/src/zstd/lib/common/fse.h
Line | Count | Source (jump to first uncovered line) |
1 | | /* ****************************************************************** |
2 | | * FSE : Finite State Entropy codec |
3 | | * Public Prototypes declaration |
4 | | * Copyright (c) Meta Platforms, Inc. and affiliates. |
5 | | * |
6 | | * You can contact the author at : |
7 | | * - Source repository : https://github.com/Cyan4973/FiniteStateEntropy |
8 | | * |
9 | | * This source code is licensed under both the BSD-style license (found in the |
10 | | * LICENSE file in the root directory of this source tree) and the GPLv2 (found |
11 | | * in the COPYING file in the root directory of this source tree). |
12 | | * You may select, at your option, one of the above-listed licenses. |
13 | | ****************************************************************** */ |
14 | | |
15 | | #if defined (__cplusplus) |
16 | | extern "C" { |
17 | | #endif |
18 | | |
19 | | #ifndef FSE_H |
20 | | #define FSE_H |
21 | | |
22 | | |
23 | | /*-***************************************** |
24 | | * Dependencies |
25 | | ******************************************/ |
26 | | #include "zstd_deps.h" /* size_t, ptrdiff_t */ |
27 | | |
28 | | |
29 | | /*-***************************************** |
30 | | * FSE_PUBLIC_API : control library symbols visibility |
31 | | ******************************************/ |
32 | | #if defined(FSE_DLL_EXPORT) && (FSE_DLL_EXPORT==1) && defined(__GNUC__) && (__GNUC__ >= 4) |
33 | | # define FSE_PUBLIC_API __attribute__ ((visibility ("default"))) |
34 | | #elif defined(FSE_DLL_EXPORT) && (FSE_DLL_EXPORT==1) /* Visual expected */ |
35 | | # define FSE_PUBLIC_API __declspec(dllexport) |
36 | | #elif defined(FSE_DLL_IMPORT) && (FSE_DLL_IMPORT==1) |
37 | | # define FSE_PUBLIC_API __declspec(dllimport) /* It isn't required but allows to generate better code, saving a function pointer load from the IAT and an indirect jump.*/ |
38 | | #else |
39 | | # define FSE_PUBLIC_API |
40 | | #endif |
41 | | |
42 | | /*------ Version ------*/ |
43 | 0 | #define FSE_VERSION_MAJOR 0 |
44 | 0 | #define FSE_VERSION_MINOR 9 |
45 | 0 | #define FSE_VERSION_RELEASE 0 |
46 | | |
47 | | #define FSE_LIB_VERSION FSE_VERSION_MAJOR.FSE_VERSION_MINOR.FSE_VERSION_RELEASE |
48 | | #define FSE_QUOTE(str) #str |
49 | | #define FSE_EXPAND_AND_QUOTE(str) FSE_QUOTE(str) |
50 | | #define FSE_VERSION_STRING FSE_EXPAND_AND_QUOTE(FSE_LIB_VERSION) |
51 | | |
52 | 0 | #define FSE_VERSION_NUMBER (FSE_VERSION_MAJOR *100*100 + FSE_VERSION_MINOR *100 + FSE_VERSION_RELEASE) |
53 | | FSE_PUBLIC_API unsigned FSE_versionNumber(void); /**< library version number; to be used when checking dll version */ |
54 | | |
55 | | |
56 | | /*-***************************************** |
57 | | * Tool functions |
58 | | ******************************************/ |
59 | | FSE_PUBLIC_API size_t FSE_compressBound(size_t size); /* maximum compressed size */ |
60 | | |
61 | | /* Error Management */ |
62 | | FSE_PUBLIC_API unsigned FSE_isError(size_t code); /* tells if a return value is an error code */ |
63 | | FSE_PUBLIC_API const char* FSE_getErrorName(size_t code); /* provides error code string (useful for debugging) */ |
64 | | |
65 | | |
66 | | /*-***************************************** |
67 | | * FSE detailed API |
68 | | ******************************************/ |
69 | | /*! |
70 | | FSE_compress() does the following: |
71 | | 1. count symbol occurrence from source[] into table count[] (see hist.h) |
72 | | 2. normalize counters so that sum(count[]) == Power_of_2 (2^tableLog) |
73 | | 3. save normalized counters to memory buffer using writeNCount() |
74 | | 4. build encoding table 'CTable' from normalized counters |
75 | | 5. encode the data stream using encoding table 'CTable' |
76 | | |
77 | | FSE_decompress() does the following: |
78 | | 1. read normalized counters with readNCount() |
79 | | 2. build decoding table 'DTable' from normalized counters |
80 | | 3. decode the data stream using decoding table 'DTable' |
81 | | |
82 | | The following API allows targeting specific sub-functions for advanced tasks. |
83 | | For example, it's possible to compress several blocks using the same 'CTable', |
84 | | or to save and provide normalized distribution using external method. |
85 | | */ |
86 | | |
87 | | /* *** COMPRESSION *** */ |
88 | | |
89 | | /*! FSE_optimalTableLog(): |
90 | | dynamically downsize 'tableLog' when conditions are met. |
91 | | It saves CPU time, by using smaller tables, while preserving or even improving compression ratio. |
92 | | @return : recommended tableLog (necessarily <= 'maxTableLog') */ |
93 | | FSE_PUBLIC_API unsigned FSE_optimalTableLog(unsigned maxTableLog, size_t srcSize, unsigned maxSymbolValue); |
94 | | |
95 | | /*! FSE_normalizeCount(): |
96 | | normalize counts so that sum(count[]) == Power_of_2 (2^tableLog) |
97 | | 'normalizedCounter' is a table of short, of minimum size (maxSymbolValue+1). |
98 | | useLowProbCount is a boolean parameter which trades off compressed size for |
99 | | faster header decoding. When it is set to 1, the compressed data will be slightly |
100 | | smaller. And when it is set to 0, FSE_readNCount() and FSE_buildDTable() will be |
101 | | faster. If you are compressing a small amount of data (< 2 KB) then useLowProbCount=0 |
102 | | is a good default, since header deserialization makes a big speed difference. |
103 | | Otherwise, useLowProbCount=1 is a good default, since the speed difference is small. |
104 | | @return : tableLog, |
105 | | or an errorCode, which can be tested using FSE_isError() */ |
106 | | FSE_PUBLIC_API size_t FSE_normalizeCount(short* normalizedCounter, unsigned tableLog, |
107 | | const unsigned* count, size_t srcSize, unsigned maxSymbolValue, unsigned useLowProbCount); |
108 | | |
109 | | /*! FSE_NCountWriteBound(): |
110 | | Provides the maximum possible size of an FSE normalized table, given 'maxSymbolValue' and 'tableLog'. |
111 | | Typically useful for allocation purpose. */ |
112 | | FSE_PUBLIC_API size_t FSE_NCountWriteBound(unsigned maxSymbolValue, unsigned tableLog); |
113 | | |
114 | | /*! FSE_writeNCount(): |
115 | | Compactly save 'normalizedCounter' into 'buffer'. |
116 | | @return : size of the compressed table, |
117 | | or an errorCode, which can be tested using FSE_isError(). */ |
118 | | FSE_PUBLIC_API size_t FSE_writeNCount (void* buffer, size_t bufferSize, |
119 | | const short* normalizedCounter, |
120 | | unsigned maxSymbolValue, unsigned tableLog); |
121 | | |
122 | | /*! Constructor and Destructor of FSE_CTable. |
123 | | Note that FSE_CTable size depends on 'tableLog' and 'maxSymbolValue' */ |
124 | | typedef unsigned FSE_CTable; /* don't allocate that. It's only meant to be more restrictive than void* */ |
125 | | |
126 | | /*! FSE_buildCTable(): |
127 | | Builds `ct`, which must be already allocated, using FSE_createCTable(). |
128 | | @return : 0, or an errorCode, which can be tested using FSE_isError() */ |
