootFS {
Type : rootfs . Type ,
Layers : layers ,
}
}
2016-07-11 18:26:23 -04:00
// setupDaemonProcess sets various settings for the daemon's process
func setupDaemonProcess ( config * Config ) error {
// setup the daemons oom_score_adj
return setupOOMScoreAdj ( config . OOMScoreAdjust )
}
func setupOOMScoreAdj ( score int ) error {
f , err := os . OpenFile ( "/proc/self/oom_score_adj" , os . O_WRONLY , 0 )
if err != nil {
return err
}
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stringScore := strconv . Itoa ( score )
_ , err = f . WriteString ( stringScore )
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if os . IsPermission ( err ) {
// Setting oom_score_adj does not work in an
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// unprivileged container. Ignore the error, but log
// it if we appear not to be in that situation.
if ! rsystem . RunningInUserNS ( ) {
logrus . Debugf ( "Permission denied writing %q to /proc/self/oom_score_adj" , stringScore )
}
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return nil
}
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f . Close ( )
return err
}
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func ( daemon * Daemon ) initCgroupsPath ( path string ) error {
if path == "/" || path == "." {
return nil
}
daemon . initCgroupsPath ( filepath . Dir ( path ) )
_ , root , err := cgroups . FindCgroupMountpointAndRoot ( "cpu" )
if err != nil {
return err
}
path = filepath . Join ( root , path )
sysinfo := sysinfo . New ( false )
if err := os . MkdirAll ( path , 0755 ) ; err != nil && ! os . IsExist ( err ) {
return err
}
if sysinfo . CPURealtimePeriod && daemon . configStore . CPURealtimePeriod != 0 {
if err := ioutil . WriteFile ( filepath . Join ( path , "cpu.rt_period_us" ) , [ ] byte ( strconv . FormatInt ( daemon . configStore . CPURealtimePeriod , 10 ) ) , 0700 ) ; err != nil {
return err
}
}
if sysinfo . CPURealtimeRuntime && daemon . configStore . CPURealtimeRuntime != 0 {
if err := ioutil . WriteFile ( filepath . Join ( path , "cpu.rt_runtime_us" ) , [ ] byte ( strconv . FormatInt ( daemon . configStore . CPURealtimeRuntime , 10 ) ) , 0700 ) ; err != nil {
return err
}
}
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return nil
}
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func ( daemon * Daemon ) setupSeccompProfile ( ) error {
if daemon . configStore . SeccompProfile != "" {
daemon . seccompProfilePath = daemon . configStore . SeccompProfile
b , err := ioutil . ReadFile ( daemon . configStore . SeccompProfile )
if err != nil {
return fmt . Errorf ( "opening seccomp profile (%s) failed: %v" , daemon . configStore . SeccompProfile , err )
}
daemon . seccompProfile = b
p := struct {
DefaultAction string ` json:"defaultAction" `
} { }
if err := json . Unmarshal ( daemon . seccompProfile , & p ) ; err != nil {
return err
}
}
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return nil
}