go-json/internal/decoder/compile.go

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package decoder
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import (
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"encoding/json"
"fmt"
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"reflect"
"strings"
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"sync/atomic"
"unicode"
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"unsafe"
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"github.com/goccy/go-json/internal/errors"
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"github.com/goccy/go-json/internal/runtime"
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)
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var (
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jsonNumberType = reflect.TypeOf(json.Number(""))
typeAddr *runtime.TypeAddr
cachedDecoderMap unsafe.Pointer // map[uintptr]decoder
cachedDecoder []decoder
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)
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func init() {
typeAddr = runtime.AnalyzeTypeAddr()
if typeAddr == nil {
typeAddr = &runtime.TypeAddr{}
}
cachedDecoder = make([]decoder, typeAddr.AddrRange>>typeAddr.AddrShift)
}
func loadDecoderMap() map[uintptr]decoder {
p := atomic.LoadPointer(&cachedDecoderMap)
return *(*map[uintptr]decoder)(unsafe.Pointer(&p))
}
func storeDecoder(typ uintptr, dec decoder, m map[uintptr]decoder) {
newDecoderMap := make(map[uintptr]decoder, len(m)+1)
newDecoderMap[typ] = dec
for k, v := range m {
newDecoderMap[k] = v
}
atomic.StorePointer(&cachedDecoderMap, *(*unsafe.Pointer)(unsafe.Pointer(&newDecoderMap)))
}
func decodeCompileToGetDecoderSlowPath(typeptr uintptr, typ *runtime.Type) (decoder, error) {
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decoderMap := loadDecoderMap()
if dec, exists := decoderMap[typeptr]; exists {
return dec, nil
}
dec, err := decodeCompileHead(typ, map[uintptr]decoder{})
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if err != nil {
return nil, err
}
storeDecoder(typeptr, dec, decoderMap)
return dec, nil
}
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func decodeCompileHead(typ *runtime.Type, structTypeToDecoder map[uintptr]decoder) (decoder, error) {
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switch {
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case runtime.PtrTo(typ).Implements(unmarshalJSONType):
return newUnmarshalJSONDecoder(runtime.PtrTo(typ), "", ""), nil
case runtime.PtrTo(typ).Implements(unmarshalTextType):
return newUnmarshalTextDecoder(runtime.PtrTo(typ), "", ""), nil
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}
return decodeCompile(typ.Elem(), "", "", structTypeToDecoder)
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}
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func decodeCompile(typ *runtime.Type, structName, fieldName string, structTypeToDecoder map[uintptr]decoder) (decoder, error) {
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switch {
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case runtime.PtrTo(typ).Implements(unmarshalJSONType):
return newUnmarshalJSONDecoder(runtime.PtrTo(typ), structName, fieldName), nil
case runtime.PtrTo(typ).Implements(unmarshalTextType):
return newUnmarshalTextDecoder(runtime.PtrTo(typ), structName, fieldName), nil
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}
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switch typ.Kind() {
case reflect.Ptr:
return decodeCompilePtr(typ, structName, fieldName, structTypeToDecoder)
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case reflect.Struct:
return decodeCompileStruct(typ, structName, fieldName, structTypeToDecoder)
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case reflect.Slice:
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elem := typ.Elem()
if elem.Kind() == reflect.Uint8 {
return decodeCompileBytes(elem, structName, fieldName)
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}
return decodeCompileSlice(typ, structName, fieldName, structTypeToDecoder)
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case reflect.Array:
return decodeCompileArray(typ, structName, fieldName, structTypeToDecoder)
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case reflect.Map:
return decodeCompileMap(typ, structName, fieldName, structTypeToDecoder)
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case reflect.Interface:
return decodeCompileInterface(typ, structName, fieldName)
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case reflect.Uintptr:
return decodeCompileUint(typ, structName, fieldName)
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case reflect.Int:
return decodeCompileInt(typ, structName, fieldName)
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case reflect.Int8:
return decodeCompileInt8(typ, structName, fieldName)
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case reflect.Int16:
return decodeCompileInt16(typ, structName, fieldName)
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case reflect.Int32:
return decodeCompileInt32(typ, structName, fieldName)
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case reflect.Int64:
return decodeCompileInt64(typ, structName, fieldName)
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case reflect.Uint:
return decodeCompileUint(typ, structName, fieldName)
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case reflect.Uint8:
return decodeCompileUint8(typ, structName, fieldName)
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case reflect.Uint16:
return decodeCompileUint16(typ, structName, fieldName)
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case reflect.Uint32:
return decodeCompileUint32(typ, structName, fieldName)
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case reflect.Uint64:
return decodeCompileUint64(typ, structName, fieldName)
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case reflect.String:
return decodeCompileString(typ, structName, fieldName)
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case reflect.Bool:
return decodeCompileBool(structName, fieldName)
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case reflect.Float32:
return decodeCompileFloat32(structName, fieldName)
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case reflect.Float64:
return decodeCompileFloat64(structName, fieldName)
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}
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return nil, &errors.UnmarshalTypeError{
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Value: "object",
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Type: runtime.RType2Type(typ),
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Offset: 0,
}
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}
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func isStringTagSupportedType(typ *runtime.Type) bool {
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switch {
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case runtime.PtrTo(typ).Implements(unmarshalJSONType):
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return false
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case runtime.PtrTo(typ).Implements(unmarshalTextType):
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return false
}
switch typ.Kind() {
case reflect.Map:
return false
case reflect.Slice:
return false
case reflect.Array:
return false
case reflect.Struct:
return false
case reflect.Interface:
return false
}
return true
}
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func decodeCompileMapKey(typ *runtime.Type, structName, fieldName string, structTypeToDecoder map[uintptr]decoder) (decoder, error) {
if runtime.PtrTo(typ).Implements(unmarshalTextType) {
return newUnmarshalTextDecoder(runtime.PtrTo(typ), structName, fieldName), nil
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}
dec, err := decodeCompile(typ, structName, fieldName, structTypeToDecoder)
if err != nil {
return nil, err
}
for {
switch t := dec.(type) {
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case *stringDecoder, *interfaceDecoder:
return dec, nil
case *boolDecoder, *intDecoder, *uintDecoder, *numberDecoder:
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return newWrappedStringDecoder(typ, dec, structName, fieldName), nil
case *ptrDecoder:
dec = t.dec
default:
goto ERROR
}
}
ERROR:
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return nil, &errors.UnmarshalTypeError{
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Value: "object",
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Type: runtime.RType2Type(typ),
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Offset: 0,
}
}
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func decodeCompilePtr(typ *runtime.Type, structName, fieldName string, structTypeToDecoder map[uintptr]decoder) (decoder, error) {
dec, err := decodeCompile(typ.Elem(), structName, fieldName, structTypeToDecoder)
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if err != nil {
return nil, err
}
return newPtrDecoder(dec, typ.Elem(), structName, fieldName), nil
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}
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func decodeCompileInt(typ *runtime.Type, structName, fieldName string) (decoder, error) {
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return newIntDecoder(typ, structName, fieldName, func(p unsafe.Pointer, v int64) {
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*(*int)(p) = int(v)
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}), nil
}
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func decodeCompileInt8(typ *runtime.Type, structName, fieldName string) (decoder, error) {
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return newIntDecoder(typ, structName, fieldName, func(p unsafe.Pointer, v int64) {
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*(*int8)(p) = int8(v)
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}), nil
}
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func decodeCompileInt16(typ *runtime.Type, structName, fieldName string) (decoder, error) {
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return newIntDecoder(typ, structName, fieldName, func(p unsafe.Pointer, v int64) {
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*(*int16)(p) = int16(v)
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}), nil
}
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func decodeCompileInt32(typ *runtime.Type, structName, fieldName string) (decoder, error) {
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return newIntDecoder(typ, structName, fieldName, func(p unsafe.Pointer, v int64) {
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*(*int32)(p) = int32(v)
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}), nil
}
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func decodeCompileInt64(typ *runtime.Type, structName, fieldName string) (decoder, error) {
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return newIntDecoder(typ, structName, fieldName, func(p unsafe.Pointer, v int64) {
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*(*int64)(p) = v
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}), nil
}
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func decodeCompileUint(typ *runtime.Type, structName, fieldName string) (decoder, error) {
return newUintDecoder(typ, structName, fieldName, func(p unsafe.Pointer, v uint64) {
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*(*uint)(p) = uint(v)
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}), nil
}
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func decodeCompileUint8(typ *runtime.Type, structName, fieldName string) (decoder, error) {
return newUintDecoder(typ, structName, fieldName, func(p unsafe.Pointer, v uint64) {