129 | | FSE_PUBLIC_API size_t FSE_buildCTable(FSE_CTable* ct, const short* normalizedCounter, unsigned maxSymbolValue, unsigned tableLog); |
130 | | |
131 | | /*! FSE_compress_usingCTable(): |
132 | | Compress `src` using `ct` into `dst` which must be already allocated. |
133 | | @return : size of compressed data (<= `dstCapacity`), |
134 | | or 0 if compressed data could not fit into `dst`, |
135 | | or an errorCode, which can be tested using FSE_isError() */ |
136 | | FSE_PUBLIC_API size_t FSE_compress_usingCTable (void* dst, size_t dstCapacity, const void* src, size_t srcSize, const FSE_CTable* ct); |
137 | | |
138 | | /*! |
139 | | Tutorial : |
140 | | ---------- |
141 | | The first step is to count all symbols. FSE_count() does this job very fast. |
142 | | Result will be saved into 'count', a table of unsigned int, which must be already allocated, and have 'maxSymbolValuePtr[0]+1' cells. |
143 | | 'src' is a table of bytes of size 'srcSize'. All values within 'src' MUST be <= maxSymbolValuePtr[0] |
144 | | maxSymbolValuePtr[0] will be updated, with its real value (necessarily <= original value) |
145 | | FSE_count() will return the number of occurrence of the most frequent symbol. |
146 | | This can be used to know if there is a single symbol within 'src', and to quickly evaluate its compressibility. |
147 | | If there is an error, the function will return an ErrorCode (which can be tested using FSE_isError()). |
148 | | |
149 | | The next step is to normalize the frequencies. |
150 | | FSE_normalizeCount() will ensure that sum of frequencies is == 2 ^'tableLog'. |
151 | | It also guarantees a minimum of 1 to any Symbol with frequency >= 1. |
152 | | You can use 'tableLog'==0 to mean "use default tableLog value". |
153 | | If you are unsure of which tableLog value to use, you can ask FSE_optimalTableLog(), |
154 | | which will provide the optimal valid tableLog given sourceSize, maxSymbolValue, and a user-defined maximum (0 means "default"). |
155 | | |
156 | | The result of FSE_normalizeCount() will be saved into a table, |
157 | | called 'normalizedCounter', which is a table of signed short. |
158 | | 'normalizedCounter' must be already allocated, and have at least 'maxSymbolValue+1' cells. |
159 | | The return value is tableLog if everything proceeded as expected. |
160 | | It is 0 if there is a single symbol within distribution. |
161 | | If there is an error (ex: invalid tableLog value), the function will return an ErrorCode (which can be tested using FSE_isError()). |
162 | | |
163 | | 'normalizedCounter' can be saved in a compact manner to a memory area using FSE_writeNCount(). |
164 | | 'buffer' must be already allocated. |
165 | | For guaranteed success, buffer size must be at least FSE_headerBound(). |
166 | | The result of the function is the number of bytes written into 'buffer'. |
167 | | If there is an error, the function will return an ErrorCode (which can be tested using FSE_isError(); ex : buffer size too small). |
168 | | |
169 | | 'normalizedCounter' can then be used to create the compression table 'CTable'. |
170 | | The space required by 'CTable' must be already allocated, using FSE_createCTable(). |
171 | | You can then use FSE_buildCTable() to fill 'CTable'. |
172 | | If there is an error, both functions will return an ErrorCode (which can be tested using FSE_isError()). |
173 | | |
174 | | 'CTable' can then be used to compress 'src', with FSE_compress_usingCTable(). |
175 | | Similar to FSE_count(), the convention is that 'src' is assumed to be a table of char of size 'srcSize' |
176 | | The function returns the size of compressed data (without header), necessarily <= `dstCapacity`. |
177 | | If it returns '0', compressed data could not fit into 'dst'. |
178 | | If there is an error, the function will return an ErrorCode (which can be tested using FSE_isError()). |
179 | | */ |
180 | | |
181 | | |
182 | | /* *** DECOMPRESSION *** */ |
183 | | |
184 | | /*! FSE_readNCount(): |
185 | | Read compactly saved 'normalizedCounter' from 'rBuffer'. |
186 | | @return : size read from 'rBuffer', |
187 | | or an errorCode, which can be tested using FSE_isError(). |
188 | | maxSymbolValuePtr[0] and tableLogPtr[0] will also be updated with their respective values */ |
189 | | FSE_PUBLIC_API size_t FSE_readNCount (short* normalizedCounter, |
190 | | unsigned* maxSymbolValuePtr, unsigned* tableLogPtr, |
191 | | const void* rBuffer, size_t rBuffSize); |
192 | | |
193 | | /*! FSE_readNCount_bmi2(): |
194 | | * Same as FSE_readNCount() but pass bmi2=1 when your CPU supports BMI2 and 0 otherwise. |
195 | | */ |
196 | | FSE_PUBLIC_API size_t FSE_readNCount_bmi2(short* normalizedCounter, |
197 | | unsigned* maxSymbolValuePtr, unsigned* tableLogPtr, |
198 | | const void* rBuffer, size_t rBuffSize, int bmi2); |
199 | | |
200 | | typedef unsigned FSE_DTable; /* don't allocate that. It's just a way to be more restrictive than void* */ |
201 | | |
202 | | /*! |
203 | | Tutorial : |
204 | | ---------- |
205 | | (Note : these functions only decompress FSE-compressed blocks. |
206 | | If block is uncompressed, use memcpy() instead |
207 | | If block is a single repeated byte, use memset() instead ) |
208 | | |
209 | | The first step is to obtain the normalized frequencies of symbols. |
210 | | This can be performed by FSE_readNCount() if it was saved using FSE_writeNCount(). |
211 | | 'normalizedCounter' must be already allocated, and have at least 'maxSymbolValuePtr[0]+1' cells of signed short. |
212 | | In practice, that means it's necessary to know 'maxSymbolValue' beforehand, |
213 | | or size the table to handle worst case situations (typically 256). |
214 | | FSE_readNCount() will provide 'tableLog' and 'maxSymbolValue'. |
215 | | The result of FSE_readNCount() is the number of bytes read from 'rBuffer'. |
216 | | Note that 'rBufferSize' must be at least 4 bytes, even if useful information is less than that. |
217 | | If there is an error, the function will return an error code, which can be tested using FSE_isError(). |
218 | | |
219 | | The next step is to build the decompression tables 'FSE_DTable' from 'normalizedCounter'. |
220 | | This is performed by the function FSE_buildDTable(). |
221 | | The space required by 'FSE_DTable' must be already allocated using FSE_createDTable(). |
222 | | If there is an error, the function will return an error code, which can be tested using FSE_isError(). |
223 | | |
224 | | `FSE_DTable` can then be used to decompress `cSrc`, with FSE_decompress_usingDTable(). |
225 | | `cSrcSize` must be strictly correct, otherwise decompression will fail. |
226 | | FSE_decompress_usingDTable() result will tell how many bytes were regenerated (<=`dstCapacity`). |
227 | | If there is an error, the function will return an error code, which can be tested using FSE_isError(). (ex: dst buffer too small) |
228 | | */ |
229 | | |
230 | | #endif /* FSE_H */ |
231 | | |
232 | | |
233 | | #if defined(FSE_STATIC_LINKING_ONLY) && !defined(FSE_H_FSE_STATIC_LINKING_ONLY) |
234 | | #define FSE_H_FSE_STATIC_LINKING_ONLY |
235 | | |
