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Yann Colletb1f3f4b2015-10-18 22:18:32 +01001/* ******************************************************************
2 bitstream
Yann Colletae7aa062016-02-03 02:46:46 +01003 Part of FSE library
Yann Colletfa41bcc2018-06-13 14:59:26 -04004 Copyright (C) 2013-present, Yann Collet.
Yann Colletb1f3f4b2015-10-18 22:18:32 +01005
6 BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php)
7
8 Redistribution and use in source and binary forms, with or without
9 modification, are permitted provided that the following conditions are
10 met:
11
12 * Redistributions of source code must retain the above copyright
13 notice, this list of conditions and the following disclaimer.
14 * Redistributions in binary form must reproduce the above
15 copyright notice, this list of conditions and the following disclaimer
16 in the documentation and/or other materials provided with the
17 distribution.
18
19 THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
20 "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
21 LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
22 A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
23 OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
24 SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
25 LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
26 DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
27 THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
28 (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
29 OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
30
31 You can contact the author at :
32 - Source repository : https://github.com/Cyan4973/FiniteStateEntropy
Yann Colletb1f3f4b2015-10-18 22:18:32 +010033****************************************************************** */
34#ifndef BITSTREAM_H_MODULE
35#define BITSTREAM_H_MODULE
36
37#if defined (__cplusplus)
38extern "C" {
39#endif
40
Yann Colletb1f3f4b2015-10-18 22:18:32 +010041/*
Yann Collet01e5b952016-03-19 14:14:31 +010042* This API consists of small unitary functions, which must be inlined for best performance.
Yann Colletb1f3f4b2015-10-18 22:18:32 +010043* Since link-time-optimization is not available for all compilers,
44* these functions are defined into a .h to be included.
45*/
46
Yann Colletae7aa062016-02-03 02:46:46 +010047/*-****************************************
48* Dependencies
Yann Colletb1f3f4b2015-10-18 22:18:32 +010049******************************************/
Yann Collet977f1f32016-01-21 15:38:47 +010050#include "mem.h" /* unaligned access routines */
Nick Terrell718f00f2019-11-25 18:26:19 -080051#include "compiler.h" /* UNLIKELY() */
Yann Colletfa41bcc2018-06-13 14:59:26 -040052#include "debug.h" /* assert(), DEBUGLOG(), RAWLOG() */
Yann Collet977f1f32016-01-21 15:38:47 +010053#include "error_private.h" /* error codes and messages */
Yann Colletb1f3f4b2015-10-18 22:18:32 +010054
55
Yann Collet74bd1192016-03-26 17:50:26 +010056/*=========================================
57* Target specific
58=========================================*/
59#if defined(__BMI__) && defined(__GNUC__)
60# include <immintrin.h> /* support for bextr (experimental) */
Joseph Chen3855bc42019-07-29 15:20:37 +080061#elif defined(__ICCARM__)
62# include <intrinsics.h>
Yann Collet74bd1192016-03-26 17:50:26 +010063#endif
64
Sean Purcelld44703d2017-03-01 14:36:25 -080065#define STREAM_ACCUMULATOR_MIN_32 25
66#define STREAM_ACCUMULATOR_MIN_64 57
67#define STREAM_ACCUMULATOR_MIN ((U32)(MEM_32bits() ? STREAM_ACCUMULATOR_MIN_32 : STREAM_ACCUMULATOR_MIN_64))
Yann Collet74bd1192016-03-26 17:50:26 +010068
Yann Collet8c910d22017-06-03 01:15:02 -070069
Yann Colletae7aa062016-02-03 02:46:46 +010070/*-******************************************
71* bitStream encoding API (write forward)
Yann Colletb1f3f4b2015-10-18 22:18:32 +010072********************************************/
Yann Colletd1d210f2016-03-19 12:12:07 +010073/* bitStream can mix input from multiple sources.
Yann Colletb71363b2017-07-19 01:05:40 -070074 * A critical property of these streams is that they encode and decode in **reverse** direction.
75 * So the first bit sequence you add will be the last to be read, like a LIFO stack.
