1 /* GStreamer
2 * Copyright (C) <2017> Sean DuBois <sean@siobud.com>
3 *
4 * This library is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU Library General Public
6 * License as published by the Free Software Foundation; either
7 * version 2 of the License, or (at your option) any later version.
8 *
9 * This library is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
12 * Library General Public License for more details.
13 *
14 * You should have received a copy of the GNU Library General Public
15 * License along with this library; if not, write to the
16 * Free Software Foundation, Inc., 51 Franklin St, Fifth Floor,
17 * Boston, MA 02110-1301, USA.
18 */
19 /**
20 * SECTION:element-av1enc
21 *
22 * AV1 Encoder.
23 *
24 * ## Example launch line
25 *
26 * |[
27 * gst-launch-1.0 videotestsrc num-buffers=50 ! av1enc ! webmmux ! filesink location=av1.webm
28 * ]|
29 */
30
31 #ifdef HAVE_CONFIG_H
32 #include "config.h"
33 #endif
34
35 #include "gstav1enc.h"
36 #include "gstav1utils.h"
37 #include <gst/video/video.h>
38 #include <gst/video/gstvideometa.h>
39 #include <gst/base/base.h>
40
41 #define GST_AV1_ENC_APPLY_CODEC_CONTROL(av1enc, flag, value) \
42 if (av1enc->encoder_inited) { \
43 if (aom_codec_control (&av1enc->encoder, flag, \
44 value) != AOM_CODEC_OK) { \
45 gst_av1_codec_error (&av1enc->encoder, "Failed to set " #flag); \
46 } \
47 }
48
49 GST_DEBUG_CATEGORY_STATIC (av1_enc_debug);
50 #define GST_CAT_DEFAULT av1_enc_debug
51
52 #define GST_TYPE_RESIZE_MODE (gst_resize_mode_get_type())
53 static GType
gst_resize_mode_get_type(void)54 gst_resize_mode_get_type (void)
55 {
56 static GType resize_mode_type = 0;
57 static const GEnumValue resize_mode[] = {
58 {GST_AV1_ENC_RESIZE_NONE, "No frame resizing allowed", "none"},
59 {GST_AV1_ENC_RESIZE_FIXED, "All frames are coded at the specified scale",
60 "fixed"},
61 {GST_AV1_ENC_RESIZE_RANDOM, "All frames are coded at a random scale",
62 "random"},
63 {0, NULL, NULL},
64 };
65
66 if (!resize_mode_type) {
67 resize_mode_type =
68 g_enum_register_static ("GstAV1EncResizeMode", resize_mode);
69 }
70 return resize_mode_type;
71 }
72
73 #define GST_TYPE_SUPERRES_MODE (gst_superres_mode_get_type())
74 static GType
gst_superres_mode_get_type(void)75 gst_superres_mode_get_type (void)
76 {
77 static GType superres_mode_type = 0;
78 static const GEnumValue superres_mode[] = {
79 {GST_AV1_ENC_SUPERRES_NONE, "No frame superres allowed", "none"},
80 {GST_AV1_ENC_SUPERRES_FIXED,
81 "All frames are coded at the specified scale and super-resolved",
82 "fixed"},
83 {GST_AV1_ENC_SUPERRES_RANDOM,
84 "All frames are coded at a random scale and super-resolved",
85 "random"},
86 {GST_AV1_ENC_SUPERRES_QTHRESH,
87 "Superres scale for a frame is determined based on q_index",
88 "qthresh"},
89 {0, NULL, NULL},
90 };
91
92 if (!superres_mode_type) {
93 superres_mode_type =
94 g_enum_register_static ("GstAV1EncSuperresMode", superres_mode);
95 }
96 return superres_mode_type;
97 }
98
99 #define GST_TYPE_END_USAGE_MODE (gst_end_usage_mode_get_type())
100 static GType
gst_end_usage_mode_get_type(void)101 gst_end_usage_mode_get_type (void)
102 {
103 static GType end_usage_mode_type = 0;
104 static const GEnumValue end_usage_mode[] = {
105 {GST_AV1_ENC_END_USAGE_VBR, "Variable Bit Rate Mode", "vbr"},
106 {GST_AV1_ENC_END_USAGE_CBR, "Constant Bit Rate Mode", "cbr"},
107 {GST_AV1_ENC_END_USAGE_CQ, "Constrained Quality Mode", "cq"},
108 {GST_AV1_ENC_END_USAGE_Q, "Constant Quality Mode", "q"},
109 {0, NULL, NULL},
110 };
111
112 if (!end_usage_mode_type) {
113 end_usage_mode_type =
114 g_enum_register_static ("GstAV1EncEndUsageMode", end_usage_mode);
115 }
116 return end_usage_mode_type;
117 }
118
119 enum
120 {
121 LAST_SIGNAL
122 };
123
124 enum
125 {
126 PROP_0,
127 PROP_CPU_USED,
128 PROP_DROP_FRAME,
129 PROP_RESIZE_MODE,
130 PROP_RESIZE_DENOMINATOR,
131 PROP_RESIZE_KF_DENOMINATOR,
132 PROP_SUPERRES_MODE,
133 PROP_SUPERRES_DENOMINATOR,
134 PROP_SUPERRES_KF_DENOMINATOR,
135 PROP_SUPERRES_QTHRESH,
136 PROP_SUPERRES_KF_QTHRESH,
137 PROP_END_USAGE,
138 PROP_TARGET_BITRATE,
139 PROP_MIN_QUANTIZER,
140 PROP_MAX_QUANTIZER,
141 PROP_UNDERSHOOT_PCT,
142 PROP_OVERSHOOT_PCT,
143 PROP_BUF_SZ,
144 PROP_BUF_INITIAL_SZ,
145 PROP_BUF_OPTIMAL_SZ,
146 PROP_THREADS,
147 PROP_ROW_MT,
148 PROP_TILE_COLUMNS,
149 PROP_TILE_ROWS
150 };
151
152 /* From av1/av1_cx_iface.c */
153 #define DEFAULT_PROFILE 0
154 #define DEFAULT_CPU_USED 0
155 #define DEFAULT_DROP_FRAME 0
156 #define DEFAULT_RESIZE_MODE GST_AV1_ENC_RESIZE_NONE
157 #define DEFAULT_RESIZE_DENOMINATOR 8
158 #define DEFAULT_RESIZE_KF_DENOMINATOR 8
159 #define DEFAULT_SUPERRES_MODE GST_AV1_ENC_SUPERRES_NONE
160 #define DEFAULT_SUPERRES_DENOMINATOR 8
161 #define DEFAULT_SUPERRES_KF_DENOMINATOR 8
162 #define DEFAULT_SUPERRES_QTHRESH 63
163 #define DEFAULT_SUPERRES_KF_QTHRESH 63
164 #define DEFAULT_END_USAGE GST_AV1_ENC_END_USAGE_VBR
165 #define DEFAULT_TARGET_BITRATE 256
166 #define DEFAULT_MIN_QUANTIZER 0
167 #define DEFAULT_MAX_QUANTIZER 0
168 #define DEFAULT_UNDERSHOOT_PCT 25
169 #define DEFAULT_OVERSHOOT_PCT 25
170 #define DEFAULT_BUF_SZ 6000
171 #define DEFAULT_BUF_INITIAL_SZ 4000
172 #define DEFAULT_BUF_OPTIMAL_SZ 5000
