mirror of
https://github.com/ceph/ceph-csi.git
synced 2024-12-24 14:00:19 +00:00
ac4c83c96c
Signed-off-by: Humble Chirammal <hchiramm@redhat.com>
570 lines
23 KiB
Go
570 lines
23 KiB
Go
/*
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Copyright 2014 The Kubernetes Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package clientcmd
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import (
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"fmt"
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"io"
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"io/ioutil"
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"net/url"
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"os"
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"strings"
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"github.com/imdario/mergo"
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"k8s.io/klog"
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restclient "k8s.io/client-go/rest"
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clientauth "k8s.io/client-go/tools/auth"
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clientcmdapi "k8s.io/client-go/tools/clientcmd/api"
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)
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var (
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// ClusterDefaults has the same behavior as the old EnvVar and DefaultCluster fields
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// DEPRECATED will be replaced
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ClusterDefaults = clientcmdapi.Cluster{Server: getDefaultServer()}
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// DefaultClientConfig represents the legacy behavior of this package for defaulting
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// DEPRECATED will be replace
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DefaultClientConfig = DirectClientConfig{*clientcmdapi.NewConfig(), "", &ConfigOverrides{
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ClusterDefaults: ClusterDefaults,
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}, nil, NewDefaultClientConfigLoadingRules(), promptedCredentials{}}
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)
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// getDefaultServer returns a default setting for DefaultClientConfig
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// DEPRECATED
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func getDefaultServer() string {
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if server := os.Getenv("KUBERNETES_MASTER"); len(server) > 0 {
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return server
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}
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return "http://localhost:8080"
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}
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// ClientConfig is used to make it easy to get an api server client
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type ClientConfig interface {
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// RawConfig returns the merged result of all overrides
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RawConfig() (clientcmdapi.Config, error)
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// ClientConfig returns a complete client config
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ClientConfig() (*restclient.Config, error)
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// Namespace returns the namespace resulting from the merged
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// result of all overrides and a boolean indicating if it was
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// overridden
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Namespace() (string, bool, error)
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// ConfigAccess returns the rules for loading/persisting the config.
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ConfigAccess() ConfigAccess
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}
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type PersistAuthProviderConfigForUser func(user string) restclient.AuthProviderConfigPersister
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type promptedCredentials struct {
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username string
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password string
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}
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// DirectClientConfig is a ClientConfig interface that is backed by a clientcmdapi.Config, options overrides, and an optional fallbackReader for auth information
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type DirectClientConfig struct {
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config clientcmdapi.Config
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contextName string
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overrides *ConfigOverrides
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fallbackReader io.Reader
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configAccess ConfigAccess
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// promptedCredentials store the credentials input by the user
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promptedCredentials promptedCredentials
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}
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// NewDefaultClientConfig creates a DirectClientConfig using the config.CurrentContext as the context name
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func NewDefaultClientConfig(config clientcmdapi.Config, overrides *ConfigOverrides) ClientConfig {
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return &DirectClientConfig{config, config.CurrentContext, overrides, nil, NewDefaultClientConfigLoadingRules(), promptedCredentials{}}
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}
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// NewNonInteractiveClientConfig creates a DirectClientConfig using the passed context name and does not have a fallback reader for auth information
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func NewNonInteractiveClientConfig(config clientcmdapi.Config, contextName string, overrides *ConfigOverrides, configAccess ConfigAccess) ClientConfig {
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return &DirectClientConfig{config, contextName, overrides, nil, configAccess, promptedCredentials{}}
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}
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// NewInteractiveClientConfig creates a DirectClientConfig using the passed context name and a reader in case auth information is not provided via files or flags
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func NewInteractiveClientConfig(config clientcmdapi.Config, contextName string, overrides *ConfigOverrides, fallbackReader io.Reader, configAccess ConfigAccess) ClientConfig {
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return &DirectClientConfig{config, contextName, overrides, fallbackReader, configAccess, promptedCredentials{}}
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}
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// NewClientConfigFromBytes takes your kubeconfig and gives you back a ClientConfig
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func NewClientConfigFromBytes(configBytes []byte) (ClientConfig, error) {
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config, err := Load(configBytes)
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if err != nil {
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return nil, err
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}
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return &DirectClientConfig{*config, "", &ConfigOverrides{}, nil, nil, promptedCredentials{}}, nil
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}
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// RESTConfigFromKubeConfig is a convenience method to give back a restconfig from your kubeconfig bytes.
