virtio_console.c 56 KB

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  1. /*
  2. * Copyright (C) 2006, 2007, 2009 Rusty Russell, IBM Corporation
  3. * Copyright (C) 2009, 2010, 2011 Red Hat, Inc.
  4. * Copyright (C) 2009, 2010, 2011 Amit Shah <amit.shah@redhat.com>
  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. */
  20. #include <linux/cdev.h>
  21. #include <linux/debugfs.h>
  22. #include <linux/completion.h>
  23. #include <linux/device.h>
  24. #include <linux/err.h>
  25. #include <linux/freezer.h>
  26. #include <linux/fs.h>
  27. #include <linux/splice.h>
  28. #include <linux/pagemap.h>
  29. #include <linux/init.h>
  30. #include <linux/list.h>
  31. #include <linux/poll.h>
  32. #include <linux/sched.h>
  33. #include <linux/slab.h>
  34. #include <linux/spinlock.h>
  35. #include <linux/virtio.h>
  36. #include <linux/virtio_console.h>
  37. #include <linux/wait.h>
  38. #include <linux/workqueue.h>
  39. #include <linux/module.h>
  40. #include <linux/dma-mapping.h>
  41. #include "../tty/hvc/hvc_console.h"
  42. #define is_rproc_enabled IS_ENABLED(CONFIG_REMOTEPROC)
  43. /*
  44. * This is a global struct for storing common data for all the devices
  45. * this driver handles.
  46. *
  47. * Mainly, it has a linked list for all the consoles in one place so
  48. * that callbacks from hvc for get_chars(), put_chars() work properly
  49. * across multiple devices and multiple ports per device.
  50. */
  51. struct ports_driver_data {
  52. /* Used for registering chardevs */
  53. struct class *class;
  54. /* Used for exporting per-port information to debugfs */
  55. struct dentry *debugfs_dir;
  56. /* List of all the devices we're handling */
  57. struct list_head portdevs;
  58. /*
  59. * This is used to keep track of the number of hvc consoles
  60. * spawned by this driver. This number is given as the first
  61. * argument to hvc_alloc(). To correctly map an initial
  62. * console spawned via hvc_instantiate to the console being
  63. * hooked up via hvc_alloc, we need to pass the same vtermno.
  64. *
  65. * We also just assume the first console being initialised was
  66. * the first one that got used as the initial console.
  67. */
  68. unsigned int next_vtermno;
  69. /* All the console devices handled by this driver */
  70. struct list_head consoles;
  71. };
  72. static struct ports_driver_data pdrvdata;
  73. static DEFINE_SPINLOCK(pdrvdata_lock);
  74. static DECLARE_COMPLETION(early_console_added);
  75. /* This struct holds information that's relevant only for console ports */
  76. struct console {
  77. /* We'll place all consoles in a list in the pdrvdata struct */
  78. struct list_head list;
  79. /* The hvc device associated with this console port */
  80. struct hvc_struct *hvc;
  81. /* The size of the console */
  82. struct winsize ws;
  83. /*
  84. * This number identifies the number that we used to register
  85. * with hvc in hvc_instantiate() and hvc_alloc(); this is the
  86. * number passed on by the hvc callbacks to us to
  87. * differentiate between the other console ports handled by
  88. * this driver
  89. */
  90. u32 vtermno;
  91. };
  92. struct port_buffer {
  93. char *buf;
  94. /* size of the buffer in *buf above */
  95. size_t size;
  96. /* used length of the buffer */
  97. size_t len;
  98. /* offset in the buf from which to consume data */
  99. size_t offset;
  100. /* DMA address of buffer */
  101. dma_addr_t dma;
  102. /* Device we got DMA memory from */
  103. struct device *dev;
  104. /* List of pending dma buffers to free */
  105. struct list_head list;
  106. /* If sgpages == 0 then buf is used */
  107. unsigned int sgpages;
  108. /* sg is used if spages > 0. sg must be the last in is struct */
  109. struct scatterlist sg[0];
  110. };
  111. /*
  112. * This is a per-device struct that stores data common to all the
  113. * ports for that device (vdev->priv).
  114. */
  115. struct ports_device {
  116. /* Next portdev in the list, head is in the pdrvdata struct */
  117. struct list_head list;
  118. /*
  119. * Workqueue handlers where we process deferred work after
  120. * notification
  121. */
  122. struct work_struct control_work;
  123. struct work_struct config_work;
  124. struct list_head ports;
  125. /* To protect the list of ports */
  126. spinlock_t ports_lock;
  127. /* To protect the vq operations for the control channel */
  128. spinlock_t c_ivq_lock;
  129. spinlock_t c_ovq_lock;
  130. /* max. number of ports this device can hold */
  131. u32 max_nr_ports;
  132. /* The virtio device we're associated with */
  133. struct virtio_device *vdev;
  134. /*
  135. * A couple of virtqueues for the control channel: one for
  136. * guest->host transfers, one for host->guest transfers
  137. */
  138. struct virtqueue *c_ivq, *c_ovq;
  139. /*
  140. * A control packet buffer for guest->host requests, protected
  141. * by c_ovq_lock.
  142. */
  143. struct virtio_console_control cpkt;
  144. /* Array of per-port IO virtqueues */
  145. struct virtqueue **in_vqs, **out_vqs;
  146. /* Major number for this device. Ports will be created as minors. */
  147. int chr_major;
  148. };
  149. struct port_stats {
  150. unsigned long bytes_sent, bytes_received, bytes_discarded;
  151. };
  152. /* This struct holds the per-port data */
  153. struct port {
  154. /* Next port in the list, head is in the ports_device */
  155. struct list_head list;
  156. /* Pointer to the parent virtio_console device */
  157. struct ports_device *portdev;
  158. /* The current buffer from which data has to be fed to readers */
  159. struct port_buffer *inbuf;
  160. /*
  161. * To protect the operations on the in_vq associated with this
  162. * port. Has to be a spinlock because it can be called from
  163. * interrupt context (get_char()).
  164. */
  165. spinlock_t inbuf_lock;
  166. /* Protect the operations on the out_vq. */
  167. spinlock_t outvq_lock;
  168. /* The IO vqs for this port */
  169. struct virtqueue *in_vq, *out_vq;
  170. /* File in the debugfs directory that exposes this port's information */
  171. struct dentry *debugfs_file;
  172. /*
  173. * Keep count of the bytes sent, received and discarded for
  174. * this port for accounting and debugging purposes. These
  175. * counts are not reset across port open / close events.
  176. */
  177. struct port_stats stats;
  178. /*
  179. * The entries in this struct will be valid if this port is
  180. * hooked up to an hvc console
  181. */
  182. struct console cons;
  183. /* Each port associates with a separate char device */
  184. struct cdev *cdev;
  185. struct device *dev;
  186. /* Reference-counting to handle port hot-unplugs and file operations */
  187. struct kref kref;
  188. /* A waitqueue for poll() or blocking read operations */
  189. wait_queue_head_t waitqueue;
  190. /* The 'name' of the port that we expose via sysfs properties */
  191. char *name;
  192. /* We can notify apps of host connect / disconnect events via SIGIO */
  193. struct fasync_struct *async_queue;
  194. /* The 'id' to identify the port with the Host */
  195. u32 id;
  196. bool outvq_full;
  197. /* Is the host device open */
  198. bool host_connected;
  199. /* We should allow only one process to open a port */
  200. bool guest_connected;
  201. };
  202. /* This is the very early arch-specified put chars function. */
  203. static int (*early_put_chars)(u32, const char *, int);
  204. static struct port *find_port_by_vtermno(u32 vtermno)
  205. {
  206. struct port *port;
  207. struct console *cons;
  208. unsigned long flags;
  209. spin_lock_irqsave(&pdrvdata_lock, flags);
  210. list_for_each_entry(cons, &pdrvdata.consoles, list) {
  211. if (cons->vtermno == vtermno) {
  212. port = container_of(cons, struct port, cons);
  213. goto out;
  214. }
  215. }
  216. port = NULL;
  217. out:
  218. spin_unlock_irqrestore(&pdrvdata_lock, flags);
  219. return port;
  220. }
  221. static struct port *find_port_by_devt_in_portdev(struct ports_device *portdev,
  222. dev_t dev)
  223. {
  224. struct port *port;
  225. unsigned long flags;
  226. spin_lock_irqsave(&portdev->ports_lock, flags);
  227. list_for_each_entry(port, &portdev->ports, list) {
  228. if (port->cdev->dev == dev) {
  229. kref_get(&port->kref);
  230. goto out;
  231. }
  232. }
  233. port = NULL;
  234. out:
  235. spin_unlock_irqrestore(&portdev->ports_lock, flags);
  236. return port;
  237. }
  238. static struct port *find_port_by_devt(dev_t dev)
  239. {
  240. struct ports_device *portdev;
  241. struct port *port;
  242. unsigned long flags;
  243. spin_lock_irqsave(&pdrvdata_lock, flags);
  244. list_for_each_entry(portdev, &pdrvdata.portdevs, list) {
  245. port = find_port_by_devt_in_portdev(portdev, dev);
  246. if (port)
  247. goto out;
  248. }
  249. port = NULL;
  250. out:
  251. spin_unlock_irqrestore(&pdrvdata_lock, flags);
  252. return port;
  253. }
  254. static struct port *find_port_by_id(struct ports_device *portdev, u32 id)
  255. {
  256. struct port *port;
  257. unsigned long flags;
  258. spin_lock_irqsave(&portdev->ports_lock, flags);
