reflect.go 15 KB

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  1. package jsoniter
  2. import (
  3. "encoding"
  4. "encoding/json"
  5. "fmt"
  6. "reflect"
  7. "time"
  8. "unsafe"
  9. "github.com/v2pro/plz/reflect2"
  10. )
  11. // ValDecoder is an internal type registered to cache as needed.
  12. // Don't confuse jsoniter.ValDecoder with json.Decoder.
  13. // For json.Decoder's adapter, refer to jsoniter.AdapterDecoder(todo link).
  14. //
  15. // Reflection on type to create decoders, which is then cached
  16. // Reflection on value is avoided as we can, as the reflect.Value itself will allocate, with following exceptions
  17. // 1. create instance of new value, for example *int will need a int to be allocated
  18. // 2. append to slice, if the existing cap is not enough, allocate will be done using Reflect.New
  19. // 3. assignment to map, both key and value will be reflect.Value
  20. // For a simple struct binding, it will be reflect.Value free and allocation free
  21. type ValDecoder interface {
  22. Decode(ptr unsafe.Pointer, iter *Iterator)
  23. }
  24. // ValEncoder is an internal type registered to cache as needed.
  25. // Don't confuse jsoniter.ValEncoder with json.Encoder.
  26. // For json.Encoder's adapter, refer to jsoniter.AdapterEncoder(todo godoc link).
  27. type ValEncoder interface {
  28. IsEmpty(ptr unsafe.Pointer) bool
  29. Encode(ptr unsafe.Pointer, stream *Stream)
  30. }
  31. type checkIsEmpty interface {
  32. IsEmpty(ptr unsafe.Pointer) bool
  33. }
  34. var jsonRawMessageType reflect.Type
  35. var jsoniterRawMessageType reflect.Type
  36. var anyType reflect.Type
  37. var marshalerType reflect.Type
  38. var unmarshalerType reflect.Type
  39. var textMarshalerType reflect.Type
  40. var textUnmarshalerType reflect.Type
  41. func init() {
  42. jsonRawMessageType = reflect.TypeOf((*json.RawMessage)(nil)).Elem()
  43. jsoniterRawMessageType = reflect.TypeOf((*RawMessage)(nil)).Elem()
  44. anyType = reflect.TypeOf((*Any)(nil)).Elem()
  45. marshalerType = reflect.TypeOf((*json.Marshaler)(nil)).Elem()
  46. unmarshalerType = reflect.TypeOf((*json.Unmarshaler)(nil)).Elem()
  47. textMarshalerType = reflect.TypeOf((*encoding.TextMarshaler)(nil)).Elem()
  48. textUnmarshalerType = reflect.TypeOf((*encoding.TextUnmarshaler)(nil)).Elem()
  49. }
  50. // ReadVal copy the underlying JSON into go interface, same as json.Unmarshal
  51. func (iter *Iterator) ReadVal(obj interface{}) {
  52. typ := reflect.TypeOf(obj)
  53. cacheKey := typ.Elem()
  54. decoder := decoderOfType(iter.cfg, "", cacheKey)
  55. e := (*emptyInterface)(unsafe.Pointer(&obj))
  56. if e.word == nil {
  57. iter.ReportError("ReadVal", "can not read into nil pointer")
  58. return
  59. }
  60. decoder.Decode(e.word, iter)
  61. }
  62. // WriteVal copy the go interface into underlying JSON, same as json.Marshal
  63. func (stream *Stream) WriteVal(val interface{}) {
  64. if nil == val {
  65. stream.WriteNil()
  66. return
  67. }
  68. typ := reflect.TypeOf(val)
  69. encoder := stream.cfg.EncoderOf(typ)
  70. encoder.Encode(reflect2.PtrOf(val), stream)
  71. }
  72. func (cfg *frozenConfig) DecoderOf(typ reflect.Type) ValDecoder {
  73. cacheKey := typ
  74. decoder := cfg.getDecoderFromCache(cacheKey)
  75. if decoder != nil {
  76. return decoder
  77. }
  78. decoder = decoderOfType(cfg, "", typ)
  79. cfg.addDecoderToCache(cacheKey, decoder)
  80. return decoder
  81. }
  82. func decoderOfType(cfg *frozenConfig, prefix string, typ reflect.Type) ValDecoder {
