Linux Audio

Check our new training course

Loading...
v3.1
 
   1/*****************************************************************************/
   2
   3/*
   4 *      devio.c  --  User space communication with USB devices.
   5 *
   6 *      Copyright (C) 1999-2000  Thomas Sailer (sailer@ife.ee.ethz.ch)
   7 *
   8 *      This program is free software; you can redistribute it and/or modify
   9 *      it under the terms of the GNU General Public License as published by
  10 *      the Free Software Foundation; either version 2 of the License, or
  11 *      (at your option) any later version.
  12 *
  13 *      This program is distributed in the hope that it will be useful,
  14 *      but WITHOUT ANY WARRANTY; without even the implied warranty of
  15 *      MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
  16 *      GNU General Public License for more details.
  17 *
  18 *      You should have received a copy of the GNU General Public License
  19 *      along with this program; if not, write to the Free Software
  20 *      Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  21 *
  22 *  This file implements the usbfs/x/y files, where
  23 *  x is the bus number and y the device number.
  24 *
  25 *  It allows user space programs/"drivers" to communicate directly
  26 *  with USB devices without intervening kernel driver.
  27 *
  28 *  Revision history
  29 *    22.12.1999   0.1   Initial release (split from proc_usb.c)
  30 *    04.01.2000   0.2   Turned into its own filesystem
  31 *    30.09.2005   0.3   Fix user-triggerable oops in async URB delivery
  32 *    			 (CAN-2005-3055)
  33 */
  34
  35/*****************************************************************************/
  36
  37#include <linux/fs.h>
  38#include <linux/mm.h>
 
  39#include <linux/slab.h>
  40#include <linux/signal.h>
  41#include <linux/poll.h>
  42#include <linux/module.h>
 
  43#include <linux/usb.h>
  44#include <linux/usbdevice_fs.h>
  45#include <linux/usb/hcd.h>	/* for usbcore internals */
 
  46#include <linux/cdev.h>
  47#include <linux/notifier.h>
  48#include <linux/security.h>
  49#include <asm/uaccess.h>
 
 
 
  50#include <asm/byteorder.h>
  51#include <linux/moduleparam.h>
  52
  53#include "usb.h"
  54
 
 
 
 
 
 
  55#define USB_MAXBUS			64
  56#define USB_DEVICE_MAX			USB_MAXBUS * 128
 
  57
  58/* Mutual exclusion for removal, open, and release */
  59DEFINE_MUTEX(usbfs_mutex);
  60
  61struct dev_state {
  62	struct list_head list;      /* state list */
  63	struct usb_device *dev;
  64	struct file *file;
  65	spinlock_t lock;            /* protects the async urb lists */
  66	struct list_head async_pending;
  67	struct list_head async_completed;
 
  68	wait_queue_head_t wait;     /* wake up if a request completed */
 
  69	unsigned int discsignr;
  70	struct pid *disc_pid;
  71	uid_t disc_uid, disc_euid;
  72	void __user *disccontext;
  73	unsigned long ifclaimed;
  74	u32 secid;
  75	u32 disabled_bulk_eps;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
  76};
  77
  78struct async {
  79	struct list_head asynclist;
  80	struct dev_state *ps;
  81	struct pid *pid;
  82	uid_t uid, euid;
  83	unsigned int signr;
  84	unsigned int ifnum;
  85	void __user *userbuffer;
  86	void __user *userurb;
 
  87	struct urb *urb;
 
 
  88	int status;
  89	u32 secid;
  90	u8 bulk_addr;
  91	u8 bulk_status;
  92};
  93
  94static int usbfs_snoop;
  95module_param(usbfs_snoop, bool, S_IRUGO | S_IWUSR);
  96MODULE_PARM_DESC(usbfs_snoop, "true to log all usbfs traffic");
  97
 
 
 
 
 
  98#define snoop(dev, format, arg...)				\
  99	do {							\
 100		if (usbfs_snoop)				\
 101			dev_info(dev , format , ## arg);	\
 102	} while (0)
 103
 104enum snoop_when {
 105	SUBMIT, COMPLETE
 106};
 107
 108#define USB_DEVICE_DEV		MKDEV(USB_DEVICE_MAJOR, 0)
 109
 110#define	MAX_USBFS_BUFFER_SIZE	16384
 
 
 
 
 
 
 
 111
 
 
 112
 113static int connected(struct dev_state *ps)
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 114{
 115	return (!list_empty(&ps->list) &&
 116			ps->dev->state != USB_STATE_NOTATTACHED);
 117}
 118
 119static loff_t usbdev_lseek(struct file *file, loff_t offset, int orig)
 120{
 121	loff_t ret;
 
 
 122
 123	mutex_lock(&file->f_dentry->d_inode->i_mutex);
 
 
 
 
 124
 125	switch (orig) {
 126	case 0:
 127		file->f_pos = offset;
 128		ret = file->f_pos;
 129		break;
 130	case 1:
 131		file->f_pos += offset;
 132		ret = file->f_pos;
 133		break;
 134	case 2:
 135	default:
 136		ret = -EINVAL;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 137	}
 138
 139	mutex_unlock(&file->f_dentry->d_inode->i_mutex);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 140	return ret;
 141}
 142
 143static ssize_t usbdev_read(struct file *file, char __user *buf, size_t nbytes,
 144			   loff_t *ppos)
 145{
 146	struct dev_state *ps = file->private_data;
 147	struct usb_device *dev = ps->dev;
 148	ssize_t ret = 0;
 149	unsigned len;
 150	loff_t pos;
 151	int i;
 152
 153	pos = *ppos;
 154	usb_lock_device(dev);
 155	if (!connected(ps)) {
 156		ret = -ENODEV;
 157		goto err;
 158	} else if (pos < 0) {
 159		ret = -EINVAL;
 160		goto err;
 161	}
 162
 163	if (pos < sizeof(struct usb_device_descriptor)) {
 164		/* 18 bytes - fits on the stack */
 165		struct usb_device_descriptor temp_desc;
 166
 167		memcpy(&temp_desc, &dev->descriptor, sizeof(dev->descriptor));
 168		le16_to_cpus(&temp_desc.bcdUSB);
 169		le16_to_cpus(&temp_desc.idVendor);
 170		le16_to_cpus(&temp_desc.idProduct);
 171		le16_to_cpus(&temp_desc.bcdDevice);
 172
 173		len = sizeof(struct usb_device_descriptor) - pos;
 174		if (len > nbytes)
 175			len = nbytes;
 176		if (copy_to_user(buf, ((char *)&temp_desc) + pos, len)) {
 177			ret = -EFAULT;
 178			goto err;
 179		}
 180
 181		*ppos += len;
 182		buf += len;
 183		nbytes -= len;
 184		ret += len;
 185	}
 186
 187	pos = sizeof(struct usb_device_descriptor);
 188	for (i = 0; nbytes && i < dev->descriptor.bNumConfigurations; i++) {
 189		struct usb_config_descriptor *config =
 190			(struct usb_config_descriptor *)dev->rawdescriptors[i];
 191		unsigned int length = le16_to_cpu(config->wTotalLength);
 192
 193		if (*ppos < pos + length) {
 194
 195			/* The descriptor may claim to be longer than it
 196			 * really is.  Here is the actual allocated length. */
 197			unsigned alloclen =
 198				le16_to_cpu(dev->config[i].desc.wTotalLength);
 199
 200			len = length - (*ppos - pos);
 201			if (len > nbytes)
 202				len = nbytes;
 203
 204			/* Simply don't write (skip over) unallocated parts */
 205			if (alloclen > (*ppos - pos)) {
 206				alloclen -= (*ppos - pos);
 207				if (copy_to_user(buf,
 208				    dev->rawdescriptors[i] + (*ppos - pos),
 209				    min(len, alloclen))) {
 210					ret = -EFAULT;
 211					goto err;
 212				}
 213			}
 214
 215			*ppos += len;
 216			buf += len;
 217			nbytes -= len;
 218			ret += len;
 219		}
 220
 221		pos += length;
 222	}
 223
 224err:
 225	usb_unlock_device(dev);
 226	return ret;
 227}
 228
 229/*
 230 * async list handling
 231 */
 232
 233static struct async *alloc_async(unsigned int numisoframes)
 234{
 235	struct async *as;
 236
 237	as = kzalloc(sizeof(struct async), GFP_KERNEL);
 238	if (!as)
 239		return NULL;
 240	as->urb = usb_alloc_urb(numisoframes, GFP_KERNEL);
 241	if (!as->urb) {
 242		kfree(as);
 243		return NULL;
 244	}
 245	return as;
 246}
 247
 248static void free_async(struct async *as)
 249{
 
 
 250	put_pid(as->pid);
 251	kfree(as->urb->transfer_buffer);
 
 
 
 
 
 
 
 
 
 
 
 
 252	kfree(as->urb->setup_packet);
 253	usb_free_urb(as->urb);
 
