GNU Linux-libre 4.4.288-gnu1
[releases.git] / drivers / usb / gadget / function / f_mass_storage.c
1 /*
2  * f_mass_storage.c -- Mass Storage USB Composite Function
3  *
4  * Copyright (C) 2003-2008 Alan Stern
5  * Copyright (C) 2009 Samsung Electronics
6  *                    Author: Michal Nazarewicz <mina86@mina86.com>
7  * All rights reserved.
8  *
9  * Redistribution and use in source and binary forms, with or without
10  * modification, are permitted provided that the following conditions
11  * are met:
12  * 1. Redistributions of source code must retain the above copyright
13  *    notice, this list of conditions, and the following disclaimer,
14  *    without modification.
15  * 2. Redistributions in binary form must reproduce the above copyright
16  *    notice, this list of conditions and the following disclaimer in the
17  *    documentation and/or other materials provided with the distribution.
18  * 3. The names of the above-listed copyright holders may not be used
19  *    to endorse or promote products derived from this software without
20  *    specific prior written permission.
21  *
22  * ALTERNATIVELY, this software may be distributed under the terms of the
23  * GNU General Public License ("GPL") as published by the Free Software
24  * Foundation, either version 2 of that License or (at your option) any
25  * later version.
26  *
27  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS
28  * IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
29  * THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
30  * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
31  * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
32  * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
33  * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
34  * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
35  * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
36  * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
37  * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
38  */
39
40 /*
41  * The Mass Storage Function acts as a USB Mass Storage device,
42  * appearing to the host as a disk drive or as a CD-ROM drive.  In
43  * addition to providing an example of a genuinely useful composite
44  * function for a USB device, it also illustrates a technique of
45  * double-buffering for increased throughput.
46  *
47  * For more information about MSF and in particular its module
48  * parameters and sysfs interface read the
49  * <Documentation/usb/mass-storage.txt> file.
50  */
51
52 /*
53  * MSF is configured by specifying a fsg_config structure.  It has the
54  * following fields:
55  *
56  *      nluns           Number of LUNs function have (anywhere from 1
57  *                              to FSG_MAX_LUNS).
58  *      luns            An array of LUN configuration values.  This
59  *                              should be filled for each LUN that
60  *                              function will include (ie. for "nluns"
61  *                              LUNs).  Each element of the array has
62  *                              the following fields:
63  *      ->filename      The path to the backing file for the LUN.
64  *                              Required if LUN is not marked as
65  *                              removable.
66  *      ->ro            Flag specifying access to the LUN shall be
67  *                              read-only.  This is implied if CD-ROM
68  *                              emulation is enabled as well as when
69  *                              it was impossible to open "filename"
70  *                              in R/W mode.
71  *      ->removable     Flag specifying that LUN shall be indicated as
72  *                              being removable.
73  *      ->cdrom         Flag specifying that LUN shall be reported as
74  *                              being a CD-ROM.
75  *      ->nofua         Flag specifying that FUA flag in SCSI WRITE(10,12)
76  *                              commands for this LUN shall be ignored.
77  *
78  *      vendor_name
79  *      product_name
80  *      release         Information used as a reply to INQUIRY
81  *                              request.  To use default set to NULL,
82  *                              NULL, 0xffff respectively.  The first
83  *                              field should be 8 and the second 16
84  *                              characters or less.
85  *
86  *      can_stall       Set to permit function to halt bulk endpoints.
87  *                              Disabled on some USB devices known not
88  *                              to work correctly.  You should set it
89  *                              to true.
90  *
91  * If "removable" is not set for a LUN then a backing file must be
92  * specified.  If it is set, then NULL filename means the LUN's medium
93  * is not loaded (an empty string as "filename" in the fsg_config
94  * structure causes error).  The CD-ROM emulation includes a single
95  * data track and no audio tracks; hence there need be only one
96  * backing file per LUN.
97  *
98  * This function is heavily based on "File-backed Storage Gadget" by
99  * Alan Stern which in turn is heavily based on "Gadget Zero" by David
100  * Brownell.  The driver's SCSI command interface was based on the
101  * "Information technology - Small Computer System Interface - 2"
102  * document from X3T9.2 Project 375D, Revision 10L, 7-SEP-93,
103  * available at <http://www.t10.org/ftp/t10/drafts/s2/s2-r10l.pdf>.
104  * The single exception is opcode 0x23 (READ FORMAT CAPACITIES), which
105  * was based on the "Universal Serial Bus Mass Storage Class UFI
106  * Command Specification" document, Revision 1.0, December 14, 1998,
107  * available at
108  * <http://www.usb.org/developers/devclass_docs/usbmass-ufi10.pdf>.
109  */
110
111 /*
112  *                              Driver Design
113  *
114  * The MSF is fairly straightforward.  There is a main kernel
115  * thread that handles most of the work.  Interrupt routines field
116  * callbacks from the controller driver: bulk- and interrupt-request
117  * completion notifications, endpoint-0 events, and disconnect events.
118  * Completion events are passed to the main thread by wakeup calls.  Many
119  * ep0 requests are handled at interrupt time, but SetInterface,
120  * SetConfiguration, and device reset requests are forwarded to the
121  * thread in the form of "exceptions" using SIGUSR1 signals (since they
122  * should interrupt any ongoing file I/O operations).
123  *
124  * The thread's main routine implements the standard command/data/status
125  * parts of a SCSI interaction.  It and its subroutines are full of tests
126  * for pending signals/exceptions -- all this polling is necessary since
127  * the kernel has no setjmp/longjmp equivalents.  (Maybe this is an
128  * indication that the driver really wants to be running in userspace.)
129  * An important point is that so long as the thread is alive it keeps an
130  * open reference to the backing file.  This will prevent unmounting
131  * the backing file's underlying filesystem and could cause problems
132  * during system shutdown, for example.  To prevent such problems, the
133  * thread catches INT, TERM, and KILL signals and converts them into
134  * an EXIT exception.
135  *
136  * In normal operation the main thread is started during the gadget's
137  * fsg_bind() callback and stopped during fsg_unbind().  But it can
138  * also exit when it receives a signal, and there's no point leaving
139  * the gadget running when the thread is dead.  As of this moment, MSF
140  * provides no way to deregister the gadget when thread dies -- maybe
141  * a callback functions is needed.
142  *
143  * To provide maximum throughput, the driver uses a circular pipeline of
144  * buffer heads (struct fsg_buffhd).  In principle the pipeline can be
145  * arbitrarily long; in practice the benefits don't justify having more
146  * than 2 stages (i.e., double buffering).  But it helps to think of the
147  * pipeline as being a long one.  Each buffer head contains a bulk-in and
148  * a bulk-out request pointer (since the buffer can be used for both
149  * output and input -- directions always are given from the host's
150  * point of view) as well as a pointer to the buffer and various state
151  * variables.
152  *
153  * Use of the pipeline follows a simple protocol.  There is a variable
154  * (fsg->next_buffhd_to_fill) that points to the next buffer head to use.
155  * At any time that buffer head may still be in use from an earlier
156  * request, so each buffer head has a state variable indicating whether
157  * it is EMPTY, FULL, or BUSY.  Typical use involves waiting for the
158  * buffer head to be EMPTY, filling the buffer either by file I/O or by
159  * USB I/O (during which the buffer head is BUSY), and marking the buffer
160  * head FULL when the I/O is complete.  Then the buffer will be emptied
161  * (again possibly by USB I/O, during which it is marked BUSY) and
162  * finally marked EMPTY again (possibly by a completion routine).
163  *
164  * A module parameter tells the driver to avoid stalling the bulk
165  * endpoints wherever the transport specification allows.  This is
166  * necessary for some UDCs like the SuperH, which cannot reliably clear a
167  * halt on a bulk endpoint.  However, under certain circumstances the
168  * Bulk-only specification requires a stall.  In such cases the driver
169  * will halt the endpoint and set a flag indicating that it should clear
170  * the halt in software during the next device reset.  Hopefully this
171  * will permit everything to work correctly.  Furthermore, although the
172  * specification allows the bulk-out endpoint to halt when the host sends
173  * too much data, implementing this would cause an unavoidable race.
174  * The driver will always use the "no-stall" approach for OUT transfers.
175  *
176  * One subtle point concerns sending status-stage responses for ep0
177  * requests.  Some of these requests, such as device reset, can involve
178  * interrupting an ongoing file I/O operation, which might take an
179  * arbitrarily long time.  During that delay the host might give up on
180  * the original ep0 request and issue a new one.  When that happens the
181  * driver should not notify the host about completion of the original
182  * request, as the host will no longer be waiting for it.  So the driver
183  * assigns to each ep0 request a unique tag, and it keeps track of the
184  * tag value of the request associated with a long-running exception
185  * (device-reset, interface-change, or configuration-change).  When the
186  * exception handler is finished, the status-stage response is submitted
187  * only if the current ep0 request tag is equal to the exception request
188  * tag.  Thus only the most recently received ep0 request will get a
189  * status-stage response.
190  *
191  * Warning: This driver source file is too long.  It ought to be split up
192  * into a header file plus about 3 separate .c files, to handle the details
193  * of the Gadget, USB Mass Storage, and SCSI protocols.
194  */
195
196
197 /* #define VERBOSE_DEBUG */
198 /* #define DUMP_MSGS */
199
200 #include <linux/blkdev.h>
201 #include <linux/completion.h>
202 #include <linux/dcache.h>
203 #include <linux/delay.h>
204 #include <linux/device.h>
205 #include <linux/fcntl.h>
206 #include <linux/file.h>
207 #include <linux/fs.h>
208 #include <linux/kref.h>
209 #include <linux/kthread.h>
210 #include <linux/limits.h>
211 #include <linux/rwsem.h>
212 #include <linux/slab.h>
213 #include <linux/spinlock.h>
214 #include <linux/string.h>
215 #include <linux/freezer.h>
216 #include <linux/module.h>
217 #include <linux/uaccess.h>
218
219 #include <linux/usb/ch9.h>
220 #include <linux/usb/gadget.h>
221 #include <linux/usb/composite.h>
222
223 #include <linux/nospec.h>
224
225 #include "configfs.h"
226
227
228 /*------------------------------------------------------------------------*/
229
230 #define FSG_DRIVER_DESC         "Mass Storage Function"
231 #define FSG_DRIVER_VERSION      "2009/09/11"
232
233 static const char fsg_string_interface[] = "Mass Storage";
234
235 #include "storage_common.h"
236 #include "f_mass_storage.h"
237
238 /* Static strings, in UTF-8 (for simplicity we use only ASCII characters) */
239 static struct usb_string                fsg_strings[] = {
240         {FSG_STRING_INTERFACE,          fsg_string_interface},
241         {}
242 };
243
244 static struct usb_gadget_strings        fsg_stringtab = {
245         .language       = 0x0409,               /* en-us */
246         .strings        = fsg_strings,
247 };
248
249 static struct usb_gadget_strings *fsg_strings_array[] = {
250         &fsg_stringtab,
251         NULL,
252 };
253
254 /*-------------------------------------------------------------------------*/
255
256 struct fsg_dev;
257 struct fsg_common;
258
259 /* Data shared by all the FSG instances. */
260 struct fsg_common {
261         struct usb_gadget       *gadget;
262         struct usb_composite_dev *cdev;
263         struct fsg_dev          *fsg, *new_fsg;
264         wait_queue_head_t       fsg_wait;
265
266         /* filesem protects: backing files in use */
267         struct rw_semaphore     filesem;
268
269         /* lock protects: state, all the req_busy's */
270         spinlock_t              lock;
271
272         struct usb_ep           *ep0;           /* Copy of gadget->ep0 */
273         struct usb_request      *ep0req;        /* Copy of cdev->req */
274         unsigned int            ep0_req_tag;
275
276         struct fsg_buffhd       *next_buffhd_to_fill;
277         struct fsg_buffhd       *next_buffhd_to_drain;
278         struct fsg_buffhd       *buffhds;
279         unsigned int            fsg_num_buffers;
280
281         int                     cmnd_size;
282         u8                      cmnd[MAX_COMMAND_SIZE];
283
284         unsigned int            lun;
285         struct fsg_lun          *luns[FSG_MAX_LUNS];
286         struct fsg_lun          *curlun;
287
288         unsigned int            bulk_out_maxpacket;
289         enum fsg_state          state;          /* For exception handling */
290         unsigned int            exception_req_tag;
291
292         enum data_direction     data_dir;
293         u32                     data_size;
294         u32                     data_size_from_cmnd;
295         u32                     tag;
296         u32                     residue;
297         u32                     usb_amount_left;
298
299         unsigned int            can_stall:1;
300         unsigned int            free_storage_on_release:1;
301         unsigned int            phase_error:1;
302         unsigned int            short_packet_received:1;
303         unsigned int            bad_lun_okay:1;
304         unsigned int            running:1;
305         unsigned int            sysfs:1;
306
307         int                     thread_wakeup_needed;
308         struct completion       thread_notifier;
309         struct task_struct      *thread_task;
310
311         /* Gadget's private data. */
312         void                    *private_data;
313
314         /*
315          * Vendor (8 chars), product (16 chars), release (4
316          * hexadecimal digits) and NUL byte
317          */
318         char inquiry_string[8 + 16 + 4 + 1];
319
320         struct kref             ref;
321 };
322
323 struct fsg_dev {
324         struct usb_function     function;
325         struct usb_gadget       *gadget;        /* Copy of cdev->gadget */
326         struct fsg_common       *common;
327
328         u16                     interface_number;
329
330         unsigned int            bulk_in_enabled:1;
331         unsigned int            bulk_out_enabled:1;
332
333         unsigned long           atomic_bitflags;
334 #define IGNORE_BULK_OUT         0
335
336         struct usb_ep           *bulk_in;
337         struct usb_ep           *bulk_out;
338 };
339
340 static inline int __fsg_is_set(struct fsg_common *common,
341                                const char *func, unsigned line)
342 {
343         if (common->fsg)
344                 return 1;
345         ERROR(common, "common->fsg is NULL in %s at %u\n", func, line);
346         WARN_ON(1);
347         return 0;
348 }
349
350 #define fsg_is_set(common) likely(__fsg_is_set(common, __func__, __LINE__))
351
352 static inline struct fsg_dev *fsg_from_func(struct usb_function *f)
353 {
354         return container_of(f, struct fsg_dev, function);
355 }
356
357 typedef void (*fsg_routine_t)(struct fsg_dev *);
358
359 static int exception_in_progress(struct fsg_common *common)
360 {
361         return common->state > FSG_STATE_IDLE;
362 }
363
364 /* Make bulk-out requests be divisible by the maxpacket size */
365 static void set_bulk_out_req_length(struct fsg_common *common,
366                                     struct fsg_buffhd *bh, unsigned int length)
367 {
368         unsigned int    rem;
369
370         bh->bulk_out_intended_length = length;
371         rem = length % common->bulk_out_maxpacket;
372         if (rem > 0)
373                 length += common->bulk_out_maxpacket - rem;
374         bh->outreq->length = length;
375 }
376
377
378 /*-------------------------------------------------------------------------*/
379
380 static int fsg_set_halt(struct fsg_dev *fsg, struct usb_ep *ep)
381 {
382         const char      *name;
383
384         if (ep == fsg->bulk_in)
385                 name = "bulk-in";
386         else if (ep == fsg->bulk_out)
387                 name = "bulk-out";
388         else
389                 name = ep->name;
390         DBG(fsg, "%s set halt\n", name);
391         return usb_ep_set_halt(ep);
392 }
393
394
395 /*-------------------------------------------------------------------------*/
396
397 /* These routines may be called in process context or in_irq */
398
399 /* Caller must hold fsg->lock */
400 static void wakeup_thread(struct fsg_common *common)
401 {
402         /*
403          * Ensure the reading of thread_wakeup_needed
404          * and the writing of bh->state are completed
405          */
406         smp_mb();
407         /* Tell the main thread that something has happened */
408         common->thread_wakeup_needed = 1;
409         if (common->thread_task)
410                 wake_up_process(common->thread_task);
411 }
412
413 static void raise_exception(struct fsg_common *common, enum fsg_state new_state)
414 {
415         unsigned long           flags;
416
417         /*
418          * Do nothing if a higher-priority exception is already in progress.
419          * If a lower-or-equal priority exception is in progress, preempt it
420          * and notify the main thread by sending it a signal.
