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1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  *  ALSA sequencer Client Manager
4  *  Copyright (c) 1998-2001 by Frank van de Pol <fvdpol@coil.demon.nl>
5  *                             Jaroslav Kysela <perex@perex.cz>
6  *                             Takashi Iwai <tiwai@suse.de>
7  */
8 
9 #include <linux/init.h>
10 #include <linux/export.h>
11 #include <linux/slab.h>
12 #include <sound/core.h>
13 #include <sound/minors.h>
14 #include <linux/kmod.h>
15 
16 #include <sound/seq_kernel.h>
17 #include <sound/ump.h>
18 #include "seq_clientmgr.h"
19 #include "seq_memory.h"
20 #include "seq_queue.h"
21 #include "seq_timer.h"
22 #include "seq_info.h"
23 #include "seq_system.h"
24 #include "seq_ump_convert.h"
25 #include <sound/seq_device.h>
26 #ifdef CONFIG_COMPAT
27 #include <linux/compat.h>
28 #endif
29 
30 /* Client Manager
31 
32  * this module handles the connections of userland and kernel clients
33  *
34  */
35 
36 /*
37  * There are four ranges of client numbers (last two shared):
38  * 0..15: global clients
39  * 16..127: statically allocated client numbers for cards 0..27
40  * 128..191: dynamically allocated client numbers for cards 28..31
41  * 128..191: dynamically allocated client numbers for applications
42  */
43 
44 /* number of kernel non-card clients */
45 #define SNDRV_SEQ_GLOBAL_CLIENTS	16
46 /* clients per cards, for static clients */
47 #define SNDRV_SEQ_CLIENTS_PER_CARD	4
48 /* dynamically allocated client numbers (both kernel drivers and user space) */
49 #define SNDRV_SEQ_DYNAMIC_CLIENTS_BEGIN	128
50 
51 #define SNDRV_SEQ_LFLG_INPUT	0x0001
52 #define SNDRV_SEQ_LFLG_OUTPUT	0x0002
53 #define SNDRV_SEQ_LFLG_OPEN	(SNDRV_SEQ_LFLG_INPUT|SNDRV_SEQ_LFLG_OUTPUT)
54 
55 static DEFINE_SPINLOCK(clients_lock);
56 static DEFINE_MUTEX(register_mutex);
57 
58 /*
59  * client table
60  */
61 static char clienttablock[SNDRV_SEQ_MAX_CLIENTS];
62 static struct snd_seq_client *clienttab[SNDRV_SEQ_MAX_CLIENTS];
63 static struct snd_seq_usage client_usage;
64 
65 /*
66  * prototypes
67  */
68 static int bounce_error_event(struct snd_seq_client *client,
69 			      struct snd_seq_event *event,
70 			      int err, int atomic, int hop);
71 static int snd_seq_deliver_single_event(struct snd_seq_client *client,
72 					struct snd_seq_event *event,
73 					int atomic, int hop);
74 
75 #if IS_ENABLED(CONFIG_SND_SEQ_UMP)
76 static void free_ump_info(struct snd_seq_client *client);
77 #endif
78 
79 /*
80  */
snd_seq_file_flags(struct file * file)81 static inline unsigned short snd_seq_file_flags(struct file *file)
82 {
83         switch (file->f_mode & (FMODE_READ | FMODE_WRITE)) {
84         case FMODE_WRITE:
85                 return SNDRV_SEQ_LFLG_OUTPUT;
86         case FMODE_READ:
87                 return SNDRV_SEQ_LFLG_INPUT;
88         default:
89                 return SNDRV_SEQ_LFLG_OPEN;
90         }
91 }
92 
snd_seq_write_pool_allocated(struct snd_seq_client * client)93 static inline int snd_seq_write_pool_allocated(struct snd_seq_client *client)
94 {
95 	return snd_seq_total_cells(client->pool) > 0;
96 }
97 
98 /* return pointer to client structure for specified id */
clientptr(int clientid)99 static struct snd_seq_client *clientptr(int clientid)
100 {
101 	if (clientid < 0 || clientid >= SNDRV_SEQ_MAX_CLIENTS) {
102 		pr_debug("ALSA: seq: oops. Trying to get pointer to client %d\n",
103 			   clientid);
104 		return NULL;
105 	}
106 	return clienttab[clientid];
107 }
108 
client_use_ptr(int clientid,bool load_module)109 static struct snd_seq_client *client_use_ptr(int clientid, bool load_module)
110 {
111 	unsigned long flags;
112 	struct snd_seq_client *client;
113 
114 	if (clientid < 0 || clientid >= SNDRV_SEQ_MAX_CLIENTS) {
115 		pr_debug("ALSA: seq: oops. Trying to get pointer to client %d\n",
116 			   clientid);
117 		return NULL;
118 	}
119 	spin_lock_irqsave(&clients_lock, flags);
120 	client = clientptr(clientid);
121 	if (client)
122 		goto __lock;
123 	if (clienttablock[clientid]) {
124 		spin_unlock_irqrestore(&clients_lock, flags);
125 		return NULL;
126 	}
127 	spin_unlock_irqrestore(&clients_lock, flags);
128 #ifdef CONFIG_MODULES
129 	if (load_module) {
130 		static DECLARE_BITMAP(client_requested, SNDRV_SEQ_GLOBAL_CLIENTS);
131 		static DECLARE_BITMAP(card_requested, SNDRV_CARDS);
132 
133 		if (clientid < SNDRV_SEQ_GLOBAL_CLIENTS) {
134 			int idx;
135 
136 			if (!test_and_set_bit(clientid, client_requested)) {
137 				for (idx = 0; idx < 15; idx++) {
138 					if (seq_client_load[idx] < 0)
139 						break;
140 					if (seq_client_load[idx] == clientid) {
141 						request_module("snd-seq-client-%i",
142 							       clientid);
143 						break;
144 					}
145 				}
146 			}
147 		} else if (clientid < SNDRV_SEQ_DYNAMIC_CLIENTS_BEGIN) {
148 			int card = (clientid - SNDRV_SEQ_GLOBAL_CLIENTS) /
149 				SNDRV_SEQ_CLIENTS_PER_CARD;
150 			if (card < snd_ecards_limit) {
151 				if (!test_and_set_bit(card, card_requested))
152 					snd_request_card(card);
153 				snd_seq_device_load_drivers();
154 			}
155 		}
156 		spin_lock_irqsave(&clients_lock, flags);
157 		client = clientptr(clientid);
158 		if (client)
159 			goto __lock;
160 		spin_unlock_irqrestore(&clients_lock, flags);
161 	}
162 #endif
163 	return NULL;
164 
165       __lock:
166 	snd_use_lock_use(&client->use_lock);
167 	spin_unlock_irqrestore(&clients_lock, flags);
168 	return client;
169 }
170 
171 /* get snd_seq_client object for the given id quickly */
snd_seq_client_use_ptr(int clientid)172 struct snd_seq_client *snd_seq_client_use_ptr(int clientid)
173 {
174 	return client_use_ptr(clientid, false);
175 }
176 
177 /* get snd_seq_client object for the given id;
178  * if not found, retry after loading the modules
179  */
client_load_and_use_ptr(int clientid)180 static struct snd_seq_client *client_load_and_use_ptr(int clientid)
181 {
182 	return client_use_ptr(clientid, IS_ENABLED(CONFIG_MODULES));
183 }
184 
185 /* Take refcount and perform ioctl_mutex lock on the given client;
186  * used only for OSS sequencer
187  * Unlock via snd_seq_client_ioctl_unlock() below
188  */
snd_seq_client_ioctl_lock(int clientid)189 bool snd_seq_client_ioctl_lock(int clientid)
190 {
191 	struct snd_seq_client *client;
192 
193 	client = client_load_and_use_ptr(clientid);
194 	if (!client)
195 		return false;
196 	mutex_lock(&client->ioctl_mutex);
197 	/* The client isn't unrefed here; see snd_seq_client_ioctl_unlock() */
198 	return true;
199 }
200 EXPORT_SYMBOL_GPL(snd_seq_client_ioctl_lock);
201 
202 /* Unlock and unref the given client; for OSS sequencer use only */
snd_seq_client_ioctl_unlock(int clientid)203 void snd_seq_client_ioctl_unlock(int clientid)
204 {
205 	struct snd_seq_client *client;
206 
207 	client = snd_seq_client_use_ptr(clientid);
208 	if (WARN_ON(!client))
209 		return;
210 	mutex_unlock(&client->ioctl_mutex);
211 	/* The doubly unrefs below are intentional; the first one releases the
212 	 * leftover from snd_seq_client_ioctl_lock() above, and the second one
213 	 * is for releasing snd_seq_client_use_ptr() in this function
214 	 */
215 	snd_seq_client_unlock(client);
216 	snd_seq_client_unlock(client);
217 }
218 EXPORT_SYMBOL_GPL(snd_seq_client_ioctl_unlock);
219 
usage_alloc(struct snd_seq_usage * res,int num)220 static void usage_alloc(struct snd_seq_usage *res, int num)
221 {
222 	res->cur += num;
223 	if (res->cur > res->peak)
224 		res->peak = res->cur;
225 }
226 
usage_free(struct snd_seq_usage * res,int num)227 static void usage_free(struct snd_seq_usage *res, int num)
228 {
229 	res->cur -= num;
230 }
231 
232 /* initialise data structures */
client_init_data(void)233 int __init client_init_data(void)
234 {
235 	/* zap out the client table */
236 	memset(&clienttablock, 0, sizeof(clienttablock));
237 	memset(&clienttab, 0, sizeof(clienttab));
238 	return 0;
239 }
240 
241 
seq_create_client1(int client_index,int poolsize)242 static struct snd_seq_client *seq_create_client1(int client_index, int poolsize)
243 {
244 	int c;
245 	struct snd_seq_client *client;
246 
247 	/* init client data */
248 	client = kzalloc(sizeof(*client), GFP_KERNEL);
249 	if (client == NULL)
250 		return NULL;
251 	client->pool = snd_seq_pool_new(poolsize);
252 	if (client->pool == NULL) {
253 		kfree(client);
254 		return NULL;
255 	}
256 	client->type = NO_CLIENT;
257 	snd_use_lock_init(&client->use_lock);
258 	rwlock_init(&client->ports_lock);
259 	mutex_init(&client->ports_mutex);
260 	INIT_LIST_HEAD(&client->ports_list_head);
261 	mutex_init(&client->ioctl_mutex);
262 	client->ump_endpoint_port = -1;
263 
264 	/* find free slot in the client table */
265 	spin_lock_irq(&clients_lock);
266 	if (client_index < 0) {
267 		for (c = SNDRV_SEQ_DYNAMIC_CLIENTS_BEGIN;
268 		     c < SNDRV_SEQ_MAX_CLIENTS;
269 		     c++) {
270 			if (clienttab[c] || clienttablock[c])
271 				continue;
272 			clienttab[client->number = c] = client;
273 			spin_unlock_irq(&clients_lock);
274 			return client;
275 		}
276 	} else {
277 		if (clienttab[client_index] == NULL && !clienttablock[client_index]) {
278 			clienttab[client->number = client_index] = client;
279 			spin_unlock_irq(&clients_lock);
280 			return client;
281 		}
282 	}
283 	spin_unlock_irq(&clients_lock);
284 	snd_seq_pool_delete(&client->pool);
285 	kfree(client);
286 	return NULL;	/* no free slot found or busy, return failure code */
287 }
288 
289 
seq_free_client1(struct snd_seq_client * client)290 static int seq_free_client1(struct snd_seq_client *client)
291 {
292 	if (!client)
293 		return 0;
294 	spin_lock_irq(&clients_lock);
295 	clienttablock[client->number] = 1;
296 	clienttab[client->number] = NULL;
297 	spin_unlock_irq(&clients_lock);
298 	snd_seq_delete_all_ports(client);
299 	snd_seq_queue_client_leave(client->number);
300 	snd_use_lock_sync(&client->use_lock);
301 	if (client->pool)
302 		snd_seq_pool_delete(&client->pool);
303 	spin_lock_irq(&clients_lock);
304 	clienttablock[client->number] = 0;
305 	spin_unlock_irq(&clients_lock);
306 	return 0;
307 }
308 
309 
seq_free_client(struct snd_seq_client * client)310 static void seq_free_client(struct snd_seq_client * client)
311 {
312 	mutex_lock(&register_mutex);
313 	switch (client->type) {
314 	case NO_CLIENT:
315 		pr_warn("ALSA: seq: Trying to free unused client %d\n",
316 			client->number);
317 		break;
318 	case USER_CLIENT:
319 	case KERNEL_CLIENT:
320 		seq_free_client1(client);
321 		usage_free(&client_usage, 1);
322 		break;
323 
324 	default:
325 		pr_err("ALSA: seq: Trying to free client %d with undefined type = %d\n",
326 			   client->number, client->type);
327 	}
328 	mutex_unlock(&register_mutex);
329 
330 	snd_seq_system_client_ev_client_exit(client->number);
331 }
332 
333 
334 
335 /* -------------------------------------------------------- */
336 
337 /* create a user client */
snd_seq_open(struct inode * inode,struct file * file)338 static int snd_seq_open(struct inode *inode, struct file *file)
339 {
340 	int c, mode;			/* client id */
341 	struct snd_seq_client *client;
342 	struct snd_seq_user_client *user;
343 	int err;
344 
345 	err = stream_open(inode, file);
346 	if (err < 0)
347 		return err;
348 
349 	mutex_lock(&register_mutex);
350 	client = seq_create_client1(-1, SNDRV_SEQ_DEFAULT_EVENTS);
351 	if (!client) {
352 		mutex_unlock(&register_mutex);
353 		return -ENOMEM;	/* failure code */
354 	}
355 
356 	mode = snd_seq_file_flags(file);
357 	if (mode & SNDRV_SEQ_LFLG_INPUT)
358 		client->accept_input = 1;
359 	if (mode & SNDRV_SEQ_LFLG_OUTPUT)
360 		client->accept_output = 1;
361 
362 	user = &client->data.user;
363 	user->fifo = NULL;
364 	user->fifo_pool_size = 0;
365 
366 	if (mode & SNDRV_SEQ_LFLG_INPUT) {
367 		user->fifo_pool_size = SNDRV_SEQ_DEFAULT_CLIENT_EVENTS;
368 		user->fifo = snd_seq_fifo_new(user->fifo_pool_size);
369 		if (user->fifo == NULL) {
370 			seq_free_client1(client);
371 			kfree(client);
372 			mutex_unlock(&register_mutex);
373 			return -ENOMEM;
374 		}
375 	}
376 
377 	usage_alloc(&client_usage, 1);
378 	client->type = USER_CLIENT;
379 	mutex_unlock(&register_mutex);
380 
381 	c = client->number;
382 	file->private_data = client;
383 
384 	/* fill client data */
385 	user->file = file;
386 	sprintf(client->name, "Client-%d", c);
387 	client->data.user.owner = get_pid(task_pid(current));
388 
389 	/* make others aware this new client */
390 	snd_seq_system_client_ev_client_start(c);
391 
392 	return 0;
393 }
394 
395 /* delete a user client */
snd_seq_release(struct inode * inode,struct file * file)396 static int snd_seq_release(struct inode *inode, struct file *file)
397 {
398 	struct snd_seq_client *client = file->private_data;
399 
400 	if (client) {
401 		seq_free_client(client);
402 		if (client->data.user.fifo)
403 			snd_seq_fifo_delete(&client->data.user.fifo);
404 #if IS_ENABLED(CONFIG_SND_SEQ_UMP)
405 		free_ump_info(client);