  259. list_for_each_entry(port, &portdev->ports, list)
  260. if (port->id == id)
  261. goto out;
  262. port = NULL;
  263. out:
  264. spin_unlock_irqrestore(&portdev->ports_lock, flags);
  265. return port;
  266. }
  267. static struct port *find_port_by_vq(struct ports_device *portdev,
  268. struct virtqueue *vq)
  269. {
  270. struct port *port;
  271. unsigned long flags;
  272. spin_lock_irqsave(&portdev->ports_lock, flags);
  273. list_for_each_entry(port, &portdev->ports, list)
  274. if (port->in_vq == vq || port->out_vq == vq)
  275. goto out;
  276. port = NULL;
  277. out:
  278. spin_unlock_irqrestore(&portdev->ports_lock, flags);
  279. return port;
  280. }
  281. static bool is_console_port(struct port *port)
  282. {
  283. if (port->cons.hvc)
  284. return true;
  285. return false;
  286. }
  287. static bool is_rproc_serial(const struct virtio_device *vdev)
  288. {
  289. return is_rproc_enabled && vdev->id.device == VIRTIO_ID_RPROC_SERIAL;
  290. }
  291. static inline bool use_multiport(struct ports_device *portdev)
  292. {
  293. /*
  294. * This condition can be true when put_chars is called from
  295. * early_init
  296. */
  297. if (!portdev->vdev)
  298. return false;
  299. return __virtio_test_bit(portdev->vdev, VIRTIO_CONSOLE_F_MULTIPORT);
  300. }
  301. static DEFINE_SPINLOCK(dma_bufs_lock);
  302. static LIST_HEAD(pending_free_dma_bufs);
  303. static void free_buf(struct port_buffer *buf, bool can_sleep)
  304. {
  305. unsigned int i;
  306. for (i = 0; i < buf->sgpages; i++) {
  307. struct page *page = sg_page(&buf->sg[i]);
  308. if (!page)
  309. break;
  310. put_page(page);
  311. }
  312. if (!buf->dev) {
  313. kfree(buf->buf);
  314. } else if (is_rproc_enabled) {
  315. unsigned long flags;
  316. /* dma_free_coherent requires interrupts to be enabled. */
  317. if (!can_sleep) {
  318. /* queue up dma-buffers to be freed later */
  319. spin_lock_irqsave(&dma_bufs_lock, flags);
  320. list_add_tail(&buf->list, &pending_free_dma_bufs);
  321. spin_unlock_irqrestore(&dma_bufs_lock, flags);
  322. return;
  323. }
  324. dma_free_coherent(buf->dev, buf->size, buf->buf, buf->dma);
  325. /* Release device refcnt and allow it to be freed */
  326. put_device(buf->dev);
  327. }
  328. kfree(buf);
  329. }
  330. static void reclaim_dma_bufs(void)
  331. {
  332. unsigned long flags;
  333. struct port_buffer *buf, *tmp;
  334. LIST_HEAD(tmp_list);
  335. if (list_empty(&pending_free_dma_bufs))
  336. return;
  337. /* Create a copy of the pending_free_dma_bufs while holding the lock */
  338. spin_lock_irqsave(&dma_bufs_lock, flags);
  339. list_cut_position(&tmp_list, &pending_free_dma_bufs,
  340. pending_free_dma_bufs.prev);
  341. spin_unlock_irqrestore(&dma_bufs_lock, flags);
  342. /* Release the dma buffers, without irqs enabled */
  343. list_for_each_entry_safe(buf, tmp, &tmp_list, list) {
  344. list_del(&buf->list);
  345. free_buf(buf, true);
  346. }
  347. }
  348. static struct port_buffer *alloc_buf(struct virtio_device *vdev, size_t buf_size,
  349. int pages)
  350. {
  351. struct port_buffer *buf;
  352. reclaim_dma_bufs();
  353. /*
  354. * Allocate buffer and the sg list. The sg list array is allocated
  355. * directly after the port_buffer struct.
  356. */
  357. buf = kmalloc(struct_size(buf, sg, pages), GFP_KERNEL);
  358. if (!buf)
  359. goto fail;
  360. buf->sgpages = pages;
  361. if (pages > 0) {
  362. buf->dev = NULL;
  363. buf->buf = NULL;
  364. return buf;
  365. }
  366. if (is_rproc_serial(vdev)) {
  367. /*
  368. * Allocate DMA memory from ancestor. When a virtio
  369. * device is created by remoteproc, the DMA memory is
  370. * associated with the grandparent device:
  371. * vdev => rproc => platform-dev.
  372. */
  373. if (!vdev->dev.parent || !vdev->dev.parent->parent)
  374. goto free_buf;
  375. buf->dev = vdev->dev.parent->parent;
  376. /* Increase device refcnt to avoid freeing it */
  377. get_device(buf->dev);
  378. buf->buf = dma_alloc_coherent(buf->dev, buf_size, &buf->dma,
  379. GFP_KERNEL);
  380. } else {
  381. buf->dev = NULL;
  382. buf->buf = kmalloc(buf_size, GFP_KERNEL);
  383. }
  384. if (!buf->buf)
  385. goto free_buf;
  386. buf->len = 0;
  387. buf->offset = 0;
  388. buf->size = buf_size;
  389. return buf;
  390. free_buf:
  391. kfree(buf);
  392. fail:
  393. return NULL;
  394. }
  395. /* Callers should take appropriate locks */
  396. static struct port_buffer *get_inbuf(struct port *port)
  397. {
  398. struct port_buffer *buf;
  399. unsigned int len;
  400. if (port->inbuf)
  401. return port->inbuf;
  402. buf = virtqueue_get_buf(port->in_vq, &len);
  403. if (buf) {
  404. buf->len = len;
  405. buf->offset = 0;
  406. port->stats.bytes_received += len;
  407. }
  408. return buf;
  409. }
  410. /*
  411. * Create a scatter-gather list representing our input buffer and put
  412. * it in the queue.
  413. *
  414. * Callers should take appropriate locks.
  415. */
  416. static int add_inbuf(struct virtqueue *vq, struct port_buffer *buf)
  417. {
  418. struct scatterlist sg[1];
  419. int ret;
  420. sg_init_one(sg, buf->buf, buf->size);
  421. ret = virtqueue_add_inbuf(vq, sg, 1, buf, GFP_ATOMIC);
  422. virtqueue_kick(vq);
  423. if (!ret)
  424. ret = vq->num_free;
  425. return ret;
  426. }
  427. /* Discard any unread data this port has. Callers lockers. */
  428. static void discard_port_data(struct port *port)
  429. {
  430. struct port_buffer *buf;
  431. unsigned int err;
  432. if (!port->portdev) {
  433. /* Device has been unplugged. vqs are already gone. */
  434. return;
  435. }
  436. buf = get_inbuf(port);
  437. err = 0;
  438. while (buf) {
  439. port->stats.bytes_discarded += buf->len - buf->offset;
  440. if (add_inbuf(port->in_vq, buf) < 0) {
  441. err++;
  442. free_buf(buf, false);
  443. }
  444. port->inbuf = NULL;
  445. buf = get_inbuf(port);
  446. }
  447. if (err)
  448. dev_warn(port->dev, "Errors adding %d buffers back to vq\n",
  449. err);
  450. }
  451. static bool port_has_data(struct port *port)
  452. {
  453. unsigned long flags;
  454. bool ret;
  455. ret = false;
  456. spin_lock_irqsave(&port->inbuf_lock, flags);
  457. port->inbuf = get_inbuf(port);
  458. if (port->inbuf)
  459. ret = true;
  460. spin_unlock_irqrestore(&port->inbuf_lock, flags);
  461. return ret;
  462. }
  463. static ssize_t __send_control_msg(struct ports_device *portdev, u32 port_id,
  464. unsigned int event, unsigned int value)
  465. {
  466. struct scatterlist sg[1];
  467. struct virtqueue *vq;
  468. unsigned int len;
  469. if (!use_multiport(portdev))
  470. return 0;
  471. vq = portdev->c_ovq;
  472. spin_lock(&portdev->c_ovq_lock);
  473. portdev->cpkt.id = cpu_to_virtio32(portdev->vdev, port_id);
  474. portdev->cpkt.event = cpu_to_virtio16(portdev->vdev, event);
  475. portdev->cpkt.value = cpu_to_virtio16(portdev->vdev, value);
  476. sg_init_one(sg, &portdev->cpkt, sizeof(struct virtio_console_control));
  477. if (virtqueue_add_outbuf(vq, sg, 1, &portdev->cpkt, GFP_ATOMIC) == 0) {
  478. virtqueue_kick(vq);
  479. while (!virtqueue_get_buf(vq, &len)
  480. && !virtqueue_is_broken(vq))
  481. cpu_relax();
  482. }
  483. spin_unlock(&portdev->c_ovq_lock);
  484. return 0;
  485. }
  486. static ssize_t send_control_msg(struct port *port, unsigned int event,
  487. unsigned int value)
  488. {
  489. /* Did the port get unplugged before userspace closed it? */
  490. if (port->portdev)
  491. return __send_control_msg(port->portdev, port->id, event, value);
  492. return 0;
  493. }
  494. /* Callers must take the port->outvq_lock */
  495. static void reclaim_consumed_buffers(struct port *port)
  496. {
  497. struct port_buffer *buf;
  498. unsigned int len;
  499. if (!port->portdev) {
  500. /* Device has been unplugged. vqs are already gone. */
  501. return;
  502. }
  503. while ((buf = virtqueue_get_buf(port->out_vq, &len))) {
  504. free_buf(buf, false);
  505. port->outvq_full = false;
  506. }
  507. }
  508. static ssize_t __send_to_port(struct port *port, struct scatterlist *sg,
  509. int nents, size_t in_count,
  510. void *data, bool nonblock)
  511. {
  512. struct virtqueue *out_vq;
  513. int err;
  514. unsigned long flags;
  515. unsigned int len;
  516. out_vq = port->out_vq;
  517. spin_lock_irqsave(&port->outvq_lock, flags);
  518. reclaim_consumed_buffers(port);
  519. err = virtqueue_add_outbuf(out_vq, sg, nents, data, GFP_ATOMIC);
  520. /* Tell Host to go! */
  521. virtqueue_kick(out_vq);
  522. if (err) {
  523. in_count = 0;
  524. goto done;
  525. }
  526. if (out_vq->num_free == 0)
  527. port->outvq_full = true;
  528. if (nonblock)
  529. goto done;
  530. /*
  531. * Wait till the host acknowledges it pushed out the data we
  532. * sent. This is done for data from the hvc_console; the tty
  533. * operations are performed with spinlocks held so we can't
  534. * sleep here. An alternative would be to copy the data to a
  535. * buffer and relax the spinning requirement. The downside is
  536. * we need to kmalloc a GFP_ATOMIC buffer each time the
  537. * console driver writes something out.
