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USB: usb-storage: add "quirks=" module parameter
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1da177e4 1/* Driver for USB Mass Storage compliant devices
1da177e4
LT
2 *
3 * Current development and maintenance by:
4 * (c) 1999-2003 Matthew Dharm (mdharm-usb@one-eyed-alien.net)
5 *
6 * Developed with the assistance of:
7 * (c) 2000 David L. Brown, Jr. (usb-storage@davidb.org)
8 * (c) 2003 Alan Stern (stern@rowland.harvard.edu)
9 *
10 * Initial work by:
11 * (c) 1999 Michael Gee (michael@linuxspecific.com)
12 *
13 * usb_device_id support by Adam J. Richter (adam@yggdrasil.com):
14 * (c) 2000 Yggdrasil Computing, Inc.
15 *
16 * This driver is based on the 'USB Mass Storage Class' document. This
17 * describes in detail the protocol used to communicate with such
18 * devices. Clearly, the designers had SCSI and ATAPI commands in
19 * mind when they created this document. The commands are all very
20 * similar to commands in the SCSI-II and ATAPI specifications.
21 *
22 * It is important to note that in a number of cases this class
23 * exhibits class-specific exemptions from the USB specification.
24 * Notably the usage of NAK, STALL and ACK differs from the norm, in
25 * that they are used to communicate wait, failed and OK on commands.
26 *
27 * Also, for certain devices, the interrupt endpoint is used to convey
28 * status of a command.
29 *
30 * Please see http://www.one-eyed-alien.net/~mdharm/linux-usb for more
31 * information about this driver.
32 *
33 * This program is free software; you can redistribute it and/or modify it
34 * under the terms of the GNU General Public License as published by the
35 * Free Software Foundation; either version 2, or (at your option) any
36 * later version.
37 *
38 * This program is distributed in the hope that it will be useful, but
39 * WITHOUT ANY WARRANTY; without even the implied warranty of
40 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
41 * General Public License for more details.
42 *
43 * You should have received a copy of the GNU General Public License along
44 * with this program; if not, write to the Free Software Foundation, Inc.,
45 * 675 Mass Ave, Cambridge, MA 02139, USA.
46 */
47
1da177e4
LT
48#include <linux/sched.h>
49#include <linux/errno.h>
7dfb7103 50#include <linux/freezer.h>
1da177e4
LT
51#include <linux/module.h>
52#include <linux/init.h>
53#include <linux/slab.h>
3f13e66e 54#include <linux/kthread.h>
4186ecf8 55#include <linux/mutex.h>
00f8b0c1 56#include <linux/utsname.h>
1da177e4
LT
57
58#include <scsi/scsi.h>
59#include <scsi/scsi_cmnd.h>
60#include <scsi/scsi_device.h>
61
62#include "usb.h"
63#include "scsiglue.h"
64#include "transport.h"
65#include "protocol.h"
66#include "debug.h"
67#include "initializers.h"
68
69#ifdef CONFIG_USB_STORAGE_USBAT
70#include "shuttle_usbat.h"
71#endif
72#ifdef CONFIG_USB_STORAGE_SDDR09
73#include "sddr09.h"
74#endif
75#ifdef CONFIG_USB_STORAGE_SDDR55
76#include "sddr55.h"
77#endif
78#ifdef CONFIG_USB_STORAGE_DPCM
79#include "dpcm.h"
80#endif
81#ifdef CONFIG_USB_STORAGE_FREECOM
82#include "freecom.h"
83#endif
84#ifdef CONFIG_USB_STORAGE_ISD200
85#include "isd200.h"
86#endif
87#ifdef CONFIG_USB_STORAGE_DATAFAB
88#include "datafab.h"
89#endif
90#ifdef CONFIG_USB_STORAGE_JUMPSHOT
91#include "jumpshot.h"
92#endif
34008dbf
MD
93#ifdef CONFIG_USB_STORAGE_ONETOUCH
94#include "onetouch.h"
95#endif
e80b0fad
MD
96#ifdef CONFIG_USB_STORAGE_ALAUDA
97#include "alauda.h"
98#endif
dfe0d3ba
MD
99#ifdef CONFIG_USB_STORAGE_KARMA
100#include "karma.h"
101#endif
d277064e
MC
102#ifdef CONFIG_USB_STORAGE_CYPRESS_ATACB
103#include "cypress_atacb.h"
104#endif
32fe5e39 105#include "sierra_ms.h"
1da177e4
LT
106
107/* Some informational data */
108MODULE_AUTHOR("Matthew Dharm <mdharm-usb@one-eyed-alien.net>");
109MODULE_DESCRIPTION("USB Mass Storage driver for Linux");
110MODULE_LICENSE("GPL");
111
112static unsigned int delay_use = 5;
113module_param(delay_use, uint, S_IRUGO | S_IWUSR);
114MODULE_PARM_DESC(delay_use, "seconds to delay before using a new device");
115
d4f373e5
AS
116static char *quirks;
117module_param(quirks, charp, S_IRUGO);
118MODULE_PARM_DESC(quirks, "supplemental list of device IDs and their quirks");
119
120struct quirks_entry {
121 u16 vid, pid;
122 u32 fflags;
123};
124static struct quirks_entry *quirks_list, *quirks_end;
125
1da177e4 126
a00828e9
PZ
127/*
128 * The entries in this table correspond, line for line,
129 * with the entries of us_unusual_dev_list[].
