blob: c5251aaad8442ae3692048f649e8eeeed267d189 [file] [log] [blame]
Daniel Macke5779992010-03-04 19:46:13 +01001/*
2 * This program is free software; you can redistribute it and/or modify
3 * it under the terms of the GNU General Public License as published by
4 * the Free Software Foundation; either version 2 of the License, or
5 * (at your option) any later version.
6 *
7 * This program is distributed in the hope that it will be useful,
8 * but WITHOUT ANY WARRANTY; without even the implied warranty of
9 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
10 * GNU General Public License for more details.
11 *
12 * You should have received a copy of the GNU General Public License
13 * along with this program; if not, write to the Free Software
14 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
15 *
16 */
17
Daniel Mackc731bc92011-09-14 12:46:57 +020018#include <linux/gfp.h>
19#include <linux/init.h>
Takashi Iwai80c8a2a2012-01-09 11:37:20 +010020#include <linux/ratelimit.h>
Daniel Mackc731bc92011-09-14 12:46:57 +020021#include <linux/usb.h>
22#include <linux/usb/audio.h>
Daniel Mack8fdff6a2012-04-12 13:51:11 +020023#include <linux/slab.h>
Daniel Mackc731bc92011-09-14 12:46:57 +020024
25#include <sound/core.h>
26#include <sound/pcm.h>
Daniel Mack8fdff6a2012-04-12 13:51:11 +020027#include <sound/pcm_params.h>
Daniel Mackc731bc92011-09-14 12:46:57 +020028
29#include "usbaudio.h"
30#include "helper.h"
31#include "card.h"
32#include "endpoint.h"
33#include "pcm.h"
Daniel Mack2b58fd52012-09-04 10:23:07 +020034#include "quirks.h"
Daniel Mackc731bc92011-09-14 12:46:57 +020035
Daniel Mack8fdff6a2012-04-12 13:51:11 +020036#define EP_FLAG_RUNNING 1
Takashi Iwaif58161b2012-11-08 08:52:45 +010037#define EP_FLAG_STOPPING 2
Daniel Mack8fdff6a2012-04-12 13:51:11 +020038
Daniel Mackc731bc92011-09-14 12:46:57 +020039/*
Daniel Mack94c27212012-04-12 13:51:15 +020040 * snd_usb_endpoint is a model that abstracts everything related to an
41 * USB endpoint and its streaming.
42 *
43 * There are functions to activate and deactivate the streaming URBs and
Daniel Mack07a5e9d2012-04-24 19:31:24 +020044 * optional callbacks to let the pcm logic handle the actual content of the
Daniel Mack94c27212012-04-12 13:51:15 +020045 * packets for playback and record. Thus, the bus streaming and the audio
46 * handlers are fully decoupled.
47 *
Daniel Mack07a5e9d2012-04-24 19:31:24 +020048 * There are two different types of endpoints in audio applications.
Daniel Mack94c27212012-04-12 13:51:15 +020049 *
50 * SND_USB_ENDPOINT_TYPE_DATA handles full audio data payload for both
51 * inbound and outbound traffic.
52 *
Daniel Mack07a5e9d2012-04-24 19:31:24 +020053 * SND_USB_ENDPOINT_TYPE_SYNC endpoints are for inbound traffic only and
54 * expect the payload to carry Q10.14 / Q16.16 formatted sync information
55 * (3 or 4 bytes).
Daniel Mack94c27212012-04-12 13:51:15 +020056 *
Daniel Mack07a5e9d2012-04-24 19:31:24 +020057 * Each endpoint has to be configured prior to being used by calling
58 * snd_usb_endpoint_set_params().
Daniel Mack94c27212012-04-12 13:51:15 +020059 *
60 * The model incorporates a reference counting, so that multiple users
61 * can call snd_usb_endpoint_start() and snd_usb_endpoint_stop(), and
62 * only the first user will effectively start the URBs, and only the last
Daniel Mack07a5e9d2012-04-24 19:31:24 +020063 * one to stop it will tear the URBs down again.
Daniel Mack94c27212012-04-12 13:51:15 +020064 */
65
66/*
Daniel Mackc731bc92011-09-14 12:46:57 +020067 * convert a sampling rate into our full speed format (fs/1000 in Q16.16)
68 * this will overflow at approx 524 kHz
69 */
70static inline unsigned get_usb_full_speed_rate(unsigned int rate)
71{
72 return ((rate << 13) + 62) / 125;
73}
74
75/*
76 * convert a sampling rate into USB high speed format (fs/8000 in Q16.16)
77 * this will overflow at approx 4 MHz
78 */
79static inline unsigned get_usb_high_speed_rate(unsigned int rate)
80{
81 return ((rate << 10) + 62) / 125;
82}
83
84/*
Daniel Mackc731bc92011-09-14 12:46:57 +020085 * release a urb data
86 */
87static void release_urb_ctx(struct snd_urb_ctx *u)
88{
Daniel Mackd399ff92012-04-12 13:51:13 +020089 if (u->buffer_size)
90 usb_free_coherent(u->ep->chip->dev, u->buffer_size,
91 u->urb->transfer_buffer,
92 u->urb->transfer_dma);
93 usb_free_urb(u->urb);
94 u->urb = NULL;
Daniel Mackc731bc92011-09-14 12:46:57 +020095}
96
97static const char *usb_error_string(int err)
98{
99 switch (err) {
100 case -ENODEV:
101 return "no device";
102 case -ENOENT:
103 return "endpoint not enabled";
104 case -EPIPE:
105 return "endpoint stalled";
106 case -ENOSPC:
107 return "not enough bandwidth";
108 case -ESHUTDOWN:
109 return "device disabled";
110 case -EHOSTUNREACH:
111 return "device suspended";
112 case -EINVAL:
113 case -EAGAIN:
114 case -EFBIG:
115 case -EMSGSIZE:
116 return "internal error";
117 default:
118 return "unknown error";
119 }
120}
121
Daniel Mack94c27212012-04-12 13:51:15 +0200122/**
123 * snd_usb_endpoint_implicit_feedback_sink: Report endpoint usage type
124 *
Daniel Mack07a5e9d2012-04-24 19:31:24 +0200125 * @ep: The snd_usb_endpoint
Daniel Mack94c27212012-04-12 13:51:15 +0200126 *
127 * Determine whether an endpoint is driven by an implicit feedback
128 * data endpoint source.
129 */
Eldad Zack98ae4722013-04-03 23:18:52 +0200130int snd_usb_endpoint_implicit_feedback_sink(struct snd_usb_endpoint *ep)
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200131{
132 return ep->sync_master &&
133 ep->sync_master->type == SND_USB_ENDPOINT_TYPE_DATA &&
134 ep->type == SND_USB_ENDPOINT_TYPE_DATA &&
135 usb_pipeout(ep->pipe);
136}
137
Daniel Mack94c27212012-04-12 13:51:15 +0200138/*
139 * For streaming based on information derived from sync endpoints,
140 * prepare_outbound_urb_sizes() will call next_packet_size() to
141 * determine the number of samples to be sent in the next packet.
142 *
143 * For implicit feedback, next_packet_size() is unused.