76 */
Yann Colletfa41bcc2018-06-13 14:59:26 -040077typedef struct {
Yann Colletb1f3f4b2015-10-18 22:18:32 +010078 size_t bitContainer;
Yann Colletf39a6732017-05-01 09:56:03 -070079 unsigned bitPos;
Yann Colletb1f3f4b2015-10-18 22:18:32 +010080 char* startPtr;
81 char* ptr;
82 char* endPtr;
83} BIT_CStream_t;
84
Yann Colletae7aa062016-02-03 02:46:46 +010085MEM_STATIC size_t BIT_initCStream(BIT_CStream_t* bitC, void* dstBuffer, size_t dstCapacity);
Yann Colletb1f3f4b2015-10-18 22:18:32 +010086MEM_STATIC void BIT_addBits(BIT_CStream_t* bitC, size_t value, unsigned nbBits);
87MEM_STATIC void BIT_flushBits(BIT_CStream_t* bitC);
88MEM_STATIC size_t BIT_closeCStream(BIT_CStream_t* bitC);
89
Yann Collet01e5b952016-03-19 14:14:31 +010090/* Start with initCStream, providing the size of buffer to write into.
91* bitStream will never write outside of this buffer.
Yann Collet1032fbe2016-05-11 18:30:24 +020092* `dstCapacity` must be >= sizeof(bitD->bitContainer), otherwise @return will be an error code.
Yann Colletb1f3f4b2015-10-18 22:18:32 +010093*
Yann Collet01e5b952016-03-19 14:14:31 +010094* bits are first added to a local register.
95* Local register is size_t, hence 64-bits on 64-bits systems, or 32-bits on 32-bits systems.
96* Writing data into memory is an explicit operation, performed by the flushBits function.
97* Hence keep track how many bits are potentially stored into local register to avoid register overflow.
98* After a flushBits, a maximum of 7 bits might still be stored into local register.
Yann Colletb1f3f4b2015-10-18 22:18:32 +010099*
Yann Collet01e5b952016-03-19 14:14:31 +0100100* Avoid storing elements of more than 24 bits if you want compatibility with 32-bits bitstream readers.
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100101*
Yann Collet01e5b952016-03-19 14:14:31 +0100102* Last operation is to close the bitStream.
103* The function returns the final size of CStream in bytes.
104* If data couldn't fit into `dstBuffer`, it will return a 0 ( == not storable)
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100105*/
106
107
Yann Colletae7aa062016-02-03 02:46:46 +0100108/*-********************************************
109* bitStream decoding API (read backward)
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100110**********************************************/
Yann Colletfa41bcc2018-06-13 14:59:26 -0400111typedef struct {
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100112 size_t bitContainer;
113 unsigned bitsConsumed;
114 const char* ptr;
115 const char* start;
Yann Colletf39a6732017-05-01 09:56:03 -0700116 const char* limitPtr;
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100117} BIT_DStream_t;
118
119typedef enum { BIT_DStream_unfinished = 0,
120 BIT_DStream_endOfBuffer = 1,
121 BIT_DStream_completed = 2,
122 BIT_DStream_overflow = 3 } BIT_DStream_status; /* result of BIT_reloadDStream() */
123 /* 1,2,4,8 would be better for bitmap combinations, but slows down performance a bit ... :( */
124
125MEM_STATIC size_t BIT_initDStream(BIT_DStream_t* bitD, const void* srcBuffer, size_t srcSize);
126MEM_STATIC size_t BIT_readBits(BIT_DStream_t* bitD, unsigned nbBits);
127MEM_STATIC BIT_DStream_status BIT_reloadDStream(BIT_DStream_t* bitD);
128MEM_STATIC unsigned BIT_endOfDStream(const BIT_DStream_t* bitD);
129
130
Yann Collet01e5b952016-03-19 14:14:31 +0100131/* Start by invoking BIT_initDStream().
132* A chunk of the bitStream is then stored into a local register.
133* Local register size is 64-bits on 64-bits systems, 32-bits on 32-bits systems (size_t).
134* You can then retrieve bitFields stored into the local register, **in reverse order**.
135* Local register is explicitly reloaded from memory by the BIT_reloadDStream() method.
Yann Collet1032fbe2016-05-11 18:30:24 +0200136* A reload guarantee a minimum of ((8*sizeof(bitD->bitContainer))-7) bits when its result is BIT_DStream_unfinished.
Yann Collet01e5b952016-03-19 14:14:31 +0100137* Otherwise, it can be less than that, so proceed accordingly.
Yann Colletb21ce152016-03-24 01:27:55 +0100138* Checking if DStream has reached its end can be performed with BIT_endOfDStream().
