82 #define CVID_HEADER_SIZE 10 
   83 #define STRIP_HEADER_SIZE 12 
   84 #define CHUNK_HEADER_SIZE 4 
   86 #define MB_SIZE 4           //4x4 MBs 
   87 #define MB_AREA (MB_SIZE*MB_SIZE) 
   89 #define VECTOR_MAX 6        //six or four entries per vector depending on format 
   90 #define CODEBOOK_MAX 256    //size of a codebook 
   92 #define MAX_STRIPS  32      //Note: having fewer choices regarding the number of strips speeds up encoding (obviously) 
   93 #define MIN_STRIPS  1       //Note: having more strips speeds up encoding the frame (this is less obvious) 
  155 #ifdef CINEPAKENC_DEBUG 
  157     int num_v1_mode, num_v4_mode, num_mc_mode;
 
  158     int num_v1_encs, num_v4_encs, num_skips;
 
  168 #define OFFSET(x) offsetof(CinepakEncContext, x) 
  169 #define VE AV_OPT_FLAG_VIDEO_PARAM | AV_OPT_FLAG_ENCODING_PARAM 
  171     { 
"max_extra_cb_iterations", 
"Max extra codebook recalculation passes, more is better and slower", 
OFFSET(max_extra_cb_iterations), 
AV_OPT_TYPE_INT, { .i64 = 2 }, 0, INT_MAX, 
VE },
 
  172     { 
"skip_empty_cb", 
"Avoid wasting bytes, ignore vintage MacOS decoder", 
OFFSET(skip_empty_cb), 
AV_OPT_TYPE_BOOL, { .i64 = 0 }, 0, 1, 
VE },
 
  173     { 
"max_strips", 
"Limit strips/frame, vintage compatible is 1..3, otherwise the more the better", 
OFFSET(max_max_strips), 
AV_OPT_TYPE_INT, { .i64 = 3 }, 
MIN_STRIPS, 
MAX_STRIPS, 
VE },
 
  174     { 
"min_strips", 
"Enforce min strips/frame, more is worse and faster, must be <= max_strips", 
OFFSET(min_min_strips), 
AV_OPT_TYPE_INT, { .i64 = 
MIN_STRIPS }, 
MIN_STRIPS, 
MAX_STRIPS, 
VE },
 
  175     { 
"strip_number_adaptivity", 
"How fast the strip number adapts, more is slightly better, much slower", 
OFFSET(strip_number_delta_range), 
AV_OPT_TYPE_INT, { .i64 = 0 }, 0, 
MAX_STRIPS-
MIN_STRIPS, 
VE },
 
  189     int x, mb_count, strip_buf_size, frame_buf_size;
 
  192         av_log(avctx, 
AV_LOG_ERROR, 
"width and height must be multiples of four (got %ix%i)\n",
 
  198         av_log(avctx, 
AV_LOG_ERROR, 
"minimal number of strips can not exceed maximal (got %i and %i)\n",
 
  242 #ifdef CINEPAKENC_DEBUG 
  287 #ifdef CINEPAKENC_DEBUG 
  288     s->num_v1_mode = s->num_v4_mode = s->num_mc_mode = s->num_v1_encs = s->num_v4_encs = s->num_skips = 0;
 
  304 #ifdef CINEPAKENC_DEBUG 
  315 #ifdef CINEPAK_REPORT_SERR
 
  325     int64_t score1, score2, score3;
 
  332 #ifdef CINEPAK_REPORT_SERR 
  339         ret += s->
lambda * 8 * mb_count;
 
  342         for(x = 0; x < mb_count; x++) {
 
  345 #ifdef CINEPAK_REPORT_SERR 
  358             *training_set_v1_shrunk = *training_set_v4_shrunk = 0;
 
  359             for(x = 0; x < mb_count; x++) {
 
  367 #ifdef CINEPAK_REPORT_SERR 
  372             for(x = 0; x < mb_count; x++) {
 
  377                 if(score1 <= score2) {
 
  379 #ifdef CINEPAK_REPORT_SERR 
  385 #ifdef CINEPAK_REPORT_SERR 
  397             int v1_shrunk = 0, v4_shrunk = 0;
 