1da177e4 130 */
a00828e9 131#ifndef CONFIG_USB_LIBUSUAL
1da177e4
LT
132
133#define UNUSUAL_DEV(id_vendor, id_product, bcdDeviceMin, bcdDeviceMax, \
134 vendorName, productName,useProtocol, useTransport, \
135 initFunction, flags) \
a00828e9
PZ
136{ USB_DEVICE_VER(id_vendor, id_product, bcdDeviceMin,bcdDeviceMax), \
137 .driver_info = (flags)|(USB_US_TYPE_STOR<<24) }
138
139#define USUAL_DEV(useProto, useTrans, useType) \
140{ USB_INTERFACE_INFO(USB_CLASS_MASS_STORAGE, useProto, useTrans), \
141 .driver_info = (USB_US_TYPE_STOR<<24) }
1da177e4
LT
142
143static struct usb_device_id storage_usb_ids [] = {
144
145# include "unusual_devs.h"
146#undef UNUSUAL_DEV
a00828e9 147#undef USUAL_DEV
1da177e4
LT
148 /* Terminating entry */
149 { }
150};
151
152MODULE_DEVICE_TABLE (usb, storage_usb_ids);
a00828e9 153#endif /* CONFIG_USB_LIBUSUAL */
1da177e4
LT
154
155/* This is the list of devices we recognize, along with their flag data */
156
157/* The vendor name should be kept at eight characters or less, and
158 * the product name should be kept at 16 characters or less. If a device
159 * has the US_FL_FIX_INQUIRY flag, then the vendor and product names
160 * normally generated by a device thorugh the INQUIRY response will be
161 * taken from this list, and this is the reason for the above size
162 * restriction. However, if the flag is not present, then you
163 * are free to use as many characters as you like.
164 */
165
1da177e4
LT
166#define UNUSUAL_DEV(idVendor, idProduct, bcdDeviceMin, bcdDeviceMax, \
167 vendor_name, product_name, use_protocol, use_transport, \
168 init_function, Flags) \
169{ \
170 .vendorName = vendor_name, \
171 .productName = product_name, \
172 .useProtocol = use_protocol, \
173 .useTransport = use_transport, \
174 .initFunction = init_function, \
a00828e9
PZ
175}
176
177#define USUAL_DEV(use_protocol, use_transport, use_type) \
178{ \
179 .useProtocol = use_protocol, \
180 .useTransport = use_transport, \
1da177e4
LT
181}
182
183static struct us_unusual_dev us_unusual_dev_list[] = {
184# include "unusual_devs.h"
185# undef UNUSUAL_DEV
a00828e9 186# undef USUAL_DEV
1da177e4
LT
187
188 /* Terminating entry */
189 { NULL }
190};
191
ce2596df
AS
192
193#ifdef CONFIG_PM /* Minimal support for suspend and resume */
194
195static int storage_suspend(struct usb_interface *iface, pm_message_t message)
196{
197 struct us_data *us = usb_get_intfdata(iface);
198
199 /* Wait until no command is running */
4186ecf8 200 mutex_lock(&us->dev_mutex);
ce2596df 201
441b62c1 202 US_DEBUGP("%s\n", __func__);
7931e1c6
MD
203 if (us->suspend_resume_hook)
204 (us->suspend_resume_hook)(us, US_SUSPEND);
ce2596df 205
d526875d
GKH
206 /* When runtime PM is working, we'll set a flag to indicate
207 * whether we should autoresume when a SCSI request arrives. */
208
4186ecf8 209 mutex_unlock(&us->dev_mutex);
ce2596df
AS
210 return 0;
211}
212
213static int storage_resume(struct usb_interface *iface)
214{
215 struct us_data *us = usb_get_intfdata(iface);
216
d526875d 217 mutex_lock(&us->dev_mutex);
8dfe4b14 218
441b62c1 219 US_DEBUGP("%s\n", __func__);
7931e1c6
MD
220 if (us->suspend_resume_hook)
221 (us->suspend_resume_hook)(us, US_RESUME);
ce2596df 222
d526875d 223 mutex_unlock(&us->dev_mutex);
ce2596df
AS
224 return 0;
225}
226
f07600cf
AS
227static int storage_reset_resume(struct usb_interface *iface)
228{
229 struct us_data *us = usb_get_intfdata(iface);
230
441b62c1 231 US_DEBUGP("%s\n", __func__);
f07600cf
AS
232
233 /* Report the reset to the SCSI core */
234 usb_stor_report_bus_reset(us);
235
236 /* FIXME: Notify the subdrivers that they need to reinitialize
237 * the device */
238 return 0;
239}
240
ce2596df 241#endif /* CONFIG_PM */
1da177e4 242
47104b0d
AS
243/*
244 * The next two routines get called just before and just after
245 * a USB port reset, whether from this driver or a different one.
246 */
247
f07600cf 248static int storage_pre_reset(struct usb_interface *iface)
47104b0d
AS
249{
250 struct us_data *us = usb_get_intfdata(iface);
251
441b62c1 252 US_DEBUGP("%s\n", __func__);
47104b0d
AS
253
254 /* Make sure no command runs during the reset */
255 mutex_lock(&us->dev_mutex);
f07600cf 256 return 0;
47104b0d
AS
257}
258
f07600cf 259static int storage_post_reset(struct usb_interface *iface)
47104b0d
AS
260{
261 struct us_data *us = usb_get_intfdata(iface);
262
441b62c1 263 US_DEBUGP("%s\n", __func__);
47104b0d
AS
264
265 /* Report the reset to the SCSI core */
47104b0d 266 usb_stor_report_bus_reset(us);
47104b0d
AS
267
268 /* FIXME: Notify the subdrivers that they need to reinitialize
269 * the device */
0458d5b4 270
f07600cf
AS
271 mutex_unlock(&us->dev_mutex);
272 return 0;
47104b0d
AS
273}
274
1da177e4
LT
275/*
276 * fill_inquiry_response takes an unsigned char array (which must
277 * be at least 36 characters) and populates the vendor name,
278 * product name, and revision fields. Then the array is copied
279 * into the SCSI command's response buffer (oddly enough
280 * called request_buffer). data_len contains the length of the
281 * data array, which again must be at least 36.
282 */
283
284void fill_inquiry_response(struct us_data *us, unsigned char *data,
285 unsigned int data_len)
286{
287 if (data_len<36) // You lose.
