712 lines
19 KiB
Go
712 lines
19 KiB
Go
// Copyright (c) HashiCorp, Inc.
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// SPDX-License-Identifier: MPL-2.0
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package command
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import (
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"bytes"
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"flag"
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"fmt"
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"io"
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"io/ioutil"
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"os"
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"regexp"
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"strings"
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"sync"
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"time"
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"github.com/hashicorp/vault/api"
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"github.com/hashicorp/vault/command/token"
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"github.com/hashicorp/vault/helper/namespace"
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"github.com/mattn/go-isatty"
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"github.com/mitchellh/cli"
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"github.com/pkg/errors"
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"github.com/posener/complete"
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)
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const (
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// maxLineLength is the maximum width of any line.
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maxLineLength int = 78
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// notSetValue is a flag value for a not-set value
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notSetValue = "(not set)"
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)
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// reRemoveWhitespace is a regular expression for stripping whitespace from
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// a string.
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var reRemoveWhitespace = regexp.MustCompile(`[\s]+`)
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type BaseCommand struct {
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UI cli.Ui
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flags *FlagSets
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flagsOnce sync.Once
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flagAddress string
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flagAgentProxyAddress string
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flagCACert string
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flagCAPath string
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flagClientCert string
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flagClientKey string
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flagNamespace string
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flagNS string
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flagPolicyOverride bool
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flagTLSServerName string
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flagTLSSkipVerify bool
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flagDisableRedirects bool
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flagWrapTTL time.Duration
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flagUnlockKey string
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flagFormat string
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flagField string
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flagDetailed bool
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flagOutputCurlString bool
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flagOutputPolicy bool
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flagNonInteractive bool
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flagMFA []string
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flagHeader map[string]string
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tokenHelper token.TokenHelper
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client *api.Client
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}
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// Client returns the HTTP API client. The client is cached on the command to
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// save performance on future calls.
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func (c *BaseCommand) Client() (*api.Client, error) {
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// Read the test client if present
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if c.client != nil {
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return c.client, nil
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}
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config := api.DefaultConfig()
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if err := config.ReadEnvironment(); err != nil {
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return nil, errors.Wrap(err, "failed to read environment")
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}
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if c.flagAddress != "" {
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config.Address = c.flagAddress
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}
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if c.flagAgentProxyAddress != "" {
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config.Address = c.flagAgentProxyAddress
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}
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if c.flagOutputCurlString {
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config.OutputCurlString = c.flagOutputCurlString
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}
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if c.flagOutputPolicy {
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config.OutputPolicy = c.flagOutputPolicy
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}
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// If we need custom TLS configuration, then set it
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if c.flagCACert != "" || c.flagCAPath != "" || c.flagClientCert != "" ||
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c.flagClientKey != "" || c.flagTLSServerName != "" || c.flagTLSSkipVerify {
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t := &api.TLSConfig{
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CACert: c.flagCACert,
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CAPath: c.flagCAPath,
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ClientCert: c.flagClientCert,
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ClientKey: c.flagClientKey,
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TLSServerName: c.flagTLSServerName,
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Insecure: c.flagTLSSkipVerify,
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}
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// Setup TLS config
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if err := config.ConfigureTLS(t); err != nil {
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return nil, errors.Wrap(err, "failed to setup TLS config")
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}
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}
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// Build the client
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client, err := api.NewClient(config)
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if err != nil {
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return nil, errors.Wrap(err, "failed to create client")
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}
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// Turn off retries on the CLI
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if os.Getenv(api.EnvVaultMaxRetries) == "" {
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client.SetMaxRetries(0)
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}
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// Set the wrapping function
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client.SetWrappingLookupFunc(c.DefaultWrappingLookupFunc)
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// Get the token if it came in from the environment
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token := client.Token()
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// If we don't have a token, check the token helper
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if token == "" {
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helper, err := c.TokenHelper()
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if err != nil {
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return nil, errors.Wrap(err, "failed to get token helper")
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}
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token, err = helper.Get()
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if err != nil {
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return nil, errors.Wrap(err, "failed to get token from token helper")
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}
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}
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// Set the token
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if token != "" {
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client.SetToken(token)
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}
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client.SetMFACreds(c.flagMFA)
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// flagNS takes precedence over flagNamespace. After resolution, point both
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// flags to the same value to be able to use them interchangeably anywhere.
