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CommitLineData
a23ea924
RR
1/*
2 * Copyright (C) 2006, 2007, 2009 Rusty Russell, IBM Corporation
5084f893
AS
3 * Copyright (C) 2009, 2010, 2011 Red Hat, Inc.
4 * Copyright (C) 2009, 2010, 2011 Amit Shah <amit.shah@redhat.com>
31610434
RR
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
19 */
fb08bd27 20#include <linux/cdev.h>
d99393ef 21#include <linux/debugfs.h>
5e38483b 22#include <linux/completion.h>
fb08bd27 23#include <linux/device.h>
31610434 24#include <linux/err.h>
a08fa92d 25#include <linux/freezer.h>
2030fa49 26#include <linux/fs.h>
eb5e89fc
MH
27#include <linux/splice.h>
28#include <linux/pagemap.h>
31610434 29#include <linux/init.h>
38edf58d 30#include <linux/list.h>
2030fa49
AS
31#include <linux/poll.h>
32#include <linux/sched.h>
5a0e3ad6 33#include <linux/slab.h>
38edf58d 34#include <linux/spinlock.h>
31610434
RR
35#include <linux/virtio.h>
36#include <linux/virtio_console.h>
2030fa49 37#include <linux/wait.h>
17634ba2 38#include <linux/workqueue.h>
c22405c9 39#include <linux/module.h>
1b637046
SB
40#include <linux/dma-mapping.h>
41#include <linux/kconfig.h>
51df0acc 42#include "../tty/hvc/hvc_console.h"
31610434 43
1b637046
SB
44#define is_rproc_enabled IS_ENABLED(CONFIG_REMOTEPROC)
45
38edf58d
AS
46/*
47 * This is a global struct for storing common data for all the devices
48 * this driver handles.
49 *
50 * Mainly, it has a linked list for all the consoles in one place so
51 * that callbacks from hvc for get_chars(), put_chars() work properly
52 * across multiple devices and multiple ports per device.
53 */
54struct ports_driver_data {
fb08bd27
AS
55 /* Used for registering chardevs */
56 struct class *class;
57
d99393ef
AS
58 /* Used for exporting per-port information to debugfs */
59 struct dentry *debugfs_dir;
60
6bdf2afd
AS
61 /* List of all the devices we're handling */
62 struct list_head portdevs;
63
d8a02bd5
RR
64 /*
65 * This is used to keep track of the number of hvc consoles
66 * spawned by this driver. This number is given as the first
67 * argument to hvc_alloc(). To correctly map an initial
68 * console spawned via hvc_instantiate to the console being
69 * hooked up via hvc_alloc, we need to pass the same vtermno.
70 *
71 * We also just assume the first console being initialised was
72 * the first one that got used as the initial console.
73 */
74 unsigned int next_vtermno;
75
38edf58d
AS
76 /* All the console devices handled by this driver */
77 struct list_head consoles;
78};
79static struct ports_driver_data pdrvdata;
80
3826835a
WY
81static DEFINE_SPINLOCK(pdrvdata_lock);
82static DECLARE_COMPLETION(early_console_added);
38edf58d 83
4f23c573
AS
84/* This struct holds information that's relevant only for console ports */
85struct console {
86 /* We'll place all consoles in a list in the pdrvdata struct */
87 struct list_head list;
88
89 /* The hvc device associated with this console port */
90 struct hvc_struct *hvc;
91
9778829c
AS
92 /* The size of the console */
93 struct winsize ws;
94
4f23c573
AS
95 /*
96 * This number identifies the number that we used to register
97 * with hvc in hvc_instantiate() and hvc_alloc(); this is the
98 * number passed on by the hvc callbacks to us to
99 * differentiate between the other console ports handled by
100 * this driver
101 */
102 u32 vtermno;
103};
104
fdb9a054
AS
105struct port_buffer {
106 char *buf;
107
108 /* size of the buffer in *buf above */
109 size_t size;
110
111 /* used length of the buffer */
112 size_t len;
113 /* offset in the buf from which to consume data */
114 size_t offset;
276a3e95 115
1b637046
SB
116 /* DMA address of buffer */
117 dma_addr_t dma;
118
119 /* Device we got DMA memory from */
120 struct device *dev;
121
122 /* List of pending dma buffers to free */
123 struct list_head list;
124
276a3e95
SB
125 /* If sgpages == 0 then buf is used */
126 unsigned int sgpages;
127
128 /* sg is used if spages > 0. sg must be the last in is struct */
129 struct scatterlist sg[0];
fdb9a054
AS
130};
131
17634ba2
AS
132/*
133 * This is a per-device struct that stores data common to all the
134 * ports for that device (vdev->priv).
135 */
136struct ports_device {
6bdf2afd
AS
137 /* Next portdev in the list, head is in the pdrvdata struct */
138 struct list_head list;
139
17634ba2
AS
140 /*
141 * Workqueue handlers where we process deferred work after
142 * notification
143 */
144 struct work_struct control_work;
145
146 struct list_head ports;
147
148 /* To protect the list of ports */
149 spinlock_t ports_lock;
150
151 /* To protect the vq operations for the control channel */
165b1b8b 152 spinlock_t c_ivq_lock;
9ba5c80b 153 spinlock_t c_ovq_lock;
17634ba2
AS
154
155 /* The current config space is stored here */
b99fa815 156 struct virtio_console_config config;
17634ba2
AS
157
158 /* The virtio device we're associated with */
159 struct virtio_device *vdev;
160
161 /*
162 * A couple of virtqueues for the control channel: one for
163 * guest->host transfers, one for host->guest transfers
164 */
165 struct virtqueue *c_ivq, *c_ovq;
166
167 /* Array of per-port IO virtqueues */
168 struct virtqueue **in_vqs, **out_vqs;
fb08bd27 169
fb08bd27
AS
170 /* Major number for this device. Ports will be created as minors. */
171 int chr_major;
17634ba2
AS
172};
173
17e5b4f2
AS
174struct port_stats {
175 unsigned long bytes_sent, bytes_received, bytes_discarded;
176};
177
1c85bf35 178/* This struct holds the per-port data */
21206ede 179struct port {
17634ba2
AS
180 /* Next port in the list, head is in the ports_device */
181 struct list_head list;
182
1c85bf35
AS
183 /* Pointer to the parent virtio_console device */
184 struct ports_device *portdev;
fdb9a054
AS
185
186 /* The current buffer from which data has to be fed to readers */
187 struct port_buffer *inbuf;
21206ede 188
203baab8
AS
189 /*
190 * To protect the operations on the in_vq associated with this
191 * port. Has to be a spinlock because it can be called from
192 * interrupt context (get_char()).
193 */
194 spinlock_t inbuf_lock;
195
cdfadfc1
AS
196 /* Protect the operations on the out_vq. */
197 spinlock_t outvq_lock;
198
1c85bf35
AS
199 /* The IO vqs for this port */
200 struct virtqueue *in_vq, *out_vq;
201
d99393ef
AS
202 /* File in the debugfs directory that exposes this port's information */
203 struct dentry *debugfs_file;
204
17e5b4f2
AS
205 /*
206 * Keep count of the bytes sent, received and discarded for
207 * this port for accounting and debugging purposes. These
208 * counts are not reset across port open / close events.
209 */
210 struct port_stats stats;
211
4f23c573
AS
212 /*
213 * The entries in this struct will be valid if this port is
214 * hooked up to an hvc console
215 */
216 struct console cons;
17634ba2 217
fb08bd27 218 /* Each port associates with a separate char device */
d22a6989 219 struct cdev *cdev;
fb08bd27
AS
220 struct device *dev;
221
b353a6b8
AS
222 /* Reference-counting to handle port hot-unplugs and file operations */
223 struct kref kref;
224
2030fa49
AS
225 /* A waitqueue for poll() or blocking read operations */
226 wait_queue_head_t waitqueue;
227
431edb8a
AS
228 /* The 'name' of the port that we expose via sysfs properties */
229 char *name;
230
3eae0ade
AS
231 /* We can notify apps of host connect / disconnect events via SIGIO */
232 struct fasync_struct *async_queue;
233
17634ba2
AS
234 /* The 'id' to identify the port with the Host */
235 u32 id;
2030fa49 236
cdfadfc1
AS
237 bool outvq_full;
238
2030fa49
AS
239 /* Is the host device open */
240 bool host_connected;
3c7969cc
AS
241
242 /* We should allow only one process to open a port */
243 bool guest_connected;
21206ede 244};
31610434 245
971f3390
RR
246/* This is the very early arch-specified put chars function. */
247static int (*early_put_chars)(u32, const char *, int);
248
38edf58d
AS
249static struct port *find_port_by_vtermno(u32 vtermno)
250{
251 struct port *port;
4f23c573 252 struct console *cons;
38edf58d
AS
253 unsigned long flags;
254
255 spin_lock_irqsave(&pdrvdata_lock, flags);
4f23c573
AS
256 list_for_each_entry(cons, &pdrvdata.consoles, list) {
257 if (cons->vtermno == vtermno) {
258 port = container_of(cons, struct port, cons);
38edf58d 259 goto out;
4f23c573 260 }
38edf58d
AS
261 }
262 port = NULL;
263out:
264 spin_unlock_irqrestore(&pdrvdata_lock, flags);
265 return port;
266}
267
04950cdf
AS
268static struct port *find_port_by_devt_in_portdev(struct ports_device *portdev,
269 dev_t dev)
270{
271 struct port *port;
272 unsigned long flags;
273
274 spin_lock_irqsave(&portdev->ports_lock, flags);
057b82be
AS
275 list_for_each_entry(port, &portdev->ports, list) {
276 if (port->cdev->dev == dev) {
277 kref_get(&port->kref);
04950cdf 278 goto out;
057b82be
AS
279 }
280 }
04950cdf
AS
281 port = NULL;
282out:
283 spin_unlock_irqrestore(&portdev->ports_lock, flags);
284
285 return port;
286}
287
288static struct port *find_port_by_devt(dev_t dev)
289{
290 struct ports_device *portdev;
291 struct port *port;
292 unsigned long flags;
293
294 spin_lock_irqsave(&pdrvdata_lock, flags);
295 list_for_each_entry(portdev, &pdrvdata.portdevs, list) {
296 port = find_port_by_devt_in_portdev(portdev, dev);
297 if (port)
298 goto out;
299 }
300 port = NULL;
301out:
302 spin_unlock_irqrestore(&pdrvdata_lock, flags);
303 return port;
304}
305
17634ba2
AS
306static struct port *find_port_by_id(struct ports_device *portdev, u32 id)
307{
308 struct port *port;
309 unsigned long flags;
310
311 spin_lock_irqsave(&portdev->ports_lock, flags);
312 list_for_each_entry(port, &portdev->ports, list)
313 if (port->id == id)
314 goto out;
315 port = NULL;
316out:
317 spin_unlock_irqrestore(&portdev->ports_lock, flags);
