27#include "../tools_common.h"
28#include "../video_writer.h"
30#include "../vpx_ports/bitops.h"
31#include "../vpx_ports/vpx_timer.h"
32#include "./svc_context.h"
36#include "../vpxstats.h"
37#include "./y4minput.h"
39#define OUTPUT_FRAME_STATS 0
40#define OUTPUT_RC_STATS 1
42#define SIMULCAST_MODE 0
44static const arg_def_t outputfile =
45 ARG_DEF(
"o",
"output", 1,
"Output filename");
46static const arg_def_t skip_frames_arg =
47 ARG_DEF(
"s",
"skip-frames", 1,
"input frames to skip");
48static const arg_def_t frames_arg =
49 ARG_DEF(
"f",
"frames", 1,
"number of frames to encode");
50static const arg_def_t threads_arg =
51 ARG_DEF(
"th",
"threads", 1,
"number of threads to use");
53static const arg_def_t output_rc_stats_arg =
54 ARG_DEF(
"rcstat",
"output_rc_stats", 1,
"output rc stats");
56static const arg_def_t width_arg = ARG_DEF(
"w",
"width", 1,
"source width");
57static const arg_def_t height_arg = ARG_DEF(
"h",
"height", 1,
"source height");
58static const arg_def_t timebase_arg =
59 ARG_DEF(
"t",
"timebase", 1,
"timebase (num/den)");
60static const arg_def_t bitrate_arg = ARG_DEF(
61 "b",
"target-bitrate", 1,
"encoding bitrate, in kilobits per second");
62static const arg_def_t spatial_layers_arg =
63 ARG_DEF(
"sl",
"spatial-layers", 1,
"number of spatial SVC layers");
64static const arg_def_t temporal_layers_arg =
65 ARG_DEF(
"tl",
"temporal-layers", 1,
"number of temporal SVC layers");
66static const arg_def_t temporal_layering_mode_arg =
67 ARG_DEF(
"tlm",
"temporal-layering-mode", 1,
68 "temporal layering scheme."
69 "VP9E_TEMPORAL_LAYERING_MODE");
70static const arg_def_t kf_dist_arg =
71 ARG_DEF(
"k",
"kf-dist", 1,
"number of frames between keyframes");
72static const arg_def_t scale_factors_arg =
73 ARG_DEF(
"r",
"scale-factors", 1,
"scale factors (lowest to highest layer)");
74static const arg_def_t min_q_arg =
75 ARG_DEF(NULL,
"min-q", 1,
"Minimum quantizer");
76static const arg_def_t max_q_arg =
77 ARG_DEF(NULL,
"max-q", 1,
"Maximum quantizer");
78static const arg_def_t min_bitrate_arg =
79 ARG_DEF(NULL,
"min-bitrate", 1,
"Minimum bitrate");
80static const arg_def_t max_bitrate_arg =
81 ARG_DEF(NULL,
"max-bitrate", 1,
"Maximum bitrate");
82static const arg_def_t lag_in_frame_arg =
83 ARG_DEF(NULL,
"lag-in-frames", 1,
84 "Number of frame to input before "
85 "generating any outputs");
86static const arg_def_t rc_end_usage_arg =
87 ARG_DEF(NULL,
"rc-end-usage", 1,
"0 - 3: VBR, CBR, CQ, Q");
88static const arg_def_t speed_arg =
89 ARG_DEF(
"sp",
"speed", 1,
"speed configuration");
90static const arg_def_t aqmode_arg =
91 ARG_DEF(
"aq",
"aqmode", 1,
"aq-mode off/on");
92static const arg_def_t bitrates_arg =
93 ARG_DEF(
"bl",
"bitrates", 1,
"bitrates[sl * num_tl + tl]");
94static const arg_def_t dropframe_thresh_arg =
95 ARG_DEF(NULL,
"drop-frame", 1,
"Temporal resampling threshold (buf %)");
96static const arg_def_t psnr_arg =
97 ARG_DEF(NULL,
"psnr", 1,
"Enable PSNR computation and statistics");
98static const struct arg_enum_list tune_content_enum[] = {
99 {
"default", VP9E_CONTENT_DEFAULT },
100 {
"screen", VP9E_CONTENT_SCREEN },
101 {
"film", VP9E_CONTENT_FILM },
105static const arg_def_t tune_content_arg = ARG_DEF_ENUM(
106 NULL,
"tune-content", 1,
"Tune content type", tune_content_enum);
107static const arg_def_t inter_layer_pred_arg = ARG_DEF(
108 NULL,
"inter-layer-pred", 1,
"0 - 3: On, Off, Key-frames, Constrained");
110#if CONFIG_VP9_HIGHBITDEPTH
111static const struct arg_enum_list bitdepth_enum[] = {
115static const arg_def_t bitdepth_arg = ARG_DEF_ENUM(
116 "d",
"bit-depth", 1,
"Bit depth for codec 8, 10 or 12. ", bitdepth_enum);
119static const arg_def_t *svc_args[] = { &frames_arg,
133 &temporal_layers_arg,
134 &temporal_layering_mode_arg,
139 &output_rc_stats_arg,
142#if CONFIG_VP9_HIGHBITDEPTH
148 &dropframe_thresh_arg,
150 &inter_layer_pred_arg,
154static const uint32_t default_frames_to_skip = 0;
155static const uint32_t default_frames_to_code = 60 * 60;
