mirror of
https://github.com/opentofu/opentofu.git
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67203dade8
After some refactoring, this helper method had an unused argument (vars) and an always-nil error return value. This commit cleans this up.
271 lines
8.0 KiB
Go
271 lines
8.0 KiB
Go
package command
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import (
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"encoding/json"
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"fmt"
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"path/filepath"
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"strings"
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"github.com/zclconf/go-cty/cty"
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"github.com/hashicorp/terraform/terraform"
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"github.com/hashicorp/terraform/tfdiags"
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)
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// ValidateCommand is a Command implementation that validates the terraform files
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type ValidateCommand struct {
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Meta
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}
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const defaultPath = "."
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func (c *ValidateCommand) Run(args []string) int {
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args = c.Meta.process(args)
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// TODO: The `var` and `var-file` options are not actually used, and should
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// be removed in the next major release.
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if c.Meta.variableArgs.items == nil {
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c.Meta.variableArgs = newRawFlags("-var")
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}
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varValues := c.Meta.variableArgs.Alias("-var")
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varFiles := c.Meta.variableArgs.Alias("-var-file")
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var jsonOutput bool
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cmdFlags := c.Meta.defaultFlagSet("validate")
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cmdFlags.BoolVar(&jsonOutput, "json", false, "produce JSON output")
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cmdFlags.Var(varValues, "var", "variables")
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cmdFlags.Var(varFiles, "var-file", "variable file")
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cmdFlags.Usage = func() { c.Ui.Error(c.Help()) }
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if err := cmdFlags.Parse(args); err != nil {
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c.Ui.Error(fmt.Sprintf("Error parsing command-line flags: %s\n", err.Error()))
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return 1
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}
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var diags tfdiags.Diagnostics
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// If set, output a warning indicating that these values are not used.
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if !varValues.Empty() || !varFiles.Empty() {
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diags = diags.Append(tfdiags.Sourceless(
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tfdiags.Warning,
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"The -var and -var-file flags are not used in validate. Setting them has no effect.",
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"These flags will be removed in a future version of Terraform.",
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))
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}
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// After this point, we must only produce JSON output if JSON mode is
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// enabled, so all errors should be accumulated into diags and we'll
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// print out a suitable result at the end, depending on the format
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// selection. All returns from this point on must be tail-calls into
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// c.showResults in order to produce the expected output.
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args = cmdFlags.Args()
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var dirPath string
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if len(args) == 1 {
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dirPath = args[0]
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} else {
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dirPath = "."
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}
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dir, err := filepath.Abs(dirPath)
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if err != nil {
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diags = diags.Append(fmt.Errorf("unable to locate module: %s", err))
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return c.showResults(diags, jsonOutput)
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}
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// Check for user-supplied plugin path
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if c.pluginPath, err = c.loadPluginPath(); err != nil {
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diags = diags.Append(fmt.Errorf("error loading plugin path: %s", err))
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return c.showResults(diags, jsonOutput)
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}
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validateDiags := c.validate(dir)
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diags = diags.Append(validateDiags)
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return c.showResults(diags, jsonOutput)
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}
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func (c *ValidateCommand) validate(dir string) tfdiags.Diagnostics {
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var diags tfdiags.Diagnostics
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cfg, cfgDiags := c.loadConfig(dir)
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diags = diags.Append(cfgDiags)
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if diags.HasErrors() {
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return diags
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}
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// "validate" is to check if the given module is valid regardless of
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// input values, current state, etc. Therefore we populate all of the
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// input values with unknown values of the expected type, allowing us
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// to perform a type check without assuming any particular values.
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varValues := make(terraform.InputValues)
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for name, variable := range cfg.Module.Variables {
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ty := variable.Type
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if ty == cty.NilType {
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// Can't predict the type at all, so we'll just mark it as
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// cty.DynamicVal (unknown value of cty.DynamicPseudoType).
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ty = cty.DynamicPseudoType
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}
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varValues[name] = &terraform.InputValue{
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Value: cty.UnknownVal(ty),
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SourceType: terraform.ValueFromCLIArg,
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}
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}
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opts := c.contextOpts()
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opts.Config = cfg
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opts.Variables = varValues
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tfCtx, ctxDiags := terraform.NewContext(opts)
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diags = diags.Append(ctxDiags)
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if ctxDiags.HasErrors() {
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return diags
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}
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validateDiags := tfCtx.Validate()
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diags = diags.Append(validateDiags)
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return diags
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}
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func (c *ValidateCommand) showResults(diags tfdiags.Diagnostics, jsonOutput bool) int {
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switch {
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case jsonOutput:
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// FIXME: Eventually we'll probably want to factor this out somewhere
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// to support machine-readable outputs for other commands too, but for
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// now it's simplest to do this inline here.