173 #define DEFAULT_TIMEBASE_N 1
174 #define DEFAULT_TIMEBASE_D 30
175 #define DEFAULT_BIT_DEPTH AOM_BITS_8
176 #define DEFAULT_THREADS 0
177 #define DEFAULT_ROW_MT TRUE
178 #define DEFAULT_TILE_COLUMNS 0
179 #define DEFAULT_TILE_ROWS 0
180
181 static void gst_av1_enc_finalize (GObject * object);
182 static void gst_av1_enc_set_property (GObject * object, guint prop_id,
183 const GValue * value, GParamSpec * pspec);
184 static void gst_av1_enc_get_property (GObject * object, guint prop_id,
185 GValue * value, GParamSpec * pspec);
186
187 static gboolean gst_av1_enc_start (GstVideoEncoder * encoder);
188 static gboolean gst_av1_enc_stop (GstVideoEncoder * encoder);
189 static gboolean gst_av1_enc_set_format (GstVideoEncoder * encoder,
190 GstVideoCodecState * state);
191 static GstFlowReturn gst_av1_enc_handle_frame (GstVideoEncoder * encoder,
192 GstVideoCodecFrame * frame);
193 static GstFlowReturn gst_av1_enc_finish (GstVideoEncoder * encoder);
194 static gboolean gst_av1_enc_propose_allocation (GstVideoEncoder * encoder,
195 GstQuery * query);
196
197 static void gst_av1_enc_destroy_encoder (GstAV1Enc * av1enc);
198
199 #define gst_av1_enc_parent_class parent_class
200 G_DEFINE_TYPE (GstAV1Enc, gst_av1_enc, GST_TYPE_VIDEO_ENCODER);
201 GST_ELEMENT_REGISTER_DEFINE (av1enc, "av1enc", GST_RANK_PRIMARY,
202 GST_TYPE_AV1_ENC);
203
204 /* *INDENT-OFF* */
205 static GstStaticPadTemplate gst_av1_enc_sink_pad_template =
206 GST_STATIC_PAD_TEMPLATE ("sink",
207 GST_PAD_SINK,
208 GST_PAD_ALWAYS,
209 GST_STATIC_CAPS ("video/x-raw, "
210 "format = (string) { I420, Y42B, Y444, YV12 }, "
211 "framerate = (fraction) [0, MAX], "
212 "width = (int) [ 4, MAX ], "
213 "height = (int) [ 4, MAX ]")
214 );
215 /* *INDENT-ON* */
216
217 static GstStaticPadTemplate gst_av1_enc_src_pad_template =
218 GST_STATIC_PAD_TEMPLATE ("src",
219 GST_PAD_SRC,
220 GST_PAD_ALWAYS,
221 GST_STATIC_CAPS ("video/x-av1")
222 );
223
224 static void
gst_av1_enc_class_init(GstAV1EncClass * klass)225 gst_av1_enc_class_init (GstAV1EncClass * klass)
226 {
227 GObjectClass *gobject_class;
228 GstElementClass *element_class;
229 GstVideoEncoderClass *venc_class;
230
231 gobject_class = (GObjectClass *) klass;
232 element_class = (GstElementClass *) klass;
233 venc_class = (GstVideoEncoderClass *) klass;
234
235 parent_class = g_type_class_peek_parent (klass);
236
237 gobject_class->finalize = gst_av1_enc_finalize;
238 gobject_class->set_property = gst_av1_enc_set_property;
239 gobject_class->get_property = gst_av1_enc_get_property;
240
241 gst_element_class_add_static_pad_template (element_class,
242 &gst_av1_enc_sink_pad_template);
243 gst_element_class_add_static_pad_template (element_class,
244 &gst_av1_enc_src_pad_template);
245 gst_element_class_set_static_metadata (element_class, "AV1 Encoder",
246 "Codec/Encoder/Video", "Encode AV1 video streams",
247 "Sean DuBois <sean@siobud.com>");
248
249 venc_class->start = gst_av1_enc_start;
250 venc_class->stop = gst_av1_enc_stop;
251 venc_class->set_format = gst_av1_enc_set_format;
252 venc_class->handle_frame = gst_av1_enc_handle_frame;
253 venc_class->finish = gst_av1_enc_finish;
254 venc_class->propose_allocation = gst_av1_enc_propose_allocation;
255
256 klass->codec_algo = &aom_codec_av1_cx_algo;
257 GST_DEBUG_CATEGORY_INIT (av1_enc_debug, "av1enc", 0, "AV1 encoding element");
258
259 g_object_class_install_property (gobject_class, PROP_CPU_USED,
260 g_param_spec_int ("cpu-used", "CPU Used",
261 "CPU Used. A Value greater than 0 will increase encoder speed at the expense of quality.",
262 0, 5, DEFAULT_CPU_USED, G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
263
264 /* Rate control configurations */
265 g_object_class_install_property (gobject_class, PROP_DROP_FRAME,
266 g_param_spec_uint ("drop-frame", "Drop frame",
267 "Temporal resampling configuration, drop frames as a strategy to meet "
268 "its target data rate Set to zero (0) to disable this feature.",
269 0, G_MAXUINT, DEFAULT_DROP_FRAME,
270 G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
271
272 g_object_class_install_property (gobject_class, PROP_RESIZE_MODE,
273 g_param_spec_enum ("resize-mode", "Resize mode",
274 "Frame resize mode", GST_TYPE_RESIZE_MODE,
275 DEFAULT_RESIZE_MODE, G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
276
277 g_object_class_install_property (gobject_class, PROP_RESIZE_DENOMINATOR,
278 g_param_spec_uint ("resize-denominator", "Resize denominator",
279 "Frame resize denominator, assuming 8 as the numerator",
280 8, 16, DEFAULT_RESIZE_DENOMINATOR,
281 G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
282
283 g_object_class_install_property (gobject_class, PROP_RESIZE_KF_DENOMINATOR,
284 g_param_spec_uint ("resize-kf-denominator", "Resize keyframe denominator",
285 "Frame resize keyframe denominator, assuming 8 as the numerator",
286 8, 16, DEFAULT_RESIZE_KF_DENOMINATOR,
287 G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
288
289 g_object_class_install_property (gobject_class, PROP_SUPERRES_MODE,
290 g_param_spec_enum ("superres-mode", "Super-resolution scaling mode",
291 "It integrates upscaling after the encode/decode process",
292 GST_TYPE_SUPERRES_MODE,
