usb: core: rename mutex usb_bus_list_lock to usb_bus_idr_lock
[deliverable/linux.git] / drivers / usb / core / hcd.c
CommitLineData
1da177e4
LT
1/*
2 * (C) Copyright Linus Torvalds 1999
3 * (C) Copyright Johannes Erdfelt 1999-2001
4 * (C) Copyright Andreas Gal 1999
5 * (C) Copyright Gregory P. Smith 1999
6 * (C) Copyright Deti Fliegl 1999
7 * (C) Copyright Randy Dunlap 2000
8 * (C) Copyright David Brownell 2000-2002
14557359 9 *
1da177e4
LT
10 * This program is free software; you can redistribute it and/or modify it
11 * under the terms of the GNU General Public License as published by the
12 * Free Software Foundation; either version 2 of the License, or (at your
13 * option) any later version.
14 *
15 * This program is distributed in the hope that it will be useful, but
16 * WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
17 * or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
18 * for more details.
19 *
20 * You should have received a copy of the GNU General Public License
21 * along with this program; if not, write to the Free Software Foundation,
22 * Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
23 */
24
b53d657d 25#include <linux/bcd.h>
1da177e4
LT
26#include <linux/module.h>
27#include <linux/version.h>
28#include <linux/kernel.h>
29#include <linux/slab.h>
30#include <linux/completion.h>
31#include <linux/utsname.h>
32#include <linux/mm.h>
33#include <asm/io.h>
1da177e4
LT
34#include <linux/device.h>
35#include <linux/dma-mapping.h>
4186ecf8 36#include <linux/mutex.h>
1da177e4
LT
37#include <asm/irq.h>
38#include <asm/byteorder.h>
b3476675 39#include <asm/unaligned.h>
64a21d02 40#include <linux/platform_device.h>
6b157c9b 41#include <linux/workqueue.h>
da0aa716 42#include <linux/pm_runtime.h>
059239ad 43#include <linux/types.h>
1da177e4 44
00433254 45#include <linux/phy/phy.h>
1da177e4 46#include <linux/usb.h>
27729aad 47#include <linux/usb/hcd.h>
103e127d 48#include <linux/usb/phy.h>
1da177e4
LT
49
50#include "usb.h"
1da177e4
LT
51
52
1da177e4
LT
53/*-------------------------------------------------------------------------*/
54
55/*
56 * USB Host Controller Driver framework
57 *
58 * Plugs into usbcore (usb_bus) and lets HCDs share code, minimizing
59 * HCD-specific behaviors/bugs.
60 *
61 * This does error checks, tracks devices and urbs, and delegates to a
62 * "hc_driver" only for code (and data) that really needs to know about
63 * hardware differences. That includes root hub registers, i/o queues,
64 * and so on ... but as little else as possible.
65 *
66 * Shared code includes most of the "root hub" code (these are emulated,
67 * though each HC's hardware works differently) and PCI glue, plus request
68 * tracking overhead. The HCD code should only block on spinlocks or on
69 * hardware handshaking; blocking on software events (such as other kernel
70 * threads releasing resources, or completing actions) is all generic.
71 *
72 * Happens the USB 2.0 spec says this would be invisible inside the "USBD",
73 * and includes mostly a "HCDI" (HCD Interface) along with some APIs used
74 * only by the hub driver ... and that neither should be seen or used by
75 * usb client device drivers.
76 *
77 * Contributors of ideas or unattributed patches include: David Brownell,
78 * Roman Weissgaerber, Rory Bolt, Greg Kroah-Hartman, ...
79 *
80 * HISTORY:
81 * 2002-02-21 Pull in most of the usb_bus support from usb.c; some
82 * associated cleanup. "usb_hcd" still != "usb_bus".
83 * 2001-12-12 Initial patch version for Linux 2.5.1 kernel.
84 */
85
86/*-------------------------------------------------------------------------*/
87
9beeee65
AS
88/* Keep track of which host controller drivers are loaded */
89unsigned long usb_hcds_loaded;
90EXPORT_SYMBOL_GPL(usb_hcds_loaded);
91
1da177e4 92/* host controllers we manage */
5363de75
HK
93DEFINE_IDR (usb_bus_idr);
94EXPORT_SYMBOL_GPL (usb_bus_idr);
1da177e4
LT
95
96/* used when allocating bus numbers */
97#define USB_MAXBUS 64
1da177e4
LT
98
99/* used when updating list of hcds */
a4b5d606
HK
100DEFINE_MUTEX(usb_bus_idr_lock); /* exported only for usbfs */
101EXPORT_SYMBOL_GPL (usb_bus_idr_lock);
1da177e4
LT
102
103/* used for controlling access to virtual root hubs */
104static DEFINE_SPINLOCK(hcd_root_hub_lock);
105
809a58b8
AS
106/* used when updating an endpoint's URB list */
107static DEFINE_SPINLOCK(hcd_urb_list_lock);
1da177e4 108
cde217a5
AS
109/* used to protect against unlinking URBs after the device is gone */
110static DEFINE_SPINLOCK(hcd_urb_unlink_lock);
111
1da177e4
LT
112/* wait queue for synchronous unlinks */
113DECLARE_WAIT_QUEUE_HEAD(usb_kill_urb_queue);
114
809a58b8
AS
115static inline int is_root_hub(struct usb_device *udev)
116{
117 return (udev->parent == NULL);
118}
119
1da177e4
LT
120/*-------------------------------------------------------------------------*/
121
122/*
123 * Sharable chunks of root hub code.
124 */
125
126/*-------------------------------------------------------------------------*/
b53d657d
SAS
127#define KERNEL_REL bin2bcd(((LINUX_VERSION_CODE >> 16) & 0x0ff))
128#define KERNEL_VER bin2bcd(((LINUX_VERSION_CODE >> 8) & 0x0ff))
1da177e4 129
9508e3b7
MN
130/* usb 3.1 root hub device descriptor */
131static const u8 usb31_rh_dev_descriptor[18] = {
132 0x12, /* __u8 bLength; */
133 USB_DT_DEVICE, /* __u8 bDescriptorType; Device */
134 0x10, 0x03, /* __le16 bcdUSB; v3.1 */
135
136 0x09, /* __u8 bDeviceClass; HUB_CLASSCODE */
137 0x00, /* __u8 bDeviceSubClass; */
138 0x03, /* __u8 bDeviceProtocol; USB 3 hub */
139 0x09, /* __u8 bMaxPacketSize0; 2^9 = 512 Bytes */
140
141 0x6b, 0x1d, /* __le16 idVendor; Linux Foundation 0x1d6b */
142 0x03, 0x00, /* __le16 idProduct; device 0x0003 */
143 KERNEL_VER, KERNEL_REL, /* __le16 bcdDevice */
144
145 0x03, /* __u8 iManufacturer; */
146 0x02, /* __u8 iProduct; */
147 0x01, /* __u8 iSerialNumber; */
148 0x01 /* __u8 bNumConfigurations; */
149};
150
d2e9b4d6
SS
151/* usb 3.0 root hub device descriptor */
152static const u8 usb3_rh_dev_descriptor[18] = {
153 0x12, /* __u8 bLength; */
d491fe75 154 USB_DT_DEVICE, /* __u8 bDescriptorType; Device */
d2e9b4d6
SS
155 0x00, 0x03, /* __le16 bcdUSB; v3.0 */
156
157 0x09, /* __u8 bDeviceClass; HUB_CLASSCODE */
158 0x00, /* __u8 bDeviceSubClass; */
159 0x03, /* __u8 bDeviceProtocol; USB 3.0 hub */
160 0x09, /* __u8 bMaxPacketSize0; 2^9 = 512 Bytes */
161
bfb8bfad 162 0x6b, 0x1d, /* __le16 idVendor; Linux Foundation 0x1d6b */
cd780694 163 0x03, 0x00, /* __le16 idProduct; device 0x0003 */
d2e9b4d6
SS
164 KERNEL_VER, KERNEL_REL, /* __le16 bcdDevice */
165
166 0x03, /* __u8 iManufacturer; */
167 0x02, /* __u8 iProduct; */
168 0x01, /* __u8 iSerialNumber; */
169 0x01 /* __u8 bNumConfigurations; */
170};
171
1a81f881
TP
172/* usb 2.5 (wireless USB 1.0) root hub device descriptor */
173static const u8 usb25_rh_dev_descriptor[18] = {
174 0x12, /* __u8 bLength; */
d491fe75 175 USB_DT_DEVICE, /* __u8 bDescriptorType; Device */
1a81f881
TP
176 0x50, 0x02, /* __le16 bcdUSB; v2.5 */
177
178 0x09, /* __u8 bDeviceClass; HUB_CLASSCODE */
179 0x00, /* __u8 bDeviceSubClass; */
180 0x00, /* __u8 bDeviceProtocol; [ usb 2.0 no TT ] */
181 0xFF, /* __u8 bMaxPacketSize0; always 0xFF (WUSB Spec 7.4.1). */
182
183 0x6b, 0x1d, /* __le16 idVendor; Linux Foundation 0x1d6b */
184 0x02, 0x00, /* __le16 idProduct; device 0x0002 */
185 KERNEL_VER, KERNEL_REL, /* __le16 bcdDevice */
186
187 0x03, /* __u8 iManufacturer; */
188 0x02, /* __u8 iProduct; */
189 0x01, /* __u8 iSerialNumber; */
190 0x01 /* __u8 bNumConfigurations; */
191};
192
1da177e4 193/* usb 2.0 root hub device descriptor */
14557359 194static const u8 usb2_rh_dev_descriptor[18] = {
1da177e4 195 0x12, /* __u8 bLength; */
d491fe75 196 USB_DT_DEVICE, /* __u8 bDescriptorType; Device */
1da177e4
LT
197 0x00, 0x02, /* __le16 bcdUSB; v2.0 */
198
199 0x09, /* __u8 bDeviceClass; HUB_CLASSCODE */
200 0x00, /* __u8 bDeviceSubClass; */
7329e211 201 0x00, /* __u8 bDeviceProtocol; [ usb 2.0 no TT ] */
16f16d11 202 0x40, /* __u8 bMaxPacketSize0; 64 Bytes */
1da177e4 203
bfb8bfad 204 0x6b, 0x1d, /* __le16 idVendor; Linux Foundation 0x1d6b */
667d691e 205 0x02, 0x00, /* __le16 idProduct; device 0x0002 */
1da177e4
LT
206 KERNEL_VER, KERNEL_REL, /* __le16 bcdDevice */
207
208 0x03, /* __u8 iManufacturer; */
209 0x02, /* __u8 iProduct; */
210 0x01, /* __u8 iSerialNumber; */
211 0x01 /* __u8 bNumConfigurations; */
212};
213
214/* no usb 2.0 root hub "device qualifier" descriptor: one speed only */
215
216/* usb 1.1 root hub device descriptor */
14557359 217static const u8 usb11_rh_dev_descriptor[18] = {
1da177e4 218 0x12, /* __u8 bLength; */
d491fe75 219 USB_DT_DEVICE, /* __u8 bDescriptorType; Device */
1da177e4
LT
220 0x10, 0x01, /* __le16 bcdUSB; v1.1 */
221
222 0x09, /* __u8 bDeviceClass; HUB_CLASSCODE */
223 0x00, /* __u8 bDeviceSubClass; */
224 0x00, /* __u8 bDeviceProtocol; [ low/full speeds only ] */
16f16d11 225 0x40, /* __u8 bMaxPacketSize0; 64 Bytes */
1da177e4 226
bfb8bfad 227 0x6b, 0x1d, /* __le16 idVendor; Linux Foundation 0x1d6b */
667d691e 228 0x01, 0x00, /* __le16 idProduct; device 0x0001 */
1da177e4
LT
229 KERNEL_VER, KERNEL_REL, /* __le16 bcdDevice */
230
231 0x03, /* __u8 iManufacturer; */
232 0x02, /* __u8 iProduct; */
233 0x01, /* __u8 iSerialNumber; */
234 0x01 /* __u8 bNumConfigurations; */
235};
236
237
238/*-------------------------------------------------------------------------*/
239
240/* Configuration descriptors for our root hubs */
241
14557359 242static const u8 fs_rh_config_descriptor[] = {
1da177e4
LT
243
244 /* one configuration */
245 0x09, /* __u8 bLength; */
d491fe75 246 USB_DT_CONFIG, /* __u8 bDescriptorType; Configuration */
1da177e4
LT
247 0x19, 0x00, /* __le16 wTotalLength; */
248 0x01, /* __u8 bNumInterfaces; (1) */
249 0x01, /* __u8 bConfigurationValue; */
250 0x00, /* __u8 iConfiguration; */
14557359 251 0xc0, /* __u8 bmAttributes;
1da177e4
LT
252 Bit 7: must be set,
253 6: Self-powered,
254 5: Remote wakeup,
255 4..0: resvd */
256 0x00, /* __u8 MaxPower; */
14557359 257
1da177e4
LT
258 /* USB 1.1:
259 * USB 2.0, single TT organization (mandatory):
260 * one interface, protocol 0
261 *
262 * USB 2.0, multiple TT organization (optional):
263 * two interfaces, protocols 1 (like single TT)
264 * and 2 (multiple TT mode) ... config is
265 * sometimes settable
266 * NOT IMPLEMENTED
267 */
268
269 /* one interface */
270 0x09, /* __u8 if_bLength; */
d491fe75 271 USB_DT_INTERFACE, /* __u8 if_bDescriptorType; Interface */
1da177e4
LT
272 0x00, /* __u8 if_bInterfaceNumber; */
273 0x00, /* __u8 if_bAlternateSetting; */
274 0x01, /* __u8 if_bNumEndpoints; */
275 0x09, /* __u8 if_bInterfaceClass; HUB_CLASSCODE */
276 0x00, /* __u8 if_bInterfaceSubClass; */
277 0x00, /* __u8 if_bInterfaceProtocol; [usb1.1 or single tt] */
278 0x00, /* __u8 if_iInterface; */
14557359 279
1da177e4
LT
280 /* one endpoint (status change endpoint) */
281 0x07, /* __u8 ep_bLength; */
d491fe75 282 USB_DT_ENDPOINT, /* __u8 ep_bDescriptorType; Endpoint */
1da177e4 283 0x81, /* __u8 ep_bEndpointAddress; IN Endpoint 1 */
14557359
MB
284 0x03, /* __u8 ep_bmAttributes; Interrupt */
285 0x02, 0x00, /* __le16 ep_wMaxPacketSize; 1 + (MAX_ROOT_PORTS / 8) */
1da177e4
LT
286 0xff /* __u8 ep_bInterval; (255ms -- usb 2.0 spec) */
287};
288
14557359 289static const u8 hs_rh_config_descriptor[] = {
1da177e4
LT
290
291 /* one configuration */
292 0x09, /* __u8 bLength; */
d491fe75 293 USB_DT_CONFIG, /* __u8 bDescriptorType; Configuration */
1da177e4
LT
294 0x19, 0x00, /* __le16 wTotalLength; */
295 0x01, /* __u8 bNumInterfaces; (1) */
296 0x01, /* __u8 bConfigurationValue; */
297 0x00, /* __u8 iConfiguration; */
14557359 298 0xc0, /* __u8 bmAttributes;
1da177e4
LT
299 Bit 7: must be set,
300 6: Self-powered,
301 5: Remote wakeup,
302 4..0: resvd */
303 0x00, /* __u8 MaxPower; */
14557359 304
1da177e4
LT
305 /* USB 1.1:
306 * USB 2.0, single TT organization (mandatory):
307 * one interface, protocol 0
308 *
309 * USB 2.0, multiple TT organization (optional):
310 * two interfaces, protocols 1 (like single TT)
311 * and 2 (multiple TT mode) ... config is
312 * sometimes settable
313 * NOT IMPLEMENTED
314 */
315
316 /* one interface */
317 0x09, /* __u8 if_bLength; */
d491fe75 318 USB_DT_INTERFACE, /* __u8 if_bDescriptorType; Interface */
1da177e4
LT
319 0x00, /* __u8 if_bInterfaceNumber; */
320 0x00, /* __u8 if_bAlternateSetting; */
321 0x01, /* __u8 if_bNumEndpoints; */
322 0x09, /* __u8 if_bInterfaceClass; HUB_CLASSCODE */
323 0x00, /* __u8 if_bInterfaceSubClass; */
324 0x00, /* __u8 if_bInterfaceProtocol; [usb1.1 or single tt] */
325 0x00, /* __u8 if_iInterface; */
14557359 326
1da177e4
LT
327 /* one endpoint (status change endpoint) */
328 0x07, /* __u8 ep_bLength; */
d491fe75 329 USB_DT_ENDPOINT, /* __u8 ep_bDescriptorType; Endpoint */
1da177e4 330 0x81, /* __u8 ep_bEndpointAddress; IN Endpoint 1 */
14557359 331 0x03, /* __u8 ep_bmAttributes; Interrupt */
88fafff9 332 /* __le16 ep_wMaxPacketSize; 1 + (MAX_ROOT_PORTS / 8)
333 * see hub.c:hub_configure() for details. */
334 (USB_MAXCHILDREN + 1 + 7) / 8, 0x00,
1da177e4
LT
335 0x0c /* __u8 ep_bInterval; (256ms -- usb 2.0 spec) */
336};
337
d2e9b4d6
SS
338static const u8 ss_rh_config_descriptor[] = {
339 /* one configuration */
340 0x09, /* __u8 bLength; */
d491fe75 341 USB_DT_CONFIG, /* __u8 bDescriptorType; Configuration */
22c6a35d 342 0x1f, 0x00, /* __le16 wTotalLength; */
d2e9b4d6
SS
343 0x01, /* __u8 bNumInterfaces; (1) */
344 0x01, /* __u8 bConfigurationValue; */
345 0x00, /* __u8 iConfiguration; */
346 0xc0, /* __u8 bmAttributes;
347 Bit 7: must be set,
348 6: Self-powered,
349 5: Remote wakeup,
350 4..0: resvd */
351 0x00, /* __u8 MaxPower; */
352
353 /* one interface */
354 0x09, /* __u8 if_bLength; */
d491fe75 355 USB_DT_INTERFACE, /* __u8 if_bDescriptorType; Interface */
d2e9b4d6
SS
356 0x00, /* __u8 if_bInterfaceNumber; */
357 0x00, /* __u8 if_bAlternateSetting; */
358 0x01, /* __u8 if_bNumEndpoints; */
359 0x09, /* __u8 if_bInterfaceClass; HUB_CLASSCODE */
360 0x00, /* __u8 if_bInterfaceSubClass; */
361 0x00, /* __u8 if_bInterfaceProtocol; */
362 0x00, /* __u8 if_iInterface; */
363
364 /* one endpoint (status change endpoint) */
365 0x07, /* __u8 ep_bLength; */
d491fe75 366 USB_DT_ENDPOINT, /* __u8 ep_bDescriptorType; Endpoint */
d2e9b4d6
SS
367 0x81, /* __u8 ep_bEndpointAddress; IN Endpoint 1 */
368 0x03, /* __u8 ep_bmAttributes; Interrupt */
369 /* __le16 ep_wMaxPacketSize; 1 + (MAX_ROOT_PORTS / 8)
370 * see hub.c:hub_configure() for details. */
371 (USB_MAXCHILDREN + 1 + 7) / 8, 0x00,
22c6a35d
SS
372 0x0c, /* __u8 ep_bInterval; (256ms -- usb 2.0 spec) */
373
374 /* one SuperSpeed endpoint companion descriptor */
375 0x06, /* __u8 ss_bLength */
d491fe75
SS
376 USB_DT_SS_ENDPOINT_COMP, /* __u8 ss_bDescriptorType; SuperSpeed EP */
377 /* Companion */
22c6a35d
SS
378 0x00, /* __u8 ss_bMaxBurst; allows 1 TX between ACKs */
379 0x00, /* __u8 ss_bmAttributes; 1 packet per service interval */
380 0x02, 0x00 /* __le16 ss_wBytesPerInterval; 15 bits for max 15 ports */
d2e9b4d6
SS
381};
382
c4fc2342
CDH
383/* authorized_default behaviour:
384 * -1 is authorized for all devices except wireless (old behaviour)
385 * 0 is unauthorized for all devices
386 * 1 is authorized for all devices
387 */
388static int authorized_default = -1;
389module_param(authorized_default, int, S_IRUGO|S_IWUSR);
390MODULE_PARM_DESC(authorized_default,
391 "Default USB device authorization: 0 is not authorized, 1 is "
392 "authorized, -1 is authorized except for wireless USB (default, "
393 "old behaviour");
1da177e4
LT
394/*-------------------------------------------------------------------------*/
395
392ca68b
GS
396/**
397 * ascii2desc() - Helper routine for producing UTF-16LE string descriptors
398 * @s: Null-terminated ASCII (actually ISO-8859-1) string
399 * @buf: Buffer for USB string descriptor (header + UTF-16LE)
400 * @len: Length (in bytes; may be odd) of descriptor buffer.