144 */
Daniel Mack245baf92012-08-30 18:52:30 +0200145int snd_usb_endpoint_next_packet_size(struct snd_usb_endpoint *ep)
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200146{
147 unsigned long flags;
148 int ret;
149
150 if (ep->fill_max)
151 return ep->maxframesize;
152
153 spin_lock_irqsave(&ep->lock, flags);
154 ep->phase = (ep->phase & 0xffff)
155 + (ep->freqm << ep->datainterval);
156 ret = min(ep->phase >> 16, ep->maxframesize);
157 spin_unlock_irqrestore(&ep->lock, flags);
158
159 return ret;
160}
161
162static void retire_outbound_urb(struct snd_usb_endpoint *ep,
163 struct snd_urb_ctx *urb_ctx)
164{
165 if (ep->retire_data_urb)
166 ep->retire_data_urb(ep->data_subs, urb_ctx->urb);
167}
168
169static void retire_inbound_urb(struct snd_usb_endpoint *ep,
170 struct snd_urb_ctx *urb_ctx)
171{
172 struct urb *urb = urb_ctx->urb;
173
Daniel Mack2b58fd52012-09-04 10:23:07 +0200174 if (unlikely(ep->skip_packets > 0)) {
175 ep->skip_packets--;
176 return;
177 }
178
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200179 if (ep->sync_slave)
180 snd_usb_handle_sync_urb(ep->sync_slave, ep, urb);
181
182 if (ep->retire_data_urb)
183 ep->retire_data_urb(ep->data_subs, urb);
184}
185
Ricard Wanderlof5cf310e2015-10-19 08:52:51 +0200186static void prepare_silent_urb(struct snd_usb_endpoint *ep,
187 struct snd_urb_ctx *ctx)
188{
189 struct urb *urb = ctx->urb;
190 unsigned int offs = 0;
Ricard Wanderlofe0570442015-10-19 08:52:53 +0200191 unsigned int extra = 0;
192 __le32 packet_length;
Ricard Wanderlof5cf310e2015-10-19 08:52:51 +0200193 int i;
194
Ricard Wanderlofe0570442015-10-19 08:52:53 +0200195 /* For tx_length_quirk, put packet length at start of packet */
196 if (ep->chip->tx_length_quirk)
197 extra = sizeof(packet_length);
198
Ricard Wanderlof5cf310e2015-10-19 08:52:51 +0200199 for (i = 0; i < ctx->packets; ++i) {
Ricard Wanderlofe0570442015-10-19 08:52:53 +0200200 unsigned int offset;
201 unsigned int length;
Ricard Wanderlof5cf310e2015-10-19 08:52:51 +0200202 int counts;
203
204 if (ctx->packet_size[i])
205 counts = ctx->packet_size[i];
206 else
207 counts = snd_usb_endpoint_next_packet_size(ep);
208
Ricard Wanderlofe0570442015-10-19 08:52:53 +0200209 length = counts * ep->stride; /* number of silent bytes */
210 offset = offs * ep->stride + extra * i;
211 urb->iso_frame_desc[i].offset = offset;
212 urb->iso_frame_desc[i].length = length + extra;
213 if (extra) {
214 packet_length = cpu_to_le32(length);
215 memcpy(urb->transfer_buffer + offset,
216 &packet_length, sizeof(packet_length));
217 }
218 memset(urb->transfer_buffer + offset + extra,
219 ep->silence_value, length);
Ricard Wanderlof5cf310e2015-10-19 08:52:51 +0200220 offs += counts;
221 }
222
223 urb->number_of_packets = ctx->packets;
Ricard Wanderlofe0570442015-10-19 08:52:53 +0200224 urb->transfer_buffer_length = offs * ep->stride + ctx->packets * extra;
Ricard Wanderlof5cf310e2015-10-19 08:52:51 +0200225}
226
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200227/*
228 * Prepare a PLAYBACK urb for submission to the bus.
229 */
230static void prepare_outbound_urb(struct snd_usb_endpoint *ep,
231 struct snd_urb_ctx *ctx)
232{
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200233 struct urb *urb = ctx->urb;
234 unsigned char *cp = urb->transfer_buffer;
235
236 urb->dev = ep->chip->dev; /* we need to set this at each time */
237
238 switch (ep->type) {
239 case SND_USB_ENDPOINT_TYPE_DATA:
240 if (ep->prepare_data_urb) {
241 ep->prepare_data_urb(ep->data_subs, urb);
242 } else {
243 /* no data provider, so send silence */
Ricard Wanderlof5cf310e2015-10-19 08:52:51 +0200244 prepare_silent_urb(ep, ctx);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200245 }
246 break;
247
248 case SND_USB_ENDPOINT_TYPE_SYNC:
249 if (snd_usb_get_speed(ep->chip->dev) >= USB_SPEED_HIGH) {
250 /*
251 * fill the length and offset of each urb descriptor.
252 * the fixed 12.13 frequency is passed as 16.16 through the pipe.
253 */
254 urb->iso_frame_desc[0].length = 4;
255 urb->iso_frame_desc[0].offset = 0;
256 cp[0] = ep->freqn;
257 cp[1] = ep->freqn >> 8;
258 cp[2] = ep->freqn >> 16;
259 cp[3] = ep->freqn >> 24;
260 } else {
261 /*
262 * fill the length and offset of each urb descriptor.
263 * the fixed 10.14 frequency is passed through the pipe.
264 */
265 urb->iso_frame_desc[0].length = 3;
266 urb->iso_frame_desc[0].offset = 0;
267 cp[0] = ep->freqn >> 2;
268 cp[1] = ep->freqn >> 10;
269 cp[2] = ep->freqn >> 18;
270 }
271
272 break;
273 }
274}
275
276/*
277 * Prepare a CAPTURE or SYNC urb for submission to the bus.
278 */
279static inline void prepare_inbound_urb(struct snd_usb_endpoint *ep,
280 struct snd_urb_ctx *urb_ctx)
281{
282 int i, offs;
283 struct urb *urb = urb_ctx->urb;
284
285 urb->dev = ep->chip->dev; /* we need to set this at each time */
286
287 switch (ep->type) {
288 case SND_USB_ENDPOINT_TYPE_DATA:
289 offs = 0;
290 for (i = 0; i < urb_ctx->packets; i++) {
291 urb->iso_frame_desc[i].offset = offs;
292 urb->iso_frame_desc[i].length = ep->curpacksize;
293 offs += ep->curpacksize;
294 }
295
296 urb->transfer_buffer_length = offs;
297 urb->number_of_packets = urb_ctx->packets;
298 break;
299
300 case SND_USB_ENDPOINT_TYPE_SYNC:
301 urb->iso_frame_desc[0].length = min(4u, ep->syncmaxsize);
302 urb->iso_frame_desc[0].offset = 0;
303 break;
304 }
305}
306
Daniel Mack94c27212012-04-12 13:51:15 +0200307/*
Daniel Mack07a5e9d2012-04-24 19:31:24 +0200308 * Send output urbs that have been prepared previously. URBs are dequeued
Daniel Mack94c27212012-04-12 13:51:15 +0200309 * from ep->ready_playback_urbs and in case there there aren't any available
310 * or there are no packets that have been prepared, this function does
311 * nothing.
312 *
Daniel Mack07a5e9d2012-04-24 19:31:24 +0200313 * The reason why the functionality of sending and preparing URBs is separated
314 * is that host controllers don't guarantee the order in which they return
315 * inbound and outbound packets to their submitters.
Daniel Mack94c27212012-04-12 13:51:15 +0200316 *
317 * This function is only used for implicit feedback endpoints. For endpoints
Daniel Mack07a5e9d2012-04-24 19:31:24 +0200318 * driven by dedicated sync endpoints, URBs are immediately re-submitted
319 * from their completion handler.