421          */
422         spin_lock_irqsave(&common->lock, flags);
423         if (common->state <= new_state) {
424                 common->exception_req_tag = common->ep0_req_tag;
425                 common->state = new_state;
426                 if (common->thread_task)
427                         send_sig_info(SIGUSR1, SEND_SIG_FORCED,
428                                       common->thread_task);
429         }
430         spin_unlock_irqrestore(&common->lock, flags);
431 }
432
433
434 /*-------------------------------------------------------------------------*/
435
436 static int ep0_queue(struct fsg_common *common)
437 {
438         int     rc;
439
440         rc = usb_ep_queue(common->ep0, common->ep0req, GFP_ATOMIC);
441         common->ep0->driver_data = common;
442         if (rc != 0 && rc != -ESHUTDOWN) {
443                 /* We can't do much more than wait for a reset */
444                 WARNING(common, "error in submission: %s --> %d\n",
445                         common->ep0->name, rc);
446         }
447         return rc;
448 }
449
450
451 /*-------------------------------------------------------------------------*/
452
453 /* Completion handlers. These always run in_irq. */
454
455 static void bulk_in_complete(struct usb_ep *ep, struct usb_request *req)
456 {
457         struct fsg_common       *common = ep->driver_data;
458         struct fsg_buffhd       *bh = req->context;
459
460         if (req->status || req->actual != req->length)
461                 DBG(common, "%s --> %d, %u/%u\n", __func__,
462                     req->status, req->actual, req->length);
463         if (req->status == -ECONNRESET)         /* Request was cancelled */
464                 usb_ep_fifo_flush(ep);
465
466         /* Hold the lock while we update the request and buffer states */
467         smp_wmb();
468         spin_lock(&common->lock);
469         bh->inreq_busy = 0;
470         bh->state = BUF_STATE_EMPTY;
471         wakeup_thread(common);
472         spin_unlock(&common->lock);
473 }
474
475 static void bulk_out_complete(struct usb_ep *ep, struct usb_request *req)
476 {
477         struct fsg_common       *common = ep->driver_data;
478         struct fsg_buffhd       *bh = req->context;
479
480         dump_msg(common, "bulk-out", req->buf, req->actual);
481         if (req->status || req->actual != bh->bulk_out_intended_length)
482                 DBG(common, "%s --> %d, %u/%u\n", __func__,
483                     req->status, req->actual, bh->bulk_out_intended_length);
484         if (req->status == -ECONNRESET)         /* Request was cancelled */
485                 usb_ep_fifo_flush(ep);
486
487         /* Hold the lock while we update the request and buffer states */
488         smp_wmb();
489         spin_lock(&common->lock);
490         bh->outreq_busy = 0;
491         bh->state = BUF_STATE_FULL;
492         wakeup_thread(common);
493         spin_unlock(&common->lock);
494 }
495
496 static int _fsg_common_get_max_lun(struct fsg_common *common)
497 {
498         int i = ARRAY_SIZE(common->luns) - 1;
499
500         while (i >= 0 && !common->luns[i])
501                 --i;
502
503         return i;
504 }
505
506 static int fsg_setup(struct usb_function *f,
507                      const struct usb_ctrlrequest *ctrl)
508 {
509         struct fsg_dev          *fsg = fsg_from_func(f);
510         struct usb_request      *req = fsg->common->ep0req;
511         u16                     w_index = le16_to_cpu(ctrl->wIndex);
512         u16                     w_value = le16_to_cpu(ctrl->wValue);
513         u16                     w_length = le16_to_cpu(ctrl->wLength);
514
515         if (!fsg_is_set(fsg->common))
516                 return -EOPNOTSUPP;
517
518         ++fsg->common->ep0_req_tag;     /* Record arrival of a new request */
519         req->context = NULL;
520         req->length = 0;
521         dump_msg(fsg, "ep0-setup", (u8 *) ctrl, sizeof(*ctrl));
522
523         switch (ctrl->bRequest) {
524
525         case US_BULK_RESET_REQUEST:
526                 if (ctrl->bRequestType !=
527                     (USB_DIR_OUT | USB_TYPE_CLASS | USB_RECIP_INTERFACE))
528                         break;
529                 if (w_index != fsg->interface_number || w_value != 0 ||
530                                 w_length != 0)
531                         return -EDOM;
532
533                 /*
534                  * Raise an exception to stop the current operation
535                  * and reinitialize our state.
536                  */
537                 DBG(fsg, "bulk reset request\n");
538                 raise_exception(fsg->common, FSG_STATE_RESET);
539                 return USB_GADGET_DELAYED_STATUS;
540
541         case US_BULK_GET_MAX_LUN:
542                 if (ctrl->bRequestType !=
543                     (USB_DIR_IN | USB_TYPE_CLASS | USB_RECIP_INTERFACE))
544                         break;
545                 if (w_index != fsg->interface_number || w_value != 0 ||
546                                 w_length != 1)
547                         return -EDOM;
548                 VDBG(fsg, "get max LUN\n");
549                 *(u8 *)req->buf = _fsg_common_get_max_lun(fsg->common);
550
551                 /* Respond with data/status */
552                 req->length = min((u16)1, w_length);
553                 return ep0_queue(fsg->common);
554         }
555
556         VDBG(fsg,
557              "unknown class-specific control req %02x.%02x v%04x i%04x l%u\n",
558              ctrl->bRequestType, ctrl->bRequest,
559              le16_to_cpu(ctrl->wValue), w_index, w_length);
560         return -EOPNOTSUPP;
561 }
562
563
564 /*-------------------------------------------------------------------------*/
565
566 /* All the following routines run in process context */
567
568 /* Use this for bulk or interrupt transfers, not ep0 */
569 static void start_transfer(struct fsg_dev *fsg, struct usb_ep *ep,
570                            struct usb_request *req, int *pbusy,
571                            enum fsg_buffer_state *state)
572 {
573         int     rc;
574
575         if (ep == fsg->bulk_in)
576                 dump_msg(fsg, "bulk-in", req->buf, req->length);
577
578         spin_lock_irq(&fsg->common->lock);
579         *pbusy = 1;
580         *state = BUF_STATE_BUSY;
581         spin_unlock_irq(&fsg->common->lock);
582
583         rc = usb_ep_queue(ep, req, GFP_KERNEL);
584         if (rc == 0)
585                 return;  /* All good, we're done */
586
587         *pbusy = 0;
588         *state = BUF_STATE_EMPTY;
589
590         /* We can't do much more than wait for a reset */
591
592         /*
593          * Note: currently the net2280 driver fails zero-length
594          * submissions if DMA is enabled.
595          */
596         if (rc != -ESHUTDOWN && !(rc == -EOPNOTSUPP && req->length == 0))
597                 WARNING(fsg, "error in submission: %s --> %d\n", ep->name, rc);
598 }
599
600 static bool start_in_transfer(struct fsg_common *common, struct fsg_buffhd *bh)
601 {
602         if (!fsg_is_set(common))
603                 return false;
604         start_transfer(common->fsg, common->fsg->bulk_in,
605                        bh->inreq, &bh->inreq_busy, &bh->state);
606         return true;
607 }
608
609 static bool start_out_transfer(struct fsg_common *common, struct fsg_buffhd *bh)
610 {
611         if (!fsg_is_set(common))
612                 return false;
613         start_transfer(common->fsg, common->fsg->bulk_out,
614                        bh->outreq, &bh->outreq_busy, &bh->state);
615         return true;
616 }
617
618 static int sleep_thread(struct fsg_common *common, bool can_freeze)
619 {
620         int     rc = 0;
621
622         /* Wait until a signal arrives or we are woken up */
623         for (;;) {
624                 if (can_freeze)
625                         try_to_freeze();
626                 set_current_state(TASK_INTERRUPTIBLE);
627                 if (signal_pending(current)) {
628                         rc = -EINTR;
629                         break;
630                 }
631                 if (common->thread_wakeup_needed)
632                         break;
633                 schedule();
634         }
635         __set_current_state(TASK_RUNNING);
636         common->thread_wakeup_needed = 0;
637
638         /*
639          * Ensure the writing of thread_wakeup_needed
640          * and the reading of bh->state are completed
641          */
642         smp_mb();
643         return rc;
644 }
645
646
647 /*-------------------------------------------------------------------------*/
648
649 static int do_read(struct fsg_common *common)
650 {
651         struct fsg_lun          *curlun = common->curlun;
652         u32                     lba;
653         struct fsg_buffhd       *bh;
654         int                     rc;
655         u32                     amount_left;
656         loff_t                  file_offset, file_offset_tmp;
657         unsigned int            amount;
658         ssize_t                 nread;
659
660         /*
661          * Get the starting Logical Block Address and check that it's
662          * not too big.
663          */
664         if (common->cmnd[0] == READ_6)
665                 lba = get_unaligned_be24(&common->cmnd[1]);
666         else {
667                 lba = get_unaligned_be32(&common->cmnd[2]);
668
669                 /*
670                  * We allow DPO (Disable Page Out = don't save data in the
671                  * cache) and FUA (Force Unit Access = don't read from the
672                  * cache), but we don't implement them.
673                  */
674                 if ((common->cmnd[1] & ~0x18) != 0) {
675                         curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
676                         return -EINVAL;
677                 }
678         }
679         if (lba >= curlun->num_sectors) {
680                 curlun->sense_data = SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
681                 return -EINVAL;
682         }
683         file_offset = ((loff_t) lba) << curlun->blkbits;
684
685         /* Carry out the file reads */
686         amount_left = common->data_size_from_cmnd;
687         if (unlikely(amount_left == 0))
688                 return -EIO;            /* No default reply */
689
690         for (;;) {
691                 /*
692                  * Figure out how much we need to read:
693                  * Try to read the remaining amount.
694                  * But don't read more than the buffer size.
695                  * And don't try to read past the end of the file.
696                  */
697                 amount = min(amount_left, FSG_BUFLEN);
698                 amount = min((loff_t)amount,
699                              curlun->file_length - file_offset);
700
701                 /* Wait for the next buffer to become available */
702                 bh = common->next_buffhd_to_fill;
703                 while (bh->state != BUF_STATE_EMPTY) {
704                         rc = sleep_thread(common, false);
705                         if (rc)
706                                 return rc;
707                 }
708
709                 /*
710                  * If we were asked to read past the end of file,
711                  * end with an empty buffer.
712                  */
713                 if (amount == 0) {
714                         curlun->sense_data =
715                                         SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
716                         curlun->sense_data_info =
717                                         file_offset >> curlun->blkbits;
718                         curlun->info_valid = 1;
719                         bh->inreq->length = 0;
720                         bh->state = BUF_STATE_FULL;
721                         break;
722                 }
723
724                 /* Perform the read */
725                 file_offset_tmp = file_offset;
726                 nread = vfs_read(curlun->filp,
727                                  (char __user *)bh->buf,
728                                  amount, &file_offset_tmp);
729                 VLDBG(curlun, "file read %u @ %llu -> %d\n", amount,
730                       (unsigned long long)file_offset, (int)nread);
731                 if (signal_pending(current))
732                         return -EINTR;
733
734                 if (nread < 0) {
735                         LDBG(curlun, "error in file read: %d\n", (int)nread);
736                         nread = 0;
737                 } else if (nread < amount) {
738                         LDBG(curlun, "partial file read: %d/%u\n",
739                              (int)nread, amount);
740                         nread = round_down(nread, curlun->blksize);
741                 }
742                 file_offset  += nread;
743                 amount_left  -= nread;
744                 common->residue -= nread;
745
746                 /*
747                  * Except at the end of the transfer, nread will be
748                  * equal to the buffer size, which is divisible by the
749                  * bulk-in maxpacket size.
750                  */
751                 bh->inreq->length = nread;
752                 bh->state = BUF_STATE_FULL;
753
754                 /* If an error occurred, report it and its position */
755                 if (nread < amount) {
756                         curlun->sense_data = SS_UNRECOVERED_READ_ERROR;
757                         curlun->sense_data_info =
758                                         file_offset >> curlun->blkbits;
759                         curlun->info_valid = 1;
760                         break;
761                 }
762
763                 if (amount_left == 0)
764                         break;          /* No more left to read */
765
766                 /* Send this buffer and go read some more */
767                 bh->inreq->zero = 0;
768                 if (!start_in_transfer(common, bh))
769                         /* Don't know what to do if common->fsg is NULL */
770                         return -EIO;
771                 common->next_buffhd_to_fill = bh->next;
772         }
773
774         return -EIO;            /* No default reply */
775 }
776
777
778 /*-------------------------------------------------------------------------*/
779
780 static int do_write(struct fsg_common *common)
781 {
782         struct fsg_lun          *curlun = common->curlun;
783         u32                     lba;
784         struct fsg_buffhd       *bh;
785         int                     get_some_more;
786         u32                     amount_left_to_req, amount_left_to_write;
787         loff_t                  usb_offset, file_offset, file_offset_tmp;
788         unsigned int            amount;
789         ssize_t                 nwritten;
790         int                     rc;
791
792         if (curlun->ro) {
793                 curlun->sense_data = SS_WRITE_PROTECTED;
794                 return -EINVAL;
795         }
796         spin_lock(&curlun->filp->f_lock);
797         curlun->filp->f_flags &= ~O_SYNC;       /* Default is not to wait */
798         spin_unlock(&curlun->filp->f_lock);
799
800         /*
801          * Get the starting Logical Block Address and check that it's
802          * not too big
803          */
804         if (common->cmnd[0] == WRITE_6)
805                 lba = get_unaligned_be24(&common->cmnd[1]);
806         else {
807                 lba = get_unaligned_be32(&common->cmnd[2]);
808
809                 /*
810                  * We allow DPO (Disable Page Out = don't save data in the
811                  * cache) and FUA (Force Unit Access = write directly to the
812                  * medium).  We don't implement DPO; we implement FUA by
813                  * performing synchronous output.
814                  */
815                 if (common->cmnd[1] & ~0x18) {
816                         curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
817                         return -EINVAL;
818                 }
819                 if (!curlun->nofua && (common->cmnd[1] & 0x08)) { /* FUA */
820                         spin_lock(&curlun->filp->f_lock);
821                         curlun->filp->f_flags |= O_SYNC;
822                         spin_unlock(&curlun->filp->f_lock);
823                 }
824         }
825         if (lba >= curlun->num_sectors) {
826                 curlun->sense_data = SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
827                 return -EINVAL;
828         }
829
830         /* Carry out the file writes */
831         get_some_more = 1;
832         file_offset = usb_offset = ((loff_t) lba) << curlun->blkbits;
833         amount_left_to_req = common->data_size_from_cmnd;
834         amount_left_to_write = common->data_size_from_cmnd;
835
836         while (amount_left_to_write > 0) {
837
838                 /* Queue a request for more data from the host */
839                 bh = common->next_buffhd_to_fill;
840                 if (bh->state == BUF_STATE_EMPTY && get_some_more) {
841
842                         /*
843                          * Figure out how much we want to get:
844                          * Try to get the remaining amount,
845                          * but not more than the buffer size.
846                          */
847                         amount = min(amount_left_to_req, FSG_BUFLEN);
848
849                         /* Beyond the end of the backing file? */
850                         if (usb_offset >= curlun->file_length) {
851                                 get_some_more = 0;
852                                 curlun->sense_data =
853                                         SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
854                                 curlun->sense_data_info =
855                                         usb_offset >> curlun->blkbits;
856                                 curlun->info_valid = 1;
857                                 continue;
858                         }
859
860                         /* Get the next buffer */
861                         usb_offset += amount;
862                         common->usb_amount_left -= amount;
863                         amount_left_to_req -= amount;
864                         if (amount_left_to_req == 0)
865                                 get_some_more = 0;
866
867                         /*
868                          * Except at the end of the transfer, amount will be
869                          * equal to the buffer size, which is divisible by
870                          * the bulk-out maxpacket size.
871                          */
872                         set_bulk_out_req_length(common, bh, amount);
873                         if (!start_out_transfer(common, bh))
874                                 /* Dunno what to do if common->fsg is NULL */
875                                 return -EIO;
876                         common->next_buffhd_to_fill = bh->next;
877                         continue;
878                 }
879
880                 /* Write the received data to the backing file */
881                 bh = common->next_buffhd_to_drain;
882                 if (bh->state == BUF_STATE_EMPTY && !get_some_more)
883                         break;                  /* We stopped early */
884                 if (bh->state == BUF_STATE_FULL) {
885                         smp_rmb();
886                         common->next_buffhd_to_drain = bh->next;
887                         bh->state = BUF_STATE_EMPTY;
888
889                         /* Did something go wrong with the transfer? */
890                         if (bh->outreq->status != 0) {
891                                 curlun->sense_data = SS_COMMUNICATION_FAILURE;
892                                 curlun->sense_data_info =
893                                         file_offset >> curlun->blkbits;
894                                 curlun->info_valid = 1;
895                                 break;
896                         }
897
898                         amount = bh->outreq->actual;
899                         if (curlun->file_length - file_offset < amount) {
900                                 LERROR(curlun,
901                                        "write %u @ %llu beyond end %llu\n",
902                                        amount, (unsigned long long)file_offset,
903                                        (unsigned long long)curlun->file_length);
904                                 amount = curlun->file_length - file_offset;
905                         }
906
907                         /* Don't accept excess data.  The spec doesn't say
908                          * what to do in this case.  We'll ignore the error.