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// For programmatic access, this is what you want 80% of the time
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func RESTConfigFromKubeConfig(configBytes []byte) (*restclient.Config, error) {
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clientConfig, err := NewClientConfigFromBytes(configBytes)
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if err != nil {
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return nil, err
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}
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return clientConfig.ClientConfig()
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}
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func (config *DirectClientConfig) RawConfig() (clientcmdapi.Config, error) {
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return config.config, nil
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}
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// ClientConfig implements ClientConfig
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func (config *DirectClientConfig) ClientConfig() (*restclient.Config, error) {
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// check that getAuthInfo, getContext, and getCluster do not return an error.
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// Do this before checking if the current config is usable in the event that an
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// AuthInfo, Context, or Cluster config with user-defined names are not found.
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// This provides a user with the immediate cause for error if one is found
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configAuthInfo, err := config.getAuthInfo()
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if err != nil {
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return nil, err
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}
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_, err = config.getContext()
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if err != nil {
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return nil, err
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}
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configClusterInfo, err := config.getCluster()
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if err != nil {
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return nil, err
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}
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if err := config.ConfirmUsable(); err != nil {
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return nil, err
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}
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clientConfig := &restclient.Config{}
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clientConfig.Host = configClusterInfo.Server
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if len(config.overrides.Timeout) > 0 {
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timeout, err := ParseTimeout(config.overrides.Timeout)
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if err != nil {
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return nil, err
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}
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clientConfig.Timeout = timeout
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}
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if u, err := url.ParseRequestURI(clientConfig.Host); err == nil && u.Opaque == "" && len(u.Path) > 1 {
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u.RawQuery = ""
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u.Fragment = ""
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clientConfig.Host = u.String()
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}
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if len(configAuthInfo.Impersonate) > 0 {
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clientConfig.Impersonate = restclient.ImpersonationConfig{
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UserName: configAuthInfo.Impersonate,
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Groups: configAuthInfo.ImpersonateGroups,
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Extra: configAuthInfo.ImpersonateUserExtra,
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}
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}
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// only try to read the auth information if we are secure
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if restclient.IsConfigTransportTLS(*clientConfig) {
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var err error
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var persister restclient.AuthProviderConfigPersister
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if config.configAccess != nil {
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authInfoName, _ := config.getAuthInfoName()
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persister = PersisterForUser(config.configAccess, authInfoName)
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}
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userAuthPartialConfig, err := config.getUserIdentificationPartialConfig(configAuthInfo, config.fallbackReader, persister)
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if err != nil {
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return nil, err
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}
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mergo.MergeWithOverwrite(clientConfig, userAuthPartialConfig)
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serverAuthPartialConfig, err := getServerIdentificationPartialConfig(configAuthInfo, configClusterInfo)
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if err != nil {
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return nil, err
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}
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mergo.MergeWithOverwrite(clientConfig, serverAuthPartialConfig)
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}
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return clientConfig, nil
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}
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// clientauth.Info object contain both user identification and server identification. We want different precedence orders for
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// both, so we have to split the objects and merge them separately
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// we want this order of precedence for the server identification
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// 1. configClusterInfo (the final result of command line flags and merged .kubeconfig files)
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// 2. configAuthInfo.auth-path (this file can contain information that conflicts with #1, and we want #1 to win the priority)
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// 3. load the ~/.kubernetes_auth file as a default
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func getServerIdentificationPartialConfig(configAuthInfo clientcmdapi.AuthInfo, configClusterInfo clientcmdapi.Cluster) (*restclient.Config, error) {
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mergedConfig := &restclient.Config{}
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// configClusterInfo holds the information identify the server provided by .kubeconfig
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configClientConfig := &restclient.Config{}
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configClientConfig.CAFile = configClusterInfo.CertificateAuthority
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configClientConfig.CAData = configClusterInfo.CertificateAuthorityData
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configClientConfig.Insecure = configClusterInfo.InsecureSkipTLSVerify
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mergo.MergeWithOverwrite(mergedConfig, configClientConfig)
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return mergedConfig, nil
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}
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// clientauth.Info object contain both user identification and server identification. We want different precedence orders for
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// both, so we have to split the objects and merge them separately
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// we want this order of precedence for user identification
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// 1. configAuthInfo minus auth-path (the final result of command line flags and merged .kubeconfig files)
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// 2. configAuthInfo.auth-path (this file can contain information that conflicts with #1, and we want #1 to win the priority)
