f_mass_storage.c 84.5 KB
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/*
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 * f_mass_storage.c -- Mass Storage USB Composite Function
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 *
 * Copyright (C) 2003-2008 Alan Stern
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 * Copyright (C) 2009 Samsung Electronics
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 *                    Author: Michal Nazarewicz <mina86@mina86.com>
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 * All rights reserved.
 *
 * Redistribution and use in source and binary forms, with or without
 * modification, are permitted provided that the following conditions
 * are met:
 * 1. Redistributions of source code must retain the above copyright
 *    notice, this list of conditions, and the following disclaimer,
 *    without modification.
 * 2. Redistributions in binary form must reproduce the above copyright
 *    notice, this list of conditions and the following disclaimer in the
 *    documentation and/or other materials provided with the distribution.
 * 3. The names of the above-listed copyright holders may not be used
 *    to endorse or promote products derived from this software without
 *    specific prior written permission.
 *
 * ALTERNATIVELY, this software may be distributed under the terms of the
 * GNU General Public License ("GPL") as published by the Free Software
 * Foundation, either version 2 of that License or (at your option) any
 * later version.
 *
 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS
 * IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
 * THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
 * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
 * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
 * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
 * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
 * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
 * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
 * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
 */

/*
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 * The Mass Storage Function acts as a USB Mass Storage device,
 * appearing to the host as a disk drive or as a CD-ROM drive.  In
 * addition to providing an example of a genuinely useful composite
 * function for a USB device, it also illustrates a technique of
 * double-buffering for increased throughput.
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 *
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 * For more information about MSF and in particular its module
 * parameters and sysfs interface read the
 * <Documentation/usb/mass-storage.txt> file.
 */

/*
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 * MSF is configured by specifying a fsg_config structure.  It has the
 * following fields:
 *
 *	nluns		Number of LUNs function have (anywhere from 1
 *				to FSG_MAX_LUNS which is 8).
 *	luns		An array of LUN configuration values.  This
 *				should be filled for each LUN that
 *				function will include (ie. for "nluns"
 *				LUNs).  Each element of the array has
 *				the following fields:
 *	->filename	The path to the backing file for the LUN.
 *				Required if LUN is not marked as
 *				removable.
 *	->ro		Flag specifying access to the LUN shall be
 *				read-only.  This is implied if CD-ROM
 *				emulation is enabled as well as when
 *				it was impossible to open "filename"
 *				in R/W mode.
 *	->removable	Flag specifying that LUN shall be indicated as
 *				being removable.
 *	->cdrom		Flag specifying that LUN shall be reported as
 *				being a CD-ROM.
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 *	->nofua		Flag specifying that FUA flag in SCSI WRITE(10,12)
 *				commands for this LUN shall be ignored.
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 *
 *	vendor_name
 *	product_name
 *	release		Information used as a reply to INQUIRY
 *				request.  To use default set to NULL,
 *				NULL, 0xffff respectively.  The first
 *				field should be 8 and the second 16
 *				characters or less.
 *
 *	can_stall	Set to permit function to halt bulk endpoints.
 *				Disabled on some USB devices known not
 *				to work correctly.  You should set it
 *				to true.
 *
 * If "removable" is not set for a LUN then a backing file must be
 * specified.  If it is set, then NULL filename means the LUN's medium
 * is not loaded (an empty string as "filename" in the fsg_config
 * structure causes error).  The CD-ROM emulation includes a single
 * data track and no audio tracks; hence there need be only one
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 * backing file per LUN.
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 *
 * This function is heavily based on "File-backed Storage Gadget" by
 * Alan Stern which in turn is heavily based on "Gadget Zero" by David
 * Brownell.  The driver's SCSI command interface was based on the
 * "Information technology - Small Computer System Interface - 2"
 * document from X3T9.2 Project 375D, Revision 10L, 7-SEP-93,
 * available at <http://www.t10.org/ftp/t10/drafts/s2/s2-r10l.pdf>.
 * The single exception is opcode 0x23 (READ FORMAT CAPACITIES), which
 * was based on the "Universal Serial Bus Mass Storage Class UFI
 * Command Specification" document, Revision 1.0, December 14, 1998,
 * available at
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 * <http://www.usb.org/developers/devclass_docs/usbmass-ufi10.pdf>.
 */

/*
 *				Driver Design
 *
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 * The MSF is fairly straightforward.  There is a main kernel
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 * thread that handles most of the work.  Interrupt routines field
 * callbacks from the controller driver: bulk- and interrupt-request
 * completion notifications, endpoint-0 events, and disconnect events.
 * Completion events are passed to the main thread by wakeup calls.  Many
 * ep0 requests are handled at interrupt time, but SetInterface,
 * SetConfiguration, and device reset requests are forwarded to the
 * thread in the form of "exceptions" using SIGUSR1 signals (since they
 * should interrupt any ongoing file I/O operations).
 *
 * The thread's main routine implements the standard command/data/status
 * parts of a SCSI interaction.  It and its subroutines are full of tests
 * for pending signals/exceptions -- all this polling is necessary since
 * the kernel has no setjmp/longjmp equivalents.  (Maybe this is an
 * indication that the driver really wants to be running in userspace.)
 * An important point is that so long as the thread is alive it keeps an
 * open reference to the backing file.  This will prevent unmounting
 * the backing file's underlying filesystem and could cause problems
 * during system shutdown, for example.  To prevent such problems, the
 * thread catches INT, TERM, and KILL signals and converts them into
 * an EXIT exception.
 *
 * In normal operation the main thread is started during the gadget's
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 * fsg_bind() callback and stopped during fsg_unbind().  But it can
 * also exit when it receives a signal, and there's no point leaving
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 * the gadget running when the thread is dead.  As of this moment, MSF
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 * provides no way to deregister the gadget when thread dies -- maybe
 * a callback functions is needed.
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 *
 * To provide maximum throughput, the driver uses a circular pipeline of
 * buffer heads (struct fsg_buffhd).  In principle the pipeline can be
 * arbitrarily long; in practice the benefits don't justify having more
 * than 2 stages (i.e., double buffering).  But it helps to think of the
 * pipeline as being a long one.  Each buffer head contains a bulk-in and
 * a bulk-out request pointer (since the buffer can be used for both
 * output and input -- directions always are given from the host's
 * point of view) as well as a pointer to the buffer and various state
 * variables.
 *
 * Use of the pipeline follows a simple protocol.  There is a variable
 * (fsg->next_buffhd_to_fill) that points to the next buffer head to use.
 * At any time that buffer head may still be in use from an earlier
 * request, so each buffer head has a state variable indicating whether
 * it is EMPTY, FULL, or BUSY.  Typical use involves waiting for the
 * buffer head to be EMPTY, filling the buffer either by file I/O or by
 * USB I/O (during which the buffer head is BUSY), and marking the buffer
 * head FULL when the I/O is complete.  Then the buffer will be emptied
 * (again possibly by USB I/O, during which it is marked BUSY) and
 * finally marked EMPTY again (possibly by a completion routine).
 *
 * A module parameter tells the driver to avoid stalling the bulk
 * endpoints wherever the transport specification allows.  This is
 * necessary for some UDCs like the SuperH, which cannot reliably clear a
 * halt on a bulk endpoint.  However, under certain circumstances the
 * Bulk-only specification requires a stall.  In such cases the driver
 * will halt the endpoint and set a flag indicating that it should clear
 * the halt in software during the next device reset.  Hopefully this
 * will permit everything to work correctly.  Furthermore, although the
 * specification allows the bulk-out endpoint to halt when the host sends
 * too much data, implementing this would cause an unavoidable race.
 * The driver will always use the "no-stall" approach for OUT transfers.
 *
 * One subtle point concerns sending status-stage responses for ep0
 * requests.  Some of these requests, such as device reset, can involve
 * interrupting an ongoing file I/O operation, which might take an
 * arbitrarily long time.  During that delay the host might give up on
 * the original ep0 request and issue a new one.  When that happens the
 * driver should not notify the host about completion of the original
 * request, as the host will no longer be waiting for it.  So the driver
 * assigns to each ep0 request a unique tag, and it keeps track of the
 * tag value of the request associated with a long-running exception
 * (device-reset, interface-change, or configuration-change).  When the
 * exception handler is finished, the status-stage response is submitted
 * only if the current ep0 request tag is equal to the exception request
 * tag.  Thus only the most recently received ep0 request will get a
 * status-stage response.
 *
 * Warning: This driver source file is too long.  It ought to be split up
 * into a header file plus about 3 separate .c files, to handle the details
 * of the Gadget, USB Mass Storage, and SCSI protocols.
 */


/* #define VERBOSE_DEBUG */
/* #define DUMP_MSGS */

#include <linux/blkdev.h>
#include <linux/completion.h>
#include <linux/dcache.h>
#include <linux/delay.h>
#include <linux/device.h>
#include <linux/fcntl.h>
#include <linux/file.h>
#include <linux/fs.h>
#include <linux/kref.h>
#include <linux/kthread.h>
#include <linux/limits.h>
#include <linux/rwsem.h>
#include <linux/slab.h>
#include <linux/spinlock.h>
#include <linux/string.h>
#include <linux/freezer.h>

#include <linux/usb/ch9.h>
#include <linux/usb/gadget.h>
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#include <linux/usb/composite.h>
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#include "gadget_chips.h"


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/*------------------------------------------------------------------------*/
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#define FSG_DRIVER_DESC		"Mass Storage Function"
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#define FSG_DRIVER_VERSION	"2009/09/11"
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static const char fsg_string_interface[] = "Mass Storage";

#include "storage_common.c"


/*-------------------------------------------------------------------------*/

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struct fsg_dev;
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struct fsg_common;

/* FSF callback functions */
struct fsg_operations {
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	/*
	 * Callback function to call when thread exits.  If no
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	 * callback is set or it returns value lower then zero MSF
	 * will force eject all LUNs it operates on (including those
	 * marked as non-removable or with prevent_medium_removal flag
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	 * set).
	 */
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	int (*thread_exits)(struct fsg_common *common);
};
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/* Data shared by all the FSG instances. */
struct fsg_common {
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	struct usb_gadget	*gadget;
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	struct usb_composite_dev *cdev;
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	struct fsg_dev		*fsg, *new_fsg;
	wait_queue_head_t	fsg_wait;
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	/* filesem protects: backing files in use */
	struct rw_semaphore	filesem;

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	/* lock protects: state, all the req_busy's */
	spinlock_t		lock;

	struct usb_ep		*ep0;		/* Copy of gadget->ep0 */
	struct usb_request	*ep0req;	/* Copy of cdev->req */
	unsigned int		ep0_req_tag;

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	struct fsg_buffhd	*next_buffhd_to_fill;
	struct fsg_buffhd	*next_buffhd_to_drain;
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	struct fsg_buffhd	*buffhds;
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	int			cmnd_size;
	u8			cmnd[MAX_COMMAND_SIZE];

	unsigned int		nluns;
	unsigned int		lun;
	struct fsg_lun		*luns;
	struct fsg_lun		*curlun;
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	unsigned int		bulk_out_maxpacket;
	enum fsg_state		state;		/* For exception handling */
	unsigned int		exception_req_tag;

	enum data_direction	data_dir;
	u32			data_size;
	u32			data_size_from_cmnd;
	u32			tag;
	u32			residue;
	u32			usb_amount_left;

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	unsigned int		can_stall:1;
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	unsigned int		free_storage_on_release:1;
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	unsigned int		phase_error:1;
	unsigned int		short_packet_received:1;
	unsigned int		bad_lun_okay:1;
	unsigned int		running:1;
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	int			thread_wakeup_needed;
	struct completion	thread_notifier;
	struct task_struct	*thread_task;
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	/* Callback functions. */
	const struct fsg_operations	*ops;
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	/* Gadget's private data. */
	void			*private_data;

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	/*
	 * Vendor (8 chars), product (16 chars), release (4
	 * hexadecimal digits) and NUL byte
	 */
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	char inquiry_string[8 + 16 + 4 + 1];

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	struct kref		ref;
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};

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struct fsg_config {
	unsigned nluns;
	struct fsg_lun_config {
		const char *filename;
		char ro;
		char removable;
		char cdrom;
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		char nofua;
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	} luns[FSG_MAX_LUNS];

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	/* Callback functions. */
	const struct fsg_operations	*ops;
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	/* Gadget's private data. */
	void			*private_data;

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	const char *vendor_name;		/*  8 characters or less */
	const char *product_name;		/* 16 characters or less */

	char			can_stall;
};

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struct fsg_dev {
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	struct usb_function	function;
	struct usb_gadget	*gadget;	/* Copy of cdev->gadget */
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	struct fsg_common	*common;

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	u16			interface_number;

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	unsigned int		bulk_in_enabled:1;
	unsigned int		bulk_out_enabled:1;
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	unsigned long		atomic_bitflags;
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#define IGNORE_BULK_OUT		0
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	struct usb_ep		*bulk_in;
	struct usb_ep		*bulk_out;
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};
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static inline int __fsg_is_set(struct fsg_common *common,
			       const char *func, unsigned line)
{
	if (common->fsg)
		return 1;
	ERROR(common, "common->fsg is NULL in %s at %u\n", func, line);
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	WARN_ON(1);
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	return 0;
}

#define fsg_is_set(common) likely(__fsg_is_set(common, __func__, __LINE__))
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static inline struct fsg_dev *fsg_from_func(struct usb_function *f)
{
	return container_of(f, struct fsg_dev, function);
}

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typedef void (*fsg_routine_t)(struct fsg_dev *);

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static int exception_in_progress(struct fsg_common *common)
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{
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	return common->state > FSG_STATE_IDLE;
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}

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/* Make bulk-out requests be divisible by the maxpacket size */
static void set_bulk_out_req_length(struct fsg_common *common,
				    struct fsg_buffhd *bh, unsigned int length)
{
	unsigned int	rem;

	bh->bulk_out_intended_length = length;
	rem = length % common->bulk_out_maxpacket;
	if (rem > 0)
		length += common->bulk_out_maxpacket - rem;
	bh->outreq->length = length;
}


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/*-------------------------------------------------------------------------*/

static int fsg_set_halt(struct fsg_dev *fsg, struct usb_ep *ep)
{
	const char	*name;

	if (ep == fsg->bulk_in)
		name = "bulk-in";
	else if (ep == fsg->bulk_out)
		name = "bulk-out";
	else
		name = ep->name;
	DBG(fsg, "%s set halt\n", name);
	return usb_ep_set_halt(ep);
}