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100139*/
140
141
Yann Colletae7aa062016-02-03 02:46:46 +0100142/*-****************************************
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100143* unsafe API
144******************************************/
145MEM_STATIC void BIT_addBitsFast(BIT_CStream_t* bitC, size_t value, unsigned nbBits);
146/* faster, but works only if value is "clean", meaning all high bits above nbBits are 0 */
147
148MEM_STATIC void BIT_flushBitsFast(BIT_CStream_t* bitC);
149/* unsafe version; does not check buffer overflow */
150
151MEM_STATIC size_t BIT_readBitsFast(BIT_DStream_t* bitD, unsigned nbBits);
152/* faster, but works only if nbBits >= 1 */
153
154
155
Yann Colletae7aa062016-02-03 02:46:46 +0100156/*-**************************************************************
Yann Collet6cf45da2016-03-23 14:18:37 +0100157* Internal functions
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100158****************************************************************/
Yann Colletc173dbd2017-12-04 17:57:42 -0800159MEM_STATIC unsigned BIT_highbit32 (U32 val)
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100160{
Stella Laue50ed1f2017-08-22 11:55:42 -0700161 assert(val != 0);
162 {
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100163# if defined(_MSC_VER) /* Visual */
Stella Laue50ed1f2017-08-22 11:55:42 -0700164 unsigned long r=0;
Bimba Shresthadba3abc2020-03-05 12:20:59 -0800165 return _BitScanReverse ( &r, val ) ? (unsigned)r : 0;
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100166# elif defined(__GNUC__) && (__GNUC__ >= 3) /* Use GCC Intrinsic */
Dávid Bolvanský1f7228c2019-09-23 21:23:09 +0200167 return __builtin_clz (val) ^ 31;
Joseph Chen3855bc42019-07-29 15:20:37 +0800168# elif defined(__ICCARM__) /* IAR Intrinsic */
169 return 31 - __CLZ(val);
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100170# else /* Software version */
Stella Laue50ed1f2017-08-22 11:55:42 -0700171 static const unsigned DeBruijnClz[32] = { 0, 9, 1, 10, 13, 21, 2, 29,
172 11, 14, 16, 18, 22, 25, 3, 30,
173 8, 12, 20, 28, 15, 17, 24, 7,
174 19, 27, 23, 6, 26, 5, 4, 31 };
175 U32 v = val;
176 v |= v >> 1;
177 v |= v >> 2;
178 v |= v >> 4;
179 v |= v >> 8;
180 v |= v >> 16;
181 return DeBruijnClz[ (U32) (v * 0x07C4ACDDU) >> 27];
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100182# endif
Stella Laue50ed1f2017-08-22 11:55:42 -0700183 }
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100184}
185
Yann Collet6cf45da2016-03-23 14:18:37 +0100186/*===== Local Constants =====*/
Nick Terrell74718d72017-09-15 17:44:09 -0700187static const unsigned BIT_mask[] = {
188 0, 1, 3, 7, 0xF, 0x1F,
189 0x3F, 0x7F, 0xFF, 0x1FF, 0x3FF, 0x7FF,
190 0xFFF, 0x1FFF, 0x3FFF, 0x7FFF, 0xFFFF, 0x1FFFF,
191 0x3FFFF, 0x7FFFF, 0xFFFFF, 0x1FFFFF, 0x3FFFFF, 0x7FFFFF,
192 0xFFFFFF, 0x1FFFFFF, 0x3FFFFFF, 0x7FFFFFF, 0xFFFFFFF, 0x1FFFFFFF,
193 0x3FFFFFFF, 0x7FFFFFFF}; /* up to 31 bits */
194#define BIT_MASK_SIZE (sizeof(BIT_mask) / sizeof(BIT_mask[0]))
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100195
Yann Colletae7aa062016-02-03 02:46:46 +0100196/*-**************************************************************
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100197* bitStream encoding
198****************************************************************/
Yann Collet01e5b952016-03-19 14:14:31 +0100199/*! BIT_initCStream() :
Yann Colletf39a6732017-05-01 09:56:03 -0700200 * `dstCapacity` must be > sizeof(size_t)
Yann Collet01e5b952016-03-19 14:14:31 +0100201 * @return : 0 if success,
Yann Colletb71363b2017-07-19 01:05:40 -0700202 * otherwise an error code (can be tested using ERR_isError()) */
Yann Colletf39a6732017-05-01 09:56:03 -0700203MEM_STATIC size_t BIT_initCStream(BIT_CStream_t* bitC,
Yann Collet33c38b02017-05-01 11:12:30 -0700204 void* startPtr, size_t dstCapacity)
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100205{
206 bitC->bitContainer = 0;
207 bitC->bitPos = 0;
208 bitC->startPtr = (char*)startPtr;
209 bitC->ptr = bitC->startPtr;
Yann Colletf39a6732017-05-01 09:56:03 -0700210 bitC->endPtr = bitC->startPtr + dstCapacity - sizeof(bitC->bitContainer);
211 if (dstCapacity <= sizeof(bitC->bitContainer)) return ERROR(dstSize_tooSmall);
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100212 return 0;
213}
214
Yann Collet01e5b952016-03-19 14:14:31 +0100215/*! BIT_addBits() :
Nick Terrell74718d72017-09-15 17:44:09 -0700216 * can add up to 31 bits into `bitC`.
