encode.go 9.7 KB

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  1. // Copyright 2019 The Go Authors. All rights reserved.
  2. // Use of this source code is governed by a BSD-style
  3. // license that can be found in the LICENSE file.
  4. package protojson
  5. import (
  6. "encoding/base64"
  7. "fmt"
  8. "sort"
  9. "google.golang.org/protobuf/internal/encoding/json"
  10. "google.golang.org/protobuf/internal/encoding/messageset"
  11. "google.golang.org/protobuf/internal/errors"
  12. "google.golang.org/protobuf/internal/flags"
  13. "google.golang.org/protobuf/internal/pragma"
  14. "google.golang.org/protobuf/proto"
  15. pref "google.golang.org/protobuf/reflect/protoreflect"
  16. "google.golang.org/protobuf/reflect/protoregistry"
  17. )
  18. // Marshal writes the given proto.Message in JSON format using default options.
  19. func Marshal(m proto.Message) ([]byte, error) {
  20. return MarshalOptions{}.Marshal(m)
  21. }
  22. // MarshalOptions is a configurable JSON format marshaler.
  23. type MarshalOptions struct {
  24. pragma.NoUnkeyedLiterals
  25. encoder *json.Encoder
  26. // AllowPartial allows messages that have missing required fields to marshal
  27. // without returning an error. If AllowPartial is false (the default),
  28. // Marshal will return error if there are any missing required fields.
  29. AllowPartial bool
  30. // UseProtoNames uses proto field name instead of lowerCamelCase name in JSON
  31. // field names.
  32. UseProtoNames bool
  33. // UseEnumNumbers emits enum values as numbers.
  34. UseEnumNumbers bool
  35. // EmitUnpopulated specifies whether to emit unpopulated fields. It does not
  36. // emit unpopulated oneof fields or unpopulated extension fields.
  37. // The JSON value emitted for unpopulated fields are as follows:
  38. // ╔═══════╤════════════════════════════╗
  39. // ║ JSON │ Protobuf field ║
  40. // ╠═══════╪════════════════════════════╣
  41. // ║ false │ proto3 boolean fields ║
  42. // ║ 0 │ proto3 numeric fields ║
  43. // ║ "" │ proto3 string/bytes fields ║
  44. // ║ null │ proto2 scalar fields ║
  45. // ║ null │ message fields ║
  46. // ║ [] │ list fields ║
  47. // ║ {} │ map fields ║
  48. // ╚═══════╧════════════════════════════╝
  49. EmitUnpopulated bool
  50. // If Indent is a non-empty string, it causes entries for an Array or Object
  51. // to be preceded by the indent and trailed by a newline. Indent can only be
  52. // composed of space or tab characters.
  53. Indent string
  54. // Resolver is used for looking up types when expanding google.protobuf.Any
  55. // messages. If nil, this defaults to using protoregistry.GlobalTypes.
  56. Resolver interface {
  57. protoregistry.ExtensionTypeResolver
  58. protoregistry.MessageTypeResolver
  59. }
  60. }
  61. // Marshal marshals the given proto.Message in the JSON format using options in
  62. // MarshalOptions.
  63. func (o MarshalOptions) Marshal(m proto.Message) ([]byte, error) {
  64. var err error
  65. o.encoder, err = json.NewEncoder(o.Indent)
  66. if err != nil {
  67. return nil, err
  68. }
  69. if o.Resolver == nil {
  70. o.Resolver = protoregistry.GlobalTypes
  71. }
  72. err = o.marshalMessage(m.ProtoReflect())
  73. if err != nil {
  74. return nil, err
  75. }
  76. if o.AllowPartial {
  77. return o.encoder.Bytes(), nil
  78. }
  79. return o.encoder.Bytes(), proto.IsInitialized(m)
  80. }
  81. // marshalMessage marshals the given protoreflect.Message.
  82. func (o MarshalOptions) marshalMessage(m pref.Message) error {
  83. if isCustomType(m.Descriptor().FullName()) {
  84. return o.marshalCustomType(m)
  85. }
  86. o.encoder.StartObject()
  87. defer o.encoder.EndObject()
  88. if err := o.marshalFields(m); err != nil {
  89. return err
  90. }
  91. return nil
  92. }
  93. // marshalFields marshals the fields in the given protoreflect.Message.