/*-------------------------------------------------------------------------*/

/* These routines may be called in process context or in_irq */

/* Caller must hold fsg->lock */
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static void wakeup_thread(struct fsg_common *common)
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{
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	smp_wmb();	/* ensure the write of bh->state is complete */
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	/* Tell the main thread that something has happened */
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	common->thread_wakeup_needed = 1;
	if (common->thread_task)
		wake_up_process(common->thread_task);
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}

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static void raise_exception(struct fsg_common *common, enum fsg_state new_state)
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{
	unsigned long		flags;

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	/*
	 * Do nothing if a higher-priority exception is already in progress.
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	 * If a lower-or-equal priority exception is in progress, preempt it
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	 * and notify the main thread by sending it a signal.
	 */
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	spin_lock_irqsave(&common->lock, flags);
	if (common->state <= new_state) {
		common->exception_req_tag = common->ep0_req_tag;
		common->state = new_state;
		if (common->thread_task)
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			send_sig_info(SIGUSR1, SEND_SIG_FORCED,
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				      common->thread_task);
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	}
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	spin_unlock_irqrestore(&common->lock, flags);
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}


/*-------------------------------------------------------------------------*/

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static int ep0_queue(struct fsg_common *common)
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{
	int	rc;

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	rc = usb_ep_queue(common->ep0, common->ep0req, GFP_ATOMIC);
	common->ep0->driver_data = common;
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	if (rc != 0 && rc != -ESHUTDOWN) {
		/* We can't do much more than wait for a reset */
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		WARNING(common, "error in submission: %s --> %d\n",
			common->ep0->name, rc);
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	}
	return rc;
}

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/*-------------------------------------------------------------------------*/

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/* Completion handlers. These always run in_irq. */
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static void bulk_in_complete(struct usb_ep *ep, struct usb_request *req)
{
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	struct fsg_common	*common = ep->driver_data;
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	struct fsg_buffhd	*bh = req->context;

	if (req->status || req->actual != req->length)
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		DBG(common, "%s --> %d, %u/%u\n", __func__,
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		    req->status, req->actual, req->length);
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	if (req->status == -ECONNRESET)		/* Request was cancelled */
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		usb_ep_fifo_flush(ep);

	/* Hold the lock while we update the request and buffer states */
	smp_wmb();
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	spin_lock(&common->lock);
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	bh->inreq_busy = 0;
	bh->state = BUF_STATE_EMPTY;
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	wakeup_thread(common);
	spin_unlock(&common->lock);
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}

static void bulk_out_complete(struct usb_ep *ep, struct usb_request *req)
{
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	struct fsg_common	*common = ep->driver_data;
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	struct fsg_buffhd	*bh = req->context;

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	dump_msg(common, "bulk-out", req->buf, req->actual);
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	if (req->status || req->actual != bh->bulk_out_intended_length)
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		DBG(common, "%s --> %d, %u/%u\n", __func__,
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		    req->status, req->actual, bh->bulk_out_intended_length);
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	if (req->status == -ECONNRESET)		/* Request was cancelled */
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		usb_ep_fifo_flush(ep);

	/* Hold the lock while we update the request and buffer states */
	smp_wmb();
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	spin_lock(&common->lock);
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	bh->outreq_busy = 0;
	bh->state = BUF_STATE_FULL;
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	wakeup_thread(common);
	spin_unlock(&common->lock);
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}

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static int fsg_setup(struct usb_function *f,
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		     const struct usb_ctrlrequest *ctrl)
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{
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	struct fsg_dev		*fsg = fsg_from_func(f);
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	struct usb_request	*req = fsg->common->ep0req;
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	u16			w_index = le16_to_cpu(ctrl->wIndex);
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	u16			w_value = le16_to_cpu(ctrl->wValue);
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	u16			w_length = le16_to_cpu(ctrl->wLength);

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	if (!fsg_is_set(fsg->common))
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		return -EOPNOTSUPP;
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	++fsg->common->ep0_req_tag;	/* Record arrival of a new request */
	req->context = NULL;
	req->length = 0;
	dump_msg(fsg, "ep0-setup", (u8 *) ctrl, sizeof(*ctrl));

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	switch (ctrl->bRequest) {
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	case US_BULK_RESET_REQUEST:
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		if (ctrl->bRequestType !=
		    (USB_DIR_OUT | USB_TYPE_CLASS | USB_RECIP_INTERFACE))
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			break;
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		if (w_index != fsg->interface_number || w_value != 0 ||
				w_length != 0)
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			return -EDOM;
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		/*
		 * Raise an exception to stop the current operation
		 * and reinitialize our state.
		 */
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		DBG(fsg, "bulk reset request\n");
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		raise_exception(fsg->common, FSG_STATE_RESET);
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		return DELAYED_STATUS;
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	case US_BULK_GET_MAX_LUN:
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		if (ctrl->bRequestType !=
		    (USB_DIR_IN | USB_TYPE_CLASS | USB_RECIP_INTERFACE))
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			break;
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		if (w_index != fsg->interface_number || w_value != 0 ||
				w_length != 1)
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			return -EDOM;
		VDBG(fsg, "get max LUN\n");
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		*(u8 *)req->buf = fsg->common->nluns - 1;
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		/* Respond with data/status */
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		req->length = min((u16)1, w_length);
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		return ep0_queue(fsg->common);
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	}

	VDBG(fsg,
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	     "unknown class-specific control req %02x.%02x v%04x i%04x l%u\n",
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	     ctrl->bRequestType, ctrl->bRequest,
	     le16_to_cpu(ctrl->wValue), w_index, w_length);
	return -EOPNOTSUPP;
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}


/*-------------------------------------------------------------------------*/

/* All the following routines run in process context */

/* Use this for bulk or interrupt transfers, not ep0 */
static void start_transfer(struct fsg_dev *fsg, struct usb_ep *ep,
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			   struct usb_request *req, int *pbusy,
			   enum fsg_buffer_state *state)
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{
	int	rc;

	if (ep == fsg->bulk_in)
		dump_msg(fsg, "bulk-in", req->buf, req->length);

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	spin_lock_irq(&fsg->common->lock);
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	*pbusy = 1;
	*state = BUF_STATE_BUSY;
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	spin_unlock_irq(&fsg->common->lock);
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	rc = usb_ep_queue(ep, req, GFP_KERNEL);
	if (rc != 0) {
		*pbusy = 0;
		*state = BUF_STATE_EMPTY;

		/* We can't do much more than wait for a reset */

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		/*
		 * Note: currently the net2280 driver fails zero-length
		 * submissions if DMA is enabled.
		 */
		if (rc != -ESHUTDOWN &&
		    !(rc == -EOPNOTSUPP && req->length == 0))
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			WARNING(fsg, "error in submission: %s --> %d\n",
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				ep->name, rc);
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	}
}

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static bool start_in_transfer(struct fsg_common *common, struct fsg_buffhd *bh)
{
	if (!fsg_is_set(common))
		return false;
	start_transfer(common->fsg, common->fsg->bulk_in,
		       bh->inreq, &bh->inreq_busy, &bh->state);
	return true;
}
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static bool start_out_transfer(struct fsg_common *common, struct fsg_buffhd *bh)
{
	if (!fsg_is_set(common))
		return false;
	start_transfer(common->fsg, common->fsg->bulk_out,
		       bh->outreq, &bh->outreq_busy, &bh->state);
	return true;
}
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618
static int sleep_thread(struct fsg_common *common)
619 620 621 622 623 624 625 626 627 628 629
{
	int	rc = 0;

	/* Wait until a signal arrives or we are woken up */
	for (;;) {
		try_to_freeze();
		set_current_state(TASK_INTERRUPTIBLE);
		if (signal_pending(current)) {
			rc = -EINTR;
			break;
		}
630
		if (common->thread_wakeup_needed)
631 632 633 634
			break;
		schedule();
	}
	__set_current_state(TASK_RUNNING);
635
	common->thread_wakeup_needed = 0;
636
	smp_rmb();	/* ensure the latest bh->state is visible */
637 638 639 640 641 642
	return rc;
}


/*-------------------------------------------------------------------------*/

643
static int do_read(struct fsg_common *common)
644
{
645
	struct fsg_lun		*curlun = common->curlun;
646 647 648 649 650 651 652 653
	u32			lba;
	struct fsg_buffhd	*bh;
	int			rc;
	u32			amount_left;
	loff_t			file_offset, file_offset_tmp;
	unsigned int		amount;
	ssize_t			nread;

654 655 656 657
	/*
	 * Get the starting Logical Block Address and check that it's
	 * not too big.
	 */
658
	if (common->cmnd[0] == READ_6)
659
		lba = get_unaligned_be24(&common->cmnd[1]);
660
	else {
661
		lba = get_unaligned_be32(&common->cmnd[2]);
662

663 664
		/*
		 * We allow DPO (Disable Page Out = don't save data in the
665
		 * cache) and FUA (Force Unit Access = don't read from the
666 667
		 * cache), but we don't implement them.
		 */
668
		if ((common->cmnd[1] & ~0x18) != 0) {
669 670 671 672 673 674 675 676
			curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
			return -EINVAL;
		}
	}
	if (lba >= curlun->num_sectors) {
		curlun->sense_data = SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
		return -EINVAL;
	}
677
	file_offset = ((loff_t) lba) << curlun->blkbits;
678 679

	/* Carry out the file reads */
680
	amount_left = common->data_size_from_cmnd;
681
	if (unlikely(amount_left == 0))
682
		return -EIO;		/* No default reply */
683 684

	for (;;) {
685 686
		/*
		 * Figure out how much we need to read:
687 688 689
		 * Try to read the remaining amount.
		 * But don't read more than the buffer size.
		 * And don't try to read past the end of the file.
690
		 */
691
		amount = min(amount_left, FSG_BUFLEN);
692 693
		amount = min((loff_t)amount,
			     curlun->file_length - file_offset);
694 695

		/* Wait for the next buffer to become available */
696
		bh = common->next_buffhd_to_fill;
697
		while (bh->state != BUF_STATE_EMPTY) {
698
			rc = sleep_thread(common);
699 700 701 702
			if (rc)
				return rc;
		}

703 704 705 706
		/*
		 * If we were asked to read past the end of file,
		 * end with an empty buffer.
		 */
707 708 709
		if (amount == 0) {
			curlun->sense_data =
					SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
710 711
			curlun->sense_data_info =
					file_offset >> curlun->blkbits;
712 713 714 715 716 717 718 719 720
			curlun->info_valid = 1;
			bh->inreq->length = 0;
			bh->state = BUF_STATE_FULL;
			break;
		}

		/* Perform the read */
		file_offset_tmp = file_offset;
		nread = vfs_read(curlun->filp,
721 722
				 (char __user *)bh->buf,
				 amount, &file_offset_tmp);
723
		VLDBG(curlun, "file read %u @ %llu -> %d\n", amount,
724
		      (unsigned long long)file_offset, (int)nread);
725 726 727 728
		if (signal_pending(current))
			return -EINTR;

		if (nread < 0) {
729
			LDBG(curlun, "error in file read: %d\n", (int)nread);
730 731 732
			nread = 0;
		} else if (nread < amount) {
			LDBG(curlun, "partial file read: %d/%u\n",
733
			     (int)nread, amount);
734
			nread = round_down(nread, curlun->blksize);
735 736 737
		}
		file_offset  += nread;
		amount_left  -= nread;
738
		common->residue -= nread;
739 740 741 742 743 744

		/*
		 * Except at the end of the transfer, nread will be
		 * equal to the buffer size, which is divisible by the
		 * bulk-in maxpacket size.
		 */
745 746 747 748 749 750
		bh->inreq->length = nread;
		bh->state = BUF_STATE_FULL;

		/* If an error occurred, report it and its position */
		if (nread < amount) {
			curlun->sense_data = SS_UNRECOVERED_READ_ERROR;
751 752
			curlun->sense_data_info =
					file_offset >> curlun->blkbits;
753 754 755 756 757
			curlun->info_valid = 1;
			break;
		}

		if (amount_left == 0)
758
			break;		/* No more left to read */
759 760 761

		/* Send this buffer and go read some more */
		bh->inreq->zero = 0;
762 763
		if (!start_in_transfer(common, bh))
			/* Don't know what to do if common->fsg is NULL */
764 765
			return -EIO;
		common->next_buffhd_to_fill = bh->next;
766 767
	}

768
	return -EIO;		/* No default reply */
769 770 771 772 773
}


/*-------------------------------------------------------------------------*/

774
static int do_write(struct fsg_common *common)
775
{
776
	struct fsg_lun		*curlun = common->curlun;
777 778 779 780 781 782 783 784 785 786 787 788 789 790
	u32			lba;
	struct fsg_buffhd	*bh;
	int			get_some_more;
	u32			amount_left_to_req, amount_left_to_write;
	loff_t			usb_offset, file_offset, file_offset_tmp;
	unsigned int		amount;
	ssize_t			nwritten;
	int			rc;

	if (curlun->ro) {
		curlun->sense_data = SS_WRITE_PROTECTED;
		return -EINVAL;
	}
	spin_lock(&curlun->filp->f_lock);
791
	curlun->filp->f_flags &= ~O_SYNC;	/* Default is not to wait */
792 793
	spin_unlock(&curlun->filp->f_lock);

794 795 796 797
	/*
	 * Get the starting Logical Block Address and check that it's
	 * not too big
	 */
798
	if (common->cmnd[0] == WRITE_6)
799
		lba = get_unaligned_be24(&common->cmnd[1]);
800
	else {
801
		lba = get_unaligned_be32(&common->cmnd[2]);
802

803 804
		/*
		 * We allow DPO (Disable Page Out = don't save data in the
805 806
		 * cache) and FUA (Force Unit Access = write directly to the
		 * medium).  We don't implement DPO; we implement FUA by
807 808
		 * performing synchronous output.
		 */
809
		if (common->cmnd[1] & ~0x18) {
810 811 812
			curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
			return -EINVAL;
		}
813
		if (!curlun->nofua && (common->cmnd[1] & 0x08)) { /* FUA */
814 815 816 817 818 819 820 821 822 823 824 825
			spin_lock(&curlun->filp->f_lock);
			curlun->filp->f_flags |= O_SYNC;
			spin_unlock(&curlun->filp->f_lock);
		}
	}
	if (lba >= curlun->num_sectors) {
		curlun->sense_data = SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
		return -EINVAL;
	}

	/* Carry out the file writes */
	get_some_more = 1;
826
	file_offset = usb_offset = ((loff_t) lba) << curlun->blkbits;
827 828
	amount_left_to_req = common->data_size_from_cmnd;
	amount_left_to_write = common->data_size_from_cmnd;
829 830 831 832

	while (amount_left_to_write > 0) {

		/* Queue a request for more data from the host */
833
		bh = common->next_buffhd_to_fill;
834 835
		if (bh->state == BUF_STATE_EMPTY && get_some_more) {

