470 lines
14 KiB
Go
470 lines
14 KiB
Go
package schema
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import (
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"errors"
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"fmt"
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"reflect"
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"strings"
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"sync"
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"github.com/hashicorp/terraform/terraform"
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)
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// newValueWriter is a minor re-implementation of MapFieldWriter to include
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// keys that should be marked as computed, to represent the new part of a
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// pseudo-diff.
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type newValueWriter struct {
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*MapFieldWriter
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// A list of keys that should be marked as computed.
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computedKeys map[string]bool
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// A lock to prevent races on writes. The underlying writer will have one as
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// well - this is for computed keys.
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lock sync.Mutex
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// To be used with init.
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once sync.Once
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}
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// init performs any initialization tasks for the newValueWriter.
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func (w *newValueWriter) init() {
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if w.computedKeys == nil {
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w.computedKeys = make(map[string]bool)
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}
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}
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// WriteField overrides MapValueWriter's WriteField, adding the ability to flag
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// the address as computed.
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func (w *newValueWriter) WriteField(address []string, value interface{}, computed bool) error {
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// Fail the write if we have a non-nil value and computed is true.
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// NewComputed values should not have a value when written.
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if value != nil && computed {
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return errors.New("Non-nil value with computed set")
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}
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if err := w.MapFieldWriter.WriteField(address, value); err != nil {
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return err
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}
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w.once.Do(w.init)
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w.lock.Lock()
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defer w.lock.Unlock()
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if computed {
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w.computedKeys[strings.Join(address, ".")] = true
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}
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return nil
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}
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// ComputedKeysMap returns the underlying computed keys map.
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func (w *newValueWriter) ComputedKeysMap() map[string]bool {
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w.once.Do(w.init)
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return w.computedKeys
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}
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// newValueReader is a minor re-implementation of MapFieldReader and is the
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// read counterpart to MapValueWriter, allowing the read of keys flagged as
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// computed to accommodate the diff override logic in ResourceDiff.
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type newValueReader struct {
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*MapFieldReader
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// The list of computed keys from a newValueWriter.
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computedKeys map[string]bool
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}
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// ReadField reads the values from the underlying writer, returning the
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// computed value if it is found as well.
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func (r *newValueReader) ReadField(address []string) (FieldReadResult, error) {
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addrKey := strings.Join(address, ".")
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v, err := r.MapFieldReader.ReadField(address)
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if err != nil {
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return FieldReadResult{}, err
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}
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for computedKey := range r.computedKeys {
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if childAddrOf(addrKey, computedKey) {
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if strings.HasSuffix(addrKey, ".#") {
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// This is a count value for a list or set that has been marked as
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// computed, or a sub-list/sub-set of a complex resource that has
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// been marked as computed. We need to pass through to other readers
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// so that an accurate previous count can be fetched for the diff.
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v.Exists = false
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}
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v.Computed = true
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}
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}
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return v, nil
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}
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// ResourceDiff is used to query and make custom changes to an in-flight diff.
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// It can be used to veto particular changes in the diff, customize the diff
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// that has been created, or diff values not controlled by config.
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//
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// The object functions similar to ResourceData, however most notably lacks
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// Set, SetPartial, and Partial, as it should be used to change diff values
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// only. Most other first-class ResourceData functions exist, namely Get,
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// GetOk, HasChange, and GetChange exist.
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//
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// All functions in ResourceDiff, save for ForceNew, can only be used on
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// computed fields.
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type ResourceDiff struct {
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// The schema for the resource being worked on.
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schema map[string]*Schema
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// The current config for this resource.
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config *terraform.ResourceConfig
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// The state for this resource as it exists post-refresh, after the initial
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// diff.
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state *terraform.InstanceState
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// The diff created by Terraform. This diff is used, along with state,
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// config, and custom-set diff data, to provide a multi-level reader
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// experience similar to ResourceData.
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diff *terraform.InstanceDiff
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// The internal reader structure that contains the state, config, the default
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// diff, and the new diff.
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multiReader *MultiLevelFieldReader
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// A writer that writes overridden new fields.
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newWriter *newValueWriter
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// Tracks which keys have been updated by ResourceDiff to ensure that the
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// diff does not get re-run on keys that were not touched, or diffs that were
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// just removed (re-running on the latter would just roll back the removal).
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updatedKeys map[string]bool
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}
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// newResourceDiff creates a new ResourceDiff instance.
