xref: /linux/sound/usb/midi2.c (revision b6a08b017f8c7723c7e4c3fc460a3a7bf5870b2c)
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  * MIDI 2.0 support
4  */
5 
6 #include <linux/bitops.h>
7 #include <linux/string.h>
8 #include <linux/init.h>
9 #include <linux/slab.h>
10 #include <linux/usb.h>
11 #include <linux/wait.h>
12 #include <linux/module.h>
13 #include <linux/moduleparam.h>
14 #include <linux/usb/audio.h>
15 #include <linux/usb/midi.h>
16 #include <linux/usb/midi-v2.h>
17 
18 #include <sound/core.h>
19 #include <sound/control.h>
20 #include <sound/ump.h>
21 #include "usbaudio.h"
22 #include "midi.h"
23 #include "midi2.h"
24 #include "helper.h"
25 
26 static bool midi2_enable = true;
27 module_param(midi2_enable, bool, 0444);
28 MODULE_PARM_DESC(midi2_enable, "Enable MIDI 2.0 support.");
29 
30 static bool midi2_ump_probe = true;
31 module_param(midi2_ump_probe, bool, 0444);
32 MODULE_PARM_DESC(midi2_ump_probe, "Probe UMP v1.1 support at first.");
33 
34 /* stream direction; just shorter names */
35 enum {
36 	STR_OUT = SNDRV_RAWMIDI_STREAM_OUTPUT,
37 	STR_IN = SNDRV_RAWMIDI_STREAM_INPUT
38 };
39 
40 #define NUM_URBS	8
41 
42 struct snd_usb_midi2_urb;
43 struct snd_usb_midi2_endpoint;
44 struct snd_usb_midi2_ump;
45 struct snd_usb_midi2_interface;
46 
47 /* URB context */
48 struct snd_usb_midi2_urb {
49 	struct urb *urb;
50 	struct snd_usb_midi2_endpoint *ep;
51 	unsigned int index;		/* array index */
52 };
53 
54 /* A USB MIDI input/output endpoint */
55 struct snd_usb_midi2_endpoint {
56 	struct usb_device *dev;
57 	const struct usb_ms20_endpoint_descriptor *ms_ep; /* reference to EP descriptor */
58 	struct snd_usb_midi2_endpoint *pair;	/* bidirectional pair EP */
59 	struct snd_usb_midi2_ump *rmidi;	/* assigned UMP EP pair */
60 	struct snd_ump_endpoint *ump;		/* assigned UMP EP */
61 	int direction;			/* direction (STR_IN/OUT) */
62 	unsigned int endpoint;		/* EP number */
63 	unsigned int pipe;		/* URB pipe */
64 	unsigned int packets;		/* packet buffer size in bytes */
65 	unsigned int interval;		/* interval for INT EP */
66 	wait_queue_head_t wait;		/* URB waiter */
67 	spinlock_t lock;		/* URB locking */
68 	struct snd_rawmidi_substream *substream; /* NULL when closed */
69 	unsigned int num_urbs;		/* number of allocated URBs */
70 	unsigned long urb_free;		/* bitmap for free URBs */
71 	unsigned long urb_free_mask;	/* bitmask for free URBs */
72 	atomic_t running;		/* running status */
73 	atomic_t suspended;		/* saved running status for suspend */
74 	bool disconnected;		/* shadow of umidi->disconnected */
75 	struct list_head list;		/* list to umidi->ep_list */
76 	struct snd_usb_midi2_urb urbs[NUM_URBS];
77 };
78 
79 /* A UMP endpoint - one or two USB MIDI endpoints are assigned */
80 struct snd_usb_midi2_ump {
81 	struct usb_device *dev;
82 	struct snd_usb_midi2_interface *umidi;	/* reference to MIDI iface */
83 	struct snd_ump_endpoint *ump;		/* assigned UMP EP object */
84 	struct snd_usb_midi2_endpoint *eps[2];	/* USB MIDI endpoints */
85 	int index;				/* rawmidi device index */
86 	unsigned char usb_block_id;		/* USB GTB id used for finding a pair */
87 	bool ump_parsed;			/* Parsed UMP 1.1 EP/FB info*/
88 	struct list_head list;		/* list to umidi->rawmidi_list */
89 };
90 
91 /* top-level instance per USB MIDI interface */
92 struct snd_usb_midi2_interface {
93 	struct snd_usb_audio *chip;	/* assigned USB-audio card */
94 	struct usb_interface *iface;	/* assigned USB interface */
95 	struct usb_host_interface *hostif;
96 	const char *blk_descs;		/* group terminal block descriptors */
97 	unsigned int blk_desc_size;	/* size of GTB descriptors */
98 	bool disconnected;
99 	struct list_head ep_list;	/* list of endpoints */
100 	struct list_head rawmidi_list;	/* list of UMP rawmidis */
101 	struct list_head list;		/* list to chip->midi_v2_list */
102 };
103 
104 /* submit URBs as much as possible; used for both input and output */
do_submit_urbs_locked(struct snd_usb_midi2_endpoint * ep,int (* prepare)(struct snd_usb_midi2_endpoint *,struct urb *))105 static void do_submit_urbs_locked(struct snd_usb_midi2_endpoint *ep,
106 				  int (*prepare)(struct snd_usb_midi2_endpoint *,
107 						 struct urb *))
108 {
109 	struct snd_usb_midi2_urb *ctx;
110 	int index, err = 0;
111 
112 	if (ep->disconnected)
113 		return;
114 
115 	while (ep->urb_free) {
116 		index = find_first_bit(&ep->urb_free, ep->num_urbs);
117 		if (index >= ep->num_urbs)
118 			return;
119 		ctx = &ep->urbs[index];
120 		err = prepare(ep, ctx->urb);
121 		if (err < 0)
122 			return;
123 		if (!ctx->urb->transfer_buffer_length)
124 			return;
125 		ctx->urb->dev = ep->dev;
126 		err = usb_submit_urb(ctx->urb, GFP_ATOMIC);
127 		if (err < 0) {
128 			dev_dbg(&ep->dev->dev,
129 				"usb_submit_urb error %d\n", err);
130 			return;
131 		}
132 		clear_bit(index, &ep->urb_free);
133 	}
134 }
135 
136 /* prepare for output submission: copy from rawmidi buffer to urb packet */
prepare_output_urb(struct snd_usb_midi2_endpoint * ep,struct urb * urb)137 static int prepare_output_urb(struct snd_usb_midi2_endpoint *ep,
138 			      struct urb *urb)
139 {
140 	int count;
141 
142 	count = snd_ump_transmit(ep->ump, urb->transfer_buffer,
143 				 ep->packets);
