27 #define RC_VARIANCE 1 // use variance or ssd for fast rc 
   37 #define VE AV_OPT_FLAG_VIDEO_PARAM | AV_OPT_FLAG_ENCODING_PARAM 
   38 #define DNX10BIT_QMAT_SHIFT 18 // The largest value that will not lead to overflow for 10bit samples. 
   52 #define LAMBDA_FRAC_BITS 10 
   57     for (i = 0; i < 4; i++) {
 
   58         block[0] = pixels[0]; block[1] = pixels[1];
 
   59         block[2] = pixels[2]; block[3] = pixels[3];
 
   60         block[4] = pixels[4]; block[5] = pixels[5];
 
   61         block[6] = pixels[6]; block[7] = pixels[7];
 
   65     memcpy(block,      block -  8, 
sizeof(*block) * 8);
 
   66     memcpy(block +  8, block - 16, 
sizeof(*block) * 8);
 
   67     memcpy(block + 16, block - 24, 
sizeof(*block) * 8);
 
   68     memcpy(block + 24, block - 32, 
sizeof(*block) * 8);
 
   74     const uint16_t* 
pixels16 = (
const uint16_t*)pixels;
 
   77     for (i = 0; i < 4; i++) {
 
   78         block[0] = pixels16[0]; block[1] = pixels16[1];
 
   79         block[2] = pixels16[2]; block[3] = pixels16[3];
 
   80         block[4] = pixels16[4]; block[5] = pixels16[5];
 
   81         block[6] = pixels16[6]; block[7] = pixels16[7];
 
   82         pixels16 += line_size;
 
   85     memcpy(block,      block -  8, 
sizeof(*block) * 8);
 
   86     memcpy(block +  8, block - 16, 
sizeof(*block) * 8);
 
   87     memcpy(block + 16, block - 24, 
sizeof(*block) * 8);
 
   88     memcpy(block + 24, block - 32, 
sizeof(*block) * 8);
 
   92                                     int n, 
int qscale, 
int *overflow)
 
   96     int last_non_zero = 0;
 
  102     block[0] = (block[0] + 2) >> 2;
 
  104     for (i = 1; i < 64; ++i) {
 
  105         int j = scantable[i];
 
  106         int sign = block[j] >> 31;
 
  107         int level = (block[j] ^ sign) - sign;
 
  109         block[j] = (level ^ sign) - sign;
 
  114     return last_non_zero;
 
  129     for (level = -max_level; level < max_level; level++) {
 
  130         for (run = 0; run < 2; run++) {
 
  131             int index = (level<<1)|run;
 
  136                 offset = (alevel-1)>>6;
 
  139             for (j = 0; j < 257; j++) {
 
  161     for (i = 0; i < 62; i++) {
 
  175     uint16_t weight_matrix[64] = {1,}; 
 
  186         for (i = 1; i < 64; i++) {
 
  192         for (i = 1; i < 64; i++) {
 
  199         for (qscale = 1; qscale <= ctx->
m.
avctx->
qmax; qscale++) {
 
  200             for (i = 0; i < 64; i++) {
 
  208         for (qscale = 1; qscale <= ctx->
m.
avctx->
qmax; qscale++) {
 
  209             for (i = 1; i < 64; i++) {
 
  253     int i, 
index, bit_depth;
 
  354     const uint8_t header_prefix[5] = { 0x00,0x00,0x02,0x80,0x01 };
 
  358     memcpy(buf, header_prefix, 5);
 
  378     ctx->
msip = buf + 0x170;
 
  397     int last_non_zero = 0;
 
  403     for (i = 1; i <= last_index; i++) {
 
  407             int run_level = i - last_non_zero - 1;
 
  408             int rlevel = (slevel<<1)|!!run_level;
 
  426     for (i = 1; i <= last_index; i++) {
 
  431                 level = (1-2*
level) * qscale * weight_matrix[i];
 
  433                     if (weight_matrix[i] != 8)
 
  437                     if (weight_matrix[i] != 32)
 
  443                 level = (2*level+1) * qscale * weight_matrix[i];
 
  445                     if (weight_matrix[i] != 8)
 
  449                     if (weight_matrix[i] != 32)
 
  463     for (i = 0; i < 64; i++)
 
  464         score += (block[i] - qblock[i]) * (block[i] - qblock[i]);
 
  470     int last_non_zero = 0;
 
  473     for (i = 1; i <= last_index; i++) {
 
  477             int run_level = i - last_non_zero - 1;
 
  488     const int bw = 1 << bs;
 
  528     int mb_y = jobnr, mb_x;
 
  531     ctx = ctx->
thread[threadnr];
 
  537     for (mb_x = 0; mb_x < ctx->
m.
mb_width; mb_x++) {
 
  546         for (i = 0; i < 8; i++) {
 
  548             int overflow, nbits, 
diff, last_index;
 
