Merge component 'engine' from git@github.com:moby/moby master

This commit is contained in:
GordonTheTurtle
2018-02-16 17:06:31 +00:00
38 changed files with 1297 additions and 450 deletions

View File

@ -20,3 +20,5 @@ dockerversion/version_autogen.go
dockerversion/version_autogen_unix.go
vendor/pkg/
hack/integration-cli-on-swarm/integration-cli-on-swarm
coverage.txt
profile.out

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@ -12,35 +12,40 @@ import (
"github.com/docker/docker/api"
"github.com/docker/docker/api/types"
"github.com/docker/docker/internal/testutil"
"github.com/gotestyourself/gotestyourself/skip"
"github.com/stretchr/testify/assert"
)
func TestNewEnvClient(t *testing.T) {
if runtime.GOOS == "windows" {
t.Skip("skipping unix only test for windows")
}
cases := []struct {
skip.IfCondition(t, runtime.GOOS == "windows")
testcases := []struct {
doc string
envs map[string]string
expectedError string
expectedVersion string
}{
{
doc: "default api version",
envs: map[string]string{},
expectedVersion: api.DefaultVersion,
},
{
doc: "invalid cert path",
envs: map[string]string{
"DOCKER_CERT_PATH": "invalid/path",
},
expectedError: "Could not load X509 key pair: open invalid/path/cert.pem: no such file or directory",
},
{
doc: "default api version with cert path",
envs: map[string]string{
"DOCKER_CERT_PATH": "testdata/",
},
expectedVersion: api.DefaultVersion,
},
{
doc: "default api version with cert path and tls verify",
envs: map[string]string{
"DOCKER_CERT_PATH": "testdata/",
"DOCKER_TLS_VERIFY": "1",
@ -48,6 +53,7 @@ func TestNewEnvClient(t *testing.T) {
expectedVersion: api.DefaultVersion,
},
{
doc: "default api version with cert path and host",
envs: map[string]string{
"DOCKER_CERT_PATH": "testdata/",
"DOCKER_HOST": "https://notaunixsocket",
@ -55,24 +61,21 @@ func TestNewEnvClient(t *testing.T) {
expectedVersion: api.DefaultVersion,
},
{
doc: "invalid docker host",
envs: map[string]string{
"DOCKER_HOST": "host",
},
expectedError: "unable to parse docker host `host`",
},
{
doc: "invalid docker host, with good format",
envs: map[string]string{
"DOCKER_HOST": "invalid://url",
},
expectedVersion: api.DefaultVersion,
},
{
envs: map[string]string{
"DOCKER_API_VERSION": "anything",
},
expectedVersion: "anything",
},
{
doc: "override api version",
envs: map[string]string{
"DOCKER_API_VERSION": "1.22",
},
@ -82,24 +85,23 @@ func TestNewEnvClient(t *testing.T) {
env := envToMap()
defer mapToEnv(env)
for _, c := range cases {
mapToEnv(env)
for _, c := range testcases {
mapToEnv(c.envs)
apiclient, err := NewEnvClient()
if c.expectedError != "" {
assert.Error(t, err)
assert.Equal(t, c.expectedError, err.Error())
assert.Error(t, err, c.doc)
assert.Equal(t, c.expectedError, err.Error(), c.doc)
} else {
assert.NoError(t, err)
assert.NoError(t, err, c.doc)
version := apiclient.ClientVersion()
assert.Equal(t, c.expectedVersion, version)
assert.Equal(t, c.expectedVersion, version, c.doc)
}
if c.envs["DOCKER_TLS_VERIFY"] != "" {
// pedantic checking that this is handled correctly
tr := apiclient.client.Transport.(*http.Transport)
assert.NotNil(t, tr.TLSClientConfig)
assert.Equal(t, tr.TLSClientConfig.InsecureSkipVerify, false)
assert.NotNil(t, tr.TLSClientConfig, c.doc)
assert.Equal(t, tr.TLSClientConfig.InsecureSkipVerify, false, c.doc)
}
}
}

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@ -34,7 +34,6 @@ import (
"github.com/docker/docker/daemon/cluster"
"github.com/docker/docker/daemon/config"
"github.com/docker/docker/daemon/listeners"
"github.com/docker/docker/daemon/logger"
"github.com/docker/docker/dockerversion"
"github.com/docker/docker/libcontainerd"
dopts "github.com/docker/docker/opts"
@ -106,12 +105,6 @@ func (cli *DaemonCli) start(opts *daemonOptions) (err error) {
return fmt.Errorf("Failed to set umask: %v", err)
}
if len(cli.LogConfig.Config) > 0 {
if err := logger.ValidateLogOpts(cli.LogConfig.Type, cli.LogConfig.Config); err != nil {
return fmt.Errorf("Failed to set log opts: %v", err)
}
}
// Create the daemon root before we create ANY other files (PID, or migrate keys)
// to ensure the appropriate ACL is set (particularly relevant on Windows)
if err := daemon.CreateDaemonRoot(cli.Config); err != nil {

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@ -0,0 +1,17 @@
comment:
layout: header, changes, diff, sunburst
coverage:
status:
patch:
default:
target: 50%
only_pulls: true
# project will give us the diff in the total code coverage between a commit
# and its parent
project:
default:
target: auto
threshold: "15%"
changes: false
ignore:
- "vendor/*"

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@ -671,8 +671,6 @@ func NewDaemon(config *config.Config, registryService registry.Service, containe
return nil, fmt.Errorf("error setting default isolation mode: %v", err)
}
logrus.Debugf("Using default logging driver %s", config.LogConfig.Type)
if err := configureMaxThreads(config); err != nil {
logrus.Warnf("Failed to configure golang's threads limit: %v", err)
}
@ -753,6 +751,10 @@ func NewDaemon(config *config.Config, registryService registry.Service, containe
return nil, errors.Wrap(err, "couldn't create plugin manager")
}
if err := d.setupDefaultLogConfig(); err != nil {
return nil, err
}
for operatingSystem, gd := range d.graphDrivers {
d.layerStores[operatingSystem], err = layer.NewStoreFromOptions(layer.StoreOptions{
Root: config.Root,
@ -873,10 +875,7 @@ func NewDaemon(config *config.Config, registryService registry.Service, containe
d.trustKey = trustKey
d.idIndex = truncindex.NewTruncIndex([]string{})
d.statsCollector = d.newStatsCollector(1 * time.Second)
d.defaultLogConfig = containertypes.LogConfig{
Type: config.LogConfig.Type,
Config: config.LogConfig.Config,
}
d.EventsService = eventsService
d.volumes = volStore
d.root = config.Root

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@ -138,22 +138,6 @@ func (r *multiReadSeeker) getCurOffset() (int64, error) {
return totalSize, nil
}
func (r *multiReadSeeker) getOffsetToReader(rdr io.ReadSeeker) (int64, error) {
var offset int64
for _, r := range r.readers {
if r == rdr {
break
}
size, err := getReadSeekerSize(rdr)
if err != nil {
return -1, err
}
offset += size
}
return offset, nil
}
func (r *multiReadSeeker) Read(b []byte) (int, error) {
if r.pos == nil {
// make sure all readers are at 0

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@ -1,7 +1,6 @@
package daemon // import "github.com/docker/docker/daemon"
import (
"errors"
"strconv"
"time"
@ -14,6 +13,7 @@ import (
"github.com/docker/docker/container"
"github.com/docker/docker/daemon/logger"
"github.com/docker/docker/errdefs"
"github.com/pkg/errors"
"github.com/sirupsen/logrus"
)
@ -184,3 +184,18 @@ func (daemon *Daemon) mergeAndVerifyLogConfig(cfg *containertypes.LogConfig) err
return logger.ValidateLogOpts(cfg.Type, cfg.Config)
}
func (daemon *Daemon) setupDefaultLogConfig() error {
config := daemon.configStore
if len(config.LogConfig.Config) > 0 {
if err := logger.ValidateLogOpts(config.LogConfig.Type, config.LogConfig.Config); err != nil {
return errors.Wrap(err, "failed to set log opts")
}
}
daemon.defaultLogConfig = containertypes.LogConfig{
Type: config.LogConfig.Type,
Config: config.LogConfig.Config,
}
logrus.Debugf("Using default logging driver %s", daemon.defaultLogConfig.Type)
return nil
}

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@ -4,6 +4,10 @@ set -eu -o pipefail
hack/validate/default
hack/test/unit
bash <(curl -s https://codecov.io/bash) \
-f coverage.txt \
-C $GIT_SHA1 || \
echo 'Codecov failed to upload'
hack/make.sh \
binary-daemon \

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@ -1,6 +1,8 @@
#!/bin/sh
TOMLV_COMMIT=9baf8a8a9f2ed20a8e54160840c492f937eeaf9a
# When updating TOMLV_COMMIT, consider updating github.com/BurntSushi/toml
# in vendor.conf accordingly
TOMLV_COMMIT=a368813c5e648fee92e5f6c30e3944ff9d5e8895
# When updating RUNC_COMMIT, also update runc in vendor.conf accordingly
RUNC_COMMIT=6c55f98695e902427906eed2c799e566e3d3dfb5
@ -10,7 +12,11 @@ RUNC_COMMIT=6c55f98695e902427906eed2c799e566e3d3dfb5
# fixes or new APIs.
CONTAINERD_COMMIT=cfd04396dc68220d1cecbe686a6cc3aa5ce3667c # v1.0.2
TINI_COMMIT=949e6facb77383876aeff8a6944dde66b3089574
LIBNETWORK_COMMIT=fcf1c3b5e57833aaaa756ae3c4140ea54da00319
# LIBNETWORK_COMMIT is used to build the docker-userland-proxy binary. When
# updating the binary version, consider updating github.com/docker/libnetwork
# in vendor.conf accordingly
LIBNETWORK_COMMIT=20dd462e0a0e883437a274bd61df4bc4de980830
VNDR_COMMIT=a6e196d8b4b0cbbdc29aebdb20c59ac6926bb384
# Linting

