2016-01-09 02:21:02 +00:00
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package command
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import (
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"crypto/rand"
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"encoding/base64"
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"fmt"
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"os"
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"strings"
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"github.com/hashicorp/go-uuid"
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"github.com/hashicorp/vault/api"
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"github.com/hashicorp/vault/helper/password"
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"github.com/hashicorp/vault/helper/pgpkeys"
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"github.com/hashicorp/vault/helper/xor"
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)
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// GenerateRootCommand is a Command that generates a new root token.
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type GenerateRootCommand struct {
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Meta
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// Key can be used to pre-seed the key. If it is set, it will not
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// be asked with the `password` helper.
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Key string
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// The nonce for the rekey request to send along
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Nonce string
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}
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func (c *GenerateRootCommand) Run(args []string) int {
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var init, cancel, status, genotp bool
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var nonce, decode, otp, pgpKey string
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var pgpKeyArr pgpkeys.PubKeyFilesFlag
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flags := c.Meta.FlagSet("generate-root", FlagSetDefault)
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flags.BoolVar(&init, "init", false, "")
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flags.BoolVar(&cancel, "cancel", false, "")
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flags.BoolVar(&status, "status", false, "")
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flags.BoolVar(&genotp, "genotp", false, "")
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flags.StringVar(&decode, "decode", "", "")
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flags.StringVar(&otp, "otp", "", "")
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flags.StringVar(&nonce, "nonce", "", "")
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flags.Var(&pgpKeyArr, "pgp-key", "")
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flags.Usage = func() { c.Ui.Error(c.Help()) }
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if err := flags.Parse(args); err != nil {
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return 1
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}
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if genotp {
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buf := make([]byte, 16)
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readLen, err := rand.Read(buf)
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if err != nil {
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c.Ui.Error(fmt.Sprintf("Error reading random bytes: %s", err))
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return 1
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}
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if readLen != 16 {
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c.Ui.Error(fmt.Sprintf("Read %d bytes when we should have read 16", readLen))
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return 1
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}
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c.Ui.Output(fmt.Sprintf("OTP: %s", base64.StdEncoding.EncodeToString(buf)))
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return 0
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}
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if len(decode) > 0 {
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if len(otp) == 0 {
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c.Ui.Error("Both the value to decode and the OTP must be passed in")
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return 1
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}
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return c.decode(decode, otp)
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}
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client, err := c.Client()
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if err != nil {
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c.Ui.Error(fmt.Sprintf(
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"Error initializing client: %s", err))
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return 2
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}
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// Check if the root generation is started
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2016-01-15 15:55:35 +00:00
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rootGenerationStatus, err := client.Sys().GenerateRootStatus()
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2016-01-09 02:21:02 +00:00
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if err != nil {
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c.Ui.Error(fmt.Sprintf("Error reading root generation status: %s", err))
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return 1
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}
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// If we are initing, or if we are not started but are not running a
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// special function, check otp and pgpkey
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2016-01-15 15:41:29 +00:00
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checkOtpPgp := false
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switch {
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case init:
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checkOtpPgp = true
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case cancel:
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case status:
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case genotp:
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case len(decode) != 0:
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case rootGenerationStatus.Started:
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default:
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checkOtpPgp = true
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}
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if checkOtpPgp {
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2016-01-09 02:21:02 +00:00
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switch {
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case len(otp) == 0 && (pgpKeyArr == nil || len(pgpKeyArr) == 0):
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2016-01-15 15:41:29 +00:00
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c.Ui.Error(c.Help())
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2016-01-09 02:21:02 +00:00
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return 1
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case len(otp) != 0 && pgpKeyArr != nil && len(pgpKeyArr) != 0:
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2016-01-15 15:41:29 +00:00
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c.Ui.Error(c.Help())
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2016-01-09 02:21:02 +00:00
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return 1
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case len(otp) != 0:
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err := c.verifyOTP(otp)
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if err != nil {
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c.Ui.Error(fmt.Sprintf("Error verifying the provided OTP: %s", err))
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return 1
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}
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case pgpKeyArr != nil:
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if len(pgpKeyArr) != 1 {
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c.Ui.Error("Could not parse PGP key")
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return 1
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}
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if len(pgpKeyArr[0]) == 0 {
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c.Ui.Error("Got an empty PGP key")
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return 1
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}
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pgpKey = pgpKeyArr[0]
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default:
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panic("unreachable case")
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}
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}
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if nonce != "" {
