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00036 #include <float.h>
00037 
00038 #include "libavutil/common.h"
00039 #include "libavutil/opt.h"
00040 #include "libavutil/imgutils.h"
00041 #include "libavutil/intreadwrite.h"
00042 #include "libavutil/parseutils.h"
00043 #include "avfilter.h"
00044 #include "drawutils.h"
00045 #include "formats.h"
00046 #include "internal.h"
00047 #include "video.h"
00048 
00049 typedef struct {
00050     const AVClass *class;
00051     int w, h;
00052     unsigned int nb_frame;
00053     AVRational time_base, frame_rate;
00054     int64_t pts;
00055     char *frame_rate_str;       
00056     char *duration_str;         
00057     int64_t duration;           
00058     AVRational sar;             
00059     int nb_decimals;
00060     int draw_once;              
00061     AVFilterBufferRef *picref;  
00062 
00063     void (* fill_picture_fn)(AVFilterContext *ctx, AVFilterBufferRef *picref);
00064 
00065     
00066     char *color_str;
00067     FFDrawContext draw;
00068     FFDrawColor color;
00069     uint8_t color_rgba[4];
00070 
00071     
00072     uint8_t rgba_map[4];
00073 } TestSourceContext;
00074 
00075 #define OFFSET(x) offsetof(TestSourceContext, x)
00076 #define FLAGS AV_OPT_FLAG_VIDEO_PARAM|AV_OPT_FLAG_FILTERING_PARAM
00077 
00078 static const AVOption options[] = {
00079     { "size",     "set video size",     OFFSET(w),        AV_OPT_TYPE_IMAGE_SIZE, {.str = "320x240"}, 0, 0, FLAGS },
00080     { "s",        "set video size",     OFFSET(w),        AV_OPT_TYPE_IMAGE_SIZE, {.str = "320x240"}, 0, 0, FLAGS },
00081     { "rate",     "set video rate",     OFFSET(frame_rate_str), AV_OPT_TYPE_STRING, {.str = "25"}, 0, 0, FLAGS },
00082     { "r",        "set video rate",     OFFSET(frame_rate_str), AV_OPT_TYPE_STRING, {.str = "25"}, 0, 0, FLAGS },
00083     { "duration", "set video duration", OFFSET(duration_str), AV_OPT_TYPE_STRING, {.str = NULL},   0, 0, FLAGS },
00084     { "d",        "set video duration", OFFSET(duration_str), AV_OPT_TYPE_STRING, {.str = NULL},   0, 0, FLAGS },
00085     { "sar",      "set video sample aspect ratio", OFFSET(sar), AV_OPT_TYPE_RATIONAL, {.dbl= 1},  0, INT_MAX, FLAGS },
00086 
00087     
00088     { "color", "set color", OFFSET(color_str), AV_OPT_TYPE_STRING, {.str = NULL}, CHAR_MIN, CHAR_MAX, FLAGS },
00089     { "c",     "set color", OFFSET(color_str), AV_OPT_TYPE_STRING, {.str = NULL}, CHAR_MIN, CHAR_MAX, FLAGS },
00090 
00091     
00092     { "decimals", "set number of decimals to show", OFFSET(nb_decimals), AV_OPT_TYPE_INT, {.i64=0},  INT_MIN, INT_MAX, FLAGS },
00093     { "n",        "set number of decimals to show", OFFSET(nb_decimals), AV_OPT_TYPE_INT, {.i64=0},  INT_MIN, INT_MAX, FLAGS },
00094     { NULL },
00095 };
00096 
00097 static av_cold int init(AVFilterContext *ctx, const char *args)
00098 {
00099     TestSourceContext *test = ctx->priv;
00100     int ret = 0;
00101 
00102     av_opt_set_defaults(test);
00103 
00104     if ((ret = (av_set_options_string(test, args, "=", ":"))) < 0)
00105         return ret;
00106 
00107     if ((ret = av_parse_video_rate(&test->frame_rate, test->frame_rate_str)) < 0) {
00108         av_log(ctx, AV_LOG_ERROR, "Invalid frame rate: '%s'\n", test->frame_rate_str);
00109         return ret;
00110     }
00111 
00112     test->duration = -1;
00113     if (test->duration_str &&
00114         (ret = av_parse_time(&test->duration, test->duration_str, 1)) < 0) {