288 return;
289
290 if(data[0]&0x20) { /* USB device currently not connected. Return
291 peripheral qualifier 001b ("...however, the
292 physical device is not currently connected
293 to this logical unit") and leave vendor and
294 product identification empty. ("If the target
295 does store some of the INQUIRY data on the
296 device, it may return zeros or ASCII spaces
297 (20h) in those fields until the data is
298 available from the device."). */
299 memset(data+8,0,28);
300 } else {
301 u16 bcdDevice = le16_to_cpu(us->pusb_dev->descriptor.bcdDevice);
302 memcpy(data+8, us->unusual_dev->vendorName,
303 strlen(us->unusual_dev->vendorName) > 8 ? 8 :
304 strlen(us->unusual_dev->vendorName));
305 memcpy(data+16, us->unusual_dev->productName,
306 strlen(us->unusual_dev->productName) > 16 ? 16 :
307 strlen(us->unusual_dev->productName));
308 data[32] = 0x30 + ((bcdDevice>>12) & 0x0F);
309 data[33] = 0x30 + ((bcdDevice>>8) & 0x0F);
310 data[34] = 0x30 + ((bcdDevice>>4) & 0x0F);
311 data[35] = 0x30 + ((bcdDevice) & 0x0F);
312 }
313
314 usb_stor_set_xfer_buf(data, data_len, us->srb);
315}
316
317static int usb_stor_control_thread(void * __us)
318{
319 struct us_data *us = (struct us_data *)__us;
320 struct Scsi_Host *host = us_to_host(us);
321
1da177e4
LT
322 for(;;) {
323 US_DEBUGP("*** thread sleeping.\n");
7119e3c3 324 if (wait_for_completion_interruptible(&us->cmnd_ready))
1da177e4 325 break;
7119e3c3 326
1da177e4
LT
327 US_DEBUGP("*** thread awakened.\n");
328
329 /* lock the device pointers */
4186ecf8 330 mutex_lock(&(us->dev_mutex));
1da177e4 331
543f7810
AS
332 /* lock access to the state */
333 scsi_lock(host);
334
335 /* When we are called with no command pending, we're done */
336 if (us->srb == NULL) {
337 scsi_unlock(host);
4186ecf8 338 mutex_unlock(&us->dev_mutex);
543f7810 339 US_DEBUGP("-- exiting\n");
1da177e4
LT
340 break;
341 }
342
1da177e4 343 /* has the command timed out *already* ? */
7e4d6c38 344 if (test_bit(US_FLIDX_TIMED_OUT, &us->dflags)) {
1da177e4
LT
345 us->srb->result = DID_ABORT << 16;
346 goto SkipForAbort;
347 }
348
349 scsi_unlock(host);
350
351 /* reject the command if the direction indicator
352 * is UNKNOWN
353 */
354 if (us->srb->sc_data_direction == DMA_BIDIRECTIONAL) {
355 US_DEBUGP("UNKNOWN data direction\n");
356 us->srb->result = DID_ERROR << 16;
357 }
358
359 /* reject if target != 0 or if LUN is higher than
360 * the maximum known LUN
361 */
362 else if (us->srb->device->id &&
7e4d6c38 363 !(us->fflags & US_FL_SCM_MULT_TARG)) {
1da177e4
LT
364 US_DEBUGP("Bad target number (%d:%d)\n",
365 us->srb->device->id, us->srb->device->lun);
366 us->srb->result = DID_BAD_TARGET << 16;
367 }
368
369 else if (us->srb->device->lun > us->max_lun) {
370 US_DEBUGP("Bad LUN (%d:%d)\n",
371 us->srb->device->id, us->srb->device->lun);
372 us->srb->result = DID_BAD_TARGET << 16;
373 }
374
375 /* Handle those devices which need us to fake
376 * their inquiry data */
377 else if ((us->srb->cmnd[0] == INQUIRY) &&
7e4d6c38 378 (us->fflags & US_FL_FIX_INQUIRY)) {
1da177e4
LT
379 unsigned char data_ptr[36] = {
380 0x00, 0x80, 0x02, 0x02,
381 0x1F, 0x00, 0x00, 0x00};
382
383 US_DEBUGP("Faking INQUIRY command\n");
384 fill_inquiry_response(us, data_ptr, 36);
385 us->srb->result = SAM_STAT_GOOD;
386 }
387
388 /* we've got a command, let's do it! */
389 else {
390 US_DEBUG(usb_stor_show_command(us->srb));
391 us->proto_handler(us->srb, us);
392 }
393
394 /* lock access to the state */
395 scsi_lock(host);
396
397 /* indicate that the command is done */
543f7810 398 if (us->srb->result != DID_ABORT << 16) {
1da177e4
LT
399 US_DEBUGP("scsi cmd done, result=0x%x\n",
400 us->srb->result);
401 us->srb->scsi_done(us->srb);
402 } else {
403SkipForAbort:
404 US_DEBUGP("scsi command aborted\n");
405 }
406
407 /* If an abort request was received we need to signal that
408 * the abort has finished. The proper test for this is
409 * the TIMED_OUT flag, not srb->result == DID_ABORT, because
226173ed
MD
410 * the timeout might have occurred after the command had
411 * already completed with a different result code. */
7e4d6c38 412 if (test_bit(US_FLIDX_TIMED_OUT, &us->dflags)) {
1da177e4
LT
413 complete(&(us->notify));
414
226173ed 415 /* Allow USB transfers to resume */
7e4d6c38
AS
416 clear_bit(US_FLIDX_ABORTING, &us->dflags);
417 clear_bit(US_FLIDX_TIMED_OUT, &us->dflags);
226173ed
MD
418 }
419
1da177e4
LT
420 /* finished working on this command */
421 us->srb = NULL;
422 scsi_unlock(host);
423
424 /* unlock the device pointers */
