2 * Copyright (C) 2003-2008 Takahiro Hirofuchi
4 * This is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License as published by
6 * the Free Software Foundation; either version 2 of the License, or
7 * (at your option) any later version.
9 * This is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
14 * You should have received a copy of the GNU General Public License
15 * along with this program; if not, write to the Free Software
16 * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
20 #include <linux/device.h>
21 #include <linux/kthread.h>
23 #include "usbip_common.h"
26 static int stub_probe(struct usb_interface
*interface
,
27 const struct usb_device_id
*id
);
28 static void stub_disconnect(struct usb_interface
*interface
);
29 static int stub_pre_reset(struct usb_interface
*interface
);
30 static int stub_post_reset(struct usb_interface
*interface
);
33 * Define device IDs here if you want to explicitly limit exportable devices.
34 * In the most cases, wild card matching will be ok because driver binding can
35 * be changed dynamically by a userland program.
37 static struct usb_device_id stub_table
[] = {
40 { USB_DEVICE(0x05ac, 0x0301) }, /* Mac 1 button mouse */
41 { USB_DEVICE(0x0430, 0x0009) }, /* Plat Home Keyboard */
42 { USB_DEVICE(0x059b, 0x0001) }, /* Iomega USB Zip 100 */
43 { USB_DEVICE(0x04b3, 0x4427) }, /* IBM USB CD-ROM */
44 { USB_DEVICE(0x05a9, 0xa511) }, /* LifeView USB cam */
45 { USB_DEVICE(0x55aa, 0x0201) }, /* Imation card reader */
46 { USB_DEVICE(0x046d, 0x0870) }, /* Qcam Express(QV-30) */
47 { USB_DEVICE(0x04bb, 0x0101) }, /* IO-DATA HD 120GB */
48 { USB_DEVICE(0x04bb, 0x0904) }, /* IO-DATA USB-ET/TX */
49 { USB_DEVICE(0x04bb, 0x0201) }, /* IO-DATA USB-ET/TX */
50 { USB_DEVICE(0x08bb, 0x2702) }, /* ONKYO USB Speaker */
51 { USB_DEVICE(0x046d, 0x08b2) }, /* Logicool Qcam 4000 Pro */
53 /* magic for wild card */
55 { 0, } /* Terminating entry */
57 MODULE_DEVICE_TABLE(usb
, stub_table
);
59 struct usb_driver stub_driver
= {
62 .disconnect
= stub_disconnect
,
63 .id_table
= stub_table
,
64 .pre_reset
= stub_pre_reset
,
65 .post_reset
= stub_post_reset
,
69 * usbip_status shows status of usbip as long as this driver is bound to the
72 static ssize_t
show_status(struct device
*dev
, struct device_attribute
*attr
,
75 struct stub_device
*sdev
= dev_get_drvdata(dev
);
79 dev_err(dev
, "sdev is null\n");
83 spin_lock(&sdev
->ud
.lock
);
84 status
= sdev
->ud
.status
;
85 spin_unlock(&sdev
->ud
.lock
);
87 return snprintf(buf
, PAGE_SIZE
, "%d\n", status
);
89 static DEVICE_ATTR(usbip_status
, S_IRUGO
, show_status
, NULL
);
92 * usbip_sockfd gets a socket descriptor of an established TCP connection that
93 * is used to transfer usbip requests by kernel threads. -1 is a magic number
94 * by which usbip connection is finished.
