xref: /linux/drivers/usb/gadget/function/f_mass_storage.c (revision 65538a8f02fe6e4f07228a816529b039b544f051)
1 // SPDX-License-Identifier: (GPL-2.0+ OR BSD-3-Clause)
2 /*
3  * f_mass_storage.c -- Mass Storage USB Composite Function
4  *
5  * Copyright (C) 2003-2008 Alan Stern
6  * Copyright (C) 2009 Samsung Electronics
7  *                    Author: Michal Nazarewicz <mina86@mina86.com>
8  * All rights reserved.
9  */
10 
11 /*
12  * The Mass Storage Function acts as a USB Mass Storage device,
13  * appearing to the host as a disk drive or as a CD-ROM drive.  In
14  * addition to providing an example of a genuinely useful composite
15  * function for a USB device, it also illustrates a technique of
16  * double-buffering for increased throughput.
17  *
18  * For more information about MSF and in particular its module
19  * parameters and sysfs interface read the
20  * <Documentation/usb/mass-storage.rst> file.
21  */
22 
23 /*
24  * MSF is configured by specifying a fsg_config structure.  It has the
25  * following fields:
26  *
27  *	nluns		Number of LUNs function have (anywhere from 1
28  *				to FSG_MAX_LUNS).
29  *	luns		An array of LUN configuration values.  This
30  *				should be filled for each LUN that
31  *				function will include (ie. for "nluns"
32  *				LUNs).  Each element of the array has
33  *				the following fields:
34  *	->filename	The path to the backing file for the LUN.
35  *				Required if LUN is not marked as
36  *				removable.
37  *	->ro		Flag specifying access to the LUN shall be
38  *				read-only.  This is implied if CD-ROM
39  *				emulation is enabled as well as when
40  *				it was impossible to open "filename"
41  *				in R/W mode.
42  *	->removable	Flag specifying that LUN shall be indicated as
43  *				being removable.
44  *	->cdrom		Flag specifying that LUN shall be reported as
45  *				being a CD-ROM.
46  *	->nofua		Flag specifying that FUA flag in SCSI WRITE(10,12)
47  *				commands for this LUN shall be ignored.
48  *
49  *	vendor_name
50  *	product_name
51  *	release		Information used as a reply to INQUIRY
52  *				request.  To use default set to NULL,
53  *				NULL, 0xffff respectively.  The first
54  *				field should be 8 and the second 16
55  *				characters or less.
56  *
57  *	can_stall	Set to permit function to halt bulk endpoints.
58  *				Disabled on some USB devices known not
59  *				to work correctly.  You should set it
60  *				to true.
61  *
62  * If "removable" is not set for a LUN then a backing file must be
63  * specified.  If it is set, then NULL filename means the LUN's medium
64  * is not loaded (an empty string as "filename" in the fsg_config
65  * structure causes error).  The CD-ROM emulation includes a single
66  * data track and no audio tracks; hence there need be only one
67  * backing file per LUN.
68  *
69  * This function is heavily based on "File-backed Storage Gadget" by
70  * Alan Stern which in turn is heavily based on "Gadget Zero" by David
71  * Brownell.  The driver's SCSI command interface was based on the
72  * "Information technology - Small Computer System Interface - 2"
73  * document from X3T9.2 Project 375D, Revision 10L, 7-SEP-93,
74  * available at <http://www.t10.org/ftp/t10/drafts/s2/s2-r10l.pdf>.
75  * The single exception is opcode 0x23 (READ FORMAT CAPACITIES), which
76  * was based on the "Universal Serial Bus Mass Storage Class UFI
77  * Command Specification" document, Revision 1.0, December 14, 1998,
78  * available at
79  * <http://www.usb.org/developers/devclass_docs/usbmass-ufi10.pdf>.
80  */
81 
82 /*
83  *				Driver Design
84  *
85  * The MSF is fairly straightforward.  There is a main kernel
86  * thread that handles most of the work.  Interrupt routines field
87  * callbacks from the controller driver: bulk- and interrupt-request
88  * completion notifications, endpoint-0 events, and disconnect events.
89  * Completion events are passed to the main thread by wakeup calls.  Many
90  * ep0 requests are handled at interrupt time, but SetInterface,
91  * SetConfiguration, and device reset requests are forwarded to the
92  * thread in the form of "exceptions" using SIGUSR1 signals (since they
93  * should interrupt any ongoing file I/O operations).
94  *
95  * The thread's main routine implements the standard command/data/status
96  * parts of a SCSI interaction.  It and its subroutines are full of tests
97  * for pending signals/exceptions -- all this polling is necessary since
98  * the kernel has no setjmp/longjmp equivalents.  (Maybe this is an
99  * indication that the driver really wants to be running in userspace.)
100  * An important point is that so long as the thread is alive it keeps an
101  * open reference to the backing file.  This will prevent unmounting
102  * the backing file's underlying filesystem and could cause problems
103  * during system shutdown, for example.  To prevent such problems, the
104  * thread catches INT, TERM, and KILL signals and converts them into
105  * an EXIT exception.
106  *
107  * In normal operation the main thread is started during the gadget's
108  * fsg_bind() callback and stopped during fsg_unbind().  But it can
109  * also exit when it receives a signal, and there's no point leaving
110  * the gadget running when the thread is dead.  As of this moment, MSF
111  * provides no way to deregister the gadget when thread dies -- maybe
112  * a callback functions is needed.
113  *
114  * To provide maximum throughput, the driver uses a circular pipeline of
115  * buffer heads (struct fsg_buffhd).  In principle the pipeline can be
116  * arbitrarily long; in practice the benefits don't justify having more
117  * than 2 stages (i.e., double buffering).  But it helps to think of the
118  * pipeline as being a long one.  Each buffer head contains a bulk-in and
119  * a bulk-out request pointer (since the buffer can be used for both
120  * output and input -- directions always are given from the host's
121  * point of view) as well as a pointer to the buffer and various state
122  * variables.
123  *
124  * Use of the pipeline follows a simple protocol.  There is a variable
125  * (fsg->next_buffhd_to_fill) that points to the next buffer head to use.
126  * At any time that buffer head may still be in use from an earlier
127  * request, so each buffer head has a state variable indicating whether
128  * it is EMPTY, FULL, or BUSY.  Typical use involves waiting for the
129  * buffer head to be EMPTY, filling the buffer either by file I/O or by
130  * USB I/O (during which the buffer head is BUSY), and marking the buffer
131  * head FULL when the I/O is complete.  Then the buffer will be emptied
132  * (again possibly by USB I/O, during which it is marked BUSY) and
133  * finally marked EMPTY again (possibly by a completion routine).
134  *
135  * A module parameter tells the driver to avoid stalling the bulk
136  * endpoints wherever the transport specification allows.  This is
137  * necessary for some UDCs like the SuperH, which cannot reliably clear a
138  * halt on a bulk endpoint.  However, under certain circumstances the
139  * Bulk-only specification requires a stall.  In such cases the driver
140  * will halt the endpoint and set a flag indicating that it should clear
141  * the halt in software during the next device reset.  Hopefully this
142  * will permit everything to work correctly.  Furthermore, although the
143  * specification allows the bulk-out endpoint to halt when the host sends
144  * too much data, implementing this would cause an unavoidable race.
145  * The driver will always use the "no-stall" approach for OUT transfers.
146  *
147  * One subtle point concerns sending status-stage responses for ep0
148  * requests.  Some of these requests, such as device reset, can involve
149  * interrupting an ongoing file I/O operation, which might take an
150  * arbitrarily long time.  During that delay the host might give up on
151  * the original ep0 request and issue a new one.  When that happens the
152  * driver should not notify the host about completion of the original
153  * request, as the host will no longer be waiting for it.  So the driver
154  * assigns to each ep0 request a unique tag, and it keeps track of the
155  * tag value of the request associated with a long-running exception
156  * (device-reset, interface-change, or configuration-change).  When the
157  * exception handler is finished, the status-stage response is submitted
158  * only if the current ep0 request tag is equal to the exception request
159  * tag.  Thus only the most recently received ep0 request will get a
160  * status-stage response.
161  *
162  * Warning: This driver source file is too long.  It ought to be split up
163  * into a header file plus about 3 separate .c files, to handle the details
164  * of the Gadget, USB Mass Storage, and SCSI protocols.
165  */
166 
167 
168 /* #define VERBOSE_DEBUG */
169 /* #define DUMP_MSGS */
170 
171 #include <linux/blkdev.h>
172 #include <linux/completion.h>
173 #include <linux/dcache.h>
174 #include <linux/delay.h>
175 #include <linux/device.h>
176 #include <linux/fcntl.h>
177 #include <linux/file.h>
178 #include <linux/fs.h>
179 #include <linux/kstrtox.h>
180 #include <linux/kthread.h>
181 #include <linux/sched/signal.h>
182 #include <linux/limits.h>
183 #include <linux/overflow.h>
184 #include <linux/pagemap.h>
185 #include <linux/rwsem.h>
186 #include <linux/slab.h>
187 #include <linux/spinlock.h>
188 #include <linux/string.h>
189 #include <linux/freezer.h>
190 #include <linux/module.h>
191 #include <linux/uaccess.h>
192 #include <linux/unaligned.h>
193 
194 #include <linux/usb/ch9.h>
195 #include <linux/usb/gadget.h>
196 #include <linux/usb/composite.h>
197 
198 #include <linux/nospec.h>
199 
200 #include "configfs.h"
201 
202 
203 /*------------------------------------------------------------------------*/
204 
205 #define FSG_DRIVER_DESC		"Mass Storage Function"
206 
207 static const char fsg_string_interface[] = "Mass Storage";
208 
209 #include "storage_common.h"
210 #include "f_mass_storage.h"
211 
212 /* Static strings, in UTF-8 (for simplicity we use only ASCII characters) */
213 static struct usb_string		fsg_strings[] = {
214 	{FSG_STRING_INTERFACE,		fsg_string_interface},
215 	{}
216 };
217 
218 static struct usb_gadget_strings	fsg_stringtab = {
219 	.language	= 0x0409,		/* en-us */
220 	.strings	= fsg_strings,
221 };
222 
223 static struct usb_gadget_strings *fsg_strings_array[] = {
224 	&fsg_stringtab,
225 	NULL,
226 };
227 
228 /*-------------------------------------------------------------------------*/
229 
230 struct fsg_dev;
231 struct fsg_common;
232 
233 /* Data shared by all the FSG instances. */
234 struct fsg_common {
235 	struct usb_gadget	*gadget;
236 	struct usb_composite_dev *cdev;
237 	struct fsg_dev		*fsg;
238 	wait_queue_head_t	io_wait;
239 	wait_queue_head_t	fsg_wait;
240 
241 	/* filesem protects: backing files in use */
242 	struct rw_semaphore	filesem;
243 
244 	/* lock protects: state and thread_task */
245 	spinlock_t		lock;
246 
247 	struct usb_ep		*ep0;		/* Copy of gadget->ep0 */
248 	struct usb_request	*ep0req;	/* Copy of cdev->req */
249 	unsigned int		ep0_req_tag;
250 
251 	struct fsg_buffhd	*next_buffhd_to_fill;
252 	struct fsg_buffhd	*next_buffhd_to_drain;
253 	struct fsg_buffhd	*buffhds;
254 	unsigned int		fsg_num_buffers;
255 
256 	int			cmnd_size;
257 	u8			cmnd[MAX_COMMAND_SIZE];
258 
259 	unsigned int		lun;
260 	struct fsg_lun		*luns[FSG_MAX_LUNS];
261 	struct fsg_lun		*curlun;
262 
263 	unsigned int		bulk_out_maxpacket;
264 	enum fsg_state		state;		/* For exception handling */
265 	unsigned int		exception_req_tag;
266 	void			*exception_arg;
267 
268 	enum data_direction	data_dir;
269 	u32			data_size;
270 	u32			data_size_from_cmnd;
271 	u32			tag;
272 	u32			residue;
273 	u32			usb_amount_left;
274 
275 	unsigned int		can_stall:1;
276 	unsigned int		free_storage_on_release:1;
277 	unsigned int		phase_error:1;
278 	unsigned int		short_packet_received:1;
279 	unsigned int		bad_lun_okay:1;
280 	unsigned int		running:1;
281 	unsigned int		sysfs:1;
282 
283 	struct completion	thread_notifier;
284 	struct task_struct	*thread_task;
285 
286 	/* Gadget's private data. */
287 	void			*private_data;
288 
289 	char inquiry_string[INQUIRY_STRING_LEN];
290 };
291 
292 struct fsg_dev {
293 	struct usb_function	function;
294 	struct usb_gadget	*gadget;	/* Copy of cdev->gadget */
295 	struct fsg_common	*common;
296 
297 	u16			interface_number;
298 
299 	unsigned int		bulk_in_enabled:1;
300 	unsigned int		bulk_out_enabled:1;
301 
302 	unsigned long		atomic_bitflags;
303 #define IGNORE_BULK_OUT		0
304 
305 	struct usb_ep		*bulk_in;
306 	struct usb_ep		*bulk_out;
307 };
308 
__fsg_is_set(struct fsg_common * common,const char * func,unsigned line)309 static inline int __fsg_is_set(struct fsg_common *common,
310 			       const char *func, unsigned line)
311 {
312 	if (common->fsg)
313 		return 1;
314 	ERROR(common, "common->fsg is NULL in %s at %u\n", func, line);
315 	WARN_ON(1);
316 	return 0;
317 }
318 
319 #define fsg_is_set(common) likely(__fsg_is_set(common, __func__, __LINE__))
320 
fsg_from_func(struct usb_function * f)321 static inline struct fsg_dev *fsg_from_func(struct usb_function *f)
322 {
323 	return container_of(f, struct fsg_dev, function);
324 }
325 
exception_in_progress(struct fsg_common * common)326 static int exception_in_progress(struct fsg_common *common)
327 {
328 	return common->state > FSG_STATE_NORMAL;
329 }
330 
331 /* Make bulk-out requests be divisible by the maxpacket size */
set_bulk_out_req_length(struct fsg_common * common,struct fsg_buffhd * bh,unsigned int length)332 static void set_bulk_out_req_length(struct fsg_common *common,
333 				    struct fsg_buffhd *bh, unsigned int length)
334 {
335 	unsigned int	rem;
336 
337 	bh->bulk_out_intended_length = length;
338 	rem = length % common->bulk_out_maxpacket;
339 	if (rem > 0)
340 		length += common->bulk_out_maxpacket - rem;
341 	bh->outreq->length = length;
342 }
343 
344 
345 /*-------------------------------------------------------------------------*/
346 
fsg_set_halt(struct fsg_dev * fsg,struct usb_ep * ep)347 static int fsg_set_halt(struct fsg_dev *fsg, struct usb_ep *ep)
348 {
349 	const char	*name;
350 
351 	if (ep == fsg->bulk_in)
352 		name = "bulk-in";
353 	else if (ep == fsg->bulk_out)
354 		name = "bulk-out";
355 	else
356 		name = ep->name;
357 	DBG(fsg, "%s set halt\n", name);
358 	return usb_ep_set_halt(ep);
359 }
360 
361 
362 /*-------------------------------------------------------------------------*/
363 
364 /* These routines may be called in process context or in_irq */
365 
__raise_exception(struct fsg_common * common,enum fsg_state new_state,void * arg)366 static void __raise_exception(struct fsg_common *common, enum fsg_state new_state,
367 			      void *arg)
368 {
369 	unsigned long		flags;
370 
371 	/*
372 	 * Do nothing if a higher-priority exception is already in progress.
373 	 * If a lower-or-equal priority exception is in progress, preempt it
374 	 * and notify the main thread by sending it a signal.
375 	 */
376 	spin_lock_irqsave(&common->lock, flags);
377 	if (common->state <= new_state) {
378 		common->exception_req_tag = common->ep0_req_tag;
379 		common->state = new_state;
380 		common->exception_arg = arg;
381 		if (common->thread_task)
382 			send_sig_info(SIGUSR1, SEND_SIG_PRIV,
383 				      common->thread_task);
384 	}
385 	spin_unlock_irqrestore(&common->lock, flags);
386 }
387 
raise_exception(struct fsg_common * common,enum fsg_state new_state)388 static void raise_exception(struct fsg_common *common, enum fsg_state new_state)
389 {
390 	__raise_exception(common, new_state, NULL);
391 }
392 
393 /*-------------------------------------------------------------------------*/
394 
ep0_queue(struct fsg_common * common)395 static int ep0_queue(struct fsg_common *common)
396 {
397 	int	rc;
398 
399 	rc = usb_ep_queue(common->ep0, common->ep0req, GFP_ATOMIC);
400 	common->ep0->driver_data = common;
401 	if (rc != 0 && rc != -ESHUTDOWN) {
402 		/* We can't do much more than wait for a reset */
403 		WARNING(common, "error in submission: %s --> %d\n",
404 			common->ep0->name, rc);
405 	}
406 	return rc;
407 }
408 
409 
410 /*-------------------------------------------------------------------------*/
411 
412 /* Completion handlers. These always run in_irq. */
413 
bulk_in_complete(struct usb_ep * ep,struct usb_request * req)414 static void bulk_in_complete(struct usb_ep *ep, struct usb_request *req)
415 {
416 	struct fsg_common	*common = ep->driver_data;
417 	struct fsg_buffhd	*bh = req->context;
418 
419 	if (req->status || req->actual != req->length)
420 		DBG(common, "%s --> %d, %u/%u\n", __func__,
421 		    req->status, req->actual, req->length);
422 	if (req->status == -ECONNRESET)		/* Request was cancelled */
423 		usb_ep_fifo_flush(ep);
424 
425 	/* Synchronize with the smp_load_acquire() in sleep_thread() */
426 	smp_store_release(&bh->state, BUF_STATE_EMPTY);
427 	wake_up(&common->io_wait);
428 }
429 
bulk_out_complete(struct usb_ep * ep,struct usb_request * req)430 static void bulk_out_complete(struct usb_ep *ep, struct usb_request *req)
431 {
432 	struct fsg_common	*common = ep->driver_data;
433 	struct fsg_buffhd	*bh = req->context;
434 
435 	dump_msg(common, "bulk-out", req->buf, req->actual);
436 	if (req->status || req->actual != bh->bulk_out_intended_length)
437 		DBG(common, "%s --> %d, %u/%u\n", __func__,
438 		    req->status, req->actual, bh->bulk_out_intended_length);
439 	if (req->status == -ECONNRESET)		/* Request was cancelled */
440 		usb_ep_fifo_flush(ep);
441 
442 	/* Synchronize with the smp_load_acquire() in sleep_thread() */
443 	smp_store_release(&bh->state, BUF_STATE_FULL);
444 	wake_up(&common->io_wait);
445 }
446 
_fsg_common_get_max_lun(struct fsg_common * common)447 static int _fsg_common_get_max_lun(struct fsg_common *common)
448 {
449 	int i = ARRAY_SIZE(common->luns) - 1;
450 
451 	while (i >= 0 && !common->luns[i])
452 		--i;
453 
454 	return i;
455 }
456 
fsg_setup(struct usb_function * f,const struct usb_ctrlrequest * ctrl)457 static int fsg_setup(struct usb_function *f,
458 		     const struct usb_ctrlrequest *ctrl)
459 {
460 	struct fsg_dev		*fsg = fsg_from_func(f);
461 	struct usb_request	*req = fsg->common->ep0req;
462 	u16			w_index = le16_to_cpu(ctrl->wIndex);
463 	u16			w_value = le16_to_cpu(ctrl->wValue);
464 	u16			w_length = le16_to_cpu(ctrl->wLength);
465 
466 	if (!fsg_is_set(fsg->common))
467 		return -EOPNOTSUPP;
468 
469 	++fsg->common->ep0_req_tag;	/* Record arrival of a new request */
470 	req->context = NULL;
471 	req->length = 0;
472 	dump_msg(fsg, "ep0-setup", (u8 *) ctrl, sizeof(*ctrl));
473 
474 	switch (ctrl->bRequest) {
475 
476 	case US_BULK_RESET_REQUEST:
477 		if (ctrl->bRequestType !=
478 		    (USB_DIR_OUT | USB_TYPE_CLASS | USB_RECIP_INTERFACE))
479 			break;
480 		if (w_index != fsg->interface_number || w_value != 0 ||
481 				w_length != 0)
482 			return -EDOM;
483 
484 		/*
485 		 * Raise an exception to stop the current operation
486 		 * and reinitialize our state.