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if c.flagNS != notSetValue {
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c.flagNamespace = c.flagNS
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}
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if c.flagNamespace != notSetValue {
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client.SetNamespace(namespace.Canonicalize(c.flagNamespace))
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}
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if c.flagPolicyOverride {
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client.SetPolicyOverride(c.flagPolicyOverride)
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}
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if c.flagHeader != nil {
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var forbiddenHeaders []string
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for key, val := range c.flagHeader {
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if strings.HasPrefix(key, "X-Vault-") {
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forbiddenHeaders = append(forbiddenHeaders, key)
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continue
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}
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client.AddHeader(key, val)
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}
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if len(forbiddenHeaders) > 0 {
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return nil, fmt.Errorf("failed to setup Headers[%s]: Header starting by 'X-Vault-' are for internal usage only", strings.Join(forbiddenHeaders, ", "))
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}
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}
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c.client = client
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return client, nil
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}
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// SetAddress sets the token helper on the command; useful for the demo server and other outside cases.
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func (c *BaseCommand) SetAddress(addr string) {
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c.flagAddress = addr
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}
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// SetTokenHelper sets the token helper on the command.
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func (c *BaseCommand) SetTokenHelper(th token.TokenHelper) {
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c.tokenHelper = th
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}
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// TokenHelper returns the token helper attached to the command.
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func (c *BaseCommand) TokenHelper() (token.TokenHelper, error) {
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if c.tokenHelper != nil {
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return c.tokenHelper, nil
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}
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helper, err := DefaultTokenHelper()
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if err != nil {
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return nil, err
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}
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return helper, nil
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}
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// DefaultWrappingLookupFunc is the default wrapping function based on the
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// CLI flag.
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func (c *BaseCommand) DefaultWrappingLookupFunc(operation, path string) string {
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if c.flagWrapTTL != 0 {
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return c.flagWrapTTL.String()
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}
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return api.DefaultWrappingLookupFunc(operation, path)
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}
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// getValidationRequired checks to see if the secret exists and has an MFA
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// requirement. If MFA is required and the number of constraints is greater than
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// 1, we can assert that interactive validation is not required.
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func (c *BaseCommand) getMFAValidationRequired(secret *api.Secret) bool {
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if secret != nil && secret.Auth != nil && secret.Auth.MFARequirement != nil {
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if c.flagMFA == nil && len(secret.Auth.MFARequirement.MFAConstraints) == 1 {
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return true
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} else if len(secret.Auth.MFARequirement.MFAConstraints) > 1 {
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return true
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}
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}
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return false
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}
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// getInteractiveMFAMethodInfo returns MFA method information only if operating
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// in interactive mode and one MFA method is configured.