836 837
			/*
			 * Figure out how much we want to get:
838 839
			 * Try to get the remaining amount,
			 * but not more than the buffer size.
840
			 */
841
			amount = min(amount_left_to_req, FSG_BUFLEN);
842 843 844

			/* Beyond the end of the backing file? */
			if (usb_offset >= curlun->file_length) {
845 846 847
				get_some_more = 0;
				curlun->sense_data =
					SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
848 849
				curlun->sense_data_info =
					usb_offset >> curlun->blkbits;
850 851 852 853 854 855
				curlun->info_valid = 1;
				continue;
			}

			/* Get the next buffer */
			usb_offset += amount;
856
			common->usb_amount_left -= amount;
857 858 859 860
			amount_left_to_req -= amount;
			if (amount_left_to_req == 0)
				get_some_more = 0;

861
			/*
862 863 864
			 * Except at the end of the transfer, amount will be
			 * equal to the buffer size, which is divisible by
			 * the bulk-out maxpacket size.
865
			 */
866
			set_bulk_out_req_length(common, bh, amount);
867
			if (!start_out_transfer(common, bh))
868
				/* Dunno what to do if common->fsg is NULL */
869 870
				return -EIO;
			common->next_buffhd_to_fill = bh->next;
871 872 873 874
			continue;
		}

		/* Write the received data to the backing file */
875
		bh = common->next_buffhd_to_drain;
876
		if (bh->state == BUF_STATE_EMPTY && !get_some_more)
877
			break;			/* We stopped early */
878 879
		if (bh->state == BUF_STATE_FULL) {
			smp_rmb();
880
			common->next_buffhd_to_drain = bh->next;
881 882 883 884 885
			bh->state = BUF_STATE_EMPTY;

			/* Did something go wrong with the transfer? */
			if (bh->outreq->status != 0) {
				curlun->sense_data = SS_COMMUNICATION_FAILURE;
886 887
				curlun->sense_data_info =
					file_offset >> curlun->blkbits;
888 889 890 891 892 893 894
				curlun->info_valid = 1;
				break;
			}

			amount = bh->outreq->actual;
			if (curlun->file_length - file_offset < amount) {
				LERROR(curlun,
895 896 897
				       "write %u @ %llu beyond end %llu\n",
				       amount, (unsigned long long)file_offset,
				       (unsigned long long)curlun->file_length);
898 899 900
				amount = curlun->file_length - file_offset;
			}

901 902 903 904 905
			/* Don't accept excess data.  The spec doesn't say
			 * what to do in this case.  We'll ignore the error.
			 */
			amount = min(amount, bh->bulk_out_intended_length);

906 907 908 909 910
			/* Don't write a partial block */
			amount = round_down(amount, curlun->blksize);
			if (amount == 0)
				goto empty_write;

911 912 913
			/* Perform the write */
			file_offset_tmp = file_offset;
			nwritten = vfs_write(curlun->filp,
914 915
					     (char __user *)bh->buf,
					     amount, &file_offset_tmp);
916
			VLDBG(curlun, "file write %u @ %llu -> %d\n", amount,
917
			      (unsigned long long)file_offset, (int)nwritten);
918
			if (signal_pending(current))
919
				return -EINTR;		/* Interrupted! */
920 921 922

			if (nwritten < 0) {
				LDBG(curlun, "error in file write: %d\n",
923
				     (int)nwritten);
924 925 926
				nwritten = 0;
			} else if (nwritten < amount) {
				LDBG(curlun, "partial file write: %d/%u\n",
927
				     (int)nwritten, amount);
928
				nwritten = round_down(nwritten, curlun->blksize);
929 930 931
			}
			file_offset += nwritten;
			amount_left_to_write -= nwritten;
932
			common->residue -= nwritten;
933 934 935 936

			/* If an error occurred, report it and its position */
			if (nwritten < amount) {
				curlun->sense_data = SS_WRITE_ERROR;
937 938
				curlun->sense_data_info =
					file_offset >> curlun->blkbits;
939 940 941 942
				curlun->info_valid = 1;
				break;
			}

943
 empty_write:
944
			/* Did the host decide to stop early? */
945
			if (bh->outreq->actual < bh->bulk_out_intended_length) {
946
				common->short_packet_received = 1;
947 948 949 950 951 952
				break;
			}
			continue;
		}

		/* Wait for something to happen */
953
		rc = sleep_thread(common);
954 955 956 957
		if (rc)
			return rc;
	}

958
	return -EIO;		/* No default reply */
959 960 961 962 963
}


/*-------------------------------------------------------------------------*/

964
static int do_synchronize_cache(struct fsg_common *common)
965
{
966
	struct fsg_lun	*curlun = common->curlun;
967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982
	int		rc;

	/* We ignore the requested LBA and write out all file's
	 * dirty data buffers. */
	rc = fsg_lun_fsync_sub(curlun);
	if (rc)
		curlun->sense_data = SS_WRITE_ERROR;
	return 0;
}


/*-------------------------------------------------------------------------*/

static void invalidate_sub(struct fsg_lun *curlun)
{
	struct file	*filp = curlun->filp;
A
Al Viro 已提交
983
	struct inode	*inode = file_inode(filp);
984 985 986
	unsigned long	rc;

	rc = invalidate_mapping_pages(inode->i_mapping, 0, -1);
987
	VLDBG(curlun, "invalidate_mapping_pages -> %ld\n", rc);
988 989
}

990
static int do_verify(struct fsg_common *common)
991
{
992
	struct fsg_lun		*curlun = common->curlun;
993 994
	u32			lba;
	u32			verification_length;
995
	struct fsg_buffhd	*bh = common->next_buffhd_to_fill;
996 997 998 999 1000
	loff_t			file_offset, file_offset_tmp;
	u32			amount_left;
	unsigned int		amount;
	ssize_t			nread;

1001 1002 1003 1004
	/*
	 * Get the starting Logical Block Address and check that it's
	 * not too big.
	 */
1005
	lba = get_unaligned_be32(&common->cmnd[2]);
1006 1007 1008 1009 1010
	if (lba >= curlun->num_sectors) {
		curlun->sense_data = SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
		return -EINVAL;
	}

1011 1012 1013 1014
	/*
	 * We allow DPO (Disable Page Out = don't save data in the
	 * cache) but we don't implement it.
	 */
1015
	if (common->cmnd[1] & ~0x10) {
1016 1017 1018 1019
		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
		return -EINVAL;
	}

1020
	verification_length = get_unaligned_be16(&common->cmnd[7]);
1021
	if (unlikely(verification_length == 0))
1022
		return -EIO;		/* No default reply */
1023 1024

	/* Prepare to carry out the file verify */
1025 1026
	amount_left = verification_length << curlun->blkbits;
	file_offset = ((loff_t) lba) << curlun->blkbits;
1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038

	/* Write out all the dirty buffers before invalidating them */
	fsg_lun_fsync_sub(curlun);
	if (signal_pending(current))
		return -EINTR;

	invalidate_sub(curlun);
	if (signal_pending(current))
		return -EINTR;

	/* Just try to read the requested blocks */
	while (amount_left > 0) {
1039 1040
		/*
		 * Figure out how much we need to read:
1041 1042 1043
		 * Try to read the remaining amount, but not more than
		 * the buffer size.
		 * And don't try to read past the end of the file.
1044
		 */
1045
		amount = min(amount_left, FSG_BUFLEN);
1046 1047
		amount = min((loff_t)amount,
			     curlun->file_length - file_offset);
1048 1049 1050
		if (amount == 0) {
			curlun->sense_data =
					SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
1051 1052
			curlun->sense_data_info =
				file_offset >> curlun->blkbits;
1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068
			curlun->info_valid = 1;
			break;
		}

		/* Perform the read */
		file_offset_tmp = file_offset;
		nread = vfs_read(curlun->filp,
				(char __user *) bh->buf,
				amount, &file_offset_tmp);
		VLDBG(curlun, "file read %u @ %llu -> %d\n", amount,
				(unsigned long long) file_offset,
				(int) nread);
		if (signal_pending(current))
			return -EINTR;

		if (nread < 0) {
1069
			LDBG(curlun, "error in file verify: %d\n", (int)nread);
1070 1071 1072
			nread = 0;
		} else if (nread < amount) {
			LDBG(curlun, "partial file verify: %d/%u\n",
1073
			     (int)nread, amount);
1074
			nread = round_down(nread, curlun->blksize);
1075 1076 1077
		}
		if (nread == 0) {
			curlun->sense_data = SS_UNRECOVERED_READ_ERROR;
1078 1079
			curlun->sense_data_info =
				file_offset >> curlun->blkbits;
1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091
			curlun->info_valid = 1;
			break;
		}
		file_offset += nread;
		amount_left -= nread;
	}
	return 0;
}


/*-------------------------------------------------------------------------*/

1092
static int do_inquiry(struct fsg_common *common, struct fsg_buffhd *bh)
1093
{
1094
	struct fsg_lun *curlun = common->curlun;
1095 1096
	u8	*buf = (u8 *) bh->buf;

1097
	if (!curlun) {		/* Unsupported LUNs are okay */
1098
		common->bad_lun_okay = 1;
1099
		memset(buf, 0, 36);
1100 1101
		buf[0] = 0x7f;		/* Unsupported, no device-type */
		buf[4] = 31;		/* Additional length */
1102 1103 1104
		return 36;
	}

1105
	buf[0] = curlun->cdrom ? TYPE_ROM : TYPE_DISK;
1106
	buf[1] = curlun->removable ? 0x80 : 0;
1107 1108 1109 1110
	buf[2] = 2;		/* ANSI SCSI level 2 */
	buf[3] = 2;		/* SCSI-2 INQUIRY data format */
	buf[4] = 31;		/* Additional length */
	buf[5] = 0;		/* No special options */
1111 1112
	buf[6] = 0;
	buf[7] = 0;
1113
	memcpy(buf + 8, common->inquiry_string, sizeof common->inquiry_string);
1114 1115 1116
	return 36;
}

1117
static int do_request_sense(struct fsg_common *common, struct fsg_buffhd *bh)
1118
{
1119
	struct fsg_lun	*curlun = common->curlun;
1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145
	u8		*buf = (u8 *) bh->buf;
	u32		sd, sdinfo;
	int		valid;

	/*
	 * From the SCSI-2 spec., section 7.9 (Unit attention condition):
	 *
	 * If a REQUEST SENSE command is received from an initiator
	 * with a pending unit attention condition (before the target
	 * generates the contingent allegiance condition), then the
	 * target shall either:
	 *   a) report any pending sense data and preserve the unit
	 *	attention condition on the logical unit, or,
	 *   b) report the unit attention condition, may discard any
	 *	pending sense data, and clear the unit attention
	 *	condition on the logical unit for that initiator.
	 *
	 * FSG normally uses option a); enable this code to use option b).
	 */
#if 0
	if (curlun && curlun->unit_attention_data != SS_NO_SENSE) {
		curlun->sense_data = curlun->unit_attention_data;
		curlun->unit_attention_data = SS_NO_SENSE;
	}
#endif

1146
	if (!curlun) {		/* Unsupported LUNs are okay */
1147
		common->bad_lun_okay = 1;
1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160
		sd = SS_LOGICAL_UNIT_NOT_SUPPORTED;
		sdinfo = 0;
		valid = 0;
	} else {
		sd = curlun->sense_data;
		sdinfo = curlun->sense_data_info;
		valid = curlun->info_valid << 7;
		curlun->sense_data = SS_NO_SENSE;
		curlun->sense_data_info = 0;
		curlun->info_valid = 0;
	}

	memset(buf, 0, 18);
1161
	buf[0] = valid | 0x70;			/* Valid, current error */
1162 1163
	buf[2] = SK(sd);
	put_unaligned_be32(sdinfo, &buf[3]);	/* Sense information */
1164
	buf[7] = 18 - 8;			/* Additional sense length */
1165 1166 1167 1168 1169
	buf[12] = ASC(sd);
	buf[13] = ASCQ(sd);
	return 18;
}

1170
static int do_read_capacity(struct fsg_common *common, struct fsg_buffhd *bh)
1171
{
1172 1173 1174
	struct fsg_lun	*curlun = common->curlun;
	u32		lba = get_unaligned_be32(&common->cmnd[2]);
	int		pmi = common->cmnd[8];
1175
	u8		*buf = (u8 *)bh->buf;
1176 1177 1178 1179 1180 1181 1182 1183 1184

	/* Check the PMI and LBA fields */
	if (pmi > 1 || (pmi == 0 && lba != 0)) {
		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
		return -EINVAL;
	}

	put_unaligned_be32(curlun->num_sectors - 1, &buf[0]);
						/* Max logical block */
1185
	put_unaligned_be32(curlun->blksize, &buf[4]);/* Block length */
1186 1187 1188
	return 8;
}

1189
static int do_read_header(struct fsg_common *common, struct fsg_buffhd *bh)
1190
{
1191 1192 1193
	struct fsg_lun	*curlun = common->curlun;
	int		msf = common->cmnd[1] & 0x02;
	u32		lba = get_unaligned_be32(&common->cmnd[2]);
1194
	u8		*buf = (u8 *)bh->buf;
1195

1196
	if (common->cmnd[1] & ~0x02) {		/* Mask away MSF */
1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210
		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
		return -EINVAL;
	}
	if (lba >= curlun->num_sectors) {
		curlun->sense_data = SS_LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
		return -EINVAL;
	}

	memset(buf, 0, 8);
	buf[0] = 0x01;		/* 2048 bytes of user data, rest is EC */
	store_cdrom_address(&buf[4], msf, lba);
	return 8;
}

1211
static int do_read_toc(struct fsg_common *common, struct fsg_buffhd *bh)
1212
{
1213 1214 1215
	struct fsg_lun	*curlun = common->curlun;
	int		msf = common->cmnd[1] & 0x02;
	int		start_track = common->cmnd[6];
1216
	u8		*buf = (u8 *)bh->buf;
1217

1218
	if ((common->cmnd[1] & ~0x02) != 0 ||	/* Mask away MSF */
1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237
			start_track > 1) {
		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
		return -EINVAL;
	}

	memset(buf, 0, 20);
	buf[1] = (20-2);		/* TOC data length */
	buf[2] = 1;			/* First track number */
	buf[3] = 1;			/* Last track number */
	buf[5] = 0x16;			/* Data track, copying allowed */
	buf[6] = 0x01;			/* Only track is number 1 */
	store_cdrom_address(&buf[8], msf, 0);

	buf[13] = 0x16;			/* Lead-out track is data */
	buf[14] = 0xAA;			/* Lead-out track number */
	store_cdrom_address(&buf[16], msf, curlun->num_sectors);
	return 20;
}