156static const uint32_t default_width = 1920;
157static const uint32_t default_height = 1080;
158static const uint32_t default_timebase_num = 1;
159static const uint32_t default_timebase_den = 60;
160static const uint32_t default_bitrate = 1000;
161static const uint32_t default_spatial_layers = 5;
162static const uint32_t default_temporal_layers = 1;
163static const uint32_t default_kf_dist = 100;
164static const uint32_t default_temporal_layering_mode = 0;
165static const uint32_t default_output_rc_stats = 0;
166static const int32_t default_speed = -1;
167static const uint32_t default_threads = 0;
170 const char *output_filename;
171 uint32_t frames_to_code;
172 uint32_t frames_to_skip;
173 struct VpxInputContext input_ctx;
176 int inter_layer_pred;
179static const char *exec_name;
181void usage_exit(
void) {
182 fprintf(stderr,
"Usage: %s <options> input_filename -o output_filename\n",
184 fprintf(stderr,
"Options:\n");
185 arg_show_usage(stderr, svc_args);
189static void parse_command_line(
int argc,
const char **argv_,
190 AppInput *app_input, SvcContext *svc_ctx,
197 unsigned int min_bitrate = 0;
198 unsigned int max_bitrate = 0;
199 char string_options[1024] = { 0 };
202 svc_ctx->log_level = SVC_LOG_DEBUG;
203 svc_ctx->spatial_layers = default_spatial_layers;
204 svc_ctx->temporal_layers = default_temporal_layers;
205 svc_ctx->temporal_layering_mode = default_temporal_layering_mode;
207 svc_ctx->output_rc_stat = default_output_rc_stats;
209 svc_ctx->speed = default_speed;
210 svc_ctx->threads = default_threads;
211 svc_ctx->use_psnr = 0;
219 enc_cfg->
g_w = default_width;
220 enc_cfg->
g_h = default_height;
229 app_input->frames_to_code = default_frames_to_code;
230 app_input->frames_to_skip = default_frames_to_skip;
233 argv = argv_dup(argc - 1, argv_ + 1);
235 fprintf(stderr,
"Error allocating argument list\n");
238 for (argi = argj = argv; (*argj = *argi); argi += arg.argv_step) {
241 if (arg_match(&arg, &frames_arg, argi)) {
242 app_input->frames_to_code = arg_parse_uint(&arg);
243 }
else if (arg_match(&arg, &outputfile, argi)) {
244 app_input->output_filename = arg.val;
245 }
else if (arg_match(&arg, &width_arg, argi)) {
246 enc_cfg->
g_w = arg_parse_uint(&arg);
247 }
else if (arg_match(&arg, &height_arg, argi)) {
248 enc_cfg->
g_h = arg_parse_uint(&arg);
249 }
else if (arg_match(&arg, &timebase_arg, argi)) {
250 enc_cfg->
g_timebase = arg_parse_rational(&arg);
251 }
else if (arg_match(&arg, &bitrate_arg, argi)) {
253 }
else if (arg_match(&arg, &skip_frames_arg, argi)) {
254 app_input->frames_to_skip = arg_parse_uint(&arg);
255 }
else if (arg_match(&arg, &spatial_layers_arg, argi)) {
256 svc_ctx->spatial_layers = arg_parse_uint(&arg);
257 }
else if (arg_match(&arg, &temporal_layers_arg, argi)) {
258 svc_ctx->temporal_layers = arg_parse_uint(&arg);
260 }
else if (arg_match(&arg, &output_rc_stats_arg, argi)) {
261 svc_ctx->output_rc_stat = arg_parse_uint(&arg);
263 }
else if (arg_match(&arg, &speed_arg, argi)) {
264 svc_ctx->speed = arg_parse_uint(&arg);
265 if (svc_ctx->speed > 9) {
266 warn(
"Mapping speed %d to speed 9.\n", svc_ctx->speed);
268 }
else if (arg_match(&arg, &aqmode_arg, argi)) {
269 svc_ctx->aqmode = arg_parse_uint(&arg);
270 }
else if (arg_match(&arg, &threads_arg, argi)) {
271 svc_ctx->threads = arg_parse_uint(&arg);
272 }
else if (arg_match(&arg, &temporal_layering_mode_arg, argi)) {
275 if (svc_ctx->temporal_layering_mode) {
278 }
else if (arg_match(&arg, &kf_dist_arg, argi)) {
281 }
else if (arg_match(&arg, &scale_factors_arg, argi)) {
282 strncat(string_options,
" scale-factors=",
283 sizeof(string_options) - strlen(string_options) - 1);
284 strncat(string_options, arg.val,
285 sizeof(string_options) - strlen(string_options) - 1);
286 }
else if (arg_match(&arg, &bitrates_arg, argi)) {
287 strncat(string_options,
" bitrates=",
288 sizeof(string_options) - strlen(string_options) - 1);
289 strncat(string_options, arg.val,
290 sizeof(string_options) - strlen(string_options) - 1);