96 static ssize_t
store_sockfd(struct device
*dev
, struct device_attribute
*attr
,
97 const char *buf
, size_t count
)
99 struct stub_device
*sdev
= dev_get_drvdata(dev
);
101 struct socket
*socket
;
104 dev_err(dev
, "sdev is null\n");
108 sscanf(buf
, "%d", &sockfd
);
111 dev_info(dev
, "stub up\n");
113 spin_lock(&sdev
->ud
.lock
);
115 if (sdev
->ud
.status
!= SDEV_ST_AVAILABLE
) {
116 dev_err(dev
, "not ready\n");
117 spin_unlock(&sdev
->ud
.lock
);
121 socket
= sockfd_to_socket(sockfd
);
123 spin_unlock(&sdev
->ud
.lock
);
128 setkeepalive(socket
);
131 sdev
->ud
.tcp_socket
= socket
;
133 spin_unlock(&sdev
->ud
.lock
);
135 sdev
->ud
.tcp_rx
= kthread_run(stub_rx_loop
, &sdev
->ud
, "stub_rx");
136 sdev
->ud
.tcp_tx
= kthread_run(stub_tx_loop
, &sdev
->ud
, "stub_tx");
138 spin_lock(&sdev
->ud
.lock
);
139 sdev
->ud
.status
= SDEV_ST_USED
;
140 spin_unlock(&sdev
->ud
.lock
);
143 dev_info(dev
, "stub down\n");
145 spin_lock(&sdev
->ud
.lock
);
146 if (sdev
->ud
.status
!= SDEV_ST_USED
) {
147 spin_unlock(&sdev
->ud
.lock
);
150 spin_unlock(&sdev
->ud
.lock
);
152 usbip_event_add(&sdev
->ud
, SDEV_EVENT_DOWN
);
157 static DEVICE_ATTR(usbip_sockfd
, S_IWUSR
, NULL
, store_sockfd
);
159 static int stub_add_files(struct device
*dev
)
163 err
= device_create_file(dev
, &dev_attr_usbip_status
);
167 err
= device_create_file(dev
, &dev_attr_usbip_sockfd
);
171 err
= device_create_file(dev
, &dev_attr_usbip_debug
);
178 device_remove_file(dev
, &dev_attr_usbip_sockfd
);
180 device_remove_file(dev
, &dev_attr_usbip_status
);
185 static void stub_remove_files(struct device
*dev
)
187 device_remove_file(dev
, &dev_attr_usbip_status
);
188 device_remove_file(dev
, &dev_attr_usbip_sockfd
);
189 device_remove_file(dev
, &dev_attr_usbip_debug
);
192 static void stub_shutdown_connection(struct usbip_device
*ud
)
194 struct stub_device
*sdev
= container_of(ud
, struct stub_device
, ud
);
197 * When removing an exported device, kernel panic sometimes occurred
198 * and then EIP was sk_wait_data of stub_rx thread. Is this because
199 * sk_wait_data returned though stub_rx thread was already finished by
202 if (ud
->tcp_socket
) {
203 dev_dbg(&sdev
->udev
->dev
, "shutdown tcp_socket %p\n",
205 kernel_sock_shutdown(ud
->tcp_socket
, SHUT_RDWR
);
208 /* 1. stop threads */
209 if (ud
->tcp_rx
&& !task_is_dead(ud
->tcp_rx
))
210 kthread_stop(ud
->tcp_rx
);
211 if (ud
->tcp_tx
&& !task_is_dead(ud
->tcp_tx
))
212 kthread_stop(ud
->tcp_tx
);
214 /* 2. close the socket */
216 * tcp_socket is freed after threads are killed.
217 * So usbip_xmit do not touch NULL socket.
219 if (ud
->tcp_socket
) {
220 sock_release(ud
->tcp_socket
);
221 ud
->tcp_socket
= NULL
;
224 /* 3. free used data */
225 stub_device_cleanup_urbs(sdev
);
227 /* 4. free stub_unlink */
230 struct stub_unlink
*unlink
, *tmp
;
232 spin_lock_irqsave(&sdev
->priv_lock
, flags
);
233 list_for_each_entry_safe(unlink
, tmp
, &sdev
->unlink_tx
, list
) {
234 list_del(&unlink
->list
);
237 list_for_each_entry_safe(unlink
, tmp
,
238 &sdev
->unlink_free
, list
) {
239 list_del(&unlink
->list
);
242 spin_unlock_irqrestore(&sdev
->priv_lock
, flags
);
246 static void stub_device_reset(struct usbip_device
*ud
)
248 struct stub_device
*sdev
= container_of(ud
, struct stub_device
, ud
);
249 struct usb_device
*udev
= sdev
->udev
;
252 dev_dbg(&udev
->dev
, "device reset");
254 ret
= usb_lock_device_for_reset(udev
, sdev
->interface
);
256 dev_err(&udev
->dev
, "lock for reset\n");
257 spin_lock(&ud
->lock
);
258 ud
->status
= SDEV_ST_ERROR
;
259 spin_unlock(&ud
->lock
);
263 /* try to reset the device */
264 ret
= usb_reset_device(udev
);
266 usb_unlock_device(udev
);
268 spin_lock(&ud
->lock
);
270 dev_err(&udev
->dev
, "device reset\n");
271 ud
->status
= SDEV_ST_ERROR
;
274 dev_info(&udev
->dev
, "device reset\n");
275 ud
->status
= SDEV_ST_AVAILABLE
;
278 spin_unlock(&ud
->lock
);
283 static void stub_device_unusable(struct usbip_device
*ud
)
285 spin_lock(&ud
->lock
);
286 ud
->status
= SDEV_ST_ERROR
;
287 spin_unlock(&ud
->lock
);
291 * stub_device_alloc - allocate a new stub_device struct
292 * @interface: usb_interface of a new device
294 * Allocates and initializes a new stub_device struct.