Yann Colletb71363b2017-07-19 01:05:40 -0700217 * Note : does not check for register overflow ! */
Yann Colletf39a6732017-05-01 09:56:03 -0700218MEM_STATIC void BIT_addBits(BIT_CStream_t* bitC,
Yann Collet33c38b02017-05-01 11:12:30 -0700219 size_t value, unsigned nbBits)
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100220{
Nick Terrell74718d72017-09-15 17:44:09 -0700221 MEM_STATIC_ASSERT(BIT_MASK_SIZE == 32);
222 assert(nbBits < BIT_MASK_SIZE);
223 assert(nbBits + bitC->bitPos < sizeof(bitC->bitContainer) * 8);
Yann Collet6cf45da2016-03-23 14:18:37 +0100224 bitC->bitContainer |= (value & BIT_mask[nbBits]) << bitC->bitPos;
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100225 bitC->bitPos += nbBits;
226}
227
Yann Colletd1d210f2016-03-19 12:12:07 +0100228/*! BIT_addBitsFast() :
Yann Colletfa41bcc2018-06-13 14:59:26 -0400229 * works only if `value` is _clean_,
230 * meaning all high bits above nbBits are 0 */
Yann Colletf39a6732017-05-01 09:56:03 -0700231MEM_STATIC void BIT_addBitsFast(BIT_CStream_t* bitC,
Yann Collet33c38b02017-05-01 11:12:30 -0700232 size_t value, unsigned nbBits)
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100233{
Yann Collet202082f2017-04-28 16:56:39 -0700234 assert((value>>nbBits) == 0);
Nick Terrell74718d72017-09-15 17:44:09 -0700235 assert(nbBits + bitC->bitPos < sizeof(bitC->bitContainer) * 8);
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100236 bitC->bitContainer |= value << bitC->bitPos;
237 bitC->bitPos += nbBits;
238}
239
Yann Colletd1d210f2016-03-19 12:12:07 +0100240/*! BIT_flushBitsFast() :
Yann Colletf39a6732017-05-01 09:56:03 -0700241 * assumption : bitContainer has not overflowed
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100242 * unsafe version; does not check buffer overflow */
243MEM_STATIC void BIT_flushBitsFast(BIT_CStream_t* bitC)
244{
Yann Colletd64f4352016-03-21 00:07:42 +0100245 size_t const nbBytes = bitC->bitPos >> 3;
Nick Terrell74718d72017-09-15 17:44:09 -0700246 assert(bitC->bitPos < sizeof(bitC->bitContainer) * 8);
Bimba Shrestha43da5bf2019-09-12 14:43:50 -0700247 assert(bitC->ptr <= bitC->endPtr);
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100248 MEM_writeLEST(bitC->ptr, bitC->bitContainer);
249 bitC->ptr += nbBytes;
250 bitC->bitPos &= 7;
Yann Colletf39a6732017-05-01 09:56:03 -0700251 bitC->bitContainer >>= nbBytes*8;
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100252}
253
Yann Collet01e5b952016-03-19 14:14:31 +0100254/*! BIT_flushBits() :
Yann Colletf39a6732017-05-01 09:56:03 -0700255 * assumption : bitContainer has not overflowed
Yann Collet01e5b952016-03-19 14:14:31 +0100256 * safe version; check for buffer overflow, and prevents it.
Yann Collet33c38b02017-05-01 11:12:30 -0700257 * note : does not signal buffer overflow.