  559             av_assert1(nbits < ctx->cid_table->bit_depth + 4);
 
  579     int mb_y = jobnr, mb_x;
 
  580     ctx = ctx->
thread[threadnr];
 
  586     for (mb_x = 0; mb_x < ctx->
m.
mb_width; mb_x++) {
 
  595         for (i = 0; i < 8; i++) {
 
  598             int last_index = ctx->
m.
dct_quantize(&ctx->
m, block, 4&(2*i), qscale, &overflow);
 
  614     for (mb_y = 0; mb_y < ctx->
m.
mb_height; mb_y++) {
 
  618         for (mb_x = 0; mb_x < ctx->
m.
mb_width; mb_x++) {
 
  625         offset += thread_size;
 
  632     int mb_y = jobnr, mb_x, x, y;
 
  633     int partial_last_row = (mb_y == ctx->
m.
mb_height - 1) &&
 
  636     ctx = ctx->
thread[threadnr];
 
  639         for (mb_x = 0; mb_x < ctx->
m.
mb_width; ++mb_x, pix += 16) {
 
  644             if (!partial_last_row && mb_x * 16 <= avctx->
width - 16) {
 
  651                 for (y = 0; y < bh; y++) {
 
  652                     for (x = 0; x < bw; x++) {
 
  659             varc = (varc - (((unsigned)sum * sum) >> 8) + 128) >> 8;
 
  665         int const linesize = ctx->
m.
linesize >> 1;
 
  666         for (mb_x = 0; mb_x < ctx->
m.
mb_width; ++mb_x) {
 
  667             uint16_t *pix = (uint16_t*)ctx->
thread[0]->
src[0] + ((mb_y << 4) * linesize) + (mb_x << 4);
 
  674             for (i = 0; i < 16; ++i) {
 
  675                 for (j = 0; j < 16; ++j) {
 
  677                     int const sample = (unsigned)pix[j] >> 6;
 
  695     int lambda, up_step, down_step;
 
  696     int last_lower = INT_MAX, last_higher = 0;
 
  699     for (q = 1; q < avctx->
qmax; q++) {
 
  709         if (lambda == last_higher) {
 
  715                 unsigned min = UINT_MAX;
 
  718                 for (q = 1; q < avctx->
qmax; q++) {
 
  730             bits = (bits+31)&~31; 
 
  741         if (bits < ctx->frame_bits) {
 
  742             last_lower = 
FFMIN(lambda, last_lower);
 
  743             if (last_higher != 0)
 
  744                 lambda = (lambda+last_higher)>>1;
 
  747             down_step = 
FFMIN((int64_t)down_step*5, INT_MAX);
 
  749             lambda = 
FFMAX(1, lambda);
 
  750             if (lambda == last_lower)
 
  753             last_higher = 
FFMAX(lambda, last_higher);
 
  754             if (last_lower != INT_MAX)
 
  755                 lambda = (lambda+last_lower)>>1;
 
  756             else if ((int64_t)lambda + up_step > INT_MAX)
 
  760             up_step = 
FFMIN((int64_t)up_step*5, INT_MAX);
 
  775     int last_lower = INT_MAX;
 
  788             bits = (bits+31)&~31; 
 
  794         if (bits < ctx->frame_bits) {
 
  797             if (last_higher == qscale - 1) {
 
  798                 qscale = last_higher;
 
  801             last_lower = 
FFMIN(qscale, last_lower);
 
  802             if (last_higher != 0)
 
  803                 qscale = (qscale+last_higher)>>1;
 
  805                 qscale -= down_step++;
 
  810             if (last_lower == qscale + 1)
 
  812             last_higher = 
FFMAX(qscale, last_higher);
 
  813             if (last_lower != INT_MAX)
 
  814                 qscale = (qscale+last_lower)>>1;
 
  827 #define BUCKET_BITS 8 
  828 #define RADIX_PASSES 4 
  829 #define NBUCKETS (1 << BUCKET_BITS) 
  841     memset(buckets, 0, 
sizeof(buckets[0][0]) * 
RADIX_PASSES * NBUCKETS);
 
  842     for (i = 0; i < 
size; i++) {
 
  843         int v = data[i].
value;
 
  852         for (i = NBUCKETS - 1; i >= 0; i--)
 
  853             buckets[j][i] = offset -= buckets[j][i];
 
  862     for (i = 0; i < 
size; i++) {
 
  864         int pos = buckets[v]++;
 
  924     for (i = 0; i < 3; i++) {
 
  955     for (i = 0; i < 3; i++) {
 
  969                "picture could not fit ratecontrol constraints, increase qmax\n");
 
  993         goto encode_coding_unit;
 
 1050     .priv_class     = &
class,