mirror of
https://github.com/FFmpeg/FFmpeg.git
synced 2024-12-23 12:43:46 +02:00
lavfi/opencl: add nlmeans_opencl filter
Reviewed-by: Mark Thompson <sw@jkqxz.net> Signed-off-by: Ruiling Song <ruiling.song@intel.com>
This commit is contained in:
parent
023ea5e360
commit
1d74150a7d
1
configure
vendored
1
configure
vendored
@ -3470,6 +3470,7 @@ mpdecimate_filter_select="pixelutils"
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minterpolate_filter_select="scene_sad"
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minterpolate_filter_select="scene_sad"
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mptestsrc_filter_deps="gpl"
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mptestsrc_filter_deps="gpl"
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negate_filter_deps="lut_filter"
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negate_filter_deps="lut_filter"
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nlmeans_opencl_filter_deps="opencl"
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nnedi_filter_deps="gpl"
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nnedi_filter_deps="gpl"
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ocr_filter_deps="libtesseract"
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ocr_filter_deps="libtesseract"
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ocv_filter_deps="libopencv"
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ocv_filter_deps="libopencv"
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@ -19350,6 +19350,10 @@ Make every semi-green pixel in the input transparent with some slight blending:
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@end example
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@end example
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@end itemize
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@end itemize
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@section nlmeans_opencl
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Non-local Means denoise filter through OpenCL, this filter accepts same options as @ref{nlmeans}.
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@section overlay_opencl
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@section overlay_opencl
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Overlay one video on top of another.
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Overlay one video on top of another.
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@ -297,6 +297,7 @@ OBJS-$(CONFIG_MIX_FILTER) += vf_mix.o
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OBJS-$(CONFIG_MPDECIMATE_FILTER) += vf_mpdecimate.o
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OBJS-$(CONFIG_MPDECIMATE_FILTER) += vf_mpdecimate.o
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OBJS-$(CONFIG_NEGATE_FILTER) += vf_lut.o
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OBJS-$(CONFIG_NEGATE_FILTER) += vf_lut.o
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OBJS-$(CONFIG_NLMEANS_FILTER) += vf_nlmeans.o
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OBJS-$(CONFIG_NLMEANS_FILTER) += vf_nlmeans.o
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OBJS-$(CONFIG_NLMEANS_OPENCL_FILTER) += vf_nlmeans_opencl.o opencl.o opencl/nlmeans.o
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OBJS-$(CONFIG_NNEDI_FILTER) += vf_nnedi.o
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OBJS-$(CONFIG_NNEDI_FILTER) += vf_nnedi.o
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OBJS-$(CONFIG_NOFORMAT_FILTER) += vf_format.o
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OBJS-$(CONFIG_NOFORMAT_FILTER) += vf_format.o
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OBJS-$(CONFIG_NOISE_FILTER) += vf_noise.o
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OBJS-$(CONFIG_NOISE_FILTER) += vf_noise.o
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@ -282,6 +282,7 @@ extern AVFilter ff_vf_mix;
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extern AVFilter ff_vf_mpdecimate;
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extern AVFilter ff_vf_mpdecimate;
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extern AVFilter ff_vf_negate;
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extern AVFilter ff_vf_negate;
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extern AVFilter ff_vf_nlmeans;
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extern AVFilter ff_vf_nlmeans;
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extern AVFilter ff_vf_nlmeans_opencl;
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extern AVFilter ff_vf_nnedi;
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extern AVFilter ff_vf_nnedi;
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extern AVFilter ff_vf_noformat;
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extern AVFilter ff_vf_noformat;
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extern AVFilter ff_vf_noise;
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extern AVFilter ff_vf_noise;
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115
libavfilter/opencl/nlmeans.cl
Normal file
115
libavfilter/opencl/nlmeans.cl
Normal file
@ -0,0 +1,115 @@
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/*
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* This file is part of FFmpeg.