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c.Nonce = nonce
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}
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// Check if we are running doing any restricted variants
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switch {
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case init:
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2016-01-15 15:55:35 +00:00
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return c.initGenerateRoot(client, otp, pgpKey)
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2016-01-09 02:21:02 +00:00
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case cancel:
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2016-01-15 15:55:35 +00:00
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return c.cancelGenerateRoot(client)
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2016-01-09 02:21:02 +00:00
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case status:
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return c.rootGenerationStatus(client)
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}
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// Start the root generation process if not started
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if !rootGenerationStatus.Started {
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2016-02-12 19:24:36 +00:00
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rootGenerationStatus, err = client.Sys().GenerateRootInit(otp, pgpKey)
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2016-01-09 02:21:02 +00:00
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if err != nil {
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c.Ui.Error(fmt.Sprintf("Error initializing root generation: %s", err))
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return 1
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}
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c.Nonce = rootGenerationStatus.Nonce
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}
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serverNonce := rootGenerationStatus.Nonce
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// Get the unseal key
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args = flags.Args()
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key := c.Key
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if len(args) > 0 {
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key = args[0]
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}
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if key == "" {
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c.Nonce = serverNonce
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fmt.Printf("Root generation operation nonce: %s\n", serverNonce)
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fmt.Printf("Key (will be hidden): ")
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key, err = password.Read(os.Stdin)
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fmt.Printf("\n")
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if err != nil {
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c.Ui.Error(fmt.Sprintf(
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"Error attempting to ask for password. The raw error message\n"+
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"is shown below, but the most common reason for this error is\n"+
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"that you attempted to pipe a value into unseal or you're\n"+
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"executing `vault generate-root` from outside of a terminal.\n\n"+
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"You should use `vault generate-root` from a terminal for maximum\n"+
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"security. If this isn't an option, the unseal key can be passed\n"+
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"in using the first parameter.\n\n"+
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"Raw error: %s", err))
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return 1
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}
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}
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// Provide the key, this may potentially complete the update
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2016-01-15 15:55:35 +00:00
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statusResp, err := client.Sys().GenerateRootUpdate(strings.TrimSpace(key), c.Nonce)
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2016-01-09 02:21:02 +00:00
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if err != nil {
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c.Ui.Error(fmt.Sprintf("Error attempting generate-root update: %s", err))
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return 1
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}
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c.dumpStatus(statusResp)
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return 0
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}
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func (c *GenerateRootCommand) verifyOTP(otp string) error {
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if len(otp) == 0 {
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return fmt.Errorf("No OTP passed in")
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}
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otpBytes, err := base64.StdEncoding.DecodeString(otp)
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if err != nil {
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return fmt.Errorf("Error decoding base64 OTP value: %s", err)
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}
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if otpBytes == nil || len(otpBytes) != 16 {
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return fmt.Errorf("Decoded OTP value is invalid or wrong length")
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}
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return nil
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}
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func (c *GenerateRootCommand) decode(encodedVal, otp string) int {
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tokenBytes, err := xor.XORBase64(encodedVal, otp)
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if err != nil {
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c.Ui.Error(err.Error())
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return 1
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}
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token, err := uuid.FormatUUID(tokenBytes)
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if err != nil {
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c.Ui.Error(fmt.Sprintf("Error formatting base64 token value: %v", err))
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return 1
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}
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c.Ui.Output(fmt.Sprintf("Root token: %s", token))
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return 0
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}
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2016-01-15 15:55:35 +00:00
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// initGenerateRoot is used to start the generation process
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func (c *GenerateRootCommand) initGenerateRoot(client *api.Client, otp string, pgpKey string) int {
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2016-01-09 02:21:02 +00:00
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// Start the rekey
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2016-02-12 19:24:36 +00:00
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status, err := client.Sys().GenerateRootInit(otp, pgpKey)
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2016-01-09 02:21:02 +00:00
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if err != nil {
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c.Ui.Error(fmt.Sprintf("Error initializing root generation: %s", err))
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return 1
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}
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2016-02-12 19:24:36 +00:00
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c.dumpStatus(status)
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return 0
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2016-01-09 02:21:02 +00:00
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}
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2016-01-15 15:55:35 +00:00
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// cancelGenerateRoot is used to abort the generation process
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func (c *GenerateRootCommand) cancelGenerateRoot(client *api.Client) int {
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err := client.Sys().GenerateRootCancel()
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2016-01-09 02:21:02 +00:00
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if err != nil {
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c.Ui.Error(fmt.Sprintf("Failed to cancel root generation: %s", err))
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return 1
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}
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c.Ui.Output("Root generation canceled.")
