2 * JACK Audio Connection Kit input device
3 * Copyright (c) 2009 Samalyse
4 * Author: Olivier Guilyardi <olivier samalyse com>
6 * This file is part of Libav.
8 * Libav is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU Lesser General Public
10 * License as published by the Free Software Foundation; either
11 * version 2.1 of the License, or (at your option) any later version.
13 * Libav is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
16 * Lesser General Public License for more details.
18 * You should have received a copy of the GNU Lesser General Public
19 * License along with Libav; if not, write to the Free Software
20 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
24 #include <semaphore.h>
25 #include <jack/jack.h>
27 #include "libavutil/log.h"
28 #include "libavutil/fifo.h"
29 #include "libavutil/opt.h"
30 #include "libavutil/time.h"
31 #include "libavcodec/avcodec.h"
32 #include "libavformat/avformat.h"
33 #include "libavformat/internal.h"
34 #include "timefilter.h"
37 * Size of the internal FIFO buffers as a number of audio packets
39 #define FIFO_PACKETS_NUM 16
43 jack_client_t
* client
;
46 jack_nframes_t sample_rate
;
47 jack_nframes_t buffer_size
;
50 TimeFilter
* timefilter
;
51 AVFifoBuffer
* new_pkts
;
52 AVFifoBuffer
* filled_pkts
;
57 static int process_callback(jack_nframes_t nframes
, void *arg
)
59 /* Warning: this function runs in realtime. One mustn't allocate memory here
60 * or do any other thing that could block. */
65 jack_nframes_t latency
, cycle_delay
;
73 /* The approximate delay since the hardware interrupt as a number of frames */
74 cycle_delay
= jack_frames_since_cycle_start(self
->client
);
76 /* Retrieve filtered cycle time */
77 cycle_time
= ff_timefilter_update(self
->timefilter
,
78 av_gettime() / 1000000.0 - (double) cycle_delay
/ self
->sample_rate
,
81 /* Check if an empty packet is available, and if there's enough space to send it back once filled */
82 if ((av_fifo_size(self
->new_pkts
) < sizeof(pkt
)) || (av_fifo_space(self
->filled_pkts
) < sizeof(pkt
))) {
87 /* Retrieve empty (but allocated) packet */
88 av_fifo_generic_read(self
->new_pkts
, &pkt
, sizeof(pkt
), NULL
);
90 pkt_data
= (float *) pkt
.data
;
93 /* Copy and interleave audio data from the JACK buffer into the packet */
94 for (i
= 0; i
< self
->nports
; i
++) {
95 #if HAVE_JACK_PORT_GET_LATENCY_RANGE
96 jack_latency_range_t range
;
97 jack_port_get_latency_range(self
->ports
[i
], JackCaptureLatency
, &range
);
100 latency
+= jack_port_get_total_latency(self
->client
, self
->ports
[i
]);
102 buffer
= jack_port_get_buffer(self
->ports
[i
], self
->buffer_size
);
103 for (j
= 0; j
< self
->buffer_size
; j
++)
104 pkt_data
[j
* self
->nports
+ i
] = buffer
[j
];
107 /* Timestamp the packet with the cycle start time minus the average latency */
108 pkt
.pts
= (cycle_time
- (double) latency
/ (self
->nports
* self
->sample_rate
)) * 1000000.0;
110 /* Send the now filled packet back, and increase packet counter */
111 av_fifo_generic_write(self
->filled_pkts
, &pkt
, sizeof(pkt
), NULL
);
112 sem_post(&self
->packet_count
);
117 static void shutdown_callback(void *arg
)
119 JackData
*self
= arg
;
123 static int xrun_callback(void *arg
)
125 JackData
*self
= arg
;
127 ff_timefilter_reset(self
->timefilter
);
131 static int supply_new_packets(JackData
*self
, AVFormatContext
*context
)
134 int test
, pkt_size
= self
->buffer_size
* self
->nports
* sizeof(float);
136 /* Supply the process callback with new empty packets, by filling the new
137 * packets FIFO buffer with as many packets as possible. process_callback()
138 * can't do this by itself, because it can't allocate memory in realtime. */
139 while (av_fifo_space(self
->new_pkts
) >= sizeof(pkt
)) {
140 if ((test
= av_new_packet(&pkt
, pkt_size
)) < 0) {
141 av_log(context
, AV_LOG_ERROR
, "Could not create packet of size %d\n", pkt_size
);
144 av_fifo_generic_write(self
->new_pkts
, &pkt
, sizeof(pkt
), NULL
);
149 static int start_jack(AVFormatContext
*context
)
151 JackData
*self
= context
->priv_data
;
152 jack_status_t status
;
156 /* Register as a JACK client, using the context filename as client name. */
157 self
->client
= jack_client_open(context
->filename
, JackNullOption
, &status
);
159 av_log(context
, AV_LOG_ERROR
, "Unable to register as a JACK client\n");
163 sem_init(&self
->packet_count
, 0, 0);
165 self
->sample_rate
= jack_get_sample_rate(self
->client
);
166 self
->ports
= av_malloc(self
->nports
* sizeof(*self
->ports
));
167 self
->buffer_size
= jack_get_buffer_size(self
->client
);
169 /* Register JACK ports */
170 for (i
= 0; i
< self
->nports
; i
++) {
172 snprintf(str
