7ffd1560aa
The decode hook is not call for the embedded squashed struct, so we need to recurse when we find squash tags. See https://github.com/mitchellh/mapstructure/issues/226
216 lines
6.1 KiB
Go
216 lines
6.1 KiB
Go
/*
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Package decode provides tools for customizing the decoding of configuration,
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into structures using mapstructure.
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*/
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package decode
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import (
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"reflect"
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"strings"
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"github.com/mitchellh/reflectwalk"
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)
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// HookTranslateKeys is a mapstructure decode hook which translates keys in a
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// map to their canonical value.
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//
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// Any struct field with a field tag of `alias` may be loaded from any of the
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// values keyed by any of the aliases. A field may have one or more alias.
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// Aliases must be lowercase, as keys are compared case-insensitive.
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//
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// Example alias tag:
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// MyField []string `alias:"old_field_name,otherfieldname"`
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//
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// This hook should ONLY be used to maintain backwards compatibility with
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// deprecated keys. For new structures use mapstructure struct tags to set the
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// desired serialization key.
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//
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// IMPORTANT: This function assumes that mapstructure is being used with the
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// default struct field tag of `mapstructure`. If mapstructure.DecoderConfig.TagName
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// is set to a different value this function will need to be parameterized with
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// that value to correctly find the canonical data key.
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func HookTranslateKeys(_, to reflect.Type, data interface{}) (interface{}, error) {
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// Return immediately if target is not a struct, as only structs can have
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// field tags. If the target is a pointer to a struct, mapstructure will call
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// the hook again with the struct.
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if to.Kind() != reflect.Struct {
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return data, nil
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}
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// Avoid doing any work if data is not a map
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source, ok := data.(map[string]interface{})
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if !ok {
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return data, nil
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}
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rules := translationsForType(to)
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// Avoid making a copy if there are no translation rules
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if len(rules) == 0 {
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return data, nil
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}
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result := make(map[string]interface{}, len(source))
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for k, v := range source {
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lowerK := strings.ToLower(k)
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canonKey, ok := rules[lowerK]
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if !ok {
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result[k] = v
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continue
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}
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// if there is a value for the canonical key then keep it
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if canonValue, ok := source[canonKey]; ok {
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// Assign the value for the case where canonKey == k
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result[canonKey] = canonValue
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continue
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}
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result[canonKey] = v
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}
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return result, nil
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}
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// TODO: could be cached if it is too slow
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func translationsForType(to reflect.Type) map[string]string {
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translations := map[string]string{}
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for i := 0; i < to.NumField(); i++ {
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field := to.Field(i)
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tags := fieldTags(field)
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if tags.squash {
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embedded := field.Type
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if embedded.Kind() == reflect.Ptr {
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embedded = embedded.Elem()
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}
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if embedded.Kind() != reflect.Struct {
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// mapstructure will handle reporting this error
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continue
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}
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for k, v := range translationsForType(embedded) {
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translations[k] = v
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}
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continue
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}
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tag, ok := field.Tag.Lookup("alias")
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if !ok {
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continue
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}
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canonKey := strings.ToLower(tags.name)
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for _, alias := range strings.Split(tag, ",") {
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translations[strings.ToLower(alias)] = canonKey
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}
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}
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return translations
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}
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func fieldTags(field reflect.StructField) mapstructureFieldTags {
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tag, ok := field.Tag.Lookup("mapstructure")
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if !ok {
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return mapstructureFieldTags{name: field.Name}
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}
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tags := mapstructureFieldTags{name: field.Name}
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parts := strings.Split(tag, ",")
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if len(parts) == 0 {
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return tags
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}
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if parts[0] != "" {
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tags.name = parts[0]
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}
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for _, part := range parts[1:] {
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if part == "squash" {
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tags.squash = true
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}
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}
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return tags
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}
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type mapstructureFieldTags struct {
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name string
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squash bool
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}
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// HookWeakDecodeFromSlice looks for []map[string]interface{} and []interface{}
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// in the source data. If the target is not a slice or array it attempts to unpack
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// 1 item out of the slice. If there are more items the source data is left
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// unmodified, allowing mapstructure to handle and report the decode error caused by
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// mismatched types. The []interface{} is handled so that all slice types are
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// behave the same way, and for the rare case when a raw structure is re-encoded
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// to JSON, which will produce the []interface{}.
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//
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// If this hook is being used on a "second pass" decode to decode an opaque
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// configuration into a type, the DecodeConfig should set WeaklyTypedInput=true,
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// (or another hook) to convert any scalar values into a slice of one value when
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// the target is a slice. This is necessary because this hook would have converted
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// the initial slices into single values on the first pass.
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//
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// Background
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//
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// HCL allows for repeated blocks which forces it to store structures
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// as []map[string]interface{} instead of map[string]interface{}. This is an
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// ambiguity which makes the generated structures incompatible with the
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// corresponding JSON data.
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//
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// This hook allows config to be read from the HCL format into a raw structure,
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// and later decoded into a strongly typed structure.
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func HookWeakDecodeFromSlice(from, to reflect.Type, data interface{}) (interface{}, error) {
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if from.Kind() == reflect.Slice && (to.Kind() == reflect.Slice || to.Kind() == reflect.Array) {
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return data, nil
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}
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switch d := data.(type) {
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case []map[string]interface{}:
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switch {
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case len(d) != 1:
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return data, nil
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case to == typeOfEmptyInterface:
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return unSlice(d[0])
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default:
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return d[0], nil
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}
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// a slice map be encoded as []interface{} in some cases
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case []interface{}:
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switch {
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case len(d) != 1:
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return data, nil
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case to == typeOfEmptyInterface:
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return unSlice(d[0])
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default:
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return d[0], nil
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}
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}
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return data, nil
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}
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var typeOfEmptyInterface = reflect.TypeOf((*interface{})(nil)).Elem()
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func unSlice(data interface{}) (interface{}, error) {
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err := reflectwalk.Walk(data, &unSliceWalker{})
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return data, err
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}
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type unSliceWalker struct{}
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func (u *unSliceWalker) Map(_ reflect.Value) error {
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return nil
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}
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func (u *unSliceWalker) MapElem(m, k, v reflect.Value) error {
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if !v.IsValid() || v.Kind() != reflect.Interface {
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return nil
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}
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v = v.Elem() // unpack the value from the interface{}
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if v.Kind() != reflect.Slice || v.Len() != 1 {
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return nil
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}
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first := v.Index(0)
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// The value should always be assignable, but double check to avoid a panic.
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if !first.Type().AssignableTo(m.Type().Elem()) {
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return nil
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}
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m.SetMapIndex(k, first)
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return nil
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}
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