909                          */
910                         amount = min(amount, bh->bulk_out_intended_length);
911
912                         /* Don't write a partial block */
913                         amount = round_down(amount, curlun->blksize);
914                         if (amount == 0)
915                                 goto empty_write;
916
917                         /* Perform the write */
918                         file_offset_tmp = file_offset;
919                         nwritten = vfs_write(curlun->filp,
920                                              (char __user *)bh->buf,
921                                              amount, &file_offset_tmp);
922                         VLDBG(curlun, "file write %u @ %llu -> %d\n", amount,
923                               (unsigned long long)file_offset, (int)nwritten);
924                         if (signal_pending(current))
925                                 return -EINTR;          /* Interrupted! */
926
927                         if (nwritten < 0) {
928                                 LDBG(curlun, "error in file write: %d\n",
929                                      (int)nwritten);
930                                 nwritten = 0;
931                         } else if (nwritten < amount) {
932                                 LDBG(curlun, "partial file write: %d/%u\n",
933                                      (int)nwritten, amount);
934                                 nwritten = round_down(nwritten, curlun->blksize);
935                         }
936                         file_offset += nwritten;
937                         amount_left_to_write -= nwritten;
938                         common->residue -= nwritten;
939
940                         /* If an error occurred, report it and its position */
941                         if (nwritten < amount) {
942                                 curlun->sense_data = SS_WRITE_ERROR;
943                                 curlun->sense_data_info =
944                                         file_offset >> curlun->blkbits;
945                                 curlun->info_valid = 1;
946                                 break;
947                         }
948
949  empty_write:
950                         /* Did the host decide to stop early? */
951                         if (bh->outreq->actual < bh->bulk_out_intended_length) {
952                                 common->short_packet_received = 1;
953                                 break;
954                         }
955                         continue;
956                 }
957
958                 /* Wait for something to happen */
959                 rc = sleep_thread(common, false);
960                 if (rc)
961                         return rc;
962         }
963
964         return -EIO;            /* No default reply */
965 }
966
967
968 /*-------------------------------------------------------------------------*/
969
970 static int do_synchronize_cache(struct fsg_common *common)
971 {
972         struct fsg_lun  *curlun = common->curlun;
973         int             rc;
974
975         /* We ignore the requested LBA and write out all file's
976          * dirty data buffers. */
977         rc = fsg_lun_fsync_sub(curlun);
978         if (rc)
979                 curlun->sense_data = SS_WRITE_ERROR;
980         return 0;
981 }
982
983
984 /*-------------------------------------------------------------------------*/
985
986 static void invalidate_sub(struct fsg_lun *curlun)
987 {
988         struct file     *filp = curlun->filp;
989         struct inode    *inode = file_inode(filp);
990         unsigned long   rc;
991
992         rc = invalidate_mapping_pages(inode->i_mapping, 0, -1);
993         VLDBG(curlun, "invalidate_mapping_pages -> %ld\n", rc);
994 }
995
996 static int do_verify(struct fsg_common *common)
997 {
998         struct fsg_lun          *curlun = common->curlun;
999         u32                     lba;
1000         u32                     verification_length;
1001         struct fsg_buffhd       *bh = common->next_buffhd_to_fill;
1002         loff_t                  file_offset, file_offset_tmp;
1003         u32                     amount_left;
1004         unsigned int            amount;
1005         ssize_t                 nread;
1006
1007         /*
1008          * Get the starting Logical Block Address and check that it's
1009          * not too big.
1010          */
1011         lba = get_unaligned_be32(&common->cmnd[2]);
1012         if (lba >= curlun->num_sectors) {
1013                 curlun->sense_data = SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
1014                 return -EINVAL;
1015         }
1016
1017         /*
1018          * We allow DPO (Disable Page Out = don't save data in the
1019          * cache) but we don't implement it.
1020          */
1021         if (common->cmnd[1] & ~0x10) {
1022                 curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1023                 return -EINVAL;
1024         }
1025
1026         verification_length = get_unaligned_be16(&common->cmnd[7]);
1027         if (unlikely(verification_length == 0))
1028                 return -EIO;            /* No default reply */
1029
1030         /* Prepare to carry out the file verify */
1031         amount_left = verification_length << curlun->blkbits;
1032         file_offset = ((loff_t) lba) << curlun->blkbits;
1033
1034         /* Write out all the dirty buffers before invalidating them */
1035         fsg_lun_fsync_sub(curlun);
1036         if (signal_pending(current))
1037                 return -EINTR;
1038
1039         invalidate_sub(curlun);
1040         if (signal_pending(current))
1041                 return -EINTR;
1042
1043         /* Just try to read the requested blocks */
1044         while (amount_left > 0) {
1045                 /*
1046                  * Figure out how much we need to read:
1047                  * Try to read the remaining amount, but not more than
1048                  * the buffer size.
1049                  * And don't try to read past the end of the file.
1050                  */
1051                 amount = min(amount_left, FSG_BUFLEN);
1052                 amount = min((loff_t)amount,
1053                              curlun->file_length - file_offset);
1054                 if (amount == 0) {
1055                         curlun->sense_data =
1056                                         SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
1057                         curlun->sense_data_info =
1058                                 file_offset >> curlun->blkbits;
1059                         curlun->info_valid = 1;
1060                         break;
1061                 }
1062
1063                 /* Perform the read */
1064                 file_offset_tmp = file_offset;
1065                 nread = vfs_read(curlun->filp,
1066                                 (char __user *) bh->buf,
1067                                 amount, &file_offset_tmp);
1068                 VLDBG(curlun, "file read %u @ %llu -> %d\n", amount,
1069                                 (unsigned long long) file_offset,
1070                                 (int) nread);
1071                 if (signal_pending(current))
1072                         return -EINTR;
1073
1074                 if (nread < 0) {
1075                         LDBG(curlun, "error in file verify: %d\n", (int)nread);
1076                         nread = 0;
1077                 } else if (nread < amount) {
1078                         LDBG(curlun, "partial file verify: %d/%u\n",
1079                              (int)nread, amount);
1080                         nread = round_down(nread, curlun->blksize);
1081                 }
1082                 if (nread == 0) {
1083                         curlun->sense_data = SS_UNRECOVERED_READ_ERROR;
1084                         curlun->sense_data_info =
1085                                 file_offset >> curlun->blkbits;
1086                         curlun->info_valid = 1;
1087                         break;
1088                 }
1089                 file_offset += nread;
1090                 amount_left -= nread;
1091         }
1092         return 0;
1093 }
1094
1095
1096 /*-------------------------------------------------------------------------*/
1097
1098 static int do_inquiry(struct fsg_common *common, struct fsg_buffhd *bh)
1099 {
1100         struct fsg_lun *curlun = common->curlun;
1101         u8      *buf = (u8 *) bh->buf;
1102
1103         if (!curlun) {          /* Unsupported LUNs are okay */
1104                 common->bad_lun_okay = 1;
1105                 memset(buf, 0, 36);
1106                 buf[0] = TYPE_NO_LUN;   /* Unsupported, no device-type */
1107                 buf[4] = 31;            /* Additional length */
1108                 return 36;
1109         }
1110
1111         buf[0] = curlun->cdrom ? TYPE_ROM : TYPE_DISK;
1112         buf[1] = curlun->removable ? 0x80 : 0;
1113         buf[2] = 2;             /* ANSI SCSI level 2 */
1114         buf[3] = 2;             /* SCSI-2 INQUIRY data format */
1115         buf[4] = 31;            /* Additional length */
1116         buf[5] = 0;             /* No special options */
1117         buf[6] = 0;
1118         buf[7] = 0;
1119         memcpy(buf + 8, common->inquiry_string, sizeof common->inquiry_string);
1120         return 36;
1121 }
1122
1123 static int do_request_sense(struct fsg_common *common, struct fsg_buffhd *bh)
1124 {
1125         struct fsg_lun  *curlun = common->curlun;
1126         u8              *buf = (u8 *) bh->buf;
1127         u32             sd, sdinfo;
1128         int             valid;
1129
1130         /*
1131          * From the SCSI-2 spec., section 7.9 (Unit attention condition):
1132          *
1133          * If a REQUEST SENSE command is received from an initiator
1134          * with a pending unit attention condition (before the target
1135          * generates the contingent allegiance condition), then the
1136          * target shall either:
1137          *   a) report any pending sense data and preserve the unit
1138          *      attention condition on the logical unit, or,
1139          *   b) report the unit attention condition, may discard any
1140          *      pending sense data, and clear the unit attention
1141          *      condition on the logical unit for that initiator.
1142          *
1143          * FSG normally uses option a); enable this code to use option b).
1144          */
1145 #if 0
1146         if (curlun && curlun->unit_attention_data != SS_NO_SENSE) {
1147                 curlun->sense_data = curlun->unit_attention_data;
1148                 curlun->unit_attention_data = SS_NO_SENSE;
1149         }
1150 #endif
1151
1152         if (!curlun) {          /* Unsupported LUNs are okay */
1153                 common->bad_lun_okay = 1;
1154                 sd = SS_LOGICAL_UNIT_NOT_SUPPORTED;
1155                 sdinfo = 0;
1156                 valid = 0;
1157         } else {
1158                 sd = curlun->sense_data;
1159                 sdinfo = curlun->sense_data_info;
1160                 valid = curlun->info_valid << 7;
1161                 curlun->sense_data = SS_NO_SENSE;
1162                 curlun->sense_data_info = 0;
1163                 curlun->info_valid = 0;
1164         }
1165
1166         memset(buf, 0, 18);
1167         buf[0] = valid | 0x70;                  /* Valid, current error */
1168         buf[2] = SK(sd);
1169         put_unaligned_be32(sdinfo, &buf[3]);    /* Sense information */
1170         buf[7] = 18 - 8;                        /* Additional sense length */
1171         buf[12] = ASC(sd);
1172         buf[13] = ASCQ(sd);
1173         return 18;
1174 }
1175
1176 static int do_read_capacity(struct fsg_common *common, struct fsg_buffhd *bh)
1177 {
1178         struct fsg_lun  *curlun = common->curlun;
1179         u32             lba = get_unaligned_be32(&common->cmnd[2]);
1180         int             pmi = common->cmnd[8];
1181         u8              *buf = (u8 *)bh->buf;
1182
1183         /* Check the PMI and LBA fields */
1184         if (pmi > 1 || (pmi == 0 && lba != 0)) {
1185                 curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1186                 return -EINVAL;
1187         }
1188
1189         put_unaligned_be32(curlun->num_sectors - 1, &buf[0]);
1190                                                 /* Max logical block */
1191         put_unaligned_be32(curlun->blksize, &buf[4]);/* Block length */
1192         return 8;
1193 }
1194
1195 static int do_read_header(struct fsg_common *common, struct fsg_buffhd *bh)
1196 {
1197         struct fsg_lun  *curlun = common->curlun;
1198         int             msf = common->cmnd[1] & 0x02;
1199         u32             lba = get_unaligned_be32(&common->cmnd[2]);
1200         u8              *buf = (u8 *)bh->buf;
1201
1202         if (common->cmnd[1] & ~0x02) {          /* Mask away MSF */
1203                 curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1204                 return -EINVAL;
1205         }
1206         if (lba >= curlun->num_sectors) {
1207                 curlun->sense_data = SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
1208                 return -EINVAL;
1209         }
1210
1211         memset(buf, 0, 8);
1212         buf[0] = 0x01;          /* 2048 bytes of user data, rest is EC */
1213         store_cdrom_address(&buf[4], msf, lba);
1214         return 8;
1215 }
1216
1217 static int do_read_toc(struct fsg_common *common, struct fsg_buffhd *bh)
1218 {
1219         struct fsg_lun  *curlun = common->curlun;
1220         int             msf = common->cmnd[1] & 0x02;
1221         int             start_track = common->cmnd[6];
1222         u8              *buf = (u8 *)bh->buf;
1223
1224         if ((common->cmnd[1] & ~0x02) != 0 ||   /* Mask away MSF */
1225                         start_track > 1) {
1226                 curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1227                 return -EINVAL;
1228         }
1229
1230         memset(buf, 0, 20);
1231         buf[1] = (20-2);                /* TOC data length */
1232         buf[2] = 1;                     /* First track number */
1233         buf[3] = 1;                     /* Last track number */
1234         buf[5] = 0x16;                  /* Data track, copying allowed */
1235         buf[6] = 0x01;                  /* Only track is number 1 */
1236         store_cdrom_address(&buf[8], msf, 0);
1237
1238         buf[13] = 0x16;                 /* Lead-out track is data */
1239         buf[14] = 0xAA;                 /* Lead-out track number */
1240         store_cdrom_address(&buf[16], msf, curlun->num_sectors);
1241         return 20;
1242 }
1243
1244 static int do_mode_sense(struct fsg_common *common, struct fsg_buffhd *bh)
1245 {
1246         struct fsg_lun  *curlun = common->curlun;
1247         int             mscmnd = common->cmnd[0];
1248         u8              *buf = (u8 *) bh->buf;
1249         u8              *buf0 = buf;
1250         int             pc, page_code;
1251         int             changeable_values, all_pages;
1252         int             valid_page = 0;
1253         int             len, limit;
1254
1255         if ((common->cmnd[1] & ~0x08) != 0) {   /* Mask away DBD */
1256                 curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1257                 return -EINVAL;
1258         }
1259         pc = common->cmnd[2] >> 6;
1260         page_code = common->cmnd[2] & 0x3f;
1261         if (pc == 3) {
1262                 curlun->sense_data = SS_SAVING_PARAMETERS_NOT_SUPPORTED;
1263                 return -EINVAL;
1264         }
1265         changeable_values = (pc == 1);
1266         all_pages = (page_code == 0x3f);
1267
1268         /*
1269          * Write the mode parameter header.  Fixed values are: default
1270          * medium type, no cache control (DPOFUA), and no block descriptors.
1271          * The only variable value is the WriteProtect bit.  We will fill in
1272          * the mode data length later.
1273          */
1274         memset(buf, 0, 8);
1275         if (mscmnd == MODE_SENSE) {
1276                 buf[2] = (curlun->ro ? 0x80 : 0x00);            /* WP, DPOFUA */
1277                 buf += 4;
1278                 limit = 255;
1279         } else {                        /* MODE_SENSE_10 */
1280                 buf[3] = (curlun->ro ? 0x80 : 0x00);            /* WP, DPOFUA */
1281                 buf += 8;
1282                 limit = 65535;          /* Should really be FSG_BUFLEN */
1283         }
1284
1285         /* No block descriptors */
1286
1287         /*
1288          * The mode pages, in numerical order.  The only page we support
1289          * is the Caching page.
1290          */
1291         if (page_code == 0x08 || all_pages) {
1292                 valid_page = 1;
1293                 buf[0] = 0x08;          /* Page code */
1294                 buf[1] = 10;            /* Page length */
1295                 memset(buf+2, 0, 10);   /* None of the fields are changeable */
1296
1297                 if (!changeable_values) {
1298                         buf[2] = 0x04;  /* Write cache enable, */
1299                                         /* Read cache not disabled */
1300                                         /* No cache retention priorities */
1301                         put_unaligned_be16(0xffff, &buf[4]);
1302                                         /* Don't disable prefetch */
1303                                         /* Minimum prefetch = 0 */
1304                         put_unaligned_be16(0xffff, &buf[8]);
1305                                         /* Maximum prefetch */
1306                         put_unaligned_be16(0xffff, &buf[10]);
1307                                         /* Maximum prefetch ceiling */
1308                 }
1309                 buf += 12;
1310         }
1311
1312         /*
1313          * Check that a valid page was requested and the mode data length
1314          * isn't too long.
1315          */
1316         len = buf - buf0;
1317         if (!valid_page || len > limit) {
1318                 curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1319                 return -EINVAL;
1320         }
1321
1322         /*  Store the mode data length */
1323         if (mscmnd == MODE_SENSE)
1324                 buf0[0] = len - 1;
1325         else
1326                 put_unaligned_be16(len - 2, buf0);
1327         return len;
1328 }
1329
1330 static int do_start_stop(struct fsg_common *common)
1331 {
1332         struct fsg_lun  *curlun = common->curlun;
1333         int             loej, start;
1334
1335         if (!curlun) {
1336                 return -EINVAL;
1337         } else if (!curlun->removable) {
1338                 curlun->sense_data = SS_INVALID_COMMAND;
1339                 return -EINVAL;
1340         } else if ((common->cmnd[1] & ~0x01) != 0 || /* Mask away Immed */
1341                    (common->cmnd[4] & ~0x03) != 0) { /* Mask LoEj, Start */
1342                 curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1343                 return -EINVAL;
1344         }
1345
1346         loej  = common->cmnd[4] & 0x02;
1347         start = common->cmnd[4] & 0x01;
1348
1349         /*
1350          * Our emulation doesn't support mounting; the medium is
1351          * available for use as soon as it is loaded.