 254	kfree(as);
 255}
 256
 257static void async_newpending(struct async *as)
 258{
 259	struct dev_state *ps = as->ps;
 260	unsigned long flags;
 261
 262	spin_lock_irqsave(&ps->lock, flags);
 263	list_add_tail(&as->asynclist, &ps->async_pending);
 264	spin_unlock_irqrestore(&ps->lock, flags);
 265}
 266
 267static void async_removepending(struct async *as)
 268{
 269	struct dev_state *ps = as->ps;
 270	unsigned long flags;
 271
 272	spin_lock_irqsave(&ps->lock, flags);
 273	list_del_init(&as->asynclist);
 274	spin_unlock_irqrestore(&ps->lock, flags);
 275}
 276
 277static struct async *async_getcompleted(struct dev_state *ps)
 278{
 279	unsigned long flags;
 280	struct async *as = NULL;
 281
 282	spin_lock_irqsave(&ps->lock, flags);
 283	if (!list_empty(&ps->async_completed)) {
 284		as = list_entry(ps->async_completed.next, struct async,
 285				asynclist);
 286		list_del_init(&as->asynclist);
 287	}
 288	spin_unlock_irqrestore(&ps->lock, flags);
 289	return as;
 290}
 291
 292static struct async *async_getpending(struct dev_state *ps,
 293					     void __user *userurb)
 294{
 295	unsigned long flags;
 296	struct async *as;
 297
 298	spin_lock_irqsave(&ps->lock, flags);
 299	list_for_each_entry(as, &ps->async_pending, asynclist)
 300		if (as->userurb == userurb) {
 301			list_del_init(&as->asynclist);
 302			spin_unlock_irqrestore(&ps->lock, flags);
 303			return as;
 304		}
 305	spin_unlock_irqrestore(&ps->lock, flags);
 306	return NULL;
 307}
 308
 309static void snoop_urb(struct usb_device *udev,
 310		void __user *userurb, int pipe, unsigned length,
 311		int timeout_or_status, enum snoop_when when,
 312		unsigned char *data, unsigned data_len)
 313{
 314	static const char *types[] = {"isoc", "int", "ctrl", "bulk"};
 315	static const char *dirs[] = {"out", "in"};
 316	int ep;
 317	const char *t, *d;
 318
 319	if (!usbfs_snoop)
 320		return;
 321
 322	ep = usb_pipeendpoint(pipe);
 323	t = types[usb_pipetype(pipe)];
 324	d = dirs[!!usb_pipein(pipe)];
 325
 326	if (userurb) {		/* Async */
 327		if (when == SUBMIT)
 328			dev_info(&udev->dev, "userurb %p, ep%d %s-%s, "
 329					"length %u\n",
 330					userurb, ep, t, d, length);
 331		else
 332			dev_info(&udev->dev, "userurb %p, ep%d %s-%s, "
 333					"actual_length %u status %d\n",
 334					userurb, ep, t, d, length,
 335					timeout_or_status);
 336	} else {
 337		if (when == SUBMIT)
 338			dev_info(&udev->dev, "ep%d %s-%s, length %u, "
 339					"timeout %d\n",
 340					ep, t, d, length, timeout_or_status);
 341		else
 342			dev_info(&udev->dev, "ep%d %s-%s, actual_length %u, "
 343					"status %d\n",
 344					ep, t, d, length, timeout_or_status);
 345	}
 346
 
 347	if (data && data_len > 0) {
 348		print_hex_dump(KERN_DEBUG, "data: ", DUMP_PREFIX_NONE, 32, 1,
 349			data, data_len, 1);
 350	}
 351}
 352
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 353#define AS_CONTINUATION	1
 354#define AS_UNLINK	2
 355
 356static void cancel_bulk_urbs(struct dev_state *ps, unsigned bulk_addr)
 357__releases(ps->lock)
 358__acquires(ps->lock)
 359{
 
 360	struct async *as;
 361
 362	/* Mark all the pending URBs that match bulk_addr, up to but not
 363	 * including the first one without AS_CONTINUATION.  If such an
 364	 * URB is encountered then a new transfer has already started so
 365	 * the endpoint doesn't need to be disabled; otherwise it does.
 366	 */
 367	list_for_each_entry(as, &ps->async_pending, asynclist) {
 368		if (as->bulk_addr == bulk_addr) {
 369			if (as->bulk_status != AS_CONTINUATION)
 370				goto rescan;
 371			as->bulk_status = AS_UNLINK;
 372			as->bulk_addr = 0;
 373		}
 374	}
 375	ps->disabled_bulk_eps |= (1 << bulk_addr);
 376
 377	/* Now carefully unlink all the marked pending URBs */
 378 rescan:
 379	list_for_each_entry(as, &ps->async_pending, asynclist) {
 380		if (as->bulk_status == AS_UNLINK) {
 381			as->bulk_status = 0;		/* Only once */
 
 
 382			spin_unlock(&ps->lock);		/* Allow completions */
 383			usb_unlink_urb(as->urb);
 
 384			spin_lock(&ps->lock);
 385			goto rescan;
 386		}
 387	}
 388}
 389
 390static void async_completed(struct urb *urb)
 391{
 392	struct async *as = urb->context;
 393	struct dev_state *ps = as->ps;
 394	struct siginfo sinfo;
 395	struct pid *pid = NULL;
 396	uid_t uid = 0;
 397	uid_t euid = 0;
 398	u32 secid = 0;
 399	int signr;
 400
 401	spin_lock(&ps->lock);
 402	list_move_tail(&as->asynclist, &ps->async_completed);
 403	as->status = urb->status;
 404	signr = as->signr;
 405	if (signr) {
 406		sinfo.si_signo = as->signr;
 407		sinfo.si_errno = as->status;
 408		sinfo.si_code = SI_ASYNCIO;
 409		sinfo.si_addr = as->userurb;
 410		pid = as->pid;
 411		uid = as->uid;
 412		euid = as->euid;
 413		secid = as->secid;
 414	}
 415	snoop(&urb->dev->dev, "urb complete\n");
 416	snoop_urb(urb->dev, as->userurb, urb->pipe, urb->actual_length,
 417			as->status, COMPLETE,
 418			((urb->transfer_flags & URB_DIR_MASK) == USB_DIR_OUT) ?
 419				NULL : urb->transfer_buffer, urb->actual_length);
 
 420	if (as->status < 0 && as->bulk_addr && as->status != -ECONNRESET &&
 421			as->status != -ENOENT)
 422		cancel_bulk_urbs(ps, as->bulk_addr);
 423	spin_unlock(&ps->lock);
 424
 425	if (signr)
 426		kill_pid_info_as_uid(sinfo.si_signo, &sinfo, pid, uid,
 427				      euid, secid);
 428
 429	wake_up(&ps->wait);
 
 
 
 
 
 
 
 430}
 431
 432static void destroy_async(struct dev_state *ps, struct list_head *list)
 433{
 
 434	struct async *as;
 435	unsigned long flags;
 436
 437	spin_lock_irqsave(&ps->lock, flags);
 438	while (!list_empty(list)) {
 439		as = list_entry(list->next, struct async, asynclist);
 440		list_del_init(&as->asynclist);
 
 
 441
 442		/* drop the spinlock so the completion handler can run */
 443		spin_unlock_irqrestore(&ps->lock, flags);
 444		usb_kill_urb(as->urb);
 
 445		spin_lock_irqsave(&ps->lock, flags);
 446	}
 447	spin_unlock_irqrestore(&ps->lock, flags);
 448}
 449
 450static void destroy_async_on_interface(struct dev_state *ps,
 451				       unsigned int ifnum)
 452{
 453	struct list_head *p, *q, hitlist;
 454	unsigned long flags;
 455
 456	INIT_LIST_HEAD(&hitlist);
 457	spin_lock_irqsave(&ps->lock, flags);
 458	list_for_each_safe(p, q, &ps->async_pending)
 459		if (ifnum == list_entry(p, struct async, asynclist)->ifnum)
 460			list_move_tail(p, &hitlist);
 461	spin_unlock_irqrestore(&ps->lock, flags);
 462	destroy_async(ps, &hitlist);
 463}
 464
 465static void destroy_all_async(struct dev_state *ps)
 466{
 467	destroy_async(ps, &ps->async_pending);
 468}
 469
 470/*
 471 * interface claims are made only at the request of user level code,
 472 * which can also release them (explicitly or by closing files).
 473 * they're also undone when devices disconnect.
 474 */
 475
 476static int driver_probe(struct usb_interface *intf,
 477			const struct usb_device_id *id)
 478{
 479	return -ENODEV;
 480}
 481
 482static void driver_disconnect(struct usb_interface *intf)
 483{
 484	struct dev_state *ps = usb_get_intfdata(intf);
 485	unsigned int ifnum = intf->altsetting->desc.bInterfaceNumber;
 486
 487	if (!ps)
 488		return;
 489
 490	/* NOTE:  this relies on usbcore having canceled and completed
 491	 * all pending I/O requests; 2.6 does that.
 492	 */
 493
 494	if (likely(ifnum < 8*sizeof(ps->ifclaimed)))
 495		clear_bit(ifnum, &ps->ifclaimed);
 496	else
 497		dev_warn(&intf->dev, "interface number %u out of range\n",
 498			 ifnum);
 499
 500	usb_set_intfdata(intf, NULL);
 501
 502	/* force async requests to complete */
 503	destroy_async_on_interface(ps, ifnum);
 504}
 505
 506/* The following routines are merely placeholders.  There is no way
 507 * to inform a user task about suspend or resumes.
 508 */
 509static int driver_suspend(struct usb_interface *intf, pm_message_t msg)
 510{
 511	return 0;
 512}
 513
 514static int driver_resume(struct usb_interface *intf)
 515{
 516	return 0;
 517}
 518
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 519struct usb_driver usbfs_driver = {
 520	.name =		"usbfs",
 521	.probe =	driver_probe,
 522	.disconnect =	driver_disconnect,
 523	.suspend =	driver_suspend,
 524	.resume =	driver_resume,
 
