2021-02-18 23:23:34 +01:00
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package arguments
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import (
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"flag"
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"fmt"
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"time"
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"github.com/hashicorp/hcl/v2"
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"github.com/hashicorp/hcl/v2/hclsyntax"
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"github.com/hashicorp/terraform/addrs"
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2021-04-06 01:28:59 +02:00
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"github.com/hashicorp/terraform/plans"
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2021-02-18 23:23:34 +01:00
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"github.com/hashicorp/terraform/tfdiags"
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)
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// DefaultParallelism is the limit Terraform places on total parallel
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// operations as it walks the dependency graph.
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const DefaultParallelism = 10
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// State describes arguments which are used to define how Terraform interacts
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// with state.
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type State struct {
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// Lock controls whether or not the state manager is used to lock state
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// during operations.
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Lock bool
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// LockTimeout allows setting a time limit on acquiring the state lock.
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// The default is 0, meaning no limit.
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LockTimeout time.Duration
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// StatePath specifies a non-default location for the state file. The
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// default value is blank, which is interpeted as "terraform.tfstate".
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StatePath string
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// StateOutPath specifies a different path to write the final state file.
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// The default value is blank, which results in state being written back to
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// StatePath.
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StateOutPath string
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// BackupPath specifies the path where a backup copy of the state file will
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// be stored before the new state is written. The default value is blank,
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// which is interpreted as StateOutPath +
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// ".backup".
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BackupPath string
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}
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// Operation describes arguments which are used to configure how a Terraform
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// operation such as a plan or apply executes.
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type Operation struct {
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// PlanMode selects one of the mutually-exclusive planning modes that
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// decides the overall goal of a plan operation. This field is relevant
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// only for an operation that produces a plan.
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PlanMode plans.Mode
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// Parallelism is the limit Terraform places on total parallel operations
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// as it walks the dependency graph.
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Parallelism int
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// Refresh controls whether or not the operation should refresh existing
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// state before proceeding. Default is true.
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Refresh bool
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// Targets allow limiting an operation to a set of resource addresses and
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// their dependencies.
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Targets []addrs.Targetable
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// These private fields are used only temporarily during decoding. Use
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// method Parse to populate the exported fields from these, validating
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// the raw values in the process.
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targetsRaw []string
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destroyRaw bool
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}
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// Parse must be called on Operation after initial flag parse. This processes
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// the raw target flags into addrs.Targetable values, returning diagnostics if
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// invalid.
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func (o *Operation) Parse() tfdiags.Diagnostics {
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var diags tfdiags.Diagnostics
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o.Targets = nil
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for _, tr := range o.targetsRaw {
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traversal, syntaxDiags := hclsyntax.ParseTraversalAbs([]byte(tr), "", hcl.Pos{Line: 1, Column: 1})
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if syntaxDiags.HasErrors() {
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diags = diags.Append(tfdiags.Sourceless(
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tfdiags.Error,
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fmt.Sprintf("Invalid target %q", tr),
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syntaxDiags[0].Detail,
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))
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continue
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}
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target, targetDiags := addrs.ParseTarget(traversal)
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if targetDiags.HasErrors() {
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diags = diags.Append(tfdiags.Sourceless(
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tfdiags.Error,
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fmt.Sprintf("Invalid target %q", tr),
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targetDiags[0].Description().Detail,
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))
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continue
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}
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o.Targets = append(o.Targets, target.Subject)
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}
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// If you add a new possible value for o.PlanMode here, consider also
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// adding a specialized error message for it in ParseApplyDestroy.
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switch {
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case o.destroyRaw:
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o.PlanMode = plans.DestroyMode
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default:
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o.PlanMode = plans.NormalMode
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}
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return diags
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}
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// Vars describes arguments which specify non-default variable values. This
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// interfce is unfortunately obscure, because the order of the CLI arguments
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// determines the final value of the gathered variables. In future it might be
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// desirable for the arguments package to handle the gathering of variables
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// directly, returning a map of variable values.
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type Vars struct {
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vars *flagNameValueSlice
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varFiles *flagNameValueSlice
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}
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func (v *Vars) All() []FlagNameValue {
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if v.vars == nil {
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return nil
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}
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return v.vars.AllItems()
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}
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func (v *Vars) Empty() bool {
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if v.vars == nil {
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return true
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}
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return v.vars.Empty()
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}
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// extendedFlagSet creates a FlagSet with common backend, operation, and vars
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// flags used in many commands. Target structs for each subset of flags must be
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// provided in order to support those flags.
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func extendedFlagSet(name string, state *State, operation *Operation, vars *Vars) *flag.FlagSet {
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f := defaultFlagSet(name)
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if state == nil && operation == nil && vars == nil {
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panic("use defaultFlagSet")
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}
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if state != nil {
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f.BoolVar(&state.Lock, "lock", true, "lock")
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f.DurationVar(&state.LockTimeout, "lock-timeout", 0, "lock-timeout")
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f.StringVar(&state.StatePath, "state", "", "state-path")
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f.StringVar(&state.StateOutPath, "state-out", "", "state-path")
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f.StringVar(&state.BackupPath, "backup", "", "backup-path")
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}
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if operation != nil {
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f.IntVar(&operation.Parallelism, "parallelism", DefaultParallelism, "parallelism")
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f.BoolVar(&operation.Refresh, "refresh", true, "refresh")
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f.BoolVar(&operation.destroyRaw, "destroy", false, "destroy")
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f.Var((*flagStringSlice)(&operation.targetsRaw), "target", "target")
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}
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// Gather all -var and -var-file arguments into one heterogenous structure
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// to preserve the overall order.
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if vars != nil {
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varsFlags := newFlagNameValueSlice("-var")
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varFilesFlags := varsFlags.Alias("-var-file")
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vars.vars = &varsFlags
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vars.varFiles = &varFilesFlags
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f.Var(vars.vars, "var", "var")
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f.Var(vars.varFiles, "var-file", "var-file")
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}
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return f
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}
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