, sizeof(str
), "input_%d", i
+ 1);
173 self
->ports
[i
] = jack_port_register(self
->client
, str
,
174 JACK_DEFAULT_AUDIO_TYPE
,
176 if (!self
->ports
[i
]) {
177 av_log(context
, AV_LOG_ERROR
, "Unable to register port %s:%s\n",
178 context
->filename
, str
);
179 jack_client_close(self
->client
);
184 /* Register JACK callbacks */
185 jack_set_process_callback(self
->client
, process_callback
, self
);
186 jack_on_shutdown(self
->client
, shutdown_callback
, self
);
187 jack_set_xrun_callback(self
->client
, xrun_callback
, self
);
189 /* Create time filter */
190 period
= (double) self
->buffer_size
/ self
->sample_rate
;
191 o
= 2 * M_PI
* 1.5 * period
; /// bandwidth: 1.5Hz
192 self
->timefilter
= ff_timefilter_new (1.0 / self
->sample_rate
, sqrt(2 * o
), o
* o
);
194 /* Create FIFO buffers */
195 self
->filled_pkts
= av_fifo_alloc(FIFO_PACKETS_NUM
* sizeof(AVPacket
));
196 /* New packets FIFO with one extra packet for safety against underruns */
197 self
->new_pkts
= av_fifo_alloc((FIFO_PACKETS_NUM
+ 1) * sizeof(AVPacket
));
198 if ((test
= supply_new_packets(self
, context
))) {
199 jack_client_close(self
->client
);
207 static void free_pkt_fifo(AVFifoBuffer
*fifo
)
210 while (av_fifo_size(fifo
)) {
211 av_fifo_generic_read(fifo
, &pkt
, sizeof(pkt
), NULL
);
212 av_free_packet(&pkt
);
217 static void stop_jack(JackData
*self
)
221 jack_deactivate(self
->client
);
222 jack_client_close(self
->client
);
224 sem_destroy(&self
->packet_count
);
225 free_pkt_fifo(self
->new_pkts
);
226 free_pkt_fifo(self
->filled_pkts
);
227 av_freep(&self
->ports
);
228 ff_timefilter_destroy(self
->timefilter
);
231 static int audio_read_header(AVFormatContext
*context
)
233 JackData
*self
= context
->priv_data
;
237 if ((test
= start_jack(context
)))
240 stream
= avformat_new_stream(context
, NULL
);
243 return AVERROR(ENOMEM
);
246 stream
->codec
->codec_type
= AVMEDIA_TYPE_AUDIO
;
248 stream
->codec
->codec_id
= AV_CODEC_ID_PCM_F32BE
;
250 stream
->codec
->codec_id
= AV_CODEC_ID_PCM_F32LE
;
252 stream
->codec
->sample_rate
= self
->sample_rate
;
253 stream
->codec
->channels
= self
->nports
;
255 avpriv_set_pts_info(stream
, 64, 1, 1000000); /* 64 bits pts in us */
259 static int audio_read_packet(AVFormatContext
*context
, AVPacket
*pkt
)
261 JackData
*self
= context
->priv_data
;
262 struct timespec timeout
= {0, 0};
265 /* Activate the JACK client on first packet read. Activating the JACK client
266 * means that process_callback() starts to get called at regular interval.
267 * If we activate it in audio_read_header(), we're actually reading audio data
268 * from the device before instructed to, and that may result in an overrun. */
269 if (!self
->activated
) {
270 if (!jack_activate(self
->client
)) {
272 av_log(context
, AV_LOG_INFO
,
273 "JACK client registered and activated (rate=%dHz, buffer_size=%d frames)\n",
274 self
->sample_rate
, self
->buffer_size
);
276 av_log(context
, AV_LOG_ERROR
, "Unable to activate JACK client\n");
281 /* Wait for a packet coming back from process_callback(), if one isn't available yet */
282 timeout
.tv_sec
= av_gettime() / 1000000 + 2;
283 if (sem_timedwait(&self
->packet_count
, &timeout
)) {
284 if (errno
== ETIMEDOUT
) {
285 av_log(context
, AV_LOG_ERROR
,
286 "Input error: timed out when waiting for JACK process callback output\n");
288 av_log(context
, AV_LOG_ERROR
, "Error while waiting for audio packet: %s\n",
292 av_log(context
, AV_LOG_ERROR
, "Input error: JACK server is gone\n");
297 if (self
->pkt_xrun
) {
298 av_log(context
, AV_LOG_WARNING
, "Audio packet xrun\n");
302 if (self
->jack_xrun
) {
303 av_log(context
, AV_LOG_WARNING
, "JACK xrun\n");
307 /* Retrieve the packet filled with audio data by process_callback() */
308 av_fifo_generic_read(self
->filled_pkts
, pkt
, sizeof(*pkt
), NULL
);
310 if ((test
= supply_new_packets(self
, context
)))
316 static int audio_read_close(AVFormatContext
*context
)
318 JackData
*self
= context
->priv_data
;
323 #define OFFSET(x) offsetof(JackData, x)
324 static const AVOption options
[] = {
325 { "channels", "Number of audio channels.", OFFSET(nports
), AV_OPT_TYPE_INT
, { .i64
= 2 }, 1, INT_MAX
, AV_OPT_FLAG_DECODING_PARAM
},
329 static const AVClass jack_indev_class
= {
330 .class_name
= "JACK indev",
331 .item_name
= av_default_item_name
,
333 .version
= LIBAVUTIL_VERSION_INT
,
336 AVInputFormat ff_jack_demuxer
= {
338 .long_name
= NULL_IF_CONFIG_SMALL("JACK Audio Connection Kit"),
339 .priv_data_size
= sizeof(JackData
),
340 .read_header
= audio_read_header
,
341 .read_packet
= audio_read_packet
,
342 .read_close
= audio_read_close
,
343 .flags
= AVFMT_NOFILE
,
344 .priv_class
= &jack_indev_class
,