401 *
626f090c
YB
402 * Return: The number of bytes filled in: 2 + 2*strlen(s) or @len,
403 * whichever is less.
392ca68b 404 *
626f090c 405 * Note:
392ca68b
GS
406 * USB String descriptors can contain at most 126 characters; input
407 * strings longer than that are truncated.
1da177e4 408 */
392ca68b
GS
409static unsigned
410ascii2desc(char const *s, u8 *buf, unsigned len)
1da177e4 411{
392ca68b
GS
412 unsigned n, t = 2 + 2*strlen(s);
413
414 if (t > 254)
415 t = 254; /* Longest possible UTF string descriptor */
416 if (len > t)
417 len = t;
418
419 t += USB_DT_STRING << 8; /* Now t is first 16 bits to store */
420
421 n = len;
422 while (n--) {
423 *buf++ = t;
424 if (!n--)
425 break;
426 *buf++ = t >> 8;
427 t = (unsigned char)*s++;
1da177e4 428 }
392ca68b 429 return len;
1da177e4
LT
430}
431
392ca68b
GS
432/**
433 * rh_string() - provides string descriptors for root hub
434 * @id: the string ID number (0: langids, 1: serial #, 2: product, 3: vendor)
1da177e4 435 * @hcd: the host controller for this root hub
392ca68b
GS
436 * @data: buffer for output packet
437 * @len: length of the provided buffer
1da177e4
LT
438 *
439 * Produces either a manufacturer, product or serial number string for the
440 * virtual root hub device.
626f090c
YB
441 *
442 * Return: The number of bytes filled in: the length of the descriptor or
392ca68b 443 * of the provided buffer, whichever is less.
1da177e4 444 */
392ca68b
GS
445static unsigned
446rh_string(int id, struct usb_hcd const *hcd, u8 *data, unsigned len)
71d2718f 447{
392ca68b
GS
448 char buf[100];
449 char const *s;
450 static char const langids[4] = {4, USB_DT_STRING, 0x09, 0x04};
1da177e4 451
048cb21c 452 /* language ids */
392ca68b
GS
453 switch (id) {
454 case 0:
455 /* Array of LANGID codes (0x0409 is MSFT-speak for "en-us") */
456 /* See http://www.usb.org/developers/docs/USB_LANGIDs.pdf */
457 if (len > 4)
458 len = 4;
459 memcpy(data, langids, len);
1da177e4 460 return len;
392ca68b
GS
461 case 1:
462 /* Serial number */
463 s = hcd->self.bus_name;
464 break;
465 case 2:
466 /* Product name */
467 s = hcd->product_desc;
468 break;
469 case 3:
470 /* Manufacturer */
96b644bd
SH
471 snprintf (buf, sizeof buf, "%s %s %s", init_utsname()->sysname,
472 init_utsname()->release, hcd->driver->description);
392ca68b
GS
473 s = buf;
474 break;
1da177e4 475 default:
392ca68b
GS
476 /* Can't happen; caller guarantees it */
477 return 0;
1da177e4 478 }
392ca68b
GS
479
480 return ascii2desc(s, data, len);
1da177e4
LT
481}
482
483
484/* Root hub control transfers execute synchronously */
485static int rh_call_control (struct usb_hcd *hcd, struct urb *urb)
486{
487 struct usb_ctrlrequest *cmd;
14557359 488 u16 typeReq, wValue, wIndex, wLength;
1da177e4 489 u8 *ubuf = urb->transfer_buffer;
71d2718f 490 unsigned len = 0;
e9df41c5 491 int status;
7329e211
AS
492 u8 patch_wakeup = 0;
493 u8 patch_protocol = 0;
e57e780b
SS
494 u16 tbuf_size;
495 u8 *tbuf = NULL;
496 const u8 *bufp;
1da177e4 497
9439eb94
AS
498 might_sleep();
499
e9df41c5
AS
500 spin_lock_irq(&hcd_root_hub_lock);
501 status = usb_hcd_link_urb_to_ep(hcd, urb);
502 spin_unlock_irq(&hcd_root_hub_lock);
503 if (status)
504 return status;
b0d9efba 505 urb->hcpriv = hcd; /* Indicate it's queued */
e9df41c5 506
1da177e4
LT
507 cmd = (struct usb_ctrlrequest *) urb->setup_packet;
508 typeReq = (cmd->bRequestType << 8) | cmd->bRequest;
509 wValue = le16_to_cpu (cmd->wValue);
510 wIndex = le16_to_cpu (cmd->wIndex);
511 wLength = le16_to_cpu (cmd->wLength);
512
513 if (wLength > urb->transfer_buffer_length)
514 goto error;
515
e57e780b
SS
516 /*
517 * tbuf should be at least as big as the
518 * USB hub descriptor.
519 */
520 tbuf_size = max_t(u16, sizeof(struct usb_hub_descriptor), wLength);
521 tbuf = kzalloc(tbuf_size, GFP_KERNEL);
522 if (!tbuf)
523 return -ENOMEM;
524
525 bufp = tbuf;
526
527
1da177e4
LT
528 urb->actual_length = 0;
529 switch (typeReq) {
530
531 /* DEVICE REQUESTS */
532
fb669cc0
DB
533 /* The root hub's remote wakeup enable bit is implemented using
534 * driver model wakeup flags. If this system supports wakeup
535 * through USB, userspace may change the default "allow wakeup"
536 * policy through sysfs or these calls.
537 *
538 * Most root hubs support wakeup from downstream devices, for
539 * runtime power management (disabling USB clocks and reducing
540 * VBUS power usage). However, not all of them do so; silicon,
541 * board, and BIOS bugs here are not uncommon, so these can't
542 * be treated quite like external hubs.
543 *
544 * Likewise, not all root hubs will pass wakeup events upstream,
545 * to wake up the whole system. So don't assume root hub and
546 * controller capabilities are identical.
547 */
548
1da177e4 549 case DeviceRequest | USB_REQ_GET_STATUS:
14557359 550 tbuf[0] = (device_may_wakeup(&hcd->self.root_hub->dev)
fb669cc0 551 << USB_DEVICE_REMOTE_WAKEUP)
1da177e4 552 | (1 << USB_DEVICE_SELF_POWERED);
14557359 553 tbuf[1] = 0;
1da177e4
LT
554 len = 2;
555 break;
556 case DeviceOutRequest | USB_REQ_CLEAR_FEATURE:
557 if (wValue == USB_DEVICE_REMOTE_WAKEUP)
fb669cc0 558 device_set_wakeup_enable(&hcd->self.root_hub->dev, 0);
1da177e4
LT
559 else
560 goto error;
561 break;
562 case DeviceOutRequest | USB_REQ_SET_FEATURE:
fb669cc0
DB
563 if (device_can_wakeup(&hcd->self.root_hub->dev)
564 && wValue == USB_DEVICE_REMOTE_WAKEUP)
565 device_set_wakeup_enable(&hcd->self.root_hub->dev, 1);
1da177e4
LT
566 else
567 goto error;
568 break;
569 case DeviceRequest | USB_REQ_GET_CONFIGURATION:
14557359 570 tbuf[0] = 1;
1da177e4
LT
571 len = 1;
572 /* FALLTHROUGH */
573 case DeviceOutRequest | USB_REQ_SET_CONFIGURATION:
574 break;
575 case DeviceRequest | USB_REQ_GET_DESCRIPTOR:
576 switch (wValue & 0xff00) {
577 case USB_DT_DEVICE << 8:
83de4b2b 578 switch (hcd->speed) {
71175225 579 case HCD_USB31:
9508e3b7
MN
580 bufp = usb31_rh_dev_descriptor;
581 break;
7dd19e69 582 case HCD_USB3:
d2e9b4d6 583 bufp = usb3_rh_dev_descriptor;
7dd19e69 584 break;
1a81f881
TP
585 case HCD_USB25:
586 bufp = usb25_rh_dev_descriptor;
587 break;
7dd19e69 588 case HCD_USB2:
1da177e4 589 bufp = usb2_rh_dev_descriptor;
7dd19e69
VM
590 break;
591 case HCD_USB11:
1da177e4 592 bufp = usb11_rh_dev_descriptor;
7dd19e69
VM
593 break;
594 default:
1da177e4 595 goto error;
7dd19e69 596 }
1da177e4 597 len = 18;
7329e211
AS
598 if (hcd->has_tt)
599 patch_protocol = 1;
1da177e4
LT
600 break;
601 case USB_DT_CONFIG << 8:
83de4b2b 602 switch (hcd->speed) {
71175225 603 case HCD_USB31:
7dd19e69 604 case HCD_USB3:
d2e9b4d6
SS
605 bufp = ss_rh_config_descriptor;
606 len = sizeof ss_rh_config_descriptor;
7dd19e69 607 break;
1a81f881 608 case HCD_USB25:
7dd19e69 609 case HCD_USB2:
1da177e4
LT
610 bufp = hs_rh_config_descriptor;
611 len = sizeof hs_rh_config_descriptor;
7dd19e69
VM
612 break;
613 case HCD_USB11:
1da177e4
LT
614 bufp = fs_rh_config_descriptor;
615 len = sizeof fs_rh_config_descriptor;
7dd19e69
VM
616 break;
617 default:
618 goto error;
1da177e4 619 }
fb669cc0 620 if (device_can_wakeup(&hcd->self.root_hub->dev))
1da177e4
LT
621 patch_wakeup = 1;
622 break;
623 case USB_DT_STRING << 8:
71d2718f
RK
624 if ((wValue & 0xff) < 4)
625 urb->actual_length = rh_string(wValue & 0xff,
626 hcd, ubuf, wLength);
627 else /* unsupported IDs --> "protocol stall" */
1da177e4 628 goto error;
1da177e4 629 break;
48e82361
SS
630 case USB_DT_BOS << 8:
631 goto nongeneric;
1da177e4
LT
632 default:
633 goto error;
634 }
635 break;
636 case DeviceRequest | USB_REQ_GET_INTERFACE:
14557359 637 tbuf[0] = 0;
1da177e4
LT
638 len = 1;
639 /* FALLTHROUGH */
640 case DeviceOutRequest | USB_REQ_SET_INTERFACE:
641 break;
642 case DeviceOutRequest | USB_REQ_SET_ADDRESS:
048cb21c 643 /* wValue == urb->dev->devaddr */
1da177e4
LT
644 dev_dbg (hcd->self.controller, "root hub device address %d\n",
645 wValue);
646 break;
647
648 /* INTERFACE REQUESTS (no defined feature/status flags) */
649
650 /* ENDPOINT REQUESTS */
651
652 case EndpointRequest | USB_REQ_GET_STATUS:
048cb21c 653 /* ENDPOINT_HALT flag */
14557359
MB
654 tbuf[0] = 0;
655 tbuf[1] = 0;
1da177e4
LT
656 len = 2;
657 /* FALLTHROUGH */
658 case EndpointOutRequest | USB_REQ_CLEAR_FEATURE:
659 case EndpointOutRequest | USB_REQ_SET_FEATURE:
660 dev_dbg (hcd->self.controller, "no endpoint features yet\n");
661 break;
662
663 /* CLASS REQUESTS (and errors) */
664
665 default:
48e82361 666nongeneric:
1da177e4 667 /* non-generic request */
b13296c6
DB
668 switch (typeReq) {
669 case GetHubStatus:
b13296c6
DB
670 len = 4;
671 break;
0cdd49a1
MN
672 case GetPortStatus:
673 if (wValue == HUB_PORT_STATUS)
674 len = 4;
675 else
676 /* other port status types return 8 bytes */
677 len = 8;
678 break;
b13296c6
DB
679 case GetHubDescriptor:
680 len = sizeof (struct usb_hub_descriptor);
681 break;
48e82361
SS
682 case DeviceRequest | USB_REQ_GET_DESCRIPTOR:
683 /* len is returned by hub_control */
684 break;
1da177e4 685 }
b13296c6
DB
686 status = hcd->driver->hub_control (hcd,
687 typeReq, wValue, wIndex,
688 tbuf, wLength);
d2123fd9
LT
689
690 if (typeReq == GetHubDescriptor)
691 usb_hub_adjust_deviceremovable(hcd->self.root_hub,
692 (struct usb_hub_descriptor *)tbuf);
1da177e4
LT
693 break;
694error:
695 /* "protocol stall" on error */
696 status = -EPIPE;
697 }
698
48e82361 699 if (status < 0) {
1da177e4
LT
700 len = 0;
701 if (status != -EPIPE) {
702 dev_dbg (hcd->self.controller,
703 "CTRL: TypeReq=0x%x val=0x%x "
704 "idx=0x%x len=%d ==> %d\n",
705 typeReq, wValue, wIndex,
b13296c6 706 wLength, status);
1da177e4 707 }
48e82361
SS
708 } else if (status > 0) {
709 /* hub_control may return the length of data copied. */
710 len = status;
711 status = 0;
1da177e4
LT
712 }
713 if (len) {
714 if (urb->transfer_buffer_length < len)
715 len = urb->transfer_buffer_length;
716 urb->actual_length = len;
048cb21c 717 /* always USB_DIR_IN, toward host */
1da177e4
LT
718 memcpy (ubuf, bufp, len);
719
720 /* report whether RH hardware supports remote wakeup */
721 if (patch_wakeup &&
722 len > offsetof (struct usb_config_descriptor,
723 bmAttributes))
724 ((struct usb_config_descriptor *)ubuf)->bmAttributes
725 |= USB_CONFIG_ATT_WAKEUP;
7329e211
AS
726
727 /* report whether RH hardware has an integrated TT */
728 if (patch_protocol &&
729 len > offsetof(struct usb_device_descriptor,
730 bDeviceProtocol))
731 ((struct usb_device_descriptor *) ubuf)->
7bf01185 732 bDeviceProtocol = USB_HUB_PR_HS_SINGLE_TT;
1da177e4
LT
733 }
734
e57e780b
SS
735 kfree(tbuf);
736
1da177e4 737 /* any errors get returned through the urb completion */
9439eb94 738 spin_lock_irq(&hcd_root_hub_lock);
e9df41c5 739 usb_hcd_unlink_urb_from_ep(hcd, urb);
4a00027d 740 usb_hcd_giveback_urb(hcd, urb, status);
9439eb94 741 spin_unlock_irq(&hcd_root_hub_lock);
1da177e4
LT
742 return 0;
743}
744
745/*-------------------------------------------------------------------------*/
746
747/*
d5926ae7
AS
748 * Root Hub interrupt transfers are polled using a timer if the
749 * driver requests it; otherwise the driver is responsible for
750 * calling usb_hcd_poll_rh_status() when an event occurs.
1da177e4 751 *
d5926ae7
AS
752 * Completions are called in_interrupt(), but they may or may not
753 * be in_irq().