4186ecf8 425 mutex_unlock(&us->dev_mutex);
1da177e4
LT
426 } /* for (;;) */
427
ed76cacb
AS
428 /* Wait until we are told to stop */
429 for (;;) {
430 set_current_state(TASK_INTERRUPTIBLE);
431 if (kthread_should_stop())
432 break;
433 schedule();
434 }
435 __set_current_state(TASK_RUNNING);
436 return 0;
1da177e4
LT
437}
438
439/***********************************************************************
440 * Device probing and disconnecting
441 ***********************************************************************/
442
443/* Associate our private data with the USB device */
444static int associate_dev(struct us_data *us, struct usb_interface *intf)
445{
441b62c1 446 US_DEBUGP("-- %s\n", __func__);
1da177e4
LT
447
448 /* Fill in the device-related fields */
449 us->pusb_dev = interface_to_usbdev(intf);
450 us->pusb_intf = intf;
451 us->ifnum = intf->cur_altsetting->desc.bInterfaceNumber;
452 US_DEBUGP("Vendor: 0x%04x, Product: 0x%04x, Revision: 0x%04x\n",
453 le16_to_cpu(us->pusb_dev->descriptor.idVendor),
454 le16_to_cpu(us->pusb_dev->descriptor.idProduct),
455 le16_to_cpu(us->pusb_dev->descriptor.bcdDevice));
456 US_DEBUGP("Interface Subclass: 0x%02x, Protocol: 0x%02x\n",
457 intf->cur_altsetting->desc.bInterfaceSubClass,
458 intf->cur_altsetting->desc.bInterfaceProtocol);
459
460 /* Store our private data in the interface */
461 usb_set_intfdata(intf, us);
462
463 /* Allocate the device-related DMA-mapped buffers */
464 us->cr = usb_buffer_alloc(us->pusb_dev, sizeof(*us->cr),
465 GFP_KERNEL, &us->cr_dma);
466 if (!us->cr) {
467 US_DEBUGP("usb_ctrlrequest allocation failed\n");
468 return -ENOMEM;
469 }
470
471 us->iobuf = usb_buffer_alloc(us->pusb_dev, US_IOBUF_SIZE,
472 GFP_KERNEL, &us->iobuf_dma);
473 if (!us->iobuf) {
474 US_DEBUGP("I/O buffer allocation failed\n");
475 return -ENOMEM;
476 }
bbafa466
AS
477
478 us->sensebuf = kmalloc(US_SENSE_SIZE, GFP_KERNEL);
479 if (!us->sensebuf) {
480 US_DEBUGP("Sense buffer allocation failed\n");
481 return -ENOMEM;
482 }
1da177e4
LT
483 return 0;
484}
485
d4f373e5
AS
486/* Adjust device flags based on the "quirks=" module parameter */
487static void adjust_quirks(struct us_data *us)
488{
489 u16 vid, pid;
490 struct quirks_entry *q;
491 unsigned int mask = (US_FL_FIX_CAPACITY | US_FL_IGNORE_DEVICE |
492 US_FL_NOT_LOCKABLE | US_FL_MAX_SECTORS_64 |
493 US_FL_IGNORE_RESIDUE | US_FL_SINGLE_LUN |
494 US_FL_NO_WP_DETECT);
495
496 vid = le16_to_cpu(us->pusb_dev->descriptor.idVendor);
497 pid = le16_to_cpu(us->pusb_dev->descriptor.idProduct);
498
499 for (q = quirks_list; q != quirks_end; ++q) {
500 if (q->vid == vid && q->pid == pid) {
501 us->fflags = (us->fflags & ~mask) | q->fflags;
502 dev_info(&us->pusb_intf->dev, "Quirks match for "
503 "vid %04x pid %04x: %x\n",
504 vid, pid, q->fflags);
505 break;
506 }
507 }
508}
509
a00828e9
PZ
510/* Find an unusual_dev descriptor (always succeeds in the current code) */
511static struct us_unusual_dev *find_unusual(const struct usb_device_id *id)
512{
513 const int id_index = id - storage_usb_ids;
514 return &us_unusual_dev_list[id_index];
515}
516
1da177e4 517/* Get the unusual_devs entries and the string descriptors */
3c332422 518static int get_device_info(struct us_data *us, const struct usb_device_id *id)
1da177e4
LT
519{
520 struct usb_device *dev = us->pusb_dev;
521 struct usb_interface_descriptor *idesc =
522 &us->pusb_intf->cur_altsetting->desc;
a00828e9 523 struct us_unusual_dev *unusual_dev = find_unusual(id);
1da177e4
LT
524
525 /* Store the entries */
526 us->unusual_dev = unusual_dev;
527 us->subclass = (unusual_dev->useProtocol == US_SC_DEVICE) ?
528 idesc->bInterfaceSubClass :
529 unusual_dev->useProtocol;
530 us->protocol = (unusual_dev->useTransport == US_PR_DEVICE) ?
531 idesc->bInterfaceProtocol :
532 unusual_dev->useTransport;
7e4d6c38 533 us->fflags = USB_US_ORIG_FLAGS(id->driver_info);
d4f373e5 534 adjust_quirks(us);
1da177e4 535
7e4d6c38 536 if (us->fflags & US_FL_IGNORE_DEVICE) {
3c332422
DD
537 printk(KERN_INFO USB_STORAGE "device ignored\n");
538 return -ENODEV;
539 }
540
1da177e4
LT
541 /*
542 * This flag is only needed when we're in high-speed, so let's
543 * disable it if we're in full-speed
544 */
545 if (dev->speed != USB_SPEED_HIGH)
7e4d6c38 546 us->fflags &= ~US_FL_GO_SLOW;
1da177e4
LT
547
548 /* Log a message if a non-generic unusual_dev entry contains an
549 * unnecessary subclass or protocol override. This may stimulate
550 * reports from users that will help us remove unneeded entries
551 * from the unusual_devs.h table.