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*
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* FFmpeg is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* FFmpeg is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with FFmpeg; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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const sampler_t sampler = (CLK_NORMALIZED_COORDS_FALSE |
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CLK_ADDRESS_CLAMP_TO_EDGE |
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CLK_FILTER_NEAREST);
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kernel void horiz_sum(__global uint4 *integral_img,
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__read_only image2d_t src,
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int width,
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int height,
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int4 dx,
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int4 dy)
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{
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int y = get_global_id(0);
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int work_size = get_global_size(0);
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uint4 sum = (uint4)(0);
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float4 s2;
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for (int i = 0; i < width; i++) {
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float s1 = read_imagef(src, sampler, (int2)(i, y)).x;
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s2.x = read_imagef(src, sampler, (int2)(i + dx.x, y + dy.x)).x;
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s2.y = read_imagef(src, sampler, (int2)(i + dx.y, y + dy.y)).x;
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s2.z = read_imagef(src, sampler, (int2)(i + dx.z, y + dy.z)).x;
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s2.w = read_imagef(src, sampler, (int2)(i + dx.w, y + dy.w)).x;
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sum += convert_uint4((s1 - s2) * (s1 - s2) * 255 * 255);
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integral_img[y * width + i] = sum;
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}
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}
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kernel void vert_sum(__global uint4 *integral_img,
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__global int *overflow,
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int width,
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int height)
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{
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int x = get_global_id(0);
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uint4 sum = 0;
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for (int i = 0; i < height; i++) {
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if (any((uint4)UINT_MAX - integral_img[i * width + x] < sum))
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atomic_inc(overflow);
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integral_img[i * width + x] += sum;
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sum = integral_img[i * width + x];
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}
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}
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kernel void weight_accum(global float *sum, global float *weight,
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global uint4 *integral_img, __read_only image2d_t src,
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int width, int height, int p, float h,
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int4 dx, int4 dy)
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{
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// w(x) = integral_img(x-p, y-p) +
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// integral_img(x+p, y+p) -
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// integral_img(x+p, y-p) -
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// integral_img(x-p, y+p)
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// total_sum[x] += w(x, y) * src(x + dx, y + dy)
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// total_weight += w(x, y)
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int x = get_global_id(0);
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int y = get_global_id(1);
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int4 xoff = x + dx;
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int4 yoff = y + dy;
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uint4 a = 0, b = 0, c = 0, d = 0;
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uint4 src_pix = 0;
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// out-of-bounding-box?
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int oobb = (x - p) < 0 || (y - p) < 0 || (y + p) >= height || (x + p) >= width;
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src_pix.x = (int)(255 * read_imagef(src, sampler, (int2)(xoff.x, yoff.x)).x);
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src_pix.y = (int)(255 * read_imagef(src, sampler, (int2)(xoff.y, yoff.y)).x);
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src_pix.z = (int)(255 * read_imagef(src, sampler, (int2)(xoff.z, yoff.z)).x);
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src_pix.w = (int)(255 * read_imagef(src, sampler, (int2)(xoff.w, yoff.w)).x);
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if (!oobb) {
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a = integral_img[(y - p) * width + x - p];
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b = integral_img[(y + p) * width + x - p];
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c = integral_img[(y - p) * width + x + p];
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d = integral_img[(y + p) * width + x + p];
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}
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float4 patch_diff = convert_float4(d + a - c - b);
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float4 w = native_exp(-patch_diff / (h * h));
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float w_sum = w.x + w.y + w.z + w.w;
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weight[y * width + x] += w_sum;
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sum[y * width + x] += dot(w, convert_float4(src_pix));
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}
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kernel void average(__write_only image2d_t dst,
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__read_only image2d_t src,
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global float *sum, global float *weight) {