406 #endif
407 		put_pid(client->data.user.owner);
408 		kfree(client);
409 	}
410 
411 	return 0;
412 }
413 
event_is_compatible(const struct snd_seq_client * client,const struct snd_seq_event * ev)414 static bool event_is_compatible(const struct snd_seq_client *client,
415 				const struct snd_seq_event *ev)
416 {
417 	if (snd_seq_ev_is_ump(ev) && !client->midi_version)
418 		return false;
419 	if (snd_seq_ev_is_ump(ev) && snd_seq_ev_is_variable(ev))
420 		return false;
421 	return true;
422 }
423 
424 /* handle client read() */
425 /* possible error values:
426  *	-ENXIO	invalid client or file open mode
427  *	-ENOSPC	FIFO overflow (the flag is cleared after this error report)
428  *	-EINVAL	no enough user-space buffer to write the whole event
429  *	-EFAULT	seg. fault during copy to user space
430  */
snd_seq_read(struct file * file,char __user * buf,size_t count,loff_t * offset)431 static ssize_t snd_seq_read(struct file *file, char __user *buf, size_t count,
432 			    loff_t *offset)
433 {
434 	struct snd_seq_client *client = file->private_data;
435 	struct snd_seq_fifo *fifo;
436 	size_t aligned_size;
437 	int err;
438 	long result = 0;
439 	struct snd_seq_event_cell *cell;
440 
441 	if (!(snd_seq_file_flags(file) & SNDRV_SEQ_LFLG_INPUT))
442 		return -ENXIO;
443 
444 	if (!access_ok(buf, count))
445 		return -EFAULT;
446 
447 	/* check client structures are in place */
448 	if (snd_BUG_ON(!client))
449 		return -ENXIO;
450 
451 	if (!client->accept_input)
452 		return -ENXIO;
453 	fifo = client->data.user.fifo;
454 	if (!fifo)
455 		return -ENXIO;
456 
457 	if (atomic_read(&fifo->overflow) > 0) {
458 		/* buffer overflow is detected */
459 		snd_seq_fifo_clear(fifo);
460 		/* return error code */
461 		return -ENOSPC;
462 	}
463 
464 	cell = NULL;
465 	err = 0;
466 	snd_seq_fifo_lock(fifo);
467 
468 	if (IS_ENABLED(CONFIG_SND_SEQ_UMP) && client->midi_version > 0)
469 		aligned_size = sizeof(struct snd_seq_ump_event);
470 	else
471 		aligned_size = sizeof(struct snd_seq_event);
472 
473 	/* while data available in queue */
474 	while (count >= aligned_size) {
475 		int nonblock;
476 
477 		nonblock = (file->f_flags & O_NONBLOCK) || result > 0;
478 		err = snd_seq_fifo_cell_out(fifo, &cell, nonblock);
479 		if (err < 0)
480 			break;
481 		if (!event_is_compatible(client, &cell->event)) {
482 			snd_seq_cell_free(cell);
483 			cell = NULL;
484 			continue;
485 		}
486 		if (snd_seq_ev_is_variable(&cell->event)) {
487 			struct snd_seq_ump_event tmpev;
488 
489 			memcpy(&tmpev, &cell->event, aligned_size);
490 			tmpev.data.ext.len &= ~SNDRV_SEQ_EXT_MASK;
491 			if (copy_to_user(buf, &tmpev, aligned_size)) {
492 				err = -EFAULT;
493 				break;
494 			}
495 			count -= aligned_size;
496 			buf += aligned_size;
497 			err = snd_seq_expand_var_event(&cell->event, count,
498 						       (char __force *)buf, 0,
499 						       aligned_size);
500 			if (err < 0)
501 				break;
502 			result += err;
503 			count -= err;
504 			buf += err;
505 		} else {
506 			if (copy_to_user(buf, &cell->event, aligned_size)) {
507 				err = -EFAULT;
508 				break;
509 			}
510 			count -= aligned_size;
511 			buf += aligned_size;
512 		}
513 		snd_seq_cell_free(cell);
514 		cell = NULL; /* to be sure */
515 		result += aligned_size;
516 	}
517 
518 	if (err < 0) {
519 		if (cell)
520 			snd_seq_fifo_cell_putback(fifo, cell);
521 		if (err == -EAGAIN && result > 0)
522 			err = 0;
523 	}
524 	snd_seq_fifo_unlock(fifo);
525 
526 	return (err < 0) ? err : result;
527 }
528 
529 
530 /*
531  * check access permission to the port
532  */
check_port_perm(struct snd_seq_client_port * port,unsigned int flags)533 static int check_port_perm(struct snd_seq_client_port *port, unsigned int flags)
534 {
535 	if ((port->capability & flags) != flags)
536 		return 0;
537 	return flags;
538 }
539 
540 /*
541  * check if the destination client is available, and return the pointer
542  */
get_event_dest_client(struct snd_seq_event * event)543 static struct snd_seq_client *get_event_dest_client(struct snd_seq_event *event)
544 {
545 	struct snd_seq_client *dest;
546 
547 	dest = snd_seq_client_use_ptr(event->dest.client);
548 	if (dest == NULL)
549 		return NULL;
550 	if (! dest->accept_input)
551 		goto __not_avail;
552 	if (snd_seq_ev_is_ump(event))
553 		return dest; /* ok - no filter checks */
554 
555 	if ((dest->filter & SNDRV_SEQ_FILTER_USE_EVENT) &&
556 	    ! test_bit(event->type, dest->event_filter))
557 		goto __not_avail;
558 
559 	return dest; /* ok - accessible */
560 __not_avail:
561 	snd_seq_client_unlock(dest);
562 	return NULL;
563 }
564 
565 
566 /*
567  * Return the error event.
568  *
569  * If the receiver client is a user client, the original event is
570  * encapsulated in SNDRV_SEQ_EVENT_BOUNCE as variable length event.  If
571  * the original event is also variable length, the external data is
572  * copied after the event record.
573  * If the receiver client is a kernel client, the original event is
574  * quoted in SNDRV_SEQ_EVENT_KERNEL_ERROR, since this requires no extra
575  * kmalloc.
576  */
bounce_error_event(struct snd_seq_client * client,struct snd_seq_event * event,int err,int atomic,int hop)577 static int bounce_error_event(struct snd_seq_client *client,
578 			      struct snd_seq_event *event,
579 			      int err, int atomic, int hop)
580 {
581 	struct snd_seq_event bounce_ev;
582 	int result;
583 
584 	if (client == NULL ||
585 	    ! (client->filter & SNDRV_SEQ_FILTER_BOUNCE) ||
586 	    ! client->accept_input)
587 		return 0; /* ignored */
588 
589 	/* set up quoted error */
590 	memset(&bounce_ev, 0, sizeof(bounce_ev));
591 	bounce_ev.type = SNDRV_SEQ_EVENT_KERNEL_ERROR;
592 	bounce_ev.flags = SNDRV_SEQ_EVENT_LENGTH_FIXED;
593 	bounce_ev.queue = SNDRV_SEQ_QUEUE_DIRECT;
594 	bounce_ev.source.client = SNDRV_SEQ_CLIENT_SYSTEM;
595 	bounce_ev.source.port = SNDRV_SEQ_PORT_SYSTEM_ANNOUNCE;
596 	bounce_ev.dest.client = client->number;
597 	bounce_ev.dest.port = event->source.port;
598 	bounce_ev.data.quote.origin = event->dest;
599 	bounce_ev.data.quote.event = event;
600 	bounce_ev.data.quote.value = -err; /* use positive value */
601 	result = snd_seq_deliver_single_event(NULL, &bounce_ev, atomic, hop + 1);
602 	if (result < 0) {
603 		client->event_lost++;
604 		return result;
605 	}
606 
607 	return result;
608 }
609 
610 
611 /*
612  * rewrite the time-stamp of the event record with the curren time
613  * of the given queue.
614  * return non-zero if updated.
615  */
update_timestamp_of_queue(struct snd_seq_event * event,int queue,int real_time)616 static int update_timestamp_of_queue(struct snd_seq_event *event,
617 				     int queue, int real_time)
618 {
619 	struct snd_seq_queue *q;
620 
621 	q = queueptr(queue);
622 	if (! q)
623 		return 0;
624 	event->queue = queue;
625 	event->flags &= ~SNDRV_SEQ_TIME_STAMP_MASK;
626 	if (real_time) {
627 		event->time.time = snd_seq_timer_get_cur_time(q->timer, true);
628 		event->flags |= SNDRV_SEQ_TIME_STAMP_REAL;
629 	} else {
630 		event->time.tick = snd_seq_timer_get_cur_tick(q->timer);
631 		event->flags |= SNDRV_SEQ_TIME_STAMP_TICK;
632 	}
633 	queuefree(q);
634 	return 1;
635 }
636 
637 /* deliver a single event; called from below and UMP converter */
__snd_seq_deliver_single_event(struct snd_seq_client * dest,struct snd_seq_client_port * dest_port,struct snd_seq_event * event,int atomic,int hop)638 int __snd_seq_deliver_single_event(struct snd_seq_client *dest,
639 				   struct snd_seq_client_port *dest_port,
640 				   struct snd_seq_event *event,
641 				   int atomic, int hop)
642 {
643 	switch (dest->type) {
644 	case USER_CLIENT:
645 		if (!dest->data.user.fifo)
646 			return 0;
647 		return snd_seq_fifo_event_in(dest->data.user.fifo, event);
648 	case KERNEL_CLIENT:
649 		if (!dest_port->event_input)
650 			return 0;
651 		return dest_port->event_input(event,
652 					      snd_seq_ev_is_direct(event),
653 					      dest_port->private_data,
654 					      atomic, hop);
655 	}
656 	return 0;
657 }
658 
659 /*
660  * deliver an event to the specified destination.
661  * if filter is non-zero, client filter bitmap is tested.
662  *
663  *  RETURN VALUE: 0 : if succeeded
664  *		 <0 : error
665  */
snd_seq_deliver_single_event(struct snd_seq_client * client,struct snd_seq_event * event,int atomic,int hop)666 static int snd_seq_deliver_single_event(struct snd_seq_client *client,
667 					struct snd_seq_event *event,
668 					int atomic, int hop)
669 {
670 	struct snd_seq_client *dest = NULL;
671 	struct snd_seq_client_port *dest_port = NULL;
672 	int result = -ENOENT;
673 	int direct;
674 
675 	direct = snd_seq_ev_is_direct(event);
676 
677 	dest = get_event_dest_client(event);
678 	if (dest == NULL)
679 		goto __skip;
680 	dest_port = snd_seq_port_use_ptr(dest, event->dest.port);
681 	if (dest_port == NULL)
682 		goto __skip;
683 
684 	/* check permission */
685 	if (! check_port_perm(dest_port, SNDRV_SEQ_PORT_CAP_WRITE)) {
686 		result = -EPERM;
687 		goto __skip;
688 	}
689 
690 	if (dest_port->timestamping)
691 		update_timestamp_of_queue(event, dest_port->time_queue,
692 					  dest_port->time_real);
693 
694 #if IS_ENABLED(CONFIG_SND_SEQ_UMP)
695 	if (snd_seq_ev_is_ump(event)) {
696 		if (!(dest->filter & SNDRV_SEQ_FILTER_NO_CONVERT)) {
697 			result = snd_seq_deliver_from_ump(client, dest, dest_port,
698 							  event, atomic, hop);
699 			goto __skip;
700 		} else if (dest->type == USER_CLIENT &&
701 			   !snd_seq_client_is_ump(dest)) {
702 			result = 0; // drop the event
703 			goto __skip;
704 		}
705 	} else if (snd_seq_client_is_ump(dest)) {
706 		if (!(dest->filter & SNDRV_SEQ_FILTER_NO_CONVERT)) {
707 			result = snd_seq_deliver_to_ump(client, dest, dest_port,
708 							event, atomic, hop);
709 			goto __skip;
710 		}
711 	}
712 #endif /* CONFIG_SND_SEQ_UMP */
713 
714 	result = __snd_seq_deliver_single_event(dest, dest_port, event,
715 						atomic, hop);
716 
717   __skip:
718 	if (dest_port)
719 		snd_seq_port_unlock(dest_port);
720 	if (dest)
721 		snd_seq_client_unlock(dest);
722 
723 	if (result < 0 && !direct) {
724 		result = bounce_error_event(client, event, result, atomic, hop);
725 	}
726 	return result;
727 }
728 
729 
730 /*
731  * send the event to all subscribers:
732  */
__deliver_to_subscribers(struct snd_seq_client * client,struct snd_seq_event * event,int port,int atomic,int hop)733 static int __deliver_to_subscribers(struct snd_seq_client *client,
734 				    struct snd_seq_event *event,
735 				    int port, int atomic, int hop)
736 {
737 	struct snd_seq_client_port *src_port;
738 	struct snd_seq_subscribers *subs;
739 	int err, result = 0, num_ev = 0;
740 	union __snd_seq_event event_saved;
741 	size_t saved_size;
742 	struct snd_seq_port_subs_info *grp;
743 
744 	if (port < 0)
745 		return 0;
746 	src_port = snd_seq_port_use_ptr(client, port);
747 	if (!src_port)
748 		return 0;
749 
750 	/* save original event record */
751 	saved_size = snd_seq_event_packet_size(event);
752 	memcpy(&event_saved, event, saved_size);
753 	grp = &src_port->c_src;
754 
755 	/* lock list */
756 	if (atomic)
757 		read_lock(&grp->list_lock);
758 	else
759 		down_read_nested(&grp->list_mutex, hop);
760 	list_for_each_entry(subs, &grp->list_head, src_list) {
761 		/* both ports ready? */
762 		if (atomic_read(&subs->ref_count) != 2)
763 			continue;
764 		event->dest = subs->info.dest;
765 		if (subs->info.flags & SNDRV_SEQ_PORT_SUBS_TIMESTAMP)
766 			/* convert time according to flag with subscription */
767 			update_timestamp_of_queue(event, subs->info.queue,
768 						  subs->info.flags & SNDRV_SEQ_PORT_SUBS_TIME_REAL);
769 		err = snd_seq_deliver_single_event(client, event, atomic, hop);
770 		if (err < 0) {
771 			/* save first error that occurs and continue */
772 			if (!result)
773 				result = err;
774 			continue;
775 		}
776 		num_ev++;
777 		/* restore original event record */
778 		memcpy(event, &event_saved, saved_size);
779 	}
780 	if (atomic)
781 		read_unlock(&grp->list_lock);
782 	else
783 		up_read(&grp->list_mutex);
784 	snd_seq_port_unlock(src_port);
785 	memcpy(event, &event_saved, saved_size);
786 	return (result < 0) ? result : num_ev;
787 }
788 
deliver_to_subscribers(struct snd_seq_client * client,struct snd_seq_event * event,int atomic,int hop)789 static int deliver_to_subscribers(struct snd_seq_client *client,
790 				  struct snd_seq_event *event,
791 				  int atomic, int hop)
792 {
793 	int ret;
794 #if IS_ENABLED(CONFIG_SND_SEQ_UMP)
795 	int ret2;
796 #endif
797 
798 	ret = __deliver_to_subscribers(client, event,
799 				       event->source.port, atomic, hop);
800 #if IS_ENABLED(CONFIG_SND_SEQ_UMP)
801 	if (!snd_seq_client_is_ump(client) || client->ump_endpoint_port < 0)
802 		return ret;
803 	/* If it's an event from EP port (and with a UMP group),
804 	 * deliver to subscribers of the corresponding UMP group port, too.