1da177e4 754 */
d5926ae7
AS
755void usb_hcd_poll_rh_status(struct usb_hcd *hcd)
756{
757 struct urb *urb;
758 int length;
759 unsigned long flags;
ad361c98 760 char buffer[6]; /* Any root hubs with > 31 ports? */
1da177e4 761
6d88e679 762 if (unlikely(!hcd->rh_pollable))
1b42ae6d 763 return;
d5926ae7
AS
764 if (!hcd->uses_new_polling && !hcd->status_urb)
765 return;
1da177e4 766
d5926ae7
AS
767 length = hcd->driver->hub_status_data(hcd, buffer);
768 if (length > 0) {
1da177e4 769
d5926ae7 770 /* try to complete the status urb */
9439eb94 771 spin_lock_irqsave(&hcd_root_hub_lock, flags);
d5926ae7
AS
772 urb = hcd->status_urb;
773 if (urb) {
541c7d43 774 clear_bit(HCD_FLAG_POLL_PENDING, &hcd->flags);
e9df41c5 775 hcd->status_urb = NULL;
e9df41c5
AS
776 urb->actual_length = length;
777 memcpy(urb->transfer_buffer, buffer, length);
9439eb94 778
e9df41c5 779 usb_hcd_unlink_urb_from_ep(hcd, urb);
4a00027d 780 usb_hcd_giveback_urb(hcd, urb, 0);
e9df41c5 781 } else {
d5926ae7 782 length = 0;
541c7d43 783 set_bit(HCD_FLAG_POLL_PENDING, &hcd->flags);
e9df41c5 784 }
9439eb94 785 spin_unlock_irqrestore(&hcd_root_hub_lock, flags);
1da177e4
LT
786 }
787
d5926ae7 788 /* The USB 2.0 spec says 256 ms. This is close enough and won't
01cd0819
AV
789 * exceed that limit if HZ is 100. The math is more clunky than
790 * maybe expected, this is to make sure that all timers for USB devices
25985edc 791 * fire at the same time to give the CPU a break in between */
541c7d43 792 if (hcd->uses_new_polling ? HCD_POLL_RH(hcd) :
d5926ae7 793 (length == 0 && hcd->status_urb != NULL))
01cd0819 794 mod_timer (&hcd->rh_timer, (jiffies/(HZ/4) + 1) * (HZ/4));
1da177e4 795}
d5926ae7 796EXPORT_SYMBOL_GPL(usb_hcd_poll_rh_status);
1da177e4
LT
797
798/* timer callback */
d5926ae7
AS
799static void rh_timer_func (unsigned long _hcd)
800{
801 usb_hcd_poll_rh_status((struct usb_hcd *) _hcd);
802}
803
804/*-------------------------------------------------------------------------*/
1da177e4 805
d5926ae7 806static int rh_queue_status (struct usb_hcd *hcd, struct urb *urb)
1da177e4 807{
d5926ae7 808 int retval;
1da177e4 809 unsigned long flags;
71d2718f 810 unsigned len = 1 + (urb->dev->maxchild / 8);
1da177e4 811
d5926ae7 812 spin_lock_irqsave (&hcd_root_hub_lock, flags);
e9df41c5 813 if (hcd->status_urb || urb->transfer_buffer_length < len) {
d5926ae7
AS
814 dev_dbg (hcd->self.controller, "not queuing rh status urb\n");
815 retval = -EINVAL;
e9df41c5
AS
816 goto done;
817 }
1da177e4 818
e9df41c5
AS
819 retval = usb_hcd_link_urb_to_ep(hcd, urb);
820 if (retval)
821 goto done;
1da177e4 822
e9df41c5
AS
823 hcd->status_urb = urb;
824 urb->hcpriv = hcd; /* indicate it's queued */
825 if (!hcd->uses_new_polling)
826 mod_timer(&hcd->rh_timer, (jiffies/(HZ/4) + 1) * (HZ/4));
827
828 /* If a status change has already occurred, report it ASAP */
541c7d43 829 else if (HCD_POLL_PENDING(hcd))
e9df41c5
AS
830 mod_timer(&hcd->rh_timer, jiffies);
831 retval = 0;
832 done:
d5926ae7
AS
833 spin_unlock_irqrestore (&hcd_root_hub_lock, flags);
834 return retval;
1da177e4
LT
835}
836
1da177e4
LT
837static int rh_urb_enqueue (struct usb_hcd *hcd, struct urb *urb)
838{
5e60a161 839 if (usb_endpoint_xfer_int(&urb->ep->desc))
d5926ae7 840 return rh_queue_status (hcd, urb);
5e60a161 841 if (usb_endpoint_xfer_control(&urb->ep->desc))
1da177e4 842 return rh_call_control (hcd, urb);
d5926ae7 843 return -EINVAL;
1da177e4
LT
844}
845
846/*-------------------------------------------------------------------------*/
847
455b25fb
AS
848/* Unlinks of root-hub control URBs are legal, but they don't do anything
849 * since these URBs always execute synchronously.
d5926ae7 850 */
e9df41c5 851static int usb_rh_urb_dequeue(struct usb_hcd *hcd, struct urb *urb, int status)
1da177e4 852{
455b25fb 853 unsigned long flags;
e9df41c5 854 int rc;
1da177e4 855
9439eb94 856 spin_lock_irqsave(&hcd_root_hub_lock, flags);
e9df41c5
AS
857 rc = usb_hcd_check_unlink_urb(hcd, urb, status);
858 if (rc)
859 goto done;
860
5e60a161 861 if (usb_endpoint_num(&urb->ep->desc) == 0) { /* Control URB */
455b25fb 862 ; /* Do nothing */
d5926ae7
AS
863
864 } else { /* Status URB */
865 if (!hcd->uses_new_polling)
455b25fb 866 del_timer (&hcd->rh_timer);
d5926ae7
AS
867 if (urb == hcd->status_urb) {
868 hcd->status_urb = NULL;
e9df41c5 869 usb_hcd_unlink_urb_from_ep(hcd, urb);
4a00027d 870 usb_hcd_giveback_urb(hcd, urb, status);
9439eb94
AS
871 }
872 }
e9df41c5 873 done:
9439eb94 874 spin_unlock_irqrestore(&hcd_root_hub_lock, flags);
e9df41c5 875 return rc;
1da177e4
LT
876}
877
5234ce1b
IPG
878
879
880/*
881 * Show & store the current value of authorized_default
882 */
d03f254f
GKH
883static ssize_t authorized_default_show(struct device *dev,
884 struct device_attribute *attr, char *buf)
5234ce1b
IPG
885{
886 struct usb_device *rh_usb_dev = to_usb_device(dev);
887 struct usb_bus *usb_bus = rh_usb_dev->bus;
ff8e2c56 888 struct usb_hcd *hcd;
5234ce1b 889
ff8e2c56
SK
890 hcd = bus_to_hcd(usb_bus);
891 return snprintf(buf, PAGE_SIZE, "%u\n", !!HCD_DEV_AUTHORIZED(hcd));
5234ce1b
IPG
892}
893
d03f254f
GKH
894static ssize_t authorized_default_store(struct device *dev,
895 struct device_attribute *attr,
896 const char *buf, size_t size)
5234ce1b
IPG
897{
898 ssize_t result;
899 unsigned val;
900 struct usb_device *rh_usb_dev = to_usb_device(dev);
901 struct usb_bus *usb_bus = rh_usb_dev->bus;
ff8e2c56 902 struct usb_hcd *hcd;
5234ce1b 903
ff8e2c56 904 hcd = bus_to_hcd(usb_bus);
5234ce1b
IPG
905 result = sscanf(buf, "%u\n", &val);
906 if (result == 1) {
ff8e2c56
SK
907 if (val)
908 set_bit(HCD_FLAG_DEV_AUTHORIZED, &hcd->flags);
909 else
910 clear_bit(HCD_FLAG_DEV_AUTHORIZED, &hcd->flags);
911
5234ce1b 912 result = size;
d1ddb0a6 913 } else {
5234ce1b 914 result = -EINVAL;
d1ddb0a6 915 }
5234ce1b
IPG
916 return result;
917}
d03f254f 918static DEVICE_ATTR_RW(authorized_default);
5234ce1b 919
6b2bd3c8
SK
920/*
921 * interface_authorized_default_show - show default authorization status
922 * for USB interfaces
923 *
924 * note: interface_authorized_default is the default value
925 * for initializing the authorized attribute of interfaces
926 */
927static ssize_t interface_authorized_default_show(struct device *dev,
928 struct device_attribute *attr, char *buf)
929{
930 struct usb_device *usb_dev = to_usb_device(dev);
931 struct usb_hcd *hcd = bus_to_hcd(usb_dev->bus);
932
933 return sprintf(buf, "%u\n", !!HCD_INTF_AUTHORIZED(hcd));
934}
935
936/*
937 * interface_authorized_default_store - store default authorization status
938 * for USB interfaces
939 *
940 * note: interface_authorized_default is the default value
941 * for initializing the authorized attribute of interfaces
942 */
943static ssize_t interface_authorized_default_store(struct device *dev,
944 struct device_attribute *attr, const char *buf, size_t count)
945{
946 struct usb_device *usb_dev = to_usb_device(dev);
947 struct usb_hcd *hcd = bus_to_hcd(usb_dev->bus);
948 int rc = count;
949 bool val;
950
951 if (strtobool(buf, &val) != 0)
952 return -EINVAL;
953
954 if (val)
955 set_bit(HCD_FLAG_INTF_AUTHORIZED, &hcd->flags);
956 else
957 clear_bit(HCD_FLAG_INTF_AUTHORIZED, &hcd->flags);
958
959 return rc;
960}
961static DEVICE_ATTR_RW(interface_authorized_default);
962
5234ce1b
IPG
963/* Group all the USB bus attributes */
964static struct attribute *usb_bus_attrs[] = {
965 &dev_attr_authorized_default.attr,
6b2bd3c8 966 &dev_attr_interface_authorized_default.attr,
5234ce1b
IPG
967 NULL,
968};
969
970static struct attribute_group usb_bus_attr_group = {
971 .name = NULL, /* we want them in the same directory */
972 .attrs = usb_bus_attrs,
973};
974
975
976
1da177e4
LT
977/*-------------------------------------------------------------------------*/
978
1da177e4
LT
979/**
980 * usb_bus_init - shared initialization code
981 * @bus: the bus structure being initialized
982 *
983 * This code is used to initialize a usb_bus structure, memory for which is
984 * separately managed.
985 */
986static void usb_bus_init (struct usb_bus *bus)
987{
988 memset (&bus->devmap, 0, sizeof(struct usb_devmap));
989
990 bus->devnum_next = 1;
991
992 bus->root_hub = NULL;
1da177e4
LT
993 bus->busnum = -1;
994 bus->bandwidth_allocated = 0;
995 bus->bandwidth_int_reqs = 0;
996 bus->bandwidth_isoc_reqs = 0;
6fecd4f2 997 mutex_init(&bus->usb_address0_mutex);
1da177e4
LT
998}
999
1da177e4
LT
1000/*-------------------------------------------------------------------------*/
1001
1002/**
1003 * usb_register_bus - registers the USB host controller with the usb core
1004 * @bus: pointer to the bus to register
1005 * Context: !in_interrupt()
1006 *
1007 * Assigns a bus number, and links the controller into usbcore data
1008 * structures so that it can be seen by scanning the bus list.
626f090c
YB
1009 *
1010 * Return: 0 if successful. A negative error code otherwise.
1da177e4
LT
1011 */
1012static int usb_register_bus(struct usb_bus *bus)
1013{
eb579f58 1014 int result = -E2BIG;
1da177e4 1015 int busnum;
1da177e4 1016
a4b5d606 1017 mutex_lock(&usb_bus_idr_lock);
5363de75
HK
1018 busnum = idr_alloc(&usb_bus_idr, bus, 1, USB_MAXBUS, GFP_KERNEL);
1019 if (busnum < 0) {
1020 pr_err("%s: failed to get bus number\n", usbcore_name);
eb579f58 1021 goto error_find_busnum;
1da177e4 1022 }
eb579f58 1023 bus->busnum = busnum;
a4b5d606 1024 mutex_unlock(&usb_bus_idr_lock);
1da177e4 1025
3099e75a 1026 usb_notify_add_bus(bus);
1da177e4 1027
eb579f58
IPG
1028 dev_info (bus->controller, "new USB bus registered, assigned bus "
1029 "number %d\n", bus->busnum);
1da177e4 1030 return 0;
eb579f58 1031
eb579f58 1032error_find_busnum:
a4b5d606 1033 mutex_unlock(&usb_bus_idr_lock);
eb579f58 1034 return result;
1da177e4
LT
1035}
1036
1037/**
1038 * usb_deregister_bus - deregisters the USB host controller
1039 * @bus: pointer to the bus to deregister
1040 * Context: !in_interrupt()
1041 *
1042 * Recycles the bus number, and unlinks the controller from usbcore data
1043 * structures so that it won't be seen by scanning the bus list.
1044 */
1045static void usb_deregister_bus (struct usb_bus *bus)
1046{
1047 dev_info (bus->controller, "USB bus %d deregistered\n", bus->busnum);
1048
1049 /*
1050 * NOTE: make sure that all the devices are removed by the
1051 * controller code, as well as having it call this when cleaning
1052 * itself up
1053 */
a4b5d606 1054 mutex_lock(&usb_bus_idr_lock);
5363de75 1055 idr_remove(&usb_bus_idr, bus->busnum);
a4b5d606 1056 mutex_unlock(&usb_bus_idr_lock);
1da177e4 1057
3099e75a 1058 usb_notify_remove_bus(bus);
1da177e4
LT
1059}
1060
1061/**
8ec8d20b 1062 * register_root_hub - called by usb_add_hcd() to register a root hub
1da177e4
LT
1063 * @hcd: host controller for this root hub
1064 *
8ec8d20b 1065 * This function registers the root hub with the USB subsystem. It sets up
b1e8f0a6
DB
1066 * the device properly in the device tree and then calls usb_new_device()
1067 * to register the usb device. It also assigns the root hub's USB address
1068 * (always 1).
626f090c
YB
1069 *
1070 * Return: 0 if successful. A negative error code otherwise.
1da177e4 1071 */
b1e8f0a6 1072static int register_root_hub(struct usb_hcd *hcd)
1da177e4
LT
1073{
1074 struct device *parent_dev = hcd->self.controller;
b1e8f0a6 1075 struct usb_device *usb_dev = hcd->self.root_hub;
1da177e4
LT
1076 const int devnum = 1;
1077 int retval;
1078
1da177e4
LT
1079 usb_dev->devnum = devnum;
1080 usb_dev->bus->devnum_next = devnum + 1;
1081 memset (&usb_dev->bus->devmap.devicemap, 0,
1082 sizeof usb_dev->bus->devmap.devicemap);
1083 set_bit (devnum, usb_dev->bus->devmap.devicemap);
1084 usb_set_device_state(usb_dev, USB_STATE_ADDRESS);
1085
a4b5d606 1086 mutex_lock(&usb_bus_idr_lock);
1da177e4 1087
551509d2 1088 usb_dev->ep0.desc.wMaxPacketSize = cpu_to_le16(64);
1da177e4
LT
1089 retval = usb_get_device_descriptor(usb_dev, USB_DT_DEVICE_SIZE);
1090 if (retval != sizeof usb_dev->descriptor) {
a4b5d606 1091 mutex_unlock(&usb_bus_idr_lock);
1da177e4 1092 dev_dbg (parent_dev, "can't read %s device descriptor %d\n",
7071a3ce 1093 dev_name(&usb_dev->dev), retval);
1da177e4
LT
1094 return (retval < 0) ? retval : -EMSGSIZE;
1095 }
2d2a3167
LB
1096
1097 if (le16_to_cpu(usb_dev->descriptor.bcdUSB) >= 0x0201) {
448b6eb1 1098 retval = usb_get_bos_descriptor(usb_dev);
2d2a3167
LB
1099 if (!retval) {
1100 usb_dev->lpm_capable = usb_device_supports_lpm(usb_dev);
8a1b2725 1101 } else if (usb_dev->speed >= USB_SPEED_SUPER) {
a4b5d606 1102 mutex_unlock(&usb_bus_idr_lock);
448b6eb1
SS
1103 dev_dbg(parent_dev, "can't read %s bos descriptor %d\n",
1104 dev_name(&usb_dev->dev), retval);
1105 return retval;
1106 }
1107 }
1da177e4 1108
1da177e4 1109 retval = usb_new_device (usb_dev);
1da177e4 1110 if (retval) {
1da177e4 1111 dev_err (parent_dev, "can't register root hub for %s, %d\n",
7071a3ce 1112 dev_name(&usb_dev->dev), retval);
0a231403 1113 } else {
1da177e4
LT
1114 spin_lock_irq (&hcd_root_hub_lock);
1115 hcd->rh_registered = 1;
1116 spin_unlock_irq (&hcd_root_hub_lock);
1117
1118 /* Did the HC die before the root hub was registered? */
69fff59d 1119 if (HCD_DEAD(hcd))
1da177e4
LT
1120 usb_hc_died (hcd); /* This time clean up */
1121 }
a4b5d606 1122 mutex_unlock(&usb_bus_idr_lock);
1da177e4
LT
1123
1124 return retval;
1125}
1da177e4 1126
da0aa716
AS
1127/*
1128 * usb_hcd_start_port_resume - a root-hub port is sending a resume signal
1129 * @bus: the bus which the root hub belongs to
1130 * @portnum: the port which is being resumed
1131 *
1132 * HCDs should call this function when they know that a resume signal is
1133 * being sent to a root-hub port. The root hub will be prevented from
1134 * going into autosuspend until usb_hcd_end_port_resume() is called.
1135 *
1136 * The bus's private lock must be held by the caller.