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// 3. if there is not enough information to identify the user, load try the ~/.kubernetes_auth file
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// 4. if there is not enough information to identify the user, prompt if possible
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func (config *DirectClientConfig) getUserIdentificationPartialConfig(configAuthInfo clientcmdapi.AuthInfo, fallbackReader io.Reader, persistAuthConfig restclient.AuthProviderConfigPersister) (*restclient.Config, error) {
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mergedConfig := &restclient.Config{}
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// blindly overwrite existing values based on precedence
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if len(configAuthInfo.Token) > 0 {
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mergedConfig.BearerToken = configAuthInfo.Token
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} else if len(configAuthInfo.TokenFile) > 0 {
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tokenBytes, err := ioutil.ReadFile(configAuthInfo.TokenFile)
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if err != nil {
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return nil, err
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}
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mergedConfig.BearerToken = string(tokenBytes)
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mergedConfig.BearerTokenFile = configAuthInfo.TokenFile
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}
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if len(configAuthInfo.Impersonate) > 0 {
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mergedConfig.Impersonate = restclient.ImpersonationConfig{
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UserName: configAuthInfo.Impersonate,
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Groups: configAuthInfo.ImpersonateGroups,
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Extra: configAuthInfo.ImpersonateUserExtra,
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}
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}
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if len(configAuthInfo.ClientCertificate) > 0 || len(configAuthInfo.ClientCertificateData) > 0 {
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mergedConfig.CertFile = configAuthInfo.ClientCertificate
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mergedConfig.CertData = configAuthInfo.ClientCertificateData
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mergedConfig.KeyFile = configAuthInfo.ClientKey
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mergedConfig.KeyData = configAuthInfo.ClientKeyData
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}
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if len(configAuthInfo.Username) > 0 || len(configAuthInfo.Password) > 0 {
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mergedConfig.Username = configAuthInfo.Username
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mergedConfig.Password = configAuthInfo.Password
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}
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if configAuthInfo.AuthProvider != nil {
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mergedConfig.AuthProvider = configAuthInfo.AuthProvider
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mergedConfig.AuthConfigPersister = persistAuthConfig
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}
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if configAuthInfo.Exec != nil {
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mergedConfig.ExecProvider = configAuthInfo.Exec
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}
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// if there still isn't enough information to authenticate the user, try prompting
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if !canIdentifyUser(*mergedConfig) && (fallbackReader != nil) {
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if len(config.promptedCredentials.username) > 0 && len(config.promptedCredentials.password) > 0 {
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mergedConfig.Username = config.promptedCredentials.username
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mergedConfig.Password = config.promptedCredentials.password
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return mergedConfig, nil
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}
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prompter := NewPromptingAuthLoader(fallbackReader)
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promptedAuthInfo, err := prompter.Prompt()
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if err != nil {
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return nil, err
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}
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promptedConfig := makeUserIdentificationConfig(*promptedAuthInfo)
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previouslyMergedConfig := mergedConfig
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mergedConfig = &restclient.Config{}
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mergo.MergeWithOverwrite(mergedConfig, promptedConfig)
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mergo.MergeWithOverwrite(mergedConfig, previouslyMergedConfig)
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config.promptedCredentials.username = mergedConfig.Username
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config.promptedCredentials.password = mergedConfig.Password
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}
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return mergedConfig, nil
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}
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// makeUserIdentificationFieldsConfig returns a client.Config capable of being merged using mergo for only user identification information
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func makeUserIdentificationConfig(info clientauth.Info) *restclient.Config {
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config := &restclient.Config{}
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config.Username = info.User
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config.Password = info.Password
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config.CertFile = info.CertFile
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config.KeyFile = info.KeyFile
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config.BearerToken = info.BearerToken
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return config
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}
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// makeUserIdentificationFieldsConfig returns a client.Config capable of being merged using mergo for only server identification information
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func makeServerIdentificationConfig(info clientauth.Info) restclient.Config {
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config := restclient.Config{}
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config.CAFile = info.CAFile
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if info.Insecure != nil {
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config.Insecure = *info.Insecure
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}
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return config
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}
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func canIdentifyUser(config restclient.Config) bool {
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return len(config.Username) > 0 ||
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(len(config.CertFile) > 0 || len(config.CertData) > 0) ||
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len(config.BearerToken) > 0 ||
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config.AuthProvider != nil ||
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config.ExecProvider != nil
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}
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// Namespace implements ClientConfig
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func (config *DirectClientConfig) Namespace() (string, bool, error) {
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if config.overrides != nil && config.overrides.Context.Namespace != "" {
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// In the event we have an empty config but we do have a namespace override, we should return
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// the namespace override instead of having config.ConfirmUsable() return an error. This allows
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// things like in-cluster clients to execute `kubectl get pods --namespace=foo` and have the
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// --namespace flag honored instead of being ignored.