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func newResourceDiff(schema map[string]*Schema, config *terraform.ResourceConfig, state *terraform.InstanceState, diff *terraform.InstanceDiff) *ResourceDiff {
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d := &ResourceDiff{
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config: config,
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state: state,
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diff: diff,
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schema: schema,
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}
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d.newWriter = &newValueWriter{
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MapFieldWriter: &MapFieldWriter{Schema: d.schema},
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}
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readers := make(map[string]FieldReader)
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var stateAttributes map[string]string
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if d.state != nil {
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stateAttributes = d.state.Attributes
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readers["state"] = &MapFieldReader{
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Schema: d.schema,
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Map: BasicMapReader(stateAttributes),
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}
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}
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if d.config != nil {
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readers["config"] = &ConfigFieldReader{
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Schema: d.schema,
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Config: d.config,
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}
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}
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if d.diff != nil {
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readers["diff"] = &DiffFieldReader{
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Schema: d.schema,
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Diff: d.diff,
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Source: &MultiLevelFieldReader{
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Levels: []string{"state", "config"},
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Readers: readers,
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},
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}
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}
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readers["newDiff"] = &newValueReader{
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MapFieldReader: &MapFieldReader{
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Schema: d.schema,
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Map: BasicMapReader(d.newWriter.Map()),
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},
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computedKeys: d.newWriter.ComputedKeysMap(),
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}
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d.multiReader = &MultiLevelFieldReader{
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Levels: []string{
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"state",
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"config",
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"diff",
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"newDiff",
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},
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Readers: readers,
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}
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d.updatedKeys = make(map[string]bool)
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return d
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}
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// UpdatedKeys returns the keys that were updated by this ResourceDiff run.
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// These are the only keys that a diff should be re-calculated for.
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func (d *ResourceDiff) UpdatedKeys() []string {
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var s []string
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for k := range d.updatedKeys {
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s = append(s, k)
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}
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return s
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}
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// Clear wipes the diff for a particular key. It is called by ResourceDiff's
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// functionality to remove any possibility of conflicts, but can be called on
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// its own to just remove a specific key from the diff completely.
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//
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// Note that this does not wipe an override. This function is only allowed on
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// computed keys.
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func (d *ResourceDiff) Clear(key string) error {
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if err := d.checkKey(key, "Clear"); err != nil {
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return err
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}
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return d.clear(key)
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}
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func (d *ResourceDiff) clear(key string) error {
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// Check the schema to make sure that this key exists first.
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if _, ok := d.schema[key]; !ok {
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return fmt.Errorf("%s is not a valid key", key)
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}
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for k := range d.diff.Attributes {
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if strings.HasPrefix(k, key) {
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delete(d.diff.Attributes, k)
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}
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}
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return nil
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}
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// diffChange helps to implement resourceDiffer and derives its change values
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// from ResourceDiff's own change data, in addition to existing diff, config, and state.
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func (d *ResourceDiff) diffChange(key string) (interface{}, interface{}, bool, bool) {
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old, new := d.getChange(key)
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if !old.Exists {
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old.Value = nil
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}
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if !new.Exists {
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new.Value = nil
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}
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return old.Value, new.Value, !reflect.DeepEqual(old.Value, new.Value), new.Computed
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}
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// SetNew is used to set a new diff value for the mentioned key. The value must
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// be correct for the attribute's schema (mostly relevant for maps, lists, and
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// sets). The original value from the state is used as the old value.
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//
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// This function is only allowed on computed attributes.
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func (d *ResourceDiff) SetNew(key string, value interface{}) error {
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if err := d.checkKey(key, "SetNew"); err != nil {
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return err
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}
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return d.setDiff(key, value, false)
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}
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// SetNewComputed functions like SetNew, except that it blanks out a new value
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// and marks it as computed.
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//
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// This function is only allowed on computed attributes.
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func (d *ResourceDiff) SetNewComputed(key string) error {
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if err := d.checkKey(key, "SetNewComputed"); err != nil {
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return err
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}
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return d.setDiff(key, nil, true)
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}
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// setDiff performs common diff setting behaviour.
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func (d *ResourceDiff) setDiff(key string, new interface{}, computed bool) error {
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if err := d.clear(key); err != nil {
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return err
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}
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if err := d.newWriter.WriteField(strings.Split(key, "."), new, computed); err != nil {
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return fmt.Errorf("Cannot set new diff value for key %s: %s", key, err)
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}
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d.updatedKeys[key] = true
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return nil
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}
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// ForceNew force-flags ForceNew in the schema for a specific key, and
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// re-calculates its diff, effectively causing this attribute to force a new
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// resource.
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//
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// Keep in mind that forcing a new resource will force a second run of the
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// resource's CustomizeDiff function (with a new ResourceDiff) once the current
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// one has completed. This second run is performed without state. This behavior
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// will be the same as if a new resource is being created and is performed to
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// ensure that the diff looks like the diff for a new resource as much as
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// possible. CustomizeDiff should expect such a scenario and act correctly.
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//
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// This function is a no-op/error if there is no diff.
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//
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// Note that the change to schema is permanent for the lifecycle of this
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// specific ResourceDiff instance.
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func (d *ResourceDiff) ForceNew(key string) error {
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if !d.HasChange(key) {
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return fmt.Errorf("ForceNew: No changes for %s", key)
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}
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_, new := d.GetChange(key)
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d.schema[key].ForceNew = true
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return d.setDiff(key, new, false)
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}
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// Get hands off to ResourceData.Get.