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int x = get_global_id(0);
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int y = get_global_id(1);
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int2 dim = get_image_dim(dst);
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float w = weight[y * dim.x + x];
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float s = sum[y * dim.x + x];
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float src_pix = read_imagef(src, sampler, (int2)(x, y)).x;
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float r = (s + src_pix * 255) / (1.0f + w) / 255.0f;
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if (x < dim.x && y < dim.y)
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write_imagef(dst, (int2)(x, y), (float4)(r, 0.0f, 0.0f, 1.0f));
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}
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@ -24,6 +24,7 @@ extern const char *ff_opencl_source_colorkey;
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extern const char *ff_opencl_source_colorspace_common;
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extern const char *ff_opencl_source_colorspace_common;
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extern const char *ff_opencl_source_convolution;
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extern const char *ff_opencl_source_convolution;
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extern const char *ff_opencl_source_neighbor;
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extern const char *ff_opencl_source_neighbor;
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extern const char *ff_opencl_source_nlmeans;
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extern const char *ff_opencl_source_overlay;
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extern const char *ff_opencl_source_overlay;
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extern const char *ff_opencl_source_tonemap;
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extern const char *ff_opencl_source_tonemap;
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extern const char *ff_opencl_source_transpose;
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extern const char *ff_opencl_source_transpose;
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@ -30,7 +30,7 @@
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#include "libavutil/version.h"
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#include "libavutil/version.h"
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#define LIBAVFILTER_VERSION_MAJOR 7
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#define LIBAVFILTER_VERSION_MAJOR 7
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#define LIBAVFILTER_VERSION_MINOR 53
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#define LIBAVFILTER_VERSION_MINOR 54
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#define LIBAVFILTER_VERSION_MICRO 101
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#define LIBAVFILTER_VERSION_MICRO 101
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#define LIBAVFILTER_VERSION_INT AV_VERSION_INT(LIBAVFILTER_VERSION_MAJOR, \
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#define LIBAVFILTER_VERSION_INT AV_VERSION_INT(LIBAVFILTER_VERSION_MAJOR, \
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443
libavfilter/vf_nlmeans_opencl.c
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443
libavfilter/vf_nlmeans_opencl.c
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@ -0,0 +1,443 @@
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/*
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* This file is part of FFmpeg.
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*
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* FFmpeg is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* FFmpeg is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with FFmpeg; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#include <float.h>
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#include "libavutil/avassert.h"
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#include "libavutil/common.h"
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#include "libavutil/imgutils.h"
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#include "libavutil/mem.h"
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#include "libavutil/opt.h"
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#include "libavutil/pixdesc.h"
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#include "avfilter.h"
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#include "internal.h"
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#include "opencl.h"
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#include "opencl_source.h"
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#include "video.h"
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// TODO:
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// the integral image may overflow 32bit, consider using 64bit
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static const enum AVPixelFormat supported_formats[] = {
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AV_PIX_FMT_YUV420P,
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AV_PIX_FMT_YUV444P,
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AV_PIX_FMT_GBRP,
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};
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static int is_format_supported(enum AVPixelFormat fmt)
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{
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int i;
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for (i = 0; i < FF_ARRAY_ELEMS(supported_formats); i++)
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if (supported_formats[i] == fmt)
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return 1;
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return 0;
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}
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typedef struct NLMeansOpenCLContext {
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OpenCLFilterContext ocf;
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int initialised;
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cl_kernel vert_kernel;
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cl_kernel horiz_kernel;
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cl_kernel accum_kernel;
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cl_kernel average_kernel;
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cl_mem integral_img;
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cl_mem weight;
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cl_mem sum;
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cl_mem overflow; // overflow in integral image?