291 }
else if (arg_match(&arg, &min_q_arg, argi)) {
292 strncat(string_options,
" min-quantizers=",
293 sizeof(string_options) - strlen(string_options) - 1);
294 strncat(string_options, arg.val,
295 sizeof(string_options) - strlen(string_options) - 1);
296 }
else if (arg_match(&arg, &max_q_arg, argi)) {
297 strncat(string_options,
" max-quantizers=",
298 sizeof(string_options) - strlen(string_options) - 1);
299 strncat(string_options, arg.val,
300 sizeof(string_options) - strlen(string_options) - 1);
301 }
else if (arg_match(&arg, &min_bitrate_arg, argi)) {
302 min_bitrate = arg_parse_uint(&arg);
303 }
else if (arg_match(&arg, &max_bitrate_arg, argi)) {
304 max_bitrate = arg_parse_uint(&arg);
305 }
else if (arg_match(&arg, &lag_in_frame_arg, argi)) {
307 }
else if (arg_match(&arg, &rc_end_usage_arg, argi)) {
309#if CONFIG_VP9_HIGHBITDEPTH
310 }
else if (arg_match(&arg, &bitdepth_arg, argi)) {
311 enc_cfg->
g_bit_depth = arg_parse_enum_or_int(&arg);
326 die(
"Error: Invalid bit depth selected (%d)\n", enc_cfg->
g_bit_depth);
329 }
else if (arg_match(&arg, &dropframe_thresh_arg, argi)) {
331 }
else if (arg_match(&arg, &tune_content_arg, argi)) {
332 app_input->tune_content = arg_parse_uint(&arg);
333 }
else if (arg_match(&arg, &inter_layer_pred_arg, argi)) {
334 app_input->inter_layer_pred = arg_parse_uint(&arg);
335 }
else if (arg_match(&arg, &psnr_arg, argi)) {
336 svc_ctx->use_psnr = arg_parse_uint(&arg);
343 if (strlen(string_options) > 0)
344 vpx_svc_set_options(svc_ctx, string_options + 1);
349 if (min_bitrate > 0) {
353 if (max_bitrate > 0) {
360 for (argi = argv; *argi; ++argi)
361 if (argi[0][0] ==
'-' && strlen(argi[0]) > 1)
362 die(
"Error: Unrecognized option %s\n", *argi);
364 if (argv[0] == NULL) {
367 app_input->input_ctx.filename = argv[0];
370 open_input_file(&app_input->input_ctx);
371 if (app_input->input_ctx.file_type == FILE_TYPE_Y4M) {
372 enc_cfg->
g_w = app_input->input_ctx.width;
373 enc_cfg->
g_h = app_input->input_ctx.height;
374 enc_cfg->
g_timebase.
den = app_input->input_ctx.framerate.numerator;
375 enc_cfg->
g_timebase.
num = app_input->input_ctx.framerate.denominator;
378 if (enc_cfg->
g_w < 16 || enc_cfg->
g_w % 2 || enc_cfg->
g_h < 16 ||
380 die(
"Invalid resolution: %d x %d\n", enc_cfg->
g_w, enc_cfg->
g_h);
383 "Codec %s\nframes: %d, skip: %d\n"
385 "width %d, height: %d,\n"
386 "num: %d, den: %d, bitrate: %d,\n"
389 app_input->frames_to_skip, svc_ctx->spatial_layers, enc_cfg->
g_w,
396struct RateControlStats {
415 double avg_st_encoding_bitrate;
417 double variance_st_encoding_bitrate;
426static void set_rate_control_stats(
struct RateControlStats *rc,
437 rc->layer_framerate[layer] = framerate;
441 rc->layer_pfb[layer] =
445 (rc->layer_framerate[layer] - rc->layer_framerate[layer - 1]);
448 rc->layer_framerate[layer];
450 rc->layer_input_frames[layer] = 0;
451 rc->layer_enc_frames[layer] = 0;
452 rc->layer_tot_enc_frames[layer] = 0;
453 rc->layer_encoding_bitrate[layer] = 0.0;
454 rc->layer_avg_frame_size[layer] = 0.0;
455 rc->layer_avg_rate_mismatch[layer] = 0.0;
458 rc->window_count = 0;
459 rc->window_size = 15;
460 rc->avg_st_encoding_bitrate = 0.0;
461 rc->variance_st_encoding_bitrate = 0.0;
464static void printout_rate_control_summary(
struct RateControlStats *rc,
468 double perc_fluctuation = 0.0;
469 int tot_num_frames = 0;
470 printf(
"Total number of processed frames: %d\n\n", frame_cnt - 1);
471 printf(
"Rate control layer stats for sl%d tl%d layer(s):\n\n",
477 const int num_dropped =
479 ? (rc->layer_input_frames[layer] - rc->layer_enc_frames[layer])
480 : (rc->layer_input_frames[layer] - rc->layer_enc_frames[layer] -
482 tot_num_frames += rc->layer_input_frames[layer];
483 rc->layer_encoding_bitrate[layer] = 0.001 * rc->layer_framerate[layer] *
484 rc->layer_encoding_bitrate[layer] /
486 rc->layer_avg_frame_size[layer] =
487 rc->layer_avg_frame_size[layer] / rc->layer_enc_frames[layer];
488 rc->layer_avg_rate_mismatch[layer] = 100.0 *