00115         av_log(ctx, AV_LOG_ERROR, "Invalid duration: '%s'\n", test->duration_str);
00116         return ret;
00117     }
00118 
00119     if (test->nb_decimals && strcmp(ctx->filter->name, "testsrc")) {
00120         av_log(ctx, AV_LOG_WARNING,
00121                "Option 'decimals' is ignored with source '%s'\n",
00122                ctx->filter->name);
00123     }
00124 
00125     if (test->color_str) {
00126         if (!strcmp(ctx->filter->name, "color")) {
00127             ret = av_parse_color(test->color_rgba, test->color_str, -1, ctx);
00128             if (ret < 0)
00129                 return ret;
00130         } else {
00131             av_log(ctx, AV_LOG_WARNING,
00132                    "Option 'color' is ignored with source '%s'\n",
00133                    ctx->filter->name);
00134         }
00135     }
00136 
00137     test->time_base = av_inv_q(test->frame_rate);
00138     test->nb_frame = 0;
00139     test->pts = 0;
00140 
00141     av_log(ctx, AV_LOG_VERBOSE, "size:%dx%d rate:%d/%d duration:%f sar:%d/%d\n",
00142            test->w, test->h, test->frame_rate.num, test->frame_rate.den,
00143            test->duration < 0 ? -1 : (double)test->duration/1000000,
00144            test->sar.num, test->sar.den);
00145     return 0;
00146 }
00147 
00148 static av_cold void uninit(AVFilterContext *ctx)
00149 {
00150     TestSourceContext *test = ctx->priv;
00151 
00152     av_opt_free(test);
00153     avfilter_unref_bufferp(&test->picref);
00154 }
00155 
00156 static int config_props(AVFilterLink *outlink)
00157 {
00158     TestSourceContext *test = outlink->src->priv;
00159 
00160     outlink->w = test->w;
00161     outlink->h = test->h;
00162     outlink->sample_aspect_ratio = test->sar;
00163     outlink->frame_rate = test->frame_rate;
00164     outlink->time_base  = test->time_base;
00165 
00166     return 0;
00167 }
00168 
00169 static int request_frame(AVFilterLink *outlink)
00170 {
00171     TestSourceContext *test = outlink->src->priv;
00172     AVFilterBufferRef *outpicref;
00173     int ret = 0;
00174 
00175     if (test->duration >= 0 &&
00176         av_rescale_q(test->pts, test->time_base, AV_TIME_BASE_Q) >= test->duration)
00177         return AVERROR_EOF;
00178 
00179     if (test->draw_once) {
00180         if (!test->picref) {
00181             test->picref =
00182                 ff_get_video_buffer(outlink, AV_PERM_WRITE|AV_PERM_PRESERVE|AV_PERM_REUSE,
00183                                     test->w, test->h);
00184             if (!test->picref)
00185                 return AVERROR(ENOMEM);
00186             test->fill_picture_fn(outlink->src, test->picref);
00187         }
00188         outpicref = avfilter_ref_buffer(test->picref, ~AV_PERM_WRITE);
00189     } else
00190         outpicref = ff_get_video_buffer(outlink, AV_PERM_WRITE, test->w, test->h);
00191 
00192     if (!outpicref)
00193         return AVERROR(ENOMEM);
00194     outpicref->pts = test->pts;
00195     outpicref->pos = -1;
00196     outpicref->video->key_frame = 1;
00197     outpicref->video->interlaced = 0;
00198     outpicref->video->pict_type = AV_PICTURE_TYPE_I;
00199     outpicref->video->sample_aspect_ratio = test->sar;
00200     if (!test->draw_once)
00201         test->fill_picture_fn(outlink->src, outpicref);
00202 
00203     test->pts++;
00204     test->nb_frame++;
00205 
00206     if ((ret = ff_start_frame(outlink, outpicref)) < 0 ||
00207         (ret = ff_draw_slice(outlink, 0, test->h, 1)) < 0 ||
00208         (ret = ff_end_frame(outlink)) < 0)
