29 #define LONG_BITSTREAM_READER 
   44     for (i = 0; i < 64; i++)
 
   45         dst[i] = permutation[src[i]];
 
   75     ff_dlog(avctx, 
"header size %d\n", hdr_size);
 
   76     if (hdr_size > data_size) {
 
   82     ff_dlog(avctx, 
"%.4s version %d\n", buf+4, version);
 
   90     if (width != avctx->
width || height != avctx->
height) {
 
  128     ff_dlog(avctx, 
"flags %x\n", flags);
 
  131         if(buf + data_size - ptr < 64) {
 
  142         if(buf + data_size - ptr < 64) {
 
  157     int i, hdr_size, slice_count;
 
  158     unsigned pic_data_size;
 
  159     int log2_slice_mb_width, log2_slice_mb_height;
 
  160     int slice_mb_count, mb_x, mb_y;
 
  161     const uint8_t *data_ptr, *index_ptr;
 
  163     hdr_size = buf[0] >> 3;
 
  164     if (hdr_size < 8 || hdr_size > buf_size) {
 
  169     pic_data_size = 
AV_RB32(buf + 1);
 
  170     if (pic_data_size > buf_size) {
 
  175     log2_slice_mb_width  = buf[7] >> 4;
 
  176     log2_slice_mb_height = buf[7] & 0xF;
 
  177     if (log2_slice_mb_width > 3 || log2_slice_mb_height) {
 
  179                1 << log2_slice_mb_width, 1 << log2_slice_mb_height);
 
  192                                     av_popcount(ctx->
mb_width & (1 << log2_slice_mb_width) - 1));
 
  206     if (hdr_size + slice_count*2 > buf_size) {
 
  212     index_ptr = buf + hdr_size;
 
  213     data_ptr  = index_ptr + slice_count*2;
 
  215     slice_mb_count = 1 << log2_slice_mb_width;
 
  219     for (i = 0; i < slice_count; i++) {
 
  222         slice->
data = data_ptr;
 
  223         data_ptr += 
AV_RB16(index_ptr + i*2);
 
  225         while (ctx->
mb_width - mb_x < slice_mb_count)
 
  226             slice_mb_count >>= 1;
 
  238         mb_x += slice_mb_count;
 
  240             slice_mb_count = 1 << log2_slice_mb_width;
 
  244         if (data_ptr > buf + buf_size) {
 
  256     return pic_data_size;
 
  259 #define DECODE_CODEWORD(val, codebook, SKIP)                            \ 
  261         unsigned int rice_order, exp_order, switch_bits;                \ 
  262         unsigned int q, buf, bits;                                      \ 
  264         UPDATE_CACHE(re, gb);                                           \ 
  265         buf = GET_CACHE(re, gb);                                        \ 
  268         switch_bits =  codebook & 3;                                    \ 
  269         rice_order  =  codebook >> 5;                                   \ 
  270         exp_order   = (codebook >> 2) & 7;                              \ 
  272         q = 31 - av_log2(buf);                                          \ 
  274         if (q > switch_bits) {                          \ 
  275             bits = exp_order - switch_bits + (q<<1);                    \ 
  276             if (bits > FFMIN(MIN_CACHE_BITS, 31))                       \ 
  277                 return AVERROR_INVALIDDATA;                             \ 
  278             val = SHOW_UBITS(re, gb, bits) - (1 << exp_order) +         \ 
  279                 ((switch_bits + 1) << rice_order);                      \ 
  280             SKIP(re, gb, bits);                                         \ 
  281         } else if (rice_order) {                                        \ 
  282             SKIP_BITS(re, gb, q+1);                                     \ 
  283             val = (q << rice_order) + SHOW_UBITS(re, gb, rice_order);   \ 
  284             SKIP(re, gb, rice_order);                                   \ 
  291 #define TOSIGNED(x) (((x) >> 1) ^ (-((x) & 1))) 
  293 #define FIRST_DC_CB 0xB8 
  298                                               int blocks_per_slice)
 