489 rc->layer_avg_rate_mismatch[layer] /
490 rc->layer_enc_frames[layer];
491 printf(
"For layer#: sl%d tl%d \n", sl, tl);
492 printf(
"Bitrate (target vs actual): %d %f.0 kbps\n",
494 rc->layer_encoding_bitrate[layer]);
495 printf(
"Average frame size (target vs actual): %f %f bits\n",
496 rc->layer_pfb[layer], rc->layer_avg_frame_size[layer]);
497 printf(
"Average rate_mismatch: %f\n", rc->layer_avg_rate_mismatch[layer]);
499 "Number of input frames, encoded (non-key) frames, "
500 "and percent dropped frames: %d %d %f.0 \n",
501 rc->layer_input_frames[layer], rc->layer_enc_frames[layer],
502 100.0 * num_dropped / rc->layer_input_frames[layer]);
506 rc->avg_st_encoding_bitrate = rc->avg_st_encoding_bitrate / rc->window_count;
507 rc->variance_st_encoding_bitrate =
508 rc->variance_st_encoding_bitrate / rc->window_count -
509 (rc->avg_st_encoding_bitrate * rc->avg_st_encoding_bitrate);
510 perc_fluctuation = 100.0 * sqrt(rc->variance_st_encoding_bitrate) /
511 rc->avg_st_encoding_bitrate;
512 printf(
"Short-time stats, for window of %d frames: \n", rc->window_size);
513 printf(
"Average, rms-variance, and percent-fluct: %f %f %f \n",
514 rc->avg_st_encoding_bitrate, sqrt(rc->variance_st_encoding_bitrate),
516 printf(
"Num of input, num of encoded (super) frames: %d %d \n", frame_cnt,
521 size_t data_sz, uint64_t sizes[8],
531 marker = *(data + data_sz - 1);
534 if ((marker & 0xe0) == 0xc0) {
535 const uint32_t frames = (marker & 0x7) + 1;
536 const uint32_t mag = ((marker >> 3) & 0x3) + 1;
537 const size_t index_sz = 2 + mag * frames;
544 const uint8_t marker2 = *(data + data_sz - index_sz);
555 const uint8_t *x = &data[data_sz - index_sz + 1];
557 for (i = 0; i < frames; ++i) {
558 uint32_t this_sz = 0;
560 for (j = 0; j < mag; ++j) this_sz |= (*x++) << (j * 8);
574static void set_frame_flags_bypass_mode_ex0(
575 int tl,
int num_spatial_layers,
int is_key_frame,
578 for (sl = 0; sl < num_spatial_layers; ++sl)
581 for (sl = 0; sl < num_spatial_layers; ++sl) {
596 }
else if (tl == 1) {
599 (sl == 0) ? 0 : num_spatial_layers + sl - 1;
600 ref_frame_config->
alt_fb_idx[sl] = num_spatial_layers + sl;
627 }
else if (tl == 1) {
637 if (sl < num_spatial_layers - 1) {
643 }
else if (sl == num_spatial_layers - 1) {
657static void set_frame_flags_bypass_mode_ex1(
658 int tl,
int num_spatial_layers,
int is_key_frame,
661 for (sl = 0; sl < num_spatial_layers; ++sl)
720#if CONFIG_VP9_DECODER && !SIMULCAST_MODE
722 const int frames_out,
int *mismatch_seen) {
725 if (*mismatch_seen)
return;
730 enc_img = ref_enc.img;
732 dec_img = ref_dec.img;
733#if CONFIG_VP9_HIGHBITDEPTH
738 enc_img.
d_w, enc_img.
d_h, 16);
739 vpx_img_truncate_16_to_8(&enc_img, &ref_enc.img);
743 dec_img.
d_w, dec_img.
d_h, 16);
744 vpx_img_truncate_16_to_8(&dec_img, &ref_dec.img);
749 if (!compare_img(&enc_img, &dec_img)) {
750 int y[4], u[4], v[4];
751#if CONFIG_VP9_HIGHBITDEPTH
753 find_mismatch_high(&enc_img, &dec_img, y, u, v);
755 find_mismatch(&enc_img, &dec_img, y, u, v);
758 find_mismatch(&enc_img, &dec_img, y, u, v);
762 "Encode/decode mismatch on frame %d at"
763 " Y[%d, %d] {%d/%d},"
764 " U[%d, %d] {%d/%d},"
765 " V[%d, %d] {%d/%d}\n",
766 frames_out, y[0], y[1], y[2], y[3], u[0], u[1], u[2], u[3], v[0], v[1],
768 *mismatch_seen = frames_out;
777static void svc_output_rc_stats(
780 struct RateControlStats *rc, VpxVideoWriter **outfile,
781 const uint32_t frame_cnt,
const double framerate) {
782 int num_layers_encoded = 0;
785 uint64_t sizes_parsed[8];
787 double sum_bitrate = 0.0;
788 double sum_bitrate2 = 0.0;
789 memset(sizes, 0,
sizeof(sizes));
790 memset(sizes_parsed, 0,
sizeof(sizes_parsed));
793 sizes_parsed, &count);
800 sizes[sl] = sizes_parsed[num_layers_encoded];
801 num_layers_encoded++;
807 uint64_t tot_size = 0;
809 for (sl2 = 0; sl2 < sl; ++sl2) {
812 vpx_video_writer_write_frame(outfile[sl],
816 for (sl2 = 0; sl2 <= sl; ++sl2) {
820 vpx_video_writer_write_frame(outfile[sl], cx_pkt->
data.
frame.
