Home | History | Annotate | Download | only in jsonpb
      1 // Go support for Protocol Buffers - Google's data interchange format
      2 //
      3 // Copyright 2015 The Go Authors.  All rights reserved.
      4 // https://github.com/golang/protobuf
      5 //
      6 // Redistribution and use in source and binary forms, with or without
      7 // modification, are permitted provided that the following conditions are
      8 // met:
      9 //
     10 //     * Redistributions of source code must retain the above copyright
     11 // notice, this list of conditions and the following disclaimer.
     12 //     * Redistributions in binary form must reproduce the above
     13 // copyright notice, this list of conditions and the following disclaimer
     14 // in the documentation and/or other materials provided with the
     15 // distribution.
     16 //     * Neither the name of Google Inc. nor the names of its
     17 // contributors may be used to endorse or promote products derived from
     18 // this software without specific prior written permission.
     19 //
     20 // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
     21 // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
     22 // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
     23 // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
     24 // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
     25 // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
     26 // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     27 // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     28 // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     29 // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
     30 // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     31 
     32 /*
     33 Package jsonpb provides marshaling and unmarshaling between protocol buffers and JSON.
     34 It follows the specification at https://developers.google.com/protocol-buffers/docs/proto3#json.
     35 
     36 This package produces a different output than the standard "encoding/json" package,
     37 which does not operate correctly on protocol buffers.
     38 */
     39 package jsonpb
     40 
     41 import (
     42 	"bytes"
     43 	"encoding/json"
     44 	"errors"
     45 	"fmt"
     46 	"io"
     47 	"math"
     48 	"reflect"
     49 	"sort"
     50 	"strconv"
     51 	"strings"
     52 	"time"
     53 
     54 	"github.com/golang/protobuf/proto"
     55 
     56 	stpb "github.com/golang/protobuf/ptypes/struct"
     57 )
     58 
     59 const secondInNanos = int64(time.Second / time.Nanosecond)
     60 
     61 // Marshaler is a configurable object for converting between
     62 // protocol buffer objects and a JSON representation for them.
     63 type Marshaler struct {
     64 	// Whether to render enum values as integers, as opposed to string values.
     65 	EnumsAsInts bool
     66 
     67 	// Whether to render fields with zero values.
     68 	EmitDefaults bool
     69 
     70 	// A string to indent each level by. The presence of this field will
     71 	// also cause a space to appear between the field separator and
     72 	// value, and for newlines to be appear between fields and array
     73 	// elements.
     74 	Indent string
     75 
     76 	// Whether to use the original (.proto) name for fields.
     77 	OrigName bool
     78 
     79 	// A custom URL resolver to use when marshaling Any messages to JSON.
     80 	// If unset, the default resolution strategy is to extract the
     81 	// fully-qualified type name from the type URL and pass that to
     82 	// proto.MessageType(string).
     83 	AnyResolver AnyResolver
     84 }
     85 
     86 // AnyResolver takes a type URL, present in an Any message, and resolves it into
     87 // an instance of the associated message.
     88 type AnyResolver interface {
     89 	Resolve(typeUrl string) (proto.Message, error)
     90 }
     91 
     92 func defaultResolveAny(typeUrl string) (proto.Message, error) {
     93 	// Only the part of typeUrl after the last slash is relevant.
     94 	mname := typeUrl
     95 	if slash := strings.LastIndex(mname, "/"); slash >= 0 {
     96 		mname = mname[slash+1:]
     97 	}
     98 	mt := proto.MessageType(mname)
     99 	if mt == nil {
    100 		return nil, fmt.Errorf("unknown message type %q", mname)
    101 	}
    102 	return reflect.New(mt.Elem()).Interface().(proto.Message), nil
    103 }
    104 
    105 // JSONPBMarshaler is implemented by protobuf messages that customize the
    106 // way they are marshaled to JSON. Messages that implement this should
    107 // also implement JSONPBUnmarshaler so that the custom format can be
    108 // parsed.
    109 //
    110 // The JSON marshaling must follow the proto to JSON specification:
    111 //	https://developers.google.com/protocol-buffers/docs/proto3#json
    112 type JSONPBMarshaler interface {
    113 	MarshalJSONPB(*Marshaler) ([]byte, error)
    114 }
    115 
    116 // JSONPBUnmarshaler is implemented by protobuf messages that customize
    117 // the way they are unmarshaled from JSON. Messages that implement this
    118 // should also implement JSONPBMarshaler so that the custom format can be
    119 // produced.
    120 //
    121 // The JSON unmarshaling must follow the JSON to proto specification:
    122 //	https://developers.google.com/protocol-buffers/docs/proto3#json
    123 type JSONPBUnmarshaler interface {
    124 	UnmarshalJSONPB(*Unmarshaler, []byte) error
    125 }
    126 
    127 // Marshal marshals a protocol buffer into JSON.
    128 func (m *Marshaler) Marshal(out io.Writer, pb proto.Message) error {
    129 	v := reflect.ValueOf(pb)
    130 	if pb == nil || (v.Kind() == reflect.Ptr && v.IsNil()) {
    131 		return errors.New("Marshal called with nil")
    132 	}
    133 	// Check for unset required fields first.
    134 	if err := checkRequiredFields(pb); err != nil {
    135 		return err
    136 	}
    137 	writer := &errWriter{writer: out}
    138 	return m.marshalObject(writer, pb, "", "")
    139 }
    140 
    141 // MarshalToString converts a protocol buffer object to JSON string.
    142 func (m *Marshaler) MarshalToString(pb proto.Message) (string, error) {
    143 	var buf bytes.Buffer
    144 	if err := m.Marshal(&buf, pb); err != nil {
    145 		return "", err
    146 	}
    147 	return buf.String(), nil
    148 }
    149 
    150 type int32Slice []int32
    151 
    152 var nonFinite = map[string]float64{
    153 	`"NaN"`:       math.NaN(),
    154 	`"Infinity"`:  math.Inf(1),
    155 	`"-Infinity"`: math.Inf(-1),
    156 }
    157 
    158 // For sorting extensions ids to ensure stable output.
    159 func (s int32Slice) Len() int           { return len(s) }
    160 func (s int32Slice) Less(i, j int) bool { return s[i] < s[j] }
    161 func (s int32Slice) Swap(i, j int)      { s[i], s[j] = s[j], s[i] }
    162 
    163 type wkt interface {
    164 	XXX_WellKnownType() string
    165 }
    166 
    167 // marshalObject writes a struct to the Writer.