236 | | /* *** Dependency *** */ |
237 | | #include "bitstream.h" |
238 | | |
239 | | |
240 | | /* ***************************************** |
241 | | * Static allocation |
242 | | *******************************************/ |
243 | | /* FSE buffer bounds */ |
244 | 0 | #define FSE_NCOUNTBOUND 512 |
245 | 149k | #define FSE_BLOCKBOUND(size) ((size) + ((size)>>7) + 4 /* fse states */ + sizeof(size_t) /* bitContainer */) |
246 | 0 | #define FSE_COMPRESSBOUND(size) (FSE_NCOUNTBOUND + FSE_BLOCKBOUND(size)) /* Macro version, useful for static allocation */ |
247 | | |
248 | | /* It is possible to statically allocate FSE CTable/DTable as a table of FSE_CTable/FSE_DTable using below macros */ |
249 | | #define FSE_CTABLE_SIZE_U32(maxTableLog, maxSymbolValue) (1 + (1<<((maxTableLog)-1)) + (((maxSymbolValue)+1)*2)) |
250 | 0 | #define FSE_DTABLE_SIZE_U32(maxTableLog) (1 + (1<<(maxTableLog))) |
251 | | |
252 | | /* or use the size to malloc() space directly. Pay attention to alignment restrictions though */ |
253 | | #define FSE_CTABLE_SIZE(maxTableLog, maxSymbolValue) (FSE_CTABLE_SIZE_U32(maxTableLog, maxSymbolValue) * sizeof(FSE_CTable)) |
254 | 0 | #define FSE_DTABLE_SIZE(maxTableLog) (FSE_DTABLE_SIZE_U32(maxTableLog) * sizeof(FSE_DTable)) |
255 | | |
256 | | |
257 | | /* ***************************************** |
258 | | * FSE advanced API |
259 | | ***************************************** */ |
260 | | |
261 | | unsigned FSE_optimalTableLog_internal(unsigned maxTableLog, size_t srcSize, unsigned maxSymbolValue, unsigned minus); |
262 | | /**< same as FSE_optimalTableLog(), which used `minus==2` */ |
263 | | |
264 | | size_t FSE_buildCTable_rle (FSE_CTable* ct, unsigned char symbolValue); |
265 | | /**< build a fake FSE_CTable, designed to compress always the same symbolValue */ |
266 | | |
267 | | /* FSE_buildCTable_wksp() : |
268 | | * Same as FSE_buildCTable(), but using an externally allocated scratch buffer (`workSpace`). |
269 | | * `wkspSize` must be >= `FSE_BUILD_CTABLE_WORKSPACE_SIZE_U32(maxSymbolValue, tableLog)` of `unsigned`. |
270 | | * See FSE_buildCTable_wksp() for breakdown of workspace usage. |
271 | | */ |
272 | 359k | #define FSE_BUILD_CTABLE_WORKSPACE_SIZE_U32(maxSymbolValue, tableLog) (((maxSymbolValue + 2) + (1ull << (tableLog)))/2 + sizeof(U64)/sizeof(U32) /* additional 8 bytes for potential table overwrite */) |
273 | 359k | #define FSE_BUILD_CTABLE_WORKSPACE_SIZE(maxSymbolValue, tableLog) (sizeof(unsigned) * FSE_BUILD_CTABLE_WORKSPACE_SIZE_U32(maxSymbolValue, tableLog)) |
274 | | size_t FSE_buildCTable_wksp(FSE_CTable* ct, const short* normalizedCounter, unsigned maxSymbolValue, unsigned tableLog, void* workSpace, size_t wkspSize); |
275 | | |
276 | 0 | #define FSE_BUILD_DTABLE_WKSP_SIZE(maxTableLog, maxSymbolValue) (sizeof(short) * (maxSymbolValue + 1) + (1ULL << maxTableLog) + 8) |
277 | 0 | #define FSE_BUILD_DTABLE_WKSP_SIZE_U32(maxTableLog, maxSymbolValue) ((FSE_BUILD_DTABLE_WKSP_SIZE(maxTableLog, maxSymbolValue) + sizeof(unsigned) - 1) / sizeof(unsigned)) |
278 | | FSE_PUBLIC_API size_t FSE_buildDTable_wksp(FSE_DTable* dt, const short* normalizedCounter, unsigned maxSymbolValue, unsigned tableLog, void* workSpace, size_t wkspSize); |
279 | | /**< Same as FSE_buildDTable(), using an externally allocated `workspace` produced with `FSE_BUILD_DTABLE_WKSP_SIZE_U32(maxSymbolValue)` */ |
280 | | |
281 | 0 | #define FSE_DECOMPRESS_WKSP_SIZE_U32(maxTableLog, maxSymbolValue) (FSE_DTABLE_SIZE_U32(maxTableLog) + 1 + FSE_BUILD_DTABLE_WKSP_SIZE_U32(maxTableLog, maxSymbolValue) + (FSE_MAX_SYMBOL_VALUE + 1) / 2 + 1) |
282 | 0 | #define FSE_DECOMPRESS_WKSP_SIZE(maxTableLog, maxSymbolValue) (FSE_DECOMPRESS_WKSP_SIZE_U32(maxTableLog, maxSymbolValue) * sizeof(unsigned)) |
283 | | size_t FSE_decompress_wksp_bmi2(void* dst, size_t dstCapacity, const void* cSrc, size_t cSrcSize, unsigned maxLog, void* workSpace, size_t wkspSize, int bmi2); |
284 | | /**< same as FSE_decompress(), using an externally allocated `workSpace` produced with `FSE_DECOMPRESS_WKSP_SIZE_U32(maxLog, maxSymbolValue)`. |
285 | | * Set bmi2 to 1 if your CPU supports BMI2 or 0 if it doesn't */ |
286 | | |
287 | | typedef enum { |
288 | | FSE_repeat_none, /**< Cannot use the previous table */ |
289 | | FSE_repeat_check, /**< Can use the previous table but it must be checked */ |
290 | | FSE_repeat_valid /**< Can use the previous table and it is assumed to be valid */ |
291 | | } FSE_repeat; |
292 | | |
293 | | /* ***************************************** |
294 | | * FSE symbol compression API |
295 | | *******************************************/ |
296 | | /*! |
297 | | This API consists of small unitary functions, which highly benefit from being inlined. |
298 | | Hence their body are included in next section. |
299 | | */ |
300 | | typedef struct { |
301 | | ptrdiff_t value; |
302 | | const void* stateTable; |
303 | | const void* symbolTT; |
304 | | unsigned stateLog; |
305 | | } FSE_CState_t; |
306 | | |
307 | | static void FSE_initCState(FSE_CState_t* CStatePtr, const FSE_CTable* ct); |
308 | | |
309 | | static void FSE_encodeSymbol(BIT_CStream_t* bitC, FSE_CState_t* CStatePtr, unsigned symbol); |
310 | | |
311 | | static void FSE_flushCState(BIT_CStream_t* bitC, const FSE_CState_t* CStatePtr); |
312 | | |
313 | | /**< |
314 | | These functions are inner components of FSE_compress_usingCTable(). |
315 | | They allow the creation of custom streams, mixing multiple tables and bit sources. |
316 | | |
317 | | A key property to keep in mind is that encoding and decoding are done **in reverse direction**. |
318 | | So the first symbol you will encode is the last you will decode, like a LIFO stack. |
319 | | |
320 | | You will need a few variables to track your CStream. They are : |
321 | | |
322 | | FSE_CTable ct; // Provided by FSE_buildCTable() |
323 | | BIT_CStream_t bitStream; // bitStream tracking structure |
324 | | FSE_CState_t state; // State tracking structure (can have several) |
325 | | |
326 | | |
327 | | The first thing to do is to init bitStream and state. |
328 | | size_t errorCode = BIT_initCStream(&bitStream, dstBuffer, maxDstSize); |
329 | | FSE_initCState(&state, ct); |
330 | | |
331 | | Note that BIT_initCStream() can produce an error code, so its result should be tested, using FSE_isError(); |
332 | | You can then encode your input data, byte after byte. |
333 | | FSE_encodeSymbol() outputs a maximum of 'tableLog' bits at a time. |
334 | | Remember decoding will be done in reverse direction. |
335 | | FSE_encodeByte(&bitStream, &state, symbol); |
336 | | |
337 | | At any time, you can also add any bit sequence. |
338 | | Note : maximum allowed nbBits is 25, for compatibility with 32-bits decoders |
339 | | BIT_addBits(&bitStream, bitField, nbBits); |
340 | | |
341 | | The above methods don't commit data to memory, they just store it into local register, for speed. |
342 | | Local register size is 64-bits on 64-bits systems, 32-bits on 32-bits systems (size_t). |
343 | | Writing data to memory is a manual operation, performed by the flushBits function. |