1137 */
1138void usb_hcd_start_port_resume(struct usb_bus *bus, int portnum)
1139{
1140 unsigned bit = 1 << portnum;
1141
1142 if (!(bus->resuming_ports & bit)) {
1143 bus->resuming_ports |= bit;
1144 pm_runtime_get_noresume(&bus->root_hub->dev);
1145 }
1146}
1147EXPORT_SYMBOL_GPL(usb_hcd_start_port_resume);
1148
1149/*
1150 * usb_hcd_end_port_resume - a root-hub port has stopped sending a resume signal
1151 * @bus: the bus which the root hub belongs to
1152 * @portnum: the port which is being resumed
1153 *
1154 * HCDs should call this function when they know that a resume signal has
1155 * stopped being sent to a root-hub port. The root hub will be allowed to
1156 * autosuspend again.
1157 *
1158 * The bus's private lock must be held by the caller.
1159 */
1160void usb_hcd_end_port_resume(struct usb_bus *bus, int portnum)
1161{
1162 unsigned bit = 1 << portnum;
1163
1164 if (bus->resuming_ports & bit) {
1165 bus->resuming_ports &= ~bit;
1166 pm_runtime_put_noidle(&bus->root_hub->dev);
1167 }
1168}
1169EXPORT_SYMBOL_GPL(usb_hcd_end_port_resume);
1da177e4
LT
1170
1171/*-------------------------------------------------------------------------*/
1172
1173/**
1174 * usb_calc_bus_time - approximate periodic transaction time in nanoseconds
1175 * @speed: from dev->speed; USB_SPEED_{LOW,FULL,HIGH}
1176 * @is_input: true iff the transaction sends data to the host
1177 * @isoc: true for isochronous transactions, false for interrupt ones
1178 * @bytecount: how many bytes in the transaction.
1179 *
626f090c
YB
1180 * Return: Approximate bus time in nanoseconds for a periodic transaction.
1181 *
1182 * Note:
1da177e4
LT
1183 * See USB 2.0 spec section 5.11.3; only periodic transfers need to be
1184 * scheduled in software, this function is only used for such scheduling.
1185 */
1186long usb_calc_bus_time (int speed, int is_input, int isoc, int bytecount)
1187{
1188 unsigned long tmp;
1189
1190 switch (speed) {
1191 case USB_SPEED_LOW: /* INTR only */
1192 if (is_input) {
1193 tmp = (67667L * (31L + 10L * BitTime (bytecount))) / 1000L;
07010496 1194 return 64060L + (2 * BW_HUB_LS_SETUP) + BW_HOST_DELAY + tmp;
1da177e4
LT
1195 } else {
1196 tmp = (66700L * (31L + 10L * BitTime (bytecount))) / 1000L;
07010496 1197 return 64107L + (2 * BW_HUB_LS_SETUP) + BW_HOST_DELAY + tmp;
1da177e4
LT
1198 }
1199 case USB_SPEED_FULL: /* ISOC or INTR */
1200 if (isoc) {
1201 tmp = (8354L * (31L + 10L * BitTime (bytecount))) / 1000L;
07010496 1202 return ((is_input) ? 7268L : 6265L) + BW_HOST_DELAY + tmp;
1da177e4
LT
1203 } else {
1204 tmp = (8354L * (31L + 10L * BitTime (bytecount))) / 1000L;
07010496 1205 return 9107L + BW_HOST_DELAY + tmp;
1da177e4
LT
1206 }
1207 case USB_SPEED_HIGH: /* ISOC or INTR */
048cb21c 1208 /* FIXME adjust for input vs output */
1da177e4 1209 if (isoc)
498f78e6 1210 tmp = HS_NSECS_ISO (bytecount);
1da177e4 1211 else
498f78e6 1212 tmp = HS_NSECS (bytecount);
1da177e4
LT
1213 return tmp;
1214 default:
1215 pr_debug ("%s: bogus device speed!\n", usbcore_name);
1216 return -1;
1217 }
1218}
782e70c6 1219EXPORT_SYMBOL_GPL(usb_calc_bus_time);
1da177e4 1220
1da177e4
LT
1221
1222/*-------------------------------------------------------------------------*/
1223
1224/*
1225 * Generic HC operations.
1226 */
1227
1228/*-------------------------------------------------------------------------*/
1229
e9df41c5
AS
1230/**
1231 * usb_hcd_link_urb_to_ep - add an URB to its endpoint queue
1232 * @hcd: host controller to which @urb was submitted
1233 * @urb: URB being submitted
1234 *
1235 * Host controller drivers should call this routine in their enqueue()
1236 * method. The HCD's private spinlock must be held and interrupts must
1237 * be disabled. The actions carried out here are required for URB
1238 * submission, as well as for endpoint shutdown and for usb_kill_urb.
1239 *
626f090c 1240 * Return: 0 for no error, otherwise a negative error code (in which case
e9df41c5
AS
1241 * the enqueue() method must fail). If no error occurs but enqueue() fails
1242 * anyway, it must call usb_hcd_unlink_urb_from_ep() before releasing
1243 * the private spinlock and returning.
1244 */
1245int usb_hcd_link_urb_to_ep(struct usb_hcd *hcd, struct urb *urb)
1da177e4 1246{
9a9bf406 1247 int rc = 0;
1da177e4 1248
e9df41c5 1249 spin_lock(&hcd_urb_list_lock);
1da177e4 1250
9a9bf406 1251 /* Check that the URB isn't being killed */
49367d8f 1252 if (unlikely(atomic_read(&urb->reject))) {
9a9bf406
AS
1253 rc = -EPERM;
1254 goto done;
9f6a93f7 1255 }
1da177e4 1256
9a9bf406
AS
1257 if (unlikely(!urb->ep->enabled)) {
1258 rc = -ENOENT;
1259 goto done;
1260 }
1da177e4 1261
6840d255
AS
1262 if (unlikely(!urb->dev->can_submit)) {
1263 rc = -EHOSTUNREACH;
1264 goto done;
1265 }
1266
1da177e4 1267 /*
9a9bf406
AS
1268 * Check the host controller's state and add the URB to the
1269 * endpoint's queue.
1da177e4 1270 */
9b37596a 1271 if (HCD_RH_RUNNING(hcd)) {
eb231054 1272 urb->unlinked = 0;
9a9bf406 1273 list_add_tail(&urb->urb_list, &urb->ep->urb_list);
9b37596a 1274 } else {
9a9bf406
AS
1275 rc = -ESHUTDOWN;
1276 goto done;
1da177e4 1277 }
9a9bf406 1278 done:
e9df41c5 1279 spin_unlock(&hcd_urb_list_lock);
9a9bf406
AS
1280 return rc;
1281}
e9df41c5 1282EXPORT_SYMBOL_GPL(usb_hcd_link_urb_to_ep);
9a9bf406 1283
e9df41c5
AS
1284/**
1285 * usb_hcd_check_unlink_urb - check whether an URB may be unlinked
1286 * @hcd: host controller to which @urb was submitted
1287 * @urb: URB being checked for unlinkability
1288 * @status: error code to store in @urb if the unlink succeeds
1289 *
1290 * Host controller drivers should call this routine in their dequeue()
1291 * method. The HCD's private spinlock must be held and interrupts must
1292 * be disabled. The actions carried out here are required for making
1293 * sure than an unlink is valid.
1294 *
626f090c 1295 * Return: 0 for no error, otherwise a negative error code (in which case
e9df41c5
AS
1296 * the dequeue() method must fail). The possible error codes are:
1297 *
1298 * -EIDRM: @urb was not submitted or has already completed.
1299 * The completion function may not have been called yet.
1300 *
1301 * -EBUSY: @urb has already been unlinked.
1302 */
1303int usb_hcd_check_unlink_urb(struct usb_hcd *hcd, struct urb *urb,
9a9bf406
AS
1304 int status)
1305{
9a9bf406 1306 struct list_head *tmp;
9a9bf406
AS
1307
1308 /* insist the urb is still queued */
1309 list_for_each(tmp, &urb->ep->urb_list) {
1310 if (tmp == &urb->urb_list)
1311 break;
1312 }
e9df41c5
AS
1313 if (tmp != &urb->urb_list)
1314 return -EIDRM;
1da177e4 1315
9a9bf406
AS
1316 /* Any status except -EINPROGRESS means something already started to
1317 * unlink this URB from the hardware. So there's no more work to do.
1da177e4 1318 */
eb231054 1319 if (urb->unlinked)
e9df41c5 1320 return -EBUSY;
eb231054 1321 urb->unlinked = status;
e9df41c5 1322 return 0;
9a9bf406 1323}
e9df41c5 1324EXPORT_SYMBOL_GPL(usb_hcd_check_unlink_urb);
9a9bf406 1325
e9df41c5
AS
1326/**
1327 * usb_hcd_unlink_urb_from_ep - remove an URB from its endpoint queue
1328 * @hcd: host controller to which @urb was submitted
1329 * @urb: URB being unlinked
1330 *
1331 * Host controller drivers should call this routine before calling
1332 * usb_hcd_giveback_urb(). The HCD's private spinlock must be held and
1333 * interrupts must be disabled. The actions carried out here are required
1334 * for URB completion.
1335 */
1336void usb_hcd_unlink_urb_from_ep(struct usb_hcd *hcd, struct urb *urb)
9a9bf406 1337{
9a9bf406 1338 /* clear all state linking urb to this dev (and hcd) */
e9df41c5 1339 spin_lock(&hcd_urb_list_lock);
9a9bf406 1340 list_del_init(&urb->urb_list);
e9df41c5 1341 spin_unlock(&hcd_urb_list_lock);
9a9bf406 1342}
e9df41c5 1343EXPORT_SYMBOL_GPL(usb_hcd_unlink_urb_from_ep);
9a9bf406 1344
b3476675
MD
1345/*
1346 * Some usb host controllers can only perform dma using a small SRAM area.
1347 * The usb core itself is however optimized for host controllers that can dma
1348 * using regular system memory - like pci devices doing bus mastering.
1349 *
a6cd244b 1350 * To support host controllers with limited dma capabilities we provide dma
b3476675
MD
1351 * bounce buffers. This feature can be enabled using the HCD_LOCAL_MEM flag.
1352 * For this to work properly the host controller code must first use the
1353 * function dma_declare_coherent_memory() to point out which memory area
1354 * that should be used for dma allocations.
1355 *
1356 * The HCD_LOCAL_MEM flag then tells the usb code to allocate all data for
1357 * dma using dma_alloc_coherent() which in turn allocates from the memory
1358 * area pointed out with dma_declare_coherent_memory().
1359 *
1360 * So, to summarize...
1361 *
1362 * - We need "local" memory, canonical example being
1363 * a small SRAM on a discrete controller being the
1364 * only memory that the controller can read ...
1365 * (a) "normal" kernel memory is no good, and
1366 * (b) there's not enough to share
1367 *
1368 * - The only *portable* hook for such stuff in the
1369 * DMA framework is dma_declare_coherent_memory()
1370 *
1371 * - So we use that, even though the primary requirement
025d4430 1372 * is that the memory be "local" (hence addressable
b3476675
MD
1373 * by that device), not "coherent".
1374 *
1375 */
1376
1377static int hcd_alloc_coherent(struct usb_bus *bus,
1378 gfp_t mem_flags, dma_addr_t *dma_handle,
1379 void **vaddr_handle, size_t size,
1380 enum dma_data_direction dir)
1381{
1382 unsigned char *vaddr;
1383
4307a28e
AR
1384 if (*vaddr_handle == NULL) {
1385 WARN_ON_ONCE(1);
1386 return -EFAULT;
1387 }
1388
b3476675
MD
1389 vaddr = hcd_buffer_alloc(bus, size + sizeof(vaddr),
1390 mem_flags, dma_handle);
1391 if (!vaddr)
1392 return -ENOMEM;
1393
1394 /*
1395 * Store the virtual address of the buffer at the end
1396 * of the allocated dma buffer. The size of the buffer
1397 * may be uneven so use unaligned functions instead
1398 * of just rounding up. It makes sense to optimize for
1399 * memory footprint over access speed since the amount
1400 * of memory available for dma may be limited.
1401 */
1402 put_unaligned((unsigned long)*vaddr_handle,
1403 (unsigned long *)(vaddr + size));
1404
1405 if (dir == DMA_TO_DEVICE)
1406 memcpy(vaddr, *vaddr_handle, size);
1407
1408 *vaddr_handle = vaddr;
1409 return 0;
1410}
1411
1412static void hcd_free_coherent(struct usb_bus *bus, dma_addr_t *dma_handle,
1413 void **vaddr_handle, size_t size,
1414 enum dma_data_direction dir)
1415{
1416 unsigned char *vaddr = *vaddr_handle;
1417
1418 vaddr = (void *)get_unaligned((unsigned long *)(vaddr + size));
1419
1420 if (dir == DMA_FROM_DEVICE)
1421 memcpy(vaddr, *vaddr_handle, size);
1422
1423 hcd_buffer_free(bus, size + sizeof(vaddr), *vaddr_handle, *dma_handle);
1424
1425 *vaddr_handle = vaddr;
1426 *dma_handle = 0;
1427}
1428
c8cf203a 1429void usb_hcd_unmap_urb_setup_for_dma(struct usb_hcd *hcd, struct urb *urb)
ff9c895f 1430{
ff9c895f
AS
1431 if (urb->transfer_flags & URB_SETUP_MAP_SINGLE)
1432 dma_unmap_single(hcd->self.controller,
1433 urb->setup_dma,
1434 sizeof(struct usb_ctrlrequest),
1435 DMA_TO_DEVICE);
1436 else if (urb->transfer_flags & URB_SETUP_MAP_LOCAL)
1437 hcd_free_coherent(urb->dev->bus,
1438 &urb->setup_dma,
1439 (void **) &urb->setup_packet,
1440 sizeof(struct usb_ctrlrequest),
1441 DMA_TO_DEVICE);
1442
1dae423d
MF
1443 /* Make it safe to call this routine more than once */
1444 urb->transfer_flags &= ~(URB_SETUP_MAP_SINGLE | URB_SETUP_MAP_LOCAL);
1445}
c8cf203a 1446EXPORT_SYMBOL_GPL(usb_hcd_unmap_urb_setup_for_dma);
1dae423d 1447
2694a48d
RM
1448static void unmap_urb_for_dma(struct usb_hcd *hcd, struct urb *urb)
1449{
1450 if (hcd->driver->unmap_urb_for_dma)
1451 hcd->driver->unmap_urb_for_dma(hcd, urb);
1452 else
1453 usb_hcd_unmap_urb_for_dma(hcd, urb);
1454}
1455
c8cf203a 1456void usb_hcd_unmap_urb_for_dma(struct usb_hcd *hcd, struct urb *urb)
1dae423d
MF
1457{
1458 enum dma_data_direction dir;
1459
c8cf203a 1460 usb_hcd_unmap_urb_setup_for_dma(hcd, urb);
1dae423d 1461
ff9c895f
AS
1462 dir = usb_urb_dir_in(urb) ? DMA_FROM_DEVICE : DMA_TO_DEVICE;
1463 if (urb->transfer_flags & URB_DMA_MAP_SG)
1464 dma_unmap_sg(hcd->self.controller,
910f8d0c 1465 urb->sg,
ff9c895f
AS
1466 urb->num_sgs,
1467 dir);
1468 else if (urb->transfer_flags & URB_DMA_MAP_PAGE)
1469 dma_unmap_page(hcd->self.controller,
1470 urb->transfer_dma,
1471 urb->transfer_buffer_length,
1472 dir);
1473 else if (urb->transfer_flags & URB_DMA_MAP_SINGLE)
1474 dma_unmap_single(hcd->self.controller,
1475 urb->transfer_dma,
1476 urb->transfer_buffer_length,
1477 dir);
1478 else if (urb->transfer_flags & URB_MAP_LOCAL)
1479 hcd_free_coherent(urb->dev->bus,
1480 &urb->transfer_dma,
1481 &urb->transfer_buffer,
1482 urb->transfer_buffer_length,
1483 dir);
1484
1485 /* Make it safe to call this routine more than once */
1dae423d 1486 urb->transfer_flags &= ~(URB_DMA_MAP_SG | URB_DMA_MAP_PAGE |
ff9c895f
AS
1487 URB_DMA_MAP_SINGLE | URB_MAP_LOCAL);
1488}
c8cf203a 1489EXPORT_SYMBOL_GPL(usb_hcd_unmap_urb_for_dma);
ff9c895f 1490
b3476675
MD
1491static int map_urb_for_dma(struct usb_hcd *hcd, struct urb *urb,
1492 gfp_t mem_flags)
2694a48d
RM
1493{
1494 if (hcd->driver->map_urb_for_dma)
1495 return hcd->driver->map_urb_for_dma(hcd, urb, mem_flags);
1496 else
1497 return usb_hcd_map_urb_for_dma(hcd, urb, mem_flags);
1498}
1499
1500int usb_hcd_map_urb_for_dma(struct usb_hcd *hcd, struct urb *urb,
1501 gfp_t mem_flags)
9a9bf406 1502{
b3476675
MD
1503 enum dma_data_direction dir;
1504 int ret = 0;
1505
9a9bf406
AS
1506 /* Map the URB's buffers for DMA access.
1507 * Lower level HCD code should use *_dma exclusively,
e04748e3
SS
1508 * unless it uses pio or talks to another transport,
1509 * or uses the provided scatter gather list for bulk.