258 * overflow will be revealed later on using BIT_closeCStream() */
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100259MEM_STATIC void BIT_flushBits(BIT_CStream_t* bitC)
260{
Yann Colletd64f4352016-03-21 00:07:42 +0100261 size_t const nbBytes = bitC->bitPos >> 3;
Nick Terrell74718d72017-09-15 17:44:09 -0700262 assert(bitC->bitPos < sizeof(bitC->bitContainer) * 8);
Bimba Shresthafe9af332019-09-12 15:35:27 -0700263 assert(bitC->ptr <= bitC->endPtr);
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100264 MEM_writeLEST(bitC->ptr, bitC->bitContainer);
265 bitC->ptr += nbBytes;
266 if (bitC->ptr > bitC->endPtr) bitC->ptr = bitC->endPtr;
267 bitC->bitPos &= 7;
Yann Collet33c38b02017-05-01 11:12:30 -0700268 bitC->bitContainer >>= nbBytes*8;
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100269}
270
Yann Colletd1d210f2016-03-19 12:12:07 +0100271/*! BIT_closeCStream() :
Yann Collet01e5b952016-03-19 14:14:31 +0100272 * @return : size of CStream, in bytes,
Yann Colletb71363b2017-07-19 01:05:40 -0700273 * or 0 if it could not fit into dstBuffer */
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100274MEM_STATIC size_t BIT_closeCStream(BIT_CStream_t* bitC)
275{
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100276 BIT_addBitsFast(bitC, 1, 1); /* endMark */
277 BIT_flushBits(bitC);
Yann Collet33c38b02017-05-01 11:12:30 -0700278 if (bitC->ptr >= bitC->endPtr) return 0; /* overflow detected */
Yann Collet01e5b952016-03-19 14:14:31 +0100279 return (bitC->ptr - bitC->startPtr) + (bitC->bitPos > 0);
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100280}
281
282
Yann Colletae7aa062016-02-03 02:46:46 +0100283/*-********************************************************
Yann Colletb71363b2017-07-19 01:05:40 -0700284* bitStream decoding
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100285**********************************************************/
Yann Collet01e5b952016-03-19 14:14:31 +0100286/*! BIT_initDStream() :
Yann Colletb71363b2017-07-19 01:05:40 -0700287 * Initialize a BIT_DStream_t.
288 * `bitD` : a pointer to an already allocated BIT_DStream_t structure.
289 * `srcSize` must be the *exact* size of the bitStream, in bytes.
290 * @return : size of stream (== srcSize), or an errorCode if a problem is detected
291 */
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100292MEM_STATIC size_t BIT_initDStream(BIT_DStream_t* bitD, const void* srcBuffer, size_t srcSize)
293{
294 if (srcSize < 1) { memset(bitD, 0, sizeof(*bitD)); return ERROR(srcSize_wrong); }
295
Yann Colletf39a6732017-05-01 09:56:03 -0700296 bitD->start = (const char*)srcBuffer;
297 bitD->limitPtr = bitD->start + sizeof(bitD->bitContainer);
298
Yann Collet1032fbe2016-05-11 18:30:24 +0200299 if (srcSize >= sizeof(bitD->bitContainer)) { /* normal case */
Yann Collet1032fbe2016-05-11 18:30:24 +0200300 bitD->ptr = (const char*)srcBuffer + srcSize - sizeof(bitD->bitContainer);
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100301 bitD->bitContainer = MEM_readLEST(bitD->ptr);
Yann Colletb21ce152016-03-24 01:27:55 +0100302 { BYTE const lastByte = ((const BYTE*)srcBuffer)[srcSize-1];
Yann Collet5397a662016-12-13 15:21:06 +0100303 bitD->bitsConsumed = lastByte ? 8 - BIT_highbit32(lastByte) : 0; /* ensures bitsConsumed is always set */
Yann Collet18c8f792016-06-12 22:51:52 +0200304 if (lastByte == 0) return ERROR(GENERIC); /* endMark not present */ }
Yann Colletae7aa062016-02-03 02:46:46 +0100305 } else {