487 		 */
488 		DBG(fsg, "bulk reset request\n");
489 		raise_exception(fsg->common, FSG_STATE_PROTOCOL_RESET);
490 		return USB_GADGET_DELAYED_STATUS;
491 
492 	case US_BULK_GET_MAX_LUN:
493 		if (ctrl->bRequestType !=
494 		    (USB_DIR_IN | USB_TYPE_CLASS | USB_RECIP_INTERFACE))
495 			break;
496 		if (w_index != fsg->interface_number || w_value != 0 ||
497 				w_length != 1)
498 			return -EDOM;
499 		VDBG(fsg, "get max LUN\n");
500 		*(u8 *)req->buf = _fsg_common_get_max_lun(fsg->common);
501 
502 		/* Respond with data/status */
503 		req->length = min_t(u16, 1, w_length);
504 		return ep0_queue(fsg->common);
505 	}
506 
507 	VDBG(fsg,
508 	     "unknown class-specific control req %02x.%02x v%04x i%04x l%u\n",
509 	     ctrl->bRequestType, ctrl->bRequest,
510 	     le16_to_cpu(ctrl->wValue), w_index, w_length);
511 	return -EOPNOTSUPP;
512 }
513 
514 
515 /*-------------------------------------------------------------------------*/
516 
517 /* All the following routines run in process context */
518 
519 /* Use this for bulk or interrupt transfers, not ep0 */
start_transfer(struct fsg_dev * fsg,struct usb_ep * ep,struct usb_request * req)520 static int start_transfer(struct fsg_dev *fsg, struct usb_ep *ep,
521 			   struct usb_request *req)
522 {
523 	int	rc;
524 
525 	if (ep == fsg->bulk_in)
526 		dump_msg(fsg, "bulk-in", req->buf, req->length);
527 
528 	rc = usb_ep_queue(ep, req, GFP_KERNEL);
529 	if (rc) {
530 
531 		/* We can't do much more than wait for a reset */
532 		req->status = rc;
533 
534 		/*
535 		 * Note: currently the net2280 driver fails zero-length
536 		 * submissions if DMA is enabled.
537 		 */
538 		if (rc != -ESHUTDOWN &&
539 				!(rc == -EOPNOTSUPP && req->length == 0))
540 			WARNING(fsg, "error in submission: %s --> %d\n",
541 					ep->name, rc);
542 	}
543 	return rc;
544 }
545 
start_in_transfer(struct fsg_common * common,struct fsg_buffhd * bh)546 static bool start_in_transfer(struct fsg_common *common, struct fsg_buffhd *bh)
547 {
548 	int rc;
549 
550 	if (!fsg_is_set(common))
551 		return false;
552 	bh->state = BUF_STATE_SENDING;
553 	rc = start_transfer(common->fsg, common->fsg->bulk_in, bh->inreq);
554 	if (rc) {
555 		bh->state = BUF_STATE_EMPTY;
556 		if (rc == -ESHUTDOWN) {
557 			common->running = 0;
558 			return false;
559 		}
560 	}
561 	return true;
562 }
563 
start_out_transfer(struct fsg_common * common,struct fsg_buffhd * bh)564 static bool start_out_transfer(struct fsg_common *common, struct fsg_buffhd *bh)
565 {
566 	int rc;
567 
568 	if (!fsg_is_set(common))
569 		return false;
570 	bh->state = BUF_STATE_RECEIVING;
571 	rc = start_transfer(common->fsg, common->fsg->bulk_out, bh->outreq);
572 	if (rc) {
573 		bh->state = BUF_STATE_FULL;
574 		if (rc == -ESHUTDOWN) {
575 			common->running = 0;
576 			return false;
577 		}
578 	}
579 	return true;
580 }
581 
sleep_thread(struct fsg_common * common,bool can_freeze,struct fsg_buffhd * bh)582 static int sleep_thread(struct fsg_common *common, bool can_freeze,
583 		struct fsg_buffhd *bh)
584 {
585 	int	rc;
586 
587 	/* Wait until a signal arrives or bh is no longer busy */
588 	if (can_freeze)
589 		/*
590 		 * synchronize with the smp_store_release(&bh->state) in
591 		 * bulk_in_complete() or bulk_out_complete()
592 		 */
593 		rc = wait_event_freezable(common->io_wait,
594 				bh && smp_load_acquire(&bh->state) >=
595 					BUF_STATE_EMPTY);
596 	else
597 		rc = wait_event_interruptible(common->io_wait,
598 				bh && smp_load_acquire(&bh->state) >=
599 					BUF_STATE_EMPTY);
600 	return rc ? -EINTR : 0;
601 }
602 
603 
604 /*-------------------------------------------------------------------------*/
605 
do_read(struct fsg_common * common)606 static int do_read(struct fsg_common *common)
607 {
608 	struct fsg_lun		*curlun = common->curlun;
609 	u64			lba;
610 	struct fsg_buffhd	*bh;
611 	int			rc;
612 	u32			amount_left;
613 	loff_t			file_offset, file_offset_tmp;
614 	unsigned int		amount;
615 	ssize_t			nread;
616 
617 	/*
618 	 * Get the starting Logical Block Address and check that it's
619 	 * not too big.
620 	 */
621 	if (common->cmnd[0] == READ_6)
622 		lba = get_unaligned_be24(&common->cmnd[1]);
623 	else {
624 		if (common->cmnd[0] == READ_16)
625 			lba = get_unaligned_be64(&common->cmnd[2]);
626 		else		/* READ_10 or READ_12 */
627 			lba = get_unaligned_be32(&common->cmnd[2]);
628 
629 		/*
630 		 * We allow DPO (Disable Page Out = don't save data in the
631 		 * cache) and FUA (Force Unit Access = don't read from the
632 		 * cache), but we don't implement them.
633 		 */
634 		if ((common->cmnd[1] & ~0x18) != 0) {
635 			curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
636 			return -EINVAL;
637 		}
638 	}
639 	if (lba >= curlun->num_sectors) {
640 		curlun->sense_data = SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
641 		return -EINVAL;
642 	}
643 	file_offset = ((loff_t) lba) << curlun->blkbits;
644 
645 	/* Carry out the file reads */
646 	amount_left = common->data_size_from_cmnd;
647 	if (unlikely(amount_left == 0))
648 		return -EIO;		/* No default reply */
649 
650 	for (;;) {
651 		/*
652 		 * Figure out how much we need to read:
653 		 * Try to read the remaining amount.
654 		 * But don't read more than the buffer size.
655 		 * And don't try to read past the end of the file.
656 		 */
657 		amount = min(amount_left, FSG_BUFLEN);
658 		amount = min_t(loff_t, amount,
659 			     curlun->file_length - file_offset);
660 
661 		/* Wait for the next buffer to become available */
662 		bh = common->next_buffhd_to_fill;
663 		rc = sleep_thread(common, false, bh);
664 		if (rc)
665 			return rc;
666 
667 		/*
668 		 * If we were asked to read past the end of file,
669 		 * end with an empty buffer.
670 		 */
671 		if (amount == 0) {
672 			curlun->sense_data =
673 					SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
674 			curlun->sense_data_info =
675 					file_offset >> curlun->blkbits;
676 			curlun->info_valid = 1;
677 			bh->inreq->length = 0;
678 			bh->state = BUF_STATE_FULL;
679 			break;
680 		}
681 
682 		/* Perform the read */
683 		file_offset_tmp = file_offset;
684 		nread = kernel_read(curlun->filp, bh->buf, amount,
685 				&file_offset_tmp);
686 		VLDBG(curlun, "file read %u @ %llu -> %d\n", amount,
687 		      (unsigned long long)file_offset, (int)nread);
688 		if (signal_pending(current))
689 			return -EINTR;
690 
691 		if (nread < 0) {
692 			LDBG(curlun, "error in file read: %d\n", (int)nread);
693 			nread = 0;
694 		} else if (nread < amount) {
695 			LDBG(curlun, "partial file read: %d/%u\n",
696 			     (int)nread, amount);
697 			nread = round_down(nread, curlun->blksize);
698 		}
699 		file_offset  += nread;
700 		amount_left  -= nread;
701 		common->residue -= nread;
702 
703 		/*
704 		 * Except at the end of the transfer, nread will be
705 		 * equal to the buffer size, which is divisible by the
706 		 * bulk-in maxpacket size.
707 		 */
708 		bh->inreq->length = nread;
709 		bh->state = BUF_STATE_FULL;
710 
711 		/* If an error occurred, report it and its position */
712 		if (nread < amount) {
713 			curlun->sense_data = SS_UNRECOVERED_READ_ERROR;
714 			curlun->sense_data_info =
715 					file_offset >> curlun->blkbits;
716 			curlun->info_valid = 1;
717 			break;
718 		}
719 
720 		if (amount_left == 0)
721 			break;		/* No more left to read */
722 
723 		/* Send this buffer and go read some more */
724 		bh->inreq->zero = 0;
725 		if (!start_in_transfer(common, bh))
726 			/* Don't know what to do if common->fsg is NULL */
727 			return -EIO;
728 		common->next_buffhd_to_fill = bh->next;
729 	}
730 
731 	return -EIO;		/* No default reply */
732 }
733 
734 
735 /*-------------------------------------------------------------------------*/
736 
do_write(struct fsg_common * common)737 static int do_write(struct fsg_common *common)
738 {
739 	struct fsg_lun		*curlun = common->curlun;
740 	u64			lba;
741 	struct fsg_buffhd	*bh;
742 	int			get_some_more;
743 	u32			amount_left_to_req, amount_left_to_write;
744 	loff_t			usb_offset, file_offset, file_offset_tmp;
745 	unsigned int		amount;
746 	ssize_t			nwritten;
747 	int			rc;
748 
749 	if (curlun->ro) {
750 		curlun->sense_data = SS_WRITE_PROTECTED;
751 		return -EINVAL;
752 	}
753 	spin_lock(&curlun->filp->f_lock);
754 	curlun->filp->f_flags &= ~O_SYNC;	/* Default is not to wait */
755 	spin_unlock(&curlun->filp->f_lock);
756 
757 	/*
758 	 * Get the starting Logical Block Address and check that it's
759 	 * not too big
760 	 */
761 	if (common->cmnd[0] == WRITE_6)
762 		lba = get_unaligned_be24(&common->cmnd[1]);
763 	else {
764 		if (common->cmnd[0] == WRITE_16)
765 			lba = get_unaligned_be64(&common->cmnd[2]);
766 		else		/* WRITE_10 or WRITE_12 */
767 			lba = get_unaligned_be32(&common->cmnd[2]);
768 
769 		/*
770 		 * We allow DPO (Disable Page Out = don't save data in the
771 		 * cache) and FUA (Force Unit Access = write directly to the
772 		 * medium).  We don't implement DPO; we implement FUA by
773 		 * performing synchronous output.
774 		 */
775 		if (common->cmnd[1] & ~0x18) {
776 			curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
777 			return -EINVAL;
778 		}
779 		if (!curlun->nofua && (common->cmnd[1] & 0x08)) { /* FUA */
780 			spin_lock(&curlun->filp->f_lock);
781 			curlun->filp->f_flags |= O_SYNC;
782 			spin_unlock(&curlun->filp->f_lock);
783 		}
784 	}
785 	if (lba >= curlun->num_sectors) {
786 		curlun->sense_data = SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
787 		return -EINVAL;
788 	}
789 
790 	/* Carry out the file writes */
791 	get_some_more = 1;
792 	file_offset = usb_offset = ((loff_t) lba) << curlun->blkbits;
793 	amount_left_to_req = common->data_size_from_cmnd;
794 	amount_left_to_write = common->data_size_from_cmnd;
795 
796 	while (amount_left_to_write > 0) {
797 
798 		/* Queue a request for more data from the host */
799 		bh = common->next_buffhd_to_fill;
800 		if (bh->state == BUF_STATE_EMPTY && get_some_more) {
801 
802 			/*
803 			 * Figure out how much we want to get:
804 			 * Try to get the remaining amount,
805 			 * but not more than the buffer size.
806 			 */
807 			amount = min(amount_left_to_req, FSG_BUFLEN);
808 
809 			/* Beyond the end of the backing file? */
810 			if (usb_offset >= curlun->file_length) {
811 				get_some_more = 0;
812 				curlun->sense_data =
813 					SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
814 				curlun->sense_data_info =
815 					usb_offset >> curlun->blkbits;
816 				curlun->info_valid = 1;
817 				continue;
818 			}
819 
820 			/* Get the next buffer */
821 			usb_offset += amount;
822 			common->usb_amount_left -= amount;
823 			amount_left_to_req -= amount;
824 			if (amount_left_to_req == 0)
825 				get_some_more = 0;
826 
827 			/*
828 			 * Except at the end of the transfer, amount will be
829 			 * equal to the buffer size, which is divisible by
830 			 * the bulk-out maxpacket size.
831 			 */
832 			set_bulk_out_req_length(common, bh, amount);
833 			if (!start_out_transfer(common, bh))
834 				/* Dunno what to do if common->fsg is NULL */
835 				return -EIO;
836 			common->next_buffhd_to_fill = bh->next;
837 			continue;
838 		}
839 
840 		/* Write the received data to the backing file */
841 		bh = common->next_buffhd_to_drain;
842 		if (bh->state == BUF_STATE_EMPTY && !get_some_more)
843 			break;			/* We stopped early */
844 
845 		/* Wait for the data to be received */
846 		rc = sleep_thread(common, false, bh);
847 		if (rc)
848 			return rc;
849 
850 		common->next_buffhd_to_drain = bh->next;
851 		bh->state = BUF_STATE_EMPTY;
852 
853 		/* Did something go wrong with the transfer? */
854 		if (bh->outreq->status != 0) {
855 			curlun->sense_data = SS_COMMUNICATION_FAILURE;
856 			curlun->sense_data_info =
857 					file_offset >> curlun->blkbits;
858 			curlun->info_valid = 1;
859 			break;
860 		}
861 
862 		amount = bh->outreq->actual;
863 		if (curlun->file_length - file_offset < amount) {
864 			LERROR(curlun, "write %u @ %llu beyond end %llu\n",
865 				       amount, (unsigned long long)file_offset,
866 				       (unsigned long long)curlun->file_length);
867 			amount = curlun->file_length - file_offset;
868 		}
869 
870 		/*
871 		 * Don't accept excess data.  The spec doesn't say
872 		 * what to do in this case.  We'll ignore the error.
873 		 */
874 		amount = min(amount, bh->bulk_out_intended_length);
875 
876 		/* Don't write a partial block */
877 		amount = round_down(amount, curlun->blksize);
878 		if (amount == 0)
879 			goto empty_write;
880 
881 		/* Perform the write */
882 		file_offset_tmp = file_offset;
883 		nwritten = kernel_write(curlun->filp, bh->buf, amount,
884 				&file_offset_tmp);
885 		VLDBG(curlun, "file write %u @ %llu -> %d\n", amount,
886 				(unsigned long long)file_offset, (int)nwritten);
887 		if (signal_pending(current))
888 			return -EINTR;		/* Interrupted! */
889 
890 		if (nwritten < 0) {
891 			LDBG(curlun, "error in file write: %d\n",
892 					(int) nwritten);
893 			nwritten = 0;
894 		} else if (nwritten < amount) {
895 			LDBG(curlun, "partial file write: %d/%u\n",
896 					(int) nwritten, amount);
897 			nwritten = round_down(nwritten, curlun->blksize);
898 		}
899 		file_offset += nwritten;
900 		amount_left_to_write -= nwritten;
901 		common->residue -= nwritten;
902 
903 		/* If an error occurred, report it and its position */
904 		if (nwritten < amount) {
905 			curlun->sense_data = SS_WRITE_ERROR;
906 			curlun->sense_data_info =
907 					file_offset >> curlun->blkbits;
908 			curlun->info_valid = 1;
909 			break;
910 		}
911 
912  empty_write:
913 		/* Did the host decide to stop early? */
914 		if (bh->outreq->actual < bh->bulk_out_intended_length) {
915 			common->short_packet_received = 1;
916 			break;
917 		}
918 	}
919 
920 	return -EIO;		/* No default reply */
921 }
922 
923 
924 /*-------------------------------------------------------------------------*/
925 
do_synchronize_cache(struct fsg_common * common)926 static int do_synchronize_cache(struct fsg_common *common)
927 {
928 	struct fsg_lun	*curlun = common->curlun;
929 	int		rc;
930 
931 	/* We ignore the requested LBA and write out all file's
932 	 * dirty data buffers. */
933 	rc = fsg_lun_fsync_sub(curlun);
934 	if (rc)
935 		curlun->sense_data = SS_WRITE_ERROR;
936 	return 0;
937 }
938 
939 
940 /*-------------------------------------------------------------------------*/
941 
invalidate_sub(struct fsg_lun * curlun)942 static void invalidate_sub(struct fsg_lun *curlun)
943 {
944 	struct file	*filp = curlun->filp;
945 	struct inode	*inode = file_inode(filp);
946 	unsigned long __maybe_unused	rc;
947 
948 	rc = invalidate_mapping_pages(inode->i_mapping, 0, -1);
949 	VLDBG(curlun, "invalidate_mapping_pages -> %ld\n", rc);
950 }
951 
do_verify(struct fsg_common * common)952 static int do_verify(struct fsg_common *common)
953 {
954 	struct fsg_lun		*curlun = common->curlun;
955 	u32			lba;
956 	u32			verification_length;
957 	struct fsg_buffhd	*bh = common->next_buffhd_to_fill;
958 	loff_t			file_offset, file_offset_tmp;
959 	u32			amount_left;
960 	unsigned int		amount;
961 	ssize_t			nread;
962 
963 	/*
964 	 * Get the starting Logical Block Address and check that it's
965 	 * not too big.
