156 lines
4.0 KiB
Go
156 lines
4.0 KiB
Go
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package common
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import (
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"crypto/rsa"
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"crypto/x509"
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"encoding/base64"
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"encoding/pem"
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"errors"
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"fmt"
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"log"
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"time"
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"github.com/aws/aws-sdk-go/service/ec2"
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"github.com/mitchellh/multistep"
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"github.com/mitchellh/packer/helper/communicator"
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"github.com/mitchellh/packer/packer"
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)
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// StepGetPassword reads the password from a Windows server and sets it
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// on the WinRM config.
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type StepGetPassword struct {
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Comm *communicator.Config
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Timeout time.Duration
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}
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func (s *StepGetPassword) Run(state multistep.StateBag) multistep.StepAction {
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ui := state.Get("ui").(packer.Ui)
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image := state.Get("source_image").(*ec2.Image)
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// Skip if we're not Windows...
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if *image.Platform != "windows" {
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log.Printf("[INFO] Not Windows, skipping get password...")
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return multistep.ActionContinue
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}
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// If we already have a password, skip it
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if s.Comm.WinRMPassword != "" {
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ui.Say("Skipping waiting for password since WinRM password set...")
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return multistep.ActionContinue
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}
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// Get the password
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var password string
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var err error
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cancel := make(chan struct{})
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waitDone := make(chan bool, 1)
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go func() {
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ui.Say("Waiting for auto-generated password for instance...")
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password, err = s.waitForPassword(state, cancel)
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waitDone <- true
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}()
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timeout := time.After(s.Timeout)
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WaitLoop:
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for {
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// Wait for either SSH to become available, a timeout to occur,
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// or an interrupt to come through.
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select {
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case <-waitDone:
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if err != nil {
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ui.Error(fmt.Sprintf("Error waiting for password: %s", err))
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state.Put("error", err)
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return multistep.ActionHalt
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}
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ui.Message("Password retrieved!")
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s.Comm.WinRMPassword = password
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break WaitLoop
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case <-timeout:
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err := fmt.Errorf("Timeout waiting for password.")
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state.Put("error", err)
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ui.Error(err.Error())
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close(cancel)
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return multistep.ActionHalt
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case <-time.After(1 * time.Second):
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if _, ok := state.GetOk(multistep.StateCancelled); ok {
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// The step sequence was cancelled, so cancel waiting for password
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// and just start the halting process.
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close(cancel)
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log.Println("[WARN] Interrupt detected, quitting waiting for password.")
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return multistep.ActionHalt
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}
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}
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}
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return multistep.ActionContinue
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}
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func (s *StepGetPassword) Cleanup(multistep.StateBag) {}
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func (s *StepGetPassword) waitForPassword(state multistep.StateBag, cancel <-chan struct{}) (string, error) {
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ec2conn := state.Get("ec2").(*ec2.EC2)
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instance := state.Get("instance").(*ec2.Instance)
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privateKey := state.Get("privateKey").(string)
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for {
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select {
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case <-cancel:
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log.Println("[INFO] Retrieve password wait cancelled. Exiting loop.")
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return "", errors.New("Retrieve password wait cancelled")
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case <-time.After(5 * time.Second):
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}
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resp, err := ec2conn.GetPasswordData(&ec2.GetPasswordDataInput{
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InstanceID: instance.InstanceID,
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})
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if err != nil {
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err := fmt.Errorf("Error retrieving auto-generated instance password: %s", err)
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return "", err
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}
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if resp.PasswordData != nil && *resp.PasswordData != "" {
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decryptedPassword, err := decryptPasswordDataWithPrivateKey(
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*resp.PasswordData, []byte(privateKey))
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if err != nil {
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err := fmt.Errorf("Error decrypting auto-generated instance password: %s", err)
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return "", err
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}
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return decryptedPassword, nil
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}
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}
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}
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func decryptPasswordDataWithPrivateKey(passwordData string, pemBytes []byte) (string, error) {
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encryptedPasswd, err := base64.StdEncoding.DecodeString(passwordData)
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if err != nil {
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return "", err
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}
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block, _ := pem.Decode(pemBytes)
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var asn1Bytes []byte
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if _, ok := block.Headers["DEK-Info"]; ok {
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return "", errors.New("encrypted private key isn't yet supported")
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/*
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asn1Bytes, err = x509.DecryptPEMBlock(block, password)
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if err != nil {
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return "", err
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}
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*/
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} else {
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asn1Bytes = block.Bytes
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}
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key, err := x509.ParsePKCS1PrivateKey(asn1Bytes)
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if err != nil {
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return "", err
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}
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out, err := rsa.DecryptPKCS1v15(nil, key, encryptedPasswd)
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if err != nil {
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return "", err
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}
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return string(out), nil
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}
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