  83. decoder := getTypeDecoderFromExtension(cfg, typ)
  84. if decoder != nil {
  85. return decoder
  86. }
  87. decoder = createDecoderOfType(cfg, prefix, typ)
  88. for _, extension := range extensions {
  89. decoder = extension.DecorateDecoder(typ, decoder)
  90. }
  91. for _, extension := range cfg.extensions {
  92. decoder = extension.DecorateDecoder(typ, decoder)
  93. }
  94. return decoder
  95. }
  96. func createDecoderOfType(cfg *frozenConfig, prefix string, typ reflect.Type) ValDecoder {
  97. typeName := typ.String()
  98. if typ == jsonRawMessageType {
  99. return &jsonRawMessageCodec{}
  100. }
  101. if typ == jsoniterRawMessageType {
  102. return &jsoniterRawMessageCodec{}
  103. }
  104. decoder := createDecoderOfJsonNumber(cfg, prefix, typ)
  105. if decoder != nil {
  106. return decoder
  107. }
  108. decoder = createDecoderOfMarshaler(cfg, prefix, typ)
  109. if decoder != nil {
  110. return decoder
  111. }
  112. if typ.Kind() == reflect.Slice && typ.Elem().Kind() == reflect.Uint8 {
  113. sliceDecoder := decoderOfSlice(cfg, prefix, typ)
  114. return &base64Codec{sliceDecoder: sliceDecoder}
  115. }
  116. if typ == anyType {
  117. return &directAnyCodec{}
  118. }
  119. if typ.Implements(anyType) {
  120. return &anyCodec{}
  121. }
  122. switch typ.Kind() {
  123. case reflect.String:
  124. if typeName != "string" {
  125. return decoderOfType(cfg, prefix, reflect.TypeOf((*string)(nil)).Elem())
  126. }
  127. return &stringCodec{}
  128. case reflect.Int:
  129. if typeName != "int" {
  130. return decoderOfType(cfg, prefix, reflect.TypeOf((*int)(nil)).Elem())
  131. }
  132. return &intCodec{}
  133. case reflect.Int8:
  134. if typeName != "int8" {
  135. return decoderOfType(cfg, prefix, reflect.TypeOf((*int8)(nil)).Elem())
  136. }
  137. return &int8Codec{}
  138. case reflect.Int16:
  139. if typeName != "int16" {
  140. return decoderOfType(cfg, prefix, reflect.TypeOf((*int16)(nil)).Elem())
  141. }
  142. return &int16Codec{}
  143. case reflect.Int32:
  144. if typeName != "int32" {
  145. return decoderOfType(cfg, prefix, reflect.TypeOf((*int32)(nil)).Elem())
  146. }
  147. return &int32Codec{}
  148. case reflect.Int64:
  149. if typeName != "int64" {
  150. return decoderOfType(cfg, prefix, reflect.TypeOf((*int64)(nil)).Elem())
  151. }
  152. return &int64Codec{}
  153. case reflect.Uint:
  154. if typeName != "uint" {
  155. return decoderOfType(cfg, prefix, reflect.TypeOf((*uint)(nil)).Elem())
  156. }
  157. return &uintCodec{}
  158. case reflect.Uint8:
  159. if typeName != "uint8" {
  160. return decoderOfType(cfg, prefix, reflect.TypeOf((*uint8)(nil)).Elem())
  161. }
  162. return &uint8Codec{}
  163. case reflect.Uint16:
  164. if typeName != "uint16" {
  165. return decoderOfType(cfg, prefix, reflect.TypeOf((*uint16)(nil)).Elem())
  166. }
  167. return &uint16Codec{}
  168. case reflect.Uint32:
  169. if typeName != "uint32" {
  170. return decoderOfType(cfg, prefix, reflect.TypeOf((*uint32)(nil)).Elem())
  171. }
  172. return &uint32Codec{}
  173. case reflect.Uintptr:
  174. if typeName != "uintptr" {
  175. return decoderOfType(cfg, prefix, reflect.TypeOf((*uintptr)(nil)).Elem())
  176. }
  177. return &uintptrCodec{}
  178. case reflect.Uint64:
  179. if typeName != "uint64" {
  180. return decoderOfType(cfg, prefix, reflect.TypeOf((*uint64)(nil)).Elem())
  181. }
  182. return &uint64Codec{}
  183. case reflect.Float32:
  184. if typeName != "float32" {
  185. return decoderOfType(cfg, prefix, reflect.TypeOf((*float32)(nil)).Elem())
  186. }
  187. return &float32Codec{}