293 DEFAULT_SUPERRES_MODE, G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
294
295 g_object_class_install_property (gobject_class, PROP_SUPERRES_DENOMINATOR,
296 g_param_spec_uint ("superres-denominator", "Super-resolution denominator",
297 "Frame super-resolution denominator, used only by SUPERRES_FIXED mode",
298 8, 16, DEFAULT_SUPERRES_DENOMINATOR,
299 G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
300
301 g_object_class_install_property (gobject_class, PROP_SUPERRES_KF_DENOMINATOR,
302 g_param_spec_uint ("superres-kf-denominator",
303 "Keyframe super-resolution denominator",
304 "Keyframe super-resolution denominator",
305 8, 16, DEFAULT_SUPERRES_KF_DENOMINATOR,
306 G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
307
308 g_object_class_install_property (gobject_class, PROP_SUPERRES_QTHRESH,
309 g_param_spec_uint ("superres-qthresh",
310 "Frame super-resolution qindex threshold",
311 "Frame super-resolution qindex threshold, used only by SUPERRES_QTHRESH mode",
312 1, 63, DEFAULT_SUPERRES_QTHRESH,
313 (G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS)));
314
315 g_object_class_install_property (gobject_class, PROP_SUPERRES_KF_QTHRESH,
316 g_param_spec_uint ("superres-kf-qthresh",
317 "Keyframe super-resolution qindex threshold",
318 "Keyframe super-resolution qindex threshold, used only by SUPERRES_QTHRESH mode",
319 1, 63, DEFAULT_SUPERRES_KF_QTHRESH,
320 (G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS)));
321
322 g_object_class_install_property (gobject_class, PROP_END_USAGE,
323 g_param_spec_enum ("end-usage", "Rate control mode",
324 "Rate control algorithm to use, indicates the end usage of this stream",
325 GST_TYPE_END_USAGE_MODE, DEFAULT_END_USAGE,
326 G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
327
328 g_object_class_install_property (gobject_class, PROP_TARGET_BITRATE,
329 g_param_spec_uint ("target-bitrate", "Target bitrate",
330 "Target bitrate, in kilobits per second",
331 1, G_MAXUINT, DEFAULT_TARGET_BITRATE,
332 G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
333
334 g_object_class_install_property (gobject_class, PROP_MIN_QUANTIZER,
335 g_param_spec_uint ("min-quantizer", "Minimum (best quality) quantizer",
336 "Minimum (best quality) quantizer",
337 0, G_MAXUINT, DEFAULT_MIN_QUANTIZER,
338 G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
339
340 g_object_class_install_property (gobject_class, PROP_MAX_QUANTIZER,
341 g_param_spec_uint ("max-quantizer", "Maximum (worst quality) quantizer",
342 "Maximum (worst quality) quantizer",
343 0, G_MAXUINT, DEFAULT_MAX_QUANTIZER,
344 G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
345
346 g_object_class_install_property (gobject_class, PROP_UNDERSHOOT_PCT,
347 g_param_spec_uint ("undershoot-pct", "Datarate undershoot (min) target",
348 "Rate control adaptation undershoot control",
349 0, 1000, DEFAULT_UNDERSHOOT_PCT,
350 G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
351
352 g_object_class_install_property (gobject_class, PROP_OVERSHOOT_PCT,
353 g_param_spec_uint ("overshoot-pct", "Datarate overshoot (max) target",
354 "Rate control adaptation overshoot control",
355 0, 1000, DEFAULT_OVERSHOOT_PCT,
356 G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
357
358 g_object_class_install_property (gobject_class, PROP_BUF_SZ,
359 g_param_spec_uint ("buf-sz", "Decoder buffer size",
360 "Decoder buffer size, expressed in units of time (milliseconds)",
361 0, G_MAXUINT, DEFAULT_BUF_SZ,
362 G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
363
364 g_object_class_install_property (gobject_class, PROP_BUF_INITIAL_SZ,
365 g_param_spec_uint ("buf-initial-sz", "Decoder buffer initial size",
366 "Decoder buffer initial size, expressed in units of time (milliseconds)",
367 0, G_MAXUINT, DEFAULT_BUF_INITIAL_SZ,
368 G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
369
370 g_object_class_install_property (gobject_class, PROP_BUF_OPTIMAL_SZ,
371 g_param_spec_uint ("buf-optimal-sz", "Decoder buffer optimal size",
372 "Decoder buffer optimal size, expressed in units of time (milliseconds)",
373 0, G_MAXUINT, DEFAULT_BUF_OPTIMAL_SZ,
374 G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
375
376 g_object_class_install_property (gobject_class, PROP_THREADS,
377 g_param_spec_uint ("threads", "Max number of threads to use",
378 "Max number of threads to use encoding, set to 0 determine the "
379 "approximate number of threads that the system schedule",
380 0, G_MAXUINT, DEFAULT_THREADS,
381 G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
382
383 #ifdef AOM_CTRL_AV1E_SET_ROW_MT
384 g_object_class_install_property (gobject_class, PROP_ROW_MT,
385 g_param_spec_boolean ("row-mt", "Row based multi-threading",
386 "Enable row based multi-threading",
387 DEFAULT_ROW_MT, G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
388 #endif
389
390 g_object_class_install_property (gobject_class, PROP_TILE_COLUMNS,
391 g_param_spec_uint ("tile-columns", "Number of tile columns",
392 "Partition into separate vertical tile columns from image frame which "
393 "can enable parallel encoding",
394 0, 6, DEFAULT_TILE_COLUMNS,
395 G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
396