552 */
553 if (id->idVendor || id->idProduct) {
4c4c9432 554 static const char *msgs[3] = {
1da177e4
LT
555 "an unneeded SubClass entry",
556 "an unneeded Protocol entry",
557 "unneeded SubClass and Protocol entries"};
558 struct usb_device_descriptor *ddesc = &dev->descriptor;
559 int msg = -1;
560
561 if (unusual_dev->useProtocol != US_SC_DEVICE &&
562 us->subclass == idesc->bInterfaceSubClass)
563 msg += 1;
564 if (unusual_dev->useTransport != US_PR_DEVICE &&
565 us->protocol == idesc->bInterfaceProtocol)
566 msg += 2;
7e4d6c38 567 if (msg >= 0 && !(us->fflags & US_FL_NEED_OVERRIDE))
1da177e4
LT
568 printk(KERN_NOTICE USB_STORAGE "This device "
569 "(%04x,%04x,%04x S %02x P %02x)"
5650b4dd
PD
570 " has %s in unusual_devs.h (kernel"
571 " %s)\n"
1da177e4 572 " Please send a copy of this message to "
cef03f8f
AL
573 "<linux-usb@vger.kernel.org> and "
574 "<usb-storage@lists.one-eyed-alien.net>\n",
1da177e4
LT
575 le16_to_cpu(ddesc->idVendor),
576 le16_to_cpu(ddesc->idProduct),
577 le16_to_cpu(ddesc->bcdDevice),
578 idesc->bInterfaceSubClass,
579 idesc->bInterfaceProtocol,
5650b4dd 580 msgs[msg],
00f8b0c1 581 utsname()->release);
1da177e4 582 }
3c332422
DD
583
584 return 0;
1da177e4
LT
585}
586
587/* Get the transport settings */
588static int get_transport(struct us_data *us)
589{
590 switch (us->protocol) {
591 case US_PR_CB:
592 us->transport_name = "Control/Bulk";
593 us->transport = usb_stor_CB_transport;
594 us->transport_reset = usb_stor_CB_reset;
595 us->max_lun = 7;
596 break;
597
598 case US_PR_CBI:
599 us->transport_name = "Control/Bulk/Interrupt";
600 us->transport = usb_stor_CBI_transport;
601 us->transport_reset = usb_stor_CB_reset;
602 us->max_lun = 7;
603 break;
604
605 case US_PR_BULK:
606 us->transport_name = "Bulk";
607 us->transport = usb_stor_Bulk_transport;
608 us->transport_reset = usb_stor_Bulk_reset;
609 break;
610
611#ifdef CONFIG_USB_STORAGE_USBAT
b7b1e655
DD
612 case US_PR_USBAT:
613 us->transport_name = "Shuttle USBAT";
1da177e4
LT
614 us->transport = usbat_transport;
615 us->transport_reset = usb_stor_CB_reset;
616 us->max_lun = 1;
617 break;
618#endif
619
620#ifdef CONFIG_USB_STORAGE_SDDR09
621 case US_PR_EUSB_SDDR09:
622 us->transport_name = "EUSB/SDDR09";
623 us->transport = sddr09_transport;
624 us->transport_reset = usb_stor_CB_reset;
625 us->max_lun = 0;
626 break;
627#endif
628
629#ifdef CONFIG_USB_STORAGE_SDDR55
630 case US_PR_SDDR55:
631 us->transport_name = "SDDR55";
632 us->transport = sddr55_transport;
633 us->transport_reset = sddr55_reset;
634 us->max_lun = 0;
635 break;
636#endif
637
638#ifdef CONFIG_USB_STORAGE_DPCM
639 case US_PR_DPCM_USB:
640 us->transport_name = "Control/Bulk-EUSB/SDDR09";
641 us->transport = dpcm_transport;
642 us->transport_reset = usb_stor_CB_reset;
643 us->max_lun = 1;
644 break;
645#endif
646
647#ifdef CONFIG_USB_STORAGE_FREECOM
648 case US_PR_FREECOM:
649 us->transport_name = "Freecom";
650 us->transport = freecom_transport;
651 us->transport_reset = usb_stor_freecom_reset;
652 us->max_lun = 0;
653 break;
654#endif
655
656#ifdef CONFIG_USB_STORAGE_DATAFAB
657 case US_PR_DATAFAB:
658 us->transport_name = "Datafab Bulk-Only";
659 us->transport = datafab_transport;
660 us->transport_reset = usb_stor_Bulk_reset;
661 us->max_lun = 1;
662 break;
663#endif
664
665#ifdef CONFIG_USB_STORAGE_JUMPSHOT
666 case US_PR_JUMPSHOT:
667 us->transport_name = "Lexar Jumpshot Control/Bulk";
668 us->transport = jumpshot_transport;
669 us->transport_reset = usb_stor_Bulk_reset;
670 us->max_lun = 1;
671 break;
672#endif
673
b383539e
DD
674#ifdef CONFIG_USB_STORAGE_ALAUDA
675 case US_PR_ALAUDA:
676 us->transport_name = "Alauda Control/Bulk";
677 us->transport = alauda_transport;
678 us->transport_reset = usb_stor_Bulk_reset;
679 us->max_lun = 1;
680 break;
681#endif
682
dfe0d3ba
MD
683#ifdef CONFIG_USB_STORAGE_KARMA
684 case US_PR_KARMA:
685 us->transport_name = "Rio Karma/Bulk";
686 us->transport = rio_karma_transport;
687 us->transport_reset = usb_stor_Bulk_reset;
688 break;
689#endif
690
1da177e4
LT
691 default:
692 return -EIO;
693 }
694 US_DEBUGP("Transport: %s\n", us->transport_name);
695
696 /* fix for single-lun devices */
7e4d6c38 697 if (us->fflags & US_FL_SINGLE_LUN)
1da177e4
LT
698 us->max_lun = 0;
699 return 0;
700}
701
702/* Get the protocol settings */
703static int get_protocol(struct us_data *us)
704{
705 switch (us->subclass) {
706 case US_SC_RBC:
707 us->protocol_name = "Reduced Block Commands (RBC)";
708 us->proto_handler = usb_stor_transparent_scsi_command;
709 break;
710
711 case US_SC_8020:
712 us->protocol_name = "8020i";
713 us->proto_handler = usb_stor_ATAPI_command;
714 us->max_lun = 0;
715 break;
716
717 case US_SC_QIC:
718 us->protocol_name = "QIC-157";
719 us->proto_handler = usb_stor_qic157_command;
720 us->max_lun = 0;
721 break;
722
723 case US_SC_8070:
724 us->protocol_name = "8070i";
725 us->proto_handler = usb_stor_ATAPI_command;
726 us->max_lun = 0;
727 break;
728
729 case US_SC_SCSI:
730 us->protocol_name = "Transparent SCSI";
731 us->proto_handler = usb_stor_transparent_scsi_command;
732 break;
733
734 case US_SC_UFI:
735 us->protocol_name = "Uniform Floppy Interface (UFI)";
736 us->proto_handler = usb_stor_ufi_command;
737 break;
738
739#ifdef CONFIG_USB_STORAGE_ISD200
740 case US_SC_ISD200:
741 us->protocol_name = "ISD200 ATA/ATAPI";
742 us->proto_handler = isd200_ata_command;
743 break;
744#endif
745
d277064e
MC
746#ifdef CONFIG_USB_STORAGE_CYPRESS_ATACB
747 case US_SC_CYP_ATACB:
748 us->protocol_name = "Transparent SCSI with Cypress ATACB";
749 us->proto_handler = cypress_atacb_passthrough;
750 break;
751#endif
752
1da177e4
LT
753 default:
754 return -EIO;
755 }
756 US_DEBUGP("Protocol: %s\n", us->protocol_name);
757 return 0;
758}
759
760/* Get the pipe settings */
761static int get_pipes(struct us_data *us)
762{
763 struct usb_host_interface *altsetting =
764 us->pusb_intf->cur_altsetting;
765 int i;
766 struct usb_endpoint_descriptor *ep;
767 struct usb_endpoint_descriptor *ep_in = NULL;
768 struct usb_endpoint_descriptor *ep_out = NULL;
769 struct usb_endpoint_descriptor *ep_int = NULL;
770
771 /*
1096f780 772 * Find the first endpoint of each type we need.
