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27 #ifndef AVCODEC_GET_BITS_H
28 #define AVCODEC_GET_BITS_H
53 #ifndef UNCHECKED_BITSTREAM_READER
54 #define UNCHECKED_BITSTREAM_READER !CONFIG_SAFE_BITSTREAM_READER
57 #ifndef CACHED_BITSTREAM_READER
58 #define CACHED_BITSTREAM_READER 0
63 #if CACHED_BITSTREAM_READER
123 #if CACHED_BITSTREAM_READER
124 # define MIN_CACHE_BITS 64
125 #elif defined LONG_BITSTREAM_READER
126 # define MIN_CACHE_BITS 32
128 # define MIN_CACHE_BITS 25
131 #if !CACHED_BITSTREAM_READER
133 #define OPEN_READER_NOSIZE(name, gb) \
134 unsigned int name ## _index = (gb)->index; \
135 unsigned int av_unused name ## _cache
137 #if UNCHECKED_BITSTREAM_READER
138 #define OPEN_READER(name, gb) OPEN_READER_NOSIZE(name, gb)
140 #define BITS_AVAILABLE(name, gb) 1
142 #define OPEN_READER(name, gb) \
143 OPEN_READER_NOSIZE(name, gb); \
144 unsigned int name ## _size_plus8 = (gb)->size_in_bits_plus8
146 #define BITS_AVAILABLE(name, gb) name ## _index < name ## _size_plus8
149 #define CLOSE_READER(name, gb) (gb)->index = name ## _index
151 # ifdef LONG_BITSTREAM_READER
153 # define UPDATE_CACHE_LE(name, gb) name ## _cache = \
154 AV_RL64((gb)->buffer + (name ## _index >> 3)) >> (name ## _index & 7)
156 # define UPDATE_CACHE_BE(name, gb) name ## _cache = \
157 AV_RB64((gb)->buffer + (name ## _index >> 3)) >> (32 - (name ## _index & 7))
161 # define UPDATE_CACHE_LE(name, gb) name ## _cache = \
162 AV_RL32((gb)->buffer + (name ## _index >> 3)) >> (name ## _index & 7)
164 # define UPDATE_CACHE_BE(name, gb) name ## _cache = \
165 AV_RB32((gb)->buffer + (name ## _index >> 3)) << (name ## _index & 7)
170 #ifdef BITSTREAM_READER_LE
172 # define UPDATE_CACHE(name, gb) UPDATE_CACHE_LE(name, gb)
174 # define SKIP_CACHE(name, gb, num) name ## _cache >>= (num)
178 # define UPDATE_CACHE(name, gb) UPDATE_CACHE_BE(name, gb)
180 # define SKIP_CACHE(name, gb, num) name ## _cache <<= (num)
184 #if UNCHECKED_BITSTREAM_READER
185 # define SKIP_COUNTER(name, gb, num) name ## _index += (num)
187 # define SKIP_COUNTER(name, gb, num) \
188 name ## _index = FFMIN(name ## _size_plus8, name ## _index + (num))
191 #define BITS_LEFT(name, gb) ((int)((gb)->size_in_bits - name ## _index))
193 #define SKIP_BITS(name, gb, num) \
195 SKIP_CACHE(name, gb, num); \
196 SKIP_COUNTER(name, gb, num); \
199 #define LAST_SKIP_BITS(name, gb, num) SKIP_COUNTER(name, gb, num)
201 #define SHOW_UBITS_LE(name, gb, num) zero_extend(name ## _cache, num)
202 #define SHOW_SBITS_LE(name, gb, num) sign_extend(name ## _cache, num)
204 #define SHOW_UBITS_BE(name, gb, num) NEG_USR32(name ## _cache, num)
205 #define SHOW_SBITS_BE(name, gb, num) NEG_SSR32(name ## _cache, num)
207 #ifdef BITSTREAM_READER_LE
208 # define SHOW_UBITS(name, gb, num) SHOW_UBITS_LE(name, gb, num)
209 # define SHOW_SBITS(name, gb, num) SHOW_SBITS_LE(name, gb, num)
211 # define SHOW_UBITS(name, gb, num) SHOW_UBITS_BE(name, gb, num)
212 # define SHOW_SBITS(name, gb, num) SHOW_SBITS_BE(name, gb, num)
215 #define GET_CACHE(name, gb) ((uint32_t) name ## _cache)
221 #if CACHED_BITSTREAM_READER
222 return s->index -
s->bits_left;
228 #if CACHED_BITSTREAM_READER
231 #if !UNCHECKED_BITSTREAM_READER
232 if (
s->index >> 3 >=
s->buffer_end -
s->buffer)
237 s->cache = (uint64_t)
AV_RL32(
s->buffer + (
s->index >> 3)) <<
s->bits_left |
s->cache;
239 s->cache =
s->cache | (uint64_t)
AV_RB32(
s->buffer + (
s->index >> 3)) << (32 -
s->bits_left);
246 #if !UNCHECKED_BITSTREAM_READER
247 if (
s->index >> 3 >=
s->buffer_end -
s->buffer)
252 s->cache =
AV_RL64(
s->buffer + (
s->index >> 3));
254 s->cache =
AV_RB64(
s->buffer + (
s->index >> 3));
259 static inline uint64_t get_val(
GetBitContext *
s,
unsigned n,
int is_le)
264 ret =
s->cache & ((UINT64_C(1) <<
n) - 1);
267 ret =
s->cache >> (64 -