344 | | BIT_flushBits(&bitStream); |
345 | | |
346 | | Your last FSE encoding operation shall be to flush your last state value(s). |
347 | | FSE_flushState(&bitStream, &state); |
348 | | |
349 | | Finally, you must close the bitStream. |
350 | | The function returns the size of CStream in bytes. |
351 | | If data couldn't fit into dstBuffer, it will return a 0 ( == not compressible) |
352 | | If there is an error, it returns an errorCode (which can be tested using FSE_isError()). |
353 | | size_t size = BIT_closeCStream(&bitStream); |
354 | | */ |
355 | | |
356 | | |
357 | | /* ***************************************** |
358 | | * FSE symbol decompression API |
359 | | *******************************************/ |
360 | | typedef struct { |
361 | | size_t state; |
362 | | const void* table; /* precise table may vary, depending on U16 */ |
363 | | } FSE_DState_t; |
364 | | |
365 | | |
366 | | static void FSE_initDState(FSE_DState_t* DStatePtr, BIT_DStream_t* bitD, const FSE_DTable* dt); |
367 | | |
368 | | static unsigned char FSE_decodeSymbol(FSE_DState_t* DStatePtr, BIT_DStream_t* bitD); |
369 | | |
370 | | static unsigned FSE_endOfDState(const FSE_DState_t* DStatePtr); |
371 | | |
372 | | /**< |
373 | | Let's now decompose FSE_decompress_usingDTable() into its unitary components. |
374 | | You will decode FSE-encoded symbols from the bitStream, |
375 | | and also any other bitFields you put in, **in reverse order**. |
376 | | |
377 | | You will need a few variables to track your bitStream. They are : |
378 | | |
379 | | BIT_DStream_t DStream; // Stream context |
380 | | FSE_DState_t DState; // State context. Multiple ones are possible |
381 | | FSE_DTable* DTablePtr; // Decoding table, provided by FSE_buildDTable() |
382 | | |
383 | | The first thing to do is to init the bitStream. |
384 | | errorCode = BIT_initDStream(&DStream, srcBuffer, srcSize); |
385 | | |
386 | | You should then retrieve your initial state(s) |
387 | | (in reverse flushing order if you have several ones) : |
388 | | errorCode = FSE_initDState(&DState, &DStream, DTablePtr); |
389 | | |
390 | | You can then decode your data, symbol after symbol. |
391 | | For information the maximum number of bits read by FSE_decodeSymbol() is 'tableLog'. |
392 | | Keep in mind that symbols are decoded in reverse order, like a LIFO stack (last in, first out). |
393 | | unsigned char symbol = FSE_decodeSymbol(&DState, &DStream); |
394 | | |
395 | | You can retrieve any bitfield you eventually stored into the bitStream (in reverse order) |
396 | | Note : maximum allowed nbBits is 25, for 32-bits compatibility |
397 | | size_t bitField = BIT_readBits(&DStream, nbBits); |
398 | | |
399 | | All above operations only read from local register (which size depends on size_t). |
400 | | Refueling the register from memory is manually performed by the reload method. |
401 | | endSignal = FSE_reloadDStream(&DStream); |
402 | | |
403 | | BIT_reloadDStream() result tells if there is still some more data to read from DStream. |
404 | | BIT_DStream_unfinished : there is still some data left into the DStream. |
405 | | BIT_DStream_endOfBuffer : Dstream reached end of buffer. Its container may no longer be completely filled. |
406 | | BIT_DStream_completed : Dstream reached its exact end, corresponding in general to decompression completed. |
407 | | BIT_DStream_tooFar : Dstream went too far. Decompression result is corrupted. |
408 | | |
409 | | When reaching end of buffer (BIT_DStream_endOfBuffer), progress slowly, notably if you decode multiple symbols per loop, |
410 | | to properly detect the exact end of stream. |
411 | | After each decoded symbol, check if DStream is fully consumed using this simple test : |
412 | | BIT_reloadDStream(&DStream) >= BIT_DStream_completed |
413 | | |
414 | | When it's done, verify decompression is fully completed, by checking both DStream and the relevant states. |
415 | | Checking if DStream has reached its end is performed by : |
416 | | BIT_endOfDStream(&DStream); |
417 | | Check also the states. There might be some symbols left there, if some high probability ones (>50%) are possible. |
418 | | FSE_endOfDState(&DState); |
419 | | */ |
420 | | |
421 | | |
422 | | /* ***************************************** |
423 | | * FSE unsafe API |
424 | | *******************************************/ |
425 | | static unsigned char FSE_decodeSymbolFast(FSE_DState_t* DStatePtr, BIT_DStream_t* bitD); |
426 | | /* faster, but works only if nbBits is always >= 1 (otherwise, result will be corrupted) */ |
427 | | |
428 | | |
429 | | /* ***************************************** |
430 | | * Implementation of inlined functions |
431 | | *******************************************/ |
432 | | typedef struct { |
433 | | int deltaFindState; |
434 | | U32 deltaNbBits; |
435 | | } FSE_symbolCompressionTransform; /* total 8 bytes */ |
436 | | |
437 | | MEM_STATIC void FSE_initCState(FSE_CState_t* statePtr, const FSE_CTable* ct) |
438 | 604k | { |
439 | 604k | const void* ptr = ct; |
440 | 604k | const U16* u16ptr = (const U16*) ptr; |
441 | 604k | const U32 tableLog = MEM_read16(ptr); |
442 | 604k | statePtr->value = (ptrdiff_t)1<<tableLog; |
443 | 604k | statePtr->stateTable = u16ptr+2; |
444 | 604k | statePtr->symbolTT = ct + 1 + (tableLog ? (1<<(tableLog-1)) : 1); |
445 | 604k | statePtr->stateLog = tableLog; |
446 | 604k | } Unexecuted instantiation: sequence_producer.c:FSE_initCState Unexecuted instantiation: entropy_common.c:FSE_initCState Unexecuted instantiation: fse_decompress.c:FSE_initCState Unexecuted instantiation: zstd_common.c:FSE_initCState fse_compress.c:FSE_initCState Line | Count | Source | 438 | 299k | { | 439 | 299k | const void* ptr = ct; | 440 | 299k | const U16* u16ptr = (const U16*) ptr; | 441 | 299k | const U32 tableLog = MEM_read16(ptr); | 442 | 299k | statePtr->value = (ptrdiff_t)1<<tableLog; | 443 | 299k | statePtr->stateTable = u16ptr+2; | 444 | 299k | statePtr->symbolTT = ct + 1 + (tableLog ? (1<<(tableLog-1)) : 1); | 445 | 299k | statePtr->stateLog = tableLog; | 446 | 299k | } |
Unexecuted instantiation: huf_compress.c:FSE_initCState Unexecuted instantiation: zstd_compress.c:FSE_initCState Unexecuted instantiation: zstd_compress_literals.c:FSE_initCState zstd_compress_sequences.c:FSE_initCState Line | Count | Source | 438 | 305k | { | 439 | 305k | const void* ptr = ct; | 440 | 305k | const U16* u16ptr = (const U16*) ptr; | 441 | 305k | const U32 tableLog = MEM_read16(ptr); | 442 | 305k | statePtr->value = (ptrdiff_t)1<<tableLog; | 443 | 305k | statePtr->stateTable = u16ptr+2; | 444 | 305k | statePtr->symbolTT = ct + 1 + (tableLog ? (1<<(tableLog-1)) : 1); | 445 | 305k | statePtr->stateLog = tableLog; | 446 | 305k | } |
