simple.go 13 KB

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  1. // Copyright (c) 2012-2015 Ugorji Nwoke. All rights reserved.
  2. // Use of this source code is governed by a BSD-style license found in the LICENSE file.
  3. package codec
  4. import "math"
  5. const (
  6. _ uint8 = iota
  7. simpleVdNil = 1
  8. simpleVdFalse = 2
  9. simpleVdTrue = 3
  10. simpleVdFloat32 = 4
  11. simpleVdFloat64 = 5
  12. // each lasts for 4 (ie n, n+1, n+2, n+3)
  13. simpleVdPosInt = 8
  14. simpleVdNegInt = 12
  15. // containers: each lasts for 4 (ie n, n+1, n+2, ... n+7)
  16. simpleVdString = 216
  17. simpleVdByteArray = 224
  18. simpleVdArray = 232
  19. simpleVdMap = 240
  20. simpleVdExt = 248
  21. )
  22. type simpleEncDriver struct {
  23. e *Encoder
  24. h *SimpleHandle
  25. w encWriter
  26. noBuiltInTypes
  27. b [8]byte
  28. encNoSeparator
  29. }
  30. func (e *simpleEncDriver) EncodeNil() {
  31. e.w.writen1(simpleVdNil)
  32. }
  33. func (e *simpleEncDriver) EncodeBool(b bool) {
  34. if b {
  35. e.w.writen1(simpleVdTrue)
  36. } else {
  37. e.w.writen1(simpleVdFalse)
  38. }
  39. }
  40. func (e *simpleEncDriver) EncodeFloat32(f float32) {
  41. e.w.writen1(simpleVdFloat32)
  42. bigenHelper{e.b[:4], e.w}.writeUint32(math.Float32bits(f))
  43. }
  44. func (e *simpleEncDriver) EncodeFloat64(f float64) {
  45. e.w.writen1(simpleVdFloat64)
  46. bigenHelper{e.b[:8], e.w}.writeUint64(math.Float64bits(f))
  47. }
  48. func (e *simpleEncDriver) EncodeInt(v int64) {
  49. if v < 0 {
  50. e.encUint(uint64(-v), simpleVdNegInt)
  51. } else {
  52. e.encUint(uint64(v), simpleVdPosInt)
  53. }
  54. }
  55. func (e *simpleEncDriver) EncodeUint(v uint64) {
  56. e.encUint(v, simpleVdPosInt)
  57. }
  58. func (e *simpleEncDriver) encUint(v uint64, bd uint8) {
  59. if v <= math.MaxUint8 {
  60. e.w.writen2(bd, uint8(v))
  61. } else if v <= math.MaxUint16 {
  62. e.w.writen1(bd + 1)
  63. bigenHelper{e.b[:2], e.w}.writeUint16(uint16(v))
  64. } else if v <= math.MaxUint32 {
  65. e.w.writen1(bd + 2)
  66. bigenHelper{e.b[:4], e.w}.writeUint32(uint32(v))
  67. } else if v <= math.MaxUint64 {
  68. e.w.writen1(bd + 3)
  69. bigenHelper{e.b[:8], e.w}.writeUint64(v)
  70. }
  71. }
  72. func (e *simpleEncDriver) encLen(bd byte, length int) {
  73. if length == 0 {
  74. e.w.writen1(bd)
  75. } else if length <= math.MaxUint8 {
  76. e.w.writen1(bd + 1)
  77. e.w.writen1(uint8(length))
  78. } else if length <= math.MaxUint16 {
  79. e.w.writen1(bd + 2)
  80. bigenHelper{e.b[:2], e.w}.writeUint16(uint16(length))
  81. } else if int64(length) <= math.MaxUint32 {
  82. e.w.writen1(bd + 3)
  83. bigenHelper{e.b[:4], e.w}.writeUint32(uint32(length))
  84. } else {
  85. e.w.writen1(bd + 4)
  86. bigenHelper{e.b[:8], e.w}.writeUint64(uint64(length))
  87. }
  88. }
  89. func (e *simpleEncDriver) EncodeExt(rv interface{}, xtag uint64, ext Ext, _ *Encoder) {
  90. bs := ext.WriteExt(rv)
  91. if bs == nil {
  92. e.EncodeNil()
  93. return
  94. }
  95. e.encodeExtPreamble(uint8(xtag), len(bs))
  96. e.w.writeb(bs)
  97. }
  98. func (e *simpleEncDriver) EncodeRawExt(re *RawExt, _ *Encoder) {
  99. e.encodeExtPreamble(uint8(re.Tag), len(re.Data))
  100. e.w.writeb(re.Data)
  101. }
  102. func (e *simpleEncDriver) encodeExtPreamble(xtag byte, length int) {