1da177e4 773 * We are expecting a minimum of 2 endpoints - in and out (bulk).
1096f780 774 * An optional interrupt-in is OK (necessary for CBI protocol).
1da177e4
LT
775 * We will ignore any others.
776 */
777 for (i = 0; i < altsetting->desc.bNumEndpoints; i++) {
778 ep = &altsetting->endpoint[i].desc;
779
04720747 780 if (usb_endpoint_xfer_bulk(ep)) {
1096f780
AS
781 if (usb_endpoint_dir_in(ep)) {
782 if (!ep_in)
783 ep_in = ep;
784 } else {
785 if (!ep_out)
786 ep_out = ep;
787 }
1da177e4
LT
788 }
789
1096f780
AS
790 else if (usb_endpoint_is_int_in(ep)) {
791 if (!ep_int)
792 ep_int = ep;
1da177e4
LT
793 }
794 }
795
796 if (!ep_in || !ep_out || (us->protocol == US_PR_CBI && !ep_int)) {
797 US_DEBUGP("Endpoint sanity check failed! Rejecting dev.\n");
798 return -EIO;
799 }
800
801 /* Calculate and store the pipe values */
802 us->send_ctrl_pipe = usb_sndctrlpipe(us->pusb_dev, 0);
803 us->recv_ctrl_pipe = usb_rcvctrlpipe(us->pusb_dev, 0);
804 us->send_bulk_pipe = usb_sndbulkpipe(us->pusb_dev,
805 ep_out->bEndpointAddress & USB_ENDPOINT_NUMBER_MASK);
806 us->recv_bulk_pipe = usb_rcvbulkpipe(us->pusb_dev,
807 ep_in->bEndpointAddress & USB_ENDPOINT_NUMBER_MASK);
808 if (ep_int) {
809 us->recv_intr_pipe = usb_rcvintpipe(us->pusb_dev,
810 ep_int->bEndpointAddress & USB_ENDPOINT_NUMBER_MASK);
811 us->ep_bInterval = ep_int->bInterval;
812 }
813 return 0;
814}
815
816/* Initialize all the dynamic resources we need */
817static int usb_stor_acquire_resources(struct us_data *us)
818{
819 int p;
3f13e66e 820 struct task_struct *th;
1da177e4
LT
821
822 us->current_urb = usb_alloc_urb(0, GFP_KERNEL);
823 if (!us->current_urb) {
824 US_DEBUGP("URB allocation failed\n");
825 return -ENOMEM;
826 }
827
1da177e4
LT
828 /* Just before we start our control thread, initialize
829 * the device if it needs initialization */
b876aef7
AS
830 if (us->unusual_dev->initFunction) {
831 p = us->unusual_dev->initFunction(us);
832 if (p)
833 return p;
834 }
1da177e4
LT
835
836 /* Start up our control thread */
ed76cacb 837 th = kthread_run(usb_stor_control_thread, us, "usb-storage");
3f13e66e 838 if (IS_ERR(th)) {
1da177e4
LT
839 printk(KERN_WARNING USB_STORAGE
840 "Unable to start control thread\n");
3f13e66e 841 return PTR_ERR(th);
1da177e4 842 }
ed76cacb 843 us->ctl_thread = th;
1da177e4
LT
844
845 return 0;
846}
847
848/* Release all our dynamic resources */
849static void usb_stor_release_resources(struct us_data *us)
850{
441b62c1 851 US_DEBUGP("-- %s\n", __func__);
1da177e4
LT
852
853 /* Tell the control thread to exit. The SCSI host must
543f7810
AS
854 * already have been removed and the DISCONNECTING flag set
855 * so that we won't accept any more commands.
1da177e4
LT
856 */
857 US_DEBUGP("-- sending exit command to thread\n");
7119e3c3 858 complete(&us->cmnd_ready);
ed76cacb
AS
859 if (us->ctl_thread)
860 kthread_stop(us->ctl_thread);
1da177e4
LT
861
862 /* Call the destructor routine, if it exists */
863 if (us->extra_destructor) {
864 US_DEBUGP("-- calling extra_destructor()\n");
865 us->extra_destructor(us->extra);
866 }
867
868 /* Free the extra data and the URB */
869 kfree(us->extra);
870 usb_free_urb(us->current_urb);
871}
872
873/* Dissociate from the USB device */
874static void dissociate_dev(struct us_data *us)
875{
441b62c1 876 US_DEBUGP("-- %s\n", __func__);
1da177e4 877
bbafa466
AS
878 kfree(us->sensebuf);
879
1da177e4
LT
880 /* Free the device-related DMA-mapped buffers */
881 if (us->cr)
882 usb_buffer_free(us->pusb_dev, sizeof(*us->cr), us->cr,
883 us->cr_dma);
884 if (us->iobuf)
885 usb_buffer_free(us->pusb_dev, US_IOBUF_SIZE, us->iobuf,
886 us->iobuf_dma);
887
888 /* Remove our private data from the interface */
889 usb_set_intfdata(us->pusb_intf, NULL);
890}
891
543f7810
AS
892/* First stage of disconnect processing: stop SCSI scanning,
893 * remove the host, and stop accepting new commands
894 */
77f46328
MD
895static void quiesce_and_remove_host(struct us_data *us)
896{
eecd11ed
AS
897 struct Scsi_Host *host = us_to_host(us);
898
543f7810
AS
899 /* If the device is really gone, cut short reset delays */
900 if (us->pusb_dev->state == USB_STATE_NOTATTACHED)
901 set_bit(US_FLIDX_DISCONNECTING, &us->dflags);
77f46328 902
543f7810
AS
903 /* Prevent SCSI-scanning (if it hasn't started yet)
904 * and wait for the SCSI-scanning thread to stop.