144 	if (count < 0) {
145 		dev_dbg(&ep->dev->dev, "rawmidi transmit error %d\n", count);
146 		return count;
147 	}
148 	cpu_to_le32_array((u32 *)urb->transfer_buffer, count >> 2);
149 	urb->transfer_buffer_length = count;
150 	return 0;
151 }
152 
submit_output_urbs_locked(struct snd_usb_midi2_endpoint * ep)153 static void submit_output_urbs_locked(struct snd_usb_midi2_endpoint *ep)
154 {
155 	do_submit_urbs_locked(ep, prepare_output_urb);
156 }
157 
158 /* URB completion for output; re-filling and re-submit */
output_urb_complete(struct urb * urb)159 static void output_urb_complete(struct urb *urb)
160 {
161 	struct snd_usb_midi2_urb *ctx = urb->context;
162 	struct snd_usb_midi2_endpoint *ep = ctx->ep;
163 
164 	guard(spinlock_irqsave)(&ep->lock);
165 	set_bit(ctx->index, &ep->urb_free);
166 	if (urb->status >= 0 && atomic_read(&ep->running))
167 		submit_output_urbs_locked(ep);
168 	if (ep->urb_free == ep->urb_free_mask)
169 		wake_up(&ep->wait);
170 }
171 
172 /* prepare for input submission: just set the buffer length */
prepare_input_urb(struct snd_usb_midi2_endpoint * ep,struct urb * urb)173 static int prepare_input_urb(struct snd_usb_midi2_endpoint *ep,
174 			     struct urb *urb)
175 {
176 	urb->transfer_buffer_length = ep->packets;
177 	return 0;
178 }
179 
submit_input_urbs_locked(struct snd_usb_midi2_endpoint * ep)180 static void submit_input_urbs_locked(struct snd_usb_midi2_endpoint *ep)
181 {
182 	do_submit_urbs_locked(ep, prepare_input_urb);
183 }
184 
185 /* URB completion for input; copy into rawmidi buffer and resubmit */
input_urb_complete(struct urb * urb)186 static void input_urb_complete(struct urb *urb)
187 {
188 	struct snd_usb_midi2_urb *ctx = urb->context;
189 	struct snd_usb_midi2_endpoint *ep = ctx->ep;
190 	int len;
191 
192 	guard(spinlock_irqsave)(&ep->lock);
193 	if (ep->disconnected || urb->status < 0)
194 		goto dequeue;
195 	len = urb->actual_length;
196 	len &= ~3; /* align UMP */
197 	if (len > ep->packets)
198 		len = ep->packets;
199 	if (len > 0) {
200 		le32_to_cpu_array((u32 *)urb->transfer_buffer, len >> 2);
201 		snd_ump_receive(ep->ump, (u32 *)urb->transfer_buffer, len);
202 	}
203  dequeue:
204 	set_bit(ctx->index, &ep->urb_free);
205 	submit_input_urbs_locked(ep);
206 	if (ep->urb_free == ep->urb_free_mask)
207 		wake_up(&ep->wait);
208 }
209 
210 /* URB submission helper; for both direction */
submit_io_urbs(struct snd_usb_midi2_endpoint * ep)211 static void submit_io_urbs(struct snd_usb_midi2_endpoint *ep)
212 {
213 	if (!ep)
214 		return;
215 	guard(spinlock_irqsave)(&ep->lock);
216 	if (ep->direction == STR_IN)
217 		submit_input_urbs_locked(ep);
218 	else
219 		submit_output_urbs_locked(ep);
220 }
221 
222 /* kill URBs for close, suspend and disconnect */
kill_midi_urbs(struct snd_usb_midi2_endpoint * ep,bool suspending)223 static void kill_midi_urbs(struct snd_usb_midi2_endpoint *ep, bool suspending)
224 {
225 	int i;
226 
227 	if (!ep)
228 		return;
229 	if (suspending)
230 		atomic_set(&ep->suspended, atomic_read(&ep->running));
231 	atomic_set(&ep->running, 0);
232 	for (i = 0; i < ep->num_urbs; i++) {
233 		if (!ep->urbs[i].urb)
234 			break;
235 		usb_kill_urb(ep->urbs[i].urb);
236 	}
237 }
238 
239 /* wait until all URBs get freed */
drain_urb_queue(struct snd_usb_midi2_endpoint * ep)240 static void drain_urb_queue(struct snd_usb_midi2_endpoint *ep)
241 {
242 	if (!ep)
243 		return;
244 	guard(spinlock_irq)(&ep->lock);
245 	atomic_set(&ep->running, 0);
246 	wait_event_lock_irq_timeout(ep->wait,
247 				    ep->disconnected ||
248 				    ep->urb_free == ep->urb_free_mask,
249 				    ep->lock, msecs_to_jiffies(500));
250 }
251 
252 /* release URBs for an EP */
free_midi_urbs(struct snd_usb_midi2_endpoint * ep)253 static void free_midi_urbs(struct snd_usb_midi2_endpoint *ep)
254 {
255 	struct snd_usb_midi2_urb *ctx;
256 	int i;
257 
258 	if (!ep)
259 		return;
260 	for (i = 0; i < NUM_URBS; ++i) {
261 		ctx = &ep->urbs[i];
262 		if (!ctx->urb)
263 			break;
264 		usb_free_coherent(ep->dev, ep->packets,
265 				  ctx->urb->transfer_buffer,
266 				  ctx->urb->transfer_dma);
267 		usb_free_urb(ctx->urb);
268 		ctx->urb = NULL;
269 	}
270 	ep->num_urbs = 0;
271 }
272 
273 /* allocate URBs for an EP */
274 /* the callers should handle allocation errors via free_midi_urbs() */
alloc_midi_urbs(struct snd_usb_midi2_endpoint * ep)275 static int alloc_midi_urbs(struct snd_usb_midi2_endpoint *ep)
276 {
277 	struct snd_usb_midi2_urb *ctx;
278 	void (*comp)(struct urb *urb);
279 	void *buffer;
280 	int i, err;
281 	int endpoint, len;
282 
283 	endpoint = ep->endpoint;
284 	len = ep->packets;
285 	if (ep->direction == STR_IN)
286 		comp = input_urb_complete;
287 	else
288 		comp = output_urb_complete;
289 
290 	ep->num_urbs = 0;
291 	ep->urb_free = ep->urb_free_mask = 0;
292 	for (i = 0; i < NUM_URBS; i++) {
293 		ctx = &ep->urbs[i];
294 		ctx->index = i;
295 		ctx->urb = usb_alloc_urb(0, GFP_KERNEL);
296 		if (!ctx->urb) {
297 			dev_err(&ep->dev->dev, "URB alloc failed\n");
298 			return -ENOMEM;
299 		}
300 		ctx->ep = ep;
301 		buffer = usb_alloc_coherent(ep->dev, len, GFP_KERNEL,
302 					    &ctx->urb->transfer_dma);
303 		if (!buffer) {
304 			dev_err(&ep->dev->dev,