966 	 */
967 	lba = get_unaligned_be32(&common->cmnd[2]);
968 	if (lba >= curlun->num_sectors) {
969 		curlun->sense_data = SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
970 		return -EINVAL;
971 	}
972 
973 	/*
974 	 * We allow DPO (Disable Page Out = don't save data in the
975 	 * cache) but we don't implement it.
976 	 */
977 	if (common->cmnd[1] & ~0x10) {
978 		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
979 		return -EINVAL;
980 	}
981 
982 	verification_length = get_unaligned_be16(&common->cmnd[7]);
983 	if (unlikely(verification_length == 0))
984 		return -EIO;		/* No default reply */
985 
986 	/* Prepare to carry out the file verify */
987 	amount_left = verification_length << curlun->blkbits;
988 	file_offset = ((loff_t) lba) << curlun->blkbits;
989 
990 	/* Write out all the dirty buffers before invalidating them */
991 	fsg_lun_fsync_sub(curlun);
992 	if (signal_pending(current))
993 		return -EINTR;
994 
995 	invalidate_sub(curlun);
996 	if (signal_pending(current))
997 		return -EINTR;
998 
999 	/* Just try to read the requested blocks */
1000 	while (amount_left > 0) {
1001 		/*
1002 		 * Figure out how much we need to read:
1003 		 * Try to read the remaining amount, but not more than
1004 		 * the buffer size.
1005 		 * And don't try to read past the end of the file.
1006 		 */
1007 		amount = min(amount_left, FSG_BUFLEN);
1008 		amount = min_t(loff_t, amount,
1009 			     curlun->file_length - file_offset);
1010 		if (amount == 0) {
1011 			curlun->sense_data =
1012 					SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
1013 			curlun->sense_data_info =
1014 				file_offset >> curlun->blkbits;
1015 			curlun->info_valid = 1;
1016 			break;
1017 		}
1018 
1019 		/* Perform the read */
1020 		file_offset_tmp = file_offset;
1021 		nread = kernel_read(curlun->filp, bh->buf, amount,
1022 				&file_offset_tmp);
1023 		VLDBG(curlun, "file read %u @ %llu -> %d\n", amount,
1024 				(unsigned long long) file_offset,
1025 				(int) nread);
1026 		if (signal_pending(current))
1027 			return -EINTR;
1028 
1029 		if (nread < 0) {
1030 			LDBG(curlun, "error in file verify: %d\n", (int)nread);
1031 			nread = 0;
1032 		} else if (nread < amount) {
1033 			LDBG(curlun, "partial file verify: %d/%u\n",
1034 			     (int)nread, amount);
1035 			nread = round_down(nread, curlun->blksize);
1036 		}
1037 		if (nread == 0) {
1038 			curlun->sense_data = SS_UNRECOVERED_READ_ERROR;
1039 			curlun->sense_data_info =
1040 				file_offset >> curlun->blkbits;
1041 			curlun->info_valid = 1;
1042 			break;
1043 		}
1044 		file_offset += nread;
1045 		amount_left -= nread;
1046 	}
1047 	return 0;
1048 }
1049 
1050 
1051 /*-------------------------------------------------------------------------*/
1052 
do_inquiry(struct fsg_common * common,struct fsg_buffhd * bh)1053 static int do_inquiry(struct fsg_common *common, struct fsg_buffhd *bh)
1054 {
1055 	struct fsg_lun *curlun = common->curlun;
1056 	u8	*buf = (u8 *) bh->buf;
1057 
1058 	if (!curlun) {		/* Unsupported LUNs are okay */
1059 		common->bad_lun_okay = 1;
1060 		memset(buf, 0, 36);
1061 		buf[0] = TYPE_NO_LUN;	/* Unsupported, no device-type */
1062 		buf[4] = 31;		/* Additional length */
1063 		return 36;
1064 	}
1065 
1066 	buf[0] = curlun->cdrom ? TYPE_ROM : TYPE_DISK;
1067 	buf[1] = curlun->removable ? 0x80 : 0;
1068 	buf[2] = 2;		/* ANSI SCSI level 2 */
1069 	buf[3] = 2;		/* SCSI-2 INQUIRY data format */
1070 	buf[4] = 31;		/* Additional length */
1071 	buf[5] = 0;		/* No special options */
1072 	buf[6] = 0;
1073 	buf[7] = 0;
1074 	if (curlun->inquiry_string[0])
1075 		memcpy(buf + 8, curlun->inquiry_string,
1076 		       sizeof(curlun->inquiry_string));
1077 	else
1078 		memcpy(buf + 8, common->inquiry_string,
1079 		       sizeof(common->inquiry_string));
1080 	return 36;
1081 }
1082 
do_request_sense(struct fsg_common * common,struct fsg_buffhd * bh)1083 static int do_request_sense(struct fsg_common *common, struct fsg_buffhd *bh)
1084 {
1085 	struct fsg_lun	*curlun = common->curlun;
1086 	u8		*buf = (u8 *) bh->buf;
1087 	u32		sd, sdinfo;
1088 	int		valid;
1089 
1090 	/*
1091 	 * From the SCSI-2 spec., section 7.9 (Unit attention condition):
1092 	 *
1093 	 * If a REQUEST SENSE command is received from an initiator
1094 	 * with a pending unit attention condition (before the target
1095 	 * generates the contingent allegiance condition), then the
1096 	 * target shall either:
1097 	 *   a) report any pending sense data and preserve the unit
1098 	 *	attention condition on the logical unit, or,
1099 	 *   b) report the unit attention condition, may discard any
1100 	 *	pending sense data, and clear the unit attention
1101 	 *	condition on the logical unit for that initiator.
1102 	 *
1103 	 * FSG normally uses option a); enable this code to use option b).
1104 	 */
1105 #if 0
1106 	if (curlun && curlun->unit_attention_data != SS_NO_SENSE) {
1107 		curlun->sense_data = curlun->unit_attention_data;
1108 		curlun->unit_attention_data = SS_NO_SENSE;
1109 	}
1110 #endif
1111 
1112 	if (!curlun) {		/* Unsupported LUNs are okay */
1113 		common->bad_lun_okay = 1;
1114 		sd = SS_LOGICAL_UNIT_NOT_SUPPORTED;
1115 		sdinfo = 0;
1116 		valid = 0;
1117 	} else {
1118 		sd = curlun->sense_data;
1119 		sdinfo = curlun->sense_data_info;
1120 		valid = curlun->info_valid << 7;
1121 		curlun->sense_data = SS_NO_SENSE;
1122 		curlun->sense_data_info = 0;
1123 		curlun->info_valid = 0;
1124 	}
1125 
1126 	memset(buf, 0, 18);
1127 	buf[0] = valid | 0x70;			/* Valid, current error */
1128 	buf[2] = SK(sd);
1129 	put_unaligned_be32(sdinfo, &buf[3]);	/* Sense information */
1130 	buf[7] = 18 - 8;			/* Additional sense length */
1131 	buf[12] = ASC(sd);
1132 	buf[13] = ASCQ(sd);
1133 	return 18;
1134 }
1135 
do_read_capacity(struct fsg_common * common,struct fsg_buffhd * bh)1136 static int do_read_capacity(struct fsg_common *common, struct fsg_buffhd *bh)
1137 {
1138 	struct fsg_lun	*curlun = common->curlun;
1139 	u32		lba = get_unaligned_be32(&common->cmnd[2]);
1140 	int		pmi = common->cmnd[8];
1141 	u8		*buf = (u8 *)bh->buf;
1142 	u32		max_lba;
1143 
1144 	/* Check the PMI and LBA fields */
1145 	if (pmi > 1 || (pmi == 0 && lba != 0)) {
1146 		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1147 		return -EINVAL;
1148 	}
1149 
1150 	if (curlun->num_sectors < 0x100000000ULL)
1151 		max_lba = curlun->num_sectors - 1;
1152 	else
1153 		max_lba = 0xffffffff;
1154 	put_unaligned_be32(max_lba, &buf[0]);		/* Max logical block */
1155 	put_unaligned_be32(curlun->blksize, &buf[4]);	/* Block length */
1156 	return 8;
1157 }
1158 
do_read_capacity_16(struct fsg_common * common,struct fsg_buffhd * bh)1159 static int do_read_capacity_16(struct fsg_common *common, struct fsg_buffhd *bh)
1160 {
1161 	struct fsg_lun  *curlun = common->curlun;
1162 	u64		lba = get_unaligned_be64(&common->cmnd[2]);
1163 	int		pmi = common->cmnd[14];
1164 	u8		*buf = (u8 *)bh->buf;
1165 
1166 	/* Check the PMI and LBA fields */
1167 	if (pmi > 1 || (pmi == 0 && lba != 0)) {
1168 		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1169 		return -EINVAL;
1170 	}
1171 
1172 	put_unaligned_be64(curlun->num_sectors - 1, &buf[0]);
1173 							/* Max logical block */
1174 	put_unaligned_be32(curlun->blksize, &buf[8]);	/* Block length */
1175 
1176 	/* It is safe to keep other fields zeroed */
1177 	memset(&buf[12], 0, 32 - 12);
1178 	return 32;
1179 }
1180 
do_read_header(struct fsg_common * common,struct fsg_buffhd * bh)1181 static int do_read_header(struct fsg_common *common, struct fsg_buffhd *bh)
1182 {
1183 	struct fsg_lun	*curlun = common->curlun;
1184 	int		msf = common->cmnd[1] & 0x02;
1185 	u32		lba = get_unaligned_be32(&common->cmnd[2]);
1186 	u8		*buf = (u8 *)bh->buf;
1187 
1188 	if (common->cmnd[1] & ~0x02) {		/* Mask away MSF */
1189 		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1190 		return -EINVAL;
1191 	}
1192 	if (lba >= curlun->num_sectors) {
1193 		curlun->sense_data = SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
1194 		return -EINVAL;
1195 	}
1196 
1197 	memset(buf, 0, 8);
1198 	buf[0] = 0x01;		/* 2048 bytes of user data, rest is EC */
1199 	store_cdrom_address(&buf[4], msf, lba);
1200 	return 8;
1201 }
1202 
do_read_toc(struct fsg_common * common,struct fsg_buffhd * bh)1203 static int do_read_toc(struct fsg_common *common, struct fsg_buffhd *bh)
1204 {
1205 	struct fsg_lun	*curlun = common->curlun;
1206 	int		msf = common->cmnd[1] & 0x02;
1207 	int		start_track = common->cmnd[6];
1208 	u8		*buf = (u8 *)bh->buf;
1209 	u8		format;
1210 	int		i, len;
1211 
1212 	format = common->cmnd[2] & 0xf;
1213 
1214 	if ((common->cmnd[1] & ~0x02) != 0 ||	/* Mask away MSF */
1215 			(start_track > 1 && format != 0x1)) {
1216 		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1217 		return -EINVAL;
1218 	}
1219 
1220 	/*
1221 	 * Check if CDB is old style SFF-8020i
1222 	 * i.e. format is in 2 MSBs of byte 9
1223 	 * Mac OS-X host sends us this.
1224 	 */
1225 	if (format == 0)
1226 		format = (common->cmnd[9] >> 6) & 0x3;
1227 
1228 	switch (format) {
1229 	case 0:	/* Formatted TOC */
1230 	case 1:	/* Multi-session info */
1231 		len = 4 + 2*8;		/* 4 byte header + 2 descriptors */
1232 		memset(buf, 0, len);
1233 		buf[1] = len - 2;	/* TOC Length excludes length field */
1234 		buf[2] = 1;		/* First track number */
1235 		buf[3] = 1;		/* Last track number */
1236 		buf[5] = 0x16;		/* Data track, copying allowed */
1237 		buf[6] = 0x01;		/* Only track is number 1 */
1238 		store_cdrom_address(&buf[8], msf, 0);
1239 
1240 		buf[13] = 0x16;		/* Lead-out track is data */
1241 		buf[14] = 0xAA;		/* Lead-out track number */
1242 		store_cdrom_address(&buf[16], msf, curlun->num_sectors);
1243 		return len;
1244 
1245 	case 2:
1246 		/* Raw TOC */
1247 		len = 4 + 3*11;		/* 4 byte header + 3 descriptors */
1248 		memset(buf, 0, len);	/* Header + A0, A1 & A2 descriptors */
1249 		buf[1] = len - 2;	/* TOC Length excludes length field */
1250 		buf[2] = 1;		/* First complete session */
1251 		buf[3] = 1;		/* Last complete session */
1252 
1253 		buf += 4;
1254 		/* fill in A0, A1 and A2 points */
1255 		for (i = 0; i < 3; i++) {
1256 			buf[0] = 1;	/* Session number */
1257 			buf[1] = 0x16;	/* Data track, copying allowed */
1258 			/* 2 - Track number 0 ->  TOC */
1259 			buf[3] = 0xA0 + i; /* A0, A1, A2 point */
1260 			/* 4, 5, 6 - Min, sec, frame is zero */
1261 			buf[8] = 1;	/* Pmin: last track number */
1262 			buf += 11;	/* go to next track descriptor */
1263 		}
1264 		buf -= 11;		/* go back to A2 descriptor */
1265 
1266 		/* For A2, 7, 8, 9, 10 - zero, Pmin, Psec, Pframe of Lead out */
1267 		store_cdrom_address(&buf[7], msf, curlun->num_sectors);
1268 		return len;
1269 
1270 	default:
1271 		/* PMA, ATIP, CD-TEXT not supported/required */
1272 		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1273 		return -EINVAL;
1274 	}
1275 }
1276 
do_mode_sense(struct fsg_common * common,struct fsg_buffhd * bh)1277 static int do_mode_sense(struct fsg_common *common, struct fsg_buffhd *bh)
1278 {
1279 	struct fsg_lun	*curlun = common->curlun;
1280 	int		mscmnd = common->cmnd[0];
1281 	u8		*buf = (u8 *) bh->buf;
1282 	u8		*buf0 = buf;
1283 	int		pc, page_code;
1284 	int		changeable_values, all_pages;
1285 	int		valid_page = 0;
1286 	int		len, limit;
1287 
1288 	if ((common->cmnd[1] & ~0x08) != 0) {	/* Mask away DBD */
1289 		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1290 		return -EINVAL;
1291 	}
1292 	pc = common->cmnd[2] >> 6;
1293 	page_code = common->cmnd[2] & 0x3f;
1294 	if (pc == 3) {
1295 		curlun->sense_data = SS_SAVING_PARAMETERS_NOT_SUPPORTED;
1296 		return -EINVAL;
1297 	}
1298 	changeable_values = (pc == 1);
1299 	all_pages = (page_code == 0x3f);
1300 
1301 	/*
1302 	 * Write the mode parameter header.  Fixed values are: default
1303 	 * medium type, no cache control (DPOFUA), and no block descriptors.
1304 	 * The only variable value is the WriteProtect bit.  We will fill in
1305 	 * the mode data length later.
1306 	 */
1307 	memset(buf, 0, 8);
1308 	if (mscmnd == MODE_SENSE) {
1309 		buf[2] = (curlun->ro ? 0x80 : 0x00);		/* WP, DPOFUA */
1310 		buf += 4;
1311 		limit = 255;
1312 	} else {			/* MODE_SENSE_10 */
1313 		buf[3] = (curlun->ro ? 0x80 : 0x00);		/* WP, DPOFUA */
1314 		buf += 8;
1315 		limit = 65535;		/* Should really be FSG_BUFLEN */
1316 	}
1317 
1318 	/* No block descriptors */
1319 
1320 	/*
1321 	 * The mode pages, in numerical order.  The only page we support
1322 	 * is the Caching page.
1323 	 */
1324 	if (page_code == 0x08 || all_pages) {
1325 		valid_page = 1;
1326 		buf[0] = 0x08;		/* Page code */
1327 		buf[1] = 10;		/* Page length */
1328 		memset(buf+2, 0, 10);	/* None of the fields are changeable */
1329 
1330 		if (!changeable_values) {
1331 			buf[2] = 0x04;	/* Write cache enable, */
1332 					/* Read cache not disabled */
1333 					/* No cache retention priorities */
1334 			put_unaligned_be16(0xffff, &buf[4]);
1335 					/* Don't disable prefetch */
1336 					/* Minimum prefetch = 0 */
1337 			put_unaligned_be16(0xffff, &buf[8]);
1338 					/* Maximum prefetch */
1339 			put_unaligned_be16(0xffff, &buf[10]);
1340 					/* Maximum prefetch ceiling */
1341 		}
1342 		buf += 12;
1343 	}
1344 
1345 	/*
1346 	 * Check that a valid page was requested and the mode data length
1347 	 * isn't too long.
1348 	 */
1349 	len = buf - buf0;
1350 	if (!valid_page || len > limit) {
1351 		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1352 		return -EINVAL;
1353 	}
1354 
1355 	/*  Store the mode data length */
1356 	if (mscmnd == MODE_SENSE)
1357 		buf0[0] = len - 1;
1358 	else
1359 		put_unaligned_be16(len - 2, buf0);
1360 	return len;
1361 }
1362 
do_start_stop(struct fsg_common * common)1363 static int do_start_stop(struct fsg_common *common)
1364 {
1365 	struct fsg_lun	*curlun = common->curlun;
1366 	int		loej, start;
1367 
1368 	if (!curlun) {
1369 		return -EINVAL;
1370 	} else if (!curlun->removable) {
1371 		curlun->sense_data = SS_INVALID_COMMAND;
1372 		return -EINVAL;
1373 	} else if ((common->cmnd[1] & ~0x01) != 0 || /* Mask away Immed */
1374 		   (common->cmnd[4] & ~0x03) != 0) { /* Mask LoEj, Start */
1375 		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1376 		return -EINVAL;
1377 	}
1378 
1379 	loej  = common->cmnd[4] & 0x02;
1380 	start = common->cmnd[4] & 0x01;
1381 
1382 	/*
1383 	 * Our emulation doesn't support mounting; the medium is
1384 	 * available for use as soon as it is loaded.