1238
static int do_mode_sense(struct fsg_common *common, struct fsg_buffhd *bh)
1239
{
1240 1241
	struct fsg_lun	*curlun = common->curlun;
	int		mscmnd = common->cmnd[0];
1242 1243 1244 1245 1246 1247 1248
	u8		*buf = (u8 *) bh->buf;
	u8		*buf0 = buf;
	int		pc, page_code;
	int		changeable_values, all_pages;
	int		valid_page = 0;
	int		len, limit;

1249
	if ((common->cmnd[1] & ~0x08) != 0) {	/* Mask away DBD */
1250 1251 1252
		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
		return -EINVAL;
	}
1253 1254
	pc = common->cmnd[2] >> 6;
	page_code = common->cmnd[2] & 0x3f;
1255 1256 1257 1258 1259 1260 1261
	if (pc == 3) {
		curlun->sense_data = SS_SAVING_PARAMETERS_NOT_SUPPORTED;
		return -EINVAL;
	}
	changeable_values = (pc == 1);
	all_pages = (page_code == 0x3f);

1262 1263
	/*
	 * Write the mode parameter header.  Fixed values are: default
1264 1265
	 * medium type, no cache control (DPOFUA), and no block descriptors.
	 * The only variable value is the WriteProtect bit.  We will fill in
1266 1267
	 * the mode data length later.
	 */
1268
	memset(buf, 0, 8);
1269
	if (mscmnd == MODE_SENSE) {
1270
		buf[2] = (curlun->ro ? 0x80 : 0x00);		/* WP, DPOFUA */
1271 1272
		buf += 4;
		limit = 255;
1273
	} else {			/* MODE_SENSE_10 */
1274
		buf[3] = (curlun->ro ? 0x80 : 0x00);		/* WP, DPOFUA */
1275
		buf += 8;
1276
		limit = 65535;		/* Should really be FSG_BUFLEN */
1277 1278 1279 1280
	}

	/* No block descriptors */

1281 1282 1283 1284
	/*
	 * The mode pages, in numerical order.  The only page we support
	 * is the Caching page.
	 */
1285 1286
	if (page_code == 0x08 || all_pages) {
		valid_page = 1;
1287 1288 1289
		buf[0] = 0x08;		/* Page code */
		buf[1] = 10;		/* Page length */
		memset(buf+2, 0, 10);	/* None of the fields are changeable */
1290 1291

		if (!changeable_values) {
1292 1293 1294
			buf[2] = 0x04;	/* Write cache enable, */
					/* Read cache not disabled */
					/* No cache retention priorities */
1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305
			put_unaligned_be16(0xffff, &buf[4]);
					/* Don't disable prefetch */
					/* Minimum prefetch = 0 */
			put_unaligned_be16(0xffff, &buf[8]);
					/* Maximum prefetch */
			put_unaligned_be16(0xffff, &buf[10]);
					/* Maximum prefetch ceiling */
		}
		buf += 12;
	}

1306 1307 1308 1309
	/*
	 * Check that a valid page was requested and the mode data length
	 * isn't too long.
	 */
1310 1311 1312 1313 1314 1315 1316
	len = buf - buf0;
	if (!valid_page || len > limit) {
		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
		return -EINVAL;
	}

	/*  Store the mode data length */
1317
	if (mscmnd == MODE_SENSE)
1318 1319 1320 1321 1322 1323
		buf0[0] = len - 1;
	else
		put_unaligned_be16(len - 2, buf0);
	return len;
}

1324
static int do_start_stop(struct fsg_common *common)
1325
{
1326 1327 1328 1329
	struct fsg_lun	*curlun = common->curlun;
	int		loej, start;

	if (!curlun) {
1330
		return -EINVAL;
1331 1332
	} else if (!curlun->removable) {
		curlun->sense_data = SS_INVALID_COMMAND;
1333
		return -EINVAL;
1334 1335
	} else if ((common->cmnd[1] & ~0x01) != 0 || /* Mask away Immed */
		   (common->cmnd[4] & ~0x03) != 0) { /* Mask LoEj, Start */
1336 1337 1338 1339
		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
		return -EINVAL;
	}

1340 1341
	loej  = common->cmnd[4] & 0x02;
	start = common->cmnd[4] & 0x01;
1342

1343 1344 1345 1346
	/*
	 * Our emulation doesn't support mounting; the medium is
	 * available for use as soon as it is loaded.
	 */
1347
	if (start) {
1348 1349 1350 1351
		if (!fsg_lun_is_open(curlun)) {
			curlun->sense_data = SS_MEDIUM_NOT_PRESENT;
			return -EINVAL;
		}
1352
		return 0;
1353
	}
1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370

	/* Are we allowed to unload the media? */
	if (curlun->prevent_medium_removal) {
		LDBG(curlun, "unload attempt prevented\n");
		curlun->sense_data = SS_MEDIUM_REMOVAL_PREVENTED;
		return -EINVAL;
	}

	if (!loej)
		return 0;

	up_read(&common->filesem);
	down_write(&common->filesem);
	fsg_lun_close(curlun);
	up_write(&common->filesem);
	down_read(&common->filesem);

1371
	return 0;
1372 1373
}

1374
static int do_prevent_allow(struct fsg_common *common)
1375
{
1376
	struct fsg_lun	*curlun = common->curlun;
1377 1378
	int		prevent;

1379
	if (!common->curlun) {
1380
		return -EINVAL;
1381 1382
	} else if (!common->curlun->removable) {
		common->curlun->sense_data = SS_INVALID_COMMAND;
1383 1384 1385
		return -EINVAL;
	}

1386 1387
	prevent = common->cmnd[4] & 0x01;
	if ((common->cmnd[4] & ~0x01) != 0) {	/* Mask away Prevent */
1388 1389 1390 1391 1392 1393 1394 1395 1396 1397
		curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
		return -EINVAL;
	}

	if (curlun->prevent_medium_removal && !prevent)
		fsg_lun_fsync_sub(curlun);
	curlun->prevent_medium_removal = prevent;
	return 0;
}

1398
static int do_read_format_capacities(struct fsg_common *common,
1399 1400
			struct fsg_buffhd *bh)
{
1401
	struct fsg_lun	*curlun = common->curlun;
1402 1403 1404
	u8		*buf = (u8 *) bh->buf;

	buf[0] = buf[1] = buf[2] = 0;
1405
	buf[3] = 8;	/* Only the Current/Maximum Capacity Descriptor */
1406 1407 1408 1409
	buf += 4;

	put_unaligned_be32(curlun->num_sectors, &buf[0]);
						/* Number of blocks */
1410
	put_unaligned_be32(curlun->blksize, &buf[4]);/* Block length */
1411 1412 1413 1414
	buf[4] = 0x02;				/* Current capacity */
	return 12;
}

1415
static int do_mode_select(struct fsg_common *common, struct fsg_buffhd *bh)
1416
{
1417
	struct fsg_lun	*curlun = common->curlun;
1418 1419

	/* We don't support MODE SELECT */
1420 1421
	if (curlun)
		curlun->sense_data = SS_INVALID_COMMAND;
1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472
	return -EINVAL;
}


/*-------------------------------------------------------------------------*/

static int halt_bulk_in_endpoint(struct fsg_dev *fsg)
{
	int	rc;

	rc = fsg_set_halt(fsg, fsg->bulk_in);
	if (rc == -EAGAIN)
		VDBG(fsg, "delayed bulk-in endpoint halt\n");
	while (rc != 0) {
		if (rc != -EAGAIN) {
			WARNING(fsg, "usb_ep_set_halt -> %d\n", rc);
			rc = 0;
			break;
		}

		/* Wait for a short time and then try again */
		if (msleep_interruptible(100) != 0)
			return -EINTR;
		rc = usb_ep_set_halt(fsg->bulk_in);
	}
	return rc;
}

static int wedge_bulk_in_endpoint(struct fsg_dev *fsg)
{
	int	rc;

	DBG(fsg, "bulk-in set wedge\n");
	rc = usb_ep_set_wedge(fsg->bulk_in);
	if (rc == -EAGAIN)
		VDBG(fsg, "delayed bulk-in endpoint wedge\n");
	while (rc != 0) {
		if (rc != -EAGAIN) {
			WARNING(fsg, "usb_ep_set_wedge -> %d\n", rc);
			rc = 0;
			break;
		}

		/* Wait for a short time and then try again */
		if (msleep_interruptible(100) != 0)
			return -EINTR;
		rc = usb_ep_set_wedge(fsg->bulk_in);
	}
	return rc;
}

1473
static int throw_away_data(struct fsg_common *common)
1474 1475 1476 1477 1478
{
	struct fsg_buffhd	*bh;
	u32			amount;
	int			rc;

1479 1480 1481
	for (bh = common->next_buffhd_to_drain;
	     bh->state != BUF_STATE_EMPTY || common->usb_amount_left > 0;
	     bh = common->next_buffhd_to_drain) {
1482 1483 1484 1485 1486

		/* Throw away the data in a filled buffer */
		if (bh->state == BUF_STATE_FULL) {
			smp_rmb();
			bh->state = BUF_STATE_EMPTY;
1487
			common->next_buffhd_to_drain = bh->next;
1488 1489

			/* A short packet or an error ends everything */
1490
			if (bh->outreq->actual < bh->bulk_out_intended_length ||
1491
			    bh->outreq->status != 0) {
1492 1493
				raise_exception(common,
						FSG_STATE_ABORT_BULK_OUT);
1494 1495 1496 1497 1498 1499
				return -EINTR;
			}
			continue;
		}

		/* Try to submit another request if we need one */
1500 1501 1502 1503
		bh = common->next_buffhd_to_fill;
		if (bh->state == BUF_STATE_EMPTY
		 && common->usb_amount_left > 0) {
			amount = min(common->usb_amount_left, FSG_BUFLEN);
1504

1505
			/*
1506 1507
			 * Except at the end of the transfer, amount will be
			 * equal to the buffer size, which is divisible by
1508 1509
			 * the bulk-out maxpacket size.
			 */
1510
			set_bulk_out_req_length(common, bh, amount);
1511
			if (!start_out_transfer(common, bh))
1512
				/* Dunno what to do if common->fsg is NULL */
1513 1514 1515
				return -EIO;
			common->next_buffhd_to_fill = bh->next;
			common->usb_amount_left -= amount;
1516 1517 1518 1519
			continue;
		}

		/* Otherwise wait for something to happen */
1520
		rc = sleep_thread(common);
1521 1522 1523 1524 1525 1526
		if (rc)
			return rc;
	}
	return 0;
}

1527
static int finish_reply(struct fsg_common *common)
1528
{
1529
	struct fsg_buffhd	*bh = common->next_buffhd_to_fill;
1530 1531
	int			rc = 0;

1532
	switch (common->data_dir) {
1533
	case DATA_DIR_NONE:
1534
		break;			/* Nothing to send */
1535

1536 1537
	/*
	 * If we don't know whether the host wants to read or write,
1538 1539
	 * this must be CB or CBI with an unknown command.  We mustn't
	 * try to send or receive any data.  So stall both bulk pipes
1540 1541
	 * if we can and wait for a reset.
	 */
1542
	case DATA_DIR_UNKNOWN:
1543 1544 1545 1546 1547 1548 1549 1550
		if (!common->can_stall) {
			/* Nothing */
		} else if (fsg_is_set(common)) {
			fsg_set_halt(common->fsg, common->fsg->bulk_out);
			rc = halt_bulk_in_endpoint(common->fsg);
		} else {
			/* Don't know what to do if common->fsg is NULL */
			rc = -EIO;
1551 1552 1553 1554 1555
		}
		break;

	/* All but the last buffer of data must have already been sent */
	case DATA_DIR_TO_HOST:
1556
		if (common->data_size == 0) {
1557
			/* Nothing to send */
1558

1559 1560 1561 1562
		/* Don't know what to do if common->fsg is NULL */
		} else if (!fsg_is_set(common)) {
			rc = -EIO;

1563
		/* If there's no residue, simply send the last buffer */
1564
		} else if (common->residue == 0) {
1565
			bh->inreq->zero = 0;
1566
			if (!start_in_transfer(common, bh))
1567 1568
				return -EIO;
			common->next_buffhd_to_fill = bh->next;
1569

1570
		/*
1571 1572 1573 1574 1575
		 * For Bulk-only, mark the end of the data with a short
		 * packet.  If we are allowed to stall, halt the bulk-in
		 * endpoint.  (Note: This violates the Bulk-Only Transport
		 * specification, which requires us to pad the data if we
		 * don't halt the endpoint.  Presumably nobody will mind.)
1576
		 */
1577
		} else {
1578
			bh->inreq->zero = 1;
1579
			if (!start_in_transfer(common, bh))
1580 1581
				rc = -EIO;
			common->next_buffhd_to_fill = bh->next;
1582
			if (common->can_stall)
1583
				rc = halt_bulk_in_endpoint(common->fsg);
1584 1585 1586
		}
		break;

1587 1588 1589 1590
	/*
	 * We have processed all we want from the data the host has sent.
	 * There may still be outstanding bulk-out requests.
	 */
1591
	case DATA_DIR_FROM_HOST:
1592
		if (common->residue == 0) {
1593
			/* Nothing to receive */
1594 1595

		/* Did the host stop sending unexpectedly early? */
1596 1597
		} else if (common->short_packet_received) {
			raise_exception(common, FSG_STATE_ABORT_BULK_OUT);
1598 1599
			rc = -EINTR;

1600 1601
		/*
		 * We haven't processed all the incoming data.  Even though
1602 1603 1604 1605
		 * we may be allowed to stall, doing so would cause a race.
		 * The controller may already have ACK'ed all the remaining
		 * bulk-out packets, in which case the host wouldn't see a
		 * STALL.  Not realizing the endpoint was halted, it wouldn't
1606 1607
		 * clear the halt -- leading to problems later on.
		 */
1608
#if 0
1609 1610 1611 1612 1613
		} else if (common->can_stall) {
			if (fsg_is_set(common))
				fsg_set_halt(common->fsg,
					     common->fsg->bulk_out);
			raise_exception(common, FSG_STATE_ABORT_BULK_OUT);
1614 1615 1616
			rc = -EINTR;
#endif

1617 1618 1619 1620
		/*
		 * We can't stall.  Read in the excess data and throw it
		 * all away.
		 */
1621
		} else {
1622
			rc = throw_away_data(common);
1623
		}
1624 1625 1626 1627 1628
		break;
	}
	return rc;
}

