488 lines
14 KiB
Go
488 lines
14 KiB
Go
//go:generate mapstructure-to-hcl2 -type Config
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// This package implements a provisioner for Packer that executes powershell
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// scripts within the remote machine.
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package powershell
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import (
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"bufio"
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"context"
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"errors"
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"fmt"
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"log"
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"os"
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"path/filepath"
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"sort"
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"strings"
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"time"
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"github.com/hashicorp/packer/common"
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"github.com/hashicorp/packer/common/retry"
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"github.com/hashicorp/packer/common/shell"
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"github.com/hashicorp/packer/common/uuid"
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commonhelper "github.com/hashicorp/packer/helper/common"
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"github.com/hashicorp/packer/helper/config"
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"github.com/hashicorp/packer/packer"
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"github.com/hashicorp/packer/packer/tmp"
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"github.com/hashicorp/packer/provisioner"
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"github.com/hashicorp/packer/template/interpolate"
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)
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var retryableSleep = 2 * time.Second
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var psEscape = strings.NewReplacer(
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"$", "`$",
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"\"", "`\"",
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"`", "``",
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"'", "`'",
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)
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type Config struct {
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shell.Provisioner `mapstructure:",squash"`
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// The remote path where the file containing the environment variables
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// will be uploaded to. This should be set to a writable file that is in a
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// pre-existing directory.
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RemoteEnvVarPath string `mapstructure:"remote_env_var_path"`
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// The command used to execute the elevated script. The '{{ .Path }}'
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// variable should be used to specify where the script goes, {{ .Vars }}
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// can be used to inject the environment_vars into the environment.
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ElevatedExecuteCommand string `mapstructure:"elevated_execute_command"`
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// The timeout for retrying to start the process. Until this timeout is
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// reached, if the provisioner can't start a process, it retries. This
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// can be set high to allow for reboots.
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StartRetryTimeout time.Duration `mapstructure:"start_retry_timeout"`
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// This is used in the template generation to format environment variables
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// inside the `ExecuteCommand` template.
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EnvVarFormat string
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// This is used in the template generation to format environment variables
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// inside the `ElevatedExecuteCommand` template.
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ElevatedEnvVarFormat string `mapstructure:"elevated_env_var_format"`
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// Instructs the communicator to run the remote script as a Windows
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// scheduled task, effectively elevating the remote user by impersonating
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// a logged-in user
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ElevatedUser string `mapstructure:"elevated_user"`
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ElevatedPassword string `mapstructure:"elevated_password"`
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ExecutionPolicy ExecutionPolicy `mapstructure:"execution_policy"`
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ctx interpolate.Context
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}
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type Provisioner struct {
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config Config
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communicator packer.Communicator
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}
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type ExecuteCommandTemplate struct {
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Vars string
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Path string
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WinRMPassword string
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}
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type EnvVarsTemplate struct {
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WinRMPassword string
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}
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func (p *Provisioner) defaultExecuteCommand() string {
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baseCmd := `& { if (Test-Path variable:global:ProgressPreference)` +
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`{set-variable -name variable:global:ProgressPreference -value 'SilentlyContinue'};` +
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`. {{.Vars}}; &'{{.Path}}'; exit $LastExitCode }`
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if p.config.ExecutionPolicy == ExecutionPolicyNone {
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return baseCmd
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} else {
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return fmt.Sprintf(`powershell -executionpolicy %s "%s"`, p.config.ExecutionPolicy, baseCmd)
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}
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}
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func (p *Provisioner) Prepare(raws ...interface{}) error {
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// Create passthrough for winrm password so we can fill it in once we know
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// it
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p.config.ctx.Data = &EnvVarsTemplate{
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WinRMPassword: `{{.WinRMPassword}}`,
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}
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err := config.Decode(&p.config, &config.DecodeOpts{
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Interpolate: true,
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InterpolateContext: &p.config.ctx,
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InterpolateFilter: &interpolate.RenderFilter{
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Exclude: []string{
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"execute_command",
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"elevated_execute_command",
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},
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},
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DecodeHooks: append(config.DefaultDecodeHookFuncs, StringToExecutionPolicyHook),
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}, raws...)