318
319 return port;
320}
321
203baab8
AS
322static struct port *find_port_by_vq(struct ports_device *portdev,
323 struct virtqueue *vq)
324{
325 struct port *port;
203baab8
AS
326 unsigned long flags;
327
17634ba2
AS
328 spin_lock_irqsave(&portdev->ports_lock, flags);
329 list_for_each_entry(port, &portdev->ports, list)
203baab8
AS
330 if (port->in_vq == vq || port->out_vq == vq)
331 goto out;
203baab8
AS
332 port = NULL;
333out:
17634ba2 334 spin_unlock_irqrestore(&portdev->ports_lock, flags);
203baab8
AS
335 return port;
336}
337
17634ba2
AS
338static bool is_console_port(struct port *port)
339{
340 if (port->cons.hvc)
341 return true;
342 return false;
343}
344
1b637046
SB
345static bool is_rproc_serial(const struct virtio_device *vdev)
346{
347 return is_rproc_enabled && vdev->id.device == VIRTIO_ID_RPROC_SERIAL;
348}
349
17634ba2
AS
350static inline bool use_multiport(struct ports_device *portdev)
351{
352 /*
353 * This condition can be true when put_chars is called from
354 * early_init
355 */
356 if (!portdev->vdev)
357 return 0;
358 return portdev->vdev->features[0] & (1 << VIRTIO_CONSOLE_F_MULTIPORT);
359}
360
1b637046
SB
361static DEFINE_SPINLOCK(dma_bufs_lock);
362static LIST_HEAD(pending_free_dma_bufs);
363
364static void free_buf(struct port_buffer *buf, bool can_sleep)
fdb9a054 365{
276a3e95
SB
366 unsigned int i;
367
276a3e95
SB
368 for (i = 0; i < buf->sgpages; i++) {
369 struct page *page = sg_page(&buf->sg[i]);
370 if (!page)
371 break;
372 put_page(page);
373 }
374
1b637046
SB
375 if (!buf->dev) {
376 kfree(buf->buf);
377 } else if (is_rproc_enabled) {
378 unsigned long flags;
379
380 /* dma_free_coherent requires interrupts to be enabled. */
381 if (!can_sleep) {
382 /* queue up dma-buffers to be freed later */
383 spin_lock_irqsave(&dma_bufs_lock, flags);
384 list_add_tail(&buf->list, &pending_free_dma_bufs);
385 spin_unlock_irqrestore(&dma_bufs_lock, flags);
386 return;
387 }
388 dma_free_coherent(buf->dev, buf->size, buf->buf, buf->dma);
389
390 /* Release device refcnt and allow it to be freed */
391 put_device(buf->dev);
392 }
393
fdb9a054
AS
394 kfree(buf);
395}
396
1b637046
SB
397static void reclaim_dma_bufs(void)
398{
399 unsigned long flags;
400 struct port_buffer *buf, *tmp;
401 LIST_HEAD(tmp_list);
402
403 if (list_empty(&pending_free_dma_bufs))
404 return;
405
406 /* Create a copy of the pending_free_dma_bufs while holding the lock */
407 spin_lock_irqsave(&dma_bufs_lock, flags);
408 list_cut_position(&tmp_list, &pending_free_dma_bufs,
409 pending_free_dma_bufs.prev);
410 spin_unlock_irqrestore(&dma_bufs_lock, flags);
411
412 /* Release the dma buffers, without irqs enabled */
413 list_for_each_entry_safe(buf, tmp, &tmp_list, list) {
414 list_del(&buf->list);
415 free_buf(buf, true);
416 }
417}
418
276a3e95
SB
419static struct port_buffer *alloc_buf(struct virtqueue *vq, size_t buf_size,
420 int pages)
fdb9a054
AS
421{
422 struct port_buffer *buf;
423
1b637046
SB
424 reclaim_dma_bufs();
425
276a3e95
SB
426 /*
427 * Allocate buffer and the sg list. The sg list array is allocated
428 * directly after the port_buffer struct.
429 */
430 buf = kmalloc(sizeof(*buf) + sizeof(struct scatterlist) * pages,
431 GFP_KERNEL);
fdb9a054
AS
432 if (!buf)
433 goto fail;
276a3e95
SB
434
435 buf->sgpages = pages;
436 if (pages > 0) {
1b637046 437 buf->dev = NULL;
276a3e95
SB
438 buf->buf = NULL;
439 return buf;
440 }
441
1b637046
SB
442 if (is_rproc_serial(vq->vdev)) {
443 /*
444 * Allocate DMA memory from ancestor. When a virtio
445 * device is created by remoteproc, the DMA memory is
446 * associated with the grandparent device:
447 * vdev => rproc => platform-dev.
448 * The code here would have been less quirky if
449 * DMA_MEMORY_INCLUDES_CHILDREN had been supported
450 * in dma-coherent.c
451 */
452 if (!vq->vdev->dev.parent || !vq->vdev->dev.parent->parent)
453 goto free_buf;
454 buf->dev = vq->vdev->dev.parent->parent;
455
456 /* Increase device refcnt to avoid freeing it */
457 get_device(buf->dev);
458 buf->buf = dma_alloc_coherent(buf->dev, buf_size, &buf->dma,
459 GFP_KERNEL);
460 } else {
461 buf->dev = NULL;
462 buf->buf = kmalloc(buf_size, GFP_KERNEL);
463 }
464
fdb9a054
AS
465 if (!buf->buf)
466 goto free_buf;
467 buf->len = 0;
468 buf->offset = 0;
469 buf->size = buf_size;
470 return buf;
471
472free_buf:
473 kfree(buf);
474fail:
475 return NULL;
476}
477
a3cde449 478/* Callers should take appropriate locks */
defde669 479static struct port_buffer *get_inbuf(struct port *port)
a3cde449
AS
480{
481 struct port_buffer *buf;
a3cde449
AS
482 unsigned int len;
483
d25a9dda
AS
484 if (port->inbuf)
485 return port->inbuf;
486
487 buf = virtqueue_get_buf(port->in_vq, &len);
a3cde449
AS
488 if (buf) {
489 buf->len = len;
490 buf->offset = 0;
17e5b4f2 491 port->stats.bytes_received += len;
a3cde449
AS
492 }
493 return buf;
494}
495
e27b5198
AS
496/*
497 * Create a scatter-gather list representing our input buffer and put
498 * it in the queue.
499 *
500 * Callers should take appropriate locks.
501 */
203baab8 502static int add_inbuf(struct virtqueue *vq, struct port_buffer *buf)
e27b5198
AS
503{
504 struct scatterlist sg[1];
203baab8 505 int ret;
1c85bf35 506
e27b5198
AS
507 sg_init_one(sg, buf->buf, buf->size);
508
6797999d 509 ret = virtqueue_add_inbuf(vq, sg, 1, buf, GFP_ATOMIC);
505b0451 510 virtqueue_kick(vq);
49e86f16
AS
511 if (!ret)
512 ret = vq->num_free;
203baab8
AS
513 return ret;
514}
515
88f251ac
AS
516/* Discard any unread data this port has. Callers lockers. */
517static void discard_port_data(struct port *port)
518{
519 struct port_buffer *buf;
2d24cdaa 520 unsigned int err;
88f251ac 521
d7a62cd0
AS
522 if (!port->portdev) {
523 /* Device has been unplugged. vqs are already gone. */
524 return;
525 }
2d24cdaa 526 buf = get_inbuf(port);
88f251ac 527
ce072a0c 528 err = 0;
d6933561 529 while (buf) {
17e5b4f2 530 port->stats.bytes_discarded += buf->len - buf->offset;
2d24cdaa 531 if (add_inbuf(port->in_vq, buf) < 0) {
ce072a0c 532 err++;
1b637046 533 free_buf(buf, false);
d6933561 534 }
2d24cdaa
AS
535 port->inbuf = NULL;
536 buf = get_inbuf(port);
88f251ac 537 }
ce072a0c 538 if (err)
d6933561 539 dev_warn(port->dev, "Errors adding %d buffers back to vq\n",
ce072a0c 540 err);
88f251ac
AS
541}
542
203baab8
AS
543static bool port_has_data(struct port *port)
544{
545 unsigned long flags;
546 bool ret;
547
d25a9dda 548 ret = false;
203baab8 549 spin_lock_irqsave(&port->inbuf_lock, flags);
d6933561 550 port->inbuf = get_inbuf(port);
d25a9dda 551 if (port->inbuf)
d6933561 552 ret = true;
d25a9dda 553
203baab8 554 spin_unlock_irqrestore(&port->inbuf_lock, flags);
203baab8
AS
555 return ret;
556}
557
3425e706
AS
558static ssize_t __send_control_msg(struct ports_device *portdev, u32 port_id,
559 unsigned int event, unsigned int value)
17634ba2
AS
560{
561 struct scatterlist sg[1];
562 struct virtio_console_control cpkt;
563 struct virtqueue *vq;
604b2ad7 564 unsigned int len;
17634ba2 565
3425e706 566 if (!use_multiport(portdev))
17634ba2
AS
567 return 0;
568
3425e706 569 cpkt.id = port_id;
17634ba2
AS
570 cpkt.event = event;
571 cpkt.value = value;
572
3425e706 573 vq = portdev->c_ovq;
17634ba2
AS
574
575 sg_init_one(sg, &cpkt, sizeof(cpkt));
9ba5c80b
AS
576
577 spin_lock(&portdev->c_ovq_lock);
6797999d 578 if (virtqueue_add_outbuf(vq, sg, 1, &cpkt, GFP_ATOMIC) == 0) {
505b0451 579 virtqueue_kick(vq);
40e4dc53
HG
580 while (!virtqueue_get_buf(vq, &len)
581 && !virtqueue_is_broken(vq))
17634ba2
AS
582 cpu_relax();
583 }
9ba5c80b 584 spin_unlock(&portdev->c_ovq_lock);
17634ba2
AS
585 return 0;
586}
587
3425e706
AS
588static ssize_t send_control_msg(struct port *port, unsigned int event,
589 unsigned int value)
590{
84ec06c5
AS
591 /* Did the port get unplugged before userspace closed it? */
592 if (port->portdev)
593 return __send_control_msg(port->portdev, port->id, event, value);
594 return 0;
3425e706
AS
595}
596
eb5e89fc 597
cdfadfc1
AS
598/* Callers must take the port->outvq_lock */
599static void reclaim_consumed_buffers(struct port *port)
600{
276a3e95 601 struct port_buffer *buf;
cdfadfc1
AS
602 unsigned int len;
603
d7a62cd0
AS
604 if (!port->portdev) {
605 /* Device has been unplugged. vqs are already gone. */
606 return;
607 }
276a3e95 608 while ((buf = virtqueue_get_buf(port->out_vq, &len))) {
1b637046 609 free_buf(buf, false);
cdfadfc1
AS
610 port->outvq_full = false;
611 }
612}
613
eb5e89fc
MH
614static ssize_t __send_to_port(struct port *port, struct scatterlist *sg,
615 int nents, size_t in_count,
276a3e95 616 void *data, bool nonblock)
f997f00b 617{
f997f00b 618 struct virtqueue *out_vq;
589575a2 619 int err;
cdfadfc1 620 unsigned long flags;
f997f00b
AS
621 unsigned int len;
622
623 out_vq = port->out_vq;
624
cdfadfc1
AS
625 spin_lock_irqsave(&port->outvq_lock, flags);
626
627 reclaim_consumed_buffers(port);
628
6797999d 629 err = virtqueue_add_outbuf(out_vq, sg, nents, data, GFP_ATOMIC);
f997f00b
AS
630
631 /* Tell Host to go! */
505b0451 632 virtqueue_kick(out_vq);
f997f00b 633
589575a2 634 if (err) {
9ff4cfab 635 in_count = 0;
cdfadfc1 636 goto done;
f997f00b
AS
637 }
638
589575a2 639 if (out_vq->num_free == 0)
cdfadfc1
AS
640 port->outvq_full = true;
641
642 if (nonblock)
643 goto done;
644
645 /*
646 * Wait till the host acknowledges it pushed out the data we
531295e6
AS
647 * sent. This is done for data from the hvc_console; the tty
648 * operations are performed with spinlocks held so we can't
649 * sleep here. An alternative would be to copy the data to a
650 * buffer and relax the spinning requirement. The downside is
651 * we need to kmalloc a GFP_ATOMIC buffer each time the
652 * console driver writes something out.