  398             for(x = 0; x < mb_count; x++) {
 
  405 #ifdef CINEPAK_REPORT_SERR 
  413 #ifdef CINEPAK_REPORT_SERR 
  418 #ifdef CINEPAK_REPORT_SERR 
  427 #ifdef CINEPAK_REPORT_SERR 
  432 #ifdef CINEPAK_REPORT_SERR 
  438             *training_set_v1_shrunk = v1_shrunk;
 
  439             *training_set_v4_shrunk = v4_shrunk;
 
  441             for(x = 0; x < mb_count; x++) {
 
  447                 if(score1 <= score2 && score1 <= score3) {
 
  449 #ifdef CINEPAK_REPORT_SERR 
  453                 } 
else if(score2 <= score3) {
 
  455 #ifdef CINEPAK_REPORT_SERR 
  461 #ifdef CINEPAK_REPORT_SERR 
  485     int incremental_codebook_replacement_mode = 0; 
 
  490            chunk_type_yuv+(incremental_codebook_replacement_mode?1:0) :
 
  491            chunk_type_gray+(incremental_codebook_replacement_mode?1:0),
 
  493            + (incremental_codebook_replacement_mode?(size+31)/32*4:0) );
 
  500     if(incremental_codebook_replacement_mode) {
 
  503         for(x = 0; x < 
size; x++) {
 
  509                 flags = ((flags>>1) | 0x80000000);
 
  510             for(y = 0; y < entry_size; y++)
 
  511                 buf[ret++] = codebook[y + x*entry_size] ^ (y >= 4 ? 0x80 : 0);
 
  512             if((flags&0xffffffff) == 0xffffffff) {
 
  513                 AV_WB32(&buf[flagsind], flags);
 
  518             AV_WB32(&buf[flagsind], flags);
 
  520         for(x = 0; x < 
size; x++)
 
  521             for(y = 0; y < entry_size; y++)
 
  522                 buf[ret++] = codebook[y + x*entry_size] ^ (y >= 4 ? 0x80 : 0);
 
  529                             uint8_t * in_data[4], 
int  in_linesize[4],
 
  530                             uint8_t *out_data[4], 
int out_linesize[4])
 
  532     out_data[0] = in_data[0] + x + y * in_linesize[0];
 
  533     out_linesize[0] = in_linesize[0];
 
  536         out_data[1] = in_data[1] + (x >> 1) + (y >> 1) * in_linesize[1];
 
  537         out_linesize[1] = in_linesize[1];
 
  539         out_data[2] = in_data[2] + (x >> 1) + (y >> 1) * in_linesize[2];
 
  540         out_linesize[2] = in_linesize[2];
 
  546                              int linesize[4], 
int v1_vector, 
strip_info *info)
 
  552             data[0][    linesize[0]] =
 
  553             data[0][1+  linesize[0]] = info->
v1_codebook[v1_vector*entry_size];
 
  557             data[0][2+  linesize[0]] =
 
  558             data[0][3+  linesize[0]] = info->
v1_codebook[v1_vector*entry_size+1];
 
  560     data[0][2*linesize[0]] =
 
  561             data[0][1+2*linesize[0]] =
 
  562             data[0][  3*linesize[0]] =
 
  563             data[0][1+3*linesize[0]] = info->
v1_codebook[v1_vector*entry_size+2];
 
  565     data[0][2+2*linesize[0]] =
 
  566             data[0][3+2*linesize[0]] =
 
  567             data[0][2+3*linesize[0]] =
 
  568             data[0][3+3*linesize[0]] = info->
v1_codebook[v1_vector*entry_size+3];
 
  573             data[1][    linesize[1]] =
 
  574             data[1][1+  linesize[1]] = info->
v1_codebook[v1_vector*entry_size+4];
 
  578             data[2][    linesize[2]] =
 
  579             data[2][1+  linesize[2]] = info->
v1_codebook[v1_vector*entry_size+5];
 
  585                              int linesize[4], 
int *v4_vector, 
strip_info *info)
 