    168 func (m *Marshaler) marshalObject(out *errWriter, v proto.Message, indent, typeURL string) error {
    169 	if jsm, ok := v.(JSONPBMarshaler); ok {
    170 		b, err := jsm.MarshalJSONPB(m)
    171 		if err != nil {
    172 			return err
    173 		}
    174 		if typeURL != "" {
    175 			// we are marshaling this object to an Any type
    176 			var js map[string]*json.RawMessage
    177 			if err = json.Unmarshal(b, &js); err != nil {
    178 				return fmt.Errorf("type %T produced invalid JSON: %v", v, err)
    179 			}
    180 			turl, err := json.Marshal(typeURL)
    181 			if err != nil {
    182 				return fmt.Errorf("failed to marshal type URL %q to JSON: %v", typeURL, err)
    183 			}
    184 			js["@type"] = (*json.RawMessage)(&turl)
    185 			if b, err = json.Marshal(js); err != nil {
    186 				return err
    187 			}
    188 		}
    189 
    190 		out.write(string(b))
    191 		return out.err
    192 	}
    193 
    194 	s := reflect.ValueOf(v).Elem()
    195 
    196 	// Handle well-known types.
    197 	if wkt, ok := v.(wkt); ok {
    198 		switch wkt.XXX_WellKnownType() {
    199 		case "DoubleValue", "FloatValue", "Int64Value", "UInt64Value",
    200 			"Int32Value", "UInt32Value", "BoolValue", "StringValue", "BytesValue":
    201 			// "Wrappers use the same representation in JSON
    202 			//  as the wrapped primitive type, ..."
    203 			sprop := proto.GetProperties(s.Type())
    204 			return m.marshalValue(out, sprop.Prop[0], s.Field(0), indent)
    205 		case "Any":
    206 			// Any is a bit more involved.
    207 			return m.marshalAny(out, v, indent)
    208 		case "Duration":
    209 			// "Generated output always contains 0, 3, 6, or 9 fractional digits,
    210 			//  depending on required precision."
    211 			s, ns := s.Field(0).Int(), s.Field(1).Int()
    212 			if ns <= -secondInNanos || ns >= secondInNanos {
    213 				return fmt.Errorf("ns out of range (%v, %v)", -secondInNanos, secondInNanos)
    214 			}
    215 			if (s > 0 && ns < 0) || (s < 0 && ns > 0) {
    216 				return errors.New("signs of seconds and nanos do not match")
    217 			}
    218 			if s < 0 {
    219 				ns = -ns
    220 			}
    221 			x := fmt.Sprintf("%d.%09d", s, ns)
    222 			x = strings.TrimSuffix(x, "000")
    223 			x = strings.TrimSuffix(x, "000")
    224 			x = strings.TrimSuffix(x, ".000")
    225 			out.write(`"`)
    226 			out.write(x)
    227 			out.write(`s"`)
    228 			return out.err
    229 		case "Struct", "ListValue":
    230 			// Let marshalValue handle the `Struct.fields` map or the `ListValue.values` slice.
    231 			// TODO: pass the correct Properties if needed.
    232 			return m.marshalValue(out, &proto.Properties{}, s.Field(0), indent)
    233 		case "Timestamp":
    234 			// "RFC 3339, where generated output will always be Z-normalized
    235 			//  and uses 0, 3, 6 or 9 fractional digits."
    236 			s, ns := s.Field(0).Int(), s.Field(1).Int()
    237 			if ns < 0 || ns >= secondInNanos {
    238 				return fmt.Errorf("ns out of range [0, %v)", secondInNanos)
    239 			}
    240 			t := time.Unix(s, ns).UTC()
    241 			// time.RFC3339Nano isn't exactly right (we need to get 3/6/9 fractional digits).
    242 			x := t.Format("2006-01-02T15:04:05.000000000")
    243 			x = strings.TrimSuffix(x, "000")
    244 			x = strings.TrimSuffix(x, "000")
    245 			x = strings.TrimSuffix(x, ".000")
    246 			out.write(`"`)
    247 			out.write(x)
    248 			out.write(`Z"`)
    249 			return out.err
    250 		case "Value":
    251 			// Value has a single oneof.
    252 			kind := s.Field(0)
    253 			if kind.IsNil() {
    254 				// "absence of any variant indicates an error"
    255 				return errors.New("nil Value")
    256 			}
    257 			// oneof -> *T -> T -> T.F
    258 			x := kind.Elem().Elem().Field(0)
    259 			// TODO: pass the correct Properties if needed.
    260 			return m.marshalValue(out, &proto.Properties{}, x, indent)
    261 		}
    262 	}
    263 
    264 	out.write("{")
    265 	if m.Indent != "" {
    266 		out.write("\n")
    267 	}
    268 
    269 	firstField := true
    270 
    271 	if typeURL != "" {
    272 		if err := m.marshalTypeURL(out, indent, typeURL); err != nil {
    273 			return err
    274 		}
    275 		firstField = false
    276 	}
    277 
    278 	for i := 0; i < s.NumField(); i++ {
    279 		value := s.Field(i)
    280 		valueField := s.Type().Field(i)
    281 		if strings.HasPrefix(valueField.Name, "XXX_") {
    282 			continue
    283 		}
    284 
    285 		// IsNil will panic on most value kinds.
    286 		switch value.Kind() {
    287 		case reflect.Chan, reflect.Func, reflect.Interface:
    288 			if value.IsNil() {
    289 				continue
    290 			}
    291 		}
    292 
    293 		if !m.EmitDefaults {
    294 			switch value.Kind() {
    295 			case reflect.Bool:
    296 				if !value.Bool() {
    297 					continue
    298 				}
    299 			case reflect.Int32, reflect.Int64:
    300 				if value.Int() == 0 {
    301 					continue
    302 				}
    303 			case reflect.Uint32, reflect.Uint64:
    304 				if value.Uint() == 0 {
    305 					continue
    306 				}
    307 			case reflect.Float32, reflect.Float64:
    308 				if value.Float() == 0 {
    309 					continue
    310 				}
    311 			case reflect.String:
    312 				if value.Len() == 0 {
    313 					continue
    314 				}
    315 			case reflect.Map, reflect.Ptr, reflect.Slice:
    316 				if value.IsNil() {
    317 					continue
    318 				}
    319 			}
    320 		}
    321 
    322 		// Oneof fields need special handling.