cdfadfc1 653 */
40e4dc53
HG
654 while (!virtqueue_get_buf(out_vq, &len)
655 && !virtqueue_is_broken(out_vq))
f997f00b 656 cpu_relax();
cdfadfc1
AS
657done:
658 spin_unlock_irqrestore(&port->outvq_lock, flags);
17e5b4f2
AS
659
660 port->stats.bytes_sent += in_count;
cdfadfc1
AS
661 /*
662 * We're expected to return the amount of data we wrote -- all
663 * of it
664 */
9ff4cfab 665 return in_count;
f997f00b
AS
666}
667
203baab8
AS
668/*
669 * Give out the data that's requested from the buffer that we have
670 * queued up.
671 */
b766ceed
AS
672static ssize_t fill_readbuf(struct port *port, char *out_buf, size_t out_count,
673 bool to_user)
203baab8
AS
674{
675 struct port_buffer *buf;
676 unsigned long flags;
677
678 if (!out_count || !port_has_data(port))
679 return 0;
680
681 buf = port->inbuf;
b766ceed 682 out_count = min(out_count, buf->len - buf->offset);
203baab8 683
b766ceed
AS
684 if (to_user) {
685 ssize_t ret;
686
687 ret = copy_to_user(out_buf, buf->buf + buf->offset, out_count);
688 if (ret)
689 return -EFAULT;
690 } else {
691 memcpy(out_buf, buf->buf + buf->offset, out_count);
692 }
203baab8 693
203baab8
AS
694 buf->offset += out_count;
695
696 if (buf->offset == buf->len) {
697 /*
698 * We're done using all the data in this buffer.
699 * Re-queue so that the Host can send us more data.
700 */
701 spin_lock_irqsave(&port->inbuf_lock, flags);
702 port->inbuf = NULL;
703
704 if (add_inbuf(port->in_vq, buf) < 0)
fb08bd27 705 dev_warn(port->dev, "failed add_buf\n");
203baab8
AS
706
707 spin_unlock_irqrestore(&port->inbuf_lock, flags);
708 }
b766ceed 709 /* Return the number of bytes actually copied */
203baab8 710 return out_count;
e27b5198
AS
711}
712
2030fa49 713/* The condition that must be true for polling to end */
60caacd3 714static bool will_read_block(struct port *port)
2030fa49 715{
3709ea7a
AS
716 if (!port->guest_connected) {
717 /* Port got hot-unplugged. Let's exit. */
718 return false;
719 }
60caacd3 720 return !port_has_data(port) && port->host_connected;
2030fa49
AS
721}
722
cdfadfc1
AS
723static bool will_write_block(struct port *port)
724{
725 bool ret;
726
60e5e0b8
AS
727 if (!port->guest_connected) {
728 /* Port got hot-unplugged. Let's exit. */
729 return false;
730 }
cdfadfc1
AS
731 if (!port->host_connected)
732 return true;
733
734 spin_lock_irq(&port->outvq_lock);
735 /*
736 * Check if the Host has consumed any buffers since we last
737 * sent data (this is only applicable for nonblocking ports).
738 */
739 reclaim_consumed_buffers(port);
740 ret = port->outvq_full;
741 spin_unlock_irq(&port->outvq_lock);
742
743 return ret;
744}
745
2030fa49
AS
746static ssize_t port_fops_read(struct file *filp, char __user *ubuf,
747 size_t count, loff_t *offp)
748{
749 struct port *port;
750 ssize_t ret;
751
752 port = filp->private_data;
753
96f97a83
AS
754 /* Port is hot-unplugged. */
755 if (!port->guest_connected)
756 return -ENODEV;
757
2030fa49
AS
758 if (!port_has_data(port)) {
759 /*
760 * If nothing's connected on the host just return 0 in
761 * case of list_empty; this tells the userspace app
762 * that there's no connection
763 */
764 if (!port->host_connected)
765 return 0;
766 if (filp->f_flags & O_NONBLOCK)
767 return -EAGAIN;
768
a08fa92d
AS
769 ret = wait_event_freezable(port->waitqueue,
770 !will_read_block(port));
2030fa49
AS
771 if (ret < 0)
772 return ret;
773 }
96f97a83 774 /* Port got hot-unplugged while we were waiting above. */
b3dddb9e
AS
775 if (!port->guest_connected)
776 return -ENODEV;
2030fa49
AS
777 /*
778 * We could've received a disconnection message while we were
779 * waiting for more data.
780 *
781 * This check is not clubbed in the if() statement above as we
782 * might receive some data as well as the host could get
783 * disconnected after we got woken up from our wait. So we
784 * really want to give off whatever data we have and only then
785 * check for host_connected.
786 */
787 if (!port_has_data(port) && !port->host_connected)
788 return 0;
789
790 return fill_readbuf(port, ubuf, count, true);
791}
792
efe75d24
MH
793static int wait_port_writable(struct port *port, bool nonblock)
794{
795 int ret;
796
797 if (will_write_block(port)) {
798 if (nonblock)
799 return -EAGAIN;
800
801 ret = wait_event_freezable(port->waitqueue,
802 !will_write_block(port));
803 if (ret < 0)
804 return ret;
805 }
806 /* Port got hot-unplugged. */
807 if (!port->guest_connected)
808 return -ENODEV;
809
810 return 0;
811}
812
2030fa49
AS
813static ssize_t port_fops_write(struct file *filp, const char __user *ubuf,
814 size_t count, loff_t *offp)
815{
816 struct port *port;
276a3e95 817 struct port_buffer *buf;
2030fa49 818 ssize_t ret;
cdfadfc1 819 bool nonblock;
276a3e95 820 struct scatterlist sg[1];
2030fa49 821
65745422
AS
822 /* Userspace could be out to fool us */
823 if (!count)
824 return 0;
825
2030fa49
AS
826 port = filp->private_data;
827
cdfadfc1
AS
828 nonblock = filp->f_flags & O_NONBLOCK;
829
efe75d24
MH
830 ret = wait_port_writable(port, nonblock);
831 if (ret < 0)
832 return ret;
cdfadfc1 833
2030fa49
AS
834 count = min((size_t)(32 * 1024), count);
835
276a3e95 836 buf = alloc_buf(port->out_vq, count, 0);
2030fa49
AS
837 if (!buf)
838 return -ENOMEM;
839
276a3e95 840 ret = copy_from_user(buf->buf, ubuf, count);
2030fa49
AS
841 if (ret) {
842 ret = -EFAULT;
843 goto free_buf;
844 }
845
531295e6
AS
846 /*
847 * We now ask send_buf() to not spin for generic ports -- we
848 * can re-use the same code path that non-blocking file
849 * descriptors take for blocking file descriptors since the
850 * wait is already done and we're certain the write will go
851 * through to the host.
852 */
853 nonblock = true;
276a3e95
SB
854 sg_init_one(sg, buf->buf, count);
855 ret = __send_to_port(port, sg, 1, count, buf, nonblock);
cdfadfc1
AS
856
857 if (nonblock && ret > 0)
858 goto out;
859
2030fa49 860free_buf:
1b637046 861 free_buf(buf, true);
cdfadfc1 862out:
2030fa49
AS
863 return ret;
864}
865
eb5e89fc
MH
866struct sg_list {
867 unsigned int n;
8ca84a50 868 unsigned int size;
eb5e89fc
MH
869 size_t len;
870 struct scatterlist *sg;
871};
872
873static int pipe_to_sg(struct pipe_inode_info *pipe, struct pipe_buffer *buf,
874 struct splice_desc *sd)
875{
876 struct sg_list *sgl = sd->u.data;
ec8fc870 877 unsigned int offset, len;
eb5e89fc 878
8ca84a50 879 if (sgl->n == sgl->size)
eb5e89fc
MH
880 return 0;
881
882 /* Try lock this page */
883 if (buf->ops->steal(pipe, buf) == 0) {
884 /* Get reference and unlock page for moving */
885 get_page(buf->page);
886 unlock_page(buf->page);
887
888 len = min(buf->len, sd->len);
889 sg_set_page(&(sgl->sg[sgl->n]), buf->page, len, buf->offset);
ec8fc870
MH
890 } else {
891 /* Failback to copying a page */
892 struct page *page = alloc_page(GFP_KERNEL);
893 char *src = buf->ops->map(pipe, buf, 1);
894 char *dst;
895
896 if (!page)
897 return -ENOMEM;
898 dst = kmap(page);
899
900 offset = sd->pos & ~PAGE_MASK;
901
902 len = sd->len;
903 if (len + offset > PAGE_SIZE)
904 len = PAGE_SIZE - offset;
905
906 memcpy(dst + offset, src + buf->offset, len);
907
908 kunmap(page);
909 buf->ops->unmap(pipe, buf, src);
910
911 sg_set_page(&(sgl->sg[sgl->n]), page, len, offset);
eb5e89fc 912 }
ec8fc870
MH
913 sgl->n++;
914 sgl->len += len;
eb5e89fc
MH
915
916 return len;
917}
918
919/* Faster zero-copy write by splicing */
920static ssize_t port_fops_splice_write(struct pipe_inode_info *pipe,
921 struct file *filp, loff_t *ppos,
922 size_t len, unsigned int flags)
923{
924 struct port *port = filp->private_data;
925 struct sg_list sgl;
926 ssize_t ret;
276a3e95 927 struct port_buffer *buf;
eb5e89fc
MH
928 struct splice_desc sd = {
929 .total_len = len,
930 .flags = flags,
931 .pos = *ppos,
932 .u.data = &sgl,
933 };
934
1b637046
SB
935 /*
936 * Rproc_serial does not yet support splice. To support splice
937 * pipe_to_sg() must allocate dma-buffers and copy content from
938 * regular pages to dma pages. And alloc_buf and free_buf must
939 * support allocating and freeing such a list of dma-buffers.
