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  1. /*
  2. * Copyright (c) 2015 Paul B Mahol
  3. *
  4. * This file is part of FFmpeg.
  5. *
  6. * FFmpeg is free software; you can redistribute it and/or
  7. * modify it under the terms of the GNU Lesser General Public
  8. * License as published by the Free Software Foundation; either
  9. * version 2.1 of the License, or (at your option) any later version.
  10. *
  11. * FFmpeg is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  14. * Lesser General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU Lesser General Public
  17. * License along with FFmpeg; if not, write to the Free Software
  18. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  19. */
  20. /**
  21. * @file
  22. * Adaptive Temporal Averaging Denoiser,
  23. * based on paper "Video Denoising Based on Adaptive Temporal Averaging" by
  24. * David Bartovčak and Miroslav Vrankić
  25. */
  26. #include "libavutil/opt.h"
  27. #include "libavutil/pixdesc.h"
  28. #include "avfilter.h"
  29. #define FF_BUFQUEUE_SIZE 129
  30. #include "bufferqueue.h"
  31. #include "formats.h"
  32. #include "internal.h"
  33. #include "video.h"
  34. #define SIZE FF_BUFQUEUE_SIZE
  35. typedef struct ATADenoiseContext {
  36. const AVClass *class;
  37. float fthra[4], fthrb[4];
  38. int thra[4], thrb[4];
  39. int nb_planes;
  40. int planewidth[4];
  41. int planeheight[4];
  42. struct FFBufQueue q;
  43. void *data[4][SIZE];
  44. int linesize[4][SIZE];
  45. int size, mid;
  46. int available;
  47. int (*filter_slice)(AVFilterContext *ctx, void *arg, int jobnr, int nb_jobs);
  48. } ATADenoiseContext;
  49. #define OFFSET(x) offsetof(ATADenoiseContext, x)
  50. #define FLAGS AV_OPT_FLAG_VIDEO_PARAM|AV_OPT_FLAG_FILTERING_PARAM
  51. static const AVOption atadenoise_options[] = {
  52. { "0a", "set threshold A for 1st plane", OFFSET(fthra[0]), AV_OPT_TYPE_FLOAT, {.dbl=0.02}, 0, 0.3, FLAGS },
  53. { "0b", "set threshold B for 1st plane", OFFSET(fthrb[0]), AV_OPT_TYPE_FLOAT, {.dbl=0.04}, 0, 5.0, FLAGS },
  54. { "1a", "set threshold A for 2nd plane", OFFSET(fthra[1]), AV_OPT_TYPE_FLOAT, {.dbl=0.02}, 0, 0.3, FLAGS },
  55. { "1b", "set threshold B for 2nd plane", OFFSET(fthrb[1]), AV_OPT_TYPE_FLOAT, {.dbl=0.04}, 0, 5.0, FLAGS },
  56. { "2a", "set threshold A for 3rd plane", OFFSET(fthra[2]), AV_OPT_TYPE_FLOAT, {.dbl=0.02}, 0, 0.3, FLAGS },
  57. { "2b", "set threshold B for 3rd plane", OFFSET(fthrb[2]), AV_OPT_TYPE_FLOAT, {.dbl=0.04}, 0, 5.0, FLAGS },
  58. { "s", "set how many frames to use", OFFSET(size), AV_OPT_TYPE_INT, {.i64=9}, 5, SIZE, FLAGS },
  59. { NULL }
  60. };
  61. AVFILTER_DEFINE_CLASS(atadenoise);
  62. static int query_formats(AVFilterContext *ctx)
  63. {
  64. static const enum AVPixelFormat pixel_fmts[] = {
  65. AV_PIX_FMT_GRAY8,
  66. AV_PIX_FMT_GRAY16,
  67. AV_PIX_FMT_YUV410P, AV_PIX_FMT_YUV411P,
  68. AV_PIX_FMT_YUV420P, AV_PIX_FMT_YUV422P,
  69. AV_PIX_FMT_YUV440P, AV_PIX_FMT_YUV444P,
  70. AV_PIX_FMT_YUVJ420P, AV_PIX_FMT_YUVJ422P,
  71. AV_PIX_FMT_YUVJ440P, AV_PIX_FMT_YUVJ444P,
  72. AV_PIX_FMT_YUVJ411P,
  73. AV_PIX_FMT_YUV420P9, AV_PIX_FMT_YUV422P9, AV_PIX_FMT_YUV444P9,