1da177e4 1510 */
b3476675 1511
85bcb5ee 1512 if (usb_endpoint_xfer_control(&urb->ep->desc)) {
07a8cdd2
AG
1513 if (hcd->self.uses_pio_for_control)
1514 return ret;
85e034fd 1515 if (hcd->self.uses_dma) {
b3476675 1516 urb->setup_dma = dma_map_single(
1da177e4
LT
1517 hcd->self.controller,
1518 urb->setup_packet,
b3476675 1519 sizeof(struct usb_ctrlrequest),
1da177e4 1520 DMA_TO_DEVICE);
85e034fd
LF
1521 if (dma_mapping_error(hcd->self.controller,
1522 urb->setup_dma))
1523 return -EAGAIN;
ff9c895f 1524 urb->transfer_flags |= URB_SETUP_MAP_SINGLE;
f537da68 1525 } else if (hcd->driver->flags & HCD_LOCAL_MEM) {
b3476675
MD
1526 ret = hcd_alloc_coherent(
1527 urb->dev->bus, mem_flags,
1528 &urb->setup_dma,
1529 (void **)&urb->setup_packet,
1530 sizeof(struct usb_ctrlrequest),
1531 DMA_TO_DEVICE);
ff9c895f
AS
1532 if (ret)
1533 return ret;
1534 urb->transfer_flags |= URB_SETUP_MAP_LOCAL;
f537da68 1535 }
b3476675
MD
1536 }
1537
1538 dir = usb_urb_dir_in(urb) ? DMA_FROM_DEVICE : DMA_TO_DEVICE;
ff9c895f 1539 if (urb->transfer_buffer_length != 0
b3476675 1540 && !(urb->transfer_flags & URB_NO_TRANSFER_DMA_MAP)) {
85e034fd 1541 if (hcd->self.uses_dma) {
ff9c895f 1542 if (urb->num_sgs) {
fe2072cc
HG
1543 int n;
1544
1545 /* We don't support sg for isoc transfers ! */
1546 if (usb_endpoint_xfer_isoc(&urb->ep->desc)) {
1547 WARN_ON(1);
1548 return -EINVAL;
1549 }
1550
1551 n = dma_map_sg(
ff9c895f 1552 hcd->self.controller,
910f8d0c 1553 urb->sg,
ff9c895f
AS
1554 urb->num_sgs,
1555 dir);
1556 if (n <= 0)
1557 ret = -EAGAIN;
1558 else
1559 urb->transfer_flags |= URB_DMA_MAP_SG;
bc677d5b
CL
1560 urb->num_mapped_sgs = n;
1561 if (n != urb->num_sgs)
ff9c895f
AS
1562 urb->transfer_flags |=
1563 URB_DMA_SG_COMBINED;
ff9c895f 1564 } else if (urb->sg) {
910f8d0c 1565 struct scatterlist *sg = urb->sg;
ff9c895f
AS
1566 urb->transfer_dma = dma_map_page(
1567 hcd->self.controller,
1568 sg_page(sg),
1569 sg->offset,
1570 urb->transfer_buffer_length,
1571 dir);
1572 if (dma_mapping_error(hcd->self.controller,
85e034fd 1573 urb->transfer_dma))
ff9c895f
AS
1574 ret = -EAGAIN;
1575 else
1576 urb->transfer_flags |= URB_DMA_MAP_PAGE;
29d2fef8
DW
1577 } else if (is_vmalloc_addr(urb->transfer_buffer)) {
1578 WARN_ONCE(1, "transfer buffer not dma capable\n");
1579 ret = -EAGAIN;
ff9c895f
AS
1580 } else {
1581 urb->transfer_dma = dma_map_single(
1582 hcd->self.controller,
1583 urb->transfer_buffer,
1584 urb->transfer_buffer_length,
1585 dir);
1586 if (dma_mapping_error(hcd->self.controller,
1587 urb->transfer_dma))
1588 ret = -EAGAIN;
1589 else
1590 urb->transfer_flags |= URB_DMA_MAP_SINGLE;
1591 }
85e034fd 1592 } else if (hcd->driver->flags & HCD_LOCAL_MEM) {
b3476675
MD
1593 ret = hcd_alloc_coherent(
1594 urb->dev->bus, mem_flags,
1595 &urb->transfer_dma,
1596 &urb->transfer_buffer,
1597 urb->transfer_buffer_length,
1598 dir);
ff9c895f
AS
1599 if (ret == 0)
1600 urb->transfer_flags |= URB_MAP_LOCAL;
b3476675 1601 }
ff9c895f
AS
1602 if (ret && (urb->transfer_flags & (URB_SETUP_MAP_SINGLE |
1603 URB_SETUP_MAP_LOCAL)))
c8cf203a 1604 usb_hcd_unmap_urb_for_dma(hcd, urb);
1da177e4 1605 }
b3476675 1606 return ret;
9a9bf406 1607}
2694a48d 1608EXPORT_SYMBOL_GPL(usb_hcd_map_urb_for_dma);
1da177e4 1609
9a9bf406
AS
1610/*-------------------------------------------------------------------------*/
1611
1612/* may be called in any context with a valid urb->dev usecount
1613 * caller surrenders "ownership" of urb
1614 * expects usb_submit_urb() to have sanity checked and conditioned all
1615 * inputs in the urb
1616 */
1617int usb_hcd_submit_urb (struct urb *urb, gfp_t mem_flags)
1618{
1619 int status;
1620 struct usb_hcd *hcd = bus_to_hcd(urb->dev->bus);
1621
1622 /* increment urb's reference count as part of giving it to the HCD
1623 * (which will control it). HCD guarantees that it either returns
1624 * an error or calls giveback(), but not both.
1625 */
1626 usb_get_urb(urb);
1627 atomic_inc(&urb->use_count);
4d59d8a1 1628 atomic_inc(&urb->dev->urbnum);
9a9bf406
AS
1629 usbmon_urb_submit(&hcd->self, urb);
1630
1631 /* NOTE requirements on root-hub callers (usbfs and the hub
1632 * driver, for now): URBs' urb->transfer_buffer must be
1633 * valid and usb_buffer_{sync,unmap}() not be needed, since
1634 * they could clobber root hub response data. Also, control
1635 * URBs must be submitted in process context with interrupts
1636 * enabled.
1637 */
b3476675 1638
ff9c895f 1639 if (is_root_hub(urb->dev)) {
e9df41c5 1640 status = rh_urb_enqueue(hcd, urb);
ff9c895f
AS
1641 } else {
1642 status = map_urb_for_dma(hcd, urb, mem_flags);
1643 if (likely(status == 0)) {
1644 status = hcd->driver->urb_enqueue(hcd, urb, mem_flags);
1645 if (unlikely(status))
2694a48d 1646 unmap_urb_for_dma(hcd, urb);
ff9c895f
AS
1647 }
1648 }
9a9bf406
AS
1649
1650 if (unlikely(status)) {
1da177e4 1651 usbmon_urb_submit_error(&hcd->self, urb, status);
b0d9efba 1652 urb->hcpriv = NULL;
9a9bf406
AS
1653 INIT_LIST_HEAD(&urb->urb_list);
1654 atomic_dec(&urb->use_count);
4d59d8a1 1655 atomic_dec(&urb->dev->urbnum);
49367d8f 1656 if (atomic_read(&urb->reject))
9a9bf406
AS
1657 wake_up(&usb_kill_urb_queue);
1658 usb_put_urb(urb);
1da177e4
LT
1659 }
1660 return status;
1661}
1662
1663/*-------------------------------------------------------------------------*/
1664
1da177e4
LT
1665/* this makes the hcd giveback() the urb more quickly, by kicking it
1666 * off hardware queues (which may take a while) and returning it as
1667 * soon as practical. we've already set up the urb's return status,
1668 * but we can't know if the callback completed already.
1669 */
e9df41c5 1670static int unlink1(struct usb_hcd *hcd, struct urb *urb, int status)
1da177e4
LT
1671{
1672 int value;
1673
809a58b8 1674 if (is_root_hub(urb->dev))
e9df41c5 1675 value = usb_rh_urb_dequeue(hcd, urb, status);
1da177e4
LT
1676 else {
1677
1678 /* The only reason an HCD might fail this call is if
1679 * it has not yet fully queued the urb to begin with.
1680 * Such failures should be harmless. */
e9df41c5 1681 value = hcd->driver->urb_dequeue(hcd, urb, status);
1da177e4 1682 }
1da177e4
LT
1683 return value;
1684}
1685
1686/*
1687 * called in any context
1688 *
1689 * caller guarantees urb won't be recycled till both unlink()
1690 * and the urb's completion function return
1691 */
a6d2bb9f 1692int usb_hcd_unlink_urb (struct urb *urb, int status)
1da177e4 1693{
9a9bf406 1694 struct usb_hcd *hcd;
c9919790 1695 struct usb_device *udev = urb->dev;
cde217a5
AS
1696 int retval = -EIDRM;
1697 unsigned long flags;
1da177e4 1698
cde217a5
AS
1699 /* Prevent the device and bus from going away while
1700 * the unlink is carried out. If they are already gone
1701 * then urb->use_count must be 0, since disconnected
1702 * devices can't have any active URBs.
1703 */
1704 spin_lock_irqsave(&hcd_urb_unlink_lock, flags);
1705 if (atomic_read(&urb->use_count) > 0) {
1706 retval = 0;
c9919790 1707 usb_get_dev(udev);
cde217a5
AS
1708 }
1709 spin_unlock_irqrestore(&hcd_urb_unlink_lock, flags);
1710 if (retval == 0) {
1711 hcd = bus_to_hcd(urb->dev->bus);
1712 retval = unlink1(hcd, urb, status);
c9919790
AS
1713 if (retval == 0)
1714 retval = -EINPROGRESS;
1715 else if (retval != -EIDRM && retval != -EBUSY)
1716 dev_dbg(&udev->dev, "hcd_unlink_urb %p fail %d\n",
1717 urb, retval);
1718 usb_put_dev(udev);
cde217a5 1719 }
1da177e4
LT
1720 return retval;
1721}
1722
1723/*-------------------------------------------------------------------------*/
1724
94dfd7ed
ML
1725static void __usb_hcd_giveback_urb(struct urb *urb)
1726{
1727 struct usb_hcd *hcd = bus_to_hcd(urb->dev->bus);
6ec4147e 1728 struct usb_anchor *anchor = urb->anchor;
94dfd7ed
ML
1729 int status = urb->unlinked;
1730 unsigned long flags;
1731
1732 urb->hcpriv = NULL;
1733 if (unlikely((urb->transfer_flags & URB_SHORT_NOT_OK) &&
1734 urb->actual_length < urb->transfer_buffer_length &&
1735 !status))
1736 status = -EREMOTEIO;
1737
1738 unmap_urb_for_dma(hcd, urb);
1739 usbmon_urb_complete(&hcd->self, urb, status);
6ec4147e 1740 usb_anchor_suspend_wakeups(anchor);
94dfd7ed 1741 usb_unanchor_urb(urb);
0cfbd328
MS
1742 if (likely(status == 0))
1743 usb_led_activity(USB_LED_EVENT_HOST);
94dfd7ed
ML
1744
1745 /* pass ownership to the completion handler */
1746 urb->status = status;
1747
1748 /*
1749 * We disable local IRQs here avoid possible deadlock because
1750 * drivers may call spin_lock() to hold lock which might be
1751 * acquired in one hard interrupt handler.
1752 *
1753 * The local_irq_save()/local_irq_restore() around complete()
1754 * will be removed if current USB drivers have been cleaned up
1755 * and no one may trigger the above deadlock situation when
1756 * running complete() in tasklet.
1757 */
1758 local_irq_save(flags);
1759 urb->complete(urb);
1760 local_irq_restore(flags);
1761
6ec4147e 1762 usb_anchor_resume_wakeups(anchor);
94dfd7ed
ML
1763 atomic_dec(&urb->use_count);
1764 if (unlikely(atomic_read(&urb->reject)))
1765 wake_up(&usb_kill_urb_queue);
1766 usb_put_urb(urb);
1767}
1768
1769static void usb_giveback_urb_bh(unsigned long param)
1770{
1771 struct giveback_urb_bh *bh = (struct giveback_urb_bh *)param;
1772 struct list_head local_list;
1773
1774 spin_lock_irq(&bh->lock);
1775 bh->running = true;
1776 restart:
1777 list_replace_init(&bh->head, &local_list);
1778 spin_unlock_irq(&bh->lock);
1779
1780 while (!list_empty(&local_list)) {
1781 struct urb *urb;
1782
1783 urb = list_entry(local_list.next, struct urb, urb_list);
1784 list_del_init(&urb->urb_list);
c7ccde6e 1785 bh->completing_ep = urb->ep;
94dfd7ed 1786 __usb_hcd_giveback_urb(urb);
c7ccde6e 1787 bh->completing_ep = NULL;
94dfd7ed
ML
1788 }
1789
1790 /* check if there are new URBs to giveback */
1791 spin_lock_irq(&bh->lock);
1792 if (!list_empty(&bh->head))
1793 goto restart;
1794 bh->running = false;
1795 spin_unlock_irq(&bh->lock);
1796}
1797
32aca560
AS
1798/**
1799 * usb_hcd_giveback_urb - return URB from HCD to device driver
1800 * @hcd: host controller returning the URB
1801 * @urb: urb being returned to the USB device driver.
4a00027d 1802 * @status: completion status code for the URB.
32aca560
AS
1803 * Context: in_interrupt()
1804 *
1805 * This hands the URB from HCD to its USB device driver, using its
1806 * completion function. The HCD has freed all per-urb resources
1807 * (and is done using urb->hcpriv). It also released all HCD locks;
1808 * the device driver won't cause problems if it frees, modifies,
1809 * or resubmits this URB.
eb231054 1810 *
4a00027d 1811 * If @urb was unlinked, the value of @status will be overridden by
eb231054
AS
1812 * @urb->unlinked. Erroneous short transfers are detected in case
1813 * the HCD hasn't checked for them.
32aca560 1814 */
4a00027d 1815void usb_hcd_giveback_urb(struct usb_hcd *hcd, struct urb *urb, int status)
32aca560 1816{
94dfd7ed
ML
1817 struct giveback_urb_bh *bh;
1818 bool running, high_prio_bh;
32aca560 1819
94dfd7ed
ML
1820 /* pass status to tasklet via unlinked */
1821 if (likely(!urb->unlinked))
1822 urb->unlinked = status;
1f5a3d0f 1823
94dfd7ed
ML
1824 if (!hcd_giveback_urb_in_bh(hcd) && !is_root_hub(urb->dev)) {
1825 __usb_hcd_giveback_urb(urb);
1826 return;
1827 }
1828
1829 if (usb_pipeisoc(urb->pipe) || usb_pipeint(urb->pipe)) {
1830 bh = &hcd->high_prio_bh;
1831 high_prio_bh = true;
1832 } else {
1833 bh = &hcd->low_prio_bh;
1834 high_prio_bh = false;
1835 }
1836
1837 spin_lock(&bh->lock);
1838 list_add_tail(&urb->urb_list, &bh->head);
1839 running = bh->running;
1840 spin_unlock(&bh->lock);
1841
1842 if (running)
1843 ;
1844 else if (high_prio_bh)
1845 tasklet_hi_schedule(&bh->bh);
1846 else
1847 tasklet_schedule(&bh->bh);
32aca560 1848}
782e70c6 1849EXPORT_SYMBOL_GPL(usb_hcd_giveback_urb);
32aca560
AS
1850
1851/*-------------------------------------------------------------------------*/
1852
95cf82f9
AS
1853/* Cancel all URBs pending on this endpoint and wait for the endpoint's
1854 * queue to drain completely. The caller must first insure that no more
1855 * URBs can be submitted for this endpoint.
1da177e4 1856 */
95cf82f9 1857void usb_hcd_flush_endpoint(struct usb_device *udev,
a6d2bb9f 1858 struct usb_host_endpoint *ep)
1da177e4
LT
1859{
1860 struct usb_hcd *hcd;
1861 struct urb *urb;
1862
95cf82f9
AS
1863 if (!ep)
1864 return;
9a9bf406 1865 might_sleep();
17200583 1866 hcd = bus_to_hcd(udev->bus);
1da177e4 1867
95cf82f9 1868 /* No more submits can occur */
9a9bf406 1869 spin_lock_irq(&hcd_urb_list_lock);
ddc1fd6a 1870rescan:
1da177e4 1871 list_for_each_entry (urb, &ep->urb_list, urb_list) {
5e60a161 1872 int is_in;
1da177e4 1873
eb231054 1874 if (urb->unlinked)
1da177e4
LT
1875 continue;
1876 usb_get_urb (urb);
5e60a161 1877 is_in = usb_urb_dir_in(urb);
809a58b8 1878 spin_unlock(&hcd_urb_list_lock);
1da177e4 1879
e9df41c5
AS
1880 /* kick hcd */
1881 unlink1(hcd, urb, -ESHUTDOWN);
1882 dev_dbg (hcd->self.controller,
1883 "shutdown urb %p ep%d%s%s\n",
1884 urb, usb_endpoint_num(&ep->desc),
1885 is_in ? "in" : "out",
1886 ({ char *s;
1887
1888 switch (usb_endpoint_type(&ep->desc)) {
1889 case USB_ENDPOINT_XFER_CONTROL:
1890 s = ""; break;
1891 case USB_ENDPOINT_XFER_BULK:
1892 s = "-bulk"; break;
1893 case USB_ENDPOINT_XFER_INT:
1894 s = "-intr"; break;
1895 default:
14557359 1896 s = "-iso"; break;
e9df41c5
AS
1897 };
1898 s;
1899 }));
1da177e4
LT
1900 usb_put_urb (urb);
1901
1902 /* list contents may have changed */
ddc1fd6a 1903 spin_lock(&hcd_urb_list_lock);
1da177e4
LT
1904 goto rescan;
1905 }
9a9bf406 1906 spin_unlock_irq(&hcd_urb_list_lock);
1da177e4 1907
95cf82f9 1908 /* Wait until the endpoint queue is completely empty */
455b25fb 1909 while (!list_empty (&ep->urb_list)) {
809a58b8 1910 spin_lock_irq(&hcd_urb_list_lock);
455b25fb
AS
1911
1912 /* The list may have changed while we acquired the spinlock */
1913 urb = NULL;
1914 if (!list_empty (&ep->urb_list)) {
1915 urb = list_entry (ep->urb_list.prev, struct urb,
1916 urb_list);
1917 usb_get_urb (urb);
1918 }
809a58b8 1919 spin_unlock_irq(&hcd_urb_list_lock);
455b25fb
AS
1920
1921 if (urb) {
1922 usb_kill_urb (urb);
1923 usb_put_urb (urb);
1924 }
1925 }
1da177e4
LT
1926}
1927
3f0479e0 1928/**
70445ae6
RD
1929 * usb_hcd_alloc_bandwidth - check whether a new bandwidth setting exceeds
1930 * the bus bandwidth
1931 * @udev: target &usb_device
3f0479e0
SS
1932 * @new_config: new configuration to install
1933 * @cur_alt: the current alternate interface setting
1934 * @new_alt: alternate interface setting that is being installed
1935 *
1936 * To change configurations, pass in the new configuration in new_config,
1937 * and pass NULL for cur_alt and new_alt.