940 */
941 if (is_rproc_serial(port->out_vq->vdev))
942 return -EINVAL;
943
68c034fe
YY
944 /*
945 * pipe->nrbufs == 0 means there are no data to transfer,
946 * so this returns just 0 for no data.
947 */
2b4fbf02
YY
948 pipe_lock(pipe);
949 if (!pipe->nrbufs) {
950 ret = 0;
951 goto error_out;
952 }
68c034fe 953
efe75d24
MH
954 ret = wait_port_writable(port, filp->f_flags & O_NONBLOCK);
955 if (ret < 0)
2b4fbf02 956 goto error_out;
efe75d24 957
276a3e95 958 buf = alloc_buf(port->out_vq, 0, pipe->nrbufs);
2b4fbf02
YY
959 if (!buf) {
960 ret = -ENOMEM;
961 goto error_out;
962 }
276a3e95 963
eb5e89fc
MH
964 sgl.n = 0;
965 sgl.len = 0;
8ca84a50 966 sgl.size = pipe->nrbufs;
276a3e95 967 sgl.sg = buf->sg;
8ca84a50 968 sg_init_table(sgl.sg, sgl.size);
eb5e89fc 969 ret = __splice_from_pipe(pipe, &sd, pipe_to_sg);
2b4fbf02 970 pipe_unlock(pipe);
eb5e89fc 971 if (likely(ret > 0))
276a3e95 972 ret = __send_to_port(port, buf->sg, sgl.n, sgl.len, buf, true);
eb5e89fc 973
fe529537 974 if (unlikely(ret <= 0))
1b637046 975 free_buf(buf, true);
eb5e89fc 976 return ret;
2b4fbf02
YY
977
978error_out:
979 pipe_unlock(pipe);
980 return ret;
eb5e89fc
MH
981}
982
2030fa49
AS
983static unsigned int port_fops_poll(struct file *filp, poll_table *wait)
984{
985 struct port *port;
986 unsigned int ret;
987
988 port = filp->private_data;
989 poll_wait(filp, &port->waitqueue, wait);
990
8529a504
AS
991 if (!port->guest_connected) {
992 /* Port got unplugged */
993 return POLLHUP;
994 }
2030fa49 995 ret = 0;
6df7aadc 996 if (!will_read_block(port))
2030fa49 997 ret |= POLLIN | POLLRDNORM;
cdfadfc1 998 if (!will_write_block(port))
2030fa49
AS
999 ret |= POLLOUT;
1000 if (!port->host_connected)
1001 ret |= POLLHUP;
1002
1003 return ret;
1004}
1005
b353a6b8
AS
1006static void remove_port(struct kref *kref);
1007
2030fa49
AS
1008static int port_fops_release(struct inode *inode, struct file *filp)
1009{
1010 struct port *port;
1011
1012 port = filp->private_data;
1013
1014 /* Notify host of port being closed */
1015 send_control_msg(port, VIRTIO_CONSOLE_PORT_OPEN, 0);
1016
88f251ac 1017 spin_lock_irq(&port->inbuf_lock);
3c7969cc
AS
1018 port->guest_connected = false;
1019
88f251ac
AS
1020 discard_port_data(port);
1021
1022 spin_unlock_irq(&port->inbuf_lock);
1023
cdfadfc1
AS
1024 spin_lock_irq(&port->outvq_lock);
1025 reclaim_consumed_buffers(port);
1026 spin_unlock_irq(&port->outvq_lock);
1027
1b637046 1028 reclaim_dma_bufs();
b353a6b8
AS
1029 /*
1030 * Locks aren't necessary here as a port can't be opened after
1031 * unplug, and if a port isn't unplugged, a kref would already
1032 * exist for the port. Plus, taking ports_lock here would
1033 * create a dependency on other locks taken by functions
1034 * inside remove_port if we're the last holder of the port,
1035 * creating many problems.
1036 */
1037 kref_put(&port->kref, remove_port);
1038
2030fa49
AS
1039 return 0;
1040}
1041
1042static int port_fops_open(struct inode *inode, struct file *filp)
1043{
1044 struct cdev *cdev = inode->i_cdev;
1045 struct port *port;
8ad37e83 1046 int ret;
2030fa49 1047
057b82be 1048 /* We get the port with a kref here */
04950cdf 1049 port = find_port_by_devt(cdev->dev);
671bdea2
AS
1050 if (!port) {
1051 /* Port was unplugged before we could proceed */
1052 return -ENXIO;
1053 }
2030fa49
AS
1054 filp->private_data = port;
1055
1056 /*
1057 * Don't allow opening of console port devices -- that's done
1058 * via /dev/hvc
1059 */
8ad37e83
AS
1060 if (is_console_port(port)) {
1061 ret = -ENXIO;
1062 goto out;
1063 }
2030fa49 1064
3c7969cc
AS
1065 /* Allow only one process to open a particular port at a time */
1066 spin_lock_irq(&port->inbuf_lock);
1067 if (port->guest_connected) {
1068 spin_unlock_irq(&port->inbuf_lock);
74ff582c 1069 ret = -EBUSY;
8ad37e83 1070 goto out;
3c7969cc
AS
1071 }
1072
1073 port->guest_connected = true;
1074 spin_unlock_irq(&port->inbuf_lock);
1075
cdfadfc1
AS
1076 spin_lock_irq(&port->outvq_lock);
1077 /*
1078 * There might be a chance that we missed reclaiming a few
1079 * buffers in the window of the port getting previously closed
1080 * and opening now.
1081 */
1082 reclaim_consumed_buffers(port);
1083 spin_unlock_irq(&port->outvq_lock);
1084
299fb61c
AS
1085 nonseekable_open(inode, filp);
1086
2030fa49
AS
1087 /* Notify host of port being opened */
1088 send_control_msg(filp->private_data, VIRTIO_CONSOLE_PORT_OPEN, 1);
1089
1090 return 0;
8ad37e83 1091out:
b353a6b8 1092 kref_put(&port->kref, remove_port);
8ad37e83 1093 return ret;
2030fa49
AS
1094}
1095
3eae0ade
AS
1096static int port_fops_fasync(int fd, struct file *filp, int mode)
1097{
1098 struct port *port;
1099
1100 port = filp->private_data;
1101 return fasync_helper(fd, filp, mode, &port->async_queue);
1102}
1103
2030fa49
AS
1104/*
1105 * The file operations that we support: programs in the guest can open
1106 * a console device, read from it, write to it, poll for data and
1107 * close it. The devices are at
1108 * /dev/vport<device number>p<port number>
1109 */
1110static const struct file_operations port_fops = {
1111 .owner = THIS_MODULE,
1112 .open = port_fops_open,
1113 .read = port_fops_read,
1114 .write = port_fops_write,
eb5e89fc 1115 .splice_write = port_fops_splice_write,
2030fa49
AS
1116 .poll = port_fops_poll,
1117 .release = port_fops_release,
3eae0ade 1118 .fasync = port_fops_fasync,
299fb61c 1119 .llseek = no_llseek,
2030fa49
AS
1120};
1121
a23ea924
RR
1122/*
1123 * The put_chars() callback is pretty straightforward.
31610434 1124 *
a23ea924
RR
1125 * We turn the characters into a scatter-gather list, add it to the
1126 * output queue and then kick the Host. Then we sit here waiting for
1127 * it to finish: inefficient in theory, but in practice
1128 * implementations will do it immediately (lguest's Launcher does).
1129 */
31610434
RR
1130static int put_chars(u32 vtermno, const char *buf, int count)
1131{
21206ede 1132 struct port *port;
276a3e95 1133 struct scatterlist sg[1];
38edf58d 1134
162a689a
FD
1135 if (unlikely(early_put_chars))
1136 return early_put_chars(vtermno, buf, count);
1137
38edf58d
AS
1138 port = find_port_by_vtermno(vtermno);
1139 if (!port)
6dc69f97 1140 return -EPIPE;
31610434 1141
276a3e95
SB
1142 sg_init_one(sg, buf, count);
1143 return __send_to_port(port, sg, 1, count, (void *)buf, false);
31610434
RR
1144}
1145
a23ea924
RR
1146/*
1147 * get_chars() is the callback from the hvc_console infrastructure
1148 * when an interrupt is received.
31610434 1149 *
203baab8
AS
1150 * We call out to fill_readbuf that gets us the required data from the
1151 * buffers that are queued up.
a23ea924 1152 */
31610434
RR
1153static int get_chars(u32 vtermno, char *buf, int count)
1154{
21206ede
RR
1155 struct port *port;
1156
6dc69f97
AS
1157 /* If we've not set up the port yet, we have no input to give. */
1158 if (unlikely(early_put_chars))
1159 return 0;
1160
38edf58d
AS
1161 port = find_port_by_vtermno(vtermno);
1162 if (!port)
6dc69f97 1163 return -EPIPE;
21206ede 1164
31610434 1165 /* If we don't have an input queue yet, we can't get input. */
21206ede 1166 BUG_ON(!port->in_vq);
31610434 1167
b766ceed 1168 return fill_readbuf(port, buf, count, false);
31610434 1169}
31610434 1170
cb06e367 1171static void resize_console(struct port *port)
c2983458 1172{
cb06e367 1173 struct virtio_device *vdev;
c2983458 1174
2de16a49 1175 /* The port could have been hot-unplugged */
9778829c 1176 if (!port || !is_console_port(port))
2de16a49
AS
1177 return;
1178
cb06e367 1179 vdev = port->portdev->vdev;
1b637046
SB
1180
1181 /* Don't test F_SIZE at all if we're rproc: not a valid feature! */
1182 if (!is_rproc_serial(vdev) &&
1183 virtio_has_feature(vdev, VIRTIO_CONSOLE_F_SIZE))
9778829c 1184 hvc_resize(port->cons.hvc, port->cons.ws);
c2983458
CB
1185}
1186
38edf58d 1187/* We set the configuration at this point, since we now have a tty */
91fcad19
CB
1188static int notifier_add_vio(struct hvc_struct *hp, int data)
1189{
38edf58d
AS
1190 struct port *port;
1191
1192 port = find_port_by_vtermno(hp->vtermno);
1193 if (!port)
1194 return -EINVAL;
1195
91fcad19 1196 hp->irq_requested = 1;
cb06e367 1197 resize_console(port);
c2983458 1198
91fcad19
CB
1199 return 0;
1200}
1201
1202static void notifier_del_vio(struct hvc_struct *hp, int data)
1203{
1204 hp->irq_requested = 0;
1205}
1206
17634ba2 1207/* The operations for console ports. */
1dff3996 1208static const struct hv_ops hv_ops = {
971f3390
RR
1209 .get_chars = get_chars,
1210 .put_chars = put_chars,
1211 .notifier_add = notifier_add_vio,
1212 .notifier_del = notifier_del_vio,
1213 .notifier_hangup = notifier_del_vio,
1214};
1215
1216/*
1217 * Console drivers are initialized very early so boot messages can go
1218 * out, so we do things slightly differently from the generic virtio
1219 * initialization of the net and block drivers.