    323 		if valueField.Tag.Get("protobuf_oneof") != "" {
    324 			// value is an interface containing &T{real_value}.
    325 			sv := value.Elem().Elem() // interface -> *T -> T
    326 			value = sv.Field(0)
    327 			valueField = sv.Type().Field(0)
    328 		}
    329 		prop := jsonProperties(valueField, m.OrigName)
    330 		if !firstField {
    331 			m.writeSep(out)
    332 		}
    333 		if err := m.marshalField(out, prop, value, indent); err != nil {
    334 			return err
    335 		}
    336 		firstField = false
    337 	}
    338 
    339 	// Handle proto2 extensions.
    340 	if ep, ok := v.(proto.Message); ok {
    341 		extensions := proto.RegisteredExtensions(v)
    342 		// Sort extensions for stable output.
    343 		ids := make([]int32, 0, len(extensions))
    344 		for id, desc := range extensions {
    345 			if !proto.HasExtension(ep, desc) {
    346 				continue
    347 			}
    348 			ids = append(ids, id)
    349 		}
    350 		sort.Sort(int32Slice(ids))
    351 		for _, id := range ids {
    352 			desc := extensions[id]
    353 			if desc == nil {
    354 				// unknown extension
    355 				continue
    356 			}
    357 			ext, extErr := proto.GetExtension(ep, desc)
    358 			if extErr != nil {
    359 				return extErr
    360 			}
    361 			value := reflect.ValueOf(ext)
    362 			var prop proto.Properties
    363 			prop.Parse(desc.Tag)
    364 			prop.JSONName = fmt.Sprintf("[%s]", desc.Name)
    365 			if !firstField {
    366 				m.writeSep(out)
    367 			}
    368 			if err := m.marshalField(out, &prop, value, indent); err != nil {
    369 				return err
    370 			}
    371 			firstField = false
    372 		}
    373 
    374 	}
    375 
    376 	if m.Indent != "" {
    377 		out.write("\n")
    378 		out.write(indent)
    379 	}
    380 	out.write("}")
    381 	return out.err
    382 }
    383 
    384 func (m *Marshaler) writeSep(out *errWriter) {
    385 	if m.Indent != "" {
    386 		out.write(",\n")
    387 	} else {
    388 		out.write(",")
    389 	}
    390 }
    391 
    392 func (m *Marshaler) marshalAny(out *errWriter, any proto.Message, indent string) error {
    393 	// "If the Any contains a value that has a special JSON mapping,
    394 	//  it will be converted as follows: {"@type": xxx, "value": yyy}.
    395 	//  Otherwise, the value will be converted into a JSON object,
    396 	//  and the "@type" field will be inserted to indicate the actual data type."
    397 	v := reflect.ValueOf(any).Elem()
    398 	turl := v.Field(0).String()
    399 	val := v.Field(1).Bytes()
    400 
    401 	var msg proto.Message
    402 	var err error
    403 	if m.AnyResolver != nil {
    404 		msg, err = m.AnyResolver.Resolve(turl)
    405 	} else {
    406 		msg, err = defaultResolveAny(turl)
    407 	}
    408 	if err != nil {
    409 		return err
    410 	}
    411 
    412 	if err := proto.Unmarshal(val, msg); err != nil {
    413 		return err
    414 	}
    415 
    416 	if _, ok := msg.(wkt); ok {
    417 		out.write("{")
    418 		if m.Indent != "" {
    419 			out.write("\n")
    420 		}
    421 		if err := m.marshalTypeURL(out, indent, turl); err != nil {
    422 			return err
    423 		}
    424 		m.writeSep(out)
    425 		if m.Indent != "" {
    426 			out.write(indent)
    427 			out.write(m.Indent)
    428 			out.write(`"value": `)
    429 		} else {
    430 			out.write(`"value":`)
    431 		}
    432 		if err := m.marshalObject(out, msg, indent+m.Indent, ""); err != nil {
    433 			return err
    434 		}
    435 		if m.Indent != "" {
    436 			out.write("\n")
    437 			out.write(indent)
    438 		}
    439 		out.write("}")
    440 		return out.err
    441 	}
    442 
    443 	return m.marshalObject(out, msg, indent, turl)
    444 }
    445 
    446 func (m *Marshaler) marshalTypeURL(out *errWriter, indent, typeURL string) error {
    447 	if m.Indent != "" {
    448 		out.write(indent)
    449 		out.write(m.Indent)
    450 	}
    451 	out.write(`"@type":`)
    452 	if m.Indent != "" {
    453 		out.write(" ")
    454 	}
    455 	b, err := json.Marshal(typeURL)
    456 	if err != nil {
    457 		return err
    458 	}
    459 	out.write(string(b))
    460 	return out.err
    461 }
    462 
    463 // marshalField writes field description and value to the Writer.
    464 func (m *Marshaler) marshalField(out *errWriter, prop *proto.Properties, v reflect.Value, indent string) error {
    465 	if m.Indent != "" {
    466 		out.write(indent)
    467 		out.write(m.Indent)
    468 	}
    469 	out.write(`"`)
    470 	out.write(prop.JSONName)
    471 	out.write(`":`)
    472 	if m.Indent != "" {
    473 		out.write(" ")
    474 	}
    475 	if err := m.marshalValue(out, prop, v, indent); err != nil {
    476 		return err
    477 	}
    478 	return nil
    479 }
    480 
    481 // marshalValue writes the value to the Writer.
    482 func (m *Marshaler) marshalValue(out *errWriter, prop *proto.Properties, v reflect.Value, indent string) error {
    483 	var err error
    484 	v = reflect.Indirect(v)
    485 
    486 	// Handle nil pointer
    487 	if v.Kind() == reflect.Invalid {
    488 		out.write("null")
    489 		return out.err
    490 	}
    491 
    492 	// Handle repeated elements.
    493 	if v.Kind() == reflect.Slice && v.Type().Elem().Kind() != reflect.Uint8 {
    494 		out.write("[")
    495 		comma := ""
    496 		for i := 0; i < v.Len(); i++ {
    497 			sliceVal := v.Index(i)
    498 			out.write(comma)
    499 			if m.Indent != "" {
    500 				out.write("\n")
    501 				out.write(indent)
    502 				out.write(m.Indent)
    503 				out.write(m.Indent)
    504 			}
    505 			if err := m.marshalValue(out, prop, sliceVal, indent+m.Indent); err != nil {
    506 				return err
    507 			}
    508 			comma = ","
    509 		}
    510 		if m.Indent != "" {
    511 			out.write("\n")
    512 			out.write(indent)
    513 			out.write(m.Indent)
    514 		}
    515 		out.write("]")
    516 		return out.err
    517 	}
    518 
    519 	// Handle well-known types.