  313     for (i = 1; i < blocks_per_slice; i++, out += 64) {
 
  315         if(code) sign ^= -(code & 1);
 
  317         prev_dc += (((code + 1) >> 1) ^ sign) - sign;
 
  325 static const uint8_t run_to_cb[16] = { 0x06, 0x06, 0x05, 0x05, 0x04, 0x29, 0x29, 0x29, 0x29, 0x28, 0x28, 0x28, 0x28, 0x28, 0x28, 0x4C };
 
  326 static const uint8_t lev_to_cb[10] = { 0x04, 0x0A, 0x05, 0x06, 0x04, 0x28, 0x28, 0x28, 0x28, 0x4C };
 
  329                                              int16_t *
out, 
int blocks_per_slice)
 
  332     int block_mask, sign;
 
  334     int max_coeffs, i, bits_left;
 
  335     int log2_block_count = 
av_log2(blocks_per_slice);
 
  342     max_coeffs = 64 << log2_block_count;
 
  343     block_mask = blocks_per_slice - 1;
 
  345     for (pos = block_mask;;) {
 
  347         if (!bits_left || (bits_left < 32 && !
SHOW_UBITS(
re, gb, bits_left)))
 
  352         if (pos >= max_coeffs) {
 
  360         i = pos >> log2_block_count;
 
  364         out[((pos & block_mask) << 6) + ctx->
scan[i]] = ((level ^ sign) - sign);
 
  372                              uint16_t *dst, 
int dst_stride,
 
  380     int i, blocks_per_slice = slice->
mb_count<<2;
 
  383     for (i = 0; i < blocks_per_slice; i++)
 
  394     for (i = 0; i < slice->
mb_count; i++) {
 
  397         ctx->
prodsp.
idct_put(dst+4*dst_stride  , dst_stride, block+(2<<6), qmat);
 
  398         ctx->
prodsp.
idct_put(dst+4*dst_stride+8, dst_stride, block+(3<<6), qmat);
 
  406                                uint16_t *dst, 
int dst_stride,
 
  408                                const int16_t *qmat, 
int log2_blocks_per_mb)
 
  414     int i, j, blocks_per_slice = slice->
mb_count << log2_blocks_per_mb;
 
  417     for (i = 0; i < blocks_per_slice; i++)
 
  428     for (i = 0; i < slice->
mb_count; i++) {
 
  429         for (j = 0; j < log2_blocks_per_mb; j++) {
 
  431             ctx->
prodsp.
idct_put(dst+4*dst_stride, dst_stride, block+(1<<6), qmat);
 
  442     const int mask = (1 << num_bits) - 1;
 
  443     int i, idx, 
val, alpha_val;
 
  453                 val  = 
get_bits(gb, num_bits == 16 ? 7 : 4);
 
  455                 val  = (val + 2) >> 1;
 
  459             alpha_val = (alpha_val + 
val) & mask;
 
  460             if (num_bits == 16) {
 
  461                 dst[idx++] = alpha_val >> 6;
 
  463                 dst[idx++] = (alpha_val << 2) | (alpha_val >> 6);
 
  465             if (idx >= num_coeffs)
 
  471         if (idx + val > num_coeffs)
 
  472             val = num_coeffs - idx;
 
  473         if (num_bits == 16) {
 
  474             for (i = 0; i < 
val; i++)
 
  475                 dst[idx++] = alpha_val >> 6;
 
  477             for (i = 0; i < 
val; i++)
 
  478                 dst[idx++] = (alpha_val << 2) | (alpha_val >> 6);
 
  481     } 
while (idx < num_coeffs);
 
  488                                uint16_t *dst, 
int dst_stride,
 
  490                                int blocks_per_slice)
 
  497     for (i = 0; i < blocks_per_slice<<2; i++)
 
  503         unpack_alpha(&gb, blocks, blocks_per_slice * 4 * 64, 16);
 