1220 *
1221 * At this stage, the console is output-only. It's too early to set
1222 * up a virtqueue, so we let the drivers do some boutique early-output
1223 * thing.
1224 */
1225int __init virtio_cons_early_init(int (*put_chars)(u32, const char *, int))
1226{
1227 early_put_chars = put_chars;
1228 return hvc_instantiate(0, 0, &hv_ops);
1229}
1230
3826835a 1231static int init_port_console(struct port *port)
cfa6d379
AS
1232{
1233 int ret;
1234
1235 /*
1236 * The Host's telling us this port is a console port. Hook it
1237 * up with an hvc console.
1238 *
1239 * To set up and manage our virtual console, we call
1240 * hvc_alloc().
1241 *
1242 * The first argument of hvc_alloc() is the virtual console
1243 * number. The second argument is the parameter for the
1244 * notification mechanism (like irq number). We currently
1245 * leave this as zero, virtqueues have implicit notifications.
1246 *
1247 * The third argument is a "struct hv_ops" containing the
1248 * put_chars() get_chars(), notifier_add() and notifier_del()
1249 * pointers. The final argument is the output buffer size: we
1250 * can do any size, so we put PAGE_SIZE here.
1251 */
1252 port->cons.vtermno = pdrvdata.next_vtermno;
1253
1254 port->cons.hvc = hvc_alloc(port->cons.vtermno, 0, &hv_ops, PAGE_SIZE);
1255 if (IS_ERR(port->cons.hvc)) {
1256 ret = PTR_ERR(port->cons.hvc);
298add72
AS
1257 dev_err(port->dev,
1258 "error %d allocating hvc for port\n", ret);
cfa6d379
AS
1259 port->cons.hvc = NULL;
1260 return ret;
1261 }
1262 spin_lock_irq(&pdrvdata_lock);
1263 pdrvdata.next_vtermno++;
1264 list_add_tail(&port->cons.list, &pdrvdata.consoles);
1265 spin_unlock_irq(&pdrvdata_lock);
3c7969cc 1266 port->guest_connected = true;
cfa6d379 1267
1d05160b
AS
1268 /*
1269 * Start using the new console output if this is the first
1270 * console to come up.
1271 */
1272 if (early_put_chars)
1273 early_put_chars = NULL;
1274
2030fa49
AS
1275 /* Notify host of port being opened */
1276 send_control_msg(port, VIRTIO_CONSOLE_PORT_OPEN, 1);
1277
cfa6d379
AS
1278 return 0;
1279}
1280
431edb8a
AS
1281static ssize_t show_port_name(struct device *dev,
1282 struct device_attribute *attr, char *buffer)
1283{
1284 struct port *port;
1285
1286 port = dev_get_drvdata(dev);
1287
1288 return sprintf(buffer, "%s\n", port->name);
1289}
1290
1291static DEVICE_ATTR(name, S_IRUGO, show_port_name, NULL);
1292
1293static struct attribute *port_sysfs_entries[] = {
1294 &dev_attr_name.attr,
1295 NULL
1296};
1297
1298static struct attribute_group port_attribute_group = {
1299 .name = NULL, /* put in device directory */
1300 .attrs = port_sysfs_entries,
1301};
1302
d99393ef
AS
1303static ssize_t debugfs_read(struct file *filp, char __user *ubuf,
1304 size_t count, loff_t *offp)
1305{
1306 struct port *port;
1307 char *buf;
1308 ssize_t ret, out_offset, out_count;
1309
1310 out_count = 1024;
1311 buf = kmalloc(out_count, GFP_KERNEL);
1312 if (!buf)
1313 return -ENOMEM;
1314
1315 port = filp->private_data;
1316 out_offset = 0;
1317 out_offset += snprintf(buf + out_offset, out_count,
1318 "name: %s\n", port->name ? port->name : "");
1319 out_offset += snprintf(buf + out_offset, out_count - out_offset,
1320 "guest_connected: %d\n", port->guest_connected);
1321 out_offset += snprintf(buf + out_offset, out_count - out_offset,
1322 "host_connected: %d\n", port->host_connected);
cdfadfc1
AS
1323 out_offset += snprintf(buf + out_offset, out_count - out_offset,
1324 "outvq_full: %d\n", port->outvq_full);
17e5b4f2
AS
1325 out_offset += snprintf(buf + out_offset, out_count - out_offset,
1326 "bytes_sent: %lu\n", port->stats.bytes_sent);
1327 out_offset += snprintf(buf + out_offset, out_count - out_offset,
1328 "bytes_received: %lu\n",
1329 port->stats.bytes_received);
1330 out_offset += snprintf(buf + out_offset, out_count - out_offset,
1331 "bytes_discarded: %lu\n",
1332 port->stats.bytes_discarded);
d99393ef
AS
1333 out_offset += snprintf(buf + out_offset, out_count - out_offset,
1334 "is_console: %s\n",
1335 is_console_port(port) ? "yes" : "no");
1336 out_offset += snprintf(buf + out_offset, out_count - out_offset,
1337 "console_vtermno: %u\n", port->cons.vtermno);
1338
1339 ret = simple_read_from_buffer(ubuf, count, offp, buf, out_offset);
1340 kfree(buf);
1341 return ret;
1342}
1343
1344static const struct file_operations port_debugfs_ops = {
1345 .owner = THIS_MODULE,
234e3405 1346 .open = simple_open,
d99393ef
AS
1347 .read = debugfs_read,
1348};
1349
9778829c
AS
1350static void set_console_size(struct port *port, u16 rows, u16 cols)
1351{
1352 if (!port || !is_console_port(port))
1353 return;
1354
1355 port->cons.ws.ws_row = rows;
1356 port->cons.ws.ws_col = cols;
1357}
1358
c446f8fc
AS
1359static unsigned int fill_queue(struct virtqueue *vq, spinlock_t *lock)
1360{
1361 struct port_buffer *buf;
1362 unsigned int nr_added_bufs;
1363 int ret;
1364
1365 nr_added_bufs = 0;
1366 do {
276a3e95 1367 buf = alloc_buf(vq, PAGE_SIZE, 0);
c446f8fc
AS
1368 if (!buf)
1369 break;
1370
1371 spin_lock_irq(lock);
1372 ret = add_inbuf(vq, buf);
1373 if (ret < 0) {
1374 spin_unlock_irq(lock);
1b637046 1375 free_buf(buf, true);
c446f8fc
AS
1376 break;
1377 }
1378 nr_added_bufs++;
1379 spin_unlock_irq(lock);
1380 } while (ret > 0);
1381
1382 return nr_added_bufs;
1383}
1384
3eae0ade
AS
1385static void send_sigio_to_port(struct port *port)
1386{
1387 if (port->async_queue && port->guest_connected)
1388 kill_fasync(&port->async_queue, SIGIO, POLL_OUT);
1389}
1390
c446f8fc
AS
1391static int add_port(struct ports_device *portdev, u32 id)
1392{
1393 char debugfs_name[16];
1394 struct port *port;
1395 struct port_buffer *buf;
1396 dev_t devt;
1397 unsigned int nr_added_bufs;
1398 int err;
1399
1400 port = kmalloc(sizeof(*port), GFP_KERNEL);
1401 if (!port) {
1402 err = -ENOMEM;
1403 goto fail;
1404 }
b353a6b8 1405 kref_init(&port->kref);
c446f8fc
AS
1406
1407 port->portdev = portdev;
1408 port->id = id;
1409
1410 port->name = NULL;
1411 port->inbuf = NULL;
1412 port->cons.hvc = NULL;
3eae0ade 1413 port->async_queue = NULL;
c446f8fc 1414
9778829c
AS
1415 port->cons.ws.ws_row = port->cons.ws.ws_col = 0;
1416
c446f8fc 1417 port->host_connected = port->guest_connected = false;
17e5b4f2 1418 port->stats = (struct port_stats) { 0 };
c446f8fc 1419
cdfadfc1
AS
1420 port->outvq_full = false;
1421
c446f8fc
AS
1422 port->in_vq = portdev->in_vqs[port->id];
1423 port->out_vq = portdev->out_vqs[port->id];
1424
d22a6989
AS
1425 port->cdev = cdev_alloc();
1426 if (!port->cdev) {
1427 dev_err(&port->portdev->vdev->dev, "Error allocating cdev\n");
1428 err = -ENOMEM;
1429 goto free_port;
1430 }
1431 port->cdev->ops = &port_fops;
c446f8fc
AS
1432
1433 devt = MKDEV(portdev->chr_major, id);
d22a6989 1434 err = cdev_add(port->cdev, devt, 1);
c446f8fc
AS
1435 if (err < 0) {
1436 dev_err(&port->portdev->vdev->dev,
1437 "Error %d adding cdev for port %u\n", err, id);
d22a6989 1438 goto free_cdev;
c446f8fc
AS
1439 }
1440 port->dev = device_create(pdrvdata.class, &port->portdev->vdev->dev,
1441 devt, port, "vport%up%u",
dc18f080 1442 port->portdev->vdev->index, id);
c446f8fc
AS
1443 if (IS_ERR(port->dev)) {
1444 err = PTR_ERR(port->dev);
1445 dev_err(&port->portdev->vdev->dev,
1446 "Error %d creating device for port %u\n",
1447 err, id);
1448 goto free_cdev;
1449 }
1450
1451 spin_lock_init(&port->inbuf_lock);
cdfadfc1 1452 spin_lock_init(&port->outvq_lock);
c446f8fc
AS
1453 init_waitqueue_head(&port->waitqueue);
1454
1455 /* Fill the in_vq with buffers so the host can send us data. */
1456 nr_added_bufs = fill_queue(port->in_vq, &port->inbuf_lock);
1457 if (!nr_added_bufs) {
1458 dev_err(port->dev, "Error allocating inbufs\n");
1459 err = -ENOMEM;
1460 goto free_device;
1461 }
1462
1b637046
SB
1463 if (is_rproc_serial(port->portdev->vdev))
1464 /*
1465 * For rproc_serial assume remote processor is connected.
1466 * rproc_serial does not want the console port, only
1467 * the generic port implementation.
1468 */
aabd6a8f 1469 port->host_connected = true;
1b637046
SB
1470 else if (!use_multiport(port->portdev)) {
1471 /*
1472 * If we're not using multiport support,
1473 * this has to be a console port.
1474 */
c446f8fc
AS
1475 err = init_port_console(port);
1476 if (err)
1477 goto free_inbufs;
1478 }
1479
1480 spin_lock_irq(&portdev->ports_lock);
1481 list_add_tail(&port->list, &port->portdev->ports);
1482 spin_unlock_irq(&portdev->ports_lock);
1483
1484 /*
1485 * Tell the Host we're set so that it can send us various
1486 * configuration parameters for this port (eg, port name,
1487 * caching, whether this is a console port, etc.)