305 				"URB buffer alloc failed (size %d)\n", len);
306 			return -ENOMEM;
307 		}
308 		if (ep->interval)
309 			usb_fill_int_urb(ctx->urb, ep->dev, ep->pipe,
310 					 buffer, len, comp, ctx, ep->interval);
311 		else
312 			usb_fill_bulk_urb(ctx->urb, ep->dev, ep->pipe,
313 					  buffer, len, comp, ctx);
314 		err = usb_urb_ep_type_check(ctx->urb);
315 		if (err < 0) {
316 			dev_err(&ep->dev->dev, "invalid MIDI EP %x\n",
317 				endpoint);
318 			return err;
319 		}
320 		ctx->urb->transfer_flags = URB_NO_TRANSFER_DMA_MAP;
321 		ep->num_urbs++;
322 	}
323 	ep->urb_free = ep->urb_free_mask = GENMASK(ep->num_urbs - 1, 0);
324 	return 0;
325 }
326 
327 static struct snd_usb_midi2_endpoint *
ump_to_endpoint(struct snd_ump_endpoint * ump,int dir)328 ump_to_endpoint(struct snd_ump_endpoint *ump, int dir)
329 {
330 	struct snd_usb_midi2_ump *rmidi = ump->private_data;
331 
332 	return rmidi->eps[dir];
333 }
334 
335 /* ump open callback */
snd_usb_midi_v2_open(struct snd_ump_endpoint * ump,int dir)336 static int snd_usb_midi_v2_open(struct snd_ump_endpoint *ump, int dir)
337 {
338 	struct snd_usb_midi2_endpoint *ep = ump_to_endpoint(ump, dir);
339 	int err = 0;
340 
341 	if (!ep || !ep->endpoint)
342 		return -ENODEV;
343 	if (ep->disconnected)
344 		return -EIO;
345 	if (ep->direction == STR_OUT) {
346 		err = alloc_midi_urbs(ep);
347 		if (err) {
348 			free_midi_urbs(ep);
349 			return err;
350 		}
351 	}
352 	return 0;
353 }
354 
355 /* ump close callback */
snd_usb_midi_v2_close(struct snd_ump_endpoint * ump,int dir)356 static void snd_usb_midi_v2_close(struct snd_ump_endpoint *ump, int dir)
357 {
358 	struct snd_usb_midi2_endpoint *ep = ump_to_endpoint(ump, dir);
359 
360 	if (ep->direction == STR_OUT) {
361 		kill_midi_urbs(ep, false);
362 		drain_urb_queue(ep);
363 		free_midi_urbs(ep);
364 	}
365 }
366 
367 /* ump trigger callback */
snd_usb_midi_v2_trigger(struct snd_ump_endpoint * ump,int dir,int up)368 static void snd_usb_midi_v2_trigger(struct snd_ump_endpoint *ump, int dir,
369 				    int up)
370 {
371 	struct snd_usb_midi2_endpoint *ep = ump_to_endpoint(ump, dir);
372 
373 	atomic_set(&ep->running, up);
374 	if (up && ep->direction == STR_OUT && !ep->disconnected)
375 		submit_io_urbs(ep);
376 }
377 
378 /* ump drain callback */
snd_usb_midi_v2_drain(struct snd_ump_endpoint * ump,int dir)379 static void snd_usb_midi_v2_drain(struct snd_ump_endpoint *ump, int dir)
380 {
381 	struct snd_usb_midi2_endpoint *ep = ump_to_endpoint(ump, dir);
382 
383 	drain_urb_queue(ep);
384 }
385 
386 /* allocate and start all input streams */
start_input_streams(struct snd_usb_midi2_interface * umidi)387 static int start_input_streams(struct snd_usb_midi2_interface *umidi)
388 {
389 	struct snd_usb_midi2_endpoint *ep;
390 	int err;
391 
392 	list_for_each_entry(ep, &umidi->ep_list, list) {
393 		if (ep->direction == STR_IN) {
394 			err = alloc_midi_urbs(ep);
395 			if (err < 0)
396 				goto error;
397 		}
398 	}
399 
400 	list_for_each_entry(ep, &umidi->ep_list, list) {
401 		if (ep->direction == STR_IN)
402 			submit_io_urbs(ep);
403 	}
404 
405 	return 0;
406 
407  error:
408 	list_for_each_entry(ep, &umidi->ep_list, list) {
409 		if (ep->direction == STR_IN)
410 			free_midi_urbs(ep);
411 	}
412 
413 	return err;
414 }
415 
416 static const struct snd_ump_ops snd_usb_midi_v2_ump_ops = {
417 	.open = snd_usb_midi_v2_open,
418 	.close = snd_usb_midi_v2_close,
419 	.trigger = snd_usb_midi_v2_trigger,
420 	.drain = snd_usb_midi_v2_drain,
421 };
422 
423 /* create a USB MIDI 2.0 endpoint object */
create_midi2_endpoint(struct snd_usb_midi2_interface * umidi,struct usb_host_endpoint * hostep,const struct usb_ms20_endpoint_descriptor * ms_ep)424 static int create_midi2_endpoint(struct snd_usb_midi2_interface *umidi,
425 				 struct usb_host_endpoint *hostep,
426 				 const struct usb_ms20_endpoint_descriptor *ms_ep)
427 {
428 	struct snd_usb_midi2_endpoint *ep;
429 	int endpoint, dir;
430 
431 	usb_audio_dbg(umidi->chip, "Creating an EP 0x%02x, #GTB=%d\n",
432 		      hostep->desc.bEndpointAddress,
433 		      ms_ep->bNumGrpTrmBlock);
434 
435 	ep = kzalloc_obj(*ep);
436 	if (!ep)
437 		return -ENOMEM;
438 
439 	spin_lock_init(&ep->lock);
440 	init_waitqueue_head(&ep->wait);
441 	ep->dev = umidi->chip->dev;
442 	endpoint = hostep->desc.bEndpointAddress;
443 	dir = (endpoint & USB_DIR_IN) ? STR_IN : STR_OUT;
444 
445 	ep->endpoint = endpoint;
446 	ep->direction = dir;
447 	ep->ms_ep = ms_ep;
448 	if (usb_endpoint_xfer_int(&hostep->desc))
449 		ep->interval = hostep->desc.bInterval;
450 	else
451 		ep->interval = 0;
452 	if (dir == STR_IN) {
453 		if (ep->interval)
454 			ep->pipe = usb_rcvintpipe(ep->dev, endpoint);
455 		else
456 			ep->pipe = usb_rcvbulkpipe(ep->dev, endpoint);
457 	} else {
458 		if (ep->interval)
459 			ep->pipe = usb_sndintpipe(ep->dev, endpoint);
460 		else
461 			ep->pipe = usb_sndbulkpipe(ep->dev, endpoint);
462 	}
463 	ep->packets = usb_maxpacket(ep->dev, ep->pipe);
464 	list_add_tail(&ep->list, &umidi->ep_list);
465 
466 	return 0;
467 }
468 
469 /* destructor for endpoint; from snd_usb_midi_v2_free() */
free_midi2_endpoint(struct snd_usb_midi2_endpoint * ep)470 static void free_midi2_endpoint(struct snd_usb_midi2_endpoint *ep)
471 {
