25'ten fazla konu seçemezsiniz Konular bir harf veya rakamla başlamalı, kısa çizgiler ('-') içerebilir ve en fazla 35 karakter uzunluğunda olabilir.
 
 
 
 

420 satır
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  1. // Copyright 2019+ Klaus Post. All rights reserved.
  2. // License information can be found in the LICENSE file.
  3. // Based on work by Yann Collet, released under BSD License.
  4. package zstd
  5. import (
  6. "bytes"
  7. "encoding/hex"
  8. "errors"
  9. "io"
  10. "github.com/klauspost/compress/zstd/internal/xxhash"
  11. )
  12. type frameDec struct {
  13. o decoderOptions
  14. crc *xxhash.Digest
  15. WindowSize uint64
  16. // Frame history passed between blocks
  17. history history
  18. rawInput byteBuffer
  19. // Byte buffer that can be reused for small input blocks.
  20. bBuf byteBuf
  21. FrameContentSize uint64
  22. DictionaryID *uint32
  23. HasCheckSum bool
  24. SingleSegment bool
  25. }
  26. const (
  27. // MinWindowSize is the minimum Window Size, which is 1 KB.
  28. MinWindowSize = 1 << 10
  29. // MaxWindowSize is the maximum encoder window size
  30. // and the default decoder maximum window size.
  31. MaxWindowSize = 1 << 29
  32. )
  33. var (
  34. frameMagic = []byte{0x28, 0xb5, 0x2f, 0xfd}
  35. skippableFrameMagic = []byte{0x2a, 0x4d, 0x18}
  36. )
  37. func newFrameDec(o decoderOptions) *frameDec {
  38. if o.maxWindowSize > o.maxDecodedSize {
  39. o.maxWindowSize = o.maxDecodedSize
  40. }
  41. d := frameDec{
  42. o: o,
  43. }
  44. return &d
  45. }
  46. // reset will read the frame header and prepare for block decoding.
  47. // If nothing can be read from the input, io.EOF will be returned.
  48. // Any other error indicated that the stream contained data, but
  49. // there was a problem.
  50. func (d *frameDec) reset(br byteBuffer) error {
  51. d.HasCheckSum = false
  52. d.WindowSize = 0
  53. var signature [4]byte
  54. for {
  55. var err error
  56. // Check if we can read more...
  57. b, err := br.readSmall(1)
  58. switch err {
  59. case io.EOF, io.ErrUnexpectedEOF:
  60. return io.EOF
  61. default:
  62. return err
  63. case nil:
  64. signature[0] = b[0]
  65. }
  66. // Read the rest, don't allow io.ErrUnexpectedEOF
  67. b, err = br.readSmall(3)
  68. switch err {
  69. case io.EOF:
  70. return io.EOF
  71. default:
  72. return err
  73. case nil:
  74. copy(signature[1:], b)
  75. }
  76. if !bytes.Equal(signature[1:4], skippableFrameMagic) || signature[0]&0xf0 != 0x50 {
  77. if debugDecoder {
  78. println("Not skippable", hex.EncodeToString(signature[:]), hex.EncodeToString(skippableFrameMagic))
  79. }
  80. // Break if not skippable frame.
  81. break
  82. }
  83. // Read size to skip
  84. b, err = br.readSmall(4)
  85. if err != nil {
  86. if debugDecoder {
  87. println("Reading Frame Size", err)
  88. }
  89. return err
  90. }
  91. n := uint32(b[0]) | (uint32(b[1]) << 8) | (uint32(b[2]) << 16) | (uint32(b[3]) << 24)
  92. println("Skipping frame with", n, "bytes.")
  93. err = br.skipN(int64(n))
  94. if err != nil {
  95. if debugDecoder {
  96. println("Reading discarded frame", err)
  97. }
  98. return err
  99. }
  100. }
  101. if !bytes.Equal(signature[:], frameMagic) {
  102. if debugDecoder {
  103. println("Got magic numbers: ", signature, "want:", frameMagic)
  104. }
  105. return ErrMagicMismatch
  106. }
  107. // Read Frame_Header_Descriptor
  108. fhd, err := br.readByte()
  109. if err != nil {
  110. if debugDecoder {
  111. println("Reading Frame_Header_Descriptor", err)
  112. }
  113. return err
  114. }
  115. d.SingleSegment = fhd&(1<<5) != 0
  116. if fhd&(1<<3) != 0 {
  117. return errors.New("reserved bit set on frame header")
  118. }
  119. // Read Window_Descriptor
  120. // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#window_descriptor
  121. d.WindowSize = 0
  122. if !d.SingleSegment {
  123. wd, err := br.readByte()
  124. if err != nil {
  125. if debugDecoder {
  126. println("Reading Window_Descriptor", err)
  127. }
  128. return err
  129. }
  130. printf("raw: %x, mantissa: %d, exponent: %d\n", wd, wd&7, wd>>3)
  131. windowLog := 10 + (wd >> 3)
  132. windowBase := uint64(1) << windowLog
  133. windowAdd := (windowBase / 8) * uint64(wd&0x7)
  134. d.WindowSize = windowBase + windowAdd
  135. }
  136. // Read Dictionary_ID
  137. // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#dictionary_id
  138. d.DictionaryID = nil
  139. if size := fhd & 3; size != 0 {
  140. if size == 3 {
  141. size = 4
  142. }
  143. b, err := br.readSmall(int(size))
  144. if err != nil {
  145. println("Reading Dictionary_ID", err)
  146. return err
  147. }
  148. var id uint32
  149. switch size {
  150. case 1:
  151. id = uint32(b[0])
  152. case 2:
  153. id = uint32(b[0]) | (uint32(b[1]) << 8)
  154. case 4:
  155. id = uint32(b[0]) | (uint32(b[1]) << 8) | (uint32(b[2]) << 16) | (uint32(b[3]) << 24)
  156. }
  157. if debugDecoder {
  158. println("Dict size", size, "ID:", id)
  159. }
  160. if id > 0 {
  161. // ID 0 means "sorry, no dictionary anyway".