00209         return ret;
00210 
00211     return 0;
00212 }
00213 
00214 #if CONFIG_COLOR_FILTER
00215 
00216 #define color_options options
00217 AVFILTER_DEFINE_CLASS(color);
00218 
00219 static void color_fill_picture(AVFilterContext *ctx, AVFilterBufferRef *picref)
00220 {
00221     TestSourceContext *test = ctx->priv;
00222     ff_fill_rectangle(&test->draw, &test->color,
00223                       picref->data, picref->linesize,
00224                       0, 0, test->w, test->h);
00225 }
00226 
00227 static av_cold int color_init(AVFilterContext *ctx, const char *args)
00228 {
00229     TestSourceContext *test = ctx->priv;
00230     test->class = &color_class;
00231     test->fill_picture_fn = color_fill_picture;
00232     test->draw_once = 1;
00233     av_opt_set(test, "color", "black", 0);
00234     return init(ctx, args);
00235 }
00236 
00237 static int color_query_formats(AVFilterContext *ctx)
00238 {
00239     ff_set_common_formats(ctx, ff_draw_supported_pixel_formats(0));
00240     return 0;
00241 }
00242 
00243 static int color_config_props(AVFilterLink *inlink)
00244 {
00245     AVFilterContext *ctx = inlink->src;
00246     TestSourceContext *test = ctx->priv;
00247     int ret;
00248 
00249     ff_draw_init(&test->draw, inlink->format, 0);
00250     ff_draw_color(&test->draw, &test->color, test->color_rgba);
00251 
00252     test->w = ff_draw_round_to_sub(&test->draw, 0, -1, test->w);
00253     test->h = ff_draw_round_to_sub(&test->draw, 1, -1, test->h);
00254     if (av_image_check_size(test->w, test->h, 0, ctx) < 0)
00255         return AVERROR(EINVAL);
00256 
00257     if (ret = config_props(inlink) < 0)
00258         return ret;
00259 
00260     av_log(ctx, AV_LOG_VERBOSE, "color:0x%02x%02x%02x%02x\n",
00261            test->color_rgba[0], test->color_rgba[1], test->color_rgba[2], test->color_rgba[3]);
00262     return 0;
00263 }
00264 
00265 AVFilter avfilter_vsrc_color = {
00266     .name        = "color",
00267     .description = NULL_IF_CONFIG_SMALL("Provide an uniformly colored input."),
00268 
00269     .priv_size = sizeof(TestSourceContext),
00270     .init      = color_init,
00271     .uninit    = uninit,
00272 
00273     .query_formats = color_query_formats,
00274 
00275     .inputs = (const AVFilterPad[]) {
00276         { .name = NULL }
00277     },
00278 
00279     .outputs = (const AVFilterPad[]) {
00280         {
00281             .name            = "default",
00282             .type            = AVMEDIA_TYPE_VIDEO,
00283             .request_frame   = request_frame,
00284             .config_props    = color_config_props,
00285         },
00286         { .name = NULL }
00287     },
00288 
00289     .priv_class = &color_class,
00290 };
00291 
00292 #endif 
00293 
00294 #if CONFIG_NULLSRC_FILTER
00295 
00296 #define nullsrc_options options
00297 AVFILTER_DEFINE_CLASS(nullsrc);
00298 
00299 static void nullsrc_fill_picture(AVFilterContext *ctx, AVFilterBufferRef *picref) { }
00300 
00301 static av_cold int nullsrc_init(AVFilterContext *ctx, const char *args)
00302 {
00303     TestSourceContext *test = ctx->priv;
00304 
00305     test->class = &nullsrc_class;
00306     test->fill_picture_fn = nullsrc_fill_picture;
00307     return init(ctx, args);
00308 }
00309 
00310 AVFilter avfilter_vsrc_nullsrc = {
00311     .name        = "nullsrc",
00312     .description = NULL_IF_CONFIG_SMALL("Null video source, return unprocessed video frames."),
00313     .init       = nullsrc_init,
00314     .uninit     = uninit,