  589     for(i = y = 0; y < 4; y += 2) {
 
  590         for(x = 0; x < 4; x += 2, i++) {
 
  591             data[0][x   +     y*linesize[0]] = info->
v4_codebook[v4_vector[i]*entry_size];
 
  592             data[0][x+1 +     y*linesize[0]] = info->
v4_codebook[v4_vector[i]*entry_size+1];
 
  593             data[0][x   + (y+1)*linesize[0]] = info->
v4_codebook[v4_vector[i]*entry_size+2];
 
  594             data[0][x+1 + (y+1)*linesize[0]] = info->
v4_codebook[v4_vector[i]*entry_size+3];
 
  597                 data[1][(x>>1) + (y>>1)*linesize[1]] = info->
v4_codebook[v4_vector[i]*entry_size+4];
 
  598                 data[2][(x>>1) + (y>>1)*linesize[2]] = info->
v4_codebook[v4_vector[i]*entry_size+5];
 
  605                     uint8_t *a_data[4], 
int a_linesize[4],
 
  606                     uint8_t *b_data[4], 
int b_linesize[4])
 
  611         memcpy(a_data[0]+y*a_linesize[0], b_data[0]+y*b_linesize[0],
 
  616         for(p = 1; p <= 2; p++) {
 
  617             for(y = 0; y < MB_SIZE/2; y++) {
 
  618                 memcpy(a_data[p] + y*a_linesize[p],
 
  619                        b_data[p] + y*b_linesize[p],
 
  627                        uint8_t *scratch_data[4], 
int scratch_linesize[4],
 
  628                        uint8_t *last_data[4], 
int last_linesize[4],
 
  631     int x, y, z, 
flags, 
bits, temp_size, header_ofs, ret = 0, mb_count = s->
w * h / 
MB_AREA;
 
  632     int needs_extra_bit, should_write_temp;
 
  633     unsigned char temp[64]; 
 
  635     uint8_t *sub_scratch_data[4] = {0}, *sub_last_data[4] = {0};
 
  636     int sub_scratch_linesize[4] = {0}, sub_last_linesize[4] = {0};
 
  649     for(z = y = 0; y < 
h; y += 
MB_SIZE) {
 
  650         for(x = 0; x < s->
w; x += 
MB_SIZE, z++) {
 
  654                             sub_scratch_data, sub_scratch_linesize);
 
  658                                 last_data, last_linesize,
 
  659                                 sub_last_data, sub_last_linesize);
 
  660                 copy_mb(s, sub_scratch_data, sub_scratch_linesize,
 
  661                         sub_last_data, sub_last_linesize);
 
  676         for(x = 0; x < mb_count; x++)
 
  685         for(x = 0; x < mb_count; x += 32) {
 
  687             for(y = x; y < 
FFMIN(x+32, mb_count); y++)
 
  689                     flags |= 1 << (31 - y + x);
 
  694             for(y = x; y < 
FFMIN(x+32, mb_count); y++) {
 
  700                     for(z = 0; z < 4; z++)
 
  712         flags = bits = temp_size = 0;
 
  714         for(x = 0; x < mb_count; x++) {
 
  718             should_write_temp = 0;
 
  733                     memcpy(&buf[ret], temp, temp_size);
 
  737                     should_write_temp = 1;
 
  740             if(needs_extra_bit) {
 
  748                 for(z = 0; z < 4; z++)
 
  751             if(should_write_temp) {
 
  752                 memcpy(&buf[ret], temp, temp_size);
 
  761             memcpy(&buf[ret], temp, temp_size);
 
  775                                  uint8_t *a_data[4], 
int a_linesize[4],
 
  776                                  uint8_t *b_data[4], 
int b_linesize[4])
 
  778     int x, y, p, d, ret = 0;
 
  782             d = a_data[0][x + y*a_linesize[0]] - b_data[0][x + y*b_linesize[0]];
 
  788         for(p = 1; p <= 2; p++) {
 
  789             for(y = 0; y < MB_SIZE/2; y++) {
 
  790                 for(x = 0; x < MB_SIZE/2; x++) {
 
  791                     d = a_data[p][x + y*a_linesize[p]] - b_data[p][x + y*b_linesize[p]];
 