Daniel Mack94c27212012-04-12 13:51:15 +0200320 */
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200321static void queue_pending_output_urbs(struct snd_usb_endpoint *ep)
322{
323 while (test_bit(EP_FLAG_RUNNING, &ep->flags)) {
324
325 unsigned long flags;
Andrew Morton68853fa2012-04-24 08:10:10 +0200326 struct snd_usb_packet_info *uninitialized_var(packet);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200327 struct snd_urb_ctx *ctx = NULL;
328 struct urb *urb;
329 int err, i;
330
331 spin_lock_irqsave(&ep->lock, flags);
332 if (ep->next_packet_read_pos != ep->next_packet_write_pos) {
333 packet = ep->next_packet + ep->next_packet_read_pos;
334 ep->next_packet_read_pos++;
335 ep->next_packet_read_pos %= MAX_URBS;
336
337 /* take URB out of FIFO */
338 if (!list_empty(&ep->ready_playback_urbs))
339 ctx = list_first_entry(&ep->ready_playback_urbs,
340 struct snd_urb_ctx, ready_list);
341 }
342 spin_unlock_irqrestore(&ep->lock, flags);
343
344 if (ctx == NULL)
345 return;
346
347 list_del_init(&ctx->ready_list);
348 urb = ctx->urb;
349
350 /* copy over the length information */
351 for (i = 0; i < packet->packets; i++)
352 ctx->packet_size[i] = packet->packet_size[i];
353
Daniel Mack94c27212012-04-12 13:51:15 +0200354 /* call the data handler to fill in playback data */
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200355 prepare_outbound_urb(ep, ctx);
356
357 err = usb_submit_urb(ctx->urb, GFP_ATOMIC);
358 if (err < 0)
Takashi Iwai0ba41d92014-02-26 13:02:17 +0100359 usb_audio_err(ep->chip,
360 "Unable to submit urb #%d: %d (urb %p)\n",
361 ctx->index, err, ctx->urb);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200362 else
363 set_bit(ctx->index, &ep->active_mask);
364 }
365}
366
367/*
368 * complete callback for urbs
369 */
370static void snd_complete_urb(struct urb *urb)
371{
372 struct snd_urb_ctx *ctx = urb->context;
373 struct snd_usb_endpoint *ep = ctx->ep;
Takashi Iwai67e22502014-11-06 13:04:49 +0100374 struct snd_pcm_substream *substream;
375 unsigned long flags;
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200376 int err;
377
378 if (unlikely(urb->status == -ENOENT || /* unlinked */
379 urb->status == -ENODEV || /* device removed */
380 urb->status == -ECONNRESET || /* unlinked */
Takashi Iwai47ab1542015-08-25 16:09:00 +0200381 urb->status == -ESHUTDOWN)) /* device disabled */
382 goto exit_clear;
383 /* device disconnected */
384 if (unlikely(atomic_read(&ep->chip->shutdown)))
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200385 goto exit_clear;
386
387 if (usb_pipeout(ep->pipe)) {
388 retire_outbound_urb(ep, ctx);
389 /* can be stopped during retire callback */
390 if (unlikely(!test_bit(EP_FLAG_RUNNING, &ep->flags)))
391 goto exit_clear;
392
Eldad Zack98ae4722013-04-03 23:18:52 +0200393 if (snd_usb_endpoint_implicit_feedback_sink(ep)) {
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200394 spin_lock_irqsave(&ep->lock, flags);
395 list_add_tail(&ctx->ready_list, &ep->ready_playback_urbs);
396 spin_unlock_irqrestore(&ep->lock, flags);
397 queue_pending_output_urbs(ep);
398
399 goto exit_clear;
400 }
401
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200402 prepare_outbound_urb(ep, ctx);
403 } else {
404 retire_inbound_urb(ep, ctx);
405 /* can be stopped during retire callback */
406 if (unlikely(!test_bit(EP_FLAG_RUNNING, &ep->flags)))
407 goto exit_clear;
408
409 prepare_inbound_urb(ep, ctx);
410 }
411
412 err = usb_submit_urb(urb, GFP_ATOMIC);
413 if (err == 0)
414 return;
415
Takashi Iwai0ba41d92014-02-26 13:02:17 +0100416 usb_audio_err(ep->chip, "cannot submit urb (err = %d)\n", err);
Takashi Iwai67e22502014-11-06 13:04:49 +0100417 if (ep->data_subs && ep->data_subs->pcm_substream) {
418 substream = ep->data_subs->pcm_substream;
Takashi Iwai1fb85102014-11-07 17:08:28 +0100419 snd_pcm_stop_xrun(substream);
Takashi Iwai67e22502014-11-06 13:04:49 +0100420 }
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200421
422exit_clear:
423 clear_bit(ctx->index, &ep->active_mask);
424}
425
Daniel Mack94c27212012-04-12 13:51:15 +0200426/**
Daniel Mack07a5e9d2012-04-24 19:31:24 +0200427 * snd_usb_add_endpoint: Add an endpoint to an USB audio chip
Daniel Mack94c27212012-04-12 13:51:15 +0200428 *
429 * @chip: The chip
430 * @alts: The USB host interface
431 * @ep_num: The number of the endpoint to use
432 * @direction: SNDRV_PCM_STREAM_PLAYBACK or SNDRV_PCM_STREAM_CAPTURE
433 * @type: SND_USB_ENDPOINT_TYPE_DATA or SND_USB_ENDPOINT_TYPE_SYNC
434 *
435 * If the requested endpoint has not been added to the given chip before,
436 * a new instance is created. Otherwise, a pointer to the previoulsy
437 * created instance is returned. In case of any error, NULL is returned.
438 *
439 * New endpoints will be added to chip->ep_list and must be freed by
440 * calling snd_usb_endpoint_free().
Takashi Iwai447d6272016-03-15 15:20:58 +0100441 *
442 * For SND_USB_ENDPOINT_TYPE_SYNC, the caller needs to guarantee that
443 * bNumEndpoints > 1 beforehand.