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@ -19,4 +19,20 @@ TESTDIRS="${TESTDIRS:-"./..."}"
exclude_paths="/vendor/|/integration"
pkg_list=$(go list $TESTDIRS | grep -vE "($exclude_paths)")
go test -cover "${BUILDFLAGS[@]}" $TESTFLAGS $pkg_list
# install test dependencies once before running tests for each package. This
# significantly reduces the runtime.
go test -i "${BUILDFLAGS[@]}" $pkg_list
for pkg in $pkg_list; do
go test "${BUILDFLAGS[@]}" \
-cover \
-coverprofile=profile.out \
-covermode=atomic \
$TESTFLAGS \
"${pkg}"
if test -f profile.out; then
cat profile.out >> coverage.txt
rm profile.out
fi
done

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@ -79,6 +79,10 @@ func (is *store) restore() error {
}
l, err = is.lss[img.OperatingSystem()].Get(chainID)
if err != nil {
if err == layer.ErrLayerDoesNotExist {
logrus.Errorf("layer does not exist, not restoring image %v, %v, %s", dgst, chainID, img.OperatingSystem())
return nil
}
return err
}
}

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@ -1697,7 +1697,7 @@ func (s *DockerDaemonSuite) TestDaemonCorruptedLogDriverAddress(c *check.C) {
Experimental: testEnv.DaemonInfo.ExperimentalBuild,
})
c.Assert(d.StartWithError("--log-driver=syslog", "--log-opt", "syslog-address=corrupted:42"), check.NotNil)
expected := "Failed to set log opts: syslog-address should be in form proto://address"
expected := "syslog-address should be in form proto://address"
icmd.RunCommand("grep", expected, d.LogFileName()).Assert(c, icmd.Success)
}
@ -1707,7 +1707,7 @@ func (s *DockerDaemonSuite) TestDaemonCorruptedFluentdAddress(c *check.C) {
Experimental: testEnv.DaemonInfo.ExperimentalBuild,
})
c.Assert(d.StartWithError("--log-driver=fluentd", "--log-opt", "fluentd-address=corrupted:c"), check.NotNil)
expected := "Failed to set log opts: invalid fluentd-address corrupted:c: "
expected := "invalid fluentd-address corrupted:c: "
icmd.RunCommand("grep", expected, d.LogFileName()).Assert(c, icmd.Success)
}

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@ -4,7 +4,6 @@ package main
import (
"bytes"
"crypto/x509"
"encoding/json"
"encoding/pem"
"fmt"
@ -25,6 +24,7 @@ import (
"github.com/docker/libnetwork/driverapi"
"github.com/docker/libnetwork/ipamapi"
remoteipam "github.com/docker/libnetwork/ipams/remote/api"
"github.com/docker/swarmkit/ca/keyutils"
"github.com/go-check/check"
"github.com/gotestyourself/gotestyourself/fs"
"github.com/gotestyourself/gotestyourself/icmd"
@ -1007,7 +1007,7 @@ func checkKeyIsEncrypted(d *daemon.Swarm) func(*check.C) (interface{}, check.Com
return fmt.Errorf("invalid PEM-encoded private key"), nil
}
return x509.IsEncryptedPEMBlock(keyBlock), nil
return keyutils.IsEncryptedPEMBlock(keyBlock), nil
}
}

View File

@ -13,7 +13,7 @@ import (
"github.com/docker/docker/api/types/network"
"github.com/docker/docker/client"
"github.com/docker/docker/integration-cli/daemon"
"github.com/docker/docker/integration/util/request"
"github.com/docker/docker/integration/internal/request"
"github.com/docker/docker/pkg/stdcopy"
"github.com/docker/docker/pkg/system"
"github.com/gotestyourself/gotestyourself/fs"

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@ -0,0 +1 @@
package cmd

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@ -0,0 +1,19 @@
package main
import (
"net"
"net/http"
)
func main() {
l, err := net.Listen("unix", "/run/docker/plugins/plugin.sock")
if err != nil {
panic(err)
}
server := http.Server{
Addr: l.Addr().String(),
Handler: http.NewServeMux(),
}
server.Serve(l)
}

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@ -0,0 +1 @@
package main

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@ -0,0 +1,69 @@
package logging
import (
"context"
"os"
"os/exec"
"path/filepath"
"testing"
"time"
"github.com/docker/docker/api/types"
"github.com/docker/docker/integration-cli/fixtures/plugin"
"github.com/docker/docker/pkg/locker"
"github.com/pkg/errors"
)
const dockerdBinary = "dockerd"
var pluginBuildLock = locker.New()
func ensurePlugin(t *testing.T, name string) string {
pluginBuildLock.Lock(name)
defer pluginBuildLock.Unlock(name)
installPath := filepath.Join(os.Getenv("GOPATH"), "bin", name)
if _, err := os.Stat(installPath); err == nil {
return installPath
}
goBin, err := exec.LookPath("go")
if err != nil {
t.Fatal(err)
}
cmd := exec.Command(goBin, "build", "-o", installPath, "./"+filepath.Join("cmd", name))
cmd.Env = append(cmd.Env, "CGO_ENABLED=0")
if out, err := cmd.CombinedOutput(); err != nil {
t.Fatal(errors.Wrapf(err, "error building basic plugin bin: %s", string(out)))
}
return installPath
}
func withSockPath(name string) func(*plugin.Config) {
return func(cfg *plugin.Config) {
cfg.Interface.Socket = name
}
}
func createPlugin(t *testing.T, client plugin.CreateClient, alias, bin string, opts ...plugin.CreateOpt) {
pluginBin := ensurePlugin(t, bin)
opts = append(opts, withSockPath("plugin.sock"))
opts = append(opts, plugin.WithBinary(pluginBin))
ctx, cancel := context.WithTimeout(context.Background(), 60*time.Second)
err := plugin.Create(ctx, client, alias, opts...)
cancel()
if err != nil {
t.Fatal(err)
}
}
func asLogDriver(cfg *plugin.Config) {
cfg.Interface.Types = []types.PluginInterfaceType{
{Capability: "logdriver", Prefix: "docker", Version: "1.0"},
}
}

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@ -0,0 +1,33 @@
package logging
import (
"context"
"testing"
"github.com/docker/docker/api/types"
"github.com/docker/docker/integration-cli/daemon"
"github.com/stretchr/testify/assert"
)
// Regression test for #35553
// Ensure that a daemon with a log plugin set as the default logger for containers
// does not keep the daemon from starting.
func TestDaemonStartWithLogOpt(t *testing.T) {
t.Parallel()
d := daemon.New(t, "", dockerdBinary, daemon.Config{})
d.Start(t, "--iptables=false")
defer d.Stop(t)
client, err := d.NewClient()
assert.NoError(t, err)
ctx := context.Background()
createPlugin(t, client, "test", "dummy", asLogDriver)
err = client.PluginEnable(ctx, "test", types.PluginEnableOptions{Timeout: 30})
assert.NoError(t, err)
defer client.PluginRemove(ctx, "test", types.PluginRemoveOptions{Force: true})
d.Stop(t)
d.Start(t, "--iptables=false", "--log-driver=test", "--log-opt=foo=bar")
}

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@ -31,6 +31,8 @@ github.com/moby/buildkit aaff9d591ef128560018433fe61beb802e149de8
github.com/tonistiigi/fsutil dea3a0da73aee887fc02142d995be764106ac5e2
#get libnetwork packages
# When updating, also update LIBNETWORK_COMMIT in hack/dockerfile/binaries-commits accordingly
github.com/docker/libnetwork 20dd462e0a0e883437a274bd61df4bc4de980830
github.com/docker/go-events 9461782956ad83b30282bf90e31fa6a70c255ba9
github.com/armon/go-radix e39d623f12e8e41c7b5529e9a9dd67a1e2261f80
@ -44,6 +46,8 @@ github.com/hashicorp/serf 598c54895cc5a7b1a24a398d635e8c0ea0959870
github.com/docker/libkv 1d8431073ae03cdaedb198a89722f3aab6d418ef
github.com/vishvananda/netns 604eaf189ee867d8c147fafc28def2394e878d25
github.com/vishvananda/netlink b2de5d10e38ecce8607e6b438b6d174f389a004e
# When updating, consider updating TOMLV_COMMIT in hack/dockerfile/binaries-commits accordingly
github.com/BurntSushi/toml a368813c5e648fee92e5f6c30e3944ff9d5e8895
github.com/samuel/go-zookeeper d0e0d8e11f318e000a8cc434616d69e329edc374
github.com/deckarep/golang-set ef32fa3046d9f249d399f98ebaf9be944430fd1d
@ -115,7 +119,7 @@ github.com/dmcgowan/go-tar go1.10
github.com/stevvooe/ttrpc d4528379866b0ce7e9d71f3eb96f0582fc374577
# cluster
github.com/docker/swarmkit 68a376dc30d8c4001767c39456b990dbd821371b
github.com/docker/swarmkit f74983e7c015a38a81c8642803a78b8322cf7eac
github.com/gogo/protobuf v0.4
github.com/cloudflare/cfssl 7fb22c8cba7ecaf98e4082d22d65800cf45e042a
github.com/google/certificate-transparency d90e65c3a07988180c5b1ece71791c0b6506826e