1385 	 */
1386 	if (start) {
1387 		if (!fsg_lun_is_open(curlun)) {
1388 			curlun->sense_data = SS_MEDIUM_NOT_PRESENT;
1389 			return -EINVAL;
1390 		}
1391 		return 0;
1392 	}
1393 
1394 	/* Are we allowed to unload the media? */
1395 	if (curlun->prevent_medium_removal) {
1396 		LDBG(curlun, "unload attempt prevented\n");
1397 		curlun->sense_data = SS_MEDIUM_REMOVAL_PREVENTED;
1398 		return -EINVAL;
1399 	}
1400 
1401 	if (!loej)
1402 		return 0;
1403 
1404 	up_read(&common->filesem);
1405 	down_write(&common->filesem);
1406 	fsg_lun_close(curlun);
1407 	up_write(&common->filesem);
1408 	down_read(&common->filesem);
1409 
1410 	return 0;
1411 }
1412 
do_prevent_allow(struct fsg_common * common)1413 static int do_prevent_allow(struct fsg_common *common)
1414 {
1415 	struct fsg_lun	*curlun = common->curlun;
1416 	int		prevent;
1417 
1418 	if (!common->curlun) {
1419 		return -EINVAL;
1420 	} else if (!common->curlun->removable) {
1421 		common->curlun->sense_data = SS_INVALID_COMMAND;
1422 		return -EINVAL;
1423 	}
1424 
1425 	prevent = common->cmnd[4] & 0x01;
1426 	if ((common->cmnd[4] & ~0x01) != 0) {	/* Mask away Prevent */
1427 		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1428 		return -EINVAL;
1429 	}
1430 
1431 	if (curlun->prevent_medium_removal && !prevent)
1432 		fsg_lun_fsync_sub(curlun);
1433 	curlun->prevent_medium_removal = prevent;
1434 	return 0;
1435 }
1436 
do_read_format_capacities(struct fsg_common * common,struct fsg_buffhd * bh)1437 static int do_read_format_capacities(struct fsg_common *common,
1438 			struct fsg_buffhd *bh)
1439 {
1440 	struct fsg_lun	*curlun = common->curlun;
1441 	u8		*buf = (u8 *) bh->buf;
1442 
1443 	buf[0] = buf[1] = buf[2] = 0;
1444 	buf[3] = 8;	/* Only the Current/Maximum Capacity Descriptor */
1445 	buf += 4;
1446 
1447 	put_unaligned_be32(curlun->num_sectors, &buf[0]);
1448 						/* Number of blocks */
1449 	put_unaligned_be32(curlun->blksize, &buf[4]);/* Block length */
1450 	buf[4] = 0x02;				/* Current capacity */
1451 	return 12;
1452 }
1453 
do_mode_select(struct fsg_common * common,struct fsg_buffhd * bh)1454 static int do_mode_select(struct fsg_common *common, struct fsg_buffhd *bh)
1455 {
1456 	struct fsg_lun	*curlun = common->curlun;
1457 
1458 	/* We don't support MODE SELECT */
1459 	if (curlun)
1460 		curlun->sense_data = SS_INVALID_COMMAND;
1461 	return -EINVAL;
1462 }
1463 
1464 
1465 /*-------------------------------------------------------------------------*/
1466 
halt_bulk_in_endpoint(struct fsg_dev * fsg)1467 static int halt_bulk_in_endpoint(struct fsg_dev *fsg)
1468 {
1469 	int	rc;
1470 
1471 	rc = fsg_set_halt(fsg, fsg->bulk_in);
1472 	if (rc == -EAGAIN)
1473 		VDBG(fsg, "delayed bulk-in endpoint halt\n");
1474 	while (rc != 0) {
1475 		if (rc != -EAGAIN) {
1476 			WARNING(fsg, "usb_ep_set_halt -> %d\n", rc);
1477 			rc = 0;
1478 			break;
1479 		}
1480 
1481 		/* Wait for a short time and then try again */
1482 		if (msleep_interruptible(100) != 0)
1483 			return -EINTR;
1484 		rc = usb_ep_set_halt(fsg->bulk_in);
1485 	}
1486 	return rc;
1487 }
1488 
wedge_bulk_in_endpoint(struct fsg_dev * fsg)1489 static int wedge_bulk_in_endpoint(struct fsg_dev *fsg)
1490 {
1491 	int	rc;
1492 
1493 	DBG(fsg, "bulk-in set wedge\n");
1494 	rc = usb_ep_set_wedge(fsg->bulk_in);
1495 	if (rc == -EAGAIN)
1496 		VDBG(fsg, "delayed bulk-in endpoint wedge\n");
1497 	while (rc != 0) {
1498 		if (rc != -EAGAIN) {
1499 			WARNING(fsg, "usb_ep_set_wedge -> %d\n", rc);
1500 			rc = 0;
1501 			break;
1502 		}
1503 
1504 		/* Wait for a short time and then try again */
1505 		if (msleep_interruptible(100) != 0)
1506 			return -EINTR;
1507 		rc = usb_ep_set_wedge(fsg->bulk_in);
1508 	}
1509 	return rc;
1510 }
1511 
throw_away_data(struct fsg_common * common)1512 static int throw_away_data(struct fsg_common *common)
1513 {
1514 	struct fsg_buffhd	*bh, *bh2;
1515 	u32			amount;
1516 	int			rc;
1517 
1518 	for (bh = common->next_buffhd_to_drain;
1519 	     bh->state != BUF_STATE_EMPTY || common->usb_amount_left > 0;
1520 	     bh = common->next_buffhd_to_drain) {
1521 
1522 		/* Try to submit another request if we need one */
1523 		bh2 = common->next_buffhd_to_fill;
1524 		if (bh2->state == BUF_STATE_EMPTY &&
1525 				common->usb_amount_left > 0) {
1526 			amount = min(common->usb_amount_left, FSG_BUFLEN);
1527 
1528 			/*
1529 			 * Except at the end of the transfer, amount will be
1530 			 * equal to the buffer size, which is divisible by
1531 			 * the bulk-out maxpacket size.
1532 			 */
1533 			set_bulk_out_req_length(common, bh2, amount);
1534 			if (!start_out_transfer(common, bh2))
1535 				/* Dunno what to do if common->fsg is NULL */
1536 				return -EIO;
1537 			common->next_buffhd_to_fill = bh2->next;
1538 			common->usb_amount_left -= amount;
1539 			continue;
1540 		}
1541 
1542 		/* Wait for the data to be received */
1543 		rc = sleep_thread(common, false, bh);
1544 		if (rc)
1545 			return rc;
1546 
1547 		/* Throw away the data in a filled buffer */
1548 		bh->state = BUF_STATE_EMPTY;
1549 		common->next_buffhd_to_drain = bh->next;
1550 
1551 		/* A short packet or an error ends everything */
1552 		if (bh->outreq->actual < bh->bulk_out_intended_length ||
1553 				bh->outreq->status != 0) {
1554 			raise_exception(common, FSG_STATE_ABORT_BULK_OUT);
1555 			return -EINTR;
1556 		}
1557 	}
1558 	return 0;
1559 }
1560 
finish_reply(struct fsg_common * common)1561 static int finish_reply(struct fsg_common *common)
1562 {
1563 	struct fsg_buffhd	*bh = common->next_buffhd_to_fill;
1564 	int			rc = 0;
1565 
1566 	switch (common->data_dir) {
1567 	case DATA_DIR_NONE:
1568 		break;			/* Nothing to send */
1569 
1570 	/*
1571 	 * If we don't know whether the host wants to read or write,
1572 	 * this must be CB or CBI with an unknown command.  We mustn't
1573 	 * try to send or receive any data.  So stall both bulk pipes
1574 	 * if we can and wait for a reset.
1575 	 */
1576 	case DATA_DIR_UNKNOWN:
1577 		if (!common->can_stall) {
1578 			/* Nothing */
1579 		} else if (fsg_is_set(common)) {
1580 			fsg_set_halt(common->fsg, common->fsg->bulk_out);
1581 			rc = halt_bulk_in_endpoint(common->fsg);
1582 		} else {
1583 			/* Don't know what to do if common->fsg is NULL */
1584 			rc = -EIO;
1585 		}
1586 		break;
1587 
1588 	/* All but the last buffer of data must have already been sent */
1589 	case DATA_DIR_TO_HOST:
1590 		if (common->data_size == 0) {
1591 			/* Nothing to send */
1592 
1593 		/* Don't know what to do if common->fsg is NULL */
1594 		} else if (!fsg_is_set(common)) {
1595 			rc = -EIO;
1596 
1597 		/* If there's no residue, simply send the last buffer */
1598 		} else if (common->residue == 0) {
1599 			bh->inreq->zero = 0;
1600 			if (!start_in_transfer(common, bh))
1601 				return -EIO;
1602 			common->next_buffhd_to_fill = bh->next;
1603 
1604 		/*
1605 		 * For Bulk-only, mark the end of the data with a short
1606 		 * packet.  If we are allowed to stall, halt the bulk-in
1607 		 * endpoint.  (Note: This violates the Bulk-Only Transport
1608 		 * specification, which requires us to pad the data if we
1609 		 * don't halt the endpoint.  Presumably nobody will mind.)
1610 		 */
1611 		} else {
1612 			bh->inreq->zero = 1;
1613 			if (!start_in_transfer(common, bh))
1614 				rc = -EIO;
1615 			common->next_buffhd_to_fill = bh->next;
1616 			if (common->can_stall)
1617 				rc = halt_bulk_in_endpoint(common->fsg);
1618 		}
1619 		break;
1620 
1621 	/*
1622 	 * We have processed all we want from the data the host has sent.
1623 	 * There may still be outstanding bulk-out requests.
1624 	 */
1625 	case DATA_DIR_FROM_HOST:
1626 		if (common->residue == 0) {
1627 			/* Nothing to receive */
1628 
1629 		/* Did the host stop sending unexpectedly early? */
1630 		} else if (common->short_packet_received) {
1631 			raise_exception(common, FSG_STATE_ABORT_BULK_OUT);
1632 			rc = -EINTR;
1633 
1634 		/*
1635 		 * We haven't processed all the incoming data.  Even though
1636 		 * we may be allowed to stall, doing so would cause a race.
1637 		 * The controller may already have ACK'ed all the remaining
1638 		 * bulk-out packets, in which case the host wouldn't see a
1639 		 * STALL.  Not realizing the endpoint was halted, it wouldn't
1640 		 * clear the halt -- leading to problems later on.
1641 		 */
1642 #if 0
1643 		} else if (common->can_stall) {
1644 			if (fsg_is_set(common))
1645 				fsg_set_halt(common->fsg,
1646 					     common->fsg->bulk_out);
1647 			raise_exception(common, FSG_STATE_ABORT_BULK_OUT);
1648 			rc = -EINTR;
1649 #endif
1650 
1651 		/*
1652 		 * We can't stall.  Read in the excess data and throw it
1653 		 * all away.
1654 		 */
1655 		} else {
1656 			rc = throw_away_data(common);
1657 		}
1658 		break;
1659 	}
1660 	return rc;
1661 }
1662 
send_status(struct fsg_common * common)1663 static void send_status(struct fsg_common *common)
1664 {
1665 	struct fsg_lun		*curlun = common->curlun;
1666 	struct fsg_buffhd	*bh;
1667 	struct bulk_cs_wrap	*csw;
1668 	int			rc;
1669 	u8			status = US_BULK_STAT_OK;
1670 	u32			sd, sdinfo = 0;
1671 
1672 	/* Wait for the next buffer to become available */
1673 	bh = common->next_buffhd_to_fill;
1674 	rc = sleep_thread(common, false, bh);
1675 	if (rc)
1676 		return;
1677 
1678 	if (curlun) {
1679 		sd = curlun->sense_data;
1680 		sdinfo = curlun->sense_data_info;
1681 	} else if (common->bad_lun_okay)
1682 		sd = SS_NO_SENSE;
1683 	else
1684 		sd = SS_LOGICAL_UNIT_NOT_SUPPORTED;
1685 
1686 	if (common->phase_error) {
1687 		DBG(common, "sending phase-error status\n");
1688 		status = US_BULK_STAT_PHASE;
1689 		sd = SS_INVALID_COMMAND;
1690 	} else if (sd != SS_NO_SENSE) {
1691 		DBG(common, "sending command-failure status\n");
1692 		status = US_BULK_STAT_FAIL;
1693 		VDBG(common, "  sense data: SK x%02x, ASC x%02x, ASCQ x%02x;"
1694 				"  info x%x\n",
1695 				SK(sd), ASC(sd), ASCQ(sd), sdinfo);
1696 	}
1697 
1698 	/* Store and send the Bulk-only CSW */
1699 	csw = (void *)bh->buf;
1700 
1701 	csw->Signature = cpu_to_le32(US_BULK_CS_SIGN);
1702 	csw->Tag = common->tag;
1703 	csw->Residue = cpu_to_le32(common->residue);
1704 	csw->Status = status;
1705 
1706 	bh->inreq->length = US_BULK_CS_WRAP_LEN;
1707 	bh->inreq->zero = 0;
1708 	if (!start_in_transfer(common, bh))
1709 		/* Don't know what to do if common->fsg is NULL */
1710 		return;
1711 
1712 	common->next_buffhd_to_fill = bh->next;
1713 	return;
1714 }
1715 
1716 
1717 /*-------------------------------------------------------------------------*/
1718 
1719 /*
1720  * Check whether the command is properly formed and whether its data size
1721  * and direction agree with the values we already have.
1722  */
check_command(struct fsg_common * common,int cmnd_size,enum data_direction data_dir,unsigned int mask,int needs_medium,const char * name)1723 static int check_command(struct fsg_common *common, int cmnd_size,
1724 			 enum data_direction data_dir, unsigned int mask,
1725 			 int needs_medium, const char *name)
1726 {
1727 	int			i;
1728 	unsigned int		lun = common->cmnd[1] >> 5;
1729 	static const char	dirletter[4] = {'u', 'o', 'i', 'n'};
1730 	char			hdlen[20];
1731 	struct fsg_lun		*curlun;
1732 
1733 	hdlen[0] = 0;
1734 	if (common->data_dir != DATA_DIR_UNKNOWN)
1735 		sprintf(hdlen, ", H%c=%u", dirletter[(int) common->data_dir],
1736 			common->data_size);
1737 	VDBG(common, "SCSI command: %s;  Dc=%d, D%c=%u;  Hc=%d%s\n",
1738 	     name, cmnd_size, dirletter[(int) data_dir],
1739 	     common->data_size_from_cmnd, common->cmnd_size, hdlen);
1740 
1741 	/*
1742 	 * We can't reply at all until we know the correct data direction
1743 	 * and size.
1744 	 */
1745 	if (common->data_size_from_cmnd == 0)
1746 		data_dir = DATA_DIR_NONE;
1747 	if (common->data_size < common->data_size_from_cmnd) {
1748 		/*
1749 		 * Host data size < Device data size is a phase error.
1750 		 * Carry out the command, but only transfer as much as
1751 		 * we are allowed.
1752 		 */
1753 		common->data_size_from_cmnd = common->data_size;
1754 		common->phase_error = 1;
1755 	}
1756 	common->residue = common->data_size;
1757 	common->usb_amount_left = common->data_size;
1758 
1759 	/* Conflicting data directions is a phase error */
1760 	if (common->data_dir != data_dir && common->data_size_from_cmnd > 0) {
1761 		common->phase_error = 1;
1762 		return -EINVAL;
1763 	}
1764 
1765 	/* Verify the length of the command itself */
1766 	if (cmnd_size != common->cmnd_size) {
1767 
1768 		/*
1769 		 * Special case workaround: There are plenty of buggy SCSI
1770 		 * implementations. Many have issues with cbw->Length
1771 		 * field passing a wrong command size. For those cases we
1772 		 * always try to work around the problem by using the length
1773 		 * sent by the host side provided it is at least as large
1774 		 * as the correct command length.
1775 		 * Examples of such cases would be MS-Windows, which issues
1776 		 * REQUEST SENSE with cbw->Length == 12 where it should
1777 		 * be 6, and xbox360 issuing INQUIRY, TEST UNIT READY and
1778 		 * REQUEST SENSE with cbw->Length == 10 where it should
1779 		 * be 6 as well.
1780 		 */
1781 		if (cmnd_size <= common->cmnd_size) {
1782 			DBG(common, "%s is buggy! Expected length %d "
1783 			    "but we got %d\n", name,
1784 			    cmnd_size, common->cmnd_size);
1785 			cmnd_size = common->cmnd_size;
1786 		} else {
1787 			common->phase_error = 1;
1788 			return -EINVAL;
1789 		}
1790 	}
1791 
1792 	/* Check that the LUN values are consistent */
1793 	if (common->lun != lun)
1794 		DBG(common, "using LUN %u from CBW, not LUN %u from CDB\n",
1795 		    common->lun, lun);
1796 
1797 	/* Check the LUN */
1798 	curlun = common->curlun;
1799 	if (curlun) {
1800 		if (common->cmnd[0] != REQUEST_SENSE) {
1801 			curlun->sense_data = SS_NO_SENSE;
1802 			curlun->sense_data_info = 0;
1803 			curlun->info_valid = 0;
1804 		}
1805 	} else {
1806 		common->bad_lun_okay = 0;
1807 
1808 		/*
1809 		 * INQUIRY and REQUEST SENSE commands are explicitly allowed
1810 		 * to use unsupported LUNs; all others may not.
1811 		 */
1812 		if (common->cmnd[0] != INQUIRY &&
1813 		    common->cmnd[0] != REQUEST_SENSE) {
1814 			DBG(common, "unsupported LUN %u\n", common->lun);
1815 			return -EINVAL;
1816 		}
1817 	}
1818 
1819 	/*
1820 	 * If a unit attention condition exists, only INQUIRY and
1821 	 * REQUEST SENSE commands are allowed; anything else must fail.