    520 	// Most are handled up in marshalObject (because 99% are messages).
    521 	if wkt, ok := v.Interface().(wkt); ok {
    522 		switch wkt.XXX_WellKnownType() {
    523 		case "NullValue":
    524 			out.write("null")
    525 			return out.err
    526 		}
    527 	}
    528 
    529 	// Handle enumerations.
    530 	if !m.EnumsAsInts && prop.Enum != "" {
    531 		// Unknown enum values will are stringified by the proto library as their
    532 		// value. Such values should _not_ be quoted or they will be interpreted
    533 		// as an enum string instead of their value.
    534 		enumStr := v.Interface().(fmt.Stringer).String()
    535 		var valStr string
    536 		if v.Kind() == reflect.Ptr {
    537 			valStr = strconv.Itoa(int(v.Elem().Int()))
    538 		} else {
    539 			valStr = strconv.Itoa(int(v.Int()))
    540 		}
    541 		isKnownEnum := enumStr != valStr
    542 		if isKnownEnum {
    543 			out.write(`"`)
    544 		}
    545 		out.write(enumStr)
    546 		if isKnownEnum {
    547 			out.write(`"`)
    548 		}
    549 		return out.err
    550 	}
    551 
    552 	// Handle nested messages.
    553 	if v.Kind() == reflect.Struct {
    554 		return m.marshalObject(out, v.Addr().Interface().(proto.Message), indent+m.Indent, "")
    555 	}
    556 
    557 	// Handle maps.
    558 	// Since Go randomizes map iteration, we sort keys for stable output.
    559 	if v.Kind() == reflect.Map {
    560 		out.write(`{`)
    561 		keys := v.MapKeys()
    562 		sort.Sort(mapKeys(keys))
    563 		for i, k := range keys {
    564 			if i > 0 {
    565 				out.write(`,`)
    566 			}
    567 			if m.Indent != "" {
    568 				out.write("\n")
    569 				out.write(indent)
    570 				out.write(m.Indent)
    571 				out.write(m.Indent)
    572 			}
    573 
    574 			// TODO handle map key prop properly
    575 			b, err := json.Marshal(k.Interface())
    576 			if err != nil {
    577 				return err
    578 			}
    579 			s := string(b)
    580 
    581 			// If the JSON is not a string value, encode it again to make it one.
    582 			if !strings.HasPrefix(s, `"`) {
    583 				b, err := json.Marshal(s)
    584 				if err != nil {
    585 					return err
    586 				}
    587 				s = string(b)
    588 			}
    589 
    590 			out.write(s)
    591 			out.write(`:`)
    592 			if m.Indent != "" {
    593 				out.write(` `)
    594 			}
    595 
    596 			vprop := prop
    597 			if prop != nil && prop.MapValProp != nil {
    598 				vprop = prop.MapValProp
    599 			}
    600 			if err := m.marshalValue(out, vprop, v.MapIndex(k), indent+m.Indent); err != nil {
    601 				return err
    602 			}
    603 		}
    604 		if m.Indent != "" {
    605 			out.write("\n")
    606 			out.write(indent)
    607 			out.write(m.Indent)
    608 		}
    609 		out.write(`}`)
    610 		return out.err
    611 	}
    612 
    613 	// Handle non-finite floats, e.g. NaN, Infinity and -Infinity.
    614 	if v.Kind() == reflect.Float32 || v.Kind() == reflect.Float64 {
    615 		f := v.Float()
    616 		var sval string
    617 		switch {
    618 		case math.IsInf(f, 1):
    619 			sval = `"Infinity"`
    620 		case math.IsInf(f, -1):
    621 			sval = `"-Infinity"`
    622 		case math.IsNaN(f):
    623 			sval = `"NaN"`
    624 		}
    625 		if sval != "" {
    626 			out.write(sval)
    627 			return out.err
    628 		}
    629 	}
    630 
    631 	// Default handling defers to the encoding/json library.
    632 	b, err := json.Marshal(v.Interface())
    633 	if err != nil {
    634 		return err
    635 	}
    636 	needToQuote := string(b[0]) != `"` && (v.Kind() == reflect.Int64 || v.Kind() == reflect.Uint64)
    637 	if needToQuote {
    638 		out.write(`"`)
    639 	}
    640 	out.write(string(b))
    641 	if needToQuote {
    642 		out.write(`"`)
    643 	}
    644 	return out.err
    645 }
    646 
    647 // Unmarshaler is a configurable object for converting from a JSON
    648 // representation to a protocol buffer object.
    649 type Unmarshaler struct {
    650 	// Whether to allow messages to contain unknown fields, as opposed to
    651 	// failing to unmarshal.
    652 	AllowUnknownFields bool
    653 
    654 	// A custom URL resolver to use when unmarshaling Any messages from JSON.
    655 	// If unset, the default resolution strategy is to extract the
    656 	// fully-qualified type name from the type URL and pass that to
    657 	// proto.MessageType(string).
    658 	AnyResolver AnyResolver
    659 }
    660 
    661 // UnmarshalNext unmarshals the next protocol buffer from a JSON object stream.
    662 // This function is lenient and will decode any options permutations of the
    663 // related Marshaler.
    664 func (u *Unmarshaler) UnmarshalNext(dec *json.Decoder, pb proto.Message) error {
    665 	inputValue := json.RawMessage{}
    666 	if err := dec.Decode(&inputValue); err != nil {
    667 		return err
    668 	}
    669 	if err := u.unmarshalValue(reflect.ValueOf(pb).Elem(), inputValue, nil); err != nil {
    670 		return err
    671 	}
    672 	return checkRequiredFields(pb)
    673 }
    674 
    675 // Unmarshal unmarshals a JSON object stream into a protocol
    676 // buffer. This function is lenient and will decode any options
    677 // permutations of the related Marshaler.