397 g_object_class_install_property (gobject_class, PROP_TILE_ROWS,
398 g_param_spec_uint ("tile-rows", "Number of tile rows",
399 "Partition into separate horizontal tile rows from image frame which "
400 "can enable parallel encoding",
401 0, 6, DEFAULT_TILE_ROWS, G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
402
403 gst_type_mark_as_plugin_api (GST_TYPE_END_USAGE_MODE, 0);
404 gst_type_mark_as_plugin_api (GST_TYPE_RESIZE_MODE, 0);
405 gst_type_mark_as_plugin_api (GST_TYPE_SUPERRES_MODE, 0);
406 }
407
408 static void
gst_av1_codec_error(aom_codec_ctx_t * ctx,const char * s)409 gst_av1_codec_error (aom_codec_ctx_t * ctx, const char *s)
410 {
411 const char *detail = aom_codec_error_detail (ctx);
412
413 GST_ERROR ("%s: %s %s", s, aom_codec_error (ctx), detail ? detail : "");
414 }
415
416 static void
gst_av1_enc_init(GstAV1Enc * av1enc)417 gst_av1_enc_init (GstAV1Enc * av1enc)
418 {
419 GST_PAD_SET_ACCEPT_TEMPLATE (GST_VIDEO_ENCODER_SINK_PAD (av1enc));
420
421 av1enc->encoder_inited = FALSE;
422
423 av1enc->keyframe_dist = 30;
424 av1enc->cpu_used = DEFAULT_CPU_USED;
425 av1enc->format = AOM_IMG_FMT_I420;
426 av1enc->threads = DEFAULT_THREADS;
427 av1enc->row_mt = DEFAULT_ROW_MT;
428 av1enc->tile_columns = DEFAULT_TILE_COLUMNS;
429 av1enc->tile_rows = DEFAULT_TILE_ROWS;
430
431 #ifdef FIXED_QP_OFFSET_COUNT
432 av1enc->aom_cfg.fixed_qp_offsets[0] = -1;
433 av1enc->aom_cfg.fixed_qp_offsets[1] = -1;
434 av1enc->aom_cfg.fixed_qp_offsets[2] = -1;
435 av1enc->aom_cfg.fixed_qp_offsets[3] = -1;
436 av1enc->aom_cfg.fixed_qp_offsets[4] = -1;
437 #endif
438 av1enc->aom_cfg.rc_dropframe_thresh = DEFAULT_DROP_FRAME;
439 av1enc->aom_cfg.rc_resize_mode = DEFAULT_RESIZE_MODE;
440 av1enc->aom_cfg.rc_resize_denominator = DEFAULT_RESIZE_DENOMINATOR;
441 av1enc->aom_cfg.rc_resize_kf_denominator = DEFAULT_RESIZE_KF_DENOMINATOR;
442 av1enc->aom_cfg.rc_superres_mode = DEFAULT_SUPERRES_MODE;
443 av1enc->aom_cfg.rc_superres_denominator = DEFAULT_SUPERRES_DENOMINATOR;
444 av1enc->aom_cfg.rc_superres_kf_denominator = DEFAULT_SUPERRES_KF_DENOMINATOR;
445 av1enc->aom_cfg.rc_superres_qthresh = DEFAULT_SUPERRES_QTHRESH;
446 av1enc->aom_cfg.rc_superres_kf_qthresh = DEFAULT_SUPERRES_KF_QTHRESH;
447 av1enc->aom_cfg.rc_end_usage = (enum aom_rc_mode) DEFAULT_END_USAGE;
448 av1enc->aom_cfg.rc_target_bitrate = DEFAULT_TARGET_BITRATE;
449 av1enc->aom_cfg.rc_min_quantizer = DEFAULT_MIN_QUANTIZER;
450 av1enc->aom_cfg.rc_max_quantizer = DEFAULT_MAX_QUANTIZER;
451 av1enc->aom_cfg.rc_undershoot_pct = DEFAULT_UNDERSHOOT_PCT;
452 av1enc->aom_cfg.rc_overshoot_pct = DEFAULT_OVERSHOOT_PCT;
453 av1enc->aom_cfg.rc_buf_sz = DEFAULT_BUF_SZ;
454 av1enc->aom_cfg.rc_buf_initial_sz = DEFAULT_BUF_INITIAL_SZ;
455 av1enc->aom_cfg.rc_buf_optimal_sz = DEFAULT_BUF_OPTIMAL_SZ;
456 av1enc->aom_cfg.g_timebase.num = DEFAULT_TIMEBASE_N;
457 av1enc->aom_cfg.g_timebase.den = DEFAULT_TIMEBASE_D;
458 av1enc->aom_cfg.g_bit_depth = DEFAULT_BIT_DEPTH;
459 av1enc->aom_cfg.g_input_bit_depth = (unsigned int) DEFAULT_BIT_DEPTH;
460
461 g_mutex_init (&av1enc->encoder_lock);
462 }
463
464 static void
gst_av1_enc_finalize(GObject * object)465 gst_av1_enc_finalize (GObject * object)
466 {
467 GstAV1Enc *av1enc = GST_AV1_ENC (object);
468
469 if (av1enc->input_state) {
470 gst_video_codec_state_unref (av1enc->input_state);
471 }
472 av1enc->input_state = NULL;
473
474 gst_av1_enc_destroy_encoder (av1enc);
475 g_mutex_clear (&av1enc->encoder_lock);
476
477 G_OBJECT_CLASS (parent_class)->finalize (object);
478 }
479
480 static void
gst_av1_enc_set_latency(GstAV1Enc * av1enc)481 gst_av1_enc_set_latency (GstAV1Enc * av1enc)
482 {
483 GstClockTime latency;
484 gint fps_n, fps_d;
485
486 if (av1enc->input_state->info.fps_n && av1enc->input_state->info.fps_d) {
487 fps_n = av1enc->input_state->info.fps_n;
488 fps_d = av1enc->input_state->info.fps_d;
489 } else {
490 fps_n = 25;
491 fps_d = 1;
492 }
493
494 latency =
495 gst_util_uint64_scale (av1enc->aom_cfg.g_lag_in_frames * GST_SECOND,
496 fps_d, fps_n);
497 gst_video_encoder_set_latency (GST_VIDEO_ENCODER (av1enc), latency, latency);
498
499 GST_DEBUG_OBJECT (av1enc, "Latency set to %" GST_TIME_FORMAT
500 " = %d frames at %d/%d fps ", GST_TIME_ARGS (latency),
501 av1enc->aom_cfg.g_lag_in_frames, fps_n, fps_d);
502 }
503
504 static const gchar *
gst_av1_enc_get_aom_rc_mode_name(enum aom_rc_mode rc_mode)505 gst_av1_enc_get_aom_rc_mode_name (enum aom_rc_mode rc_mode)
506 {
507 switch (rc_mode) {
508 case AOM_VBR:
509 return "VBR (Variable Bit Rate)";
510 case AOM_CBR:
511 return "CBR (Constant Bit Rate)";
512 case AOM_CQ:
513 return "CQ (Constrained Quality)";
514 case AOM_Q:
515 return "Q (Constant Quality)";
516 default:
517 return "<UNKNOWN>";
518 }
519 }
520
521 static void
gst_av1_enc_debug_encoder_cfg(struct aom_codec_enc_cfg * cfg)522 gst_av1_enc_debug_encoder_cfg (struct aom_codec_enc_cfg *cfg)
523 {
524 GST_DEBUG ("g_usage : %u", cfg->g_usage);
525 GST_DEBUG ("g_threads : %u", cfg->g_threads);
526 GST_DEBUG ("g_profile : %u", cfg->g_profile);
527 GST_DEBUG ("g_w x g_h : %u x %u", cfg->g_w, cfg->g_h);
528 GST_DEBUG ("g_bit_depth : %d", cfg->g_bit_depth);
529 GST_DEBUG ("g_input_bit_depth : %u", cfg->g_input_bit_depth);