  103. e.encLen(simpleVdExt, length)
  104. e.w.writen1(xtag)
  105. }
  106. func (e *simpleEncDriver) EncodeArrayStart(length int) {
  107. e.encLen(simpleVdArray, length)
  108. }
  109. func (e *simpleEncDriver) EncodeMapStart(length int) {
  110. e.encLen(simpleVdMap, length)
  111. }
  112. func (e *simpleEncDriver) EncodeString(c charEncoding, v string) {
  113. e.encLen(simpleVdString, len(v))
  114. e.w.writestr(v)
  115. }
  116. func (e *simpleEncDriver) EncodeSymbol(v string) {
  117. e.EncodeString(c_UTF8, v)
  118. }
  119. func (e *simpleEncDriver) EncodeStringBytes(c charEncoding, v []byte) {
  120. e.encLen(simpleVdByteArray, len(v))
  121. e.w.writeb(v)
  122. }
  123. //------------------------------------
  124. type simpleDecDriver struct {
  125. d *Decoder
  126. h *SimpleHandle
  127. r decReader
  128. bdRead bool
  129. bdType valueType
  130. bd byte
  131. br bool // bytes reader
  132. noBuiltInTypes
  133. noStreamingCodec
  134. decNoSeparator
  135. b [scratchByteArrayLen]byte
  136. }
  137. func (d *simpleDecDriver) readNextBd() {
  138. d.bd = d.r.readn1()
  139. d.bdRead = true
  140. d.bdType = valueTypeUnset
  141. }
  142. func (d *simpleDecDriver) IsContainerType(vt valueType) bool {
  143. switch vt {
  144. case valueTypeNil:
  145. return d.bd == simpleVdNil
  146. case valueTypeBytes:
  147. const x uint8 = simpleVdByteArray
  148. return d.bd == x || d.bd == x+1 || d.bd == x+2 || d.bd == x+3 || d.bd == x+4
  149. case valueTypeString:
  150. const x uint8 = simpleVdString
  151. return d.bd == x || d.bd == x+1 || d.bd == x+2 || d.bd == x+3 || d.bd == x+4
  152. case valueTypeArray:
  153. const x uint8 = simpleVdArray
  154. return d.bd == x || d.bd == x+1 || d.bd == x+2 || d.bd == x+3 || d.bd == x+4
  155. case valueTypeMap:
  156. const x uint8 = simpleVdMap
  157. return d.bd == x || d.bd == x+1 || d.bd == x+2 || d.bd == x+3 || d.bd == x+4
  158. }
  159. d.d.errorf("isContainerType: unsupported parameter: %v", vt)
  160. return false // "unreachable"
  161. }
  162. func (d *simpleDecDriver) TryDecodeAsNil() bool {
  163. if !d.bdRead {
  164. d.readNextBd()
  165. }
  166. if d.bd == simpleVdNil {
  167. d.bdRead = false
  168. return true
  169. }
  170. return false
  171. }
  172. func (d *simpleDecDriver) decCheckInteger() (ui uint64, neg bool) {
  173. if !d.bdRead {
  174. d.readNextBd()
  175. }
  176. switch d.bd {
  177. case simpleVdPosInt:
  178. ui = uint64(d.r.readn1())
  179. case simpleVdPosInt + 1:
  180. ui = uint64(bigen.Uint16(d.r.readx(2)))
  181. case simpleVdPosInt + 2:
  182. ui = uint64(bigen.Uint32(d.r.readx(4)))
  183. case simpleVdPosInt + 3:
  184. ui = uint64(bigen.Uint64(d.r.readx(8)))
  185. case simpleVdNegInt:
  186. ui = uint64(d.r.readn1())
  187. neg = true
  188. case simpleVdNegInt + 1:
  189. ui = uint64(bigen.Uint16(d.r.readx(2)))
  190. neg = true
  191. case simpleVdNegInt + 2:
  192. ui = uint64(bigen.Uint32(d.r.readx(4)))
  193. neg = true
  194. case simpleVdNegInt + 3:
  195. ui = uint64(bigen.Uint64(d.r.readx(8)))
  196. neg = true
  197. default:
  198. d.d.errorf("decIntAny: Integer only valid from pos/neg integer1..8. Invalid descriptor: %v", d.bd)
  199. return
  200. }
  201. // don't do this check, because callers may only want the unsigned value.