    678 func (u *Unmarshaler) Unmarshal(r io.Reader, pb proto.Message) error {
    679 	dec := json.NewDecoder(r)
    680 	return u.UnmarshalNext(dec, pb)
    681 }
    682 
    683 // UnmarshalNext unmarshals the next protocol buffer from a JSON object stream.
    684 // This function is lenient and will decode any options permutations of the
    685 // related Marshaler.
    686 func UnmarshalNext(dec *json.Decoder, pb proto.Message) error {
    687 	return new(Unmarshaler).UnmarshalNext(dec, pb)
    688 }
    689 
    690 // Unmarshal unmarshals a JSON object stream into a protocol
    691 // buffer. This function is lenient and will decode any options
    692 // permutations of the related Marshaler.
    693 func Unmarshal(r io.Reader, pb proto.Message) error {
    694 	return new(Unmarshaler).Unmarshal(r, pb)
    695 }
    696 
    697 // UnmarshalString will populate the fields of a protocol buffer based
    698 // on a JSON string. This function is lenient and will decode any options
    699 // permutations of the related Marshaler.
    700 func UnmarshalString(str string, pb proto.Message) error {
    701 	return new(Unmarshaler).Unmarshal(strings.NewReader(str), pb)
    702 }
    703 
    704 // unmarshalValue converts/copies a value into the target.
    705 // prop may be nil.
    706 func (u *Unmarshaler) unmarshalValue(target reflect.Value, inputValue json.RawMessage, prop *proto.Properties) error {
    707 	targetType := target.Type()
    708 
    709 	// Allocate memory for pointer fields.
    710 	if targetType.Kind() == reflect.Ptr {
    711 		// If input value is "null" and target is a pointer type, then the field should be treated as not set
    712 		// UNLESS the target is structpb.Value, in which case it should be set to structpb.NullValue.
    713 		_, isJSONPBUnmarshaler := target.Interface().(JSONPBUnmarshaler)
    714 		if string(inputValue) == "null" && targetType != reflect.TypeOf(&stpb.Value{}) && !isJSONPBUnmarshaler {
    715 			return nil
    716 		}
    717 		target.Set(reflect.New(targetType.Elem()))
    718 
    719 		return u.unmarshalValue(target.Elem(), inputValue, prop)
    720 	}
    721 
    722 	if jsu, ok := target.Addr().Interface().(JSONPBUnmarshaler); ok {
    723 		return jsu.UnmarshalJSONPB(u, []byte(inputValue))
    724 	}
    725 
    726 	// Handle well-known types that are not pointers.
    727 	if w, ok := target.Addr().Interface().(wkt); ok {
    728 		switch w.XXX_WellKnownType() {
    729 		case "DoubleValue", "FloatValue", "Int64Value", "UInt64Value",
    730 			"Int32Value", "UInt32Value", "BoolValue", "StringValue", "BytesValue":
    731 			return u.unmarshalValue(target.Field(0), inputValue, prop)
    732 		case "Any":
    733 			// Use json.RawMessage pointer type instead of value to support pre-1.8 version.
    734 			// 1.8 changed RawMessage.MarshalJSON from pointer type to value type, see
    735 			// https://github.com/golang/go/issues/14493
    736 			var jsonFields map[string]*json.RawMessage
    737 			if err := json.Unmarshal(inputValue, &jsonFields); err != nil {
    738 				return err
    739 			}
    740 
    741 			val, ok := jsonFields["@type"]
    742 			if !ok || val == nil {
    743 				return errors.New("Any JSON doesn't have '@type'")
    744 			}
    745 
    746 			var turl string
    747 			if err := json.Unmarshal([]byte(*val), &turl); err != nil {
    748 				return fmt.Errorf("can't unmarshal Any's '@type': %q", *val)
    749 			}
    750 			target.Field(0).SetString(turl)
    751 
    752 			var m proto.Message
    753 			var err error
    754 			if u.AnyResolver != nil {
    755 				m, err = u.AnyResolver.Resolve(turl)
    756 			} else {
    757 				m, err = defaultResolveAny(turl)
    758 			}
    759 			if err != nil {
    760 				return err
    761 			}
    762 
    763 			if _, ok := m.(wkt); ok {
    764 				val, ok := jsonFields["value"]
    765 				if !ok {
    766 					return errors.New("Any JSON doesn't have 'value'")
    767 				}
    768 
    769 				if err := u.unmarshalValue(reflect.ValueOf(m).Elem(), *val, nil); err != nil {
    770 					return fmt.Errorf("can't unmarshal Any nested proto %T: %v", m, err)
    771 				}
    772 			} else {
    773 				delete(jsonFields, "@type")
    774 				nestedProto, err := json.Marshal(jsonFields)
    775 				if err != nil {
    776 					return fmt.Errorf("can't generate JSON for Any's nested proto to be unmarshaled: %v", err)
    777 				}
    778 
    779 				if err = u.unmarshalValue(reflect.ValueOf(m).Elem(), nestedProto, nil); err != nil {
    780 					return fmt.Errorf("can't unmarshal Any nested proto %T: %v", m, err)
    781 				}
    782 			}
    783 
    784 			b, err := proto.Marshal(m)
    785 			if err != nil {
    786 				return fmt.Errorf("can't marshal proto %T into Any.Value: %v", m, err)
    787 			}
    788 			target.Field(1).SetBytes(b)
    789 
    790 			return nil
    791 		case "Duration":
    792 			unq, err := unquote(string(inputValue))
    793 			if err != nil {
    794 				return err
    795 			}
    796 
    797 			d, err := time.ParseDuration(unq)
    798 			if err != nil {
    799 				return fmt.Errorf("bad Duration: %v", err)
    800 			}
    801 
    802 			ns := d.Nanoseconds()
    803 			s := ns / 1e9
    804 			ns %= 1e9
    805 			target.Field(0).SetInt(s)
    806 			target.Field(1).SetInt(ns)
    807 			return nil
    808 		case "Timestamp":
    809 			unq, err := unquote(string(inputValue))
    810 			if err != nil {
    811 				return err
    812 			}
    813 
    814 			t, err := time.Parse(time.RFC3339Nano, unq)
    815 			if err != nil {
    816 				return fmt.Errorf("bad Timestamp: %v", err)
    817 			}
    818 