472 	list_del(&ep->list);
473 	free_midi_urbs(ep);
474 	kfree(ep);
475 }
476 
477 /* call all endpoint destructors */
free_all_midi2_endpoints(struct snd_usb_midi2_interface * umidi)478 static void free_all_midi2_endpoints(struct snd_usb_midi2_interface *umidi)
479 {
480 	struct snd_usb_midi2_endpoint *ep;
481 
482 	while (!list_empty(&umidi->ep_list)) {
483 		ep = list_first_entry(&umidi->ep_list,
484 				      struct snd_usb_midi2_endpoint, list);
485 		free_midi2_endpoint(ep);
486 	}
487 }
488 
489 /* find a MIDI STREAMING descriptor with a given subtype */
find_usb_ms_endpoint_descriptor(struct usb_host_endpoint * hostep,unsigned char subtype)490 static void *find_usb_ms_endpoint_descriptor(struct usb_host_endpoint *hostep,
491 					     unsigned char subtype)
492 {
493 	unsigned char *extra = hostep->extra;
494 	int extralen = hostep->extralen;
495 
496 	while (extralen > 3) {
497 		struct usb_ms_endpoint_descriptor *ms_ep =
498 			(struct usb_ms_endpoint_descriptor *)extra;
499 		int length = ms_ep->bLength;
500 
501 		if (!length || length > extralen)
502 			break;
503 
504 		if (length > 3 &&
505 		    ms_ep->bDescriptorType == USB_DT_CS_ENDPOINT &&
506 		    ms_ep->bDescriptorSubtype == subtype)
507 			return ms_ep;
508 		extralen -= length;
509 		extra += length;
510 	}
511 	return NULL;
512 }
513 
514 /* get the full group terminal block descriptors and return the size */
get_group_terminal_block_descs(struct snd_usb_midi2_interface * umidi)515 static int get_group_terminal_block_descs(struct snd_usb_midi2_interface *umidi)
516 {
517 	struct usb_host_interface *hostif = umidi->hostif;
518 	struct usb_device *dev = umidi->chip->dev;
519 	struct usb_ms20_gr_trm_block_header_descriptor header = { 0 };
520 	unsigned char *data;
521 	int err, size;
522 
523 	err = snd_usb_ctl_msg(dev, usb_rcvctrlpipe(dev, 0),
524 			      USB_REQ_GET_DESCRIPTOR,
525 			      USB_RECIP_INTERFACE | USB_TYPE_STANDARD | USB_DIR_IN,
526 			      USB_DT_CS_GR_TRM_BLOCK << 8 | hostif->desc.bAlternateSetting,
527 			      hostif->desc.bInterfaceNumber,
528 			      &header, sizeof(header));
529 	if (err < 0)
530 		return err;
531 	size = __le16_to_cpu(header.wTotalLength);
532 	if (!size) {
533 		dev_err(&dev->dev, "Failed to get GTB descriptors for %d:%d\n",
534 			hostif->desc.bInterfaceNumber, hostif->desc.bAlternateSetting);
535 		return -EINVAL;
536 	}
537 
538 	data = kzalloc(size, GFP_KERNEL);
539 	if (!data)
540 		return -ENOMEM;
541 
542 	err = snd_usb_ctl_msg(dev, usb_rcvctrlpipe(dev, 0),
543 			      USB_REQ_GET_DESCRIPTOR,
544 			      USB_RECIP_INTERFACE | USB_TYPE_STANDARD | USB_DIR_IN,
545 			      USB_DT_CS_GR_TRM_BLOCK << 8 | hostif->desc.bAlternateSetting,
546 			      hostif->desc.bInterfaceNumber, data, size);
547 	if (err < 0) {
548 		kfree(data);
549 		return err;
550 	}
551 
552 	umidi->blk_descs = data;
553 	umidi->blk_desc_size = size;
554 	return 0;
555 }
556 
557 /* find the corresponding group terminal block descriptor */
558 static const struct usb_ms20_gr_trm_block_descriptor *
find_group_terminal_block(struct snd_usb_midi2_interface * umidi,int id)559 find_group_terminal_block(struct snd_usb_midi2_interface *umidi, int id)
560 {
561 	const unsigned char *data = umidi->blk_descs;
562 	int size = umidi->blk_desc_size;
563 	const struct usb_ms20_gr_trm_block_descriptor *desc;
564 
565 	size -= sizeof(struct usb_ms20_gr_trm_block_header_descriptor);
566 	data += sizeof(struct usb_ms20_gr_trm_block_header_descriptor);
567 	while (size > 0 && *data && *data <= size) {
568 		desc = (const struct usb_ms20_gr_trm_block_descriptor *)data;
569 		if (desc->bLength >= sizeof(*desc) &&
570 		    desc->bDescriptorType == USB_DT_CS_GR_TRM_BLOCK &&
571 		    desc->bDescriptorSubtype == USB_MS_GR_TRM_BLOCK &&
572 		    desc->bGrpTrmBlkID == id)
573 			return desc;
574 		size -= *data;
575 		data += *data;
576 	}
577 
578 	return NULL;
579 }
580 
581 /* fill up the information from GTB */
parse_group_terminal_block(struct snd_usb_midi2_ump * rmidi,const struct usb_ms20_gr_trm_block_descriptor * desc)582 static int parse_group_terminal_block(struct snd_usb_midi2_ump *rmidi,
583 				      const struct usb_ms20_gr_trm_block_descriptor *desc)
584 {
585 	struct snd_ump_endpoint *ump = rmidi->ump;
586 	unsigned int protocol, protocol_caps;
587 
588 	/* set default protocol */
589 	switch (desc->bMIDIProtocol) {
590 	case USB_MS_MIDI_PROTO_1_0_64:
591 	case USB_MS_MIDI_PROTO_1_0_64_JRTS:
592 	case USB_MS_MIDI_PROTO_1_0_128:
593 	case USB_MS_MIDI_PROTO_1_0_128_JRTS:
594 		protocol = SNDRV_UMP_EP_INFO_PROTO_MIDI1;
595 		break;
596 	case USB_MS_MIDI_PROTO_2_0:
597 	case USB_MS_MIDI_PROTO_2_0_JRTS:
598 		protocol = SNDRV_UMP_EP_INFO_PROTO_MIDI2;
599 		break;
600 	default:
601 		return 0;
602 	}
603 
604 	if (!ump->info.protocol)
605 		ump->info.protocol = protocol;
606 
607 	protocol_caps = protocol;
608 	switch (desc->bMIDIProtocol) {
609 	case USB_MS_MIDI_PROTO_1_0_64_JRTS:
610 	case USB_MS_MIDI_PROTO_1_0_128_JRTS:
611 	case USB_MS_MIDI_PROTO_2_0_JRTS:
612 		protocol_caps |= SNDRV_UMP_EP_INFO_PROTO_JRTS_TX |
613 			SNDRV_UMP_EP_INFO_PROTO_JRTS_RX;
614 		break;
615 	}
616 
617 	ump->info.protocol_caps |= protocol_caps;
618 	return 0;
619 }
620 