00315     .priv_size  = sizeof(TestSourceContext),
00316 
00317     .inputs    = (const AVFilterPad[]) {{ .name = NULL}},
00318     .outputs   = (const AVFilterPad[]) {{ .name = "default",
00319                                     .type = AVMEDIA_TYPE_VIDEO,
00320                                     .request_frame = request_frame,
00321                                     .config_props  = config_props, },
00322                                   { .name = NULL}},
00323     .priv_class = &nullsrc_class,
00324 };
00325 
00326 #endif 
00327 
00328 #if CONFIG_TESTSRC_FILTER
00329 
00330 #define testsrc_options options
00331 AVFILTER_DEFINE_CLASS(testsrc);
00332 
00345 static void draw_rectangle(unsigned val, uint8_t *dst, int dst_linesize, unsigned segment_width,
00346                            unsigned x, unsigned y, unsigned w, unsigned h)
00347 {
00348     int i;
00349     int step = 3;
00350 
00351     dst += segment_width * (step * x + y * dst_linesize);
00352     w *= segment_width * step;
00353     h *= segment_width;
00354     for (i = 0; i < h; i++) {
00355         memset(dst, val, w);
00356         dst += dst_linesize;
00357     }
00358 }
00359 
00360 static void draw_digit(int digit, uint8_t *dst, unsigned dst_linesize,
00361                        unsigned segment_width)
00362 {
00363 #define TOP_HBAR        1
00364 #define MID_HBAR        2
00365 #define BOT_HBAR        4
00366 #define LEFT_TOP_VBAR   8
00367 #define LEFT_BOT_VBAR  16
00368 #define RIGHT_TOP_VBAR 32
00369 #define RIGHT_BOT_VBAR 64
00370     struct {
00371         int x, y, w, h;
00372     } segments[] = {
00373         { 1,  0, 5, 1 }, 
00374         { 1,  6, 5, 1 }, 
00375         { 1, 12, 5, 1 }, 
00376         { 0,  1, 1, 5 }, 
00377         { 0,  7, 1, 5 }, 
00378         { 6,  1, 1, 5 }, 
00379         { 6,  7, 1, 5 }  
00380     };
00381     static const unsigned char masks[10] = {
00382          TOP_HBAR         |BOT_HBAR|LEFT_TOP_VBAR|LEFT_BOT_VBAR|RIGHT_TOP_VBAR|RIGHT_BOT_VBAR,
00383                                                                 RIGHT_TOP_VBAR|RIGHT_BOT_VBAR,
00384          TOP_HBAR|MID_HBAR|BOT_HBAR|LEFT_BOT_VBAR                             |RIGHT_TOP_VBAR,
00385          TOP_HBAR|MID_HBAR|BOT_HBAR                            |RIGHT_TOP_VBAR|RIGHT_BOT_VBAR,
00386                   MID_HBAR         |LEFT_TOP_VBAR              |RIGHT_TOP_VBAR|RIGHT_BOT_VBAR,
00387          TOP_HBAR|BOT_HBAR|MID_HBAR|LEFT_TOP_VBAR                             |RIGHT_BOT_VBAR,
00388          TOP_HBAR|BOT_HBAR|MID_HBAR|LEFT_TOP_VBAR|LEFT_BOT_VBAR               |RIGHT_BOT_VBAR,
00389          TOP_HBAR                                              |RIGHT_TOP_VBAR|RIGHT_BOT_VBAR,
00390          TOP_HBAR|BOT_HBAR|MID_HBAR|LEFT_TOP_VBAR|LEFT_BOT_VBAR|RIGHT_TOP_VBAR|RIGHT_BOT_VBAR,
00391          TOP_HBAR|BOT_HBAR|MID_HBAR|LEFT_TOP_VBAR              |RIGHT_TOP_VBAR|RIGHT_BOT_VBAR,
00392     };
00393     unsigned mask = masks[digit];
00394     int i;
00395 
00396     draw_rectangle(0, dst, dst_linesize, segment_width, 0, 0, 8, 13);
00397     for (i = 0; i < FF_ARRAY_ELEMS(segments); i++)
00398         if (mask & (1<<i))
00399             draw_rectangle(255, dst, dst_linesize, segment_width,
00400                            segments[i].x, segments[i].y, segments[i].w, segments[i].h);
00401 }
00402 
00403 #define GRADIENT_SIZE (6 * 256)
00404 
00405 static void test_fill_picture(AVFilterContext *ctx, AVFilterBufferRef *picref)
00406 {