1938 *
1939 * To reset a device's configuration (put the device in the ADDRESSED state),
1940 * pass in NULL for new_config, cur_alt, and new_alt.
1941 *
1942 * To change alternate interface settings, pass in NULL for new_config,
1943 * pass in the current alternate interface setting in cur_alt,
1944 * and pass in the new alternate interface setting in new_alt.
1945 *
626f090c 1946 * Return: An error if the requested bandwidth change exceeds the
3f0479e0 1947 * bus bandwidth or host controller internal resources.
79abb1ab 1948 */
3f0479e0 1949int usb_hcd_alloc_bandwidth(struct usb_device *udev,
79abb1ab 1950 struct usb_host_config *new_config,
3f0479e0
SS
1951 struct usb_host_interface *cur_alt,
1952 struct usb_host_interface *new_alt)
79abb1ab
SS
1953{
1954 int num_intfs, i, j;
576a362a 1955 struct usb_host_interface *alt = NULL;
79abb1ab
SS
1956 int ret = 0;
1957 struct usb_hcd *hcd;
1958 struct usb_host_endpoint *ep;
1959
1960 hcd = bus_to_hcd(udev->bus);
1961 if (!hcd->driver->check_bandwidth)
1962 return 0;
1963
1964 /* Configuration is being removed - set configuration 0 */
3f0479e0 1965 if (!new_config && !cur_alt) {
79abb1ab
SS
1966 for (i = 1; i < 16; ++i) {
1967 ep = udev->ep_out[i];
1968 if (ep)
1969 hcd->driver->drop_endpoint(hcd, udev, ep);
1970 ep = udev->ep_in[i];
1971 if (ep)
1972 hcd->driver->drop_endpoint(hcd, udev, ep);
1973 }
1974 hcd->driver->check_bandwidth(hcd, udev);
1975 return 0;
1976 }
1977 /* Check if the HCD says there's enough bandwidth. Enable all endpoints
1978 * each interface's alt setting 0 and ask the HCD to check the bandwidth
1979 * of the bus. There will always be bandwidth for endpoint 0, so it's
1980 * ok to exclude it.
1981 */
1982 if (new_config) {
1983 num_intfs = new_config->desc.bNumInterfaces;
1984 /* Remove endpoints (except endpoint 0, which is always on the
1985 * schedule) from the old config from the schedule
1986 */
1987 for (i = 1; i < 16; ++i) {
1988 ep = udev->ep_out[i];
1989 if (ep) {
1990 ret = hcd->driver->drop_endpoint(hcd, udev, ep);
1991 if (ret < 0)
1992 goto reset;
1993 }
1994 ep = udev->ep_in[i];
1995 if (ep) {
1996 ret = hcd->driver->drop_endpoint(hcd, udev, ep);
1997 if (ret < 0)
1998 goto reset;
1999 }
2000 }
2001 for (i = 0; i < num_intfs; ++i) {
d837e219
SS
2002 struct usb_host_interface *first_alt;
2003 int iface_num;
2004
2005 first_alt = &new_config->intf_cache[i]->altsetting[0];
2006 iface_num = first_alt->desc.bInterfaceNumber;
91017f9c 2007 /* Set up endpoints for alternate interface setting 0 */
d837e219 2008 alt = usb_find_alt_setting(new_config, iface_num, 0);
3f0479e0
SS
2009 if (!alt)
2010 /* No alt setting 0? Pick the first setting. */
d837e219 2011 alt = first_alt;
3f0479e0 2012
79abb1ab
SS
2013 for (j = 0; j < alt->desc.bNumEndpoints; j++) {
2014 ret = hcd->driver->add_endpoint(hcd, udev, &alt->endpoint[j]);
2015 if (ret < 0)
2016 goto reset;
2017 }
2018 }
2019 }
3f0479e0 2020 if (cur_alt && new_alt) {
04a723ea
SS
2021 struct usb_interface *iface = usb_ifnum_to_if(udev,
2022 cur_alt->desc.bInterfaceNumber);
2023
8a9af4fd
SS
2024 if (!iface)
2025 return -EINVAL;
04a723ea
SS
2026 if (iface->resetting_device) {
2027 /*
2028 * The USB core just reset the device, so the xHCI host
2029 * and the device will think alt setting 0 is installed.
2030 * However, the USB core will pass in the alternate
2031 * setting installed before the reset as cur_alt. Dig
2032 * out the alternate setting 0 structure, or the first
2033 * alternate setting if a broken device doesn't have alt
2034 * setting 0.
2035 */
2036 cur_alt = usb_altnum_to_altsetting(iface, 0);
2037 if (!cur_alt)
2038 cur_alt = &iface->altsetting[0];
2039 }
2040
3f0479e0
SS
2041 /* Drop all the endpoints in the current alt setting */
2042 for (i = 0; i < cur_alt->desc.bNumEndpoints; i++) {
2043 ret = hcd->driver->drop_endpoint(hcd, udev,
2044 &cur_alt->endpoint[i]);
2045 if (ret < 0)
2046 goto reset;
2047 }
2048 /* Add all the endpoints in the new alt setting */
2049 for (i = 0; i < new_alt->desc.bNumEndpoints; i++) {
2050 ret = hcd->driver->add_endpoint(hcd, udev,
2051 &new_alt->endpoint[i]);
2052 if (ret < 0)
2053 goto reset;
2054 }
2055 }
79abb1ab
SS
2056 ret = hcd->driver->check_bandwidth(hcd, udev);
2057reset:
2058 if (ret < 0)
2059 hcd->driver->reset_bandwidth(hcd, udev);
2060 return ret;
2061}
2062
95cf82f9
AS
2063/* Disables the endpoint: synchronizes with the hcd to make sure all
2064 * endpoint state is gone from hardware. usb_hcd_flush_endpoint() must
2065 * have been called previously. Use for set_configuration, set_interface,
2066 * driver removal, physical disconnect.
2067 *
2068 * example: a qh stored in ep->hcpriv, holding state related to endpoint
2069 * type, maxpacket size, toggle, halt status, and scheduling.
2070 */
2071void usb_hcd_disable_endpoint(struct usb_device *udev,
2072 struct usb_host_endpoint *ep)
2073{
2074 struct usb_hcd *hcd;
2075
2076 might_sleep();
2077 hcd = bus_to_hcd(udev->bus);
2078 if (hcd->driver->endpoint_disable)
2079 hcd->driver->endpoint_disable(hcd, ep);
2080}
2081
3444b26a
DV
2082/**
2083 * usb_hcd_reset_endpoint - reset host endpoint state
2084 * @udev: USB device.
2085 * @ep: the endpoint to reset.
2086 *
2087 * Resets any host endpoint state such as the toggle bit, sequence
2088 * number and current window.
2089 */
2090void usb_hcd_reset_endpoint(struct usb_device *udev,
2091 struct usb_host_endpoint *ep)
2092{
2093 struct usb_hcd *hcd = bus_to_hcd(udev->bus);
2094
2095 if (hcd->driver->endpoint_reset)
2096 hcd->driver->endpoint_reset(hcd, ep);
2097 else {
2098 int epnum = usb_endpoint_num(&ep->desc);
2099 int is_out = usb_endpoint_dir_out(&ep->desc);
2100 int is_control = usb_endpoint_xfer_control(&ep->desc);
2101
2102 usb_settoggle(udev, epnum, is_out, 0);
2103 if (is_control)
2104 usb_settoggle(udev, epnum, !is_out, 0);
2105 }
2106}
2107
eab1cafc
SS
2108/**
2109 * usb_alloc_streams - allocate bulk endpoint stream IDs.
2110 * @interface: alternate setting that includes all endpoints.
2111 * @eps: array of endpoints that need streams.
2112 * @num_eps: number of endpoints in the array.
2113 * @num_streams: number of streams to allocate.
2114 * @mem_flags: flags hcd should use to allocate memory.
2115 *
626f090c 2116 * Sets up a group of bulk endpoints to have @num_streams stream IDs available.
eab1cafc
SS
2117 * Drivers may queue multiple transfers to different stream IDs, which may
2118 * complete in a different order than they were queued.
626f090c
YB
2119 *
2120 * Return: On success, the number of allocated streams. On failure, a negative
2121 * error code.
eab1cafc
SS
2122 */
2123int usb_alloc_streams(struct usb_interface *interface,
2124 struct usb_host_endpoint **eps, unsigned int num_eps,
2125 unsigned int num_streams, gfp_t mem_flags)
2126{
2127 struct usb_hcd *hcd;
2128 struct usb_device *dev;
8d4f70b2 2129 int i, ret;
eab1cafc
SS
2130
2131 dev = interface_to_usbdev(interface);
2132 hcd = bus_to_hcd(dev->bus);
2133 if (!hcd->driver->alloc_streams || !hcd->driver->free_streams)
2134 return -EINVAL;
8a1b2725 2135 if (dev->speed < USB_SPEED_SUPER)
eab1cafc 2136 return -EINVAL;
90a646c7
HG
2137 if (dev->state < USB_STATE_CONFIGURED)
2138 return -ENODEV;
eab1cafc 2139
8d4f70b2
HG
2140 for (i = 0; i < num_eps; i++) {
2141 /* Streams only apply to bulk endpoints. */
eab1cafc
SS
2142 if (!usb_endpoint_xfer_bulk(&eps[i]->desc))
2143 return -EINVAL;
8d4f70b2
HG
2144 /* Re-alloc is not allowed */
2145 if (eps[i]->streams)
2146 return -EINVAL;
2147 }
eab1cafc 2148
8d4f70b2 2149 ret = hcd->driver->alloc_streams(hcd, dev, eps, num_eps,
eab1cafc 2150 num_streams, mem_flags);
8d4f70b2
HG
2151 if (ret < 0)
2152 return ret;
2153
2154 for (i = 0; i < num_eps; i++)
2155 eps[i]->streams = ret;
2156
2157 return ret;
eab1cafc
SS
2158}
2159EXPORT_SYMBOL_GPL(usb_alloc_streams);
2160
2161/**
2162 * usb_free_streams - free bulk endpoint stream IDs.
2163 * @interface: alternate setting that includes all endpoints.
2164 * @eps: array of endpoints to remove streams from.
2165 * @num_eps: number of endpoints in the array.
2166 * @mem_flags: flags hcd should use to allocate memory.
2167 *
2168 * Reverts a group of bulk endpoints back to not using stream IDs.
2169 * Can fail if we are given bad arguments, or HCD is broken.
6c74dada 2170 *
12d4bbce 2171 * Return: 0 on success. On failure, a negative error code.
eab1cafc 2172 */
6c74dada 2173int usb_free_streams(struct usb_interface *interface,
eab1cafc
SS
2174 struct usb_host_endpoint **eps, unsigned int num_eps,
2175 gfp_t mem_flags)
2176{
2177 struct usb_hcd *hcd;
2178 struct usb_device *dev;
8d4f70b2 2179 int i, ret;
eab1cafc
SS
2180
2181 dev = interface_to_usbdev(interface);
2182 hcd = bus_to_hcd(dev->bus);
8a1b2725 2183 if (dev->speed < USB_SPEED_SUPER)
6c74dada 2184 return -EINVAL;
eab1cafc 2185
8d4f70b2 2186 /* Double-free is not allowed */
eab1cafc 2187 for (i = 0; i < num_eps; i++)
8d4f70b2 2188 if (!eps[i] || !eps[i]->streams)
6c74dada 2189 return -EINVAL;
eab1cafc 2190
8d4f70b2
HG
2191 ret = hcd->driver->free_streams(hcd, dev, eps, num_eps, mem_flags);
2192 if (ret < 0)
2193 return ret;
2194
2195 for (i = 0; i < num_eps; i++)
2196 eps[i]->streams = 0;
2197
2198 return ret;
eab1cafc
SS
2199}
2200EXPORT_SYMBOL_GPL(usb_free_streams);
2201
cde217a5
AS
2202/* Protect against drivers that try to unlink URBs after the device
2203 * is gone, by waiting until all unlinks for @udev are finished.
2204 * Since we don't currently track URBs by device, simply wait until
2205 * nothing is running in the locked region of usb_hcd_unlink_urb().
2206 */
2207void usb_hcd_synchronize_unlinks(struct usb_device *udev)
2208{
2209 spin_lock_irq(&hcd_urb_unlink_lock);
2210 spin_unlock_irq(&hcd_urb_unlink_lock);
2211}
2212
1da177e4
LT
2213/*-------------------------------------------------------------------------*/
2214
32aca560
AS
2215/* called in any context */
2216int usb_hcd_get_frame_number (struct usb_device *udev)
2217{
2218 struct usb_hcd *hcd = bus_to_hcd(udev->bus);
2219
9b37596a 2220 if (!HCD_RH_RUNNING(hcd))
32aca560
AS
2221 return -ESHUTDOWN;
2222 return hcd->driver->get_frame_number (hcd);
2223}
2224
2225/*-------------------------------------------------------------------------*/
2226
9293677a 2227#ifdef CONFIG_PM
1da177e4 2228
65bfd296 2229int hcd_bus_suspend(struct usb_device *rhdev, pm_message_t msg)
1da177e4 2230{
6ae706ae 2231 struct usb_hcd *hcd = bus_to_hcd(rhdev->bus);
686314cf
AS
2232 int status;
2233 int old_state = hcd->state;
1da177e4 2234
30b1a7a3
AS
2235 dev_dbg(&rhdev->dev, "bus %ssuspend, wakeup %d\n",
2236 (PMSG_IS_AUTO(msg) ? "auto-" : ""),
2237 rhdev->do_remote_wakeup);
9b37596a
AS
2238 if (HCD_DEAD(hcd)) {
2239 dev_dbg(&rhdev->dev, "skipped %s of dead bus\n", "suspend");
2240 return 0;
2241 }
2242
686314cf
AS
2243 if (!hcd->driver->bus_suspend) {
2244 status = -ENOENT;
2245 } else {
9b37596a 2246 clear_bit(HCD_FLAG_RH_RUNNING, &hcd->flags);
686314cf
AS
2247 hcd->state = HC_STATE_QUIESCING;
2248 status = hcd->driver->bus_suspend(hcd);
2249 }
2250 if (status == 0) {
2251 usb_set_device_state(rhdev, USB_STATE_SUSPENDED);
9293677a 2252 hcd->state = HC_STATE_SUSPENDED;
879d38e6
AS
2253
2254 /* Did we race with a root-hub wakeup event? */
2255 if (rhdev->do_remote_wakeup) {
2256 char buffer[6];
2257
2258 status = hcd->driver->hub_status_data(hcd, buffer);
2259 if (status != 0) {
2260 dev_dbg(&rhdev->dev, "suspend raced with wakeup event\n");
2261 hcd_bus_resume(rhdev, PMSG_AUTO_RESUME);
2262 status = -EBUSY;
2263 }
2264 }
686314cf 2265 } else {
9b37596a
AS
2266 spin_lock_irq(&hcd_root_hub_lock);
2267 if (!HCD_DEAD(hcd)) {
2268 set_bit(HCD_FLAG_RH_RUNNING, &hcd->flags);
2269 hcd->state = old_state;
2270 }
2271 spin_unlock_irq(&hcd_root_hub_lock);
686314cf 2272 dev_dbg(&rhdev->dev, "bus %s fail, err %d\n",
9293677a 2273 "suspend", status);
686314cf 2274 }
9293677a 2275 return status;
1da177e4
LT
2276}
2277
65bfd296 2278int hcd_bus_resume(struct usb_device *rhdev, pm_message_t msg)
1da177e4 2279{
6ae706ae 2280 struct usb_hcd *hcd = bus_to_hcd(rhdev->bus);
686314cf 2281 int status;
cfa59dab 2282 int old_state = hcd->state;
1da177e4 2283
30b1a7a3
AS
2284 dev_dbg(&rhdev->dev, "usb %sresume\n",
2285 (PMSG_IS_AUTO(msg) ? "auto-" : ""));
9b37596a
AS
2286 if (HCD_DEAD(hcd)) {
2287 dev_dbg(&rhdev->dev, "skipped %s of dead bus\n", "resume");
2288 return 0;
2289 }
0c0382e3 2290 if (!hcd->driver->bus_resume)
9293677a 2291 return -ENOENT;
9b37596a 2292 if (HCD_RH_RUNNING(hcd))
979d5199 2293 return 0;
686314cf 2294
9293677a 2295 hcd->state = HC_STATE_RESUMING;
686314cf 2296 status = hcd->driver->bus_resume(hcd);
bf3d7d40 2297 clear_bit(HCD_FLAG_WAKEUP_PENDING, &hcd->flags);
686314cf 2298 if (status == 0) {
bfd1e910
AS
2299 struct usb_device *udev;
2300 int port1;
2301
9b37596a
AS
2302 spin_lock_irq(&hcd_root_hub_lock);
2303 if (!HCD_DEAD(hcd)) {
2304 usb_set_device_state(rhdev, rhdev->actconfig
2305 ? USB_STATE_CONFIGURED
2306 : USB_STATE_ADDRESS);
2307 set_bit(HCD_FLAG_RH_RUNNING, &hcd->flags);
2308 hcd->state = HC_STATE_RUNNING;
2309 }
2310 spin_unlock_irq(&hcd_root_hub_lock);
bfd1e910
AS
2311
2312 /*
2313 * Check whether any of the enabled ports on the root hub are
2314 * unsuspended. If they are then a TRSMRCY delay is needed
2315 * (this is what the USB-2 spec calls a "global resume").