1352          */
1353         if (start) {
1354                 if (!fsg_lun_is_open(curlun)) {
1355                         curlun->sense_data = SS_MEDIUM_NOT_PRESENT;
1356                         return -EINVAL;
1357                 }
1358                 return 0;
1359         }
1360
1361         /* Are we allowed to unload the media? */
1362         if (curlun->prevent_medium_removal) {
1363                 LDBG(curlun, "unload attempt prevented\n");
1364                 curlun->sense_data = SS_MEDIUM_REMOVAL_PREVENTED;
1365                 return -EINVAL;
1366         }
1367
1368         if (!loej)
1369                 return 0;
1370
1371         up_read(&common->filesem);
1372         down_write(&common->filesem);
1373         fsg_lun_close(curlun);
1374         up_write(&common->filesem);
1375         down_read(&common->filesem);
1376
1377         return 0;
1378 }
1379
1380 static int do_prevent_allow(struct fsg_common *common)
1381 {
1382         struct fsg_lun  *curlun = common->curlun;
1383         int             prevent;
1384
1385         if (!common->curlun) {
1386                 return -EINVAL;
1387         } else if (!common->curlun->removable) {
1388                 common->curlun->sense_data = SS_INVALID_COMMAND;
1389                 return -EINVAL;
1390         }
1391
1392         prevent = common->cmnd[4] & 0x01;
1393         if ((common->cmnd[4] & ~0x01) != 0) {   /* Mask away Prevent */
1394                 curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1395                 return -EINVAL;
1396         }
1397
1398         if (curlun->prevent_medium_removal && !prevent)
1399                 fsg_lun_fsync_sub(curlun);
1400         curlun->prevent_medium_removal = prevent;
1401         return 0;
1402 }
1403
1404 static int do_read_format_capacities(struct fsg_common *common,
1405                         struct fsg_buffhd *bh)
1406 {
1407         struct fsg_lun  *curlun = common->curlun;
1408         u8              *buf = (u8 *) bh->buf;
1409
1410         buf[0] = buf[1] = buf[2] = 0;
1411         buf[3] = 8;     /* Only the Current/Maximum Capacity Descriptor */
1412         buf += 4;
1413
1414         put_unaligned_be32(curlun->num_sectors, &buf[0]);
1415                                                 /* Number of blocks */
1416         put_unaligned_be32(curlun->blksize, &buf[4]);/* Block length */
1417         buf[4] = 0x02;                          /* Current capacity */
1418         return 12;
1419 }
1420
1421 static int do_mode_select(struct fsg_common *common, struct fsg_buffhd *bh)
1422 {
1423         struct fsg_lun  *curlun = common->curlun;
1424
1425         /* We don't support MODE SELECT */
1426         if (curlun)
1427                 curlun->sense_data = SS_INVALID_COMMAND;
1428         return -EINVAL;
1429 }
1430
1431
1432 /*-------------------------------------------------------------------------*/
1433
1434 static int halt_bulk_in_endpoint(struct fsg_dev *fsg)
1435 {
1436         int     rc;
1437
1438         rc = fsg_set_halt(fsg, fsg->bulk_in);
1439         if (rc == -EAGAIN)
1440                 VDBG(fsg, "delayed bulk-in endpoint halt\n");
1441         while (rc != 0) {
1442                 if (rc != -EAGAIN) {
1443                         WARNING(fsg, "usb_ep_set_halt -> %d\n", rc);
1444                         rc = 0;
1445                         break;
1446                 }
1447
1448                 /* Wait for a short time and then try again */
1449                 if (msleep_interruptible(100) != 0)
1450                         return -EINTR;
1451                 rc = usb_ep_set_halt(fsg->bulk_in);
1452         }
1453         return rc;
1454 }
1455
1456 static int wedge_bulk_in_endpoint(struct fsg_dev *fsg)
1457 {
1458         int     rc;
1459
1460         DBG(fsg, "bulk-in set wedge\n");
1461         rc = usb_ep_set_wedge(fsg->bulk_in);
1462         if (rc == -EAGAIN)
1463                 VDBG(fsg, "delayed bulk-in endpoint wedge\n");
1464         while (rc != 0) {
1465                 if (rc != -EAGAIN) {
1466                         WARNING(fsg, "usb_ep_set_wedge -> %d\n", rc);
1467                         rc = 0;
1468                         break;
1469                 }
1470
1471                 /* Wait for a short time and then try again */
1472                 if (msleep_interruptible(100) != 0)
1473                         return -EINTR;
1474                 rc = usb_ep_set_wedge(fsg->bulk_in);
1475         }
1476         return rc;
1477 }
1478
1479 static int throw_away_data(struct fsg_common *common)
1480 {
1481         struct fsg_buffhd       *bh;
1482         u32                     amount;
1483         int                     rc;
1484
1485         for (bh = common->next_buffhd_to_drain;
1486              bh->state != BUF_STATE_EMPTY || common->usb_amount_left > 0;
1487              bh = common->next_buffhd_to_drain) {
1488
1489                 /* Throw away the data in a filled buffer */
1490                 if (bh->state == BUF_STATE_FULL) {
1491                         smp_rmb();
1492                         bh->state = BUF_STATE_EMPTY;
1493                         common->next_buffhd_to_drain = bh->next;
1494
1495                         /* A short packet or an error ends everything */
1496                         if (bh->outreq->actual < bh->bulk_out_intended_length ||
1497                             bh->outreq->status != 0) {
1498                                 raise_exception(common,
1499                                                 FSG_STATE_ABORT_BULK_OUT);
1500                                 return -EINTR;
1501                         }
1502                         continue;
1503                 }
1504
1505                 /* Try to submit another request if we need one */
1506                 bh = common->next_buffhd_to_fill;
1507                 if (bh->state == BUF_STATE_EMPTY
1508                  && common->usb_amount_left > 0) {
1509                         amount = min(common->usb_amount_left, FSG_BUFLEN);
1510
1511                         /*
1512                          * Except at the end of the transfer, amount will be
1513                          * equal to the buffer size, which is divisible by
1514                          * the bulk-out maxpacket size.
1515                          */
1516                         set_bulk_out_req_length(common, bh, amount);
1517                         if (!start_out_transfer(common, bh))
1518                                 /* Dunno what to do if common->fsg is NULL */
1519                                 return -EIO;
1520                         common->next_buffhd_to_fill = bh->next;
1521                         common->usb_amount_left -= amount;
1522                         continue;
1523                 }
1524
1525                 /* Otherwise wait for something to happen */
1526                 rc = sleep_thread(common, true);
1527                 if (rc)
1528                         return rc;
1529         }
1530         return 0;
1531 }
1532
1533 static int finish_reply(struct fsg_common *common)
1534 {
1535         struct fsg_buffhd       *bh = common->next_buffhd_to_fill;
1536         int                     rc = 0;
1537
1538         switch (common->data_dir) {
1539         case DATA_DIR_NONE:
1540                 break;                  /* Nothing to send */
1541
1542         /*
1543          * If we don't know whether the host wants to read or write,
1544          * this must be CB or CBI with an unknown command.  We mustn't
1545          * try to send or receive any data.  So stall both bulk pipes
1546          * if we can and wait for a reset.
1547          */
1548         case DATA_DIR_UNKNOWN:
1549                 if (!common->can_stall) {
1550                         /* Nothing */
1551                 } else if (fsg_is_set(common)) {
1552                         fsg_set_halt(common->fsg, common->fsg->bulk_out);
1553                         rc = halt_bulk_in_endpoint(common->fsg);
1554                 } else {
1555                         /* Don't know what to do if common->fsg is NULL */
1556                         rc = -EIO;
1557                 }
1558                 break;
1559
1560         /* All but the last buffer of data must have already been sent */
1561         case DATA_DIR_TO_HOST:
1562                 if (common->data_size == 0) {
1563                         /* Nothing to send */
1564
1565                 /* Don't know what to do if common->fsg is NULL */
1566                 } else if (!fsg_is_set(common)) {
1567                         rc = -EIO;
1568
1569                 /* If there's no residue, simply send the last buffer */
1570                 } else if (common->residue == 0) {
1571                         bh->inreq->zero = 0;
1572                         if (!start_in_transfer(common, bh))
1573                                 return -EIO;
1574                         common->next_buffhd_to_fill = bh->next;
1575
1576                 /*
1577                  * For Bulk-only, mark the end of the data with a short
1578                  * packet.  If we are allowed to stall, halt the bulk-in
1579                  * endpoint.  (Note: This violates the Bulk-Only Transport
1580                  * specification, which requires us to pad the data if we
1581                  * don't halt the endpoint.  Presumably nobody will mind.)
1582                  */
1583                 } else {
1584                         bh->inreq->zero = 1;
1585                         if (!start_in_transfer(common, bh))
1586                                 rc = -EIO;
1587                         common->next_buffhd_to_fill = bh->next;
1588                         if (common->can_stall)
1589                                 rc = halt_bulk_in_endpoint(common->fsg);
1590                 }
1591                 break;
1592
1593         /*
1594          * We have processed all we want from the data the host has sent.
1595          * There may still be outstanding bulk-out requests.
1596          */
1597         case DATA_DIR_FROM_HOST:
1598                 if (common->residue == 0) {
1599                         /* Nothing to receive */
1600
1601                 /* Did the host stop sending unexpectedly early? */
1602                 } else if (common->short_packet_received) {
1603                         raise_exception(common, FSG_STATE_ABORT_BULK_OUT);
1604                         rc = -EINTR;
1605
1606                 /*
1607                  * We haven't processed all the incoming data.  Even though
1608                  * we may be allowed to stall, doing so would cause a race.
1609                  * The controller may already have ACK'ed all the remaining
1610                  * bulk-out packets, in which case the host wouldn't see a
1611                  * STALL.  Not realizing the endpoint was halted, it wouldn't
1612                  * clear the halt -- leading to problems later on.
1613                  */
1614 #if 0
1615                 } else if (common->can_stall) {
1616                         if (fsg_is_set(common))
1617                                 fsg_set_halt(common->fsg,
1618                                              common->fsg->bulk_out);
1619                         raise_exception(common, FSG_STATE_ABORT_BULK_OUT);
1620                         rc = -EINTR;
1621 #endif
1622
1623                 /*
1624                  * We can't stall.  Read in the excess data and throw it
1625                  * all away.
1626                  */
1627                 } else {
1628                         rc = throw_away_data(common);
1629                 }
1630                 break;
1631         }
1632         return rc;
1633 }
1634
1635 static int send_status(struct fsg_common *common)
1636 {
1637         struct fsg_lun          *curlun = common->curlun;
1638         struct fsg_buffhd       *bh;
1639         struct bulk_cs_wrap     *csw;
1640         int                     rc;
1641         u8                      status = US_BULK_STAT_OK;
1642         u32                     sd, sdinfo = 0;
1643
1644         /* Wait for the next buffer to become available */
1645         bh = common->next_buffhd_to_fill;
1646         while (bh->state != BUF_STATE_EMPTY) {
1647                 rc = sleep_thread(common, true);
1648                 if (rc)
1649                         return rc;
1650         }
1651
1652         if (curlun) {
1653                 sd = curlun->sense_data;
1654                 sdinfo = curlun->sense_data_info;
1655         } else if (common->bad_lun_okay)
1656                 sd = SS_NO_SENSE;
1657         else
1658                 sd = SS_LOGICAL_UNIT_NOT_SUPPORTED;
1659
1660         if (common->phase_error) {
1661                 DBG(common, "sending phase-error status\n");
1662                 status = US_BULK_STAT_PHASE;
1663                 sd = SS_INVALID_COMMAND;
1664         } else if (sd != SS_NO_SENSE) {
1665                 DBG(common, "sending command-failure status\n");
1666                 status = US_BULK_STAT_FAIL;
1667                 VDBG(common, "  sense data: SK x%02x, ASC x%02x, ASCQ x%02x;"
1668                                 "  info x%x\n",
1669                                 SK(sd), ASC(sd), ASCQ(sd), sdinfo);
1670         }
1671
1672         /* Store and send the Bulk-only CSW */
1673         csw = (void *)bh->buf;
1674
1675         csw->Signature = cpu_to_le32(US_BULK_CS_SIGN);
1676         csw->Tag = common->tag;
1677         csw->Residue = cpu_to_le32(common->residue);
1678         csw->Status = status;
1679
1680         bh->inreq->length = US_BULK_CS_WRAP_LEN;
1681         bh->inreq->zero = 0;
1682         if (!start_in_transfer(common, bh))
1683                 /* Don't know what to do if common->fsg is NULL */
1684                 return -EIO;
1685
1686         common->next_buffhd_to_fill = bh->next;
1687         return 0;
1688 }
1689
1690
1691 /*-------------------------------------------------------------------------*/
1692
1693 /*
1694  * Check whether the command is properly formed and whether its data size
1695  * and direction agree with the values we already have.
1696  */
1697 static int check_command(struct fsg_common *common, int cmnd_size,
1698                          enum data_direction data_dir, unsigned int mask,
1699                          int needs_medium, const char *name)
1700 {
1701         int                     i;
1702         unsigned int            lun = common->cmnd[1] >> 5;
1703         static const char       dirletter[4] = {'u', 'o', 'i', 'n'};
1704         char                    hdlen[20];
1705         struct fsg_lun          *curlun;
1706
1707         hdlen[0] = 0;
1708         if (common->data_dir != DATA_DIR_UNKNOWN)
1709                 sprintf(hdlen, ", H%c=%u", dirletter[(int) common->data_dir],
1710                         common->data_size);
1711         VDBG(common, "SCSI command: %s;  Dc=%d, D%c=%u;  Hc=%d%s\n",
1712              name, cmnd_size, dirletter[(int) data_dir],
1713              common->data_size_from_cmnd, common->cmnd_size, hdlen);
1714
1715         /*
1716          * We can't reply at all until we know the correct data direction
1717          * and size.
1718          */
1719         if (common->data_size_from_cmnd == 0)
1720                 data_dir = DATA_DIR_NONE;
1721         if (common->data_size < common->data_size_from_cmnd) {
1722                 /*
1723                  * Host data size < Device data size is a phase error.
1724                  * Carry out the command, but only transfer as much as
1725                  * we are allowed.
1726                  */
1727                 common->data_size_from_cmnd = common->data_size;
1728                 common->phase_error = 1;
1729         }
1730         common->residue = common->data_size;
1731         common->usb_amount_left = common->data_size;
1732
1733         /* Conflicting data directions is a phase error */
1734         if (common->data_dir != data_dir && common->data_size_from_cmnd > 0) {
1735                 common->phase_error = 1;
1736                 return -EINVAL;
1737         }
1738
1739         /* Verify the length of the command itself */
1740         if (cmnd_size != common->cmnd_size) {
1741
1742                 /*
1743                  * Special case workaround: There are plenty of buggy SCSI
1744                  * implementations. Many have issues with cbw->Length
1745                  * field passing a wrong command size. For those cases we
1746                  * always try to work around the problem by using the length
1747                  * sent by the host side provided it is at least as large
1748                  * as the correct command length.
1749                  * Examples of such cases would be MS-Windows, which issues
1750                  * REQUEST SENSE with cbw->Length == 12 where it should
1751                  * be 6, and xbox360 issuing INQUIRY, TEST UNIT READY and
1752                  * REQUEST SENSE with cbw->Length == 10 where it should
1753                  * be 6 as well.
1754                  */
1755                 if (cmnd_size <= common->cmnd_size) {
1756                         DBG(common, "%s is buggy! Expected length %d "
1757                             "but we got %d\n", name,
1758                             cmnd_size, common->cmnd_size);
1759                         cmnd_size = common->cmnd_size;
1760                 } else {
1761                         common->phase_error = 1;
1762                         return -EINVAL;
1763                 }
1764         }
1765
1766         /* Check that the LUN values are consistent */
1767         if (common->lun != lun)
1768                 DBG(common, "using LUN %u from CBW, not LUN %u from CDB\n",
1769                     common->lun, lun);
1770
1771         /* Check the LUN */
1772         curlun = common->curlun;
1773         if (curlun) {
1774                 if (common->cmnd[0] != REQUEST_SENSE) {
1775                         curlun->sense_data = SS_NO_SENSE;
1776                         curlun->sense_data_info = 0;
1777                         curlun->info_valid = 0;
1778                 }
1779         } else {
1780                 common->bad_lun_okay = 0;
1781
1782                 /*
1783                  * INQUIRY and REQUEST SENSE commands are explicitly allowed
1784                  * to use unsupported LUNs; all others may not.
1785                  */
1786                 if (common->cmnd[0] != INQUIRY &&
1787                     common->cmnd[0] != REQUEST_SENSE) {
1788                         DBG(common, "unsupported LUN %u\n", common->lun);
1789                         return -EINVAL;
1790                 }
1791         }
1792
1793         /*
1794          * If a unit attention condition exists, only INQUIRY and
1795          * REQUEST SENSE commands are allowed; anything else must fail.