00407     TestSourceContext *test = ctx->priv;
00408     uint8_t *p, *p0;
00409     int x, y;
00410     int color, color_rest;
00411     int icolor;
00412     int radius;
00413     int quad0, quad;
00414     int dquad_x, dquad_y;
00415     int grad, dgrad, rgrad, drgrad;
00416     int seg_size;
00417     int second;
00418     int i;
00419     uint8_t *data = picref->data[0];
00420     int width  = picref->video->w;
00421     int height = picref->video->h;
00422 
00423     
00424     radius = (width + height) / 4;
00425     quad0 = width * width / 4 + height * height / 4 - radius * radius;
00426     dquad_y = 1 - height;
00427     p0 = data;
00428     for (y = 0; y < height; y++) {
00429         p = p0;
00430         color = 0;
00431         color_rest = 0;
00432         quad = quad0;
00433         dquad_x = 1 - width;
00434         for (x = 0; x < width; x++) {
00435             icolor = color;
00436             if (quad < 0)
00437                 icolor ^= 7;
00438             quad += dquad_x;
00439             dquad_x += 2;
00440             *(p++) = icolor & 1 ? 255 : 0;
00441             *(p++) = icolor & 2 ? 255 : 0;
00442             *(p++) = icolor & 4 ? 255 : 0;
00443             color_rest += 8;
00444             if (color_rest >= width) {
00445                 color_rest -= width;
00446                 color++;
00447             }
00448         }
00449         quad0 += dquad_y;
00450         dquad_y += 2;
00451         p0 += picref->linesize[0];
00452     }
00453 
00454     
00455     p0 = p = data + picref->linesize[0] * height * 3/4;
00456     grad = (256 * test->nb_frame * test->time_base.num / test->time_base.den) %
00457         GRADIENT_SIZE;
00458     rgrad = 0;
00459     dgrad = GRADIENT_SIZE / width;
00460     drgrad = GRADIENT_SIZE % width;
00461     for (x = 0; x < width; x++) {
00462         *(p++) =
00463             grad < 256 || grad >= 5 * 256 ? 255 :
00464             grad >= 2 * 256 && grad < 4 * 256 ? 0 :
00465             grad < 2 * 256 ? 2 * 256 - 1 - grad : grad - 4 * 256;
00466         *(p++) =
00467             grad >= 4 * 256 ? 0 :
00468             grad >= 1 * 256 && grad < 3 * 256 ? 255 :
00469             grad < 1 * 256 ? grad : 4 * 256 - 1 - grad;
00470         *(p++) =
00471             grad < 2 * 256 ? 0 :
00472             grad >= 3 * 256 && grad < 5 * 256 ? 255 :
00473             grad < 3 * 256 ? grad - 2 * 256 : 6 * 256 - 1 - grad;
00474         grad += dgrad;
00475         rgrad += drgrad;
00476         if (rgrad >= GRADIENT_SIZE) {
00477             grad++;
00478             rgrad -= GRADIENT_SIZE;
00479         }
00480         if (grad >= GRADIENT_SIZE)
00481             grad -= GRADIENT_SIZE;
00482     }
00483     p = p0;
00484     for (y = height / 8; y > 0; y--) {
00485         memcpy(p+picref->linesize[0], p, 3 * width);
00486         p += picref->linesize[0];
00487     }
00488 
00489     
00490     seg_size = width / 80;
00491     if (seg_size >= 1 && height >= 13 * seg_size) {
00492         double time = av_q2d(test->time_base) * test->nb_frame *
00493                       pow(10, test->nb_decimals);
00494         if (time > INT_MAX)
00495             return;
00496         second = (int)time;
00497         x = width - (width - seg_size * 64) / 2;
00498         y = (height - seg_size * 13) / 2;
00499         p = data + (x*3 + y * picref->linesize[0]);
00500         for (i = 0; i < 8; i++) {
00501             p -= 3 * 8 * seg_size;
00502             draw_digit(second % 10, p, picref->linesize[0], seg_size);