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double sigma;
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float h;
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int chroma_w;
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int chroma_h;
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int patch_size;
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int patch_size_uv;
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int research_size;
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int research_size_uv;
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cl_command_queue command_queue;
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} NLMeansOpenCLContext;
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static int nlmeans_opencl_init(AVFilterContext *avctx, int width, int height)
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{
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NLMeansOpenCLContext *ctx = avctx->priv;
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cl_int cle;
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int err;
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int weight_buf_size = width * height * sizeof(float);
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ctx->h = ctx->sigma * 10;
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if (!(ctx->research_size & 1)) {
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ctx->research_size |= 1;
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av_log(avctx, AV_LOG_WARNING,
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"research_size should be odd, set to %d",
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ctx->research_size);
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}
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if (!(ctx->patch_size & 1)) {
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ctx->patch_size |= 1;
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av_log(avctx, AV_LOG_WARNING,
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"patch_size should be odd, set to %d",
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ctx->patch_size);
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}
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if (!ctx->research_size_uv)
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ctx->research_size_uv = ctx->research_size;
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if (!ctx->patch_size_uv)
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ctx->patch_size_uv = ctx->patch_size;
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err = ff_opencl_filter_load_program(avctx, &ff_opencl_source_nlmeans, 1);
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if (err < 0)
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goto fail;
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ctx->command_queue = clCreateCommandQueue(ctx->ocf.hwctx->context,
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ctx->ocf.hwctx->device_id,
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0, &cle);
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CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to create OpenCL "
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"command queue %d.\n", cle);
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ctx->vert_kernel = clCreateKernel(ctx->ocf.program,
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"vert_sum", &cle);
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CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to create "
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"vert_sum kernel %d.\n", cle);
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ctx->horiz_kernel = clCreateKernel(ctx->ocf.program,
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"horiz_sum", &cle);