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if err != nil {
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return err
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}
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if p.config.EnvVarFormat == "" {
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p.config.EnvVarFormat = `$env:%s="%s"; `
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}
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if p.config.ElevatedEnvVarFormat == "" {
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p.config.ElevatedEnvVarFormat = `$env:%s="%s"; `
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}
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if p.config.ExecuteCommand == "" {
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p.config.ExecuteCommand = p.defaultExecuteCommand()
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}
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if p.config.ElevatedExecuteCommand == "" {
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p.config.ElevatedExecuteCommand = p.defaultExecuteCommand()
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}
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if p.config.Inline != nil && len(p.config.Inline) == 0 {
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p.config.Inline = nil
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}
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if p.config.StartRetryTimeout == 0 {
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p.config.StartRetryTimeout = 5 * time.Minute
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}
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if p.config.RemotePath == "" {
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uuid := uuid.TimeOrderedUUID()
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p.config.RemotePath = fmt.Sprintf(`c:/Windows/Temp/script-%s.ps1`, uuid)
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}
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if p.config.RemoteEnvVarPath == "" {
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uuid := uuid.TimeOrderedUUID()
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p.config.RemoteEnvVarPath = fmt.Sprintf(`c:/Windows/Temp/packer-ps-env-vars-%s.ps1`, uuid)
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}
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if p.config.Scripts == nil {
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p.config.Scripts = make([]string, 0)
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}
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if p.config.Vars == nil {
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p.config.Vars = make([]string, 0)
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}
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var errs error
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if p.config.Script != "" && len(p.config.Scripts) > 0 {
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errs = packer.MultiErrorAppend(errs,
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errors.New("Only one of script or scripts can be specified."))
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}
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if p.config.ElevatedUser == "" && p.config.ElevatedPassword != "" {
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errs = packer.MultiErrorAppend(errs,
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errors.New("Must supply an 'elevated_user' if 'elevated_password' provided"))
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}
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if p.config.Script != "" {
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p.config.Scripts = []string{p.config.Script}
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}
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if len(p.config.Scripts) == 0 && p.config.Inline == nil {
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errs = packer.MultiErrorAppend(errs,
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errors.New("Either a script file or inline script must be specified."))
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} else if len(p.config.Scripts) > 0 && p.config.Inline != nil {
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errs = packer.MultiErrorAppend(errs,
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errors.New("Only a script file or an inline script can be specified, not both."))
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}
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for _, path := range p.config.Scripts {
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if _, err := os.Stat(path); err != nil {
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errs = packer.MultiErrorAppend(errs,
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fmt.Errorf("Bad script '%s': %s", path, err))
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}
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}
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// Do a check for bad environment variables, such as '=foo', 'foobar'
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for _, kv := range p.config.Vars {
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vs := strings.SplitN(kv, "=", 2)
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if len(vs) != 2 || vs[0] == "" {
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errs = packer.MultiErrorAppend(errs,
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fmt.Errorf("Environment variable not in format 'key=value': %s", kv))
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}
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}
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if errs != nil {
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return errs
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}
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return nil
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}
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// Takes the inline scripts, concatenates them into a temporary file and
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// returns a string containing the location of said file.
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func extractScript(p *Provisioner) (string, error) {
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temp, err := tmp.File("powershell-provisioner")
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if err != nil {
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return "", err
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}
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defer temp.Close()
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writer := bufio.NewWriter(temp)
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for _, command := range p.config.Inline {
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log.Printf("Found command: %s", command)
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if _, err := writer.WriteString(command + "\n"); err != nil {
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return "", fmt.Errorf("Error preparing powershell script: %s", err)
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}
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}
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if err := writer.Flush(); err != nil {
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return "", fmt.Errorf("Error preparing powershell script: %s", err)
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}
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return temp.Name(), nil
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}
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func (p *Provisioner) Provision(ctx context.Context, ui packer.Ui, comm packer.Communicator) error {
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ui.Say(fmt.Sprintf("Provisioning with Powershell..."))
