typedarrays.go 29 KB

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  1. package goja
  2. import (
  3. "math"
  4. "reflect"
  5. "strconv"
  6. "unsafe"
  7. "github.com/dop251/goja/unistring"
  8. )
  9. type byteOrder bool
  10. const (
  11. bigEndian byteOrder = false
  12. littleEndian byteOrder = true
  13. )
  14. var (
  15. nativeEndian byteOrder
  16. arrayBufferType = reflect.TypeOf(ArrayBuffer{})
  17. )
  18. type typedArrayObjectCtor func(buf *arrayBufferObject, offset, length int, proto *Object) *typedArrayObject
  19. type arrayBufferObject struct {
  20. baseObject
  21. detached bool
  22. data []byte
  23. }
  24. // ArrayBuffer is a Go wrapper around ECMAScript ArrayBuffer. Calling Runtime.ToValue() on it
  25. // returns the underlying ArrayBuffer. Calling Export() on an ECMAScript ArrayBuffer returns a wrapper.
  26. // Use Runtime.NewArrayBuffer([]byte) to create one.
  27. type ArrayBuffer struct {
  28. buf *arrayBufferObject
  29. }
  30. type dataViewObject struct {
  31. baseObject
  32. viewedArrayBuf *arrayBufferObject
  33. byteLen, byteOffset int
  34. }
  35. type typedArray interface {
  36. toRaw(Value) uint64
  37. get(idx int) Value
  38. set(idx int, value Value)
  39. getRaw(idx int) uint64
  40. setRaw(idx int, raw uint64)
  41. less(i, j int) bool
  42. swap(i, j int)
  43. typeMatch(v Value) bool
  44. export(offset int, length int) interface{}
  45. exportType() reflect.Type
  46. }
  47. type uint8Array []byte
  48. type uint8ClampedArray []byte
  49. type int8Array []byte
  50. type uint16Array []byte
  51. type int16Array []byte
  52. type uint32Array []byte
  53. type int32Array []byte
  54. type float32Array []byte
  55. type float64Array []byte
  56. type typedArrayObject struct {
  57. baseObject
  58. viewedArrayBuf *arrayBufferObject
  59. defaultCtor *Object
  60. length, offset int
  61. elemSize int
  62. typedArray typedArray
  63. }
  64. func (a ArrayBuffer) toValue(r *Runtime) Value {
  65. if a.buf == nil {
  66. return _null
  67. }
  68. v := a.buf.val
  69. if v.runtime != r {
  70. panic(r.NewTypeError("Illegal runtime transition of an ArrayBuffer"))
  71. }
  72. return v
  73. }
  74. // Bytes returns the underlying []byte for this ArrayBuffer.
  75. // For detached ArrayBuffers returns nil.
  76. func (a ArrayBuffer) Bytes() []byte {
  77. return a.buf.data
  78. }
  79. // Detach the ArrayBuffer. After this, the underlying []byte becomes unreferenced and any attempt
  80. // to use this ArrayBuffer results in a TypeError.
  81. // Returns false if it was already detached, true otherwise.
  82. // Note, this method may only be called from the goroutine that 'owns' the Runtime, it may not
  83. // be called concurrently.
  84. func (a ArrayBuffer) Detach() bool {
  85. if a.buf.detached {
  86. return false
  87. }
  88. a.buf.detach()
  89. return true
  90. }
  91. // Detached returns true if the ArrayBuffer is detached.
  92. func (a ArrayBuffer) Detached() bool {
  93. return a.buf.detached
  94. }
  95. // NewArrayBuffer creates a new instance of ArrayBuffer backed by the provided byte slice.
  96. //
  97. // Warning: be careful when using unaligned slices (sub-slices that do not start at word boundaries). If later a
  98. // typed array of a multibyte type (uint16, uint32, etc.) is created from a buffer backed by an unaligned slice,
  99. // using this typed array will result in unaligned access which may cause performance degradation or runtime panics
  100. // on some architectures or configurations.