905 */
906 set_bit(US_FLIDX_DONT_SCAN, &us->dflags);
907 wake_up(&us->delay_wait);
908 wait_for_completion(&us->scanning_done);
26186ba7 909
543f7810
AS
910 /* Removing the host will perform an orderly shutdown: caches
911 * synchronized, disks spun down, etc.
912 */
eecd11ed 913 scsi_remove_host(host);
2f67cd5b 914
543f7810
AS
915 /* Prevent any new commands from being accepted and cut short
916 * reset delays.
917 */
918 scsi_lock(host);
919 set_bit(US_FLIDX_DISCONNECTING, &us->dflags);
920 scsi_unlock(host);
921 wake_up(&us->delay_wait);
77f46328
MD
922}
923
924/* Second stage of disconnect processing: deallocate all resources */
925static void release_everything(struct us_data *us)
926{
927 usb_stor_release_resources(us);
928 dissociate_dev(us);
929
930 /* Drop our reference to the host; the SCSI core will free it
931 * (and "us" along with it) when the refcount becomes 0. */
932 scsi_host_put(us_to_host(us));
933}
934
1da177e4
LT
935/* Thread to carry out delayed SCSI-device scanning */
936static int usb_stor_scan_thread(void * __us)
937{
938 struct us_data *us = (struct us_data *)__us;
939
1da177e4
LT
940 printk(KERN_DEBUG
941 "usb-storage: device found at %d\n", us->pusb_dev->devnum);
942
83144186 943 set_freezable();
1da177e4
LT
944 /* Wait for the timeout to expire or for a disconnect */
945 if (delay_use > 0) {
946 printk(KERN_DEBUG "usb-storage: waiting for device "
947 "to settle before scanning\n");
e42837bc 948 wait_event_freezable_timeout(us->delay_wait,
543f7810 949 test_bit(US_FLIDX_DONT_SCAN, &us->dflags),
1da177e4 950 delay_use * HZ);
1da177e4
LT
951 }
952
953 /* If the device is still connected, perform the scanning */
543f7810 954 if (!test_bit(US_FLIDX_DONT_SCAN, &us->dflags)) {
b876aef7
AS
955
956 /* For bulk-only devices, determine the max LUN value */
957 if (us->protocol == US_PR_BULK &&
7e4d6c38 958 !(us->fflags & US_FL_SINGLE_LUN)) {
4186ecf8 959 mutex_lock(&us->dev_mutex);
b876aef7 960 us->max_lun = usb_stor_Bulk_max_lun(us);
4186ecf8 961 mutex_unlock(&us->dev_mutex);
b876aef7 962 }
1da177e4
LT
963 scsi_scan_host(us_to_host(us));
964 printk(KERN_DEBUG "usb-storage: device scan complete\n");
965
966 /* Should we unbind if no devices were detected? */
967 }
968
2f67cd5b 969 complete_and_exit(&us->scanning_done, 0);
1da177e4
LT
970}
971
972
973/* Probe to see if we can drive a newly-connected USB device */
974static int storage_probe(struct usb_interface *intf,
975 const struct usb_device_id *id)
976{
977 struct Scsi_Host *host;
978 struct us_data *us;
1da177e4 979 int result;
3f13e66e 980 struct task_struct *th;
1da177e4 981
a00828e9
PZ
982 if (usb_usual_check_type(id, USB_US_TYPE_STOR))
983 return -ENXIO;
984
1da177e4
LT
985 US_DEBUGP("USB Mass Storage device detected\n");
986
987 /*
988 * Ask the SCSI layer to allocate a host structure, with extra
989 * space at the end for our private us_data structure.
990 */
991 host = scsi_host_alloc(&usb_stor_host_template, sizeof(*us));
992 if (!host) {
993 printk(KERN_WARNING USB_STORAGE
994 "Unable to allocate the scsi host\n");
995 return -ENOMEM;
996 }
997
17f06022
RS
998 /*
999 * Allow 16-byte CDBs and thus > 2TB
1000 */
1001 host->max_cmd_len = 16;
1da177e4
LT
1002 us = host_to_us(host);
1003 memset(us, 0, sizeof(struct us_data));
4186ecf8 1004 mutex_init(&(us->dev_mutex));
7119e3c3 1005 init_completion(&us->cmnd_ready);
1da177e4
LT
1006 init_completion(&(us->notify));
1007 init_waitqueue_head(&us->delay_wait);
2f67cd5b 1008 init_completion(&us->scanning_done);
1da177e4
LT
1009
1010 /* Associate the us_data structure with the USB device */
1011 result = associate_dev(us, intf);
1012 if (result)
1013 goto BadDevice;
1014
1015 /*
1016 * Get the unusual_devs entries and the descriptors
1017 *
1018 * id_index is calculated in the declaration to be the index number
1019 * of the match from the usb_device_id table, so we can find the
1020 * corresponding entry in the private table.