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*(*uint8)(p) = uint8(v)
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}), nil
}
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func decodeCompileUint16(typ *runtime.Type, structName, fieldName string) (decoder, error) {
return newUintDecoder(typ, structName, fieldName, func(p unsafe.Pointer, v uint64) {
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*(*uint16)(p) = uint16(v)
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}), nil
}
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func decodeCompileUint32(typ *runtime.Type, structName, fieldName string) (decoder, error) {
return newUintDecoder(typ, structName, fieldName, func(p unsafe.Pointer, v uint64) {
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*(*uint32)(p) = uint32(v)
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}), nil
}
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func decodeCompileUint64(typ *runtime.Type, structName, fieldName string) (decoder, error) {
return newUintDecoder(typ, structName, fieldName, func(p unsafe.Pointer, v uint64) {
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*(*uint64)(p) = v
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}), nil
}
func decodeCompileFloat32(structName, fieldName string) (decoder, error) {
return newFloatDecoder(structName, fieldName, func(p unsafe.Pointer, v float64) {
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*(*float32)(p) = float32(v)
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}), nil
}
func decodeCompileFloat64(structName, fieldName string) (decoder, error) {
return newFloatDecoder(structName, fieldName, func(p unsafe.Pointer, v float64) {
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*(*float64)(p) = v
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}), nil
}
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func decodeCompileString(typ *runtime.Type, structName, fieldName string) (decoder, error) {
if typ == runtime.Type2RType(jsonNumberType) {
return newNumberDecoder(structName, fieldName, func(p unsafe.Pointer, v json.Number) {
*(*json.Number)(p) = v
}), nil
}
return newStringDecoder(structName, fieldName), nil
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}
func decodeCompileBool(structName, fieldName string) (decoder, error) {
return newBoolDecoder(structName, fieldName), nil
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}
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func decodeCompileBytes(typ *runtime.Type, structName, fieldName string) (decoder, error) {
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return newBytesDecoder(typ, structName, fieldName), nil
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}
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func decodeCompileSlice(typ *runtime.Type, structName, fieldName string, structTypeToDecoder map[uintptr]decoder) (decoder, error) {
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elem := typ.Elem()
decoder, err := decodeCompile(elem, structName, fieldName, structTypeToDecoder)
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if err != nil {
return nil, err
}
return newSliceDecoder(decoder, elem, elem.Size(), structName, fieldName), nil
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}
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func decodeCompileArray(typ *runtime.Type, structName, fieldName string, structTypeToDecoder map[uintptr]decoder) (decoder, error) {
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elem := typ.Elem()
decoder, err := decodeCompile(elem, structName, fieldName, structTypeToDecoder)
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if err != nil {
return nil, err
}
return newArrayDecoder(decoder, elem, typ.Len(), structName, fieldName), nil
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}
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func decodeCompileMap(typ *runtime.Type, structName, fieldName string, structTypeToDecoder map[uintptr]decoder) (decoder, error) {
keyDec, err := decodeCompileMapKey(typ.Key(), structName, fieldName, structTypeToDecoder)
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if err != nil {
return nil, err
}
valueDec, err := decodeCompile(typ.Elem(), structName, fieldName, structTypeToDecoder)
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if err != nil {
return nil, err
}
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return newMapDecoder(typ, typ.Key(), keyDec, typ.Elem(), valueDec, structName, fieldName), nil
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}
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func decodeCompileInterface(typ *runtime.Type, structName, fieldName string) (decoder, error) {
return newInterfaceDecoder(typ, structName, fieldName), nil
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}
func decodeRemoveConflictFields(fieldMap map[string]*structFieldSet, conflictedMap map[string]struct{}, dec *structDecoder, field reflect.StructField) {
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for k, v := range dec.fieldMap {
if _, exists := conflictedMap[k]; exists {
// already conflicted key
continue
}
set, exists := fieldMap[k]
if !exists {
fieldSet := &structFieldSet{
dec: v.dec,
offset: field.Offset + v.offset,
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isTaggedKey: v.isTaggedKey,
key: k,
keyLen: int64(len(k)),
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}
fieldMap[k] = fieldSet
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lower := strings.ToLower(k)
if _, exists := fieldMap[lower]; !exists {
fieldMap[lower] = fieldSet
}
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continue
}
if set.isTaggedKey {
if v.isTaggedKey {
// conflict tag key
delete(fieldMap, k)
delete(fieldMap, strings.ToLower(k))
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conflictedMap[k] = struct{}{}
conflictedMap[strings.ToLower(k)] = struct{}{}
}
} else {
if v.isTaggedKey {
fieldSet := &structFieldSet{