  101. func (r *Runtime) NewArrayBuffer(data []byte) ArrayBuffer {
  102. buf := r._newArrayBuffer(r.global.ArrayBufferPrototype, nil)
  103. buf.data = data
  104. return ArrayBuffer{
  105. buf: buf,
  106. }
  107. }
  108. func (a *uint8Array) toRaw(v Value) uint64 {
  109. return uint64(toUint8(v))
  110. }
  111. func (a *uint8Array) ptr(idx int) *uint8 {
  112. p := unsafe.Pointer((*reflect.SliceHeader)(unsafe.Pointer(a)).Data)
  113. return (*uint8)(unsafe.Pointer(uintptr(p) + uintptr(idx)))
  114. }
  115. func (a *uint8Array) get(idx int) Value {
  116. return intToValue(int64(*(a.ptr(idx))))
  117. }
  118. func (a *uint8Array) set(idx int, value Value) {
  119. *(a.ptr(idx)) = toUint8(value)
  120. }
  121. func (a *uint8Array) getRaw(idx int) uint64 {
  122. return uint64(*(a.ptr(idx)))
  123. }
  124. func (a *uint8Array) setRaw(idx int, raw uint64) {
  125. *(a.ptr(idx)) = uint8(raw)
  126. }
  127. func (a *uint8Array) less(i, j int) bool {
  128. return *(a.ptr(i)) < *(a.ptr(j))
  129. }
  130. func (a *uint8Array) swap(i, j int) {
  131. pi, pj := a.ptr(i), a.ptr(j)
  132. *pi, *pj = *pj, *pi
  133. }
  134. func (a *uint8Array) typeMatch(v Value) bool {
  135. if i, ok := v.(valueInt); ok {
  136. return i >= 0 && i <= 255
  137. }
  138. return false
  139. }
  140. func (a *uint8Array) export(offset int, length int) interface{} {
  141. return ([]uint8)(*a)[offset : offset+length : offset+length]
  142. }
  143. func (a *uint8Array) exportType() reflect.Type {
  144. return typeBytes
  145. }
  146. func (a *uint8ClampedArray) toRaw(v Value) uint64 {
  147. return uint64(toUint8Clamp(v))
  148. }
  149. func (a *uint8ClampedArray) ptr(idx int) *uint8 {
  150. p := unsafe.Pointer((*reflect.SliceHeader)(unsafe.Pointer(a)).Data)
  151. return (*uint8)(unsafe.Pointer(uintptr(p) + uintptr(idx)))
  152. }
  153. func (a *uint8ClampedArray) get(idx int) Value {
  154. return intToValue(int64(*(a.ptr(idx))))
  155. }
  156. func (a *uint8ClampedArray) set(idx int, value Value) {
  157. *(a.ptr(idx)) = toUint8Clamp(value)
  158. }
  159. func (a *uint8ClampedArray) getRaw(idx int) uint64 {
  160. return uint64(*(a.ptr(idx)))
  161. }
  162. func (a *uint8ClampedArray) setRaw(idx int, raw uint64) {
  163. *(a.ptr(idx)) = uint8(raw)
  164. }
  165. func (a *uint8ClampedArray) less(i, j int) bool {
  166. return *(a.ptr(i)) < *(a.ptr(j))
  167. }
  168. func (a *uint8ClampedArray) swap(i, j int) {
  169. pi, pj := a.ptr(i), a.ptr(j)
  170. *pi, *pj = *pj, *pi
  171. }
  172. func (a *uint8ClampedArray) typeMatch(v Value) bool {
  173. if i, ok := v.(valueInt); ok {
  174. return i >= 0 && i <= 255
  175. }
  176. return false
  177. }
  178. func (a *uint8ClampedArray) export(offset int, length int) interface{} {
  179. return ([]uint8)(*a)[offset : offset+length : offset+length]
  180. }
  181. func (a *uint8ClampedArray) exportType() reflect.Type {
  182. return typeBytes
  183. }
  184. func (a *int8Array) ptr(idx int) *int8 {
  185. p := unsafe.Pointer((*reflect.SliceHeader)(unsafe.Pointer(a)).Data)
  186. return (*int8)(unsafe.Pointer(uintptr(p) + uintptr(idx)))
  187. }
  188. func (a *int8Array) get(idx int) Value {
  189. return intToValue(int64(*(a.ptr(idx))))
  190. }
  191. func (a *int8Array) getRaw(idx int) uint64 {
  192. return uint64(*(a.ptr(idx)))
  193. }
  194. func (a *int8Array) set(idx int, value Value) {
  195. *(a.ptr(idx)) = toInt8(value)
  196. }
  197. func (a *int8Array) toRaw(v Value) uint64 {
  198. return uint64(toInt8(v))
  199. }
  200. func (a *int8Array) setRaw(idx int, v uint64) {
  201. *(a.ptr(idx)) = int8(v)
  202. }
  203. func (a *int8Array) less(i, j int) bool {
  204. return *(a.ptr(i)) < *(a.ptr(j))
  205. }
  206. func (a *int8Array) swap(i, j int) {
  207. pi, pj := a.ptr(i), a.ptr(j)
  208. *pi, *pj = *pj, *pi
  209. }
  210. func (a *int8Array) typeMatch(v Value) bool {
  211. if i, ok := v.(valueInt); ok {
  212. return i >= math.MinInt8 && i <= math.MaxInt8
  213. }
  214. return false
  215. }
  216. func (a *int8Array) export(offset int, length int) interface{} {
  217. var res []int8
  218. sliceHeader := (*reflect.SliceHeader)(unsafe.Pointer(&res))
  219. sliceHeader.Data = (*reflect.SliceHeader)(unsafe.Pointer(a)).Data + uintptr(offset)
  220. sliceHeader.Len = length
  221. sliceHeader.Cap = length
  222. return res
  223. }
  224. var typeInt8Array = reflect.TypeOf(([]int8)(nil))
  225. func (a *int8Array) exportType() reflect.Type {
  226. return typeInt8Array
  227. }
  228. func (a *uint16Array) toRaw(v Value) uint64 {
  229. return uint64(toUint16(v))
  230. }