  202. // if ui > math.MaxInt64 {
  203. // d.d.errorf("decIntAny: Integer out of range for signed int64: %v", ui)
  204. // return
  205. // }
  206. return
  207. }
  208. func (d *simpleDecDriver) DecodeInt(bitsize uint8) (i int64) {
  209. ui, neg := d.decCheckInteger()
  210. i, overflow := chkOvf.SignedInt(ui)
  211. if overflow {
  212. d.d.errorf("simple: overflow converting %v to signed integer", ui)
  213. return
  214. }
  215. if neg {
  216. i = -i
  217. }
  218. if chkOvf.Int(i, bitsize) {
  219. d.d.errorf("simple: overflow integer: %v", i)
  220. return
  221. }
  222. d.bdRead = false
  223. return
  224. }
  225. func (d *simpleDecDriver) DecodeUint(bitsize uint8) (ui uint64) {
  226. ui, neg := d.decCheckInteger()
  227. if neg {
  228. d.d.errorf("Assigning negative signed value to unsigned type")
  229. return
  230. }
  231. if chkOvf.Uint(ui, bitsize) {
  232. d.d.errorf("simple: overflow integer: %v", ui)
  233. return
  234. }
  235. d.bdRead = false
  236. return
  237. }
  238. func (d *simpleDecDriver) DecodeFloat(chkOverflow32 bool) (f float64) {
  239. if !d.bdRead {
  240. d.readNextBd()
  241. }
  242. if d.bd == simpleVdFloat32 {
  243. f = float64(math.Float32frombits(bigen.Uint32(d.r.readx(4))))
  244. } else if d.bd == simpleVdFloat64 {
  245. f = math.Float64frombits(bigen.Uint64(d.r.readx(8)))
  246. } else {
  247. if d.bd >= simpleVdPosInt && d.bd <= simpleVdNegInt+3 {
  248. f = float64(d.DecodeInt(64))
  249. } else {
  250. d.d.errorf("Float only valid from float32/64: Invalid descriptor: %v", d.bd)
  251. return
  252. }
  253. }
  254. if chkOverflow32 && chkOvf.Float32(f) {
  255. d.d.errorf("msgpack: float32 overflow: %v", f)
  256. return
  257. }
  258. d.bdRead = false
  259. return
  260. }
  261. // bool can be decoded from bool only (single byte).