  802 #define CERTAIN(x) ((x)!=ENC_UNCERTAIN) 
  808     int x, y, i, j, k, x2, y2, x3, y3, 
plane, 
shift, mbn;
 
  812     int64_t total_error = 0;
 
  814     uint8_t *sub_data    [4], *vq_data    [4];
 
  815     int      sub_linesize[4],  vq_linesize[4];
 
  817     for(mbn = i = y = 0; y < 
h; y += 
MB_SIZE) {
 
  818         for(x = 0; x < s->
w; x += 
MB_SIZE, ++mbn) {
 
  829                 for(j = y2 = 0; y2 < entry_size; y2 += 2) {
 
  830                     for(x2 = 0; x2 < 4; x2 += 2, j++) {
 
  831                         plane = y2 < 4 ? 0 : 1 + (x2 >> 1);
 
  832                         shift = y2 < 4 ? 0 : 1;
 
  835                         base[j] = (data[
plane][((x+x3) >> shift) +      ((y+y3) >> shift)      * linesize[
plane]] +
 
  836                                    data[
plane][((x+x3) >> shift) + 1 +  ((y+y3) >> shift)      * linesize[
plane]] +
 
  837                                    data[
plane][((x+x3) >> shift) +     (((y+y3) >> shift) + 1) * linesize[plane]] +
 
  838                                    data[plane][((x+x3) >> 
shift) + 1 + (((y+y3) >> 
shift) + 1) * linesize[
plane]]) >> 2;
 
  843                 for(j = y2 = 0; y2 < 
MB_SIZE; y2 += 2) {
 
  844                     for(x2 = 0; x2 < 
MB_SIZE; x2 += 2) {
 
  845                         for(k = 0; k < entry_size; k++, j++) {
 
  846                             plane = k >= 4 ? k - 3 : 0;
 
  852                                 x3 = x + x2 + (k & 1);
 
  853                                 y3 = y + y2 + (k >> 1);
 
  856                             base[j] = data[
plane][x3 + y3*linesize[
plane]];
 
  879     vq_data[0] = vq_pict_buf;
 
  881     vq_data[1] = &vq_pict_buf[
MB_AREA];
 
  882     vq_data[2] = vq_data[1] + (
MB_AREA >> 2);
 
  883     vq_linesize[1] = vq_linesize[2] = 
MB_SIZE >> 1;
 
  886     for(i = j = y = 0; y < 
h; y += 
MB_SIZE) {
 
  887         for(x = 0; x < s->
w; x += 
MB_SIZE, j++) {
 
  903                                                      vq_data, vq_linesize);
 
  906                 for(k = 0; k < 4; k++)
 
  913                                                      vq_data, vq_linesize);
 
  928                                   uint8_t *last_data[4], 
int last_linesize[4],
 
  933     uint8_t *sub_last_data    [4], *sub_pict_data    [4];
 
  934     int      sub_last_linesize[4],  sub_pict_linesize[4];
 
  936     for(i = y = 0; y < 
h; y += 
MB_SIZE) {
 
  937         for(x = 0; x < s->
w; x += 
MB_SIZE, i++) {
 
  939                                  sub_last_data, sub_last_linesize);
 
  941                                  sub_pict_data, sub_pict_linesize);
 
  944                                             sub_last_data, sub_last_linesize,
 
  945                                             sub_pict_data, sub_pict_linesize);
 
  957     buf[0] = keyframe ? 0x10: 0x11;
 
  969                     uint8_t *last_data[4], 
int last_linesize[4],
 
  971                     uint8_t *scratch_data[4], 
int scratch_linesize[4],
 
  972                     unsigned char *
buf, int64_t *best_score
 
  973 #ifdef CINEPAK_REPORT_SERR
 
  979 #ifdef CINEPAK_REPORT_SERR 
  985     int v1enough, v1_size, v4enough, v4_size;
 
  986     int new_v1_size, new_v4_size;
 
  987     int v1shrunk, v4shrunk;
 