621 /* allocate and parse for each assigned group terminal block */
parse_group_terminal_blocks(struct snd_usb_midi2_interface * umidi)622 static int parse_group_terminal_blocks(struct snd_usb_midi2_interface *umidi)
623 {
624 	struct snd_usb_midi2_ump *rmidi;
625 	const struct usb_ms20_gr_trm_block_descriptor *desc;
626 	int err;
627 
628 	err = get_group_terminal_block_descs(umidi);
629 	if (err < 0)
630 		return err;
631 	if (!umidi->blk_descs)
632 		return 0;
633 
634 	list_for_each_entry(rmidi, &umidi->rawmidi_list, list) {
635 		desc = find_group_terminal_block(umidi, rmidi->usb_block_id);
636 		if (!desc)
637 			continue;
638 		err = parse_group_terminal_block(rmidi, desc);
639 		if (err < 0)
640 			return err;
641 	}
642 
643 	return 0;
644 }
645 
646 /* parse endpoints included in the given interface and create objects */
parse_midi_2_0_endpoints(struct snd_usb_midi2_interface * umidi)647 static int parse_midi_2_0_endpoints(struct snd_usb_midi2_interface *umidi)
648 {
649 	struct usb_host_interface *hostif = umidi->hostif;
650 	struct usb_host_endpoint *hostep;
651 	struct usb_ms20_endpoint_descriptor *ms_ep;
652 	int i, err;
653 
654 	for (i = 0; i < hostif->desc.bNumEndpoints; i++) {
655 		hostep = &hostif->endpoint[i];
656 		if (!usb_endpoint_xfer_bulk(&hostep->desc) &&
657 		    !usb_endpoint_xfer_int(&hostep->desc))
658 			continue;
659 		ms_ep = find_usb_ms_endpoint_descriptor(hostep, USB_MS_GENERAL_2_0);
660 		if (!ms_ep)
661 			continue;
662 		if (ms_ep->bLength <= sizeof(*ms_ep))
663 			continue;
664 		if (!ms_ep->bNumGrpTrmBlock)
665 			continue;
666 		if (ms_ep->bLength < sizeof(*ms_ep) + ms_ep->bNumGrpTrmBlock)
667 			continue;
668 		err = create_midi2_endpoint(umidi, hostep, ms_ep);
669 		if (err < 0)
670 			return err;
671 	}
672 	return 0;
673 }
674 
free_all_midi2_umps(struct snd_usb_midi2_interface * umidi)675 static void free_all_midi2_umps(struct snd_usb_midi2_interface *umidi)
676 {
677 	struct snd_usb_midi2_ump *rmidi;
678 
679 	while (!list_empty(&umidi->rawmidi_list)) {
680 		rmidi = list_first_entry(&umidi->rawmidi_list,
681 					 struct snd_usb_midi2_ump, list);
682 		list_del(&rmidi->list);
683 		kfree(rmidi);
684 	}
685 }
686 
create_midi2_ump(struct snd_usb_midi2_interface * umidi,struct snd_usb_midi2_endpoint * ep_in,struct snd_usb_midi2_endpoint * ep_out,int blk_id)687 static int create_midi2_ump(struct snd_usb_midi2_interface *umidi,
688 			    struct snd_usb_midi2_endpoint *ep_in,
689 			    struct snd_usb_midi2_endpoint *ep_out,
690 			    int blk_id)
691 {
692 	struct snd_usb_midi2_ump *rmidi;
693 	struct snd_ump_endpoint *ump;
694 	int input, output;
695 	char idstr[16];
696 	int err;
697 
698 	rmidi = kzalloc_obj(*rmidi);
699 	if (!rmidi)
700 		return -ENOMEM;
701 	INIT_LIST_HEAD(&rmidi->list);
702 	rmidi->dev = umidi->chip->dev;
703 	rmidi->umidi = umidi;
704 	rmidi->usb_block_id = blk_id;
705 
706 	rmidi->index = umidi->chip->num_rawmidis;
707 	snprintf(idstr, sizeof(idstr), "UMP %d", rmidi->index);
708 	input = ep_in ? 1 : 0;
709 	output = ep_out ? 1 : 0;
710 	err = snd_ump_endpoint_new(umidi->chip->card, idstr, rmidi->index,
711 				   output, input, &ump);
712 	if (err < 0) {
713 		usb_audio_dbg(umidi->chip, "Failed to create a UMP object\n");
714 		kfree(rmidi);
715 		return err;
716 	}
717 
718 	rmidi->ump = ump;
719 	umidi->chip->num_rawmidis++;
720 
721 	ump->private_data = rmidi;
722 	ump->ops = &snd_usb_midi_v2_ump_ops;
723 
724 	rmidi->eps[STR_IN] = ep_in;
725 	rmidi->eps[STR_OUT] = ep_out;
726 	if (ep_in) {
727 		ep_in->pair = ep_out;
728 		ep_in->rmidi = rmidi;
729 		ep_in->ump = ump;
730 	}
731 	if (ep_out) {
732 		ep_out->pair = ep_in;
733 		ep_out->rmidi = rmidi;
734 		ep_out->ump = ump;
735 	}
736 
737 	list_add_tail(&rmidi->list, &umidi->rawmidi_list);
738 	return 0;
739 }
740 
741 /* find the UMP EP with the given USB block id */
742 static struct snd_usb_midi2_ump *
find_midi2_ump(struct snd_usb_midi2_interface * umidi,int blk_id)743 find_midi2_ump(struct snd_usb_midi2_interface *umidi, int blk_id)
744 {
745 	struct snd_usb_midi2_ump *rmidi;
746 
747 	list_for_each_entry(rmidi, &umidi->rawmidi_list, list) {
748 		if (rmidi->usb_block_id == blk_id)
749 			return rmidi;
750 	}
751 	return NULL;
752 }
753 
754 /* look for the matching output endpoint and create UMP object if found */
find_matching_ep_partner(struct snd_usb_midi2_interface * umidi,struct snd_usb_midi2_endpoint * ep,int blk_id)755 static int find_matching_ep_partner(struct snd_usb_midi2_interface *umidi,
756 				    struct snd_usb_midi2_endpoint *ep,
757 				    int blk_id)
758 {
759 	struct snd_usb_midi2_endpoint *pair_ep;
760 	int blk;
761 
762 	usb_audio_dbg(umidi->chip, "Looking for a pair for EP-in 0x%02x\n",
763 		      ep->endpoint);
764 	list_for_each_entry(pair_ep, &umidi->ep_list, list) {
765 		if (pair_ep->direction != STR_OUT)
766 			continue;
767 		if (pair_ep->pair)
768 			continue; /* already paired */
769 		for (blk = 0; blk < pair_ep->ms_ep->bNumGrpTrmBlock; blk++) {
770 			if (pair_ep->ms_ep->baAssoGrpTrmBlkID[blk] == blk_id) {
771 				usb_audio_dbg(umidi->chip,
772 					      "Found a match with EP-out 0x%02x blk %d\n",
773 					      pair_ep->endpoint, blk);
774 				return create_midi2_ump(umidi, ep, pair_ep, blk_id);