  262. func (d *simpleDecDriver) DecodeBool() (b bool) {
  263. if !d.bdRead {
  264. d.readNextBd()
  265. }
  266. if d.bd == simpleVdTrue {
  267. b = true
  268. } else if d.bd == simpleVdFalse {
  269. } else {
  270. d.d.errorf("Invalid single-byte value for bool: %s: %x", msgBadDesc, d.bd)
  271. return
  272. }
  273. d.bdRead = false
  274. return
  275. }
  276. func (d *simpleDecDriver) ReadMapStart() (length int) {
  277. d.bdRead = false
  278. return d.decLen()
  279. }
  280. func (d *simpleDecDriver) ReadArrayStart() (length int) {
  281. d.bdRead = false
  282. return d.decLen()
  283. }
  284. func (d *simpleDecDriver) decLen() int {
  285. switch d.bd % 8 {
  286. case 0:
  287. return 0
  288. case 1:
  289. return int(d.r.readn1())
  290. case 2:
  291. return int(bigen.Uint16(d.r.readx(2)))
  292. case 3:
  293. ui := uint64(bigen.Uint32(d.r.readx(4)))
  294. if chkOvf.Uint(ui, intBitsize) {
  295. d.d.errorf("simple: overflow integer: %v", ui)
  296. return 0
  297. }
  298. return int(ui)
  299. case 4:
  300. ui := bigen.Uint64(d.r.readx(8))
  301. if chkOvf.Uint(ui, intBitsize) {
  302. d.d.errorf("simple: overflow integer: %v", ui)
  303. return 0
  304. }
  305. return int(ui)
  306. }
  307. d.d.errorf("decLen: Cannot read length: bd%8 must be in range 0..4. Got: %d", d.bd%8)
  308. return -1
  309. }
  310. func (d *simpleDecDriver) DecodeString() (s string) {
  311. return string(d.DecodeBytes(d.b[:], true, true))
  312. }
  313. func (d *simpleDecDriver) DecodeBytes(bs []byte, isstring, zerocopy bool) (bsOut []byte) {
  314. if !d.bdRead {
  315. d.readNextBd()
  316. }
  317. if d.bd == simpleVdNil {
  318. d.bdRead = false
  319. return
  320. }
  321. clen := d.decLen()
  322. d.bdRead = false
  323. if zerocopy {
  324. if d.br {
  325. return d.r.readx(clen)
  326. } else if len(bs) == 0 {
  327. bs = d.b[:]
  328. }
  329. }
  330. return decByteSlice(d.r, clen, bs)
  331. }
  332. func (d *simpleDecDriver) DecodeExt(rv interface{}, xtag uint64, ext Ext) (realxtag uint64) {
  333. if xtag > 0xff {
  334. d.d.errorf("decodeExt: tag must be <= 0xff; got: %v", xtag)
  335. return
  336. }
  337. realxtag1, xbs := d.decodeExtV(ext != nil, uint8(xtag))
  338. realxtag = uint64(realxtag1)
  339. if ext == nil {
  340. re := rv.(*RawExt)
  341. re.Tag = realxtag
  342. re.Data = detachZeroCopyBytes(d.br, re.Data, xbs)
  343. } else {
  344. ext.ReadExt(rv, xbs)
  345. }
  346. return
  347. }
  348. func (d *simpleDecDriver) decodeExtV(verifyTag bool, tag byte) (xtag byte, xbs []byte) {
  349. if !d.bdRead {
  350. d.readNextBd()
  351. }
  352. switch d.bd {
  353. case simpleVdExt, simpleVdExt + 1, simpleVdExt + 2, simpleVdExt + 3, simpleVdExt + 4:
  354. l := d.decLen()
  355. xtag = d.r.readn1()
  356. if verifyTag && xtag != tag {
  357. d.d.errorf("Wrong extension tag. Got %b. Expecting: %v", xtag, tag)
  358. return
  359. }
  360. xbs = d.r.readx(l)
  361. case simpleVdByteArray, simpleVdByteArray + 1, simpleVdByteArray + 2, simpleVdByteArray + 3, simpleVdByteArray + 4:
  362. xbs = d.DecodeBytes(nil, false, true)
  363. default:
  364. d.d.errorf("Invalid d.bd for extensions (Expecting extensions or byte array). Got: 0x%x", d.bd)
  365. return
  366. }
  367. d.bdRead = false
  368. return
  369. }
  370. func (d *simpleDecDriver) DecodeNaked() (v interface{}, vt valueType, decodeFurther bool) {
  371. if !d.bdRead {
  372. d.readNextBd()
  373. }
  374. switch d.bd {