530 GST_DEBUG ("g_timebase : %d / %d", cfg->g_timebase.num, cfg->g_timebase.den);
531 GST_DEBUG ("g_error_resilient : 0x%x", cfg->g_error_resilient);
532 GST_DEBUG ("g_pass : %d", cfg->g_pass);
533 GST_DEBUG ("g_lag_in_frames : %u", cfg->g_lag_in_frames);
534 GST_DEBUG ("rc_dropframe_thresh : %u", cfg->rc_dropframe_thresh);
535 GST_DEBUG ("rc_resize_mode : %u", cfg->rc_resize_mode);
536 GST_DEBUG ("rc_resize_denominator : %u", cfg->rc_resize_denominator);
537 GST_DEBUG ("rc_resize_kf_denominator : %u", cfg->rc_resize_kf_denominator);
538 GST_DEBUG ("rc_superres_mode : %u", cfg->rc_superres_mode);
539 GST_DEBUG ("rc_superres_denominator : %u", cfg->rc_superres_denominator);
540 GST_DEBUG ("rc_superres_kf_denominator : %u",
541 cfg->rc_superres_kf_denominator);
542 GST_DEBUG ("rc_superres_qthresh : %u", cfg->rc_superres_qthresh);
543 GST_DEBUG ("rc_superres_kf_qthresh : %u", cfg->rc_superres_kf_qthresh);
544 GST_DEBUG ("rc_end_usage : %s",
545 gst_av1_enc_get_aom_rc_mode_name (cfg->rc_end_usage));
546 /* rc_twopass_stats_in */
547 /* rc_firstpass_mb_stats_in */
548 GST_DEBUG ("rc_target_bitrate : %u (kbps)", cfg->rc_target_bitrate);
549 GST_DEBUG ("rc_min_quantizer : %u", cfg->rc_min_quantizer);
550 GST_DEBUG ("rc_max_quantizer : %u", cfg->rc_max_quantizer);
551 GST_DEBUG ("rc_undershoot_pct : %u", cfg->rc_undershoot_pct);
552 GST_DEBUG ("rc_overshoot_pct : %u", cfg->rc_overshoot_pct);
553 GST_DEBUG ("rc_buf_sz : %u (ms)", cfg->rc_buf_sz);
554 GST_DEBUG ("rc_buf_initial_sz : %u (ms)", cfg->rc_buf_initial_sz);
555 GST_DEBUG ("rc_buf_optimal_sz : %u (ms)", cfg->rc_buf_optimal_sz);
556 GST_DEBUG ("rc_2pass_vbr_bias_pct : %u (%%)", cfg->rc_2pass_vbr_bias_pct);
557 GST_DEBUG ("rc_2pass_vbr_minsection_pct : %u (%%)",
558 cfg->rc_2pass_vbr_minsection_pct);
559 GST_DEBUG ("rc_2pass_vbr_maxsection_pct : %u (%%)",
560 cfg->rc_2pass_vbr_maxsection_pct);
561 GST_DEBUG ("kf_mode : %u", cfg->kf_mode);
562 GST_DEBUG ("kf_min_dist : %u", cfg->kf_min_dist);
563 GST_DEBUG ("kf_max_dist : %u", cfg->kf_max_dist);
564 GST_DEBUG ("large_scale_tile : %u", cfg->large_scale_tile);
565 /* Tile-related values */
566 }
567
568 static gint
gst_av1_enc_get_downstream_profile(GstAV1Enc * av1enc)569 gst_av1_enc_get_downstream_profile (GstAV1Enc * av1enc)
570 {
571 GstCaps *allowed;
572 GstStructure *s;
573 gint profile = DEFAULT_PROFILE;
574
575 allowed = gst_pad_get_allowed_caps (GST_VIDEO_ENCODER_SRC_PAD (av1enc));
576 if (allowed) {
577 allowed = gst_caps_truncate (allowed);
578 s = gst_caps_get_structure (allowed, 0);
579 if (gst_structure_has_field (s, "profile")) {
580 const GValue *v = gst_structure_get_value (s, "profile");
581 const gchar *profile_str = NULL;
582
583 if (GST_VALUE_HOLDS_LIST (v) && gst_value_list_get_size (v) > 0) {
584 profile_str = g_value_get_string (gst_value_list_get_value (v, 0));
585 } else if (G_VALUE_HOLDS_STRING (v)) {
586 profile_str = g_value_get_string (v);
587 }
588
589 if (profile_str) {
590 gchar *endptr = NULL;
591
592 if (g_strcmp0 (profile_str, "main") == 0) {
593 GST_DEBUG_OBJECT (av1enc, "Downstream profile is \"main\"");
594 profile = 0;
595 } else if (g_strcmp0 (profile_str, "high") == 0) {
596 profile = 1;
597 GST_DEBUG_OBJECT (av1enc, "Downstream profile is \"high\"");
598 } else if (g_strcmp0 (profile_str, "professional") == 0) {
599 profile = 2;
600 GST_DEBUG_OBJECT (av1enc, "Downstream profile is \"professional\"");
601 } else {
602 profile = g_ascii_strtoull (profile_str, &endptr, 10);
603 if (*endptr != '\0' || profile < 0 || profile > 3) {
604 GST_ERROR_OBJECT (av1enc, "Invalid profile '%s'", profile_str);
605 profile = DEFAULT_PROFILE;
606 } else {
607 GST_DEBUG_OBJECT (av1enc,
608 "Downstream profile is \"%s\"", profile_str);
609 }
610 }
611 }
612 }
613 gst_caps_unref (allowed);
614 }
615
616 GST_DEBUG_OBJECT (av1enc, "Using profile %d", profile);
617
618 return profile;
619 }
620
621 static void
gst_av1_enc_adjust_profile(GstAV1Enc * av1enc,GstVideoFormat format)622 gst_av1_enc_adjust_profile (GstAV1Enc * av1enc, GstVideoFormat format)
623 {
624 guint depth = av1enc->aom_cfg.g_bit_depth;
625 guint profile = av1enc->aom_cfg.g_profile;
626 gboolean update = FALSE;
627
628 switch (profile) {
629 case 0:
630 if (depth < 12 && format == GST_VIDEO_FORMAT_Y444) {
631 profile = 1;
632 update = TRUE;
633 } else if (depth == 12 || format == GST_VIDEO_FORMAT_Y42B) {
634 profile = 2;
635 update = TRUE;
636 }
637 break;
638 case 1:
639 if (depth == 12 || format == GST_VIDEO_FORMAT_Y42B) {
640 profile = 2;
641 update = TRUE;
642 } else if (depth < 12 && format == GST_VIDEO_FORMAT_I420) {
643 profile = 0;
644 update = TRUE;
645 }
646 break;
647 case 2:
648 if (depth < 12) {
649 if (format == GST_VIDEO_FORMAT_Y444) {
650 profile = 1;
651 update = TRUE;
652 } else if (format == GST_VIDEO_FORMAT_I420) {
653 profile = 0;
654 update = TRUE;
655 }
656 }
657 break;
658 default:
659 break;
660 }
661
662 if (update) {
663 GST_INFO_OBJECT (av1enc, "profile updated to %d from %d",
664 profile, av1enc->aom_cfg.g_profile);
665 av1enc->aom_cfg.g_profile = profile;
666 }
667 }
668
669 static gboolean
gst_av1_enc_set_format(GstVideoEncoder * encoder,GstVideoCodecState * state)670 gst_av1_enc_set_format (GstVideoEncoder * encoder, GstVideoCodecState * state)