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CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to create "
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"horiz_sum kernel %d.\n", cle);
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ctx->accum_kernel = clCreateKernel(ctx->ocf.program,
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"weight_accum", &cle);
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CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to create "
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"accum kernel %d.\n", cle);
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ctx->average_kernel = clCreateKernel(ctx->ocf.program,
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"average", &cle);
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CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to create "
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"average kernel %d.\n", cle);
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ctx->integral_img = clCreateBuffer(ctx->ocf.hwctx->context, 0,
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4 * width * height * sizeof(cl_int),
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NULL, &cle);
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CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to create "
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"integral image %d.\n", cle);
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ctx->weight = clCreateBuffer(ctx->ocf.hwctx->context, 0,
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weight_buf_size, NULL, &cle);
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CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to create "
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"weight buffer %d.\n", cle);
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ctx->sum = clCreateBuffer(ctx->ocf.hwctx->context, 0,
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weight_buf_size, NULL, &cle);
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CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to create "
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"sum buffer %d.\n", cle);
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ctx->overflow = clCreateBuffer(ctx->ocf.hwctx->context, 0,
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sizeof(cl_int), NULL, &cle);
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CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to create "
|
||||||
|
"overflow buffer %d.\n", cle);
|
||||||
|
|
||||||
|
ctx->initialised = 1;
|
||||||
|
return 0;
|
||||||
|
|
||||||
|
fail:
|
||||||
|
CL_RELEASE_KERNEL(ctx->vert_kernel);
|
||||||
|
CL_RELEASE_KERNEL(ctx->horiz_kernel);
|
||||||
|
CL_RELEASE_KERNEL(ctx->accum_kernel);
|
||||||
|
CL_RELEASE_KERNEL(ctx->average_kernel);
|
||||||
|
|
||||||
|
CL_RELEASE_MEMORY(ctx->integral_img);
|
||||||
|
CL_RELEASE_MEMORY(ctx->weight);
|
||||||
|
CL_RELEASE_MEMORY(ctx->sum);
|
||||||
|
CL_RELEASE_MEMORY(ctx->overflow);
|
||||||
|
|
||||||
|
CL_RELEASE_QUEUE(ctx->command_queue);
|
||||||
|
return err;
|
||||||
|
}
|
||||||
|
|
||||||
|
static int nlmeans_plane(AVFilterContext *avctx, cl_mem dst, cl_mem src,
|
||||||
|
cl_int width, cl_int height, cl_int p, cl_int r)
|
||||||
|
{
|
||||||
|
NLMeansOpenCLContext *ctx = avctx->priv;
|
||||||
|
const float zero = 0.0f;
|
||||||
|
const size_t worksize1[] = {height};
|
||||||
|
const size_t worksize2[] = {width};
|
||||||
|
const size_t worksize3[2] = {width, height};
|
||||||
|
int i, dx, dy, err = 0, weight_buf_size;
|
||||||
|
cl_int cle;
|
||||||
|
int nb_pixel, *tmp = NULL, idx = 0;
|
||||||
|
cl_int *dxdy = NULL;
|
||||||
|
|
||||||
|
weight_buf_size = width * height * sizeof(float);
|
||||||
|
cle = clEnqueueFillBuffer(ctx->command_queue, ctx->weight,
|
||||||
|
&zero, sizeof(float), 0, weight_buf_size,
|
||||||
|
0, NULL, NULL);
|
||||||
|
CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to fill weight buffer: %d.\n",
|
||||||
|
cle);
|
||||||
|
cle = clEnqueueFillBuffer(ctx->command_queue, ctx->sum,
|
||||||
|
&zero, sizeof(float), 0, weight_buf_size,
|
||||||
|
0, NULL, NULL);
|
||||||
|
CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to fill sum buffer: %d.\n",
|
||||||
|
cle);
|
||||||
|
|
||||||
|
nb_pixel = (2 * r + 1) * (2 * r + 1) - 1;
|
||||||
|
dxdy = av_malloc(nb_pixel * 2 * sizeof(cl_int));
|
||||||
|
tmp = av_malloc(nb_pixel * 2 * sizeof(int));
|
||||||
|
|
||||||
|
if (!dxdy || !tmp)
|
||||||
|
goto fail;
|
||||||
|
|
||||||
|
for (dx = -r; dx <= r; dx++) {
|
||||||
|
for (dy = -r; dy <= r; dy++) {
|
||||||
|
if (dx || dy) {
|
||||||
|
tmp[idx++] = dx;
|
||||||
|
tmp[idx++] = dy;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
}
|
||||||
|
// repack dx/dy seperately, as we want to do four pairs of dx/dy in a batch
|
||||||
|
for (i = 0; i < nb_pixel / 4; i++) {
|
||||||
|
dxdy[i * 8] = tmp[i * 8]; // dx0
|
||||||
|
dxdy[i * 8 + 1] = tmp[i * 8 + 2]; // dx1
|
||||||
|
dxdy[i * 8 + 2] = tmp[i * 8 + 4]; // dx2
|
||||||
|
dxdy[i * 8 + 3] = tmp[i * 8 + 6]; // dx3
|
||||||
|
dxdy[i * 8 + 4] = tmp[i * 8 + 1]; // dy0
|
||||||
|
dxdy[i * 8 + 5] = tmp[i * 8 + 3]; // dy1
|
||||||
|
dxdy[i * 8 + 6] = tmp[i * 8 + 5]; // dy2
|
||||||
|
dxdy[i * 8 + 7] = tmp[i * 8 + 7]; // dy3
|
||||||
|
}
|
||||||
|
av_freep(&tmp);
|
||||||
|
|
||||||
|
for (i = 0; i < nb_pixel / 4; i++) {
|
||||||
|
cl_int *dx_cur = dxdy + 8 * i;
|
||||||
|
cl_int *dy_cur = dxdy + 8 * i + 4;
|
||||||
|
|
||||||
|
// horizontal pass
|
||||||
|
// integral(x,y) = sum([u(v,y) - u(v+dx,y+dy)]^2) for v in [0, x]
|
||||||
|
CL_SET_KERNEL_ARG(ctx->horiz_kernel, 0, cl_mem, &ctx->integral_img);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->horiz_kernel, 1, cl_mem, &src);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->horiz_kernel, 2, cl_int, &width);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->horiz_kernel, 3, cl_int, &height);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->horiz_kernel, 4, cl_int4, dx_cur);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->horiz_kernel, 5, cl_int4, dy_cur);
|
||||||
|
cle = clEnqueueNDRangeKernel(ctx->command_queue, ctx->horiz_kernel, 1,
|
||||||
|
NULL, worksize1, NULL, 0, NULL, NULL);
|
||||||
|
CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to enqueue horiz_kernel: %d.\n",
|
||||||
|
cle);
|
||||||
|
// vertical pass
|
||||||
|
// integral(x, y) = sum(integral(x, v)) for v in [0, y]
|
||||||
|
CL_SET_KERNEL_ARG(ctx->vert_kernel, 0, cl_mem, &ctx->integral_img);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->vert_kernel, 1, cl_mem, &ctx->overflow);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->vert_kernel, 2, cl_int, &width);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->vert_kernel, 3, cl_int, &height);
|
||||||
|
cle = clEnqueueNDRangeKernel(ctx->command_queue, ctx->vert_kernel,
|
||||||
|
1, NULL, worksize2, NULL, 0, NULL, NULL);
|
||||||
|
CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to enqueue vert_kernel: %d.\n",
|
||||||
|
cle);
|
||||||
|
|
||||||
|
// accumulate weights
|
||||||
|
CL_SET_KERNEL_ARG(ctx->accum_kernel, 0, cl_mem, &ctx->sum);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->accum_kernel, 1, cl_mem, &ctx->weight);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->accum_kernel, 2, cl_mem, &ctx->integral_img);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->accum_kernel, 3, cl_mem, &src);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->accum_kernel, 4, cl_int, &width);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->accum_kernel, 5, cl_int, &height);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->accum_kernel, 6, cl_int, &p);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->accum_kernel, 7, cl_float, &ctx->h);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->accum_kernel, 8, cl_int4, dx_cur);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->accum_kernel, 9, cl_int4, dy_cur);