775 			}
776 		}
777 	}
778 	return 0;
779 }
780 
781 /* Call UMP helper to parse UMP endpoints;
782  * this needs to be called after starting the input streams for bi-directional
783  * communications
784  */
parse_ump_endpoints(struct snd_usb_midi2_interface * umidi)785 static int parse_ump_endpoints(struct snd_usb_midi2_interface *umidi)
786 {
787 	struct snd_usb_midi2_ump *rmidi;
788 	int err;
789 
790 	list_for_each_entry(rmidi, &umidi->rawmidi_list, list) {
791 		if (!rmidi->ump ||
792 		    !(rmidi->ump->core.info_flags & SNDRV_RAWMIDI_INFO_DUPLEX))
793 			continue;
794 		err = snd_ump_parse_endpoint(rmidi->ump);
795 		if (!err) {
796 			rmidi->ump_parsed = true;
797 		} else {
798 			if (err == -ENOMEM)
799 				return err;
800 			/* fall back to GTB later */
801 		}
802 	}
803 	return 0;
804 }
805 
806 /* create a UMP block from a GTB entry */
create_gtb_block(struct snd_usb_midi2_ump * rmidi,int dir,int blk)807 static int create_gtb_block(struct snd_usb_midi2_ump *rmidi, int dir, int blk)
808 {
809 	struct snd_usb_midi2_interface *umidi = rmidi->umidi;
810 	const struct usb_ms20_gr_trm_block_descriptor *desc;
811 	struct snd_ump_block *fb;
812 	int type, err;
813 
814 	desc = find_group_terminal_block(umidi, blk);
815 	if (!desc)
816 		return 0;
817 
818 	usb_audio_dbg(umidi->chip,
819 		      "GTB %d: type=%d, group=%d/%d, protocol=%d, in bw=%d, out bw=%d\n",
820 		      blk, desc->bGrpTrmBlkType, desc->nGroupTrm,
821 		      desc->nNumGroupTrm, desc->bMIDIProtocol,
822 		      __le16_to_cpu(desc->wMaxInputBandwidth),
823 		      __le16_to_cpu(desc->wMaxOutputBandwidth));
824 
825 	/* assign the direction */
826 	switch (desc->bGrpTrmBlkType) {
827 	case USB_MS_GR_TRM_BLOCK_TYPE_BIDIRECTIONAL:
828 		type = SNDRV_UMP_DIR_BIDIRECTION;
829 		break;
830 	case USB_MS_GR_TRM_BLOCK_TYPE_INPUT_ONLY:
831 		type = SNDRV_UMP_DIR_INPUT;
832 		break;
833 	case USB_MS_GR_TRM_BLOCK_TYPE_OUTPUT_ONLY:
834 		type = SNDRV_UMP_DIR_OUTPUT;
835 		break;
836 	default:
837 		usb_audio_dbg(umidi->chip, "Unsupported GTB type %d\n",
838 			      desc->bGrpTrmBlkType);
839 		return 0; /* unsupported */
840 	}
841 
842 	/* guess work: set blk-1 as the (0-based) block ID */
843 	err = snd_ump_block_new(rmidi->ump, blk - 1, type,
844 				desc->nGroupTrm, desc->nNumGroupTrm,
845 				&fb);
846 	if (err == -EBUSY)
847 		return 0; /* already present */
848 	else if (err)
849 		return err;
850 
851 	if (desc->iBlockItem)
852 		usb_string(rmidi->dev, desc->iBlockItem,
853 			   fb->info.name, sizeof(fb->info.name));
854 
855 	if (__le16_to_cpu(desc->wMaxInputBandwidth) == 1 ||
856 	    __le16_to_cpu(desc->wMaxOutputBandwidth) == 1)
857 		fb->info.flags |= SNDRV_UMP_BLOCK_IS_MIDI1 |
858 			SNDRV_UMP_BLOCK_IS_LOWSPEED;
859 
860 	/* if MIDI 2.0 protocol is supported and yet the GTB shows MIDI 1.0,
861 	 * treat it as a MIDI 1.0-specific block
862 	 */
863 	if (rmidi->ump->info.protocol_caps & SNDRV_UMP_EP_INFO_PROTO_MIDI2) {
864 		switch (desc->bMIDIProtocol) {
865 		case USB_MS_MIDI_PROTO_1_0_64:
866 		case USB_MS_MIDI_PROTO_1_0_64_JRTS:
867 		case USB_MS_MIDI_PROTO_1_0_128:
868 		case USB_MS_MIDI_PROTO_1_0_128_JRTS:
869 			fb->info.flags |= SNDRV_UMP_BLOCK_IS_MIDI1;
870 			break;
871 		}
872 	}
873 
874 	snd_ump_update_group_attrs(rmidi->ump);
875 
876 	usb_audio_dbg(umidi->chip,
877 		      "Created a UMP block %d from GTB, name=%s, flags=0x%x\n",
878 		      blk, fb->info.name, fb->info.flags);
879 	return 0;
880 }
881 
882 /* Create UMP blocks for each UMP EP */
create_blocks_from_gtb(struct snd_usb_midi2_interface * umidi)883 static int create_blocks_from_gtb(struct snd_usb_midi2_interface *umidi)
884 {
885 	struct snd_usb_midi2_ump *rmidi;
886 	int i, blk, err, dir;
887 
888 	list_for_each_entry(rmidi, &umidi->rawmidi_list, list) {
889 		if (!rmidi->ump)
890 			continue;
891 		/* Blocks have been already created? */
892 		if (rmidi->ump_parsed || rmidi->ump->info.num_blocks)
893 			continue;
894 		/* GTB is static-only */
895 		rmidi->ump->info.flags |= SNDRV_UMP_EP_INFO_STATIC_BLOCKS;
896 		/* loop over GTBs */
897 		for (dir = 0; dir < 2; dir++) {
898 			if (!rmidi->eps[dir])
899 				continue;
900 			for (i = 0; i < rmidi->eps[dir]->ms_ep->bNumGrpTrmBlock; i++) {
901 				blk = rmidi->eps[dir]->ms_ep->baAssoGrpTrmBlkID[i];
902 				err = create_gtb_block(rmidi, dir, blk);
903 				if (err < 0)
904 					return err;
905 			}
906 		}
907 	}
908 
909 	return 0;
910 }
911 
912 /* attach legacy rawmidis */
attach_legacy_rawmidi(struct snd_usb_midi2_interface * umidi)913 static int attach_legacy_rawmidi(struct snd_usb_midi2_interface *umidi)
914 {
915 #if IS_ENABLED(CONFIG_SND_UMP_LEGACY_RAWMIDI)
916 	struct snd_usb_midi2_ump *rmidi;
917 	int err;
918 
919 	list_for_each_entry(rmidi, &umidi->rawmidi_list, list) {
920 		err = snd_ump_attach_legacy_rawmidi(rmidi->ump,
921 						    "Legacy MIDI",
922 						    umidi->chip->num_rawmidis);
923 		if (err < 0)
924 			return err;
925 		umidi->chip->num_rawmidis++;
926 	}
927 #endif
928 	return 0;
929 }
930 
snd_usb_midi_v2_free(struct snd_usb_midi2_interface * umidi)931 static void snd_usb_midi_v2_free(struct snd_usb_midi2_interface *umidi)
932 {
933 	free_all_midi2_endpoints(umidi);
934 	free_all_midi2_umps(umidi);