  538. */
  539. while (!virtqueue_get_buf(out_vq, &len)
  540. && !virtqueue_is_broken(out_vq))
  541. cpu_relax();
  542. done:
  543. spin_unlock_irqrestore(&port->outvq_lock, flags);
  544. port->stats.bytes_sent += in_count;
  545. /*
  546. * We're expected to return the amount of data we wrote -- all
  547. * of it
  548. */
  549. return in_count;
  550. }
  551. /*
  552. * Give out the data that's requested from the buffer that we have
  553. * queued up.
  554. */
  555. static ssize_t fill_readbuf(struct port *port, char __user *out_buf,
  556. size_t out_count, bool to_user)
  557. {
  558. struct port_buffer *buf;
  559. unsigned long flags;
  560. if (!out_count || !port_has_data(port))
  561. return 0;
  562. buf = port->inbuf;
  563. out_count = min(out_count, buf->len - buf->offset);
  564. if (to_user) {
  565. ssize_t ret;
  566. ret = copy_to_user(out_buf, buf->buf + buf->offset, out_count);
  567. if (ret)
  568. return -EFAULT;
  569. } else {
  570. memcpy((__force char *)out_buf, buf->buf + buf->offset,
  571. out_count);
  572. }
  573. buf->offset += out_count;
  574. if (buf->offset == buf->len) {
  575. /*
  576. * We're done using all the data in this buffer.
  577. * Re-queue so that the Host can send us more data.
  578. */
  579. spin_lock_irqsave(&port->inbuf_lock, flags);
  580. port->inbuf = NULL;
  581. if (add_inbuf(port->in_vq, buf) < 0)
  582. dev_warn(port->dev, "failed add_buf\n");
  583. spin_unlock_irqrestore(&port->inbuf_lock, flags);
  584. }
  585. /* Return the number of bytes actually copied */
  586. return out_count;
  587. }
  588. /* The condition that must be true for polling to end */
  589. static bool will_read_block(struct port *port)
  590. {
  591. if (!port->guest_connected) {
  592. /* Port got hot-unplugged. Let's exit. */
  593. return false;
  594. }
  595. return !port_has_data(port) && port->host_connected;
  596. }
  597. static bool will_write_block(struct port *port)
  598. {
  599. bool ret;
  600. if (!port->guest_connected) {
  601. /* Port got hot-unplugged. Let's exit. */
  602. return false;
  603. }
  604. if (!port->host_connected)
  605. return true;
  606. spin_lock_irq(&port->outvq_lock);
  607. /*
  608. * Check if the Host has consumed any buffers since we last
  609. * sent data (this is only applicable for nonblocking ports).
  610. */
  611. reclaim_consumed_buffers(port);
  612. ret = port->outvq_full;
  613. spin_unlock_irq(&port->outvq_lock);
  614. return ret;
  615. }
  616. static ssize_t port_fops_read(struct file *filp, char __user *ubuf,
  617. size_t count, loff_t *offp)
  618. {
  619. struct port *port;
  620. ssize_t ret;
  621. port = filp->private_data;
  622. /* Port is hot-unplugged. */
  623. if (!port->guest_connected)
  624. return -ENODEV;
  625. if (!port_has_data(port)) {
  626. /*
  627. * If nothing's connected on the host just return 0 in
  628. * case of list_empty; this tells the userspace app
  629. * that there's no connection
  630. */
  631. if (!port->host_connected)
  632. return 0;
  633. if (filp->f_flags & O_NONBLOCK)
  634. return -EAGAIN;
  635. ret = wait_event_freezable(port->waitqueue,
  636. !will_read_block(port));
  637. if (ret < 0)
  638. return ret;
  639. }
  640. /* Port got hot-unplugged while we were waiting above. */
  641. if (!port->guest_connected)
  642. return -ENODEV;
  643. /*
  644. * We could've received a disconnection message while we were
  645. * waiting for more data.
  646. *
  647. * This check is not clubbed in the if() statement above as we
  648. * might receive some data as well as the host could get
  649. * disconnected after we got woken up from our wait. So we
  650. * really want to give off whatever data we have and only then
  651. * check for host_connected.
  652. */
  653. if (!port_has_data(port) && !port->host_connected)
  654. return 0;
  655. return fill_readbuf(port, ubuf, count, true);
  656. }
  657. static int wait_port_writable(struct port *port, bool nonblock)
  658. {
  659. int ret;
  660. if (will_write_block(port)) {
  661. if (nonblock)
  662. return -EAGAIN;
  663. ret = wait_event_freezable(port->waitqueue,
  664. !will_write_block(port));
  665. if (ret < 0)
  666. return ret;
  667. }
  668. /* Port got hot-unplugged. */
  669. if (!port->guest_connected)
  670. return -ENODEV;
  671. return 0;
  672. }
  673. static ssize_t port_fops_write(struct file *filp, const char __user *ubuf,
  674. size_t count, loff_t *offp)
  675. {
  676. struct port *port;
  677. struct port_buffer *buf;
  678. ssize_t ret;
  679. bool nonblock;
  680. struct scatterlist sg[1];
  681. /* Userspace could be out to fool us */
  682. if (!count)
  683. return 0;
  684. port = filp->private_data;
  685. nonblock = filp->f_flags & O_NONBLOCK;
  686. ret = wait_port_writable(port, nonblock);
  687. if (ret < 0)
  688. return ret;
  689. count = min((size_t)(32 * 1024), count);
  690. buf = alloc_buf(port->portdev->vdev, count, 0);
  691. if (!buf)
  692. return -ENOMEM;
  693. ret = copy_from_user(buf->buf, ubuf, count);
  694. if (ret) {
  695. ret = -EFAULT;
  696. goto free_buf;
  697. }
  698. /*
  699. * We now ask send_buf() to not spin for generic ports -- we
  700. * can re-use the same code path that non-blocking file
  701. * descriptors take for blocking file descriptors since the
  702. * wait is already done and we're certain the write will go
  703. * through to the host.
  704. */
  705. nonblock = true;
  706. sg_init_one(sg, buf->buf, count);
  707. ret = __send_to_port(port, sg, 1, count, buf, nonblock);
  708. if (nonblock && ret > 0)
  709. goto out;
  710. free_buf:
  711. free_buf(buf, true);
  712. out:
  713. return ret;
  714. }
  715. struct sg_list {
  716. unsigned int n;
  717. unsigned int size;
  718. size_t len;
  719. struct scatterlist *sg;
  720. };
  721. static int pipe_to_sg(struct pipe_inode_info *pipe, struct pipe_buffer *buf,
  722. struct splice_desc *sd)
  723. {
  724. struct sg_list *sgl = sd->u.data;
  725. unsigned int offset, len;
  726. if (sgl->n == sgl->size)
  727. return 0;
  728. /* Try lock this page */
  729. if (pipe_buf_steal(pipe, buf) == 0) {
  730. /* Get reference and unlock page for moving */
  731. get_page(buf->page);
  732. unlock_page(buf->page);
  733. len = min(buf->len, sd->len);
  734. sg_set_page(&(sgl->sg[sgl->n]), buf->page, len, buf->offset);
  735. } else {
  736. /* Failback to copying a page */
  737. struct page *page = alloc_page(GFP_KERNEL);
  738. char *src;
  739. if (!page)
  740. return -ENOMEM;
  741. offset = sd->pos & ~PAGE_MASK;
  742. len = sd->len;
  743. if (len + offset > PAGE_SIZE)
  744. len = PAGE_SIZE - offset;
  745. src = kmap_atomic(buf->page);
  746. memcpy(page_address(page) + offset, src + buf->offset, len);
  747. kunmap_atomic(src);
  748. sg_set_page(&(sgl->sg[sgl->n]), page, len, offset);
  749. }
  750. sgl->n++;
  751. sgl->len += len;
  752. return len;
  753. }
  754. /* Faster zero-copy write by splicing */
  755. static ssize_t port_fops_splice_write(struct pipe_inode_info *pipe,
  756. struct file *filp, loff_t *ppos,
  757. size_t len, unsigned int flags)
  758. {
  759. struct port *port = filp->private_data;
  760. struct sg_list sgl;
  761. ssize_t ret;
  762. struct port_buffer *buf;
  763. struct splice_desc sd = {
  764. .total_len = len,
  765. .flags = flags,
  766. .pos = *ppos,
  767. .u.data = &sgl,
  768. };
  769. /*
  770. * Rproc_serial does not yet support splice. To support splice
  771. * pipe_to_sg() must allocate dma-buffers and copy content from
  772. * regular pages to dma pages. And alloc_buf and free_buf must
  773. * support allocating and freeing such a list of dma-buffers.
  774. */
  775. if (is_rproc_serial(port->out_vq->vdev))
  776. return -EINVAL;
  777. /*
  778. * pipe->nrbufs == 0 means there are no data to transfer,
  779. * so this returns just 0 for no data.