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@ -443,17 +443,20 @@ func (IPAMConfig_AddressFamily) EnumDescriptor() ([]byte, []int) {
type PortConfig_Protocol int32
const (
ProtocolTCP PortConfig_Protocol = 0
ProtocolUDP PortConfig_Protocol = 1
ProtocolTCP PortConfig_Protocol = 0
ProtocolUDP PortConfig_Protocol = 1
ProtocolSCTP PortConfig_Protocol = 2
)
var PortConfig_Protocol_name = map[int32]string{
0: "TCP",
1: "UDP",
2: "SCTP",
}
var PortConfig_Protocol_value = map[string]int32{
"TCP": 0,
"UDP": 1,
"TCP": 0,
"UDP": 1,
"SCTP": 2,
}
func (x PortConfig_Protocol) String() string {
@ -17040,321 +17043,321 @@ var (
func init() { proto.RegisterFile("github.com/docker/swarmkit/api/types.proto", fileDescriptorTypes) }
var fileDescriptorTypes = []byte{
// 5043 bytes of a gzipped FileDescriptorProto
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0x19, 0xbf, 0xc7, 0xd9, 0x52, 0xfd, 0xb2, 0x11, 0x21, 0xf1, 0x9e, 0xd4, 0x3f, 0x48, 0xb1, 0x40,
0xca, 0x3a, 0xb2, 0x6c, 0x32, 0x20, 0x1e, 0x7a, 0x0e, 0x4b, 0x86, 0x4b, 0x4c, 0x16, 0xd6, 0xeb,
0x76, 0xf4, 0x03, 0xdb, 0x9f, 0x89, 0x8d, 0x69, 0x42, 0xc1, 0x4a, 0x3d, 0x94, 0xea, 0x8d, 0x88,
0x81, 0x17, 0x8d, 0x0b, 0x6d, 0xf4, 0x29, 0x2c, 0x79, 0xc4, 0xb6, 0x9c, 0xf1, 0x4b, 0xcd, 0xa0,
0x8e, 0x4f, 0x5e, 0x06, 0xaf, 0x65, 0xd7, 0xe9, 0xed, 0x35, 0xb7, 0x99, 0x54, 0x5d, 0x08, 0xd5,
0xd0, 0xf9, 0xd9, 0xfa, 0xe2, 0x45, 0x1a, 0x5e, 0x94, 0x9a, 0x65, 0xbb, 0xd4, 0x86, 0xc5, 0x8b,
0xa3, 0x41, 0x2b, 0xf2, 0xec, 0x73, 0x17, 0x12, 0x9c, 0x6d, 0x74, 0x1b, 0x72, 0x2e, 0x19, 0x58,
0x9e, 0xef, 0x0a, 0x33, 0x33, 0x4e, 0x48, 0x61, 0x27, 0x5f, 0x7c, 0x1d, 0x55, 0xfa, 0x15, 0x98,
0xe9, 0x91, 0x1d, 0x16, 0xd3, 0xf2, 0xf4, 0x3d, 0xa9, 0x32, 0x87, 0x83, 0x26, 0xdb, 0x83, 0x63,
0x2f, 0x0c, 0xd4, 0xf8, 0x6f, 0x46, 0xe3, 0x11, 0x85, 0xfc, 0x56, 0x8c, 0xc7, 0x0c, 0xc1, 0x47,
0xa7, 0xe9, 0xc8, 0x47, 0xa7, 0x2b, 0x90, 0xb1, 0xc9, 0x11, 0xb1, 0xc5, 0x5d, 0x8e, 0x45, 0xe3,
0xde, 0x43, 0x28, 0x06, 0x5f, 0x37, 0xf2, 0xaf, 0x2a, 0x72, 0x90, 0xee, 0x57, 0x7b, 0xcf, 0x94,
0x39, 0x04, 0x90, 0x15, 0x9b, 0x53, 0xbc, 0xe4, 0xd5, 0x3b, 0xed, 0x8d, 0xd6, 0xa6, 0x92, 0xbc,
0xf7, 0xbb, 0x69, 0xc8, 0x87, 0x6f, 0x49, 0xec, 0xee, 0x68, 0x37, 0x5f, 0x04, 0xbb, 0x3b, 0xa4,
0xb7, 0xc9, 0x31, 0x7a, 0x7b, 0x5a, 0x85, 0xfa, 0x44, 0x3c, 0x9e, 0x87, 0xec, 0xa0, 0x02, 0xf5,
0x2e, 0xe4, 0xaa, 0xbd, 0x5e, 0x6b, 0xb3, 0xdd, 0x6c, 0x28, 0x9f, 0x25, 0x4a, 0x5f, 0x38, 0x39,
0x2d, 0x2f, 0x87, 0xa0, 0xaa, 0x27, 0x36, 0x1f, 0x47, 0xd5, 0xeb, 0xcd, 0x6e, 0xbf, 0xd9, 0x50,
0x5e, 0x25, 0x67, 0x51, 0xbc, 0xaa, 0xc2, 0x3f, 0xeb, 0xc9, 0x77, 0x71, 0xb3, 0x5b, 0xc5, 0xac,
0xc3, 0xcf, 0x92, 0xa2, 0x38, 0x36, 0xed, 0xd1, 0x25, 0x23, 0xdd, 0x65, 0x7d, 0xae, 0x05, 0xdf,
0xc9, 0xbd, 0x4a, 0x89, 0x4f, 0x3f, 0xa6, 0x0f, 0x63, 0x44, 0x37, 0x27, 0xac, 0x37, 0xfe, 0x22,
0xc9, 0xd5, 0xa4, 0x66, 0x7a, 0xeb, 0x31, 0xdf, 0xc3, 0xb4, 0xa8, 0x30, 0x8f, 0x77, 0xdb, 0x6d,
0x06, 0x7a, 0x95, 0x9e, 0x99, 0x1d, 0x1e, 0x3b, 0x2c, 0x63, 0x46, 0x77, 0x21, 0x17, 0x3c, 0x58,
0x2a, 0x9f, 0xa5, 0x67, 0x06, 0x54, 0x0f, 0x5e, 0x5b, 0x79, 0x87, 0x5b, 0xbb, 0x7d, 0xfe, 0x19,
0xdf, 0xab, 0xcc, 0x6c, 0x87, 0x07, 0x63, 0xdf, 0xa4, 0xc7, 0x0e, 0x3b, 0xb3, 0xb2, 0x0e, 0xf7,
0x59, 0x46, 0x14, 0x2d, 0x42, 0x8c, 0x2c, 0xc2, 0xbd, 0x0b, 0x39, 0xdc, 0xfc, 0x96, 0xf8, 0xe2,
0xef, 0x55, 0x76, 0x46, 0x0f, 0x26, 0x9f, 0x12, 0x83, 0xf5, 0x56, 0x86, 0x2c, 0x6e, 0xee, 0x74,
0x9e, 0x37, 0x95, 0x3f, 0xcc, 0xce, 0xe8, 0xc1, 0x64, 0x48, 0xf9, 0x77, 0x4f, 0xb9, 0x0e, 0xee,
0x6e, 0x55, 0xf9, 0xa2, 0xcc, 0xea, 0xe9, 0xb8, 0xa3, 0x03, 0xdd, 0x21, 0xe6, 0xf4, 0x0b, 0x99,
0x90, 0x75, 0xef, 0x17, 0x20, 0x17, 0xc4, 0xae, 0x68, 0x0d, 0xb2, 0x2f, 0x3a, 0xf8, 0x59, 0x13,
0x2b, 0x73, 0xc2, 0xca, 0x01, 0xe7, 0x85, 0xc8, 0x3a, 0xca, 0x30, 0xbf, 0x53, 0x6d, 0x57, 0x37,
0x9b, 0x38, 0x28, 0xa2, 0x07, 0x00, 0x19, 0x80, 0x95, 0x14, 0xd9, 0x41, 0xa8, 0xb3, 0xb6, 0xfa,
0xfd, 0x1f, 0xad, 0xcd, 0xfd, 0xf0, 0x47, 0x6b, 0x73, 0xaf, 0xce, 0xd7, 0x12, 0xdf, 0x3f, 0x5f,
0x4b, 0xfc, 0xfd, 0xf9, 0x5a, 0xe2, 0xdf, 0xce, 0xd7, 0x12, 0x7b, 0x59, 0x7e, 0x4d, 0x3c, 0xf9,
0xbf, 0x00, 0x00, 0x00, 0xff, 0xff, 0x6b, 0x9b, 0x2e, 0x8d, 0x2e, 0x32, 0x00, 0x00,
}

View File

@ -616,6 +616,7 @@ message PortConfig {
TCP = 0 [(gogoproto.enumvalue_customname) = "ProtocolTCP"];
UDP = 1 [(gogoproto.enumvalue_customname) = "ProtocolUDP"];
SCTP = 2 [(gogoproto.enumvalue_customname) = "ProtocolSCTP"];
}
// PublishMode controls how ports are published on the swarm.