  505         unpack_alpha(&gb, blocks, blocks_per_slice * 4 * 64, 8);
 
  509     for (i = 0; i < 16; i++) {
 
  510         memcpy(dst, block, 16 * blocks_per_slice * 
sizeof(*dst));
 
  511         dst   += dst_stride >> 1;
 
  512         block += 16 * blocks_per_slice;
 
  522     int i, hdr_size, qscale, log2_chroma_blocks_per_mb;
 
  523     int luma_stride, chroma_stride;
 
  524     int y_data_size, u_data_size, v_data_size, a_data_size;
 
  525     uint8_t *dest_y, *dest_u, *dest_v, *dest_a;
 
  536     hdr_size = buf[0] >> 3;
 
  537     qscale = av_clip(buf[1], 1, 224);
 
  538     qscale = qscale > 128 ? qscale - 96 << 2: qscale;
 
  539     y_data_size = 
AV_RB16(buf + 2);
 
  540     u_data_size = 
AV_RB16(buf + 4);
 
  541     v_data_size = slice->
data_size - y_data_size - u_data_size - hdr_size;
 
  542     if (hdr_size > 7) v_data_size = 
AV_RB16(buf + 6);
 
  543     a_data_size = slice->
data_size - y_data_size - u_data_size -
 
  544                   v_data_size - hdr_size;
 
  546     if (y_data_size < 0 || u_data_size < 0 || v_data_size < 0
 
  547         || hdr_size+y_data_size+u_data_size+v_data_size > slice->
data_size){
 
  554     for (i = 0; i < 64; i++) {
 
  555         qmat_luma_scaled  [i] = ctx->
qmat_luma  [i] * qscale;
 
  556         qmat_chroma_scaled[i] = ctx->
qmat_chroma[i] * qscale;
 
  563         luma_stride   = pic->
linesize[0] << 1;
 
  564         chroma_stride = pic->
linesize[1] << 1;
 
  569         log2_chroma_blocks_per_mb = 2;
 
  572         log2_chroma_blocks_per_mb = 1;
 
  575     dest_y = pic->
data[0] + (slice->
mb_y << 4) * luma_stride + (slice->
mb_x << 5);
 
  576     dest_u = pic->
data[1] + (slice->
mb_y << 4) * chroma_stride + (slice->
mb_x << mb_x_shift);
 
  577     dest_v = pic->
data[2] + (slice->
mb_y << 4) * chroma_stride + (slice->
mb_x << mb_x_shift);
 
  578     dest_a = pic->
data[3] + (slice->
mb_y << 4) * luma_stride + (slice->
mb_x << 5);
 
  588                             buf, y_data_size, qmat_luma_scaled);
 
  594                                   buf + y_data_size, u_data_size,
 
  595                                   qmat_chroma_scaled, log2_chroma_blocks_per_mb);
 
  600                                   buf + y_data_size + u_data_size, v_data_size,
 
  601                                   qmat_chroma_scaled, log2_chroma_blocks_per_mb);
 
  606         size_t mb_max_x = slice->
mb_count << (mb_x_shift - 1);
 
  608         for (i = 0; i < 16; ++i)
 
  609             for (j = 0; j < mb_max_x; ++j) {
 
  610                 *(uint16_t*)(dest_u + (i * chroma_stride) + (j << 1)) = 511;
 
  611                 *(uint16_t*)(dest_v + (i * chroma_stride) + (j << 1)) = 511;
 
  618                            buf + y_data_size + u_data_size + v_data_size,
 
  638     if (error < ctx->slice_count)
 
  651     int buf_size = avpkt->
size;
 
  652     int frame_hdr_size, pic_size, ret;
 
  668     if (frame_hdr_size < 0)
 
  669         return frame_hdr_size;
 
  671     buf += frame_hdr_size;
 
  672     buf_size -= frame_hdr_size;
 
  690     buf_size -= pic_size;
 
const char const char void * val
 
#define AVERROR_INVALIDDATA
Invalid data found when processing input. 
 