  780. */
  781. pipe_lock(pipe);
  782. if (!pipe->nrbufs) {
  783. ret = 0;
  784. goto error_out;
  785. }
  786. ret = wait_port_writable(port, filp->f_flags & O_NONBLOCK);
  787. if (ret < 0)
  788. goto error_out;
  789. buf = alloc_buf(port->portdev->vdev, 0, pipe->nrbufs);
  790. if (!buf) {
  791. ret = -ENOMEM;
  792. goto error_out;
  793. }
  794. sgl.n = 0;
  795. sgl.len = 0;
  796. sgl.size = pipe->nrbufs;
  797. sgl.sg = buf->sg;
  798. sg_init_table(sgl.sg, sgl.size);
  799. ret = __splice_from_pipe(pipe, &sd, pipe_to_sg);
  800. pipe_unlock(pipe);
  801. if (likely(ret > 0))
  802. ret = __send_to_port(port, buf->sg, sgl.n, sgl.len, buf, true);
  803. if (unlikely(ret <= 0))
  804. free_buf(buf, true);
  805. return ret;
  806. error_out:
  807. pipe_unlock(pipe);
  808. return ret;
  809. }
  810. static __poll_t port_fops_poll(struct file *filp, poll_table *wait)
  811. {
  812. struct port *port;
  813. __poll_t ret;
  814. port = filp->private_data;
  815. poll_wait(filp, &port->waitqueue, wait);
  816. if (!port->guest_connected) {
  817. /* Port got unplugged */
  818. return EPOLLHUP;
  819. }
  820. ret = 0;
  821. if (!will_read_block(port))
  822. ret |= EPOLLIN | EPOLLRDNORM;
  823. if (!will_write_block(port))
  824. ret |= EPOLLOUT;
  825. if (!port->host_connected)
  826. ret |= EPOLLHUP;
  827. return ret;
  828. }
  829. static void remove_port(struct kref *kref);
  830. static int port_fops_release(struct inode *inode, struct file *filp)
  831. {
  832. struct port *port;
  833. port = filp->private_data;
  834. /* Notify host of port being closed */
  835. send_control_msg(port, VIRTIO_CONSOLE_PORT_OPEN, 0);
  836. spin_lock_irq(&port->inbuf_lock);
  837. port->guest_connected = false;
  838. discard_port_data(port);
  839. spin_unlock_irq(&port->inbuf_lock);
  840. spin_lock_irq(&port->outvq_lock);
  841. reclaim_consumed_buffers(port);
  842. spin_unlock_irq(&port->outvq_lock);
  843. reclaim_dma_bufs();
  844. /*
  845. * Locks aren't necessary here as a port can't be opened after
  846. * unplug, and if a port isn't unplugged, a kref would already
  847. * exist for the port. Plus, taking ports_lock here would
  848. * create a dependency on other locks taken by functions
  849. * inside remove_port if we're the last holder of the port,
  850. * creating many problems.
  851. */
  852. kref_put(&port->kref, remove_port);
  853. return 0;
  854. }
  855. static int port_fops_open(struct inode *inode, struct file *filp)
  856. {
  857. struct cdev *cdev = inode->i_cdev;
  858. struct port *port;
  859. int ret;
  860. /* We get the port with a kref here */
  861. port = find_port_by_devt(cdev->dev);
  862. if (!port) {
  863. /* Port was unplugged before we could proceed */
  864. return -ENXIO;
  865. }
  866. filp->private_data = port;
  867. /*
  868. * Don't allow opening of console port devices -- that's done
  869. * via /dev/hvc
  870. */
  871. if (is_console_port(port)) {
  872. ret = -ENXIO;
  873. goto out;
  874. }
  875. /* Allow only one process to open a particular port at a time */
  876. spin_lock_irq(&port->inbuf_lock);
  877. if (port->guest_connected) {
  878. spin_unlock_irq(&port->inbuf_lock);
  879. ret = -EBUSY;
  880. goto out;
  881. }
  882. port->guest_connected = true;
  883. spin_unlock_irq(&port->inbuf_lock);
  884. spin_lock_irq(&port->outvq_lock);
  885. /*
  886. * There might be a chance that we missed reclaiming a few
  887. * buffers in the window of the port getting previously closed
  888. * and opening now.
  889. */
  890. reclaim_consumed_buffers(port);
  891. spin_unlock_irq(&port->outvq_lock);
  892. nonseekable_open(inode, filp);
  893. /* Notify host of port being opened */
  894. send_control_msg(filp->private_data, VIRTIO_CONSOLE_PORT_OPEN, 1);
  895. return 0;
  896. out:
  897. kref_put(&port->kref, remove_port);
  898. return ret;
  899. }
  900. static int port_fops_fasync(int fd, struct file *filp, int mode)
  901. {
  902. struct port *port;
  903. port = filp->private_data;
  904. return fasync_helper(fd, filp, mode, &port->async_queue);
  905. }
  906. /*
  907. * The file operations that we support: programs in the guest can open
  908. * a console device, read from it, write to it, poll for data and
  909. * close it. The devices are at
  910. * /dev/vport<device number>p<port number>
  911. */
  912. static const struct file_operations port_fops = {
  913. .owner = THIS_MODULE,
  914. .open = port_fops_open,
  915. .read = port_fops_read,
  916. .write = port_fops_write,
  917. .splice_write = port_fops_splice_write,
  918. .poll = port_fops_poll,
  919. .release = port_fops_release,
  920. .fasync = port_fops_fasync,
  921. .llseek = no_llseek,
  922. };
  923. /*
  924. * The put_chars() callback is pretty straightforward.
  925. *
  926. * We turn the characters into a scatter-gather list, add it to the
  927. * output queue and then kick the Host. Then we sit here waiting for
  928. * it to finish: inefficient in theory, but in practice
  929. * implementations will do it immediately.
  930. */
  931. static int put_chars(u32 vtermno, const char *buf, int count)
  932. {
  933. struct port *port;
  934. struct scatterlist sg[1];
  935. void *data;
  936. int ret;
  937. if (unlikely(early_put_chars))
  938. return early_put_chars(vtermno, buf, count);
  939. port = find_port_by_vtermno(vtermno);
  940. if (!port)
  941. return -EPIPE;
  942. data = kmemdup(buf, count, GFP_ATOMIC);
  943. if (!data)
  944. return -ENOMEM;
  945. sg_init_one(sg, data, count);
  946. ret = __send_to_port(port, sg, 1, count, data, false);
  947. kfree(data);
  948. return ret;
  949. }
  950. /*
  951. * get_chars() is the callback from the hvc_console infrastructure
  952. * when an interrupt is received.
  953. *
  954. * We call out to fill_readbuf that gets us the required data from the
  955. * buffers that are queued up.
  956. */
  957. static int get_chars(u32 vtermno, char *buf, int count)
  958. {
  959. struct port *port;
  960. /* If we've not set up the port yet, we have no input to give. */
  961. if (unlikely(early_put_chars))
  962. return 0;
  963. port = find_port_by_vtermno(vtermno);
  964. if (!port)
  965. return -EPIPE;
  966. /* If we don't have an input queue yet, we can't get input. */
  967. BUG_ON(!port->in_vq);
  968. return fill_readbuf(port, (__force char __user *)buf, count, false);
  969. }
  970. static void resize_console(struct port *port)
  971. {
  972. struct virtio_device *vdev;
  973. /* The port could have been hot-unplugged */
  974. if (!port || !is_console_port(port))
  975. return;
  976. vdev = port->portdev->vdev;
  977. /* Don't test F_SIZE at all if we're rproc: not a valid feature! */
  978. if (!is_rproc_serial(vdev) &&
  979. virtio_has_feature(vdev, VIRTIO_CONSOLE_F_SIZE))
  980. hvc_resize(port->cons.hvc, port->cons.ws);
  981. }
  982. /* We set the configuration at this point, since we now have a tty */
  983. static int notifier_add_vio(struct hvc_struct *hp, int data)
  984. {
  985. struct port *port;
  986. port = find_port_by_vtermno(hp->vtermno);
  987. if (!port)
  988. return -EINVAL;
  989. hp->irq_requested = 1;
  990. resize_console(port);
  991. return 0;
  992. }
  993. static void notifier_del_vio(struct hvc_struct *hp, int data)
  994. {
  995. hp->irq_requested = 0;
  996. }
  997. /* The operations for console ports. */
  998. static const struct hv_ops hv_ops = {
  999. .get_chars = get_chars,
  1000. .put_chars = put_chars,
  1001. .notifier_add = notifier_add_vio,
  1002. .notifier_del = notifier_del_vio,
  1003. .notifier_hangup = notifier_del_vio,
  1004. };
  1005. /*
  1006. * Console drivers are initialized very early so boot messages can go
  1007. * out, so we do things slightly differently from the generic virtio
  1008. * initialization of the net and block drivers.
  1009. *
  1010. * At this stage, the console is output-only. It's too early to set
  1011. * up a virtqueue, so we let the drivers do some boutique early-output
  1012. * thing.
  1013. */
  1014. int __init virtio_cons_early_init(int (*put_chars)(u32, const char *, int))
  1015. {
  1016. early_put_chars = put_chars;
  1017. return hvc_instantiate(0, 0, &hv_ops);
  1018. }
  1019. static int init_port_console(struct port *port)
  1020. {
  1021. int ret;
  1022. /*
  1023. * The Host's telling us this port is a console port. Hook it
  1024. * up with an hvc console.
  1025. *
  1026. * To set up and manage our virtual console, we call
  1027. * hvc_alloc().
  1028. *
  1029. * The first argument of hvc_alloc() is the virtual console
  1030. * number. The second argument is the parameter for the
  1031. * notification mechanism (like irq number). We currently
  1032. * leave this as zero, virtqueues have implicit notifications.
  1033. *
  1034. * The third argument is a "struct hv_ops" containing the
  1035. * put_chars() get_chars(), notifier_add() and notifier_del()
  1036. * pointers. The final argument is the output buffer size: we
  1037. * can do any size, so we put PAGE_SIZE here.