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100306 bitD->ptr = bitD->start;
Yann Collet1ceb5a92016-05-12 13:50:13 +0200307 bitD->bitContainer = *(const BYTE*)(bitD->start);
308 switch(srcSize)
309 {
Yann Colletb71363b2017-07-19 01:05:40 -0700310 case 7: bitD->bitContainer += (size_t)(((const BYTE*)(srcBuffer))[6]) << (sizeof(bitD->bitContainer)*8 - 16);
311 /* fall-through */
Jos Collin05286fd2017-05-09 08:36:05 +0530312
Yann Colletb71363b2017-07-19 01:05:40 -0700313 case 6: bitD->bitContainer += (size_t)(((const BYTE*)(srcBuffer))[5]) << (sizeof(bitD->bitContainer)*8 - 24);
314 /* fall-through */
Yann Collet58e8d792017-06-02 18:20:48 -0700315
Yann Colletb71363b2017-07-19 01:05:40 -0700316 case 5: bitD->bitContainer += (size_t)(((const BYTE*)(srcBuffer))[4]) << (sizeof(bitD->bitContainer)*8 - 32);
317 /* fall-through */
Yann Collet58e8d792017-06-02 18:20:48 -0700318
Yann Colletb71363b2017-07-19 01:05:40 -0700319 case 4: bitD->bitContainer += (size_t)(((const BYTE*)(srcBuffer))[3]) << 24;
320 /* fall-through */
Yann Collet58e8d792017-06-02 18:20:48 -0700321
Yann Colletb71363b2017-07-19 01:05:40 -0700322 case 3: bitD->bitContainer += (size_t)(((const BYTE*)(srcBuffer))[2]) << 16;
323 /* fall-through */
Yann Collet58e8d792017-06-02 18:20:48 -0700324
Yann Colletb71363b2017-07-19 01:05:40 -0700325 case 2: bitD->bitContainer += (size_t)(((const BYTE*)(srcBuffer))[1]) << 8;
326 /* fall-through */
Yann Collet58e8d792017-06-02 18:20:48 -0700327
Yann Colletb71363b2017-07-19 01:05:40 -0700328 default: break;
Yann Collet1ceb5a92016-05-12 13:50:13 +0200329 }
Yann Colletb71363b2017-07-19 01:05:40 -0700330 { BYTE const lastByte = ((const BYTE*)srcBuffer)[srcSize-1];
331 bitD->bitsConsumed = lastByte ? 8 - BIT_highbit32(lastByte) : 0;
332 if (lastByte == 0) return ERROR(corruption_detected); /* endMark not present */
333 }
Yann Collet1032fbe2016-05-11 18:30:24 +0200334 bitD->bitsConsumed += (U32)(sizeof(bitD->bitContainer) - srcSize)*8;
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100335 }
336
337 return srcSize;
338}
339
Yann Collet1032fbe2016-05-11 18:30:24 +0200340MEM_STATIC size_t BIT_getUpperBits(size_t bitContainer, U32 const start)
Yann Collet3c017862016-03-23 14:09:51 +0100341{
Yann Collet1032fbe2016-05-11 18:30:24 +0200342 return bitContainer >> start;
Yann Collet3c017862016-03-23 14:09:51 +0100343}
344
Yann Collet1032fbe2016-05-11 18:30:24 +0200345MEM_STATIC size_t BIT_getMiddleBits(size_t bitContainer, U32 const start, U32 const nbBits)
Yann Collet3c017862016-03-23 14:09:51 +0100346{
Yann Collet6ed3b522018-10-10 18:26:44 -0700347 U32 const regMask = sizeof(bitContainer)*8 - 1;
348 /* if start > regMask, bitstream is corrupted, and result is undefined */
Nick Terrell74718d72017-09-15 17:44:09 -0700349 assert(nbBits < BIT_MASK_SIZE);
Yann Collet6ed3b522018-10-10 18:26:44 -0700350 return (bitContainer >> (start & regMask)) & BIT_mask[nbBits];
Yann Collet3c017862016-03-23 14:09:51 +0100351}
352
Yann Collet1032fbe2016-05-11 18:30:24 +0200353MEM_STATIC size_t BIT_getLowerBits(size_t bitContainer, U32 const nbBits)
Yann Colletafab0202016-03-23 13:57:49 +0100354{
Nick Terrell74718d72017-09-15 17:44:09 -0700355 assert(nbBits < BIT_MASK_SIZE);
Yann Collet1032fbe2016-05-11 18:30:24 +0200356 return bitContainer & BIT_mask[nbBits];
Yann Colletafab0202016-03-23 13:57:49 +0100357}
358
Yann Collet01e5b952016-03-19 14:14:31 +0100359/*! BIT_lookBits() :
360 * Provides next n bits from local register.