 525};
 526
 527static int claimintf(struct dev_state *ps, unsigned int ifnum)
 528{
 529	struct usb_device *dev = ps->dev;
 530	struct usb_interface *intf;
 531	int err;
 532
 533	if (ifnum >= 8*sizeof(ps->ifclaimed))
 534		return -EINVAL;
 535	/* already claimed */
 536	if (test_bit(ifnum, &ps->ifclaimed))
 537		return 0;
 538
 
 
 
 
 539	intf = usb_ifnum_to_if(dev, ifnum);
 540	if (!intf)
 541		err = -ENOENT;
 542	else
 
 
 
 
 
 543		err = usb_driver_claim_interface(&usbfs_driver, intf, ps);
 
 
 544	if (err == 0)
 545		set_bit(ifnum, &ps->ifclaimed);
 546	return err;
 547}
 548
 549static int releaseintf(struct dev_state *ps, unsigned int ifnum)
 550{
 551	struct usb_device *dev;
 552	struct usb_interface *intf;
 553	int err;
 554
 555	err = -EINVAL;
 556	if (ifnum >= 8*sizeof(ps->ifclaimed))
 557		return err;
 558	dev = ps->dev;
 559	intf = usb_ifnum_to_if(dev, ifnum);
 560	if (!intf)
 561		err = -ENOENT;
 562	else if (test_and_clear_bit(ifnum, &ps->ifclaimed)) {
 
 
 
 
 
 563		usb_driver_release_interface(&usbfs_driver, intf);
 
 564		err = 0;
 565	}
 566	return err;
 567}
 568
 569static int checkintf(struct dev_state *ps, unsigned int ifnum)
 570{
 571	if (ps->dev->state != USB_STATE_CONFIGURED)
 572		return -EHOSTUNREACH;
 573	if (ifnum >= 8*sizeof(ps->ifclaimed))
 574		return -EINVAL;
 575	if (test_bit(ifnum, &ps->ifclaimed))
 576		return 0;
 577	/* if not yet claimed, claim it for the driver */
 578	dev_warn(&ps->dev->dev, "usbfs: process %d (%s) did not claim "
 579		 "interface %u before use\n", task_pid_nr(current),
 580		 current->comm, ifnum);
 581	return claimintf(ps, ifnum);
 582}
 583
 584static int findintfep(struct usb_device *dev, unsigned int ep)
 585{
 586	unsigned int i, j, e;
 587	struct usb_interface *intf;
 588	struct usb_host_interface *alts;
 589	struct usb_endpoint_descriptor *endpt;
 590
 591	if (ep & ~(USB_DIR_IN|0xf))
 592		return -EINVAL;
 593	if (!dev->actconfig)
 594		return -ESRCH;
 595	for (i = 0; i < dev->actconfig->desc.bNumInterfaces; i++) {
 596		intf = dev->actconfig->interface[i];
 597		for (j = 0; j < intf->num_altsetting; j++) {
 598			alts = &intf->altsetting[j];
 599			for (e = 0; e < alts->desc.bNumEndpoints; e++) {
 600				endpt = &alts->endpoint[e].desc;
 601				if (endpt->bEndpointAddress == ep)
 602					return alts->desc.bInterfaceNumber;
 603			}
 604		}
 605	}
 606	return -ENOENT;
 607}
 608
 609static int check_ctrlrecip(struct dev_state *ps, unsigned int requesttype,
 610			   unsigned int index)
 611{
 612	int ret = 0;
 
 613
 614	if (ps->dev->state != USB_STATE_UNAUTHENTICATED
 615	 && ps->dev->state != USB_STATE_ADDRESS
 616	 && ps->dev->state != USB_STATE_CONFIGURED)
 617		return -EHOSTUNREACH;
 618	if (USB_TYPE_VENDOR == (USB_TYPE_MASK & requesttype))
 619		return 0;
 620
 
 
 
 
 
 
 
 
 
 
 
 
 
 621	index &= 0xff;
 622	switch (requesttype & USB_RECIP_MASK) {
 623	case USB_RECIP_ENDPOINT:
 
 
 624		ret = findintfep(ps->dev, index);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 625		if (ret >= 0)
 626			ret = checkintf(ps, ret);
 627		break;
 628
 629	case USB_RECIP_INTERFACE:
 630		ret = checkintf(ps, index);
 631		break;
 632	}
 633	return ret;
 634}
 635
 636static int match_devt(struct device *dev, void *data)
 
 637{
 638	return dev->devt == (dev_t) (unsigned long) data;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 639}
 640
 641static struct usb_device *usbdev_lookup_by_devt(dev_t devt)
 642{
 643	struct device *dev;
 644
 645	dev = bus_find_device(&usb_bus_type, NULL,
 646			      (void *) (unsigned long) devt, match_devt);
 647	if (!dev)
 648		return NULL;
 649	return container_of(dev, struct usb_device, dev);
 650}
 651
 652/*
 653 * file operations
 654 */
 655static int usbdev_open(struct inode *inode, struct file *file)
 656{
 657	struct usb_device *dev = NULL;
 658	struct dev_state *ps;
 659	const struct cred *cred = current_cred();
 660	int ret;
 661
 662	ret = -ENOMEM;
 663	ps = kmalloc(sizeof(struct dev_state), GFP_KERNEL);
 664	if (!ps)
 665		goto out_free_ps;
 666
 667	ret = -ENODEV;
 668
 669	/* Protect against simultaneous removal or release */
 670	mutex_lock(&usbfs_mutex);
 671
 672	/* usbdev device-node */
 673	if (imajor(inode) == USB_DEVICE_MAJOR)
 674		dev = usbdev_lookup_by_devt(inode->i_rdev);
 675
 676#ifdef CONFIG_USB_DEVICEFS
 677	/* procfs file */
 678	if (!dev) {
 679		dev = inode->i_private;
 680		if (dev && dev->usbfs_dentry &&
 681					dev->usbfs_dentry->d_inode == inode)
 682			usb_get_dev(dev);
 683		else
 684			dev = NULL;
 685	}
 686#endif
 687	mutex_unlock(&usbfs_mutex);
 688
 689	if (!dev)
 690		goto out_free_ps;
 691
 692	usb_lock_device(dev);
 693	if (dev->state == USB_STATE_NOTATTACHED)
 694		goto out_unlock_device;
 695
 696	ret = usb_autoresume_device(dev);
 697	if (ret)
 698		goto out_unlock_device;
 699
 700	ps->dev = dev;
 701	ps->file = file;
 
 702	spin_lock_init(&ps->lock);
 703	INIT_LIST_HEAD(&ps->list);
 704	INIT_LIST_HEAD(&ps->async_pending);
 705	INIT_LIST_HEAD(&ps->async_completed);
 
 706	init_waitqueue_head(&ps->wait);
 707	ps->discsignr = 0;
 708	ps->disc_pid = get_pid(task_pid(current));
 709	ps->disc_uid = cred->uid;
 710	ps->disc_euid = cred->euid;
 711	ps->disccontext = NULL;
 712	ps->ifclaimed = 0;
 713	security_task_getsecid(current, &ps->secid);
 714	smp_wmb();
 
 
 715	list_add_tail(&ps->list, &dev->filelist);
 716	file->private_data = ps;
 717	usb_unlock_device(dev);
 718	snoop(&dev->dev, "opened by process %d: %s\n", task_pid_nr(current),
 719			current->comm);
 720	return ret;
 721
 722 out_unlock_device:
 723	usb_unlock_device(dev);
 724	usb_put_dev(dev);
 725 out_free_ps:
 726	kfree(ps);
 727	return ret;
 728}
 729
 730static int usbdev_release(struct inode *inode, struct file *file)
 731{
 732	struct dev_state *ps = file->private_data;
 733	struct usb_device *dev = ps->dev;
 734	unsigned int ifnum;
 735	struct async *as;
 736
 737	usb_lock_device(dev);
 738	usb_hub_release_all_ports(dev, ps);
 739
 
 
 740	list_del_init(&ps->list);
 
 741
 742	for (ifnum = 0; ps->ifclaimed && ifnum < 8*sizeof(ps->ifclaimed);
 743			ifnum++) {
 744		if (test_bit(ifnum, &ps->ifclaimed))
 745			releaseintf(ps, ifnum);
 746	}
 747	destroy_all_async(ps);
 748	usb_autosuspend_device(dev);
 