  1038. */
  1039. port->cons.vtermno = pdrvdata.next_vtermno;
  1040. port->cons.hvc = hvc_alloc(port->cons.vtermno, 0, &hv_ops, PAGE_SIZE);
  1041. if (IS_ERR(port->cons.hvc)) {
  1042. ret = PTR_ERR(port->cons.hvc);
  1043. dev_err(port->dev,
  1044. "error %d allocating hvc for port\n", ret);
  1045. port->cons.hvc = NULL;
  1046. return ret;
  1047. }
  1048. spin_lock_irq(&pdrvdata_lock);
  1049. pdrvdata.next_vtermno++;
  1050. list_add_tail(&port->cons.list, &pdrvdata.consoles);
  1051. spin_unlock_irq(&pdrvdata_lock);
  1052. port->guest_connected = true;
  1053. /*
  1054. * Start using the new console output if this is the first
  1055. * console to come up.
  1056. */
  1057. if (early_put_chars)
  1058. early_put_chars = NULL;
  1059. /* Notify host of port being opened */
  1060. send_control_msg(port, VIRTIO_CONSOLE_PORT_OPEN, 1);
  1061. return 0;
  1062. }
  1063. static ssize_t show_port_name(struct device *dev,
  1064. struct device_attribute *attr, char *buffer)
  1065. {
  1066. struct port *port;
  1067. port = dev_get_drvdata(dev);
  1068. return sprintf(buffer, "%s\n", port->name);
  1069. }
  1070. static DEVICE_ATTR(name, S_IRUGO, show_port_name, NULL);
  1071. static struct attribute *port_sysfs_entries[] = {
  1072. &dev_attr_name.attr,
  1073. NULL
  1074. };
  1075. static const struct attribute_group port_attribute_group = {
  1076. .name = NULL, /* put in device directory */
  1077. .attrs = port_sysfs_entries,
  1078. };
  1079. static ssize_t debugfs_read(struct file *filp, char __user *ubuf,
  1080. size_t count, loff_t *offp)
  1081. {
  1082. struct port *port;
  1083. char *buf;
  1084. ssize_t ret, out_offset, out_count;
  1085. out_count = 1024;
  1086. buf = kmalloc(out_count, GFP_KERNEL);
  1087. if (!buf)
  1088. return -ENOMEM;
  1089. port = filp->private_data;
  1090. out_offset = 0;
  1091. out_offset += snprintf(buf + out_offset, out_count,
  1092. "name: %s\n", port->name ? port->name : "");
  1093. out_offset += snprintf(buf + out_offset, out_count - out_offset,
  1094. "guest_connected: %d\n", port->guest_connected);
  1095. out_offset += snprintf(buf + out_offset, out_count - out_offset,
  1096. "host_connected: %d\n", port->host_connected);
  1097. out_offset += snprintf(buf + out_offset, out_count - out_offset,
  1098. "outvq_full: %d\n", port->outvq_full);
  1099. out_offset += snprintf(buf + out_offset, out_count - out_offset,
  1100. "bytes_sent: %lu\n", port->stats.bytes_sent);
  1101. out_offset += snprintf(buf + out_offset, out_count - out_offset,
  1102. "bytes_received: %lu\n",
  1103. port->stats.bytes_received);
  1104. out_offset += snprintf(buf + out_offset, out_count - out_offset,
  1105. "bytes_discarded: %lu\n",
  1106. port->stats.bytes_discarded);
  1107. out_offset += snprintf(buf + out_offset, out_count - out_offset,
  1108. "is_console: %s\n",
  1109. is_console_port(port) ? "yes" : "no");
  1110. out_offset += snprintf(buf + out_offset, out_count - out_offset,
  1111. "console_vtermno: %u\n", port->cons.vtermno);
  1112. ret = simple_read_from_buffer(ubuf, count, offp, buf, out_offset);
  1113. kfree(buf);
  1114. return ret;
  1115. }
  1116. static const struct file_operations port_debugfs_ops = {
  1117. .owner = THIS_MODULE,
  1118. .open = simple_open,
  1119. .read = debugfs_read,
  1120. };
  1121. static void set_console_size(struct port *port, u16 rows, u16 cols)
  1122. {
  1123. if (!port || !is_console_port(port))
  1124. return;
  1125. port->cons.ws.ws_row = rows;
  1126. port->cons.ws.ws_col = cols;
  1127. }
  1128. static unsigned int fill_queue(struct virtqueue *vq, spinlock_t *lock)
  1129. {
  1130. struct port_buffer *buf;
  1131. unsigned int nr_added_bufs;
  1132. int ret;
  1133. nr_added_bufs = 0;
  1134. do {
  1135. buf = alloc_buf(vq->vdev, PAGE_SIZE, 0);
  1136. if (!buf)
  1137. break;
  1138. spin_lock_irq(lock);
  1139. ret = add_inbuf(vq, buf);
  1140. if (ret < 0) {
  1141. spin_unlock_irq(lock);
  1142. free_buf(buf, true);
  1143. break;
  1144. }
  1145. nr_added_bufs++;
  1146. spin_unlock_irq(lock);
  1147. } while (ret > 0);
  1148. return nr_added_bufs;
  1149. }
  1150. static void send_sigio_to_port(struct port *port)
  1151. {
  1152. if (port->async_queue && port->guest_connected)
  1153. kill_fasync(&port->async_queue, SIGIO, POLL_OUT);
  1154. }
  1155. static int add_port(struct ports_device *portdev, u32 id)
  1156. {
  1157. char debugfs_name[16];
  1158. struct port *port;
  1159. dev_t devt;
  1160. unsigned int nr_added_bufs;
  1161. int err;
  1162. port = kmalloc(sizeof(*port), GFP_KERNEL);
  1163. if (!port) {
  1164. err = -ENOMEM;
  1165. goto fail;
  1166. }
  1167. kref_init(&port->kref);
  1168. port->portdev = portdev;
  1169. port->id = id;
  1170. port->name = NULL;
  1171. port->inbuf = NULL;
  1172. port->cons.hvc = NULL;
  1173. port->async_queue = NULL;
  1174. port->cons.ws.ws_row = port->cons.ws.ws_col = 0;
  1175. port->host_connected = port->guest_connected = false;
  1176. port->stats = (struct port_stats) { 0 };
  1177. port->outvq_full = false;
  1178. port->in_vq = portdev->in_vqs[port->id];
  1179. port->out_vq = portdev->out_vqs[port->id];
  1180. port->cdev = cdev_alloc();
  1181. if (!port->cdev) {
  1182. dev_err(&port->portdev->vdev->dev, "Error allocating cdev\n");
  1183. err = -ENOMEM;
  1184. goto free_port;
  1185. }
  1186. port->cdev->ops = &port_fops;
  1187. devt = MKDEV(portdev->chr_major, id);
  1188. err = cdev_add(port->cdev, devt, 1);
  1189. if (err < 0) {
  1190. dev_err(&port->portdev->vdev->dev,
  1191. "Error %d adding cdev for port %u\n", err, id);
  1192. goto free_cdev;
  1193. }
  1194. port->dev = device_create(pdrvdata.class, &port->portdev->vdev->dev,
  1195. devt, port, "vport%up%u",
  1196. port->portdev->vdev->index, id);
  1197. if (IS_ERR(port->dev)) {
  1198. err = PTR_ERR(port->dev);
  1199. dev_err(&port->portdev->vdev->dev,
  1200. "Error %d creating device for port %u\n",
  1201. err, id);
  1202. goto free_cdev;
  1203. }
  1204. spin_lock_init(&port->inbuf_lock);
  1205. spin_lock_init(&port->outvq_lock);
  1206. init_waitqueue_head(&port->waitqueue);
  1207. /* Fill the in_vq with buffers so the host can send us data. */
  1208. nr_added_bufs = fill_queue(port->in_vq, &port->inbuf_lock);
  1209. if (!nr_added_bufs) {
  1210. dev_err(port->dev, "Error allocating inbufs\n");
  1211. err = -ENOMEM;
  1212. goto free_device;
  1213. }
  1214. if (is_rproc_serial(port->portdev->vdev))
  1215. /*
  1216. * For rproc_serial assume remote processor is connected.
  1217. * rproc_serial does not want the console port, only
  1218. * the generic port implementation.
  1219. */
  1220. port->host_connected = true;
  1221. else if (!use_multiport(port->portdev)) {
  1222. /*
  1223. * If we're not using multiport support,
  1224. * this has to be a console port.
  1225. */
  1226. err = init_port_console(port);
  1227. if (err)
  1228. goto free_inbufs;
  1229. }
  1230. spin_lock_irq(&portdev->ports_lock);
  1231. list_add_tail(&port->list, &port->portdev->ports);
  1232. spin_unlock_irq(&portdev->ports_lock);
  1233. /*
  1234. * Tell the Host we're set so that it can send us various
  1235. * configuration parameters for this port (eg, port name,
  1236. * caching, whether this is a console port, etc.)