2316 * Otherwise we can skip the delay.
2317 */
2318 usb_hub_for_each_child(rhdev, port1, udev) {
2319 if (udev->state != USB_STATE_NOTATTACHED &&
2320 !udev->port_is_suspended) {
2321 usleep_range(10000, 11000); /* TRSMRCY */
2322 break;
2323 }
2324 }
686314cf 2325 } else {
cfa59dab 2326 hcd->state = old_state;
686314cf 2327 dev_dbg(&rhdev->dev, "bus %s fail, err %d\n",
9293677a 2328 "resume", status);
cfa59dab
AS
2329 if (status != -ESHUTDOWN)
2330 usb_hc_died(hcd);
9293677a
DB
2331 }
2332 return status;
1da177e4
LT
2333}
2334
6b157c9b
AS
2335/* Workqueue routine for root-hub remote wakeup */
2336static void hcd_resume_work(struct work_struct *work)
2337{
2338 struct usb_hcd *hcd = container_of(work, struct usb_hcd, wakeup_work);
2339 struct usb_device *udev = hcd->self.root_hub;
2340
0534d468 2341 usb_remote_wakeup(udev);
6b157c9b
AS
2342}
2343
1da177e4 2344/**
14557359 2345 * usb_hcd_resume_root_hub - called by HCD to resume its root hub
1da177e4
LT
2346 * @hcd: host controller for this root hub
2347 *
2348 * The USB host controller calls this function when its root hub is
2349 * suspended (with the remote wakeup feature enabled) and a remote
6b157c9b
AS
2350 * wakeup request is received. The routine submits a workqueue request
2351 * to resume the root hub (that is, manage its downstream ports again).
1da177e4
LT
2352 */
2353void usb_hcd_resume_root_hub (struct usb_hcd *hcd)
2354{
2355 unsigned long flags;
2356
2357 spin_lock_irqsave (&hcd_root_hub_lock, flags);
ff2f0787
AS
2358 if (hcd->rh_registered) {
2359 set_bit(HCD_FLAG_WAKEUP_PENDING, &hcd->flags);
9bbdf1e0 2360 queue_work(pm_wq, &hcd->wakeup_work);
ff2f0787 2361 }
1da177e4
LT
2362 spin_unlock_irqrestore (&hcd_root_hub_lock, flags);
2363}
9293677a 2364EXPORT_SYMBOL_GPL(usb_hcd_resume_root_hub);
1da177e4 2365
ceb6c9c8 2366#endif /* CONFIG_PM */
1da177e4
LT
2367
2368/*-------------------------------------------------------------------------*/
2369
2370#ifdef CONFIG_USB_OTG
2371
2372/**
2373 * usb_bus_start_enum - start immediate enumeration (for OTG)
2374 * @bus: the bus (must use hcd framework)
2375 * @port_num: 1-based number of port; usually bus->otg_port
2376 * Context: in_interrupt()
2377 *
2378 * Starts enumeration, with an immediate reset followed later by
37ebb549 2379 * hub_wq identifying and possibly configuring the device.
1da177e4
LT
2380 * This is needed by OTG controller drivers, where it helps meet
2381 * HNP protocol timing requirements for starting a port reset.
626f090c
YB
2382 *
2383 * Return: 0 if successful.
1da177e4
LT
2384 */
2385int usb_bus_start_enum(struct usb_bus *bus, unsigned port_num)
2386{
2387 struct usb_hcd *hcd;
2388 int status = -EOPNOTSUPP;
2389
2390 /* NOTE: since HNP can't start by grabbing the bus's address0_sem,
2391 * boards with root hubs hooked up to internal devices (instead of
2392 * just the OTG port) may need more attention to resetting...
2393 */
6ae706ae 2394 hcd = bus_to_hcd(bus);
1da177e4
LT
2395 if (port_num && hcd->driver->start_port_reset)
2396 status = hcd->driver->start_port_reset(hcd, port_num);
2397
37ebb549 2398 /* allocate hub_wq shortly after (first) root port reset finishes;
1da177e4
LT
2399 * it may issue others, until at least 50 msecs have passed.
2400 */
2401 if (status == 0)
2402 mod_timer(&hcd->rh_timer, jiffies + msecs_to_jiffies(10));
2403 return status;
2404}
782e70c6 2405EXPORT_SYMBOL_GPL(usb_bus_start_enum);
1da177e4
LT
2406
2407#endif
2408
2409/*-------------------------------------------------------------------------*/
2410
1da177e4
LT
2411/**
2412 * usb_hcd_irq - hook IRQs to HCD framework (bus glue)
2413 * @irq: the IRQ being raised
2414 * @__hcd: pointer to the HCD whose IRQ is being signaled
1da177e4
LT
2415 *
2416 * If the controller isn't HALTed, calls the driver's irq handler.
2417 * Checks whether the controller is now dead.
626f090c
YB
2418 *
2419 * Return: %IRQ_HANDLED if the IRQ was handled. %IRQ_NONE otherwise.
1da177e4 2420 */
7d12e780 2421irqreturn_t usb_hcd_irq (int irq, void *__hcd)
1da177e4
LT
2422{
2423 struct usb_hcd *hcd = __hcd;
de85422b 2424 irqreturn_t rc;
1da177e4 2425
968b822c 2426 if (unlikely(HCD_DEAD(hcd) || !HCD_HW_ACCESSIBLE(hcd)))
de85422b 2427 rc = IRQ_NONE;
968b822c 2428 else if (hcd->driver->irq(hcd) == IRQ_NONE)
de85422b 2429 rc = IRQ_NONE;
968b822c 2430 else
de85422b 2431 rc = IRQ_HANDLED;
de85422b 2432
de85422b 2433 return rc;
1da177e4 2434}
43b86af8 2435EXPORT_SYMBOL_GPL(usb_hcd_irq);
1da177e4
LT
2436
2437/*-------------------------------------------------------------------------*/
2438
2439/**
2440 * usb_hc_died - report abnormal shutdown of a host controller (bus glue)
2441 * @hcd: pointer to the HCD representing the controller
2442 *
2443 * This is called by bus glue to report a USB host controller that died
2444 * while operations may still have been pending. It's called automatically
c5635437
SS
2445 * by the PCI glue, so only glue for non-PCI busses should need to call it.
2446 *
2447 * Only call this function with the primary HCD.
1da177e4
LT
2448 */
2449void usb_hc_died (struct usb_hcd *hcd)
2450{
2451 unsigned long flags;
2452
2453 dev_err (hcd->self.controller, "HC died; cleaning up\n");
2454
2455 spin_lock_irqsave (&hcd_root_hub_lock, flags);
9b37596a
AS
2456 clear_bit(HCD_FLAG_RH_RUNNING, &hcd->flags);
2457 set_bit(HCD_FLAG_DEAD, &hcd->flags);
1da177e4 2458 if (hcd->rh_registered) {
541c7d43 2459 clear_bit(HCD_FLAG_POLL_RH, &hcd->flags);
1da177e4 2460
37ebb549 2461 /* make hub_wq clean up old urbs and devices */
1da177e4
LT
2462 usb_set_device_state (hcd->self.root_hub,
2463 USB_STATE_NOTATTACHED);
59d48b3f 2464 usb_kick_hub_wq(hcd->self.root_hub);
1da177e4 2465 }
c5635437
SS
2466 if (usb_hcd_is_primary_hcd(hcd) && hcd->shared_hcd) {
2467 hcd = hcd->shared_hcd;
2468 if (hcd->rh_registered) {
2469 clear_bit(HCD_FLAG_POLL_RH, &hcd->flags);
2470
37ebb549 2471 /* make hub_wq clean up old urbs and devices */
c5635437
SS
2472 usb_set_device_state(hcd->self.root_hub,
2473 USB_STATE_NOTATTACHED);
59d48b3f 2474 usb_kick_hub_wq(hcd->self.root_hub);
c5635437
SS
2475 }
2476 }
1da177e4 2477 spin_unlock_irqrestore (&hcd_root_hub_lock, flags);
c5635437 2478 /* Make sure that the other roothub is also deallocated. */
1da177e4
LT
2479}
2480EXPORT_SYMBOL_GPL (usb_hc_died);
2481
2482/*-------------------------------------------------------------------------*/
2483
94dfd7ed
ML
2484static void init_giveback_urb_bh(struct giveback_urb_bh *bh)
2485{
2486
2487 spin_lock_init(&bh->lock);
2488 INIT_LIST_HEAD(&bh->head);
2489 tasklet_init(&bh->bh, usb_giveback_urb_bh, (unsigned long)bh);
2490}
2491
1da177e4 2492/**
c5635437 2493 * usb_create_shared_hcd - create and initialize an HCD structure
1da177e4
LT
2494 * @driver: HC driver that will use this hcd
2495 * @dev: device for this HC, stored in hcd->self.controller
2496 * @bus_name: value to store in hcd->self.bus_name
c5635437
SS
2497 * @primary_hcd: a pointer to the usb_hcd structure that is sharing the
2498 * PCI device. Only allocate certain resources for the primary HCD
1da177e4
LT
2499 * Context: !in_interrupt()
2500 *
2501 * Allocate a struct usb_hcd, with extra space at the end for the
2502 * HC driver's private data. Initialize the generic members of the
2503 * hcd structure.
2504 *
626f090c
YB
2505 * Return: On success, a pointer to the created and initialized HCD structure.
2506 * On failure (e.g. if memory is unavailable), %NULL.
1da177e4 2507 */
c5635437
SS
2508struct usb_hcd *usb_create_shared_hcd(const struct hc_driver *driver,
2509 struct device *dev, const char *bus_name,
2510 struct usb_hcd *primary_hcd)
1da177e4
LT
2511{
2512 struct usb_hcd *hcd;
2513
7b842b6e 2514 hcd = kzalloc(sizeof(*hcd) + driver->hcd_priv_size, GFP_KERNEL);
1da177e4
LT
2515 if (!hcd) {
2516 dev_dbg (dev, "hcd alloc failed\n");
2517 return NULL;
2518 }
c5635437
SS
2519 if (primary_hcd == NULL) {
2520 hcd->bandwidth_mutex = kmalloc(sizeof(*hcd->bandwidth_mutex),
2521 GFP_KERNEL);
2522 if (!hcd->bandwidth_mutex) {
2523 kfree(hcd);
2524 dev_dbg(dev, "hcd bandwidth mutex alloc failed\n");
2525 return NULL;
2526 }
2527 mutex_init(hcd->bandwidth_mutex);
2528 dev_set_drvdata(dev, hcd);
2529 } else {
d8521afe 2530 mutex_lock(&usb_port_peer_mutex);
c5635437
SS
2531 hcd->bandwidth_mutex = primary_hcd->bandwidth_mutex;
2532 hcd->primary_hcd = primary_hcd;
2533 primary_hcd->primary_hcd = primary_hcd;
2534 hcd->shared_hcd = primary_hcd;
2535 primary_hcd->shared_hcd = hcd;
d8521afe 2536 mutex_unlock(&usb_port_peer_mutex);
d673bfcb 2537 }
d673bfcb 2538
17200583 2539 kref_init(&hcd->kref);
1da177e4
LT
2540
2541 usb_bus_init(&hcd->self);
1da177e4
LT
2542 hcd->self.controller = dev;
2543 hcd->self.bus_name = bus_name;
dd990f16 2544 hcd->self.uses_dma = (dev->dma_mask != NULL);
1da177e4
LT
2545
2546 init_timer(&hcd->rh_timer);
d5926ae7
AS
2547 hcd->rh_timer.function = rh_timer_func;
2548 hcd->rh_timer.data = (unsigned long) hcd;
ceb6c9c8 2549#ifdef CONFIG_PM
6b157c9b
AS
2550 INIT_WORK(&hcd->wakeup_work, hcd_resume_work);
2551#endif
1da177e4
LT
2552
2553 hcd->driver = driver;
83de4b2b 2554 hcd->speed = driver->flags & HCD_MASK;
1da177e4
LT
2555 hcd->product_desc = (driver->product_desc) ? driver->product_desc :
2556 "USB Host Controller";
1da177e4
LT
2557 return hcd;
2558}
c5635437
SS
2559EXPORT_SYMBOL_GPL(usb_create_shared_hcd);
2560
2561/**
2562 * usb_create_hcd - create and initialize an HCD structure
2563 * @driver: HC driver that will use this hcd
2564 * @dev: device for this HC, stored in hcd->self.controller
2565 * @bus_name: value to store in hcd->self.bus_name
2566 * Context: !in_interrupt()
2567 *
2568 * Allocate a struct usb_hcd, with extra space at the end for the
2569 * HC driver's private data. Initialize the generic members of the
2570 * hcd structure.
2571 *
626f090c
YB
2572 * Return: On success, a pointer to the created and initialized HCD
2573 * structure. On failure (e.g. if memory is unavailable), %NULL.
c5635437
SS
2574 */
2575struct usb_hcd *usb_create_hcd(const struct hc_driver *driver,
2576 struct device *dev, const char *bus_name)
2577{
2578 return usb_create_shared_hcd(driver, dev, bus_name, NULL);
2579}
782e70c6 2580EXPORT_SYMBOL_GPL(usb_create_hcd);
1da177e4 2581
c5635437
SS
2582/*
2583 * Roothubs that share one PCI device must also share the bandwidth mutex.
2584 * Don't deallocate the bandwidth_mutex until the last shared usb_hcd is
2585 * deallocated.
2586 *
2587 * Make sure to only deallocate the bandwidth_mutex when the primary HCD is
d8521afe
DW
2588 * freed. When hcd_release() is called for either hcd in a peer set
2589 * invalidate the peer's ->shared_hcd and ->primary_hcd pointers to
2590 * block new peering attempts
c5635437 2591 */
d8521afe 2592static void hcd_release(struct kref *kref)
17200583
AS
2593{
2594 struct usb_hcd *hcd = container_of (kref, struct usb_hcd, kref);
2595
d8521afe 2596 mutex_lock(&usb_port_peer_mutex);
c5635437
SS
2597 if (usb_hcd_is_primary_hcd(hcd))
2598 kfree(hcd->bandwidth_mutex);
d8521afe
DW
2599 if (hcd->shared_hcd) {
2600 struct usb_hcd *peer = hcd->shared_hcd;
2601
2602 peer->shared_hcd = NULL;
2603 if (peer->primary_hcd == hcd)
2604 peer->primary_hcd = NULL;
2605 }
2606 mutex_unlock(&usb_port_peer_mutex);
17200583
AS
2607 kfree(hcd);
2608}
2609
2610struct usb_hcd *usb_get_hcd (struct usb_hcd *hcd)
2611{
2612 if (hcd)
2613 kref_get (&hcd->kref);
2614 return hcd;
2615}
782e70c6 2616EXPORT_SYMBOL_GPL(usb_get_hcd);
17200583 2617
1da177e4
LT
2618void usb_put_hcd (struct usb_hcd *hcd)
2619{
17200583
AS
2620 if (hcd)
2621 kref_put (&hcd->kref, hcd_release);
1da177e4 2622}
782e70c6 2623EXPORT_SYMBOL_GPL(usb_put_hcd);
1da177e4 2624
c5635437
SS
2625int usb_hcd_is_primary_hcd(struct usb_hcd *hcd)
2626{
2627 if (!hcd->primary_hcd)
2628 return 1;
2629 return hcd == hcd->primary_hcd;
2630}
2631EXPORT_SYMBOL_GPL(usb_hcd_is_primary_hcd);
2632
3f5eb141
LT
2633int usb_hcd_find_raw_port_number(struct usb_hcd *hcd, int port1)
2634{
2635 if (!hcd->driver->find_raw_port_number)
2636 return port1;
2637
2638 return hcd->driver->find_raw_port_number(hcd, port1);
2639}
2640
23e0d106
SS
2641static int usb_hcd_request_irqs(struct usb_hcd *hcd,
2642 unsigned int irqnum, unsigned long irqflags)
2643{
2644 int retval;
2645
2646 if (hcd->driver->irq) {
e592c5d0 2647
23e0d106
SS
2648 snprintf(hcd->irq_descr, sizeof(hcd->irq_descr), "%s:usb%d",
2649 hcd->driver->description, hcd->self.busnum);
2650 retval = request_irq(irqnum, &usb_hcd_irq, irqflags,
2651 hcd->irq_descr, hcd);
2652 if (retval != 0) {
2653 dev_err(hcd->self.controller,
2654 "request interrupt %d failed\n",
2655 irqnum);
2656 return retval;
2657 }
2658 hcd->irq = irqnum;
2659 dev_info(hcd->self.controller, "irq %d, %s 0x%08llx\n", irqnum,
2660 (hcd->driver->flags & HCD_MEMORY) ?
2661 "io mem" : "io base",
2662 (unsigned long long)hcd->rsrc_start);
2663 } else {
cd70469d 2664 hcd->irq = 0;
23e0d106
SS
2665 if (hcd->rsrc_start)
2666 dev_info(hcd->self.controller, "%s 0x%08llx\n",
2667 (hcd->driver->flags & HCD_MEMORY) ?
2668 "io mem" : "io base",
2669 (unsigned long long)hcd->rsrc_start);
2670 }
2671 return 0;
2672}
2673
d8521afe
DW
2674/*
2675 * Before we free this root hub, flush in-flight peering attempts
2676 * and disable peer lookups
2677 */
2678static void usb_put_invalidate_rhdev(struct usb_hcd *hcd)
2679{
2680 struct usb_device *rhdev;
2681
2682 mutex_lock(&usb_port_peer_mutex);
2683 rhdev = hcd->self.root_hub;
2684 hcd->self.root_hub = NULL;
2685 mutex_unlock(&usb_port_peer_mutex);
2686 usb_put_dev(rhdev);
2687}
2688
1da177e4
LT
2689/**
2690 * usb_add_hcd - finish generic HCD structure initialization and register
2691 * @hcd: the usb_hcd structure to initialize
2692 * @irqnum: Interrupt line to allocate
2693 * @irqflags: Interrupt type flags
2694 *
2695 * Finish the remaining parts of generic HCD initialization: allocate the
2696 * buffers of consistent memory, register the bus, request the IRQ line,
2697 * and call the driver's reset() and start() routines.
