avfilter/vf_framerate: factorize blend functions and unify filter_slice
Signed-off-by: Marton Balint <cus@passwd.hu>
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@ -39,6 +39,14 @@
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#include "internal.h"
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#include "video.h"
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#define BLEND_FUNC_PARAMS const uint8_t *src1, ptrdiff_t src1_linesize, \
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const uint8_t *src2, ptrdiff_t src2_linesize, \
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uint8_t *dst, ptrdiff_t dst_linesize, \
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ptrdiff_t width, ptrdiff_t height, \
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int factor1, int factor2, int half, int shift
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typedef void (*blend_func)(BLEND_FUNC_PARAMS);
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typedef struct FrameRateContext {
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const AVClass *class;
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// parameters
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@ -72,6 +80,8 @@ typedef struct FrameRateContext {
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int flush; ///< 1 if the filter is being flushed
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int64_t start_pts; ///< pts of the first output frame
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int64_t n; ///< output frame counter
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blend_func blend;
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} FrameRateContext;
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#define OFFSET(x) offsetof(FrameRateContext, x)
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@ -173,13 +183,13 @@ typedef struct ThreadData {
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uint16_t src1_factor, src2_factor;
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} ThreadData;
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static int filter_slice8(AVFilterContext *ctx, void *arg, int job, int nb_jobs)
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static int filter_slice(AVFilterContext *ctx, void *arg, int job, int nb_jobs)
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{
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FrameRateContext *s = ctx->priv;
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ThreadData *td = arg;
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uint16_t src1_factor = td->src1_factor;
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uint16_t src2_factor = td->src2_factor;
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int plane, line, pixel;
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int plane;
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for (plane = 0; plane < 4 && td->copy_src1->data[plane] && td->copy_src2->data[plane]; plane++) {
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int cpy_line_width = s->line_size[plane];
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@ -196,54 +206,11 @@ static int filter_slice8(AVFilterContext *ctx, void *arg, int job, int nb_jobs)
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cpy_src2_data += start * cpy_src2_line_size;
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cpy_dst_data += start * cpy_dst_line_size;
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for (line = start; line < end; line++) {
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for (pixel = 0; pixel < cpy_line_width; pixel++) {
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// integer version of (src1 * src1_factor) + (src2 + src2_factor) + 0.5
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// 0.5 is for rounding
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// 128 is the integer representation of 0.5 << 8
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cpy_dst_data[pixel] = ((cpy_src1_data[pixel] * src1_factor) + (cpy_src2_data[pixel] * src2_factor) + 128) >> 8;
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}
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cpy_src1_data += cpy_src1_line_size;
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cpy_src2_data += cpy_src2_line_size;
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cpy_dst_data += cpy_dst_line_size;
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}
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}
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return 0;
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}
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static int filter_slice16(AVFilterContext *ctx, void *arg, int job, int nb_jobs)
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{
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FrameRateContext *s = ctx->priv;
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ThreadData *td = arg;
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uint16_t src1_factor = td->src1_factor;
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uint16_t src2_factor = td->src2_factor;
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const int half = s->max / 2;
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const int shift = s->bitdepth;
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int plane, line, pixel;
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for (plane = 0; plane < 4 && td->copy_src1->data[plane] && td->copy_src2->data[plane]; plane++) {
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int cpy_line_width = s->line_size[plane];
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const uint16_t *cpy_src1_data = (const uint16_t *)td->copy_src1->data[plane];
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int cpy_src1_line_size = td->copy_src1->linesize[plane] / 2;
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const uint16_t *cpy_src2_data = (const uint16_t *)td->copy_src2->data[plane];
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int cpy_src2_line_size = td->copy_src2->linesize[plane] / 2;
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int cpy_src_h = (plane > 0 && plane < 3) ? (td->copy_src1->height >> s->vsub) : (td->copy_src1->height);
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uint16_t *cpy_dst_data = (uint16_t *)s->work->data[plane];
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int cpy_dst_line_size = s->work->linesize[plane] / 2;
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const int start = (cpy_src_h * job ) / nb_jobs;
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const int end = (cpy_src_h * (job+1)) / nb_jobs;
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cpy_src1_data += start * cpy_src1_line_size;
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cpy_src2_data += start * cpy_src2_line_size;
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cpy_dst_data += start * cpy_dst_line_size;
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for (line = start; line < end; line++) {
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for (pixel = 0; pixel < cpy_line_width; pixel++)
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cpy_dst_data[pixel] = ((cpy_src1_data[pixel] * src1_factor) + (cpy_src2_data[pixel] * src2_factor) + half) >> shift;
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cpy_src1_data += cpy_src1_line_size;
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cpy_src2_data += cpy_src2_line_size;
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cpy_dst_data += cpy_dst_line_size;
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}
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s->blend(cpy_src1_data, cpy_src1_line_size,
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cpy_src2_data, cpy_src2_line_size,
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cpy_dst_data, cpy_dst_line_size,
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cpy_line_width, end - start,
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src1_factor, src2_factor, s->max / 2, s->bitdepth);
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}
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return 0;
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@ -278,7 +245,7 @@ static int blend_frames(AVFilterContext *ctx, int interpolate)
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av_frame_copy_props(s->work, s->f0);
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ff_dlog(ctx, "blend_frames() INTERPOLATE to create work frame\n");
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ctx->internal->execute(ctx, s->bitdepth == 8 ? filter_slice8 : filter_slice16, &td, NULL, FFMIN(outlink->h, ff_filter_get_nb_threads(ctx)));
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ctx->internal->execute(ctx, filter_slice, &td, NULL, FFMIN(outlink->h, ff_filter_get_nb_threads(ctx)));
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return 1;
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}
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return 0;
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@ -366,6 +333,41 @@ static int query_formats(AVFilterContext *ctx)
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return ff_set_common_formats(ctx, fmts_list);
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}
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static void blend_frames_c(BLEND_FUNC_PARAMS)
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{
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int line, pixel;
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for (line = 0; line < height; line++) {
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for (pixel = 0; pixel < width; pixel++) {
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// integer version of (src1 * factor1) + (src2 * factor2) + 0.5
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// 0.5 is for rounding
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// 128 is the integer representation of 0.5 << 8
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dst[pixel] = ((src1[pixel] * factor1) + (src2[pixel] * factor2) + 128) >> 8;
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}
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src1 += src1_linesize;
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src2 += src2_linesize;
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dst += dst_linesize;
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}
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}
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static void blend_frames16_c(BLEND_FUNC_PARAMS)
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{
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int line, pixel;
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uint16_t *dstw = (uint16_t *)dst;
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uint16_t *src1w = (uint16_t *)src1;
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uint16_t *src2w = (uint16_t *)src2;
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width /= 2;
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src1_linesize /= 2;
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src2_linesize /= 2;
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dst_linesize /= 2;
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for (line = 0; line < height; line++) {
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for (pixel = 0; pixel < width; pixel++)
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dstw[pixel] = ((src1w[pixel] * factor1) + (src2w[pixel] * factor2) + half) >> shift;
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src1w += src1_linesize;
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src2w += src2_linesize;
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dstw += dst_linesize;
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}
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}
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static int config_input(AVFilterLink *inlink)
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{
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AVFilterContext *ctx = inlink->dst;
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@ -390,6 +392,10 @@ static int config_input(AVFilterLink *inlink)
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s->srce_time_base = inlink->time_base;
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s->max = 1 << (s->bitdepth);
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if (s->bitdepth == 8)
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s->blend = blend_frames_c;
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else
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s->blend = blend_frames16_c;
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return 0;
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}
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