|
||||||
|
cle = clEnqueueNDRangeKernel(ctx->command_queue, ctx->accum_kernel,
|
||||||
|
2, NULL, worksize3, NULL, 0, NULL, NULL);
|
||||||
|
CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to enqueue kernel: %d.\n", cle);
|
||||||
|
}
|
||||||
|
av_freep(&dxdy);
|
||||||
|
|
||||||
|
// average
|
||||||
|
CL_SET_KERNEL_ARG(ctx->average_kernel, 0, cl_mem, &dst);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->average_kernel, 1, cl_mem, &src);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->average_kernel, 2, cl_mem, &ctx->sum);
|
||||||
|
CL_SET_KERNEL_ARG(ctx->average_kernel, 3, cl_mem, &ctx->weight);
|
||||||
|
cle = clEnqueueNDRangeKernel(ctx->command_queue, ctx->average_kernel, 2,
|
||||||
|
NULL, worksize3, NULL, 0, NULL, NULL);
|
||||||
|
CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to enqueue average kernel: %d.\n",
|
||||||
|
cle);
|
||||||
|
cle = clFlush(ctx->command_queue);
|
||||||
|
CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to flush command queue: %d.\n", cle);
|
||||||
|
fail:
|
||||||
|
if (tmp)
|
||||||
|
av_freep(&tmp);
|
||||||
|
if (dxdy)
|
||||||
|
av_freep(&dxdy);
|
||||||
|
return err;
|
||||||
|
}
|
||||||
|
|
||||||
|
static int nlmeans_opencl_filter_frame(AVFilterLink *inlink, AVFrame *input)
|
||||||
|
{
|
||||||
|
AVFilterContext *avctx = inlink->dst;
|
||||||
|
AVFilterLink *outlink = avctx->outputs[0];
|
||||||
|
NLMeansOpenCLContext *ctx = avctx->priv;
|
||||||
|
AVFrame *output = NULL;
|
||||||
|
AVHWFramesContext *input_frames_ctx;
|
||||||
|
const AVPixFmtDescriptor *desc;
|
||||||
|
enum AVPixelFormat in_format;
|
||||||
|
cl_mem src, dst;
|
||||||
|
const cl_int zero = 0;
|
||||||
|
int w, h, err, cle, overflow, p, patch, research;
|
||||||
|
|
||||||
|
av_log(ctx, AV_LOG_DEBUG, "Filter input: %s, %ux%u (%"PRId64").\n",
|
||||||
|
av_get_pix_fmt_name(input->format),
|
||||||
|
input->width, input->height, input->pts);
|
||||||
|
|
||||||
|
if (!input->hw_frames_ctx)
|
||||||
|
return AVERROR(EINVAL);
|
||||||
|
input_frames_ctx = (AVHWFramesContext*)input->hw_frames_ctx->data;
|
||||||
|
in_format = input_frames_ctx->sw_format;
|
||||||
|
|
||||||
|
output = ff_get_video_buffer(outlink, outlink->w, outlink->h);
|
||||||
|
if (!output) {
|
||||||
|
err = AVERROR(ENOMEM);
|
||||||
|
goto fail;
|
||||||
|
}
|
||||||
|
|
||||||
|
err = av_frame_copy_props(output, input);
|
||||||
|
if (err < 0)
|
||||||
|
goto fail;
|
||||||
|
|
||||||
|
if (!ctx->initialised) {
|
||||||
|
desc = av_pix_fmt_desc_get(in_format);
|
||||||
|
if (!is_format_supported(in_format)) {
|
||||||
|
err = AVERROR(EINVAL);
|
||||||
|
av_log(avctx, AV_LOG_ERROR, "input format %s not supported\n",
|
||||||
|
av_get_pix_fmt_name(in_format));
|
||||||
|
goto fail;
|
||||||
|
}
|
||||||
|
ctx->chroma_w = AV_CEIL_RSHIFT(inlink->w, desc->log2_chroma_w);
|
||||||
|
ctx->chroma_h = AV_CEIL_RSHIFT(inlink->h, desc->log2_chroma_h);
|
||||||
|
|
||||||
|
err = nlmeans_opencl_init(avctx, inlink->w, inlink->h);
|
||||||
|
if (err < 0)
|
||||||
|
goto fail;
|
||||||
|
}
|
||||||
|
|
||||||
|
cle = clEnqueueWriteBuffer(ctx->command_queue, ctx->overflow, CL_FALSE,
|
||||||
|
0, sizeof(cl_int), &zero, 0, NULL, NULL);
|
||||||
|
CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to initialize overflow"
|
||||||
|
"detection buffer %d.\n", cle);
|
||||||
|
|
||||||
|
for (p = 0; p < FF_ARRAY_ELEMS(output->data); p++) {
|
||||||
|
src = (cl_mem) input->data[p];
|
||||||
|
dst = (cl_mem) output->data[p];
|
||||||
|
|
||||||
|
if (!dst)
|
||||||
|
break;
|
||||||
|
av_assert0(src);
|
||||||
|
w = p ? ctx->chroma_w : inlink->w;
|
||||||
|
h = p ? ctx->chroma_h : inlink->h;
|
||||||
|
patch = (p ? ctx->patch_size_uv : ctx->patch_size) / 2;
|
||||||
|
research = (p ? ctx->research_size_uv : ctx->research_size) / 2;
|
||||||
|