805 	 * Or, if it's from non-EP port, deliver to subscribers of EP port, too.
806 	 */
807 	if (event->source.port == client->ump_endpoint_port)
808 		ret2 = __deliver_to_subscribers(client, event,
809 						snd_seq_ump_group_port(event),
810 						atomic, hop);
811 	else
812 		ret2 = __deliver_to_subscribers(client, event,
813 						client->ump_endpoint_port,
814 						atomic, hop);
815 	if (ret2 < 0)
816 		return ret2;
817 #endif
818 	return ret;
819 }
820 
821 /* deliver an event to the destination port(s).
822  * if the event is to subscribers or broadcast, the event is dispatched
823  * to multiple targets.
824  *
825  * RETURN VALUE: n > 0  : the number of delivered events.
826  *               n == 0 : the event was not passed to any client.
827  *               n < 0  : error - event was not processed.
828  */
snd_seq_deliver_event(struct snd_seq_client * client,struct snd_seq_event * event,int atomic,int hop)829 static int snd_seq_deliver_event(struct snd_seq_client *client, struct snd_seq_event *event,
830 				 int atomic, int hop)
831 {
832 	int result;
833 
834 	hop++;
835 	if (hop >= SNDRV_SEQ_MAX_HOPS) {
836 		pr_debug("ALSA: seq: too long delivery path (%d:%d->%d:%d)\n",
837 			   event->source.client, event->source.port,
838 			   event->dest.client, event->dest.port);
839 		return -EMLINK;
840 	}
841 
842 	if (snd_seq_ev_is_variable(event) &&
843 	    snd_BUG_ON(atomic && (event->data.ext.len & SNDRV_SEQ_EXT_USRPTR)))
844 		return -EINVAL;
845 
846 	if (event->queue == SNDRV_SEQ_ADDRESS_SUBSCRIBERS ||
847 	    event->dest.client == SNDRV_SEQ_ADDRESS_SUBSCRIBERS)
848 		result = deliver_to_subscribers(client, event, atomic, hop);
849 	else
850 		result = snd_seq_deliver_single_event(client, event, atomic, hop);
851 
852 	return result;
853 }
854 
855 /*
856  * dispatch an event cell:
857  * This function is called only from queue check routines in timer
858  * interrupts or after enqueued.
859  * The event cell shall be released or re-queued in this function.
860  *
861  * RETURN VALUE: n > 0  : the number of delivered events.
862  *		 n == 0 : the event was not passed to any client.
863  *		 n < 0  : error - event was not processed.
864  */
snd_seq_dispatch_event(struct snd_seq_event_cell * cell,int atomic,int hop)865 int snd_seq_dispatch_event(struct snd_seq_event_cell *cell, int atomic, int hop)
866 {
867 	struct snd_seq_client *client;
868 	int result;
869 
870 	if (snd_BUG_ON(!cell))
871 		return -EINVAL;
872 
873 	client = snd_seq_client_use_ptr(cell->event.source.client);
874 	if (client == NULL) {
875 		snd_seq_cell_free(cell); /* release this cell */
876 		return -EINVAL;
877 	}
878 
879 	if (!snd_seq_ev_is_ump(&cell->event) &&
880 	    cell->event.type == SNDRV_SEQ_EVENT_NOTE) {
881 		/* NOTE event:
882 		 * the event cell is re-used as a NOTE-OFF event and
883 		 * enqueued again.
884 		 */
885 		struct snd_seq_event tmpev, *ev;
886 
887 		/* reserve this event to enqueue note-off later */
888 		tmpev = cell->event;
889 		tmpev.type = SNDRV_SEQ_EVENT_NOTEON;
890 		result = snd_seq_deliver_event(client, &tmpev, atomic, hop);
891 
892 		/*
893 		 * This was originally a note event.  We now re-use the
894 		 * cell for the note-off event.
895 		 */
896 
897 		ev = &cell->event;
898 		ev->type = SNDRV_SEQ_EVENT_NOTEOFF;
899 		ev->flags |= SNDRV_SEQ_PRIORITY_HIGH;
900 
901 		/* add the duration time */
902 		switch (ev->flags & SNDRV_SEQ_TIME_STAMP_MASK) {
903 		case SNDRV_SEQ_TIME_STAMP_TICK:
904 			cell->event.time.tick += ev->data.note.duration;
905 			break;
906 		case SNDRV_SEQ_TIME_STAMP_REAL:
907 			/* unit for duration is ms */
908 			ev->time.time.tv_nsec += 1000000 * (ev->data.note.duration % 1000);
909 			ev->time.time.tv_sec += ev->data.note.duration / 1000 +
910 						ev->time.time.tv_nsec / 1000000000;
911 			ev->time.time.tv_nsec %= 1000000000;
912 			break;
913 		}
914 		ev->data.note.velocity = ev->data.note.off_velocity;
915 
916 		/* Now queue this cell as the note off event */
917 		if (snd_seq_enqueue_event(cell, atomic, hop) < 0)
918 			snd_seq_cell_free(cell); /* release this cell */
919 
920 	} else {
921 		/* Normal events:
922 		 * event cell is freed after processing the event
923 		 */
924 
925 		result = snd_seq_deliver_event(client, &cell->event, atomic, hop);
926 		snd_seq_cell_free(cell);
927 	}
928 
929 	snd_seq_client_unlock(client);
930 	return result;
931 }
932 
933 
934 /* Allocate a cell from client pool and enqueue it to queue:
935  * if pool is empty and blocking is TRUE, sleep until a new cell is
936  * available.
937  */
snd_seq_client_enqueue_event(struct snd_seq_client * client,struct snd_seq_event * event,struct file * file,int blocking,int atomic,int hop,struct mutex * mutexp)938 static int snd_seq_client_enqueue_event(struct snd_seq_client *client,
939 					struct snd_seq_event *event,
940 					struct file *file, int blocking,
941 					int atomic, int hop,
942 					struct mutex *mutexp)
943 {
944 	struct snd_seq_event_cell *cell;
945 	int err;
946 
947 	/* special queue values - force direct passing */
948 	if (event->queue == SNDRV_SEQ_ADDRESS_SUBSCRIBERS) {
949 		event->dest.client = SNDRV_SEQ_ADDRESS_SUBSCRIBERS;
950 		event->queue = SNDRV_SEQ_QUEUE_DIRECT;
951 	} else if (event->dest.client == SNDRV_SEQ_ADDRESS_SUBSCRIBERS) {
952 		/* check presence of source port */
953 		struct snd_seq_client_port *src_port = snd_seq_port_use_ptr(client, event->source.port);
954 		if (src_port == NULL)
955 			return -EINVAL;
956 		snd_seq_port_unlock(src_port);
957 	}
958 
959 	/* direct event processing without enqueued */
960 	if (snd_seq_ev_is_direct(event)) {
961 		if (!snd_seq_ev_is_ump(event) &&
962 		    event->type == SNDRV_SEQ_EVENT_NOTE)
963 			return -EINVAL; /* this event must be enqueued! */
964 		return snd_seq_deliver_event(client, event, atomic, hop);
965 	}
966 
967 	/* Not direct, normal queuing */
968 	if (snd_seq_queue_is_used(event->queue, client->number) <= 0)
969 		return -EINVAL;  /* invalid queue */
970 	if (! snd_seq_write_pool_allocated(client))
971 		return -ENXIO; /* queue is not allocated */
972 
973 	/* allocate an event cell */
974 	err = snd_seq_event_dup(client->pool, event, &cell, !blocking || atomic,
975 				file, mutexp);
976 	if (err < 0)
977 		return err;
978 
979 	/* we got a cell. enqueue it. */
980 	err = snd_seq_enqueue_event(cell, atomic, hop);
981 	if (err < 0) {
982 		snd_seq_cell_free(cell);
983 		return err;
984 	}
985 
986 	return 0;
987 }
988 
989 
990 /*
991  * check validity of event type and data length.
992  * return non-zero if invalid.
993  */
check_event_type_and_length(struct snd_seq_event * ev)994 static int check_event_type_and_length(struct snd_seq_event *ev)
995 {
996 	switch (snd_seq_ev_length_type(ev)) {
997 	case SNDRV_SEQ_EVENT_LENGTH_FIXED:
998 		if (snd_seq_ev_is_variable_type(ev))
999 			return -EINVAL;
1000 		break;
1001 	case SNDRV_SEQ_EVENT_LENGTH_VARIABLE:
1002 		if (! snd_seq_ev_is_variable_type(ev) ||
1003 		    (ev->data.ext.len & ~SNDRV_SEQ_EXT_MASK) >= SNDRV_SEQ_MAX_EVENT_LEN)
1004 			return -EINVAL;
1005 		break;
1006 	case SNDRV_SEQ_EVENT_LENGTH_VARUSR:
1007 		if (! snd_seq_ev_is_direct(ev))
1008 			return -EINVAL;
1009 		break;
1010 	}
1011 	return 0;
1012 }
1013 
1014 
1015 /* handle write() */
1016 /* possible error values:
1017  *	-ENXIO	invalid client or file open mode
1018  *	-ENOMEM	malloc failed
1019  *	-EFAULT	seg. fault during copy from user space
1020  *	-EINVAL	invalid event
1021  *	-EAGAIN	no space in output pool
1022  *	-EINTR	interrupts while sleep
1023  *	-EMLINK	too many hops
1024  *	others	depends on return value from driver callback
1025  */
snd_seq_write(struct file * file,const char __user * buf,size_t count,loff_t * offset)1026 static ssize_t snd_seq_write(struct file *file, const char __user *buf,
1027 			     size_t count, loff_t *offset)
1028 {
1029 	struct snd_seq_client *client = file->private_data;
1030 	int written = 0, len;
1031 	int err, handled;
1032 	union __snd_seq_event __event;
1033 	struct snd_seq_event *ev = &__event.legacy;
1034 
1035 	if (!(snd_seq_file_flags(file) & SNDRV_SEQ_LFLG_OUTPUT))
1036 		return -ENXIO;
1037 
1038 	/* check client structures are in place */
1039 	if (snd_BUG_ON(!client))
1040 		return -ENXIO;
1041 
1042 	if (!client->accept_output || client->pool == NULL)
1043 		return -ENXIO;
1044 
1045  repeat:
1046 	handled = 0;
1047 	/* allocate the pool now if the pool is not allocated yet */
1048 	mutex_lock(&client->ioctl_mutex);
1049 	if (client->pool->size > 0 && !snd_seq_write_pool_allocated(client)) {
1050 		err = snd_seq_pool_init(client->pool);
1051 		if (err < 0)
1052 			goto out;
1053 	}
1054 
1055 	/* only process whole events */
1056 	err = -EINVAL;
1057 	while (count >= sizeof(struct snd_seq_event)) {
1058 		/* Read in the event header from the user */
1059 		len = sizeof(struct snd_seq_event);
1060 		if (copy_from_user(ev, buf, len)) {
1061 			err = -EFAULT;
1062 			break;
1063 		}
1064 		/* read in the rest bytes for UMP events */
1065 		if (snd_seq_ev_is_ump(ev)) {
1066 			if (count < sizeof(struct snd_seq_ump_event))
1067 				break;
1068 			if (copy_from_user((char *)ev + len, buf + len,
1069 					   sizeof(struct snd_seq_ump_event) - len)) {
1070 				err = -EFAULT;
1071 				break;
1072 			}
1073 			len = sizeof(struct snd_seq_ump_event);
1074 		}
1075 
1076 		ev->source.client = client->number;	/* fill in client number */
1077 		/* Check for extension data length */
1078 		if (check_event_type_and_length(ev)) {
1079 			err = -EINVAL;
1080 			break;
1081 		}
1082 
1083 		if (!event_is_compatible(client, ev)) {
1084 			err = -EINVAL;
1085 			break;
1086 		}
1087 
1088 		/* check for special events */
1089 		if (!snd_seq_ev_is_ump(ev)) {
1090 			if (ev->type == SNDRV_SEQ_EVENT_NONE)
1091 				goto __skip_event;
1092 			else if (snd_seq_ev_is_reserved(ev)) {
1093 				err = -EINVAL;
1094 				break;
1095 			}
1096 		}
1097 
1098 		if (snd_seq_ev_is_variable(ev)) {
1099 			int extlen = ev->data.ext.len & ~SNDRV_SEQ_EXT_MASK;
1100 			if ((size_t)(extlen + len) > count) {
1101 				/* back out, will get an error this time or next */
1102 				err = -EINVAL;
1103 				break;
1104 			}
1105 			/* set user space pointer */
1106 			ev->data.ext.len = extlen | SNDRV_SEQ_EXT_USRPTR;
1107 			ev->data.ext.ptr = (char __force *)buf + len;
1108 			len += extlen; /* increment data length */
1109 		} else {
1110 #ifdef CONFIG_COMPAT
1111 			if (client->convert32 && snd_seq_ev_is_varusr(ev))
1112 				ev->data.ext.ptr =
1113 					(void __force *)compat_ptr(ev->data.raw32.d[1]);
1114 #endif
1115 		}
1116 
1117 		/* ok, enqueue it */
1118 		err = snd_seq_client_enqueue_event(client, ev, file,
1119 						   !(file->f_flags & O_NONBLOCK),
1120 						   0, 0, &client->ioctl_mutex);
1121 		if (err < 0)
1122 			break;
1123 		handled++;
1124 
1125 	__skip_event:
1126 		/* Update pointers and counts */
1127 		count -= len;
1128 		buf += len;
1129 		written += len;
1130 
1131 		/* let's have a coffee break if too many events are queued */
1132 		if (++handled >= 200) {
1133 			mutex_unlock(&client->ioctl_mutex);
1134 			goto repeat;
1135 		}
1136 	}
1137 
1138  out:
1139 	mutex_unlock(&client->ioctl_mutex);
1140 	return written ? written : err;
1141 }
1142 
1143 
1144 /*
1145  * handle polling
1146  */
snd_seq_poll(struct file * file,poll_table * wait)1147 static __poll_t snd_seq_poll(struct file *file, poll_table * wait)
1148 {
1149 	struct snd_seq_client *client = file->private_data;
1150 	__poll_t mask = 0;
1151 
1152 	/* check client structures are in place */