1796          */
1797         if (curlun && curlun->unit_attention_data != SS_NO_SENSE &&
1798             common->cmnd[0] != INQUIRY &&
1799             common->cmnd[0] != REQUEST_SENSE) {
1800                 curlun->sense_data = curlun->unit_attention_data;
1801                 curlun->unit_attention_data = SS_NO_SENSE;
1802                 return -EINVAL;
1803         }
1804
1805         /* Check that only command bytes listed in the mask are non-zero */
1806         common->cmnd[1] &= 0x1f;                        /* Mask away the LUN */
1807         for (i = 1; i < cmnd_size; ++i) {
1808                 if (common->cmnd[i] && !(mask & (1 << i))) {
1809                         if (curlun)
1810                                 curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1811                         return -EINVAL;
1812                 }
1813         }
1814
1815         /* If the medium isn't mounted and the command needs to access
1816          * it, return an error. */
1817         if (curlun && !fsg_lun_is_open(curlun) && needs_medium) {
1818                 curlun->sense_data = SS_MEDIUM_NOT_PRESENT;
1819                 return -EINVAL;
1820         }
1821
1822         return 0;
1823 }
1824
1825 /* wrapper of check_command for data size in blocks handling */
1826 static int check_command_size_in_blocks(struct fsg_common *common,
1827                 int cmnd_size, enum data_direction data_dir,
1828                 unsigned int mask, int needs_medium, const char *name)
1829 {
1830         if (common->curlun)
1831                 common->data_size_from_cmnd <<= common->curlun->blkbits;
1832         return check_command(common, cmnd_size, data_dir,
1833                         mask, needs_medium, name);
1834 }
1835
1836 static int do_scsi_command(struct fsg_common *common)
1837 {
1838         struct fsg_buffhd       *bh;
1839         int                     rc;
1840         int                     reply = -EINVAL;
1841         int                     i;
1842         static char             unknown[16];
1843
1844         dump_cdb(common);
1845
1846         /* Wait for the next buffer to become available for data or status */
1847         bh = common->next_buffhd_to_fill;
1848         common->next_buffhd_to_drain = bh;
1849         while (bh->state != BUF_STATE_EMPTY) {
1850                 rc = sleep_thread(common, true);
1851                 if (rc)
1852                         return rc;
1853         }
1854         common->phase_error = 0;
1855         common->short_packet_received = 0;
1856
1857         down_read(&common->filesem);    /* We're using the backing file */
1858         switch (common->cmnd[0]) {
1859
1860         case INQUIRY:
1861                 common->data_size_from_cmnd = common->cmnd[4];
1862                 reply = check_command(common, 6, DATA_DIR_TO_HOST,
1863                                       (1<<4), 0,
1864                                       "INQUIRY");
1865                 if (reply == 0)
1866                         reply = do_inquiry(common, bh);
1867                 break;
1868
1869         case MODE_SELECT:
1870                 common->data_size_from_cmnd = common->cmnd[4];
1871                 reply = check_command(common, 6, DATA_DIR_FROM_HOST,
1872                                       (1<<1) | (1<<4), 0,
1873                                       "MODE SELECT(6)");
1874                 if (reply == 0)
1875                         reply = do_mode_select(common, bh);
1876                 break;
1877
1878         case MODE_SELECT_10:
1879                 common->data_size_from_cmnd =
1880                         get_unaligned_be16(&common->cmnd[7]);
1881                 reply = check_command(common, 10, DATA_DIR_FROM_HOST,
1882                                       (1<<1) | (3<<7), 0,
1883                                       "MODE SELECT(10)");
1884                 if (reply == 0)
1885                         reply = do_mode_select(common, bh);
1886                 break;
1887
1888         case MODE_SENSE:
1889                 common->data_size_from_cmnd = common->cmnd[4];
1890                 reply = check_command(common, 6, DATA_DIR_TO_HOST,
1891                                       (1<<1) | (1<<2) | (1<<4), 0,
1892                                       "MODE SENSE(6)");
1893                 if (reply == 0)
1894                         reply = do_mode_sense(common, bh);
1895                 break;
1896
1897         case MODE_SENSE_10:
1898                 common->data_size_from_cmnd =
1899                         get_unaligned_be16(&common->cmnd[7]);
1900                 reply = check_command(common, 10, DATA_DIR_TO_HOST,
1901                                       (1<<1) | (1<<2) | (3<<7), 0,
1902                                       "MODE SENSE(10)");
1903                 if (reply == 0)
1904                         reply = do_mode_sense(common, bh);
1905                 break;
1906
1907         case ALLOW_MEDIUM_REMOVAL:
1908                 common->data_size_from_cmnd = 0;
1909                 reply = check_command(common, 6, DATA_DIR_NONE,
1910                                       (1<<4), 0,
1911                                       "PREVENT-ALLOW MEDIUM REMOVAL");
1912                 if (reply == 0)
1913                         reply = do_prevent_allow(common);
1914                 break;
1915
1916         case READ_6:
1917                 i = common->cmnd[4];
1918                 common->data_size_from_cmnd = (i == 0) ? 256 : i;
1919                 reply = check_command_size_in_blocks(common, 6,
1920                                       DATA_DIR_TO_HOST,
1921                                       (7<<1) | (1<<4), 1,
1922                                       "READ(6)");
1923                 if (reply == 0)
1924                         reply = do_read(common);
1925                 break;
1926
1927         case READ_10:
1928                 common->data_size_from_cmnd =
1929                                 get_unaligned_be16(&common->cmnd[7]);
1930                 reply = check_command_size_in_blocks(common, 10,
1931                                       DATA_DIR_TO_HOST,
1932                                       (1<<1) | (0xf<<2) | (3<<7), 1,
1933                                       "READ(10)");
1934                 if (reply == 0)
1935                         reply = do_read(common);
1936                 break;
1937
1938         case READ_12:
1939                 common->data_size_from_cmnd =
1940                                 get_unaligned_be32(&common->cmnd[6]);
1941                 reply = check_command_size_in_blocks(common, 12,
1942                                       DATA_DIR_TO_HOST,
1943                                       (1<<1) | (0xf<<2) | (0xf<<6), 1,
1944                                       "READ(12)");
1945                 if (reply == 0)
1946                         reply = do_read(common);
1947                 break;
1948
1949         case READ_CAPACITY:
1950                 common->data_size_from_cmnd = 8;
1951                 reply = check_command(common, 10, DATA_DIR_TO_HOST,
1952                                       (0xf<<2) | (1<<8), 1,
1953                                       "READ CAPACITY");
1954                 if (reply == 0)
1955                         reply = do_read_capacity(common, bh);
1956                 break;
1957
1958         case READ_HEADER:
1959                 if (!common->curlun || !common->curlun->cdrom)
1960                         goto unknown_cmnd;
1961                 common->data_size_from_cmnd =
1962                         get_unaligned_be16(&common->cmnd[7]);
1963                 reply = check_command(common, 10, DATA_DIR_TO_HOST,
1964                                       (3<<7) | (0x1f<<1), 1,
1965                                       "READ HEADER");
1966                 if (reply == 0)
1967                         reply = do_read_header(common, bh);
1968                 break;
1969
1970         case READ_TOC:
1971                 if (!common->curlun || !common->curlun->cdrom)
1972                         goto unknown_cmnd;
1973                 common->data_size_from_cmnd =
1974                         get_unaligned_be16(&common->cmnd[7]);
1975                 reply = check_command(common, 10, DATA_DIR_TO_HOST,
1976                                       (7<<6) | (1<<1), 1,
1977                                       "READ TOC");
1978                 if (reply == 0)
1979                         reply = do_read_toc(common, bh);
1980                 break;
1981
1982         case READ_FORMAT_CAPACITIES:
1983                 common->data_size_from_cmnd =
1984                         get_unaligned_be16(&common->cmnd[7]);
1985                 reply = check_command(common, 10, DATA_DIR_TO_HOST,
1986                                       (3<<7), 1,
1987                                       "READ FORMAT CAPACITIES");
1988                 if (reply == 0)
1989                         reply = do_read_format_capacities(common, bh);
1990                 break;
1991
1992         case REQUEST_SENSE:
1993                 common->data_size_from_cmnd = common->cmnd[4];
1994                 reply = check_command(common, 6, DATA_DIR_TO_HOST,
1995                                       (1<<4), 0,
1996                                       "REQUEST SENSE");
1997                 if (reply == 0)
1998                         reply = do_request_sense(common, bh);
1999                 break;
2000
2001         case START_STOP:
2002                 common->data_size_from_cmnd = 0;
2003                 reply = check_command(common, 6, DATA_DIR_NONE,
2004                                       (1<<1) | (1<<4), 0,
2005                                       "START-STOP UNIT");
2006                 if (reply == 0)
2007                         reply = do_start_stop(common);
2008                 break;
2009
2010         case SYNCHRONIZE_CACHE:
2011                 common->data_size_from_cmnd = 0;
2012                 reply = check_command(common, 10, DATA_DIR_NONE,
2013                                       (0xf<<2) | (3<<7), 1,
2014                                       "SYNCHRONIZE CACHE");
2015                 if (reply == 0)
2016                         reply = do_synchronize_cache(common);
2017                 break;
2018
2019         case TEST_UNIT_READY:
2020                 common->data_size_from_cmnd = 0;
2021                 reply = check_command(common, 6, DATA_DIR_NONE,
2022                                 0, 1,
2023                                 "TEST UNIT READY");
2024                 break;
2025
2026         /*
2027          * Although optional, this command is used by MS-Windows.  We
2028          * support a minimal version: BytChk must be 0.
2029          */
2030         case VERIFY:
2031                 common->data_size_from_cmnd = 0;
2032                 reply = check_command(common, 10, DATA_DIR_NONE,
2033                                       (1<<1) | (0xf<<2) | (3<<7), 1,
2034                                       "VERIFY");
2035                 if (reply == 0)
2036                         reply = do_verify(common);
2037                 break;
2038
2039         case WRITE_6:
2040                 i = common->cmnd[4];
2041                 common->data_size_from_cmnd = (i == 0) ? 256 : i;
2042                 reply = check_command_size_in_blocks(common, 6,
2043                                       DATA_DIR_FROM_HOST,
2044                                       (7<<1) | (1<<4), 1,
2045                                       "WRITE(6)");
2046                 if (reply == 0)
2047                         reply = do_write(common);
2048                 break;
2049
2050         case WRITE_10:
2051                 common->data_size_from_cmnd =
2052                                 get_unaligned_be16(&common->cmnd[7]);
2053                 reply = check_command_size_in_blocks(common, 10,
2054                                       DATA_DIR_FROM_HOST,
2055                                       (1<<1) | (0xf<<2) | (3<<7), 1,
2056                                       "WRITE(10)");
2057                 if (reply == 0)
2058                         reply = do_write(common);
2059                 break;
2060
2061         case WRITE_12:
2062                 common->data_size_from_cmnd =
2063                                 get_unaligned_be32(&common->cmnd[6]);
2064                 reply = check_command_size_in_blocks(common, 12,
2065                                       DATA_DIR_FROM_HOST,
2066                                       (1<<1) | (0xf<<2) | (0xf<<6), 1,
2067                                       "WRITE(12)");
2068                 if (reply == 0)
2069                         reply = do_write(common);
2070                 break;
2071
2072         /*
2073          * Some mandatory commands that we recognize but don't implement.
2074          * They don't mean much in this setting.  It's left as an exercise
2075          * for anyone interested to implement RESERVE and RELEASE in terms
2076          * of Posix locks.
2077          */
2078         case FORMAT_UNIT:
2079         case RELEASE:
2080         case RESERVE:
2081         case SEND_DIAGNOSTIC:
2082                 /* Fall through */
2083
2084         default:
2085 unknown_cmnd:
2086                 common->data_size_from_cmnd = 0;
2087                 sprintf(unknown, "Unknown x%02x", common->cmnd[0]);
2088                 reply = check_command(common, common->cmnd_size,
2089                                       DATA_DIR_UNKNOWN, ~0, 0, unknown);
2090                 if (reply == 0) {
2091                         common->curlun->sense_data = SS_INVALID_COMMAND;
2092                         reply = -EINVAL;
2093                 }
2094                 break;
2095         }
2096         up_read(&common->filesem);
2097
2098         if (reply == -EINTR || signal_pending(current))
2099                 return -EINTR;
2100
2101         /* Set up the single reply buffer for finish_reply() */
2102         if (reply == -EINVAL)
2103                 reply = 0;              /* Error reply length */
2104         if (reply >= 0 && common->data_dir == DATA_DIR_TO_HOST) {
2105                 reply = min((u32)reply, common->data_size_from_cmnd);
2106                 bh->inreq->length = reply;
2107                 bh->state = BUF_STATE_FULL;
2108                 common->residue -= reply;
2109         }                               /* Otherwise it's already set */
2110
2111         return 0;
2112 }
2113
2114
2115 /*-------------------------------------------------------------------------*/
2116
2117 static int received_cbw(struct fsg_dev *fsg, struct fsg_buffhd *bh)
2118 {
2119         struct usb_request      *req = bh->outreq;
2120         struct bulk_cb_wrap     *cbw = req->buf;
2121         struct fsg_common       *common = fsg->common;
2122
2123         /* Was this a real packet?  Should it be ignored? */
2124         if (req->status || test_bit(IGNORE_BULK_OUT, &fsg->atomic_bitflags))
2125                 return -EINVAL;
2126
2127         /* Is the CBW valid? */
2128         if (req->actual != US_BULK_CB_WRAP_LEN ||
2129                         cbw->Signature != cpu_to_le32(
2130                                 US_BULK_CB_SIGN)) {
2131                 DBG(fsg, "invalid CBW: len %u sig 0x%x\n",
2132                                 req->actual,
2133                                 le32_to_cpu(cbw->Signature));
2134
2135                 /*
2136                  * The Bulk-only spec says we MUST stall the IN endpoint
2137                  * (6.6.1), so it's unavoidable.  It also says we must
2138                  * retain this state until the next reset, but there's
2139                  * no way to tell the controller driver it should ignore
2140                  * Clear-Feature(HALT) requests.
2141                  *
2142                  * We aren't required to halt the OUT endpoint; instead
2143                  * we can simply accept and discard any data received
2144                  * until the next reset.
2145                  */
2146                 wedge_bulk_in_endpoint(fsg);
2147                 set_bit(IGNORE_BULK_OUT, &fsg->atomic_bitflags);
2148                 return -EINVAL;
2149         }
2150
2151         /* Is the CBW meaningful? */
2152         if (cbw->Lun >= ARRAY_SIZE(common->luns) ||
2153             cbw->Flags & ~US_BULK_FLAG_IN || cbw->Length <= 0 ||
2154             cbw->Length > MAX_COMMAND_SIZE) {
2155                 DBG(fsg, "non-meaningful CBW: lun = %u, flags = 0x%x, "
2156                                 "cmdlen %u\n",
2157                                 cbw->Lun, cbw->Flags, cbw->Length);
2158
2159                 /*
2160                  * We can do anything we want here, so let's stall the
2161                  * bulk pipes if we are allowed to.
2162                  */
2163                 if (common->can_stall) {
2164                         fsg_set_halt(fsg, fsg->bulk_out);
2165                         halt_bulk_in_endpoint(fsg);
2166                 }
2167                 return -EINVAL;
2168         }
2169
2170         /* Save the command for later */
2171         common->cmnd_size = cbw->Length;
2172         memcpy(common->cmnd, cbw->CDB, common->cmnd_size);
2173         if (cbw->Flags & US_BULK_FLAG_IN)
2174                 common->data_dir = DATA_DIR_TO_HOST;
2175         else
2176                 common->data_dir = DATA_DIR_FROM_HOST;
2177         common->data_size = le32_to_cpu(cbw->DataTransferLength);
2178         if (common->data_size == 0)
2179                 common->data_dir = DATA_DIR_NONE;
2180         common->lun = cbw->Lun;
2181         if (common->lun < ARRAY_SIZE(common->luns))
2182                 common->curlun = common->luns[common->lun];
2183         else
2184                 common->curlun = NULL;
2185         common->tag = cbw->Tag;
2186         return 0;
2187 }
2188
2189 static int get_next_command(struct fsg_common *common)
2190 {
2191         struct fsg_buffhd       *bh;
2192         int                     rc = 0;
2193
2194         /* Wait for the next buffer to become available */
2195         bh = common->next_buffhd_to_fill;
2196         while (bh->state != BUF_STATE_EMPTY) {
2197                 rc = sleep_thread(common, true);
2198                 if (rc)
2199                         return rc;
2200         }
2201
2202         /* Queue a request to read a Bulk-only CBW */
2203         set_bulk_out_req_length(common, bh, US_BULK_CB_WRAP_LEN);
2204         if (!start_out_transfer(common, bh))
2205                 /* Don't know what to do if common->fsg is NULL */
2206                 return -EIO;
2207
2208         /*
2209          * We will drain the buffer in software, which means we
2210          * can reuse it for the next filling.  No need to advance
2211          * next_buffhd_to_fill.