00503             second /= 10;
00504             if (second == 0)
00505                 break;
00506         }
00507     }
00508 }
00509 
00510 static av_cold int test_init(AVFilterContext *ctx, const char *args)
00511 {
00512     TestSourceContext *test = ctx->priv;
00513 
00514     test->class = &testsrc_class;
00515     test->fill_picture_fn = test_fill_picture;
00516     return init(ctx, args);
00517 }
00518 
00519 static int test_query_formats(AVFilterContext *ctx)
00520 {
00521     static const enum PixelFormat pix_fmts[] = {
00522         PIX_FMT_RGB24, PIX_FMT_NONE
00523     };
00524     ff_set_common_formats(ctx, ff_make_format_list(pix_fmts));
00525     return 0;
00526 }
00527 
00528 AVFilter avfilter_vsrc_testsrc = {
00529     .name      = "testsrc",
00530     .description = NULL_IF_CONFIG_SMALL("Generate test pattern."),
00531     .priv_size = sizeof(TestSourceContext),
00532     .init      = test_init,
00533     .uninit    = uninit,
00534 
00535     .query_formats   = test_query_formats,
00536 
00537     .inputs    = NULL,
00538 
00539     .outputs   = (const AVFilterPad[]) {{ .name = "default",
00540                                           .type = AVMEDIA_TYPE_VIDEO,
00541                                           .request_frame = request_frame,
00542                                           .config_props  = config_props, },
00543                                         { .name = NULL }},
00544     .priv_class = &testsrc_class,
00545 };
00546 
00547 #endif 
00548 
00549 #if CONFIG_RGBTESTSRC_FILTER
00550 
00551 #define rgbtestsrc_options options
00552 AVFILTER_DEFINE_CLASS(rgbtestsrc);
00553 
00554 #define R 0
00555 #define G 1
00556 #define B 2
00557 #define A 3
00558 
00559 static void rgbtest_put_pixel(uint8_t *dst, int dst_linesize,
00560                               int x, int y, int r, int g, int b, enum PixelFormat fmt,
00561                               uint8_t rgba_map[4])
00562 {
00563     int32_t v;
00564     uint8_t *p;
00565 
00566     switch (fmt) {
00567     case PIX_FMT_BGR444: ((uint16_t*)(dst + y*dst_linesize))[x] = ((r >> 4) << 8) | ((g >> 4) << 4) | (b >> 4); break;
00568     case PIX_FMT_RGB444: ((uint16_t*)(dst + y*dst_linesize))[x] = ((b >> 4) << 8) | ((g >> 4) << 4) | (r >> 4); break;
00569     case PIX_FMT_BGR555: ((uint16_t*)(dst + y*dst_linesize))[x] = ((r>>3)<<10) | ((g>>3)<<5) | (b>>3); break;
00570     case PIX_FMT_RGB555: ((uint16_t*)(dst + y*dst_linesize))[x] = ((b>>3)<<10) | ((g>>3)<<5) | (r>>3); break;
00571     case PIX_FMT_BGR565: ((uint16_t*)(dst + y*dst_linesize))[x] = ((r>>3)<<11) | ((g>>2)<<5) | (b>>3); break;
00572     case PIX_FMT_RGB565: ((uint16_t*)(dst + y*dst_linesize))[x] = ((b>>3)<<11) | ((g>>2)<<5) | (r>>3); break;
00573     case PIX_FMT_RGB24:
00574     case PIX_FMT_BGR24:
00575         v = (r << (rgba_map[R]*8)) + (g << (rgba_map[G]*8)) + (b << (rgba_map[B]*8));
00576         p = dst + 3*x + y*dst_linesize;
00577         AV_WL24(p, v);
00578         break;
00579     case PIX_FMT_RGBA:
00580     case PIX_FMT_BGRA:
00581     case PIX_FMT_ARGB:
00582     case PIX_FMT_ABGR:
00583         v = (r << (rgba_map[R]*8)) + (g << (rgba_map[G]*8)) + (b << (rgba_map[B]*8)) + (255 << (rgba_map[A]*8));
00584         p = dst + 4*x + y*dst_linesize;
00585         AV_WL32(p, v);
00586         break;
00587     }
00588 }
00589 
00590 static void rgbtest_fill_picture(AVFilterContext *ctx, AVFilterBufferRef *picref)
00591 {
00592     TestSourceContext *test = ctx->priv;