Yann Collet1032fbe2016-05-11 18:30:24 +0200361 * local register is not modified.
Yann Collet01e5b952016-03-19 14:14:31 +0100362 * On 32-bits, maxNbBits==24.
363 * On 64-bits, maxNbBits==56.
Yann Colletb71363b2017-07-19 01:05:40 -0700364 * @return : value extracted */
365MEM_STATIC size_t BIT_lookBits(const BIT_DStream_t* bitD, U32 nbBits)
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100366{
Yann Collet7791f192018-10-10 16:36:11 -0700367 /* arbitrate between double-shift and shift+mask */
Yann Colletd3ec2332018-10-10 15:48:43 -0700368#if 1
Yann Collet7791f192018-10-10 16:36:11 -0700369 /* if bitD->bitsConsumed + nbBits > sizeof(bitD->bitContainer)*8,
370 * bitstream is likely corrupted, and result is undefined */
Yann Collet1032fbe2016-05-11 18:30:24 +0200371 return BIT_getMiddleBits(bitD->bitContainer, (sizeof(bitD->bitContainer)*8) - bitD->bitsConsumed - nbBits, nbBits);
Yann Collet862a8592016-03-23 18:45:23 +0100372#else
Yann Collet7791f192018-10-10 16:36:11 -0700373 /* this code path is slower on my os-x laptop */
Yann Colletf39a6732017-05-01 09:56:03 -0700374 U32 const regMask = sizeof(bitD->bitContainer)*8 - 1;
375 return ((bitD->bitContainer << (bitD->bitsConsumed & regMask)) >> 1) >> ((regMask-nbBits) & regMask);
Yann Collet862a8592016-03-23 18:45:23 +0100376#endif
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100377}
378
Yann Collet01e5b952016-03-19 14:14:31 +0100379/*! BIT_lookBitsFast() :
Yann Collet202082f2017-04-28 16:56:39 -0700380 * unsafe version; only works if nbBits >= 1 */
Yann Colletadd08d62016-03-23 01:32:41 +0100381MEM_STATIC size_t BIT_lookBitsFast(const BIT_DStream_t* bitD, U32 nbBits)
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100382{
Yann Colletf39a6732017-05-01 09:56:03 -0700383 U32 const regMask = sizeof(bitD->bitContainer)*8 - 1;
Yann Collet202082f2017-04-28 16:56:39 -0700384 assert(nbBits >= 1);
Yann Colletf39a6732017-05-01 09:56:03 -0700385 return (bitD->bitContainer << (bitD->bitsConsumed & regMask)) >> (((regMask+1)-nbBits) & regMask);
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100386}
387
388MEM_STATIC void BIT_skipBits(BIT_DStream_t* bitD, U32 nbBits)
389{
390 bitD->bitsConsumed += nbBits;
391}
392
Yann Collet01e5b952016-03-19 14:14:31 +0100393/*! BIT_readBits() :
Yann Colletb21ce152016-03-24 01:27:55 +0100394 * Read (consume) next n bits from local register and update.
395 * Pay attention to not read more than nbBits contained into local register.
Yann Colletb71363b2017-07-19 01:05:40 -0700396 * @return : extracted value. */
Yann Colletededcfc2018-12-21 16:19:44 -0800397MEM_STATIC size_t BIT_readBits(BIT_DStream_t* bitD, unsigned nbBits)
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100398{
Yann Colletafab0202016-03-23 13:57:49 +0100399 size_t const value = BIT_lookBits(bitD, nbBits);
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100400 BIT_skipBits(bitD, nbBits);
401 return value;
402}
403
Yann Collet01e5b952016-03-19 14:14:31 +0100404/*! BIT_readBitsFast() :
Yann Colletb71363b2017-07-19 01:05:40 -0700405 * unsafe version; only works only if nbBits >= 1 */
Yann Colletededcfc2018-12-21 16:19:44 -0800406MEM_STATIC size_t BIT_readBitsFast(BIT_DStream_t* bitD, unsigned nbBits)
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100407{
Yann Colletafab0202016-03-23 13:57:49 +0100408 size_t const value = BIT_lookBitsFast(bitD, nbBits);
Yann Collet202082f2017-04-28 16:56:39 -0700409 assert(nbBits >= 1);
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100410 BIT_skipBits(bitD, nbBits);
411 return value;
412}
413
Nick Terrell718f00f2019-11-25 18:26:19 -0800414/*! BIT_reloadDStreamFast() :
415 * Similar to BIT_reloadDStream(), but with two differences:
416 * 1. bitsConsumed <= sizeof(bitD->bitContainer)*8 must hold!