 749	usb_unlock_device(dev);
 750	usb_put_dev(dev);
 751	put_pid(ps->disc_pid);
 
 752
 753	as = async_getcompleted(ps);
 754	while (as) {
 755		free_async(as);
 756		as = async_getcompleted(ps);
 757	}
 
 758	kfree(ps);
 759	return 0;
 760}
 761
 762static int proc_control(struct dev_state *ps, void __user *arg)
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 763{
 764	struct usb_device *dev = ps->dev;
 765	struct usbdevfs_ctrltransfer ctrl;
 766	unsigned int tmo;
 767	unsigned char *tbuf;
 768	unsigned wLength;
 769	int i, pipe, ret;
 
 
 770
 771	if (copy_from_user(&ctrl, arg, sizeof(ctrl)))
 772		return -EFAULT;
 773	ret = check_ctrlrecip(ps, ctrl.bRequestType, ctrl.wIndex);
 774	if (ret)
 775		return ret;
 776	wLength = ctrl.wLength;		/* To suppress 64k PAGE_SIZE warning */
 777	if (wLength > PAGE_SIZE)
 778		return -EINVAL;
 
 
 
 
 
 
 779	tbuf = (unsigned char *)__get_free_page(GFP_KERNEL);
 780	if (!tbuf)
 781		return -ENOMEM;
 782	tmo = ctrl.timeout;
 
 
 
 
 
 
 
 
 
 
 
 
 
 783	snoop(&dev->dev, "control urb: bRequestType=%02x "
 784		"bRequest=%02x wValue=%04x "
 785		"wIndex=%04x wLength=%04x\n",
 786		ctrl.bRequestType, ctrl.bRequest,
 787		__le16_to_cpup(&ctrl.wValue),
 788		__le16_to_cpup(&ctrl.wIndex),
 789		__le16_to_cpup(&ctrl.wLength));
 790	if (ctrl.bRequestType & 0x80) {
 791		if (ctrl.wLength && !access_ok(VERIFY_WRITE, ctrl.data,
 792					       ctrl.wLength)) {
 793			free_page((unsigned long)tbuf);
 794			return -EINVAL;
 795		}
 796		pipe = usb_rcvctrlpipe(dev, 0);
 797		snoop_urb(dev, NULL, pipe, ctrl.wLength, tmo, SUBMIT, NULL, 0);
 
 
 798
 799		usb_unlock_device(dev);
 800		i = usb_control_msg(dev, pipe, ctrl.bRequest,
 801				    ctrl.bRequestType, ctrl.wValue, ctrl.wIndex,
 802				    tbuf, ctrl.wLength, tmo);
 
 
 803		usb_lock_device(dev);
 804		snoop_urb(dev, NULL, pipe, max(i, 0), min(i, 0), COMPLETE,
 805			  tbuf, max(i, 0));
 806		if ((i > 0) && ctrl.wLength) {
 807			if (copy_to_user(ctrl.data, tbuf, i)) {
 808				free_page((unsigned long)tbuf);
 809				return -EFAULT;
 810			}
 811		}
 812	} else {
 813		if (ctrl.wLength) {
 814			if (copy_from_user(tbuf, ctrl.data, ctrl.wLength)) {
 815				free_page((unsigned long)tbuf);
 816				return -EFAULT;
 817			}
 818		}
 819		pipe = usb_sndctrlpipe(dev, 0);
 820		snoop_urb(dev, NULL, pipe, ctrl.wLength, tmo, SUBMIT,
 821			tbuf, ctrl.wLength);
 
 822
 823		usb_unlock_device(dev);
 824		i = usb_control_msg(dev, usb_sndctrlpipe(dev, 0), ctrl.bRequest,
 825				    ctrl.bRequestType, ctrl.wValue, ctrl.wIndex,
 826				    tbuf, ctrl.wLength, tmo);
 
 
 827		usb_lock_device(dev);
 828		snoop_urb(dev, NULL, pipe, max(i, 0), min(i, 0), COMPLETE, NULL, 0);
 829	}
 830	free_page((unsigned long)tbuf);
 831	if (i < 0 && i != -EPIPE) {
 832		dev_printk(KERN_DEBUG, &dev->dev, "usbfs: USBDEVFS_CONTROL "
 833			   "failed cmd %s rqt %u rq %u len %u ret %d\n",
 834			   current->comm, ctrl.bRequestType, ctrl.bRequest,
 835			   ctrl.wLength, i);
 836	}
 837	return i;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 838}
 839
 840static int proc_bulk(struct dev_state *ps, void __user *arg)
 
 841{
 842	struct usb_device *dev = ps->dev;
 843	struct usbdevfs_bulktransfer bulk;
 844	unsigned int tmo, len1, pipe;
 845	int len2;
 846	unsigned char *tbuf;
 847	int i, ret;
 
 
 848
 849	if (copy_from_user(&bulk, arg, sizeof(bulk)))
 850		return -EFAULT;
 851	ret = findintfep(ps->dev, bulk.ep);
 852	if (ret < 0)
 853		return ret;
 854	ret = checkintf(ps, ret);
 855	if (ret)
 856		return ret;
 857	if (bulk.ep & USB_DIR_IN)
 858		pipe = usb_rcvbulkpipe(dev, bulk.ep & 0x7f);
 859	else
 860		pipe = usb_sndbulkpipe(dev, bulk.ep & 0x7f);
 861	if (!usb_maxpacket(dev, pipe, !(bulk.ep & USB_DIR_IN)))
 862		return -EINVAL;
 863	len1 = bulk.len;
 864	if (len1 > MAX_USBFS_BUFFER_SIZE)
 
 
 
 
 
 865		return -EINVAL;
 866	if (!(tbuf = kmalloc(len1, GFP_KERNEL)))
 867		return -ENOMEM;
 868	tmo = bulk.timeout;
 869	if (bulk.ep & 0x80) {
 870		if (len1 && !access_ok(VERIFY_WRITE, bulk.data, len1)) {
 871			kfree(tbuf);
 872			return -EINVAL;
 873		}
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 874		snoop_urb(dev, NULL, pipe, len1, tmo, SUBMIT, NULL, 0);
 875
 876		usb_unlock_device(dev);
 877		i = usb_bulk_msg(dev, pipe, tbuf, len1, &len2, tmo);
 878		usb_lock_device(dev);
 879		snoop_urb(dev, NULL, pipe, len2, i, COMPLETE, tbuf, len2);
 880
 881		if (!i && len2) {
 882			if (copy_to_user(bulk.data, tbuf, len2)) {
 883				kfree(tbuf);
 884				return -EFAULT;
 885			}
 886		}
 887	} else {
 888		if (len1) {
 889			if (copy_from_user(tbuf, bulk.data, len1)) {
 890				kfree(tbuf);
 891				return -EFAULT;
 892			}
 893		}
 894		snoop_urb(dev, NULL, pipe, len1, tmo, SUBMIT, tbuf, len1);
 895
 896		usb_unlock_device(dev);
 897		i = usb_bulk_msg(dev, pipe, tbuf, len1, &len2, tmo);
 898		usb_lock_device(dev);
 899		snoop_urb(dev, NULL, pipe, len2, i, COMPLETE, NULL, 0);
 900	}
 
 
 
 901	kfree(tbuf);
 902	if (i < 0)
 903		return i;
 904	return len2;
 905}
 906
 907static int proc_resetep(struct dev_state *ps, void __user *arg)
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 908{
 909	unsigned int ep;
 910	int ret;
 911
 912	if (get_user(ep, (unsigned int __user *)arg))
 913		return -EFAULT;
 914	ret = findintfep(ps->dev, ep);
 915	if (ret < 0)
 916		return ret;
 917	ret = checkintf(ps, ret);
 918	if (ret)
 919		return ret;
 
 920	usb_reset_endpoint(ps->dev, ep);
 921	return 0;
 922}
 923
 924static int proc_clearhalt(struct dev_state *ps, void __user *arg)
 925{
 926	unsigned int ep;
 927	int pipe;
 928	int ret;
 929
 930	if (get_user(ep, (unsigned int __user *)arg))
 931		return -EFAULT;
 932	ret = findintfep(ps->dev, ep);
 933	if (ret < 0)
 934		return ret;
 935	ret = checkintf(ps, ret);
 936	if (ret)
 937		return ret;
 
 938	if (ep & USB_DIR_IN)
 939		pipe = usb_rcvbulkpipe(ps->dev, ep & 0x7f);
 940	else
 941		pipe = usb_sndbulkpipe(ps->dev, ep & 0x7f);
 942
 943	return usb_clear_halt(ps->dev, pipe);
 944}
 945
 946static int proc_getdriver(struct dev_state *ps, void __user *arg)
 947{
 948	struct usbdevfs_getdriver gd;
 949	struct usb_interface *intf;
 950	int ret;
 951
 952	if (copy_from_user(&gd, arg, sizeof(gd)))
 953		return -EFAULT;
 954	intf = usb_ifnum_to_if(ps->dev, gd.interface);
 955	if (!intf || !intf->dev.driver)
 956		ret = -ENODATA;
 957	else {
 958		strncpy(gd.driver, intf->dev.driver->name,
 959				sizeof(gd.driver));
 960		ret = (copy_to_user(arg, &gd, sizeof(gd)) ? -EFAULT : 0);
 961	}
 962	return ret;
 963}
 964
 965static int proc_connectinfo(struct dev_state *ps, void __user *arg)
 966{
 967	struct usbdevfs_connectinfo ci = {
 968		.devnum = ps->dev->devnum,
 969		.slow = ps->dev->speed == USB_SPEED_LOW
 970	};
 