buf,
829 ++rc->layer_tot_enc_frames[layer];
830 rc->layer_encoding_bitrate[layer] += 8.0 * sizes[sl];
835 rc->layer_avg_frame_size[layer] += 8.0 * sizes[sl];
836 rc->layer_avg_rate_mismatch[layer] +=
837 fabs(8.0 * sizes[sl] - rc->layer_pfb[layer]) /
838 rc->layer_pfb[layer];
839 ++rc->layer_enc_frames[layer];
848 if (frame_cnt > (
unsigned int)rc->window_size) {
851 sum_bitrate += 0.001 * 8.0 * sizes[sl] * framerate;
853 if (frame_cnt % rc->window_size == 0) {
854 rc->window_count += 1;
855 rc->avg_st_encoding_bitrate += sum_bitrate / rc->window_size;
856 rc->variance_st_encoding_bitrate +=
857 (sum_bitrate / rc->window_size) * (sum_bitrate / rc->window_size);
862 if (frame_cnt > (
unsigned int)(rc->window_size + rc->window_size / 2)) {
864 sum_bitrate2 += 0.001 * 8.0 * sizes[sl] * framerate;
867 if (frame_cnt > (
unsigned int)(2 * rc->window_size) &&
868 frame_cnt % rc->window_size == 0) {
869 rc->window_count += 1;
870 rc->avg_st_encoding_bitrate += sum_bitrate2 / rc->window_size;
871 rc->variance_st_encoding_bitrate +=
872 (sum_bitrate2 / rc->window_size) * (sum_bitrate2 / rc->window_size);
878int main(
int argc,
const char **argv) {
880 VpxVideoWriter *writer = NULL;
887 uint32_t frame_cnt = 0;
891 int frame_duration = 1;
892 int end_of_stream = 0;
893#if OUTPUT_FRAME_STATS
894 int frames_received = 0;
898 struct RateControlStats rc;
902 double framerate = 30.0;
904 struct vpx_usec_timer timer;
906#if CONFIG_INTERNAL_STATS
907 FILE *f = fopen(
"opsnr.stt",
"a");
909#if CONFIG_VP9_DECODER && !SIMULCAST_MODE
910 int mismatch_seen = 0;
913 memset(&svc_ctx, 0,
sizeof(svc_ctx));
914 memset(&app_input, 0,
sizeof(AppInput));
915 memset(&info, 0,
sizeof(VpxVideoInfo));
917 memset(&rc, 0,
sizeof(
struct RateControlStats));
921 app_input.input_ctx.framerate.numerator = 30;
922 app_input.input_ctx.framerate.denominator = 1;
923 app_input.input_ctx.only_i420 = 1;
924 app_input.input_ctx.bit_depth = 0;
926 parse_command_line(argc, argv, &app_input, &svc_ctx, &enc_cfg);
929 if (app_input.input_ctx.file_type != FILE_TYPE_Y4M) {
931#if CONFIG_VP9_HIGHBITDEPTH
935 enc_cfg.g_w, enc_cfg.g_h, 32)) {
936 die(
"Failed to allocate image %dx%d\n", enc_cfg.
g_w, enc_cfg.
g_h);
940 die(
"Failed to allocate image %dx%d\n", enc_cfg.
g_w, enc_cfg.
g_h);
948 die(
"Failed to initialize encoder\n");
949#if CONFIG_VP9_DECODER && !SIMULCAST_MODE
951 &decoder, get_vpx_decoder_by_name(
"vp9")->codec_interface(), NULL, 0))
952 die(
"Failed to initialize decoder\n");
958 rc.avg_st_encoding_bitrate = 0.0;
959 rc.variance_st_encoding_bitrate = 0.0;
960 if (svc_ctx.output_rc_stat) {
961 set_rate_control_stats(&rc, &enc_cfg);
966 info.codec_fourcc = VP9_FOURCC;
967 info.frame_width = enc_cfg.
g_w;
968 info.frame_height = enc_cfg.
g_h;
973 vpx_video_writer_open(app_input.output_filename, kContainerIVF, &info);
975 die(
"Failed to open %s for writing\n", app_input.output_filename);
980 if (svc_ctx.output_rc_stat) {
982 char file_name[PATH_MAX];
984 snprintf(file_name,
sizeof(file_name),
"%s_s%d.ivf",
985 app_input.output_filename, sl);
986 outfile[sl] = vpx_video_writer_open(file_name, kContainerIVF, &info);
987 if (!outfile[sl]) die(
"Failed to open %s for writing", file_name);
993 for (i = 0; i < app_input.frames_to_skip; ++i)
994 read_frame(&app_input.input_ctx, &raw);
996 if (svc_ctx.speed != -1)
998 if (svc_ctx.threads) {
1000 get_msb(svc_ctx.threads));
1001 if (svc_ctx.threads > 1)
1006 if (svc_ctx.speed >= 5 && svc_ctx.aqmode == 1)
1008 if (svc_ctx.speed >= 5)
1013 app_input.inter_layer_pred);
1023 for (sl = 0; sl < (
unsigned int)svc_ctx.spatial_layers; ++sl)
1029 while (!end_of_stream) {
1037 int example_pattern = 0;
1038 if (frame_cnt >= app_input.frames_to_code ||
1039 !read_frame(&app_input.input_ctx, &raw)) {
1054 if (frame_cnt % 2 == 0) {
1055 layer_id.temporal_layer_id = 0;
1057 layer_id.temporal_layer_id_per_spatial[i] = 0;
1059 layer_id.temporal_layer_id = 1;
1061 layer_id.temporal_layer_id_per_spatial[i] = 1;
1063 if (example_pattern == 1) {
1065 assert(svc_ctx.spatial_layers == 2);
1066 assert(svc_ctx.temporal_layers == 2);
1067 if (frame_cnt % 2 == 0) {
1069 layer_id.temporal_layer_id_per_spatial[0] = 0;
1070 layer_id.temporal_layer_id_per_spatial[1] = 0;
1071 layer_id.spatial_layer_id = 0;
1074 layer_id.temporal_layer_id_per_spatial[1] = 1;
1075 layer_id.spatial_layer_id = 1;
1081 if (example_pattern == 0) {
1082 set_frame_flags_bypass_mode_ex0(layer_id.temporal_layer_id,
1083 svc_ctx.spatial_layers, frame_cnt == 0,
1085 }
else if (example_pattern == 1) {
1086 set_frame_flags_bypass_mode_ex1(layer_id.temporal_layer_id,
1087 svc_ctx.spatial_layers, frame_cnt == 0,
1090 ref_frame_config.