  231. func (a *uint16Array) ptr(idx int) *uint16 {
  232. p := unsafe.Pointer((*reflect.SliceHeader)(unsafe.Pointer(a)).Data)
  233. return (*uint16)(unsafe.Pointer(uintptr(p) + uintptr(idx)*2))
  234. }
  235. func (a *uint16Array) get(idx int) Value {
  236. return intToValue(int64(*(a.ptr(idx))))
  237. }
  238. func (a *uint16Array) set(idx int, value Value) {
  239. *(a.ptr(idx)) = toUint16(value)
  240. }
  241. func (a *uint16Array) getRaw(idx int) uint64 {
  242. return uint64(*(a.ptr(idx)))
  243. }
  244. func (a *uint16Array) setRaw(idx int, raw uint64) {
  245. *(a.ptr(idx)) = uint16(raw)
  246. }
  247. func (a *uint16Array) less(i, j int) bool {
  248. return *(a.ptr(i)) < *(a.ptr(j))
  249. }
  250. func (a *uint16Array) swap(i, j int) {
  251. pi, pj := a.ptr(i), a.ptr(j)
  252. *pi, *pj = *pj, *pi
  253. }
  254. func (a *uint16Array) typeMatch(v Value) bool {
  255. if i, ok := v.(valueInt); ok {
  256. return i >= 0 && i <= math.MaxUint16
  257. }
  258. return false
  259. }
  260. var typeUint16Array = reflect.TypeOf(([]uint16)(nil))
  261. func (a *uint16Array) export(offset int, length int) interface{} {
  262. var res []uint16
  263. sliceHeader := (*reflect.SliceHeader)(unsafe.Pointer(&res))
  264. sliceHeader.Data = (*reflect.SliceHeader)(unsafe.Pointer(a)).Data + uintptr(offset)*2
  265. sliceHeader.Len = length
  266. sliceHeader.Cap = length
  267. return res
  268. }
  269. func (a *uint16Array) exportType() reflect.Type {
  270. return typeUint16Array
  271. }
  272. func (a *int16Array) ptr(idx int) *int16 {
  273. p := unsafe.Pointer((*reflect.SliceHeader)(unsafe.Pointer(a)).Data)
  274. return (*int16)(unsafe.Pointer(uintptr(p) + uintptr(idx)*2))
  275. }
  276. func (a *int16Array) get(idx int) Value {
  277. return intToValue(int64(*(a.ptr(idx))))
  278. }
  279. func (a *int16Array) getRaw(idx int) uint64 {
  280. return uint64(*(a.ptr(idx)))
  281. }
  282. func (a *int16Array) set(idx int, value Value) {
  283. *(a.ptr(idx)) = toInt16(value)
  284. }
  285. func (a *int16Array) toRaw(v Value) uint64 {
  286. return uint64(toInt16(v))
  287. }
  288. func (a *int16Array) setRaw(idx int, v uint64) {
  289. *(a.ptr(idx)) = int16(v)
  290. }
  291. func (a *int16Array) less(i, j int) bool {
  292. return *(a.ptr(i)) < *(a.ptr(j))
  293. }
  294. func (a *int16Array) swap(i, j int) {
  295. pi, pj := a.ptr(i), a.ptr(j)
  296. *pi, *pj = *pj, *pi
  297. }
  298. func (a *int16Array) typeMatch(v Value) bool {
  299. if i, ok := v.(valueInt); ok {
  300. return i >= math.MinInt16 && i <= math.MaxInt16
  301. }
  302. return false
  303. }
  304. func (a *int16Array) export(offset int, length int) interface{} {
  305. var res []int16
  306. sliceHeader := (*reflect.SliceHeader)(unsafe.Pointer(&res))
  307. sliceHeader.Data = (*reflect.SliceHeader)(unsafe.Pointer(a)).Data + uintptr(offset)*2
  308. sliceHeader.Len = length
  309. sliceHeader.Cap = length
  310. return res
  311. }
  312. var typeInt16Array = reflect.TypeOf(([]int16)(nil))
  313. func (a *int16Array) exportType() reflect.Type {
  314. return typeInt16Array
  315. }
  316. func (a *uint32Array) ptr(idx int) *uint32 {
  317. p := unsafe.Pointer((*reflect.SliceHeader)(unsafe.Pointer(a)).Data)
  318. return (*uint32)(unsafe.Pointer(uintptr(p) + uintptr(idx)*4))
  319. }
  320. func (a *uint32Array) get(idx int) Value {
  321. return intToValue(int64(*(a.ptr(idx))))
  322. }
  323. func (a *uint32Array) getRaw(idx int) uint64 {
  324. return uint64(*(a.ptr(idx)))
  325. }
  326. func (a *uint32Array) set(idx int, value Value) {
  327. *(a.ptr(idx)) = toUint32(value)
  328. }
  329. func (a *uint32Array) toRaw(v Value) uint64 {
  330. return uint64(toUint32(v))
  331. }
  332. func (a *uint32Array) setRaw(idx int, v uint64) {
  333. *(a.ptr(idx)) = uint32(v)
  334. }
  335. func (a *uint32Array) less(i, j int) bool {
  336. return *(a.ptr(i)) < *(a.ptr(j))
  337. }
  338. func (a *uint32Array) swap(i, j int) {
  339. pi, pj := a.ptr(i), a.ptr(j)
  340. *pi, *pj = *pj, *pi
  341. }
  342. func (a *uint32Array) typeMatch(v Value) bool {
  343. if i, ok := v.(valueInt); ok {
  344. return i >= 0 && i <= math.MaxUint32
  345. }
  346. return false
  347. }
  348. func (a *uint32Array) export(offset int, length int) interface{} {
  349. var res []uint32
  350. sliceHeader := (*reflect.SliceHeader)(unsafe.Pointer(&res))
  351. sliceHeader.Data = (*reflect.SliceHeader)(unsafe.Pointer(a)).Data + uintptr(offset)*4
  352. sliceHeader.Len = length
  353. sliceHeader.Cap = length
  354. return res
  355. }
  356. var typeUint32Array = reflect.TypeOf(([]uint32)(nil))