View File

@ -26,6 +26,8 @@ import (
"github.com/cloudflare/cfssl/signer/local"
"github.com/docker/go-events"
"github.com/docker/swarmkit/api"
"github.com/docker/swarmkit/ca/keyutils"
"github.com/docker/swarmkit/ca/pkcs8"
"github.com/docker/swarmkit/connectionbroker"
"github.com/docker/swarmkit/ioutils"
"github.com/opencontainers/go-digest"
@ -655,9 +657,9 @@ func newLocalSigner(keyBytes, certBytes []byte, certExpiry time.Duration, rootPo
}
// Attempt to decrypt the current private-key with the passphrases provided
priv, err = helpers.ParsePrivateKeyPEMWithPassword(keyBytes, passphrase)
priv, err = keyutils.ParsePrivateKeyPEMWithPassword(keyBytes, passphrase)
if err != nil {
priv, err = helpers.ParsePrivateKeyPEMWithPassword(keyBytes, passphrasePrev)
priv, err = keyutils.ParsePrivateKeyPEMWithPassword(keyBytes, passphrasePrev)
if err != nil {
return nil, errors.Wrap(err, "malformed private key")
}
@ -677,7 +679,7 @@ func newLocalSigner(keyBytes, certBytes []byte, certExpiry time.Duration, rootPo
// ensure it is encrypted, so it doesn't hit raft in plain-text
// we don't have to check for nil, because if we couldn't pem-decode the bytes, then parsing above would have failed
keyBlock, _ := pem.Decode(keyBytes)
if passphraseStr != "" && !x509.IsEncryptedPEMBlock(keyBlock) {
if passphraseStr != "" && !keyutils.IsEncryptedPEMBlock(keyBlock) {
keyBytes, err = EncryptECPrivateKey(keyBytes, passphraseStr)
if err != nil {
return nil, errors.Wrap(err, "unable to encrypt signing CA key material")
@ -815,6 +817,14 @@ func CreateRootCA(rootCN string) (RootCA, error) {
return RootCA{}, err
}
// Convert key to PKCS#8 in FIPS mode
if keyutils.FIPSEnabled() {
key, err = pkcs8.ConvertECPrivateKeyPEM(key)
if err != nil {
return RootCA{}, err
}
}
rootCA, err := NewRootCA(cert, cert, key, DefaultNodeCertExpiration, nil)
if err != nil {
return RootCA{}, err
@ -956,7 +966,14 @@ func GenerateNewCSR() ([]byte, []byte, error) {
req := &cfcsr.CertificateRequest{
KeyRequest: cfcsr.NewBasicKeyRequest(),
}
return cfcsr.ParseRequest(req)
csr, key, err := cfcsr.ParseRequest(req)
if err != nil {
return nil, nil, err
}
key, err = pkcs8.ConvertECPrivateKeyPEM(key)
return csr, key, err
}
// EncryptECPrivateKey receives a PEM encoded private key and returns an encrypted
@ -964,7 +981,6 @@ func GenerateNewCSR() ([]byte, []byte, error) {
// TODO: Make this method generic to handle RSA keys
func EncryptECPrivateKey(key []byte, passphraseStr string) ([]byte, error) {
passphrase := []byte(passphraseStr)
cipherType := x509.PEMCipherAES256
keyBlock, _ := pem.Decode(key)
if keyBlock == nil {
@ -972,11 +988,7 @@ func EncryptECPrivateKey(key []byte, passphraseStr string) ([]byte, error) {
return nil, errors.New("error while decoding PEM key")
}
encryptedPEMBlock, err := x509.EncryptPEMBlock(cryptorand.Reader,
"EC PRIVATE KEY",
keyBlock.Bytes,
passphrase,
cipherType)
encryptedPEMBlock, err := keyutils.EncryptPEMBlock(keyBlock.Bytes, passphrase)
if err != nil {
return nil, err
}

View File

@ -1,7 +1,6 @@
package ca
import (
cryptorand "crypto/rand"
"crypto/x509"
"encoding/pem"
"io/ioutil"
@ -13,6 +12,8 @@ import (
"crypto/tls"
"github.com/docker/swarmkit/ca/keyutils"
"github.com/docker/swarmkit/ca/pkcs8"
"github.com/docker/swarmkit/ioutils"
"github.com/pkg/errors"
)
@ -313,7 +314,7 @@ func (k *KeyReadWriter) readKey() (*pem.Block, error) {
return nil, err
}
if !x509.IsEncryptedPEMBlock(keyBlock) {
if !keyutils.IsEncryptedPEMBlock(keyBlock) {
return keyBlock, nil
}
@ -323,10 +324,16 @@ func (k *KeyReadWriter) readKey() (*pem.Block, error) {
return nil, ErrInvalidKEK{Wrapped: x509.IncorrectPasswordError}
}
derBytes, err := x509.DecryptPEMBlock(keyBlock, k.kekData.KEK)
derBytes, err := keyutils.DecryptPEMBlock(keyBlock, k.kekData.KEK)
if err != nil {
return nil, ErrInvalidKEK{Wrapped: err}
}
// change header only if its pkcs8
if keyBlock.Type == "ENCRYPTED PRIVATE KEY" {
keyBlock.Type = "PRIVATE KEY"
}
// remove encryption PEM headers
headers := make(map[string]string)
mergePEMHeaders(headers, keyBlock.Headers)
@ -342,15 +349,11 @@ func (k *KeyReadWriter) readKey() (*pem.Block, error) {
// writing it to disk. If the kek is nil, writes it to disk unencrypted.
func (k *KeyReadWriter) writeKey(keyBlock *pem.Block, kekData KEKData, pkh PEMKeyHeaders) error {
if kekData.KEK != nil {
encryptedPEMBlock, err := x509.EncryptPEMBlock(cryptorand.Reader,
keyBlock.Type,
keyBlock.Bytes,
kekData.KEK,
x509.PEMCipherAES256)
encryptedPEMBlock, err := keyutils.EncryptPEMBlock(keyBlock.Bytes, kekData.KEK)
if err != nil {
return err
}
if encryptedPEMBlock.Headers == nil {
if !keyutils.IsEncryptedPEMBlock(encryptedPEMBlock) {
return errors.New("unable to encrypt key - invalid PEM file produced")
}
keyBlock = encryptedPEMBlock
@ -373,6 +376,48 @@ func (k *KeyReadWriter) writeKey(keyBlock *pem.Block, kekData KEKData, pkh PEMKe
return nil
}
// DowngradeKey converts the PKCS#8 key to PKCS#1 format and save it
func (k *KeyReadWriter) DowngradeKey() error {
_, key, err := k.Read()
if err != nil {
return err
}
oldBlock, _ := pem.Decode(key)
if oldBlock == nil {
return errors.New("invalid PEM-encoded private key")
}
// stop if the key is already downgraded to pkcs1
if !keyutils.IsPKCS8(oldBlock.Bytes) {
return errors.New("key is already downgraded to PKCS#1")
}
eckey, err := pkcs8.ConvertToECPrivateKeyPEM(key)
if err != nil {
return err
}
newBlock, _ := pem.Decode(eckey)
if newBlock == nil {
return errors.New("invalid PEM-encoded private key")
}
if k.kekData.KEK != nil {
newBlock, err = keyutils.EncryptPEMBlock(newBlock.Bytes, k.kekData.KEK)
if err != nil {
return err
}
}
// add kek-version header back to the new key
newBlock.Headers[versionHeader] = strconv.FormatUint(k.kekData.Version, 10)
mergePEMHeaders(newBlock.Headers, oldBlock.Headers)
// do not use krw.Write as it will convert the key to pkcs8
return ioutils.AtomicWriteFile(k.paths.Key, pem.EncodeToMemory(newBlock), keyPerms)
}
// merges one set of PEM headers onto another, excepting for key encryption value
// "proc-type" and "dek-info"
func mergePEMHeaders(original, newSet map[string]string) {