Unexecuted instantiation: zstd_compress_superblock.c:FSE_initCState Unexecuted instantiation: zstd_double_fast.c:FSE_initCState Unexecuted instantiation: zstd_fast.c:FSE_initCState Unexecuted instantiation: zstd_lazy.c:FSE_initCState Unexecuted instantiation: zstd_ldm.c:FSE_initCState Unexecuted instantiation: zstd_opt.c:FSE_initCState Unexecuted instantiation: zstdmt_compress.c:FSE_initCState Unexecuted instantiation: huf_decompress.c:FSE_initCState Unexecuted instantiation: zstd_ddict.c:FSE_initCState Unexecuted instantiation: zstd_decompress.c:FSE_initCState Unexecuted instantiation: zstd_decompress_block.c:FSE_initCState Unexecuted instantiation: cover.c:FSE_initCState Unexecuted instantiation: fastcover.c:FSE_initCState Unexecuted instantiation: zdict.c:FSE_initCState |
447 | | |
448 | | |
449 | | /*! FSE_initCState2() : |
450 | | * Same as FSE_initCState(), but the first symbol to include (which will be the last to be read) |
451 | | * uses the smallest state value possible, saving the cost of this symbol */ |
452 | | MEM_STATIC void FSE_initCState2(FSE_CState_t* statePtr, const FSE_CTable* ct, U32 symbol) |
453 | 369k | { |
454 | 369k | FSE_initCState(statePtr, ct); |
455 | 369k | { const FSE_symbolCompressionTransform symbolTT = ((const FSE_symbolCompressionTransform*)(statePtr->symbolTT))[symbol]; |
456 | 369k | const U16* stateTable = (const U16*)(statePtr->stateTable); |
457 | 369k | U32 nbBitsOut = (U32)((symbolTT.deltaNbBits + (1<<15)) >> 16); |
458 | 369k | statePtr->value = (nbBitsOut << 16) - symbolTT.deltaNbBits; |
459 | 369k | statePtr->value = stateTable[(statePtr->value >> nbBitsOut) + symbolTT.deltaFindState]; |
460 | 369k | } |
461 | 369k | } Unexecuted instantiation: sequence_producer.c:FSE_initCState2 Unexecuted instantiation: entropy_common.c:FSE_initCState2 Unexecuted instantiation: fse_decompress.c:FSE_initCState2 Unexecuted instantiation: zstd_common.c:FSE_initCState2 fse_compress.c:FSE_initCState2 Line | Count | Source | 453 | 299k | { | 454 | 299k | FSE_initCState(statePtr, ct); | 455 | 299k | { const FSE_symbolCompressionTransform symbolTT = ((const FSE_symbolCompressionTransform*)(statePtr->symbolTT))[symbol]; | 456 | 299k | const U16* stateTable = (const U16*)(statePtr->stateTable); | 457 | 299k | U32 nbBitsOut = (U32)((symbolTT.deltaNbBits + (1<<15)) >> 16); | 458 | 299k | statePtr->value = (nbBitsOut << 16) - symbolTT.deltaNbBits; | 459 | 299k | statePtr->value = stateTable[(statePtr->value >> nbBitsOut) + symbolTT.deltaFindState]; | 460 | 299k | } | 461 | 299k | } |
Unexecuted instantiation: huf_compress.c:FSE_initCState2 Unexecuted instantiation: zstd_compress.c:FSE_initCState2 Unexecuted instantiation: zstd_compress_literals.c:FSE_initCState2 zstd_compress_sequences.c:FSE_initCState2 Line | Count | Source | 453 | 70.3k | { | 454 | 70.3k | FSE_initCState(statePtr, ct); | 455 | 70.3k | { const FSE_symbolCompressionTransform symbolTT = ((const FSE_symbolCompressionTransform*)(statePtr->symbolTT))[symbol]; | 456 | 70.3k | const U16* stateTable = (const U16*)(statePtr->stateTable); | 457 | 70.3k | U32 nbBitsOut = (U32)((symbolTT.deltaNbBits + (1<<15)) >> 16); | 458 | 70.3k | statePtr->value = (nbBitsOut << 16) - symbolTT.deltaNbBits; | 459 | 70.3k | statePtr->value = stateTable[(statePtr->value >> nbBitsOut) + symbolTT.deltaFindState]; | 460 | 70.3k | } | 461 | 70.3k | } |
Unexecuted instantiation: zstd_compress_superblock.c:FSE_initCState2 Unexecuted instantiation: zstd_double_fast.c:FSE_initCState2 Unexecuted instantiation: zstd_fast.c:FSE_initCState2 Unexecuted instantiation: zstd_lazy.c:FSE_initCState2 Unexecuted instantiation: zstd_ldm.c:FSE_initCState2 Unexecuted instantiation: zstd_opt.c:FSE_initCState2 Unexecuted instantiation: zstdmt_compress.c:FSE_initCState2 Unexecuted instantiation: huf_decompress.c:FSE_initCState2 Unexecuted instantiation: zstd_ddict.c:FSE_initCState2 Unexecuted instantiation: zstd_decompress.c:FSE_initCState2 Unexecuted instantiation: zstd_decompress_block.c:FSE_initCState2 Unexecuted instantiation: cover.c:FSE_initCState2 Unexecuted instantiation: fastcover.c:FSE_initCState2 Unexecuted instantiation: zdict.c:FSE_initCState2 |
462 | | |
463 | | MEM_STATIC void FSE_encodeSymbol(BIT_CStream_t* bitC, FSE_CState_t* statePtr, unsigned symbol) |
464 | 77.6M | { |
465 | 77.6M | FSE_symbolCompressionTransform const symbolTT = ((const FSE_symbolCompressionTransform*)(statePtr->symbolTT))[symbol]; |
466 | 77.6M | const U16* const stateTable = (const U16*)(statePtr->stateTable); |
467 | 77.6M | U32 const nbBitsOut = (U32)((statePtr->value + symbolTT.deltaNbBits) >> 16); |
468 | 77.6M | BIT_addBits(bitC, (size_t)statePtr->value, nbBitsOut); |
469 | 77.6M | statePtr->value = stateTable[ (statePtr->value >> nbBitsOut) + symbolTT.deltaFindState]; |
470 | 77.6M | } Unexecuted instantiation: sequence_producer.c:FSE_encodeSymbol Unexecuted instantiation: entropy_common.c:FSE_encodeSymbol Unexecuted instantiation: fse_decompress.c:FSE_encodeSymbol Unexecuted instantiation: zstd_common.c:FSE_encodeSymbol fse_compress.c:FSE_encodeSymbol Line | Count | Source | 464 | 35.6M | { | 465 | 35.6M | FSE_symbolCompressionTransform const symbolTT = ((const FSE_symbolCompressionTransform*)(statePtr->symbolTT))[symbol]; | 466 | 35.6M | const U16* const stateTable = (const U16*)(statePtr->stateTable); | 467 | 35.6M | U32 const nbBitsOut = (U32)((statePtr->value + symbolTT.deltaNbBits) >> 16); | 468 | 35.6M | BIT_addBits(bitC, (size_t)statePtr->value, nbBitsOut); | 469 | 35.6M | statePtr->value = stateTable[ (statePtr->value >> nbBitsOut) + symbolTT.deltaFindState]; | 470 | 35.6M | } |
Unexecuted instantiation: huf_compress.c:FSE_encodeSymbol Unexecuted instantiation: zstd_compress.c:FSE_encodeSymbol Unexecuted instantiation: zstd_compress_literals.c:FSE_encodeSymbol zstd_compress_sequences.c:FSE_encodeSymbol Line | Count | Source | 464 | 42.0M | { | 465 | 42.0M | FSE_symbolCompressionTransform const symbolTT = ((const FSE_symbolCompressionTransform*)(statePtr->symbolTT))[symbol]; | 466 | 42.0M | const U16* const stateTable = (const U16*)(statePtr->stateTable); | 467 | 42.0M | U32 const nbBitsOut = (U32)((statePtr->value + symbolTT.deltaNbBits) >> 16); | 468 | 42.0M | BIT_addBits(bitC, (size_t)statePtr->value, nbBitsOut); | 469 | 42.0M | statePtr->value = stateTable[ (statePtr->value >> nbBitsOut) + symbolTT.deltaFindState]; | 470 | 42.0M | } |
Unexecuted instantiation: zstd_compress_superblock.c:FSE_encodeSymbol Unexecuted instantiation: zstd_double_fast.c:FSE_encodeSymbol Unexecuted instantiation: zstd_fast.c:FSE_encodeSymbol Unexecuted instantiation: zstd_lazy.c:FSE_encodeSymbol Unexecuted instantiation: zstd_ldm.c:FSE_encodeSymbol Unexecuted instantiation: zstd_opt.c:FSE_encodeSymbol Unexecuted instantiation: zstdmt_compress.c:FSE_encodeSymbol Unexecuted instantiation: huf_decompress.c:FSE_encodeSymbol Unexecuted instantiation: zstd_ddict.c:FSE_encodeSymbol Unexecuted instantiation: zstd_decompress.c:FSE_encodeSymbol Unexecuted instantiation: zstd_decompress_block.c:FSE_encodeSymbol Unexecuted instantiation: cover.c:FSE_encodeSymbol Unexecuted instantiation: fastcover.c:FSE_encodeSymbol Unexecuted instantiation: zdict.c:FSE_encodeSymbol |
471 | | |
472 | | MEM_STATIC void FSE_flushCState(BIT_CStream_t* bitC, const FSE_CState_t* statePtr) |
