[FFmpeg-devel] [PATCH 4/4] Make the crop filter accept parametric expressions.
Michael Niedermayer
michaelni
Sun Sep 12 14:23:24 CEST 2010
On Sun, Sep 12, 2010 at 01:51:23AM +0200, Stefano Sabatini wrote:
> On date Saturday 2010-09-11 19:05:46 +0200, Michael Niedermayer encoded:
> > On Sat, Sep 11, 2010 at 11:35:58AM +0200, Stefano Sabatini wrote:
> > > On date Friday 2010-09-10 23:13:45 +0200, Michael Niedermayer encoded:
> > > > On Fri, Sep 10, 2010 at 06:33:36PM +0200, Stefano Sabatini wrote:
> > > > [...]
> > > > > > also i think the values should be cliped into sane integer range and maybe a
> > > > > > NAN check is needed to
> > > > >
> > > > > The clipping is already performed, and NAN check added.
> > > >
> > > > no its not, you dont clip the double before converting to int
> > > > and if iam not mistaken C doesnt gurantee not representable types for that
> > > > not just crashing your program
> > >
> > > Check attached and tell me if you like it.
> > [...]
> > > +# trembling effect
> > > +crop='10+10*sin(n/10):20+20*sin(n/5):w-2*x:h-2*y
> > > +
> > > +# erratic camera effect depending on timestamp
> > > +crop='20+20*sin(3*t):10+10*sin(2*t):w-2*x:h-2*y'
> > > +
> > > +# set x depending on the value of y
> > > +crop='y:10+10*sin(n/10):w-2*x:h-2*y'
> > > + at end example
> >
> > if x and y change per frame but w/h cannot then this looks odd
>
> If you prefer we can use x0/y0 in place of x/y for the w and h
> expressions.
for filters like above this makes as much sense as x/y
what you mean (but dont conciously realize) is the maximum x/y that the
x/y expressions can generate for any input.
sadly we dont know these and its not easy to calculate for a computer
>
> > [...]
> > > static int config_input(AVFilterLink *link)
> > > {
> > > AVFilterContext *ctx = link->dst;
> > > CropContext *crop = ctx->priv;
> > > const AVPixFmtDescriptor *pix_desc = &av_pix_fmt_descriptors[link->format];
> > > + int ret;
> > > + const char *expr;
> > > + double res;
> > > +
> > > + crop->var_values[E ] = M_E;
> > > + crop->var_values[PHI] = M_PHI;
> > > + crop->var_values[PI ] = M_PI;
> > > + crop->var_values[X ] = NAN;
> > > + crop->var_values[Y ] = NAN;
> > > + crop->var_values[W ] = ctx->inputs[0]->w;
> > > + crop->var_values[H ] = ctx->inputs[0]->h;
> > > + crop->var_values[N ] = 0;
> > >
> > > av_image_fill_max_pixsteps(crop->max_step, NULL, pix_desc);
> > > crop->hsub = av_pix_fmt_descriptors[link->format].log2_chroma_w;
> > > crop->vsub = av_pix_fmt_descriptors[link->format].log2_chroma_h;
> > >
> > > - if (crop->w == 0)
> > > - crop->w = link->w - crop->x;
> > > - if (crop->h == 0)
> > > - crop->h = link->h - crop->y;
> > > + if ((ret = av_parse_expr(&crop->x_pexpr, crop->x_expr, var_names,
> > > + NULL, NULL, NULL, NULL, 0, ctx)) < 0 ||
> > > + (ret = av_parse_expr(&crop->y_pexpr, crop->y_expr, var_names,
> > > + NULL, NULL, NULL, NULL, 0, ctx)) < 0)
> > > + return AVERROR(EINVAL);
> > > +
> > > + crop->var_values[X] = av_eval_expr(crop->x_pexpr, crop->var_values, NULL);
> > > + crop->var_values[Y] = av_eval_expr(crop->y_pexpr, crop->var_values, NULL);
> > > + /* evaluate again x as it may depend on y */
> > > + crop->var_values[X] = av_eval_expr(crop->x_pexpr, crop->var_values, NULL);
> > >
> > > + if (normalize_double(&crop->x, crop->var_values[X]) < 0 ||
> > > + normalize_double(&crop->y, crop->var_values[Y]) < 0) {
> > > + av_log(ctx, AV_LOG_ERROR,
> > > + "Too big value or invalid expression for x or y. "
> > > + "Maybe the expression for x:'%s' or for y:'%s' is self-referencing.\n",
> > > + crop->x_expr, crop->y_expr);
> > > + return AVERROR(EINVAL);
> >
> > this could trigger for unknown pos/ts
>
> ???
NAN in (unknown ts/pos), NAN out
>
> > [...]
> > > + /* FIXME: when the TB will be settable */
> > > + crop->var_values[T] = (double)picref->pts / AV_TIME_BASE;
> >
> > AV_NOPTS_VALUE
>
> How do you suggest to deal with that case? One option would be to use
> the last valid values
we could have a filter that fills in missing timestamps by repeating the last
or extrapolating
> (as I'm already doing with x/y).
i was unaware of that
[...]
--
Michael GnuPG fingerprint: 9FF2128B147EF6730BADF133611EC787040B0FAB
Observe your enemies, for they first find out your faults. -- Antisthenes
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