View File

@ -0,0 +1,92 @@
// Package keyutils serves as a utility to parse, encrypt and decrypt
// PKCS#1 and PKCS#8 private keys based on current FIPS mode status,
// supporting only EC type keys. It always allows PKCS#8 private keys
// and disallow PKCS#1 private keys in FIPS-mode.
package keyutils
import (
"crypto"
cryptorand "crypto/rand"
"crypto/x509"
"encoding/pem"
"errors"
"os"
"github.com/cloudflare/cfssl/helpers"
"github.com/docker/swarmkit/ca/pkcs8"
)
var errFIPSUnsupportedKeyFormat = errors.New("unsupported key format due to FIPS compliance")
// FIPSEnvVar is the environment variable which stores FIPS mode state
const FIPSEnvVar = "GOFIPS"
// FIPSEnabled returns true when FIPS mode is enabled
func FIPSEnabled() bool {
return os.Getenv(FIPSEnvVar) != ""
}
// IsPKCS8 returns true if the provided der bytes is encrypted/unencrypted PKCS#8 key
func IsPKCS8(derBytes []byte) bool {
if _, err := x509.ParsePKCS8PrivateKey(derBytes); err == nil {
return true
}
return pkcs8.IsEncryptedPEMBlock(&pem.Block{
Type: "PRIVATE KEY",
Headers: nil,
Bytes: derBytes,
})
}
// ParsePrivateKeyPEMWithPassword parses an encrypted or a decrypted PKCS#1 or PKCS#8 PEM to crypto.Signer.
// It returns an error in FIPS mode if PKCS#1 PEM bytes are passed.
func ParsePrivateKeyPEMWithPassword(pemBytes, password []byte) (crypto.Signer, error) {
block, _ := pem.Decode(pemBytes)
if block == nil {
return nil, errors.New("Could not parse PEM")
}
if IsPKCS8(block.Bytes) {
return pkcs8.ParsePrivateKeyPEMWithPassword(pemBytes, password)
} else if FIPSEnabled() {
return nil, errFIPSUnsupportedKeyFormat
}
return helpers.ParsePrivateKeyPEMWithPassword(pemBytes, password)
}
// IsEncryptedPEMBlock checks if a PKCS#1 or PKCS#8 PEM-block is encrypted or not
// It returns false in FIPS mode even if PKCS#1 is encrypted
func IsEncryptedPEMBlock(block *pem.Block) bool {
return pkcs8.IsEncryptedPEMBlock(block) || (!FIPSEnabled() && x509.IsEncryptedPEMBlock(block))
}
// DecryptPEMBlock requires PKCS#1 or PKCS#8 PEM Block and password to decrypt and return unencrypted der []byte
// It returns an error in FIPS mode when PKCS#1 PEM Block is passed.
func DecryptPEMBlock(block *pem.Block, password []byte) ([]byte, error) {
if IsPKCS8(block.Bytes) {
return pkcs8.DecryptPEMBlock(block, password)
} else if FIPSEnabled() {
return nil, errFIPSUnsupportedKeyFormat
}
return x509.DecryptPEMBlock(block, password)
}
// EncryptPEMBlock takes DER-format bytes and password to return an encrypted PKCS#1 or PKCS#8 PEM-block
// It returns an error in FIPS mode when PKCS#1 PEM bytes are passed.
func EncryptPEMBlock(data, password []byte) (*pem.Block, error) {
if IsPKCS8(data) {
return pkcs8.EncryptPEMBlock(data, password)
} else if FIPSEnabled() {
return nil, errFIPSUnsupportedKeyFormat
}
cipherType := x509.PEMCipherAES256
return x509.EncryptPEMBlock(cryptorand.Reader,
"EC PRIVATE KEY",
data,
password,
cipherType)
}

View File

@ -0,0 +1,311 @@
// Package pkcs8 implements functions to encrypt, decrypt, parse and to convert
// EC private keys to PKCS#8 format. However this package is hard forked from
// https://github.com/youmark/pkcs8 and modified function signatures to match
// signatures of crypto/x509 and cloudflare/cfssl/helpers to simplify package
// swapping. License for original package is as follow:
//
// The MIT License (MIT)
//
// Copyright (c) 2014 youmark
//
// Permission is hereby granted, free of charge, to any person obtaining a copy
// of this software and associated documentation files (the "Software"), to deal
// in the Software without restriction, including without limitation the rights
// to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
// copies of the Software, and to permit persons to whom the Software is
// furnished to do so, subject to the following conditions:
//
// The above copyright notice and this permission notice shall be included in all
// copies or substantial portions of the Software.
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
// SOFTWARE.
package pkcs8
import (
"bytes"
"crypto"
"crypto/aes"
"crypto/cipher"
"crypto/rand"
"crypto/sha1"
"encoding/asn1"
"encoding/pem"
"errors"
"github.com/cloudflare/cfssl/helpers/derhelpers"
"golang.org/x/crypto/pbkdf2"
)
// Copy from crypto/x509
var (
oidPublicKeyECDSA = asn1.ObjectIdentifier{1, 2, 840, 10045, 2, 1}
)
// Unencrypted PKCS#8
var (
oidPKCS5PBKDF2 = asn1.ObjectIdentifier{1, 2, 840, 113549, 1, 5, 12}
oidPBES2 = asn1.ObjectIdentifier{1, 2, 840, 113549, 1, 5, 13}
oidAES256CBC = asn1.ObjectIdentifier{2, 16, 840, 1, 101, 3, 4, 1, 42}
)
type ecPrivateKey struct {
Version int
PrivateKey []byte
NamedCurveOID asn1.ObjectIdentifier `asn1:"optional,explicit,tag:0"`
PublicKey asn1.BitString `asn1:"optional,explicit,tag:1"`
}
type privateKeyInfo struct {
Version int
PrivateKeyAlgorithm []asn1.ObjectIdentifier
PrivateKey []byte
}
// Encrypted PKCS8
type pbkdf2Params struct {
Salt []byte
IterationCount int
}
type pbkdf2Algorithms struct {
IDPBKDF2 asn1.ObjectIdentifier
PBKDF2Params pbkdf2Params
}
type pbkdf2Encs struct {
EncryAlgo asn1.ObjectIdentifier
IV []byte
}
type pbes2Params struct {
KeyDerivationFunc pbkdf2Algorithms
EncryptionScheme pbkdf2Encs
}
type pbes2Algorithms struct {
IDPBES2 asn1.ObjectIdentifier
PBES2Params pbes2Params
}
type encryptedPrivateKeyInfo struct {
EncryptionAlgorithm pbes2Algorithms
EncryptedData []byte
}
// ParsePrivateKeyPEMWithPassword parses an encrypted or a decrypted PKCS#8 PEM to crypto.signer
func ParsePrivateKeyPEMWithPassword(pemBytes, password []byte) (crypto.Signer, error) {
block, _ := pem.Decode(pemBytes)
if block == nil {
return nil, errors.New("invalid pem file")
}
var (
der []byte
err error
)
der = block.Bytes
if ok := IsEncryptedPEMBlock(block); ok {
der, err = DecryptPEMBlock(block, password)
if err != nil {
return nil, err
}
}
return derhelpers.ParsePrivateKeyDER(der)
}
// IsEncryptedPEMBlock checks if a PKCS#8 PEM-block is encrypted or not
func IsEncryptedPEMBlock(block *pem.Block) bool {
der := block.Bytes
var privKey encryptedPrivateKeyInfo
if _, err := asn1.Unmarshal(der, &privKey); err != nil {
return false
}
return true
}
// DecryptPEMBlock requires PKCS#8 PEM Block and password to decrypt and return unencrypted der []byte
func DecryptPEMBlock(block *pem.Block, password []byte) ([]byte, error) {
der := block.Bytes
var privKey encryptedPrivateKeyInfo
if _, err := asn1.Unmarshal(der, &privKey); err != nil {
return nil, errors.New("pkcs8: only PKCS #5 v2.0 supported")
}
if !privKey.EncryptionAlgorithm.IDPBES2.Equal(oidPBES2) {
return nil, errors.New("pkcs8: only PBES2 supported")
}
if !privKey.EncryptionAlgorithm.PBES2Params.KeyDerivationFunc.IDPBKDF2.Equal(oidPKCS5PBKDF2) {
return nil, errors.New("pkcs8: only PBKDF2 supported")
}
encParam := privKey.EncryptionAlgorithm.PBES2Params.EncryptionScheme
kdfParam := privKey.EncryptionAlgorithm.PBES2Params.KeyDerivationFunc.PBKDF2Params
switch {
case encParam.EncryAlgo.Equal(oidAES256CBC):
iv := encParam.IV
salt := kdfParam.Salt
iter := kdfParam.IterationCount
encryptedKey := privKey.EncryptedData
symkey := pbkdf2.Key(password, salt, iter, 32, sha1.New)
block, err := aes.NewCipher(symkey)
if err != nil {
return nil, err
}
mode := cipher.NewCBCDecrypter(block, iv)
mode.CryptBlocks(encryptedKey, encryptedKey)
if _, err := derhelpers.ParsePrivateKeyDER(encryptedKey); err != nil {
return nil, errors.New("pkcs8: incorrect password")
}
// Remove padding from key as it might be used to encode to memory as pem
keyLen := len(encryptedKey)
padLen := int(encryptedKey[keyLen-1])
if padLen > keyLen || padLen > aes.BlockSize {
return nil, errors.New("pkcs8: invalid padding size")
}
encryptedKey = encryptedKey[:keyLen-padLen]
return encryptedKey, nil
default:
return nil, errors.New("pkcs8: only AES-256-CBC supported")
}
}
func encryptPrivateKey(pkey, password []byte) ([]byte, error) {
// Calculate key from password based on PKCS5 algorithm
// Use 8 byte salt, 16 byte IV, and 2048 iteration
iter := 2048
salt := make([]byte, 8)
iv := make([]byte, 16)
if _, err := rand.Reader.Read(salt); err != nil {
return nil, err
}
if _, err := rand.Reader.Read(iv); err != nil {
return nil, err
}
key := pbkdf2.Key(password, salt, iter, 32, sha1.New)
// Use AES256-CBC mode, pad plaintext with PKCS5 padding scheme
n := len(pkey)
padLen := aes.BlockSize - n%aes.BlockSize
if padLen > 0 {
padValue := []byte{byte(padLen)}
padding := bytes.Repeat(padValue, padLen)
pkey = append(pkey, padding...)
}
encryptedKey := make([]byte, len(pkey))
block, err := aes.NewCipher(key)
if err != nil {
return nil, err
}
mode := cipher.NewCBCEncrypter(block, iv)
mode.CryptBlocks(encryptedKey, pkey)
pbkdf2algo := pbkdf2Algorithms{oidPKCS5PBKDF2, pbkdf2Params{salt, iter}}
pbkdf2encs := pbkdf2Encs{oidAES256CBC, iv}
pbes2algo := pbes2Algorithms{oidPBES2, pbes2Params{pbkdf2algo, pbkdf2encs}}
encryptedPkey := encryptedPrivateKeyInfo{pbes2algo, encryptedKey}
return asn1.Marshal(encryptedPkey)
}
// EncryptPEMBlock takes DER-format bytes and password to return an encrypted PKCS#8 PEM-block
func EncryptPEMBlock(data, password []byte) (*pem.Block, error) {
encryptedBytes, err := encryptPrivateKey(data, password)
if err != nil {
return nil, err
}
return &pem.Block{
Type: "ENCRYPTED PRIVATE KEY",
Headers: map[string]string{},
Bytes: encryptedBytes,
}, nil
}
// ConvertECPrivateKeyPEM takes an EC Private Key as input and returns PKCS#8 version of it
func ConvertECPrivateKeyPEM(inPEM []byte) ([]byte, error) {
block, _ := pem.Decode(inPEM)
if block == nil {
return nil, errors.New("invalid pem bytes")
}
var ecPrivKey ecPrivateKey
if _, err := asn1.Unmarshal(block.Bytes, &ecPrivKey); err != nil {
return nil, errors.New("invalid ec private key")
}
var pkey privateKeyInfo
pkey.Version = 0
pkey.PrivateKeyAlgorithm = make([]asn1.ObjectIdentifier, 2)
pkey.PrivateKeyAlgorithm[0] = oidPublicKeyECDSA
pkey.PrivateKeyAlgorithm[1] = ecPrivKey.NamedCurveOID
// remove curve oid from private bytes as it is already mentioned in algorithm
ecPrivKey.NamedCurveOID = nil
privatekey, err := asn1.Marshal(ecPrivKey)
if err != nil {
return nil, err
}
pkey.PrivateKey = privatekey
der, err := asn1.Marshal(pkey)
if err != nil {
return nil, err
}
return pem.EncodeToMemory(&pem.Block{
Type: "PRIVATE KEY",
Bytes: der,
}), nil
}
// ConvertToECPrivateKeyPEM takes an unencrypted PKCS#8 PEM and converts it to
// EC Private Key
func ConvertToECPrivateKeyPEM(inPEM []byte) ([]byte, error) {
block, _ := pem.Decode(inPEM)
if block == nil {
return nil, errors.New("invalid pem bytes")
}
var pkey privateKeyInfo
if _, err := asn1.Unmarshal(block.Bytes, &pkey); err != nil {
return nil, errors.New("invalid pkcs8 key")
}
var ecPrivKey ecPrivateKey
if _, err := asn1.Unmarshal(pkey.PrivateKey, &ecPrivKey); err != nil {
return nil, errors.New("invalid private key")
}
ecPrivKey.NamedCurveOID = pkey.PrivateKeyAlgorithm[1]
key, err := asn1.Marshal(ecPrivKey)
if err != nil {
return nil, err
}
return pem.EncodeToMemory(&pem.Block{
Type: "EC PRIVATE KEY",
Bytes: key,
}), nil
}

