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   26 #ifndef AVCODEC_PUT_BITS_H 
   27 #define AVCODEC_PUT_BITS_H 
   40 #define AV_WBBUF AV_WB64 
   41 #define AV_WLBUF AV_WL64 
   44 #define AV_WBBUF AV_WB32 
   45 #define AV_WLBUF AV_WL32 
   65     if (buffer_size < 0) {
 
   71     s->buf_end      = 
s->buf + buffer_size;
 
   82     return (
s->buf_ptr - 
s->buf) * 8 + 
BUF_BITS - 
s->bit_left;
 
   92     return s->buf_ptr - 
s->buf;
 
  102     return s->buf_ptr - 
s->buf + ((
BUF_BITS - 
s->bit_left + (round_up ? 7 : 0)) >> 3);
 
  117     s->buf_end = 
buffer + buffer_size;
 
  118     s->buf_ptr = 
buffer + (
s->buf_ptr - 
s->buf);
 
  127     return (
s->buf_end - 
s->buf_ptr) * 8 - 
BUF_BITS + 
s->bit_left;
 
  137     return s->buf_end - 
s->buf_ptr - ((
BUF_BITS - 
s->bit_left + (round_up ? 7 : 0)) >> 3);
 
  145 #ifndef BITSTREAM_WRITER_LE 
  147         s->bit_buf <<= 
s->bit_left;
 
  151 #ifdef BITSTREAM_WRITER_LE 
  152         *
s->buf_ptr++ = 
s->bit_buf;
 
  168         *
s->buf_ptr++ = 
s->bit_buf;
 
  176 #ifdef BITSTREAM_WRITER_LE 
  177 #define ff_put_string ff_put_string_unsupported_here 
  178 #define ff_copy_bits ff_copy_bits_unsupported_here 
  187                        int terminate_string);
 
  202     bit_buf  = 
s->bit_buf;
 
  203     bit_left = 
s->bit_left;
 
  206 #ifdef BITSTREAM_WRITER_LE 
  209         if (
s->buf_end - 
s->buf_ptr >= 
sizeof(
BitBuf)) {
 
  216         bit_buf     = 
value >> bit_left;
 
  222         bit_buf     = (bit_buf << n) | 
value;
 
  225         bit_buf   <<= bit_left;
 
  226         bit_buf    |= 
value >> (n - bit_left);
 
  227         if (
s->buf_end - 
s->buf_ptr >= 
sizeof(
BitBuf)) {
 
  239     s->bit_buf  = bit_buf;
 
  240     s->bit_left = bit_left;
 
  260     bit_buf  = 
s->bit_buf;
 
  261     bit_left = 
s->bit_left;
 
  265         if (
s->buf_end - 
s->buf_ptr >= 
sizeof(
BitBuf)) {
 
  272         bit_buf     = 
value >> bit_left;
 
  277     s->bit_buf  = bit_buf;
 
  278     s->bit_left = bit_left;
 
  301     bit_buf  = 
s->bit_buf;
 
  302     bit_left = 
s->bit_left;
 
  304 #ifdef BITSTREAM_WRITER_LE 
  306     if (
s->buf_end - 
s->buf_ptr >= 
sizeof(
BitBuf)) {
 
  313     bit_buf     = (uint64_t)
value >> bit_left;
 
  315     bit_buf     = (uint64_t)bit_buf << bit_left;
 
  317     if (
s->buf_end - 
s->buf_ptr >= 
sizeof(
BitBuf)) {
 
  327     s->bit_buf  = bit_buf;
 
  328     s->bit_left = bit_left;
 
  343         uint32_t lo = 
value & 0xffffffff;
 
  344         uint32_t hi = 
value >> 32;
 
  345 #ifdef BITSTREAM_WRITER_LE 
  353         uint32_t lo = 
value & 0xffffffff;
 
  354         uint32_t hi = 
value >> 32;
 
  355 #ifdef BITSTREAM_WRITER_LE 
  414     s->buf_end = 
s->buf + 
size;
 
  
static void av_unused put_bits32(PutBitContext *s, uint32_t value)
Write exactly 32 bits into a bitstream.
static void align_put_bits(PutBitContext *s)
Pad the bitstream with zeros up to the next byte boundary.
static int put_bytes_output(const PutBitContext *s)
static void put_sbits(PutBitContext *pb, int n, int32_t value)
void ff_put_string(PutBitContext *pb, const char *string, int terminate_string)
Put the string string in the bitstream.
static void init_put_bits(PutBitContext *s, uint8_t *buffer, int buffer_size)
Initialize the PutBitContext s.
static const int BUF_BITS
static void put_bits64(PutBitContext *s, int n, uint64_t value)
Write up to 64 bits into a bitstream.
static int put_bytes_count(const PutBitContext *s, int round_up)
void ff_copy_bits(PutBitContext *pb, const uint8_t *src, int length)
Copy the content of src to the bitstream.
static int put_bits_left(PutBitContext *s)
static int put_bytes_left(const PutBitContext *s, int round_up)
#define AV_LOG_ERROR
Something went wrong and cannot losslessly be recovered.
static void rebase_put_bits(PutBitContext *s, uint8_t *buffer, int buffer_size)
Rebase the bit writer onto a reallocated buffer.
static void skip_put_bits(PutBitContext *s, int n)
Skip the given number of bits.
#define av_assert0(cond)
assert() equivalent, that is always enabled.
static void flush_put_bits_le(PutBitContext *s)
static void put_sbits63(PutBitContext *pb, int n, int64_t value)
static void put_bits(PutBitContext *s, int n, BitBuf value)
Write up to 31 bits into a bitstream.
static void set_put_bits_buffer_size(PutBitContext *s, int size)
Change the end of the buffer.
static void put_bits_no_assert(PutBitContext *s, int n, BitBuf value)
#define av_assert2(cond)
assert() equivalent, that does lie in speed critical code.
static int put_bits_count(PutBitContext *s)
it s the only field you need to keep assuming you have a context There is some magic you don t need to care about around this just let it vf default value
static uint8_t * put_bits_ptr(PutBitContext *s)
Return the pointer to the byte where the bitstream writer will put the next bit.
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 void skip_put_bytes(PutBitContext *s, int n)
Skip the given number of bytes.
static void flush_put_bits(PutBitContext *s)
Pad the end of the output stream with zeros.
static void put_bits_le(PutBitContext *s, int n, BitBuf value)