Daniel Mack94c27212012-04-12 13:51:15 +0200444 */
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200445struct snd_usb_endpoint *snd_usb_add_endpoint(struct snd_usb_audio *chip,
446 struct usb_host_interface *alts,
447 int ep_num, int direction, int type)
448{
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200449 struct snd_usb_endpoint *ep;
Daniel Mack68e67f42012-07-12 13:08:40 +0200450 int is_playback = direction == SNDRV_PCM_STREAM_PLAYBACK;
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200451
Eldad Zacke7e58df2013-08-03 10:51:15 +0200452 if (WARN_ON(!alts))
453 return NULL;
454
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200455 mutex_lock(&chip->mutex);
456
Eldad Zack88766f02013-04-03 23:18:49 +0200457 list_for_each_entry(ep, &chip->ep_list, list) {
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200458 if (ep->ep_num == ep_num &&
459 ep->iface == alts->desc.bInterfaceNumber &&
Eldad Zackdf23a242013-10-06 22:31:13 +0200460 ep->altsetting == alts->desc.bAlternateSetting) {
Takashi Iwai0ba41d92014-02-26 13:02:17 +0100461 usb_audio_dbg(ep->chip,
462 "Re-using EP %x in iface %d,%d @%p\n",
Eldad Zackdf23a242013-10-06 22:31:13 +0200463 ep_num, ep->iface, ep->altsetting, ep);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200464 goto __exit_unlock;
465 }
466 }
467
Takashi Iwai0ba41d92014-02-26 13:02:17 +0100468 usb_audio_dbg(chip, "Creating new %s %s endpoint #%x\n",
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200469 is_playback ? "playback" : "capture",
470 type == SND_USB_ENDPOINT_TYPE_DATA ? "data" : "sync",
471 ep_num);
472
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200473 ep = kzalloc(sizeof(*ep), GFP_KERNEL);
474 if (!ep)
475 goto __exit_unlock;
476
477 ep->chip = chip;
478 spin_lock_init(&ep->lock);
479 ep->type = type;
480 ep->ep_num = ep_num;
481 ep->iface = alts->desc.bInterfaceNumber;
Eldad Zackdf23a242013-10-06 22:31:13 +0200482 ep->altsetting = alts->desc.bAlternateSetting;
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200483 INIT_LIST_HEAD(&ep->ready_playback_urbs);
484 ep_num &= USB_ENDPOINT_NUMBER_MASK;
485
486 if (is_playback)
487 ep->pipe = usb_sndisocpipe(chip->dev, ep_num);
488 else
489 ep->pipe = usb_rcvisocpipe(chip->dev, ep_num);
490
491 if (type == SND_USB_ENDPOINT_TYPE_SYNC) {
492 if (get_endpoint(alts, 1)->bLength >= USB_DT_ENDPOINT_AUDIO_SIZE &&
493 get_endpoint(alts, 1)->bRefresh >= 1 &&
494 get_endpoint(alts, 1)->bRefresh <= 9)
495 ep->syncinterval = get_endpoint(alts, 1)->bRefresh;
496 else if (snd_usb_get_speed(chip->dev) == USB_SPEED_FULL)
497 ep->syncinterval = 1;
498 else if (get_endpoint(alts, 1)->bInterval >= 1 &&
499 get_endpoint(alts, 1)->bInterval <= 16)
500 ep->syncinterval = get_endpoint(alts, 1)->bInterval - 1;
501 else
502 ep->syncinterval = 3;
503
504 ep->syncmaxsize = le16_to_cpu(get_endpoint(alts, 1)->wMaxPacketSize);
505 }
506
507 list_add_tail(&ep->list, &chip->ep_list);
508
509__exit_unlock:
510 mutex_unlock(&chip->mutex);
511
512 return ep;
513}
514
515/*
516 * wait until all urbs are processed.
517 */
518static int wait_clear_urbs(struct snd_usb_endpoint *ep)
519{
520 unsigned long end_time = jiffies + msecs_to_jiffies(1000);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200521 int alive;
522
523 do {
Joe Perches190006f2012-11-16 23:35:16 -0800524 alive = bitmap_weight(&ep->active_mask, ep->nurbs);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200525 if (!alive)
526 break;
527
528 schedule_timeout_uninterruptible(1);
529 } while (time_before(jiffies, end_time));
530
531 if (alive)
Takashi Iwai0ba41d92014-02-26 13:02:17 +0100532 usb_audio_err(ep->chip,
533 "timeout: still %d active urbs on EP #%x\n",
534 alive, ep->ep_num);
Takashi Iwaif58161b2012-11-08 08:52:45 +0100535 clear_bit(EP_FLAG_STOPPING, &ep->flags);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200536
Ioan-Adrian Ratiube4e3ae2017-01-05 00:37:46 +0200537 ep->data_subs = NULL;
538 ep->sync_slave = NULL;
539 ep->retire_data_urb = NULL;
540 ep->prepare_data_urb = NULL;
541
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200542 return 0;
543}
544
Takashi Iwaif58161b2012-11-08 08:52:45 +0100545/* sync the pending stop operation;
546 * this function itself doesn't trigger the stop operation
547 */
548void snd_usb_endpoint_sync_pending_stop(struct snd_usb_endpoint *ep)
549{
550 if (ep && test_bit(EP_FLAG_STOPPING, &ep->flags))
551 wait_clear_urbs(ep);
552}
553
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200554/*
555 * unlink active urbs.
556 */
Takashi Iwaiccc16962012-11-21 08:22:52 +0100557static int deactivate_urbs(struct snd_usb_endpoint *ep, bool force)
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200558{
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200559 unsigned int i;
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200560
Takashi Iwai47ab1542015-08-25 16:09:00 +0200561 if (!force && atomic_read(&ep->chip->shutdown)) /* to be sure... */
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200562 return -EBADFD;
563
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200564 clear_bit(EP_FLAG_RUNNING, &ep->flags);
565
566 INIT_LIST_HEAD(&ep->ready_playback_urbs);
567 ep->next_packet_read_pos = 0;
568 ep->next_packet_write_pos = 0;
569
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200570 for (i = 0; i < ep->nurbs; i++) {
571 if (test_bit(i, &ep->active_mask)) {
572 if (!test_and_set_bit(i, &ep->unlink_mask)) {
573 struct urb *u = ep->urb[i].urb;
Takashi Iwaiccc16962012-11-21 08:22:52 +0100574 usb_unlink_urb(u);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200575 }
576 }
577 }
578
579 return 0;
580}
581
582/*
583 * release an endpoint's urbs
584 */
585static void release_urbs(struct snd_usb_endpoint *ep, int force)
586{
587 int i;
588
589 /* route incoming urbs to nirvana */
590 ep->retire_data_urb = NULL;
591 ep->prepare_data_urb = NULL;
592
593 /* stop urbs */
Takashi Iwaiccc16962012-11-21 08:22:52 +0100594 deactivate_urbs(ep, force);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200595 wait_clear_urbs(ep);
596
597 for (i = 0; i < ep->nurbs; i++)
598 release_urb_ctx(&ep->urb[i]);
599
600 if (ep->syncbuf)
601 usb_free_coherent(ep->chip->dev, SYNC_URBS * 4,
602 ep->syncbuf, ep->sync_dma);
603
604 ep->syncbuf = NULL;
605 ep->nurbs = 0;
606}
607
Daniel Mack94c27212012-04-12 13:51:15 +0200608/*
609 * configure a data endpoint
610 */
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200611static int data_ep_set_params(struct snd_usb_endpoint *ep,
Dylan Reid35ec7aa22012-09-18 09:49:47 -0700612 snd_pcm_format_t pcm_format,
613 unsigned int channels,
614 unsigned int period_bytes,
Alan Stern976b6c02013-09-24 15:51:58 -0400615 unsigned int frames_per_period,
616 unsigned int periods_per_buffer,
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200617 struct audioformat *fmt,
618 struct snd_usb_endpoint *sync_ep)
619{
Alan Stern976b6c02013-09-24 15:51:58 -0400620 unsigned int maxsize, minsize, packs_per_ms, max_packs_per_urb;
621 unsigned int max_packs_per_period, urbs_per_period, urb_packs;
622 unsigned int max_urbs, i;
Dylan Reid35ec7aa22012-09-18 09:49:47 -0700623 int frame_bits = snd_pcm_format_physical_width(pcm_format) * channels;
Ricard Wanderlof759c90f2015-10-19 08:52:54 +0200624 int tx_length_quirk = (ep->chip->tx_length_quirk &&
625 usb_pipeout(ep->pipe));
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200626
Daniel Mackd24f5062013-04-17 00:01:38 +0800627 if (pcm_format == SNDRV_PCM_FORMAT_DSD_U16_LE && fmt->dsd_dop) {
628 /*
629 * When operating in DSD DOP mode, the size of a sample frame
630 * in hardware differs from the actual physical format width
631 * because we need to make room for the DOP markers.