This structure describes decoded (raw) audio or video data. 
 
ptrdiff_t const GLvoid * data
 
void(* clear_block)(int16_t *block)
 
#define AV_PIX_FMT_YUVA422P10
 
static unsigned int get_bits(GetBitContext *s, int n)
Read 1-25 bits. 
 
static int init_thread_copy(AVCodecContext *avctx)
 
static av_cold int init(AVCodecContext *avctx)
 
static int decode_slice_thread(AVCodecContext *avctx, void *arg, int jobnr, int threadnr)
 
static int decode_slice_luma(AVCodecContext *avctx, SliceContext *slice, uint16_t *dst, int dst_stride, const uint8_t *buf, unsigned buf_size, const int16_t *qmat)
 
enum AVColorRange color_range
MPEG vs JPEG YUV range. 
 
av_cold void ff_blockdsp_init(BlockDSPContext *c, AVCodecContext *avctx)
 
av_cold void ff_proresdsp_init(ProresDSPContext *dsp, AVCodecContext *avctx)
 
enum AVPixelFormat pix_fmt
Pixel format, see AV_PIX_FMT_xxx. 
 
unsigned mb_height
height of the current picture in mb 
 
int idct_permutation_type
 
int bits_per_raw_sample
Bits per sample/pixel of internal libavcodec pixel/sample format. 
 
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_WB32 unsigned int_TMPL AV_WB24 unsigned int_TMPL AV_RB16
 
static int decode_picture_header(AVCodecContext *avctx, const uint8_t *buf, const int buf_size)
 
Multithreading support functions. 
 
static av_cold int decode_init(AVCodecContext *avctx)
 
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
 
AVCodec ff_prores_decoder
 
bitstream reader API header. 
 
int interlaced_frame
The content of the picture is interlaced. 
 
#define AV_CODEC_FLAG_GRAY
Only decode/encode grayscale. 
 
int slice_count
number of slices in the current picture 
 
static int get_bits_left(GetBitContext *gb)
 
unsigned mb_width
width of the current picture in mb 
 
#define UPDATE_CACHE(name, gb)
 
#define AV_LOG_ERROR
Something went wrong and cannot losslessly be recovered. 
 
static const uint16_t mask[17]
 
int skip_alpha
Skip processing alpha if supported by codec. 
 
#define NULL_IF_CONFIG_SMALL(x)
Return NULL if CONFIG_SMALL is true, otherwise the argument without modification. ...
 
int flags
AV_CODEC_FLAG_*. 
 
const char * name
Name of the codec implementation. 
 
#define AV_PIX_FMT_YUV444P10
 
#define CLOSE_READER(name, gb)
 
#define AV_CODEC_CAP_FRAME_THREADS
Codec supports frame-level multithreading. 
 
#define SKIP_BITS(name, gb, num)
 
#define ONLY_IF_THREADS_ENABLED(x)
Define a function with only the non-default version specified. 
 
common internal API header 
 
enum AVPictureType pict_type
Picture type of the frame. 
 
av_cold void ff_init_scantable_permutation(uint8_t *idct_permutation, enum idct_permutation_type perm_type)
 
int width
picture width / height. 
 
uint8_t idct_permutation[64]
 
enum AVColorPrimaries color_primaries
Chromaticity coordinates of the source primaries. 
 
#define LAST_SKIP_BITS(name, gb, num)
 
static const uint8_t lev_to_cb[10]
 
#define AV_PIX_FMT_YUVA444P10
 
uint8_t interlaced_scan[64]
 
static void error(const char *err)
 
#define SHOW_UBITS(name, gb, num)
 
#define AVERROR_PATCHWELCOME
Not yet implemented in FFmpeg, patches welcome. 
 