  997 #define SMALLEST_CODEBOOK 1 
  999         for(v4enough = 0, v4_size = 0; v4_size <= v1_size && !v4enough; v4_size = v4_size ? v4_size << 2 : v1_size >= SMALLEST_CODEBOOK << 2 ? v1_size >> 2 : 
SMALLEST_CODEBOOK) {
 
 1034                                              &v1shrunk, &v4shrunk
 
 1035 #ifdef CINEPAK_REPORT_SERR
 
 1046                     if(new_v1_size < info.
v1_size){
 
 1053                     if(new_v4_size < info.
v4_size) {
 
 1063                                                      &v1shrunk, &v4shrunk
 
 1064 #ifdef CINEPAK_REPORT_SERR
 
 1069                         if((!v1shrunk && !v4shrunk) || !extra_iterations_limit--) 
break;
 
 1074                             if(new_v1_size < info.
v1_size){
 
 1082                             if(new_v4_size < info.
v4_size) {
 
 1092                 if(best_size == 0 || score < *best_score) {
 
 1094                     *best_score = score;
 
 1095 #ifdef CINEPAK_REPORT_SERR 
 1099                                             scratch_data, scratch_linesize,
 
 1100                                             last_data, last_linesize, &info,
 
 1105 #ifdef CINEPAK_REPORT_SERR 
 1109 #ifdef CINEPAKENC_DEBUG 
 1111                     memcpy(s->best_mb, s->
mb, mb_count*
sizeof(
mb_info));
 
 1122 #ifdef CINEPAKENC_DEBUG 
 1134         for(x = 0; x < s->
w*h/
MB_AREA; x++)
 
 1135             if(s->best_mb[x].best_encoding == 
ENC_V1)
 
 1137             else if(s->best_mb[x].best_encoding == 
ENC_V4)
 
 1152     buf[0] = isakeyframe ? 0 : 1;
 
 1162                     int isakeyframe, 
unsigned char *
buf, 
int buf_size)
 
 1164     int num_strips, strip, i, y, nexty, 
size, temp_size;
 
 1165     uint8_t *last_data    [4], *
data    [4], *scratch_data    [4];
 
 1166     int      last_linesize[4],  linesize[4],  scratch_linesize[4];
 
 1167     int64_t best_score = 0, score, score_temp;
 
 1168 #ifdef CINEPAK_REPORT_SERR 
 1169     int64_t best_serr = 0, serr, serr_temp;
 
 1172     int best_nstrips = -1, best_size = -1; 
 
 1177         for(y = 0; y < s->
h; y += 2) {
 
 1178             for(x = 0; x < s->
w; x += 2) {
 
 1181                 ir[1] = ir[0] + frame->
linesize[0];
 
 1184                                 scratch_data, scratch_linesize);
 
 1186                 for(i=0; i<4; ++i) {
 
 1188                     i1 = (i&1); i2 = (i>=2);
 
 1189                     rr = ir[i2][i1*3+0];
 
 1190                     gg = ir[i2][i1*3+1];
 
 1191                     bb = ir[i2][i1*3+2];
 
 1192                     r += rr; g += gg; b += bb;
 
 1196                     rr = (2396625*rr + 4793251*gg + 1198732*bb) >> 23;
 
 1198                     else if (rr > 255) rr = 255;
 
 1199                     scratch_data[0][i1 + i2*scratch_linesize[0]] = rr;
 
 1205                 rr = (-299683*r - 599156*g + 898839*
b) >> 23;
 
 1206                 if(      rr < -128) rr = -128;
 
 1207                 else if (rr >  127) rr =  127;
 
 1208                 scratch_data[1][0] = rr + 128; 
 
 1211                 rr = (748893*r - 599156*g - 149737*
b) >> 23;
 
 1212                 if(      rr < -128) rr = -128;
 
 1213                 else if (rr >  127) rr =  127;
 
 1214                 scratch_data[2][0] = rr + 128; 
 
 1221     for(num_strips = s->
min_strips; num_strips <= s->max_strips && num_strips <= s->
h / 
MB_SIZE; num_strips++) {
 
 1224 #ifdef CINEPAK_REPORT_SERR 
 1228         for(y = 0, strip = 1; y < s->
h; strip++, y = nexty) {
 