  74. AV_PIX_FMT_YUV420P10, AV_PIX_FMT_YUV422P10, AV_PIX_FMT_YUV444P10,
  75. AV_PIX_FMT_YUV440P10,
  76. AV_PIX_FMT_YUV444P12, AV_PIX_FMT_YUV422P12, AV_PIX_FMT_YUV420P12,
  77. AV_PIX_FMT_YUV440P12,
  78. AV_PIX_FMT_YUV444P14, AV_PIX_FMT_YUV422P14, AV_PIX_FMT_YUV420P14,
  79. AV_PIX_FMT_YUV420P16, AV_PIX_FMT_YUV422P16, AV_PIX_FMT_YUV444P16,
  80. AV_PIX_FMT_GBRP, AV_PIX_FMT_GBRP9, AV_PIX_FMT_GBRP10,
  81. AV_PIX_FMT_GBRP12, AV_PIX_FMT_GBRP14, AV_PIX_FMT_GBRP16,
  82. AV_PIX_FMT_NONE
  83. };
  84. AVFilterFormats *formats = ff_make_format_list(pixel_fmts);
  85. if (!formats)
  86. return AVERROR(ENOMEM);
  87. return ff_set_common_formats(ctx, formats);
  88. }
  89. static av_cold int init(AVFilterContext *ctx)
  90. {
  91. ATADenoiseContext *s = ctx->priv;
  92. if (!(s->size & 1)) {
  93. av_log(ctx, AV_LOG_ERROR, "size %d is invalid. Must be an odd value.\n", s->size);
  94. return AVERROR(EINVAL);
  95. }
  96. s->mid = s->size / 2 + 1;
  97. return 0;
  98. }
  99. typedef struct ThreadData {
  100. AVFrame *in, *out;
  101. } ThreadData;
  102. static int filter_slice8(AVFilterContext *ctx, void *arg, int jobnr, int nb_jobs)
  103. {
  104. ATADenoiseContext *s = ctx->priv;
  105. ThreadData *td = arg;
  106. AVFrame *in = td->in;
  107. AVFrame *out = td->out;
  108. const int size = s->size;
  109. const int mid = s->mid;
  110. int p, x, y, i, j;
  111. for (p = 0; p < s->nb_planes; p++) {
  112. const int h = s->planeheight[p];
  113. const int w = s->planewidth[p];
  114. const int slice_start = (h * jobnr) / nb_jobs;
  115. const int slice_end = (h * (jobnr+1)) / nb_jobs;
  116. const uint8_t *src = in->data[p] + slice_start * in->linesize[p];
  117. uint8_t *dst = out->data[p] + slice_start * out->linesize[p];
  118. const int thra = s->thra[p];
  119. const int thrb = s->thrb[p];
  120. const uint8_t **data = (const uint8_t **)s->data[p];
  121. const int *linesize = (const int *)s->linesize[p];
  122. const uint8_t *srcf[SIZE];
  123. for (i = 0; i < size; i++)
  124. srcf[i] = data[i] + slice_start * linesize[i];
  125. for (y = slice_start; y < slice_end; y++) {
  126. for (x = 0; x < w; x++) {
  127. const int srcx = src[x];
  128. unsigned lsumdiff = 0, rsumdiff = 0;
  129. unsigned ldiff, rdiff;
  130. unsigned sum = srcx;
  131. int l = 0, r = 0;
  132. int srcjx, srcix;
  133. for (j = mid - 1, i = mid + 1; j >= 0 && i < size; j--, i++) {
  134. srcjx = srcf[j][x];
  135. ldiff = FFABS(srcx - srcjx);
  136. lsumdiff += ldiff;
  137. if (ldiff > thra ||
  138. lsumdiff > thrb)
  139. break;
  140. l++;
  141. sum += srcjx;
  142. srcix = srcf[i][x];
  143. rdiff = FFABS(srcx - srcix);
  144. rsumdiff += rdiff;
  145. if (rdiff > thra ||
  146. rsumdiff > thrb)
  147. break;
  148. r++;
  149. sum += srcix;
  150. }
  151. dst[x] = sum / (r + l + 1);
  152. }
  153. dst += out->linesize[p];
  154. src += in->linesize[p];
  155. for (i = 0; i < size; i++)
  156. srcf[i] += linesize[i];
  157. }
  158. }
  159. return 0;
  160. }
  161. static int filter_slice16(AVFilterContext *ctx, void *arg, int jobnr, int nb_jobs)
  162. {
  163. ATADenoiseContext *s = ctx->priv;