00593     int x, y, w = picref->video->w, h = picref->video->h;
00594 
00595     for (y = 0; y < h; y++) {
00596          for (x = 0; x < picref->video->w; x++) {
00597              int c = 256*x/w;
00598              int r = 0, g = 0, b = 0;
00599 
00600              if      (3*y < h  ) r = c;
00601              else if (3*y < 2*h) g = c;
00602              else                b = c;
00603 
00604              rgbtest_put_pixel(picref->data[0], picref->linesize[0], x, y, r, g, b,
00605                                ctx->outputs[0]->format, test->rgba_map);
00606          }
00607      }
00608 }
00609 
00610 static av_cold int rgbtest_init(AVFilterContext *ctx, const char *args)
00611 {
00612     TestSourceContext *test = ctx->priv;
00613 
00614     test->draw_once = 1;
00615     test->class = &rgbtestsrc_class;
00616     test->fill_picture_fn = rgbtest_fill_picture;
00617     return init(ctx, args);
00618 }
00619 
00620 static int rgbtest_query_formats(AVFilterContext *ctx)
00621 {
00622     static const enum PixelFormat pix_fmts[] = {
00623         PIX_FMT_RGBA, PIX_FMT_ARGB, PIX_FMT_BGRA, PIX_FMT_ABGR,
00624         PIX_FMT_BGR24, PIX_FMT_RGB24,
00625         PIX_FMT_RGB444, PIX_FMT_BGR444,
00626         PIX_FMT_RGB565, PIX_FMT_BGR565,
00627         PIX_FMT_RGB555, PIX_FMT_BGR555,
00628         PIX_FMT_NONE
00629     };
00630     ff_set_common_formats(ctx, ff_make_format_list(pix_fmts));
00631     return 0;
00632 }
00633 
00634 static int rgbtest_config_props(AVFilterLink *outlink)
00635 {
00636     TestSourceContext *test = outlink->src->priv;
00637 
00638     ff_fill_rgba_map(test->rgba_map, outlink->format);
00639     return config_props(outlink);
00640 }
00641 
00642 AVFilter avfilter_vsrc_rgbtestsrc = {
00643     .name      = "rgbtestsrc",
00644     .description = NULL_IF_CONFIG_SMALL("Generate RGB test pattern."),
00645     .priv_size = sizeof(TestSourceContext),
00646     .init      = rgbtest_init,
00647     .uninit    = uninit,
00648 
00649     .query_formats   = rgbtest_query_formats,
00650 
00651     .inputs    = NULL,
00652 
00653     .outputs   = (const AVFilterPad[]) {{ .name = "default",
00654                                           .type = AVMEDIA_TYPE_VIDEO,
00655                                           .request_frame = request_frame,
00656                                           .config_props  = rgbtest_config_props, },
00657                                         { .name = NULL }},
00658     .priv_class = &rgbtestsrc_class,
00659 };
00660 
00661 #endif 
00662 
00663 #if CONFIG_SMPTEBARS_FILTER
00664 
00665 #define smptebars_options options
00666 AVFILTER_DEFINE_CLASS(smptebars);
00667 
00668 static const uint8_t rainbow[7][4] = {
00669     { 191, 191, 191, 255 },     
00670     { 191, 191,   0, 255 },     
00671     {   0, 191, 191, 255 },     
00672     {   0, 191,   0, 255 },     
00673     { 191,   0, 191, 255 },     
00674     { 191,   0,   0, 255 },     
00675     {   0,   0, 191, 255 },     
00676 };
00677 
00678 static const uint8_t wobnair[7][4] = {
00679     {   0,   0, 191, 255 },     
00680     {  19,  19,  19, 255 },     
00681     { 191,   0, 191, 255 },     
00682     {  19,  19,  19, 255 },     
00683     {   0, 191, 191, 255 },     
00684     {  19,  19,  19, 255 },     
00685     { 191, 191, 191, 255 },     
00686 };
00687 
00688 static const uint8_t white[4] = { 255, 255, 255, 255 };
00689 static const uint8_t black[4] = {  19,  19,  19, 255 }; 
00690 
00691 