1822 	 */
1823 	if (curlun && curlun->unit_attention_data != SS_NO_SENSE &&
1824 	    common->cmnd[0] != INQUIRY &&
1825 	    common->cmnd[0] != REQUEST_SENSE) {
1826 		curlun->sense_data = curlun->unit_attention_data;
1827 		curlun->unit_attention_data = SS_NO_SENSE;
1828 		return -EINVAL;
1829 	}
1830 
1831 	/* Check that only command bytes listed in the mask are non-zero */
1832 	common->cmnd[1] &= 0x1f;			/* Mask away the LUN */
1833 	for (i = 1; i < cmnd_size; ++i) {
1834 		if (common->cmnd[i] && !(mask & (1 << i))) {
1835 			if (curlun)
1836 				curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
1837 			return -EINVAL;
1838 		}
1839 	}
1840 
1841 	/* If the medium isn't mounted and the command needs to access
1842 	 * it, return an error. */
1843 	if (curlun && !fsg_lun_is_open(curlun) && needs_medium) {
1844 		curlun->sense_data = SS_MEDIUM_NOT_PRESENT;
1845 		return -EINVAL;
1846 	}
1847 
1848 	return 0;
1849 }
1850 
1851 /* wrapper of check_command for data size in blocks handling */
check_command_size_in_blocks(struct fsg_common * common,int cmnd_size,enum data_direction data_dir,unsigned int mask,int needs_medium,const char * name)1852 static int check_command_size_in_blocks(struct fsg_common *common,
1853 		int cmnd_size, enum data_direction data_dir,
1854 		unsigned int mask, int needs_medium, const char *name)
1855 {
1856 	if (common->curlun) {
1857 		if (check_shl_overflow(common->data_size_from_cmnd,
1858 				       common->curlun->blkbits,
1859 				       &common->data_size_from_cmnd)) {
1860 			common->phase_error = 1;
1861 			return -EINVAL;
1862 		}
1863 	}
1864 
1865 	return check_command(common, cmnd_size, data_dir,
1866 			mask, needs_medium, name);
1867 }
1868 
do_scsi_command(struct fsg_common * common)1869 static int do_scsi_command(struct fsg_common *common)
1870 {
1871 	struct fsg_buffhd	*bh;
1872 	int			rc;
1873 	int			reply = -EINVAL;
1874 	int			i;
1875 	static char		unknown[16];
1876 
1877 	dump_cdb(common);
1878 
1879 	/* Wait for the next buffer to become available for data or status */
1880 	bh = common->next_buffhd_to_fill;
1881 	common->next_buffhd_to_drain = bh;
1882 	rc = sleep_thread(common, false, bh);
1883 	if (rc)
1884 		return rc;
1885 
1886 	common->phase_error = 0;
1887 	common->short_packet_received = 0;
1888 
1889 	down_read(&common->filesem);	/* We're using the backing file */
1890 	switch (common->cmnd[0]) {
1891 
1892 	case INQUIRY:
1893 		common->data_size_from_cmnd = common->cmnd[4];
1894 		reply = check_command(common, 6, DATA_DIR_TO_HOST,
1895 				      (1<<4), 0,
1896 				      "INQUIRY");
1897 		if (reply == 0)
1898 			reply = do_inquiry(common, bh);
1899 		break;
1900 
1901 	case MODE_SELECT:
1902 		common->data_size_from_cmnd = common->cmnd[4];
1903 		reply = check_command(common, 6, DATA_DIR_FROM_HOST,
1904 				      (1<<1) | (1<<4), 0,
1905 				      "MODE SELECT(6)");
1906 		if (reply == 0)
1907 			reply = do_mode_select(common, bh);
1908 		break;
1909 
1910 	case MODE_SELECT_10:
1911 		common->data_size_from_cmnd =
1912 			get_unaligned_be16(&common->cmnd[7]);
1913 		reply = check_command(common, 10, DATA_DIR_FROM_HOST,
1914 				      (1<<1) | (3<<7), 0,
1915 				      "MODE SELECT(10)");
1916 		if (reply == 0)
1917 			reply = do_mode_select(common, bh);
1918 		break;
1919 
1920 	case MODE_SENSE:
1921 		common->data_size_from_cmnd = common->cmnd[4];
1922 		reply = check_command(common, 6, DATA_DIR_TO_HOST,
1923 				      (1<<1) | (1<<2) | (1<<4), 0,
1924 				      "MODE SENSE(6)");
1925 		if (reply == 0)
1926 			reply = do_mode_sense(common, bh);
1927 		break;
1928 
1929 	case MODE_SENSE_10:
1930 		common->data_size_from_cmnd =
1931 			get_unaligned_be16(&common->cmnd[7]);
1932 		reply = check_command(common, 10, DATA_DIR_TO_HOST,
1933 				      (1<<1) | (1<<2) | (3<<7), 0,
1934 				      "MODE SENSE(10)");
1935 		if (reply == 0)
1936 			reply = do_mode_sense(common, bh);
1937 		break;
1938 
1939 	case ALLOW_MEDIUM_REMOVAL:
1940 		common->data_size_from_cmnd = 0;
1941 		reply = check_command(common, 6, DATA_DIR_NONE,
1942 				      (1<<4), 0,
1943 				      "PREVENT-ALLOW MEDIUM REMOVAL");
1944 		if (reply == 0)
1945 			reply = do_prevent_allow(common);
1946 		break;
1947 
1948 	case READ_6:
1949 		i = common->cmnd[4];
1950 		common->data_size_from_cmnd = (i == 0) ? 256 : i;
1951 		reply = check_command_size_in_blocks(common, 6,
1952 				      DATA_DIR_TO_HOST,
1953 				      (7<<1) | (1<<4), 1,
1954 				      "READ(6)");
1955 		if (reply == 0)
1956 			reply = do_read(common);
1957 		break;
1958 
1959 	case READ_10:
1960 		common->data_size_from_cmnd =
1961 				get_unaligned_be16(&common->cmnd[7]);
1962 		reply = check_command_size_in_blocks(common, 10,
1963 				      DATA_DIR_TO_HOST,
1964 				      (1<<1) | (0xf<<2) | (3<<7), 1,
1965 				      "READ(10)");
1966 		if (reply == 0)
1967 			reply = do_read(common);
1968 		break;
1969 
1970 	case READ_12:
1971 		common->data_size_from_cmnd =
1972 				get_unaligned_be32(&common->cmnd[6]);
1973 		reply = check_command_size_in_blocks(common, 12,
1974 				      DATA_DIR_TO_HOST,
1975 				      (1<<1) | (0xf<<2) | (0xf<<6), 1,
1976 				      "READ(12)");
1977 		if (reply == 0)
1978 			reply = do_read(common);
1979 		break;
1980 
1981 	case READ_16:
1982 		common->data_size_from_cmnd =
1983 				get_unaligned_be32(&common->cmnd[10]);
1984 		reply = check_command_size_in_blocks(common, 16,
1985 				      DATA_DIR_TO_HOST,
1986 				      (1<<1) | (0xff<<2) | (0xf<<10), 1,
1987 				      "READ(16)");
1988 		if (reply == 0)
1989 			reply = do_read(common);
1990 		break;
1991 
1992 	case READ_CAPACITY:
1993 		common->data_size_from_cmnd = 8;
1994 		reply = check_command(common, 10, DATA_DIR_TO_HOST,
1995 				      (0xf<<2) | (1<<8), 1,
1996 				      "READ CAPACITY");
1997 		if (reply == 0)
1998 			reply = do_read_capacity(common, bh);
1999 		break;
2000 
2001 	case READ_HEADER:
2002 		if (!common->curlun || !common->curlun->cdrom)
2003 			goto unknown_cmnd;
2004 		common->data_size_from_cmnd =
2005 			get_unaligned_be16(&common->cmnd[7]);
2006 		reply = check_command(common, 10, DATA_DIR_TO_HOST,
2007 				      (3<<7) | (0x1f<<1), 1,
2008 				      "READ HEADER");
2009 		if (reply == 0)
2010 			reply = do_read_header(common, bh);
2011 		break;
2012 
2013 	case READ_TOC:
2014 		if (!common->curlun || !common->curlun->cdrom)
2015 			goto unknown_cmnd;
2016 		common->data_size_from_cmnd =
2017 			get_unaligned_be16(&common->cmnd[7]);
2018 		reply = check_command(common, 10, DATA_DIR_TO_HOST,
2019 				      (0xf<<6) | (3<<1), 1,
2020 				      "READ TOC");
2021 		if (reply == 0)
2022 			reply = do_read_toc(common, bh);
2023 		break;
2024 
2025 	case READ_FORMAT_CAPACITIES:
2026 		common->data_size_from_cmnd =
2027 			get_unaligned_be16(&common->cmnd[7]);
2028 		reply = check_command(common, 10, DATA_DIR_TO_HOST,
2029 				      (3<<7), 1,
2030 				      "READ FORMAT CAPACITIES");
2031 		if (reply == 0)
2032 			reply = do_read_format_capacities(common, bh);
2033 		break;
2034 
2035 	case REQUEST_SENSE:
2036 		common->data_size_from_cmnd = common->cmnd[4];
2037 		reply = check_command(common, 6, DATA_DIR_TO_HOST,
2038 				      (1<<4), 0,
2039 				      "REQUEST SENSE");
2040 		if (reply == 0)
2041 			reply = do_request_sense(common, bh);
2042 		break;
2043 
2044 	case SERVICE_ACTION_IN_16:
2045 		switch (common->cmnd[1] & 0x1f) {
2046 
2047 		case SAI_READ_CAPACITY_16:
2048 			common->data_size_from_cmnd =
2049 				get_unaligned_be32(&common->cmnd[10]);
2050 			reply = check_command(common, 16, DATA_DIR_TO_HOST,
2051 					      (1<<1) | (0xff<<2) | (0xf<<10) |
2052 					      (1<<14), 1,
2053 					      "READ CAPACITY(16)");
2054 			if (reply == 0)
2055 				reply = do_read_capacity_16(common, bh);
2056 			break;
2057 
2058 		default:
2059 			goto unknown_cmnd;
2060 		}
2061 		break;
2062 
2063 	case START_STOP:
2064 		common->data_size_from_cmnd = 0;
2065 		reply = check_command(common, 6, DATA_DIR_NONE,
2066 				      (1<<1) | (1<<4), 0,
2067 				      "START-STOP UNIT");
2068 		if (reply == 0)
2069 			reply = do_start_stop(common);
2070 		break;
2071 
2072 	case SYNCHRONIZE_CACHE:
2073 		common->data_size_from_cmnd = 0;
2074 		reply = check_command(common, 10, DATA_DIR_NONE,
2075 				      (0xf<<2) | (3<<7), 1,
2076 				      "SYNCHRONIZE CACHE");
2077 		if (reply == 0)
2078 			reply = do_synchronize_cache(common);
2079 		break;
2080 
2081 	case TEST_UNIT_READY:
2082 		common->data_size_from_cmnd = 0;
2083 		reply = check_command(common, 6, DATA_DIR_NONE,
2084 				0, 1,
2085 				"TEST UNIT READY");
2086 		break;
2087 
2088 	/*
2089 	 * Although optional, this command is used by MS-Windows.  We
2090 	 * support a minimal version: BytChk must be 0.
2091 	 */
2092 	case VERIFY:
2093 		common->data_size_from_cmnd = 0;
2094 		reply = check_command(common, 10, DATA_DIR_NONE,
2095 				      (1<<1) | (0xf<<2) | (3<<7), 1,
2096 				      "VERIFY");
2097 		if (reply == 0)
2098 			reply = do_verify(common);
2099 		break;
2100 
2101 	case WRITE_6:
2102 		i = common->cmnd[4];
2103 		common->data_size_from_cmnd = (i == 0) ? 256 : i;
2104 		reply = check_command_size_in_blocks(common, 6,
2105 				      DATA_DIR_FROM_HOST,
2106 				      (7<<1) | (1<<4), 1,
2107 				      "WRITE(6)");
2108 		if (reply == 0)
2109 			reply = do_write(common);
2110 		break;
2111 
2112 	case WRITE_10:
2113 		common->data_size_from_cmnd =
2114 				get_unaligned_be16(&common->cmnd[7]);
2115 		reply = check_command_size_in_blocks(common, 10,
2116 				      DATA_DIR_FROM_HOST,
2117 				      (1<<1) | (0xf<<2) | (3<<7), 1,
2118 				      "WRITE(10)");
2119 		if (reply == 0)
2120 			reply = do_write(common);
2121 		break;
2122 
2123 	case WRITE_12:
2124 		common->data_size_from_cmnd =
2125 				get_unaligned_be32(&common->cmnd[6]);
2126 		reply = check_command_size_in_blocks(common, 12,
2127 				      DATA_DIR_FROM_HOST,
2128 				      (1<<1) | (0xf<<2) | (0xf<<6), 1,
2129 				      "WRITE(12)");
2130 		if (reply == 0)
2131 			reply = do_write(common);
2132 		break;
2133 
2134 	case WRITE_16:
2135 		common->data_size_from_cmnd =
2136 				get_unaligned_be32(&common->cmnd[10]);
2137 		reply = check_command_size_in_blocks(common, 16,
2138 				      DATA_DIR_FROM_HOST,
2139 				      (1<<1) | (0xff<<2) | (0xf<<10), 1,
2140 				      "WRITE(16)");
2141 		if (reply == 0)
2142 			reply = do_write(common);
2143 		break;
2144 
2145 	/*
2146 	 * Some mandatory commands that we recognize but don't implement.
2147 	 * They don't mean much in this setting.  It's left as an exercise
2148 	 * for anyone interested to implement RESERVE and RELEASE in terms
2149 	 * of Posix locks.
2150 	 */
2151 	case FORMAT_UNIT:
2152 	case RELEASE_6:
2153 	case RESERVE_6:
2154 	case SEND_DIAGNOSTIC:
2155 
2156 	default:
2157 unknown_cmnd:
2158 		common->data_size_from_cmnd = 0;
2159 		sprintf(unknown, "Unknown x%02x", common->cmnd[0]);
2160 		reply = check_command(common, common->cmnd_size,
2161 				      DATA_DIR_UNKNOWN, ~0, 0, unknown);
2162 		if (reply == 0) {
2163 			common->curlun->sense_data = SS_INVALID_COMMAND;
2164 			reply = -EINVAL;
2165 		}
2166 		break;
2167 	}
2168 	up_read(&common->filesem);
2169 
2170 	if (reply == -EINTR || signal_pending(current))
2171 		return -EINTR;
2172 
2173 	/* Set up the single reply buffer for finish_reply() */
2174 	if (reply == -EINVAL)
2175 		reply = 0;		/* Error reply length */
2176 	if (reply >= 0 && common->data_dir == DATA_DIR_TO_HOST) {
2177 		reply = min_t(u32, reply, common->data_size_from_cmnd);
2178 		bh->inreq->length = reply;
2179 		bh->state = BUF_STATE_FULL;
2180 		common->residue -= reply;
2181 	}				/* Otherwise it's already set */
2182 
2183 	return 0;
2184 }
2185 
2186 
2187 /*-------------------------------------------------------------------------*/
2188 
received_cbw(struct fsg_dev * fsg,struct fsg_buffhd * bh)2189 static int received_cbw(struct fsg_dev *fsg, struct fsg_buffhd *bh)
2190 {
2191 	struct usb_request	*req = bh->outreq;
2192 	struct bulk_cb_wrap	*cbw = req->buf;
2193 	struct fsg_common	*common = fsg->common;
2194 
2195 	/* Was this a real packet?  Should it be ignored? */
2196 	if (req->status || test_bit(IGNORE_BULK_OUT, &fsg->atomic_bitflags))
2197 		return -EINVAL;
2198 
2199 	/* Is the CBW valid? */
2200 	if (req->actual != US_BULK_CB_WRAP_LEN ||
2201 			cbw->Signature != cpu_to_le32(
2202 				US_BULK_CB_SIGN)) {
2203 		DBG(fsg, "invalid CBW: len %u sig 0x%x\n",
2204 				req->actual,
2205 				le32_to_cpu(cbw->Signature));
2206 
2207 		/*
2208 		 * The Bulk-only spec says we MUST stall the IN endpoint
2209 		 * (6.6.1), so it's unavoidable.  It also says we must
2210 		 * retain this state until the next reset, but there's
2211 		 * no way to tell the controller driver it should ignore
2212 		 * Clear-Feature(HALT) requests.
2213 		 *
2214 		 * We aren't required to halt the OUT endpoint; instead
2215 		 * we can simply accept and discard any data received
2216 		 * until the next reset.
2217 		 */
2218 		wedge_bulk_in_endpoint(fsg);
2219 		set_bit(IGNORE_BULK_OUT, &fsg->atomic_bitflags);
2220 		return -EINVAL;
2221 	}
2222 
2223 	/* Is the CBW meaningful? */
2224 	if (cbw->Lun >= ARRAY_SIZE(common->luns) ||
2225 	    cbw->Flags & ~US_BULK_FLAG_IN || cbw->Length <= 0 ||
2226 	    cbw->Length > MAX_COMMAND_SIZE) {
2227 		DBG(fsg, "non-meaningful CBW: lun = %u, flags = 0x%x, "
2228 				"cmdlen %u\n",
2229 				cbw->Lun, cbw->Flags, cbw->Length);
2230 
2231 		/*
2232 		 * We can do anything we want here, so let's stall the
2233 		 * bulk pipes if we are allowed to.
2234 		 */
2235 		if (common->can_stall) {
2236 			fsg_set_halt(fsg, fsg->bulk_out);
2237 			halt_bulk_in_endpoint(fsg);
2238 		}
2239 		return -EINVAL;
2240 	}
2241 
2242 	/* Save the command for later */
2243 	common->cmnd_size = cbw->Length;
2244 	memcpy(common->cmnd, cbw->CDB, common->cmnd_size);
2245 	if (cbw->Flags & US_BULK_FLAG_IN)
2246 		common->data_dir = DATA_DIR_TO_HOST;
2247 	else
2248 		common->data_dir = DATA_DIR_FROM_HOST;
2249 	common->data_size = le32_to_cpu(cbw->DataTransferLength);
2250 	if (common->data_size == 0)
2251 		common->data_dir = DATA_DIR_NONE;
2252 	common->lun = cbw->Lun;
2253 	if (common->lun < ARRAY_SIZE(common->luns))
2254 		common->curlun = common->luns[common->lun];
2255 	else
2256 		common->curlun = NULL;
2257 	common->tag = cbw->Tag;
2258 	return 0;
2259 }
2260 
get_next_command(struct fsg_common * common)2261 static int get_next_command(struct fsg_common *common)
2262 {
2263 	struct fsg_buffhd	*bh;
2264 	int			rc = 0;
2265 
2266 	/* Wait for the next buffer to become available */
2267 	bh = common->next_buffhd_to_fill;
2268 	rc = sleep_thread(common, true, bh);
2269 	if (rc)
2270 		return rc;
2271 
2272 	/* Queue a request to read a Bulk-only CBW */
2273 	set_bulk_out_req_length(common, bh, US_BULK_CB_WRAP_LEN);
2274 	if (!start_out_transfer(common, bh))
2275 		/* Don't know what to do if common->fsg is NULL */
2276 		return -EIO;
2277 
2278 	/*
2279 	 * We will drain the buffer in software, which means we
2280 	 * can reuse it for the next filling.  No need to advance
2281 	 * next_buffhd_to_fill.