632 */
633 frame_bits += channels << 3;
634 }
635
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200636 ep->datainterval = fmt->datainterval;
637 ep->stride = frame_bits >> 3;
Dylan Reid35ec7aa22012-09-18 09:49:47 -0700638 ep->silence_value = pcm_format == SNDRV_PCM_FORMAT_U8 ? 0x80 : 0;
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200639
Clemens Ladisch57e6dae2013-08-08 11:24:55 +0200640 /* assume max. frequency is 25% higher than nominal */
641 ep->freqmax = ep->freqn + (ep->freqn >> 2);
Ricard Wanderlofab309652015-10-11 20:54:51 +0200642 /* Round up freqmax to nearest integer in order to calculate maximum
643 * packet size, which must represent a whole number of frames.
644 * This is accomplished by adding 0x0.ffff before converting the
645 * Q16.16 format into integer.
646 * In order to accurately calculate the maximum packet size when
647 * the data interval is more than 1 (i.e. ep->datainterval > 0),
648 * multiply by the data interval prior to rounding. For instance,
649 * a freqmax of 41 kHz will result in a max packet size of 6 (5.125)
650 * frames with a data interval of 1, but 11 (10.25) frames with a
651 * data interval of 2.
652 * (ep->freqmax << ep->datainterval overflows at 8.192 MHz for the
653 * maximum datainterval value of 3, at USB full speed, higher for
654 * USB high speed, noting that ep->freqmax is in units of
655 * frames per packet in Q16.16 format.)
656 */
657 maxsize = (((ep->freqmax << ep->datainterval) + 0xffff) >> 16) *
658 (frame_bits >> 3);
Ricard Wanderlof759c90f2015-10-19 08:52:54 +0200659 if (tx_length_quirk)
660 maxsize += sizeof(__le32); /* Space for length descriptor */
Clemens Ladisch57e6dae2013-08-08 11:24:55 +0200661 /* but wMaxPacketSize might reduce this */
662 if (ep->maxpacksize && ep->maxpacksize < maxsize) {
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200663 /* whatever fits into a max. size packet */
Ricard Wanderlof759c90f2015-10-19 08:52:54 +0200664 unsigned int data_maxsize = maxsize = ep->maxpacksize;
665
666 if (tx_length_quirk)
667 /* Need to remove the length descriptor to calc freq */
668 data_maxsize -= sizeof(__le32);
669 ep->freqmax = (data_maxsize / (frame_bits >> 3))
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200670 << (16 - ep->datainterval);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200671 }
672
673 if (ep->fill_max)
674 ep->curpacksize = ep->maxpacksize;
675 else
676 ep->curpacksize = maxsize;
677
Alan Stern976b6c02013-09-24 15:51:58 -0400678 if (snd_usb_get_speed(ep->chip->dev) != USB_SPEED_FULL) {
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200679 packs_per_ms = 8 >> ep->datainterval;
Alan Stern976b6c02013-09-24 15:51:58 -0400680 max_packs_per_urb = MAX_PACKS_HS;
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200681 } else {
Alan Stern976b6c02013-09-24 15:51:58 -0400682 packs_per_ms = 1;
683 max_packs_per_urb = MAX_PACKS;
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200684 }
Eldad Zack98ae4722013-04-03 23:18:52 +0200685 if (sync_ep && !snd_usb_endpoint_implicit_feedback_sink(ep))
Alan Stern976b6c02013-09-24 15:51:58 -0400686 max_packs_per_urb = min(max_packs_per_urb,
687 1U << sync_ep->syncinterval);
688 max_packs_per_urb = max(1u, max_packs_per_urb >> ep->datainterval);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200689
Alan Stern976b6c02013-09-24 15:51:58 -0400690 /*
691 * Capture endpoints need to use small URBs because there's no way
692 * to tell in advance where the next period will end, and we don't
693 * want the next URB to complete much after the period ends.
694 *
695 * Playback endpoints with implicit sync much use the same parameters
696 * as their corresponding capture endpoint.
697 */
698 if (usb_pipein(ep->pipe) ||
699 snd_usb_endpoint_implicit_feedback_sink(ep)) {
700
Thomas Pugliesea93455e2013-11-26 13:58:15 -0600701 urb_packs = packs_per_ms;
702 /*
703 * Wireless devices can poll at a max rate of once per 4ms.
704 * For dataintervals less than 5, increase the packet count to
705 * allow the host controller to use bursting to fill in the
706 * gaps.
707 */
708 if (snd_usb_get_speed(ep->chip->dev) == USB_SPEED_WIRELESS) {
709 int interval = ep->datainterval;
710 while (interval < 5) {
711 urb_packs <<= 1;
712 ++interval;
713 }
714 }
Alan Stern976b6c02013-09-24 15:51:58 -0400715 /* make capture URBs <= 1 ms and smaller than a period */
Thomas Pugliesea93455e2013-11-26 13:58:15 -0600716 urb_packs = min(max_packs_per_urb, urb_packs);
Alan Stern976b6c02013-09-24 15:51:58 -0400717 while (urb_packs > 1 && urb_packs * maxsize >= period_bytes)
718 urb_packs >>= 1;
719 ep->nurbs = MAX_URBS;
720
721 /*
722 * Playback endpoints without implicit sync are adjusted so that
723 * a period fits as evenly as possible in the smallest number of
724 * URBs. The total number of URBs is adjusted to the size of the
725 * ALSA buffer, subject to the MAX_URBS and MAX_QUEUE limits.