1153 	if (snd_BUG_ON(!client))
1154 		return EPOLLERR;
1155 
1156 	if ((snd_seq_file_flags(file) & SNDRV_SEQ_LFLG_INPUT) &&
1157 	    client->data.user.fifo) {
1158 
1159 		/* check if data is available in the outqueue */
1160 		if (snd_seq_fifo_poll_wait(client->data.user.fifo, file, wait))
1161 			mask |= EPOLLIN | EPOLLRDNORM;
1162 	}
1163 
1164 	if (snd_seq_file_flags(file) & SNDRV_SEQ_LFLG_OUTPUT) {
1165 
1166 		/* check if data is available in the pool */
1167 		if (snd_seq_pool_poll_wait(client->pool, file, wait))
1168 			mask |= EPOLLOUT | EPOLLWRNORM;
1169 	}
1170 
1171 	return mask;
1172 }
1173 
1174 
1175 /*-----------------------------------------------------*/
1176 
snd_seq_ioctl_pversion(struct snd_seq_client * client,void * arg)1177 static int snd_seq_ioctl_pversion(struct snd_seq_client *client, void *arg)
1178 {
1179 	int *pversion = arg;
1180 
1181 	*pversion = SNDRV_SEQ_VERSION;
1182 	return 0;
1183 }
1184 
snd_seq_ioctl_user_pversion(struct snd_seq_client * client,void * arg)1185 static int snd_seq_ioctl_user_pversion(struct snd_seq_client *client, void *arg)
1186 {
1187 	client->user_pversion = *(unsigned int *)arg;
1188 	return 0;
1189 }
1190 
snd_seq_ioctl_client_id(struct snd_seq_client * client,void * arg)1191 static int snd_seq_ioctl_client_id(struct snd_seq_client *client, void *arg)
1192 {
1193 	int *client_id = arg;
1194 
1195 	*client_id = client->number;
1196 	return 0;
1197 }
1198 
1199 /* SYSTEM_INFO ioctl() */
snd_seq_ioctl_system_info(struct snd_seq_client * client,void * arg)1200 static int snd_seq_ioctl_system_info(struct snd_seq_client *client, void *arg)
1201 {
1202 	struct snd_seq_system_info *info = arg;
1203 
1204 	memset(info, 0, sizeof(*info));
1205 	/* fill the info fields */
1206 	info->queues = SNDRV_SEQ_MAX_QUEUES;
1207 	info->clients = SNDRV_SEQ_MAX_CLIENTS;
1208 	info->ports = SNDRV_SEQ_MAX_PORTS;
1209 	info->channels = 256;	/* fixed limit */
1210 	info->cur_clients = client_usage.cur;
1211 	info->cur_queues = snd_seq_queue_get_cur_queues();
1212 
1213 	return 0;
1214 }
1215 
1216 
1217 /* RUNNING_MODE ioctl() */
snd_seq_ioctl_running_mode(struct snd_seq_client * client,void * arg)1218 static int snd_seq_ioctl_running_mode(struct snd_seq_client *client, void  *arg)
1219 {
1220 	struct snd_seq_running_info *info = arg;
1221 	struct snd_seq_client *cptr;
1222 	int err = 0;
1223 
1224 	/* requested client number */
1225 	cptr = client_load_and_use_ptr(info->client);
1226 	if (cptr == NULL)
1227 		return -ENOENT;		/* don't change !!! */
1228 
1229 #ifdef SNDRV_BIG_ENDIAN
1230 	if (!info->big_endian) {
1231 		err = -EINVAL;
1232 		goto __err;
1233 	}
1234 #else
1235 	if (info->big_endian) {
1236 		err = -EINVAL;
1237 		goto __err;
1238 	}
1239 
1240 #endif
1241 	if (info->cpu_mode > sizeof(long)) {
1242 		err = -EINVAL;
1243 		goto __err;
1244 	}
1245 	cptr->convert32 = (info->cpu_mode < sizeof(long));
1246  __err:
1247 	snd_seq_client_unlock(cptr);
1248 	return err;
1249 }
1250 
1251 /* CLIENT_INFO ioctl() */
get_client_info(struct snd_seq_client * cptr,struct snd_seq_client_info * info)1252 static void get_client_info(struct snd_seq_client *cptr,
1253 			    struct snd_seq_client_info *info)
1254 {
1255 	info->client = cptr->number;
1256 
1257 	/* fill the info fields */
1258 	info->type = cptr->type;
1259 	strcpy(info->name, cptr->name);
1260 	info->filter = cptr->filter;
1261 	info->event_lost = cptr->event_lost;
1262 	memcpy(info->event_filter, cptr->event_filter, 32);
1263 	info->group_filter = cptr->group_filter;
1264 	info->num_ports = cptr->num_ports;
1265 
1266 	if (cptr->type == USER_CLIENT)
1267 		info->pid = pid_vnr(cptr->data.user.owner);
1268 	else
1269 		info->pid = -1;
1270 
1271 	if (cptr->type == KERNEL_CLIENT)
1272 		info->card = cptr->data.kernel.card ? cptr->data.kernel.card->number : -1;
1273 	else
1274 		info->card = -1;
1275 
1276 	info->midi_version = cptr->midi_version;
1277 	memset(info->reserved, 0, sizeof(info->reserved));
1278 }
1279 
snd_seq_ioctl_get_client_info(struct snd_seq_client * client,void * arg)1280 static int snd_seq_ioctl_get_client_info(struct snd_seq_client *client,
1281 					 void *arg)
1282 {
1283 	struct snd_seq_client_info *client_info = arg;
1284 	struct snd_seq_client *cptr;
1285 
1286 	/* requested client number */
1287 	cptr = client_load_and_use_ptr(client_info->client);
1288 	if (cptr == NULL)
1289 		return -ENOENT;		/* don't change !!! */
1290 
1291 	get_client_info(cptr, client_info);
1292 	snd_seq_client_unlock(cptr);
1293 
1294 	return 0;
1295 }
1296 
1297 
1298 /* CLIENT_INFO ioctl() */
snd_seq_ioctl_set_client_info(struct snd_seq_client * client,void * arg)1299 static int snd_seq_ioctl_set_client_info(struct snd_seq_client *client,
1300 					 void *arg)
1301 {
1302 	struct snd_seq_client_info *client_info = arg;
1303 
1304 	/* it is not allowed to set the info fields for an another client */
1305 	if (client->number != client_info->client)
1306 		return -EPERM;
1307 	/* also client type must be set now */
1308 	if (client->type != client_info->type)
1309 		return -EINVAL;
1310 
1311 	if (client->user_pversion >= SNDRV_PROTOCOL_VERSION(1, 0, 3)) {
1312 		/* check validity of midi_version field */
1313 		if (client_info->midi_version > SNDRV_SEQ_CLIENT_UMP_MIDI_2_0)
1314 			return -EINVAL;
1315 
1316 		/* check if UMP is supported in kernel */
1317 		if (!IS_ENABLED(CONFIG_SND_SEQ_UMP) &&
1318 		    client_info->midi_version > 0)
1319 			return -EINVAL;
1320 	}
1321 
1322 	/* fill the info fields */
1323 	if (client_info->name[0])
1324 		strscpy(client->name, client_info->name, sizeof(client->name));
1325 
1326 	client->filter = client_info->filter;
1327 	client->event_lost = client_info->event_lost;
1328 	if (client->user_pversion >= SNDRV_PROTOCOL_VERSION(1, 0, 3))
1329 		client->midi_version = client_info->midi_version;
1330 	memcpy(client->event_filter, client_info->event_filter, 32);
1331 	client->group_filter = client_info->group_filter;
1332 	return 0;
1333 }
1334 
1335 
1336 /*
1337  * CREATE PORT ioctl()
1338  */
snd_seq_ioctl_create_port(struct snd_seq_client * client,void * arg)1339 static int snd_seq_ioctl_create_port(struct snd_seq_client *client, void *arg)
1340 {
1341 	struct snd_seq_port_info *info = arg;
1342 	struct snd_seq_client_port *port;
1343 	struct snd_seq_port_callback *callback;
1344 	int port_idx, err;
1345 
1346 	/* it is not allowed to create the port for an another client */
1347 	if (info->addr.client != client->number)
1348 		return -EPERM;
1349 	if (client->type == USER_CLIENT && info->kernel)
1350 		return -EINVAL;
1351 	if ((info->capability & SNDRV_SEQ_PORT_CAP_UMP_ENDPOINT) &&
1352 	    client->ump_endpoint_port >= 0)
1353 		return -EBUSY;
1354 
1355 	if (info->flags & SNDRV_SEQ_PORT_FLG_GIVEN_PORT)
1356 		port_idx = info->addr.port;
1357 	else
1358 		port_idx = -1;
1359 	if (port_idx >= SNDRV_SEQ_ADDRESS_UNKNOWN)
1360 		return -EINVAL;
1361 	err = snd_seq_create_port(client, port_idx, &port);
1362 	if (err < 0)
1363 		return err;
1364 
1365 	if (client->type == KERNEL_CLIENT) {
1366 		callback = info->kernel;
1367 		if (callback) {
1368 			if (callback->owner)
1369 				port->owner = callback->owner;
1370 			port->private_data = callback->private_data;
1371 			port->private_free = callback->private_free;
1372 			port->event_input = callback->event_input;
1373 			port->c_src.open = callback->subscribe;
1374 			port->c_src.close = callback->unsubscribe;
1375 			port->c_dest.open = callback->use;
1376 			port->c_dest.close = callback->unuse;
1377 		}
1378 	}
1379 
1380 	info->addr = port->addr;
1381 
1382 	snd_seq_set_port_info(port, info);
1383 	if (info->capability & SNDRV_SEQ_PORT_CAP_UMP_ENDPOINT)
1384 		client->ump_endpoint_port = port->addr.port;
1385 	snd_seq_system_client_ev_port_start(port->addr.client, port->addr.port);
1386 	snd_seq_port_unlock(port);
1387 
1388 	return 0;
1389 }
1390 
1391 /*
1392  * DELETE PORT ioctl()
1393  */
snd_seq_ioctl_delete_port(struct snd_seq_client * client,void * arg)1394 static int snd_seq_ioctl_delete_port(struct snd_seq_client *client, void *arg)
1395 {
1396 	struct snd_seq_port_info *info = arg;
1397 	int err;
1398 
1399 	/* it is not allowed to remove the port for an another client */
1400 	if (info->addr.client != client->number)
1401 		return -EPERM;
1402 
1403 	err = snd_seq_delete_port(client, info->addr.port);
1404 	if (err >= 0) {
1405 		if (client->ump_endpoint_port == info->addr.port)
1406 			client->ump_endpoint_port = -1;
1407 		snd_seq_system_client_ev_port_exit(client->number, info->addr.port);
1408 	}
1409 	return err;
1410 }
1411 
1412 
1413 /*
1414  * GET_PORT_INFO ioctl() (on any client)
1415  */
snd_seq_ioctl_get_port_info(struct snd_seq_client * client,void * arg)1416 static int snd_seq_ioctl_get_port_info(struct snd_seq_client *client, void *arg)
1417 {
1418 	struct snd_seq_port_info *info = arg;
1419 	struct snd_seq_client *cptr;
1420 	struct snd_seq_client_port *port;
1421 
1422 	cptr = client_load_and_use_ptr(info->addr.client);
1423 	if (cptr == NULL)
1424 		return -ENXIO;
1425 
1426 	port = snd_seq_port_use_ptr(cptr, info->addr.port);
1427 	if (port == NULL) {
1428 		snd_seq_client_unlock(cptr);
1429 		return -ENOENT;			/* don't change */
1430 	}
1431 
1432 	/* get port info */
1433 	snd_seq_get_port_info(port, info);
1434 	snd_seq_port_unlock(port);
1435 	snd_seq_client_unlock(cptr);
1436 
1437 	return 0;
1438 }
1439 
1440 
1441 /*
1442  * SET_PORT_INFO ioctl() (only ports on this/own client)
1443  */
snd_seq_ioctl_set_port_info(struct snd_seq_client * client,void * arg)1444 static int snd_seq_ioctl_set_port_info(struct snd_seq_client *client, void *arg)
1445 {
1446 	struct snd_seq_port_info *info = arg;
1447 	struct snd_seq_client_port *port;
1448 
1449 	if (info->addr.client != client->number) /* only set our own ports ! */
1450 		return -EPERM;
1451 	port = snd_seq_port_use_ptr(client, info->addr.port);
1452 	if (port) {
1453 		snd_seq_set_port_info(port, info);
1454 		snd_seq_port_unlock(port);
1455 	}
1456 	return 0;
1457 }
1458 
1459 
1460 /*
1461  * port subscription (connection)
1462  */
1463 #define PERM_RD		(SNDRV_SEQ_PORT_CAP_READ|SNDRV_SEQ_PORT_CAP_SUBS_READ)
1464 #define PERM_WR		(SNDRV_SEQ_PORT_CAP_WRITE|SNDRV_SEQ_PORT_CAP_SUBS_WRITE)
1465 
check_subscription_permission(struct snd_seq_client * client,struct snd_seq_client_port * sport,struct snd_seq_client_port * dport,struct snd_seq_port_subscribe * subs)1466 static int check_subscription_permission(struct snd_seq_client *client,
1467 					 struct snd_seq_client_port *sport,
1468 					 struct snd_seq_client_port *dport,
1469 					 struct snd_seq_port_subscribe *subs)
1470 {
1471 	if (client->number != subs->sender.client &&
1472 	    client->number != subs->dest.client) {
1473 		/* connection by third client - check export permission */
1474 		if (check_port_perm(sport, SNDRV_SEQ_PORT_CAP_NO_EXPORT))
1475 			return -EPERM;
1476 		if (check_port_perm(dport, SNDRV_SEQ_PORT_CAP_NO_EXPORT))
1477 			return -EPERM;
1478 	}
1479 
1480 	/* check read permission */
1481 	/* if sender or receiver is the subscribing client itself,
1482 	 * no permission check is necessary
1483 	 */
1484 	if (client->number != subs->sender.client) {
1485 		if (! check_port_perm(sport, PERM_RD))
1486 			return -EPERM;
1487 	}
1488 	/* check write permission */
1489 	if (client->number != subs->dest.client) {
1490 		if (! check_port_perm(dport, PERM_WR))
1491 			return -EPERM;
1492 	}
1493 	return 0;
1494 }
1495 
1496 /*
1497  * send an subscription notify event to user client:
1498  * client must be user client.