  188. case reflect.Float64:
  189. if typeName != "float64" {
  190. return decoderOfType(cfg, prefix, reflect.TypeOf((*float64)(nil)).Elem())
  191. }
  192. return &float64Codec{}
  193. case reflect.Bool:
  194. if typeName != "bool" {
  195. return decoderOfType(cfg, prefix, reflect.TypeOf((*bool)(nil)).Elem())
  196. }
  197. return &boolCodec{}
  198. case reflect.Interface:
  199. if typ.NumMethod() == 0 {
  200. return &emptyInterfaceCodec{}
  201. }
  202. return &nonEmptyInterfaceCodec{}
  203. case reflect.Struct:
  204. return decoderOfStruct(cfg, prefix, typ)
  205. case reflect.Array:
  206. return decoderOfArray(cfg, prefix, typ)
  207. case reflect.Slice:
  208. return decoderOfSlice(cfg, prefix, typ)
  209. case reflect.Map:
  210. return decoderOfMap(cfg, prefix, typ)
  211. case reflect.Ptr:
  212. return decoderOfOptional(cfg, prefix, typ)
  213. default:
  214. return &lazyErrorDecoder{err: fmt.Errorf("%s%s is unsupported type", prefix, typ.String())}
  215. }
  216. }
  217. func (cfg *frozenConfig) EncoderOf(typ reflect.Type) ValEncoder {
  218. cacheKey := typ
  219. encoder := cfg.getEncoderFromCache(cacheKey)
  220. if encoder != nil {
  221. return encoder
  222. }
  223. encoder = encoderOfType(cfg, "", typ)
  224. if shouldFixOnePtr(typ) {
  225. encoder = &onePtrEncoder{encoder}
  226. }
  227. cfg.addEncoderToCache(cacheKey, encoder)
  228. return encoder
  229. }
  230. type onePtrEncoder struct {
  231. encoder ValEncoder
  232. }
  233. func (encoder *onePtrEncoder) IsEmpty(ptr unsafe.Pointer) bool {
  234. return encoder.encoder.IsEmpty(unsafe.Pointer(&ptr))
  235. }
  236. func (encoder *onePtrEncoder) Encode(ptr unsafe.Pointer, stream *Stream) {
  237. encoder.encoder.Encode(unsafe.Pointer(&ptr), stream)
  238. }
  239. func shouldFixOnePtr(typ reflect.Type) bool {
  240. if isPtrKind(typ.Kind()) {
  241. return true
  242. }
  243. if typ.Kind() == reflect.Struct {
  244. if typ.NumField() != 1 {
  245. return false
  246. }
  247. return shouldFixOnePtr(typ.Field(0).Type)
  248. }
  249. if typ.Kind() == reflect.Array {
  250. if typ.Len() != 1 {
  251. return false
  252. }
  253. return shouldFixOnePtr(typ.Elem())
  254. }
  255. return false
  256. }
  257. func isPtrKind(kind reflect.Kind) bool {
  258. switch kind {
  259. case reflect.Ptr, reflect.Map, reflect.Chan, reflect.Func:
  260. return true
  261. }
  262. return false
  263. }
  264. func encoderOfType(cfg *frozenConfig, prefix string, typ reflect.Type) ValEncoder {
  265. encoder := getTypeEncoderFromExtension(cfg, typ)
  266. if encoder != nil {
  267. return encoder
  268. }
  269. encoder = createEncoderOfType(cfg, prefix, typ)
  270. for _, extension := range extensions {
  271. encoder = extension.DecorateEncoder(typ, encoder)
  272. }
  273. for _, extension := range cfg.extensions {
  274. encoder = extension.DecorateEncoder(typ, encoder)
  275. }
  276. return encoder
  277. }
  278. func createEncoderOfType(cfg *frozenConfig, prefix string, typ reflect.Type) ValEncoder {
  279. if typ == jsonRawMessageType {
  280. return &jsonRawMessageCodec{}
  281. }
  282. if typ == jsoniterRawMessageType {
  283. return &jsoniterRawMessageCodec{}
  284. }
  285. encoder := createEncoderOfJsonNumber(cfg, prefix, typ)
  286. if encoder != nil {
  287. return encoder
  288. }
  289. encoder = createEncoderOfMarshaler(cfg, prefix, typ)
  290. if encoder != nil {
  291. return encoder
  292. }
  293. if typ.Kind() == reflect.Slice && typ.Elem().Kind() == reflect.Uint8 {
  294. return &base64Codec{}
  295. }