 971
 972	if (copy_to_user(arg, &ci, sizeof(ci)))
 973		return -EFAULT;
 974	return 0;
 975}
 976
 977static int proc_resetdevice(struct dev_state *ps)
 
 978{
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 979	return usb_reset_device(ps->dev);
 980}
 981
 982static int proc_setintf(struct dev_state *ps, void __user *arg)
 983{
 984	struct usbdevfs_setinterface setintf;
 985	int ret;
 986
 987	if (copy_from_user(&setintf, arg, sizeof(setintf)))
 988		return -EFAULT;
 989	if ((ret = checkintf(ps, setintf.interface)))
 
 990		return ret;
 
 
 
 991	return usb_set_interface(ps->dev, setintf.interface,
 992			setintf.altsetting);
 993}
 994
 995static int proc_setconfig(struct dev_state *ps, void __user *arg)
 996{
 997	int u;
 998	int status = 0;
 999	struct usb_host_config *actconfig;
1000
1001	if (get_user(u, (int __user *)arg))
1002		return -EFAULT;
1003
1004	actconfig = ps->dev->actconfig;
1005
1006	/* Don't touch the device if any interfaces are claimed.
1007	 * It could interfere with other drivers' operations, and if
1008	 * an interface is claimed by usbfs it could easily deadlock.
1009	 */
1010	if (actconfig) {
1011		int i;
1012
1013		for (i = 0; i < actconfig->desc.bNumInterfaces; ++i) {
1014			if (usb_interface_claimed(actconfig->interface[i])) {
1015				dev_warn(&ps->dev->dev,
1016					"usbfs: interface %d claimed by %s "
1017					"while '%s' sets config #%d\n",
1018					actconfig->interface[i]
1019						->cur_altsetting
1020						->desc.bInterfaceNumber,
1021					actconfig->interface[i]
1022						->dev.driver->name,
1023					current->comm, u);
1024				status = -EBUSY;
1025				break;
1026			}
1027		}
1028	}
1029
1030	/* SET_CONFIGURATION is often abused as a "cheap" driver reset,
1031	 * so avoid usb_set_configuration()'s kick to sysfs
1032	 */
1033	if (status == 0) {
1034		if (actconfig && actconfig->desc.bConfigurationValue == u)
1035			status = usb_reset_configuration(ps->dev);
1036		else
1037			status = usb_set_configuration(ps->dev, u);
1038	}
1039
1040	return status;
1041}
1042
1043static int proc_do_submiturb(struct dev_state *ps, struct usbdevfs_urb *uurb,
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1044			struct usbdevfs_iso_packet_desc __user *iso_frame_desc,
1045			void __user *arg)
1046{
1047	struct usbdevfs_iso_packet_desc *isopkt = NULL;
1048	struct usb_host_endpoint *ep;
1049	struct async *as;
1050	struct usb_ctrlrequest *dr = NULL;
1051	const struct cred *cred = current_cred();
1052	unsigned int u, totlen, isofrmlen;
1053	int ret, ifnum = -1;
1054	int is_in;
1055
1056	if (uurb->flags & ~(USBDEVFS_URB_ISO_ASAP |
1057				USBDEVFS_URB_SHORT_NOT_OK |
 
 
 
1058				USBDEVFS_URB_BULK_CONTINUATION |
1059				USBDEVFS_URB_NO_FSBR |
1060				USBDEVFS_URB_ZERO_PACKET |
1061				USBDEVFS_URB_NO_INTERRUPT))
 
 
 
 
 
 
 
 
1062		return -EINVAL;
1063	if (uurb->buffer_length > 0 && !uurb->buffer)
1064		return -EINVAL;
1065	if (!(uurb->type == USBDEVFS_URB_TYPE_CONTROL &&
1066	    (uurb->endpoint & ~USB_ENDPOINT_DIR_MASK) == 0)) {
1067		ifnum = findintfep(ps->dev, uurb->endpoint);
1068		if (ifnum < 0)
1069			return ifnum;
1070		ret = checkintf(ps, ifnum);
1071		if (ret)
1072			return ret;
1073	}
1074	if ((uurb->endpoint & USB_ENDPOINT_DIR_MASK) != 0) {
1075		is_in = 1;
1076		ep = ps->dev->ep_in[uurb->endpoint & USB_ENDPOINT_NUMBER_MASK];
1077	} else {
1078		is_in = 0;
1079		ep = ps->dev->ep_out[uurb->endpoint & USB_ENDPOINT_NUMBER_MASK];
1080	}
1081	if (!ep)
1082		return -ENOENT;
1083	switch(uurb->type) {
 
 
 
1084	case USBDEVFS_URB_TYPE_CONTROL:
1085		if (!usb_endpoint_xfer_control(&ep->desc))
1086			return -EINVAL;
1087		/* min 8 byte setup packet,
1088		 * max 8 byte setup plus an arbitrary data stage */
1089		if (uurb->buffer_length < 8 ||
1090		    uurb->buffer_length > (8 + MAX_USBFS_BUFFER_SIZE))
1091			return -EINVAL;
1092		dr = kmalloc(sizeof(struct usb_ctrlrequest), GFP_KERNEL);
1093		if (!dr)
1094			return -ENOMEM;
1095		if (copy_from_user(dr, uurb->buffer, 8)) {
1096			kfree(dr);
1097			return -EFAULT;
1098		}
1099		if (uurb->buffer_length < (le16_to_cpup(&dr->wLength) + 8)) {
1100			kfree(dr);
1101			return -EINVAL;
1102		}
1103		ret = check_ctrlrecip(ps, dr->bRequestType,
1104				      le16_to_cpup(&dr->wIndex));
1105		if (ret) {
1106			kfree(dr);
1107			return ret;
1108		}
1109		uurb->number_of_packets = 0;
1110		uurb->buffer_length = le16_to_cpup(&dr->wLength);
1111		uurb->buffer += 8;
1112		if ((dr->bRequestType & USB_DIR_IN) && uurb->buffer_length) {
1113			is_in = 1;
1114			uurb->endpoint |= USB_DIR_IN;
1115		} else {
1116			is_in = 0;
1117			uurb->endpoint &= ~USB_DIR_IN;
1118		}
 
 
1119		snoop(&ps->dev->dev, "control urb: bRequestType=%02x "
1120			"bRequest=%02x wValue=%04x "
1121			"wIndex=%04x wLength=%04x\n",
1122			dr->bRequestType, dr->bRequest,
1123			__le16_to_cpup(&dr->wValue),
1124			__le16_to_cpup(&dr->wIndex),
1125			__le16_to_cpup(&dr->wLength));
 
1126		break;
1127
1128	case USBDEVFS_URB_TYPE_BULK:
 
 
 
 
1129		switch (usb_endpoint_type(&ep->desc)) {
1130		case USB_ENDPOINT_XFER_CONTROL:
1131		case USB_ENDPOINT_XFER_ISOC:
1132			return -EINVAL;
1133		case USB_ENDPOINT_XFER_INT:
1134			/* allow single-shot interrupt transfers */
1135			uurb->type = USBDEVFS_URB_TYPE_INTERRUPT;
1136			goto interrupt_urb;
1137		}
1138		uurb->number_of_packets = 0;
1139		if (uurb->buffer_length > MAX_USBFS_BUFFER_SIZE)
1140			return -EINVAL;
 
 
1141		break;
1142
1143	case USBDEVFS_URB_TYPE_INTERRUPT:
1144		if (!usb_endpoint_xfer_int(&ep->desc))
1145			return -EINVAL;
1146 interrupt_urb:
1147		uurb->number_of_packets = 0;
1148		if (uurb->buffer_length > MAX_USBFS_BUFFER_SIZE)
1149			return -EINVAL;
 
1150		break;
1151
1152	case USBDEVFS_URB_TYPE_ISO:
1153		/* arbitrary limit */
1154		if (uurb->number_of_packets < 1 ||
1155		    uurb->number_of_packets > 128)
1156			return -EINVAL;
1157		if (!usb_endpoint_xfer_isoc(&ep->desc))
1158			return -EINVAL;
 
1159		isofrmlen = sizeof(struct usbdevfs_iso_packet_desc) *
1160				   uurb->number_of_packets;
1161		if (!(isopkt = kmalloc(isofrmlen, GFP_KERNEL)))
1162			return -ENOMEM;
1163		if (copy_from_user(isopkt, iso_frame_desc, isofrmlen)) {
1164			kfree(isopkt);
1165			return -EFAULT;
1166		}
1167		for (totlen = u = 0; u < uurb->number_of_packets; u++) {
1168			/* arbitrary limit,
1169			 * sufficient for USB 2.0 high-bandwidth iso */
1170			if (isopkt[u].length > 8192) {
1171				kfree(isopkt);
1172				return -EINVAL;
 