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func (c *BaseCommand) getInteractiveMFAMethodInfo(secret *api.Secret) *MFAMethodInfo {
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if secret == nil || secret.Auth == nil || secret.Auth.MFARequirement == nil {
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return nil
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}
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mfaConstraints := secret.Auth.MFARequirement.MFAConstraints
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if c.flagNonInteractive || len(mfaConstraints) != 1 || !isatty.IsTerminal(os.Stdin.Fd()) {
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return nil
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}
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for _, mfaConstraint := range mfaConstraints {
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if len(mfaConstraint.Any) != 1 {
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return nil
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}
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return &MFAMethodInfo{
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methodType: mfaConstraint.Any[0].Type,
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methodID: mfaConstraint.Any[0].ID,
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usePasscode: mfaConstraint.Any[0].UsesPasscode,
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}
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}
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return nil
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}
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func (c *BaseCommand) validateMFA(reqID string, methodInfo MFAMethodInfo) (*api.Secret, error) {
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var passcode string
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var err error
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if methodInfo.usePasscode {
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passcode, err = c.UI.AskSecret(fmt.Sprintf("Enter the passphrase for methodID %q of type %q:", methodInfo.methodID, methodInfo.methodType))
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if err != nil {
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return nil, fmt.Errorf("failed to read passphrase: %w. please validate the login by sending a request to sys/mfa/validate", err)
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}
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} else {
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c.UI.Warn("Asking Vault to perform MFA validation with upstream service. " +
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"You should receive a push notification in your authenticator app shortly")
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}
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// passcode could be an empty string
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mfaPayload := map[string]interface{}{
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methodInfo.methodID: []string{passcode},
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}
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client, err := c.Client()
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if err != nil {
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return nil, err
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}
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return client.Sys().MFAValidate(reqID, mfaPayload)
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}
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type FlagSetBit uint
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const (
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FlagSetNone FlagSetBit = 1 << iota
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FlagSetHTTP
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FlagSetOutputField
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FlagSetOutputFormat
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FlagSetOutputDetailed
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)
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// flagSet creates the flags for this command. The result is cached on the
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// command to save performance on future calls.
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func (c *BaseCommand) flagSet(bit FlagSetBit) *FlagSets {
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c.flagsOnce.Do(func() {
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set := NewFlagSets(c.UI)
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// These flag sets will apply to all leaf subcommands.
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// TODO: Optional, but FlagSetHTTP can be safely removed from the individual
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// Flags() subcommands.
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bit = bit | FlagSetHTTP
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if bit&FlagSetHTTP != 0 {
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f := set.NewFlagSet("HTTP Options")
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addrStringVar := &StringVar{
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Name: flagNameAddress,
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Target: &c.flagAddress,
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EnvVar: api.EnvVaultAddress,
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Completion: complete.PredictAnything,
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Usage: "Address of the Vault server.",
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}
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if c.flagAddress != "" {
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addrStringVar.Default = c.flagAddress
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} else {
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addrStringVar.Default = "https://127.0.0.1:8200"
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}
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f.StringVar(addrStringVar)
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agentAddrStringVar := &StringVar{
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Name: "agent-address",
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Target: &c.flagAgentProxyAddress,
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EnvVar: api.EnvVaultAgentAddr,
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Completion: complete.PredictAnything,
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Usage: "Address of the Agent.",
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}
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f.StringVar(agentAddrStringVar)
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f.StringVar(&StringVar{
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Name: flagNameCACert,
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Target: &c.flagCACert,
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Default: "",
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EnvVar: api.EnvVaultCACert,
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Completion: complete.PredictFiles("*"),
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Usage: "Path on the local disk to a single PEM-encoded CA " +
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"certificate to verify the Vault server's SSL certificate. This " +
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"takes precedence over -ca-path.",
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})
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f.StringVar(&StringVar{
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Name: flagNameCAPath,
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Target: &c.flagCAPath,
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Default: "",
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EnvVar: api.EnvVaultCAPath,