  296. if typ == anyType {
  297. return &directAnyCodec{}
  298. }
  299. if typ.Implements(anyType) {
  300. return &anyCodec{
  301. valType: reflect2.Type2(typ),
  302. }
  303. }
  304. return createEncoderOfSimpleType(cfg, prefix, typ)
  305. }
  306. func createCheckIsEmpty(cfg *frozenConfig, typ reflect.Type) checkIsEmpty {
  307. kind := typ.Kind()
  308. switch kind {
  309. case reflect.String:
  310. return &stringCodec{}
  311. case reflect.Int:
  312. return &intCodec{}
  313. case reflect.Int8:
  314. return &int8Codec{}
  315. case reflect.Int16:
  316. return &int16Codec{}
  317. case reflect.Int32:
  318. return &int32Codec{}
  319. case reflect.Int64:
  320. return &int64Codec{}
  321. case reflect.Uint:
  322. return &uintCodec{}
  323. case reflect.Uint8:
  324. return &uint8Codec{}
  325. case reflect.Uint16:
  326. return &uint16Codec{}
  327. case reflect.Uint32:
  328. return &uint32Codec{}
  329. case reflect.Uintptr:
  330. return &uintptrCodec{}
  331. case reflect.Uint64:
  332. return &uint64Codec{}
  333. case reflect.Float32:
  334. return &float32Codec{}
  335. case reflect.Float64:
  336. return &float64Codec{}
  337. case reflect.Bool:
  338. return &boolCodec{}
  339. case reflect.Interface:
  340. return &dynamicEncoder{reflect2.Type2(typ)}
  341. case reflect.Struct:
  342. return &structEncoder{typ: typ}
  343. case reflect.Array:
  344. return &arrayEncoder{}
  345. case reflect.Slice:
  346. return &sliceEncoder{}
  347. case reflect.Map:
  348. return encoderOfMap(cfg, "", typ)
  349. case reflect.Ptr:
  350. return &OptionalEncoder{}
  351. default:
  352. return &lazyErrorEncoder{err: fmt.Errorf("unsupported type: %v", typ)}
  353. }
  354. }
  355. func createEncoderOfSimpleType(cfg *frozenConfig, prefix string, typ reflect.Type) ValEncoder {
  356. typeName := typ.String()
  357. kind := typ.Kind()
  358. switch kind {
  359. case reflect.String:
  360. if typeName != "string" {
  361. return encoderOfType(cfg, prefix, reflect.TypeOf((*string)(nil)).Elem())
  362. }
  363. return &stringCodec{}
  364. case reflect.Int:
  365. if typeName != "int" {
  366. return encoderOfType(cfg, prefix, reflect.TypeOf((*int)(nil)).Elem())
  367. }
  368. return &intCodec{}
  369. case reflect.Int8:
  370. if typeName != "int8" {
  371. return encoderOfType(cfg, prefix, reflect.TypeOf((*int8)(nil)).Elem())
  372. }
  373. return &int8Codec{}
  374. case reflect.Int16:
  375. if typeName != "int16" {
  376. return encoderOfType(cfg, prefix, reflect.TypeOf((*int16)(nil)).Elem())
  377. }
  378. return &int16Codec{}
  379. case reflect.Int32:
  380. if typeName != "int32" {
  381. return encoderOfType(cfg, prefix, reflect.TypeOf((*int32)(nil)).Elem())
  382. }
  383. return &int32Codec{}
  384. case reflect.Int64:
  385. if typeName != "int64" {
  386. return encoderOfType(cfg, prefix, reflect.TypeOf((*int64)(nil)).Elem())
  387. }
  388. return &int64Codec{}
  389. case reflect.Uint:
  390. if typeName != "uint" {
  391. return encoderOfType(cfg, prefix, reflect.TypeOf((*uint)(nil)).Elem())
  392. }
  393. return &uintCodec{}
  394. case reflect.Uint8:
  395. if typeName != "uint8" {
  396. return encoderOfType(cfg, prefix, reflect.TypeOf((*uint8)(nil)).Elem())
  397. }
  398. return &uint8Codec{}
  399. case reflect.Uint16:
  400. if typeName != "uint16" {
  401. return encoderOfType(cfg, prefix, reflect.TypeOf((*uint16)(nil)).Elem())
  402. }
  403. return &uint16Codec{}
  404. case reflect.Uint32:
  405. if typeName != "uint32" {
  406. return encoderOfType(cfg, prefix, reflect.TypeOf((*uint32)(nil)).Elem())