 1231             nexty = strip * s->
h / num_strips; 
 
 1234                 nexty += 4 - (nexty & 3);
 
 1236             strip_height = nexty - y;
 
 1237             if(strip_height <= 0) { 
 
 1252                             last_data, last_linesize);
 
 1255                             scratch_data, scratch_linesize);
 
 1257             if((temp_size = 
rd_strip(s, y, strip_height, isakeyframe,
 
 1258                                      last_data, last_linesize, data, linesize,
 
 1259                                      scratch_data, scratch_linesize,
 
 1261 #ifdef CINEPAK_REPORT_SERR
 
 1267             score += score_temp;
 
 1268 #ifdef CINEPAK_REPORT_SERR 
 1276         if(best_score == 0 || score < best_score) {
 
 1278 #ifdef CINEPAK_REPORT_SERR 
 1283 #ifdef CINEPAK_REPORT_SERR 
 1284             av_log(s->
avctx, 
AV_LOG_INFO, 
"best number of strips so far: %2i, %12"PRId64
", %i B\n", num_strips, serr, best_size);
 
 1289             best_nstrips = num_strips;
 
 1293         if(num_strips - best_nstrips > 4)
 
 1297     av_assert0(best_nstrips >= 0 && best_size >= 0);
 
 1364 #ifdef CINEPAKENC_DEBUG 
 1371 #ifdef CINEPAKENC_DEBUG 
 1372     av_log(avctx, 
AV_LOG_INFO, 
"strip coding stats: %i V1 mode, %i V4 mode, %i MC mode (%i V1 encs, %i V4 encs, %i skips)\n",
 
 1373         s->num_v1_mode, s->num_v4_mode, s->num_mc_mode, s->num_v1_encs, s->num_v4_encs, s->num_skips);
 
static enum AVPixelFormat pix_fmt
 
static int shift(int a, int b)
 
This structure describes decoded (raw) audio or video data. 
 
ptrdiff_t const GLvoid * data
 
static void calculate_skip_errors(CinepakEncContext *s, int h, uint8_t *last_data[4], int last_linesize[4], uint8_t *data[4], int linesize[4], strip_info *info)
 
#define LIBAVUTIL_VERSION_INT
 
packed RGB 8:8:8, 24bpp, RGBRGB... 
 
static av_cold int init(AVCodecContext *avctx)
 
static int cinepak_encode_frame(AVCodecContext *avctx, AVPacket *pkt, const AVFrame *frame, int *got_packet)
 
static void write_strip_header(CinepakEncContext *s, int y, int h, int keyframe, unsigned char *buf, int strip_size)
 
int strip_number_delta_range
 
enum AVPixelFormat pix_fmt
Pixel format, see AV_PIX_FMT_xxx. 
 
static void get_sub_picture(CinepakEncContext *s, int x, int y, uint8_t *in_data[4], int in_linesize[4], uint8_t *out_data[4], int out_linesize[4])
 
int v1_codebook[CODEBOOK_MAX *VECTOR_MAX]
 
const char * class_name
The name of the class; usually it is the same name as the context structure type to which the AVClass...
 
#define av_assert0(cond)
assert() equivalent, that is always enabled. 
 
static int compute_mb_distortion(CinepakEncContext *s, uint8_t *a_data[4], int a_linesize[4], uint8_t *b_data[4], int b_linesize[4])
 
AVFrame * av_frame_alloc(void)
Allocate an AVFrame and set its fields to default values. 
 
#define CHUNK_HEADER_SIZE
 
static int rd_strip(CinepakEncContext *s, int y, int h, int keyframe, uint8_t *last_data[4], int last_linesize[4], uint8_t *data[4], int linesize[4], uint8_t *scratch_data[4], int scratch_linesize[4], unsigned char *buf, int64_t *best_score)
 
int avpriv_do_elbg(int *points, int dim, int numpoints, int *codebook, int numCB, int max_steps, int *closest_cb, AVLFG *rand_state)
Implementation of the Enhanced LBG Algorithm Based on the paper "Neural Networks 14:1219-1237" that c...
 