    819 			target.Field(0).SetInt(t.Unix())
    820 			target.Field(1).SetInt(int64(t.Nanosecond()))
    821 			return nil
    822 		case "Struct":
    823 			var m map[string]json.RawMessage
    824 			if err := json.Unmarshal(inputValue, &m); err != nil {
    825 				return fmt.Errorf("bad StructValue: %v", err)
    826 			}
    827 
    828 			target.Field(0).Set(reflect.ValueOf(map[string]*stpb.Value{}))
    829 			for k, jv := range m {
    830 				pv := &stpb.Value{}
    831 				if err := u.unmarshalValue(reflect.ValueOf(pv).Elem(), jv, prop); err != nil {
    832 					return fmt.Errorf("bad value in StructValue for key %q: %v", k, err)
    833 				}
    834 				target.Field(0).SetMapIndex(reflect.ValueOf(k), reflect.ValueOf(pv))
    835 			}
    836 			return nil
    837 		case "ListValue":
    838 			var s []json.RawMessage
    839 			if err := json.Unmarshal(inputValue, &s); err != nil {
    840 				return fmt.Errorf("bad ListValue: %v", err)
    841 			}
    842 
    843 			target.Field(0).Set(reflect.ValueOf(make([]*stpb.Value, len(s))))
    844 			for i, sv := range s {
    845 				if err := u.unmarshalValue(target.Field(0).Index(i), sv, prop); err != nil {
    846 					return err
    847 				}
    848 			}
    849 			return nil
    850 		case "Value":
    851 			ivStr := string(inputValue)
    852 			if ivStr == "null" {
    853 				target.Field(0).Set(reflect.ValueOf(&stpb.Value_NullValue{}))
    854 			} else if v, err := strconv.ParseFloat(ivStr, 0); err == nil {
    855 				target.Field(0).Set(reflect.ValueOf(&stpb.Value_NumberValue{v}))
    856 			} else if v, err := unquote(ivStr); err == nil {
    857 				target.Field(0).Set(reflect.ValueOf(&stpb.Value_StringValue{v}))
    858 			} else if v, err := strconv.ParseBool(ivStr); err == nil {
    859 				target.Field(0).Set(reflect.ValueOf(&stpb.Value_BoolValue{v}))
    860 			} else if err := json.Unmarshal(inputValue, &[]json.RawMessage{}); err == nil {
    861 				lv := &stpb.ListValue{}
    862 				target.Field(0).Set(reflect.ValueOf(&stpb.Value_ListValue{lv}))
    863 				return u.unmarshalValue(reflect.ValueOf(lv).Elem(), inputValue, prop)
    864 			} else if err := json.Unmarshal(inputValue, &map[string]json.RawMessage{}); err == nil {
    865 				sv := &stpb.Struct{}
    866 				target.Field(0).Set(reflect.ValueOf(&stpb.Value_StructValue{sv}))
    867 				return u.unmarshalValue(reflect.ValueOf(sv).Elem(), inputValue, prop)
    868 			} else {
    869 				return fmt.Errorf("unrecognized type for Value %q", ivStr)
    870 			}
    871 			return nil
    872 		}
    873 	}
    874 
    875 	// Handle enums, which have an underlying type of int32,
    876 	// and may appear as strings.
    877 	// The case of an enum appearing as a number is handled
    878 	// at the bottom of this function.
    879 	if inputValue[0] == '"' && prop != nil && prop.Enum != "" {
    880 		vmap := proto.EnumValueMap(prop.Enum)
    881 		// Don't need to do unquoting; valid enum names
    882 		// are from a limited character set.
    883 		s := inputValue[1 : len(inputValue)-1]
    884 		n, ok := vmap[string(s)]
    885 		if !ok {
    886 			return fmt.Errorf("unknown value %q for enum %s", s, prop.Enum)
    887 		}
    888 		if target.Kind() == reflect.Ptr { // proto2
    889 			target.Set(reflect.New(targetType.Elem()))
    890 			target = target.Elem()
    891 		}
    892 		if targetType.Kind() != reflect.Int32 {
    893 			return fmt.Errorf("invalid target %q for enum %s", targetType.Kind(), prop.Enum)
    894 		}
    895 		target.SetInt(int64(n))
    896 		return nil
    897 	}
    898 
    899 	// Handle nested messages.
    900 	if targetType.Kind() == reflect.Struct {
    901 		var jsonFields map[string]json.RawMessage
    902 		if err := json.Unmarshal(inputValue, &jsonFields); err != nil {
    903 			return err
    904 		}
    905 
    906 		consumeField := func(prop *proto.Properties) (json.RawMessage, bool) {
    907 			// Be liberal in what names we accept; both orig_name and camelName are okay.
    908 			fieldNames := acceptedJSONFieldNames(prop)
    909 
    910 			vOrig, okOrig := jsonFields[fieldNames.orig]
    911 			vCamel, okCamel := jsonFields[fieldNames.camel]
    912 			if !okOrig && !okCamel {
    913 				return nil, false
    914 			}
    915 			// If, for some reason, both are present in the data, favour the camelName.
    916 			var raw json.RawMessage
    917 			if okOrig {
    918 				raw = vOrig
    919 				delete(jsonFields, fieldNames.orig)
    920 			}
    921 			if okCamel {
    922 				raw = vCamel
    923 				delete(jsonFields, fieldNames.camel)
    924 			}
    925 			return raw, true
    926 		}
    927 
    928 		sprops := proto.GetProperties(targetType)
    929 		for i := 0; i < target.NumField(); i++ {
    930 			ft := target.Type().Field(i)
    931 			if strings.HasPrefix(ft.Name, "XXX_") {
    932 				continue
    933 			}
    934 
    935 			valueForField, ok := consumeField(sprops.Prop[i])
    936 			if !ok {
    937 				continue
    938 			}
    939 
    940 			if err := u.unmarshalValue(target.Field(i), valueForField, sprops.Prop[i]); err != nil {
    941 				return err
    942 			}
    943 		}
    944 		// Check for any oneof fields.
    945 		if len(jsonFields) > 0 {
    946 			for _, oop := range sprops.OneofTypes {
    947 				raw, ok := consumeField(oop.Prop)
    948 				if !ok {
    949 					continue
    950 				}
    951 				nv := reflect.New(oop.Type.Elem())
    952 				target.Field(oop.Field).Set(nv)
    953 				if err := u.unmarshalValue(nv.Elem().Field(0), raw, oop.Prop); err != nil {
    954 					return err
    955 				}
    956 			}
    957 		}
    958 		// Handle proto2 extensions.