726 */
727 } else {
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200728 /* determine how small a packet can be */
Alan Stern976b6c02013-09-24 15:51:58 -0400729 minsize = (ep->freqn >> (16 - ep->datainterval)) *
730 (frame_bits >> 3);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200731 /* with sync from device, assume it can be 12% lower */
732 if (sync_ep)
733 minsize -= minsize >> 3;
734 minsize = max(minsize, 1u);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200735
Alan Stern976b6c02013-09-24 15:51:58 -0400736 /* how many packets will contain an entire ALSA period? */
737 max_packs_per_period = DIV_ROUND_UP(period_bytes, minsize);
738
739 /* how many URBs will contain a period? */
740 urbs_per_period = DIV_ROUND_UP(max_packs_per_period,
741 max_packs_per_urb);
742 /* how many packets are needed in each URB? */
743 urb_packs = DIV_ROUND_UP(max_packs_per_period, urbs_per_period);
744
745 /* limit the number of frames in a single URB */
746 ep->max_urb_frames = DIV_ROUND_UP(frames_per_period,
747 urbs_per_period);
748
749 /* try to use enough URBs to contain an entire ALSA buffer */
750 max_urbs = min((unsigned) MAX_URBS,
751 MAX_QUEUE * packs_per_ms / urb_packs);
752 ep->nurbs = min(max_urbs, urbs_per_period * periods_per_buffer);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200753 }
754
755 /* allocate and initialize data urbs */
756 for (i = 0; i < ep->nurbs; i++) {
757 struct snd_urb_ctx *u = &ep->urb[i];
758 u->index = i;
759 u->ep = ep;
Alan Stern976b6c02013-09-24 15:51:58 -0400760 u->packets = urb_packs;
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200761 u->buffer_size = maxsize * u->packets;
762
763 if (fmt->fmt_type == UAC_FORMAT_TYPE_II)
764 u->packets++; /* for transfer delimiter */
765 u->urb = usb_alloc_urb(u->packets, GFP_KERNEL);
766 if (!u->urb)
767 goto out_of_memory;
768
769 u->urb->transfer_buffer =
770 usb_alloc_coherent(ep->chip->dev, u->buffer_size,
771 GFP_KERNEL, &u->urb->transfer_dma);
772 if (!u->urb->transfer_buffer)
773 goto out_of_memory;
774 u->urb->pipe = ep->pipe;
Clemens Ladischc75c5ab2013-04-27 12:10:32 +0200775 u->urb->transfer_flags = URB_NO_TRANSFER_DMA_MAP;
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200776 u->urb->interval = 1 << ep->datainterval;
777 u->urb->context = u;
778 u->urb->complete = snd_complete_urb;
779 INIT_LIST_HEAD(&u->ready_list);
780 }
781
782 return 0;
783
784out_of_memory:
785 release_urbs(ep, 0);
786 return -ENOMEM;
787}
788
Daniel Mack94c27212012-04-12 13:51:15 +0200789/*
790 * configure a sync endpoint
791 */
Eldad Zack93721032013-10-06 22:31:06 +0200792static int sync_ep_set_params(struct snd_usb_endpoint *ep)
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200793{
794 int i;
795
796 ep->syncbuf = usb_alloc_coherent(ep->chip->dev, SYNC_URBS * 4,
797 GFP_KERNEL, &ep->sync_dma);
798 if (!ep->syncbuf)
799 return -ENOMEM;
800
801 for (i = 0; i < SYNC_URBS; i++) {
802 struct snd_urb_ctx *u = &ep->urb[i];
803 u->index = i;
804 u->ep = ep;
805 u->packets = 1;
806 u->urb = usb_alloc_urb(1, GFP_KERNEL);
807 if (!u->urb)
808 goto out_of_memory;
809 u->urb->transfer_buffer = ep->syncbuf + i * 4;
810 u->urb->transfer_dma = ep->sync_dma + i * 4;
811 u->urb->transfer_buffer_length = 4;
812 u->urb->pipe = ep->pipe;
Clemens Ladischc75c5ab2013-04-27 12:10:32 +0200813 u->urb->transfer_flags = URB_NO_TRANSFER_DMA_MAP;
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200814 u->urb->number_of_packets = 1;
815 u->urb->interval = 1 << ep->syncinterval;
816 u->urb->context = u;
817 u->urb->complete = snd_complete_urb;
818 }
819
820 ep->nurbs = SYNC_URBS;
821
822 return 0;
823
824out_of_memory:
825 release_urbs(ep, 0);
826 return -ENOMEM;
827}
828
Daniel Mack94c27212012-04-12 13:51:15 +0200829/**
Daniel Mack07a5e9d2012-04-24 19:31:24 +0200830 * snd_usb_endpoint_set_params: configure an snd_usb_endpoint
Daniel Mack94c27212012-04-12 13:51:15 +0200831 *
Daniel Mack07a5e9d2012-04-24 19:31:24 +0200832 * @ep: the snd_usb_endpoint to configure
Dylan Reid35ec7aa22012-09-18 09:49:47 -0700833 * @pcm_format: the audio fomat.
834 * @channels: the number of audio channels.
835 * @period_bytes: the number of bytes in one alsa period.
Alan Stern976b6c02013-09-24 15:51:58 -0400836 * @period_frames: the number of frames in one alsa period.
837 * @buffer_periods: the number of periods in one alsa buffer.
Dylan Reid35ec7aa22012-09-18 09:49:47 -0700838 * @rate: the frame rate.
Daniel Mack07a5e9d2012-04-24 19:31:24 +0200839 * @fmt: the USB audio format information
840 * @sync_ep: the sync endpoint to use, if any
Daniel Mack94c27212012-04-12 13:51:15 +0200841 *
Daniel Mack07a5e9d2012-04-24 19:31:24 +0200842 * Determine the number of URBs to be used on this endpoint.
Daniel Mack94c27212012-04-12 13:51:15 +0200843 * An endpoint must be configured before it can be started.
844 * An endpoint that is already running can not be reconfigured.
845 */
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200846int snd_usb_endpoint_set_params(struct snd_usb_endpoint *ep,
Dylan Reid35ec7aa22012-09-18 09:49:47 -0700847 snd_pcm_format_t pcm_format,
848 unsigned int channels,
849 unsigned int period_bytes,
Alan Stern976b6c02013-09-24 15:51:58 -0400850 unsigned int period_frames,
851 unsigned int buffer_periods,
Dylan Reid35ec7aa22012-09-18 09:49:47 -0700852 unsigned int rate,
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200853 struct audioformat *fmt,
854 struct snd_usb_endpoint *sync_ep)
855{
856 int err;
857
858 if (ep->use_count != 0) {
Takashi Iwai0ba41d92014-02-26 13:02:17 +0100859 usb_audio_warn(ep->chip,
860 "Unable to change format on ep #%x: already in use\n",
861 ep->ep_num);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200862 return -EBUSY;
863 }
864
865 /* release old buffers, if any */
866 release_urbs(ep, 0);
867
868 ep->datainterval = fmt->datainterval;
869 ep->maxpacksize = fmt->maxpacksize;
Takashi Iwai85f71932012-04-13 12:41:54 +0200870 ep->fill_max = !!(fmt->attributes & UAC_EP_CS_ATTR_FILL_MAX);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200871
872 if (snd_usb_get_speed(ep->chip->dev) == USB_SPEED_FULL)
Dylan Reid35ec7aa22012-09-18 09:49:47 -0700873 ep->freqn = get_usb_full_speed_rate(rate);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200874 else
Dylan Reid35ec7aa22012-09-18 09:49:47 -0700875 ep->freqn = get_usb_high_speed_rate(rate);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200876
877 /* calculate the frequency in 16.16 format */
878 ep->freqm = ep->freqn;
879 ep->freqshift = INT_MIN;
880
881 ep->phase = 0;
882
883 switch (ep->type) {
884 case SND_USB_ENDPOINT_TYPE_DATA:
Dylan Reid35ec7aa22012-09-18 09:49:47 -0700885 err = data_ep_set_params(ep, pcm_format, channels,
Alan Stern976b6c02013-09-24 15:51:58 -0400886 period_bytes, period_frames,
887 buffer_periods, fmt, sync_ep);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200888 break;
889 case SND_USB_ENDPOINT_TYPE_SYNC:
Eldad Zack93721032013-10-06 22:31:06 +0200890 err = sync_ep_set_params(ep);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200891 break;
892 default:
893 err = -EINVAL;
894 }
895
Takashi Iwai0ba41d92014-02-26 13:02:17 +0100896 usb_audio_dbg(ep->chip,
897 "Setting params for ep #%x (type %d, %d urbs), ret=%d\n",
898 ep->ep_num, ep->type, ep->nurbs, err);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200899
900 return err;
901}
902
Daniel Mack94c27212012-04-12 13:51:15 +0200903/**
904 * snd_usb_endpoint_start: start an snd_usb_endpoint
905 *
Ioan-Adrian Ratiube4e3ae2017-01-05 00:37:46 +0200906 * @ep: the endpoint to start
Daniel Mack94c27212012-04-12 13:51:15 +0200907 *
908 * A call to this function will increment the use count of the endpoint.
Daniel Mack07a5e9d2012-04-24 19:31:24 +0200909 * In case it is not already running, the URBs for this endpoint will be
Daniel Mack94c27212012-04-12 13:51:15 +0200910 * submitted. Otherwise, this function does nothing.
911 *
912 * Must be balanced to calls of snd_usb_endpoint_stop().
913 *
914 * Returns an error if the URB submission failed, 0 in all other cases.