  94. func (o MarshalOptions) marshalFields(m pref.Message) error {
  95. messageDesc := m.Descriptor()
  96. if !flags.ProtoLegacy && messageset.IsMessageSet(messageDesc) {
  97. return errors.New("no support for proto1 MessageSets")
  98. }
  99. // Marshal out known fields.
  100. fieldDescs := messageDesc.Fields()
  101. for i := 0; i < fieldDescs.Len(); i++ {
  102. fd := fieldDescs.Get(i)
  103. val := m.Get(fd)
  104. if !m.Has(fd) {
  105. if !o.EmitUnpopulated || fd.ContainingOneof() != nil {
  106. continue
  107. }
  108. isProto2Scalar := fd.Syntax() == pref.Proto2 && fd.Default().IsValid()
  109. isSingularMessage := fd.Cardinality() != pref.Repeated && fd.Message() != nil
  110. if isProto2Scalar || isSingularMessage {
  111. // Use invalid value to emit null.
  112. val = pref.Value{}
  113. }
  114. }
  115. name := fd.JSONName()
  116. if o.UseProtoNames {
  117. name = string(fd.Name())
  118. // Use type name for group field name.
  119. if fd.Kind() == pref.GroupKind {
  120. name = string(fd.Message().Name())
  121. }
  122. }
  123. if err := o.encoder.WriteName(name); err != nil {
  124. return err
  125. }
  126. if err := o.marshalValue(val, fd); err != nil {
  127. return err
  128. }
  129. }
  130. // Marshal out extensions.
  131. if err := o.marshalExtensions(m); err != nil {
  132. return err
  133. }
  134. return nil
  135. }
  136. // marshalValue marshals the given protoreflect.Value.
  137. func (o MarshalOptions) marshalValue(val pref.Value, fd pref.FieldDescriptor) error {
  138. switch {
  139. case fd.IsList():
  140. return o.marshalList(val.List(), fd)
  141. case fd.IsMap():
  142. return o.marshalMap(val.Map(), fd)
  143. default:
  144. return o.marshalSingular(val, fd)
  145. }
  146. }
  147. // marshalSingular marshals the given non-repeated field value. This includes
  148. // all scalar types, enums, messages, and groups.
  149. func (o MarshalOptions) marshalSingular(val pref.Value, fd pref.FieldDescriptor) error {
  150. if !val.IsValid() {
  151. o.encoder.WriteNull()
  152. return nil
  153. }
  154. switch kind := fd.Kind(); kind {
  155. case pref.BoolKind:
  156. o.encoder.WriteBool(val.Bool())
  157. case pref.StringKind:
  158. if err := o.encoder.WriteString(val.String()); err != nil {
  159. return err
  160. }
  161. case pref.Int32Kind, pref.Sint32Kind, pref.Sfixed32Kind:
  162. o.encoder.WriteInt(val.Int())
  163. case pref.Uint32Kind, pref.Fixed32Kind:
  164. o.encoder.WriteUint(val.Uint())
  165. case pref.Int64Kind, pref.Sint64Kind, pref.Uint64Kind,
  166. pref.Sfixed64Kind, pref.Fixed64Kind:
  167. // 64-bit integers are written out as JSON string.
  168. o.encoder.WriteString(val.String())
  169. case pref.FloatKind:
  170. // Encoder.WriteFloat handles the special numbers NaN and infinites.
  171. o.encoder.WriteFloat(val.Float(), 32)
  172. case pref.DoubleKind:
  173. // Encoder.WriteFloat handles the special numbers NaN and infinites.
  174. o.encoder.WriteFloat(val.Float(), 64)
  175. case pref.BytesKind:
  176. err := o.encoder.WriteString(base64.StdEncoding.EncodeToString(val.Bytes()))
  177. if err != nil {
  178. return err
  179. }
  180. case pref.EnumKind:
  181. if fd.Enum().FullName() == "google.protobuf.NullValue" {
  182. o.encoder.WriteNull()
  183. } else {
  184. desc := fd.Enum().Values().ByNumber(val.Enum())
  185. if o.UseEnumNumbers || desc == nil {
  186. o.encoder.WriteInt(int64(val.Enum()))
  187. } else {
  188. err := o.encoder.WriteString(string(desc.Name()))
  189. if err != nil {
  190. return err
  191. }
  192. }
  193. }
  194. case pref.MessageKind, pref.GroupKind:
  195. if err := o.marshalMessage(val.Message()); err != nil {
  196. return err
  197. }
  198. default:
  199. panic(fmt.Sprintf("%v has unknown kind: %v", fd.FullName(), kind))
  200. }
  201. return nil
  202. }
  203. // marshalList marshals the given protoreflect.List.