  357. func (a *uint32Array) exportType() reflect.Type {
  358. return typeUint32Array
  359. }
  360. func (a *int32Array) ptr(idx int) *int32 {
  361. p := unsafe.Pointer((*reflect.SliceHeader)(unsafe.Pointer(a)).Data)
  362. return (*int32)(unsafe.Pointer(uintptr(p) + uintptr(idx)*4))
  363. }
  364. func (a *int32Array) get(idx int) Value {
  365. return intToValue(int64(*(a.ptr(idx))))
  366. }
  367. func (a *int32Array) getRaw(idx int) uint64 {
  368. return uint64(*(a.ptr(idx)))
  369. }
  370. func (a *int32Array) set(idx int, value Value) {
  371. *(a.ptr(idx)) = toInt32(value)
  372. }
  373. func (a *int32Array) toRaw(v Value) uint64 {
  374. return uint64(toInt32(v))
  375. }
  376. func (a *int32Array) setRaw(idx int, v uint64) {
  377. *(a.ptr(idx)) = int32(v)
  378. }
  379. func (a *int32Array) less(i, j int) bool {
  380. return *(a.ptr(i)) < *(a.ptr(j))
  381. }
  382. func (a *int32Array) swap(i, j int) {
  383. pi, pj := a.ptr(i), a.ptr(j)
  384. *pi, *pj = *pj, *pi
  385. }
  386. func (a *int32Array) typeMatch(v Value) bool {
  387. if i, ok := v.(valueInt); ok {
  388. return i >= math.MinInt32 && i <= math.MaxInt32
  389. }
  390. return false
  391. }
  392. func (a *int32Array) export(offset int, length int) interface{} {
  393. var res []int32
  394. sliceHeader := (*reflect.SliceHeader)(unsafe.Pointer(&res))
  395. sliceHeader.Data = (*reflect.SliceHeader)(unsafe.Pointer(a)).Data + uintptr(offset)*4
  396. sliceHeader.Len = length
  397. sliceHeader.Cap = length
  398. return res
  399. }
  400. var typeInt32Array = reflect.TypeOf(([]int32)(nil))
  401. func (a *int32Array) exportType() reflect.Type {
  402. return typeInt32Array
  403. }
  404. func (a *float32Array) ptr(idx int) *float32 {
  405. p := unsafe.Pointer((*reflect.SliceHeader)(unsafe.Pointer(a)).Data)
  406. return (*float32)(unsafe.Pointer(uintptr(p) + uintptr(idx)*4))
  407. }
  408. func (a *float32Array) get(idx int) Value {
  409. return floatToValue(float64(*(a.ptr(idx))))
  410. }
  411. func (a *float32Array) getRaw(idx int) uint64 {
  412. return uint64(math.Float32bits(*(a.ptr(idx))))
  413. }
  414. func (a *float32Array) set(idx int, value Value) {
  415. *(a.ptr(idx)) = toFloat32(value)
  416. }
  417. func (a *float32Array) toRaw(v Value) uint64 {
  418. return uint64(math.Float32bits(toFloat32(v)))
  419. }
  420. func (a *float32Array) setRaw(idx int, v uint64) {
  421. *(a.ptr(idx)) = math.Float32frombits(uint32(v))
  422. }
  423. func typedFloatLess(x, y float64) bool {
  424. xNan := math.IsNaN(x)
  425. yNan := math.IsNaN(y)
  426. if yNan {
  427. return !xNan
  428. } else if xNan {
  429. return false
  430. }
  431. if x == 0 && y == 0 { // handle neg zero
  432. return math.Signbit(x)
  433. }
  434. return x < y
  435. }
  436. func (a *float32Array) less(i, j int) bool {
  437. return typedFloatLess(float64(*(a.ptr(i))), float64(*(a.ptr(j))))
  438. }
  439. func (a *float32Array) swap(i, j int) {
  440. pi, pj := a.ptr(i), a.ptr(j)
  441. *pi, *pj = *pj, *pi
  442. }
  443. func (a *float32Array) typeMatch(v Value) bool {
  444. switch v.(type) {
  445. case valueInt, valueFloat:
  446. return true
  447. }
  448. return false
  449. }
  450. func (a *float32Array) export(offset int, length int) interface{} {
  451. var res []float32
  452. sliceHeader := (*reflect.SliceHeader)(unsafe.Pointer(&res))
  453. sliceHeader.Data = (*reflect.SliceHeader)(unsafe.Pointer(a)).Data + uintptr(offset)*4
  454. sliceHeader.Len = length
  455. sliceHeader.Cap = length
  456. return res
  457. }
  458. var typeFloat32Array = reflect.TypeOf(([]float32)(nil))
  459. func (a *float32Array) exportType() reflect.Type {
  460. return typeFloat32Array
  461. }
  462. func (a *float64Array) ptr(idx int) *float64 {
  463. p := unsafe.Pointer((*reflect.SliceHeader)(unsafe.Pointer(a)).Data)
  464. return (*float64)(unsafe.Pointer(uintptr(p) + uintptr(idx)*8))
  465. }
  466. func (a *float64Array) get(idx int) Value {
  467. return floatToValue(*(a.ptr(idx)))
  468. }
  469. func (a *float64Array) getRaw(idx int) uint64 {
  470. return math.Float64bits(*(a.ptr(idx)))
  471. }
  472. func (a *float64Array) set(idx int, value Value) {
  473. *(a.ptr(idx)) = value.ToFloat()
  474. }
  475. func (a *float64Array) toRaw(v Value) uint64 {
  476. return math.Float64bits(v.ToFloat())
  477. }
  478. func (a *float64Array) setRaw(idx int, v uint64) {
  479. *(a.ptr(idx)) = math.Float64frombits(v)
  480. }
  481. func (a *float64Array) less(i, j int) bool {
  482. return typedFloatLess(*(a.ptr(i)), *(a.ptr(j)))
  483. }
  484. func (a *float64Array) swap(i, j int) {