2282 	 */
2283 
2284 	/* Wait for the CBW to arrive */
2285 	rc = sleep_thread(common, true, bh);
2286 	if (rc)
2287 		return rc;
2288 
2289 	rc = fsg_is_set(common) ? received_cbw(common->fsg, bh) : -EIO;
2290 	bh->state = BUF_STATE_EMPTY;
2291 
2292 	return rc;
2293 }
2294 
2295 
2296 /*-------------------------------------------------------------------------*/
2297 
alloc_request(struct fsg_common * common,struct usb_ep * ep,struct usb_request ** preq)2298 static int alloc_request(struct fsg_common *common, struct usb_ep *ep,
2299 		struct usb_request **preq)
2300 {
2301 	*preq = usb_ep_alloc_request(ep, GFP_ATOMIC);
2302 	if (*preq)
2303 		return 0;
2304 	ERROR(common, "can't allocate request for %s\n", ep->name);
2305 	return -ENOMEM;
2306 }
2307 
2308 /* Reset interface setting and re-init endpoint state (toggle etc). */
do_set_interface(struct fsg_common * common,struct fsg_dev * new_fsg)2309 static int do_set_interface(struct fsg_common *common, struct fsg_dev *new_fsg)
2310 {
2311 	struct fsg_dev *fsg;
2312 	int i, rc = 0;
2313 
2314 	if (common->running)
2315 		DBG(common, "reset interface\n");
2316 
2317 reset:
2318 	/* Deallocate the requests */
2319 	if (common->fsg) {
2320 		fsg = common->fsg;
2321 
2322 		for (i = 0; i < common->fsg_num_buffers; ++i) {
2323 			struct fsg_buffhd *bh = &common->buffhds[i];
2324 
2325 			if (bh->inreq) {
2326 				usb_ep_free_request(fsg->bulk_in, bh->inreq);
2327 				bh->inreq = NULL;
2328 			}
2329 			if (bh->outreq) {
2330 				usb_ep_free_request(fsg->bulk_out, bh->outreq);
2331 				bh->outreq = NULL;
2332 			}
2333 		}
2334 
2335 		/* Disable the endpoints */
2336 		if (fsg->bulk_in_enabled) {
2337 			usb_ep_disable(fsg->bulk_in);
2338 			fsg->bulk_in_enabled = 0;
2339 		}
2340 		if (fsg->bulk_out_enabled) {
2341 			usb_ep_disable(fsg->bulk_out);
2342 			fsg->bulk_out_enabled = 0;
2343 		}
2344 
2345 		common->fsg = NULL;
2346 		wake_up(&common->fsg_wait);
2347 	}
2348 
2349 	common->running = 0;
2350 	if (!new_fsg || rc)
2351 		return rc;
2352 
2353 	common->fsg = new_fsg;
2354 	fsg = common->fsg;
2355 
2356 	/* Enable the endpoints */
2357 	rc = config_ep_by_speed(common->gadget, &(fsg->function), fsg->bulk_in);
2358 	if (rc)
2359 		goto reset;
2360 	rc = usb_ep_enable(fsg->bulk_in);
2361 	if (rc)
2362 		goto reset;
2363 	fsg->bulk_in->driver_data = common;
2364 	fsg->bulk_in_enabled = 1;
2365 
2366 	rc = config_ep_by_speed(common->gadget, &(fsg->function),
2367 				fsg->bulk_out);
2368 	if (rc)
2369 		goto reset;
2370 	rc = usb_ep_enable(fsg->bulk_out);
2371 	if (rc)
2372 		goto reset;
2373 	fsg->bulk_out->driver_data = common;
2374 	fsg->bulk_out_enabled = 1;
2375 	common->bulk_out_maxpacket = usb_endpoint_maxp(fsg->bulk_out->desc);
2376 	clear_bit(IGNORE_BULK_OUT, &fsg->atomic_bitflags);
2377 
2378 	/* Allocate the requests */
2379 	for (i = 0; i < common->fsg_num_buffers; ++i) {
2380 		struct fsg_buffhd	*bh = &common->buffhds[i];
2381 
2382 		rc = alloc_request(common, fsg->bulk_in, &bh->inreq);
2383 		if (rc)
2384 			goto reset;
2385 		rc = alloc_request(common, fsg->bulk_out, &bh->outreq);
2386 		if (rc)
2387 			goto reset;
2388 		bh->inreq->buf = bh->outreq->buf = bh->buf;
2389 		bh->inreq->context = bh->outreq->context = bh;
2390 		bh->inreq->complete = bulk_in_complete;
2391 		bh->outreq->complete = bulk_out_complete;
2392 	}
2393 
2394 	common->running = 1;
2395 	for (i = 0; i < ARRAY_SIZE(common->luns); ++i)
2396 		if (common->luns[i])
2397 			common->luns[i]->unit_attention_data =
2398 				SS_RESET_OCCURRED;
2399 	return rc;
2400 }
2401 
2402 
2403 /****************************** ALT CONFIGS ******************************/
2404 
fsg_set_alt(struct usb_function * f,unsigned intf,unsigned alt)2405 static int fsg_set_alt(struct usb_function *f, unsigned intf, unsigned alt)
2406 {
2407 	struct fsg_dev *fsg = fsg_from_func(f);
2408 
2409 	__raise_exception(fsg->common, FSG_STATE_CONFIG_CHANGE, fsg);
2410 	return USB_GADGET_DELAYED_STATUS;
2411 }
2412 
fsg_disable(struct usb_function * f)2413 static void fsg_disable(struct usb_function *f)
2414 {
2415 	struct fsg_dev *fsg = fsg_from_func(f);
2416 
2417 	/* Disable the endpoints */
2418 	if (fsg->bulk_in_enabled) {
2419 		usb_ep_disable(fsg->bulk_in);
2420 		fsg->bulk_in_enabled = 0;
2421 	}
2422 	if (fsg->bulk_out_enabled) {
2423 		usb_ep_disable(fsg->bulk_out);
2424 		fsg->bulk_out_enabled = 0;
2425 	}
2426 
2427 	__raise_exception(fsg->common, FSG_STATE_CONFIG_CHANGE, NULL);
2428 }
2429 
2430 
2431 /*-------------------------------------------------------------------------*/
2432 
handle_exception(struct fsg_common * common)2433 static void handle_exception(struct fsg_common *common)
2434 {
2435 	int			i;
2436 	struct fsg_buffhd	*bh;
2437 	enum fsg_state		old_state;
2438 	struct fsg_lun		*curlun;
2439 	unsigned int		exception_req_tag;
2440 	struct fsg_dev		*new_fsg;
2441 
2442 	/*
2443 	 * Clear the existing signals.  Anything but SIGUSR1 is converted
2444 	 * into a high-priority EXIT exception.
2445 	 */
2446 	for (;;) {
2447 		int sig = kernel_dequeue_signal();
2448 		if (!sig)
2449 			break;
2450 		if (sig != SIGUSR1) {
2451 			spin_lock_irq(&common->lock);
2452 			if (common->state < FSG_STATE_EXIT)
2453 				DBG(common, "Main thread exiting on signal\n");
2454 			common->state = FSG_STATE_EXIT;
2455 			spin_unlock_irq(&common->lock);
2456 		}
2457 	}
2458 
2459 	/* Cancel all the pending transfers */
2460 	if (likely(common->fsg)) {
2461 		for (i = 0; i < common->fsg_num_buffers; ++i) {
2462 			bh = &common->buffhds[i];
2463 			if (bh->state == BUF_STATE_SENDING)
2464 				usb_ep_dequeue(common->fsg->bulk_in, bh->inreq);
2465 			if (bh->state == BUF_STATE_RECEIVING)
2466 				usb_ep_dequeue(common->fsg->bulk_out,
2467 					       bh->outreq);
2468 
2469 			/* Wait for a transfer to become idle */
2470 			if (sleep_thread(common, false, bh))
2471 				return;
2472 		}
2473 
2474 		/* Clear out the controller's fifos */
2475 		if (common->fsg->bulk_in_enabled)
2476 			usb_ep_fifo_flush(common->fsg->bulk_in);
2477 		if (common->fsg->bulk_out_enabled)
2478 			usb_ep_fifo_flush(common->fsg->bulk_out);
2479 	}
2480 
2481 	/*
2482 	 * Reset the I/O buffer states and pointers, the SCSI
2483 	 * state, and the exception.  Then invoke the handler.
2484 	 */
2485 	spin_lock_irq(&common->lock);
2486 
2487 	for (i = 0; i < common->fsg_num_buffers; ++i) {
2488 		bh = &common->buffhds[i];
2489 		bh->state = BUF_STATE_EMPTY;
2490 	}
2491 	common->next_buffhd_to_fill = &common->buffhds[0];
2492 	common->next_buffhd_to_drain = &common->buffhds[0];
2493 	exception_req_tag = common->exception_req_tag;
2494 	new_fsg = common->exception_arg;
2495 	old_state = common->state;
2496 	common->state = FSG_STATE_NORMAL;
2497 
2498 	if (old_state != FSG_STATE_ABORT_BULK_OUT) {
2499 		for (i = 0; i < ARRAY_SIZE(common->luns); ++i) {
2500 			curlun = common->luns[i];
2501 			if (!curlun)
2502 				continue;
2503 			curlun->prevent_medium_removal = 0;
2504 			curlun->sense_data = SS_NO_SENSE;
2505 			curlun->unit_attention_data = SS_NO_SENSE;
2506 			curlun->sense_data_info = 0;
2507 			curlun->info_valid = 0;
2508 		}
2509 	}
2510 	spin_unlock_irq(&common->lock);
2511 
2512 	/* Carry out any extra actions required for the exception */
2513 	switch (old_state) {
2514 	case FSG_STATE_NORMAL:
2515 		break;
2516 
2517 	case FSG_STATE_ABORT_BULK_OUT:
2518 		send_status(common);
2519 		break;
2520 
2521 	case FSG_STATE_PROTOCOL_RESET:
2522 		/*
2523 		 * In case we were forced against our will to halt a
2524 		 * bulk endpoint, clear the halt now.  (The SuperH UDC
2525 		 * requires this.)
2526 		 */
2527 		if (!fsg_is_set(common))
2528 			break;
2529 		if (test_and_clear_bit(IGNORE_BULK_OUT,
2530 				       &common->fsg->atomic_bitflags))
2531 			usb_ep_clear_halt(common->fsg->bulk_in);
2532 
2533 		if (common->ep0_req_tag == exception_req_tag)
2534 			ep0_queue(common);	/* Complete the status stage */
2535 
2536 		/*
2537 		 * Technically this should go here, but it would only be
2538 		 * a waste of time.  Ditto for the INTERFACE_CHANGE and
2539 		 * CONFIG_CHANGE cases.
2540 		 */
2541 		/* for (i = 0; i < common->ARRAY_SIZE(common->luns); ++i) */
2542 		/*	if (common->luns[i]) */
2543 		/*		common->luns[i]->unit_attention_data = */
2544 		/*			SS_RESET_OCCURRED;  */
2545 		break;
2546 
2547 	case FSG_STATE_CONFIG_CHANGE:
2548 		do_set_interface(common, new_fsg);
2549 		if (new_fsg)
2550 			usb_composite_setup_continue(common->cdev);
2551 		break;
2552 
2553 	case FSG_STATE_EXIT:
2554 		do_set_interface(common, NULL);		/* Free resources */
2555 		spin_lock_irq(&common->lock);
2556 		common->state = FSG_STATE_TERMINATED;	/* Stop the thread */
2557 		spin_unlock_irq(&common->lock);
2558 		break;
2559 
2560 	case FSG_STATE_TERMINATED:
2561 		break;
2562 	}
2563 }
2564 
2565 
2566 /*-------------------------------------------------------------------------*/
2567 
fsg_main_thread(void * common_)2568 static int fsg_main_thread(void *common_)
2569 {
2570 	struct fsg_common	*common = common_;
2571 	int			i;
2572 
2573 	/*
2574 	 * Allow the thread to be killed by a signal, but set the signal mask
2575 	 * to block everything but INT, TERM, KILL, and USR1.
2576 	 */
2577 	allow_signal(SIGINT);
2578 	allow_signal(SIGTERM);
2579 	allow_signal(SIGKILL);
2580 	allow_signal(SIGUSR1);
2581 
2582 	/* Allow the thread to be frozen */
2583 	set_freezable();
2584 
2585 	/* The main loop */
2586 	while (common->state != FSG_STATE_TERMINATED) {
2587 		if (exception_in_progress(common) || signal_pending(current)) {
2588 			handle_exception(common);
2589 			continue;
2590 		}
2591 
2592 		if (!common->running) {
2593 			sleep_thread(common, true, NULL);
2594 			continue;
2595 		}
2596 
2597 		if (get_next_command(common) || exception_in_progress(common))
2598 			continue;
2599 		if (do_scsi_command(common) || exception_in_progress(common))
2600 			continue;
2601 		if (finish_reply(common) || exception_in_progress(common))
2602 			continue;
2603 		send_status(common);
2604 	}
2605 
2606 	spin_lock_irq(&common->lock);
2607 	common->thread_task = NULL;
2608 	spin_unlock_irq(&common->lock);
2609 
2610 	/* Eject media from all LUNs */
2611 
2612 	down_write(&common->filesem);
2613 	for (i = 0; i < ARRAY_SIZE(common->luns); i++) {
2614 		struct fsg_lun *curlun = common->luns[i];
2615 
2616 		if (curlun && fsg_lun_is_open(curlun))
2617 			fsg_lun_close(curlun);
2618 	}
2619 	up_write(&common->filesem);
2620 
2621 	/* Let fsg_unbind() know the thread has exited */
2622 	kthread_complete_and_exit(&common->thread_notifier, 0);
2623 }
2624 
2625 
2626 /*************************** DEVICE ATTRIBUTES ***************************/
2627 
ro_show(struct device * dev,struct device_attribute * attr,char * buf)2628 static ssize_t ro_show(struct device *dev, struct device_attribute *attr, char *buf)
2629 {
2630 	struct fsg_lun		*curlun = fsg_lun_from_dev(dev);
2631 
2632 	return fsg_show_ro(curlun, buf);
2633 }
2634 
nofua_show(struct device * dev,struct device_attribute * attr,char * buf)2635 static ssize_t nofua_show(struct device *dev, struct device_attribute *attr,
2636 			  char *buf)
2637 {
2638 	struct fsg_lun		*curlun = fsg_lun_from_dev(dev);
2639 
2640 	return fsg_show_nofua(curlun, buf);
2641 }
2642 
file_show(struct device * dev,struct device_attribute * attr,char * buf)2643 static ssize_t file_show(struct device *dev, struct device_attribute *attr,
2644 			 char *buf)
2645 {
2646 	struct fsg_lun		*curlun = fsg_lun_from_dev(dev);
2647 	struct rw_semaphore	*filesem = dev_get_drvdata(dev);
2648 
2649 	return fsg_show_file(curlun, filesem, buf);
2650 }
2651 
ro_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t count)2652 static ssize_t ro_store(struct device *dev, struct device_attribute *attr,
2653 			const char *buf, size_t count)
2654 {
2655 	struct fsg_lun		*curlun = fsg_lun_from_dev(dev);
2656 	struct rw_semaphore	*filesem = dev_get_drvdata(dev);
2657 
2658 	return fsg_store_ro(curlun, filesem, buf, count);
2659 }
2660 
nofua_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t count)2661 static ssize_t nofua_store(struct device *dev, struct device_attribute *attr,
2662 			   const char *buf, size_t count)
2663 {
2664 	struct fsg_lun		*curlun = fsg_lun_from_dev(dev);
2665 
2666 	return fsg_store_nofua(curlun, buf, count);
2667 }
2668 
file_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t count)2669 static ssize_t file_store(struct device *dev, struct device_attribute *attr,
2670 			  const char *buf, size_t count)
2671 {
2672 	struct fsg_lun		*curlun = fsg_lun_from_dev(dev);
2673 	struct rw_semaphore	*filesem = dev_get_drvdata(dev);
2674 
2675 	return fsg_store_file(curlun, filesem, buf, count);
2676 }
2677 
forced_eject_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t count)2678 static ssize_t forced_eject_store(struct device *dev,
2679 				  struct device_attribute *attr,
2680 				  const char *buf, size_t count)
2681 {
2682 	struct fsg_lun		*curlun = fsg_lun_from_dev(dev);
2683 	struct rw_semaphore	*filesem = dev_get_drvdata(dev);
2684 
2685 	return fsg_store_forced_eject(curlun, filesem, buf, count);
2686 }
2687 
2688 static DEVICE_ATTR_RW(nofua);
2689 static DEVICE_ATTR_WO(forced_eject);
2690 
2691 /*
2692  * Mode of the ro and file attribute files will be overridden in
2693  * fsg_lun_dev_is_visible() depending on if this is a cdrom, or if it is a
2694  * removable device.
