feature_reflect_slice.go 3.8 KB

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  1. package jsoniter
  2. import (
  3. "fmt"
  4. "io"
  5. "reflect"
  6. "unsafe"
  7. )
  8. func decoderOfSlice(cfg *frozenConfig, typ reflect.Type) (ValDecoder, error) {
  9. decoder, err := decoderOfType(cfg, typ.Elem())
  10. if err != nil {
  11. return nil, err
  12. }
  13. return &sliceDecoder{typ, typ.Elem(), decoder}, nil
  14. }
  15. func encoderOfSlice(cfg *frozenConfig, typ reflect.Type) (ValEncoder, error) {
  16. encoder, err := encoderOfType(cfg, typ.Elem())
  17. if err != nil {
  18. return nil, err
  19. }
  20. if typ.Elem().Kind() == reflect.Map {
  21. encoder = &OptionalEncoder{encoder}
  22. }
  23. return &sliceEncoder{typ, typ.Elem(), encoder}, nil
  24. }
  25. type sliceEncoder struct {
  26. sliceType reflect.Type
  27. elemType reflect.Type
  28. elemEncoder ValEncoder
  29. }
  30. func (encoder *sliceEncoder) Encode(ptr unsafe.Pointer, stream *Stream) {
  31. slice := (*sliceHeader)(ptr)
  32. if slice.Data == nil {
  33. stream.WriteNil()
  34. return
  35. }
  36. if slice.Len == 0 {
  37. stream.WriteEmptyArray()
  38. return
  39. }
  40. stream.WriteArrayStart()
  41. elemPtr := unsafe.Pointer(slice.Data)
  42. encoder.elemEncoder.Encode(unsafe.Pointer(elemPtr), stream)
  43. for i := 1; i < slice.Len; i++ {
  44. stream.WriteMore()
  45. elemPtr = unsafe.Pointer(uintptr(elemPtr) + encoder.elemType.Size())
  46. encoder.elemEncoder.Encode(unsafe.Pointer(elemPtr), stream)
  47. }
  48. stream.WriteArrayEnd()
  49. if stream.Error != nil && stream.Error != io.EOF {
  50. stream.Error = fmt.Errorf("%v: %s", encoder.sliceType, stream.Error.Error())
  51. }
  52. }
  53. func (encoder *sliceEncoder) EncodeInterface(val interface{}, stream *Stream) {
  54. WriteToStream(val, stream, encoder)
  55. }
  56. func (encoder *sliceEncoder) IsEmpty(ptr unsafe.Pointer) bool {
  57. slice := (*sliceHeader)(ptr)
  58. return slice.Len == 0
  59. }
  60. type sliceDecoder struct {
  61. sliceType reflect.Type
  62. elemType reflect.Type
  63. elemDecoder ValDecoder
  64. }
  65. // sliceHeader is a safe version of SliceHeader used within this package.
  66. type sliceHeader struct {
  67. Data unsafe.Pointer
  68. Len int
  69. Cap int
  70. }
  71. func (decoder *sliceDecoder) Decode(ptr unsafe.Pointer, iter *Iterator) {
  72. decoder.doDecode(ptr, iter)
  73. if iter.Error != nil && iter.Error != io.EOF {
  74. iter.Error = fmt.Errorf("%v: %s", decoder.sliceType, iter.Error.Error())
  75. }
  76. }
  77. func (decoder *sliceDecoder) doDecode(ptr unsafe.Pointer, iter *Iterator) {
  78. slice := (*sliceHeader)(ptr)
  79. if iter.ReadNil() {
  80. slice.Len = 0
  81. slice.Cap = 0
  82. slice.Data = nil
  83. return
  84. }
  85. reuseSlice(slice, decoder.sliceType, 4)
  86. slice.Len = 0
  87. offset := uintptr(0)
  88. iter.ReadArrayCB(func(iter *Iterator) bool {
  89. growOne(slice, decoder.sliceType, decoder.elemType)
  90. decoder.elemDecoder.Decode(unsafe.Pointer(uintptr(slice.Data)+offset), iter)
  91. offset += decoder.elemType.Size()
  92. return true
  93. })
  94. }
  95. // grow grows the slice s so that it can hold extra more values, allocating
  96. // more capacity if needed. It also returns the old and new slice lengths.
  97. func growOne(slice *sliceHeader, sliceType reflect.Type, elementType reflect.Type) {
  98. newLen := slice.Len + 1
  99. if newLen <= slice.Cap {
  100. slice.Len = newLen
  101. return
  102. }
  103. newCap := slice.Cap
  104. if newCap == 0 {
  105. newCap = 1
  106. } else {
  107. for newCap < newLen {
  108. if slice.Len < 1024 {
  109. newCap += newCap
  110. } else {
  111. newCap += newCap / 4
  112. }
  113. }
  114. }
  115. newVal := reflect.MakeSlice(sliceType, newLen, newCap)
  116. dst := unsafe.Pointer(newVal.Pointer())
  117. // copy old array into new array
  118. originalBytesCount := slice.Len * int(elementType.Size())
  119. srcSliceHeader := (unsafe.Pointer)(&sliceHeader{slice.Data, originalBytesCount, originalBytesCount})
  120. dstSliceHeader := (unsafe.Pointer)(&sliceHeader{dst, originalBytesCount, originalBytesCount})
  121. copy(*(*[]byte)(dstSliceHeader), *(*[]byte)(srcSliceHeader))
  122. slice.Data = dst
  123. slice.Len = newLen
  124. slice.Cap = newCap
  125. }
  126. func reuseSlice(slice *sliceHeader, sliceType reflect.Type, expectedCap int) {
  127. if expectedCap <= slice.Cap {
  128. return
  129. }
  130. newVal := reflect.MakeSlice(sliceType, 0, expectedCap)
  131. dst := unsafe.Pointer(newVal.Pointer())
  132. slice.Data = dst
  133. slice.Cap = expectedCap
  134. }