err = nlmeans_plane(avctx, dst, src, w, h, patch, research);
|
||||||
|
if (err < 0)
|
||||||
|
goto fail;
|
||||||
|
}
|
||||||
|
// overflow occurred?
|
||||||
|
cle = clEnqueueReadBuffer(ctx->command_queue, ctx->overflow, CL_FALSE,
|
||||||
|
0, sizeof(cl_int), &overflow, 0, NULL, NULL);
|
||||||
|
CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to read overflow: %d.\n", cle);
|
||||||
|
|
||||||
|
cle = clFinish(ctx->command_queue);
|
||||||
|
CL_FAIL_ON_ERROR(AVERROR(EIO), "Failed to finish kernel: %d.\n", cle);
|
||||||
|
|
||||||
|
if (overflow > 0)
|
||||||
|
av_log(avctx, AV_LOG_ERROR, "integral image overflow %d\n", overflow);
|
||||||
|
|
||||||
|
av_frame_free(&input);
|
||||||
|
|
||||||
|
av_log(ctx, AV_LOG_DEBUG, "Filter output: %s, %ux%u (%"PRId64").\n",
|
||||||
|
av_get_pix_fmt_name(output->format),
|
||||||
|
output->width, output->height, output->pts);
|
||||||
|
|
||||||
|
return ff_filter_frame(outlink, output);
|
||||||
|
|
||||||
|
fail:
|
||||||
|
clFinish(ctx->command_queue);
|
||||||
|
av_frame_free(&input);
|
||||||
|
av_frame_free(&output);
|
||||||
|
return err;
|
||||||
|
}
|
||||||
|
|
||||||
|
static av_cold void nlmeans_opencl_uninit(AVFilterContext *avctx)
|
||||||
|
{
|
||||||
|
NLMeansOpenCLContext *ctx = avctx->priv;
|
||||||
|
cl_int cle;
|
||||||
|
|
||||||
|
CL_RELEASE_KERNEL(ctx->vert_kernel);
|
||||||
|
CL_RELEASE_KERNEL(ctx->horiz_kernel);
|
||||||
|
CL_RELEASE_KERNEL(ctx->accum_kernel);
|
||||||
|
CL_RELEASE_KERNEL(ctx->average_kernel);
|
||||||
|
|
||||||
|
CL_RELEASE_MEMORY(ctx->integral_img);
|
||||||
|
CL_RELEASE_MEMORY(ctx->weight);
|
||||||
|
CL_RELEASE_MEMORY(ctx->sum);
|
||||||
|
CL_RELEASE_MEMORY(ctx->overflow);
|
||||||
|
|
||||||
|
CL_RELEASE_QUEUE(ctx->command_queue);
|
||||||
|
|
||||||
|
ff_opencl_filter_uninit(avctx);
|
||||||
|
}
|
||||||
|
|
||||||
|
#define OFFSET(x) offsetof(NLMeansOpenCLContext, x)
|
||||||
|
#define FLAGS (AV_OPT_FLAG_FILTERING_PARAM | AV_OPT_FLAG_VIDEO_PARAM)
|
||||||
|
static const AVOption nlmeans_opencl_options[] = {
|
||||||
|
{ "s", "denoising strength", OFFSET(sigma), AV_OPT_TYPE_DOUBLE, { .dbl = 1.0 }, 1.0, 30.0, FLAGS },
|
||||||
|
{ "p", "patch size", OFFSET(patch_size), AV_OPT_TYPE_INT, { .i64 = 2*3+1 }, 0, 99, FLAGS },
|
||||||
|
{ "pc", "patch size for chroma planes", OFFSET(patch_size_uv), AV_OPT_TYPE_INT, { .i64 = 0 }, 0, 99, FLAGS },
|
||||||
|
{ "r", "research window", OFFSET(research_size), AV_OPT_TYPE_INT, { .i64 = 7*2+1 }, 0, 99, FLAGS },
|
||||||
|
{ "rc", "research window for chroma planes", OFFSET(research_size_uv), AV_OPT_TYPE_INT, { .i64 = 0 }, 0, 99, FLAGS },
|
||||||
|
{ NULL }
|
||||||
|
};
|
||||||
|
|
||||||
|
AVFILTER_DEFINE_CLASS(nlmeans_opencl);
|
||||||
|
|
||||||
|
static const AVFilterPad nlmeans_opencl_inputs[] = {
|
||||||
|
{
|
||||||
|
.name = "default",
|
||||||
|
.type = AVMEDIA_TYPE_VIDEO,
|
||||||
|
.filter_frame = &nlmeans_opencl_filter_frame,
|
||||||
|
.config_props = &ff_opencl_filter_config_input,
|
||||||
|
},
|
||||||
|
{ NULL }
|
||||||
|
};
|
||||||
|
|
||||||
|
static const AVFilterPad nlmeans_opencl_outputs[] = {
|
||||||
|
{
|
||||||
|
.name = "default",
|
||||||
|
.type = AVMEDIA_TYPE_VIDEO,
|
||||||
|
.config_props = &ff_opencl_filter_config_output,
|
||||||
|
},
|
||||||
|
{ NULL }
|
||||||
|
};
|
||||||
|
|
||||||
|
AVFilter ff_vf_nlmeans_opencl = {
|
||||||
|
.name = "nlmeans_opencl",
|
||||||
|
.description = NULL_IF_CONFIG_SMALL("Non-local means denoiser through OpenCL"),
|
||||||
|
.priv_size = sizeof(NLMeansOpenCLContext),
|
||||||
|
.priv_class = &nlmeans_opencl_class,
|
||||||
|
.init = &ff_opencl_filter_init,
|
||||||
|
.uninit = &nlmeans_opencl_uninit,
|
||||||
|
.query_formats = &ff_opencl_filter_query_formats,
|
||||||
|
.inputs = nlmeans_opencl_inputs,
|
||||||
|
.outputs = nlmeans_opencl_outputs,
|
||||||
|
.flags_internal = FF_FILTER_FLAG_HWFRAME_AWARE,
|
||||||
|
};
|
Loading…
Reference in New Issue
Block a user