  1237. */
  1238. send_control_msg(port, VIRTIO_CONSOLE_PORT_READY, 1);
  1239. if (pdrvdata.debugfs_dir) {
  1240. /*
  1241. * Finally, create the debugfs file that we can use to
  1242. * inspect a port's state at any time
  1243. */
  1244. snprintf(debugfs_name, sizeof(debugfs_name), "vport%up%u",
  1245. port->portdev->vdev->index, id);
  1246. port->debugfs_file = debugfs_create_file(debugfs_name, 0444,
  1247. pdrvdata.debugfs_dir,
  1248. port,
  1249. &port_debugfs_ops);
  1250. }
  1251. return 0;
  1252. free_inbufs:
  1253. free_device:
  1254. device_destroy(pdrvdata.class, port->dev->devt);
  1255. free_cdev:
  1256. cdev_del(port->cdev);
  1257. free_port:
  1258. kfree(port);
  1259. fail:
  1260. /* The host might want to notify management sw about port add failure */
  1261. __send_control_msg(portdev, id, VIRTIO_CONSOLE_PORT_READY, 0);
  1262. return err;
  1263. }
  1264. /* No users remain, remove all port-specific data. */
  1265. static void remove_port(struct kref *kref)
  1266. {
  1267. struct port *port;
  1268. port = container_of(kref, struct port, kref);
  1269. kfree(port);
  1270. }
  1271. static void remove_port_data(struct port *port)
  1272. {
  1273. spin_lock_irq(&port->inbuf_lock);
  1274. /* Remove unused data this port might have received. */
  1275. discard_port_data(port);
  1276. spin_unlock_irq(&port->inbuf_lock);
  1277. spin_lock_irq(&port->outvq_lock);
  1278. reclaim_consumed_buffers(port);
  1279. spin_unlock_irq(&port->outvq_lock);
  1280. }
  1281. /*
  1282. * Port got unplugged. Remove port from portdev's list and drop the
  1283. * kref reference. If no userspace has this port opened, it will
  1284. * result in immediate removal the port.
  1285. */
  1286. static void unplug_port(struct port *port)
  1287. {
  1288. spin_lock_irq(&port->portdev->ports_lock);
  1289. list_del(&port->list);
  1290. spin_unlock_irq(&port->portdev->ports_lock);
  1291. spin_lock_irq(&port->inbuf_lock);
  1292. if (port->guest_connected) {
  1293. /* Let the app know the port is going down. */
  1294. send_sigio_to_port(port);
  1295. /* Do this after sigio is actually sent */
  1296. port->guest_connected = false;
  1297. port->host_connected = false;
  1298. wake_up_interruptible(&port->waitqueue);
  1299. }
  1300. spin_unlock_irq(&port->inbuf_lock);
  1301. if (is_console_port(port)) {
  1302. spin_lock_irq(&pdrvdata_lock);
  1303. list_del(&port->cons.list);
  1304. spin_unlock_irq(&pdrvdata_lock);
  1305. hvc_remove(port->cons.hvc);
  1306. }
  1307. remove_port_data(port);
  1308. /*
  1309. * We should just assume the device itself has gone off --
  1310. * else a close on an open port later will try to send out a
  1311. * control message.
  1312. */
  1313. port->portdev = NULL;
  1314. sysfs_remove_group(&port->dev->kobj, &port_attribute_group);
  1315. device_destroy(pdrvdata.class, port->dev->devt);
  1316. cdev_del(port->cdev);
  1317. debugfs_remove(port->debugfs_file);
  1318. kfree(port->name);
  1319. /*
  1320. * Locks around here are not necessary - a port can't be
  1321. * opened after we removed the port struct from ports_list
  1322. * above.
  1323. */
  1324. kref_put(&port->kref, remove_port);
  1325. }
  1326. /* Any private messages that the Host and Guest want to share */
  1327. static void handle_control_message(struct virtio_device *vdev,
  1328. struct ports_device *portdev,
  1329. struct port_buffer *buf)
  1330. {
  1331. struct virtio_console_control *cpkt;
  1332. struct port *port;
  1333. size_t name_size;
  1334. int err;
  1335. cpkt = (struct virtio_console_control *)(buf->buf + buf->offset);
  1336. port = find_port_by_id(portdev, virtio32_to_cpu(vdev, cpkt->id));
  1337. if (!port &&
  1338. cpkt->event != cpu_to_virtio16(vdev, VIRTIO_CONSOLE_PORT_ADD)) {
  1339. /* No valid header at start of buffer. Drop it. */
  1340. dev_dbg(&portdev->vdev->dev,
  1341. "Invalid index %u in control packet\n", cpkt->id);
  1342. return;
  1343. }
  1344. switch (virtio16_to_cpu(vdev, cpkt->event)) {
  1345. case VIRTIO_CONSOLE_PORT_ADD:
  1346. if (port) {
  1347. dev_dbg(&portdev->vdev->dev,
  1348. "Port %u already added\n", port->id);
  1349. send_control_msg(port, VIRTIO_CONSOLE_PORT_READY, 1);
  1350. break;
  1351. }
  1352. if (virtio32_to_cpu(vdev, cpkt->id) >=
  1353. portdev->max_nr_ports) {
  1354. dev_warn(&portdev->vdev->dev,
  1355. "Request for adding port with "
  1356. "out-of-bound id %u, max. supported id: %u\n",
  1357. cpkt->id, portdev->max_nr_ports - 1);
  1358. break;
  1359. }
  1360. add_port(portdev, virtio32_to_cpu(vdev, cpkt->id));
  1361. break;
  1362. case VIRTIO_CONSOLE_PORT_REMOVE:
  1363. unplug_port(port);
  1364. break;
  1365. case VIRTIO_CONSOLE_CONSOLE_PORT:
  1366. if (!cpkt->value)
  1367. break;
  1368. if (is_console_port(port))
  1369. break;
  1370. init_port_console(port);
  1371. complete(&early_console_added);
  1372. /*
  1373. * Could remove the port here in case init fails - but
  1374. * have to notify the host first.
  1375. */
  1376. break;
  1377. case VIRTIO_CONSOLE_RESIZE: {
  1378. struct {
  1379. __u16 rows;
  1380. __u16 cols;
  1381. } size;
  1382. if (!is_console_port(port))
  1383. break;
  1384. memcpy(&size, buf->buf + buf->offset + sizeof(*cpkt),
  1385. sizeof(size));
  1386. set_console_size(port, size.rows, size.cols);
  1387. port->cons.hvc->irq_requested = 1;
  1388. resize_console(port);
  1389. break;
  1390. }
  1391. case VIRTIO_CONSOLE_PORT_OPEN:
  1392. port->host_connected = virtio16_to_cpu(vdev, cpkt->value);
  1393. wake_up_interruptible(&port->waitqueue);
  1394. /*
  1395. * If the host port got closed and the host had any
  1396. * unconsumed buffers, we'll be able to reclaim them
  1397. * now.
  1398. */
  1399. spin_lock_irq(&port->outvq_lock);
  1400. reclaim_consumed_buffers(port);
  1401. spin_unlock_irq(&port->outvq_lock);
  1402. /*
  1403. * If the guest is connected, it'll be interested in
  1404. * knowing the host connection state changed.
  1405. */
  1406. spin_lock_irq(&port->inbuf_lock);
  1407. send_sigio_to_port(port);
  1408. spin_unlock_irq(&port->inbuf_lock);
  1409. break;
  1410. case VIRTIO_CONSOLE_PORT_NAME:
  1411. /*
  1412. * If we woke up after hibernation, we can get this
  1413. * again. Skip it in that case.
  1414. */
  1415. if (port->name)
  1416. break;
  1417. /*
  1418. * Skip the size of the header and the cpkt to get the size
  1419. * of the name that was sent
  1420. */
  1421. name_size = buf->len - buf->offset - sizeof(*cpkt) + 1;
  1422. port->name = kmalloc(name_size, GFP_KERNEL);
  1423. if (!port->name) {
  1424. dev_err(port->dev,
  1425. "Not enough space to store port name\n");
  1426. break;
  1427. }
  1428. strncpy(port->name, buf->buf + buf->offset + sizeof(*cpkt),
  1429. name_size - 1);
  1430. port->name[name_size - 1] = 0;
  1431. /*
  1432. * Since we only have one sysfs attribute, 'name',
  1433. * create it only if we have a name for the port.
  1434. */
  1435. err = sysfs_create_group(&port->dev->kobj,
  1436. &port_attribute_group);
  1437. if (err) {
  1438. dev_err(port->dev,
  1439. "Error %d creating sysfs device attributes\n",
  1440. err);
  1441. } else {
  1442. /*
  1443. * Generate a udev event so that appropriate
  1444. * symlinks can be created based on udev
  1445. * rules.
  1446. */
  1447. kobject_uevent(&port->dev->kobj, KOBJ_CHANGE);
  1448. }
  1449. break;
  1450. }
  1451. }
  1452. static void control_work_handler(struct work_struct *work)
  1453. {
  1454. struct ports_device *portdev;
  1455. struct virtqueue *vq;
  1456. struct port_buffer *buf;
  1457. unsigned int len;
  1458. portdev = container_of(work, struct ports_device, control_work);
  1459. vq = portdev->c_ivq;
  1460. spin_lock(&portdev->c_ivq_lock);
  1461. while ((buf = virtqueue_get_buf(vq, &len))) {
  1462. spin_unlock(&portdev->c_ivq_lock);
  1463. buf->len = len;
  1464. buf->offset = 0;
  1465. handle_control_message(vq->vdev, portdev, buf);
  1466. spin_lock(&portdev->c_ivq_lock);
  1467. if (add_inbuf(portdev->c_ivq, buf) < 0) {
  1468. dev_warn(&portdev->vdev->dev,
  1469. "Error adding buffer to queue\n");
  1470. free_buf(buf, false);
  1471. }
  1472. }
  1473. spin_unlock(&portdev->c_ivq_lock);
  1474. }
  1475. static void flush_bufs(struct virtqueue *vq, bool can_sleep)
  1476. {
  1477. struct port_buffer *buf;
  1478. unsigned int len;
  1479. while ((buf = virtqueue_get_buf(vq, &len)))
  1480. free_buf(buf, can_sleep);
  1481. }
  1482. static void out_intr(struct virtqueue *vq)
  1483. {
  1484. struct port *port;
  1485. port = find_port_by_vq(vq->vdev->priv, vq);
  1486. if (!port) {
  1487. flush_bufs(vq, false);
  1488. return;
  1489. }
  1490. wake_up_interruptible(&port->waitqueue);
  1491. }
  1492. static void in_intr(struct virtqueue *vq)
  1493. {
  1494. struct port *port;
  1495. unsigned long flags;
  1496. port = find_port_by_vq(vq->vdev->priv, vq);
  1497. if (!port) {
  1498. flush_bufs(vq, false);
  1499. return;
  1500. }
  1501. spin_lock_irqsave(&port->inbuf_lock, flags);
  1502. port->inbuf = get_inbuf(port);
  1503. /*
  1504. * Normally the port should not accept data when the port is
  1505. * closed. For generic serial ports, the host won't (shouldn't)
  1506. * send data till the guest is connected. But this condition
  1507. * can be reached when a console port is not yet connected (no
  1508. * tty is spawned) and the other side sends out data over the
  1509. * vring, or when a remote devices start sending data before
  1510. * the ports are opened.