1629
static int send_status(struct fsg_common *common)
1630
{
1631
	struct fsg_lun		*curlun = common->curlun;
1632
	struct fsg_buffhd	*bh;
1633
	struct bulk_cs_wrap	*csw;
1634
	int			rc;
1635
	u8			status = US_BULK_STAT_OK;
1636 1637 1638
	u32			sd, sdinfo = 0;

	/* Wait for the next buffer to become available */
1639
	bh = common->next_buffhd_to_fill;
1640
	while (bh->state != BUF_STATE_EMPTY) {
1641
		rc = sleep_thread(common);
1642 1643 1644 1645 1646 1647 1648
		if (rc)
			return rc;
	}

	if (curlun) {
		sd = curlun->sense_data;
		sdinfo = curlun->sense_data_info;
1649
	} else if (common->bad_lun_okay)
1650 1651 1652 1653
		sd = SS_NO_SENSE;
	else
		sd = SS_LOGICAL_UNIT_NOT_SUPPORTED;

1654 1655
	if (common->phase_error) {
		DBG(common, "sending phase-error status\n");
1656
		status = US_BULK_STAT_PHASE;
1657 1658
		sd = SS_INVALID_COMMAND;
	} else if (sd != SS_NO_SENSE) {
1659
		DBG(common, "sending command-failure status\n");
1660
		status = US_BULK_STAT_FAIL;
1661
		VDBG(common, "  sense data: SK x%02x, ASC x%02x, ASCQ x%02x;"
1662 1663 1664 1665
				"  info x%x\n",
				SK(sd), ASC(sd), ASCQ(sd), sdinfo);
	}

1666
	/* Store and send the Bulk-only CSW */
1667
	csw = (void *)bh->buf;
1668

1669
	csw->Signature = cpu_to_le32(US_BULK_CS_SIGN);
1670 1671
	csw->Tag = common->tag;
	csw->Residue = cpu_to_le32(common->residue);
1672
	csw->Status = status;
1673

1674
	bh->inreq->length = US_BULK_CS_WRAP_LEN;
1675
	bh->inreq->zero = 0;
1676
	if (!start_in_transfer(common, bh))
1677 1678
		/* Don't know what to do if common->fsg is NULL */
		return -EIO;
1679

1680
	common->next_buffhd_to_fill = bh->next;
1681 1682 1683 1684 1685 1686
	return 0;
}


/*-------------------------------------------------------------------------*/

1687 1688 1689 1690
/*
 * Check whether the command is properly formed and whether its data size
 * and direction agree with the values we already have.
 */
1691
static int check_command(struct fsg_common *common, int cmnd_size,
1692 1693
			 enum data_direction data_dir, unsigned int mask,
			 int needs_medium, const char *name)
1694 1695
{
	int			i;
1696
	unsigned int		lun = common->cmnd[1] >> 5;
1697 1698 1699 1700 1701
	static const char	dirletter[4] = {'u', 'o', 'i', 'n'};
	char			hdlen[20];
	struct fsg_lun		*curlun;

	hdlen[0] = 0;
1702 1703
	if (common->data_dir != DATA_DIR_UNKNOWN)
		sprintf(hdlen, ", H%c=%u", dirletter[(int) common->data_dir],
1704
			common->data_size);
1705
	VDBG(common, "SCSI command: %s;  Dc=%d, D%c=%u;  Hc=%d%s\n",
1706
	     name, cmnd_size, dirletter[(int) data_dir],
1707
	     common->data_size_from_cmnd, common->cmnd_size, hdlen);
1708

1709 1710 1711 1712
	/*
	 * We can't reply at all until we know the correct data direction
	 * and size.
	 */
1713
	if (common->data_size_from_cmnd == 0)
1714
		data_dir = DATA_DIR_NONE;
1715
	if (common->data_size < common->data_size_from_cmnd) {
1716 1717
		/*
		 * Host data size < Device data size is a phase error.
1718
		 * Carry out the command, but only transfer as much as
1719 1720
		 * we are allowed.
		 */
1721 1722
		common->data_size_from_cmnd = common->data_size;
		common->phase_error = 1;
1723
	}
1724 1725
	common->residue = common->data_size;
	common->usb_amount_left = common->data_size;
1726 1727

	/* Conflicting data directions is a phase error */
1728
	if (common->data_dir != data_dir && common->data_size_from_cmnd > 0) {
1729
		common->phase_error = 1;
1730 1731 1732 1733
		return -EINVAL;
	}

	/* Verify the length of the command itself */
1734
	if (cmnd_size != common->cmnd_size) {
1735

1736 1737
		/*
		 * Special case workaround: There are plenty of buggy SCSI
1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748
		 * implementations. Many have issues with cbw->Length
		 * field passing a wrong command size. For those cases we
		 * always try to work around the problem by using the length
		 * sent by the host side provided it is at least as large
		 * as the correct command length.
		 * Examples of such cases would be MS-Windows, which issues
		 * REQUEST SENSE with cbw->Length == 12 where it should
		 * be 6, and xbox360 issuing INQUIRY, TEST UNIT READY and
		 * REQUEST SENSE with cbw->Length == 10 where it should
		 * be 6 as well.
		 */
1749 1750
		if (cmnd_size <= common->cmnd_size) {
			DBG(common, "%s is buggy! Expected length %d "
1751
			    "but we got %d\n", name,
1752 1753
			    cmnd_size, common->cmnd_size);
			cmnd_size = common->cmnd_size;
1754
		} else {
1755
			common->phase_error = 1;
1756 1757 1758 1759 1760
			return -EINVAL;
		}
	}

	/* Check that the LUN values are consistent */
1761
	if (common->lun != lun)
1762
		DBG(common, "using LUN %u from CBW, not LUN %u from CDB\n",
1763
		    common->lun, lun);
1764 1765

	/* Check the LUN */
1766 1767
	curlun = common->curlun;
	if (curlun) {
1768
		if (common->cmnd[0] != REQUEST_SENSE) {
1769 1770 1771 1772 1773
			curlun->sense_data = SS_NO_SENSE;
			curlun->sense_data_info = 0;
			curlun->info_valid = 0;
		}
	} else {
1774
		common->bad_lun_okay = 0;
1775

1776 1777 1778 1779
		/*
		 * INQUIRY and REQUEST SENSE commands are explicitly allowed
		 * to use unsupported LUNs; all others may not.
		 */
1780 1781
		if (common->cmnd[0] != INQUIRY &&
		    common->cmnd[0] != REQUEST_SENSE) {
1782
			DBG(common, "unsupported LUN %u\n", common->lun);
1783 1784 1785 1786
			return -EINVAL;
		}
	}

1787 1788 1789 1790
	/*
	 * If a unit attention condition exists, only INQUIRY and
	 * REQUEST SENSE commands are allowed; anything else must fail.
	 */
1791
	if (curlun && curlun->unit_attention_data != SS_NO_SENSE &&
1792 1793
	    common->cmnd[0] != INQUIRY &&
	    common->cmnd[0] != REQUEST_SENSE) {
1794 1795 1796 1797 1798 1799
		curlun->sense_data = curlun->unit_attention_data;
		curlun->unit_attention_data = SS_NO_SENSE;
		return -EINVAL;
	}

	/* Check that only command bytes listed in the mask are non-zero */
1800
	common->cmnd[1] &= 0x1f;			/* Mask away the LUN */
1801
	for (i = 1; i < cmnd_size; ++i) {
1802
		if (common->cmnd[i] && !(mask & (1 << i))) {
1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818
			if (curlun)
				curlun->sense_data = SS_INVALID_FIELD_IN_CDB;
			return -EINVAL;
		}
	}

	/* If the medium isn't mounted and the command needs to access
	 * it, return an error. */
	if (curlun && !fsg_lun_is_open(curlun) && needs_medium) {
		curlun->sense_data = SS_MEDIUM_NOT_PRESENT;
		return -EINVAL;
	}

	return 0;
}

1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829
/* wrapper of check_command for data size in blocks handling */
static int 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)
{
	if (common->curlun)
		common->data_size_from_cmnd <<= common->curlun->blkbits;
	return check_command(common, cmnd_size, data_dir,
			mask, needs_medium, name);
}

1830
static int do_scsi_command(struct fsg_common *common)
1831 1832 1833 1834 1835 1836 1837
{
	struct fsg_buffhd	*bh;
	int			rc;
	int			reply = -EINVAL;
	int			i;
	static char		unknown[16];

1838
	dump_cdb(common);
1839 1840

	/* Wait for the next buffer to become available for data or status */
1841 1842
	bh = common->next_buffhd_to_fill;
	common->next_buffhd_to_drain = bh;
1843
	while (bh->state != BUF_STATE_EMPTY) {
1844
		rc = sleep_thread(common);
1845 1846 1847
		if (rc)
			return rc;
	}
1848 1849
	common->phase_error = 0;
	common->short_packet_received = 0;
1850

1851 1852
	down_read(&common->filesem);	/* We're using the backing file */
	switch (common->cmnd[0]) {
1853

1854
	case INQUIRY:
1855 1856
		common->data_size_from_cmnd = common->cmnd[4];
		reply = check_command(common, 6, DATA_DIR_TO_HOST,
1857 1858 1859
				      (1<<4), 0,
				      "INQUIRY");
		if (reply == 0)
1860
			reply = do_inquiry(common, bh);
1861 1862
		break;

1863
	case MODE_SELECT:
1864 1865
		common->data_size_from_cmnd = common->cmnd[4];
		reply = check_command(common, 6, DATA_DIR_FROM_HOST,
1866 1867 1868
				      (1<<1) | (1<<4), 0,
				      "MODE SELECT(6)");
		if (reply == 0)
1869
			reply = do_mode_select(common, bh);
1870 1871
		break;

1872
	case MODE_SELECT_10:
1873 1874 1875
		common->data_size_from_cmnd =
			get_unaligned_be16(&common->cmnd[7]);
		reply = check_command(common, 10, DATA_DIR_FROM_HOST,
1876 1877 1878
				      (1<<1) | (3<<7), 0,
				      "MODE SELECT(10)");
		if (reply == 0)
1879
			reply = do_mode_select(common, bh);
1880 1881
		break;

1882
	case MODE_SENSE:
1883 1884
		common->data_size_from_cmnd = common->cmnd[4];
		reply = check_command(common, 6, DATA_DIR_TO_HOST,
1885 1886 1887
				      (1<<1) | (1<<2) | (1<<4), 0,
				      "MODE SENSE(6)");
		if (reply == 0)
1888
			reply = do_mode_sense(common, bh);
1889 1890
		break;

1891
	case MODE_SENSE_10:
1892 1893 1894
		common->data_size_from_cmnd =
			get_unaligned_be16(&common->cmnd[7]);
		reply = check_command(common, 10, DATA_DIR_TO_HOST,
1895 1896 1897
				      (1<<1) | (1<<2) | (3<<7), 0,
				      "MODE SENSE(10)");
		if (reply == 0)
1898
			reply = do_mode_sense(common, bh);
1899 1900
		break;

1901
	case ALLOW_MEDIUM_REMOVAL:
1902 1903
		common->data_size_from_cmnd = 0;
		reply = check_command(common, 6, DATA_DIR_NONE,
1904 1905 1906
				      (1<<4), 0,
				      "PREVENT-ALLOW MEDIUM REMOVAL");
		if (reply == 0)
1907
			reply = do_prevent_allow(common);
1908 1909
		break;

1910
	case READ_6:
1911
		i = common->cmnd[4];
1912 1913 1914
		common->data_size_from_cmnd = (i == 0) ? 256 : i;
		reply = check_command_size_in_blocks(common, 6,
				      DATA_DIR_TO_HOST,
1915 1916 1917
				      (7<<1) | (1<<4), 1,
				      "READ(6)");
		if (reply == 0)
1918
			reply = do_read(common);
1919 1920
		break;

1921
	case READ_10:
1922
		common->data_size_from_cmnd =
1923 1924 1925
				get_unaligned_be16(&common->cmnd[7]);
		reply = check_command_size_in_blocks(common, 10,
				      DATA_DIR_TO_HOST,
1926 1927 1928
				      (1<<1) | (0xf<<2) | (3<<7), 1,
				      "READ(10)");
		if (reply == 0)
1929
			reply = do_read(common);
1930 1931
		break;

1932
	case READ_12:
1933
		common->data_size_from_cmnd =
1934 1935 1936
				get_unaligned_be32(&common->cmnd[6]);
		reply = check_command_size_in_blocks(common, 12,
				      DATA_DIR_TO_HOST,
1937 1938 1939
				      (1<<1) | (0xf<<2) | (0xf<<6), 1,
				      "READ(12)");
		if (reply == 0)
1940
			reply = do_read(common);
1941 1942
		break;

1943
	case READ_CAPACITY:
1944 1945
		common->data_size_from_cmnd = 8;
		reply = check_command(common, 10, DATA_DIR_TO_HOST,
1946 1947 1948
				      (0xf<<2) | (1<<8), 1,
				      "READ CAPACITY");
		if (reply == 0)
1949
			reply = do_read_capacity(common, bh);
1950 1951
		break;

1952
	case READ_HEADER:
1953
		if (!common->curlun || !common->curlun->cdrom)
1954
			goto unknown_cmnd;
1955 1956 1957
		common->data_size_from_cmnd =
			get_unaligned_be16(&common->cmnd[7]);
		reply = check_command(common, 10, DATA_DIR_TO_HOST,
1958 1959 1960
				      (3<<7) | (0x1f<<1), 1,
				      "READ HEADER");
		if (reply == 0)
1961
			reply = do_read_header(common, bh);
1962 1963
		break;

1964
	case READ_TOC:
1965
		if (!common->curlun || !common->curlun->cdrom)
1966
			goto unknown_cmnd;
1967 1968 1969
		common->data_size_from_cmnd =
			get_unaligned_be16(&common->cmnd[7]);
		reply = check_command(common, 10, DATA_DIR_TO_HOST,
1970 1971 1972
				      (7<<6) | (1<<1), 1,
				      "READ TOC");
		if (reply == 0)
1973
			reply = do_read_toc(common, bh);
1974 1975
		break;

1976
	case READ_FORMAT_CAPACITIES:
1977 1978 1979
		common->data_size_from_cmnd =
			get_unaligned_be16(&common->cmnd[7]);
		reply = check_command(common, 10, DATA_DIR_TO_HOST,
1980 1981 1982
				      (3<<7), 1,
				      "READ FORMAT CAPACITIES");
		if (reply == 0)
1983
			reply = do_read_format_capacities(common, bh);
1984 1985
		break;