View File

@ -15,6 +15,7 @@ import (
"github.com/docker/swarmkit/log"
"github.com/docker/swarmkit/manager/allocator/networkallocator"
"github.com/pkg/errors"
"github.com/sirupsen/logrus"
"golang.org/x/net/context"
)
@ -244,6 +245,7 @@ vipLoop:
}
for _, nAttach := range specNetworks {
if nAttach.Target == eAttach.NetworkID {
log.L.WithFields(logrus.Fields{"service_id": s.ID, "vip": eAttach.Addr}).Debug("allocate vip")
if err = na.allocateVIP(eAttach); err != nil {
return err
}

View File

@ -105,7 +105,7 @@ func (ps allocatedPorts) delState(p *api.PortConfig) *api.PortConfig {
func newPortAllocator() (*portAllocator, error) {
portSpaces := make(map[api.PortConfig_Protocol]*portSpace)
for _, protocol := range []api.PortConfig_Protocol{api.ProtocolTCP, api.ProtocolUDP} {
for _, protocol := range []api.PortConfig_Protocol{api.ProtocolTCP, api.ProtocolUDP, api.ProtocolSCTP} {
ps, err := newPortSpace(protocol)
if err != nil {
return nil, err

View File

@ -244,7 +244,7 @@ func (a *Allocator) doNetworkAlloc(ctx context.Context, ev events.Event) {
break
}
if err := a.allocateService(ctx, s); err != nil {
if err := a.allocateService(ctx, s, false); err != nil {
log.G(ctx).WithError(err).Errorf("Failed allocation for service %s", s.ID)
break
}
@ -274,7 +274,7 @@ func (a *Allocator) doNetworkAlloc(ctx context.Context, ev events.Event) {
}
updatePortsInHostPublishMode(s)
} else {
if err := a.allocateService(ctx, s); err != nil {
if err := a.allocateService(ctx, s, false); err != nil {
log.G(ctx).WithError(err).Errorf("Failed allocation during update of service %s", s.ID)
break
}
@ -587,8 +587,8 @@ func (a *Allocator) allocateServices(ctx context.Context, existingAddressesOnly
continue
}
if err := a.allocateService(ctx, s); err != nil {
log.G(ctx).WithError(err).Errorf("failed allocating service %s during init", s.ID)
if err := a.allocateService(ctx, s, existingAddressesOnly); err != nil {
log.G(ctx).WithField("existingAddressesOnly", existingAddressesOnly).WithError(err).Errorf("failed allocating service %s during init", s.ID)
continue
}
allocatedServices = append(allocatedServices, s)
@ -940,7 +940,10 @@ func updatePortsInHostPublishMode(s *api.Service) {
s.Endpoint.Spec = s.Spec.Endpoint.Copy()
}
func (a *Allocator) allocateService(ctx context.Context, s *api.Service) error {
// allocateService takes care to align the desired state with the spec passed
// the last parameter is true only during restart when the data is read from raft
// and used to build internal state
func (a *Allocator) allocateService(ctx context.Context, s *api.Service, existingAddressesOnly bool) error {
nc := a.netCtx
if s.Spec.Endpoint != nil {
@ -972,7 +975,9 @@ func (a *Allocator) allocateService(ctx context.Context, s *api.Service) error {
&api.Endpoint_VirtualIP{NetworkID: nc.ingressNetwork.ID})
}
}
} else if s.Endpoint != nil {
} else if s.Endpoint != nil && !existingAddressesOnly {
// if we are in the restart phase there is no reason to try to deallocate anything because the state
// is not there
// service has no user-defined endpoints while has already allocated network resources,
// need deallocated.
if err := nc.nwkAllocator.DeallocateService(s); err != nil {
@ -1188,7 +1193,7 @@ func (a *Allocator) procUnallocatedServices(ctx context.Context) {
var allocatedServices []*api.Service
for _, s := range nc.unallocatedServices {
if !nc.nwkAllocator.IsServiceAllocated(s) {
if err := a.allocateService(ctx, s); err != nil {
if err := a.allocateService(ctx, s, false); err != nil {
log.G(ctx).WithError(err).Debugf("Failed allocation of unallocated service %s", s.ID)
continue
}

View File

@ -155,7 +155,8 @@ func (s *Server) ListTasks(ctx context.Context, request *api.ListTasksRequest) (
return false
}
return !orchestrator.IsTaskDirty(service, e)
n := store.GetNode(tx, e.NodeID)
return !orchestrator.IsTaskDirty(service, e, n)
},
)
})