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Completion: complete.PredictDirs("*"),
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Usage: "Path on the local disk to a directory of PEM-encoded CA " +
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"certificates to verify the Vault server's SSL certificate.",
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})
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f.StringVar(&StringVar{
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Name: flagNameClientCert,
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Target: &c.flagClientCert,
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Default: "",
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EnvVar: api.EnvVaultClientCert,
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Completion: complete.PredictFiles("*"),
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Usage: "Path on the local disk to a single PEM-encoded CA " +
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"certificate to use for TLS authentication to the Vault server. If " +
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"this flag is specified, -client-key is also required.",
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})
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f.StringVar(&StringVar{
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Name: flagNameClientKey,
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Target: &c.flagClientKey,
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Default: "",
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EnvVar: api.EnvVaultClientKey,
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Completion: complete.PredictFiles("*"),
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Usage: "Path on the local disk to a single PEM-encoded private key " +
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"matching the client certificate from -client-cert.",
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})
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f.StringVar(&StringVar{
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Name: "namespace",
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Target: &c.flagNamespace,
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Default: notSetValue, // this can never be a real value
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EnvVar: api.EnvVaultNamespace,
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Completion: complete.PredictAnything,
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Usage: "The namespace to use for the command. Setting this is not " +
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"necessary but allows using relative paths. -ns can be used as " +
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"shortcut.",
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})
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f.StringVar(&StringVar{
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Name: "ns",
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Target: &c.flagNS,
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Default: notSetValue, // this can never be a real value
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Completion: complete.PredictAnything,
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Hidden: true,
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Usage: "Alias for -namespace. This takes precedence over -namespace.",
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})
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f.StringVar(&StringVar{
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Name: flagTLSServerName,
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Target: &c.flagTLSServerName,
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Default: "",
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EnvVar: api.EnvVaultTLSServerName,
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Completion: complete.PredictAnything,
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Usage: "Name to use as the SNI host when connecting to the Vault " +
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"server via TLS.",
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})
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f.BoolVar(&BoolVar{
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Name: flagNameTLSSkipVerify,
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Target: &c.flagTLSSkipVerify,
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Default: false,
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EnvVar: api.EnvVaultSkipVerify,
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Usage: "Disable verification of TLS certificates. Using this option " +
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"is highly discouraged as it decreases the security of data " +
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"transmissions to and from the Vault server.",
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})
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f.BoolVar(&BoolVar{
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Name: flagNameDisableRedirects,
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Target: &c.flagDisableRedirects,
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Default: false,
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EnvVar: api.EnvVaultDisableRedirects,
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Usage: "Disable the default client behavior, which honors a single " +
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"redirect response from a request",
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})
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f.BoolVar(&BoolVar{
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Name: "policy-override",
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Target: &c.flagPolicyOverride,
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Default: false,
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Usage: "Override a Sentinel policy that has a soft-mandatory " +
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"enforcement_level specified",
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})
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f.DurationVar(&DurationVar{
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Name: "wrap-ttl",
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Target: &c.flagWrapTTL,
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Default: 0,
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EnvVar: api.EnvVaultWrapTTL,
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Completion: complete.PredictAnything,
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Usage: "Wraps the response in a cubbyhole token with the requested " +
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"TTL. The response is available via the \"vault unwrap\" command. " +
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"The TTL is specified as a numeric string with suffix like \"30s\" " +
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"or \"5m\".",
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})
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f.StringSliceVar(&StringSliceVar{
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Name: "mfa",
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Target: &c.flagMFA,
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Default: nil,
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EnvVar: api.EnvVaultMFA,
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Completion: complete.PredictAnything,
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Usage: "Supply MFA credentials as part of X-Vault-MFA header.",
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})
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f.BoolVar(&BoolVar{
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Name: "output-curl-string",
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Target: &c.flagOutputCurlString,
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Default: false,