1986
	case REQUEST_SENSE:
1987 1988
		common->data_size_from_cmnd = common->cmnd[4];
		reply = check_command(common, 6, DATA_DIR_TO_HOST,
1989 1990 1991
				      (1<<4), 0,
				      "REQUEST SENSE");
		if (reply == 0)
1992
			reply = do_request_sense(common, bh);
1993 1994
		break;

1995
	case START_STOP:
1996 1997
		common->data_size_from_cmnd = 0;
		reply = check_command(common, 6, DATA_DIR_NONE,
1998 1999 2000
				      (1<<1) | (1<<4), 0,
				      "START-STOP UNIT");
		if (reply == 0)
2001
			reply = do_start_stop(common);
2002 2003
		break;

2004
	case SYNCHRONIZE_CACHE:
2005 2006
		common->data_size_from_cmnd = 0;
		reply = check_command(common, 10, DATA_DIR_NONE,
2007 2008 2009
				      (0xf<<2) | (3<<7), 1,
				      "SYNCHRONIZE CACHE");
		if (reply == 0)
2010
			reply = do_synchronize_cache(common);
2011 2012
		break;

2013
	case TEST_UNIT_READY:
2014 2015
		common->data_size_from_cmnd = 0;
		reply = check_command(common, 6, DATA_DIR_NONE,
2016 2017 2018 2019
				0, 1,
				"TEST UNIT READY");
		break;

2020 2021 2022 2023
	/*
	 * Although optional, this command is used by MS-Windows.  We
	 * support a minimal version: BytChk must be 0.
	 */
2024
	case VERIFY:
2025 2026
		common->data_size_from_cmnd = 0;
		reply = check_command(common, 10, DATA_DIR_NONE,
2027 2028 2029
				      (1<<1) | (0xf<<2) | (3<<7), 1,
				      "VERIFY");
		if (reply == 0)
2030
			reply = do_verify(common);
2031 2032
		break;

2033
	case WRITE_6:
2034
		i = common->cmnd[4];
2035 2036 2037
		common->data_size_from_cmnd = (i == 0) ? 256 : i;
		reply = check_command_size_in_blocks(common, 6,
				      DATA_DIR_FROM_HOST,
2038 2039 2040
				      (7<<1) | (1<<4), 1,
				      "WRITE(6)");
		if (reply == 0)
2041
			reply = do_write(common);
2042 2043
		break;

2044
	case WRITE_10:
2045
		common->data_size_from_cmnd =
2046 2047 2048
				get_unaligned_be16(&common->cmnd[7]);
		reply = check_command_size_in_blocks(common, 10,
				      DATA_DIR_FROM_HOST,
2049 2050 2051
				      (1<<1) | (0xf<<2) | (3<<7), 1,
				      "WRITE(10)");
		if (reply == 0)
2052
			reply = do_write(common);
2053 2054
		break;

2055
	case WRITE_12:
2056
		common->data_size_from_cmnd =
2057 2058 2059
				get_unaligned_be32(&common->cmnd[6]);
		reply = check_command_size_in_blocks(common, 12,
				      DATA_DIR_FROM_HOST,
2060 2061 2062
				      (1<<1) | (0xf<<2) | (0xf<<6), 1,
				      "WRITE(12)");
		if (reply == 0)
2063
			reply = do_write(common);
2064 2065
		break;

2066 2067
	/*
	 * Some mandatory commands that we recognize but don't implement.
2068 2069
	 * They don't mean much in this setting.  It's left as an exercise
	 * for anyone interested to implement RESERVE and RELEASE in terms
2070 2071
	 * of Posix locks.
	 */
2072 2073 2074 2075
	case FORMAT_UNIT:
	case RELEASE:
	case RESERVE:
	case SEND_DIAGNOSTIC:
2076
		/* Fall through */
2077 2078

	default:
2079
unknown_cmnd:
2080 2081 2082
		common->data_size_from_cmnd = 0;
		sprintf(unknown, "Unknown x%02x", common->cmnd[0]);
		reply = check_command(common, common->cmnd_size,
2083
				      DATA_DIR_UNKNOWN, ~0, 0, unknown);
2084
		if (reply == 0) {
2085
			common->curlun->sense_data = SS_INVALID_COMMAND;
2086 2087 2088 2089
			reply = -EINVAL;
		}
		break;
	}
2090
	up_read(&common->filesem);
2091 2092 2093 2094 2095 2096

	if (reply == -EINTR || signal_pending(current))
		return -EINTR;

	/* Set up the single reply buffer for finish_reply() */
	if (reply == -EINVAL)
2097
		reply = 0;		/* Error reply length */
2098
	if (reply >= 0 && common->data_dir == DATA_DIR_TO_HOST) {
2099
		reply = min((u32)reply, common->data_size_from_cmnd);
2100 2101
		bh->inreq->length = reply;
		bh->state = BUF_STATE_FULL;
2102
		common->residue -= reply;
2103
	}				/* Otherwise it's already set */
2104 2105 2106 2107 2108 2109 2110 2111 2112

	return 0;
}


/*-------------------------------------------------------------------------*/

static int received_cbw(struct fsg_dev *fsg, struct fsg_buffhd *bh)
{
2113
	struct usb_request	*req = bh->outreq;
2114
	struct bulk_cb_wrap	*cbw = req->buf;
2115
	struct fsg_common	*common = fsg->common;
2116 2117 2118 2119 2120 2121

	/* Was this a real packet?  Should it be ignored? */
	if (req->status || test_bit(IGNORE_BULK_OUT, &fsg->atomic_bitflags))
		return -EINVAL;

	/* Is the CBW valid? */
2122
	if (req->actual != US_BULK_CB_WRAP_LEN ||
2123
			cbw->Signature != cpu_to_le32(
2124
				US_BULK_CB_SIGN)) {
2125 2126 2127 2128
		DBG(fsg, "invalid CBW: len %u sig 0x%x\n",
				req->actual,
				le32_to_cpu(cbw->Signature));

2129 2130
		/*
		 * The Bulk-only spec says we MUST stall the IN endpoint
2131 2132 2133 2134 2135 2136 2137
		 * (6.6.1), so it's unavoidable.  It also says we must
		 * retain this state until the next reset, but there's
		 * no way to tell the controller driver it should ignore
		 * Clear-Feature(HALT) requests.
		 *
		 * We aren't required to halt the OUT endpoint; instead
		 * we can simply accept and discard any data received
2138 2139
		 * until the next reset.
		 */
2140 2141 2142 2143 2144 2145
		wedge_bulk_in_endpoint(fsg);
		set_bit(IGNORE_BULK_OUT, &fsg->atomic_bitflags);
		return -EINVAL;
	}

	/* Is the CBW meaningful? */
2146
	if (cbw->Lun >= FSG_MAX_LUNS || cbw->Flags & ~US_BULK_FLAG_IN ||
2147 2148 2149 2150 2151
			cbw->Length <= 0 || cbw->Length > MAX_COMMAND_SIZE) {
		DBG(fsg, "non-meaningful CBW: lun = %u, flags = 0x%x, "
				"cmdlen %u\n",
				cbw->Lun, cbw->Flags, cbw->Length);

2152 2153 2154 2155
		/*
		 * We can do anything we want here, so let's stall the
		 * bulk pipes if we are allowed to.
		 */
2156
		if (common->can_stall) {
2157 2158 2159 2160 2161 2162 2163
			fsg_set_halt(fsg, fsg->bulk_out);
			halt_bulk_in_endpoint(fsg);
		}
		return -EINVAL;
	}

	/* Save the command for later */
2164 2165
	common->cmnd_size = cbw->Length;
	memcpy(common->cmnd, cbw->CDB, common->cmnd_size);
2166
	if (cbw->Flags & US_BULK_FLAG_IN)
2167
		common->data_dir = DATA_DIR_TO_HOST;
2168
	else
2169 2170 2171 2172 2173
		common->data_dir = DATA_DIR_FROM_HOST;
	common->data_size = le32_to_cpu(cbw->DataTransferLength);
	if (common->data_size == 0)
		common->data_dir = DATA_DIR_NONE;
	common->lun = cbw->Lun;
2174
	if (common->lun < common->nluns)
2175 2176 2177
		common->curlun = &common->luns[common->lun];
	else
		common->curlun = NULL;
2178
	common->tag = cbw->Tag;
2179 2180 2181
	return 0;
}

2182
static int get_next_command(struct fsg_common *common)
2183 2184 2185 2186
{
	struct fsg_buffhd	*bh;
	int			rc = 0;

2187
	/* Wait for the next buffer to become available */
2188
	bh = common->next_buffhd_to_fill;
2189
	while (bh->state != BUF_STATE_EMPTY) {
2190
		rc = sleep_thread(common);
2191 2192 2193
		if (rc)
			return rc;
	}
2194

2195
	/* Queue a request to read a Bulk-only CBW */
2196
	set_bulk_out_req_length(common, bh, US_BULK_CB_WRAP_LEN);
2197
	if (!start_out_transfer(common, bh))
2198 2199
		/* Don't know what to do if common->fsg is NULL */
		return -EIO;
2200

2201 2202
	/*
	 * We will drain the buffer in software, which means we
2203
	 * can reuse it for the next filling.  No need to advance
2204 2205
	 * next_buffhd_to_fill.
	 */
2206

2207 2208
	/* Wait for the CBW to arrive */
	while (bh->state != BUF_STATE_FULL) {
2209
		rc = sleep_thread(common);
2210 2211
		if (rc)
			return rc;
2212
	}
2213
	smp_rmb();
2214
	rc = fsg_is_set(common) ? received_cbw(common->fsg, bh) : -EIO;
2215 2216
	bh->state = BUF_STATE_EMPTY;

2217 2218 2219 2220 2221 2222
	return rc;
}


/*-------------------------------------------------------------------------*/

2223
static int alloc_request(struct fsg_common *common, struct usb_ep *ep,
2224 2225 2226 2227 2228
		struct usb_request **preq)
{
	*preq = usb_ep_alloc_request(ep, GFP_ATOMIC);
	if (*preq)
		return 0;
2229
	ERROR(common, "can't allocate request for %s\n", ep->name);
2230 2231 2232
	return -ENOMEM;
}

2233 2234
/* Reset interface setting and re-init endpoint state (toggle etc). */
static int do_set_interface(struct fsg_common *common, struct fsg_dev *new_fsg)
2235
{
2236 2237
	struct fsg_dev *fsg;
	int i, rc = 0;
2238

2239 2240
	if (common->running)
		DBG(common, "reset interface\n");
2241 2242 2243

reset:
	/* Deallocate the requests */
2244 2245
	if (common->fsg) {
		fsg = common->fsg;
2246

2247
		for (i = 0; i < fsg_num_buffers; ++i) {
2248
			struct fsg_buffhd *bh = &common->buffhds[i];
2249

2250 2251 2252 2253 2254 2255 2256 2257
			if (bh->inreq) {
				usb_ep_free_request(fsg->bulk_in, bh->inreq);
				bh->inreq = NULL;
			}
			if (bh->outreq) {
				usb_ep_free_request(fsg->bulk_out, bh->outreq);
				bh->outreq = NULL;
			}
2258
		}
2259 2260 2261 2262 2263 2264 2265 2266 2267

		/* Disable the endpoints */
		if (fsg->bulk_in_enabled) {
			usb_ep_disable(fsg->bulk_in);
			fsg->bulk_in_enabled = 0;
		}
		if (fsg->bulk_out_enabled) {
			usb_ep_disable(fsg->bulk_out);
			fsg->bulk_out_enabled = 0;
2268 2269
		}

2270 2271
		common->fsg = NULL;
		wake_up(&common->fsg_wait);
2272 2273
	}

2274
	common->running = 0;
2275
	if (!new_fsg || rc)
2276 2277
		return rc;

2278 2279
	common->fsg = new_fsg;
	fsg = common->fsg;
2280

2281
	/* Enable the endpoints */
2282 2283 2284 2285
	rc = config_ep_by_speed(common->gadget, &(fsg->function), fsg->bulk_in);
	if (rc)
		goto reset;
	rc = usb_ep_enable(fsg->bulk_in);
2286 2287
	if (rc)
		goto reset;
2288
	fsg->bulk_in->driver_data = common;
2289
	fsg->bulk_in_enabled = 1;
2290

2291 2292 2293 2294 2295
	rc = config_ep_by_speed(common->gadget, &(fsg->function),
				fsg->bulk_out);
	if (rc)
		goto reset;
	rc = usb_ep_enable(fsg->bulk_out);
2296 2297
	if (rc)
		goto reset;
2298
	fsg->bulk_out->driver_data = common;
2299
	fsg->bulk_out_enabled = 1;
2300
	common->bulk_out_maxpacket = usb_endpoint_maxp(fsg->bulk_out->desc);
2301 2302 2303
	clear_bit(IGNORE_BULK_OUT, &fsg->atomic_bitflags);

	/* Allocate the requests */
2304
	for (i = 0; i < fsg_num_buffers; ++i) {
2305 2306 2307
		struct fsg_buffhd	*bh = &common->buffhds[i];

		rc = alloc_request(common, fsg->bulk_in, &bh->inreq);
2308
		if (rc)
2309
			goto reset;
2310
		rc = alloc_request(common, fsg->bulk_out, &bh->outreq);
2311
		if (rc)
2312
			goto reset;
2313 2314 2315 2316
		bh->inreq->buf = bh->outreq->buf = bh->buf;
		bh->inreq->context = bh->outreq->context = bh;
		bh->inreq->complete = bulk_in_complete;
		bh->outreq->complete = bulk_out_complete;
2317
	}
2318

2319 2320 2321
	common->running = 1;
	for (i = 0; i < common->nluns; ++i)
		common->luns[i].unit_attention_data = SS_RESET_OCCURRED;
2322 2323 2324 2325
	return rc;
}


2326 2327 2328 2329 2330
/****************************** ALT CONFIGS ******************************/

static int fsg_set_alt(struct usb_function *f, unsigned intf, unsigned alt)
{
	struct fsg_dev *fsg = fsg_from_func(f);
2331
	fsg->common->new_fsg = fsg;
2332
	raise_exception(fsg->common, FSG_STATE_CONFIG_CHANGE);
2333
	return USB_GADGET_DELAYED_STATUS;
2334 2335 2336 2337 2338
}

static void fsg_disable(struct usb_function *f)
{
	struct fsg_dev *fsg = fsg_from_func(f);
2339
	fsg->common->new_fsg = NULL;
2340
	raise_exception(fsg->common, FSG_STATE_CONFIG_CHANGE);
2341 2342 2343
}


