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/* 33Package jsonpb provides marshaling and unmarshaling between protocol buffers and JSON. 34It follows the specification at https://developers.google.com/protocol-buffers/docs/proto3#json. 35 36This package produces a different output than the standard "encoding/json" package, 37which does not operate correctly on protocol buffers. 38*/ 39package jsonpb 40 41import ( 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 59const 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. 63type 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. 88type AnyResolver interface { 89 Resolve(typeUrl string) (proto.Message, error) 90} 91 92func 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 112type 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 123type JSONPBUnmarshaler interface { 124 UnmarshalJSONPB(*Unmarshaler, []byte) error 125} 126 127// Marshal marshals a protocol buffer into JSON. 128func (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. 142func (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 150type int32Slice []int32 151 152var 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. 159func (s int32Slice) Len() int { return len(s) } 160func (s int32Slice) Less(i, j int) bool { return s[i] < s[j] } 161func (s int32Slice) Swap(i, j int) { s[i], s[j] = s[j], s[i] } 162 163type wkt interface { 164 XXX_WellKnownType() string 165} 166 167// marshalObject writes a struct to the Writer. 168func (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 384func (m *Marshaler) writeSep(out *errWriter) { 385 if m.Indent != "" { 386 out.write(",\n") 387 } else { 388 out.write(",") 389 } 390} 391 392func (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 446func (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. 464func (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. 482func (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. 649type 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. 664func (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. 678func (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. 686func 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. 693func 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. 700func 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. 706func (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 1070func 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. 1077func 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 1086type fieldNames struct { 1087 orig, camel string 1088} 1089 1090func 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 1099type errWriter struct { 1100 writer io.Writer 1101 err error 1102} 1103 1104func (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. 1118type mapKeys []reflect.Value 1119 1120func (s mapKeys) Len() int { return len(s) } 1121func (s mapKeys) Swap(i, j int) { s[i], s[j] = s[j], s[i] } 1122func (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). 1139func 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 1266func checkRequiredFieldsInValue(v reflect.Value) error { 1267 if pm, ok := v.Interface().(proto.Message); ok { 1268 return checkRequiredFields(pm) 1269 } 1270 return nil 1271} 1272