 
1173			}
1174			totlen += isopkt[u].length;
1175		}
1176		/* 3072 * 64 microframes */
1177		if (totlen > 196608) {
1178			kfree(isopkt);
1179			return -EINVAL;
1180		}
1181		uurb->buffer_length = totlen;
1182		break;
1183
1184	default:
1185		return -EINVAL;
1186	}
 
1187	if (uurb->buffer_length > 0 &&
1188			!access_ok(is_in ? VERIFY_WRITE : VERIFY_READ,
1189				uurb->buffer, uurb->buffer_length)) {
1190		kfree(isopkt);
1191		kfree(dr);
1192		return -EFAULT;
1193	}
1194	as = alloc_async(uurb->number_of_packets);
1195	if (!as) {
1196		kfree(isopkt);
1197		kfree(dr);
1198		return -ENOMEM;
1199	}
1200	if (uurb->buffer_length > 0) {
1201		as->urb->transfer_buffer = kmalloc(uurb->buffer_length,
1202				GFP_KERNEL);
1203		if (!as->urb->transfer_buffer) {
1204			kfree(isopkt);
1205			kfree(dr);
1206			free_async(as);
1207			return -ENOMEM;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1208		}
1209		/* Isochronous input data may end up being discontiguous
1210		 * if some of the packets are short.  Clear the buffer so
1211		 * that the gaps don't leak kernel data to userspace.
1212		 */
1213		if (is_in && uurb->type == USBDEVFS_URB_TYPE_ISO)
1214			memset(as->urb->transfer_buffer, 0,
1215					uurb->buffer_length);
1216	}
1217	as->urb->dev = ps->dev;
1218	as->urb->pipe = (uurb->type << 30) |
1219			__create_pipe(ps->dev, uurb->endpoint & 0xf) |
1220			(uurb->endpoint & USB_DIR_IN);
1221
1222	/* This tedious sequence is necessary because the URB_* flags
1223	 * are internal to the kernel and subject to change, whereas
1224	 * the USBDEVFS_URB_* flags are a user API and must not be changed.
1225	 */
1226	u = (is_in ? URB_DIR_IN : URB_DIR_OUT);
1227	if (uurb->flags & USBDEVFS_URB_ISO_ASAP)
1228		u |= URB_ISO_ASAP;
1229	if (uurb->flags & USBDEVFS_URB_SHORT_NOT_OK)
1230		u |= URB_SHORT_NOT_OK;
1231	if (uurb->flags & USBDEVFS_URB_NO_FSBR)
1232		u |= URB_NO_FSBR;
1233	if (uurb->flags & USBDEVFS_URB_ZERO_PACKET)
1234		u |= URB_ZERO_PACKET;
1235	if (uurb->flags & USBDEVFS_URB_NO_INTERRUPT)
1236		u |= URB_NO_INTERRUPT;
1237	as->urb->transfer_flags = u;
1238
 
 
 
 
 
1239	as->urb->transfer_buffer_length = uurb->buffer_length;
1240	as->urb->setup_packet = (unsigned char *)dr;
 
1241	as->urb->start_frame = uurb->start_frame;
1242	as->urb->number_of_packets = uurb->number_of_packets;
1243	if (uurb->type == USBDEVFS_URB_TYPE_ISO ||
1244			ps->dev->speed == USB_SPEED_HIGH)
1245		as->urb->interval = 1 << min(15, ep->desc.bInterval - 1);
1246	else
1247		as->urb->interval = ep->desc.bInterval;
 
 
 
 
 
 
 
1248	as->urb->context = as;
1249	as->urb->complete = async_completed;
1250	for (totlen = u = 0; u < uurb->number_of_packets; u++) {
1251		as->urb->iso_frame_desc[u].offset = totlen;
1252		as->urb->iso_frame_desc[u].length = isopkt[u].length;
1253		totlen += isopkt[u].length;
1254	}
1255	kfree(isopkt);
 
1256	as->ps = ps;
1257	as->userurb = arg;
1258	if (is_in && uurb->buffer_length > 0)
 
 
 
 
 
 
 
1259		as->userbuffer = uurb->buffer;
1260	else
1261		as->userbuffer = NULL;
1262	as->signr = uurb->signr;
1263	as->ifnum = ifnum;
1264	as->pid = get_pid(task_pid(current));
1265	as->uid = cred->uid;
1266	as->euid = cred->euid;
1267	security_task_getsecid(current, &as->secid);
1268	if (!is_in && uurb->buffer_length > 0) {
1269		if (copy_from_user(as->urb->transfer_buffer, uurb->buffer,
1270				uurb->buffer_length)) {
1271			free_async(as);
1272			return -EFAULT;
1273		}
1274	}
1275	snoop_urb(ps->dev, as->userurb, as->urb->pipe,
1276			as->urb->transfer_buffer_length, 0, SUBMIT,
1277			is_in ? NULL : as->urb->transfer_buffer,
1278				uurb->buffer_length);
 
 
1279	async_newpending(as);
1280
1281	if (usb_endpoint_xfer_bulk(&ep->desc)) {
1282		spin_lock_irq(&ps->lock);
1283
1284		/* Not exactly the endpoint address; the direction bit is
1285		 * shifted to the 0x10 position so that the value will be
1286		 * between 0 and 31.
1287		 */
1288		as->bulk_addr = usb_endpoint_num(&ep->desc) |
1289			((ep->desc.bEndpointAddress & USB_ENDPOINT_DIR_MASK)
1290				>> 3);
1291
1292		/* If this bulk URB is the start of a new transfer, re-enable
1293		 * the endpoint.  Otherwise mark it as a continuation URB.
1294		 */
1295		if (uurb->flags & USBDEVFS_URB_BULK_CONTINUATION)
1296			as->bulk_status = AS_CONTINUATION;
1297		else
1298			ps->disabled_bulk_eps &= ~(1 << as->bulk_addr);
1299
1300		/* Don't accept continuation URBs if the endpoint is
1301		 * disabled because of an earlier error.
1302		 */
1303		if (ps->disabled_bulk_eps & (1 << as->bulk_addr))
1304			ret = -EREMOTEIO;
1305		else
1306			ret = usb_submit_urb(as->urb, GFP_ATOMIC);
1307		spin_unlock_irq(&ps->lock);
1308	} else {
1309		ret = usb_submit_urb(as->urb, GFP_KERNEL);
1310	}
1311
1312	if (ret) {
1313		dev_printk(KERN_DEBUG, &ps->dev->dev,
1314			   "usbfs: usb_submit_urb returned %d\n", ret);
1315		snoop_urb(ps->dev, as->userurb, as->urb->pipe,
1316				0, ret, COMPLETE, NULL, 0);
1317		async_removepending(as);
1318		free_async(as);
1319		return ret;
1320	}
1321	return 0;
 
 
 
 
 
 
 
1322}
1323
1324static int proc_submiturb(struct dev_state *ps, void __user *arg)
1325{
1326	struct usbdevfs_urb uurb;
 
1327
1328	if (copy_from_user(&uurb, arg, sizeof(uurb)))
1329		return -EFAULT;
1330
 
 
 
1331	return proc_do_submiturb(ps, &uurb,
1332			(((struct usbdevfs_urb __user *)arg)->iso_frame_desc),
1333			arg);
1334}
1335
1336static int proc_unlinkurb(struct dev_state *ps, void __user *arg)
1337{
 
1338	struct async *as;
 
1339
 
1340	as = async_getpending(ps, arg);
1341	if (!as)
 
1342		return -EINVAL;
1343	usb_kill_urb(as->urb);
 
 
 
 
 
 
 
 
1344	return 0;
1345}
1346
 
 
 
 
 
 
 
 
 
 
 
 
1347static int processcompl(struct async *as, void __user * __user *arg)
1348{
1349	struct urb *urb = as->urb;
1350	struct usbdevfs_urb __user *userurb = as->userurb;
1351	void __user *addr = as->userurb;
1352	unsigned int i;
1353
 