    959 		if len(jsonFields) > 0 {
    960 			if ep, ok := target.Addr().Interface().(proto.Message); ok {
    961 				for _, ext := range proto.RegisteredExtensions(ep) {
    962 					name := fmt.Sprintf("[%s]", ext.Name)
    963 					raw, ok := jsonFields[name]
    964 					if !ok {
    965 						continue
    966 					}
    967 					delete(jsonFields, name)
    968 					nv := reflect.New(reflect.TypeOf(ext.ExtensionType).Elem())
    969 					if err := u.unmarshalValue(nv.Elem(), raw, nil); err != nil {
    970 						return err
    971 					}
    972 					if err := proto.SetExtension(ep, ext, nv.Interface()); err != nil {
    973 						return err
    974 					}
    975 				}
    976 			}
    977 		}
    978 		if !u.AllowUnknownFields && len(jsonFields) > 0 {
    979 			// Pick any field to be the scapegoat.
    980 			var f string
    981 			for fname := range jsonFields {
    982 				f = fname
    983 				break
    984 			}
    985 			return fmt.Errorf("unknown field %q in %v", f, targetType)
    986 		}
    987 		return nil
    988 	}
    989 
    990 	// Handle arrays (which aren't encoded bytes)
    991 	if targetType.Kind() == reflect.Slice && targetType.Elem().Kind() != reflect.Uint8 {
    992 		var slc []json.RawMessage
    993 		if err := json.Unmarshal(inputValue, &slc); err != nil {
    994 			return err
    995 		}
    996 		if slc != nil {
    997 			l := len(slc)
    998 			target.Set(reflect.MakeSlice(targetType, l, l))
    999 			for i := 0; i < l; i++ {
   1000 				if err := u.unmarshalValue(target.Index(i), slc[i], prop); err != nil {
   1001 					return err
   1002 				}
   1003 			}
   1004 		}
   1005 		return nil
   1006 	}
   1007 
   1008 	// Handle maps (whose keys are always strings)
   1009 	if targetType.Kind() == reflect.Map {
   1010 		var mp map[string]json.RawMessage
   1011 		if err := json.Unmarshal(inputValue, &mp); err != nil {
   1012 			return err
   1013 		}
   1014 		if mp != nil {
   1015 			target.Set(reflect.MakeMap(targetType))
   1016 			for ks, raw := range mp {
   1017 				// Unmarshal map key. The core json library already decoded the key into a
   1018 				// string, so we handle that specially. Other types were quoted post-serialization.
   1019 				var k reflect.Value
   1020 				if targetType.Key().Kind() == reflect.String {
   1021 					k = reflect.ValueOf(ks)
   1022 				} else {
   1023 					k = reflect.New(targetType.Key()).Elem()
   1024 					var kprop *proto.Properties
   1025 					if prop != nil && prop.MapKeyProp != nil {
   1026 						kprop = prop.MapKeyProp
   1027 					}
   1028 					if err := u.unmarshalValue(k, json.RawMessage(ks), kprop); err != nil {
   1029 						return err
   1030 					}
   1031 				}
   1032 
   1033 				// Unmarshal map value.
   1034 				v := reflect.New(targetType.Elem()).Elem()
   1035 				var vprop *proto.Properties
   1036 				if prop != nil && prop.MapValProp != nil {
   1037 					vprop = prop.MapValProp
   1038 				}
   1039 				if err := u.unmarshalValue(v, raw, vprop); err != nil {
   1040 					return err
   1041 				}
   1042 				target.SetMapIndex(k, v)
   1043 			}
   1044 		}
   1045 		return nil
   1046 	}
   1047 
   1048 	// Non-finite numbers can be encoded as strings.
   1049 	isFloat := targetType.Kind() == reflect.Float32 || targetType.Kind() == reflect.Float64
   1050 	if isFloat {
   1051 		if num, ok := nonFinite[string(inputValue)]; ok {
   1052 			target.SetFloat(num)
   1053 			return nil
   1054 		}
   1055 	}
   1056 
   1057 	// integers & floats can be encoded as strings. In this case we drop
   1058 	// the quotes and proceed as normal.
   1059 	isNum := targetType.Kind() == reflect.Int64 || targetType.Kind() == reflect.Uint64 ||
   1060 		targetType.Kind() == reflect.Int32 || targetType.Kind() == reflect.Uint32 ||
   1061 		targetType.Kind() == reflect.Float32 || targetType.Kind() == reflect.Float64
   1062 	if isNum && strings.HasPrefix(string(inputValue), `"`) {
   1063 		inputValue = inputValue[1 : len(inputValue)-1]
   1064 	}
   1065 
   1066 	// Use the encoding/json for parsing other value types.
   1067 	return json.Unmarshal(inputValue, target.Addr().Interface())
   1068 }
   1069 
   1070 func unquote(s string) (string, error) {
   1071 	var ret string
   1072 	err := json.Unmarshal([]byte(s), &ret)
   1073 	return ret, err
   1074 }
   1075 
   1076 // jsonProperties returns parsed proto.Properties for the field and corrects JSONName attribute.
   1077 func jsonProperties(f reflect.StructField, origName bool) *proto.Properties {
   1078 	var prop proto.Properties
   1079 	prop.Init(f.Type, f.Name, f.Tag.Get("protobuf"), &f)
   1080 	if origName || prop.JSONName == "" {
   1081 		prop.JSONName = prop.OrigName
   1082 	}
   1083 	return &prop
   1084 }
   1085 
   1086 type fieldNames struct {
   1087 	orig, camel string
   1088 }
   1089 
   1090 func acceptedJSONFieldNames(prop *proto.Properties) fieldNames {
   1091 	opts := fieldNames{orig: prop.OrigName, camel: prop.OrigName}
   1092 	if prop.JSONName != "" {
   1093 		opts.camel = prop.JSONName
   1094 	}
   1095 	return opts
   1096 }
   1097 
   1098 // Writer wrapper inspired by https://blog.golang.org/errors-are-values
   1099 type errWriter struct {
   1100 	writer io.Writer
   1101 	err    error
   1102 }
   1103 
   1104 func (w *errWriter) write(str string) {
   1105 	if w.err != nil {
   1106 		return
   1107 	}
   1108 	_, w.err = w.writer.Write([]byte(str))
   1109 }
   1110 
   1111 // Map fields may have key types of non-float scalars, strings and enums.
   1112 // The easiest way to sort them in some deterministic order is to use fmt.