671 {
672 GstVideoCodecState *output_state;
673 GstAV1Enc *av1enc = GST_AV1_ENC_CAST (encoder);
674 GstAV1EncClass *av1enc_class = GST_AV1_ENC_GET_CLASS (av1enc);
675 GstVideoInfo *info = &state->info;
676
677 output_state =
678 gst_video_encoder_set_output_state (encoder,
679 gst_pad_get_pad_template_caps (GST_VIDEO_ENCODER_SRC_PAD (encoder)),
680 state);
681 gst_video_codec_state_unref (output_state);
682
683 if (av1enc->input_state) {
684 gst_video_codec_state_unref (av1enc->input_state);
685 }
686 av1enc->input_state = gst_video_codec_state_ref (state);
687
688 g_mutex_lock (&av1enc->encoder_lock);
689 gst_av1_enc_set_latency (av1enc);
690
691 av1enc->aom_cfg.g_profile = gst_av1_enc_get_downstream_profile (av1enc);
692
693 /* Scale default bitrate to our size */
694 if (!av1enc->target_bitrate_set)
695 av1enc->aom_cfg.rc_target_bitrate =
696 gst_util_uint64_scale (DEFAULT_TARGET_BITRATE,
697 GST_VIDEO_INFO_WIDTH (info) * GST_VIDEO_INFO_HEIGHT (info), 320 * 240);
698
699 av1enc->aom_cfg.g_w = GST_VIDEO_INFO_WIDTH (info);
700 av1enc->aom_cfg.g_h = GST_VIDEO_INFO_HEIGHT (info);
701 /* Recommended method is to set the timebase to that of the parent
702 * container or multimedia framework (ex: 1/1000 for ms, as in FLV) */
703 av1enc->aom_cfg.g_timebase.num = GST_VIDEO_INFO_FPS_D (info);
704 av1enc->aom_cfg.g_timebase.den = GST_VIDEO_INFO_FPS_N (info);
705 av1enc->aom_cfg.g_error_resilient = AOM_ERROR_RESILIENT_DEFAULT;
706
707 if (av1enc->threads == DEFAULT_THREADS)
708 av1enc->aom_cfg.g_threads = g_get_num_processors ();
709 else
710 av1enc->aom_cfg.g_threads = av1enc->threads;
711 /* TODO: do more configuration including bit_depth config */
712
713 av1enc->format =
714 gst_video_format_to_av1_img_format (GST_VIDEO_INFO_FORMAT (info));
715
716 if (av1enc->aom_cfg.g_bit_depth != DEFAULT_BIT_DEPTH) {
717 av1enc->aom_cfg.g_input_bit_depth = av1enc->aom_cfg.g_bit_depth;
718 if (av1enc->aom_cfg.g_bit_depth > 8)
719 av1enc->format |= AOM_IMG_FMT_HIGHBITDEPTH;
720 }
721
722 /* Adjust profile according to format and bit-depth */
723 gst_av1_enc_adjust_profile (av1enc, GST_VIDEO_INFO_FORMAT (info));
724
725 GST_DEBUG_OBJECT (av1enc, "Calling encoder init with config:");
726 gst_av1_enc_debug_encoder_cfg (&av1enc->aom_cfg);
727
728 if (aom_codec_enc_init (&av1enc->encoder, av1enc_class->codec_algo,
729 &av1enc->aom_cfg, 0)) {
730 gst_av1_codec_error (&av1enc->encoder, "Failed to initialize encoder");
731 g_mutex_unlock (&av1enc->encoder_lock);
732 return FALSE;
733 }
734 av1enc->encoder_inited = TRUE;
735
736 GST_AV1_ENC_APPLY_CODEC_CONTROL (av1enc, AOME_SET_CPUUSED, av1enc->cpu_used);
737 #ifdef AOM_CTRL_AV1E_SET_ROW_MT
738 GST_AV1_ENC_APPLY_CODEC_CONTROL (av1enc, AV1E_SET_ROW_MT,
739 (av1enc->row_mt ? 1 : 0));
740 #endif
741 GST_AV1_ENC_APPLY_CODEC_CONTROL (av1enc, AV1E_SET_TILE_COLUMNS,
742 av1enc->tile_columns);
743 GST_AV1_ENC_APPLY_CODEC_CONTROL (av1enc, AV1E_SET_TILE_ROWS,
744 av1enc->tile_rows);
745 g_mutex_unlock (&av1enc->encoder_lock);
746
747 return TRUE;
748 }
749
750 static GstFlowReturn
gst_av1_enc_process(GstAV1Enc * encoder)751 gst_av1_enc_process (GstAV1Enc * encoder)
752 {
753 aom_codec_iter_t iter = NULL;
754 const aom_codec_cx_pkt_t *pkt;
755 GstVideoCodecFrame *frame;
756 GstVideoEncoder *video_encoder;
757 GstFlowReturn ret = GST_FLOW_CUSTOM_SUCCESS;
758
759 video_encoder = GST_VIDEO_ENCODER (encoder);
760
761 while ((pkt = aom_codec_get_cx_data (&encoder->encoder, &iter)) != NULL) {
762 if (pkt->kind == AOM_CODEC_STATS_PKT) {
763 GST_WARNING_OBJECT (encoder, "Unhandled stats packet");
764 } else if (pkt->kind == AOM_CODEC_FPMB_STATS_PKT) {
765 GST_WARNING_OBJECT (encoder, "Unhandled FPMB pkt");
766 } else if (pkt->kind == AOM_CODEC_PSNR_PKT) {
767 GST_WARNING_OBJECT (encoder, "Unhandled PSNR packet");
768 } else if (pkt->kind == AOM_CODEC_CX_FRAME_PKT) {
769 frame = gst_video_encoder_get_oldest_frame (video_encoder);
770 g_assert (frame != NULL);
771 if ((pkt->data.frame.flags & AOM_FRAME_IS_KEY) != 0) {
772 GST_VIDEO_CODEC_FRAME_SET_SYNC_POINT (frame);
773 } else {
774 GST_VIDEO_CODEC_FRAME_UNSET_SYNC_POINT (frame);
775 }
776
777 frame->output_buffer =
778 gst_buffer_new_memdup (pkt->data.frame.buf, pkt->data.frame.sz);
779
780 if ((pkt->data.frame.flags & AOM_FRAME_IS_DROPPABLE) != 0)
781 GST_BUFFER_FLAG_SET (frame->output_buffer, GST_BUFFER_FLAG_DROPPABLE);
782
783 ret = gst_video_encoder_finish_frame (video_encoder, frame);
784 if (ret != GST_FLOW_OK)
785 break;
786 }
787 }
788
789 return ret;
790 }
791
792 static void
gst_av1_enc_fill_image(GstAV1Enc * enc,GstVideoFrame * frame,aom_image_t * image)793 gst_av1_enc_fill_image (GstAV1Enc * enc, GstVideoFrame * frame,
794 aom_image_t * image)
795 {
796 image->planes[AOM_PLANE_Y] = GST_VIDEO_FRAME_COMP_DATA (frame, 0);
797 image->planes[AOM_PLANE_U] = GST_VIDEO_FRAME_COMP_DATA (frame, 1);
798 image->planes[AOM_PLANE_V] = GST_VIDEO_FRAME_COMP_DATA (frame, 2);
799
800 image->stride[AOM_PLANE_Y] = GST_VIDEO_FRAME_COMP_STRIDE (frame, 0);
801 image->stride[AOM_PLANE_U] = GST_VIDEO_FRAME_COMP_STRIDE (frame, 1);
802 image->stride[AOM_PLANE_V] = GST_VIDEO_FRAME_COMP_STRIDE (frame, 2);
803 }
804
805 static GstFlowReturn