duration[0] = frame_duration * 1;
1091 ref_frame_config.
duration[1] = frame_duration * 1;
1099 layer_id.temporal_layer_id];
1103 unsigned int tl = 0;
1105 tl = (frame_cnt % 2 != 0);
1107 if (frame_cnt % 2 != 0) tl = 2;
1108 if ((frame_cnt > 1) && ((frame_cnt - 2) % 4 == 0)) tl = 1;
1114 vpx_usec_timer_start(&timer);
1115 res = vpx_svc_encode(
1116 &svc_ctx, &encoder, (end_of_stream ? NULL : &raw), pts, frame_duration,
1118 vpx_usec_timer_mark(&timer);
1119 cx_time += vpx_usec_timer_elapsed(&timer);
1123 die_codec(&encoder,
"Failed to encode frame");
1127 switch (cx_pkt->
kind) {
1129 SvcInternal_t *
const si = (SvcInternal_t *)svc_ctx.internal;
1131 vpx_video_writer_write_frame(writer, cx_pkt->
data.
frame.
buf,
1135 if (svc_ctx.output_rc_stat) {
1136 svc_output_rc_stats(&encoder, &enc_cfg, &layer_id, cx_pkt, &rc,
1137 outfile, frame_cnt, framerate);
1141#if OUTPUT_FRAME_STATS
1142 printf(
"SVC frame: %d, kf: %d, size: %d, pts: %d\n", frames_received,
1148 uint64_t sizes[8] = { 0 };
1150 int num_layers_encoded = 0;
1155 si->bytes_sum[sl] += (int)sizes[num_layers_encoded];
1156 num_layers_encoded++;
1162#if CONFIG_VP9_DECODER && !SIMULCAST_MODE
1165 die_codec(&decoder,
"Failed to decode frame.");
1173 !(layer_id.temporal_layer_id > 0 &&
1174 layer_id.temporal_layer_id ==
1176 test_decode(&encoder, &decoder, frame_cnt, &mismatch_seen);
1182 SvcInternal_t *
const si = (SvcInternal_t *)svc_ctx.internal;
1183 sl = cx_pkt->
data.
psnr.spatial_layer_id;
1184 si->number_of_frames[sl]++;
1185 for (
int j = 0; j < 4; ++j) {
1186 si->psnr_sum[sl][j] += cx_pkt->
data.
psnr.psnr[j];
1187 si->sse_sum[sl][j] += cx_pkt->
data.
psnr.sse[j];
1202 if (!end_of_stream) {
1204 pts += frame_duration;
1208 printf(
"Processed %d frames\n", frame_cnt);
1210 close_input_file(&app_input.input_ctx);
1213 if (svc_ctx.output_rc_stat) {
1214 printout_rate_control_summary(&rc, &enc_cfg, frame_cnt);
1219 die_codec(&encoder,
"Failed to destroy codec");
1221 vpx_video_writer_close(writer);
1224 if (svc_ctx.output_rc_stat) {
1226 vpx_video_writer_close(outfile[sl]);
1230#if CONFIG_INTERNAL_STATS
1231 if (mismatch_seen) {
1232 fprintf(f,
"First mismatch occurred in frame %d\n", mismatch_seen);
1234 fprintf(f,
"No mismatch detected in recon buffers\n");
1238 printf(
"Frame cnt and encoding time/FPS stats for encoding: %d %f %f \n",
1239 frame_cnt, 1000 * (
float)cx_time / (
double)(frame_cnt * 1000000),
1240 1000000 * (
double)frame_cnt / (
double)cx_time);
1241 if (app_input.input_ctx.file_type != FILE_TYPE_Y4M) {
1245 vpx_svc_dump_statistics(&svc_ctx);
1246 vpx_svc_release(&svc_ctx);
1247 return EXIT_SUCCESS;
const char * vpx_codec_err_to_string(vpx_codec_err_t err)
Convert error number to printable string.
vpx_codec_err_t vpx_codec_destroy(vpx_codec_ctx_t *ctx)
Destroy a codec instance.
const void * vpx_codec_iter_t
Iterator.
Definition vpx_codec.h:190
const char * vpx_codec_iface_name(vpx_codec_iface_t *iface)
Return the name for a given interface.