2344 2345
/*-------------------------------------------------------------------------*/

2346
static void handle_exception(struct fsg_common *common)
2347 2348 2349 2350 2351 2352 2353 2354
{
	siginfo_t		info;
	int			i;
	struct fsg_buffhd	*bh;
	enum fsg_state		old_state;
	struct fsg_lun		*curlun;
	unsigned int		exception_req_tag;

2355 2356 2357 2358
	/*
	 * Clear the existing signals.  Anything but SIGUSR1 is converted
	 * into a high-priority EXIT exception.
	 */
2359
	for (;;) {
2360 2361
		int sig =
			dequeue_signal_lock(current, &current->blocked, &info);
2362 2363 2364
		if (!sig)
			break;
		if (sig != SIGUSR1) {
2365 2366 2367
			if (common->state < FSG_STATE_EXIT)
				DBG(common, "Main thread exiting on signal\n");
			raise_exception(common, FSG_STATE_EXIT);
2368 2369 2370 2371
		}
	}

	/* Cancel all the pending transfers */
2372
	if (likely(common->fsg)) {
2373
		for (i = 0; i < fsg_num_buffers; ++i) {
2374 2375 2376 2377 2378 2379
			bh = &common->buffhds[i];
			if (bh->inreq_busy)
				usb_ep_dequeue(common->fsg->bulk_in, bh->inreq);
			if (bh->outreq_busy)
				usb_ep_dequeue(common->fsg->bulk_out,
					       bh->outreq);
2380 2381
		}

2382 2383 2384
		/* Wait until everything is idle */
		for (;;) {
			int num_active = 0;
2385
			for (i = 0; i < fsg_num_buffers; ++i) {
2386 2387 2388 2389 2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400
				bh = &common->buffhds[i];
				num_active += bh->inreq_busy + bh->outreq_busy;
			}
			if (num_active == 0)
				break;
			if (sleep_thread(common))
				return;
		}

		/* Clear out the controller's fifos */
		if (common->fsg->bulk_in_enabled)
			usb_ep_fifo_flush(common->fsg->bulk_in);
		if (common->fsg->bulk_out_enabled)
			usb_ep_fifo_flush(common->fsg->bulk_out);
	}
2401

2402 2403 2404 2405
	/*
	 * Reset the I/O buffer states and pointers, the SCSI
	 * state, and the exception.  Then invoke the handler.
	 */
2406
	spin_lock_irq(&common->lock);
2407

2408
	for (i = 0; i < fsg_num_buffers; ++i) {
2409
		bh = &common->buffhds[i];
2410 2411
		bh->state = BUF_STATE_EMPTY;
	}
2412 2413 2414 2415
	common->next_buffhd_to_fill = &common->buffhds[0];
	common->next_buffhd_to_drain = &common->buffhds[0];
	exception_req_tag = common->exception_req_tag;
	old_state = common->state;
2416 2417

	if (old_state == FSG_STATE_ABORT_BULK_OUT)
2418
		common->state = FSG_STATE_STATUS_PHASE;
2419
	else {
2420 2421
		for (i = 0; i < common->nluns; ++i) {
			curlun = &common->luns[i];
2422
			curlun->prevent_medium_removal = 0;
2423 2424
			curlun->sense_data = SS_NO_SENSE;
			curlun->unit_attention_data = SS_NO_SENSE;
2425 2426 2427
			curlun->sense_data_info = 0;
			curlun->info_valid = 0;
		}
2428
		common->state = FSG_STATE_IDLE;
2429
	}
2430
	spin_unlock_irq(&common->lock);
2431 2432 2433 2434

	/* Carry out any extra actions required for the exception */
	switch (old_state) {
	case FSG_STATE_ABORT_BULK_OUT:
2435 2436 2437 2438 2439
		send_status(common);
		spin_lock_irq(&common->lock);
		if (common->state == FSG_STATE_STATUS_PHASE)
			common->state = FSG_STATE_IDLE;
		spin_unlock_irq(&common->lock);
2440 2441 2442
		break;

	case FSG_STATE_RESET:
2443 2444
		/*
		 * In case we were forced against our will to halt a
2445
		 * bulk endpoint, clear the halt now.  (The SuperH UDC
2446 2447
		 * requires this.)
		 */
2448 2449 2450 2451 2452
		if (!fsg_is_set(common))
			break;
		if (test_and_clear_bit(IGNORE_BULK_OUT,
				       &common->fsg->atomic_bitflags))
			usb_ep_clear_halt(common->fsg->bulk_in);
2453

2454 2455
		if (common->ep0_req_tag == exception_req_tag)
			ep0_queue(common);	/* Complete the status stage */
2456

2457 2458
		/*
		 * Technically this should go here, but it would only be
2459
		 * a waste of time.  Ditto for the INTERFACE_CHANGE and
2460 2461
		 * CONFIG_CHANGE cases.
		 */
2462 2463
		/* for (i = 0; i < common->nluns; ++i) */
		/*	common->luns[i].unit_attention_data = */
2464
		/*		SS_RESET_OCCURRED;  */
2465 2466 2467
		break;

	case FSG_STATE_CONFIG_CHANGE:
2468
		do_set_interface(common, common->new_fsg);
2469 2470
		if (common->new_fsg)
			usb_composite_setup_continue(common->cdev);
2471 2472 2473 2474
		break;

	case FSG_STATE_EXIT:
	case FSG_STATE_TERMINATED:
2475
		do_set_interface(common, NULL);		/* Free resources */
2476 2477 2478
		spin_lock_irq(&common->lock);
		common->state = FSG_STATE_TERMINATED;	/* Stop the thread */
		spin_unlock_irq(&common->lock);
2479
		break;
2480 2481 2482 2483 2484 2485 2486 2487

	case FSG_STATE_INTERFACE_CHANGE:
	case FSG_STATE_DISCONNECT:
	case FSG_STATE_COMMAND_PHASE:
	case FSG_STATE_DATA_PHASE:
	case FSG_STATE_STATUS_PHASE:
	case FSG_STATE_IDLE:
		break;
2488 2489 2490 2491 2492 2493
	}
}


/*-------------------------------------------------------------------------*/

2494
static int fsg_main_thread(void *common_)
2495
{
2496
	struct fsg_common	*common = common_;
2497

2498 2499 2500 2501
	/*
	 * Allow the thread to be killed by a signal, but set the signal mask
	 * to block everything but INT, TERM, KILL, and USR1.
	 */
2502 2503 2504 2505 2506 2507 2508 2509
	allow_signal(SIGINT);
	allow_signal(SIGTERM);
	allow_signal(SIGKILL);
	allow_signal(SIGUSR1);

	/* Allow the thread to be frozen */
	set_freezable();

2510 2511
	/*
	 * Arrange for userspace references to be interpreted as kernel
2512
	 * pointers.  That way we can pass a kernel pointer to a routine
2513 2514
	 * that expects a __user pointer and it will work okay.
	 */
2515 2516 2517
	set_fs(get_ds());

	/* The main loop */
2518 2519 2520
	while (common->state != FSG_STATE_TERMINATED) {
		if (exception_in_progress(common) || signal_pending(current)) {
			handle_exception(common);
2521 2522 2523
			continue;
		}

2524 2525
		if (!common->running) {
			sleep_thread(common);
2526 2527 2528
			continue;
		}

2529
		if (get_next_command(common))
2530 2531
			continue;

2532 2533 2534 2535
		spin_lock_irq(&common->lock);
		if (!exception_in_progress(common))
			common->state = FSG_STATE_DATA_PHASE;
		spin_unlock_irq(&common->lock);
2536

2537
		if (do_scsi_command(common) || finish_reply(common))
2538 2539
			continue;

2540 2541 2542 2543
		spin_lock_irq(&common->lock);
		if (!exception_in_progress(common))
			common->state = FSG_STATE_STATUS_PHASE;
		spin_unlock_irq(&common->lock);
2544

2545
		if (send_status(common))
2546 2547
			continue;

2548 2549 2550 2551
		spin_lock_irq(&common->lock);
		if (!exception_in_progress(common))
			common->state = FSG_STATE_IDLE;
		spin_unlock_irq(&common->lock);
2552
	}
2553

2554 2555 2556
	spin_lock_irq(&common->lock);
	common->thread_task = NULL;
	spin_unlock_irq(&common->lock);
2557

2558 2559
	if (!common->ops || !common->ops->thread_exits
	 || common->ops->thread_exits(common) < 0) {
2560 2561 2562 2563 2564 2565 2566 2567 2568 2569 2570 2571 2572
		struct fsg_lun *curlun = common->luns;
		unsigned i = common->nluns;

		down_write(&common->filesem);
		for (; i--; ++curlun) {
			if (!fsg_lun_is_open(curlun))
				continue;

			fsg_lun_close(curlun);
			curlun->unit_attention_data = SS_MEDIUM_NOT_PRESENT;
		}
		up_write(&common->filesem);
	}
2573

2574
	/* Let fsg_unbind() know the thread has exited */
2575
	complete_and_exit(&common->thread_notifier, 0);
2576 2577 2578
}


2579
/*************************** DEVICE ATTRIBUTES ***************************/
2580

2581 2582 2583 2584 2585 2586
static DEVICE_ATTR_RW(ro);
static DEVICE_ATTR_RW(nofua);
static DEVICE_ATTR_RW(file);

static struct device_attribute dev_attr_ro_cdrom = __ATTR_RO(ro);
static struct device_attribute dev_attr_file_nonremovable = __ATTR_RO(file);
2587

2588

2589 2590 2591
/****************************** FSG COMMON ******************************/

static void fsg_common_release(struct kref *ref);
2592

2593
static void fsg_lun_release(struct device *dev)
2594
{
2595
	/* Nothing needs to be done */
2596 2597
}

2598
static inline void fsg_common_get(struct fsg_common *common)
2599
{
2600
	kref_get(&common->ref);
2601 2602
}

2603 2604 2605 2606 2607 2608
static inline void fsg_common_put(struct fsg_common *common)
{
	kref_put(&common->ref, fsg_common_release);
}

static struct fsg_common *fsg_common_init(struct fsg_common *common,
2609 2610
					  struct usb_composite_dev *cdev,
					  struct fsg_config *cfg)
2611
{
2612
	struct usb_gadget *gadget = cdev->gadget;
2613 2614
	struct fsg_buffhd *bh;
	struct fsg_lun *curlun;
2615
	struct fsg_lun_config *lcfg;
2616
	int nluns, i, rc;
2617
	char *pathbuf;
2618

2619 2620 2621 2622
	rc = fsg_num_buffers_validate();
	if (rc != 0)
		return ERR_PTR(rc);

2623
	/* Find out how many LUNs there should be */
2624
	nluns = cfg->nluns;
2625 2626 2627 2628 2629 2630 2631 2632 2633 2634 2635 2636
	if (nluns < 1 || nluns > FSG_MAX_LUNS) {
		dev_err(&gadget->dev, "invalid number of LUNs: %u\n", nluns);
		return ERR_PTR(-EINVAL);
	}

	/* Allocate? */
	if (!common) {
		common = kzalloc(sizeof *common, GFP_KERNEL);
		if (!common)
			return ERR_PTR(-ENOMEM);
		common->free_storage_on_release = 1;
	} else {
2637
		memset(common, 0, sizeof *common);
2638 2639
		common->free_storage_on_release = 0;
	}
2640

2641 2642 2643 2644 2645 2646 2647 2648
	common->buffhds = kcalloc(fsg_num_buffers,
				  sizeof *(common->buffhds), GFP_KERNEL);
	if (!common->buffhds) {
		if (common->free_storage_on_release)
			kfree(common);
		return ERR_PTR(-ENOMEM);
	}

2649
	common->ops = cfg->ops;
2650 2651
	common->private_data = cfg->private_data;

2652
	common->gadget = gadget;
2653 2654
	common->ep0 = gadget->ep0;
	common->ep0req = cdev->req;
2655
	common->cdev = cdev;
2656 2657 2658 2659

	/* Maybe allocate device-global string IDs, and patch descriptors */
	if (fsg_strings[FSG_STRING_INTERFACE].id == 0) {
		rc = usb_string_id(cdev);
2660 2661
		if (unlikely(rc < 0))
			goto error_release;
2662 2663 2664
		fsg_strings[FSG_STRING_INTERFACE].id = rc;
		fsg_intf_desc.iInterface = rc;
	}
2665

2666 2667 2668 2669
	/*
	 * Create the LUNs, open their backing files, and register the
	 * LUN devices in sysfs.
	 */
2670
	curlun = kcalloc(nluns, sizeof(*curlun), GFP_KERNEL);
2671 2672 2673
	if (unlikely(!curlun)) {
		rc = -ENOMEM;
		goto error_release;
2674 2675 2676 2677 2678
	}
	common->luns = curlun;

	init_rwsem(&common->filesem);

2679 2680 2681
	for (i = 0, lcfg = cfg->luns; i < nluns; ++i, ++curlun, ++lcfg) {
		curlun->cdrom = !!lcfg->cdrom;
		curlun->ro = lcfg->cdrom || lcfg->ro;
2682
		curlun->initially_ro = curlun->ro;
2683
		curlun->removable = lcfg->removable;
2684 2685
		curlun->dev.release = fsg_lun_release;
		curlun->dev.parent = &gadget->dev;
2686
		/* curlun->dev.driver = &fsg_driver.driver; XXX */
2687
		dev_set_drvdata(&curlun->dev, &common->filesem);
2688
		dev_set_name(&curlun->dev, "lun%d", i);
2689 2690 2691 2692 2693

		rc = device_register(&curlun->dev);
		if (rc) {
			INFO(common, "failed to register LUN%d: %d\n", i, rc);
			common->nluns = i;
2694
			put_device(&curlun->dev);
2695 2696 2697
			goto error_release;
		}

2698 2699 2700 2701
		rc = device_create_file(&curlun->dev,
					curlun->cdrom
				      ? &dev_attr_ro_cdrom
				      : &dev_attr_ro);
2702 2703
		if (rc)
			goto error_luns;
2704 2705 2706 2707
		rc = device_create_file(&curlun->dev,
					curlun->removable
				      ? &dev_attr_file
				      : &dev_attr_file_nonremovable);
2708 2709 2710
		if (rc)
			goto error_luns;
		rc = device_create_file(&curlun->dev, &dev_attr_nofua);
2711 2712 2713
		if (rc)
			goto error_luns;

2714 2715
		if (lcfg->filename) {
			rc = fsg_lun_open(curlun, lcfg->filename);
2716 2717
			if (rc)
				goto error_luns;
2718
		} else if (!curlun->removable) {
2719 2720 2721 2722 2723 2724 2725 2726 2727
			ERROR(common, "no file given for LUN%d\n", i);
			rc = -EINVAL;
			goto error_luns;
		}
	}
	common->nluns = nluns;