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Usage: "Instead of executing the request, print an equivalent cURL " +
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"command string and exit.",
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})
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f.BoolVar(&BoolVar{
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Name: "output-policy",
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Target: &c.flagOutputPolicy,
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Default: false,
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Usage: "Instead of executing the request, print an example HCL " +
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"policy that would be required to run this command, and exit.",
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})
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f.StringVar(&StringVar{
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Name: "unlock-key",
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Target: &c.flagUnlockKey,
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Default: notSetValue,
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Completion: complete.PredictNothing,
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Usage: "Key to unlock a namespace API lock.",
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})
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f.StringMapVar(&StringMapVar{
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Name: "header",
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Target: &c.flagHeader,
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Completion: complete.PredictAnything,
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Usage: "Key-value pair provided as key=value to provide http header added to any request done by the CLI." +
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"Trying to add headers starting with 'X-Vault-' is forbidden and will make the command fail " +
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"This can be specified multiple times.",
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})
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f.BoolVar(&BoolVar{
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Name: "non-interactive",
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Target: &c.flagNonInteractive,
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Default: false,
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Usage: "When set true, prevents asking the user for input via the terminal.",
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})
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}
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if bit&(FlagSetOutputField|FlagSetOutputFormat|FlagSetOutputDetailed) != 0 {
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outputSet := set.NewFlagSet("Output Options")
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if bit&FlagSetOutputField != 0 {
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outputSet.StringVar(&StringVar{
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Name: "field",
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Target: &c.flagField,
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Default: "",
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Completion: complete.PredictAnything,
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Usage: "Print only the field with the given name. Specifying " +
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"this option will take precedence over other formatting " +
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"directives. The result will not have a trailing newline " +
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"making it ideal for piping to other processes.",
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})
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}
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if bit&FlagSetOutputFormat != 0 {
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outputSet.StringVar(&StringVar{
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Name: "format",
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Target: &c.flagFormat,
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Default: "table",
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EnvVar: EnvVaultFormat,
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Completion: complete.PredictSet("table", "json", "yaml", "pretty", "raw"),
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Usage: `Print the output in the given format. Valid formats
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are "table", "json", "yaml", or "pretty". "raw" is allowed
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for 'vault read' operations only.`,
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})
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}
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if bit&FlagSetOutputDetailed != 0 {
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outputSet.BoolVar(&BoolVar{
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Name: "detailed",
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Target: &c.flagDetailed,
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Default: false,
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EnvVar: EnvVaultDetailed,
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Usage: "Enables additional metadata during some operations",
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})
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}
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}
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c.flags = set
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})
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return c.flags
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}
|
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|
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// FlagSets is a group of flag sets.
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type FlagSets struct {
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flagSets []*FlagSet
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|
mainSet *flag.FlagSet
|
|
hiddens map[string]struct{}
|
|
completions complete.Flags
|
|
ui cli.Ui
|
|
}
|
|
|
|
// NewFlagSets creates a new flag sets.
|
|
func NewFlagSets(ui cli.Ui) *FlagSets {
|
|
mainSet := flag.NewFlagSet("", flag.ContinueOnError)
|
|
|
|
// Errors and usage are controlled by the CLI.
|
|
mainSet.Usage = func() {}
|
|
mainSet.SetOutput(ioutil.Discard)
|
|
|
|
return &FlagSets{
|
|
flagSets: make([]*FlagSet, 0, 6),
|
|
mainSet: mainSet,
|
|
hiddens: make(map[string]struct{}),
|
|
completions: complete.Flags{},
|
|
ui: ui,
|
|
}
|
|
}
|
|
|
|
// NewFlagSet creates a new flag set from the given flag sets.
|
|
func (f *FlagSets) NewFlagSet(name string) *FlagSet {
|
|
flagSet := NewFlagSet(name)
|
|
flagSet.mainSet = f.mainSet
|
|
flagSet.completions = f.completions
|
|
f.flagSets = append(f.flagSets, flagSet)
|
|
return flagSet
|
|
}
|
|
|
|
// Completions returns the completions for this flag set.
|
|
func (f *FlagSets) Completions() complete.Flags {
|
|
return f.completions
|
|
}
|
|
|
|
type (
|
|
ParseOptions interface{}
|
|
ParseOptionAllowRawFormat bool
|
|
DisableDisplayFlagWarning bool
|
|
)
|
|
|
|
// Parse parses the given flags, returning any errors.
|
|
// Warnings, if any, regarding the arguments format are sent to stdout
|
|
func (f *FlagSets) Parse(args []string, opts ...ParseOptions) error {
|
|
err := f.mainSet.Parse(args)
|
|
|
|
displayFlagWarningsDisabled := false
|
|
for _, opt := range opts {
|
|
if value, ok := opt.(DisableDisplayFlagWarning); ok {
|
|
displayFlagWarningsDisabled = bool(value)
|
|
}
|
|
}
|
|
if !displayFlagWarningsDisabled {
|
|
warnings := generateFlagWarnings(f.Args())
|
|
if warnings != "" && Format(f.ui) == "table" {
|
|
f.ui.Warn(warnings)
|
|
}
|
|
}
|
|
|
|
if err != nil {
|
|
return err
|
|
}
|
|
|
|
// Now surface any other errors.
