| @@ -508,14 +508,6 @@ static double predict_size(Predictor *p, double q, double var) | |||||
| return p->coeff*var / (q*p->count); | return p->coeff*var / (q*p->count); | ||||
| } | } | ||||
| /* | |||||
| static double predict_qp(Predictor *p, double size, double var) | |||||
| { | |||||
| //printf("coeff:%f, count:%f, var:%f, size:%f//\n", p->coeff, p->count, var, size); | |||||
| return p->coeff*var / (size*p->count); | |||||
| } | |||||
| */ | |||||
| static void update_predictor(Predictor *p, double q, double var, double size) | static void update_predictor(Predictor *p, double q, double var, double size) | ||||
| { | { | ||||
| double new_coeff= size*q / (var + 1); | double new_coeff= size*q / (var + 1); | ||||
| @@ -555,10 +547,6 @@ static void adaptive_quantization(MpegEncContext *s, double q){ | |||||
| int mb_y = mb_xy / s->mb_stride; | int mb_y = mb_xy / s->mb_stride; | ||||
| int mb_distance; | int mb_distance; | ||||
| float mb_factor = 0.0; | float mb_factor = 0.0; | ||||
| #if 0 | |||||
| if(spat_cplx < q/3) spat_cplx= q/3; //FIXME finetune | |||||
| if(temp_cplx < q/3) temp_cplx= q/3; //FIXME finetune | |||||
| #endif | |||||
| if(spat_cplx < 4) spat_cplx= 4; //FIXME finetune | if(spat_cplx < 4) spat_cplx= 4; //FIXME finetune | ||||
| if(temp_cplx < 4) temp_cplx= 4; //FIXME finetune | if(temp_cplx < 4) temp_cplx= 4; //FIXME finetune | ||||