	/* Data buffers cyclic list */
	bh = common->buffhds;
2728
	i = fsg_num_buffers;
2729
	goto buffhds_first_it;
2730 2731
	do {
		bh->next = bh + 1;
2732 2733 2734 2735 2736 2737 2738 2739
		++bh;
buffhds_first_it:
		bh->buf = kmalloc(FSG_BUFLEN, GFP_KERNEL);
		if (unlikely(!bh->buf)) {
			rc = -ENOMEM;
			goto error_release;
		}
	} while (--i);
2740 2741
	bh->next = common->buffhds;

2742
	/* Prepare inquiryString */
2743
	i = get_default_bcdDevice();
2744
	snprintf(common->inquiry_string, sizeof common->inquiry_string,
2745
		 "%-8s%-16s%04x", cfg->vendor_name ?: "Linux",
2746
		 /* Assume product name dependent on the first LUN */
2747
		 cfg->product_name ?: (common->luns->cdrom
2748 2749
				     ? "File-CD Gadget"
				     : "File-Stor Gadget"),
2750
		 i);
2751

2752 2753
	/*
	 * Some peripheral controllers are known not to be able to
2754 2755 2756
	 * halt bulk endpoints correctly.  If one of them is present,
	 * disable stalls.
	 */
2757
	common->can_stall = cfg->can_stall &&
2758
		!(gadget_is_at91(common->gadget));
2759

2760
	spin_lock_init(&common->lock);
2761
	kref_init(&common->ref);
2762 2763 2764

	/* Tell the thread to start working */
	common->thread_task =
2765
		kthread_create(fsg_main_thread, common, "file-storage");
2766 2767 2768 2769 2770
	if (IS_ERR(common->thread_task)) {
		rc = PTR_ERR(common->thread_task);
		goto error_release;
	}
	init_completion(&common->thread_notifier);
2771
	init_waitqueue_head(&common->fsg_wait);
2772

2773 2774 2775 2776 2777 2778 2779 2780 2781 2782 2783 2784 2785 2786 2787 2788 2789 2790 2791 2792 2793 2794 2795 2796 2797 2798
	/* Information */
	INFO(common, FSG_DRIVER_DESC ", version: " FSG_DRIVER_VERSION "\n");
	INFO(common, "Number of LUNs=%d\n", common->nluns);

	pathbuf = kmalloc(PATH_MAX, GFP_KERNEL);
	for (i = 0, nluns = common->nluns, curlun = common->luns;
	     i < nluns;
	     ++curlun, ++i) {
		char *p = "(no medium)";
		if (fsg_lun_is_open(curlun)) {
			p = "(error)";
			if (pathbuf) {
				p = d_path(&curlun->filp->f_path,
					   pathbuf, PATH_MAX);
				if (IS_ERR(p))
					p = "(error)";
			}
		}
		LINFO(curlun, "LUN: %s%s%sfile: %s\n",
		      curlun->removable ? "removable " : "",
		      curlun->ro ? "read only " : "",
		      curlun->cdrom ? "CD-ROM " : "",
		      p);
	}
	kfree(pathbuf);

2799 2800 2801 2802
	DBG(common, "I/O thread pid: %d\n", task_pid_nr(common->thread_task));

	wake_up_process(common->thread_task);

2803 2804 2805 2806 2807
	return common;

error_luns:
	common->nluns = i + 1;
error_release:
2808
	common->state = FSG_STATE_TERMINATED;	/* The thread is dead */
2809
	/* Call fsg_common_release() directly, ref might be not initialised. */
2810 2811 2812 2813 2814 2815
	fsg_common_release(&common->ref);
	return ERR_PTR(rc);
}

static void fsg_common_release(struct kref *ref)
{
2816
	struct fsg_common *common = container_of(ref, struct fsg_common, ref);
2817

2818 2819 2820 2821 2822 2823
	/* If the thread isn't already dead, tell it to exit now */
	if (common->state != FSG_STATE_TERMINATED) {
		raise_exception(common, FSG_STATE_EXIT);
		wait_for_completion(&common->thread_notifier);
	}

2824 2825 2826 2827 2828 2829
	if (likely(common->luns)) {
		struct fsg_lun *lun = common->luns;
		unsigned i = common->nluns;

		/* In error recovery common->nluns may be zero. */
		for (; i; --i, ++lun) {
2830
			device_remove_file(&lun->dev, &dev_attr_nofua);
2831 2832 2833 2834 2835 2836 2837 2838
			device_remove_file(&lun->dev,
					   lun->cdrom
					 ? &dev_attr_ro_cdrom
					 : &dev_attr_ro);
			device_remove_file(&lun->dev,
					   lun->removable
					 ? &dev_attr_file
					 : &dev_attr_file_nonremovable);
2839 2840 2841
			fsg_lun_close(lun);
			device_unregister(&lun->dev);
		}
2842

2843
		kfree(common->luns);
2844 2845
	}

2846 2847
	{
		struct fsg_buffhd *bh = common->buffhds;
2848
		unsigned i = fsg_num_buffers;
2849 2850 2851 2852
		do {
			kfree(bh->buf);
		} while (++bh, --i);
	}
2853

2854
	kfree(common->buffhds);
2855 2856 2857 2858 2859 2860 2861
	if (common->free_storage_on_release)
		kfree(common);
}


/*-------------------------------------------------------------------------*/

2862
static void fsg_unbind(struct usb_configuration *c, struct usb_function *f)
2863
{
2864
	struct fsg_dev		*fsg = fsg_from_func(f);
2865
	struct fsg_common	*common = fsg->common;
2866 2867

	DBG(fsg, "unbind\n");
2868 2869 2870 2871 2872 2873 2874 2875
	if (fsg->common->fsg == fsg) {
		fsg->common->new_fsg = NULL;
		raise_exception(fsg->common, FSG_STATE_CONFIG_CHANGE);
		/* FIXME: make interruptible or killable somehow? */
		wait_event(common->fsg_wait, common->fsg != fsg);
	}

	fsg_common_put(common);
2876
	usb_free_all_descriptors(&fsg->function);
2877
	kfree(fsg);
2878 2879
}

2880
static int fsg_bind(struct usb_configuration *c, struct usb_function *f)
2881
{
2882 2883
	struct fsg_dev		*fsg = fsg_from_func(f);
	struct usb_gadget	*gadget = c->cdev->gadget;
2884 2885
	int			i;
	struct usb_ep		*ep;
2886 2887
	unsigned		max_burst;
	int			ret;
2888 2889 2890

	fsg->gadget = gadget;

2891 2892 2893 2894 2895 2896
	/* New interface */
	i = usb_interface_id(c, f);
	if (i < 0)
		return i;
	fsg_intf_desc.bInterfaceNumber = i;
	fsg->interface_number = i;
2897 2898 2899 2900 2901

	/* Find all the endpoints we will use */
	ep = usb_ep_autoconfig(gadget, &fsg_fs_bulk_in_desc);
	if (!ep)
		goto autoconf_fail;
2902
	ep->driver_data = fsg->common;	/* claim the endpoint */
2903 2904 2905 2906 2907
	fsg->bulk_in = ep;

	ep = usb_ep_autoconfig(gadget, &fsg_fs_bulk_out_desc);
	if (!ep)
		goto autoconf_fail;
2908
	ep->driver_data = fsg->common;	/* claim the endpoint */
2909 2910
	fsg->bulk_out = ep;

2911 2912 2913 2914 2915
	/* Assume endpoint addresses are the same for both speeds */
	fsg_hs_bulk_in_desc.bEndpointAddress =
		fsg_fs_bulk_in_desc.bEndpointAddress;
	fsg_hs_bulk_out_desc.bEndpointAddress =
		fsg_fs_bulk_out_desc.bEndpointAddress;
2916

2917 2918
	/* Calculate bMaxBurst, we know packet size is 1024 */
	max_burst = min_t(unsigned, FSG_BUFLEN / 1024, 15);
2919

2920 2921 2922
	fsg_ss_bulk_in_desc.bEndpointAddress =
		fsg_fs_bulk_in_desc.bEndpointAddress;
	fsg_ss_bulk_in_comp_desc.bMaxBurst = max_burst;
2923

2924 2925 2926
	fsg_ss_bulk_out_desc.bEndpointAddress =
		fsg_fs_bulk_out_desc.bEndpointAddress;
	fsg_ss_bulk_out_comp_desc.bMaxBurst = max_burst;
2927

2928 2929 2930 2931
	ret = usb_assign_descriptors(f, fsg_fs_function, fsg_hs_function,
			fsg_ss_function);
	if (ret)
		goto autoconf_fail;
2932

2933 2934 2935 2936
	return 0;

autoconf_fail:
	ERROR(fsg, "unable to autoconfigure all endpoints\n");
2937
	return -ENOTSUPP;
2938 2939
}

2940
/****************************** ADD FUNCTION ******************************/
2941

2942 2943 2944
static struct usb_gadget_strings *fsg_strings_array[] = {
	&fsg_stringtab,
	NULL,
2945 2946
};

2947 2948 2949
static int fsg_bind_config(struct usb_composite_dev *cdev,
			   struct usb_configuration *c,
			   struct fsg_common *common)
2950
{
2951 2952 2953 2954 2955 2956
	struct fsg_dev *fsg;
	int rc;

	fsg = kzalloc(sizeof *fsg, GFP_KERNEL);
	if (unlikely(!fsg))
		return -ENOMEM;
2957

2958 2959 2960 2961 2962 2963 2964 2965 2966
	fsg->function.name        = FSG_DRIVER_DESC;
	fsg->function.strings     = fsg_strings_array;
	fsg->function.bind        = fsg_bind;
	fsg->function.unbind      = fsg_unbind;
	fsg->function.setup       = fsg_setup;
	fsg->function.set_alt     = fsg_set_alt;
	fsg->function.disable     = fsg_disable;

	fsg->common               = common;
2967 2968
	/*
	 * Our caller holds a reference to common structure so we
2969 2970 2971
	 * don't have to be worry about it being freed until we return
	 * from this function.  So instead of incrementing counter now
	 * and decrement in error recovery we increment it only when
2972 2973
	 * call to usb_add_function() was successful.
	 */
2974 2975

	rc = usb_add_function(c, &fsg->function);
2976
	if (unlikely(rc))
2977 2978 2979
		kfree(fsg);
	else
		fsg_common_get(fsg->common);
2980
	return rc;
2981
}
2982 2983 2984 2985 2986 2987


/************************* Module parameters *************************/

struct fsg_module_parameters {
	char		*file[FSG_MAX_LUNS];
2988 2989 2990 2991
	bool		ro[FSG_MAX_LUNS];
	bool		removable[FSG_MAX_LUNS];
	bool		cdrom[FSG_MAX_LUNS];
	bool		nofua[FSG_MAX_LUNS];
2992 2993

	unsigned int	file_count, ro_count, removable_count, cdrom_count;
2994
	unsigned int	nofua_count;
2995
	unsigned int	luns;	/* nluns */
2996
	bool		stall;	/* can_stall */
2997 2998 2999 3000 3001 3002 3003 3004 3005 3006 3007 3008 3009 3010 3011 3012 3013 3014 3015 3016 3017 3018
};

#define _FSG_MODULE_PARAM_ARRAY(prefix, params, name, type, desc)	\
	module_param_array_named(prefix ## name, params.name, type,	\
				 &prefix ## params.name ## _count,	\
				 S_IRUGO);				\
	MODULE_PARM_DESC(prefix ## name, desc)

#define _FSG_MODULE_PARAM(prefix, params, name, type, desc)		\
	module_param_named(prefix ## name, params.name, type,		\
			   S_IRUGO);					\
	MODULE_PARM_DESC(prefix ## name, desc)

#define FSG_MODULE_PARAMETERS(prefix, params)				\
	_FSG_MODULE_PARAM_ARRAY(prefix, params, file, charp,		\
				"names of backing files or devices");	\
	_FSG_MODULE_PARAM_ARRAY(prefix, params, ro, bool,		\
				"true to force read-only");		\
	_FSG_MODULE_PARAM_ARRAY(prefix, params, removable, bool,	\
				"true to simulate removable media");	\
	_FSG_MODULE_PARAM_ARRAY(prefix, params, cdrom, bool,		\
				"true to simulate CD-ROM instead of disk"); \
3019 3020
	_FSG_MODULE_PARAM_ARRAY(prefix, params, nofua, bool,		\
				"true to ignore SCSI WRITE(10,12) FUA bit"); \
3021 3022 3023 3024 3025 3026 3027 3028 3029 3030
	_FSG_MODULE_PARAM(prefix, params, luns, uint,			\
			  "number of LUNs");				\
	_FSG_MODULE_PARAM(prefix, params, stall, bool,			\
			  "false to prevent bulk stalls")

static void
fsg_config_from_params(struct fsg_config *cfg,
		       const struct fsg_module_parameters *params)
{
	struct fsg_lun_config *lun;
3031
	unsigned i;
3032 3033

	/* Configure LUNs */
3034 3035 3036 3037
	cfg->nluns =
		min(params->luns ?: (params->file_count ?: 1u),
		    (unsigned)FSG_MAX_LUNS);
	for (i = 0, lun = cfg->luns; i < cfg->nluns; ++i, ++lun) {
3038 3039
		lun->ro = !!params->ro[i];
		lun->cdrom = !!params->cdrom[i];
3040
		lun->removable = !!params->removable[i];
3041 3042 3043
		lun->filename =
			params->file_count > i && params->file[i][0]
			? params->file[i]
3044
			: NULL;
3045 3046
	}

3047
	/* Let MSF use defaults */
3048 3049
	cfg->vendor_name = NULL;
	cfg->product_name = NULL;
3050

3051 3052
	cfg->ops = NULL;
	cfg->private_data = NULL;
3053

3054 3055 3056 3057 3058 3059 3060 3061 3062 3063 3064 3065 3066 3067 3068 3069 3070 3071
	/* Finalise */
	cfg->can_stall = params->stall;
}

static inline struct fsg_common *
fsg_common_from_params(struct fsg_common *common,
		       struct usb_composite_dev *cdev,
		       const struct fsg_module_parameters *params)
	__attribute__((unused));
static inline struct fsg_common *
fsg_common_from_params(struct fsg_common *common,
		       struct usb_composite_dev *cdev,
		       const struct fsg_module_parameters *params)
{
	struct fsg_config cfg;
	fsg_config_from_params(&cfg, params);
	return fsg_common_init(common, cdev, &cfg);
}