2212          */
2213
2214         /* Wait for the CBW to arrive */
2215         while (bh->state != BUF_STATE_FULL) {
2216                 rc = sleep_thread(common, true);
2217                 if (rc)
2218                         return rc;
2219         }
2220         smp_rmb();
2221         rc = fsg_is_set(common) ? received_cbw(common->fsg, bh) : -EIO;
2222         bh->state = BUF_STATE_EMPTY;
2223
2224         return rc;
2225 }
2226
2227
2228 /*-------------------------------------------------------------------------*/
2229
2230 static int alloc_request(struct fsg_common *common, struct usb_ep *ep,
2231                 struct usb_request **preq)
2232 {
2233         *preq = usb_ep_alloc_request(ep, GFP_ATOMIC);
2234         if (*preq)
2235                 return 0;
2236         ERROR(common, "can't allocate request for %s\n", ep->name);
2237         return -ENOMEM;
2238 }
2239
2240 /* Reset interface setting and re-init endpoint state (toggle etc). */
2241 static int do_set_interface(struct fsg_common *common, struct fsg_dev *new_fsg)
2242 {
2243         struct fsg_dev *fsg;
2244         int i, rc = 0;
2245
2246         if (common->running)
2247                 DBG(common, "reset interface\n");
2248
2249 reset:
2250         /* Deallocate the requests */
2251         if (common->fsg) {
2252                 fsg = common->fsg;
2253
2254                 for (i = 0; i < common->fsg_num_buffers; ++i) {
2255                         struct fsg_buffhd *bh = &common->buffhds[i];
2256
2257                         if (bh->inreq) {
2258                                 usb_ep_free_request(fsg->bulk_in, bh->inreq);
2259                                 bh->inreq = NULL;
2260                         }
2261                         if (bh->outreq) {
2262                                 usb_ep_free_request(fsg->bulk_out, bh->outreq);
2263                                 bh->outreq = NULL;
2264                         }
2265                 }
2266
2267                 /* Disable the endpoints */
2268                 if (fsg->bulk_in_enabled) {
2269                         usb_ep_disable(fsg->bulk_in);
2270                         fsg->bulk_in_enabled = 0;
2271                 }
2272                 if (fsg->bulk_out_enabled) {
2273                         usb_ep_disable(fsg->bulk_out);
2274                         fsg->bulk_out_enabled = 0;
2275                 }
2276
2277                 common->fsg = NULL;
2278                 wake_up(&common->fsg_wait);
2279         }
2280
2281         common->running = 0;
2282         if (!new_fsg || rc)
2283                 return rc;
2284
2285         common->fsg = new_fsg;
2286         fsg = common->fsg;
2287
2288         /* Enable the endpoints */
2289         rc = config_ep_by_speed(common->gadget, &(fsg->function), fsg->bulk_in);
2290         if (rc)
2291                 goto reset;
2292         rc = usb_ep_enable(fsg->bulk_in);
2293         if (rc)
2294                 goto reset;
2295         fsg->bulk_in->driver_data = common;
2296         fsg->bulk_in_enabled = 1;
2297
2298         rc = config_ep_by_speed(common->gadget, &(fsg->function),
2299                                 fsg->bulk_out);
2300         if (rc)
2301                 goto reset;
2302         rc = usb_ep_enable(fsg->bulk_out);
2303         if (rc)
2304                 goto reset;
2305         fsg->bulk_out->driver_data = common;
2306         fsg->bulk_out_enabled = 1;
2307         common->bulk_out_maxpacket = usb_endpoint_maxp(fsg->bulk_out->desc);
2308         clear_bit(IGNORE_BULK_OUT, &fsg->atomic_bitflags);
2309
2310         /* Allocate the requests */
2311         for (i = 0; i < common->fsg_num_buffers; ++i) {
2312                 struct fsg_buffhd       *bh = &common->buffhds[i];
2313
2314                 rc = alloc_request(common, fsg->bulk_in, &bh->inreq);
2315                 if (rc)
2316                         goto reset;
2317                 rc = alloc_request(common, fsg->bulk_out, &bh->outreq);
2318                 if (rc)
2319                         goto reset;
2320                 bh->inreq->buf = bh->outreq->buf = bh->buf;
2321                 bh->inreq->context = bh->outreq->context = bh;
2322                 bh->inreq->complete = bulk_in_complete;
2323                 bh->outreq->complete = bulk_out_complete;
2324         }
2325
2326         common->running = 1;
2327         for (i = 0; i < ARRAY_SIZE(common->luns); ++i)
2328                 if (common->luns[i])
2329                         common->luns[i]->unit_attention_data =
2330                                 SS_RESET_OCCURRED;
2331         return rc;
2332 }
2333
2334
2335 /****************************** ALT CONFIGS ******************************/
2336
2337 static int fsg_set_alt(struct usb_function *f, unsigned intf, unsigned alt)
2338 {
2339         struct fsg_dev *fsg = fsg_from_func(f);
2340         fsg->common->new_fsg = fsg;
2341         raise_exception(fsg->common, FSG_STATE_CONFIG_CHANGE);
2342         return USB_GADGET_DELAYED_STATUS;
2343 }
2344
2345 static void fsg_disable(struct usb_function *f)
2346 {
2347         struct fsg_dev *fsg = fsg_from_func(f);
2348         fsg->common->new_fsg = NULL;
2349         raise_exception(fsg->common, FSG_STATE_CONFIG_CHANGE);
2350 }
2351
2352
2353 /*-------------------------------------------------------------------------*/
2354
2355 static void handle_exception(struct fsg_common *common)
2356 {
2357         int                     i;
2358         struct fsg_buffhd       *bh;
2359         enum fsg_state          old_state;
2360         struct fsg_lun          *curlun;
2361         unsigned int            exception_req_tag;
2362
2363         /*
2364          * Clear the existing signals.  Anything but SIGUSR1 is converted
2365          * into a high-priority EXIT exception.
2366          */
2367         for (;;) {
2368                 int sig = kernel_dequeue_signal(NULL);
2369                 if (!sig)
2370                         break;
2371                 if (sig != SIGUSR1) {
2372                         if (common->state < FSG_STATE_EXIT)
2373                                 DBG(common, "Main thread exiting on signal\n");
2374                         raise_exception(common, FSG_STATE_EXIT);
2375                 }
2376         }
2377
2378         /* Cancel all the pending transfers */
2379         if (likely(common->fsg)) {
2380                 for (i = 0; i < common->fsg_num_buffers; ++i) {
2381                         bh = &common->buffhds[i];
2382                         if (bh->inreq_busy)
2383                                 usb_ep_dequeue(common->fsg->bulk_in, bh->inreq);
2384                         if (bh->outreq_busy)
2385                                 usb_ep_dequeue(common->fsg->bulk_out,
2386                                                bh->outreq);
2387                 }
2388
2389                 /* Wait until everything is idle */
2390                 for (;;) {
2391                         int num_active = 0;
2392                         for (i = 0; i < common->fsg_num_buffers; ++i) {
2393                                 bh = &common->buffhds[i];
2394                                 num_active += bh->inreq_busy + bh->outreq_busy;
2395                         }
2396                         if (num_active == 0)
2397                                 break;
2398                         if (sleep_thread(common, true))
2399                                 return;
2400                 }
2401
2402                 /* Clear out the controller's fifos */
2403                 if (common->fsg->bulk_in_enabled)
2404                         usb_ep_fifo_flush(common->fsg->bulk_in);
2405                 if (common->fsg->bulk_out_enabled)
2406                         usb_ep_fifo_flush(common->fsg->bulk_out);
2407         }
2408
2409         /*
2410          * Reset the I/O buffer states and pointers, the SCSI
2411          * state, and the exception.  Then invoke the handler.
2412          */
2413         spin_lock_irq(&common->lock);
2414
2415         for (i = 0; i < common->fsg_num_buffers; ++i) {
2416                 bh = &common->buffhds[i];
2417                 bh->state = BUF_STATE_EMPTY;
2418         }
2419         common->next_buffhd_to_fill = &common->buffhds[0];
2420         common->next_buffhd_to_drain = &common->buffhds[0];
2421         exception_req_tag = common->exception_req_tag;
2422         old_state = common->state;
2423
2424         if (old_state == FSG_STATE_ABORT_BULK_OUT)
2425                 common->state = FSG_STATE_STATUS_PHASE;
2426         else {
2427                 for (i = 0; i < ARRAY_SIZE(common->luns); ++i) {
2428                         curlun = common->luns[i];
2429                         if (!curlun)
2430                                 continue;
2431                         curlun->prevent_medium_removal = 0;
2432                         curlun->sense_data = SS_NO_SENSE;
2433                         curlun->unit_attention_data = SS_NO_SENSE;
2434                         curlun->sense_data_info = 0;
2435                         curlun->info_valid = 0;
2436                 }
2437                 common->state = FSG_STATE_IDLE;
2438         }
2439         spin_unlock_irq(&common->lock);
2440
2441         /* Carry out any extra actions required for the exception */
2442         switch (old_state) {
2443         case FSG_STATE_ABORT_BULK_OUT:
2444                 send_status(common);
2445                 spin_lock_irq(&common->lock);
2446                 if (common->state == FSG_STATE_STATUS_PHASE)
2447                         common->state = FSG_STATE_IDLE;
2448                 spin_unlock_irq(&common->lock);
2449                 break;
2450
2451         case FSG_STATE_RESET:
2452                 /*
2453                  * In case we were forced against our will to halt a
2454                  * bulk endpoint, clear the halt now.  (The SuperH UDC
2455                  * requires this.)
2456                  */
2457                 if (!fsg_is_set(common))
2458                         break;
2459                 if (test_and_clear_bit(IGNORE_BULK_OUT,
2460                                        &common->fsg->atomic_bitflags))
2461                         usb_ep_clear_halt(common->fsg->bulk_in);
2462
2463                 if (common->ep0_req_tag == exception_req_tag)
2464                         ep0_queue(common);      /* Complete the status stage */
2465
2466                 /*
2467                  * Technically this should go here, but it would only be
2468                  * a waste of time.  Ditto for the INTERFACE_CHANGE and
2469                  * CONFIG_CHANGE cases.
2470                  */
2471                 /* for (i = 0; i < common->ARRAY_SIZE(common->luns); ++i) */
2472                 /*      if (common->luns[i]) */
2473                 /*              common->luns[i]->unit_attention_data = */
2474                 /*                      SS_RESET_OCCURRED;  */
2475                 break;
2476
2477         case FSG_STATE_CONFIG_CHANGE:
2478                 do_set_interface(common, common->new_fsg);
2479                 if (common->new_fsg)
2480                         usb_composite_setup_continue(common->cdev);
2481                 break;
2482
2483         case FSG_STATE_EXIT:
2484         case FSG_STATE_TERMINATED:
2485                 do_set_interface(common, NULL);         /* Free resources */
2486                 spin_lock_irq(&common->lock);
2487                 common->state = FSG_STATE_TERMINATED;   /* Stop the thread */
2488                 spin_unlock_irq(&common->lock);
2489                 break;
2490
2491         case FSG_STATE_INTERFACE_CHANGE:
2492         case FSG_STATE_DISCONNECT:
2493         case FSG_STATE_COMMAND_PHASE:
2494         case FSG_STATE_DATA_PHASE:
2495         case FSG_STATE_STATUS_PHASE:
2496         case FSG_STATE_IDLE:
2497                 break;
2498         }
2499 }
2500
2501
2502 /*-------------------------------------------------------------------------*/
2503
2504 static int fsg_main_thread(void *common_)
2505 {
2506         struct fsg_common       *common = common_;
2507         int                     i;
2508
2509         /*
2510          * Allow the thread to be killed by a signal, but set the signal mask
2511          * to block everything but INT, TERM, KILL, and USR1.
2512          */
2513         allow_signal(SIGINT);
2514         allow_signal(SIGTERM);
2515         allow_signal(SIGKILL);
2516         allow_signal(SIGUSR1);
2517
2518         /* Allow the thread to be frozen */
2519         set_freezable();
2520
2521         /*
2522          * Arrange for userspace references to be interpreted as kernel
2523          * pointers.  That way we can pass a kernel pointer to a routine
2524          * that expects a __user pointer and it will work okay.
2525          */
2526         set_fs(get_ds());
2527
2528         /* The main loop */
2529         while (common->state != FSG_STATE_TERMINATED) {
2530                 if (exception_in_progress(common) || signal_pending(current)) {
2531                         handle_exception(common);
2532                         continue;
2533                 }
2534
2535                 if (!common->running) {
2536                         sleep_thread(common, true);
2537                         continue;
2538                 }
2539
2540                 if (get_next_command(common))
2541                         continue;
2542
2543                 spin_lock_irq(&common->lock);
2544                 if (!exception_in_progress(common))
2545                         common->state = FSG_STATE_DATA_PHASE;
2546                 spin_unlock_irq(&common->lock);
2547
2548                 if (do_scsi_command(common) || finish_reply(common))
2549                         continue;
2550
2551                 spin_lock_irq(&common->lock);
2552                 if (!exception_in_progress(common))
2553                         common->state = FSG_STATE_STATUS_PHASE;
2554                 spin_unlock_irq(&common->lock);
2555
2556                 if (send_status(common))
2557                         continue;
2558
2559                 spin_lock_irq(&common->lock);
2560                 if (!exception_in_progress(common))
2561                         common->state = FSG_STATE_IDLE;
2562                 spin_unlock_irq(&common->lock);
2563         }
2564
2565         spin_lock_irq(&common->lock);
2566         common->thread_task = NULL;
2567         spin_unlock_irq(&common->lock);
2568
2569         /* Eject media from all LUNs */
2570
2571         down_write(&common->filesem);
2572         for (i = 0; i < ARRAY_SIZE(common->luns); i++) {
2573                 struct fsg_lun *curlun = common->luns[i];
2574
2575                 if (curlun && fsg_lun_is_open(curlun))
2576                         fsg_lun_close(curlun);
2577         }
2578         up_write(&common->filesem);
2579
2580         /* Let fsg_unbind() know the thread has exited */
2581         complete_and_exit(&common->thread_notifier, 0);
2582 }
2583
2584
2585 /*************************** DEVICE ATTRIBUTES ***************************/
2586
2587 static ssize_t ro_show(struct device *dev, struct device_attribute *attr, char *buf)
2588 {
2589         struct fsg_lun          *curlun = fsg_lun_from_dev(dev);
2590
2591         return fsg_show_ro(curlun, buf);
2592 }
2593
2594 static ssize_t nofua_show(struct device *dev, struct device_attribute *attr,
2595                           char *buf)
2596 {
2597         struct fsg_lun          *curlun = fsg_lun_from_dev(dev);
2598
2599         return fsg_show_nofua(curlun, buf);
2600 }
2601
2602 static ssize_t file_show(struct device *dev, struct device_attribute *attr,
2603                          char *buf)
2604 {
2605         struct fsg_lun          *curlun = fsg_lun_from_dev(dev);
2606         struct rw_semaphore     *filesem = dev_get_drvdata(dev);
2607
2608         return fsg_show_file(curlun, filesem, buf);
2609 }
2610
2611 static ssize_t ro_store(struct device *dev, struct device_attribute *attr,
2612                         const char *buf, size_t count)
2613 {
2614         struct fsg_lun          *curlun = fsg_lun_from_dev(dev);
2615         struct rw_semaphore     *filesem = dev_get_drvdata(dev);
2616
2617         return fsg_store_ro(curlun, filesem, buf, count);
2618 }
2619
2620 static ssize_t nofua_store(struct device *dev, struct device_attribute *attr,
2621                            const char *buf, size_t count)
2622 {
2623         struct fsg_lun          *curlun = fsg_lun_from_dev(dev);
2624
2625         return fsg_store_nofua(curlun, buf, count);
2626 }
2627
2628 static ssize_t file_store(struct device *dev, struct device_attribute *attr,
2629                           const char *buf, size_t count)
2630 {
2631         struct fsg_lun          *curlun = fsg_lun_from_dev(dev);
2632         struct rw_semaphore     *filesem = dev_get_drvdata(dev);
2633
2634         return fsg_store_file(curlun, filesem, buf, count);
2635 }
2636
2637 static DEVICE_ATTR_RW(nofua);
2638 /* mode wil be set in fsg_lun_attr_is_visible() */
2639 static DEVICE_ATTR(ro, 0, ro_show, ro_store);
2640 static DEVICE_ATTR(file, 0, file_show, file_store);
2641
2642 /****************************** FSG COMMON ******************************/
2643
2644 static void fsg_common_release(struct kref *ref);
2645
2646 static void fsg_lun_release(struct device *dev)
2647 {
2648         /* Nothing needs to be done */
2649 }
2650
2651 void fsg_common_get(struct fsg_common *common)
2652 {
2653         kref_get(&common->ref);
2654 }
2655 EXPORT_SYMBOL_GPL(fsg_common_get);
2656
2657 void fsg_common_put(struct fsg_common *common)
2658 {
2659         kref_put(&common->ref, fsg_common_release);
2660 }
2661 EXPORT_SYMBOL_GPL(fsg_common_put);
2662
2663 /* check if fsg_num_buffers is within a valid range */
2664 static inline int fsg_num_buffers_validate(unsigned int fsg_num_buffers)
2665 {
2666 #define FSG_MAX_NUM_BUFFERS     32
2667
2668         if (fsg_num_buffers >= 2 && fsg_num_buffers <= FSG_MAX_NUM_BUFFERS)
2669                 return 0;
2670         pr_err("fsg_num_buffers %u is out of range (%d to %d)\n",
2671                fsg_num_buffers, 2, FSG_MAX_NUM_BUFFERS);
2672         return -EINVAL;
2673 }
2674
2675 static struct fsg_common *fsg_common_setup(struct fsg_common *common)
2676 {
2677         if (!common) {
2678                 common = kzalloc(sizeof(*common), GFP_KERNEL);
2679                 if (!common)
2680                         return ERR_PTR(-ENOMEM);
2681                 common->free_storage_on_release = 1;
2682         } else {
2683                 common->free_storage_on_release = 0;
2684         }
2685         init_rwsem(&common->filesem);
2686         spin_lock_init(&common->lock);
2687         kref_init(&common->ref);
2688         init_completion(&common->thread_notifier);
2689         init_waitqueue_head(&common->fsg_wait);
2690         common->state = FSG_STATE_TERMINATED;
2691         memset(common->luns, 0, sizeof(common->luns));
2692
2693         return common;
2694 }
2695
2696 void fsg_common_set_sysfs(struct fsg_common *common, bool sysfs)
2697 {
2698         common->sysfs = sysfs;
2699 }
2700 EXPORT_SYMBOL_GPL(fsg_common_set_sysfs);
2701
2702 static void _fsg_common_free_buffers(struct fsg_buffhd *buffhds, unsigned n)
2703 {
2704         if (buffhds) {
2705                 struct fsg_buffhd *bh = buffhds;
2706                 while (n--) {
2707                         kfree(bh->buf);
2708                         ++bh;
2709                 }
2710                 kfree(buffhds);
2711         }
2712 }
2713
2714 int fsg_common_set_num_buffers(struct fsg_common *common, unsigned int n)
2715 {
2716         struct fsg_buffhd *bh, *buffhds;
2717         int i, rc;
2718
2719         rc = fsg_num_buffers_validate(n);
2720         if (rc != 0)
2721                 return rc;
2722
2723         buffhds = kcalloc(n, sizeof(*buffhds), GFP_KERNEL);
2724         if (!buffhds)
2725                 return -ENOMEM;
2726
2727         /* Data buffers cyclic list */
2728         bh = buffhds;
2729         i = n;
2730         goto buffhds_first_it;
2731         do {
2732                 bh->next = bh + 1;
2733                 ++bh;
2734 buffhds_first_it:
2735                 bh->buf = kmalloc(FSG_BUFLEN, GFP_KERNEL);
2736                 if (unlikely(!bh->buf))
2737                         goto error_release;
2738         } while (--i);
2739         bh->next = buffhds;
2740
2741         _fsg_common_free_buffers(common->buffhds, common->fsg_num_buffers);
2742         common->fsg_num_buffers = n;
2743         common->buffhds = buffhds;
2744
2745         return 0;
2746
2747 error_release:
2748         /*
2749          * "buf"s pointed to by heads after n - i are NULL
2750          * so releasing them won't hurt
2751          */
2752         _fsg_common_free_buffers(buffhds, n);
2753
2754         return -ENOMEM;
2755 }
2756 EXPORT_SYMBOL_GPL(fsg_common_set_num_buffers);
2757
2758 void fsg_common_remove_lun(struct fsg_lun *lun)
2759 {
2760         if (device_is_registered(&lun->dev))
2761                 device_unregister(&lun->dev);
2762         fsg_lun_close(lun);
2763         kfree(lun);
2764 }
2765 EXPORT_SYMBOL_GPL(fsg_common_remove_lun);
2766
2767 static void _fsg_common_remove_luns(struct fsg_common *common, int n)
2768 {
2769         int i;
2770
2771         for (i = 0; i < n; ++i)
2772                 if (common->luns[i]) {
2773                         fsg_common_remove_lun(common->luns[i]);
2774                         common->luns[i] = NULL;
2775                 }
2776 }
2777
2778 void fsg_common_remove_luns(struct fsg_common *common)
2779 {
2780         _fsg_common_remove_luns(common, ARRAY_SIZE(common->luns));
2781 }
2782 EXPORT_SYMBOL_GPL(fsg_common_remove_luns);
2783
2784 void fsg_common_free_buffers(struct fsg_common *common)
2785 {
2786         _fsg_common_free_buffers(common->buffhds, common->fsg_num_buffers);
2787         common->buffhds = NULL;
2788 }
2789 EXPORT_SYMBOL_GPL(fsg_common_free_buffers);
2790
2791 int fsg_common_set_cdev(struct fsg_common *common,
2792                          struct usb_composite_dev *cdev, bool can_stall)
2793 {
2794         struct usb_string *us;
2795
2796         common->gadget = cdev->gadget;
2797         common->ep0 = cdev->gadget->ep0;
2798         common->ep0req = cdev->req;
2799         common->cdev = cdev;
2800
2801         us = usb_gstrings_attach(cdev, fsg_strings_array,
2802                                  ARRAY_SIZE(fsg_strings));
2803         if (IS_ERR(us))
2804                 return PTR_ERR(us);
2805
2806         fsg_intf_desc.iInterface = us[FSG_STRING_INTERFACE].id;
2807
2808         /*
2809          * Some peripheral controllers are known not to be able to
2810          * halt bulk endpoints correctly.  If one of them is present,
2811          * disable stalls.