417 * 2. Returns BIT_DStream_overflow when bitD->ptr < bitD->limitPtr, at this
418 * point you must use BIT_reloadDStream() to reload.
419 */
420MEM_STATIC BIT_DStream_status BIT_reloadDStreamFast(BIT_DStream_t* bitD)
421{
422 if (UNLIKELY(bitD->ptr < bitD->limitPtr))
423 return BIT_DStream_overflow;
424 assert(bitD->bitsConsumed <= sizeof(bitD->bitContainer)*8);
425 bitD->ptr -= bitD->bitsConsumed >> 3;
426 bitD->bitsConsumed &= 7;
427 bitD->bitContainer = MEM_readLEST(bitD->ptr);
428 return BIT_DStream_unfinished;
429}
430
Yann Collet01e5b952016-03-19 14:14:31 +0100431/*! BIT_reloadDStream() :
Yann Colletb71363b2017-07-19 01:05:40 -0700432 * Refill `bitD` from buffer previously set in BIT_initDStream() .
433 * This function is safe, it guarantees it will not read beyond src buffer.
434 * @return : status of `BIT_DStream_t` internal register.
Baldur Karlsson430a2fe2018-03-13 20:02:21 +0000435 * when status == BIT_DStream_unfinished, internal register is filled with at least 25 or 57 bits */
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100436MEM_STATIC BIT_DStream_status BIT_reloadDStream(BIT_DStream_t* bitD)
437{
Yann Colletf39a6732017-05-01 09:56:03 -0700438 if (bitD->bitsConsumed > (sizeof(bitD->bitContainer)*8)) /* overflow detected, like end of stream */
Nick Terrell5152fb22017-03-29 18:51:58 -0700439 return BIT_DStream_overflow;
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100440
Yann Colletf39a6732017-05-01 09:56:03 -0700441 if (bitD->ptr >= bitD->limitPtr) {
Nick Terrell718f00f2019-11-25 18:26:19 -0800442 return BIT_reloadDStreamFast(bitD);
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100443 }
Yann Colletae7aa062016-02-03 02:46:46 +0100444 if (bitD->ptr == bitD->start) {
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100445 if (bitD->bitsConsumed < sizeof(bitD->bitContainer)*8) return BIT_DStream_endOfBuffer;
446 return BIT_DStream_completed;
447 }
Yann Colletf39a6732017-05-01 09:56:03 -0700448 /* start < ptr < limitPtr */
Yann Collet01e5b952016-03-19 14:14:31 +0100449 { U32 nbBytes = bitD->bitsConsumed >> 3;
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100450 BIT_DStream_status result = BIT_DStream_unfinished;
Yann Colletae7aa062016-02-03 02:46:46 +0100451 if (bitD->ptr - nbBytes < bitD->start) {
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100452 nbBytes = (U32)(bitD->ptr - bitD->start); /* ptr > start */
453 result = BIT_DStream_endOfBuffer;
454 }
455 bitD->ptr -= nbBytes;
456 bitD->bitsConsumed -= nbBytes*8;
Yann Colletf39a6732017-05-01 09:56:03 -0700457 bitD->bitContainer = MEM_readLEST(bitD->ptr); /* reminder : srcSize > sizeof(bitD->bitContainer), otherwise bitD->ptr == bitD->start */
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100458 return result;
459 }
460}
461
Yann Colletd1d210f2016-03-19 12:12:07 +0100462/*! BIT_endOfDStream() :
Yann Colletb71363b2017-07-19 01:05:40 -0700463 * @return : 1 if DStream has _exactly_ reached its end (all bits consumed).
464 */
Yann Colletb1f3f4b2015-10-18 22:18:32 +0100465MEM_STATIC unsigned BIT_endOfDStream(const BIT_DStream_t* DStream)
466{
467 return ((DStream->ptr == DStream->start) && (DStream->bitsConsumed == sizeof(DStream->bitContainer)*8));
468}
469
470#if defined (__cplusplus)
471}
472#endif
473
474#endif /* BITSTREAM_H_MODULE */