  162. // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#dictionary-format
  163. d.DictionaryID = &id
  164. }
  165. }
  166. // Read Frame_Content_Size
  167. // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#frame_content_size
  168. var fcsSize int
  169. v := fhd >> 6
  170. switch v {
  171. case 0:
  172. if d.SingleSegment {
  173. fcsSize = 1
  174. }
  175. default:
  176. fcsSize = 1 << v
  177. }
  178. d.FrameContentSize = fcsUnknown
  179. if fcsSize > 0 {
  180. b, err := br.readSmall(fcsSize)
  181. if err != nil {
  182. println("Reading Frame content", err)
  183. return err
  184. }
  185. switch fcsSize {
  186. case 1:
  187. d.FrameContentSize = uint64(b[0])
  188. case 2:
  189. // When FCS_Field_Size is 2, the offset of 256 is added.
  190. d.FrameContentSize = uint64(b[0]) | (uint64(b[1]) << 8) + 256
  191. case 4:
  192. d.FrameContentSize = uint64(b[0]) | (uint64(b[1]) << 8) | (uint64(b[2]) << 16) | (uint64(b[3]) << 24)
  193. case 8:
  194. d1 := uint32(b[0]) | (uint32(b[1]) << 8) | (uint32(b[2]) << 16) | (uint32(b[3]) << 24)
  195. d2 := uint32(b[4]) | (uint32(b[5]) << 8) | (uint32(b[6]) << 16) | (uint32(b[7]) << 24)
  196. d.FrameContentSize = uint64(d1) | (uint64(d2) << 32)
  197. }
  198. if debugDecoder {
  199. println("Read FCS:", d.FrameContentSize)
  200. }
  201. }
  202. // Move this to shared.
  203. d.HasCheckSum = fhd&(1<<2) != 0
  204. if d.HasCheckSum {
  205. if d.crc == nil {
  206. d.crc = xxhash.New()
  207. }
  208. d.crc.Reset()
  209. }
  210. if d.WindowSize > d.o.maxWindowSize {
  211. if debugDecoder {
  212. printf("window size %d > max %d\n", d.WindowSize, d.o.maxWindowSize)
  213. }
  214. return ErrWindowSizeExceeded
  215. }
  216. if d.WindowSize == 0 && d.SingleSegment {
  217. // We may not need window in this case.
  218. d.WindowSize = d.FrameContentSize
  219. if d.WindowSize < MinWindowSize {
  220. d.WindowSize = MinWindowSize
  221. }
  222. if d.WindowSize > d.o.maxDecodedSize {
  223. if debugDecoder {
  224. printf("window size %d > max %d\n", d.WindowSize, d.o.maxWindowSize)
  225. }
  226. return ErrDecoderSizeExceeded
  227. }
  228. }
  229. // The minimum Window_Size is 1 KB.
  230. if d.WindowSize < MinWindowSize {
  231. if debugDecoder {
  232. println("got window size: ", d.WindowSize)
  233. }
  234. return ErrWindowSizeTooSmall
  235. }
  236. d.history.windowSize = int(d.WindowSize)
  237. if !d.o.lowMem || d.history.windowSize < maxBlockSize {
  238. // Alloc 2x window size if not low-mem, or very small window size.
  239. d.history.allocFrameBuffer = d.history.windowSize * 2
  240. } else {
  241. // Alloc with one additional block
  242. d.history.allocFrameBuffer = d.history.windowSize + maxBlockSize
  243. }
  244. if debugDecoder {
  245. println("Frame: Dict:", d.DictionaryID, "FrameContentSize:", d.FrameContentSize, "singleseg:", d.SingleSegment, "window:", d.WindowSize, "crc:", d.HasCheckSum)
  246. }
  247. // history contains input - maybe we do something
  248. d.rawInput = br
  249. return nil
  250. }
  251. // next will start decoding the next block from stream.