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type Pos struct {
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Line int `json:"line"`
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Column int `json:"column"`
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Byte int `json:"byte"`
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}
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type Range struct {
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Filename string `json:"filename"`
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Start Pos `json:"start"`
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End Pos `json:"end"`
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}
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type Diagnostic struct {
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Severity string `json:"severity,omitempty"`
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Summary string `json:"summary,omitempty"`
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Detail string `json:"detail,omitempty"`
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Range *Range `json:"range,omitempty"`
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}
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type Output struct {
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// We include some summary information that is actually redundant
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// with the detailed diagnostics, but avoids the need for callers
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// to re-implement our logic for deciding these.
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Valid bool `json:"valid"`
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ErrorCount int `json:"error_count"`
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WarningCount int `json:"warning_count"`
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Diagnostics []Diagnostic `json:"diagnostics"`
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}
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var output Output
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output.Valid = true // until proven otherwise
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for _, diag := range diags {
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var jsonDiag Diagnostic
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switch diag.Severity() {
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case tfdiags.Error:
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jsonDiag.Severity = "error"
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output.ErrorCount++
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output.Valid = false
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case tfdiags.Warning:
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jsonDiag.Severity = "warning"
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output.WarningCount++
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}
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desc := diag.Description()
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jsonDiag.Summary = desc.Summary
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jsonDiag.Detail = desc.Detail
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ranges := diag.Source()
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if ranges.Subject != nil {
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subj := ranges.Subject
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jsonDiag.Range = &Range{
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Filename: subj.Filename,
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Start: Pos{
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Line: subj.Start.Line,
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Column: subj.Start.Column,
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Byte: subj.Start.Byte,
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},
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End: Pos{
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Line: subj.End.Line,
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Column: subj.End.Column,
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Byte: subj.End.Byte,
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},
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}
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}
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output.Diagnostics = append(output.Diagnostics, jsonDiag)
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}
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if output.Diagnostics == nil {
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// Make sure this always appears as an array in our output, since
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// this is easier to consume for dynamically-typed languages.
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output.Diagnostics = []Diagnostic{}
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}
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j, err := json.MarshalIndent(&output, "", " ")
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if err != nil {
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// Should never happen because we fully-control the input here
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panic(err)
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}
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c.Ui.Output(string(j))
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default:
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if len(diags) == 0 {
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c.Ui.Output(c.Colorize().Color("[green][bold]Success![reset] The configuration is valid.\n"))
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} else {
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c.showDiagnostics(diags)
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if !diags.HasErrors() {
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c.Ui.Output(c.Colorize().Color("[green][bold]Success![reset] The configuration is valid, but there were some validation warnings as shown above.\n"))
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}
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}
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}
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if diags.HasErrors() {
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return 1
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}
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return 0
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}
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func (c *ValidateCommand) Synopsis() string {
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return "Validates the Terraform files"
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}
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func (c *ValidateCommand) Help() string {
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helpText := `
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Usage: terraform validate [options] [dir]
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Validate the configuration files in a directory, referring only to the
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configuration and not accessing any remote services such as remote state,
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provider APIs, etc.
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Validate runs checks that verify whether a configuration is syntactically
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valid and internally consistent, regardless of any provided variables or
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existing state. It is thus primarily useful for general verification of
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reusable modules, including correctness of attribute names and value types.
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It is safe to run this command automatically, for example as a post-save
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check in a text editor or as a test step for a re-usable module in a CI
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system.
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Validation requires an initialized working directory with any referenced
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plugins and modules installed. To initialize a working directory for
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validation without accessing any configured remote backend, use:
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terraform init -backend=false
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If dir is not specified, then the current directory will be used.
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To verify configuration in the context of a particular run (a particular
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target workspace, input variable values, etc), use the 'terraform plan'
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command instead, which includes an implied validation check.
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Options:
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-json Produce output in a machine-readable JSON format, suitable for
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use in text editor integrations and other automated systems.
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Always disables color.
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-no-color If specified, output won't contain any color.
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`
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return strings.TrimSpace(helpText)
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}
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