935 	list_del(&umidi->list);
936 	kfree(umidi->blk_descs);
937 	kfree(umidi);
938 }
939 
940 /* parse the interface for MIDI 2.0 */
parse_midi_2_0(struct snd_usb_midi2_interface * umidi)941 static int parse_midi_2_0(struct snd_usb_midi2_interface *umidi)
942 {
943 	struct snd_usb_midi2_endpoint *ep;
944 	int blk, id, err;
945 
946 	/* First, create an object for each USB MIDI Endpoint */
947 	err = parse_midi_2_0_endpoints(umidi);
948 	if (err < 0)
949 		return err;
950 	if (list_empty(&umidi->ep_list)) {
951 		usb_audio_warn(umidi->chip, "No MIDI endpoints found\n");
952 		return -ENODEV;
953 	}
954 
955 	/*
956 	 * Next, look for EP I/O pairs that are found in group terminal blocks
957 	 * A UMP object is created for each EP I/O pair as bidirecitonal
958 	 * UMP EP
959 	 */
960 	list_for_each_entry(ep, &umidi->ep_list, list) {
961 		/* only input in this loop; output is matched in find_midi_ump() */
962 		if (ep->direction != STR_IN)
963 			continue;
964 		for (blk = 0; blk < ep->ms_ep->bNumGrpTrmBlock; blk++) {
965 			id = ep->ms_ep->baAssoGrpTrmBlkID[blk];
966 			err = find_matching_ep_partner(umidi, ep, id);
967 			if (err < 0)
968 				return err;
969 		}
970 	}
971 
972 	/*
973 	 * For the remaining EPs, treat as singles, create a UMP object with
974 	 * unidirectional EP
975 	 */
976 	list_for_each_entry(ep, &umidi->ep_list, list) {
977 		if (ep->rmidi)
978 			continue; /* already paired */
979 		for (blk = 0; blk < ep->ms_ep->bNumGrpTrmBlock; blk++) {
980 			id = ep->ms_ep->baAssoGrpTrmBlkID[blk];
981 			if (find_midi2_ump(umidi, id))
982 				continue;
983 			usb_audio_dbg(umidi->chip,
984 				      "Creating a unidirection UMP for EP=0x%02x, blk=%d\n",
985 				      ep->endpoint, id);
986 			if (ep->direction == STR_IN)
987 				err = create_midi2_ump(umidi, ep, NULL, id);
988 			else
989 				err = create_midi2_ump(umidi, NULL, ep, id);
990 			if (err < 0)
991 				return err;
992 			break;
993 		}
994 	}
995 
996 	return 0;
997 }
998 
999 /* is the given interface for MIDI 2.0? */
is_midi2_altset(struct usb_host_interface * hostif)1000 static bool is_midi2_altset(struct usb_host_interface *hostif)
1001 {
1002 	struct usb_ms_header_descriptor *ms_header =
1003 		(struct usb_ms_header_descriptor *)hostif->extra;
1004 
1005 	if (hostif->extralen < 7 ||
1006 	    ms_header->bLength < 7 ||
1007 	    ms_header->bDescriptorType != USB_DT_CS_INTERFACE ||
1008 	    ms_header->bDescriptorSubtype != UAC_HEADER)
1009 		return false;
1010 
1011 	return le16_to_cpu(ms_header->bcdMSC) == USB_MS_REV_MIDI_2_0;
1012 }
1013 
1014 /* change the altsetting */
set_altset(struct snd_usb_midi2_interface * umidi)1015 static int set_altset(struct snd_usb_midi2_interface *umidi)
1016 {
1017 	usb_audio_dbg(umidi->chip, "Setting host iface %d:%d\n",
1018 		      umidi->hostif->desc.bInterfaceNumber,
1019 		      umidi->hostif->desc.bAlternateSetting);
1020 	return usb_set_interface(umidi->chip->dev,
1021 				 umidi->hostif->desc.bInterfaceNumber,
1022 				 umidi->hostif->desc.bAlternateSetting);
1023 }
1024 
1025 /* fill UMP Endpoint name string from USB descriptor */
fill_ump_ep_name(struct snd_ump_endpoint * ump,struct usb_device * dev,int id)1026 static void fill_ump_ep_name(struct snd_ump_endpoint *ump,
1027 			     struct usb_device *dev, int id)
1028 {
1029 	int len;
1030 
1031 	usb_string(dev, id, ump->info.name, sizeof(ump->info.name));
1032 
1033 	/* trim superfluous "MIDI" suffix */
1034 	len = strlen(ump->info.name);
1035 	if (len > 5 && !strcmp(ump->info.name + len - 5, " MIDI"))
1036 		ump->info.name[len - 5] = 0;
1037 }
1038 
1039 /* fill the fallback name string for each rawmidi instance */
set_fallback_rawmidi_names(struct snd_usb_midi2_interface * umidi)1040 static void set_fallback_rawmidi_names(struct snd_usb_midi2_interface *umidi)
1041 {
1042 	struct usb_device *dev = umidi->chip->dev;
1043 	struct snd_usb_midi2_ump *rmidi;
1044 	struct snd_ump_endpoint *ump;
1045 
1046 	list_for_each_entry(rmidi, &umidi->rawmidi_list, list) {
1047 		ump = rmidi->ump;
1048 		/* fill UMP EP name from USB descriptors */
1049 		if (!*ump->info.name && umidi->hostif->desc.iInterface)
1050 			fill_ump_ep_name(ump, dev, umidi->hostif->desc.iInterface);
1051 		else if (!*ump->info.name && dev->descriptor.iProduct)
1052 			fill_ump_ep_name(ump, dev, dev->descriptor.iProduct);
1053 		/* fill fallback name */
1054 		if (!*ump->info.name)
1055 			scnprintf(ump->info.name, sizeof(ump->info.name),
1056 				  "USB MIDI %d", rmidi->index);
1057 		/* copy as rawmidi name if not set */
1058 		if (!*ump->core.name)
1059 			strscpy(ump->core.name, ump->info.name,
1060 				sizeof(ump->core.name));
1061 		/* use serial number string as unique UMP product id */
1062 		if (!*ump->info.product_id && dev->serial && *dev->serial)
1063 			strscpy(ump->info.product_id, dev->serial);
1064 	}
1065 }
1066 
1067 /* create MIDI interface; fallback to MIDI 1.0 if needed */
snd_usb_midi_v2_create(struct snd_usb_audio * chip,struct usb_interface * iface,const struct snd_usb_audio_quirk * quirk,unsigned int usb_id)1068 int snd_usb_midi_v2_create(struct snd_usb_audio *chip,
1069 			   struct usb_interface *iface,
1070 			   const struct snd_usb_audio_quirk *quirk,
1071 			   unsigned int usb_id)