  485. pi, pj := a.ptr(i), a.ptr(j)
  486. *pi, *pj = *pj, *pi
  487. }
  488. func (a *float64Array) typeMatch(v Value) bool {
  489. switch v.(type) {
  490. case valueInt, valueFloat:
  491. return true
  492. }
  493. return false
  494. }
  495. func (a *float64Array) export(offset int, length int) interface{} {
  496. var res []float64
  497. sliceHeader := (*reflect.SliceHeader)(unsafe.Pointer(&res))
  498. sliceHeader.Data = (*reflect.SliceHeader)(unsafe.Pointer(a)).Data + uintptr(offset)*8
  499. sliceHeader.Len = length
  500. sliceHeader.Cap = length
  501. return res
  502. }
  503. var typeFloat64Array = reflect.TypeOf(([]float64)(nil))
  504. func (a *float64Array) exportType() reflect.Type {
  505. return typeFloat64Array
  506. }
  507. func (a *typedArrayObject) _getIdx(idx int) Value {
  508. if 0 <= idx && idx < a.length {
  509. if !a.viewedArrayBuf.ensureNotDetached(false) {
  510. return nil
  511. }
  512. return a.typedArray.get(idx + a.offset)
  513. }
  514. return nil
  515. }
  516. func (a *typedArrayObject) getOwnPropStr(name unistring.String) Value {
  517. idx, ok := strToIntNum(name)
  518. if ok {
  519. v := a._getIdx(idx)
  520. if v != nil {
  521. return &valueProperty{
  522. value: v,
  523. writable: true,
  524. enumerable: true,
  525. configurable: true,
  526. }
  527. }
  528. return nil
  529. }
  530. if idx == 0 {
  531. return nil
  532. }
  533. return a.baseObject.getOwnPropStr(name)
  534. }
  535. func (a *typedArrayObject) getOwnPropIdx(idx valueInt) Value {
  536. v := a._getIdx(toIntClamp(int64(idx)))
  537. if v != nil {
  538. return &valueProperty{
  539. value: v,
  540. writable: true,
  541. enumerable: true,
  542. configurable: true,
  543. }
  544. }
  545. return nil
  546. }
  547. func (a *typedArrayObject) getStr(name unistring.String, receiver Value) Value {
  548. idx, ok := strToIntNum(name)
  549. if ok {
  550. return a._getIdx(idx)
  551. }
  552. if idx == 0 {
  553. return nil
  554. }
  555. return a.baseObject.getStr(name, receiver)
  556. }
  557. func (a *typedArrayObject) getIdx(idx valueInt, receiver Value) Value {
  558. return a._getIdx(toIntClamp(int64(idx)))
  559. }
  560. func (a *typedArrayObject) isValidIntegerIndex(idx int) bool {
  561. if a.viewedArrayBuf.ensureNotDetached(false) {
  562. if idx >= 0 && idx < a.length {
  563. return true
  564. }
  565. }
  566. return false
  567. }
  568. func (a *typedArrayObject) _putIdx(idx int, v Value) {
  569. v = v.ToNumber()
  570. if a.isValidIntegerIndex(idx) {
  571. a.typedArray.set(idx+a.offset, v)
  572. }
  573. }
  574. func (a *typedArrayObject) _hasIdx(idx int) bool {
  575. return a.isValidIntegerIndex(idx)
  576. }
  577. func (a *typedArrayObject) setOwnStr(p unistring.String, v Value, throw bool) bool {
  578. idx, ok := strToIntNum(p)
  579. if ok {
  580. a._putIdx(idx, v)
  581. return true
  582. }
  583. if idx == 0 {
  584. v.ToNumber() // make sure it throws
  585. return true
  586. }
  587. return a.baseObject.setOwnStr(p, v, throw)
  588. }
  589. func (a *typedArrayObject) setOwnIdx(p valueInt, v Value, throw bool) bool {
  590. a._putIdx(toIntClamp(int64(p)), v)
  591. return true
  592. }
  593. func (a *typedArrayObject) setForeignStr(p unistring.String, v, receiver Value, throw bool) (res bool, handled bool) {
  594. return a._setForeignStr(p, a.getOwnPropStr(p), v, receiver, throw)
  595. }
  596. func (a *typedArrayObject) setForeignIdx(p valueInt, v, receiver Value, throw bool) (res bool, handled bool) {
  597. return a._setForeignIdx(p, trueValIfPresent(a.hasOwnPropertyIdx(p)), v, receiver, throw)
  598. }
  599. func (a *typedArrayObject) hasOwnPropertyStr(name unistring.String) bool {
  600. idx, ok := strToIntNum(name)
  601. if ok {
  602. return a._hasIdx(idx)
  603. }
  604. if idx == 0 {
  605. return false
  606. }
  607. return a.baseObject.hasOwnPropertyStr(name)
  608. }
  609. func (a *typedArrayObject) hasOwnPropertyIdx(idx valueInt) bool {
  610. return a._hasIdx(toIntClamp(int64(idx)))
  611. }
  612. func (a *typedArrayObject) hasPropertyStr(name unistring.String) bool {
  613. idx, ok := strToIntNum(name)
  614. if ok {
  615. return a._hasIdx(idx)
  616. }
  617. if idx == 0 {
  618. return false
  619. }
  620. return a.baseObject.hasPropertyStr(name)
  621. }
  622. func (a *typedArrayObject) hasPropertyIdx(idx valueInt) bool {
  623. return a.hasOwnPropertyIdx(idx)
  624. }
  625. func (a *typedArrayObject) _defineIdxProperty(idx int, desc PropertyDescriptor, throw bool) bool {