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p.communicator = comm
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scripts := make([]string, len(p.config.Scripts))
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copy(scripts, p.config.Scripts)
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if p.config.Inline != nil {
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temp, err := extractScript(p)
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if err != nil {
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ui.Error(fmt.Sprintf("Unable to extract inline scripts into a file: %s", err))
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}
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scripts = append(scripts, temp)
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// Remove temp script containing the inline commands when done
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defer os.Remove(temp)
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}
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for _, path := range scripts {
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ui.Say(fmt.Sprintf("Provisioning with powershell script: %s", path))
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log.Printf("Opening %s for reading", path)
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fi, err := os.Stat(path)
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if err != nil {
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return fmt.Errorf("Error stating powershell script: %s", err)
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}
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if strings.HasSuffix(p.config.RemotePath, `\`) {
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// path is a directory
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p.config.RemotePath += filepath.Base((fi).Name())
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}
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f, err := os.Open(path)
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if err != nil {
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return fmt.Errorf("Error opening powershell script: %s", err)
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}
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defer f.Close()
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command, err := p.createCommandText()
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if err != nil {
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return fmt.Errorf("Error processing command: %s", err)
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}
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// Upload the file and run the command. Do this in the context of a
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// single retryable function so that we don't end up with the case
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// that the upload succeeded, a restart is initiated, and then the
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// command is executed but the file doesn't exist any longer.
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var cmd *packer.RemoteCmd
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err = retry.Config{StartTimeout: p.config.StartRetryTimeout}.Run(ctx, func(ctx context.Context) error {
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if _, err := f.Seek(0, 0); err != nil {
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return err
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}
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if err := comm.Upload(p.config.RemotePath, f, &fi); err != nil {
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return fmt.Errorf("Error uploading script: %s", err)
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}
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cmd = &packer.RemoteCmd{Command: command}
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return cmd.RunWithUi(ctx, comm, ui)
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})
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if err != nil {
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return err
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}
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// Close the original file since we copied it
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f.Close()
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log.Printf("%s returned with exit code %d", p.config.RemotePath, cmd.ExitStatus())
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if err := p.config.ValidExitCode(cmd.ExitStatus()); err != nil {
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return err
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}
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}
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return nil
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}
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// Environment variables required within the remote environment are uploaded
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// within a PS script and then enabled by 'dot sourcing' the script
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// immediately prior to execution of the main command
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func (p *Provisioner) prepareEnvVars(elevated bool) (err error) {
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// Collate all required env vars into a plain string with required
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// formatting applied
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flattenedEnvVars := p.createFlattenedEnvVars(elevated)
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// Create a powershell script on the target build fs containing the
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// flattened env vars
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err = p.uploadEnvVars(flattenedEnvVars)
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if err != nil {
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return err
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}
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return
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}
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func (p *Provisioner) createFlattenedEnvVars(elevated bool) (flattened string) {
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flattened = ""
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envVars := make(map[string]string)
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// Always available Packer provided env vars
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envVars["PACKER_BUILD_NAME"] = p.config.PackerBuildName
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envVars["PACKER_BUILDER_TYPE"] = p.config.PackerBuilderType
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// expose ip address variables
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httpAddr := common.GetHTTPAddr()
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if httpAddr != "" {
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envVars["PACKER_HTTP_ADDR"] = httpAddr
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}
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httpIP := common.GetHTTPIP()
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if httpIP != "" {
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envVars["PACKER_HTTP_IP"] = httpIP
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}
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httpPort := common.GetHTTPPort()
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if httpPort != "" {
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envVars["PACKER_HTTP_PORT"] = httpPort
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}
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// interpolate environment variables
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p.config.ctx.Data = &EnvVarsTemplate{
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WinRMPassword: getWinRMPassword(p.config.PackerBuildName),
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}
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// Split vars into key/value components
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for _, envVar := range p.config.Vars {
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envVar, err := interpolate.Render(envVar, &p.config.ctx)
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if err != nil {
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return
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}
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keyValue := strings.SplitN(envVar, "=", 2)
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// Escape chars special to PS in each env var value
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escapedEnvVarValue := psEscape.Replace(keyValue[1])
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if escapedEnvVarValue != keyValue[1] {