gst_av1_enc_handle_frame(GstVideoEncoder * encoder,GstVideoCodecFrame * frame)806 gst_av1_enc_handle_frame (GstVideoEncoder * encoder, GstVideoCodecFrame * frame)
807 {
808 GstAV1Enc *av1enc = GST_AV1_ENC_CAST (encoder);
809 aom_image_t raw;
810 int flags = 0;
811 GstFlowReturn ret = GST_FLOW_OK;
812 GstVideoFrame vframe;
813
814 if (!aom_img_alloc (&raw, av1enc->format, av1enc->aom_cfg.g_w,
815 av1enc->aom_cfg.g_h, 1)) {
816 GST_ERROR_OBJECT (encoder, "Failed to initialize encoder");
817 return FALSE;
818 }
819
820 gst_video_frame_map (&vframe, &av1enc->input_state->info,
821 frame->input_buffer, GST_MAP_READ);
822 gst_av1_enc_fill_image (av1enc, &vframe, &raw);
823 gst_video_frame_unmap (&vframe);
824
825 if (av1enc->keyframe_dist >= 30) {
826 av1enc->keyframe_dist = 0;
827 flags |= AOM_EFLAG_FORCE_KF;
828 }
829 av1enc->keyframe_dist++;
830
831 g_mutex_lock (&av1enc->encoder_lock);
832 if (aom_codec_encode (&av1enc->encoder, &raw, frame->pts, 1, flags)
833 != AOM_CODEC_OK) {
834 gst_av1_codec_error (&av1enc->encoder, "Failed to encode frame");
835 ret = GST_FLOW_ERROR;
836 }
837 g_mutex_unlock (&av1enc->encoder_lock);
838
839 aom_img_free (&raw);
840 gst_video_codec_frame_unref (frame);
841
842 if (ret == GST_FLOW_ERROR)
843 return ret;
844
845 ret = gst_av1_enc_process (av1enc);
846
847 if (ret == GST_FLOW_CUSTOM_SUCCESS)
848 ret = GST_FLOW_OK;
849
850 return ret;
851 }
852
853 static GstFlowReturn
gst_av1_enc_finish(GstVideoEncoder * encoder)854 gst_av1_enc_finish (GstVideoEncoder * encoder)
855 {
856 GstFlowReturn ret = GST_FLOW_OK;
857 GstAV1Enc *av1enc = GST_AV1_ENC_CAST (encoder);
858
859 while (ret == GST_FLOW_OK) {
860 GST_DEBUG_OBJECT (encoder, "Calling finish");
861 g_mutex_lock (&av1enc->encoder_lock);
862 if (aom_codec_encode (&av1enc->encoder, NULL, 0, 1, 0)
863 != AOM_CODEC_OK) {
864 gst_av1_codec_error (&av1enc->encoder, "Failed to encode frame");
865 ret = GST_FLOW_ERROR;
866 }
867 g_mutex_unlock (&av1enc->encoder_lock);
868
869 ret = gst_av1_enc_process (av1enc);
870 }
871
872
873 if (ret == GST_FLOW_CUSTOM_SUCCESS)
874 ret = GST_FLOW_OK;
875
876 return ret;
877 }
878
879 static void
gst_av1_enc_destroy_encoder(GstAV1Enc * av1enc)880 gst_av1_enc_destroy_encoder (GstAV1Enc * av1enc)
881 {
882 g_mutex_lock (&av1enc->encoder_lock);
883 if (av1enc->encoder_inited) {
884 aom_codec_destroy (&av1enc->encoder);
885 av1enc->encoder_inited = FALSE;
886 }
887 g_mutex_unlock (&av1enc->encoder_lock);
888 }
889
890 static gboolean
gst_av1_enc_propose_allocation(GstVideoEncoder * encoder,GstQuery * query)891 gst_av1_enc_propose_allocation (GstVideoEncoder * encoder, GstQuery * query)
892 {
893 gst_query_add_allocation_meta (query, GST_VIDEO_META_API_TYPE, NULL);
894
895 return GST_VIDEO_ENCODER_CLASS (parent_class)->propose_allocation (encoder,
896 query);
897 }
898
899 static void
gst_av1_enc_set_property(GObject * object,guint prop_id,const GValue * value,GParamSpec * pspec)900 gst_av1_enc_set_property (GObject * object, guint prop_id,
901 const GValue * value, GParamSpec * pspec)
902 {
903 GstAV1Enc *av1enc = GST_AV1_ENC_CAST (object);
904 gboolean global = FALSE;
905 aom_codec_err_t status;
906
907 GST_OBJECT_LOCK (av1enc);
908
909 g_mutex_lock (&av1enc->encoder_lock);
910 switch (prop_id) {
911 case PROP_CPU_USED:
912 av1enc->cpu_used = g_value_get_int (value);
913 GST_AV1_ENC_APPLY_CODEC_CONTROL (av1enc, AOME_SET_CPUUSED,
914 av1enc->cpu_used);
915 break;
916 case PROP_DROP_FRAME:
917 av1enc->aom_cfg.rc_dropframe_thresh = g_value_get_uint (value);
918 global = TRUE;
919 break;
920 case PROP_RESIZE_MODE:
921 av1enc->aom_cfg.rc_resize_mode = g_value_get_enum (value);
922 global = TRUE;
923 break;
924 case PROP_RESIZE_DENOMINATOR:
925 av1enc->aom_cfg.rc_resize_denominator = g_value_get_uint (value);
926 global = TRUE;
927 break;
928 case PROP_RESIZE_KF_DENOMINATOR:
929 av1enc->aom_cfg.rc_resize_kf_denominator = g_value_get_uint (value);
930 global = TRUE;
931 break;
932 case PROP_SUPERRES_MODE:
933 av1enc->aom_cfg.rc_superres_mode = g_value_get_enum (value);
934 global = TRUE;
935 break;
936 case PROP_SUPERRES_DENOMINATOR:
937 av1enc->aom_cfg.rc_superres_denominator = g_value_get_uint (value);
938 global = TRUE;
939 break;
940 case PROP_SUPERRES_KF_DENOMINATOR:
941 av1enc->aom_cfg.rc_superres_kf_denominator = g_value_get_uint (value);
942 global = TRUE;
943 break;
944 case PROP_SUPERRES_QTHRESH:
945 av1enc->aom_cfg.rc_superres_qthresh = g_value_get_uint (value);
946 global = TRUE;
947 break;
948 case PROP_SUPERRES_KF_QTHRESH:
949 av1enc->aom_cfg.rc_superres_kf_qthresh = g_value_get_uint (value);
950 global = TRUE;
951 break;
952 case PROP_END_USAGE:
953 av1enc->aom_cfg.rc_end_usage = g_value_get_enum (value);
954 global = TRUE;
955 break;
956 case PROP_TARGET_BITRATE:
957 av1enc->aom_cfg.rc_target_bitrate = g_value_get_uint (value);
958 av1enc->target_bitrate_set = TRUE;
959 global = TRUE;
960 break;
961 case PROP_MIN_QUANTIZER:
962 av1enc->aom_cfg.rc_min_quantizer = g_value_get_uint (value);
963 global = TRUE;
964 break;
965 case PROP_MAX_QUANTIZER:
966 av1enc->aom_cfg.rc_max_quantizer = g_value_get_uint (value);
967 global = TRUE;
968 break;
969 case PROP_UNDERSHOOT_PCT:
970 av1enc->aom_cfg.rc_undershoot_pct = g_value_get_uint (value);
971 global = TRUE;
972 break;
973 case PROP_OVERSHOOT_PCT:
974 av1enc->aom_cfg.rc_overshoot_pct = g_value_get_uint (value);
975 global = TRUE;
976 break;
977 case PROP_BUF_SZ:
978 av1enc->aom_cfg.rc_buf_sz = g_value_get_uint (value);
979 global = TRUE;
980 break;
981 case PROP_BUF_INITIAL_SZ:
982 av1enc->aom_cfg.rc_buf_initial_sz = g_value_get_uint (value);
983 global = TRUE;
984 break;
985 case PROP_BUF_OPTIMAL_SZ:
986 av1enc->aom_cfg.rc_buf_optimal_sz = g_value_get_uint (value);
987 global = TRUE;
988 break;
989 case PROP_THREADS:
990 av1enc->threads = g_value_get_uint (value);
991 global = TRUE;
992 break;
993 #ifdef AOM_CTRL_AV1E_SET_ROW_MT
994 case PROP_ROW_MT:
995 av1enc->row_mt = g_value_get_boolean (value);
996 GST_AV1_ENC_APPLY_CODEC_CONTROL (av1enc, AV1E_SET_ROW_MT,
997 (av1enc->row_mt ? 1 : 0));
998 break;
999 #endif
1000 case PROP_TILE_COLUMNS:
1001 av1enc->tile_columns = g_value_get_uint (value);
1002 GST_AV1_ENC_APPLY_CODEC_CONTROL (av1enc, AV1E_SET_TILE_COLUMNS,
1003 av1enc->tile_columns);
1004 break;
1005 case PROP_TILE_ROWS:
1006 av1enc->tile_rows = g_value_get_uint (value);
1007 GST_AV1_ENC_APPLY_CODEC_CONTROL (av1enc, AV1E_SET_TILE_ROWS,
1008 av1enc->tile_rows);
1009 break;
1010 default:
1011 G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
1012 break;
1013 }
1014
1015 if (global &&av1enc->encoder_inited) {
1016 status = aom_codec_enc_config_set (&av1enc->encoder, &av1enc->aom_cfg);
1017 GST_DEBUG_OBJECT (av1enc, "Set %s encoder configuration, ret = %s",
1018 pspec->name, gst_av1_get_error_name (status));
1019 }
1020
1021 g_mutex_unlock (&av1enc->encoder_lock);
1022 GST_OBJECT_UNLOCK (av1enc);
1023 }
1024
1025 static void
gst_av1_enc_get_property(GObject * object,guint prop_id,GValue * value,GParamSpec * pspec)1026 gst_av1_enc_get_property (GObject * object, guint prop_id, GValue * value,
1027 GParamSpec * pspec)
1028 {
1029 GstAV1Enc *av1enc = GST_AV1_ENC_CAST (object);
1030
1031 GST_OBJECT_LOCK (av1enc);
1032
1033 switch (prop_id) {
1034 case PROP_CPU_USED:
1035 g_value_set_int (value, av1enc->cpu_used);
1036 break;
1037 case PROP_DROP_FRAME:
1038 g_value_set_uint (value, av1enc->aom_cfg.rc_dropframe_thresh);
1039 break;
1040 case PROP_RESIZE_MODE:
1041 g_value_set_enum (value, av1enc->aom_cfg.rc_resize_mode);
1042 break;
1043 case PROP_RESIZE_DENOMINATOR:
1044 g_value_set_uint (value, av1enc->aom_cfg.rc_resize_denominator);
1045 break;
1046 case PROP_RESIZE_KF_DENOMINATOR:
1047 g_value_set_uint (value, av1enc->aom_cfg.rc_resize_kf_denominator);
1048 break;
1049 case PROP_SUPERRES_MODE:
1050 g_value_set_enum (value, av1enc->aom_cfg.rc_superres_mode);
1051 break;
1052 case PROP_SUPERRES_DENOMINATOR:
1053 g_value_set_uint (value, av1enc->aom_cfg.rc_superres_denominator);
1054 break;
1055 case PROP_SUPERRES_KF_DENOMINATOR:
1056 g_value_set_uint (value, av1enc->aom_cfg.rc_superres_kf_denominator);
1057 break;
1058 case PROP_SUPERRES_QTHRESH:
1059 g_value_set_uint (value, av1enc->aom_cfg.rc_superres_qthresh);
1060 break;
1061 case PROP_SUPERRES_KF_QTHRESH:
1062 g_value_set_uint (value, av1enc->aom_cfg.rc_superres_kf_qthresh);
1063 break;
1064 case PROP_END_USAGE:
1065 g_value_set_enum (value, av1enc->aom_cfg.rc_end_usage);
1066 break;
1067 case PROP_TARGET_BITRATE:
1068 g_value_set_uint (value, av1enc->aom_cfg.rc_target_bitrate);
1069 break;
1070 case PROP_MIN_QUANTIZER:
1071 g_value_set_uint (value, av1enc->aom_cfg.rc_min_quantizer);
1072 break;
1073 case PROP_MAX_QUANTIZER:
1074 g_value_set_uint (value, av1enc->aom_cfg.rc_max_quantizer);
1075 break;
1076 case PROP_UNDERSHOOT_PCT:
1077 g_value_set_uint (value, av1enc->aom_cfg.rc_undershoot_pct);
1078 break;
1079 case PROP_OVERSHOOT_PCT:
1080 g_value_set_uint (value, av1enc->aom_cfg.rc_overshoot_pct);
1081 break;
1082 case PROP_BUF_SZ:
1083 g_value_set_uint (value, av1enc->aom_cfg.rc_buf_sz);
1084 break;
1085 case PROP_BUF_INITIAL_SZ:
1086 g_value_set_uint (value, av1enc->aom_cfg.rc_buf_initial_sz);
1087 break;
1088 case PROP_BUF_OPTIMAL_SZ:
1089 g_value_set_uint (value, av1enc->aom_cfg.rc_buf_optimal_sz);
1090 break;
1091 case PROP_THREADS:
1092 g_value_set_uint (value, av1enc->threads);
1093 break;
1094 #ifdef AOM_CTRL_AV1E_SET_ROW_MT
1095 case PROP_ROW_MT:
1096 g_value_set_boolean (value, av1enc->row_mt);
1097 break;
1098 #endif
1099 case PROP_TILE_COLUMNS:
1100 g_value_set_uint (value, av1enc->tile_columns);
1101 break;
1102 case PROP_TILE_ROWS:
1103 g_value_set_uint (value, av1enc->tile_rows);
1104 break;
1105 default:
1106 G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
1107 break;
1108 }
1109
1110 GST_OBJECT_UNLOCK (av1enc);
1111 }
1112
1113 static gboolean
gst_av1_enc_start(GstVideoEncoder * encoder)1114 gst_av1_enc_start (GstVideoEncoder * encoder)
1115 {
1116 return TRUE;
1117 }
1118
1119 static gboolean
gst_av1_enc_stop(GstVideoEncoder * encoder)1120 gst_av1_enc_stop (GstVideoEncoder * encoder)
1121 {
1122 GstAV1Enc *av1enc = GST_AV1_ENC_CAST (encoder);
1123
1124 if (av1enc->input_state) {
1125 gst_video_codec_state_unref (av1enc->input_state);
1126 }
1127 av1enc->input_state = NULL;
1128
1129 gst_av1_enc_destroy_encoder (av1enc);
1130
1131 return TRUE;
1132 }
1133