|
|
return generateFlagErrors(f, opts...)
|
|
}
|
|
|
|
// Parsed reports whether the command-line flags have been parsed.
|
|
func (f *FlagSets) Parsed() bool {
|
|
return f.mainSet.Parsed()
|
|
}
|
|
|
|
// Args returns the remaining args after parsing.
|
|
func (f *FlagSets) Args() []string {
|
|
return f.mainSet.Args()
|
|
}
|
|
|
|
// Visit visits the flags in lexicographical order, calling fn for each. It
|
|
// visits only those flags that have been set.
|
|
func (f *FlagSets) Visit(fn func(*flag.Flag)) {
|
|
f.mainSet.Visit(fn)
|
|
}
|
|
|
|
// Help builds custom help for this command, grouping by flag set.
|
|
func (f *FlagSets) Help() string {
|
|
var out bytes.Buffer
|
|
|
|
for _, set := range f.flagSets {
|
|
printFlagTitle(&out, set.name+":")
|
|
set.VisitAll(func(f *flag.Flag) {
|
|
// Skip any hidden flags
|
|
if v, ok := f.Value.(FlagVisibility); ok && v.Hidden() {
|
|
return
|
|
}
|
|
printFlagDetail(&out, f)
|
|
})
|
|
}
|
|
|
|
return strings.TrimRight(out.String(), "\n")
|
|
}
|
|
|
|
// FlagSet is a grouped wrapper around a real flag set and a grouped flag set.
|
|
type FlagSet struct {
|
|
name string
|
|
flagSet *flag.FlagSet
|
|
mainSet *flag.FlagSet
|
|
completions complete.Flags
|
|
}
|
|
|
|
// NewFlagSet creates a new flag set.
|
|
func NewFlagSet(name string) *FlagSet {
|
|
return &FlagSet{
|
|
name: name,
|
|
flagSet: flag.NewFlagSet(name, flag.ContinueOnError),
|
|
}
|
|
}
|
|
|
|
// Name returns the name of this flag set.
|
|
func (f *FlagSet) Name() string {
|
|
return f.name
|
|
}
|
|
|
|
func (f *FlagSet) Visit(fn func(*flag.Flag)) {
|
|
f.flagSet.Visit(fn)
|
|
}
|
|
|
|
func (f *FlagSet) VisitAll(fn func(*flag.Flag)) {
|
|
f.flagSet.VisitAll(fn)
|
|
}
|
|
|
|
// printFlagTitle prints a consistently-formatted title to the given writer.
|
|
func printFlagTitle(w io.Writer, s string) {
|
|
fmt.Fprintf(w, "%s\n\n", s)
|
|
}
|
|
|
|
// printFlagDetail prints a single flag to the given writer.
|
|
func printFlagDetail(w io.Writer, f *flag.Flag) {
|
|
// Check if the flag is hidden - do not print any flag detail or help output
|
|
// if it is hidden.
|
|
if h, ok := f.Value.(FlagVisibility); ok && h.Hidden() {
|
|
return
|
|
}
|
|
|
|
// Check for a detailed example
|
|
example := ""
|
|
if t, ok := f.Value.(FlagExample); ok {
|
|
example = t.Example()
|
|
}
|
|
|
|
if example != "" {
|
|
fmt.Fprintf(w, " -%s=<%s>\n", f.Name, example)
|
|
} else {
|
|
fmt.Fprintf(w, " -%s\n", f.Name)
|
|
}
|
|
|
|
usage := reRemoveWhitespace.ReplaceAllString(f.Usage, " ")
|
|
indented := wrapAtLengthWithPadding(usage, 6)
|
|
fmt.Fprintf(w, "%s\n\n", indented)
|
|
}
|