n);
276 #ifdef BITSTREAM_READER_LE
277 return s->cache & ((UINT64_C(1) <<
n) - 1);
279 return s->cache >> (64 -
n);
293 #if CACHED_BITSTREAM_READER
296 #if UNCHECKED_BITSTREAM_READER
299 s->index += av_clip(
n, -
s->index,
s->size_in_bits_plus8 -
s->index);
304 #if CACHED_BITSTREAM_READER
307 #ifdef BITSTREAM_READER_LE
323 #if CACHED_BITSTREAM_READER
325 int sign = ~cache >> 31;
326 skip_remaining(
s,
n);
328 return ((((uint32_t)(sign ^ cache)) >> (32 -
n)) ^ sign) - sign;
339 return (
NEG_USR32(sign ^ cache,
n) ^ sign) - sign;
343 #if !CACHED_BITSTREAM_READER
362 #if CACHED_BITSTREAM_READER
381 register unsigned int tmp;
382 #if CACHED_BITSTREAM_READER
385 if (
n >
s->bits_left) {
386 #ifdef BITSTREAM_READER_LE
391 if (
s->bits_left < 32)
395 #ifdef BITSTREAM_READER_LE
396 tmp = get_val(
s,
n, 1);
398 tmp = get_val(
s,
n, 0);
422 #if CACHED_BITSTREAM_READER
424 if (
n >
s->bits_left) {
426 if (
s->bits_left < 32)
430 return get_val(
s,
n, 1);
448 register unsigned int tmp;
449 #if CACHED_BITSTREAM_READER
450 if (
n >
s->bits_left)
451 #ifdef BITSTREAM_READER_LE
457 tmp = show_val(
s,
n);
469 #if CACHED_BITSTREAM_READER
470 if (n < s->bits_left)
471 skip_remaining(
s,
n);
478 unsigned skip = (
n / 8) * 8;
483 #ifdef BITSTREAM_READER_LE
489 skip_remaining(
s,
n);
500 #if CACHED_BITSTREAM_READER
502 #ifdef BITSTREAM_READER_LE
508 #ifdef BITSTREAM_READER_LE
509 return get_val(
s, 1, 1);
511 return get_val(
s, 1, 0);
514 unsigned int index =
s->index;
516 #ifdef BITSTREAM_READER_LE
523 #if !UNCHECKED_BITSTREAM_READER
524 if (
s->index <
s->size_in_bits_plus8)
551 #if CACHED_BITSTREAM_READER
558 #ifdef BITSTREAM_READER_LE
577 #ifdef BITSTREAM_READER_LE
623 int bit_size,
int is_le)
634 buffer_size = (bit_size + 7) >> 3;
637 s->size_in_bits = bit_size;
638 s->size_in_bits_plus8 = bit_size + 8;
639 s->buffer_end =
buffer + buffer_size;
642 #if CACHED_BITSTREAM_READER
662 #ifdef BITSTREAM_READER_LE
680 if (byte_size > INT_MAX / 8 || byte_size < 0)
688 if (byte_size > INT_MAX / 8 || byte_size < 0)
698 return s->buffer + (
s->index >> 3);
706 #define GET_VLC(code, name, gb, table, bits, max_depth) \
709 unsigned int index; \
711 index = SHOW_UBITS(name, gb, bits); \
712 code = table[index][0]; \
713 n = table[index][1]; \
715 if (max_depth > 1 && n < 0) { \
716 LAST_SKIP_BITS(name, gb, bits); \
717 UPDATE_CACHE(name, gb); \
721 index = SHOW_UBITS(name, gb, nb_bits) + code; \
722 code = table[index][0]; \
723 n = table[index][1]; \
724 if (max_depth > 2 && n < 0) { \
725 LAST_SKIP_BITS(name, gb, nb_bits); \
726 UPDATE_CACHE(name, gb); \
730 index = SHOW_UBITS(name, gb, nb_bits) + code; \
731 code = table[index][0]; \
732 n = table[index][1]; \
735 SKIP_BITS(name, gb, n); \
738 #define GET_RL_VLC(level, run, name, gb, table, bits, \
739 max_depth, need_update) \
742 unsigned int index; \
744 index = SHOW_UBITS(name, gb, bits); \
745 level = table[index].level; \
746 n = table[index].len; \
748 if (max_depth > 1 && n < 0) { \
749 SKIP_BITS(name, gb, bits); \
751 UPDATE_CACHE(name, gb); \
756 index = SHOW_UBITS(name, gb, nb_bits) + level; \
757 level = table[index].level; \
758 n = table[index].len; \
759 if (max_depth > 2 && n < 0) { \
760 LAST_SKIP_BITS(name, gb, nb_bits); \
762 UPDATE_CACHE(name, gb); \
766 index = SHOW_UBITS(name, gb, nb_bits) + level; \
767 level = table[index].level; \
768 n = table[index].len; \
771 run = table[index].run; \
772 SKIP_BITS(name, gb, n); \
785 return table[idx][0];
798 int bits,
int max_depth)
800 #if CACHED_BITSTREAM_READER
806 if (max_depth > 1 &&
n < 0) {
807 skip_remaining(
s,
bits);
809 if (max_depth > 2 &&
n < 0) {
810 skip_remaining(
s, nb_bits);
814 skip_remaining(
s,
n);
static void skip_bits_long(GetBitContext *s, int n)
Skips the specified number of bits.