  204. func (o MarshalOptions) marshalList(list pref.List, fd pref.FieldDescriptor) error {
  205. o.encoder.StartArray()
  206. defer o.encoder.EndArray()
  207. for i := 0; i < list.Len(); i++ {
  208. item := list.Get(i)
  209. if err := o.marshalSingular(item, fd); err != nil {
  210. return err
  211. }
  212. }
  213. return nil
  214. }
  215. type mapEntry struct {
  216. key pref.MapKey
  217. value pref.Value
  218. }
  219. // marshalMap marshals given protoreflect.Map.
  220. func (o MarshalOptions) marshalMap(mmap pref.Map, fd pref.FieldDescriptor) error {
  221. o.encoder.StartObject()
  222. defer o.encoder.EndObject()
  223. // Get a sorted list based on keyType first.
  224. entries := make([]mapEntry, 0, mmap.Len())
  225. mmap.Range(func(key pref.MapKey, val pref.Value) bool {
  226. entries = append(entries, mapEntry{key: key, value: val})
  227. return true
  228. })
  229. sortMap(fd.MapKey().Kind(), entries)
  230. // Write out sorted list.
  231. for _, entry := range entries {
  232. if err := o.encoder.WriteName(entry.key.String()); err != nil {
  233. return err
  234. }
  235. if err := o.marshalSingular(entry.value, fd.MapValue()); err != nil {
  236. return err
  237. }
  238. }
  239. return nil
  240. }
  241. // sortMap orders list based on value of key field for deterministic ordering.
  242. func sortMap(keyKind pref.Kind, values []mapEntry) {
  243. sort.Slice(values, func(i, j int) bool {
  244. switch keyKind {
  245. case pref.Int32Kind, pref.Sint32Kind, pref.Sfixed32Kind,
  246. pref.Int64Kind, pref.Sint64Kind, pref.Sfixed64Kind:
  247. return values[i].key.Int() < values[j].key.Int()
  248. case pref.Uint32Kind, pref.Fixed32Kind,
  249. pref.Uint64Kind, pref.Fixed64Kind:
  250. return values[i].key.Uint() < values[j].key.Uint()
  251. }
  252. return values[i].key.String() < values[j].key.String()
  253. })
  254. }
  255. // marshalExtensions marshals extension fields.
  256. func (o MarshalOptions) marshalExtensions(m pref.Message) error {
  257. type entry struct {
  258. key string
  259. value pref.Value
  260. desc pref.FieldDescriptor
  261. }
  262. // Get a sorted list based on field key first.
  263. var entries []entry
  264. m.Range(func(fd pref.FieldDescriptor, v pref.Value) bool {
  265. if !fd.IsExtension() {
  266. return true
  267. }
  268. // For MessageSet extensions, the name used is the parent message.
  269. name := fd.FullName()
  270. if messageset.IsMessageSetExtension(fd) {
  271. name = name.Parent()
  272. }
  273. // Use [name] format for JSON field name.
  274. entries = append(entries, entry{
  275. key: string(name),
  276. value: v,
  277. desc: fd,
  278. })
  279. return true
  280. })
  281. // Sort extensions lexicographically.
  282. sort.Slice(entries, func(i, j int) bool {
  283. return entries[i].key < entries[j].key
  284. })
  285. // Write out sorted list.
  286. for _, entry := range entries {
  287. // JSON field name is the proto field name enclosed in [], similar to
  288. // textproto. This is consistent with Go v1 lib. C++ lib v3.7.0 does not
  289. // marshal out extension fields.
  290. if err := o.encoder.WriteName("[" + entry.key + "]"); err != nil {
  291. return err
  292. }
  293. if err := o.marshalValue(entry.value, entry.desc); err != nil {
  294. return err
  295. }
  296. }
  297. return nil
  298. }