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return config.overrides.Context.Namespace, true, nil
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}
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if err := config.ConfirmUsable(); err != nil {
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return "", false, err
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}
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configContext, err := config.getContext()
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if err != nil {
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return "", false, err
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}
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if len(configContext.Namespace) == 0 {
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return "default", false, nil
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}
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return configContext.Namespace, false, nil
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}
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// ConfigAccess implements ClientConfig
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func (config *DirectClientConfig) ConfigAccess() ConfigAccess {
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return config.configAccess
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}
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// ConfirmUsable looks a particular context and determines if that particular part of the config is useable. There might still be errors in the config,
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// but no errors in the sections requested or referenced. It does not return early so that it can find as many errors as possible.
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func (config *DirectClientConfig) ConfirmUsable() error {
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validationErrors := make([]error, 0)
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var contextName string
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if len(config.contextName) != 0 {
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contextName = config.contextName
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} else {
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contextName = config.config.CurrentContext
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}
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if len(contextName) > 0 {
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_, exists := config.config.Contexts[contextName]
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if !exists {
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validationErrors = append(validationErrors, &errContextNotFound{contextName})
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}
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}
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authInfoName, _ := config.getAuthInfoName()
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authInfo, _ := config.getAuthInfo()
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validationErrors = append(validationErrors, validateAuthInfo(authInfoName, authInfo)...)
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clusterName, _ := config.getClusterName()
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cluster, _ := config.getCluster()
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validationErrors = append(validationErrors, validateClusterInfo(clusterName, cluster)...)
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// when direct client config is specified, and our only error is that no server is defined, we should
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// return a standard "no config" error
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if len(validationErrors) == 1 && validationErrors[0] == ErrEmptyCluster {
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return newErrConfigurationInvalid([]error{ErrEmptyConfig})
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}
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return newErrConfigurationInvalid(validationErrors)
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}
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// getContextName returns the default, or user-set context name, and a boolean that indicates
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// whether the default context name has been overwritten by a user-set flag, or left as its default value
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func (config *DirectClientConfig) getContextName() (string, bool) {
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if len(config.overrides.CurrentContext) != 0 {
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return config.overrides.CurrentContext, true
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}
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if len(config.contextName) != 0 {
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return config.contextName, false
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}
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return config.config.CurrentContext, false
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}
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// getAuthInfoName returns a string containing the current authinfo name for the current context,
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// and a boolean indicating whether the default authInfo name is overwritten by a user-set flag, or
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// left as its default value
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func (config *DirectClientConfig) getAuthInfoName() (string, bool) {
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if len(config.overrides.Context.AuthInfo) != 0 {
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return config.overrides.Context.AuthInfo, true
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}
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context, _ := config.getContext()
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return context.AuthInfo, false
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}
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// getClusterName returns a string containing the default, or user-set cluster name, and a boolean
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// indicating whether the default clusterName has been overwritten by a user-set flag, or left as
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// its default value
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func (config *DirectClientConfig) getClusterName() (string, bool) {
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if len(config.overrides.Context.Cluster) != 0 {
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return config.overrides.Context.Cluster, true
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}
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context, _ := config.getContext()
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return context.Cluster, false
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}
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// getContext returns the clientcmdapi.Context, or an error if a required context is not found.