   1113 // If this turns out to be inefficient we can always consider other options,
   1114 // such as doing a Schwartzian transform.
   1115 //
   1116 // Numeric keys are sorted in numeric order per
   1117 // https://developers.google.com/protocol-buffers/docs/proto#maps.
   1118 type mapKeys []reflect.Value
   1119 
   1120 func (s mapKeys) Len() int      { return len(s) }
   1121 func (s mapKeys) Swap(i, j int) { s[i], s[j] = s[j], s[i] }
   1122 func (s mapKeys) Less(i, j int) bool {
   1123 	if k := s[i].Kind(); k == s[j].Kind() {
   1124 		switch k {
   1125 		case reflect.String:
   1126 			return s[i].String() < s[j].String()
   1127 		case reflect.Int32, reflect.Int64:
   1128 			return s[i].Int() < s[j].Int()
   1129 		case reflect.Uint32, reflect.Uint64:
   1130 			return s[i].Uint() < s[j].Uint()
   1131 		}
   1132 	}
   1133 	return fmt.Sprint(s[i].Interface()) < fmt.Sprint(s[j].Interface())
   1134 }
   1135 
   1136 // checkRequiredFields returns an error if any required field in the given proto message is not set.
   1137 // This function is used by both Marshal and Unmarshal.  While required fields only exist in a
   1138 // proto2 message, a proto3 message can contain proto2 message(s).
   1139 func checkRequiredFields(pb proto.Message) error {
   1140 	// Most well-known type messages do not contain required fields.  The "Any" type may contain
   1141 	// a message that has required fields.
   1142 	//
   1143 	// When an Any message is being marshaled, the code will invoked proto.Unmarshal on Any.Value
   1144 	// field in order to transform that into JSON, and that should have returned an error if a
   1145 	// required field is not set in the embedded message.
   1146 	//
   1147 	// When an Any message is being unmarshaled, the code will have invoked proto.Marshal on the
   1148 	// embedded message to store the serialized message in Any.Value field, and that should have
   1149 	// returned an error if a required field is not set.
   1150 	if _, ok := pb.(wkt); ok {
   1151 		return nil
   1152 	}
   1153 
   1154 	v := reflect.ValueOf(pb)
   1155 	// Skip message if it is not a struct pointer.
   1156 	if v.Kind() != reflect.Ptr {
   1157 		return nil
   1158 	}
   1159 	v = v.Elem()
   1160 	if v.Kind() != reflect.Struct {
   1161 		return nil
   1162 	}
   1163 
   1164 	for i := 0; i < v.NumField(); i++ {
   1165 		field := v.Field(i)
   1166 		sfield := v.Type().Field(i)
   1167 
   1168 		if sfield.PkgPath != "" {
   1169 			// blank PkgPath means the field is exported; skip if not exported
   1170 			continue
   1171 		}
   1172 
   1173 		if strings.HasPrefix(sfield.Name, "XXX_") {
   1174 			continue
   1175 		}
   1176 
   1177 		// Oneof field is an interface implemented by wrapper structs containing the actual oneof
   1178 		// field, i.e. an interface containing &T{real_value}.
   1179 		if sfield.Tag.Get("protobuf_oneof") != "" {
   1180 			if field.Kind() != reflect.Interface {
   1181 				continue
   1182 			}
   1183 			v := field.Elem()
   1184 			if v.Kind() != reflect.Ptr || v.IsNil() {
   1185 				continue
   1186 			}
   1187 			v = v.Elem()
   1188 			if v.Kind() != reflect.Struct || v.NumField() < 1 {
   1189 				continue
   1190 			}
   1191 			field = v.Field(0)
   1192 			sfield = v.Type().Field(0)
   1193 		}
   1194 
   1195 		protoTag := sfield.Tag.Get("protobuf")
   1196 		if protoTag == "" {
   1197 			continue
   1198 		}
   1199 		var prop proto.Properties
   1200 		prop.Init(sfield.Type, sfield.Name, protoTag, &sfield)
   1201 
   1202 		switch field.Kind() {
   1203 		case reflect.Map:
   1204 			if field.IsNil() {
   1205 				continue
   1206 			}
   1207 			// Check each map value.
   1208 			keys := field.MapKeys()
   1209 			for _, k := range keys {
   1210 				v := field.MapIndex(k)
   1211 				if err := checkRequiredFieldsInValue(v); err != nil {
   1212 					return err
   1213 				}
   1214 			}
   1215 		case reflect.Slice:
   1216 			// Handle non-repeated type, e.g. bytes.
   1217 			if !prop.Repeated {
   1218 				if prop.Required && field.IsNil() {
   1219 					return fmt.Errorf("required field %q is not set", prop.Name)
   1220 				}
   1221 				continue
   1222 			}
   1223 
   1224 			// Handle repeated type.
   1225 			if field.IsNil() {
   1226 				continue
   1227 			}
   1228 			// Check each slice item.
   1229 			for i := 0; i < field.Len(); i++ {
   1230 				v := field.Index(i)
   1231 				if err := checkRequiredFieldsInValue(v); err != nil {
   1232 					return err
   1233 				}
   1234 			}
   1235 		case reflect.Ptr:
   1236 			if field.IsNil() {
   1237 				if prop.Required {
   1238 					return fmt.Errorf("required field %q is not set", prop.Name)
   1239 				}
   1240 				continue
   1241 			}
   1242 			if err := checkRequiredFieldsInValue(field); err != nil {
   1243 				return err
   1244 			}
   1245 		}
   1246 	}
   1247 
   1248 	// Handle proto2 extensions.
   1249 	for _, ext := range proto.RegisteredExtensions(pb) {
   1250 		if !proto.HasExtension(pb, ext) {
   1251 			continue
   1252 		}
   1253 		ep, err := proto.GetExtension(pb, ext)
   1254 		if err != nil {
   1255 			return err
   1256 		}
   1257 		err = checkRequiredFieldsInValue(reflect.ValueOf(ep))
   1258 		if err != nil {
   1259 			return err
   1260 		}
   1261 	}
   1262 
   1263 	return nil
   1264 }
   1265 
   1266 func checkRequiredFieldsInValue(v reflect.Value) error {
   1267 	if pm, ok := v.Interface().(proto.Message); ok {
   1268 		return checkRequiredFields(pm)
   1269 	}
   1270 	return nil
   1271 }
   1272