3 * This file is part of Libav.
5 * Libav is free software; you can redistribute it and/or
6 * modify it under the terms of the GNU Lesser General Public
7 * License as published by the Free Software Foundation; either
8 * version 2.1 of the License, or (at your option) any later version.
10 * Libav is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 * Lesser General Public License for more details.
15 * You should have received a copy of the GNU Lesser General Public
16 * License along with Libav; if not, write to the Free Software
17 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
22 * sample format and channel layout conversion audio filter
25 #include "libavutil/avassert.h"
26 #include "libavutil/avstring.h"
27 #include "libavutil/common.h"
28 #include "libavutil/dict.h"
29 #include "libavutil/mathematics.h"
30 #include "libavutil/opt.h"
32 #include "libavresample/avresample.h"
39 typedef struct ResampleContext
{
40 AVAudioResampleContext
*avr
;
41 AVDictionary
*options
;
45 /* set by filter_frame() to signal an output frame to request_frame() */
49 static av_cold
int init(AVFilterContext
*ctx
, const char *args
)
51 ResampleContext
*s
= ctx
->priv
;
54 int ret
= av_dict_parse_string(&s
->options
, args
, "=", ":", 0);
56 av_log(ctx
, AV_LOG_ERROR
, "error setting option string: %s\n", args
);
60 /* do not allow the user to override basic format options */
61 av_dict_set(&s
->options
, "in_channel_layout", NULL
, 0);
62 av_dict_set(&s
->options
, "out_channel_layout", NULL
, 0);
63 av_dict_set(&s
->options
, "in_sample_fmt", NULL
, 0);
64 av_dict_set(&s
->options
, "out_sample_fmt", NULL
, 0);
65 av_dict_set(&s
->options
, "in_sample_rate", NULL
, 0);
66 av_dict_set(&s
->options
, "out_sample_rate", NULL
, 0);
72 static av_cold
void uninit(AVFilterContext
*ctx
)
74 ResampleContext
*s
= ctx
->priv
;
77 avresample_close(s
->avr
);
78 avresample_free(&s
->avr
);
80 av_dict_free(&s
->options
);
83 static int query_formats(AVFilterContext
*ctx
)
85 AVFilterLink
*inlink
= ctx
->inputs
[0];
86 AVFilterLink
*outlink
= ctx
->outputs
[0];
88 AVFilterFormats
*in_formats
= ff_all_formats(AVMEDIA_TYPE_AUDIO
);
89 AVFilterFormats
*out_formats
= ff_all_formats(AVMEDIA_TYPE_AUDIO
);
90 AVFilterFormats
*in_samplerates
= ff_all_samplerates();
91 AVFilterFormats
*out_samplerates
= ff_all_samplerates();
92 AVFilterChannelLayouts
*in_layouts
= ff_all_channel_layouts();
93 AVFilterChannelLayouts
*out_layouts
= ff_all_channel_layouts();
95 ff_formats_ref(in_formats
, &inlink
->out_formats
);
96 ff_formats_ref(out_formats
, &outlink
->in_formats
);
98 ff_formats_ref(in_samplerates
, &inlink
->out_samplerates
);
99 ff_formats_ref(out_samplerates
, &outlink
->in_samplerates
);
101 ff_channel_layouts_ref(in_layouts
, &inlink
->out_channel_layouts
);
102 ff_channel_layouts_ref(out_layouts
, &outlink
->in_channel_layouts
);
107 static int config_output(AVFilterLink
*outlink
)
109 AVFilterContext
*ctx
= outlink
->src
;
110 AVFilterLink
*inlink
= ctx
->inputs
[0];
111 ResampleContext
*s
= ctx
->priv
;
112 char buf1
[64], buf2
[64];
116 avresample_close(s
->avr
);
117 avresample_free(&s
->avr
);
120 if (inlink
->channel_layout
== outlink
->channel_layout
&&
121 inlink
->sample_rate
== outlink
->sample_rate
&&
122 (inlink
->format
== outlink
->format
||
123 (av_get_channel_layout_nb_channels(inlink
->channel_layout
) == 1 &&
124 av_get_channel_layout_nb_channels(outlink
->channel_layout
) == 1 &&
125 av_get_planar_sample_fmt(inlink
->format
) ==
126 av_get_planar_sample_fmt(outlink
->format
))))
129 if (!(s
->avr
= avresample_alloc_context()))
130 return AVERROR(ENOMEM
);
133 AVDictionaryEntry
*e
= NULL
;
134 while ((e
= av_dict_get(s
->options
, "", e
, AV_DICT_IGNORE_SUFFIX
)))
135 av_log(ctx
, AV_LOG_VERBOSE
, "lavr option: %s=%s\n", e