  626. if desc.Configurable == FLAG_FALSE || desc.Enumerable == FLAG_FALSE || desc.IsAccessor() || desc.Writable == FLAG_FALSE {
  627. a.val.runtime.typeErrorResult(throw, "Cannot redefine property: %d", idx)
  628. return false
  629. }
  630. _, ok := a._defineOwnProperty(unistring.String(strconv.Itoa(idx)), a.getOwnPropIdx(valueInt(idx)), desc, throw)
  631. if ok {
  632. if !a.isValidIntegerIndex(idx) {
  633. a.val.runtime.typeErrorResult(throw, "Invalid typed array index")
  634. return false
  635. }
  636. a._putIdx(idx, desc.Value)
  637. return true
  638. }
  639. return ok
  640. }
  641. func (a *typedArrayObject) defineOwnPropertyStr(name unistring.String, desc PropertyDescriptor, throw bool) bool {
  642. idx, ok := strToIntNum(name)
  643. if ok {
  644. return a._defineIdxProperty(idx, desc, throw)
  645. }
  646. if idx == 0 {
  647. a.viewedArrayBuf.ensureNotDetached(throw)
  648. a.val.runtime.typeErrorResult(throw, "Invalid typed array index")
  649. return false
  650. }
  651. return a.baseObject.defineOwnPropertyStr(name, desc, throw)
  652. }
  653. func (a *typedArrayObject) defineOwnPropertyIdx(name valueInt, desc PropertyDescriptor, throw bool) bool {
  654. return a._defineIdxProperty(toIntClamp(int64(name)), desc, throw)
  655. }
  656. func (a *typedArrayObject) deleteStr(name unistring.String, throw bool) bool {
  657. idx, ok := strToIntNum(name)
  658. if ok {
  659. if a.isValidIntegerIndex(idx) {
  660. a.val.runtime.typeErrorResult(throw, "Cannot delete property '%d' of %s", idx, a.val.String())
  661. return false
  662. }
  663. return true
  664. }
  665. if idx == 0 {
  666. return true
  667. }
  668. return a.baseObject.deleteStr(name, throw)
  669. }
  670. func (a *typedArrayObject) deleteIdx(idx valueInt, throw bool) bool {
  671. if a.viewedArrayBuf.ensureNotDetached(false) && idx >= 0 && int64(idx) < int64(a.length) {
  672. a.val.runtime.typeErrorResult(throw, "Cannot delete property '%d' of %s", idx, a.val.String())
  673. return false
  674. }
  675. return true
  676. }
  677. func (a *typedArrayObject) stringKeys(all bool, accum []Value) []Value {
  678. if accum == nil {
  679. accum = make([]Value, 0, a.length)
  680. }
  681. for i := 0; i < a.length; i++ {
  682. accum = append(accum, asciiString(strconv.Itoa(i)))
  683. }
  684. return a.baseObject.stringKeys(all, accum)
  685. }
  686. type typedArrayPropIter struct {
  687. a *typedArrayObject
  688. idx int
  689. }
  690. func (i *typedArrayPropIter) next() (propIterItem, iterNextFunc) {
  691. if i.idx < i.a.length {
  692. name := strconv.Itoa(i.idx)
  693. prop := i.a._getIdx(i.idx)
  694. i.idx++
  695. return propIterItem{name: asciiString(name), value: prop}, i.next
  696. }
  697. return i.a.baseObject.iterateStringKeys()()
  698. }
  699. func (a *typedArrayObject) iterateStringKeys() iterNextFunc {
  700. return (&typedArrayPropIter{
  701. a: a,
  702. }).next
  703. }
  704. func (a *typedArrayObject) exportToArrayOrSlice(dst reflect.Value, typ reflect.Type, ctx *objectExportCtx) error {
  705. if typ == typeBytes {
  706. dst.Set(reflect.ValueOf(a.viewedArrayBuf.data))
  707. return nil
  708. }
  709. return a.baseObject.exportToArrayOrSlice(dst, typ, ctx)
  710. }
  711. func (a *typedArrayObject) export(_ *objectExportCtx) interface{} {
  712. return a.typedArray.export(a.offset, a.length)
  713. }
  714. func (a *typedArrayObject) exportType() reflect.Type {
  715. return a.typedArray.exportType()
  716. }
  717. func (o *dataViewObject) exportToArrayOrSlice(dst reflect.Value, typ reflect.Type, ctx *objectExportCtx) error {
  718. if typ == typeBytes {
  719. dst.Set(reflect.ValueOf(o.viewedArrayBuf.data))
  720. return nil
  721. }
  722. return o.baseObject.exportToArrayOrSlice(dst, typ, ctx)
  723. }
  724. func (r *Runtime) _newTypedArrayObject(buf *arrayBufferObject, offset, length, elemSize int, defCtor *Object, arr typedArray, proto *Object) *typedArrayObject {
  725. o := &Object{runtime: r}
  726. a := &typedArrayObject{
  727. baseObject: baseObject{
  728. val: o,
  729. class: classObject,
  730. prototype: proto,
  731. extensible: true,
  732. },
  733. viewedArrayBuf: buf,
  734. offset: offset,
  735. length: length,
  736. elemSize: elemSize,
  737. defaultCtor: defCtor,
  738. typedArray: arr,
  739. }
  740. o.self = a
  741. a.init()
  742. return a
  743. }
  744. func (r *Runtime) newUint8ArrayObject(buf *arrayBufferObject, offset, length int, proto *Object) *typedArrayObject {
  745. // Note, no need to use r.getUint8Array() here or in the similar methods below, because the value is already set
  746. // by the time they are called.