  1511. *
  1512. * A generic serial port will discard data if not connected,
  1513. * while console ports and rproc-serial ports accepts data at
  1514. * any time. rproc-serial is initiated with guest_connected to
  1515. * false because port_fops_open expects this. Console ports are
  1516. * hooked up with an HVC console and is initialized with
  1517. * guest_connected to true.
  1518. */
  1519. if (!port->guest_connected && !is_rproc_serial(port->portdev->vdev))
  1520. discard_port_data(port);
  1521. /* Send a SIGIO indicating new data in case the process asked for it */
  1522. send_sigio_to_port(port);
  1523. spin_unlock_irqrestore(&port->inbuf_lock, flags);
  1524. wake_up_interruptible(&port->waitqueue);
  1525. if (is_console_port(port) && hvc_poll(port->cons.hvc))
  1526. hvc_kick();
  1527. }
  1528. static void control_intr(struct virtqueue *vq)
  1529. {
  1530. struct ports_device *portdev;
  1531. portdev = vq->vdev->priv;
  1532. schedule_work(&portdev->control_work);
  1533. }
  1534. static void config_intr(struct virtio_device *vdev)
  1535. {
  1536. struct ports_device *portdev;
  1537. portdev = vdev->priv;
  1538. if (!use_multiport(portdev))
  1539. schedule_work(&portdev->config_work);
  1540. }
  1541. static void config_work_handler(struct work_struct *work)
  1542. {
  1543. struct ports_device *portdev;
  1544. portdev = container_of(work, struct ports_device, config_work);
  1545. if (!use_multiport(portdev)) {
  1546. struct virtio_device *vdev;
  1547. struct port *port;
  1548. u16 rows, cols;
  1549. vdev = portdev->vdev;
  1550. virtio_cread(vdev, struct virtio_console_config, cols, &cols);
  1551. virtio_cread(vdev, struct virtio_console_config, rows, &rows);
  1552. port = find_port_by_id(portdev, 0);
  1553. set_console_size(port, rows, cols);
  1554. /*
  1555. * We'll use this way of resizing only for legacy
  1556. * support. For newer userspace
  1557. * (VIRTIO_CONSOLE_F_MULTPORT+), use control messages
  1558. * to indicate console size changes so that it can be
  1559. * done per-port.
  1560. */
  1561. resize_console(port);
  1562. }
  1563. }
  1564. static int init_vqs(struct ports_device *portdev)
  1565. {
  1566. vq_callback_t **io_callbacks;
  1567. char **io_names;
  1568. struct virtqueue **vqs;
  1569. u32 i, j, nr_ports, nr_queues;
  1570. int err;
  1571. nr_ports = portdev->max_nr_ports;
  1572. nr_queues = use_multiport(portdev) ? (nr_ports + 1) * 2 : 2;
  1573. vqs = kmalloc_array(nr_queues, sizeof(struct virtqueue *), GFP_KERNEL);
  1574. io_callbacks = kmalloc_array(nr_queues, sizeof(vq_callback_t *),
  1575. GFP_KERNEL);
  1576. io_names = kmalloc_array(nr_queues, sizeof(char *), GFP_KERNEL);
  1577. portdev->in_vqs = kmalloc_array(nr_ports, sizeof(struct virtqueue *),
  1578. GFP_KERNEL);
  1579. portdev->out_vqs = kmalloc_array(nr_ports, sizeof(struct virtqueue *),
  1580. GFP_KERNEL);
  1581. if (!vqs || !io_callbacks || !io_names || !portdev->in_vqs ||
  1582. !portdev->out_vqs) {
  1583. err = -ENOMEM;
  1584. goto free;
  1585. }
  1586. /*
  1587. * For backward compat (newer host but older guest), the host
  1588. * spawns a console port first and also inits the vqs for port
  1589. * 0 before others.
  1590. */
  1591. j = 0;
  1592. io_callbacks[j] = in_intr;
  1593. io_callbacks[j + 1] = out_intr;
  1594. io_names[j] = "input";
  1595. io_names[j + 1] = "output";
  1596. j += 2;
  1597. if (use_multiport(portdev)) {
  1598. io_callbacks[j] = control_intr;
  1599. io_callbacks[j + 1] = NULL;
  1600. io_names[j] = "control-i";
  1601. io_names[j + 1] = "control-o";
  1602. for (i = 1; i < nr_ports; i++) {
  1603. j += 2;
  1604. io_callbacks[j] = in_intr;
  1605. io_callbacks[j + 1] = out_intr;
  1606. io_names[j] = "input";
  1607. io_names[j + 1] = "output";
  1608. }
  1609. }
  1610. /* Find the queues. */
  1611. err = virtio_find_vqs(portdev->vdev, nr_queues, vqs,
  1612. io_callbacks,
  1613. (const char **)io_names, NULL);
  1614. if (err)
  1615. goto free;
  1616. j = 0;
  1617. portdev->in_vqs[0] = vqs[0];
  1618. portdev->out_vqs[0] = vqs[1];
  1619. j += 2;
  1620. if (use_multiport(portdev)) {
  1621. portdev->c_ivq = vqs[j];
  1622. portdev->c_ovq = vqs[j + 1];
  1623. for (i = 1; i < nr_ports; i++) {
  1624. j += 2;
  1625. portdev->in_vqs[i] = vqs[j];
  1626. portdev->out_vqs[i] = vqs[j + 1];
  1627. }
  1628. }
  1629. kfree(io_names);
  1630. kfree(io_callbacks);
  1631. kfree(vqs);
  1632. return 0;
  1633. free:
  1634. kfree(portdev->out_vqs);
  1635. kfree(portdev->in_vqs);
  1636. kfree(io_names);
  1637. kfree(io_callbacks);
  1638. kfree(vqs);
  1639. return err;
  1640. }
  1641. static const struct file_operations portdev_fops = {
  1642. .owner = THIS_MODULE,
  1643. };
  1644. static void remove_vqs(struct ports_device *portdev)
  1645. {
  1646. struct virtqueue *vq;
  1647. virtio_device_for_each_vq(portdev->vdev, vq) {
  1648. struct port_buffer *buf;
  1649. flush_bufs(vq, true);
  1650. while ((buf = virtqueue_detach_unused_buf(vq)))
  1651. free_buf(buf, true);
  1652. }
  1653. portdev->vdev->config->del_vqs(portdev->vdev);
  1654. kfree(portdev->in_vqs);
  1655. kfree(portdev->out_vqs);
  1656. }
  1657. static void virtcons_remove(struct virtio_device *vdev)
  1658. {
  1659. struct ports_device *portdev;
  1660. struct port *port, *port2;
  1661. portdev = vdev->priv;
  1662. spin_lock_irq(&pdrvdata_lock);
  1663. list_del(&portdev->list);
  1664. spin_unlock_irq(&pdrvdata_lock);
  1665. /* Disable interrupts for vqs */
  1666. vdev->config->reset(vdev);
  1667. /* Finish up work that's lined up */
  1668. if (use_multiport(portdev))
  1669. cancel_work_sync(&portdev->control_work);
  1670. else
  1671. cancel_work_sync(&portdev->config_work);
  1672. list_for_each_entry_safe(port, port2, &portdev->ports, list)
  1673. unplug_port(port);
  1674. unregister_chrdev(portdev->chr_major, "virtio-portsdev");
  1675. /*
  1676. * When yanking out a device, we immediately lose the
  1677. * (device-side) queues. So there's no point in keeping the
  1678. * guest side around till we drop our final reference. This
  1679. * also means that any ports which are in an open state will
  1680. * have to just stop using the port, as the vqs are going
  1681. * away.
  1682. */
  1683. remove_vqs(portdev);
  1684. kfree(portdev);
  1685. }
  1686. /*
  1687. * Once we're further in boot, we get probed like any other virtio
  1688. * device.
  1689. *
  1690. * If the host also supports multiple console ports, we check the
  1691. * config space to see how many ports the host has spawned. We
  1692. * initialize each port found.
