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https://github.com/opentofu/opentofu.git
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f9d937a4dd
It displays a run header with link to web UI, like starting a new plan does, then confirms the run and streams the apply logs. If you can't apply the run (it's from a different workspace, is in an unconfirmable state, etc. etc.), it displays an error instead. Notable points along the way: * Implement `WrappedPlanFile` sum type, and update planfile consumers to use it instead of a plain `planfile.Reader`. * Enable applying a saved cloud plan * Update TFC mocks — add org name to workspace, and minimal support for includes on MockRuns.ReadWithOptions.
398 lines
12 KiB
Go
398 lines
12 KiB
Go
// Copyright (c) HashiCorp, Inc.
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// SPDX-License-Identifier: MPL-2.0
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package command
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import (
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"fmt"
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"strings"
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"github.com/hashicorp/terraform/internal/backend"
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"github.com/hashicorp/terraform/internal/command/arguments"
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"github.com/hashicorp/terraform/internal/command/views"
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"github.com/hashicorp/terraform/internal/plans/planfile"
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"github.com/hashicorp/terraform/internal/tfdiags"
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)
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// ApplyCommand is a Command implementation that applies a Terraform
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// configuration and actually builds or changes infrastructure.
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type ApplyCommand struct {
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Meta
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// If true, then this apply command will become the "destroy"
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// command. It is just like apply but only processes a destroy.
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Destroy bool
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}
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func (c *ApplyCommand) Run(rawArgs []string) int {
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var diags tfdiags.Diagnostics
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// Parse and apply global view arguments
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common, rawArgs := arguments.ParseView(rawArgs)
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c.View.Configure(common)
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// Propagate -no-color for legacy use of Ui. The remote backend and
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// cloud package use this; it should be removed when/if they are
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// migrated to views.
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c.Meta.color = !common.NoColor
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c.Meta.Color = c.Meta.color
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// Parse and validate flags
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var args *arguments.Apply
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switch {
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case c.Destroy:
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args, diags = arguments.ParseApplyDestroy(rawArgs)
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default:
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args, diags = arguments.ParseApply(rawArgs)
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}
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// Instantiate the view, even if there are flag errors, so that we render
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// diagnostics according to the desired view
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view := views.NewApply(args.ViewType, c.Destroy, c.View)
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if diags.HasErrors() {
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view.Diagnostics(diags)
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view.HelpPrompt()
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return 1
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}
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// Check for user-supplied plugin path
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var err error
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if c.pluginPath, err = c.loadPluginPath(); err != nil {
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diags = diags.Append(err)
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view.Diagnostics(diags)
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return 1
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}
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// Attempt to load the plan file, if specified
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planFile, diags := c.LoadPlanFile(args.PlanPath)
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if diags.HasErrors() {
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view.Diagnostics(diags)
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return 1
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}
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// Check for invalid combination of plan file and variable overrides
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if planFile != nil && !args.Vars.Empty() {
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diags = diags.Append(tfdiags.Sourceless(
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tfdiags.Error,
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"Can't set variables when applying a saved plan",
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"The -var and -var-file options cannot be used when applying a saved plan file, because a saved plan includes the variable values that were set when it was created.",
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))
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view.Diagnostics(diags)
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return 1
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}
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// FIXME: the -input flag value is needed to initialize the backend and the
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// operation, but there is no clear path to pass this value down, so we
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// continue to mutate the Meta object state for now.
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c.Meta.input = args.InputEnabled
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// FIXME: the -parallelism flag is used to control the concurrency of
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// Terraform operations. At the moment, this value is used both to
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// initialize the backend via the ContextOpts field inside CLIOpts, and to
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// set a largely unused field on the Operation request. Again, there is no
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// clear path to pass this value down, so we continue to mutate the Meta
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// object state for now.
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c.Meta.parallelism = args.Operation.Parallelism
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// Prepare the backend, passing the plan file if present, and the
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// backend-specific arguments
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be, beDiags := c.PrepareBackend(planFile, args.State, args.ViewType)
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diags = diags.Append(beDiags)
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if diags.HasErrors() {
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view.Diagnostics(diags)
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return 1
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}
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// Build the operation request
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opReq, opDiags := c.OperationRequest(be, view, args.ViewType, planFile, args.Operation, args.AutoApprove)
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diags = diags.Append(opDiags)
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// Collect variable value and add them to the operation request
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diags = diags.Append(c.GatherVariables(opReq, args.Vars))
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// Before we delegate to the backend, we'll print any warning diagnostics
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// we've accumulated here, since the backend will start fresh with its own
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// diagnostics.