View File

@ -125,8 +125,12 @@ type clusterUpdate struct {
// Dispatcher is responsible for dispatching tasks and tracking agent health.
type Dispatcher struct {
mu sync.Mutex
wg sync.WaitGroup
// mu is a lock to provide mutually exclusive access to dispatcher fields
// e.g. lastSeenManagers, networkBootstrapKeys, lastSeenRootCert etc.
mu sync.Mutex
// shutdownWait is used by stop() to wait for existing operations to finish.
shutdownWait sync.WaitGroup
nodes *nodeStore
store *store.MemoryStore
lastSeenManagers []*api.WeightedPeer
@ -249,8 +253,11 @@ func (d *Dispatcher) Run(ctx context.Context) error {
defer cancel()
d.ctx, d.cancel = context.WithCancel(ctx)
ctx = d.ctx
d.wg.Add(1)
defer d.wg.Done()
// If Stop() is called, it should wait
// for Run() to complete.
d.shutdownWait.Add(1)
defer d.shutdownWait.Done()
d.mu.Unlock()
publishManagers := func(peers []*api.Peer) {
@ -313,11 +320,14 @@ func (d *Dispatcher) Stop() error {
return errors.New("dispatcher is already stopped")
}
log := log.G(d.ctx).WithField("method", "(*Dispatcher).Stop")
log.Info("dispatcher stopping")
// Cancel dispatcher context.
// This should also close the the streams in Tasks(), Assignments().
d.cancel()
d.mu.Unlock()
// Wait for the RPCs that are in-progress to finish.
d.shutdownWait.Wait()
d.nodes.Clean()
d.processUpdatesLock.Lock()
@ -328,9 +338,6 @@ func (d *Dispatcher) Stop() error {
d.processUpdatesLock.Unlock()
d.clusterUpdateQueue.Close()
d.wg.Wait()
return nil
}
@ -478,13 +485,13 @@ func nodeIPFromContext(ctx context.Context) (string, error) {
// register is used for registration of node with particular dispatcher.
func (d *Dispatcher) register(ctx context.Context, nodeID string, description *api.NodeDescription) (string, error) {
logLocal := log.G(ctx).WithField("method", "(*Dispatcher).register")
// prevent register until we're ready to accept it
dctx, err := d.isRunningLocked()
if err != nil {
return "", err
}
logLocal := log.G(ctx).WithField("method", "(*Dispatcher).register")
if err := d.nodes.CheckRateLimit(nodeID); err != nil {
return "", err
}
@ -532,6 +539,21 @@ func (d *Dispatcher) register(ctx context.Context, nodeID string, description *a
// UpdateTaskStatus updates status of task. Node should send such updates
// on every status change of its tasks.
func (d *Dispatcher) UpdateTaskStatus(ctx context.Context, r *api.UpdateTaskStatusRequest) (*api.UpdateTaskStatusResponse, error) {
// shutdownWait.Add() followed by isRunning() to ensures that
// if this rpc sees the dispatcher running,
// it will already have called Add() on the shutdownWait wait,
// which ensures that Stop() will wait for this rpc to complete.
// Note that Stop() first does Dispatcher.ctx.cancel() followed by
// shutdownWait.Wait() to make sure new rpc's don't start before waiting
// for existing ones to finish.
d.shutdownWait.Add(1)
defer d.shutdownWait.Done()
dctx, err := d.isRunningLocked()
if err != nil {
return nil, err
}
nodeInfo, err := ca.RemoteNode(ctx)
if err != nil {
return nil, err
@ -547,11 +569,6 @@ func (d *Dispatcher) UpdateTaskStatus(ctx context.Context, r *api.UpdateTaskStat
}
log := log.G(ctx).WithFields(fields)
dctx, err := d.isRunningLocked()
if err != nil {
return nil, err
}
if _, err := d.nodes.GetWithSession(nodeID, r.SessionID); err != nil {
return nil, err
}
@ -723,17 +740,27 @@ func (d *Dispatcher) processUpdates(ctx context.Context) {
// of tasks which should be run on node, if task is not present in that list,
// it should be terminated.
func (d *Dispatcher) Tasks(r *api.TasksRequest, stream api.Dispatcher_TasksServer) error {
nodeInfo, err := ca.RemoteNode(stream.Context())
if err != nil {
return err
}
nodeID := nodeInfo.NodeID
// shutdownWait.Add() followed by isRunning() to ensures that
// if this rpc sees the dispatcher running,
// it will already have called Add() on the shutdownWait wait,
// which ensures that Stop() will wait for this rpc to complete.
// Note that Stop() first does Dispatcher.ctx.cancel() followed by
// shutdownWait.Wait() to make sure new rpc's don't start before waiting
// for existing ones to finish.
d.shutdownWait.Add(1)
defer d.shutdownWait.Done()
dctx, err := d.isRunningLocked()
if err != nil {
return err
}
nodeInfo, err := ca.RemoteNode(stream.Context())
if err != nil {
return err
}
nodeID := nodeInfo.NodeID
fields := logrus.Fields{
"node.id": nodeID,
"node.session": r.SessionID,
@ -846,17 +873,27 @@ func (d *Dispatcher) Tasks(r *api.TasksRequest, stream api.Dispatcher_TasksServe
// Assignments is a stream of assignments for a node. Each message contains
// either full list of tasks and secrets for the node, or an incremental update.
func (d *Dispatcher) Assignments(r *api.AssignmentsRequest, stream api.Dispatcher_AssignmentsServer) error {
nodeInfo, err := ca.RemoteNode(stream.Context())
if err != nil {
return err
}
nodeID := nodeInfo.NodeID
// shutdownWait.Add() followed by isRunning() to ensures that
// if this rpc sees the dispatcher running,
// it will already have called Add() on the shutdownWait wait,
// which ensures that Stop() will wait for this rpc to complete.
// Note that Stop() first does Dispatcher.ctx.cancel() followed by
// shutdownWait.Wait() to make sure new rpc's don't start before waiting
// for existing ones to finish.
d.shutdownWait.Add(1)
defer d.shutdownWait.Done()
dctx, err := d.isRunningLocked()
if err != nil {
return err
}
nodeInfo, err := ca.RemoteNode(stream.Context())
if err != nil {
return err
}
nodeID := nodeInfo.NodeID
fields := logrus.Fields{
"node.id": nodeID,
"node.session": r.SessionID,
@ -1103,6 +1140,24 @@ func (d *Dispatcher) markNodeNotReady(id string, state api.NodeStatus_State, mes
// Node should send new heartbeat earlier than now + TTL, otherwise it will
// be deregistered from dispatcher and its status will be updated to NodeStatus_DOWN
func (d *Dispatcher) Heartbeat(ctx context.Context, r *api.HeartbeatRequest) (*api.HeartbeatResponse, error) {
// shutdownWait.Add() followed by isRunning() to ensures that
// if this rpc sees the dispatcher running,
// it will already have called Add() on the shutdownWait wait,
// which ensures that Stop() will wait for this rpc to complete.
// Note that Stop() first does Dispatcher.ctx.cancel() followed by
// shutdownWait.Wait() to make sure new rpc's don't start before waiting
// for existing ones to finish.
d.shutdownWait.Add(1)
defer d.shutdownWait.Done()
// isRunningLocked() is not needed since its OK if
// the dispatcher context is cancelled while this call is in progress
// since Stop() which cancels the dispatcher context will wait for
// Heartbeat() to complete.
if !d.isRunning() {
return nil, status.Errorf(codes.Aborted, "dispatcher is stopped")
}
nodeInfo, err := ca.RemoteNode(ctx)
if err != nil {
return nil, err
@ -1137,6 +1192,21 @@ func (d *Dispatcher) getRootCACert() []byte {
// a special boolean field Disconnect which if true indicates that node should
// reconnect to another Manager immediately.
func (d *Dispatcher) Session(r *api.SessionRequest, stream api.Dispatcher_SessionServer) error {
// shutdownWait.Add() followed by isRunning() to ensures that
// if this rpc sees the dispatcher running,
// it will already have called Add() on the shutdownWait wait,
// which ensures that Stop() will wait for this rpc to complete.
// Note that Stop() first does Dispatcher.ctx.cancel() followed by
// shutdownWait.Wait() to make sure new rpc's don't start before waiting
// for existing ones to finish.
d.shutdownWait.Add(1)
defer d.shutdownWait.Done()
dctx, err := d.isRunningLocked()
if err != nil {
return err
}
ctx := stream.Context()
nodeInfo, err := ca.RemoteNode(ctx)
if err != nil {
@ -1144,11 +1214,6 @@ func (d *Dispatcher) Session(r *api.SessionRequest, stream api.Dispatcher_Sessio
}
nodeID := nodeInfo.NodeID
dctx, err := d.isRunningLocked()
if err != nil {
return err
}
var sessionID string
if _, err := d.nodes.GetWithSession(nodeID, r.SessionID); err != nil {
// register the node.

View File

@ -2,7 +2,6 @@ package manager
import (
"crypto/tls"
"crypto/x509"
"encoding/pem"
"fmt"
"net"
@ -13,12 +12,12 @@ import (
"syscall"
"time"
"github.com/cloudflare/cfssl/helpers"
"github.com/docker/docker/pkg/plugingetter"
"github.com/docker/go-events"
gmetrics "github.com/docker/go-metrics"
"github.com/docker/swarmkit/api"
"github.com/docker/swarmkit/ca"
"github.com/docker/swarmkit/ca/keyutils"
"github.com/docker/swarmkit/connectionbroker"
"github.com/docker/swarmkit/identity"
"github.com/docker/swarmkit/log"
@ -817,10 +816,10 @@ func (m *Manager) rotateRootCAKEK(ctx context.Context, clusterID string) error {
return fmt.Errorf("invalid PEM-encoded private key inside of cluster %s", clusterID)
}
if x509.IsEncryptedPEMBlock(keyBlock) {
if keyutils.IsEncryptedPEMBlock(keyBlock) {
// PEM encryption does not have a digest, so sometimes decryption doesn't
// error even with the wrong passphrase. So actually try to parse it into a valid key.
_, err := helpers.ParsePrivateKeyPEMWithPassword(privKeyPEM, []byte(passphrase))
_, err := keyutils.ParsePrivateKeyPEMWithPassword(privKeyPEM, []byte(passphrase))
if err == nil {
// This key is already correctly encrypted with the correct KEK, nothing to do here
return nil
@ -829,7 +828,7 @@ func (m *Manager) rotateRootCAKEK(ctx context.Context, clusterID string) error {
// This key is already encrypted, but failed with current main passphrase.
// Let's try to decrypt with the previous passphrase, and parse into a valid key, for the
// same reason as above.
_, err = helpers.ParsePrivateKeyPEMWithPassword(privKeyPEM, []byte(passphrasePrev))
_, err = keyutils.ParsePrivateKeyPEMWithPassword(privKeyPEM, []byte(passphrasePrev))
if err != nil {
// We were not able to decrypt either with the main or backup passphrase, error
return err
@ -837,7 +836,7 @@ func (m *Manager) rotateRootCAKEK(ctx context.Context, clusterID string) error {
// ok the above passphrase is correct, so decrypt the PEM block so we can re-encrypt -
// since the key was successfully decrypted above, there will be no error doing PEM
// decryption
unencryptedDER, _ := x509.DecryptPEMBlock(keyBlock, []byte(passphrasePrev))
unencryptedDER, _ := keyutils.DecryptPEMBlock(keyBlock, []byte(passphrasePrev))
unencryptedKeyBlock := &pem.Block{
Type: keyBlock.Type,
Bytes: unencryptedDER,