1488 */
1489 send_control_msg(port, VIRTIO_CONSOLE_PORT_READY, 1);
1490
1491 if (pdrvdata.debugfs_dir) {
1492 /*
1493 * Finally, create the debugfs file that we can use to
1494 * inspect a port's state at any time
1495 */
1496 sprintf(debugfs_name, "vport%up%u",
dc18f080 1497 port->portdev->vdev->index, id);
c446f8fc
AS
1498 port->debugfs_file = debugfs_create_file(debugfs_name, 0444,
1499 pdrvdata.debugfs_dir,
1500 port,
1501 &port_debugfs_ops);
1502 }
1503 return 0;
1504
1505free_inbufs:
1506 while ((buf = virtqueue_detach_unused_buf(port->in_vq)))
1b637046 1507 free_buf(buf, true);
c446f8fc
AS
1508free_device:
1509 device_destroy(pdrvdata.class, port->dev->devt);
1510free_cdev:
d22a6989 1511 cdev_del(port->cdev);
c446f8fc
AS
1512free_port:
1513 kfree(port);
1514fail:
1515 /* The host might want to notify management sw about port add failure */
0643e4c6 1516 __send_control_msg(portdev, id, VIRTIO_CONSOLE_PORT_READY, 0);
c446f8fc
AS
1517 return err;
1518}
1519
b353a6b8
AS
1520/* No users remain, remove all port-specific data. */
1521static void remove_port(struct kref *kref)
1522{
1523 struct port *port;
1524
1525 port = container_of(kref, struct port, kref);
1526
b353a6b8
AS
1527 kfree(port);
1528}
1529
a0e2dbfc
AS
1530static void remove_port_data(struct port *port)
1531{
1532 struct port_buffer *buf;
1533
c6017e79 1534 spin_lock_irq(&port->inbuf_lock);
a0e2dbfc
AS
1535 /* Remove unused data this port might have received. */
1536 discard_port_data(port);
1537
a0e2dbfc
AS
1538 /* Remove buffers we queued up for the Host to send us data in. */
1539 while ((buf = virtqueue_detach_unused_buf(port->in_vq)))
1b637046 1540 free_buf(buf, true);
c6017e79
AS
1541 spin_unlock_irq(&port->inbuf_lock);
1542
1543 spin_lock_irq(&port->outvq_lock);
1544 reclaim_consumed_buffers(port);
eb34f12b 1545
1546 /* Free pending buffers from the out-queue. */
1547 while ((buf = virtqueue_detach_unused_buf(port->out_vq)))
1b637046 1548 free_buf(buf, true);
c6017e79 1549 spin_unlock_irq(&port->outvq_lock);
a0e2dbfc
AS
1550}
1551
b353a6b8
AS
1552/*
1553 * Port got unplugged. Remove port from portdev's list and drop the
1554 * kref reference. If no userspace has this port opened, it will
1555 * result in immediate removal the port.
1556 */
1557static void unplug_port(struct port *port)
1f7aa42d 1558{
b353a6b8
AS
1559 spin_lock_irq(&port->portdev->ports_lock);
1560 list_del(&port->list);
1561 spin_unlock_irq(&port->portdev->ports_lock);
1562
5549fb25 1563 spin_lock_irq(&port->inbuf_lock);
0047634d 1564 if (port->guest_connected) {
92d34538
AS
1565 /* Let the app know the port is going down. */
1566 send_sigio_to_port(port);
1567
1568 /* Do this after sigio is actually sent */
0047634d
AS
1569 port->guest_connected = false;
1570 port->host_connected = false;
a461e11e 1571
92d34538 1572 wake_up_interruptible(&port->waitqueue);
0047634d 1573 }
5549fb25 1574 spin_unlock_irq(&port->inbuf_lock);
0047634d 1575
1f7aa42d
AS
1576 if (is_console_port(port)) {
1577 spin_lock_irq(&pdrvdata_lock);
1578 list_del(&port->cons.list);
1579 spin_unlock_irq(&pdrvdata_lock);
1580 hvc_remove(port->cons.hvc);
1581 }
1f7aa42d 1582
a0e2dbfc 1583 remove_port_data(port);
a9cdd485 1584
b353a6b8
AS
1585 /*
1586 * We should just assume the device itself has gone off --
1587 * else a close on an open port later will try to send out a
1588 * control message.
1589 */
1590 port->portdev = NULL;
d99393ef 1591
ea3768b4
AS
1592 sysfs_remove_group(&port->dev->kobj, &port_attribute_group);
1593 device_destroy(pdrvdata.class, port->dev->devt);
1594 cdev_del(port->cdev);
1595
ea3768b4 1596 debugfs_remove(port->debugfs_file);
3b868a40 1597 kfree(port->name);
ea3768b4 1598
b353a6b8
AS
1599 /*
1600 * Locks around here are not necessary - a port can't be
1601 * opened after we removed the port struct from ports_list
1602 * above.
1603 */
1604 kref_put(&port->kref, remove_port);
1f7aa42d
AS
1605}
1606
17634ba2
AS
1607/* Any private messages that the Host and Guest want to share */
1608static void handle_control_message(struct ports_device *portdev,
1609 struct port_buffer *buf)
1610{
1611 struct virtio_console_control *cpkt;
1612 struct port *port;
431edb8a
AS
1613 size_t name_size;
1614 int err;
17634ba2
AS
1615
1616 cpkt = (struct virtio_console_control *)(buf->buf + buf->offset);
1617
1618 port = find_port_by_id(portdev, cpkt->id);
f909f850 1619 if (!port && cpkt->event != VIRTIO_CONSOLE_PORT_ADD) {
17634ba2
AS
1620 /* No valid header at start of buffer. Drop it. */
1621 dev_dbg(&portdev->vdev->dev,
1622 "Invalid index %u in control packet\n", cpkt->id);
1623 return;
1624 }
1625
1626 switch (cpkt->event) {
f909f850
AS
1627 case VIRTIO_CONSOLE_PORT_ADD:
1628 if (port) {
1d05160b
AS
1629 dev_dbg(&portdev->vdev->dev,
1630 "Port %u already added\n", port->id);
f909f850
AS
1631 send_control_msg(port, VIRTIO_CONSOLE_PORT_READY, 1);
1632 break;
1633 }
1634 if (cpkt->id >= portdev->config.max_nr_ports) {
1635 dev_warn(&portdev->vdev->dev,
1636 "Request for adding port with out-of-bound id %u, max. supported id: %u\n",
1637 cpkt->id, portdev->config.max_nr_ports - 1);
1638 break;
1639 }
1640 add_port(portdev, cpkt->id);
1641 break;
1642 case VIRTIO_CONSOLE_PORT_REMOVE:
b353a6b8 1643 unplug_port(port);
f909f850 1644 break;
17634ba2
AS
1645 case VIRTIO_CONSOLE_CONSOLE_PORT:
1646 if (!cpkt->value)
1647 break;
1648 if (is_console_port(port))
1649 break;
1650
1651 init_port_console(port);
5e38483b 1652 complete(&early_console_added);
17634ba2
AS
1653 /*
1654 * Could remove the port here in case init fails - but
1655 * have to notify the host first.
1656 */
1657 break;
8345adbf
AS
1658 case VIRTIO_CONSOLE_RESIZE: {
1659 struct {
1660 __u16 rows;
1661 __u16 cols;
1662 } size;
1663
17634ba2
AS
1664 if (!is_console_port(port))
1665 break;
8345adbf
AS
1666
1667 memcpy(&size, buf->buf + buf->offset + sizeof(*cpkt),
1668 sizeof(size));
1669 set_console_size(port, size.rows, size.cols);
1670
17634ba2
AS
1671 port->cons.hvc->irq_requested = 1;
1672 resize_console(port);
1673 break;
8345adbf 1674 }
2030fa49
AS
1675 case VIRTIO_CONSOLE_PORT_OPEN:
1676 port->host_connected = cpkt->value;
1677 wake_up_interruptible(&port->waitqueue);
cdfadfc1
AS
1678 /*
1679 * If the host port got closed and the host had any
1680 * unconsumed buffers, we'll be able to reclaim them
1681 * now.
1682 */
1683 spin_lock_irq(&port->outvq_lock);
1684 reclaim_consumed_buffers(port);
1685 spin_unlock_irq(&port->outvq_lock);
3eae0ade
AS
1686
1687 /*
1688 * If the guest is connected, it'll be interested in
1689 * knowing the host connection state changed.
1690 */
314081f1 1691 spin_lock_irq(&port->inbuf_lock);
3eae0ade 1692 send_sigio_to_port(port);
314081f1 1693 spin_unlock_irq(&port->inbuf_lock);
2030fa49 1694 break;
431edb8a 1695 case VIRTIO_CONSOLE_PORT_NAME:
291024ef
AS
1696 /*
1697 * If we woke up after hibernation, we can get this
1698 * again. Skip it in that case.
1699 */
1700 if (port->name)
1701 break;
1702
431edb8a
AS
1703 /*
1704 * Skip the size of the header and the cpkt to get the size
1705 * of the name that was sent
1706 */
1707 name_size = buf->len - buf->offset - sizeof(*cpkt) + 1;
1708
1709 port->name = kmalloc(name_size, GFP_KERNEL);
1710 if (!port->name) {
1711 dev_err(port->dev,
1712 "Not enough space to store port name\n");
1713 break;
1714 }
1715 strncpy(port->name, buf->buf + buf->offset + sizeof(*cpkt),
1716 name_size - 1);
1717 port->name[name_size - 1] = 0;
1718
1719 /*
1720 * Since we only have one sysfs attribute, 'name',
1721 * create it only if we have a name for the port.
1722 */
1723 err = sysfs_create_group(&port->dev->kobj,
1724 &port_attribute_group);
ec64213c 1725 if (err) {
431edb8a
AS
1726 dev_err(port->dev,
1727 "Error %d creating sysfs device attributes\n",
1728 err);
ec64213c
AS
1729 } else {
1730 /*
1731 * Generate a udev event so that appropriate
1732 * symlinks can be created based on udev
1733 * rules.