#define vpx_codec_control(ctx, id, data)
vpx_codec_control wrapper macro
Definition vpx_codec.h:411
vpx_codec_err_t
Algorithm return codes.
Definition vpx_codec.h:93
@ VPX_CODEC_CORRUPT_FRAME
The coded data for this stream is corrupt or incomplete.
Definition vpx_codec.h:133
@ VPX_CODEC_OK
Operation completed without error.
Definition vpx_codec.h:95
@ VPX_BITS_8
Definition vpx_codec.h:221
@ VPX_BITS_12
Definition vpx_codec.h:223
@ VPX_BITS_10
Definition vpx_codec.h:222
vpx_codec_err_t vpx_codec_decode(vpx_codec_ctx_t *ctx, const uint8_t *data, unsigned int data_sz, void *user_priv, long deadline)
Decode data.
#define vpx_codec_dec_init(ctx, iface, cfg, flags)
Convenience macro for vpx_codec_dec_init_ver()
Definition vpx_decoder.h:143
#define VPX_DL_REALTIME
deadline parameter analogous to VPx REALTIME mode.
Definition vpx_encoder.h:1012
#define VPX_DL_GOOD_QUALITY
deadline parameter analogous to VPx GOOD QUALITY mode.
Definition vpx_encoder.h:1014
const vpx_codec_cx_pkt_t * vpx_codec_get_cx_data(vpx_codec_ctx_t *ctx, vpx_codec_iter_t *iter)
Encoded data iterator.
#define VPX_MAX_LAYERS
Definition vpx_encoder.h:44
#define VPX_FRAME_IS_KEY
Definition vpx_encoder.h:123
#define VPX_SS_MAX_LAYERS
Definition vpx_encoder.h:47
vpx_codec_err_t vpx_codec_enc_config_default(vpx_codec_iface_t *iface, vpx_codec_enc_cfg_t *cfg, unsigned int usage)
Get a default configuration.
@ VPX_CODEC_PSNR_PKT
Definition vpx_encoder.h:158
@ VPX_CODEC_CX_FRAME_PKT
Definition vpx_encoder.h:155
@ VPX_CODEC_STATS_PKT
Definition vpx_encoder.h:156
@ VPX_RC_ONE_PASS
Definition vpx_encoder.h:234
@ VPX_CQ
Definition vpx_encoder.h:243
vpx_codec_iface_t * vpx_codec_vp9_cx(void)
The interface to the VP9 encoder.
@ FULL_SUPERFRAME_DROP
Definition vp8cx.h:941
@ VP9E_SET_SVC_LAYER_ID
Codec control function to set svc layer for spatial and temporal.
Definition vp8cx.h:471
@ VP8E_SET_MAX_INTRA_BITRATE_PCT
Codec control function to set Max data rate for Intra frames.
Definition vp8cx.h:275
@ VP9E_SET_SVC_INTER_LAYER_PRED
Codec control function to constrain the inter-layer prediction (prediction of lower spatial resolutio...
Definition vp8cx.h:625
@ VP9E_SET_AQ_MODE
Codec control function to set adaptive quantization mode.
Definition vp8cx.h:416
@ VP9E_SET_DISABLE_OVERSHOOT_MAXQ_CBR
Codec control function to disable increase Q on overshoot in CBR.
Definition vp8cx.h:700
@ VP9E_SET_TUNE_CONTENT
Codec control function to set content type.
Definition vp8cx.h:481
@ VP9E_SET_ROW_MT
Codec control function to set row level multi-threading.
Definition vp8cx.h:576
@ VP8E_SET_CPUUSED
Codec control function to set encoder internal speed settings.
Definition vp8cx.h:173
@ VP9E_SET_TILE_COLUMNS
Codec control function to set number of tile columns.
Definition vp8cx.h:369
@ VP9E_SET_SVC_FRAME_DROP_LAYER
Codec control function to set mode and thresholds for frame dropping in SVC. Drop frame thresholds ar...
Definition vp8cx.h:634
@ VP9E_SET_SVC_REF_FRAME_CONFIG
Codec control function to set the frame flags and buffer indices for spatial layers....
Definition vp8cx.h:551
@ VP8E_SET_STATIC_THRESHOLD
Codec control function to set the threshold for MBs treated static.
Definition vp8cx.h:206
@ VP9E_SET_DISABLE_LOOPFILTER
Codec control function to disable loopfilter.
Definition vp8cx.h:709
@ VP9E_SET_NOISE_SENSITIVITY
Codec control function to set noise sensitivity.
Definition vp8cx.h:439
@ VP9E_GET_SVC_LAYER_ID
Codec control function to get svc layer ID.
Definition vp8cx.h:489
@ VP9E_TEMPORAL_LAYERING_MODE_BYPASS
Bypass mode. Used when application needs to control temporal layering. This will only work when the n...
Definition vp8cx.h:808
@ VP9_GET_REFERENCE
Definition vp8.h:55
VP9 specific reference frame data struct.
Definition vp8.h:110
int idx
Definition vp8.h:111
Codec context structure.
Definition vpx_codec.h:200
vpx_codec_err_t err
Definition vpx_codec.h:203
Encoder output packet.