473 | 369k | { |
474 | 369k | BIT_addBits(bitC, (size_t)statePtr->value, statePtr->stateLog); |
475 | 369k | BIT_flushBits(bitC); |
476 | 369k | } Unexecuted instantiation: sequence_producer.c:FSE_flushCState Unexecuted instantiation: entropy_common.c:FSE_flushCState Unexecuted instantiation: fse_decompress.c:FSE_flushCState Unexecuted instantiation: zstd_common.c:FSE_flushCState fse_compress.c:FSE_flushCState Line | Count | Source | 473 | 299k | { | 474 | 299k | BIT_addBits(bitC, (size_t)statePtr->value, statePtr->stateLog); | 475 | 299k | BIT_flushBits(bitC); | 476 | 299k | } |
Unexecuted instantiation: huf_compress.c:FSE_flushCState Unexecuted instantiation: zstd_compress.c:FSE_flushCState Unexecuted instantiation: zstd_compress_literals.c:FSE_flushCState zstd_compress_sequences.c:FSE_flushCState Line | Count | Source | 473 | 70.3k | { | 474 | 70.3k | BIT_addBits(bitC, (size_t)statePtr->value, statePtr->stateLog); | 475 | 70.3k | BIT_flushBits(bitC); | 476 | 70.3k | } |
Unexecuted instantiation: zstd_compress_superblock.c:FSE_flushCState Unexecuted instantiation: zstd_double_fast.c:FSE_flushCState Unexecuted instantiation: zstd_fast.c:FSE_flushCState Unexecuted instantiation: zstd_lazy.c:FSE_flushCState Unexecuted instantiation: zstd_ldm.c:FSE_flushCState Unexecuted instantiation: zstd_opt.c:FSE_flushCState Unexecuted instantiation: zstdmt_compress.c:FSE_flushCState Unexecuted instantiation: huf_decompress.c:FSE_flushCState Unexecuted instantiation: zstd_ddict.c:FSE_flushCState Unexecuted instantiation: zstd_decompress.c:FSE_flushCState Unexecuted instantiation: zstd_decompress_block.c:FSE_flushCState Unexecuted instantiation: cover.c:FSE_flushCState Unexecuted instantiation: fastcover.c:FSE_flushCState Unexecuted instantiation: zdict.c:FSE_flushCState |
477 | | |
478 | | |
479 | | /* FSE_getMaxNbBits() : |
480 | | * Approximate maximum cost of a symbol, in bits. |
481 | | * Fractional get rounded up (i.e. a symbol with a normalized frequency of 3 gives the same result as a frequency of 2) |
482 | | * note 1 : assume symbolValue is valid (<= maxSymbolValue) |
483 | | * note 2 : if freq[symbolValue]==0, @return a fake cost of tableLog+1 bits */ |
484 | | MEM_STATIC U32 FSE_getMaxNbBits(const void* symbolTTPtr, U32 symbolValue) |
485 | 0 | { |
486 | 0 | const FSE_symbolCompressionTransform* symbolTT = (const FSE_symbolCompressionTransform*) symbolTTPtr; |
487 | 0 | return (symbolTT[symbolValue].deltaNbBits + ((1<<16)-1)) >> 16; |
488 | 0 | } Unexecuted instantiation: sequence_producer.c:FSE_getMaxNbBits Unexecuted instantiation: entropy_common.c:FSE_getMaxNbBits Unexecuted instantiation: fse_decompress.c:FSE_getMaxNbBits Unexecuted instantiation: zstd_common.c:FSE_getMaxNbBits Unexecuted instantiation: fse_compress.c:FSE_getMaxNbBits Unexecuted instantiation: huf_compress.c:FSE_getMaxNbBits Unexecuted instantiation: zstd_compress.c:FSE_getMaxNbBits Unexecuted instantiation: zstd_compress_literals.c:FSE_getMaxNbBits Unexecuted instantiation: zstd_compress_sequences.c:FSE_getMaxNbBits Unexecuted instantiation: zstd_compress_superblock.c:FSE_getMaxNbBits Unexecuted instantiation: zstd_double_fast.c:FSE_getMaxNbBits Unexecuted instantiation: zstd_fast.c:FSE_getMaxNbBits Unexecuted instantiation: zstd_lazy.c:FSE_getMaxNbBits Unexecuted instantiation: zstd_ldm.c:FSE_getMaxNbBits Unexecuted instantiation: zstd_opt.c:FSE_getMaxNbBits Unexecuted instantiation: zstdmt_compress.c:FSE_getMaxNbBits Unexecuted instantiation: huf_decompress.c:FSE_getMaxNbBits Unexecuted instantiation: zstd_ddict.c:FSE_getMaxNbBits Unexecuted instantiation: zstd_decompress.c:FSE_getMaxNbBits Unexecuted instantiation: zstd_decompress_block.c:FSE_getMaxNbBits Unexecuted instantiation: cover.c:FSE_getMaxNbBits Unexecuted instantiation: fastcover.c:FSE_getMaxNbBits Unexecuted instantiation: zdict.c:FSE_getMaxNbBits |
489 | | |
490 | | /* FSE_bitCost() : |
491 | | * Approximate symbol cost, as fractional value, using fixed-point format (accuracyLog fractional bits) |
492 | | * note 1 : assume symbolValue is valid (<= maxSymbolValue) |
493 | | * note 2 : if freq[symbolValue]==0, @return a fake cost of tableLog+1 bits */ |
494 | | MEM_STATIC U32 FSE_bitCost(const void* symbolTTPtr, U32 tableLog, U32 symbolValue, U32 accuracyLog) |
495 | 3.87M | { |
496 | 3.87M | const FSE_symbolCompressionTransform* symbolTT = (const FSE_symbolCompressionTransform*) symbolTTPtr; |
497 | 3.87M | U32 const minNbBits = symbolTT[symbolValue].deltaNbBits >> 16; |
498 | 3.87M | U32 const threshold = (minNbBits+1) << 16; |
499 | 3.87M | assert(tableLog < 16); |
500 | 3.87M | assert(accuracyLog < 31-tableLog); /* ensure enough room for renormalization double shift */ |
501 | 3.87M | { U32 const tableSize = 1 << tableLog; |
502 | 3.87M | U32 const deltaFromThreshold = threshold - (symbolTT[symbolValue].deltaNbBits + tableSize); |
503 | 3.87M | U32 const normalizedDeltaFromThreshold = (deltaFromThreshold << accuracyLog) >> tableLog; /* linear interpolation (very approximate) */ |
504 | 3.87M | U32 const bitMultiplier = 1 << accuracyLog; |
505 | 3.87M | assert(symbolTT[symbolValue].deltaNbBits + tableSize <= threshold); |
506 | 3.87M | assert(normalizedDeltaFromThreshold <= bitMultiplier); |
507 | 3.87M | return (minNbBits+1)*bitMultiplier - normalizedDeltaFromThreshold; |
508 | 3.87M | } |
509 | 3.87M | } Unexecuted instantiation: sequence_producer.c:FSE_bitCost Unexecuted instantiation: entropy_common.c:FSE_bitCost Unexecuted instantiation: fse_decompress.c:FSE_bitCost Unexecuted instantiation: zstd_common.c:FSE_bitCost Unexecuted instantiation: fse_compress.c:FSE_bitCost Unexecuted instantiation: huf_compress.c:FSE_bitCost Unexecuted instantiation: zstd_compress.c:FSE_bitCost Unexecuted instantiation: zstd_compress_literals.c:FSE_bitCost zstd_compress_sequences.c:FSE_bitCost Line | Count | Source | 495 | 3.87M | { | 496 | 3.87M | const FSE_symbolCompressionTransform* symbolTT = (const FSE_symbolCompressionTransform*) symbolTTPtr; | 497 | 3.87M | U32 const minNbBits = symbolTT[symbolValue].deltaNbBits >> 16; | 498 | 3.87M | U32 const threshold = (minNbBits+1) << 16; | 499 | 3.87M | assert(tableLog < 16); | 500 | 3.87M | assert(accuracyLog < 31-tableLog); /* ensure enough room for renormalization double shift */ | 501 | 3.87M | { U32 const tableSize = 1 << tableLog; | 502 | 3.87M | U32 const deltaFromThreshold = threshold - (symbolTT[symbolValue].deltaNbBits + tableSize); | 503 | 3.87M | U32 const normalizedDeltaFromThreshold = (deltaFromThreshold << accuracyLog) >> tableLog; /* linear interpolation (very approximate) */ | 504 | 3.87M | U32 const bitMultiplier = 1 << accuracyLog; | 505 | 3.87M | assert(symbolTT[symbolValue].deltaNbBits + tableSize <= threshold); | 506 | 3.87M | assert(normalizedDeltaFromThreshold <= bitMultiplier); | 507 | 3.87M | return (minNbBits+1)*bitMultiplier - normalizedDeltaFromThreshold; | 508 | 3.87M | } | 509 | 3.87M | } |