  252. func (d *frameDec) next(block *blockDec) error {
  253. if debugDecoder {
  254. println("decoding new block")
  255. }
  256. err := block.reset(d.rawInput, d.WindowSize)
  257. if err != nil {
  258. println("block error:", err)
  259. // Signal the frame decoder we have a problem.
  260. block.sendErr(err)
  261. return err
  262. }
  263. return nil
  264. }
  265. // checkCRC will check the checksum if the frame has one.
  266. // Will return ErrCRCMismatch if crc check failed, otherwise nil.
  267. func (d *frameDec) checkCRC() error {
  268. if !d.HasCheckSum {
  269. return nil
  270. }
  271. // We can overwrite upper tmp now
  272. want, err := d.rawInput.readSmall(4)
  273. if err != nil {
  274. println("CRC missing?", err)
  275. return err
  276. }
  277. if d.o.ignoreChecksum {
  278. return nil
  279. }
  280. var tmp [4]byte
  281. got := d.crc.Sum64()
  282. // Flip to match file order.
  283. tmp[0] = byte(got >> 0)
  284. tmp[1] = byte(got >> 8)
  285. tmp[2] = byte(got >> 16)
  286. tmp[3] = byte(got >> 24)
  287. if !bytes.Equal(tmp[:], want) {
  288. if debugDecoder {
  289. println("CRC Check Failed:", tmp[:], "!=", want)
  290. }
  291. return ErrCRCMismatch
  292. }
  293. if debugDecoder {
  294. println("CRC ok", tmp[:])
  295. }
  296. return nil
  297. }
  298. // consumeCRC reads the checksum data if the frame has one.
  299. func (d *frameDec) consumeCRC() error {
  300. if d.HasCheckSum {
  301. _, err := d.rawInput.readSmall(4)
  302. if err != nil {
  303. println("CRC missing?", err)
  304. return err
  305. }
  306. }
  307. return nil
  308. }
  309. // runDecoder will create a sync decoder that will decode a block of data.
  310. func (d *frameDec) runDecoder(dst []byte, dec *blockDec) ([]byte, error) {
  311. saved := d.history.b
  312. // We use the history for output to avoid copying it.
  313. d.history.b = dst
  314. d.history.ignoreBuffer = len(dst)
  315. // Store input length, so we only check new data.
  316. crcStart := len(dst)
  317. d.history.decoders.maxSyncLen = 0
  318. if d.FrameContentSize != fcsUnknown {
  319. d.history.decoders.maxSyncLen = d.FrameContentSize + uint64(len(dst))
  320. if d.history.decoders.maxSyncLen > d.o.maxDecodedSize {
  321. return dst, ErrDecoderSizeExceeded
  322. }
  323. if uint64(cap(dst)) < d.history.decoders.maxSyncLen {
  324. // Alloc for output
  325. dst2 := make([]byte, len(dst), d.history.decoders.maxSyncLen+compressedBlockOverAlloc)
  326. copy(dst2, dst)
  327. dst = dst2
  328. }
  329. }
  330. var err error
  331. for {
  332. err = dec.reset(d.rawInput, d.WindowSize)
  333. if err != nil {
  334. break
  335. }
  336. if debugDecoder {
  337. println("next block:", dec)
  338. }
  339. err = dec.decodeBuf(&d.history)
  340. if err != nil {
  341. break
  342. }
  343. if uint64(len(d.history.b)) > d.o.maxDecodedSize {
  344. err = ErrDecoderSizeExceeded
  345. break
  346. }
  347. if uint64(len(d.history.b)-crcStart) > d.FrameContentSize {
  348. println("runDecoder: FrameContentSize exceeded", uint64(len(d.history.b)-crcStart), ">", d.FrameContentSize)
  349. err = ErrFrameSizeExceeded
  350. break
  351. }
  352. if dec.Last {
  353. break
  354. }
  355. if debugDecoder {
  356. println("runDecoder: FrameContentSize", uint64(len(d.history.b)-crcStart), "<=", d.FrameContentSize)
  357. }
  358. }
  359. dst = d.history.b
  360. if err == nil {
  361. if d.FrameContentSize != fcsUnknown && uint64(len(d.history.b)-crcStart) != d.FrameContentSize {
  362. err = ErrFrameSizeMismatch
  363. } else if d.HasCheckSum {
  364. if d.o.ignoreChecksum {
  365. err = d.consumeCRC()
  366. } else {
  367. var n int
  368. n, err = d.crc.Write(dst[crcStart:])
  369. if err == nil {
  370. if n != len(dst)-crcStart {
  371. err = io.ErrShortWrite
  372. } else {
  373. err = d.checkCRC()
  374. }
  375. }
  376. }
  377. }
  378. }
  379. d.history.b = saved
  380. return dst, err
  381. }