  164. ThreadData *td = arg;
  165. AVFrame *in = td->in;
  166. AVFrame *out = td->out;
  167. const int size = s->size;
  168. const int mid = s->mid;
  169. int p, x, y, i, j;
  170. for (p = 0; p < s->nb_planes; p++) {
  171. const int h = s->planeheight[p];
  172. const int w = s->planewidth[p];
  173. const int slice_start = (h * jobnr) / nb_jobs;
  174. const int slice_end = (h * (jobnr+1)) / nb_jobs;
  175. const uint16_t *src = (uint16_t *)(in->data[p] + slice_start * in->linesize[p]);
  176. uint16_t *dst = (uint16_t *)(out->data[p] + slice_start * out->linesize[p]);
  177. const int thra = s->thra[p];
  178. const int thrb = s->thrb[p];
  179. const uint8_t **data = (const uint8_t **)s->data[p];
  180. const int *linesize = (const int *)s->linesize[p];
  181. const uint16_t *srcf[SIZE];
  182. for (i = 0; i < s->size; i++)
  183. srcf[i] = (const uint16_t *)(data[i] + slice_start * linesize[i]);
  184. for (y = slice_start; y < slice_end; y++) {
  185. for (x = 0; x < w; x++) {
  186. const int srcx = src[x];
  187. unsigned lsumdiff = 0, rsumdiff = 0;
  188. unsigned ldiff, rdiff;
  189. unsigned sum = srcx;
  190. int l = 0, r = 0;
  191. int srcjx, srcix;
  192. for (j = mid - 1, i = mid + 1; j >= 0 && i < size; j--, i++) {
  193. srcjx = srcf[j][x];
  194. ldiff = FFABS(srcx - srcjx);
  195. lsumdiff += ldiff;
  196. if (ldiff > thra ||
  197. lsumdiff > thrb)
  198. break;
  199. l++;
  200. sum += srcjx;
  201. srcix = srcf[i][x];
  202. rdiff = FFABS(srcx - srcix);
  203. rsumdiff += rdiff;
  204. if (rdiff > thra ||
  205. rsumdiff > thrb)
  206. break;
  207. r++;
  208. sum += srcix;
  209. }
  210. dst[x] = sum / (r + l + 1);
  211. }
  212. dst += out->linesize[p] / 2;
  213. src += in->linesize[p] / 2;
  214. for (i = 0; i < size; i++)
  215. srcf[i] += linesize[i] / 2;
  216. }
  217. }
  218. return 0;
  219. }
  220. static int config_input(AVFilterLink *inlink)
  221. {
  222. const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(inlink->format);
  223. AVFilterContext *ctx = inlink->dst;
  224. ATADenoiseContext *s = ctx->priv;
  225. int depth;
  226. s->nb_planes = desc->nb_components;
  227. s->planeheight[1] = s->planeheight[2] = AV_CEIL_RSHIFT(inlink->h, desc->log2_chroma_h);
  228. s->planeheight[0] = s->planeheight[3] = inlink->h;
  229. s->planewidth[1] = s->planewidth[2] = AV_CEIL_RSHIFT(inlink->w, desc->log2_chroma_w);
  230. s->planewidth[0] = s->planewidth[3] = inlink->w;
  231. depth = desc->comp[0].depth;
  232. if (depth == 8)
  233. s->filter_slice = filter_slice8;
  234. else
  235. s->filter_slice = filter_slice16;
  236. s->thra[0] = s->fthra[0] * (1 << depth) - 1;
  237. s->thra[1] = s->fthra[1] * (1 << depth) - 1;
  238. s->thra[2] = s->fthra[2] * (1 << depth) - 1;
  239. s->thrb[0] = s->fthrb[0] * (1 << depth) - 1;
  240. s->thrb[1] = s->fthrb[1] * (1 << depth) - 1;
  241. s->thrb[2] = s->fthrb[2] * (1 << depth) - 1;
  242. return 0;
  243. }
  244. static int filter_frame(AVFilterLink *inlink, AVFrame *buf)
  245. {
  246. AVFilterContext *ctx = inlink->dst;
  247. AVFilterLink *outlink = ctx->outputs[0];
  248. ATADenoiseContext *s = ctx->priv;
  249. AVFrame *out, *in;