2695  */
2696 static DEVICE_ATTR_RW(ro);
2697 static DEVICE_ATTR_RW(file);
2698 
2699 /****************************** FSG COMMON ******************************/
2700 
fsg_lun_release(struct device * dev)2701 static void fsg_lun_release(struct device *dev)
2702 {
2703 	/* Nothing needs to be done */
2704 }
2705 
fsg_common_setup(struct fsg_common * common)2706 static struct fsg_common *fsg_common_setup(struct fsg_common *common)
2707 {
2708 	if (!common) {
2709 		common = kzalloc_obj(*common);
2710 		if (!common)
2711 			return ERR_PTR(-ENOMEM);
2712 		common->free_storage_on_release = 1;
2713 	} else {
2714 		common->free_storage_on_release = 0;
2715 	}
2716 	init_rwsem(&common->filesem);
2717 	spin_lock_init(&common->lock);
2718 	init_completion(&common->thread_notifier);
2719 	init_waitqueue_head(&common->io_wait);
2720 	init_waitqueue_head(&common->fsg_wait);
2721 	common->state = FSG_STATE_TERMINATED;
2722 	memset(common->luns, 0, sizeof(common->luns));
2723 
2724 	return common;
2725 }
2726 
fsg_common_set_sysfs(struct fsg_common * common,bool sysfs)2727 void fsg_common_set_sysfs(struct fsg_common *common, bool sysfs)
2728 {
2729 	common->sysfs = sysfs;
2730 }
2731 EXPORT_SYMBOL_GPL(fsg_common_set_sysfs);
2732 
_fsg_common_free_buffers(struct fsg_buffhd * buffhds,unsigned n)2733 static void _fsg_common_free_buffers(struct fsg_buffhd *buffhds, unsigned n)
2734 {
2735 	if (buffhds) {
2736 		struct fsg_buffhd *bh = buffhds;
2737 		while (n--) {
2738 			kfree(bh->buf);
2739 			++bh;
2740 		}
2741 		kfree(buffhds);
2742 	}
2743 }
2744 
fsg_common_set_num_buffers(struct fsg_common * common,unsigned int n)2745 int fsg_common_set_num_buffers(struct fsg_common *common, unsigned int n)
2746 {
2747 	struct fsg_buffhd *bh, *buffhds;
2748 	int i;
2749 
2750 	if (n < 2)
2751 		return -EINVAL;
2752 
2753 	buffhds = kzalloc_objs(*buffhds, n);
2754 	if (!buffhds)
2755 		return -ENOMEM;
2756 
2757 	/* Data buffers cyclic list */
2758 	bh = buffhds;
2759 	i = n;
2760 	goto buffhds_first_it;
2761 	do {
2762 		bh->next = bh + 1;
2763 		++bh;
2764 buffhds_first_it:
2765 		bh->buf = kmalloc(FSG_BUFLEN, GFP_KERNEL);
2766 		if (unlikely(!bh->buf))
2767 			goto error_release;
2768 	} while (--i);
2769 	bh->next = buffhds;
2770 
2771 	_fsg_common_free_buffers(common->buffhds, common->fsg_num_buffers);
2772 	common->fsg_num_buffers = n;
2773 	common->buffhds = buffhds;
2774 
2775 	return 0;
2776 
2777 error_release:
2778 	/*
2779 	 * "buf"s pointed to by heads after n - i are NULL
2780 	 * so releasing them won't hurt
2781 	 */
2782 	_fsg_common_free_buffers(buffhds, n);
2783 
2784 	return -ENOMEM;
2785 }
2786 EXPORT_SYMBOL_GPL(fsg_common_set_num_buffers);
2787 
fsg_common_remove_lun(struct fsg_lun * lun)2788 void fsg_common_remove_lun(struct fsg_lun *lun)
2789 {
2790 	if (device_is_registered(&lun->dev))
2791 		device_unregister(&lun->dev);
2792 	fsg_lun_close(lun);
2793 	kfree(lun);
2794 }
2795 EXPORT_SYMBOL_GPL(fsg_common_remove_lun);
2796 
_fsg_common_remove_luns(struct fsg_common * common,int n)2797 static void _fsg_common_remove_luns(struct fsg_common *common, int n)
2798 {
2799 	int i;
2800 
2801 	for (i = 0; i < n; ++i)
2802 		if (common->luns[i]) {
2803 			fsg_common_remove_lun(common->luns[i]);
2804 			common->luns[i] = NULL;
2805 		}
2806 }
2807 
fsg_common_remove_luns(struct fsg_common * common)2808 void fsg_common_remove_luns(struct fsg_common *common)
2809 {
2810 	_fsg_common_remove_luns(common, ARRAY_SIZE(common->luns));
2811 }
2812 EXPORT_SYMBOL_GPL(fsg_common_remove_luns);
2813 
fsg_common_free_buffers(struct fsg_common * common)2814 void fsg_common_free_buffers(struct fsg_common *common)
2815 {
2816 	_fsg_common_free_buffers(common->buffhds, common->fsg_num_buffers);
2817 	common->buffhds = NULL;
2818 }
2819 EXPORT_SYMBOL_GPL(fsg_common_free_buffers);
2820 
fsg_common_set_cdev(struct fsg_common * common,struct usb_composite_dev * cdev,bool can_stall)2821 int fsg_common_set_cdev(struct fsg_common *common,
2822 			 struct usb_composite_dev *cdev, bool can_stall)
2823 {
2824 	struct usb_string *us;
2825 
2826 	common->gadget = cdev->gadget;
2827 	common->ep0 = cdev->gadget->ep0;
2828 	common->ep0req = cdev->req;
2829 	common->cdev = cdev;
2830 
2831 	us = usb_gstrings_attach(cdev, fsg_strings_array,
2832 				 ARRAY_SIZE(fsg_strings));
2833 	if (IS_ERR(us))
2834 		return PTR_ERR(us);
2835 
2836 	fsg_intf_desc.iInterface = us[FSG_STRING_INTERFACE].id;
2837 
2838 	/*
2839 	 * Some peripheral controllers are known not to be able to
2840 	 * halt bulk endpoints correctly.  If one of them is present,
2841 	 * disable stalls.
2842 	 */
2843 	common->can_stall = can_stall &&
2844 			gadget_is_stall_supported(common->gadget);
2845 
2846 	return 0;
2847 }
2848 EXPORT_SYMBOL_GPL(fsg_common_set_cdev);
2849 
2850 static struct attribute *fsg_lun_dev_attrs[] = {
2851 	&dev_attr_ro.attr,
2852 	&dev_attr_file.attr,
2853 	&dev_attr_nofua.attr,
2854 	&dev_attr_forced_eject.attr,
2855 	NULL
2856 };
2857 
fsg_lun_dev_is_visible(struct kobject * kobj,struct attribute * attr,int idx)2858 static umode_t fsg_lun_dev_is_visible(struct kobject *kobj,
2859 				      struct attribute *attr, int idx)
2860 {
2861 	struct device *dev = kobj_to_dev(kobj);
2862 	struct fsg_lun *lun = fsg_lun_from_dev(dev);
2863 
2864 	if (attr == &dev_attr_ro.attr)
2865 		return lun->cdrom ? S_IRUGO : (S_IWUSR | S_IRUGO);
2866 	if (attr == &dev_attr_file.attr)
2867 		return lun->removable ? (S_IWUSR | S_IRUGO) : S_IRUGO;
2868 	return attr->mode;
2869 }
2870 
2871 static const struct attribute_group fsg_lun_dev_group = {
2872 	.attrs = fsg_lun_dev_attrs,
2873 	.is_visible = fsg_lun_dev_is_visible,
2874 };
2875 
2876 static const struct attribute_group *fsg_lun_dev_groups[] = {
2877 	&fsg_lun_dev_group,
2878 	NULL
2879 };
2880 
fsg_common_create_lun(struct fsg_common * common,struct fsg_lun_config * cfg,unsigned int id,const char * name,const char ** name_pfx)2881 int fsg_common_create_lun(struct fsg_common *common, struct fsg_lun_config *cfg,
2882 			  unsigned int id, const char *name,
2883 			  const char **name_pfx)
2884 {
2885 	struct fsg_lun *lun;
2886 	char *pathbuf = NULL, *p = "(no medium)";
2887 	int rc = -ENOMEM;
2888 
2889 	if (id >= ARRAY_SIZE(common->luns))
2890 		return -ENODEV;
2891 
2892 	if (common->luns[id])
2893 		return -EBUSY;
2894 
2895 	if (!cfg->filename && !cfg->removable) {
2896 		pr_err("no file given for LUN%d\n", id);
2897 		return -EINVAL;
2898 	}
2899 
2900 	lun = kzalloc_obj(*lun);
2901 	if (!lun)
2902 		return -ENOMEM;
2903 
2904 	lun->name_pfx = name_pfx;
2905 
2906 	lun->cdrom = !!cfg->cdrom;
2907 	lun->ro = cfg->cdrom || cfg->ro;
2908 	lun->initially_ro = lun->ro;
2909 	lun->removable = !!cfg->removable;
2910 
2911 	if (!common->sysfs) {
2912 		/* we DON'T own the name!*/
2913 		lun->name = name;
2914 	} else {
2915 		lun->dev.release = fsg_lun_release;
2916 		lun->dev.parent = &common->gadget->dev;
2917 		lun->dev.groups = fsg_lun_dev_groups;
2918 		dev_set_drvdata(&lun->dev, &common->filesem);
2919 		dev_set_name(&lun->dev, "%s", name);
2920 		lun->name = dev_name(&lun->dev);
2921 
2922 		rc = device_register(&lun->dev);
2923 		if (rc) {
2924 			pr_info("failed to register LUN%d: %d\n", id, rc);
2925 			put_device(&lun->dev);
2926 			goto error_sysfs;
2927 		}
2928 	}
2929 
2930 	common->luns[id] = lun;
2931 
2932 	if (cfg->filename) {
2933 		rc = fsg_lun_open(lun, cfg->filename);
2934 		if (rc)
2935 			goto error_lun;
2936 
2937 		p = "(error)";
2938 		pathbuf = kmalloc(PATH_MAX, GFP_KERNEL);
2939 		if (pathbuf) {
2940 			p = file_path(lun->filp, pathbuf, PATH_MAX);
2941 			if (IS_ERR(p))
2942 				p = "(error)";
2943 		}
2944 	}
2945 	pr_info("LUN: %s%s%sfile: %s\n",
2946 	      lun->removable ? "removable " : "",
2947 	      lun->ro ? "read only " : "",
2948 	      lun->cdrom ? "CD-ROM " : "",
2949 	      p);
2950 	kfree(pathbuf);
2951 
2952 	return 0;
2953 
2954 error_lun:
2955 	if (device_is_registered(&lun->dev))
2956 		device_unregister(&lun->dev);
2957 	common->luns[id] = NULL;
2958 error_sysfs:
2959 	kfree(lun);
2960 	return rc;
2961 }
2962 EXPORT_SYMBOL_GPL(fsg_common_create_lun);
2963 
fsg_common_create_luns(struct fsg_common * common,struct fsg_config * cfg)2964 int fsg_common_create_luns(struct fsg_common *common, struct fsg_config *cfg)
2965 {
2966 	char buf[14];
2967 	int i, rc;
2968 
2969 	fsg_common_remove_luns(common);
2970 
2971 	for (i = 0; i < cfg->nluns; ++i) {
2972 		snprintf(buf, sizeof(buf), "lun%d", i);
2973 		rc = fsg_common_create_lun(common, &cfg->luns[i], i, buf, NULL);
2974 		if (rc)
2975 			goto fail;
2976 	}
2977 
2978 	pr_info("Number of LUNs=%d\n", cfg->nluns);
2979 
2980 	return 0;
2981 
2982 fail:
2983 	_fsg_common_remove_luns(common, i);
2984 	return rc;
2985 }
2986 EXPORT_SYMBOL_GPL(fsg_common_create_luns);
2987 
fsg_common_set_inquiry_string(struct fsg_common * common,const char * vn,const char * pn)2988 void fsg_common_set_inquiry_string(struct fsg_common *common, const char *vn,
2989 				   const char *pn)
2990 {
2991 	int i;
2992 
2993 	/* Prepare inquiryString */
2994 	i = get_default_bcdDevice();
2995 	snprintf(common->inquiry_string, sizeof(common->inquiry_string),
2996 		 "%-8s%-16s%04x", vn ?: "Linux",
2997 		 /* Assume product name dependent on the first LUN */
2998 		 pn ?: ((*common->luns)->cdrom
2999 		     ? "File-CD Gadget"
3000 		     : "File-Stor Gadget"),
3001 		 i);
3002 }
3003 EXPORT_SYMBOL_GPL(fsg_common_set_inquiry_string);
3004 
fsg_common_release(struct fsg_common * common)3005 static void fsg_common_release(struct fsg_common *common)
3006 {
3007 	int i;
3008 
3009 	/* If the thread isn't already dead, tell it to exit now */
3010 	if (common->state != FSG_STATE_TERMINATED) {
3011 		raise_exception(common, FSG_STATE_EXIT);
3012 		wait_for_completion(&common->thread_notifier);
3013 	}
3014 
3015 	for (i = 0; i < ARRAY_SIZE(common->luns); ++i) {
3016 		struct fsg_lun *lun = common->luns[i];
3017 		if (!lun)
3018 			continue;
3019 		fsg_lun_close(lun);
3020 		if (device_is_registered(&lun->dev))
3021 			device_unregister(&lun->dev);
3022 		kfree(lun);
3023 	}
3024 
3025 	_fsg_common_free_buffers(common->buffhds, common->fsg_num_buffers);
3026 	if (common->free_storage_on_release)
3027 		kfree(common);
3028 }
3029 
3030 
3031 /*-------------------------------------------------------------------------*/
3032 
fsg_bind(struct usb_configuration * c,struct usb_function * f)3033 static int fsg_bind(struct usb_configuration *c, struct usb_function *f)
3034 {
3035 	struct fsg_dev		*fsg = fsg_from_func(f);
3036 	struct fsg_common	*common = fsg->common;
3037 	struct usb_gadget	*gadget = c->cdev->gadget;
3038 	int			i;
3039 	struct usb_ep		*ep;
3040 	unsigned		max_burst;
3041 	int			ret;
3042 	struct fsg_opts		*opts;
3043 
3044 	/* Don't allow to bind if we don't have at least one LUN */
3045 	ret = _fsg_common_get_max_lun(common);
3046 	if (ret < 0) {
3047 		pr_err("There should be at least one LUN.\n");
3048 		return -EINVAL;
3049 	}
3050 
3051 	opts = fsg_opts_from_func_inst(f->fi);
3052 	if (!opts->no_configfs) {
3053 		ret = fsg_common_set_cdev(fsg->common, c->cdev,
3054 					  fsg->common->can_stall);
3055 		if (ret)
3056 			return ret;
3057 		fsg_common_set_inquiry_string(fsg->common, NULL, NULL);
3058 	}
3059 
3060 	if (!common->thread_task) {
3061 		common->state = FSG_STATE_NORMAL;
3062 		common->thread_task =
3063 			kthread_run(fsg_main_thread, common, "file-storage");
3064 		if (IS_ERR(common->thread_task)) {
3065 			ret = PTR_ERR(common->thread_task);
3066 			common->thread_task = NULL;
3067 			common->state = FSG_STATE_TERMINATED;
3068 			return ret;
3069 		}
3070 		DBG(common, "I/O thread pid: %d\n",
3071 		    task_pid_nr(common->thread_task));
3072 	}
3073 
3074 	fsg->gadget = gadget;
3075 
3076 	/* New interface */
3077 	i = usb_interface_id(c, f);
3078 	if (i < 0)
3079 		goto fail;
3080 	fsg_intf_desc.bInterfaceNumber = i;
3081 	fsg->interface_number = i;
3082 
3083 	/* Find all the endpoints we will use */
3084 	ep = usb_ep_autoconfig(gadget, &fsg_fs_bulk_in_desc);
3085 	if (!ep)
3086 		goto autoconf_fail;
3087 	fsg->bulk_in = ep;
3088 
3089 	ep = usb_ep_autoconfig(gadget, &fsg_fs_bulk_out_desc);
3090 	if (!ep)
3091 		goto autoconf_fail;
3092 	fsg->bulk_out = ep;
3093 
3094 	/* Assume endpoint addresses are the same for both speeds */
3095 	fsg_hs_bulk_in_desc.bEndpointAddress =
3096 		fsg_fs_bulk_in_desc.bEndpointAddress;
3097 	fsg_hs_bulk_out_desc.bEndpointAddress =
3098 		fsg_fs_bulk_out_desc.bEndpointAddress;
3099 
3100 	/* Calculate bMaxBurst, we know packet size is 1024 */
3101 	max_burst = min_t(unsigned, FSG_BUFLEN / 1024, 15);
3102 
3103 	fsg_ss_bulk_in_desc.bEndpointAddress =
3104 		fsg_fs_bulk_in_desc.bEndpointAddress;
3105 	fsg_ss_bulk_in_comp_desc.bMaxBurst = max_burst;
3106 
3107 	fsg_ss_bulk_out_desc.bEndpointAddress =
3108 		fsg_fs_bulk_out_desc.bEndpointAddress;
3109 	fsg_ss_bulk_out_comp_desc.bMaxBurst = max_burst;
3110 
3111 	ret = usb_assign_descriptors(f, fsg_fs_function, fsg_hs_function,
3112 			fsg_ss_function, fsg_ss_function);
3113 	if (ret)
3114 		goto autoconf_fail;
3115 
3116 	return 0;
3117 
3118 autoconf_fail:
3119 	ERROR(fsg, "unable to autoconfigure all endpoints\n");
3120 	i = -ENOTSUPP;
3121 fail:
3122 	/* terminate the thread */
3123 	if (fsg->common->state != FSG_STATE_TERMINATED) {
3124 		raise_exception(fsg->common, FSG_STATE_EXIT);
3125 		wait_for_completion(&fsg->common->thread_notifier);
3126 	}
3127 	return i;
3128 }
3129 
3130 /****************************** ALLOCATE FUNCTION *************************/
3131 
fsg_unbind(struct usb_configuration * c,struct usb_function * f)3132 static void fsg_unbind(struct usb_configuration *c, struct usb_function *f)
3133 {
3134 	struct fsg_dev		*fsg = fsg_from_func(f);
3135 	struct fsg_common	*common = fsg->common;
3136 
3137 	DBG(fsg, "unbind\n");
3138 	if (fsg->common->fsg == fsg) {
3139 		__raise_exception(fsg->common, FSG_STATE_CONFIG_CHANGE, NULL);
3140 		/* FIXME: make interruptible or killable somehow? */
3141 		wait_event(common->fsg_wait, common->fsg != fsg);
3142 	}
3143 
3144 	usb_free_all_descriptors(&fsg->function);
3145 }
3146 
to_fsg_lun_opts(struct config_item * item)3147 static inline struct fsg_lun_opts *to_fsg_lun_opts(struct config_item *item)
3148 {
3149 	return container_of(to_config_group(item), struct fsg_lun_opts, group);
3150 }
3151 
to_fsg_opts(struct config_item * item)3152 static inline struct fsg_opts *to_fsg_opts(struct config_item *item)
3153 {
3154 	return container_of(to_config_group(item), struct fsg_opts,
3155 			    func_inst.group);
3156 }
3157 
fsg_lun_attr_release(struct config_item * item)3158 static void fsg_lun_attr_release(struct config_item *item)
3159 {
3160 	struct fsg_lun_opts *lun_opts;
3161 
3162 	lun_opts = to_fsg_lun_opts(item);
3163 	kfree(lun_opts);
3164 }
3165 
3166 static const struct configfs_item_operations fsg_lun_item_ops = {
3167 	.release		= fsg_lun_attr_release,
3168 };