#define AV_CODEC_CAP_SLICE_THREADS
Codec supports slice-based (or partition-based) multithreading. 
 
const uint8_t ff_prores_interlaced_scan[64]
 
Libavcodec external API header. 
 
int linesize[AV_NUM_DATA_POINTERS]
For video, size in bytes of each picture line. 
 
int ff_thread_get_buffer(AVCodecContext *avctx, ThreadFrame *f, int flags)
Wrapper around get_buffer() for frame-multithreaded codecs. 
 
main external API structure. 
 
const uint8_t ff_prores_progressive_scan[64]
 
void(* idct_put)(uint16_t *out, ptrdiff_t linesize, int16_t *block, const int16_t *qmat)
 
static void permute(uint8_t *dst, const uint8_t *src, const uint8_t permutation[64])
 
#define OPEN_READER(name, gb)
 
static av_always_inline int decode_ac_coeffs(AVCodecContext *avctx, GetBitContext *gb, int16_t *out, int blocks_per_slice)
 
static unsigned int get_bits1(GetBitContext *s)
 
static int decode_slice_chroma(AVCodecContext *avctx, SliceContext *slice, uint16_t *dst, int dst_stride, const uint8_t *buf, unsigned buf_size, const int16_t *qmat, int log2_blocks_per_mb)
 
static const uint8_t run_to_cb[16]
 
uint8_t progressive_scan[64]
 
enum AVColorSpace colorspace
YUV colorspace type. 
 
enum AVColorTransferCharacteristic color_trc
Color Transfer Characteristic. 
 
static int init_get_bits(GetBitContext *s, const uint8_t *buffer, int bit_size)
Initialize GetBitContext. 
 
static int decode_frame(AVCodecContext *avctx, void *data, int *got_frame, AVPacket *avpkt)
 
#define DECODE_CODEWORD(val, codebook, SKIP)
 
#define FF_DECODE_ERROR_INVALID_BITSTREAM
 
int decode_error_flags
decode error flags of the frame, set to a combination of FF_DECODE_ERROR_xxx flags if the decoder pro...
 
#define flags(name, subs,...)
 
#define AV_PIX_FMT_YUV422P10
 
uint8_t * data[AV_NUM_DATA_POINTERS]
pointer to the picture/channel planes. 
 
static void unpack_alpha(GetBitContext *gb, uint16_t *dst, int num_coeffs, const int num_bits)
 
the normal 219*2^(n-8) "MPEG" YUV ranges 
 
#define LOCAL_ALIGNED_32(t, v,...)
 
#define SHOW_SBITS(name, gb, num)
 
common internal api header. 
 
static const uint8_t dc_codebook[7]
 
int top_field_first
If the content is interlaced, is top field displayed first. 
 
int(* execute2)(struct AVCodecContext *c, int(*func)(struct AVCodecContext *c2, void *arg, int jobnr, int threadnr), void *arg2, int *ret, int count)
The codec may call this to execute several independent things. 
 
static void decode_slice_alpha(ProresContext *ctx, uint16_t *dst, int dst_stride, const uint8_t *buf, int buf_size, int blocks_per_slice)
Decode alpha slice plane. 
 
int key_frame
1 -> keyframe, 0-> not 
 
static int decode_frame_header(ProresContext *ctx, const uint8_t *buf, const int data_size, AVCodecContext *avctx)
 
static av_always_inline int decode_dc_coeffs(GetBitContext *gb, int16_t *out, int blocks_per_slice)
 
static av_cold int decode_close(AVCodecContext *avctx)
 
#define LOCAL_ALIGNED_16(t, v,...)
 
int frame_type
0 = progressive, 1 = tff, 2 = bff 
 
uint64_t_TMPL AV_WL64 unsigned int_TMPL AV_RL32
 
This structure stores compressed data. 
 
static int decode_picture(AVCodecContext *avctx)
 
#define AV_CODEC_CAP_DR1
Codec uses get_buffer() for allocating buffers and supports custom allocators. 
 
void * av_mallocz_array(size_t nmemb, size_t size)