1354	if (as->userbuffer && urb->actual_length) {
1355		if (urb->number_of_packets > 0)		/* Isochronous */
1356			i = urb->transfer_buffer_length;
1357		else					/* Non-Isoc */
1358			i = urb->actual_length;
1359		if (copy_to_user(as->userbuffer, urb->transfer_buffer, i))
1360			goto err_out;
1361	}
1362	if (put_user(as->status, &userurb->status))
1363		goto err_out;
1364	if (put_user(urb->actual_length, &userurb->actual_length))
1365		goto err_out;
1366	if (put_user(urb->error_count, &userurb->error_count))
1367		goto err_out;
1368
1369	if (usb_endpoint_xfer_isoc(&urb->ep->desc)) {
1370		for (i = 0; i < urb->number_of_packets; i++) {
1371			if (put_user(urb->iso_frame_desc[i].actual_length,
1372				     &userurb->iso_frame_desc[i].actual_length))
1373				goto err_out;
1374			if (put_user(urb->iso_frame_desc[i].status,
1375				     &userurb->iso_frame_desc[i].status))
1376				goto err_out;
1377		}
1378	}
1379
1380	if (put_user(addr, (void __user * __user *)arg))
1381		return -EFAULT;
1382	return 0;
1383
1384err_out:
1385	return -EFAULT;
1386}
1387
1388static struct async *reap_as(struct dev_state *ps)
1389{
1390	DECLARE_WAITQUEUE(wait, current);
1391	struct async *as = NULL;
1392	struct usb_device *dev = ps->dev;
1393
1394	add_wait_queue(&ps->wait, &wait);
1395	for (;;) {
1396		__set_current_state(TASK_INTERRUPTIBLE);
1397		as = async_getcompleted(ps);
1398		if (as)
1399			break;
1400		if (signal_pending(current))
1401			break;
1402		usb_unlock_device(dev);
1403		schedule();
1404		usb_lock_device(dev);
1405	}
1406	remove_wait_queue(&ps->wait, &wait);
1407	set_current_state(TASK_RUNNING);
1408	return as;
1409}
1410
1411static int proc_reapurb(struct dev_state *ps, void __user *arg)
1412{
1413	struct async *as = reap_as(ps);
 
1414	if (as) {
1415		int retval = processcompl(as, (void __user * __user *)arg);
 
 
 
1416		free_async(as);
1417		return retval;
1418	}
1419	if (signal_pending(current))
1420		return -EINTR;
1421	return -EIO;
1422}
1423
1424static int proc_reapurbnonblock(struct dev_state *ps, void __user *arg)
1425{
1426	int retval;
1427	struct async *as;
1428
1429	as = async_getcompleted(ps);
1430	retval = -EAGAIN;
1431	if (as) {
 
1432		retval = processcompl(as, (void __user * __user *)arg);
1433		free_async(as);
 
 
1434	}
1435	return retval;
1436}
1437
1438#ifdef CONFIG_COMPAT
1439static int proc_control_compat(struct dev_state *ps,
1440				struct usbdevfs_ctrltransfer32 __user *p32)
1441{
1442        struct usbdevfs_ctrltransfer __user *p;
1443        __u32 udata;
1444        p = compat_alloc_user_space(sizeof(*p));
1445        if (copy_in_user(p, p32, (sizeof(*p32) - sizeof(compat_caddr_t))) ||
1446            get_user(udata, &p32->data) ||
1447	    put_user(compat_ptr(udata), &p->data))
1448		return -EFAULT;
1449        return proc_control(ps, p);
 
1450}
1451
1452static int proc_bulk_compat(struct dev_state *ps,
1453			struct usbdevfs_bulktransfer32 __user *p32)
1454{
1455        struct usbdevfs_bulktransfer __user *p;
1456        compat_uint_t n;
1457        compat_caddr_t addr;
1458
1459        p = compat_alloc_user_space(sizeof(*p));
1460
1461        if (get_user(n, &p32->ep) || put_user(n, &p->ep) ||
1462            get_user(n, &p32->len) || put_user(n, &p->len) ||
1463            get_user(n, &p32->timeout) || put_user(n, &p->timeout) ||
1464            get_user(addr, &p32->data) || put_user(compat_ptr(addr), &p->data))
1465                return -EFAULT;
1466
1467        return proc_bulk(ps, p);
 
 
 
 
 
 
1468}
1469static int proc_disconnectsignal_compat(struct dev_state *ps, void __user *arg)
 
1470{
1471	struct usbdevfs_disconnectsignal32 ds;
1472
1473	if (copy_from_user(&ds, arg, sizeof(ds)))
1474		return -EFAULT;
1475	ps->discsignr = ds.signr;
1476	ps->disccontext = compat_ptr(ds.context);
1477	return 0;
1478}
1479
1480static int get_urb32(struct usbdevfs_urb *kurb,
1481		     struct usbdevfs_urb32 __user *uurb)
1482{
1483	__u32  uptr;
1484	if (!access_ok(VERIFY_READ, uurb, sizeof(*uurb)) ||
1485	    __get_user(kurb->type, &uurb->type) ||
1486	    __get_user(kurb->endpoint, &uurb->endpoint) ||
1487	    __get_user(kurb->status, &uurb->status) ||
1488	    __get_user(kurb->flags, &uurb->flags) ||
1489	    __get_user(kurb->buffer_length, &uurb->buffer_length) ||
1490	    __get_user(kurb->actual_length, &uurb->actual_length) ||
1491	    __get_user(kurb->start_frame, &uurb->start_frame) ||
1492	    __get_user(kurb->number_of_packets, &uurb->number_of_packets) ||
1493	    __get_user(kurb->error_count, &uurb->error_count) ||
1494	    __get_user(kurb->signr, &uurb->signr))
1495		return -EFAULT;
1496
1497	if (__get_user(uptr, &uurb->buffer))
1498		return -EFAULT;
1499	kurb->buffer = compat_ptr(uptr);
1500	if (__get_user(uptr, &uurb->usercontext))
1501		return -EFAULT;
1502	kurb->usercontext = compat_ptr(uptr);
1503
 
 
 
 
1504	return 0;
1505}
1506
1507static int proc_submiturb_compat(struct dev_state *ps, void __user *arg)
1508{
1509	struct usbdevfs_urb uurb;
 
1510
1511	if (get_urb32(&uurb, (struct usbdevfs_urb32 __user *)arg))
1512		return -EFAULT;
1513
 
 
 
1514	return proc_do_submiturb(ps, &uurb,
1515			((struct usbdevfs_urb32 __user *)arg)->iso_frame_desc,
1516			arg);
1517}
1518
1519static int processcompl_compat(struct async *as, void __user * __user *arg)
1520{
1521	struct urb *urb = as->urb;
1522	struct usbdevfs_urb32 __user *userurb = as->userurb;
1523	void __user *addr = as->userurb;
1524	unsigned int i;
1525
1526	if (as->userbuffer && urb->actual_length)
1527		if (copy_to_user(as->userbuffer, urb->transfer_buffer,
1528				 urb->actual_length))
1529			return -EFAULT;
 
1530	if (put_user(as->status, &userurb->status))
1531		return -EFAULT;
1532	if (put_user(urb->actual_length, &userurb->actual_length))
1533		return -EFAULT;
1534	if (put_user(urb->error_count, &userurb->error_count))
1535		return -EFAULT;
1536
1537	if (usb_endpoint_xfer_isoc(&urb->ep->desc)) {
1538		for (i = 0; i < urb->number_of_packets; i++) {
1539			if (put_user(urb->iso_frame_desc[i].actual_length,
1540				     &userurb->iso_frame_desc[i].actual_length))
1541				return -EFAULT;
1542			if (put_user(urb->iso_frame_desc[i].status,
1543				     &userurb->iso_frame_desc[i].status))
1544				return -EFAULT;
1545		}
1546	}
1547
1548	if (put_user(ptr_to_compat(addr), (u32 __user *)arg))
1549		return -EFAULT;
1550	return 0;
1551}
1552
1553static int proc_reapurb_compat(struct dev_state *ps, void __user *arg)
1554{
1555	struct async *as = reap_as(ps);
 
1556	if (as) {
1557		int retval = processcompl_compat(as, (void __user * __user *)arg);
 
 
 
1558		free_async(as);
1559		return retval;
1560	}
1561	if (signal_pending(current))
1562		return -EINTR;
1563	return -EIO;
1564}
1565
1566static int proc_reapurbnonblock_compat(struct dev_state *ps, void __user *arg)
1567{
1568	int retval;
1569	struct async *as;
1570
1571	retval = -EAGAIN;
1572	as = async_getcompleted(ps);
1573	if (as) {
 
1574		retval = processcompl_compat(as, (void __user * __user *)arg);
1575		free_async(as);
 
 
1576	}
1577	return retval;
1578}
1579
1580
1581#endif
1582
1583static int proc_disconnectsignal(struct dev_state *ps, void __user *arg)
1584{
1585	struct usbdevfs_disconnectsignal ds;
1586
1587	if (copy_from_user(&ds, arg, sizeof(ds)))
1588		return -EFAULT;
1589	ps->discsignr = ds.signr;
1590	ps->disccontext = ds.context;
1591	return 0;
1592}
1593
1594static int proc_claiminterface(struct dev_state *ps, void __user *arg)
1595{
1596	unsigned int ifnum;
1597
1598	if (get_user(ifnum, (unsigned int __user *)arg))
1599		return -EFAULT;
1600	return claimintf(ps, ifnum);
1601}
1602
1603static int proc_releaseinterface(struct dev_state *ps, void __user *arg)
1604{
1605	unsigned int ifnum;
1606	int ret;
1607
1608	if (get_user(ifnum, (unsigned int __user *)arg))
1609		return -EFAULT;
1610	if ((ret = releaseintf(ps, ifnum)) < 0)
 
1611		return ret;
1612	destroy_async_on_interface (ps, ifnum);
1613	return 0;
1614}
1615
1616static int proc_ioctl(struct dev_state *ps, struct usbdevfs_ioctl *ctl)
1617{
1618	int			size;
1619	void			*buf = NULL;
1620	int			retval = 0;
1621	struct usb_interface    *intf = NULL;
1622	struct usb_driver       *driver = NULL;
1623
 