1734 */
1735 kobject_uevent(&port->dev->kobj, KOBJ_CHANGE);
1736 }
431edb8a 1737 break;
17634ba2
AS
1738 }
1739}
1740
1741static void control_work_handler(struct work_struct *work)
1742{
1743 struct ports_device *portdev;
1744 struct virtqueue *vq;
1745 struct port_buffer *buf;
1746 unsigned int len;
1747
1748 portdev = container_of(work, struct ports_device, control_work);
1749 vq = portdev->c_ivq;
1750
165b1b8b 1751 spin_lock(&portdev->c_ivq_lock);
505b0451 1752 while ((buf = virtqueue_get_buf(vq, &len))) {
165b1b8b 1753 spin_unlock(&portdev->c_ivq_lock);
17634ba2
AS
1754
1755 buf->len = len;
1756 buf->offset = 0;
1757
1758 handle_control_message(portdev, buf);
1759
165b1b8b 1760 spin_lock(&portdev->c_ivq_lock);
17634ba2
AS
1761 if (add_inbuf(portdev->c_ivq, buf) < 0) {
1762 dev_warn(&portdev->vdev->dev,
1763 "Error adding buffer to queue\n");
1b637046 1764 free_buf(buf, false);
17634ba2
AS
1765 }
1766 }
165b1b8b 1767 spin_unlock(&portdev->c_ivq_lock);
17634ba2
AS
1768}
1769
2770c5ea
AS
1770static void out_intr(struct virtqueue *vq)
1771{
1772 struct port *port;
1773
1774 port = find_port_by_vq(vq->vdev->priv, vq);
1775 if (!port)
1776 return;
1777
1778 wake_up_interruptible(&port->waitqueue);
1779}
1780
17634ba2
AS
1781static void in_intr(struct virtqueue *vq)
1782{
1783 struct port *port;
1784 unsigned long flags;
1785
1786 port = find_port_by_vq(vq->vdev->priv, vq);
1787 if (!port)
1788 return;
1789
1790 spin_lock_irqsave(&port->inbuf_lock, flags);
d25a9dda 1791 port->inbuf = get_inbuf(port);
17634ba2 1792
88f251ac 1793 /*
aabd6a8f
SB
1794 * Normally the port should not accept data when the port is
1795 * closed. For generic serial ports, the host won't (shouldn't)
1796 * send data till the guest is connected. But this condition
88f251ac 1797 * can be reached when a console port is not yet connected (no
aabd6a8f
SB
1798 * tty is spawned) and the other side sends out data over the
1799 * vring, or when a remote devices start sending data before
1800 * the ports are opened.
1801 *
1802 * A generic serial port will discard data if not connected,
1803 * while console ports and rproc-serial ports accepts data at
1804 * any time. rproc-serial is initiated with guest_connected to
1805 * false because port_fops_open expects this. Console ports are
1806 * hooked up with an HVC console and is initialized with
1807 * guest_connected to true.
88f251ac 1808 */
aabd6a8f
SB
1809
1810 if (!port->guest_connected && !is_rproc_serial(port->portdev->vdev))
88f251ac
AS
1811 discard_port_data(port);
1812
314081f1
AS
1813 /* Send a SIGIO indicating new data in case the process asked for it */
1814 send_sigio_to_port(port);
1815
17634ba2
AS
1816 spin_unlock_irqrestore(&port->inbuf_lock, flags);
1817
2030fa49
AS
1818 wake_up_interruptible(&port->waitqueue);
1819
17634ba2
AS
1820 if (is_console_port(port) && hvc_poll(port->cons.hvc))
1821 hvc_kick();
1822}
1823
1824static void control_intr(struct virtqueue *vq)
1825{
1826 struct ports_device *portdev;
1827
1828 portdev = vq->vdev->priv;
1829 schedule_work(&portdev->control_work);
1830}
1831
7f5d810d
AS
1832static void config_intr(struct virtio_device *vdev)
1833{
1834 struct ports_device *portdev;
1835
1836 portdev = vdev->priv;
99f905f8 1837
4038f5b7 1838 if (!use_multiport(portdev)) {
9778829c
AS
1839 struct port *port;
1840 u16 rows, cols;
1841
855e0c52
RR
1842 virtio_cread(vdev, struct virtio_console_config, cols, &cols);
1843 virtio_cread(vdev, struct virtio_console_config, rows, &rows);
9778829c
AS
1844
1845 port = find_port_by_id(portdev, 0);
1846 set_console_size(port, rows, cols);
1847
4038f5b7
AS
1848 /*
1849 * We'll use this way of resizing only for legacy
1850 * support. For newer userspace
1851 * (VIRTIO_CONSOLE_F_MULTPORT+), use control messages
1852 * to indicate console size changes so that it can be
1853 * done per-port.
1854 */
9778829c 1855 resize_console(port);
4038f5b7 1856 }
7f5d810d
AS
1857}
1858
2658a79a
AS
1859static int init_vqs(struct ports_device *portdev)
1860{
1861 vq_callback_t **io_callbacks;
1862 char **io_names;
1863 struct virtqueue **vqs;
17634ba2 1864 u32 i, j, nr_ports, nr_queues;
2658a79a
AS
1865 int err;
1866
17634ba2
AS
1867 nr_ports = portdev->config.max_nr_ports;
1868 nr_queues = use_multiport(portdev) ? (nr_ports + 1) * 2 : 2;
2658a79a
AS
1869
1870 vqs = kmalloc(nr_queues * sizeof(struct virtqueue *), GFP_KERNEL);
2658a79a 1871 io_callbacks = kmalloc(nr_queues * sizeof(vq_callback_t *), GFP_KERNEL);
2658a79a 1872 io_names = kmalloc(nr_queues * sizeof(char *), GFP_KERNEL);
2658a79a
AS
1873 portdev->in_vqs = kmalloc(nr_ports * sizeof(struct virtqueue *),
1874 GFP_KERNEL);
2658a79a
AS
1875 portdev->out_vqs = kmalloc(nr_ports * sizeof(struct virtqueue *),
1876 GFP_KERNEL);
22e132ff 1877 if (!vqs || !io_callbacks || !io_names || !portdev->in_vqs ||
286f9a22 1878 !portdev->out_vqs) {
2658a79a 1879 err = -ENOMEM;
22e132ff 1880 goto free;
2658a79a
AS
1881 }
1882
17634ba2
AS
1883 /*
1884 * For backward compat (newer host but older guest), the host
1885 * spawns a console port first and also inits the vqs for port
1886 * 0 before others.
1887 */
1888 j = 0;
1889 io_callbacks[j] = in_intr;
2770c5ea 1890 io_callbacks[j + 1] = out_intr;
17634ba2
AS
1891 io_names[j] = "input";
1892 io_names[j + 1] = "output";
1893 j += 2;
1894
1895 if (use_multiport(portdev)) {
1896 io_callbacks[j] = control_intr;
1897 io_callbacks[j + 1] = NULL;
1898 io_names[j] = "control-i";
1899 io_names[j + 1] = "control-o";
1900
1901 for (i = 1; i < nr_ports; i++) {
1902 j += 2;
1903 io_callbacks[j] = in_intr;
2770c5ea 1904 io_callbacks[j + 1] = out_intr;
17634ba2
AS
1905 io_names[j] = "input";
1906 io_names[j + 1] = "output";
1907 }
1908 }
2658a79a
AS
1909 /* Find the queues. */
1910 err = portdev->vdev->config->find_vqs(portdev->vdev, nr_queues, vqs,
1911 io_callbacks,
1912 (const char **)io_names);
1913 if (err)
22e132ff 1914 goto free;
2658a79a 1915
17634ba2 1916 j = 0;
2658a79a
AS
1917 portdev->in_vqs[0] = vqs[0];
1918 portdev->out_vqs[0] = vqs[1];
17634ba2
AS
1919 j += 2;
1920 if (use_multiport(portdev)) {
1921 portdev->c_ivq = vqs[j];
1922 portdev->c_ovq = vqs[j + 1];
1923
1924 for (i = 1; i < nr_ports; i++) {
1925 j += 2;
1926 portdev->in_vqs[i] = vqs[j];
1927 portdev->out_vqs[i] = vqs[j + 1];
1928 }
1929 }
2658a79a 1930 kfree(io_names);
22e132ff 1931 kfree(io_callbacks);
2658a79a
AS
1932 kfree(vqs);
1933
1934 return 0;
1935
22e132ff 1936free:
2658a79a 1937 kfree(portdev->out_vqs);
2658a79a 1938 kfree(portdev->in_vqs);
22e132ff
JS
1939 kfree(io_names);
1940 kfree(io_callbacks);
2658a79a 1941 kfree(vqs);
22e132ff 1942
2658a79a
AS
1943 return err;
1944}
1945
fb08bd27
AS
1946static const struct file_operations portdev_fops = {
1947 .owner = THIS_MODULE,
1948};
1949
a0e2dbfc
AS
1950static void remove_vqs(struct ports_device *portdev)
1951{
1952 portdev->vdev->config->del_vqs(portdev->vdev);
1953 kfree(portdev->in_vqs);
1954 kfree(portdev->out_vqs);
1955}
1956
1957static void remove_controlq_data(struct ports_device *portdev)
1958{
1959 struct port_buffer *buf;
1960 unsigned int len;
1961
1962 if (!use_multiport(portdev))
1963 return;
1964
1965 while ((buf = virtqueue_get_buf(portdev->c_ivq, &len)))
1b637046 1966 free_buf(buf, true);
a0e2dbfc
AS
1967
1968 while ((buf = virtqueue_detach_unused_buf(portdev->c_ivq)))
1b637046 1969 free_buf(buf, true);
a0e2dbfc
AS
1970}
1971
1c85bf35
AS
1972/*
1973 * Once we're further in boot, we get probed like any other virtio
1974 * device.
17634ba2
AS
1975 *
1976 * If the host also supports multiple console ports, we check the
1977 * config space to see how many ports the host has spawned. We
1978 * initialize each port found.
1c85bf35 1979 */
2223cbec 1980static int virtcons_probe(struct virtio_device *vdev)
1c85bf35 1981{
1c85bf35
AS
1982 struct ports_device *portdev;
1983 int err;
17634ba2 1984 bool multiport;
5e38483b
CB
1985 bool early = early_put_chars != NULL;
1986
1987 /* Ensure to read early_put_chars now */
1988 barrier();
1c85bf35
AS
1989
1990 portdev = kmalloc(sizeof(*portdev), GFP_KERNEL);
1991 if (!portdev) {
1992 err = -ENOMEM;
1993 goto fail;
1994 }
1995
1996 /* Attach this portdev to this virtio_device, and vice-versa. */
1997 portdev->vdev = vdev;
1998 vdev->priv = portdev;
1999
fb08bd27
AS
2000 portdev->chr_major = register_chrdev(0, "virtio-portsdev",
2001 &portdev_fops);
2002 if (portdev->chr_major < 0) {
2003 dev_err(&vdev->dev,
2004 "Error %d registering chrdev for device %u\n",
dc18f080 2005 portdev->chr_major, vdev->index);
fb08bd27
AS
2006 err = portdev->chr_major;
2007 goto free;
2008 }
2009
17634ba2 2010 multiport = false;
17634ba2 2011 portdev->config.max_nr_ports = 1;
1b637046
SB
2012
2013 /* Don't test MULTIPORT at all if we're rproc: not a valid feature! */
2014 if (!is_rproc_serial(vdev) &&
855e0c52
RR
2015 virtio_cread_feature(vdev, VIRTIO_CONSOLE_F_MULTIPORT,
2016 struct virtio_console_config, max_nr_ports,
2017 &portdev->config.max_nr_ports) == 0) {
17634ba2 2018 multiport = true;
1b637046 2019 }
17634ba2 2020
2658a79a
AS
2021 err = init_vqs(portdev);
2022 if (err < 0) {
2023 dev_err(&vdev->dev, "Error %d initializing vqs\n", err);
fb08bd27 2024 goto free_chrdev;
2658a79a 2025 }
1c85bf35 2026
17634ba2
AS
2027 spin_lock_init(&portdev->ports_lock);
2028 INIT_LIST_HEAD(&portdev->ports);
2029
2030 if (multiport) {
335a64a5
AS
2031 unsigned int nr_added_bufs;
2032
165b1b8b 2033 spin_lock_init(&portdev->c_ivq_lock);
9ba5c80b 2034 spin_lock_init(&portdev->c_ovq_lock);
17634ba2
AS
2035 INIT_WORK(&portdev->control_work, &control_work_handler);
2036
165b1b8b
AS
2037 nr_added_bufs = fill_queue(portdev->c_ivq,
2038 &portdev->c_ivq_lock);
335a64a5 2039 if (!nr_added_bufs) {
22a29eac
AS
2040 dev_err(&vdev->dev,
2041 "Error allocating buffers for control queue\n");
2042 err = -ENOMEM;
2043 goto free_vqs;
2044 }
1d05160b
AS
2045 } else {
2046 /*
2047 * For backward compatibility: Create a console port
2048 * if we're running on older host.