1499  */
snd_seq_client_notify_subscription(int client,int port,struct snd_seq_port_subscribe * info,int evtype)1500 int snd_seq_client_notify_subscription(int client, int port,
1501 				       struct snd_seq_port_subscribe *info,
1502 				       int evtype)
1503 {
1504 	struct snd_seq_event event;
1505 
1506 	memset(&event, 0, sizeof(event));
1507 	event.type = evtype;
1508 	event.data.connect.dest = info->dest;
1509 	event.data.connect.sender = info->sender;
1510 
1511 	return snd_seq_system_notify(client, port, &event);  /* non-atomic */
1512 }
1513 
1514 
1515 /*
1516  * add to port's subscription list IOCTL interface
1517  */
snd_seq_ioctl_subscribe_port(struct snd_seq_client * client,void * arg)1518 static int snd_seq_ioctl_subscribe_port(struct snd_seq_client *client,
1519 					void *arg)
1520 {
1521 	struct snd_seq_port_subscribe *subs = arg;
1522 	int result = -EINVAL;
1523 	struct snd_seq_client *receiver = NULL, *sender = NULL;
1524 	struct snd_seq_client_port *sport = NULL, *dport = NULL;
1525 
1526 	receiver = client_load_and_use_ptr(subs->dest.client);
1527 	if (!receiver)
1528 		goto __end;
1529 	sender = client_load_and_use_ptr(subs->sender.client);
1530 	if (!sender)
1531 		goto __end;
1532 	sport = snd_seq_port_use_ptr(sender, subs->sender.port);
1533 	if (!sport)
1534 		goto __end;
1535 	dport = snd_seq_port_use_ptr(receiver, subs->dest.port);
1536 	if (!dport)
1537 		goto __end;
1538 
1539 	result = check_subscription_permission(client, sport, dport, subs);
1540 	if (result < 0)
1541 		goto __end;
1542 
1543 	/* connect them */
1544 	result = snd_seq_port_connect(client, sender, sport, receiver, dport, subs);
1545 	if (! result) /* broadcast announce */
1546 		snd_seq_client_notify_subscription(SNDRV_SEQ_ADDRESS_SUBSCRIBERS, 0,
1547 						   subs, SNDRV_SEQ_EVENT_PORT_SUBSCRIBED);
1548       __end:
1549       	if (sport)
1550 		snd_seq_port_unlock(sport);
1551 	if (dport)
1552 		snd_seq_port_unlock(dport);
1553 	if (sender)
1554 		snd_seq_client_unlock(sender);
1555 	if (receiver)
1556 		snd_seq_client_unlock(receiver);
1557 	return result;
1558 }
1559 
1560 
1561 /*
1562  * remove from port's subscription list
1563  */
snd_seq_ioctl_unsubscribe_port(struct snd_seq_client * client,void * arg)1564 static int snd_seq_ioctl_unsubscribe_port(struct snd_seq_client *client,
1565 					  void *arg)
1566 {
1567 	struct snd_seq_port_subscribe *subs = arg;
1568 	int result = -ENXIO;
1569 	struct snd_seq_client *receiver = NULL, *sender = NULL;
1570 	struct snd_seq_client_port *sport = NULL, *dport = NULL;
1571 
1572 	receiver = snd_seq_client_use_ptr(subs->dest.client);
1573 	if (!receiver)
1574 		goto __end;
1575 	sender = snd_seq_client_use_ptr(subs->sender.client);
1576 	if (!sender)
1577 		goto __end;
1578 	sport = snd_seq_port_use_ptr(sender, subs->sender.port);
1579 	if (!sport)
1580 		goto __end;
1581 	dport = snd_seq_port_use_ptr(receiver, subs->dest.port);
1582 	if (!dport)
1583 		goto __end;
1584 
1585 	result = check_subscription_permission(client, sport, dport, subs);
1586 	if (result < 0)
1587 		goto __end;
1588 
1589 	result = snd_seq_port_disconnect(client, sender, sport, receiver, dport, subs);
1590 	if (! result) /* broadcast announce */
1591 		snd_seq_client_notify_subscription(SNDRV_SEQ_ADDRESS_SUBSCRIBERS, 0,
1592 						   subs, SNDRV_SEQ_EVENT_PORT_UNSUBSCRIBED);
1593       __end:
1594       	if (sport)
1595 		snd_seq_port_unlock(sport);
1596 	if (dport)
1597 		snd_seq_port_unlock(dport);
1598 	if (sender)
1599 		snd_seq_client_unlock(sender);
1600 	if (receiver)
1601 		snd_seq_client_unlock(receiver);
1602 	return result;
1603 }
1604 
1605 
1606 /* CREATE_QUEUE ioctl() */
snd_seq_ioctl_create_queue(struct snd_seq_client * client,void * arg)1607 static int snd_seq_ioctl_create_queue(struct snd_seq_client *client, void *arg)
1608 {
1609 	struct snd_seq_queue_info *info = arg;
1610 	struct snd_seq_queue *q;
1611 
1612 	q = snd_seq_queue_alloc(client->number, info->locked, info->flags);
1613 	if (IS_ERR(q))
1614 		return PTR_ERR(q);
1615 
1616 	info->queue = q->queue;
1617 	info->locked = q->locked;
1618 	info->owner = q->owner;
1619 
1620 	/* set queue name */
1621 	if (!info->name[0])
1622 		snprintf(info->name, sizeof(info->name), "Queue-%d", q->queue);
1623 	strscpy(q->name, info->name, sizeof(q->name));
1624 	snd_use_lock_free(&q->use_lock);
1625 
1626 	return 0;
1627 }
1628 
1629 /* DELETE_QUEUE ioctl() */
snd_seq_ioctl_delete_queue(struct snd_seq_client * client,void * arg)1630 static int snd_seq_ioctl_delete_queue(struct snd_seq_client *client, void *arg)
1631 {
1632 	struct snd_seq_queue_info *info = arg;
1633 
1634 	return snd_seq_queue_delete(client->number, info->queue);
1635 }
1636 
1637 /* GET_QUEUE_INFO ioctl() */
snd_seq_ioctl_get_queue_info(struct snd_seq_client * client,void * arg)1638 static int snd_seq_ioctl_get_queue_info(struct snd_seq_client *client,
1639 					void *arg)
1640 {
1641 	struct snd_seq_queue_info *info = arg;
1642 	struct snd_seq_queue *q;
1643 
1644 	q = queueptr(info->queue);
1645 	if (q == NULL)
1646 		return -EINVAL;
1647 
1648 	memset(info, 0, sizeof(*info));
1649 	info->queue = q->queue;
1650 	info->owner = q->owner;
1651 	info->locked = q->locked;
1652 	strscpy(info->name, q->name, sizeof(info->name));
1653 	queuefree(q);
1654 
1655 	return 0;
1656 }
1657 
1658 /* SET_QUEUE_INFO ioctl() */
snd_seq_ioctl_set_queue_info(struct snd_seq_client * client,void * arg)1659 static int snd_seq_ioctl_set_queue_info(struct snd_seq_client *client,
1660 					void *arg)
1661 {
1662 	struct snd_seq_queue_info *info = arg;
1663 	struct snd_seq_queue *q;
1664 
1665 	if (info->owner != client->number)
1666 		return -EINVAL;
1667 
1668 	/* change owner/locked permission */
1669 	if (snd_seq_queue_check_access(info->queue, client->number)) {
1670 		if (snd_seq_queue_set_owner(info->queue, client->number, info->locked) < 0)
1671 			return -EPERM;
1672 		if (info->locked)
1673 			snd_seq_queue_use(info->queue, client->number, 1);
1674 	} else {
1675 		return -EPERM;
1676 	}
1677 
1678 	q = queueptr(info->queue);
1679 	if (! q)
1680 		return -EINVAL;
1681 	if (q->owner != client->number) {
1682 		queuefree(q);
1683 		return -EPERM;
1684 	}
1685 	strscpy(q->name, info->name, sizeof(q->name));
1686 	queuefree(q);
1687 
1688 	return 0;
1689 }
1690 
1691 /* GET_NAMED_QUEUE ioctl() */
snd_seq_ioctl_get_named_queue(struct snd_seq_client * client,void * arg)1692 static int snd_seq_ioctl_get_named_queue(struct snd_seq_client *client,
1693 					 void *arg)
1694 {
1695 	struct snd_seq_queue_info *info = arg;
1696 	struct snd_seq_queue *q;
1697 
1698 	q = snd_seq_queue_find_name(info->name);
1699 	if (q == NULL)
1700 		return -EINVAL;
1701 	info->queue = q->queue;
1702 	info->owner = q->owner;
1703 	info->locked = q->locked;
1704 	queuefree(q);
1705 
1706 	return 0;
1707 }
1708 
1709 /* GET_QUEUE_STATUS ioctl() */
snd_seq_ioctl_get_queue_status(struct snd_seq_client * client,void * arg)1710 static int snd_seq_ioctl_get_queue_status(struct snd_seq_client *client,
1711 					  void *arg)
1712 {
1713 	struct snd_seq_queue_status *status = arg;
1714 	struct snd_seq_queue *queue;
1715 	struct snd_seq_timer *tmr;
1716 
1717 	queue = queueptr(status->queue);
1718 	if (queue == NULL)
1719 		return -EINVAL;
1720 	memset(status, 0, sizeof(*status));
1721 	status->queue = queue->queue;
1722 
1723 	tmr = queue->timer;
1724 	status->events = queue->tickq->cells + queue->timeq->cells;
1725 
1726 	status->time = snd_seq_timer_get_cur_time(tmr, true);
1727 	status->tick = snd_seq_timer_get_cur_tick(tmr);
1728 
1729 	status->running = tmr->running;
1730 
1731 	status->flags = queue->flags;
1732 	queuefree(queue);
1733 
1734 	return 0;
1735 }
1736 
1737 
1738 /* GET_QUEUE_TEMPO ioctl() */
snd_seq_ioctl_get_queue_tempo(struct snd_seq_client * client,void * arg)1739 static int snd_seq_ioctl_get_queue_tempo(struct snd_seq_client *client,
1740 					 void *arg)
1741 {
1742 	struct snd_seq_queue_tempo *tempo = arg;
1743 	struct snd_seq_queue *queue;
1744 	struct snd_seq_timer *tmr;
1745 
1746 	queue = queueptr(tempo->queue);
1747 	if (queue == NULL)
1748 		return -EINVAL;
1749 	memset(tempo, 0, sizeof(*tempo));
1750 	tempo->queue = queue->queue;
1751 
1752 	tmr = queue->timer;
1753 
1754 	tempo->tempo = tmr->tempo;
1755 	tempo->ppq = tmr->ppq;
1756 	tempo->skew_value = tmr->skew;
1757 	tempo->skew_base = tmr->skew_base;
1758 	if (client->user_pversion >= SNDRV_PROTOCOL_VERSION(1, 0, 4))
1759 		tempo->tempo_base = tmr->tempo_base;
1760 	queuefree(queue);
1761 
1762 	return 0;
1763 }
1764 
1765 
1766 /* SET_QUEUE_TEMPO ioctl() */
snd_seq_set_queue_tempo(int client,struct snd_seq_queue_tempo * tempo)1767 int snd_seq_set_queue_tempo(int client, struct snd_seq_queue_tempo *tempo)
1768 {
1769 	if (!snd_seq_queue_check_access(tempo->queue, client))
1770 		return -EPERM;
1771 	return snd_seq_queue_timer_set_tempo(tempo->queue, client, tempo);
1772 }
1773 EXPORT_SYMBOL(snd_seq_set_queue_tempo);
1774 
snd_seq_ioctl_set_queue_tempo(struct snd_seq_client * client,void * arg)1775 static int snd_seq_ioctl_set_queue_tempo(struct snd_seq_client *client,
1776 					 void *arg)
1777 {
1778 	struct snd_seq_queue_tempo *tempo = arg;
1779 	int result;
1780 
1781 	if (client->user_pversion < SNDRV_PROTOCOL_VERSION(1, 0, 4))
1782 		tempo->tempo_base = 0;
1783 	result = snd_seq_set_queue_tempo(client->number, tempo);
1784 	return result < 0 ? result : 0;
1785 }
1786 
1787 
1788 /* GET_QUEUE_TIMER ioctl() */
snd_seq_ioctl_get_queue_timer(struct snd_seq_client * client,void * arg)1789 static int snd_seq_ioctl_get_queue_timer(struct snd_seq_client *client,
1790 					 void *arg)
1791 {
1792 	struct snd_seq_queue_timer *timer = arg;
1793 	struct snd_seq_queue *queue;
1794 	struct snd_seq_timer *tmr;
1795 
1796 	queue = queueptr(timer->queue);
1797 	if (queue == NULL)
1798 		return -EINVAL;
1799 
1800 	mutex_lock(&queue->timer_mutex);
1801 	tmr = queue->timer;
1802 	memset(timer, 0, sizeof(*timer));
1803 	timer->queue = queue->queue;
1804 
1805 	timer->type = tmr->type;
1806 	if (tmr->type == SNDRV_SEQ_TIMER_ALSA) {
1807 		timer->u.alsa.id = tmr->alsa_id;
1808 		timer->u.alsa.resolution = tmr->preferred_resolution;
1809 	}
1810 	mutex_unlock(&queue->timer_mutex);
1811 	queuefree(queue);
1812 
1813 	return 0;
1814 }
1815 
1816 
1817 /* SET_QUEUE_TIMER ioctl() */
snd_seq_ioctl_set_queue_timer(struct snd_seq_client * client,void * arg)1818 static int snd_seq_ioctl_set_queue_timer(struct snd_seq_client *client,
1819 					 void *arg)
1820 {
1821 	struct snd_seq_queue_timer *timer = arg;
1822 	int result = 0;
1823 
1824 	if (timer->type != SNDRV_SEQ_TIMER_ALSA)
1825 		return -EINVAL;
1826 
1827 	if (snd_seq_queue_check_access(timer->queue, client->number)) {
1828 		struct snd_seq_queue *q;
1829 		struct snd_seq_timer *tmr;
1830 
1831 		q = queueptr(timer->queue);
1832 		if (q == NULL)
1833 			return -ENXIO;
1834 		mutex_lock(&q->timer_mutex);
1835 		tmr = q->timer;
1836 		snd_seq_queue_timer_close(timer->queue);
1837 		tmr->type = timer->type;
1838 		if (tmr->type == SNDRV_SEQ_TIMER_ALSA) {