296 static struct stub_device
*stub_device_alloc(struct usb_device
*udev
,
297 struct usb_interface
*interface
)
299 struct stub_device
*sdev
;
300 int busnum
= interface_to_busnum(interface
);
301 int devnum
= interface_to_devnum(interface
);
303 dev_dbg(&interface
->dev
, "allocating stub device");
305 /* yes, it's a new device */
306 sdev
= kzalloc(sizeof(struct stub_device
), GFP_KERNEL
);
308 dev_err(&interface
->dev
, "no memory for stub_device\n");
312 sdev
->interface
= usb_get_intf(interface
);
313 sdev
->udev
= usb_get_dev(udev
);
316 * devid is defined with devnum when this driver is first allocated.
317 * devnum may change later if a device is reset. However, devid never
318 * changes during a usbip connection.
320 sdev
->devid
= (busnum
<< 16) | devnum
;
321 sdev
->ud
.side
= USBIP_STUB
;
322 sdev
->ud
.status
= SDEV_ST_AVAILABLE
;
323 /* sdev->ud.lock = SPIN_LOCK_UNLOCKED; */
324 spin_lock_init(&sdev
->ud
.lock
);
325 sdev
->ud
.tcp_socket
= NULL
;
327 INIT_LIST_HEAD(&sdev
->priv_init
);
328 INIT_LIST_HEAD(&sdev
->priv_tx
);
329 INIT_LIST_HEAD(&sdev
->priv_free
);
330 INIT_LIST_HEAD(&sdev
->unlink_free
);
331 INIT_LIST_HEAD(&sdev
->unlink_tx
);
332 /* sdev->priv_lock = SPIN_LOCK_UNLOCKED; */
333 spin_lock_init(&sdev
->priv_lock
);
335 init_waitqueue_head(&sdev
->tx_waitq
);
337 sdev
->ud
.eh_ops
.shutdown
= stub_shutdown_connection
;
338 sdev
->ud
.eh_ops
.reset
= stub_device_reset
;
339 sdev
->ud
.eh_ops
.unusable
= stub_device_unusable
;
341 usbip_start_eh(&sdev
->ud
);
343 dev_dbg(&interface
->dev
, "register new interface\n");
348 static int stub_device_free(struct stub_device
*sdev
)
354 pr_debug("kfree udev ok\n");
360 * If a usb device has multiple active interfaces, this driver is bound to all
361 * the active interfaces. However, usbip exports *a* usb device (i.e., not *an*
362 * active interface). Currently, a userland program must ensure that it
363 * looks at the usbip's sysfs entries of only the first active interface.
365 * TODO: use "struct usb_device_driver" to bind a usb device.
366 * However, it seems it is not fully supported in mainline kernel yet
369 static int stub_probe(struct usb_interface
*interface
,
370 const struct usb_device_id
*id
)
372 struct usb_device
*udev
= interface_to_usbdev(interface
);
373 struct stub_device
*sdev
= NULL
;
374 const char *udev_busid
= dev_name(interface
->dev
.parent
);
376 struct bus_id_priv
*busid_priv
;
378 dev_dbg(&interface
->dev
, "Enter\n");
380 /* check we should claim or not by busid_table */
381 busid_priv
= get_busid_priv(udev_busid
);
382 if (!busid_priv
|| (busid_priv
->status
== STUB_BUSID_REMOV
) ||
383 (busid_priv
->status
== STUB_BUSID_OTHER
)) {
384 dev_info(&interface
->dev
, "%s is not in match_busid table... "
385 "skip!\n", udev_busid
);
388 * Return value should be ENODEV or ENOXIO to continue trying
389 * other matched drivers by the driver core.