2812          */
2813         common->can_stall = can_stall &&
2814                         gadget_is_stall_supported(common->gadget);
2815
2816         return 0;
2817 }
2818 EXPORT_SYMBOL_GPL(fsg_common_set_cdev);
2819
2820 static struct attribute *fsg_lun_dev_attrs[] = {
2821         &dev_attr_ro.attr,
2822         &dev_attr_file.attr,
2823         &dev_attr_nofua.attr,
2824         NULL
2825 };
2826
2827 static umode_t fsg_lun_dev_is_visible(struct kobject *kobj,
2828                                       struct attribute *attr, int idx)
2829 {
2830         struct device *dev = kobj_to_dev(kobj);
2831         struct fsg_lun *lun = fsg_lun_from_dev(dev);
2832
2833         if (attr == &dev_attr_ro.attr)
2834                 return lun->cdrom ? S_IRUGO : (S_IWUSR | S_IRUGO);
2835         if (attr == &dev_attr_file.attr)
2836                 return lun->removable ? (S_IWUSR | S_IRUGO) : S_IRUGO;
2837         return attr->mode;
2838 }
2839
2840 static const struct attribute_group fsg_lun_dev_group = {
2841         .attrs = fsg_lun_dev_attrs,
2842         .is_visible = fsg_lun_dev_is_visible,
2843 };
2844
2845 static const struct attribute_group *fsg_lun_dev_groups[] = {
2846         &fsg_lun_dev_group,
2847         NULL
2848 };
2849
2850 int fsg_common_create_lun(struct fsg_common *common, struct fsg_lun_config *cfg,
2851                           unsigned int id, const char *name,
2852                           const char **name_pfx)
2853 {
2854         struct fsg_lun *lun;
2855         char *pathbuf, *p;
2856         int rc = -ENOMEM;
2857
2858         if (id >= ARRAY_SIZE(common->luns))
2859                 return -ENODEV;
2860
2861         if (common->luns[id])
2862                 return -EBUSY;
2863
2864         if (!cfg->filename && !cfg->removable) {
2865                 pr_err("no file given for LUN%d\n", id);
2866                 return -EINVAL;
2867         }
2868
2869         lun = kzalloc(sizeof(*lun), GFP_KERNEL);
2870         if (!lun)
2871                 return -ENOMEM;
2872
2873         lun->name_pfx = name_pfx;
2874
2875         lun->cdrom = !!cfg->cdrom;
2876         lun->ro = cfg->cdrom || cfg->ro;
2877         lun->initially_ro = lun->ro;
2878         lun->removable = !!cfg->removable;
2879
2880         if (!common->sysfs) {
2881                 /* we DON'T own the name!*/
2882                 lun->name = name;
2883         } else {
2884                 lun->dev.release = fsg_lun_release;
2885                 lun->dev.parent = &common->gadget->dev;
2886                 lun->dev.groups = fsg_lun_dev_groups;
2887                 dev_set_drvdata(&lun->dev, &common->filesem);
2888                 dev_set_name(&lun->dev, "%s", name);
2889                 lun->name = dev_name(&lun->dev);
2890
2891                 rc = device_register(&lun->dev);
2892                 if (rc) {
2893                         pr_info("failed to register LUN%d: %d\n", id, rc);
2894                         put_device(&lun->dev);
2895                         goto error_sysfs;
2896                 }
2897         }
2898
2899         common->luns[id] = lun;
2900
2901         if (cfg->filename) {
2902                 rc = fsg_lun_open(lun, cfg->filename);
2903                 if (rc)
2904                         goto error_lun;
2905         }
2906
2907         pathbuf = kmalloc(PATH_MAX, GFP_KERNEL);
2908         p = "(no medium)";
2909         if (fsg_lun_is_open(lun)) {
2910                 p = "(error)";
2911                 if (pathbuf) {
2912                         p = file_path(lun->filp, pathbuf, PATH_MAX);
2913                         if (IS_ERR(p))
2914                                 p = "(error)";
2915                 }
2916         }
2917         pr_info("LUN: %s%s%sfile: %s\n",
2918               lun->removable ? "removable " : "",
2919               lun->ro ? "read only " : "",
2920               lun->cdrom ? "CD-ROM " : "",
2921               p);
2922         kfree(pathbuf);
2923
2924         return 0;
2925
2926 error_lun:
2927         if (device_is_registered(&lun->dev))
2928                 device_unregister(&lun->dev);
2929         fsg_lun_close(lun);
2930         common->luns[id] = NULL;
2931 error_sysfs:
2932         kfree(lun);
2933         return rc;
2934 }
2935 EXPORT_SYMBOL_GPL(fsg_common_create_lun);
2936
2937 int fsg_common_create_luns(struct fsg_common *common, struct fsg_config *cfg)
2938 {
2939         char buf[8]; /* enough for 100000000 different numbers, decimal */
2940         int i, rc;
2941
2942         fsg_common_remove_luns(common);
2943
2944         for (i = 0; i < cfg->nluns; ++i) {
2945                 snprintf(buf, sizeof(buf), "lun%d", i);
2946                 rc = fsg_common_create_lun(common, &cfg->luns[i], i, buf, NULL);
2947                 if (rc)
2948                         goto fail;
2949         }
2950
2951         pr_info("Number of LUNs=%d\n", cfg->nluns);
2952
2953         return 0;
2954
2955 fail:
2956         _fsg_common_remove_luns(common, i);
2957         return rc;
2958 }
2959 EXPORT_SYMBOL_GPL(fsg_common_create_luns);
2960
2961 void fsg_common_set_inquiry_string(struct fsg_common *common, const char *vn,
2962                                    const char *pn)
2963 {
2964         int i;
2965
2966         /* Prepare inquiryString */
2967         i = get_default_bcdDevice();
2968         snprintf(common->inquiry_string, sizeof(common->inquiry_string),
2969                  "%-8s%-16s%04x", vn ?: "Linux",
2970                  /* Assume product name dependent on the first LUN */
2971                  pn ?: ((*common->luns)->cdrom
2972                      ? "File-CD Gadget"
2973                      : "File-Stor Gadget"),
2974                  i);
2975 }
2976 EXPORT_SYMBOL_GPL(fsg_common_set_inquiry_string);
2977
2978 static void fsg_common_release(struct kref *ref)
2979 {
2980         struct fsg_common *common = container_of(ref, struct fsg_common, ref);
2981         int i;
2982
2983         /* If the thread isn't already dead, tell it to exit now */
2984         if (common->state != FSG_STATE_TERMINATED) {
2985                 raise_exception(common, FSG_STATE_EXIT);
2986                 wait_for_completion(&common->thread_notifier);
2987                 common->thread_task = NULL;
2988         }
2989
2990         for (i = 0; i < ARRAY_SIZE(common->luns); ++i) {
2991                 struct fsg_lun *lun = common->luns[i];
2992                 if (!lun)
2993                         continue;
2994                 fsg_lun_close(lun);
2995                 if (device_is_registered(&lun->dev))
2996                         device_unregister(&lun->dev);
2997                 kfree(lun);
2998         }
2999
3000         _fsg_common_free_buffers(common->buffhds, common->fsg_num_buffers);
3001         if (common->free_storage_on_release)
3002                 kfree(common);
3003 }
3004
3005
3006 /*-------------------------------------------------------------------------*/
3007
3008 static int fsg_bind(struct usb_configuration *c, struct usb_function *f)
3009 {
3010         struct fsg_dev          *fsg = fsg_from_func(f);
3011         struct fsg_common       *common = fsg->common;
3012         struct usb_gadget       *gadget = c->cdev->gadget;
3013         int                     i;
3014         struct usb_ep           *ep;
3015         unsigned                max_burst;
3016         int                     ret;
3017         struct fsg_opts         *opts;
3018
3019         /* Don't allow to bind if we don't have at least one LUN */
3020         ret = _fsg_common_get_max_lun(common);
3021         if (ret < 0) {
3022                 pr_err("There should be at least one LUN.\n");
3023                 return -EINVAL;
3024         }
3025
3026         opts = fsg_opts_from_func_inst(f->fi);
3027         if (!opts->no_configfs) {
3028                 ret = fsg_common_set_cdev(fsg->common, c->cdev,
3029                                           fsg->common->can_stall);
3030                 if (ret)
3031                         return ret;
3032                 fsg_common_set_inquiry_string(fsg->common, NULL, NULL);
3033         }
3034
3035         if (!common->thread_task) {
3036                 common->state = FSG_STATE_IDLE;
3037                 common->thread_task =
3038                         kthread_create(fsg_main_thread, common, "file-storage");
3039                 if (IS_ERR(common->thread_task)) {
3040                         int ret = PTR_ERR(common->thread_task);
3041                         common->thread_task = NULL;
3042                         common->state = FSG_STATE_TERMINATED;
3043                         return ret;
3044                 }
3045                 DBG(common, "I/O thread pid: %d\n",
3046                     task_pid_nr(common->thread_task));
3047                 wake_up_process(common->thread_task);
3048         }
3049
3050         fsg->gadget = gadget;
3051
3052         /* New interface */
3053         i = usb_interface_id(c, f);
3054         if (i < 0)
3055                 goto fail;
3056         fsg_intf_desc.bInterfaceNumber = i;
3057         fsg->interface_number = i;
3058
3059         /* Find all the endpoints we will use */
3060         ep = usb_ep_autoconfig(gadget, &fsg_fs_bulk_in_desc);
3061         if (!ep)
3062                 goto autoconf_fail;
3063         fsg->bulk_in = ep;
3064
3065         ep = usb_ep_autoconfig(gadget, &fsg_fs_bulk_out_desc);
3066         if (!ep)
3067                 goto autoconf_fail;
3068         fsg->bulk_out = ep;
3069
3070         /* Assume endpoint addresses are the same for both speeds */
3071         fsg_hs_bulk_in_desc.bEndpointAddress =
3072                 fsg_fs_bulk_in_desc.bEndpointAddress;
3073         fsg_hs_bulk_out_desc.bEndpointAddress =
3074                 fsg_fs_bulk_out_desc.bEndpointAddress;
3075
3076         /* Calculate bMaxBurst, we know packet size is 1024 */
3077         max_burst = min_t(unsigned, FSG_BUFLEN / 1024, 15);
3078
3079         fsg_ss_bulk_in_desc.bEndpointAddress =
3080                 fsg_fs_bulk_in_desc.bEndpointAddress;
3081         fsg_ss_bulk_in_comp_desc.bMaxBurst = max_burst;
3082
3083         fsg_ss_bulk_out_desc.bEndpointAddress =
3084                 fsg_fs_bulk_out_desc.bEndpointAddress;
3085         fsg_ss_bulk_out_comp_desc.bMaxBurst = max_burst;
3086
3087         ret = usb_assign_descriptors(f, fsg_fs_function, fsg_hs_function,
3088                         fsg_ss_function);
3089         if (ret)
3090                 goto autoconf_fail;
3091
3092         return 0;
3093
3094 autoconf_fail:
3095         ERROR(fsg, "unable to autoconfigure all endpoints\n");
3096         i = -ENOTSUPP;
3097 fail:
3098         /* terminate the thread */
3099         if (fsg->common->state != FSG_STATE_TERMINATED) {
3100                 raise_exception(fsg->common, FSG_STATE_EXIT);
3101                 wait_for_completion(&fsg->common->thread_notifier);
3102         }
3103         return i;
3104 }
3105
3106 /****************************** ALLOCATE FUNCTION *************************/
3107
3108 static void fsg_unbind(struct usb_configuration *c, struct usb_function *f)
3109 {
3110         struct fsg_dev          *fsg = fsg_from_func(f);
3111         struct fsg_common       *common = fsg->common;
3112
3113         DBG(fsg, "unbind\n");
3114         if (fsg->common->fsg == fsg) {
3115                 fsg->common->new_fsg = NULL;
3116                 raise_exception(fsg->common, FSG_STATE_CONFIG_CHANGE);
3117                 /* FIXME: make interruptible or killable somehow? */
3118                 wait_event(common->fsg_wait, common->fsg != fsg);
3119         }
3120
3121         usb_free_all_descriptors(&fsg->function);
3122 }
3123
3124 static inline struct fsg_lun_opts *to_fsg_lun_opts(struct config_item *item)
3125 {
3126         return container_of(to_config_group(item), struct fsg_lun_opts, group);
3127 }
3128
3129 static inline struct fsg_opts *to_fsg_opts(struct config_item *item)
3130 {
3131         return container_of(to_config_group(item), struct fsg_opts,
3132                             func_inst.group);
3133 }
3134
3135 static void fsg_lun_attr_release(struct config_item *item)
3136 {
3137         struct fsg_lun_opts *lun_opts;
3138
3139         lun_opts = to_fsg_lun_opts(item);
3140         kfree(lun_opts);
3141 }
3142
3143 static struct configfs_item_operations fsg_lun_item_ops = {
3144         .release                = fsg_lun_attr_release,
3145 };
3146
3147 static ssize_t fsg_lun_opts_file_show(struct config_item *item, char *page)
3148 {
3149         struct fsg_lun_opts *opts = to_fsg_lun_opts(item);
3150         struct fsg_opts *fsg_opts = to_fsg_opts(opts->group.cg_item.ci_parent);
3151
3152         return fsg_show_file(opts->lun, &fsg_opts->common->filesem, page);
3153 }
3154
3155 static ssize_t fsg_lun_opts_file_store(struct config_item *item,
3156                                        const char *page, size_t len)
3157 {
3158         struct fsg_lun_opts *opts = to_fsg_lun_opts(item);
3159         struct fsg_opts *fsg_opts = to_fsg_opts(opts->group.cg_item.ci_parent);
3160
3161         return fsg_store_file(opts->lun, &fsg_opts->common->filesem, page, len);
3162 }
3163
3164 CONFIGFS_ATTR(fsg_lun_opts_, file);
3165
3166 static ssize_t fsg_lun_opts_ro_show(struct config_item *item, char *page)
3167 {
3168         return fsg_show_ro(to_fsg_lun_opts(item)->lun, page);
3169 }
3170
3171 static ssize_t fsg_lun_opts_ro_store(struct config_item *item,
3172                                        const char *page, size_t len)
