enum.go 4.8 KB

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  1. // Copyright 2018 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 legacy
  5. import (
  6. "fmt"
  7. "math"
  8. "reflect"
  9. "sync"
  10. ptype "github.com/golang/protobuf/v2/internal/prototype"
  11. pvalue "github.com/golang/protobuf/v2/internal/value"
  12. pref "github.com/golang/protobuf/v2/reflect/protoreflect"
  13. )
  14. // wrapEnum wraps v as a protoreflect.Enum,
  15. // where v must be a int32 kind and not implement the v2 API already.
  16. func wrapEnum(v reflect.Value) pref.Enum {
  17. et := loadEnumType(v.Type())
  18. return et.New(pref.EnumNumber(v.Int()))
  19. }
  20. var enumTypeCache sync.Map // map[reflect.Type]protoreflect.EnumType
  21. // loadEnumType dynamically loads a protoreflect.EnumType for t,
  22. // where t must be an int32 kind and not implement the v2 API already.
  23. func loadEnumType(t reflect.Type) pref.EnumType {
  24. // Fast-path: check if a EnumType is cached for this concrete type.
  25. if et, ok := enumTypeCache.Load(t); ok {
  26. return et.(pref.EnumType)
  27. }
  28. // Slow-path: derive enum descriptor and initialize EnumType.
  29. var m sync.Map // map[protoreflect.EnumNumber]proto.Enum
  30. ed := LoadEnumDesc(t)
  31. et := ptype.GoEnum(ed, func(et pref.EnumType, n pref.EnumNumber) pref.Enum {
  32. if e, ok := m.Load(n); ok {
  33. return e.(pref.Enum)
  34. }
  35. e := &enumWrapper{num: n, pbTyp: et, goTyp: t}
  36. m.Store(n, e)
  37. return e
  38. })
  39. if et, ok := enumTypeCache.LoadOrStore(t, et); ok {
  40. return et.(pref.EnumType)
  41. }
  42. return et
  43. }
  44. type enumWrapper struct {
  45. num pref.EnumNumber
  46. pbTyp pref.EnumType
  47. goTyp reflect.Type
  48. }
  49. func (e *enumWrapper) Number() pref.EnumNumber {
  50. return e.num
  51. }
  52. func (e *enumWrapper) Type() pref.EnumType {
  53. return e.pbTyp
  54. }
  55. func (e *enumWrapper) ProtoReflect() pref.Enum {
  56. return e
  57. }
  58. func (e *enumWrapper) ProtoUnwrap() interface{} {
  59. v := reflect.New(e.goTyp).Elem()
  60. v.SetInt(int64(e.num))
  61. return v.Interface()
  62. }
  63. var (
  64. _ pref.Enum = (*enumWrapper)(nil)
  65. _ pvalue.Unwrapper = (*enumWrapper)(nil)
  66. )
  67. var enumDescCache sync.Map // map[reflect.Type]protoreflect.EnumDescriptor
  68. var enumNumberType = reflect.TypeOf(pref.EnumNumber(0))
  69. // LoadEnumDesc returns an EnumDescriptor derived from the Go type,
  70. // which must be an int32 kind and not implement the v2 API already.
  71. //
  72. // This is exported for testing purposes.
  73. func LoadEnumDesc(t reflect.Type) pref.EnumDescriptor {
  74. // Fast-path: check if an EnumDescriptor is cached for this concrete type.
  75. if ed, ok := enumDescCache.Load(t); ok {
  76. return ed.(pref.EnumDescriptor)
  77. }
  78. // Slow-path: initialize EnumDescriptor from the proto descriptor.
  79. if t.Kind() != reflect.Int32 || t.PkgPath() == "" {
  80. panic(fmt.Sprintf("got %v, want named int32 kind", t))
  81. }
  82. if t == enumNumberType {
  83. panic(fmt.Sprintf("cannot be %v", t))
  84. }
  85. // Derive the enum descriptor from the raw descriptor proto.
  86. e := new(ptype.StandaloneEnum)
  87. ev := reflect.Zero(t).Interface()
  88. if _, ok := ev.(pref.Enum); ok {
  89. panic(fmt.Sprintf("%v already implements proto.Enum", t))
  90. }
  91. if ed, ok := ev.(enumV1); ok {
  92. b, idxs := ed.EnumDescriptor()
  93. fd := loadFileDesc(b)
  94. // Derive syntax.
  95. switch fd.GetSyntax() {
  96. case "proto2", "":
  97. e.Syntax = pref.Proto2
  98. case "proto3":
  99. e.Syntax = pref.Proto3
  100. }
  101. // Derive the full name and correct enum descriptor.
  102. var ed *enumDescriptorProto
  103. e.FullName = pref.FullName(fd.GetPackage())
  104. if len(idxs) == 1 {
  105. ed = fd.EnumType[idxs[0]]
  106. e.FullName = e.FullName.Append(pref.Name(ed.GetName()))
  107. } else {
  108. md := fd.MessageType[idxs[0]]
  109. e.FullName = e.FullName.Append(pref.Name(md.GetName()))
  110. for _, i := range idxs[1 : len(idxs)-1] {
  111. md = md.NestedType[i]
  112. e.FullName = e.FullName.Append(pref.Name(md.GetName()))
  113. }
  114. ed = md.EnumType[idxs[len(idxs)-1]]
  115. e.FullName = e.FullName.Append(pref.Name(ed.GetName()))
  116. }
  117. // Derive the enum values.
  118. for _, vd := range ed.Value {
  119. e.Values = append(e.Values, ptype.EnumValue{
  120. Name: pref.Name(vd.GetName()),
  121. Number: pref.EnumNumber(vd.GetNumber()),
  122. })
  123. }
  124. } else {
  125. // If the type does not implement enumV1, then there is no reliable
  126. // way to derive the original protobuf type information.
  127. // We are unable to use the global enum registry since it is
  128. // unfortunately keyed by the full name, which we do not know.
  129. // Furthermore, some generated enums register with a fork of
  130. // golang/protobuf so the enum may not even be found in the registry.
  131. //
  132. // Instead, create a bogus enum descriptor to ensure that
  133. // most operations continue to work. For example, textpb and jsonpb
  134. // will be unable to parse a message with an enum value by name.
  135. e.Syntax = pref.Proto2
  136. e.FullName = deriveFullName(t)
  137. e.Values = []ptype.EnumValue{{Name: "INVALID", Number: math.MinInt32}}
  138. }
  139. ed, err := ptype.NewEnum(e)
  140. if err != nil {
  141. panic(err)
  142. }
  143. if ed, ok := enumDescCache.LoadOrStore(t, ed); ok {
  144. return ed.(pref.EnumDescriptor)
  145. }
  146. return ed
  147. }