#define SMALLEST_CODEBOOK
 
int v4_codebook[CODEBOOK_MAX *VECTOR_MAX]
 
static const AVOption options[]
 
#define AV_PKT_FLAG_KEY
The packet contains a keyframe. 
 
#define AV_LOG_ERROR
Something went wrong and cannot losslessly be recovered. 
 
unsigned char * frame_buf
 
static void copy_mb(CinepakEncContext *s, uint8_t *a_data[4], int a_linesize[4], uint8_t *b_data[4], int b_linesize[4])
 
void av_frame_free(AVFrame **frame)
Free the frame and any dynamically allocated objects in it, e.g. 
 
#define NULL_IF_CONFIG_SMALL(x)
Return NULL if CONFIG_SMALL is true, otherwise the argument without modification. ...
 
simple assert() macros that are a bit more flexible than ISO C assert(). 
 
const char * name
Name of the codec implementation. 
 
static void decode_v1_vector(CinepakEncContext *s, uint8_t *data[4], int linesize[4], int v1_vector, strip_info *info)
 
int flags
A combination of AV_PKT_FLAG values. 
 
static av_cold int cinepak_encode_init(AVCodecContext *avctx)
 
int width
picture width / height. 
 
static int write_chunk_header(unsigned char *buf, int chunk_type, int chunk_size)
 
static void decode_v4_vector(CinepakEncContext *s, uint8_t *data[4], int linesize[4], int *v4_vector, strip_info *info)
 
int quality
quality (between 1 (good) and FF_LAMBDA_MAX (bad)) 
 
#define AV_LOG_INFO
Standard information. 
 
mb_encoding best_encoding
 
int avpriv_init_elbg(int *points, int dim, int numpoints, int *codebook, int numCB, int max_steps, int *closest_cb, AVLFG *rand_state)
Initialize the **codebook vector for the elbg algorithm. 
 
Libavcodec external API header. 
 
int linesize[AV_NUM_DATA_POINTERS]
For video, size in bytes of each picture line. 
 
main external API structure. 
 
AVCodec ff_cinepak_encoder
 
Describe the class of an AVClass context structure. 
 
#define STRIP_HEADER_SIZE
 
av_cold void av_lfg_init(AVLFG *c, unsigned int seed)
 
static int encode_codebook(CinepakEncContext *s, int *codebook, int size, int chunk_type_yuv, int chunk_type_gray, unsigned char *buf)
 
int ff_alloc_packet2(AVCodecContext *avctx, AVPacket *avpkt, int64_t size, int64_t min_size)
Check AVPacket size and/or allocate data. 
 
static int encode_mode(CinepakEncContext *s, int h, uint8_t *scratch_data[4], int scratch_linesize[4], uint8_t *last_data[4], int last_linesize[4], strip_info *info, unsigned char *buf)
 
static const AVClass cinepak_class
 
static enum AVPixelFormat pix_fmts[]
 
uint8_t * data[AV_NUM_DATA_POINTERS]
pointer to the picture/channel planes. 
 
int max_extra_cb_iterations
 
common internal api header. 
 
static int quantize(CinepakEncContext *s, int h, uint8_t *data[4], int linesize[4], int v1mode, strip_info *info, mb_encoding encoding)
 
unsigned char * strip_buf
 
unsigned char * pict_bufs[4]
 
static int rd_frame(CinepakEncContext *s, const AVFrame *frame, int isakeyframe, unsigned char *buf, int buf_size)
 
static int64_t calculate_mode_score(CinepakEncContext *s, int h, strip_info *info, int report, int *training_set_v1_shrunk, int *training_set_v4_shrunk)
 
#define av_malloc_array(a, b)
 
#define FFSWAP(type, a, b)
 
AVPixelFormat
Pixel format. 
 
This structure stores compressed data. 
 
enum AVPixelFormat pix_fmt
 
static av_cold int cinepak_encode_end(AVCodecContext *avctx)
 
static int write_cvid_header(CinepakEncContext *s, unsigned char *buf, int num_strips, int data_size, int isakeyframe)
 
int keyint_min
minimum GOP size