1839 			tmr->alsa_id = timer->u.alsa.id;
1840 			tmr->preferred_resolution = timer->u.alsa.resolution;
1841 		}
1842 		result = snd_seq_queue_timer_open(timer->queue);
1843 		mutex_unlock(&q->timer_mutex);
1844 		queuefree(q);
1845 	} else {
1846 		return -EPERM;
1847 	}
1848 
1849 	return result;
1850 }
1851 
1852 
1853 /* GET_QUEUE_CLIENT ioctl() */
snd_seq_ioctl_get_queue_client(struct snd_seq_client * client,void * arg)1854 static int snd_seq_ioctl_get_queue_client(struct snd_seq_client *client,
1855 					  void *arg)
1856 {
1857 	struct snd_seq_queue_client *info = arg;
1858 	int used;
1859 
1860 	used = snd_seq_queue_is_used(info->queue, client->number);
1861 	if (used < 0)
1862 		return -EINVAL;
1863 	info->used = used;
1864 	info->client = client->number;
1865 
1866 	return 0;
1867 }
1868 
1869 
1870 /* SET_QUEUE_CLIENT ioctl() */
snd_seq_ioctl_set_queue_client(struct snd_seq_client * client,void * arg)1871 static int snd_seq_ioctl_set_queue_client(struct snd_seq_client *client,
1872 					  void *arg)
1873 {
1874 	struct snd_seq_queue_client *info = arg;
1875 	int err;
1876 
1877 	if (info->used >= 0) {
1878 		err = snd_seq_queue_use(info->queue, client->number, info->used);
1879 		if (err < 0)
1880 			return err;
1881 	}
1882 
1883 	return snd_seq_ioctl_get_queue_client(client, arg);
1884 }
1885 
1886 
1887 /* GET_CLIENT_POOL ioctl() */
snd_seq_ioctl_get_client_pool(struct snd_seq_client * client,void * arg)1888 static int snd_seq_ioctl_get_client_pool(struct snd_seq_client *client,
1889 					 void *arg)
1890 {
1891 	struct snd_seq_client_pool *info = arg;
1892 	struct snd_seq_client *cptr;
1893 
1894 	cptr = client_load_and_use_ptr(info->client);
1895 	if (cptr == NULL)
1896 		return -ENOENT;
1897 	memset(info, 0, sizeof(*info));
1898 	info->client = cptr->number;
1899 	info->output_pool = cptr->pool->size;
1900 	info->output_room = cptr->pool->room;
1901 	info->output_free = info->output_pool;
1902 	info->output_free = snd_seq_unused_cells(cptr->pool);
1903 	if (cptr->type == USER_CLIENT) {
1904 		info->input_pool = cptr->data.user.fifo_pool_size;
1905 		info->input_free = info->input_pool;
1906 		info->input_free = snd_seq_fifo_unused_cells(cptr->data.user.fifo);
1907 	} else {
1908 		info->input_pool = 0;
1909 		info->input_free = 0;
1910 	}
1911 	snd_seq_client_unlock(cptr);
1912 
1913 	return 0;
1914 }
1915 
1916 /* SET_CLIENT_POOL ioctl() */
snd_seq_ioctl_set_client_pool(struct snd_seq_client * client,void * arg)1917 static int snd_seq_ioctl_set_client_pool(struct snd_seq_client *client,
1918 					 void *arg)
1919 {
1920 	struct snd_seq_client_pool *info = arg;
1921 	int rc;
1922 
1923 	if (client->number != info->client)
1924 		return -EINVAL; /* can't change other clients */
1925 
1926 	if (info->output_pool >= 1 && info->output_pool <= SNDRV_SEQ_MAX_EVENTS &&
1927 	    (! snd_seq_write_pool_allocated(client) ||
1928 	     info->output_pool != client->pool->size)) {
1929 		if (snd_seq_write_pool_allocated(client)) {
1930 			/* is the pool in use? */
1931 			if (atomic_read(&client->pool->counter))
1932 				return -EBUSY;
1933 			/* remove all existing cells */
1934 			snd_seq_pool_mark_closing(client->pool);
1935 			snd_seq_pool_done(client->pool);
1936 		}
1937 		client->pool->size = info->output_pool;
1938 		rc = snd_seq_pool_init(client->pool);
1939 		if (rc < 0)
1940 			return rc;
1941 	}
1942 	if (client->type == USER_CLIENT && client->data.user.fifo != NULL &&
1943 	    info->input_pool >= 1 &&
1944 	    info->input_pool <= SNDRV_SEQ_MAX_CLIENT_EVENTS &&
1945 	    info->input_pool != client->data.user.fifo_pool_size) {
1946 		/* change pool size */
1947 		rc = snd_seq_fifo_resize(client->data.user.fifo, info->input_pool);
1948 		if (rc < 0)
1949 			return rc;
1950 		client->data.user.fifo_pool_size = info->input_pool;
1951 	}
1952 	if (info->output_room >= 1 &&
1953 	    info->output_room <= client->pool->size) {
1954 		client->pool->room  = info->output_room;
1955 	}
1956 
1957 	return snd_seq_ioctl_get_client_pool(client, arg);
1958 }
1959 
1960 
1961 /* REMOVE_EVENTS ioctl() */
snd_seq_ioctl_remove_events(struct snd_seq_client * client,void * arg)1962 static int snd_seq_ioctl_remove_events(struct snd_seq_client *client,
1963 				       void *arg)
1964 {
1965 	struct snd_seq_remove_events *info = arg;
1966 
1967 	/*
1968 	 * Input mostly not implemented XXX.
1969 	 */
1970 	if (info->remove_mode & SNDRV_SEQ_REMOVE_INPUT) {
1971 		/*
1972 		 * No restrictions so for a user client we can clear
1973 		 * the whole fifo
1974 		 */
1975 		if (client->type == USER_CLIENT && client->data.user.fifo)
1976 			snd_seq_fifo_clear(client->data.user.fifo);
1977 	}
1978 
1979 	if (info->remove_mode & SNDRV_SEQ_REMOVE_OUTPUT)
1980 		snd_seq_queue_remove_cells(client->number, info);
1981 
1982 	return 0;
1983 }
1984 
1985 
1986 /*
1987  * get subscription info
1988  */
snd_seq_ioctl_get_subscription(struct snd_seq_client * client,void * arg)1989 static int snd_seq_ioctl_get_subscription(struct snd_seq_client *client,
1990 					  void *arg)
1991 {
1992 	struct snd_seq_port_subscribe *subs = arg;
1993 	int result;
1994 	struct snd_seq_client *sender = NULL;
1995 	struct snd_seq_client_port *sport = NULL;
1996 
1997 	result = -EINVAL;
1998 	sender = client_load_and_use_ptr(subs->sender.client);
1999 	if (!sender)
2000 		goto __end;
2001 	sport = snd_seq_port_use_ptr(sender, subs->sender.port);
2002 	if (!sport)
2003 		goto __end;
2004 	result = snd_seq_port_get_subscription(&sport->c_src, &subs->dest,
2005 					       subs);
2006       __end:
2007       	if (sport)
2008 		snd_seq_port_unlock(sport);
2009 	if (sender)
2010 		snd_seq_client_unlock(sender);
2011 
2012 	return result;
2013 }
2014 
2015 
2016 /*
2017  * get subscription info - check only its presence
2018  */
snd_seq_ioctl_query_subs(struct snd_seq_client * client,void * arg)2019 static int snd_seq_ioctl_query_subs(struct snd_seq_client *client, void *arg)
2020 {
2021 	struct snd_seq_query_subs *subs = arg;
2022 	int result = -ENXIO;
2023 	struct snd_seq_client *cptr = NULL;
2024 	struct snd_seq_client_port *port = NULL;
2025 	struct snd_seq_port_subs_info *group;
2026 	struct list_head *p;
2027 	int i;
2028 
2029 	cptr = client_load_and_use_ptr(subs->root.client);
2030 	if (!cptr)
2031 		goto __end;
2032 	port = snd_seq_port_use_ptr(cptr, subs->root.port);
2033 	if (!port)
2034 		goto __end;
2035 
2036 	switch (subs->type) {
2037 	case SNDRV_SEQ_QUERY_SUBS_READ:
2038 		group = &port->c_src;
2039 		break;
2040 	case SNDRV_SEQ_QUERY_SUBS_WRITE:
2041 		group = &port->c_dest;
2042 		break;
2043 	default:
2044 		goto __end;
2045 	}
2046 
2047 	down_read(&group->list_mutex);
2048 	/* search for the subscriber */
2049 	subs->num_subs = group->count;
2050 	i = 0;
2051 	result = -ENOENT;
2052 	list_for_each(p, &group->list_head) {
2053 		if (i++ == subs->index) {
2054 			/* found! */
2055 			struct snd_seq_subscribers *s;
2056 			if (subs->type == SNDRV_SEQ_QUERY_SUBS_READ) {
2057 				s = list_entry(p, struct snd_seq_subscribers, src_list);
2058 				subs->addr = s->info.dest;
2059 			} else {
2060 				s = list_entry(p, struct snd_seq_subscribers, dest_list);
2061 				subs->addr = s->info.sender;
2062 			}
2063 			subs->flags = s->info.flags;
2064 			subs->queue = s->info.queue;
2065 			result = 0;
2066 			break;
2067 		}
2068 	}
2069 	up_read(&group->list_mutex);
2070 
2071       __end:
2072    	if (port)
2073 		snd_seq_port_unlock(port);
2074 	if (cptr)
2075 		snd_seq_client_unlock(cptr);
2076 
2077 	return result;
2078 }
2079 
2080 
2081 /*
2082  * query next client
2083  */
snd_seq_ioctl_query_next_client(struct snd_seq_client * client,void * arg)2084 static int snd_seq_ioctl_query_next_client(struct snd_seq_client *client,
2085 					   void *arg)
2086 {
2087 	struct snd_seq_client_info *info = arg;
2088 	struct snd_seq_client *cptr = NULL;
2089 
2090 	/* search for next client */
2091 	if (info->client < INT_MAX)
2092 		info->client++;
2093 	if (info->client < 0)
2094 		info->client = 0;
2095 	for (; info->client < SNDRV_SEQ_MAX_CLIENTS; info->client++) {
2096 		cptr = client_load_and_use_ptr(info->client);
2097 		if (cptr)
2098 			break; /* found */
2099 	}
2100 	if (cptr == NULL)
2101 		return -ENOENT;
2102 
2103 	get_client_info(cptr, info);
2104 	snd_seq_client_unlock(cptr);
2105 
2106 	return 0;
2107 }
2108 
2109 /*
2110  * query next port
2111  */
snd_seq_ioctl_query_next_port(struct snd_seq_client * client,void * arg)2112 static int snd_seq_ioctl_query_next_port(struct snd_seq_client *client,
2113 					 void *arg)
2114 {
2115 	struct snd_seq_port_info *info = arg;
2116 	struct snd_seq_client *cptr;
2117 	struct snd_seq_client_port *port = NULL;
2118 
2119 	cptr = client_load_and_use_ptr(info->addr.client);
2120 	if (cptr == NULL)
2121 		return -ENXIO;
2122 
2123 	/* search for next port */
2124 	info->addr.port++;
2125 	port = snd_seq_port_query_nearest(cptr, info);
2126 	if (port == NULL) {
2127 		snd_seq_client_unlock(cptr);
2128 		return -ENOENT;
2129 	}
2130 
2131 	/* get port info */
2132 	info->addr = port->addr;
2133 	snd_seq_get_port_info(port, info);
2134 	snd_seq_port_unlock(port);
2135 	snd_seq_client_unlock(cptr);
2136 
2137 	return 0;
2138 }
2139 
2140 #if IS_ENABLED(CONFIG_SND_SEQ_UMP)
2141 #define NUM_UMP_INFOS (SNDRV_UMP_MAX_BLOCKS + 1)
2142 
free_ump_info(struct snd_seq_client * client)2143 static void free_ump_info(struct snd_seq_client *client)
2144 {
2145 	int i;
2146 
2147 	if (!client->ump_info)
2148 		return;
2149 	for (i = 0; i < NUM_UMP_INFOS; i++)
2150 		kfree(client->ump_info[i]);
2151 	kfree(client->ump_info);
2152 	client->ump_info = NULL;
2153 }
2154 
terminate_ump_info_strings(void * p,int type)2155 static void terminate_ump_info_strings(void *p, int type)
2156 {
2157 	if (type == SNDRV_SEQ_CLIENT_UMP_INFO_ENDPOINT) {
2158 		struct snd_ump_endpoint_info *ep = p;
2159 		ep->name[sizeof(ep->name) - 1] = 0;
2160 	} else {
2161 		struct snd_ump_block_info *bp = p;
2162 		bp->name[sizeof(bp->name) - 1] = 0;
2163 	}
2164 }
2165 
2166 #ifdef CONFIG_SND_PROC_FS
dump_ump_info(struct snd_info_buffer * buffer,struct snd_seq_client * client)2167 static void dump_ump_info(struct snd_info_buffer *buffer,
2168 			  struct snd_seq_client *client)
2169 {
2170 	struct snd_ump_endpoint_info *ep;
2171 	struct snd_ump_block_info *bp;
2172 	int i;
2173 
2174 	if (!client->ump_info)
2175 		return;
2176 	ep = client->ump_info[SNDRV_SEQ_CLIENT_UMP_INFO_ENDPOINT];
2177 	if (ep && *ep->name)
2178 		snd_iprintf(buffer, "  UMP Endpoint: \"%s\"\n", ep->name);
2179 	for (i = 0; i < SNDRV_UMP_MAX_BLOCKS; i++) {
2180 		bp = client->ump_info[i + 1];
2181 		if (bp && *bp->name) {
2182 			snd_iprintf(buffer, "  UMP Block %d: \"%s\" [%s]\n",
2183 				    i, bp->name,
2184 				    bp->active ? "Active" : "Inactive");
2185 			snd_iprintf(buffer, "    Groups: %d-%d\n",
2186 				    bp->first_group + 1,
2187 				    bp->first_group + bp->num_groups);
2188 		}
2189 	}
2190 }
2191 #endif
2192 
2193 /* UMP-specific ioctls -- called directly without data copy */