Unexecuted instantiation: zstd_compress_superblock.c:FSE_bitCost Unexecuted instantiation: zstd_double_fast.c:FSE_bitCost Unexecuted instantiation: zstd_fast.c:FSE_bitCost Unexecuted instantiation: zstd_lazy.c:FSE_bitCost Unexecuted instantiation: zstd_ldm.c:FSE_bitCost Unexecuted instantiation: zstd_opt.c:FSE_bitCost Unexecuted instantiation: zstdmt_compress.c:FSE_bitCost Unexecuted instantiation: huf_decompress.c:FSE_bitCost Unexecuted instantiation: zstd_ddict.c:FSE_bitCost Unexecuted instantiation: zstd_decompress.c:FSE_bitCost Unexecuted instantiation: zstd_decompress_block.c:FSE_bitCost Unexecuted instantiation: cover.c:FSE_bitCost Unexecuted instantiation: fastcover.c:FSE_bitCost Unexecuted instantiation: zdict.c:FSE_bitCost |
510 | | |
511 | | |
512 | | /* ====== Decompression ====== */ |
513 | | |
514 | | typedef struct { |
515 | | U16 tableLog; |
516 | | U16 fastMode; |
517 | | } FSE_DTableHeader; /* sizeof U32 */ |
518 | | |
519 | | typedef struct |
520 | | { |
521 | | unsigned short newState; |
522 | | unsigned char symbol; |
523 | | unsigned char nbBits; |
524 | | } FSE_decode_t; /* size == U32 */ |
525 | | |
526 | | MEM_STATIC void FSE_initDState(FSE_DState_t* DStatePtr, BIT_DStream_t* bitD, const FSE_DTable* dt) |
527 | 0 | { |
528 | 0 | const void* ptr = dt; |
529 | 0 | const FSE_DTableHeader* const DTableH = (const FSE_DTableHeader*)ptr; |
530 | 0 | DStatePtr->state = BIT_readBits(bitD, DTableH->tableLog); |
531 | 0 | BIT_reloadDStream(bitD); |
532 | 0 | DStatePtr->table = dt + 1; |
533 | 0 | } Unexecuted instantiation: sequence_producer.c:FSE_initDState Unexecuted instantiation: entropy_common.c:FSE_initDState Unexecuted instantiation: fse_decompress.c:FSE_initDState Unexecuted instantiation: zstd_common.c:FSE_initDState Unexecuted instantiation: fse_compress.c:FSE_initDState Unexecuted instantiation: huf_compress.c:FSE_initDState Unexecuted instantiation: zstd_compress.c:FSE_initDState Unexecuted instantiation: zstd_compress_literals.c:FSE_initDState Unexecuted instantiation: zstd_compress_sequences.c:FSE_initDState Unexecuted instantiation: zstd_compress_superblock.c:FSE_initDState Unexecuted instantiation: zstd_double_fast.c:FSE_initDState Unexecuted instantiation: zstd_fast.c:FSE_initDState Unexecuted instantiation: zstd_lazy.c:FSE_initDState Unexecuted instantiation: zstd_ldm.c:FSE_initDState Unexecuted instantiation: zstd_opt.c:FSE_initDState Unexecuted instantiation: zstdmt_compress.c:FSE_initDState Unexecuted instantiation: huf_decompress.c:FSE_initDState Unexecuted instantiation: zstd_ddict.c:FSE_initDState Unexecuted instantiation: zstd_decompress.c:FSE_initDState Unexecuted instantiation: zstd_decompress_block.c:FSE_initDState Unexecuted instantiation: cover.c:FSE_initDState Unexecuted instantiation: fastcover.c:FSE_initDState Unexecuted instantiation: zdict.c:FSE_initDState |
534 | | |
535 | | MEM_STATIC BYTE FSE_peekSymbol(const FSE_DState_t* DStatePtr) |
536 | 0 | { |
537 | 0 | FSE_decode_t const DInfo = ((const FSE_decode_t*)(DStatePtr->table))[DStatePtr->state]; |
538 | 0 | return DInfo.symbol; |
539 | 0 | } Unexecuted instantiation: sequence_producer.c:FSE_peekSymbol Unexecuted instantiation: entropy_common.c:FSE_peekSymbol Unexecuted instantiation: fse_decompress.c:FSE_peekSymbol Unexecuted instantiation: zstd_common.c:FSE_peekSymbol Unexecuted instantiation: fse_compress.c:FSE_peekSymbol Unexecuted instantiation: huf_compress.c:FSE_peekSymbol Unexecuted instantiation: zstd_compress.c:FSE_peekSymbol Unexecuted instantiation: zstd_compress_literals.c:FSE_peekSymbol Unexecuted instantiation: zstd_compress_sequences.c:FSE_peekSymbol Unexecuted instantiation: zstd_compress_superblock.c:FSE_peekSymbol Unexecuted instantiation: zstd_double_fast.c:FSE_peekSymbol Unexecuted instantiation: zstd_fast.c:FSE_peekSymbol Unexecuted instantiation: zstd_lazy.c:FSE_peekSymbol Unexecuted instantiation: zstd_ldm.c:FSE_peekSymbol Unexecuted instantiation: zstd_opt.c:FSE_peekSymbol Unexecuted instantiation: zstdmt_compress.c:FSE_peekSymbol Unexecuted instantiation: huf_decompress.c:FSE_peekSymbol Unexecuted instantiation: zstd_ddict.c:FSE_peekSymbol Unexecuted instantiation: zstd_decompress.c:FSE_peekSymbol Unexecuted instantiation: zstd_decompress_block.c:FSE_peekSymbol Unexecuted instantiation: cover.c:FSE_peekSymbol Unexecuted instantiation: fastcover.c:FSE_peekSymbol Unexecuted instantiation: zdict.c:FSE_peekSymbol |
540 | | |
541 | | MEM_STATIC void FSE_updateState(FSE_DState_t* DStatePtr, BIT_DStream_t* bitD) |
542 | 0 | { |
543 | 0 | FSE_decode_t const DInfo = ((const FSE_decode_t*)(DStatePtr->table))[DStatePtr->state]; |
544 | 0 | U32 const nbBits = DInfo.nbBits; |
545 | 0 | size_t const lowBits = BIT_readBits(bitD, nbBits); |
546 | 0 | DStatePtr->state = DInfo.newState + lowBits; |
547 | 0 | } Unexecuted instantiation: sequence_producer.c:FSE_updateState Unexecuted instantiation: entropy_common.c:FSE_updateState Unexecuted instantiation: fse_decompress.c:FSE_updateState Unexecuted instantiation: zstd_common.c:FSE_updateState Unexecuted instantiation: fse_compress.c:FSE_updateState Unexecuted instantiation: huf_compress.c:FSE_updateState Unexecuted instantiation: zstd_compress.c:FSE_updateState Unexecuted instantiation: zstd_compress_literals.c:FSE_updateState Unexecuted instantiation: zstd_compress_sequences.c:FSE_updateState Unexecuted instantiation: zstd_compress_superblock.c:FSE_updateState Unexecuted instantiation: zstd_double_fast.c:FSE_updateState Unexecuted instantiation: zstd_fast.c:FSE_updateState Unexecuted instantiation: zstd_lazy.c:FSE_updateState Unexecuted instantiation: zstd_ldm.c:FSE_updateState Unexecuted instantiation: zstd_opt.c:FSE_updateState Unexecuted instantiation: zstdmt_compress.c:FSE_updateState Unexecuted instantiation: huf_decompress.c:FSE_updateState Unexecuted instantiation: zstd_ddict.c:FSE_updateState Unexecuted instantiation: zstd_decompress.c:FSE_updateState Unexecuted instantiation: zstd_decompress_block.c:FSE_updateState Unexecuted instantiation: cover.c:FSE_updateState Unexecuted instantiation: fastcover.c:FSE_updateState Unexecuted instantiation: zdict.c:FSE_updateState |
548 | | |
549 | | MEM_STATIC BYTE FSE_decodeSymbol(FSE_DState_t* DStatePtr, BIT_DStream_t* bitD) |
550 | 0 | { |
551 | 0 | FSE_decode_t const DInfo = ((const FSE_decode_t*)(DStatePtr->table))[DStatePtr->state]; |
552 | 0 | U32 const nbBits = DInfo.nbBits; |
553 | 0 | BYTE const symbol = DInfo.symbol; |
554 | 0 | size_t const lowBits = BIT_readBits(bitD, nbBits); |
555 | |
|
556 | 0 | DStatePtr->state = DInfo.newState + lowBits; |
557 | 0 | return symbol; |