  407. }
  408. return &uint32Codec{}
  409. case reflect.Uintptr:
  410. if typeName != "uintptr" {
  411. return encoderOfType(cfg, prefix, reflect.TypeOf((*uintptr)(nil)).Elem())
  412. }
  413. return &uintptrCodec{}
  414. case reflect.Uint64:
  415. if typeName != "uint64" {
  416. return encoderOfType(cfg, prefix, reflect.TypeOf((*uint64)(nil)).Elem())
  417. }
  418. return &uint64Codec{}
  419. case reflect.Float32:
  420. if typeName != "float32" {
  421. return encoderOfType(cfg, prefix, reflect.TypeOf((*float32)(nil)).Elem())
  422. }
  423. return &float32Codec{}
  424. case reflect.Float64:
  425. if typeName != "float64" {
  426. return encoderOfType(cfg, prefix, reflect.TypeOf((*float64)(nil)).Elem())
  427. }
  428. return &float64Codec{}
  429. case reflect.Bool:
  430. if typeName != "bool" {
  431. return encoderOfType(cfg, prefix, reflect.TypeOf((*bool)(nil)).Elem())
  432. }
  433. return &boolCodec{}
  434. case reflect.Interface:
  435. return &dynamicEncoder{reflect2.Type2(typ)}
  436. case reflect.Struct:
  437. return encoderOfStruct(cfg, prefix, typ)
  438. case reflect.Array:
  439. return encoderOfArray(cfg, prefix, typ)
  440. case reflect.Slice:
  441. return encoderOfSlice(cfg, prefix, typ)
  442. case reflect.Map:
  443. return encoderOfMap(cfg, prefix, typ)
  444. case reflect.Ptr:
  445. return encoderOfOptional(cfg, prefix, typ)
  446. default:
  447. return &lazyErrorEncoder{err: fmt.Errorf("%s%s is unsupported type", prefix, typ.String())}
  448. }
  449. }
  450. type placeholderDecoder struct {
  451. cfg *frozenConfig
  452. cacheKey reflect.Type
  453. }
  454. func (decoder *placeholderDecoder) Decode(ptr unsafe.Pointer, iter *Iterator) {
  455. for i := 0; i < 500; i++ {
  456. realDecoder := decoder.cfg.getDecoderFromCache(decoder.cacheKey)
  457. _, isPlaceholder := realDecoder.(*placeholderDecoder)
  458. if isPlaceholder {
  459. time.Sleep(10 * time.Millisecond)
  460. } else {
  461. realDecoder.Decode(ptr, iter)
  462. return
  463. }
  464. }
  465. panic(fmt.Sprintf("real decoder not found for cache key: %v", decoder.cacheKey))
  466. }
  467. type lazyErrorDecoder struct {
  468. err error
  469. }
  470. func (decoder *lazyErrorDecoder) Decode(ptr unsafe.Pointer, iter *Iterator) {
  471. if iter.WhatIsNext() != NilValue {
  472. if iter.Error == nil {
  473. iter.Error = decoder.err
  474. }
  475. } else {
  476. iter.Skip()
  477. }
  478. }
  479. type lazyErrorEncoder struct {
  480. err error
  481. }
  482. func (encoder *lazyErrorEncoder) Encode(ptr unsafe.Pointer, stream *Stream) {
  483. if ptr == nil {
  484. stream.WriteNil()
  485. } else if stream.Error == nil {
  486. stream.Error = encoder.err
  487. }
  488. }
  489. func (encoder *lazyErrorEncoder) IsEmpty(ptr unsafe.Pointer) bool {
  490. return false
  491. }
  492. func extractInterface(val interface{}) emptyInterface {
  493. return *((*emptyInterface)(unsafe.Pointer(&val)))
  494. }
  495. // emptyInterface is the header for an interface{} value.
  496. type emptyInterface struct {
  497. typ unsafe.Pointer
  498. word unsafe.Pointer
  499. }
  500. // emptyInterface is the header for an interface with method (not interface{})
  501. type nonEmptyInterface struct {
  502. // see ../runtime/iface.go:/Itab
  503. itab *struct {
  504. ityp unsafe.Pointer // static interface type
  505. typ unsafe.Pointer // dynamic concrete type
  506. link unsafe.Pointer
  507. bad int32
  508. unused int32
  509. fun [100000]unsafe.Pointer // method table
  510. }
  511. word unsafe.Pointer
  512. }