snd_seq_ioctl_client_ump_info(struct snd_seq_client * caller,unsigned int cmd,unsigned long arg)2194 static int snd_seq_ioctl_client_ump_info(struct snd_seq_client *caller,
2195 					 unsigned int cmd,
2196 					 unsigned long arg)
2197 {
2198 	struct snd_seq_client_ump_info __user *argp =
2199 		(struct snd_seq_client_ump_info __user *)arg;
2200 	struct snd_seq_client *cptr;
2201 	int client, type, err = 0;
2202 	size_t size;
2203 	void *p;
2204 
2205 	if (get_user(client, &argp->client) || get_user(type, &argp->type))
2206 		return -EFAULT;
2207 	if (cmd == SNDRV_SEQ_IOCTL_SET_CLIENT_UMP_INFO &&
2208 	    caller->number != client)
2209 		return -EPERM;
2210 	if (type < 0 || type >= NUM_UMP_INFOS)
2211 		return -EINVAL;
2212 	if (type == SNDRV_SEQ_CLIENT_UMP_INFO_ENDPOINT)
2213 		size = sizeof(struct snd_ump_endpoint_info);
2214 	else
2215 		size = sizeof(struct snd_ump_block_info);
2216 	cptr = client_load_and_use_ptr(client);
2217 	if (!cptr)
2218 		return -ENOENT;
2219 
2220 	mutex_lock(&cptr->ioctl_mutex);
2221 	if (!cptr->midi_version) {
2222 		err = -EBADFD;
2223 		goto error;
2224 	}
2225 
2226 	if (cmd == SNDRV_SEQ_IOCTL_GET_CLIENT_UMP_INFO) {
2227 		if (!cptr->ump_info)
2228 			p = NULL;
2229 		else
2230 			p = cptr->ump_info[type];
2231 		if (!p) {
2232 			err = -ENODEV;
2233 			goto error;
2234 		}
2235 		if (copy_to_user(argp->info, p, size)) {
2236 			err = -EFAULT;
2237 			goto error;
2238 		}
2239 	} else {
2240 		if (cptr->type != USER_CLIENT) {
2241 			err = -EBADFD;
2242 			goto error;
2243 		}
2244 		if (!cptr->ump_info) {
2245 			cptr->ump_info = kcalloc(NUM_UMP_INFOS,
2246 						 sizeof(void *), GFP_KERNEL);
2247 			if (!cptr->ump_info) {
2248 				err = -ENOMEM;
2249 				goto error;
2250 			}
2251 		}
2252 		p = memdup_user(argp->info, size);
2253 		if (IS_ERR(p)) {
2254 			err = PTR_ERR(p);
2255 			goto error;
2256 		}
2257 		kfree(cptr->ump_info[type]);
2258 		terminate_ump_info_strings(p, type);
2259 		cptr->ump_info[type] = p;
2260 	}
2261 
2262  error:
2263 	mutex_unlock(&cptr->ioctl_mutex);
2264 	snd_seq_client_unlock(cptr);
2265 	return err;
2266 }
2267 #endif
2268 
2269 /* -------------------------------------------------------- */
2270 
2271 static const struct ioctl_handler {
2272 	unsigned int cmd;
2273 	int (*func)(struct snd_seq_client *client, void *arg);
2274 } ioctl_handlers[] = {
2275 	{ SNDRV_SEQ_IOCTL_PVERSION, snd_seq_ioctl_pversion },
2276 	{ SNDRV_SEQ_IOCTL_USER_PVERSION, snd_seq_ioctl_user_pversion },
2277 	{ SNDRV_SEQ_IOCTL_CLIENT_ID, snd_seq_ioctl_client_id },
2278 	{ SNDRV_SEQ_IOCTL_SYSTEM_INFO, snd_seq_ioctl_system_info },
2279 	{ SNDRV_SEQ_IOCTL_RUNNING_MODE, snd_seq_ioctl_running_mode },
2280 	{ SNDRV_SEQ_IOCTL_GET_CLIENT_INFO, snd_seq_ioctl_get_client_info },
2281 	{ SNDRV_SEQ_IOCTL_SET_CLIENT_INFO, snd_seq_ioctl_set_client_info },
2282 	{ SNDRV_SEQ_IOCTL_CREATE_PORT, snd_seq_ioctl_create_port },
2283 	{ SNDRV_SEQ_IOCTL_DELETE_PORT, snd_seq_ioctl_delete_port },
2284 	{ SNDRV_SEQ_IOCTL_GET_PORT_INFO, snd_seq_ioctl_get_port_info },
2285 	{ SNDRV_SEQ_IOCTL_SET_PORT_INFO, snd_seq_ioctl_set_port_info },
2286 	{ SNDRV_SEQ_IOCTL_SUBSCRIBE_PORT, snd_seq_ioctl_subscribe_port },
2287 	{ SNDRV_SEQ_IOCTL_UNSUBSCRIBE_PORT, snd_seq_ioctl_unsubscribe_port },
2288 	{ SNDRV_SEQ_IOCTL_CREATE_QUEUE, snd_seq_ioctl_create_queue },
2289 	{ SNDRV_SEQ_IOCTL_DELETE_QUEUE, snd_seq_ioctl_delete_queue },
2290 	{ SNDRV_SEQ_IOCTL_GET_QUEUE_INFO, snd_seq_ioctl_get_queue_info },
2291 	{ SNDRV_SEQ_IOCTL_SET_QUEUE_INFO, snd_seq_ioctl_set_queue_info },
2292 	{ SNDRV_SEQ_IOCTL_GET_NAMED_QUEUE, snd_seq_ioctl_get_named_queue },
2293 	{ SNDRV_SEQ_IOCTL_GET_QUEUE_STATUS, snd_seq_ioctl_get_queue_status },
2294 	{ SNDRV_SEQ_IOCTL_GET_QUEUE_TEMPO, snd_seq_ioctl_get_queue_tempo },
2295 	{ SNDRV_SEQ_IOCTL_SET_QUEUE_TEMPO, snd_seq_ioctl_set_queue_tempo },
2296 	{ SNDRV_SEQ_IOCTL_GET_QUEUE_TIMER, snd_seq_ioctl_get_queue_timer },
2297 	{ SNDRV_SEQ_IOCTL_SET_QUEUE_TIMER, snd_seq_ioctl_set_queue_timer },
2298 	{ SNDRV_SEQ_IOCTL_GET_QUEUE_CLIENT, snd_seq_ioctl_get_queue_client },
2299 	{ SNDRV_SEQ_IOCTL_SET_QUEUE_CLIENT, snd_seq_ioctl_set_queue_client },
2300 	{ SNDRV_SEQ_IOCTL_GET_CLIENT_POOL, snd_seq_ioctl_get_client_pool },
2301 	{ SNDRV_SEQ_IOCTL_SET_CLIENT_POOL, snd_seq_ioctl_set_client_pool },
2302 	{ SNDRV_SEQ_IOCTL_GET_SUBSCRIPTION, snd_seq_ioctl_get_subscription },
2303 	{ SNDRV_SEQ_IOCTL_QUERY_NEXT_CLIENT, snd_seq_ioctl_query_next_client },
2304 	{ SNDRV_SEQ_IOCTL_QUERY_NEXT_PORT, snd_seq_ioctl_query_next_port },
2305 	{ SNDRV_SEQ_IOCTL_REMOVE_EVENTS, snd_seq_ioctl_remove_events },
2306 	{ SNDRV_SEQ_IOCTL_QUERY_SUBS, snd_seq_ioctl_query_subs },
2307 	{ 0, NULL },
2308 };
2309 
snd_seq_ioctl(struct file * file,unsigned int cmd,unsigned long arg)2310 static long snd_seq_ioctl(struct file *file, unsigned int cmd,
2311 			  unsigned long arg)
2312 {
2313 	struct snd_seq_client *client = file->private_data;
2314 	/* To use kernel stack for ioctl data. */
2315 	union {
2316 		int pversion;
2317 		int client_id;
2318 		struct snd_seq_system_info	system_info;
2319 		struct snd_seq_running_info	running_info;
2320 		struct snd_seq_client_info	client_info;
2321 		struct snd_seq_port_info	port_info;
2322 		struct snd_seq_port_subscribe	port_subscribe;
2323 		struct snd_seq_queue_info	queue_info;
2324 		struct snd_seq_queue_status	queue_status;
2325 		struct snd_seq_queue_tempo	tempo;
2326 		struct snd_seq_queue_timer	queue_timer;
2327 		struct snd_seq_queue_client	queue_client;
2328 		struct snd_seq_client_pool	client_pool;
2329 		struct snd_seq_remove_events	remove_events;
2330 		struct snd_seq_query_subs	query_subs;
2331 	} buf;
2332 	const struct ioctl_handler *handler;
2333 	unsigned long size;
2334 	int err;
2335 
2336 	if (snd_BUG_ON(!client))
2337 		return -ENXIO;
2338 
2339 #if IS_ENABLED(CONFIG_SND_SEQ_UMP)
2340 	/* exception - handling large data */
2341 	switch (cmd) {
2342 	case SNDRV_SEQ_IOCTL_GET_CLIENT_UMP_INFO:
2343 	case SNDRV_SEQ_IOCTL_SET_CLIENT_UMP_INFO:
2344 		return snd_seq_ioctl_client_ump_info(client, cmd, arg);
2345 	}
2346 #endif
2347 
2348 	for (handler = ioctl_handlers; handler->cmd > 0; ++handler) {
2349 		if (handler->cmd == cmd)
2350 			break;
2351 	}
2352 	if (handler->cmd == 0)
2353 		return -ENOTTY;
2354 
2355 	memset(&buf, 0, sizeof(buf));
2356 
2357 	/*
2358 	 * All of ioctl commands for ALSA sequencer get an argument of size
2359 	 * within 13 bits. We can safely pick up the size from the command.
2360 	 */
2361 	size = _IOC_SIZE(handler->cmd);
2362 	if (handler->cmd & IOC_IN) {
2363 		if (copy_from_user(&buf, (const void __user *)arg, size))
2364 			return -EFAULT;
2365 	}
2366 
2367 	mutex_lock(&client->ioctl_mutex);
2368 	err = handler->func(client, &buf);
2369 	mutex_unlock(&client->ioctl_mutex);
2370 	if (err >= 0) {
2371 		/* Some commands includes a bug in 'dir' field. */
2372 		if (handler->cmd == SNDRV_SEQ_IOCTL_SET_QUEUE_CLIENT ||
2373 		    handler->cmd == SNDRV_SEQ_IOCTL_SET_CLIENT_POOL ||
2374 		    (handler->cmd & IOC_OUT))
2375 			if (copy_to_user((void __user *)arg, &buf, size))
2376 				return -EFAULT;
2377 	}
2378 
2379 	return err;
2380 }
2381 
2382 #ifdef CONFIG_COMPAT
2383 #include "seq_compat.c"
2384 #else
2385 #define snd_seq_ioctl_compat	NULL
2386 #endif
2387 
2388 /* -------------------------------------------------------- */
2389 
2390 
2391 /* exported to kernel modules */
snd_seq_create_kernel_client(struct snd_card * card,int client_index,const char * name_fmt,...)2392 int snd_seq_create_kernel_client(struct snd_card *card, int client_index,
2393 				 const char *name_fmt, ...)
2394 {
2395 	struct snd_seq_client *client;
2396 	va_list args;
2397 
2398 	if (snd_BUG_ON(in_interrupt()))
2399 		return -EBUSY;
2400 
2401 	if (card && client_index >= SNDRV_SEQ_CLIENTS_PER_CARD)
2402 		return -EINVAL;
2403 	if (card == NULL && client_index >= SNDRV_SEQ_GLOBAL_CLIENTS)
2404 		return -EINVAL;
2405 
2406 	mutex_lock(&register_mutex);
2407 
2408 	if (card) {
2409 		client_index += SNDRV_SEQ_GLOBAL_CLIENTS
2410 			+ card->number * SNDRV_SEQ_CLIENTS_PER_CARD;
2411 		if (client_index >= SNDRV_SEQ_DYNAMIC_CLIENTS_BEGIN)
2412 			client_index = -1;
2413 	}
2414 
2415 	/* empty write queue as default */
2416 	client = seq_create_client1(client_index, 0);
2417 	if (client == NULL) {
2418 		mutex_unlock(&register_mutex);
2419 		return -EBUSY;	/* failure code */
2420 	}
2421 	usage_alloc(&client_usage, 1);
2422 
2423 	client->accept_input = 1;
2424 	client->accept_output = 1;
2425 	client->data.kernel.card = card;
2426 	client->user_pversion = SNDRV_SEQ_VERSION;
2427 
2428 	va_start(args, name_fmt);
2429 	vsnprintf(client->name, sizeof(client->name), name_fmt, args);
2430 	va_end(args);
2431 
2432 	client->type = KERNEL_CLIENT;
2433 	mutex_unlock(&register_mutex);
2434 
2435 	/* make others aware this new client */
2436 	snd_seq_system_client_ev_client_start(client->number);
2437 
2438 	/* return client number to caller */
2439 	return client->number;
2440 }
2441 EXPORT_SYMBOL(snd_seq_create_kernel_client);
2442 
2443 /* exported to kernel modules */
snd_seq_delete_kernel_client(int client)2444 int snd_seq_delete_kernel_client(int client)
2445 {
2446 	struct snd_seq_client *ptr;
2447 
2448 	if (snd_BUG_ON(in_interrupt()))
2449 		return -EBUSY;
2450 
2451 	ptr = clientptr(client);
2452 	if (ptr == NULL)
2453 		return -EINVAL;
2454 
2455 	seq_free_client(ptr);
2456 	kfree(ptr);
2457 	return 0;
2458 }
2459 EXPORT_SYMBOL(snd_seq_delete_kernel_client);
2460 
2461 /*
2462  * exported, called by kernel clients to enqueue events (w/o blocking)
2463  *
2464  * RETURN VALUE: zero if succeed, negative if error
2465  */
snd_seq_kernel_client_enqueue(int client,struct snd_seq_event * ev,struct file * file,bool blocking)2466 int snd_seq_kernel_client_enqueue(int client, struct snd_seq_event *ev,
2467 				  struct file *file, bool blocking)
2468 {
2469 	struct snd_seq_client *cptr;
2470 	int result;
2471 
2472 	if (snd_BUG_ON(!ev))
2473 		return -EINVAL;
2474 
2475 	if (!snd_seq_ev_is_ump(ev)) {
2476 		if (ev->type == SNDRV_SEQ_EVENT_NONE)
2477 			return 0; /* ignore this */
2478 		if (ev->type == SNDRV_SEQ_EVENT_KERNEL_ERROR)
2479 			return -EINVAL; /* quoted events can't be enqueued */
2480 	}
2481 
2482 	/* fill in client number */
2483 	ev->source.client = client;
2484 
2485 	if (check_event_type_and_length(ev))
2486 		return -EINVAL;
2487 
2488 	cptr = client_load_and_use_ptr(client);
2489 	if (cptr == NULL)
2490 		return -EINVAL;
2491 
2492 	if (!cptr->accept_output) {
2493 		result = -EPERM;
2494 	} else { /* send it */
2495 		mutex_lock(&cptr->ioctl_mutex);
2496 		result = snd_seq_client_enqueue_event(cptr, ev, file, blocking,
2497 						      false, 0,
2498 						      &cptr->ioctl_mutex);
2499 		mutex_unlock(&cptr->ioctl_mutex);
2500 	}
2501 
2502 	snd_seq_client_unlock(cptr);
2503 	return result;
2504 }
2505 EXPORT_SYMBOL(snd_seq_kernel_client_enqueue);
2506 
2507 /*
2508  * exported, called by kernel clients to dispatch events directly to other
2509  * clients, bypassing the queues.  Event time-stamp will be updated.