->key
, e
->value
);
137 av_opt_set_dict(s
->avr
, &s
->options
);
140 av_opt_set_int(s
->avr
, "in_channel_layout", inlink
->channel_layout
, 0);
141 av_opt_set_int(s
->avr
, "out_channel_layout", outlink
->channel_layout
, 0);
142 av_opt_set_int(s
->avr
, "in_sample_fmt", inlink
->format
, 0);
143 av_opt_set_int(s
->avr
, "out_sample_fmt", outlink
->format
, 0);
144 av_opt_set_int(s
->avr
, "in_sample_rate", inlink
->sample_rate
, 0);
145 av_opt_set_int(s
->avr
, "out_sample_rate", outlink
->sample_rate
, 0);
147 if ((ret
= avresample_open(s
->avr
)) < 0)
150 outlink
->time_base
= (AVRational
){ 1, outlink
->sample_rate
};
151 s
->next_pts
= AV_NOPTS_VALUE
;
153 av_get_channel_layout_string(buf1
, sizeof(buf1
),
154 -1, inlink
->channel_layout
);
155 av_get_channel_layout_string(buf2
, sizeof(buf2
),
156 -1, outlink
->channel_layout
);
157 av_log(ctx
, AV_LOG_VERBOSE
,
158 "fmt:%s srate:%d cl:%s -> fmt:%s srate:%d cl:%s\n",
159 av_get_sample_fmt_name(inlink
->format
), inlink
->sample_rate
, buf1
,
160 av_get_sample_fmt_name(outlink
->format
), outlink
->sample_rate
, buf2
);
165 static int request_frame(AVFilterLink
*outlink
)
167 AVFilterContext
*ctx
= outlink
->src
;
168 ResampleContext
*s
= ctx
->priv
;
172 while (ret
>= 0 && !s
->got_output
)
173 ret
= ff_request_frame(ctx
->inputs
[0]);
175 /* flush the lavr delay buffer */
176 if (ret
== AVERROR_EOF
&& s
->avr
) {
178 int nb_samples
= av_rescale_rnd(avresample_get_delay(s
->avr
),
179 outlink
->sample_rate
,
180 ctx
->inputs
[0]->sample_rate
,
186 frame
= ff_get_audio_buffer(outlink
, nb_samples
);
188 return AVERROR(ENOMEM
);
190 ret
= avresample_convert(s
->avr
, frame
->extended_data
,
191 frame
->linesize
[0], nb_samples
,
194 av_frame_free(&frame
);
195 return (ret
== 0) ? AVERROR_EOF
: ret
;
198 frame
->pts
= s
->next_pts
;
199 return ff_filter_frame(outlink
, frame
);
204 static int filter_frame(AVFilterLink
*inlink
, AVFrame
*in
)
206 AVFilterContext
*ctx
= inlink
->dst
;
207 ResampleContext
*s
= ctx
->priv
;
208 AVFilterLink
*outlink
= ctx
->outputs
[0];
213 int delay
, nb_samples
;
215 /* maximum possible samples lavr can output */
216 delay
= avresample_get_delay(s
->avr
);
217 nb_samples
= av_rescale_rnd(in
->nb_samples
+ delay
,
218 outlink
->sample_rate
, inlink
->sample_rate
,
221 out
= ff_get_audio_buffer(outlink
, nb_samples
);
223 ret
= AVERROR(ENOMEM
);
227 ret
= avresample_convert(s
->avr
, out
->extended_data
, out
->linesize
[0],
228 nb_samples
, in
->extended_data
, in
->linesize
[0],
236 av_assert0(!avresample_available(s
->avr
));
238 if (s
->next_pts
== AV_NOPTS_VALUE
) {
239 if (in
->pts
== AV_NOPTS_VALUE
) {
240 av_log(ctx
, AV_LOG_WARNING
, "First timestamp is missing, "
244 s
->next_pts
= av_rescale_q(in
->pts
, inlink
->time_base
,
249 out
->nb_samples
= ret
;
250 if (in
->pts
!= AV_NOPTS_VALUE
) {
251 out
->pts
= av_rescale_q(in
->pts
, inlink
->time_base
,
252 outlink
->time_base
) -
253 av_rescale(delay
, outlink
->sample_rate
,
254 inlink
->sample_rate
);
256 out
->pts
= s
->next_pts
;
258 s
->next_pts
= out
->pts
+ out
->nb_samples
;
260 ret
= ff_filter_frame(outlink
, out
);
267 in
->format
= outlink
->format
;
268 ret
= ff_filter_frame(outlink
, in
);
275 static const AVFilterPad avfilter_af_resample_inputs
[] = {
278 .type
= AVMEDIA_TYPE_AUDIO
,
279 .filter_frame
= filter_frame
,
284 static const AVFilterPad avfilter_af_resample_outputs
[] = {
287 .type
= AVMEDIA_TYPE_AUDIO
,
288 .config_props
= config_output
,
289 .request_frame
= request_frame
294 AVFilter avfilter_af_resample
= {
296 .description
= NULL_IF_CONFIG_SMALL("Audio resampling and conversion."),
297 .priv_size
= sizeof(ResampleContext
),
301 .query_formats
= query_formats
,
303 .inputs
= avfilter_af_resample_inputs
,
304 .outputs
= avfilter_af_resample_outputs
,