Definition vpx_encoder.h:167
int spatial_layer_id
Definition vpx_encoder.h:196
vpx_codec_frame_flags_t flags
Definition vpx_encoder.h:177
vpx_fixed_buf_t twopass_stats
Definition vpx_encoder.h:190
enum vpx_codec_cx_pkt_kind kind
Definition vpx_encoder.h:168
double psnr[4]
Definition vpx_encoder.h:195
struct vpx_codec_cx_pkt::@1::@2 frame
uint8_t spatial_layer_encoded[5]
Flag to indicate if spatial layer frame in this packet is encoded or dropped. VP8 will always be set ...
Definition vpx_encoder.h:188
size_t sz
Definition vpx_encoder.h:172
void * buf
Definition vpx_encoder.h:171
vpx_codec_pts_t pts
time stamp to show frame (in timebase units)
Definition vpx_encoder.h:174
union vpx_codec_cx_pkt::@1 data
Encoder configuration structure.
Definition vpx_encoder.h:279
int temporal_layering_mode
Temporal layering mode indicating which temporal layering scheme to use.
Definition vpx_encoder.h:706
unsigned int kf_min_dist
Keyframe minimum interval.
Definition vpx_encoder.h:618
unsigned int ts_number_layers
Number of temporal coding layers.
Definition vpx_encoder.h:657
unsigned int ss_number_layers
Number of spatial coding layers.
Definition vpx_encoder.h:637
unsigned int rc_2pass_vbr_minsection_pct
Two-pass mode per-GOP minimum bitrate.
Definition vpx_encoder.h:583
unsigned int g_profile
Bitstream profile to use.
Definition vpx_encoder.h:306
unsigned int layer_target_bitrate[12]
Target bitrate for each spatial/temporal layer.
Definition vpx_encoder.h:697
unsigned int g_h
Height of the frame.
Definition vpx_encoder.h:324
vpx_codec_er_flags_t g_error_resilient
Enable error resilient modes.
Definition vpx_encoder.h:362
unsigned int g_w
Width of the frame.
Definition vpx_encoder.h:315
unsigned int rc_dropframe_thresh
Temporal resampling configuration, if supported by the codec.
Definition vpx_encoder.h:402
struct vpx_rational g_timebase
Stream timebase units.
Definition vpx_encoder.h:354
enum vpx_enc_pass g_pass
Multi-pass Encoding Mode.
Definition vpx_encoder.h:369
unsigned int g_lag_in_frames
Allow lagged encoding.
Definition vpx_encoder.h:383
enum vpx_rc_mode rc_end_usage
Rate control algorithm to use.
Definition vpx_encoder.h:451
vpx_bit_depth_t g_bit_depth
Bit-depth of the codec.
Definition vpx_encoder.h:332
unsigned int rc_2pass_vbr_maxsection_pct
Two-pass mode per-GOP maximum bitrate.
Definition vpx_encoder.h:590
unsigned int rc_target_bitrate
Target data rate.
Definition vpx_encoder.h:473
unsigned int g_input_bit_depth
Bit-depth of the input frames.
Definition vpx_encoder.h:340
unsigned int ts_rate_decimator[5]
Frame rate decimation factor for each temporal layer.
Definition vpx_encoder.h:671
unsigned int kf_max_dist
Keyframe maximum interval.
Definition vpx_encoder.h:627
size_t sz
Definition vpx_encoder.h:105
void * buf
Definition vpx_encoder.h:104
Image Descriptor.
Definition vpx_image.h:76
vpx_img_fmt_t fmt
Definition vpx_image.h:77
unsigned int d_h
Definition vpx_image.h:88
unsigned int d_w
Definition vpx_image.h:87
int den
Definition vpx_encoder.h:229
int num
Definition vpx_encoder.h:228
vp9 svc frame dropping parameters.
Definition vp8cx.h:953
int framedrop_thresh[5]
Definition vp8cx.h:954
SVC_LAYER_DROP_MODE framedrop_mode
Definition vp8cx.h:956
int max_consec_drop
Definition vp8cx.h:957
vp9 svc layer parameters
Definition vp8cx.h:902
int temporal_layer_id
Definition vp8cx.h:905
vp9 svc frame flag parameters.
Definition vp8cx.h:917
int lst_fb_idx[5]
Definition vp8cx.h:918
int update_buffer_slot[5]
Definition vp8cx.h:921
int gld_fb_idx[5]
Definition vp8cx.h:919
int reference_last[5]
Definition vp8cx.h:926
int reference_golden[5]
Definition vp8cx.h:927
int reference_alt_ref[5]
Definition vp8cx.h:928
int64_t duration[5]
Definition vp8cx.h:929
int alt_fb_idx[5]
Definition vp8cx.h:920
Provides definitions for using VP8 or VP9 encoder algorithm within the vpx Codec Interface.
Describes the decoder algorithm interface to applications.
Describes the encoder algorithm interface to applications.
vpx_image_t * vpx_img_alloc(vpx_image_t *img, vpx_img_fmt_t fmt, unsigned int d_w, unsigned int d_h, unsigned int align)
Open a descriptor, allocating storage for the underlying image.
#define VPX_IMG_FMT_HIGHBITDEPTH
Definition vpx_image.h:35
@ VPX_IMG_FMT_I42016
Definition vpx_image.h:47
@ VPX_IMG_FMT_I420
Definition vpx_image.h:42
void vpx_img_free(vpx_image_t *img)
Close an image descriptor.