2049 */
2050 add_port(portdev, 0);
17634ba2
AS
2051 }
2052
6bdf2afd
AS
2053 spin_lock_irq(&pdrvdata_lock);
2054 list_add_tail(&portdev->list, &pdrvdata.portdevs);
2055 spin_unlock_irq(&pdrvdata_lock);
2056
f909f850
AS
2057 __send_control_msg(portdev, VIRTIO_CONSOLE_BAD_ID,
2058 VIRTIO_CONSOLE_DEVICE_READY, 1);
5e38483b
CB
2059
2060 /*
2061 * If there was an early virtio console, assume that there are no
2062 * other consoles. We need to wait until the hvc_alloc matches the
2063 * hvc_instantiate, otherwise tty_open will complain, resulting in
2064 * a "Warning: unable to open an initial console" boot failure.
2065 * Without multiport this is done in add_port above. With multiport
2066 * this might take some host<->guest communication - thus we have to
2067 * wait.
2068 */
2069 if (multiport && early)
2070 wait_for_completion(&early_console_added);
2071
31610434
RR
2072 return 0;
2073
22a29eac 2074free_vqs:
0643e4c6
JL
2075 /* The host might want to notify mgmt sw about device add failure */
2076 __send_control_msg(portdev, VIRTIO_CONSOLE_BAD_ID,
2077 VIRTIO_CONSOLE_DEVICE_READY, 0);
a0e2dbfc 2078 remove_vqs(portdev);
fb08bd27
AS
2079free_chrdev:
2080 unregister_chrdev(portdev->chr_major, "virtio-portsdev");
31610434 2081free:
1c85bf35 2082 kfree(portdev);
31610434
RR
2083fail:
2084 return err;
2085}
2086
7177876f
AS
2087static void virtcons_remove(struct virtio_device *vdev)
2088{
2089 struct ports_device *portdev;
2090 struct port *port, *port2;
7177876f
AS
2091
2092 portdev = vdev->priv;
2093
6bdf2afd
AS
2094 spin_lock_irq(&pdrvdata_lock);
2095 list_del(&portdev->list);
2096 spin_unlock_irq(&pdrvdata_lock);
2097
02238959
AS
2098 /* Disable interrupts for vqs */
2099 vdev->config->reset(vdev);
2100 /* Finish up work that's lined up */
aded024a
SB
2101 if (use_multiport(portdev))
2102 cancel_work_sync(&portdev->control_work);
7177876f
AS
2103
2104 list_for_each_entry_safe(port, port2, &portdev->ports, list)
b353a6b8 2105 unplug_port(port);
7177876f
AS
2106
2107 unregister_chrdev(portdev->chr_major, "virtio-portsdev");
2108
e062013c
AS
2109 /*
2110 * When yanking out a device, we immediately lose the
2111 * (device-side) queues. So there's no point in keeping the
2112 * guest side around till we drop our final reference. This
2113 * also means that any ports which are in an open state will
2114 * have to just stop using the port, as the vqs are going
2115 * away.
2116 */
a0e2dbfc
AS
2117 remove_controlq_data(portdev);
2118 remove_vqs(portdev);
7177876f
AS
2119 kfree(portdev);
2120}
2121
31610434
RR
2122static struct virtio_device_id id_table[] = {
2123 { VIRTIO_ID_CONSOLE, VIRTIO_DEV_ANY_ID },
2124 { 0 },
2125};
2126
c2983458
CB
2127static unsigned int features[] = {
2128 VIRTIO_CONSOLE_F_SIZE,
b99fa815 2129 VIRTIO_CONSOLE_F_MULTIPORT,
c2983458
CB
2130};
2131
1b637046
SB
2132static struct virtio_device_id rproc_serial_id_table[] = {
2133#if IS_ENABLED(CONFIG_REMOTEPROC)
2134 { VIRTIO_ID_RPROC_SERIAL, VIRTIO_DEV_ANY_ID },
2135#endif
2136 { 0 },
2137};
2138
2139static unsigned int rproc_serial_features[] = {
2140};
2141
89107000 2142#ifdef CONFIG_PM_SLEEP
2b8f41d8
AS
2143static int virtcons_freeze(struct virtio_device *vdev)
2144{
2145 struct ports_device *portdev;
2146 struct port *port;
2147
2148 portdev = vdev->priv;
2149
2150 vdev->config->reset(vdev);
2151
c743d09d 2152 virtqueue_disable_cb(portdev->c_ivq);
2b8f41d8 2153 cancel_work_sync(&portdev->control_work);
c743d09d
AS
2154 /*
2155 * Once more: if control_work_handler() was running, it would
2156 * enable the cb as the last step.
2157 */
2158 virtqueue_disable_cb(portdev->c_ivq);
2b8f41d8
AS
2159 remove_controlq_data(portdev);
2160
2161 list_for_each_entry(port, &portdev->ports, list) {
c743d09d
AS
2162 virtqueue_disable_cb(port->in_vq);
2163 virtqueue_disable_cb(port->out_vq);
2b8f41d8
AS
2164 /*
2165 * We'll ask the host later if the new invocation has
2166 * the port opened or closed.
2167 */
2168 port->host_connected = false;
2169 remove_port_data(port);
2170 }
2171 remove_vqs(portdev);
2172
2173 return 0;
2174}
2175
2176static int virtcons_restore(struct virtio_device *vdev)
2177{
2178 struct ports_device *portdev;
2179 struct port *port;
2180 int ret;
2181
2182 portdev = vdev->priv;
2183
2184 ret = init_vqs(portdev);
2185 if (ret)
2186 return ret;
2187
2188 if (use_multiport(portdev))
165b1b8b 2189 fill_queue(portdev->c_ivq, &portdev->c_ivq_lock);
2b8f41d8
AS
2190
2191 list_for_each_entry(port, &portdev->ports, list) {
2192 port->in_vq = portdev->in_vqs[port->id];
2193 port->out_vq = portdev->out_vqs[port->id];
2194
2195 fill_queue(port->in_vq, &port->inbuf_lock);
2196
2197 /* Get port open/close status on the host */
2198 send_control_msg(port, VIRTIO_CONSOLE_PORT_READY, 1);
fa8b66cc
AS
2199
2200 /*
2201 * If a port was open at the time of suspending, we
2202 * have to let the host know that it's still open.
2203 */
2204 if (port->guest_connected)
2205 send_control_msg(port, VIRTIO_CONSOLE_PORT_OPEN, 1);
2b8f41d8
AS
2206 }
2207 return 0;
2208}
2209#endif
2210
31610434 2211static struct virtio_driver virtio_console = {
c2983458
CB
2212 .feature_table = features,
2213 .feature_table_size = ARRAY_SIZE(features),
31610434
RR
2214 .driver.name = KBUILD_MODNAME,
2215 .driver.owner = THIS_MODULE,
2216 .id_table = id_table,
2217 .probe = virtcons_probe,
7177876f 2218 .remove = virtcons_remove,
7f5d810d 2219 .config_changed = config_intr,
89107000 2220#ifdef CONFIG_PM_SLEEP
2b8f41d8
AS
2221 .freeze = virtcons_freeze,
2222 .restore = virtcons_restore,
2223#endif
31610434
RR
2224};
2225
bcd2982a 2226static struct virtio_driver virtio_rproc_serial = {
1b637046
SB
2227 .feature_table = rproc_serial_features,
2228 .feature_table_size = ARRAY_SIZE(rproc_serial_features),
2229 .driver.name = "virtio_rproc_serial",
2230 .driver.owner = THIS_MODULE,
2231 .id_table = rproc_serial_id_table,
2232 .probe = virtcons_probe,
2233 .remove = virtcons_remove,
2234};
2235
31610434
RR
2236static int __init init(void)
2237{
fb08bd27
AS
2238 int err;
2239
2240 pdrvdata.class = class_create(THIS_MODULE, "virtio-ports");
2241 if (IS_ERR(pdrvdata.class)) {
2242 err = PTR_ERR(pdrvdata.class);
2243 pr_err("Error %d creating virtio-ports class\n", err);
2244 return err;
2245 }
d99393ef
AS
2246
2247 pdrvdata.debugfs_dir = debugfs_create_dir("virtio-ports", NULL);
3f0d0c9b
DC
2248 if (!pdrvdata.debugfs_dir)
2249 pr_warning("Error creating debugfs dir for virtio-ports\n");
38edf58d 2250 INIT_LIST_HEAD(&pdrvdata.consoles);
6bdf2afd 2251 INIT_LIST_HEAD(&pdrvdata.portdevs);
38edf58d 2252
33e1afc3
AK
2253 err = register_virtio_driver(&virtio_console);
2254 if (err < 0) {
2255 pr_err("Error %d registering virtio driver\n", err);
2256 goto free;
2257 }
1b637046
SB
2258 err = register_virtio_driver(&virtio_rproc_serial);
2259 if (err < 0) {
2260 pr_err("Error %d registering virtio rproc serial driver\n",
2261 err);
2262 goto unregister;
2263 }
33e1afc3 2264 return 0;
1b637046
SB
2265unregister:
2266 unregister_virtio_driver(&virtio_console);
33e1afc3
AK
2267free:
2268 if (pdrvdata.debugfs_dir)
2269 debugfs_remove_recursive(pdrvdata.debugfs_dir);
2270 class_destroy(pdrvdata.class);
2271 return err;
31610434 2272}
7177876f
AS
2273
2274static void __exit fini(void)
2275{
1b637046
SB
2276 reclaim_dma_bufs();
2277
7177876f 2278 unregister_virtio_driver(&virtio_console);
1b637046 2279 unregister_virtio_driver(&virtio_rproc_serial);
7177876f
AS
2280
2281 class_destroy(pdrvdata.class);
2282 if (pdrvdata.debugfs_dir)
2283 debugfs_remove_recursive(pdrvdata.debugfs_dir);
2284}
31610434 2285module_init(init);
7177876f 2286module_exit(fini);
31610434
RR
2287
2288MODULE_DEVICE_TABLE(virtio, id_table);
2289MODULE_DESCRIPTION("Virtio console driver");
2290MODULE_LICENSE("GPL");