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view.Diagnostics(diags)
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if diags.HasErrors() {
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return 1
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}
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diags = nil
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// Run the operation
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op, err := c.RunOperation(be, opReq)
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if err != nil {
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diags = diags.Append(err)
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view.Diagnostics(diags)
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return 1
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}
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if op.Result != backend.OperationSuccess {
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return op.Result.ExitStatus()
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}
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// Render the resource count and outputs, unless those counts are being
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// rendered already in a remote Terraform process.
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if rb, isRemoteBackend := be.(BackendWithRemoteTerraformVersion); !isRemoteBackend || rb.IsLocalOperations() {
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view.ResourceCount(args.State.StateOutPath)
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if !c.Destroy && op.State != nil {
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view.Outputs(op.State.RootModule().OutputValues)
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}
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}
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view.Diagnostics(diags)
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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 *ApplyCommand) LoadPlanFile(path string) (*planfile.WrappedPlanFile, tfdiags.Diagnostics) {
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var planFile *planfile.WrappedPlanFile
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var diags tfdiags.Diagnostics
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// Try to load plan if path is specified
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if path != "" {
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var err error
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planFile, err = c.PlanFile(path)
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if err != nil {
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diags = diags.Append(tfdiags.Sourceless(
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tfdiags.Error,
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fmt.Sprintf("Failed to load %q as a plan file", path),
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fmt.Sprintf("Error: %s", err),
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))
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return nil, diags
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}
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// If the path doesn't look like a plan, both planFile and err will be
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// nil. In that case, the user is probably trying to use the positional
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// argument to specify a configuration path. Point them at -chdir.
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if planFile == nil {
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diags = diags.Append(tfdiags.Sourceless(
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tfdiags.Error,
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fmt.Sprintf("Failed to load %q as a plan file", path),
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"The specified path is a directory, not a plan file. You can use the global -chdir flag to use this directory as the configuration root.",
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))
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return nil, diags
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}
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// If we successfully loaded a plan but this is a destroy operation,
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// explain that this is not supported.
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if c.Destroy {
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diags = diags.Append(tfdiags.Sourceless(
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tfdiags.Error,
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"Destroy can't be called with a plan file",
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fmt.Sprintf("If this plan was created using plan -destroy, apply it using:\n terraform apply %q", path),
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))
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return nil, diags
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}
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}
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return planFile, diags
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}
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func (c *ApplyCommand) PrepareBackend(planFile *planfile.WrappedPlanFile, args *arguments.State, viewType arguments.ViewType) (backend.Enhanced, tfdiags.Diagnostics) {
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var diags tfdiags.Diagnostics
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// FIXME: we need to apply the state arguments to the meta object here
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// because they are later used when initializing the backend. Carving a
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// path to pass these arguments to the functions that need them is
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// difficult but would make their use easier to understand.
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c.Meta.applyStateArguments(args)
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// Load the backend
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var be backend.Enhanced
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var beDiags tfdiags.Diagnostics
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if lp, ok := planFile.Local(); ok {
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plan, err := lp.ReadPlan()
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if err != nil {
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diags = diags.Append(tfdiags.Sourceless(
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tfdiags.Error,
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"Failed to read plan from plan file",
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fmt.Sprintf("Cannot read the plan from the given plan file: %s.", err),
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))
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return nil, diags
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}
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if plan.Backend.Config == nil {
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// Should never happen; always indicates a bug in the creation of the plan file
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diags = diags.Append(tfdiags.Sourceless(
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tfdiags.Error,
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"Failed to read plan from plan file",
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"The given plan file does not have a valid backend configuration. This is a bug in the Terraform command that generated this plan file.",
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))
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return nil, diags
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}
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be, beDiags = c.BackendForLocalPlan(plan.Backend)
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} else {
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// Both new plans and saved cloud plans load their backend from config.
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backendConfig, configDiags := c.loadBackendConfig(".")
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diags = diags.Append(configDiags)
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if configDiags.HasErrors() {
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return nil, diags
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}
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be, beDiags = c.Backend(&BackendOpts{
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Config: backendConfig,
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ViewType: viewType,
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})
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}
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diags = diags.Append(beDiags)
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if beDiags.HasErrors() {
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return nil, diags
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}
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return be, diags
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}
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func (c *ApplyCommand) OperationRequest(
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be backend.Enhanced,
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view views.Apply,
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viewType arguments.ViewType,
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planFile *planfile.WrappedPlanFile,
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args *arguments.Operation,
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autoApprove bool,
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) (*backend.Operation, tfdiags.Diagnostics) {
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var diags tfdiags.Diagnostics
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// Applying changes with dev overrides in effect could make it impossible
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// to switch back to a release version if the schema isn't compatible,
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// so we'll warn about it.
