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https://github.com/opentffoundation/opentf.git
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We now have RunningInAutomation has a general concern in views.View, so we no longer need to specify it for each command-specific constructor separately. For this initial change I focused only on changing the exported interface of the views package and let the command-specific views go on having their own unexported fields containing a copy of the flag because it made this change less invasive and I wasn't feeling sure yet about whether we ought to have code within command-specific views directly access the internals of views.View. However, maybe we'll simplify this further in a later commit if we conclude that these copies of the flag are burdensome. The general version of this gets set directly inside the main package, which might at some future point allow us to make the command package itself unaware of this "running in automation" idea and thus reinforce that it's intended as a presentation-only thing rather than as a behavioral thing, but we'll save more invasive refactoring for another day.
216 lines
6.5 KiB
Go
216 lines
6.5 KiB
Go
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/backend"
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"github.com/hashicorp/terraform/command/arguments"
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"github.com/hashicorp/terraform/command/views"
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"github.com/hashicorp/terraform/tfdiags"
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)
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// RefreshCommand is a cli.Command implementation that refreshes the state
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// file.
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type RefreshCommand struct {
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Meta
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}
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func (c *RefreshCommand) Run(rawArgs []string) int {
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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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// Parse and validate flags
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args, diags := arguments.ParseRefresh(rawArgs)
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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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var view views.Refresh
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view = views.NewRefresh(args.ViewType, 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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// 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 with the backend-specific arguments
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be, beDiags := c.PrepareBackend(args.State)
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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.Operation)
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diags = diags.Append(opDiags)
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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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// 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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if diags.HasErrors() {
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view.Diagnostics(diags)
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return 1
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}
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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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diags = nil
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// Perform 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.State != nil {
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view.Outputs(op.State.RootModule().OutputValues)
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}
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return op.Result.ExitStatus()
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}
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func (c *RefreshCommand) PrepareBackend(args *arguments.State) (backend.Enhanced, 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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backendConfig, diags := c.loadBackendConfig(".")
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if diags.HasErrors() {
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return nil, diags
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}
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// Load the backend
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be, beDiags := c.Backend(&BackendOpts{
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Config: backendConfig,
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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 *RefreshCommand) OperationRequest(be backend.Enhanced, view views.Refresh, args *arguments.Operation,
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) (*backend.Operation, tfdiags.Diagnostics) {
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var diags tfdiags.Diagnostics
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// Build the operation
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opReq := c.Operation(be)
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opReq.ConfigDir = "."
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opReq.Hooks = view.Hooks()
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opReq.Targets = args.Targets
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opReq.Type = backend.OperationTypeRefresh
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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 *RefreshCommand) 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 *RefreshCommand) Help() string {
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helpText := `
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Usage: terraform [global options] refresh [options]
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Update the state file of your infrastructure with metadata that matches
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the physical resources they are tracking.
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This will not modify your infrastructure, but it can modify your
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state file to update metadata. This metadata might cause new changes
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to occur when you generate a plan or call apply next.
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Options:
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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 form
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that includes only the summary messages.
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-input=true Ask for input for variables if not directly set.
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-lock=true Lock the state file when locking is supported.
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-lock-timeout=0s Duration to retry a state lock.
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-no-color If specified, output won't contain any color.
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-target=resource Resource to target. Operation will be limited to this
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resource and its dependencies. This flag can be used
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multiple times.
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-var 'foo=bar' Set a variable in the Terraform configuration. This
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flag can be set multiple times.
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-var-file=foo Set variables in the Terraform configuration from
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a file. If "terraform.tfvars" or any ".auto.tfvars"
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files are present, they will be automatically loaded.
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-state, state-out, and -backup are legacy options supported for the local
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backend only. For more information, see the local backend's documentation.
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`
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return strings.TrimSpace(helpText)
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}
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func (c *RefreshCommand) Synopsis() string {
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return "Update the state to match remote systems"
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}
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