  375. case simpleVdNil:
  376. vt = valueTypeNil
  377. case simpleVdFalse:
  378. vt = valueTypeBool
  379. v = false
  380. case simpleVdTrue:
  381. vt = valueTypeBool
  382. v = true
  383. case simpleVdPosInt, simpleVdPosInt + 1, simpleVdPosInt + 2, simpleVdPosInt + 3:
  384. if d.h.SignedInteger {
  385. vt = valueTypeInt
  386. v = d.DecodeInt(64)
  387. } else {
  388. vt = valueTypeUint
  389. v = d.DecodeUint(64)
  390. }
  391. case simpleVdNegInt, simpleVdNegInt + 1, simpleVdNegInt + 2, simpleVdNegInt + 3:
  392. vt = valueTypeInt
  393. v = d.DecodeInt(64)
  394. case simpleVdFloat32:
  395. vt = valueTypeFloat
  396. v = d.DecodeFloat(true)
  397. case simpleVdFloat64:
  398. vt = valueTypeFloat
  399. v = d.DecodeFloat(false)
  400. case simpleVdString, simpleVdString + 1, simpleVdString + 2, simpleVdString + 3, simpleVdString + 4:
  401. vt = valueTypeString
  402. v = d.DecodeString()
  403. case simpleVdByteArray, simpleVdByteArray + 1, simpleVdByteArray + 2, simpleVdByteArray + 3, simpleVdByteArray + 4:
  404. vt = valueTypeBytes
  405. v = d.DecodeBytes(nil, false, false)
  406. case simpleVdExt, simpleVdExt + 1, simpleVdExt + 2, simpleVdExt + 3, simpleVdExt + 4:
  407. vt = valueTypeExt
  408. l := d.decLen()
  409. var re RawExt
  410. re.Tag = uint64(d.r.readn1())
  411. re.Data = d.r.readx(l)
  412. v = &re
  413. case simpleVdArray, simpleVdArray + 1, simpleVdArray + 2, simpleVdArray + 3, simpleVdArray + 4:
  414. vt = valueTypeArray
  415. decodeFurther = true
  416. case simpleVdMap, simpleVdMap + 1, simpleVdMap + 2, simpleVdMap + 3, simpleVdMap + 4:
  417. vt = valueTypeMap
  418. decodeFurther = true
  419. default:
  420. d.d.errorf("decodeNaked: Unrecognized d.bd: 0x%x", d.bd)
  421. return
  422. }
  423. if !decodeFurther {
  424. d.bdRead = false
  425. }
  426. return
  427. }
  428. //------------------------------------
  429. // SimpleHandle is a Handle for a very simple encoding format.
  430. //
  431. // simple is a simplistic codec similar to binc, but not as compact.
  432. // - Encoding of a value is always preceeded by the descriptor byte (bd)
  433. // - True, false, nil are encoded fully in 1 byte (the descriptor)
  434. // - Integers (intXXX, uintXXX) are encoded in 1, 2, 4 or 8 bytes (plus a descriptor byte).
  435. // There are positive (uintXXX and intXXX >= 0) and negative (intXXX < 0) integers.
  436. // - Floats are encoded in 4 or 8 bytes (plus a descriptor byte)
  437. // - Lenght of containers (strings, bytes, array, map, extensions)
  438. // are encoded in 0, 1, 2, 4 or 8 bytes.
  439. // Zero-length containers have no length encoded.
  440. // For others, the number of bytes is given by pow(2, bd%3)
  441. // - maps are encoded as [bd] [length] [[key][value]]...
  442. // - arrays are encoded as [bd] [length] [value]...
  443. // - extensions are encoded as [bd] [length] [tag] [byte]...
  444. // - strings/bytearrays are encoded as [bd] [length] [byte]...
  445. //
  446. // The full spec will be published soon.
  447. type SimpleHandle struct {
  448. BasicHandle
  449. binaryEncodingType
  450. }
  451. func (h *SimpleHandle) newEncDriver(e *Encoder) encDriver {
  452. return &simpleEncDriver{e: e, w: e.w, h: h}
  453. }
  454. func (h *SimpleHandle) newDecDriver(d *Decoder) decDriver {
  455. return &simpleDecDriver{d: d, r: d.r, h: h, br: d.bytes}
  456. }
  457. var _ decDriver = (*simpleDecDriver)(nil)
  458. var _ encDriver = (*simpleEncDriver)(nil)