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diags = diags.Append(c.providerDevOverrideRuntimeWarnings())
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// Build the operation
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opReq := c.Operation(be, viewType)
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opReq.AutoApprove = autoApprove
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opReq.ConfigDir = "."
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opReq.PlanMode = args.PlanMode
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opReq.Hooks = view.Hooks()
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opReq.PlanFile = planFile
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opReq.PlanRefresh = args.Refresh
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opReq.Targets = args.Targets
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opReq.ForceReplace = args.ForceReplace
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opReq.Type = backend.OperationTypeApply
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opReq.View = view.Operation()
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var err error
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opReq.ConfigLoader, err = c.initConfigLoader()
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if err != nil {
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diags = diags.Append(fmt.Errorf("Failed to initialize config loader: %s", err))
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return nil, diags
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}
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return opReq, diags
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}
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func (c *ApplyCommand) GatherVariables(opReq *backend.Operation, args *arguments.Vars) tfdiags.Diagnostics {
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var diags tfdiags.Diagnostics
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// FIXME the arguments package currently trivially gathers variable related
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// arguments in a heterogenous slice, in order to minimize the number of
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// code paths gathering variables during the transition to this structure.
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// Once all commands that gather variables have been converted to this
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// structure, we could move the variable gathering code to the arguments
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// package directly, removing this shim layer.
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varArgs := args.All()
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items := make([]rawFlag, len(varArgs))
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for i := range varArgs {
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items[i].Name = varArgs[i].Name
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items[i].Value = varArgs[i].Value
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}
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c.Meta.variableArgs = rawFlags{items: &items}
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opReq.Variables, diags = c.collectVariableValues()
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return diags
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}
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func (c *ApplyCommand) Help() string {
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if c.Destroy {
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return c.helpDestroy()
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}
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return c.helpApply()
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}
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func (c *ApplyCommand) Synopsis() string {
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if c.Destroy {
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return "Destroy previously-created infrastructure"
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}
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return "Create or update infrastructure"
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}
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func (c *ApplyCommand) helpApply() string {
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helpText := `
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Usage: terraform [global options] apply [options] [PLAN]
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Creates or updates infrastructure according to Terraform configuration
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files in the current directory.
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By default, Terraform will generate a new plan and present it for your
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approval before taking any action. You can optionally provide a plan
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file created by a previous call to "terraform plan", in which case
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Terraform will take the actions described in that plan without any
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confirmation prompt.
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Options:
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-auto-approve Skip interactive approval of plan before applying.
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-backup=path Path to backup the existing state file before
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modifying. Defaults to the "-state-out" path with
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".backup" extension. Set to "-" to disable backup.
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-compact-warnings If Terraform produces any warnings that are not
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accompanied by errors, show them in a more compact
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form that includes only the summary messages.
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-destroy Destroy Terraform-managed infrastructure.
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The command "terraform destroy" is a convenience alias
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for this option.
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-lock=false Don't hold a state lock during the operation. This is
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dangerous if others might concurrently run commands
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against the same workspace.
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-lock-timeout=0s Duration to retry a state lock.
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-input=true Ask for input for variables if not directly set.
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-no-color If specified, output won't contain any color.
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-parallelism=n Limit the number of parallel resource operations.
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Defaults to 10.
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-state=path Path to read and save state (unless state-out
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is specified). Defaults to "terraform.tfstate".
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-state-out=path Path to write state to that is different than
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"-state". This can be used to preserve the old
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state.
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If you don't provide a saved plan file then this command will also accept
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all of the plan-customization options accepted by the terraform plan command.
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For more information on those options, run:
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terraform plan -help
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`
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return strings.TrimSpace(helpText)
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}
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func (c *ApplyCommand) helpDestroy() string {
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helpText := `
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Usage: terraform [global options] destroy [options]
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Destroy Terraform-managed infrastructure.
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This command is a convenience alias for:
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terraform apply -destroy
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This command also accepts many of the plan-customization options accepted by
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the terraform plan command. For more information on those options, run:
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terraform plan -help
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`
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return strings.TrimSpace(helpText)
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}
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