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func (config *DirectClientConfig) getContext() (clientcmdapi.Context, error) {
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contexts := config.config.Contexts
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contextName, required := config.getContextName()
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mergedContext := clientcmdapi.NewContext()
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if configContext, exists := contexts[contextName]; exists {
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mergo.MergeWithOverwrite(mergedContext, configContext)
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} else if required {
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return clientcmdapi.Context{}, fmt.Errorf("context %q does not exist", contextName)
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}
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mergo.MergeWithOverwrite(mergedContext, config.overrides.Context)
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return *mergedContext, nil
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}
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// getAuthInfo returns the clientcmdapi.AuthInfo, or an error if a required auth info is not found.
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func (config *DirectClientConfig) getAuthInfo() (clientcmdapi.AuthInfo, error) {
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authInfos := config.config.AuthInfos
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authInfoName, required := config.getAuthInfoName()
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mergedAuthInfo := clientcmdapi.NewAuthInfo()
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if configAuthInfo, exists := authInfos[authInfoName]; exists {
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mergo.MergeWithOverwrite(mergedAuthInfo, configAuthInfo)
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} else if required {
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return clientcmdapi.AuthInfo{}, fmt.Errorf("auth info %q does not exist", authInfoName)
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}
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mergo.MergeWithOverwrite(mergedAuthInfo, config.overrides.AuthInfo)
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return *mergedAuthInfo, nil
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}
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// getCluster returns the clientcmdapi.Cluster, or an error if a required cluster is not found.
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func (config *DirectClientConfig) getCluster() (clientcmdapi.Cluster, error) {
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clusterInfos := config.config.Clusters
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clusterInfoName, required := config.getClusterName()
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mergedClusterInfo := clientcmdapi.NewCluster()
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mergo.MergeWithOverwrite(mergedClusterInfo, config.overrides.ClusterDefaults)
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if configClusterInfo, exists := clusterInfos[clusterInfoName]; exists {
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mergo.MergeWithOverwrite(mergedClusterInfo, configClusterInfo)
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} else if required {
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return clientcmdapi.Cluster{}, fmt.Errorf("cluster %q does not exist", clusterInfoName)
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}
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mergo.MergeWithOverwrite(mergedClusterInfo, config.overrides.ClusterInfo)
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// An override of --insecure-skip-tls-verify=true and no accompanying CA/CA data should clear already-set CA/CA data
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// otherwise, a kubeconfig containing a CA reference would return an error that "CA and insecure-skip-tls-verify couldn't both be set"
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caLen := len(config.overrides.ClusterInfo.CertificateAuthority)
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caDataLen := len(config.overrides.ClusterInfo.CertificateAuthorityData)
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if config.overrides.ClusterInfo.InsecureSkipTLSVerify && caLen == 0 && caDataLen == 0 {
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mergedClusterInfo.CertificateAuthority = ""
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mergedClusterInfo.CertificateAuthorityData = nil
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}
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return *mergedClusterInfo, nil
|
|
}
|
|
|
|
// inClusterClientConfig makes a config that will work from within a kubernetes cluster container environment.
|
|
// Can take options overrides for flags explicitly provided to the command inside the cluster container.