00692 static const uint8_t neg4ire[4] = {   9,   9,   9, 255 }; 
00693 static const uint8_t pos4ire[4] = {  29,  29,  29, 255 }; 
00694 
00695 
00696 static const uint8_t i_pixel[4] = {   0,  68, 130, 255 };
00697 static const uint8_t q_pixel[4] = {  67,   0, 130, 255 };
00698 
00699 static void smptebars_fill_picture(AVFilterContext *ctx, AVFilterBufferRef *picref)
00700 {
00701     TestSourceContext *test = ctx->priv;
00702     FFDrawColor color;
00703     int r_w, r_h, w_h, p_w, p_h, i, x = 0;
00704 
00705     r_w = (test->w + 6) / 7;
00706     r_h = test->h * 2 / 3;
00707     w_h = test->h * 3 / 4 - r_h;
00708     p_w = r_w * 5 / 4;
00709     p_h = test->h - w_h - r_h;
00710 
00711 #define DRAW_COLOR(rgba, x, y, w, h)                                    \
00712     ff_draw_color(&test->draw, &color, rgba);                           \
00713     ff_fill_rectangle(&test->draw, &color,                              \
00714                       picref->data, picref->linesize, x, y, w, h)       \
00715 
00716     for (i = 0; i < 7; i++) {
00717         DRAW_COLOR(rainbow[i], x, 0,   FFMIN(r_w, test->w - x), r_h);
00718         DRAW_COLOR(wobnair[i], x, r_h, FFMIN(r_w, test->w - x), w_h);
00719         x += r_w;
00720     }
00721     x = 0;
00722     DRAW_COLOR(i_pixel, x, r_h + w_h, p_w, p_h);
00723     x += p_w;
00724     DRAW_COLOR(white, x, r_h + w_h, p_w, p_h);
00725     x += p_w;
00726     DRAW_COLOR(q_pixel, x, r_h + w_h, p_w, p_h);
00727     x += p_w;
00728     DRAW_COLOR(black, x, r_h + w_h, 5 * r_w - x, p_h);
00729     x += 5 * r_w - x;
00730     DRAW_COLOR(neg4ire, x, r_h + w_h, r_w / 3, p_h);
00731     x += r_w / 3;
00732     DRAW_COLOR(black, x, r_h + w_h, r_w / 3, p_h);
00733     x += r_w / 3;
00734     DRAW_COLOR(pos4ire, x, r_h + w_h, r_w / 3, p_h);
00735     x += r_w / 3;
00736     DRAW_COLOR(black, x, r_h + w_h, test->w - x, p_h);
00737 }
00738 
00739 static av_cold int smptebars_init(AVFilterContext *ctx, const char *args)
00740 {
00741     TestSourceContext *test = ctx->priv;
00742 
00743     test->class = &smptebars_class;
00744     test->fill_picture_fn = smptebars_fill_picture;
00745     test->draw_once = 1;
00746     return init(ctx, args);
00747 }
00748 
00749 static int smptebars_query_formats(AVFilterContext *ctx)
00750 {
00751     ff_set_common_formats(ctx, ff_draw_supported_pixel_formats(0));
00752     return 0;
00753 }
00754 
00755 static int smptebars_config_props(AVFilterLink *outlink)
00756 {
00757     AVFilterContext *ctx = outlink->src;
00758     TestSourceContext *test = ctx->priv;
00759 
00760     ff_draw_init(&test->draw, outlink->format, 0);
00761 
00762     return config_props(outlink);
00763 }
00764 
00765 AVFilter avfilter_vsrc_smptebars = {
00766     .name      = "smptebars",
00767     .description = NULL_IF_CONFIG_SMALL("Generate SMPTE color bars."),
00768     .priv_size = sizeof(TestSourceContext),
00769     .init      = smptebars_init,
00770     .uninit    = uninit,
00771 
00772     .query_formats = smptebars_query_formats,
00773 
00774     .inputs = (const AVFilterPad[]) {
00775         { .name = NULL }
00776     },
00777 
00778     .outputs = (const AVFilterPad[]) {
00779         {
00780             .name = "default",
00781             .type = AVMEDIA_TYPE_VIDEO,
00782             .request_frame = request_frame,
00783             .config_props  = smptebars_config_props,
00784         },
00785         { .name = NULL }
00786     },
00787 
00788     .priv_class = &smptebars_class,
00789 };
00790 
00791 #endif