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log.Printf("Env var %s converted to %s after escaping chars special to PS", keyValue[1],
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escapedEnvVarValue)
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}
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envVars[keyValue[0]] = escapedEnvVarValue
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}
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// Create a list of env var keys in sorted order
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var keys []string
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for k := range envVars {
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keys = append(keys, k)
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}
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sort.Strings(keys)
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format := p.config.EnvVarFormat
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if elevated {
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format = p.config.ElevatedEnvVarFormat
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}
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// Re-assemble vars using OS specific format pattern and flatten
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for _, key := range keys {
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flattened += fmt.Sprintf(format, key, envVars[key])
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}
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return
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}
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func (p *Provisioner) uploadEnvVars(flattenedEnvVars string) (err error) {
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ctx := context.TODO()
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// Upload all env vars to a powershell script on the target build file
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// system. Do this in the context of a single retryable function so that
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// we gracefully handle any errors created by transient conditions such as
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// a system restart
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envVarReader := strings.NewReader(flattenedEnvVars)
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log.Printf("Uploading env vars to %s", p.config.RemoteEnvVarPath)
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err = retry.Config{StartTimeout: p.config.StartRetryTimeout}.Run(ctx, func(context.Context) error {
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if err := p.communicator.Upload(p.config.RemoteEnvVarPath, envVarReader, nil); err != nil {
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return fmt.Errorf("Error uploading ps script containing env vars: %s", err)
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}
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return err
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})
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if err != nil {
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return err
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}
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return
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}
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func (p *Provisioner) createCommandText() (command string, err error) {
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// Return the interpolated command
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if p.config.ElevatedUser == "" {
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return p.createCommandTextNonPrivileged()
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} else {
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return p.createCommandTextPrivileged()
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}
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}
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func (p *Provisioner) createCommandTextNonPrivileged() (command string, err error) {
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// Prepare everything needed to enable the required env vars within the
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// remote environment
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err = p.prepareEnvVars(false)
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if err != nil {
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return "", err
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}
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p.config.ctx.Data = &ExecuteCommandTemplate{
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Path: p.config.RemotePath,
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Vars: p.config.RemoteEnvVarPath,
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WinRMPassword: getWinRMPassword(p.config.PackerBuildName),
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}
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command, err = interpolate.Render(p.config.ExecuteCommand, &p.config.ctx)
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if err != nil {
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return "", fmt.Errorf("Error processing command: %s", err)
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}
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// Return the interpolated command
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return command, nil
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}
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func getWinRMPassword(buildName string) string {
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winRMPass, _ := commonhelper.RetrieveSharedState("winrm_password", buildName)
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packer.LogSecretFilter.Set(winRMPass)
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return winRMPass
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}
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func (p *Provisioner) createCommandTextPrivileged() (command string, err error) {
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// Prepare everything needed to enable the required env vars within the
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// remote environment
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err = p.prepareEnvVars(true)
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if err != nil {
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return "", err
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}
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p.config.ctx.Data = &ExecuteCommandTemplate{
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Path: p.config.RemotePath,
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Vars: p.config.RemoteEnvVarPath,
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WinRMPassword: getWinRMPassword(p.config.PackerBuildName),
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}
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command, err = interpolate.Render(p.config.ElevatedExecuteCommand, &p.config.ctx)
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if err != nil {
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return "", fmt.Errorf("Error processing command: %s", err)
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}
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command, err = provisioner.GenerateElevatedRunner(command, p)
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if err != nil {
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return "", fmt.Errorf("Error generating elevated runner: %s", err)
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}
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return command, err
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}
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func (p *Provisioner) Communicator() packer.Communicator {
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return p.communicator
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}
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func (p *Provisioner) ElevatedUser() string {
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return p.config.ElevatedUser
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}
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func (p *Provisioner) ElevatedPassword() string {
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// Replace ElevatedPassword for winrm users who used this feature
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p.config.ctx.Data = &EnvVarsTemplate{
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WinRMPassword: getWinRMPassword(p.config.PackerBuildName),
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}
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elevatedPassword, _ := interpolate.Render(p.config.ElevatedPassword, &p.config.ctx)
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return elevatedPassword
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}
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