dec: v.dec,
offset: field.Offset + v.offset,
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isTaggedKey: v.isTaggedKey,
key: k,
keyLen: int64(len(k)),
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}
fieldMap[k] = fieldSet
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lower := strings.ToLower(k)
if _, exists := fieldMap[lower]; !exists {
fieldMap[lower] = fieldSet
}
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} else {
// conflict tag key
delete(fieldMap, k)
delete(fieldMap, strings.ToLower(k))
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conflictedMap[k] = struct{}{}
conflictedMap[strings.ToLower(k)] = struct{}{}
}
}
}
}
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func decodeCompileStruct(typ *runtime.Type, structName, fieldName string, structTypeToDecoder map[uintptr]decoder) (decoder, error) {
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fieldNum := typ.NumField()
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conflictedMap := map[string]struct{}{}
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fieldMap := map[string]*structFieldSet{}
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typeptr := uintptr(unsafe.Pointer(typ))
if dec, exists := structTypeToDecoder[typeptr]; exists {
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return dec, nil
}
structDec := newStructDecoder(structName, fieldName, fieldMap)
structTypeToDecoder[typeptr] = structDec
structName = typ.Name()
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for i := 0; i < fieldNum; i++ {
field := typ.Field(i)
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if runtime.IsIgnoredStructField(field) {
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continue
}
isUnexportedField := unicode.IsLower([]rune(field.Name)[0])
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tag := runtime.StructTagFromField(field)
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dec, err := decodeCompile(runtime.Type2RType(field.Type), structName, field.Name, structTypeToDecoder)
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if err != nil {
return nil, err
}
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if field.Anonymous && !tag.IsTaggedKey {
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if stDec, ok := dec.(*structDecoder); ok {
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if runtime.Type2RType(field.Type) == typ {
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// recursive definition
continue
}
decodeRemoveConflictFields(fieldMap, conflictedMap, stDec, field)
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} else if pdec, ok := dec.(*ptrDecoder); ok {
contentDec := pdec.contentDecoder()
if pdec.typ == typ {
// recursive definition
continue
}
var fieldSetErr error
if isUnexportedField {
fieldSetErr = fmt.Errorf(
"json: cannot set embedded pointer to unexported struct: %v",
field.Type.Elem(),
)
}
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if dec, ok := contentDec.(*structDecoder); ok {
for k, v := range dec.fieldMap {
if _, exists := conflictedMap[k]; exists {
// already conflicted key
continue
}
set, exists := fieldMap[k]
if !exists {
fieldSet := &structFieldSet{
dec: newAnonymousFieldDecoder(pdec.typ, v.offset, v.dec),
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offset: field.Offset,
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isTaggedKey: v.isTaggedKey,
key: k,
keyLen: int64(len(k)),
err: fieldSetErr,
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}
fieldMap[k] = fieldSet
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lower := strings.ToLower(k)
if _, exists := fieldMap[lower]; !exists {
fieldMap[lower] = fieldSet
}
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continue
}
if set.isTaggedKey {
if v.isTaggedKey {
// conflict tag key
delete(fieldMap, k)
delete(fieldMap, strings.ToLower(k))
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conflictedMap[k] = struct{}{}
conflictedMap[strings.ToLower(k)] = struct{}{}
}
} else {
if v.isTaggedKey {
fieldSet := &structFieldSet{
dec: newAnonymousFieldDecoder(pdec.typ, v.offset, v.dec),
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offset: field.Offset,
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isTaggedKey: v.isTaggedKey,
key: k,
keyLen: int64(len(k)),
err: fieldSetErr,
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}
fieldMap[k] = fieldSet
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lower := strings.ToLower(k)
if _, exists := fieldMap[lower]; !exists {
fieldMap[lower] = fieldSet
}
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} else {
// conflict tag key
delete(fieldMap, k)
delete(fieldMap, strings.ToLower(k))
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conflictedMap[k] = struct{}{}
conflictedMap[strings.ToLower(k)] = struct{}{}
}
}
}
}
}
} else {
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if tag.IsString && isStringTagSupportedType(runtime.Type2RType(field.Type)) {
dec = newWrappedStringDecoder(runtime.Type2RType(field.Type), dec, structName, field.Name)
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}
var key string
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if tag.Key != "" {
key = tag.Key
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} else {
key = field.Name
}
fieldSet := &structFieldSet{
dec: dec,
offset: field.Offset,
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isTaggedKey: tag.IsTaggedKey,
key: key,
keyLen: int64(len(key)),
}
fieldMap[key] = fieldSet
lower := strings.ToLower(key)
if _, exists := fieldMap[lower]; !exists {
fieldMap[lower] = fieldSet
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}
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}
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}
delete(structTypeToDecoder, typeptr)
structDec.tryOptimize()
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return structDec, nil
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}