390 * See driver_probe_device() in driver/base/dd.c
395 if (udev
->descriptor
.bDeviceClass
== USB_CLASS_HUB
) {
396 dev_dbg(&udev
->dev
, "%s is a usb hub device... skip!\n",
401 if (!strcmp(udev
->bus
->bus_name
, "vhci_hcd")) {
402 dev_dbg(&udev
->dev
, "%s is attached on vhci_hcd... skip!\n",
407 if (busid_priv
->status
== STUB_BUSID_ALLOC
) {
408 sdev
= busid_priv
->sdev
;
412 busid_priv
->interf_count
++;
413 dev_info(&interface
->dev
, "usbip-host: register new interface "
414 "(bus %u dev %u ifn %u)\n",
415 udev
->bus
->busnum
, udev
->devnum
,
416 interface
->cur_altsetting
->desc
.bInterfaceNumber
);
418 /* set private data to usb_interface */
419 usb_set_intfdata(interface
, sdev
);
421 err
= stub_add_files(&interface
->dev
);
423 dev_err(&interface
->dev
, "stub_add_files for %s\n",
425 usb_set_intfdata(interface
, NULL
);
426 busid_priv
->interf_count
--;
431 usb_get_intf(interface
);
435 /* ok. this is my device. */
436 sdev
= stub_device_alloc(udev
, interface
);
440 dev_info(&interface
->dev
, "usbip-host: register new device "
441 "(bus %u dev %u ifn %u)\n", udev
->bus
->busnum
, udev
->devnum
,
442 interface
->cur_altsetting
->desc
.bInterfaceNumber
);
444 busid_priv
->interf_count
= 0;
445 busid_priv
->shutdown_busid
= 0;
447 /* set private data to usb_interface */
448 usb_set_intfdata(interface
, sdev
);
449 busid_priv
->interf_count
++;
451 busid_priv
->sdev
= sdev
;
453 err
= stub_add_files(&interface
->dev
);
455 dev_err(&interface
->dev
, "stub_add_files for %s\n", udev_busid
);
456 usb_set_intfdata(interface
, NULL
);
457 usb_put_intf(interface
);
459 busid_priv
->interf_count
= 0;
461 busid_priv
->sdev
= NULL
;
462 stub_device_free(sdev
);
465 busid_priv
->status
= STUB_BUSID_ALLOC
;
470 static void shutdown_busid(struct bus_id_priv
*busid_priv
)
472 if (busid_priv
->sdev
&& !busid_priv
->shutdown_busid
) {
473 busid_priv
->shutdown_busid
= 1;
474 usbip_event_add(&busid_priv
->sdev
->ud
, SDEV_EVENT_REMOVED
);
476 /* 2. wait for the stop of the event handler */
477 usbip_stop_eh(&busid_priv
->sdev
->ud
);
482 * called in usb_disconnect() or usb_deregister()
483 * but only if actconfig(active configuration) exists
485 static void stub_disconnect(struct usb_interface
*interface
)
487 struct stub_device
*sdev
;
488 const char *udev_busid
= dev_name(interface
->dev
.parent
);
489 struct bus_id_priv
*busid_priv
;
491 dev_dbg(&interface
->dev
, "Enter\n");
493 busid_priv
= get_busid_priv(udev_busid
);
499 sdev
= usb_get_intfdata(interface
);
501 /* get stub_device */
503 dev_err(&interface
->dev
, "could not get device");
508 usb_set_intfdata(interface
, NULL
);
512 * rx/tx threads are invoked for each usb_device.
514 stub_remove_files(&interface
->dev
);
516 /*If usb reset called from event handler*/
517 if (busid_priv
->sdev
->ud
.eh
== current
) {
518 busid_priv
->interf_count
--;
522 if (busid_priv
->interf_count
> 1) {
523 busid_priv
->interf_count
--;
524 shutdown_busid(busid_priv
);
525 usb_put_intf(interface
);
529 busid_priv
->interf_count
= 0;
531 /* 1. shutdown the current connection */
532 shutdown_busid(busid_priv
);
534 usb_put_dev(sdev
->udev
);
535 usb_put_intf(interface
);
538 busid_priv
->sdev
= NULL
;
539 stub_device_free(sdev
);
541 if (busid_priv
->status
== STUB_BUSID_ALLOC
) {
542 busid_priv
->status
= STUB_BUSID_ADDED
;
544 busid_priv
->status
= STUB_BUSID_OTHER
;
545 del_match_busid((char *)udev_busid
);
550 * Presence of pre_reset and post_reset prevents the driver from being unbound
551 * when the device is being reset
554 int stub_pre_reset(struct usb_interface
*interface
)
556 dev_dbg(&interface
->dev
, "pre_reset\n");
560 int stub_post_reset(struct usb_interface
*interface
)
562 dev_dbg(&interface
->dev
, "post_reset\n");