1072 {
1073 	struct snd_usb_midi2_interface *umidi;
1074 	struct usb_host_interface *hostif;
1075 	int err;
1076 
1077 	usb_audio_dbg(chip, "Parsing interface %d...\n",
1078 		      iface->altsetting[0].desc.bInterfaceNumber);
1079 
1080 	/* fallback to MIDI 1.0? */
1081 	if (!midi2_enable) {
1082 		usb_audio_info(chip, "Falling back to MIDI 1.0 by module option\n");
1083 		goto fallback_to_midi1;
1084 	}
1085 	if ((quirk && quirk->type != QUIRK_MIDI_STANDARD_INTERFACE) ||
1086 	    iface->num_altsetting < 2) {
1087 		usb_audio_info(chip, "Quirk or no altset; falling back to MIDI 1.0\n");
1088 		goto fallback_to_midi1;
1089 	}
1090 	hostif = &iface->altsetting[1];
1091 	if (!is_midi2_altset(hostif)) {
1092 		usb_audio_info(chip, "No MIDI 2.0 at altset 1, falling back to MIDI 1.0\n");
1093 		goto fallback_to_midi1;
1094 	}
1095 	if (!hostif->desc.bNumEndpoints) {
1096 		usb_audio_info(chip, "No endpoint at altset 1, falling back to MIDI 1.0\n");
1097 		goto fallback_to_midi1;
1098 	}
1099 
1100 	usb_audio_dbg(chip, "Creating a MIDI 2.0 instance for %d:%d\n",
1101 		      hostif->desc.bInterfaceNumber,
1102 		      hostif->desc.bAlternateSetting);
1103 
1104 	umidi = kzalloc_obj(*umidi);
1105 	if (!umidi)
1106 		return -ENOMEM;
1107 	umidi->chip = chip;
1108 	umidi->iface = iface;
1109 	umidi->hostif = hostif;
1110 	INIT_LIST_HEAD(&umidi->rawmidi_list);
1111 	INIT_LIST_HEAD(&umidi->ep_list);
1112 
1113 	list_add_tail(&umidi->list, &chip->midi_v2_list);
1114 
1115 	err = set_altset(umidi);
1116 	if (err < 0) {
1117 		usb_audio_err(chip, "Failed to set altset\n");
1118 		goto error;
1119 	}
1120 
1121 	/* assume only altset 1 corresponding to MIDI 2.0 interface */
1122 	err = parse_midi_2_0(umidi);
1123 	if (err < 0) {
1124 		usb_audio_err(chip, "Failed to parse MIDI 2.0 interface\n");
1125 		goto error;
1126 	}
1127 
1128 	/* parse USB group terminal blocks */
1129 	err = parse_group_terminal_blocks(umidi);
1130 	if (err < 0) {
1131 		usb_audio_err(chip, "Failed to parse GTB\n");
1132 		goto error;
1133 	}
1134 
1135 	err = start_input_streams(umidi);
1136 	if (err < 0) {
1137 		usb_audio_err(chip, "Failed to start input streams\n");
1138 		goto error;
1139 	}
1140 
1141 	if (midi2_ump_probe) {
1142 		err = parse_ump_endpoints(umidi);
1143 		if (err < 0) {
1144 			usb_audio_err(chip, "Failed to parse UMP endpoint\n");
1145 			goto error;
1146 		}
1147 	}
1148 
1149 	err = create_blocks_from_gtb(umidi);
1150 	if (err < 0) {
1151 		usb_audio_err(chip, "Failed to create GTB blocks\n");
1152 		goto error;
1153 	}
1154 
1155 	set_fallback_rawmidi_names(umidi);
1156 
1157 	err = attach_legacy_rawmidi(umidi);
1158 	if (err < 0) {
1159 		usb_audio_err(chip, "Failed to create legacy rawmidi\n");
1160 		goto error;
1161 	}
1162 
1163 	return 0;
1164 
1165  error:
1166 	snd_usb_midi_v2_free(umidi);
1167 	return err;
1168 
1169  fallback_to_midi1:
1170 	return __snd_usbmidi_create(chip->card, iface, &chip->midi_list,
1171 				    quirk, usb_id, &chip->num_rawmidis);
1172 }
1173 
suspend_midi2_endpoint(struct snd_usb_midi2_endpoint * ep)1174 static void suspend_midi2_endpoint(struct snd_usb_midi2_endpoint *ep)
1175 {
1176 	kill_midi_urbs(ep, true);
1177 	drain_urb_queue(ep);
1178 }
1179 
snd_usb_midi_v2_suspend_all(struct snd_usb_audio * chip)1180 void snd_usb_midi_v2_suspend_all(struct snd_usb_audio *chip)
1181 {
1182 	struct snd_usb_midi2_interface *umidi;
1183 	struct snd_usb_midi2_endpoint *ep;
1184 
1185 	list_for_each_entry(umidi, &chip->midi_v2_list, list) {
1186 		list_for_each_entry(ep, &umidi->ep_list, list)
1187 			suspend_midi2_endpoint(ep);
1188 	}
1189 }
1190 
resume_midi2_endpoint(struct snd_usb_midi2_endpoint * ep)1191 static void resume_midi2_endpoint(struct snd_usb_midi2_endpoint *ep)
1192 {
1193 	atomic_set(&ep->running, atomic_read(&ep->suspended));
1194 	atomic_set(&ep->suspended, 0);
1195 
1196 	if (ep->direction == STR_IN || atomic_read(&ep->running))
1197 		submit_io_urbs(ep);
1198 }
1199 
snd_usb_midi_v2_resume_all(struct snd_usb_audio * chip)1200 void snd_usb_midi_v2_resume_all(struct snd_usb_audio *chip)
1201 {
1202 	struct snd_usb_midi2_interface *umidi;
1203 	struct snd_usb_midi2_endpoint *ep;
1204 
1205 	list_for_each_entry(umidi, &chip->midi_v2_list, list) {
1206 		set_altset(umidi);
1207 		list_for_each_entry(ep, &umidi->ep_list, list)
1208 			resume_midi2_endpoint(ep);
1209 	}
1210 }
1211 
snd_usb_midi_v2_disconnect_all(struct snd_usb_audio * chip)1212 void snd_usb_midi_v2_disconnect_all(struct snd_usb_audio *chip)
1213 {
1214 	struct snd_usb_midi2_interface *umidi;
1215 	struct snd_usb_midi2_endpoint *ep;
1216 
1217 	list_for_each_entry(umidi, &chip->midi_v2_list, list) {
1218 		umidi->disconnected = 1;
1219 		list_for_each_entry(ep, &umidi->ep_list, list) {
1220 			ep->disconnected = 1;
1221 			kill_midi_urbs(ep, false);
1222 			drain_urb_queue(ep);
1223 		}
1224 	}
1225 }
1226 
1227 /* release the MIDI instance */
snd_usb_midi_v2_free_all(struct snd_usb_audio * chip)1228 void snd_usb_midi_v2_free_all(struct snd_usb_audio *chip)
1229 {
1230 	struct snd_usb_midi2_interface *umidi, *next;
1231 
1232 	list_for_each_entry_safe(umidi, next, &chip->midi_v2_list, list)
1233 		snd_usb_midi_v2_free(umidi);
1234 }
1235