3169 
fsg_lun_opts_file_show(struct config_item * item,char * page)3170 static ssize_t fsg_lun_opts_file_show(struct config_item *item, char *page)
3171 {
3172 	struct fsg_lun_opts *opts = to_fsg_lun_opts(item);
3173 	struct fsg_opts *fsg_opts = to_fsg_opts(opts->group.cg_item.ci_parent);
3174 
3175 	return fsg_show_file(opts->lun, &fsg_opts->common->filesem, page);
3176 }
3177 
fsg_lun_opts_file_store(struct config_item * item,const char * page,size_t len)3178 static ssize_t fsg_lun_opts_file_store(struct config_item *item,
3179 				       const char *page, size_t len)
3180 {
3181 	struct fsg_lun_opts *opts = to_fsg_lun_opts(item);
3182 	struct fsg_opts *fsg_opts = to_fsg_opts(opts->group.cg_item.ci_parent);
3183 
3184 	return fsg_store_file(opts->lun, &fsg_opts->common->filesem, page, len);
3185 }
3186 
3187 CONFIGFS_ATTR(fsg_lun_opts_, file);
3188 
fsg_lun_opts_ro_show(struct config_item * item,char * page)3189 static ssize_t fsg_lun_opts_ro_show(struct config_item *item, char *page)
3190 {
3191 	return fsg_show_ro(to_fsg_lun_opts(item)->lun, page);
3192 }
3193 
fsg_lun_opts_ro_store(struct config_item * item,const char * page,size_t len)3194 static ssize_t fsg_lun_opts_ro_store(struct config_item *item,
3195 				       const char *page, size_t len)
3196 {
3197 	struct fsg_lun_opts *opts = to_fsg_lun_opts(item);
3198 	struct fsg_opts *fsg_opts = to_fsg_opts(opts->group.cg_item.ci_parent);
3199 
3200 	return fsg_store_ro(opts->lun, &fsg_opts->common->filesem, page, len);
3201 }
3202 
3203 CONFIGFS_ATTR(fsg_lun_opts_, ro);
3204 
fsg_lun_opts_removable_show(struct config_item * item,char * page)3205 static ssize_t fsg_lun_opts_removable_show(struct config_item *item,
3206 					   char *page)
3207 {
3208 	return fsg_show_removable(to_fsg_lun_opts(item)->lun, page);
3209 }
3210 
fsg_lun_opts_removable_store(struct config_item * item,const char * page,size_t len)3211 static ssize_t fsg_lun_opts_removable_store(struct config_item *item,
3212 				       const char *page, size_t len)
3213 {
3214 	return fsg_store_removable(to_fsg_lun_opts(item)->lun, page, len);
3215 }
3216 
3217 CONFIGFS_ATTR(fsg_lun_opts_, removable);
3218 
fsg_lun_opts_cdrom_show(struct config_item * item,char * page)3219 static ssize_t fsg_lun_opts_cdrom_show(struct config_item *item, char *page)
3220 {
3221 	return fsg_show_cdrom(to_fsg_lun_opts(item)->lun, page);
3222 }
3223 
fsg_lun_opts_cdrom_store(struct config_item * item,const char * page,size_t len)3224 static ssize_t fsg_lun_opts_cdrom_store(struct config_item *item,
3225 				       const char *page, size_t len)
3226 {
3227 	struct fsg_lun_opts *opts = to_fsg_lun_opts(item);
3228 	struct fsg_opts *fsg_opts = to_fsg_opts(opts->group.cg_item.ci_parent);
3229 
3230 	return fsg_store_cdrom(opts->lun, &fsg_opts->common->filesem, page,
3231 			       len);
3232 }
3233 
3234 CONFIGFS_ATTR(fsg_lun_opts_, cdrom);
3235 
fsg_lun_opts_nofua_show(struct config_item * item,char * page)3236 static ssize_t fsg_lun_opts_nofua_show(struct config_item *item, char *page)
3237 {
3238 	return fsg_show_nofua(to_fsg_lun_opts(item)->lun, page);
3239 }
3240 
fsg_lun_opts_nofua_store(struct config_item * item,const char * page,size_t len)3241 static ssize_t fsg_lun_opts_nofua_store(struct config_item *item,
3242 				       const char *page, size_t len)
3243 {
3244 	return fsg_store_nofua(to_fsg_lun_opts(item)->lun, page, len);
3245 }
3246 
3247 CONFIGFS_ATTR(fsg_lun_opts_, nofua);
3248 
fsg_lun_opts_inquiry_string_show(struct config_item * item,char * page)3249 static ssize_t fsg_lun_opts_inquiry_string_show(struct config_item *item,
3250 						char *page)
3251 {
3252 	return fsg_show_inquiry_string(to_fsg_lun_opts(item)->lun, page);
3253 }
3254 
fsg_lun_opts_inquiry_string_store(struct config_item * item,const char * page,size_t len)3255 static ssize_t fsg_lun_opts_inquiry_string_store(struct config_item *item,
3256 						 const char *page, size_t len)
3257 {
3258 	return fsg_store_inquiry_string(to_fsg_lun_opts(item)->lun, page, len);
3259 }
3260 
3261 CONFIGFS_ATTR(fsg_lun_opts_, inquiry_string);
3262 
fsg_lun_opts_forced_eject_store(struct config_item * item,const char * page,size_t len)3263 static ssize_t fsg_lun_opts_forced_eject_store(struct config_item *item,
3264 					       const char *page, size_t len)
3265 {
3266 	struct fsg_lun_opts *opts = to_fsg_lun_opts(item);
3267 	struct fsg_opts *fsg_opts = to_fsg_opts(opts->group.cg_item.ci_parent);
3268 
3269 	return fsg_store_forced_eject(opts->lun, &fsg_opts->common->filesem,
3270 				      page, len);
3271 }
3272 
3273 CONFIGFS_ATTR_WO(fsg_lun_opts_, forced_eject);
3274 
3275 static struct configfs_attribute *fsg_lun_attrs[] = {
3276 	&fsg_lun_opts_attr_file,
3277 	&fsg_lun_opts_attr_ro,
3278 	&fsg_lun_opts_attr_removable,
3279 	&fsg_lun_opts_attr_cdrom,
3280 	&fsg_lun_opts_attr_nofua,
3281 	&fsg_lun_opts_attr_inquiry_string,
3282 	&fsg_lun_opts_attr_forced_eject,
3283 	NULL,
3284 };
3285 
3286 static const struct config_item_type fsg_lun_type = {
3287 	.ct_item_ops	= &fsg_lun_item_ops,
3288 	.ct_attrs	= fsg_lun_attrs,
3289 	.ct_owner	= THIS_MODULE,
3290 };
3291 
fsg_lun_make(struct config_group * group,const char * name)3292 static struct config_group *fsg_lun_make(struct config_group *group,
3293 					 const char *name)
3294 {
3295 	struct fsg_lun_opts *opts;
3296 	struct fsg_opts *fsg_opts;
3297 	struct fsg_lun_config config;
3298 	char *num_str;
3299 	u8 num;
3300 	int ret;
3301 
3302 	num_str = strchr(name, '.');
3303 	if (!num_str) {
3304 		pr_err("Unable to locate . in LUN.NUMBER\n");
3305 		return ERR_PTR(-EINVAL);
3306 	}
3307 	num_str++;
3308 
3309 	ret = kstrtou8(num_str, 0, &num);
3310 	if (ret)
3311 		return ERR_PTR(ret);
3312 
3313 	fsg_opts = to_fsg_opts(&group->cg_item);
3314 	if (num >= FSG_MAX_LUNS)
3315 		return ERR_PTR(-ERANGE);
3316 	num = array_index_nospec(num, FSG_MAX_LUNS);
3317 
3318 	mutex_lock(&fsg_opts->lock);
3319 	if (fsg_opts->refcnt || fsg_opts->common->luns[num]) {
3320 		ret = -EBUSY;
3321 		goto out;
3322 	}
3323 
3324 	opts = kzalloc_obj(*opts);
3325 	if (!opts) {
3326 		ret = -ENOMEM;
3327 		goto out;
3328 	}
3329 
3330 	memset(&config, 0, sizeof(config));
3331 	config.removable = true;
3332 
3333 	ret = fsg_common_create_lun(fsg_opts->common, &config, num, name,
3334 				    (const char **)&group->cg_item.ci_name);
3335 	if (ret) {
3336 		kfree(opts);
3337 		goto out;
3338 	}
3339 	opts->lun = fsg_opts->common->luns[num];
3340 	opts->lun_id = num;
3341 	mutex_unlock(&fsg_opts->lock);
3342 
3343 	config_group_init_type_name(&opts->group, name, &fsg_lun_type);
3344 
3345 	return &opts->group;
3346 out:
3347 	mutex_unlock(&fsg_opts->lock);
3348 	return ERR_PTR(ret);
3349 }
3350 
fsg_lun_drop(struct config_group * group,struct config_item * item)3351 static void fsg_lun_drop(struct config_group *group, struct config_item *item)
3352 {
3353 	struct fsg_lun_opts *lun_opts;
3354 	struct fsg_opts *fsg_opts;
3355 
3356 	lun_opts = to_fsg_lun_opts(item);
3357 	fsg_opts = to_fsg_opts(&group->cg_item);
3358 
3359 	mutex_lock(&fsg_opts->lock);
3360 	if (fsg_opts->refcnt) {
3361 		struct config_item *gadget;
3362 
3363 		gadget = group->cg_item.ci_parent->ci_parent;
3364 		unregister_gadget_item(gadget);
3365 	}
3366 
3367 	fsg_common_remove_lun(lun_opts->lun);
3368 	fsg_opts->common->luns[lun_opts->lun_id] = NULL;
3369 	lun_opts->lun_id = 0;
3370 	mutex_unlock(&fsg_opts->lock);
3371 
3372 	config_item_put(item);
3373 }
3374 
fsg_attr_release(struct config_item * item)3375 static void fsg_attr_release(struct config_item *item)
3376 {
3377 	struct fsg_opts *opts = to_fsg_opts(item);
3378 
3379 	usb_put_function_instance(&opts->func_inst);
3380 }
3381 
3382 static const struct configfs_item_operations fsg_item_ops = {
3383 	.release		= fsg_attr_release,
3384 };
3385 
fsg_opts_stall_show(struct config_item * item,char * page)3386 static ssize_t fsg_opts_stall_show(struct config_item *item, char *page)
3387 {
3388 	struct fsg_opts *opts = to_fsg_opts(item);
3389 	int result;
3390 
3391 	mutex_lock(&opts->lock);
3392 	result = sprintf(page, "%d", opts->common->can_stall);
3393 	mutex_unlock(&opts->lock);
3394 
3395 	return result;
3396 }
3397 
fsg_opts_stall_store(struct config_item * item,const char * page,size_t len)3398 static ssize_t fsg_opts_stall_store(struct config_item *item, const char *page,
3399 				    size_t len)
3400 {
3401 	struct fsg_opts *opts = to_fsg_opts(item);
3402 	int ret;
3403 	bool stall;
3404 
3405 	mutex_lock(&opts->lock);
3406 
3407 	if (opts->refcnt) {
3408 		mutex_unlock(&opts->lock);
3409 		return -EBUSY;
3410 	}
3411 
3412 	ret = kstrtobool(page, &stall);
3413 	if (!ret) {
3414 		opts->common->can_stall = stall;
3415 		ret = len;
3416 	}
3417 
3418 	mutex_unlock(&opts->lock);
3419 
3420 	return ret;
3421 }
3422 
3423 CONFIGFS_ATTR(fsg_opts_, stall);
3424 
3425 #ifdef CONFIG_USB_GADGET_DEBUG_FILES
fsg_opts_num_buffers_show(struct config_item * item,char * page)3426 static ssize_t fsg_opts_num_buffers_show(struct config_item *item, char *page)
3427 {
3428 	struct fsg_opts *opts = to_fsg_opts(item);
3429 	int result;
3430 
3431 	mutex_lock(&opts->lock);
3432 	result = sprintf(page, "%d", opts->common->fsg_num_buffers);
3433 	mutex_unlock(&opts->lock);
3434 
3435 	return result;
3436 }
3437 
fsg_opts_num_buffers_store(struct config_item * item,const char * page,size_t len)3438 static ssize_t fsg_opts_num_buffers_store(struct config_item *item,
3439 					  const char *page, size_t len)
3440 {
3441 	struct fsg_opts *opts = to_fsg_opts(item);
3442 	int ret;
3443 	u8 num;
3444 
3445 	mutex_lock(&opts->lock);
3446 	if (opts->refcnt) {
3447 		ret = -EBUSY;
3448 		goto end;
3449 	}
3450 	ret = kstrtou8(page, 0, &num);
3451 	if (ret)
3452 		goto end;
3453 
3454 	ret = fsg_common_set_num_buffers(opts->common, num);
3455 	if (ret)
3456 		goto end;
3457 	ret = len;
3458 
3459 end:
3460 	mutex_unlock(&opts->lock);
3461 	return ret;
3462 }
3463 
3464 CONFIGFS_ATTR(fsg_opts_, num_buffers);
3465 #endif
3466 
3467 static struct configfs_attribute *fsg_attrs[] = {
3468 	&fsg_opts_attr_stall,
3469 #ifdef CONFIG_USB_GADGET_DEBUG_FILES
3470 	&fsg_opts_attr_num_buffers,
3471 #endif
3472 	NULL,
3473 };
3474 
3475 static const struct configfs_group_operations fsg_group_ops = {
3476 	.make_group	= fsg_lun_make,
3477 	.drop_item	= fsg_lun_drop,
3478 };
3479 
3480 static const struct config_item_type fsg_func_type = {
3481 	.ct_item_ops	= &fsg_item_ops,
3482 	.ct_group_ops	= &fsg_group_ops,
3483 	.ct_attrs	= fsg_attrs,
3484 	.ct_owner	= THIS_MODULE,
3485 };
3486 
fsg_free_inst(struct usb_function_instance * fi)3487 static void fsg_free_inst(struct usb_function_instance *fi)
3488 {
3489 	struct fsg_opts *opts;
3490 
3491 	opts = fsg_opts_from_func_inst(fi);
3492 	fsg_common_release(opts->common);
3493 	kfree(opts);
3494 }
3495 
fsg_alloc_inst(void)3496 static struct usb_function_instance *fsg_alloc_inst(void)
3497 {
3498 	struct fsg_opts *opts;
3499 	struct fsg_lun_config config;
3500 	int rc;
3501 
3502 	opts = kzalloc_obj(*opts);
3503 	if (!opts)
3504 		return ERR_PTR(-ENOMEM);
3505 	mutex_init(&opts->lock);
3506 	opts->func_inst.free_func_inst = fsg_free_inst;
3507 	opts->common = fsg_common_setup(opts->common);
3508 	if (IS_ERR(opts->common)) {
3509 		rc = PTR_ERR(opts->common);
3510 		goto release_opts;
3511 	}
3512 
3513 	rc = fsg_common_set_num_buffers(opts->common,
3514 					CONFIG_USB_GADGET_STORAGE_NUM_BUFFERS);
3515 	if (rc)
3516 		goto release_common;
3517 
3518 	memset(&config, 0, sizeof(config));
3519 	config.removable = true;
3520 	rc = fsg_common_create_lun(opts->common, &config, 0, "lun.0",
3521 			(const char **)&opts->func_inst.group.cg_item.ci_name);
3522 	if (rc)
3523 		goto release_buffers;
3524 
3525 	opts->lun0.lun = opts->common->luns[0];
3526 	opts->lun0.lun_id = 0;
3527 
3528 	config_group_init_type_name(&opts->func_inst.group, "", &fsg_func_type);
3529 
3530 	config_group_init_type_name(&opts->lun0.group, "lun.0", &fsg_lun_type);
3531 	configfs_add_default_group(&opts->lun0.group, &opts->func_inst.group);
3532 
3533 	return &opts->func_inst;
3534 
3535 release_buffers:
3536 	fsg_common_free_buffers(opts->common);
3537 release_common:
3538 	kfree(opts->common);
3539 release_opts:
3540 	kfree(opts);
3541 	return ERR_PTR(rc);
3542 }
3543 
fsg_free(struct usb_function * f)3544 static void fsg_free(struct usb_function *f)
3545 {
3546 	struct fsg_dev *fsg;
3547 	struct fsg_opts *opts;
3548 
3549 	fsg = container_of(f, struct fsg_dev, function);
3550 	opts = container_of(f->fi, struct fsg_opts, func_inst);
3551 
3552 	mutex_lock(&opts->lock);
3553 	opts->refcnt--;
3554 	mutex_unlock(&opts->lock);
3555 
3556 	kfree(fsg);
3557 }
3558 
fsg_alloc(struct usb_function_instance * fi)3559 static struct usb_function *fsg_alloc(struct usb_function_instance *fi)
3560 {
3561 	struct fsg_opts *opts = fsg_opts_from_func_inst(fi);
3562 	struct fsg_common *common = opts->common;
3563 	struct fsg_dev *fsg;
3564 
3565 	fsg = kzalloc_obj(*fsg);
3566 	if (unlikely(!fsg))
3567 		return ERR_PTR(-ENOMEM);
3568 
3569 	mutex_lock(&opts->lock);
3570 	opts->refcnt++;
3571 	mutex_unlock(&opts->lock);
3572 
3573 	fsg->function.name	= FSG_DRIVER_DESC;
3574 	fsg->function.bind	= fsg_bind;
3575 	fsg->function.unbind	= fsg_unbind;
3576 	fsg->function.setup	= fsg_setup;
3577 	fsg->function.set_alt	= fsg_set_alt;
3578 	fsg->function.disable	= fsg_disable;
3579 	fsg->function.free_func	= fsg_free;
3580 
3581 	fsg->common               = common;
3582 
3583 	return &fsg->function;
3584 }
3585 
3586 DECLARE_USB_FUNCTION_INIT(mass_storage, fsg_alloc_inst, fsg_alloc);
3587 MODULE_DESCRIPTION("Mass Storage USB Composite Function");
3588 MODULE_LICENSE("GPL");
3589 MODULE_AUTHOR("Michal Nazarewicz");
3590 
3591 /************************* Module parameters *************************/
3592 
3593 
fsg_config_from_params(struct fsg_config * cfg,const struct fsg_module_parameters * params,unsigned int fsg_num_buffers)3594 void fsg_config_from_params(struct fsg_config *cfg,
3595 		       const struct fsg_module_parameters *params,
3596 		       unsigned int fsg_num_buffers)
3597 {
3598 	struct fsg_lun_config *lun;
3599 	unsigned i;
3600 
3601 	/* Configure LUNs */
3602 	cfg->nluns =
3603 		min(params->luns ?: (params->file_count ?: 1u),
3604 		    (unsigned)FSG_MAX_LUNS);
3605 	for (i = 0, lun = cfg->luns; i < cfg->nluns; ++i, ++lun) {
3606 		lun->ro = !!params->ro[i];
3607 		lun->cdrom = !!params->cdrom[i];
3608 		lun->removable = !!params->removable[i];
3609 		lun->filename =
3610 			params->file_count > i && params->file[i][0]
3611 			? params->file[i]
3612 			: NULL;
3613 	}
3614 
3615 	/* Let MSF use defaults */
3616 	cfg->vendor_name = NULL;
3617 	cfg->product_name = NULL;
3618 
3619 	cfg->ops = NULL;
3620 	cfg->private_data = NULL;
3621 
3622 	/* Finalise */
3623 	cfg->can_stall = params->stall;
3624 	cfg->fsg_num_buffers = fsg_num_buffers;
3625 }
3626 EXPORT_SYMBOL_GPL(fsg_config_from_params);
3627