2510  *
2511  * RETURN VALUE: negative = delivery failed,
2512  *		 zero, or positive: the number of delivered events
2513  */
snd_seq_kernel_client_dispatch(int client,struct snd_seq_event * ev,int atomic,int hop)2514 int snd_seq_kernel_client_dispatch(int client, struct snd_seq_event * ev,
2515 				   int atomic, int hop)
2516 {
2517 	struct snd_seq_client *cptr;
2518 	int result;
2519 
2520 	if (snd_BUG_ON(!ev))
2521 		return -EINVAL;
2522 
2523 	/* fill in client number */
2524 	ev->queue = SNDRV_SEQ_QUEUE_DIRECT;
2525 	ev->source.client = client;
2526 
2527 	if (check_event_type_and_length(ev))
2528 		return -EINVAL;
2529 
2530 	cptr = snd_seq_client_use_ptr(client);
2531 	if (cptr == NULL)
2532 		return -EINVAL;
2533 
2534 	if (!cptr->accept_output)
2535 		result = -EPERM;
2536 	else
2537 		result = snd_seq_deliver_event(cptr, ev, atomic, hop);
2538 
2539 	snd_seq_client_unlock(cptr);
2540 	return result;
2541 }
2542 EXPORT_SYMBOL(snd_seq_kernel_client_dispatch);
2543 
2544 /**
2545  * snd_seq_kernel_client_ctl - operate a command for a client with data in
2546  *			       kernel space.
2547  * @clientid:	A numerical ID for a client.
2548  * @cmd:	An ioctl(2) command for ALSA sequencer operation.
2549  * @arg:	A pointer to data in kernel space.
2550  *
2551  * Against its name, both kernel/application client can be handled by this
2552  * kernel API. A pointer of 'arg' argument should be in kernel space.
2553  *
2554  * Return: 0 at success. Negative error code at failure.
2555  */
snd_seq_kernel_client_ctl(int clientid,unsigned int cmd,void * arg)2556 int snd_seq_kernel_client_ctl(int clientid, unsigned int cmd, void *arg)
2557 {
2558 	const struct ioctl_handler *handler;
2559 	struct snd_seq_client *client;
2560 
2561 	client = clientptr(clientid);
2562 	if (client == NULL)
2563 		return -ENXIO;
2564 
2565 	for (handler = ioctl_handlers; handler->cmd > 0; ++handler) {
2566 		if (handler->cmd == cmd)
2567 			return handler->func(client, arg);
2568 	}
2569 
2570 	pr_debug("ALSA: seq unknown ioctl() 0x%x (type='%c', number=0x%02x)\n",
2571 		 cmd, _IOC_TYPE(cmd), _IOC_NR(cmd));
2572 	return -ENOTTY;
2573 }
2574 EXPORT_SYMBOL(snd_seq_kernel_client_ctl);
2575 
2576 /* exported (for OSS emulator) */
snd_seq_kernel_client_write_poll(int clientid,struct file * file,poll_table * wait)2577 int snd_seq_kernel_client_write_poll(int clientid, struct file *file, poll_table *wait)
2578 {
2579 	struct snd_seq_client *client;
2580 
2581 	client = clientptr(clientid);
2582 	if (client == NULL)
2583 		return -ENXIO;
2584 
2585 	if (snd_seq_pool_poll_wait(client->pool, file, wait))
2586 		return 1;
2587 	return 0;
2588 }
2589 EXPORT_SYMBOL(snd_seq_kernel_client_write_poll);
2590 
2591 /* get a sequencer client object; for internal use from a kernel client */
snd_seq_kernel_client_get(int id)2592 struct snd_seq_client *snd_seq_kernel_client_get(int id)
2593 {
2594 	return snd_seq_client_use_ptr(id);
2595 }
2596 EXPORT_SYMBOL_GPL(snd_seq_kernel_client_get);
2597 
2598 /* put a sequencer client object; for internal use from a kernel client */
snd_seq_kernel_client_put(struct snd_seq_client * cptr)2599 void snd_seq_kernel_client_put(struct snd_seq_client *cptr)
2600 {
2601 	if (cptr)
2602 		snd_seq_client_unlock(cptr);
2603 }
2604 EXPORT_SYMBOL_GPL(snd_seq_kernel_client_put);
2605 
2606 /*---------------------------------------------------------------------------*/
2607 
2608 #ifdef CONFIG_SND_PROC_FS
2609 /*
2610  *  /proc interface
2611  */
snd_seq_info_dump_subscribers(struct snd_info_buffer * buffer,struct snd_seq_port_subs_info * group,int is_src,char * msg)2612 static void snd_seq_info_dump_subscribers(struct snd_info_buffer *buffer,
2613 					  struct snd_seq_port_subs_info *group,
2614 					  int is_src, char *msg)
2615 {
2616 	struct list_head *p;
2617 	struct snd_seq_subscribers *s;
2618 	int count = 0;
2619 
2620 	down_read(&group->list_mutex);
2621 	if (list_empty(&group->list_head)) {
2622 		up_read(&group->list_mutex);
2623 		return;
2624 	}
2625 	snd_iprintf(buffer, msg);
2626 	list_for_each(p, &group->list_head) {
2627 		if (is_src)
2628 			s = list_entry(p, struct snd_seq_subscribers, src_list);
2629 		else
2630 			s = list_entry(p, struct snd_seq_subscribers, dest_list);
2631 		if (count++)
2632 			snd_iprintf(buffer, ", ");
2633 		snd_iprintf(buffer, "%d:%d",
2634 			    is_src ? s->info.dest.client : s->info.sender.client,
2635 			    is_src ? s->info.dest.port : s->info.sender.port);
2636 		if (s->info.flags & SNDRV_SEQ_PORT_SUBS_TIMESTAMP)
2637 			snd_iprintf(buffer, "[%c:%d]", ((s->info.flags & SNDRV_SEQ_PORT_SUBS_TIME_REAL) ? 'r' : 't'), s->info.queue);
2638 		if (group->exclusive)
2639 			snd_iprintf(buffer, "[ex]");
2640 	}
2641 	up_read(&group->list_mutex);
2642 	snd_iprintf(buffer, "\n");
2643 }
2644 
2645 #define FLAG_PERM_RD(perm) ((perm) & SNDRV_SEQ_PORT_CAP_READ ? ((perm) & SNDRV_SEQ_PORT_CAP_SUBS_READ ? 'R' : 'r') : '-')
2646 #define FLAG_PERM_WR(perm) ((perm) & SNDRV_SEQ_PORT_CAP_WRITE ? ((perm) & SNDRV_SEQ_PORT_CAP_SUBS_WRITE ? 'W' : 'w') : '-')
2647 #define FLAG_PERM_EX(perm) ((perm) & SNDRV_SEQ_PORT_CAP_NO_EXPORT ? '-' : 'e')
2648 
2649 #define FLAG_PERM_DUPLEX(perm) ((perm) & SNDRV_SEQ_PORT_CAP_DUPLEX ? 'X' : '-')
2650 
port_direction_name(unsigned char dir)2651 static const char *port_direction_name(unsigned char dir)
2652 {
2653 	static const char *names[4] = {
2654 		"-", "In", "Out", "In/Out"
2655 	};
2656 
2657 	if (dir > SNDRV_SEQ_PORT_DIR_BIDIRECTION)
2658 		return "Invalid";
2659 	return names[dir];
2660 }
2661 
snd_seq_info_dump_ports(struct snd_info_buffer * buffer,struct snd_seq_client * client)2662 static void snd_seq_info_dump_ports(struct snd_info_buffer *buffer,
2663 				    struct snd_seq_client *client)
2664 {
2665 	struct snd_seq_client_port *p;
2666 
2667 	mutex_lock(&client->ports_mutex);
2668 	list_for_each_entry(p, &client->ports_list_head, list) {
2669 		if (p->capability & SNDRV_SEQ_PORT_CAP_INACTIVE)
2670 			continue;
2671 		snd_iprintf(buffer, "  Port %3d : \"%s\" (%c%c%c%c) [%s]",
2672 			    p->addr.port, p->name,
2673 			    FLAG_PERM_RD(p->capability),
2674 			    FLAG_PERM_WR(p->capability),
2675 			    FLAG_PERM_EX(p->capability),
2676 			    FLAG_PERM_DUPLEX(p->capability),
2677 			    port_direction_name(p->direction));
2678 #if IS_ENABLED(CONFIG_SND_SEQ_UMP)
2679 		if (snd_seq_client_is_midi2(client) && p->is_midi1)
2680 			snd_iprintf(buffer, " [MIDI1]");
2681 #endif
2682 		snd_iprintf(buffer, "\n");
2683 		snd_seq_info_dump_subscribers(buffer, &p->c_src, 1, "    Connecting To: ");
2684 		snd_seq_info_dump_subscribers(buffer, &p->c_dest, 0, "    Connected From: ");
2685 	}
2686 	mutex_unlock(&client->ports_mutex);
2687 }
2688 
midi_version_string(unsigned int version)2689 static const char *midi_version_string(unsigned int version)
2690 {
2691 	switch (version) {
2692 	case SNDRV_SEQ_CLIENT_LEGACY_MIDI:
2693 		return "Legacy";
2694 	case SNDRV_SEQ_CLIENT_UMP_MIDI_1_0:
2695 		return "UMP MIDI1";
2696 	case SNDRV_SEQ_CLIENT_UMP_MIDI_2_0:
2697 		return "UMP MIDI2";
2698 	default:
2699 		return "Unknown";
2700 	}
2701 }
2702 
2703 /* exported to seq_info.c */
snd_seq_info_clients_read(struct snd_info_entry * entry,struct snd_info_buffer * buffer)2704 void snd_seq_info_clients_read(struct snd_info_entry *entry,
2705 			       struct snd_info_buffer *buffer)
2706 {
2707 	int c;
2708 	struct snd_seq_client *client;
2709 
2710 	snd_iprintf(buffer, "Client info\n");
2711 	snd_iprintf(buffer, "  cur  clients : %d\n", client_usage.cur);
2712 	snd_iprintf(buffer, "  peak clients : %d\n", client_usage.peak);
2713 	snd_iprintf(buffer, "  max  clients : %d\n", SNDRV_SEQ_MAX_CLIENTS);
2714 	snd_iprintf(buffer, "\n");
2715 
2716 	/* list the client table */
2717 	for (c = 0; c < SNDRV_SEQ_MAX_CLIENTS; c++) {
2718 		client = client_load_and_use_ptr(c);
2719 		if (client == NULL)
2720 			continue;
2721 		if (client->type == NO_CLIENT) {
2722 			snd_seq_client_unlock(client);
2723 			continue;
2724 		}
2725 
2726 		snd_iprintf(buffer, "Client %3d : \"%s\" [%s %s]\n",
2727 			    c, client->name,
2728 			    client->type == USER_CLIENT ? "User" : "Kernel",
2729 			    midi_version_string(client->midi_version));
2730 #if IS_ENABLED(CONFIG_SND_SEQ_UMP)
2731 		dump_ump_info(buffer, client);
2732 #endif
2733 		snd_seq_info_dump_ports(buffer, client);
2734 		if (snd_seq_write_pool_allocated(client)) {
2735 			snd_iprintf(buffer, "  Output pool :\n");
2736 			snd_seq_info_pool(buffer, client->pool, "    ");
2737 		}
2738 		if (client->type == USER_CLIENT && client->data.user.fifo &&
2739 		    client->data.user.fifo->pool) {
2740 			snd_iprintf(buffer, "  Input pool :\n");
2741 			snd_seq_info_pool(buffer, client->data.user.fifo->pool, "    ");
2742 		}
2743 		snd_seq_client_unlock(client);
2744 	}
2745 }
2746 #endif /* CONFIG_SND_PROC_FS */
2747 
2748 /*---------------------------------------------------------------------------*/
2749 
2750 
2751 /*
2752  *  REGISTRATION PART
2753  */
2754 
2755 static const struct file_operations snd_seq_f_ops =
2756 {
2757 	.owner =	THIS_MODULE,
2758 	.read =		snd_seq_read,
2759 	.write =	snd_seq_write,
2760 	.open =		snd_seq_open,
2761 	.release =	snd_seq_release,
2762 	.poll =		snd_seq_poll,
2763 	.unlocked_ioctl =	snd_seq_ioctl,
2764 	.compat_ioctl =	snd_seq_ioctl_compat,
2765 };
2766 
2767 static struct device *seq_dev;
2768 
2769 /*
2770  * register sequencer device
2771  */
snd_sequencer_device_init(void)2772 int __init snd_sequencer_device_init(void)
2773 {
2774 	int err;
2775 
2776 	err = snd_device_alloc(&seq_dev, NULL);
2777 	if (err < 0)
2778 		return err;
2779 	dev_set_name(seq_dev, "seq");
2780 
2781 	mutex_lock(&register_mutex);
2782 	err = snd_register_device(SNDRV_DEVICE_TYPE_SEQUENCER, NULL, 0,
2783 				  &snd_seq_f_ops, NULL, seq_dev);
2784 	mutex_unlock(&register_mutex);
2785 	if (err < 0) {
2786 		put_device(seq_dev);
2787 		return err;
2788 	}
2789 
2790 	return 0;
2791 }
2792 
2793 
2794 
2795 /*
2796  * unregister sequencer device
2797  */
snd_sequencer_device_done(void)2798 void snd_sequencer_device_done(void)
2799 {
2800 	snd_unregister_device(seq_dev);
2801 	put_device(seq_dev);
2802 }
2803