  747. return r._newTypedArrayObject(buf, offset, length, 1, r.global.Uint8Array, (*uint8Array)(&buf.data), proto)
  748. }
  749. func (r *Runtime) newUint8ClampedArrayObject(buf *arrayBufferObject, offset, length int, proto *Object) *typedArrayObject {
  750. return r._newTypedArrayObject(buf, offset, length, 1, r.global.Uint8ClampedArray, (*uint8ClampedArray)(&buf.data), proto)
  751. }
  752. func (r *Runtime) newInt8ArrayObject(buf *arrayBufferObject, offset, length int, proto *Object) *typedArrayObject {
  753. return r._newTypedArrayObject(buf, offset, length, 1, r.global.Int8Array, (*int8Array)(&buf.data), proto)
  754. }
  755. func (r *Runtime) newUint16ArrayObject(buf *arrayBufferObject, offset, length int, proto *Object) *typedArrayObject {
  756. return r._newTypedArrayObject(buf, offset, length, 2, r.global.Uint16Array, (*uint16Array)(&buf.data), proto)
  757. }
  758. func (r *Runtime) newInt16ArrayObject(buf *arrayBufferObject, offset, length int, proto *Object) *typedArrayObject {
  759. return r._newTypedArrayObject(buf, offset, length, 2, r.global.Int16Array, (*int16Array)(&buf.data), proto)
  760. }
  761. func (r *Runtime) newUint32ArrayObject(buf *arrayBufferObject, offset, length int, proto *Object) *typedArrayObject {
  762. return r._newTypedArrayObject(buf, offset, length, 4, r.global.Uint32Array, (*uint32Array)(&buf.data), proto)
  763. }
  764. func (r *Runtime) newInt32ArrayObject(buf *arrayBufferObject, offset, length int, proto *Object) *typedArrayObject {
  765. return r._newTypedArrayObject(buf, offset, length, 4, r.global.Int32Array, (*int32Array)(&buf.data), proto)
  766. }
  767. func (r *Runtime) newFloat32ArrayObject(buf *arrayBufferObject, offset, length int, proto *Object) *typedArrayObject {
  768. return r._newTypedArrayObject(buf, offset, length, 4, r.global.Float32Array, (*float32Array)(&buf.data), proto)
  769. }
  770. func (r *Runtime) newFloat64ArrayObject(buf *arrayBufferObject, offset, length int, proto *Object) *typedArrayObject {
  771. return r._newTypedArrayObject(buf, offset, length, 8, r.global.Float64Array, (*float64Array)(&buf.data), proto)
  772. }
  773. func (o *dataViewObject) getIdxAndByteOrder(getIdx int, littleEndianVal Value, size int) (int, byteOrder) {
  774. o.viewedArrayBuf.ensureNotDetached(true)
  775. if getIdx+size > o.byteLen {
  776. panic(o.val.runtime.newError(o.val.runtime.getRangeError(), "Index %d is out of bounds", getIdx))
  777. }
  778. getIdx += o.byteOffset
  779. var bo byteOrder
  780. if littleEndianVal != nil {
  781. if littleEndianVal.ToBoolean() {
  782. bo = littleEndian
  783. } else {
  784. bo = bigEndian
  785. }
  786. } else {
  787. bo = nativeEndian
  788. }
  789. return getIdx, bo
  790. }
  791. func (o *arrayBufferObject) ensureNotDetached(throw bool) bool {
  792. if o.detached {
  793. o.val.runtime.typeErrorResult(throw, "ArrayBuffer is detached")
  794. return false
  795. }
  796. return true
  797. }
  798. func (o *arrayBufferObject) getFloat32(idx int, byteOrder byteOrder) float32 {
  799. return math.Float32frombits(o.getUint32(idx, byteOrder))
  800. }
  801. func (o *arrayBufferObject) setFloat32(idx int, val float32, byteOrder byteOrder) {
  802. o.setUint32(idx, math.Float32bits(val), byteOrder)
  803. }
  804. func (o *arrayBufferObject) getFloat64(idx int, byteOrder byteOrder) float64 {
  805. return math.Float64frombits(o.getUint64(idx, byteOrder))
  806. }
  807. func (o *arrayBufferObject) setFloat64(idx int, val float64, byteOrder byteOrder) {
  808. o.setUint64(idx, math.Float64bits(val), byteOrder)
  809. }
  810. func (o *arrayBufferObject) getUint64(idx int, byteOrder byteOrder) uint64 {
  811. var b []byte
  812. if byteOrder == nativeEndian {
  813. b = o.data[idx : idx+8]
  814. } else {
  815. b = make([]byte, 8)
  816. d := o.data[idx : idx+8]
  817. b[0], b[1], b[2], b[3], b[4], b[5], b[6], b[7] = d[7], d[6], d[5], d[4], d[3], d[2], d[1], d[0]
  818. }
  819. return *((*uint64)(unsafe.Pointer(&b[0])))
  820. }
  821. func (o *arrayBufferObject) setUint64(idx int, val uint64, byteOrder byteOrder) {