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return 0
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}
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// rootGenerationStatus is used just to fetch and dump the status
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func (c *GenerateRootCommand) rootGenerationStatus(client *api.Client) int {
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// Check the status
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2016-01-15 15:55:35 +00:00
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status, err := client.Sys().GenerateRootStatus()
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2016-01-09 02:21:02 +00:00
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if err != nil {
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c.Ui.Error(fmt.Sprintf("Error reading root generation status: %s", err))
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return 1
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}
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c.dumpStatus(status)
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return 0
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}
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// dumpStatus dumps the status to output
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2016-01-15 15:55:35 +00:00
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func (c *GenerateRootCommand) dumpStatus(status *api.GenerateRootStatusResponse) {
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2016-01-09 02:21:02 +00:00
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// Dump the status
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statString := fmt.Sprintf(
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"Nonce: %s\n"+
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"Started: %v\n"+
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"Rekey Progress: %d\n"+
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"Required Keys: %d\n"+
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"Complete: %t",
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status.Nonce,
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status.Started,
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status.Progress,
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status.Required,
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status.Complete,
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)
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if len(status.PGPFingerprint) > 0 {
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statString = fmt.Sprintf("%s\nPGP Fingerprint: %s", statString, status.PGPFingerprint)
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}
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if len(status.EncodedRootToken) > 0 {
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statString = fmt.Sprintf("%s\n\nEncoded root token: %s", statString, status.EncodedRootToken)
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}
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c.Ui.Output(statString)
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}
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func (c *GenerateRootCommand) Synopsis() string {
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return "Promotes a token to a root token"
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}
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func (c *GenerateRootCommand) Help() string {
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helpText := `
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Usage: vault generate-root [options] [key]
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'generate-root' is used to create a new root token.
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Root generation can only be done when the Vault is already unsealed. The
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operation is done online, but requires that a threshold of the current unseal
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keys be provided.
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One (and only one) of the following must be provided at attempt
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initialization time:
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1) A 16-byte, base64-encoded One Time Password (OTP) provided in the '-otp'
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flag; the token is XOR'd with this value before it is returned once the final
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unseal key has been provided. The '-decode' operation can be used with this
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value and the OTP to output the final token value. The '-genotp' flag can be
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used to generate a suitable value.
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or
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2) A file containing a PGP key (binary or base64-encoded) or a Keybase.io
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username in the format of "keybase:<username>" in the '-pgp-key' flag. The
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final token value will be encrypted with this public key and base64-encoded.
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General Options:
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` + generalOptionsUsage() + `
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Rekey Options:
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-init Initialize the root generation attempt. This can only
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be done if no generation is already initiated.
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-cancel Reset the root generation process by throwing away
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prior unseal keys and the configuration.
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-status Prints the status of the current attempt. This can be
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used to see the status without attempting to provide
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an unseal key.
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-decode=abcd Decodes and outputs the generated root token. The OTP
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used at '-init' time must be provided in the '-otp'
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parameter.
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-genotp Returns a high-quality OTP suitable for passing into
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the '-init' method.
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-otp=abcd The base64-encoded 16-byte OTP for use with the
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'-init' or '-decode' methods.
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-pgp-key A file on disk containing a binary- or base64-format
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public PGP key, or a Keybase username specified as
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"keybase:<username>". The output root token will be
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encrypted and base64-encoded, in order, with the given
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public key.
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-nonce=abcd The nonce provided at initialization time. This same
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nonce value must be provided with each unseal key. If
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the unseal key is not being passed in via the command
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line the nonce parameter is not required, and will
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instead be displayed with the key prompt.
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`
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return strings.TrimSpace(helpText)
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}
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