  250. int i;
  251. if (s->q.available != s->size) {
  252. if (s->q.available < s->mid) {
  253. for (i = 0; i < s->mid; i++) {
  254. out = av_frame_clone(buf);
  255. if (!out) {
  256. av_frame_free(&buf);
  257. return AVERROR(ENOMEM);
  258. }
  259. ff_bufqueue_add(ctx, &s->q, out);
  260. }
  261. }
  262. if (s->q.available < s->size) {
  263. ff_bufqueue_add(ctx, &s->q, buf);
  264. s->available++;
  265. }
  266. return 0;
  267. }
  268. in = ff_bufqueue_peek(&s->q, s->mid);
  269. if (!ctx->is_disabled) {
  270. ThreadData td;
  271. out = ff_get_video_buffer(outlink, outlink->w, outlink->h);
  272. if (!out) {
  273. av_frame_free(&buf);
  274. return AVERROR(ENOMEM);
  275. }
  276. for (i = 0; i < s->size; i++) {
  277. AVFrame *frame = ff_bufqueue_peek(&s->q, i);
  278. s->data[0][i] = frame->data[0];
  279. s->data[1][i] = frame->data[1];
  280. s->data[2][i] = frame->data[2];
  281. s->linesize[0][i] = frame->linesize[0];
  282. s->linesize[1][i] = frame->linesize[1];
  283. s->linesize[2][i] = frame->linesize[2];
  284. }
  285. td.in = in; td.out = out;
  286. ctx->internal->execute(ctx, s->filter_slice, &td, NULL,
  287. FFMIN3(s->planeheight[1],
  288. s->planeheight[2],
  289. ctx->graph->nb_threads));
  290. av_frame_copy_props(out, in);
  291. } else {
  292. out = av_frame_clone(in);
  293. if (!out) {
  294. av_frame_free(&buf);
  295. return AVERROR(ENOMEM);
  296. }
  297. }
  298. in = ff_bufqueue_get(&s->q);
  299. av_frame_free(&in);
  300. ff_bufqueue_add(ctx, &s->q, buf);
  301. return ff_filter_frame(outlink, out);
  302. }
  303. static int request_frame(AVFilterLink *outlink)
  304. {
  305. AVFilterContext *ctx = outlink->src;
  306. ATADenoiseContext *s = ctx->priv;
  307. int ret = 0;
  308. ret = ff_request_frame(ctx->inputs[0]);
  309. if (ret == AVERROR_EOF && !ctx->is_disabled && s->available) {
  310. AVFrame *buf = av_frame_clone(ff_bufqueue_peek(&s->q, s->available));
  311. if (!buf)
  312. return AVERROR(ENOMEM);
  313. ret = filter_frame(ctx->inputs[0], buf);
  314. s->available--;
  315. }
  316. return ret;
  317. }
  318. static av_cold void uninit(AVFilterContext *ctx)
  319. {
  320. ATADenoiseContext *s = ctx->priv;
  321. ff_bufqueue_discard_all(&s->q);
  322. }
  323. static const AVFilterPad inputs[] = {
  324. {
  325. .name = "default",
  326. .type = AVMEDIA_TYPE_VIDEO,
  327. .filter_frame = filter_frame,
  328. .config_props = config_input,
  329. },
  330. { NULL }
  331. };
  332. static const AVFilterPad outputs[] = {
  333. {
  334. .name = "default",
  335. .type = AVMEDIA_TYPE_VIDEO,
  336. .request_frame = request_frame,
  337. },
  338. { NULL }
  339. };
  340. AVFilter ff_vf_atadenoise = {
  341. .name = "atadenoise",
  342. .description = NULL_IF_CONFIG_SMALL("Apply an Adaptive Temporal Averaging Denoiser."),
  343. .priv_size = sizeof(ATADenoiseContext),
  344. .priv_class = &atadenoise_class,
  345. .init = init,
  346. .uninit = uninit,
  347. .query_formats = query_formats,
  348. .inputs = inputs,
  349. .outputs = outputs,
  350. .flags = AVFILTER_FLAG_SUPPORT_TIMELINE_INTERNAL | AVFILTER_FLAG_SLICE_THREADS,
  351. };