2698 */
2699int usb_add_hcd(struct usb_hcd *hcd,
2700 unsigned int irqnum, unsigned long irqflags)
2701{
8ec8d20b
AS
2702 int retval;
2703 struct usb_device *rhdev;
1da177e4 2704
3d46e73d 2705 if (IS_ENABLED(CONFIG_USB_PHY) && !hcd->usb_phy) {
1ae5799e
VB
2706 struct usb_phy *phy = usb_get_phy_dev(hcd->self.controller, 0);
2707
2708 if (IS_ERR(phy)) {
2709 retval = PTR_ERR(phy);
2710 if (retval == -EPROBE_DEFER)
2711 return retval;
2712 } else {
2713 retval = usb_phy_init(phy);
2714 if (retval) {
2715 usb_put_phy(phy);
2716 return retval;
2717 }
3d46e73d 2718 hcd->usb_phy = phy;
1ae5799e
VB
2719 hcd->remove_phy = 1;
2720 }
2721 }
2722
ef44cb42 2723 if (IS_ENABLED(CONFIG_GENERIC_PHY) && !hcd->phy) {
00433254
SS
2724 struct phy *phy = phy_get(hcd->self.controller, "usb");
2725
2726 if (IS_ERR(phy)) {
2727 retval = PTR_ERR(phy);
2728 if (retval == -EPROBE_DEFER)
2729 goto err_phy;
2730 } else {
2731 retval = phy_init(phy);
2732 if (retval) {
2733 phy_put(phy);
2734 goto err_phy;
2735 }
2736 retval = phy_power_on(phy);
2737 if (retval) {
2738 phy_exit(phy);
2739 phy_put(phy);
2740 goto err_phy;
2741 }
2742 hcd->phy = phy;
ef44cb42 2743 hcd->remove_phy = 1;
00433254
SS
2744 }
2745 }
2746
1da177e4
LT
2747 dev_info(hcd->self.controller, "%s\n", hcd->product_desc);
2748
c4fc2342 2749 /* Keep old behaviour if authorized_default is not in [0, 1]. */
ff8e2c56
SK
2750 if (authorized_default < 0 || authorized_default > 1) {
2751 if (hcd->wireless)
2752 clear_bit(HCD_FLAG_DEV_AUTHORIZED, &hcd->flags);
2753 else
2754 set_bit(HCD_FLAG_DEV_AUTHORIZED, &hcd->flags);
2755 } else {
2756 if (authorized_default)
2757 set_bit(HCD_FLAG_DEV_AUTHORIZED, &hcd->flags);
2758 else
2759 clear_bit(HCD_FLAG_DEV_AUTHORIZED, &hcd->flags);
2760 }
8de98402
BH
2761 set_bit(HCD_FLAG_HW_ACCESSIBLE, &hcd->flags);
2762
6b2bd3c8
SK
2763 /* per default all interfaces are authorized */
2764 set_bit(HCD_FLAG_INTF_AUTHORIZED, &hcd->flags);
2765
b1e8f0a6 2766 /* HC is in reset state, but accessible. Now do the one-time init,
37ebb549 2767 * bottom up so that hcds can customize the root hubs before hub_wq
b1e8f0a6
DB
2768 * starts talking to them. (Note, bus id is assigned early too.)
2769 */
0faaad46
KB
2770 retval = hcd_buffer_create(hcd);
2771 if (retval != 0) {
1da177e4 2772 dev_dbg(hcd->self.controller, "pool alloc failed\n");
00433254 2773 goto err_create_buf;
1da177e4
LT
2774 }
2775
0faaad46
KB
2776 retval = usb_register_bus(&hcd->self);
2777 if (retval < 0)
8ec8d20b 2778 goto err_register_bus;
1da177e4 2779
c688d621
GKH
2780 rhdev = usb_alloc_dev(NULL, &hcd->self, 0);
2781 if (rhdev == NULL) {
b1e8f0a6
DB
2782 dev_err(hcd->self.controller, "unable to allocate root hub\n");
2783 retval = -ENOMEM;
2784 goto err_allocate_root_hub;
2785 }
d8521afe 2786 mutex_lock(&usb_port_peer_mutex);
6d88e679 2787 hcd->self.root_hub = rhdev;
d8521afe 2788 mutex_unlock(&usb_port_peer_mutex);
6b403b02 2789
83de4b2b 2790 switch (hcd->speed) {
6b403b02
SS
2791 case HCD_USB11:
2792 rhdev->speed = USB_SPEED_FULL;
2793 break;
2794 case HCD_USB2:
2795 rhdev->speed = USB_SPEED_HIGH;
2796 break;
1a81f881
TP
2797 case HCD_USB25:
2798 rhdev->speed = USB_SPEED_WIRELESS;
2799 break;
6b403b02
SS
2800 case HCD_USB3:
2801 rhdev->speed = USB_SPEED_SUPER;
2802 break;
5f9c3a66
MN
2803 case HCD_USB31:
2804 rhdev->speed = USB_SPEED_SUPER_PLUS;
2805 break;
6b403b02 2806 default:
1d15ee4c 2807 retval = -EINVAL;
96e077ae 2808 goto err_set_rh_speed;
6b403b02 2809 }
b1e8f0a6 2810
db4cefaa
DB
2811 /* wakeup flag init defaults to "everything works" for root hubs,
2812 * but drivers can override it in reset() if needed, along with
2813 * recording the overall controller's system wakeup capability.
2814 */
a6eeeb9f 2815 device_set_wakeup_capable(&rhdev->dev, 1);
db4cefaa 2816
9b37596a
AS
2817 /* HCD_FLAG_RH_RUNNING doesn't matter until the root hub is
2818 * registered. But since the controller can die at any time,
2819 * let's initialize the flag before touching the hardware.
2820 */
2821 set_bit(HCD_FLAG_RH_RUNNING, &hcd->flags);
2822
b1e8f0a6
DB
2823 /* "reset" is misnamed; its role is now one-time init. the controller
2824 * should already have been reset (and boot firmware kicked off etc).
2825 */
0faaad46
KB
2826 if (hcd->driver->reset) {
2827 retval = hcd->driver->reset(hcd);
2828 if (retval < 0) {
2829 dev_err(hcd->self.controller, "can't setup: %d\n",
2830 retval);
2831 goto err_hcd_driver_setup;
2832 }
b1e8f0a6 2833 }
6d88e679 2834 hcd->rh_pollable = 1;
b1e8f0a6 2835
fb669cc0
DB
2836 /* NOTE: root hub and controller capabilities may not be the same */
2837 if (device_can_wakeup(hcd->self.controller)
2838 && device_can_wakeup(&hcd->self.root_hub->dev))
b1e8f0a6 2839 dev_dbg(hcd->self.controller, "supports USB remote wakeup\n");
b1e8f0a6 2840
94dfd7ed
ML
2841 /* initialize tasklets */
2842 init_giveback_urb_bh(&hcd->high_prio_bh);
2843 init_giveback_urb_bh(&hcd->low_prio_bh);
2844
68d07f64
SS
2845 /* enable irqs just before we start the controller,
2846 * if the BIOS provides legacy PCI irqs.
2847 */
2848 if (usb_hcd_is_primary_hcd(hcd) && irqnum) {
c5635437
SS
2849 retval = usb_hcd_request_irqs(hcd, irqnum, irqflags);
2850 if (retval)
2851 goto err_request_irq;
2852 }
1da177e4 2853
4814030c 2854 hcd->state = HC_STATE_RUNNING;
abc4f9b0
SS
2855 retval = hcd->driver->start(hcd);
2856 if (retval < 0) {
1da177e4 2857 dev_err(hcd->self.controller, "startup error %d\n", retval);
8ec8d20b 2858 goto err_hcd_driver_start;
1da177e4
LT
2859 }
2860
b1e8f0a6 2861 /* starting here, usbcore will pay attention to this root hub */
0faaad46
KB
2862 retval = register_root_hub(hcd);
2863 if (retval != 0)
8ec8d20b
AS
2864 goto err_register_root_hub;
2865
5234ce1b
IPG
2866 retval = sysfs_create_group(&rhdev->dev.kobj, &usb_bus_attr_group);
2867 if (retval < 0) {
2868 printk(KERN_ERR "Cannot register USB bus sysfs attributes: %d\n",
2869 retval);
2870 goto error_create_attr_group;
2871 }
541c7d43 2872 if (hcd->uses_new_polling && HCD_POLL_RH(hcd))
d5926ae7 2873 usb_hcd_poll_rh_status(hcd);
a6eeeb9f 2874
1da177e4
LT
2875 return retval;
2876
5234ce1b 2877error_create_attr_group:
9b37596a 2878 clear_bit(HCD_FLAG_RH_RUNNING, &hcd->flags);
96e077ae
AS
2879 if (HC_IS_RUNNING(hcd->state))
2880 hcd->state = HC_STATE_QUIESCING;
2881 spin_lock_irq(&hcd_root_hub_lock);
2882 hcd->rh_registered = 0;
2883 spin_unlock_irq(&hcd_root_hub_lock);
2884
ceb6c9c8 2885#ifdef CONFIG_PM
96e077ae
AS
2886 cancel_work_sync(&hcd->wakeup_work);
2887#endif
a4b5d606 2888 mutex_lock(&usb_bus_idr_lock);
6d88e679 2889 usb_disconnect(&rhdev); /* Sets rhdev to NULL */
a4b5d606 2890 mutex_unlock(&usb_bus_idr_lock);
b1e8f0a6 2891err_register_root_hub:
6d88e679 2892 hcd->rh_pollable = 0;
541c7d43 2893 clear_bit(HCD_FLAG_POLL_RH, &hcd->flags);
6d88e679 2894 del_timer_sync(&hcd->rh_timer);
8ec8d20b 2895 hcd->driver->stop(hcd);
96e077ae 2896 hcd->state = HC_STATE_HALT;
541c7d43 2897 clear_bit(HCD_FLAG_POLL_RH, &hcd->flags);
96e077ae 2898 del_timer_sync(&hcd->rh_timer);
b1e8f0a6 2899err_hcd_driver_start:
cd70469d 2900 if (usb_hcd_is_primary_hcd(hcd) && hcd->irq > 0)
1da177e4 2901 free_irq(irqnum, hcd);
b1e8f0a6
DB
2902err_request_irq:
2903err_hcd_driver_setup:
96e077ae 2904err_set_rh_speed:
d8521afe 2905 usb_put_invalidate_rhdev(hcd);
b1e8f0a6 2906err_allocate_root_hub:
1da177e4 2907 usb_deregister_bus(&hcd->self);
b1e8f0a6 2908err_register_bus:
1da177e4 2909 hcd_buffer_destroy(hcd);
00433254 2910err_create_buf:
ef44cb42 2911 if (IS_ENABLED(CONFIG_GENERIC_PHY) && hcd->remove_phy && hcd->phy) {
00433254
SS
2912 phy_power_off(hcd->phy);
2913 phy_exit(hcd->phy);
2914 phy_put(hcd->phy);
2915 hcd->phy = NULL;
2916 }
2917err_phy:
3d46e73d
AT
2918 if (hcd->remove_phy && hcd->usb_phy) {
2919 usb_phy_shutdown(hcd->usb_phy);
2920 usb_put_phy(hcd->usb_phy);
2921 hcd->usb_phy = NULL;
103e127d 2922 }
1da177e4 2923 return retval;
14557359 2924}
782e70c6 2925EXPORT_SYMBOL_GPL(usb_add_hcd);
1da177e4
LT
2926
2927/**
2928 * usb_remove_hcd - shutdown processing for generic HCDs
2929 * @hcd: the usb_hcd structure to remove
2930 * Context: !in_interrupt()
2931 *
2932 * Disconnects the root hub, then reverses the effects of usb_add_hcd(),
2933 * invoking the HCD's stop() method.
2934 */
2935void usb_remove_hcd(struct usb_hcd *hcd)
2936{
6d88e679
AS
2937 struct usb_device *rhdev = hcd->self.root_hub;
2938
1da177e4
LT
2939 dev_info(hcd->self.controller, "remove, state %x\n", hcd->state);
2940
6d88e679
AS
2941 usb_get_dev(rhdev);
2942 sysfs_remove_group(&rhdev->dev.kobj, &usb_bus_attr_group);
96e077ae 2943
9b37596a 2944 clear_bit(HCD_FLAG_RH_RUNNING, &hcd->flags);
1da177e4
LT
2945 if (HC_IS_RUNNING (hcd->state))
2946 hcd->state = HC_STATE_QUIESCING;
2947
2948 dev_dbg(hcd->self.controller, "roothub graceful disconnect\n");
2949 spin_lock_irq (&hcd_root_hub_lock);
2950 hcd->rh_registered = 0;
2951 spin_unlock_irq (&hcd_root_hub_lock);
9ad3d6cc 2952
ceb6c9c8 2953#ifdef CONFIG_PM
d5d4db70 2954 cancel_work_sync(&hcd->wakeup_work);
6b157c9b
AS
2955#endif
2956
a4b5d606 2957 mutex_lock(&usb_bus_idr_lock);
6d88e679 2958 usb_disconnect(&rhdev); /* Sets rhdev to NULL */
a4b5d606 2959 mutex_unlock(&usb_bus_idr_lock);
1da177e4 2960
94dfd7ed
ML
2961 /*
2962 * tasklet_kill() isn't needed here because:
2963 * - driver's disconnect() called from usb_disconnect() should
2964 * make sure its URBs are completed during the disconnect()
2965 * callback
2966 *
2967 * - it is too late to run complete() here since driver may have
2968 * been removed already now
2969 */
2970
6d88e679
AS
2971 /* Prevent any more root-hub status calls from the timer.
2972 * The HCD might still restart the timer (if a port status change
2973 * interrupt occurs), but usb_hcd_poll_rh_status() won't invoke
2974 * the hub_status_data() callback.
2975 */
2976 hcd->rh_pollable = 0;
541c7d43 2977 clear_bit(HCD_FLAG_POLL_RH, &hcd->flags);
6d88e679
AS
2978 del_timer_sync(&hcd->rh_timer);
2979
1da177e4
LT
2980 hcd->driver->stop(hcd);
2981 hcd->state = HC_STATE_HALT;
2982
6d88e679 2983 /* In case the HCD restarted the timer, stop it again. */
541c7d43 2984 clear_bit(HCD_FLAG_POLL_RH, &hcd->flags);
1b42ae6d
AS
2985 del_timer_sync(&hcd->rh_timer);
2986
c5635437 2987 if (usb_hcd_is_primary_hcd(hcd)) {
cd70469d 2988 if (hcd->irq > 0)
c5635437
SS
2989 free_irq(hcd->irq, hcd);
2990 }
6d88e679 2991
1da177e4
LT
2992 usb_deregister_bus(&hcd->self);
2993 hcd_buffer_destroy(hcd);
00433254 2994
ef44cb42 2995 if (IS_ENABLED(CONFIG_GENERIC_PHY) && hcd->remove_phy && hcd->phy) {
00433254
SS
2996 phy_power_off(hcd->phy);
2997 phy_exit(hcd->phy);
2998 phy_put(hcd->phy);
2999 hcd->phy = NULL;
3000 }
3d46e73d
AT
3001 if (hcd->remove_phy && hcd->usb_phy) {
3002 usb_phy_shutdown(hcd->usb_phy);
3003 usb_put_phy(hcd->usb_phy);
3004 hcd->usb_phy = NULL;
103e127d 3005 }
d8521afe
DW
3006
3007 usb_put_invalidate_rhdev(hcd);
1da177e4 3008}
782e70c6 3009EXPORT_SYMBOL_GPL(usb_remove_hcd);
1da177e4 3010
64a21d02 3011void
842c1960 3012usb_hcd_platform_shutdown(struct platform_device *dev)
64a21d02
AG
3013{
3014 struct usb_hcd *hcd = platform_get_drvdata(dev);
3015
3016 if (hcd->driver->shutdown)
3017 hcd->driver->shutdown(hcd);
3018}
782e70c6 3019EXPORT_SYMBOL_GPL(usb_hcd_platform_shutdown);
64a21d02 3020
1da177e4
LT
3021/*-------------------------------------------------------------------------*/
3022
f150fa1a 3023#if defined(CONFIG_USB_MON) || defined(CONFIG_USB_MON_MODULE)
1da177e4 3024
6fb8ac81 3025const struct usb_mon_operations *mon_ops;
1da177e4
LT
3026
3027/*
3028 * The registration is unlocked.
3029 * We do it this way because we do not want to lock in hot paths.
3030 *
3031 * Notice that the code is minimally error-proof. Because usbmon needs
3032 * symbols from usbcore, usbcore gets referenced and cannot be unloaded first.
3033 */
14557359 3034
6fb8ac81 3035int usb_mon_register(const struct usb_mon_operations *ops)
1da177e4
LT
3036{
3037
3038 if (mon_ops)
3039 return -EBUSY;
3040
3041 mon_ops = ops;
3042 mb();
3043 return 0;
3044}
3045EXPORT_SYMBOL_GPL (usb_mon_register);
3046
3047void usb_mon_deregister (void)
3048{
3049
3050 if (mon_ops == NULL) {
3051 printk(KERN_ERR "USB: monitor was not registered\n");
3052 return;
3053 }
3054 mon_ops = NULL;
3055 mb();
3056}
3057EXPORT_SYMBOL_GPL (usb_mon_deregister);
3058
f150fa1a 3059#endif /* CONFIG_USB_MON || CONFIG_USB_MON_MODULE */
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