|
|
type inClusterClientConfig struct {
|
|
overrides *ConfigOverrides
|
|
inClusterConfigProvider func() (*restclient.Config, error)
|
|
}
|
|
|
|
var _ ClientConfig = &inClusterClientConfig{}
|
|
|
|
func (config *inClusterClientConfig) RawConfig() (clientcmdapi.Config, error) {
|
|
return clientcmdapi.Config{}, fmt.Errorf("inCluster environment config doesn't support multiple clusters")
|
|
}
|
|
|
|
func (config *inClusterClientConfig) ClientConfig() (*restclient.Config, error) {
|
|
if config.inClusterConfigProvider == nil {
|
|
config.inClusterConfigProvider = restclient.InClusterConfig
|
|
}
|
|
|
|
icc, err := config.inClusterConfigProvider()
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
// in-cluster configs only takes a host, token, or CA file
|
|
// if any of them were individually provided, overwrite anything else
|
|
if config.overrides != nil {
|
|
if server := config.overrides.ClusterInfo.Server; len(server) > 0 {
|
|
icc.Host = server
|
|
}
|
|
if token := config.overrides.AuthInfo.Token; len(token) > 0 {
|
|
icc.BearerToken = token
|
|
}
|
|
if certificateAuthorityFile := config.overrides.ClusterInfo.CertificateAuthority; len(certificateAuthorityFile) > 0 {
|
|
icc.TLSClientConfig.CAFile = certificateAuthorityFile
|
|
}
|
|
}
|
|
|
|
return icc, err
|
|
}
|
|
|
|
func (config *inClusterClientConfig) Namespace() (string, bool, error) {
|
|
// This way assumes you've set the POD_NAMESPACE environment variable using the downward API.
|
|
// This check has to be done first for backwards compatibility with the way InClusterConfig was originally set up
|
|
if ns := os.Getenv("POD_NAMESPACE"); ns != "" {
|
|
return ns, false, nil
|
|
}
|
|
|
|
// Fall back to the namespace associated with the service account token, if available
|
|
if data, err := ioutil.ReadFile("/var/run/secrets/kubernetes.io/serviceaccount/namespace"); err == nil {
|
|
if ns := strings.TrimSpace(string(data)); len(ns) > 0 {
|
|
return ns, false, nil
|
|
}
|
|
}
|
|
|
|
return "default", false, nil
|
|
}
|
|
|
|
func (config *inClusterClientConfig) ConfigAccess() ConfigAccess {
|
|
return NewDefaultClientConfigLoadingRules()
|
|
}
|
|
|
|
// Possible returns true if loading an inside-kubernetes-cluster is possible.
|
|
func (config *inClusterClientConfig) Possible() bool {
|
|
fi, err := os.Stat("/var/run/secrets/kubernetes.io/serviceaccount/token")
|
|
return os.Getenv("KUBERNETES_SERVICE_HOST") != "" &&
|
|
os.Getenv("KUBERNETES_SERVICE_PORT") != "" &&
|
|
err == nil && !fi.IsDir()
|
|
}
|
|
|
|
// BuildConfigFromFlags is a helper function that builds configs from a master
|
|
// url or a kubeconfig filepath. These are passed in as command line flags for cluster
|
|
// components. Warnings should reflect this usage. If neither masterUrl or kubeconfigPath
|
|
// are passed in we fallback to inClusterConfig. If inClusterConfig fails, we fallback
|
|
// to the default config.
|
|
func BuildConfigFromFlags(masterUrl, kubeconfigPath string) (*restclient.Config, error) {
|
|
if kubeconfigPath == "" && masterUrl == "" {
|
|
klog.Warningf("Neither --kubeconfig nor --master was specified. Using the inClusterConfig. This might not work.")
|
|
kubeconfig, err := restclient.InClusterConfig()
|
|
if err == nil {
|
|
return kubeconfig, nil
|
|
}
|
|
klog.Warning("error creating inClusterConfig, falling back to default config: ", err)
|
|
}
|
|
return NewNonInteractiveDeferredLoadingClientConfig(
|
|
&ClientConfigLoadingRules{ExplicitPath: kubeconfigPath},
|
|
&ConfigOverrides{ClusterInfo: clientcmdapi.Cluster{Server: masterUrl}}).ClientConfig()
|
|
}
|
|
|
|
// BuildConfigFromKubeconfigGetter is a helper function that builds configs from a master
|
|
// url and a kubeconfigGetter.
|
|
func BuildConfigFromKubeconfigGetter(masterUrl string, kubeconfigGetter KubeconfigGetter) (*restclient.Config, error) {
|
|
// TODO: We do not need a DeferredLoader here. Refactor code and see if we can use DirectClientConfig here.
|
|
cc := NewNonInteractiveDeferredLoadingClientConfig(
|
|
&ClientConfigGetter{kubeconfigGetter: kubeconfigGetter},
|
|
&ConfigOverrides{ClusterInfo: clientcmdapi.Cluster{Server: masterUrl}})
|
|
return cc.ClientConfig()
|
|
}
|