View File

@ -463,7 +463,7 @@ func (g *Orchestrator) reconcileOneNode(ctx context.Context, node *api.Node) {
)
for _, t := range tasks[serviceID] {
if orchestrator.IsTaskDirty(service.Service, t) {
if orchestrator.IsTaskDirty(service.Service, t, node) {
dirtyTasks = append(dirtyTasks, t)
} else {
cleanTasks = append(cleanTasks, t)

View File

@ -7,6 +7,7 @@ import (
"github.com/docker/swarmkit/api"
"github.com/docker/swarmkit/api/defaults"
"github.com/docker/swarmkit/identity"
"github.com/docker/swarmkit/manager/constraint"
"github.com/docker/swarmkit/protobuf/ptypes"
)
@ -58,8 +59,17 @@ func RestartCondition(task *api.Task) api.RestartPolicy_RestartCondition {
return restartCondition
}
// IsTaskDirty determines whether a task matches the given service's spec.
func IsTaskDirty(s *api.Service, t *api.Task) bool {
// IsTaskDirty determines whether a task matches the given service's spec and
// if the given node satisfies the placement constraints.
// Returns false if the spec version didn't change,
// only the task placement constraints changed and the assigned node
// satisfies the new constraints, or the service task spec and the endpoint spec
// didn't change at all.
// Returns true otherwise.
// Note: for non-failed tasks with a container spec runtime that have already
// pulled the required image (i.e., current state is between READY and
// RUNNING inclusively), the value of the `PullOptions` is ignored.
func IsTaskDirty(s *api.Service, t *api.Task, n *api.Node) bool {
// If the spec version matches, we know the task is not dirty. However,
// if it does not match, that doesn't mean the task is dirty, since
// only a portion of the spec is included in the comparison.
@ -70,6 +80,12 @@ func IsTaskDirty(s *api.Service, t *api.Task) bool {
// Make a deep copy of the service and task spec for the comparison.
serviceTaskSpec := *s.Spec.Task.Copy()
// Task is not dirty if the placement constraints alone changed
// and the node currently assigned can satisfy the changed constraints.
if IsTaskDirtyPlacementConstraintsOnly(serviceTaskSpec, t) && nodeMatches(s, n) {
return false
}
// For non-failed tasks with a container spec runtime that have already
// pulled the required image (i.e., current state is between READY and
// RUNNING inclusively), ignore the value of the `PullOptions` field by
@ -83,7 +99,9 @@ func IsTaskDirty(s *api.Service, t *api.Task) bool {
// and its last known current state is between READY and RUNNING in
// which case we know that the task either successfully pulled its
// container image or didn't need to.
ignorePullOpts := t.DesiredState <= api.TaskStateRunning && currentState >= api.TaskStateReady && currentState <= api.TaskStateRunning
ignorePullOpts := t.DesiredState <= api.TaskStateRunning &&
currentState >= api.TaskStateReady &&
currentState <= api.TaskStateRunning
if ignorePullOpts && serviceTaskSpec.GetContainer() != nil && t.Spec.GetContainer() != nil {
// Modify the service's container spec.
serviceTaskSpec.GetContainer().PullOptions = t.Spec.GetContainer().PullOptions
@ -93,6 +111,31 @@ func IsTaskDirty(s *api.Service, t *api.Task) bool {
(t.Endpoint != nil && !reflect.DeepEqual(s.Spec.Endpoint, t.Endpoint.Spec))
}
// Checks if the current assigned node matches the Placement.Constraints
// specified in the task spec for Updater.newService.
func nodeMatches(s *api.Service, n *api.Node) bool {
if n == nil {
return false
}
constraints, _ := constraint.Parse(s.Spec.Task.Placement.Constraints)
return constraint.NodeMatches(constraints, n)
}
// IsTaskDirtyPlacementConstraintsOnly checks if the Placement field alone
// in the spec has changed.
func IsTaskDirtyPlacementConstraintsOnly(serviceTaskSpec api.TaskSpec, t *api.Task) bool {
// Compare the task placement constraints.
if reflect.DeepEqual(serviceTaskSpec.Placement, t.Spec.Placement) {
return false
}
// Update spec placement to only the fields
// other than the placement constraints in the spec.
serviceTaskSpec.Placement = t.Spec.Placement
return reflect.DeepEqual(serviceTaskSpec, t.Spec)
}
// InvalidNode is true if the node is nil, down, or drained
func InvalidNode(n *api.Node) bool {
return n == nil ||

View File

@ -2,6 +2,7 @@ package taskreaper
import (
"sort"
"sync"
"time"
"github.com/docker/swarmkit/api"
@ -24,6 +25,9 @@ const (
type TaskReaper struct {
store *store.MemoryStore
// closeOnce ensures that stopChan is closed only once
closeOnce sync.Once
// taskHistory is the number of tasks to keep
taskHistory int64
@ -281,9 +285,14 @@ func (tr *TaskReaper) tick() {
}
// Stop stops the TaskReaper and waits for the main loop to exit.
// Stop can be called in two cases. One when the manager is
// shutting down, and the other when the manager (the leader) is
// becoming a follower. Since these two instances could race with
// each other, we use closeOnce here to ensure that TaskReaper.Stop()
// is called only once to avoid a panic.
func (tr *TaskReaper) Stop() {
// TODO(dperny) calling stop on the task reaper twice will cause a panic
// because we try to close a channel that will already have been closed.
close(tr.stopChan)
tr.closeOnce.Do(func() {
close(tr.stopChan)
})
<-tr.doneChan
}

View File

@ -521,7 +521,11 @@ func (u *Updater) removeOldTasks(ctx context.Context, batch *store.Batch, remove
}
func (u *Updater) isTaskDirty(t *api.Task) bool {
return orchestrator.IsTaskDirty(u.newService, t)
var n *api.Node
u.store.View(func(tx store.ReadTx) {
n = store.GetNode(tx, t.NodeID)
})
return orchestrator.IsTaskDirty(u.newService, t, n)
}
func (u *Updater) isSlotDirty(slot orchestrator.Slot) bool {

View File

@ -971,6 +971,15 @@ func (n *Node) superviseManager(ctx context.Context, securityConfig *ca.Security
}
}
// DowngradeKey reverts the node key to older format so that it can
// run on older version of swarmkit
func (n *Node) DowngradeKey() error {
paths := ca.NewConfigPaths(filepath.Join(n.config.StateDir, certDirectory))
krw := ca.NewKeyReadWriter(paths.Node, n.config.UnlockKey, nil)
return krw.DowngradeKey()
}
type persistentRemotes struct {
sync.RWMutex
c *sync.Cond

View File

@ -0,0 +1,77 @@
// Copyright 2012 The Go Authors. All rights reserved.
// Use of this source code is governed by a BSD-style
// license that can be found in the LICENSE file.
/*
Package pbkdf2 implements the key derivation function PBKDF2 as defined in RFC
2898 / PKCS #5 v2.0.
A key derivation function is useful when encrypting data based on a password
or any other not-fully-random data. It uses a pseudorandom function to derive
a secure encryption key based on the password.
While v2.0 of the standard defines only one pseudorandom function to use,
HMAC-SHA1, the drafted v2.1 specification allows use of all five FIPS Approved
Hash Functions SHA-1, SHA-224, SHA-256, SHA-384 and SHA-512 for HMAC. To
choose, you can pass the `New` functions from the different SHA packages to
pbkdf2.Key.
*/
package pbkdf2 // import "golang.org/x/crypto/pbkdf2"
import (
"crypto/hmac"
"hash"
)
// Key derives a key from the password, salt and iteration count, returning a
// []byte of length keylen that can be used as cryptographic key. The key is
// derived based on the method described as PBKDF2 with the HMAC variant using
// the supplied hash function.
//
// For example, to use a HMAC-SHA-1 based PBKDF2 key derivation function, you
// can get a derived key for e.g. AES-256 (which needs a 32-byte key) by
// doing:
//
// dk := pbkdf2.Key([]byte("some password"), salt, 4096, 32, sha1.New)
//
// Remember to get a good random salt. At least 8 bytes is recommended by the
// RFC.
//
// Using a higher iteration count will increase the cost of an exhaustive
// search but will also make derivation proportionally slower.
func Key(password, salt []byte, iter, keyLen int, h func() hash.Hash) []byte {
prf := hmac.New(h, password)
hashLen := prf.Size()
numBlocks := (keyLen + hashLen - 1) / hashLen
var buf [4]byte
dk := make([]byte, 0, numBlocks*hashLen)
U := make([]byte, hashLen)
for block := 1; block <= numBlocks; block++ {
// N.B.: || means concatenation, ^ means XOR
// for each block T_i = U_1 ^ U_2 ^ ... ^ U_iter
// U_1 = PRF(password, salt || uint(i))
prf.Reset()
prf.Write(salt)
buf[0] = byte(block >> 24)
buf[1] = byte(block >> 16)
buf[2] = byte(block >> 8)
buf[3] = byte(block)
prf.Write(buf[:4])
dk = prf.Sum(dk)
T := dk[len(dk)-hashLen:]
copy(U, T)
// U_n = PRF(password, U_(n-1))
for n := 2; n <= iter; n++ {
prf.Reset()
prf.Write(U)
U = U[:0]
U = prf.Sum(U)
for x := range U {
T[x] ^= U[x]
}
}
}
return dk[:keyLen]
}