Files
Lucas Bajolet 8df9ff3ab1 command: introduce schedulers and centralise logic
As we move on to introduce a DAG into Packer, we are introducing a
Scheduler interface, as well as a first implementation of it which
replicates the current scheduling algorithm, but centralises all the
code related to evaluation and execution of components.

This won't pass tests in the current state as only the logic has
changed, and tests haven't been updated yet. This will come later in the
refactoring process.
2023-08-11 16:01:51 -04:00

166 lines
3.5 KiB
Go

// Copyright (c) HashiCorp, Inc.
// SPDX-License-Identifier: BUSL-1.1
package command
import (
"bufio"
"context"
"fmt"
"io"
"strings"
"github.com/chzyer/readline"
"github.com/hashicorp/packer/helper/wrappedreadline"
"github.com/hashicorp/packer/helper/wrappedstreams"
"github.com/hashicorp/packer/packer"
"github.com/posener/complete"
)
var TiniestBuilder = strings.NewReader(`{
"builders": [
{
"type":"null",
"communicator": "none"
}
]
}`)
type ConsoleCommand struct {
Meta
}
func (c *ConsoleCommand) Run(args []string) int {
ctx := context.Background()
cfg, ret := c.ParseArgs(args)
if ret != 0 {
return ret
}
return c.RunContext(ctx, cfg)
}
func (c *ConsoleCommand) ParseArgs(args []string) (*ConsoleArgs, int) {
var cfg ConsoleArgs
flags := c.Meta.FlagSet("console", FlagSetVars)
flags.Usage = func() { c.Ui.Say(c.Help()) }
cfg.AddFlagSets(flags)
if err := flags.Parse(args); err != nil {
return &cfg, 1
}
args = flags.Args()
if len(args) == 1 {
cfg.Path = args[0]
}
return &cfg, 0
}
func (c *ConsoleCommand) RunContext(ctx context.Context, cla *ConsoleArgs) int {
packerStarter, ret := c.GetConfig(&cla.MetaArgs)
if ret != 0 {
return ret
}
_ = packerStarter.Initialize()
// Determine if stdin is a pipe. If so, we evaluate directly.
if c.StdinPiped() {
return c.modePiped(packerStarter)
}
return c.modeInteractive(packerStarter)
}
func (*ConsoleCommand) Help() string {
helpText := `
Usage: packer console [options] [TEMPLATE]
Creates a console for testing variable interpolation.
If a template is provided, this command will load the template and any
variables defined therein into its context to be referenced during
interpolation.
Options:
-var 'key=value' Variable for templates, can be used multiple times.
-var-file=path JSON or HCL2 file containing user variables.
-config-type Set to 'hcl2' to run in HCL2 mode when no file is passed. Defaults to json.
`
return strings.TrimSpace(helpText)
}
func (*ConsoleCommand) Synopsis() string {
return "creates a console for testing variable interpolation"
}
func (*ConsoleCommand) AutocompleteArgs() complete.Predictor {
return complete.PredictNothing
}
func (*ConsoleCommand) AutocompleteFlags() complete.Flags {
return complete.Flags{
"-var": complete.PredictNothing,
"-var-file": complete.PredictNothing,
}
}
func (c *ConsoleCommand) modePiped(cfg packer.Evaluator) int {
var lastResult string
scanner := bufio.NewScanner(wrappedstreams.Stdin())
ret := 0
for scanner.Scan() {
result, _, diags := cfg.EvaluateExpression(strings.TrimSpace(scanner.Text()))
if len(diags) > 0 {
ret = writeDiags(c.Ui, nil, diags)
}
// Store the last result
lastResult = result
}
// Output the final result
c.Ui.Message(lastResult)
return ret
}
func (c *ConsoleCommand) modeInteractive(cfg packer.Evaluator) int {
// Setup the UI so we can output directly to stdout
l, err := readline.NewEx(wrappedreadline.Override(&readline.Config{
Prompt: "> ",
InterruptPrompt: "^C",
EOFPrompt: "exit",
HistorySearchFold: true,
}))
if err != nil {
c.Ui.Error(fmt.Sprintf(
"Error initializing console: %s",
err))
return 1
}
for {
// Read a line
line, err := l.Readline()
if err == readline.ErrInterrupt {
if len(line) == 0 {
break
} else {
continue
}
} else if err == io.EOF {
break
}
out, exit, diags := cfg.EvaluateExpression(line)
ret := writeDiags(c.Ui, nil, diags)
if exit {
return ret
}
c.Ui.Say(out)
if exit {
return ret
}
}
return 0
}