915 */
Ioan-Adrian Ratiube4e3ae2017-01-05 00:37:46 +0200916int snd_usb_endpoint_start(struct snd_usb_endpoint *ep)
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200917{
918 int err;
919 unsigned int i;
920
Takashi Iwai47ab1542015-08-25 16:09:00 +0200921 if (atomic_read(&ep->chip->shutdown))
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200922 return -EBADFD;
923
924 /* already running? */
925 if (++ep->use_count != 1)
926 return 0;
927
Daniel Mack015618b2012-08-29 13:17:05 +0200928 /* just to be sure */
Takashi Iwaiccc16962012-11-21 08:22:52 +0100929 deactivate_urbs(ep, false);
Daniel Mack015618b2012-08-29 13:17:05 +0200930
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200931 ep->active_mask = 0;
932 ep->unlink_mask = 0;
933 ep->phase = 0;
934
Daniel Mack2b58fd52012-09-04 10:23:07 +0200935 snd_usb_endpoint_start_quirk(ep);
936
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200937 /*
938 * If this endpoint has a data endpoint as implicit feedback source,
939 * don't start the urbs here. Instead, mark them all as available,
Daniel Mack07a5e9d2012-04-24 19:31:24 +0200940 * wait for the record urbs to return and queue the playback urbs
941 * from that context.
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200942 */
943
944 set_bit(EP_FLAG_RUNNING, &ep->flags);
945
Eldad Zack98ae4722013-04-03 23:18:52 +0200946 if (snd_usb_endpoint_implicit_feedback_sink(ep)) {
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200947 for (i = 0; i < ep->nurbs; i++) {
948 struct snd_urb_ctx *ctx = ep->urb + i;
949 list_add_tail(&ctx->ready_list, &ep->ready_playback_urbs);
950 }
951
952 return 0;
953 }
954
955 for (i = 0; i < ep->nurbs; i++) {
956 struct urb *urb = ep->urb[i].urb;
957
958 if (snd_BUG_ON(!urb))
959 goto __error;
960
961 if (usb_pipeout(ep->pipe)) {
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200962 prepare_outbound_urb(ep, urb->context);
963 } else {
964 prepare_inbound_urb(ep, urb->context);
965 }
966
967 err = usb_submit_urb(urb, GFP_ATOMIC);
968 if (err < 0) {
Takashi Iwai0ba41d92014-02-26 13:02:17 +0100969 usb_audio_err(ep->chip,
970 "cannot submit urb %d, error %d: %s\n",
971 i, err, usb_error_string(err));
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200972 goto __error;
973 }
974 set_bit(i, &ep->active_mask);
975 }
976
977 return 0;
978
979__error:
980 clear_bit(EP_FLAG_RUNNING, &ep->flags);
981 ep->use_count--;
Takashi Iwaiccc16962012-11-21 08:22:52 +0100982 deactivate_urbs(ep, false);
Daniel Mack8fdff6a2012-04-12 13:51:11 +0200983 return -EPIPE;
984}
985
Daniel Mack94c27212012-04-12 13:51:15 +0200986/**
987 * snd_usb_endpoint_stop: stop an snd_usb_endpoint
988 *
989 * @ep: the endpoint to stop (may be NULL)
990 *
991 * A call to this function will decrement the use count of the endpoint.
992 * In case the last user has requested the endpoint stop, the URBs will
Daniel Mack07a5e9d2012-04-24 19:31:24 +0200993 * actually be deactivated.
Daniel Mack94c27212012-04-12 13:51:15 +0200994 *
995 * Must be balanced to calls of snd_usb_endpoint_start().
Takashi Iwaib2eb9502012-11-21 08:30:48 +0100996 *
997 * The caller needs to synchronize the pending stop operation via
998 * snd_usb_endpoint_sync_pending_stop().
Daniel Mack94c27212012-04-12 13:51:15 +0200999 */
Takashi Iwaib2eb9502012-11-21 08:30:48 +01001000void snd_usb_endpoint_stop(struct snd_usb_endpoint *ep)
Daniel Mack8fdff6a2012-04-12 13:51:11 +02001001{
1002 if (!ep)
1003 return;
1004
1005 if (snd_BUG_ON(ep->use_count == 0))
1006 return;
1007
Daniel Mack8fdff6a2012-04-12 13:51:11 +02001008 if (--ep->use_count == 0) {
Takashi Iwaiccc16962012-11-21 08:22:52 +01001009 deactivate_urbs(ep, false);
Takashi Iwaib2eb9502012-11-21 08:30:48 +01001010 set_bit(EP_FLAG_STOPPING, &ep->flags);
Daniel Mack8fdff6a2012-04-12 13:51:11 +02001011 }
1012}
1013
Daniel Mack94c27212012-04-12 13:51:15 +02001014/**
Daniel Mack94c27212012-04-12 13:51:15 +02001015 * snd_usb_endpoint_deactivate: deactivate an snd_usb_endpoint
1016 *
1017 * @ep: the endpoint to deactivate
1018 *
Eldad Zack9b7c5522013-10-06 22:31:10 +02001019 * If the endpoint is not currently in use, this functions will
1020 * deactivate its associated URBs.
Daniel Mack94c27212012-04-12 13:51:15 +02001021 *
1022 * In case of any active users, this functions does nothing.
Daniel Mack94c27212012-04-12 13:51:15 +02001023 */
Eldad Zack9b7c5522013-10-06 22:31:10 +02001024void snd_usb_endpoint_deactivate(struct snd_usb_endpoint *ep)
Daniel Mack8fdff6a2012-04-12 13:51:11 +02001025{
1026 if (!ep)
Eldad Zack9b7c5522013-10-06 22:31:10 +02001027 return;
Daniel Mack8fdff6a2012-04-12 13:51:11 +02001028
1029 if (ep->use_count != 0)
Eldad Zack9b7c5522013-10-06 22:31:10 +02001030 return;
Daniel Mack8fdff6a2012-04-12 13:51:11 +02001031
Eldad Zack239b9f72013-10-06 22:31:09 +02001032 deactivate_urbs(ep, true);
1033 wait_clear_urbs(ep);
Daniel Mack8fdff6a2012-04-12 13:51:11 +02001034}
1035
Daniel Mack07a5e9d2012-04-24 19:31:24 +02001036/**
Takashi Iwai92a586b2014-06-25 14:24:47 +02001037 * snd_usb_endpoint_release: Tear down an snd_usb_endpoint
1038 *
1039 * @ep: the endpoint to release
1040 *
1041 * This function does not care for the endpoint's use count but will tear
1042 * down all the streaming URBs immediately.
1043 */
1044void snd_usb_endpoint_release(struct snd_usb_endpoint *ep)
1045{
1046 release_urbs(ep, 1);
1047}
1048
1049/**
Daniel Mack07a5e9d2012-04-24 19:31:24 +02001050 * snd_usb_endpoint_free: Free the resources of an snd_usb_endpoint
Daniel Mack94c27212012-04-12 13:51:15 +02001051 *
Takashi Iwaia6cece92014-10-31 11:24:32 +01001052 * @ep: the endpoint to free
Daniel Mack94c27212012-04-12 13:51:15 +02001053 *
Takashi Iwai92a586b2014-06-25 14:24:47 +02001054 * This free all resources of the given ep.