  822. if byteOrder == nativeEndian {
  823. *(*uint64)(unsafe.Pointer(&o.data[idx])) = val
  824. } else {
  825. b := (*[8]byte)(unsafe.Pointer(&val))
  826. d := o.data[idx : idx+8]
  827. d[0], d[1], d[2], d[3], d[4], d[5], d[6], d[7] = b[7], b[6], b[5], b[4], b[3], b[2], b[1], b[0]
  828. }
  829. }
  830. func (o *arrayBufferObject) getUint32(idx int, byteOrder byteOrder) uint32 {
  831. var b []byte
  832. if byteOrder == nativeEndian {
  833. b = o.data[idx : idx+4]
  834. } else {
  835. b = make([]byte, 4)
  836. d := o.data[idx : idx+4]
  837. b[0], b[1], b[2], b[3] = d[3], d[2], d[1], d[0]
  838. }
  839. return *((*uint32)(unsafe.Pointer(&b[0])))
  840. }
  841. func (o *arrayBufferObject) setUint32(idx int, val uint32, byteOrder byteOrder) {
  842. o.ensureNotDetached(true)
  843. if byteOrder == nativeEndian {
  844. *(*uint32)(unsafe.Pointer(&o.data[idx])) = val
  845. } else {
  846. b := (*[4]byte)(unsafe.Pointer(&val))
  847. d := o.data[idx : idx+4]
  848. d[0], d[1], d[2], d[3] = b[3], b[2], b[1], b[0]
  849. }
  850. }
  851. func (o *arrayBufferObject) getUint16(idx int, byteOrder byteOrder) uint16 {
  852. var b []byte
  853. if byteOrder == nativeEndian {
  854. b = o.data[idx : idx+2]
  855. } else {
  856. b = make([]byte, 2)
  857. d := o.data[idx : idx+2]
  858. b[0], b[1] = d[1], d[0]
  859. }
  860. return *((*uint16)(unsafe.Pointer(&b[0])))
  861. }
  862. func (o *arrayBufferObject) setUint16(idx int, val uint16, byteOrder byteOrder) {
  863. if byteOrder == nativeEndian {
  864. *(*uint16)(unsafe.Pointer(&o.data[idx])) = val
  865. } else {
  866. b := (*[2]byte)(unsafe.Pointer(&val))
  867. d := o.data[idx : idx+2]
  868. d[0], d[1] = b[1], b[0]
  869. }
  870. }
  871. func (o *arrayBufferObject) getUint8(idx int) uint8 {
  872. return o.data[idx]
  873. }
  874. func (o *arrayBufferObject) setUint8(idx int, val uint8) {
  875. o.data[idx] = val
  876. }
  877. func (o *arrayBufferObject) getInt32(idx int, byteOrder byteOrder) int32 {
  878. return int32(o.getUint32(idx, byteOrder))
  879. }
  880. func (o *arrayBufferObject) setInt32(idx int, val int32, byteOrder byteOrder) {
  881. o.setUint32(idx, uint32(val), byteOrder)
  882. }
  883. func (o *arrayBufferObject) getInt16(idx int, byteOrder byteOrder) int16 {
  884. return int16(o.getUint16(idx, byteOrder))
  885. }
  886. func (o *arrayBufferObject) setInt16(idx int, val int16, byteOrder byteOrder) {
  887. o.setUint16(idx, uint16(val), byteOrder)
  888. }
  889. func (o *arrayBufferObject) getInt8(idx int) int8 {
  890. return int8(o.data[idx])
  891. }
  892. func (o *arrayBufferObject) setInt8(idx int, val int8) {
  893. o.setUint8(idx, uint8(val))
  894. }
  895. func (o *arrayBufferObject) detach() {
  896. o.data = nil
  897. o.detached = true
  898. }
  899. func (o *arrayBufferObject) exportType() reflect.Type {
  900. return arrayBufferType
  901. }
  902. func (o *arrayBufferObject) export(*objectExportCtx) interface{} {
  903. return ArrayBuffer{
  904. buf: o,
  905. }
  906. }
  907. func (o *arrayBufferObject) exportToArrayOrSlice(dst reflect.Value, typ reflect.Type, ctx *objectExportCtx) error {
  908. if typ == typeBytes {
  909. dst.Set(reflect.ValueOf(o.data))
  910. return nil
  911. }
  912. return o.baseObject.exportToArrayOrSlice(dst, typ, ctx)
  913. }
  914. func (r *Runtime) _newArrayBuffer(proto *Object, o *Object) *arrayBufferObject {
  915. if o == nil {
  916. o = &Object{runtime: r}
  917. }
  918. b := &arrayBufferObject{
  919. baseObject: baseObject{
  920. class: classObject,
  921. val: o,
  922. prototype: proto,
  923. extensible: true,
  924. },
  925. }
  926. o.self = b
  927. b.init()
  928. return b
  929. }
  930. func init() {
  931. buf := [2]byte{}
  932. *(*uint16)(unsafe.Pointer(&buf[0])) = uint16(0xCAFE)
  933. switch buf {
  934. case [2]byte{0xFE, 0xCA}:
  935. nativeEndian = littleEndian
  936. case [2]byte{0xCA, 0xFE}:
  937. nativeEndian = bigEndian
  938. default:
  939. panic("Could not determine native endianness.")
  940. }
  941. }