3173 {
3174         struct fsg_lun_opts *opts = to_fsg_lun_opts(item);
3175         struct fsg_opts *fsg_opts = to_fsg_opts(opts->group.cg_item.ci_parent);
3176
3177         return fsg_store_ro(opts->lun, &fsg_opts->common->filesem, page, len);
3178 }
3179
3180 CONFIGFS_ATTR(fsg_lun_opts_, ro);
3181
3182 static ssize_t fsg_lun_opts_removable_show(struct config_item *item,
3183                                            char *page)
3184 {
3185         return fsg_show_removable(to_fsg_lun_opts(item)->lun, page);
3186 }
3187
3188 static ssize_t fsg_lun_opts_removable_store(struct config_item *item,
3189                                        const char *page, size_t len)
3190 {
3191         return fsg_store_removable(to_fsg_lun_opts(item)->lun, page, len);
3192 }
3193
3194 CONFIGFS_ATTR(fsg_lun_opts_, removable);
3195
3196 static ssize_t fsg_lun_opts_cdrom_show(struct config_item *item, char *page)
3197 {
3198         return fsg_show_cdrom(to_fsg_lun_opts(item)->lun, page);
3199 }
3200
3201 static ssize_t fsg_lun_opts_cdrom_store(struct config_item *item,
3202                                        const char *page, size_t len)
3203 {
3204         struct fsg_lun_opts *opts = to_fsg_lun_opts(item);
3205         struct fsg_opts *fsg_opts = to_fsg_opts(opts->group.cg_item.ci_parent);
3206
3207         return fsg_store_cdrom(opts->lun, &fsg_opts->common->filesem, page,
3208                                len);
3209 }
3210
3211 CONFIGFS_ATTR(fsg_lun_opts_, cdrom);
3212
3213 static ssize_t fsg_lun_opts_nofua_show(struct config_item *item, char *page)
3214 {
3215         return fsg_show_nofua(to_fsg_lun_opts(item)->lun, page);
3216 }
3217
3218 static ssize_t fsg_lun_opts_nofua_store(struct config_item *item,
3219                                        const char *page, size_t len)
3220 {
3221         return fsg_store_nofua(to_fsg_lun_opts(item)->lun, page, len);
3222 }
3223
3224 CONFIGFS_ATTR(fsg_lun_opts_, nofua);
3225
3226 static struct configfs_attribute *fsg_lun_attrs[] = {
3227         &fsg_lun_opts_attr_file,
3228         &fsg_lun_opts_attr_ro,
3229         &fsg_lun_opts_attr_removable,
3230         &fsg_lun_opts_attr_cdrom,
3231         &fsg_lun_opts_attr_nofua,
3232         NULL,
3233 };
3234
3235 static struct config_item_type fsg_lun_type = {
3236         .ct_item_ops    = &fsg_lun_item_ops,
3237         .ct_attrs       = fsg_lun_attrs,
3238         .ct_owner       = THIS_MODULE,
3239 };
3240
3241 static struct config_group *fsg_lun_make(struct config_group *group,
3242                                          const char *name)
3243 {
3244         struct fsg_lun_opts *opts;
3245         struct fsg_opts *fsg_opts;
3246         struct fsg_lun_config config;
3247         char *num_str;
3248         u8 num;
3249         int ret;
3250
3251         num_str = strchr(name, '.');
3252         if (!num_str) {
3253                 pr_err("Unable to locate . in LUN.NUMBER\n");
3254                 return ERR_PTR(-EINVAL);
3255         }
3256         num_str++;
3257
3258         ret = kstrtou8(num_str, 0, &num);
3259         if (ret)
3260                 return ERR_PTR(ret);
3261
3262         fsg_opts = to_fsg_opts(&group->cg_item);
3263         if (num >= FSG_MAX_LUNS)
3264                 return ERR_PTR(-ERANGE);
3265         num = array_index_nospec(num, FSG_MAX_LUNS);
3266
3267         mutex_lock(&fsg_opts->lock);
3268         if (fsg_opts->refcnt || fsg_opts->common->luns[num]) {
3269                 ret = -EBUSY;
3270                 goto out;
3271         }
3272
3273         opts = kzalloc(sizeof(*opts), GFP_KERNEL);
3274         if (!opts) {
3275                 ret = -ENOMEM;
3276                 goto out;
3277         }
3278
3279         memset(&config, 0, sizeof(config));
3280         config.removable = true;
3281
3282         ret = fsg_common_create_lun(fsg_opts->common, &config, num, name,
3283                                     (const char **)&group->cg_item.ci_name);
3284         if (ret) {
3285                 kfree(opts);
3286                 goto out;
3287         }
3288         opts->lun = fsg_opts->common->luns[num];
3289         opts->lun_id = num;
3290         mutex_unlock(&fsg_opts->lock);
3291
3292         config_group_init_type_name(&opts->group, name, &fsg_lun_type);
3293
3294         return &opts->group;
3295 out:
3296         mutex_unlock(&fsg_opts->lock);
3297         return ERR_PTR(ret);
3298 }
3299
3300 static void fsg_lun_drop(struct config_group *group, struct config_item *item)
3301 {
3302         struct fsg_lun_opts *lun_opts;
3303         struct fsg_opts *fsg_opts;
3304
3305         lun_opts = to_fsg_lun_opts(item);
3306         fsg_opts = to_fsg_opts(&group->cg_item);
3307
3308         mutex_lock(&fsg_opts->lock);
3309         if (fsg_opts->refcnt) {
3310                 struct config_item *gadget;
3311
3312                 gadget = group->cg_item.ci_parent->ci_parent;
3313                 unregister_gadget_item(gadget);
3314         }
3315
3316         fsg_common_remove_lun(lun_opts->lun);
3317         fsg_opts->common->luns[lun_opts->lun_id] = NULL;
3318         lun_opts->lun_id = 0;
3319         mutex_unlock(&fsg_opts->lock);
3320
3321         config_item_put(item);
3322 }
3323
3324 static void fsg_attr_release(struct config_item *item)
3325 {
3326         struct fsg_opts *opts = to_fsg_opts(item);
3327
3328         usb_put_function_instance(&opts->func_inst);
3329 }
3330
3331 static struct configfs_item_operations fsg_item_ops = {
3332         .release                = fsg_attr_release,
3333 };
3334
3335 static ssize_t fsg_opts_stall_show(struct config_item *item, char *page)
3336 {
3337         struct fsg_opts *opts = to_fsg_opts(item);
3338         int result;
3339
3340         mutex_lock(&opts->lock);
3341         result = sprintf(page, "%d", opts->common->can_stall);
3342         mutex_unlock(&opts->lock);
3343
3344         return result;
3345 }
3346
3347 static ssize_t fsg_opts_stall_store(struct config_item *item, const char *page,
3348                                     size_t len)
3349 {
3350         struct fsg_opts *opts = to_fsg_opts(item);
3351         int ret;
3352         bool stall;
3353
3354         mutex_lock(&opts->lock);
3355
3356         if (opts->refcnt) {
3357                 mutex_unlock(&opts->lock);
3358                 return -EBUSY;
3359         }
3360
3361         ret = strtobool(page, &stall);
3362         if (!ret) {
3363                 opts->common->can_stall = stall;
3364                 ret = len;
3365         }
3366
3367         mutex_unlock(&opts->lock);
3368
3369         return ret;
3370 }
3371
3372 CONFIGFS_ATTR(fsg_opts_, stall);
3373
3374 #ifdef CONFIG_USB_GADGET_DEBUG_FILES
3375 static ssize_t fsg_opts_num_buffers_show(struct config_item *item, char *page)
3376 {
3377         struct fsg_opts *opts = to_fsg_opts(item);
3378         int result;
3379
3380         mutex_lock(&opts->lock);
3381         result = sprintf(page, "%d", opts->common->fsg_num_buffers);
3382         mutex_unlock(&opts->lock);
3383
3384         return result;
3385 }
3386
3387 static ssize_t fsg_opts_num_buffers_store(struct config_item *item,
3388                                           const char *page, size_t len)
3389 {
3390         struct fsg_opts *opts = to_fsg_opts(item);
3391         int ret;
3392         u8 num;
3393
3394         mutex_lock(&opts->lock);
3395         if (opts->refcnt) {
3396                 ret = -EBUSY;
3397                 goto end;
3398         }
3399         ret = kstrtou8(page, 0, &num);
3400         if (ret)
3401                 goto end;
3402
3403         ret = fsg_num_buffers_validate(num);
3404         if (ret)
3405                 goto end;
3406
3407         fsg_common_set_num_buffers(opts->common, num);
3408         ret = len;
3409
3410 end:
3411         mutex_unlock(&opts->lock);
3412         return ret;
3413 }
3414
3415 CONFIGFS_ATTR(fsg_opts_, num_buffers);
3416 #endif
3417
3418 static struct configfs_attribute *fsg_attrs[] = {
3419         &fsg_opts_attr_stall,
3420 #ifdef CONFIG_USB_GADGET_DEBUG_FILES
3421         &fsg_opts_attr_num_buffers,
3422 #endif
3423         NULL,
3424 };
3425
3426 static struct configfs_group_operations fsg_group_ops = {
3427         .make_group     = fsg_lun_make,
3428         .drop_item      = fsg_lun_drop,
3429 };
3430
3431 static struct config_item_type fsg_func_type = {
3432         .ct_item_ops    = &fsg_item_ops,
3433         .ct_group_ops   = &fsg_group_ops,
3434         .ct_attrs       = fsg_attrs,
3435         .ct_owner       = THIS_MODULE,
3436 };
3437
3438 static void fsg_free_inst(struct usb_function_instance *fi)
3439 {
3440         struct fsg_opts *opts;
3441
3442         opts = fsg_opts_from_func_inst(fi);
3443         fsg_common_put(opts->common);
3444         kfree(opts);
3445 }
3446
3447 static struct usb_function_instance *fsg_alloc_inst(void)
3448 {
3449         struct fsg_opts *opts;
3450         struct fsg_lun_config config;
3451         int rc;
3452
3453         opts = kzalloc(sizeof(*opts), GFP_KERNEL);
3454         if (!opts)
3455                 return ERR_PTR(-ENOMEM);
3456         mutex_init(&opts->lock);
3457         opts->func_inst.free_func_inst = fsg_free_inst;
3458         opts->common = fsg_common_setup(opts->common);
3459         if (IS_ERR(opts->common)) {
3460                 rc = PTR_ERR(opts->common);
3461                 goto release_opts;
3462         }
3463
3464         rc = fsg_common_set_num_buffers(opts->common,
3465                                         CONFIG_USB_GADGET_STORAGE_NUM_BUFFERS);
3466         if (rc)
3467                 goto release_opts;
3468
3469         pr_info(FSG_DRIVER_DESC ", version: " FSG_DRIVER_VERSION "\n");
3470
3471         memset(&config, 0, sizeof(config));
3472         config.removable = true;
3473         rc = fsg_common_create_lun(opts->common, &config, 0, "lun.0",
3474                         (const char **)&opts->func_inst.group.cg_item.ci_name);
3475         if (rc)
3476                 goto release_buffers;
3477
3478         opts->lun0.lun = opts->common->luns[0];
3479         opts->lun0.lun_id = 0;
3480         config_group_init_type_name(&opts->lun0.group, "lun.0", &fsg_lun_type);
3481         opts->default_groups[0] = &opts->lun0.group;
3482         opts->func_inst.group.default_groups = opts->default_groups;
3483
3484         config_group_init_type_name(&opts->func_inst.group, "", &fsg_func_type);
3485
3486         return &opts->func_inst;
3487
3488 release_buffers:
3489         fsg_common_free_buffers(opts->common);
3490 release_opts:
3491         kfree(opts);
3492         return ERR_PTR(rc);
3493 }
3494
3495 static void fsg_free(struct usb_function *f)
3496 {
3497         struct fsg_dev *fsg;
3498         struct fsg_opts *opts;
3499
3500         fsg = container_of(f, struct fsg_dev, function);
3501         opts = container_of(f->fi, struct fsg_opts, func_inst);
3502
3503         mutex_lock(&opts->lock);
3504         opts->refcnt--;
3505         mutex_unlock(&opts->lock);
3506
3507         kfree(fsg);
3508 }
3509
3510 static struct usb_function *fsg_alloc(struct usb_function_instance *fi)
3511 {
3512         struct fsg_opts *opts = fsg_opts_from_func_inst(fi);
3513         struct fsg_common *common = opts->common;
3514         struct fsg_dev *fsg;
3515
3516         fsg = kzalloc(sizeof(*fsg), GFP_KERNEL);
3517         if (unlikely(!fsg))
3518                 return ERR_PTR(-ENOMEM);
3519
3520         mutex_lock(&opts->lock);
3521         opts->refcnt++;
3522         mutex_unlock(&opts->lock);
3523
3524         fsg->function.name      = FSG_DRIVER_DESC;
3525         fsg->function.bind      = fsg_bind;
3526         fsg->function.unbind    = fsg_unbind;
3527         fsg->function.setup     = fsg_setup;
3528         fsg->function.set_alt   = fsg_set_alt;
3529         fsg->function.disable   = fsg_disable;
3530         fsg->function.free_func = fsg_free;
3531
3532         fsg->common               = common;
3533
3534         return &fsg->function;
3535 }
3536
3537 DECLARE_USB_FUNCTION_INIT(mass_storage, fsg_alloc_inst, fsg_alloc);
3538 MODULE_LICENSE("GPL");
3539 MODULE_AUTHOR("Michal Nazarewicz");
3540
3541 /************************* Module parameters *************************/
3542
3543
3544 void fsg_config_from_params(struct fsg_config *cfg,
3545                        const struct fsg_module_parameters *params,
3546                        unsigned int fsg_num_buffers)
3547 {
3548         struct fsg_lun_config *lun;
3549         unsigned i;
3550
3551         /* Configure LUNs */
3552         cfg->nluns =
3553                 min(params->luns ?: (params->file_count ?: 1u),
3554                     (unsigned)FSG_MAX_LUNS);
3555         for (i = 0, lun = cfg->luns; i < cfg->nluns; ++i, ++lun) {
3556                 lun->ro = !!params->ro[i];
3557                 lun->cdrom = !!params->cdrom[i];
3558                 lun->removable = !!params->removable[i];
3559                 lun->filename =
3560                         params->file_count > i && params->file[i][0]
3561                         ? params->file[i]
3562                         : NULL;
3563         }
3564
3565         /* Let MSF use defaults */
3566         cfg->vendor_name = NULL;
3567         cfg->product_name = NULL;
3568
3569         cfg->ops = NULL;
3570         cfg->private_data = NULL;
3571
3572         /* Finalise */
3573         cfg->can_stall = params->stall;
3574         cfg->fsg_num_buffers = fsg_num_buffers;
3575 }
3576 EXPORT_SYMBOL_GPL(fsg_config_from_params);