Daniel Mack94c27212012-04-12 13:51:15 +02001055 */
Takashi Iwaia6cece92014-10-31 11:24:32 +01001056void snd_usb_endpoint_free(struct snd_usb_endpoint *ep)
Daniel Mack8fdff6a2012-04-12 13:51:11 +02001057{
Daniel Mack8fdff6a2012-04-12 13:51:11 +02001058 kfree(ep);
1059}
1060
Daniel Mack94c27212012-04-12 13:51:15 +02001061/**
1062 * snd_usb_handle_sync_urb: parse an USB sync packet
Daniel Mack8fdff6a2012-04-12 13:51:11 +02001063 *
Daniel Mack94c27212012-04-12 13:51:15 +02001064 * @ep: the endpoint to handle the packet
1065 * @sender: the sending endpoint
1066 * @urb: the received packet
1067 *
1068 * This function is called from the context of an endpoint that received
1069 * the packet and is used to let another endpoint object handle the payload.
Daniel Mack8fdff6a2012-04-12 13:51:11 +02001070 */
1071void snd_usb_handle_sync_urb(struct snd_usb_endpoint *ep,
1072 struct snd_usb_endpoint *sender,
1073 const struct urb *urb)
1074{
1075 int shift;
1076 unsigned int f;
1077 unsigned long flags;
1078
1079 snd_BUG_ON(ep == sender);
1080
Daniel Mack94c27212012-04-12 13:51:15 +02001081 /*
1082 * In case the endpoint is operating in implicit feedback mode, prepare
Daniel Mack07a5e9d2012-04-24 19:31:24 +02001083 * a new outbound URB that has the same layout as the received packet
1084 * and add it to the list of pending urbs. queue_pending_output_urbs()
1085 * will take care of them later.
Daniel Mack94c27212012-04-12 13:51:15 +02001086 */
Eldad Zack98ae4722013-04-03 23:18:52 +02001087 if (snd_usb_endpoint_implicit_feedback_sink(ep) &&
Daniel Mack8fdff6a2012-04-12 13:51:11 +02001088 ep->use_count != 0) {
1089
1090 /* implicit feedback case */
1091 int i, bytes = 0;
1092 struct snd_urb_ctx *in_ctx;
1093 struct snd_usb_packet_info *out_packet;
1094
1095 in_ctx = urb->context;
1096
1097 /* Count overall packet size */
1098 for (i = 0; i < in_ctx->packets; i++)
1099 if (urb->iso_frame_desc[i].status == 0)
1100 bytes += urb->iso_frame_desc[i].actual_length;
1101
1102 /*
1103 * skip empty packets. At least M-Audio's Fast Track Ultra stops
1104 * streaming once it received a 0-byte OUT URB
1105 */
1106 if (bytes == 0)
1107 return;
1108
1109 spin_lock_irqsave(&ep->lock, flags);
1110 out_packet = ep->next_packet + ep->next_packet_write_pos;
1111
1112 /*
1113 * Iterate through the inbound packet and prepare the lengths
1114 * for the output packet. The OUT packet we are about to send
Eldad Zack28acb122012-11-28 23:55:34 +01001115 * will have the same amount of payload bytes per stride as the
1116 * IN packet we just received. Since the actual size is scaled
1117 * by the stride, use the sender stride to calculate the length
1118 * in case the number of channels differ between the implicitly
1119 * fed-back endpoint and the synchronizing endpoint.
Daniel Mack8fdff6a2012-04-12 13:51:11 +02001120 */
1121
1122 out_packet->packets = in_ctx->packets;
1123 for (i = 0; i < in_ctx->packets; i++) {
1124 if (urb->iso_frame_desc[i].status == 0)
1125 out_packet->packet_size[i] =
Eldad Zack28acb122012-11-28 23:55:34 +01001126 urb->iso_frame_desc[i].actual_length / sender->stride;
Daniel Mack8fdff6a2012-04-12 13:51:11 +02001127 else
1128 out_packet->packet_size[i] = 0;
1129 }
1130
1131 ep->next_packet_write_pos++;
1132 ep->next_packet_write_pos %= MAX_URBS;
1133 spin_unlock_irqrestore(&ep->lock, flags);
1134 queue_pending_output_urbs(ep);
1135
1136 return;
1137 }
1138
Daniel Mack94c27212012-04-12 13:51:15 +02001139 /*
1140 * process after playback sync complete
1141 *
1142 * Full speed devices report feedback values in 10.14 format as samples
1143 * per frame, high speed devices in 16.16 format as samples per
1144 * microframe.
1145 *
1146 * Because the Audio Class 1 spec was written before USB 2.0, many high
1147 * speed devices use a wrong interpretation, some others use an
1148 * entirely different format.
1149 *
1150 * Therefore, we cannot predict what format any particular device uses
1151 * and must detect it automatically.
1152 */
Daniel Mack8fdff6a2012-04-12 13:51:11 +02001153
1154 if (urb->iso_frame_desc[0].status != 0 ||
1155 urb->iso_frame_desc[0].actual_length < 3)
1156 return;
1157
1158 f = le32_to_cpup(urb->transfer_buffer);
1159 if (urb->iso_frame_desc[0].actual_length == 3)
1160 f &= 0x00ffffff;
1161 else
1162 f &= 0x0fffffff;
1163
1164 if (f == 0)
1165 return;
1166
Daniel Mackca0dd272016-08-22 08:53:37 +02001167 if (unlikely(sender->tenor_fb_quirk)) {
Clemens Ladisch7040b6d2014-05-01 12:20:22 +02001168 /*
Daniel Mackca0dd272016-08-22 08:53:37 +02001169 * Devices based on Tenor 8802 chipsets (TEAC UD-H01
1170 * and others) sometimes change the feedback value
Clemens Ladisch7040b6d2014-05-01 12:20:22 +02001171 * by +/- 0x1.0000.
1172 */
1173 if (f < ep->freqn - 0x8000)
Daniel Mack36e1ac32016-08-22 08:53:38 +02001174 f += 0xf000;
Clemens Ladisch7040b6d2014-05-01 12:20:22 +02001175 else if (f > ep->freqn + 0x8000)
Daniel Mack36e1ac32016-08-22 08:53:38 +02001176 f -= 0xf000;
Clemens Ladisch7040b6d2014-05-01 12:20:22 +02001177 } else if (unlikely(ep->freqshift == INT_MIN)) {
Daniel Mack8fdff6a2012-04-12 13:51:11 +02001178 /*
1179 * The first time we see a feedback value, determine its format
1180 * by shifting it left or right until it matches the nominal
1181 * frequency value. This assumes that the feedback does not
1182 * differ from the nominal value more than +50% or -25%.
1183 */
1184 shift = 0;
1185 while (f < ep->freqn - ep->freqn / 4) {
1186 f <<= 1;
1187 shift++;
1188 }
1189 while (f > ep->freqn + ep->freqn / 2) {
1190 f >>= 1;
1191 shift--;
1192 }
1193 ep->freqshift = shift;
1194 } else if (ep->freqshift >= 0)
1195 f <<= ep->freqshift;
1196 else
1197 f >>= -ep->freqshift;
1198
1199 if (likely(f >= ep->freqn - ep->freqn / 8 && f <= ep->freqmax)) {
1200 /*
1201 * If the frequency looks valid, set it.
1202 * This value is referred to in prepare_playback_urb().
1203 */
1204 spin_lock_irqsave(&ep->lock, flags);
1205 ep->freqm = f;
1206 spin_unlock_irqrestore(&ep->lock, flags);
1207 } else {
1208 /*
1209 * Out of range; maybe the shift value is wrong.
1210 * Reset it so that we autodetect again the next time.
1211 */
1212 ep->freqshift = INT_MIN;
1213 }
1214}
1215