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func (d *ResourceDiff) Get(key string) interface{} {
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r, _ := d.GetOk(key)
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return r
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}
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// GetChange gets the change between the state and diff, checking first to see
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// if a overridden diff exists.
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//
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// This implementation differs from ResourceData's in the way that we first get
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// results from the exact levels for the new diff, then from state and diff as
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// per normal.
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func (d *ResourceDiff) GetChange(key string) (interface{}, interface{}) {
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old, new := d.getChange(key)
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return old.Value, new.Value
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}
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// GetOk functions the same way as ResourceData.GetOk, but it also checks the
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// new diff levels to provide data consistent with the current state of the
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// customized diff.
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func (d *ResourceDiff) GetOk(key string) (interface{}, bool) {
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r := d.get(strings.Split(key, "."), "newDiff")
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exists := r.Exists && !r.Computed
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if exists {
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// If it exists, we also want to verify it is not the zero-value.
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value := r.Value
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zero := r.Schema.Type.Zero()
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if eq, ok := value.(Equal); ok {
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exists = !eq.Equal(zero)
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} else {
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exists = !reflect.DeepEqual(value, zero)
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}
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}
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return r.Value, exists
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}
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// HasChange checks to see if there is a change between state and the diff, or
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// in the overridden diff.
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func (d *ResourceDiff) HasChange(key string) bool {
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old, new := d.GetChange(key)
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// If the type implements the Equal interface, then call that
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// instead of just doing a reflect.DeepEqual. An example where this is
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// needed is *Set
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if eq, ok := old.(Equal); ok {
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return !eq.Equal(new)
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}
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return !reflect.DeepEqual(old, new)
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}
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// Id returns the ID of this resource.
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//
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// Note that technically, ID does not change during diffs (it either has
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// already changed in the refresh, or will change on update), hence we do not
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// support updating the ID or fetching it from anything else other than state.
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func (d *ResourceDiff) Id() string {
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var result string
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if d.state != nil {
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result = d.state.ID
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}
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return result
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}
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// getChange gets values from two different levels, designed for use in
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// diffChange, HasChange, and GetChange.
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//
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// This implementation differs from ResourceData's in the way that we first get
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// results from the exact levels for the new diff, then from state and diff as
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// per normal.
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func (d *ResourceDiff) getChange(key string) (getResult, getResult) {
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old := d.get(strings.Split(key, "."), "state")
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var new getResult
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for p := range d.updatedKeys {
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if childAddrOf(key, p) {
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new = d.getExact(strings.Split(key, "."), "newDiff")
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goto done
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}
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}
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new = d.get(strings.Split(key, "."), "newDiff")
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done:
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return old, new
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}
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// get performs the appropriate multi-level reader logic for ResourceDiff,
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// starting at source. Refer to newResourceDiff for the level order.
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func (d *ResourceDiff) get(addr []string, source string) getResult {
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result, err := d.multiReader.ReadFieldMerge(addr, source)
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if err != nil {
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panic(err)
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}
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return d.finalizeResult(addr, result)
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}
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// getExact gets an attribute from the exact level referenced by source.
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func (d *ResourceDiff) getExact(addr []string, source string) getResult {
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result, err := d.multiReader.ReadFieldExact(addr, source)
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if err != nil {
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panic(err)
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}
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return d.finalizeResult(addr, result)
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}
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// finalizeResult does some post-processing of the result produced by get and getExact.
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func (d *ResourceDiff) finalizeResult(addr []string, result FieldReadResult) getResult {
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// If the result doesn't exist, then we set the value to the zero value
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var schema *Schema
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if schemaL := addrToSchema(addr, d.schema); len(schemaL) > 0 {
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schema = schemaL[len(schemaL)-1]
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}
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if result.Value == nil && schema != nil {
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result.Value = result.ValueOrZero(schema)
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}
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// Transform the FieldReadResult into a getResult. It might be worth
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// merging these two structures one day.
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return getResult{
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Value: result.Value,
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ValueProcessed: result.ValueProcessed,
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Computed: result.Computed,
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Exists: result.Exists,
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Schema: schema,
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}
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}
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// childAddrOf does a comparison of two addresses to see if one is the child of
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// the other.
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func childAddrOf(child, parent string) bool {
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cs := strings.Split(child, ".")
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ps := strings.Split(parent, ".")
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if len(ps) > len(cs) {
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return false
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}
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return reflect.DeepEqual(ps, cs[:len(ps)])
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}
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// checkKey checks the key to make sure it exists and is computed.
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func (d *ResourceDiff) checkKey(key, caller string) error {
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s, ok := d.schema[key]
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if !ok {
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return fmt.Errorf("%s: invalid key: %s", caller, key)
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}
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if !s.Computed {
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return fmt.Errorf("%s only operates on computed keys - %s is not one", caller, key)
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}
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return nil
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}
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