558 | 0 | } Unexecuted instantiation: sequence_producer.c:FSE_decodeSymbol Unexecuted instantiation: entropy_common.c:FSE_decodeSymbol Unexecuted instantiation: fse_decompress.c:FSE_decodeSymbol Unexecuted instantiation: zstd_common.c:FSE_decodeSymbol Unexecuted instantiation: fse_compress.c:FSE_decodeSymbol Unexecuted instantiation: huf_compress.c:FSE_decodeSymbol Unexecuted instantiation: zstd_compress.c:FSE_decodeSymbol Unexecuted instantiation: zstd_compress_literals.c:FSE_decodeSymbol Unexecuted instantiation: zstd_compress_sequences.c:FSE_decodeSymbol Unexecuted instantiation: zstd_compress_superblock.c:FSE_decodeSymbol Unexecuted instantiation: zstd_double_fast.c:FSE_decodeSymbol Unexecuted instantiation: zstd_fast.c:FSE_decodeSymbol Unexecuted instantiation: zstd_lazy.c:FSE_decodeSymbol Unexecuted instantiation: zstd_ldm.c:FSE_decodeSymbol Unexecuted instantiation: zstd_opt.c:FSE_decodeSymbol Unexecuted instantiation: zstdmt_compress.c:FSE_decodeSymbol Unexecuted instantiation: huf_decompress.c:FSE_decodeSymbol Unexecuted instantiation: zstd_ddict.c:FSE_decodeSymbol Unexecuted instantiation: zstd_decompress.c:FSE_decodeSymbol Unexecuted instantiation: zstd_decompress_block.c:FSE_decodeSymbol Unexecuted instantiation: cover.c:FSE_decodeSymbol Unexecuted instantiation: fastcover.c:FSE_decodeSymbol Unexecuted instantiation: zdict.c:FSE_decodeSymbol |
559 | | |
560 | | /*! FSE_decodeSymbolFast() : |
561 | | unsafe, only works if no symbol has a probability > 50% */ |
562 | | MEM_STATIC BYTE FSE_decodeSymbolFast(FSE_DState_t* DStatePtr, BIT_DStream_t* bitD) |
563 | 0 | { |
564 | 0 | FSE_decode_t const DInfo = ((const FSE_decode_t*)(DStatePtr->table))[DStatePtr->state]; |
565 | 0 | U32 const nbBits = DInfo.nbBits; |
566 | 0 | BYTE const symbol = DInfo.symbol; |
567 | 0 | size_t const lowBits = BIT_readBitsFast(bitD, nbBits); |
568 | |
|
569 | 0 | DStatePtr->state = DInfo.newState + lowBits; |
570 | 0 | return symbol; |
571 | 0 | } Unexecuted instantiation: sequence_producer.c:FSE_decodeSymbolFast Unexecuted instantiation: entropy_common.c:FSE_decodeSymbolFast Unexecuted instantiation: fse_decompress.c:FSE_decodeSymbolFast Unexecuted instantiation: zstd_common.c:FSE_decodeSymbolFast Unexecuted instantiation: fse_compress.c:FSE_decodeSymbolFast Unexecuted instantiation: huf_compress.c:FSE_decodeSymbolFast Unexecuted instantiation: zstd_compress.c:FSE_decodeSymbolFast Unexecuted instantiation: zstd_compress_literals.c:FSE_decodeSymbolFast Unexecuted instantiation: zstd_compress_sequences.c:FSE_decodeSymbolFast Unexecuted instantiation: zstd_compress_superblock.c:FSE_decodeSymbolFast Unexecuted instantiation: zstd_double_fast.c:FSE_decodeSymbolFast Unexecuted instantiation: zstd_fast.c:FSE_decodeSymbolFast Unexecuted instantiation: zstd_lazy.c:FSE_decodeSymbolFast Unexecuted instantiation: zstd_ldm.c:FSE_decodeSymbolFast Unexecuted instantiation: zstd_opt.c:FSE_decodeSymbolFast Unexecuted instantiation: zstdmt_compress.c:FSE_decodeSymbolFast Unexecuted instantiation: huf_decompress.c:FSE_decodeSymbolFast Unexecuted instantiation: zstd_ddict.c:FSE_decodeSymbolFast Unexecuted instantiation: zstd_decompress.c:FSE_decodeSymbolFast Unexecuted instantiation: zstd_decompress_block.c:FSE_decodeSymbolFast Unexecuted instantiation: cover.c:FSE_decodeSymbolFast Unexecuted instantiation: fastcover.c:FSE_decodeSymbolFast Unexecuted instantiation: zdict.c:FSE_decodeSymbolFast |
572 | | |
573 | | MEM_STATIC unsigned FSE_endOfDState(const FSE_DState_t* DStatePtr) |
574 | 0 | { |
575 | 0 | return DStatePtr->state == 0; |
576 | 0 | } Unexecuted instantiation: sequence_producer.c:FSE_endOfDState Unexecuted instantiation: entropy_common.c:FSE_endOfDState Unexecuted instantiation: fse_decompress.c:FSE_endOfDState Unexecuted instantiation: zstd_common.c:FSE_endOfDState Unexecuted instantiation: fse_compress.c:FSE_endOfDState Unexecuted instantiation: huf_compress.c:FSE_endOfDState Unexecuted instantiation: zstd_compress.c:FSE_endOfDState Unexecuted instantiation: zstd_compress_literals.c:FSE_endOfDState Unexecuted instantiation: zstd_compress_sequences.c:FSE_endOfDState Unexecuted instantiation: zstd_compress_superblock.c:FSE_endOfDState Unexecuted instantiation: zstd_double_fast.c:FSE_endOfDState Unexecuted instantiation: zstd_fast.c:FSE_endOfDState Unexecuted instantiation: zstd_lazy.c:FSE_endOfDState Unexecuted instantiation: zstd_ldm.c:FSE_endOfDState Unexecuted instantiation: zstd_opt.c:FSE_endOfDState Unexecuted instantiation: zstdmt_compress.c:FSE_endOfDState Unexecuted instantiation: huf_decompress.c:FSE_endOfDState Unexecuted instantiation: zstd_ddict.c:FSE_endOfDState Unexecuted instantiation: zstd_decompress.c:FSE_endOfDState Unexecuted instantiation: zstd_decompress_block.c:FSE_endOfDState Unexecuted instantiation: cover.c:FSE_endOfDState Unexecuted instantiation: fastcover.c:FSE_endOfDState Unexecuted instantiation: zdict.c:FSE_endOfDState |
577 | | |
578 | | |
579 | | |
580 | | #ifndef FSE_COMMONDEFS_ONLY |
581 | | |
582 | | /* ************************************************************** |
583 | | * Tuning parameters |
584 | | ****************************************************************/ |
585 | | /*!MEMORY_USAGE : |
586 | | * Memory usage formula : N->2^N Bytes (examples : 10 -> 1KB; 12 -> 4KB ; 16 -> 64KB; 20 -> 1MB; etc.) |
587 | | * Increasing memory usage improves compression ratio |
588 | | * Reduced memory usage can improve speed, due to cache effect |
589 | | * Recommended max value is 14, for 16KB, which nicely fits into Intel x86 L1 cache */ |
590 | | #ifndef FSE_MAX_MEMORY_USAGE |
591 | 19.5M | # define FSE_MAX_MEMORY_USAGE 14 |
592 | | #endif |
593 | | #ifndef FSE_DEFAULT_MEMORY_USAGE |
594 | 0 | # define FSE_DEFAULT_MEMORY_USAGE 13 |
595 | | #endif |
596 | | #if (FSE_DEFAULT_MEMORY_USAGE > FSE_MAX_MEMORY_USAGE) |
597 | | # error "FSE_DEFAULT_MEMORY_USAGE must be <= FSE_MAX_MEMORY_USAGE" |
598 | | #endif |
599 | | |
600 | | /*!FSE_MAX_SYMBOL_VALUE : |
601 | | * Maximum symbol value authorized. |
602 | | * Required for proper stack allocation */ |
603 | | #ifndef FSE_MAX_SYMBOL_VALUE |
604 | 0 | # define FSE_MAX_SYMBOL_VALUE 255 |
605 | | #endif |
606 | | |
607 | | /* ************************************************************** |
608 | | * template functions type & suffix |
609 | | ****************************************************************/ |
610 | 36.0M | #define FSE_FUNCTION_TYPE BYTE |
611 | | #define FSE_FUNCTION_EXTENSION |
612 | 0 | #define FSE_DECODE_TYPE FSE_decode_t |
613 | | |
614 | | |
615 | | #endif /* !FSE_COMMONDEFS_ONLY */ |
616 | | |
617 | | |
618 | | /* *************************************************************** |
619 | | * Constants |
620 | | *****************************************************************/ |
621 | 19.5M | #define FSE_MAX_TABLELOG (FSE_MAX_MEMORY_USAGE-2) |
622 | | #define FSE_MAX_TABLESIZE (1U<<FSE_MAX_TABLELOG) |
623 | | #define FSE_MAXTABLESIZE_MASK (FSE_MAX_TABLESIZE-1) |
624 | 0 | #define FSE_DEFAULT_TABLELOG (FSE_DEFAULT_MEMORY_USAGE-2) |
625 | 2.19M | #define FSE_MIN_TABLELOG 5 |
626 | | |
627 | 0 | #define FSE_TABLELOG_ABSOLUTE_MAX 15 |
628 | | #if FSE_MAX_TABLELOG > FSE_TABLELOG_ABSOLUTE_MAX |
629 | | # error "FSE_MAX_TABLELOG > FSE_TABLELOG_ABSOLUTE_MAX is not supported" |
630 | | #endif |
631 | | |
632 | 359k | #define FSE_TABLESTEP(tableSize) (((tableSize)>>1) + ((tableSize)>>3) + 3) |
633 | | |
634 | | |
635 | | #endif /* FSE_STATIC_LINKING_ONLY */ |
636 | | |
637 | | |
638 | | #if defined (__cplusplus) |
639 | | } |
640 | | #endif |