1021 */
3c332422
DD
1022 result = get_device_info(us, id);
1023 if (result)
1024 goto BadDevice;
1da177e4 1025
1da177e4
LT
1026 /* Get the transport, protocol, and pipe settings */
1027 result = get_transport(us);
1028 if (result)
1029 goto BadDevice;
1030 result = get_protocol(us);
1031 if (result)
1032 goto BadDevice;
1033 result = get_pipes(us);
1034 if (result)
1035 goto BadDevice;
1036
1037 /* Acquire all the other resources and add the host */
1038 result = usb_stor_acquire_resources(us);
1039 if (result)
1040 goto BadDevice;
1041 result = scsi_add_host(host, &intf->dev);
1042 if (result) {
1043 printk(KERN_WARNING USB_STORAGE
1044 "Unable to add the scsi host\n");
1045 goto BadDevice;
1046 }
1047
1048 /* Start up the thread for delayed SCSI-device scanning */
3f13e66e
AS
1049 th = kthread_create(usb_stor_scan_thread, us, "usb-stor-scan");
1050 if (IS_ERR(th)) {
1da177e4
LT
1051 printk(KERN_WARNING USB_STORAGE
1052 "Unable to start the device-scanning thread\n");
543f7810 1053 complete(&us->scanning_done);
77f46328 1054 quiesce_and_remove_host(us);
3f13e66e 1055 result = PTR_ERR(th);
1da177e4
LT
1056 goto BadDevice;
1057 }
1da177e4 1058
3f13e66e 1059 wake_up_process(th);
1da177e4
LT
1060
1061 return 0;
1062
1063 /* We come here if there are any problems */
1064BadDevice:
1065 US_DEBUGP("storage_probe() failed\n");
77f46328 1066 release_everything(us);
1da177e4
LT
1067 return result;
1068}
1069
1070/* Handle a disconnect event from the USB core */
1071static void storage_disconnect(struct usb_interface *intf)
1072{
1073 struct us_data *us = usb_get_intfdata(intf);
1074
1075 US_DEBUGP("storage_disconnect() called\n");
77f46328
MD
1076 quiesce_and_remove_host(us);
1077 release_everything(us);
1da177e4
LT
1078}
1079
1080/***********************************************************************
1081 * Initialization and registration
1082 ***********************************************************************/
1083
ce2596df 1084static struct usb_driver usb_storage_driver = {
ce2596df
AS
1085 .name = "usb-storage",
1086 .probe = storage_probe,
1087 .disconnect = storage_disconnect,
1088#ifdef CONFIG_PM
1089 .suspend = storage_suspend,
1090 .resume = storage_resume,
f07600cf 1091 .reset_resume = storage_reset_resume,
ce2596df 1092#endif
47104b0d
AS
1093 .pre_reset = storage_pre_reset,
1094 .post_reset = storage_post_reset,
ce2596df 1095 .id_table = storage_usb_ids,
543f7810 1096 .soft_unbind = 1,
ce2596df
AS
1097};
1098
d4f373e5
AS
1099/* Works only for digits and letters, but small and fast */
1100#define TOLOWER(x) ((x) | 0x20)
1101
1102static void __init parse_quirks(void)
1103{
1104 int n, i;
1105 char *p;
1106
1107 if (!quirks)
1108 return;
1109
1110 /* Count the ':' characters to get 2 * the number of entries */
1111 n = 0;
1112 for (p = quirks; *p; ++p) {
1113 if (*p == ':')
1114 ++n;
1115 }
1116 n /= 2;
1117 if (n == 0)
1118 return; /* Don't allocate 0 bytes */
1119
1120 quirks_list = kmalloc(n * sizeof(*quirks_list), GFP_KERNEL);
1121 if (!quirks_list)
1122 return;
1123
1124 p = quirks;
1125 quirks_end = quirks_list;
1126 for (i = 0; i < n && *p; ++i) {
1127 unsigned f = 0;
1128
1129 /* Each entry consists of VID:PID:flags */
1130 quirks_end->vid = simple_strtoul(p, &p, 16);
1131 if (*p != ':')
1132 goto skip_to_next;
1133 quirks_end->pid = simple_strtoul(p+1, &p, 16);
1134 if (*p != ':')
1135 goto skip_to_next;
1136
1137 while (*++p && *p != ',') {
1138 switch (TOLOWER(*p)) {
1139 case 'c':
1140 f |= US_FL_FIX_CAPACITY;
1141 break;
1142 case 'i':
1143 f |= US_FL_IGNORE_DEVICE;
1144 break;
1145 case 'l':
1146 f |= US_FL_NOT_LOCKABLE;
1147 break;
1148 case 'm':
1149 f |= US_FL_MAX_SECTORS_64;
1150 break;
1151 case 'r':
1152 f |= US_FL_IGNORE_RESIDUE;
1153 break;
1154 case 's':
1155 f |= US_FL_SINGLE_LUN;
1156 break;
1157 case 'w':
1158 f |= US_FL_NO_WP_DETECT;
1159 break;
1160 /* Ignore unrecognized flag characters */
1161 }
1162 }
1163 quirks_end->fflags = f;
1164 ++quirks_end;
1165
1166 skip_to_next:
1167 /* Entries are separated by commas */
1168 while (*p) {
1169 if (*p++ == ',')
1170 break;
1171 }
1172 } /* for (i = 0; ...) */
1173}
1174
1da177e4
LT
1175static int __init usb_stor_init(void)
1176{
1177 int retval;
d4f373e5 1178
1da177e4 1179 printk(KERN_INFO "Initializing USB Mass Storage driver...\n");
d4f373e5 1180 parse_quirks();
1da177e4
LT
1181
1182 /* register the driver, return usb_register return code if error */
1183 retval = usb_register(&usb_storage_driver);
a00828e9 1184 if (retval == 0) {
1da177e4 1185 printk(KERN_INFO "USB Mass Storage support registered.\n");
a00828e9
PZ
1186 usb_usual_set_present(USB_US_TYPE_STOR);
1187 }
1da177e4
LT
1188 return retval;
1189}
1190
1191static void __exit usb_stor_exit(void)
1192{
1193 US_DEBUGP("usb_stor_exit() called\n");
1194
1195 /* Deregister the driver
1196 * This will cause disconnect() to be called for each
1197 * attached unit
1198 */
1199 US_DEBUGP("-- calling usb_deregister()\n");
1200 usb_deregister(&usb_storage_driver) ;
1201
a00828e9 1202 usb_usual_clear_present(USB_US_TYPE_STOR);
1da177e4
LT
1203}
1204
1205module_init(usb_stor_init);
1206module_exit(usb_stor_exit);