static unsigned int show_bits_long(GetBitContext *s, int n)
Show 0-32 bits.
static unsigned int show_bits1(GetBitContext *s)
static int get_bits_left(GetBitContext *gb)
#define GET_VLC(code, name, gb, table, bits, max_depth)
If the vlc code is invalid and max_depth=1, then no bits will be removed.
static unsigned int get_bits_long(GetBitContext *s, int n)
Read 0-32 bits.
static int get_bits_count(const GetBitContext *s)
static const uint16_t table[]
static av_const unsigned zero_extend(unsigned val, unsigned bits)
static av_always_inline int get_vlc2(GetBitContext *s, VLC_TYPE(*table)[2], int bits, int max_depth)
Parse a vlc code.
#define UPDATE_CACHE(name, gb)
static int init_get_bits(GetBitContext *s, const uint8_t *buffer, int bit_size)
Initialize GetBitContext.
#define OPEN_READER_NOSIZE(name, gb)
#define bit(string, value)
#define GET_CACHE(name, gb)
static void skip_bits(GetBitContext *s, int n)
static unsigned int get_bits(GetBitContext *s, int n)
Read 1-25 bits.
static int init_get_bits8(GetBitContext *s, const uint8_t *buffer, int byte_size)
Initialize GetBitContext.
#define CLOSE_READER(name, gb)
#define SHOW_SBITS(name, gb, num)
static unsigned int get_bits_le(GetBitContext *s, int n)
static int get_sbits(GetBitContext *s, int n)
static int decode012(GetBitContext *gb)
#define SHOW_UBITS_LE(name, gb, num)
and forward the result(frame or status change) to the corresponding input. If nothing is possible
static unsigned int get_bits1(GetBitContext *s)
#define LAST_SKIP_BITS(name, gb, num)
uint64_t_TMPL AV_WL64 unsigned int_TMPL AV_WL32 unsigned int_TMPL AV_WL24 unsigned int_TMPL AV_WL16 uint64_t_TMPL AV_WB64 unsigned int_TMPL AV_RB32
#define OPEN_READER(name, gb)
static int get_xbits(GetBitContext *s, int n)
Read MPEG-1 dc-style VLC (sign bit + mantissa with no MSB).
static void skip_bits1(GetBitContext *s)
#define AV_LOG_INFO
Standard information.
static uint64_t get_bits64(GetBitContext *s, int n)
Read 0-64 bits.
#define av_assert2(cond)
assert() equivalent, that does lie in speed critical code.
and forward the test the status of outputs and forward it to the corresponding return FFERROR_NOT_READY If the filters stores internally one or a few frame for some it can consider them to be part of the FIFO and delay acknowledging a status change accordingly Example code
static unsigned int show_bits(GetBitContext *s, int n)
Show 1-25 bits.
const uint8_t * buffer_end
static int get_xbits_le(GetBitContext *s, int n)
static const uint8_t * align_get_bits(GetBitContext *s)
#define AV_INPUT_BUFFER_PADDING_SIZE
uint64_t_TMPL AV_WL64 unsigned int_TMPL AV_RL32
static int skip_1stop_8data_bits(GetBitContext *gb)
#define SHOW_UBITS(name, gb, num)
#define UPDATE_CACHE_LE(name, gb)
the frame and frame reference mechanism is intended to as much as expensive copies of that data while still allowing the filters to produce correct results The data is stored in buffers represented by AVFrame structures Several references can point to the same frame buffer
static int init_get_bits_xe(GetBitContext *s, const uint8_t *buffer, int bit_size, int is_le)
static av_const int sign_extend(int val, unsigned bits)
static int decode210(GetBitContext *gb)
static av_always_inline int get_bitsz(GetBitContext *s, int n)
Read 0-25 bits.
static int check_marker(void *logctx, GetBitContext *s, const char *msg)
static int init_get_bits8_le(GetBitContext *s, const uint8_t *buffer, int byte_size)
static int set_idx(GetBitContext *s, int code, int *n, int *nb_bits, VLC_TYPE(*table)[2])
#define AVERROR_INVALIDDATA
Invalid data found when processing input.
static int get_sbits_long(GetBitContext *s, int n)
Read 0-32 bits as a signed integer.
uint64_t_TMPL AV_WL64 unsigned int_TMPL AV_WL32 unsigned int_TMPL AV_WL24 unsigned int_TMPL AV_WL16 uint64_t_TMPL AV_RB64