  1693. */
  1694. static int virtcons_probe(struct virtio_device *vdev)
  1695. {
  1696. struct ports_device *portdev;
  1697. int err;
  1698. bool multiport;
  1699. bool early = early_put_chars != NULL;
  1700. /* We only need a config space if features are offered */
  1701. if (!vdev->config->get &&
  1702. (virtio_has_feature(vdev, VIRTIO_CONSOLE_F_SIZE)
  1703. || virtio_has_feature(vdev, VIRTIO_CONSOLE_F_MULTIPORT))) {
  1704. dev_err(&vdev->dev, "%s failure: config access disabled\n",
  1705. __func__);
  1706. return -EINVAL;
  1707. }
  1708. /* Ensure to read early_put_chars now */
  1709. barrier();
  1710. portdev = kmalloc(sizeof(*portdev), GFP_KERNEL);
  1711. if (!portdev) {
  1712. err = -ENOMEM;
  1713. goto fail;
  1714. }
  1715. /* Attach this portdev to this virtio_device, and vice-versa. */
  1716. portdev->vdev = vdev;
  1717. vdev->priv = portdev;
  1718. portdev->chr_major = register_chrdev(0, "virtio-portsdev",
  1719. &portdev_fops);
  1720. if (portdev->chr_major < 0) {
  1721. dev_err(&vdev->dev,
  1722. "Error %d registering chrdev for device %u\n",
  1723. portdev->chr_major, vdev->index);
  1724. err = portdev->chr_major;
  1725. goto free;
  1726. }
  1727. multiport = false;
  1728. portdev->max_nr_ports = 1;
  1729. /* Don't test MULTIPORT at all if we're rproc: not a valid feature! */
  1730. if (!is_rproc_serial(vdev) &&
  1731. virtio_cread_feature(vdev, VIRTIO_CONSOLE_F_MULTIPORT,
  1732. struct virtio_console_config, max_nr_ports,
  1733. &portdev->max_nr_ports) == 0) {
  1734. multiport = true;
  1735. }
  1736. err = init_vqs(portdev);
  1737. if (err < 0) {
  1738. dev_err(&vdev->dev, "Error %d initializing vqs\n", err);
  1739. goto free_chrdev;
  1740. }
  1741. spin_lock_init(&portdev->ports_lock);
  1742. INIT_LIST_HEAD(&portdev->ports);
  1743. INIT_LIST_HEAD(&portdev->list);
  1744. virtio_device_ready(portdev->vdev);
  1745. INIT_WORK(&portdev->config_work, &config_work_handler);
  1746. INIT_WORK(&portdev->control_work, &control_work_handler);
  1747. if (multiport) {
  1748. unsigned int nr_added_bufs;
  1749. spin_lock_init(&portdev->c_ivq_lock);
  1750. spin_lock_init(&portdev->c_ovq_lock);
  1751. nr_added_bufs = fill_queue(portdev->c_ivq,
  1752. &portdev->c_ivq_lock);
  1753. if (!nr_added_bufs) {
  1754. dev_err(&vdev->dev,
  1755. "Error allocating buffers for control queue\n");
  1756. /*
  1757. * The host might want to notify mgmt sw about device
  1758. * add failure.
  1759. */
  1760. __send_control_msg(portdev, VIRTIO_CONSOLE_BAD_ID,
  1761. VIRTIO_CONSOLE_DEVICE_READY, 0);
  1762. /* Device was functional: we need full cleanup. */
  1763. virtcons_remove(vdev);
  1764. return -ENOMEM;
  1765. }
  1766. } else {
  1767. /*
  1768. * For backward compatibility: Create a console port
  1769. * if we're running on older host.
  1770. */
  1771. add_port(portdev, 0);
  1772. }
  1773. spin_lock_irq(&pdrvdata_lock);
  1774. list_add_tail(&portdev->list, &pdrvdata.portdevs);
  1775. spin_unlock_irq(&pdrvdata_lock);
  1776. __send_control_msg(portdev, VIRTIO_CONSOLE_BAD_ID,
  1777. VIRTIO_CONSOLE_DEVICE_READY, 1);
  1778. /*
  1779. * If there was an early virtio console, assume that there are no
  1780. * other consoles. We need to wait until the hvc_alloc matches the
  1781. * hvc_instantiate, otherwise tty_open will complain, resulting in
  1782. * a "Warning: unable to open an initial console" boot failure.
  1783. * Without multiport this is done in add_port above. With multiport
  1784. * this might take some host<->guest communication - thus we have to
  1785. * wait.
  1786. */
  1787. if (multiport && early)
  1788. wait_for_completion(&early_console_added);
  1789. return 0;
  1790. free_chrdev:
  1791. unregister_chrdev(portdev->chr_major, "virtio-portsdev");
  1792. free:
  1793. kfree(portdev);
  1794. fail:
  1795. return err;
  1796. }
  1797. static struct virtio_device_id id_table[] = {
  1798. { VIRTIO_ID_CONSOLE, VIRTIO_DEV_ANY_ID },
  1799. { 0 },
  1800. };
  1801. static unsigned int features[] = {
  1802. VIRTIO_CONSOLE_F_SIZE,
  1803. VIRTIO_CONSOLE_F_MULTIPORT,
  1804. };
  1805. static struct virtio_device_id rproc_serial_id_table[] = {
  1806. #if IS_ENABLED(CONFIG_REMOTEPROC)
  1807. { VIRTIO_ID_RPROC_SERIAL, VIRTIO_DEV_ANY_ID },
  1808. #endif
  1809. { 0 },
  1810. };
  1811. static unsigned int rproc_serial_features[] = {
  1812. };
  1813. #ifdef CONFIG_PM_SLEEP
  1814. static int virtcons_freeze(struct virtio_device *vdev)
  1815. {
  1816. struct ports_device *portdev;
  1817. struct port *port;
  1818. portdev = vdev->priv;
  1819. vdev->config->reset(vdev);
  1820. if (use_multiport(portdev))
  1821. virtqueue_disable_cb(portdev->c_ivq);
  1822. cancel_work_sync(&portdev->control_work);
  1823. cancel_work_sync(&portdev->config_work);
  1824. /*
  1825. * Once more: if control_work_handler() was running, it would
  1826. * enable the cb as the last step.
  1827. */
  1828. if (use_multiport(portdev))
  1829. virtqueue_disable_cb(portdev->c_ivq);
  1830. list_for_each_entry(port, &portdev->ports, list) {
  1831. virtqueue_disable_cb(port->in_vq);
  1832. virtqueue_disable_cb(port->out_vq);
  1833. /*
  1834. * We'll ask the host later if the new invocation has
  1835. * the port opened or closed.
  1836. */
  1837. port->host_connected = false;
  1838. remove_port_data(port);
  1839. }
  1840. remove_vqs(portdev);
  1841. return 0;
  1842. }
  1843. static int virtcons_restore(struct virtio_device *vdev)
  1844. {
  1845. struct ports_device *portdev;
  1846. struct port *port;
  1847. int ret;
  1848. portdev = vdev->priv;
  1849. ret = init_vqs(portdev);
  1850. if (ret)
  1851. return ret;
  1852. virtio_device_ready(portdev->vdev);
  1853. if (use_multiport(portdev))
  1854. fill_queue(portdev->c_ivq, &portdev->c_ivq_lock);
  1855. list_for_each_entry(port, &portdev->ports, list) {
  1856. port->in_vq = portdev->in_vqs[port->id];
  1857. port->out_vq = portdev->out_vqs[port->id];
  1858. fill_queue(port->in_vq, &port->inbuf_lock);
  1859. /* Get port open/close status on the host */
  1860. send_control_msg(port, VIRTIO_CONSOLE_PORT_READY, 1);
  1861. /*
  1862. * If a port was open at the time of suspending, we
  1863. * have to let the host know that it's still open.
  1864. */
  1865. if (port->guest_connected)
  1866. send_control_msg(port, VIRTIO_CONSOLE_PORT_OPEN, 1);
  1867. }
  1868. return 0;
  1869. }
  1870. #endif
  1871. static struct virtio_driver virtio_console = {
  1872. .feature_table = features,
  1873. .feature_table_size = ARRAY_SIZE(features),
  1874. .driver.name = KBUILD_MODNAME,
  1875. .driver.owner = THIS_MODULE,
  1876. .id_table = id_table,
  1877. .probe = virtcons_probe,
  1878. .remove = virtcons_remove,
  1879. .config_changed = config_intr,
  1880. #ifdef CONFIG_PM_SLEEP
  1881. .freeze = virtcons_freeze,
  1882. .restore = virtcons_restore,
  1883. #endif
  1884. };
  1885. static struct virtio_driver virtio_rproc_serial = {
  1886. .feature_table = rproc_serial_features,
  1887. .feature_table_size = ARRAY_SIZE(rproc_serial_features),
  1888. .driver.name = "virtio_rproc_serial",
  1889. .driver.owner = THIS_MODULE,
  1890. .id_table = rproc_serial_id_table,
  1891. .probe = virtcons_probe,
  1892. .remove = virtcons_remove,
  1893. };
  1894. static int __init init(void)
  1895. {
  1896. int err;
  1897. pdrvdata.class = class_create(THIS_MODULE, "virtio-ports");
  1898. if (IS_ERR(pdrvdata.class)) {
  1899. err = PTR_ERR(pdrvdata.class);
  1900. pr_err("Error %d creating virtio-ports class\n", err);
  1901. return err;
  1902. }
  1903. pdrvdata.debugfs_dir = debugfs_create_dir("virtio-ports", NULL);
  1904. if (!pdrvdata.debugfs_dir)
  1905. pr_warn("Error creating debugfs dir for virtio-ports\n");
  1906. INIT_LIST_HEAD(&pdrvdata.consoles);
  1907. INIT_LIST_HEAD(&pdrvdata.portdevs);
  1908. err = register_virtio_driver(&virtio_console);
  1909. if (err < 0) {
  1910. pr_err("Error %d registering virtio driver\n", err);
  1911. goto free;
  1912. }
  1913. err = register_virtio_driver(&virtio_rproc_serial);
  1914. if (err < 0) {
  1915. pr_err("Error %d registering virtio rproc serial driver\n",
  1916. err);
  1917. goto unregister;
  1918. }
  1919. return 0;
  1920. unregister:
  1921. unregister_virtio_driver(&virtio_console);
  1922. free:
  1923. debugfs_remove_recursive(pdrvdata.debugfs_dir);
  1924. class_destroy(pdrvdata.class);
  1925. return err;
  1926. }
  1927. static void __exit fini(void)
  1928. {
  1929. reclaim_dma_bufs();
  1930. unregister_virtio_driver(&virtio_console);
  1931. unregister_virtio_driver(&virtio_rproc_serial);
  1932. class_destroy(pdrvdata.class);
  1933. debugfs_remove_recursive(pdrvdata.debugfs_dir);
  1934. }
  1935. module_init(init);
  1936. module_exit(fini);
  1937. MODULE_DEVICE_TABLE(virtio, id_table);
  1938. MODULE_DESCRIPTION("Virtio console driver");
  1939. MODULE_LICENSE("GPL");