 
 
 
 
 
1624	/* alloc buffer */
1625	if ((size = _IOC_SIZE(ctl->ioctl_code)) > 0) {
1626		if ((buf = kmalloc(size, GFP_KERNEL)) == NULL)
 
 
1627			return -ENOMEM;
1628		if ((_IOC_DIR(ctl->ioctl_code) & _IOC_WRITE)) {
1629			if (copy_from_user(buf, ctl->data, size)) {
1630				kfree(buf);
1631				return -EFAULT;
1632			}
1633		} else {
1634			memset(buf, 0, size);
1635		}
1636	}
1637
1638	if (!connected(ps)) {
1639		kfree(buf);
1640		return -ENODEV;
1641	}
1642
1643	if (ps->dev->state != USB_STATE_CONFIGURED)
1644		retval = -EHOSTUNREACH;
1645	else if (!(intf = usb_ifnum_to_if(ps->dev, ctl->ifno)))
1646		retval = -EINVAL;
1647	else switch (ctl->ioctl_code) {
1648
1649	/* disconnect kernel driver from interface */
1650	case USBDEVFS_DISCONNECT:
1651		if (intf->dev.driver) {
1652			driver = to_usb_driver(intf->dev.driver);
1653			dev_dbg(&intf->dev, "disconnect by usbfs\n");
1654			usb_driver_release_interface(driver, intf);
1655		} else
1656			retval = -ENODATA;
1657		break;
1658
1659	/* let kernel drivers try to (re)bind to the interface */
1660	case USBDEVFS_CONNECT:
1661		if (!intf->dev.driver)
1662			retval = device_attach(&intf->dev);
1663		else
1664			retval = -EBUSY;
1665		break;
1666
1667	/* talk directly to the interface's driver */
1668	default:
1669		if (intf->dev.driver)
1670			driver = to_usb_driver(intf->dev.driver);
1671		if (driver == NULL || driver->unlocked_ioctl == NULL) {
1672			retval = -ENOTTY;
1673		} else {
1674			retval = driver->unlocked_ioctl(intf, ctl->ioctl_code, buf);
1675			if (retval == -ENOIOCTLCMD)
1676				retval = -ENOTTY;
1677		}
1678	}
1679
1680	/* cleanup and return */
1681	if (retval >= 0
1682			&& (_IOC_DIR(ctl->ioctl_code) & _IOC_READ) != 0
1683			&& size > 0
1684			&& copy_to_user(ctl->data, buf, size) != 0)
1685		retval = -EFAULT;
1686
1687	kfree(buf);
1688	return retval;
1689}
1690
1691static int proc_ioctl_default(struct dev_state *ps, void __user *arg)
1692{
1693	struct usbdevfs_ioctl	ctrl;
1694
1695	if (copy_from_user(&ctrl, arg, sizeof(ctrl)))
1696		return -EFAULT;
1697	return proc_ioctl(ps, &ctrl);
1698}
1699
1700#ifdef CONFIG_COMPAT
1701static int proc_ioctl_compat(struct dev_state *ps, compat_uptr_t arg)
1702{
1703	struct usbdevfs_ioctl32 __user *uioc;
1704	struct usbdevfs_ioctl ctrl;
1705	u32 udata;
1706
1707	uioc = compat_ptr((long)arg);
1708	if (!access_ok(VERIFY_READ, uioc, sizeof(*uioc)) ||
1709	    __get_user(ctrl.ifno, &uioc->ifno) ||
1710	    __get_user(ctrl.ioctl_code, &uioc->ioctl_code) ||
1711	    __get_user(udata, &uioc->data))
1712		return -EFAULT;
1713	ctrl.data = compat_ptr(udata);
1714
 
1715	return proc_ioctl(ps, &ctrl);
1716}
1717#endif
1718
1719static int proc_claim_port(struct dev_state *ps, void __user *arg)
1720{
1721	unsigned portnum;
1722	int rc;
1723
1724	if (get_user(portnum, (unsigned __user *) arg))
1725		return -EFAULT;
1726	rc = usb_hub_claim_port(ps->dev, portnum, ps);
1727	if (rc == 0)
1728		snoop(&ps->dev->dev, "port %d claimed by process %d: %s\n",
1729			portnum, task_pid_nr(current), current->comm);
1730	return rc;
1731}
1732
1733static int proc_release_port(struct dev_state *ps, void __user *arg)
1734{
1735	unsigned portnum;
1736
1737	if (get_user(portnum, (unsigned __user *) arg))
1738		return -EFAULT;
1739	return usb_hub_release_port(ps->dev, portnum, ps);
1740}
1741
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1742/*
1743 * NOTE:  All requests here that have interface numbers as parameters
1744 * are assuming that somehow the configuration has been prevented from
1745 * changing.  But there's no mechanism to ensure that...
1746 */
1747static long usbdev_do_ioctl(struct file *file, unsigned int cmd,
1748				void __user *p)
1749{
1750	struct dev_state *ps = file->private_data;
1751	struct inode *inode = file->f_path.dentry->d_inode;
1752	struct usb_device *dev = ps->dev;
1753	int ret = -ENOTTY;
1754
1755	if (!(file->f_mode & FMODE_WRITE))
1756		return -EPERM;
1757
1758	usb_lock_device(dev);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1759	if (!connected(ps)) {
1760		usb_unlock_device(dev);
1761		return -ENODEV;
1762	}
1763
1764	switch (cmd) {
1765	case USBDEVFS_CONTROL:
1766		snoop(&dev->dev, "%s: CONTROL\n", __func__);
1767		ret = proc_control(ps, p);
1768		if (ret >= 0)
1769			inode->i_mtime = CURRENT_TIME;
 
1770		break;
1771
1772	case USBDEVFS_BULK:
1773		snoop(&dev->dev, "%s: BULK\n", __func__);
1774		ret = proc_bulk(ps, p);
1775		if (ret >= 0)
1776			inode->i_mtime = CURRENT_TIME;
 
1777		break;
1778
1779	case USBDEVFS_RESETEP:
1780		snoop(&dev->dev, "%s: RESETEP\n", __func__);
1781		ret = proc_resetep(ps, p);
1782		if (ret >= 0)
1783			inode->i_mtime = CURRENT_TIME;
 
1784		break;
1785
1786	case USBDEVFS_RESET:
1787		snoop(&dev->dev, "%s: RESET\n", __func__);
1788		ret = proc_resetdevice(ps);
1789		break;
1790
1791	case USBDEVFS_CLEAR_HALT:
1792		snoop(&dev->dev, "%s: CLEAR_HALT\n", __func__);
1793		ret = proc_clearhalt(ps, p);
1794		if (ret >= 0)
1795			inode->i_mtime = CURRENT_TIME;
 
1796		break;
1797
1798	case USBDEVFS_GETDRIVER:
1799		snoop(&dev->dev, "%s: GETDRIVER\n", __func__);
1800		ret = proc_getdriver(ps, p);
1801		break;
1802
1803	case USBDEVFS_CONNECTINFO:
1804		snoop(&dev->dev, "%s: CONNECTINFO\n", __func__);
1805		ret = proc_connectinfo(ps, p);
1806		break;
1807
1808	case USBDEVFS_SETINTERFACE:
1809		snoop(&dev->dev, "%s: SETINTERFACE\n", __func__);
1810		ret = proc_setintf(ps, p);
1811		break;
1812
1813	case USBDEVFS_SETCONFIGURATION:
1814		snoop(&dev->dev, "%s: SETCONFIGURATION\n", __func__);
1815		ret = proc_setconfig(ps, p);
1816		break;
1817
1818	case USBDEVFS_SUBMITURB:
1819		snoop(&dev->dev, "%s: SUBMITURB\n", __func__);
1820		ret = proc_submiturb(ps, p);
1821		if (ret >= 0)
1822			inode->i_mtime = CURRENT_TIME;
 
1823		break;
1824
1825#ifdef CONFIG_COMPAT
1826	case USBDEVFS_CONTROL32:
1827		snoop(&dev->dev, "%s: CONTROL32\n", __func__);
1828		ret = proc_control_compat(ps, p);
1829		if (ret >= 0)
1830			inode->i_mtime = CURRENT_TIME;
 
1831		break;
1832
1833	case USBDEVFS_BULK32:
1834		snoop(&dev->dev, "%s: BULK32\n", __func__);
1835		ret = proc_bulk_compat(ps, p);
1836		if (ret >= 0)
1837			inode->i_mtime = CURRENT_TIME;
 
1838		break;
1839
1840	case USBDEVFS_DISCSIGNAL32:
1841		snoop(&dev->dev, "%s: DISCSIGNAL32\n", __func__);
1842		ret = proc_disconnectsignal_compat(ps, p);
1843		break;
1844
1845	case USBDEVFS_SUBMITURB32:
1846		snoop(&dev->dev, "%s: SUBMITURB32\n", __func__);
1847		ret = proc_submiturb_compat(ps, p);
1848		if (ret >= 0)
1849			inode->i_mtime = CURRENT_TIME;
1850		break;
1851
1852	case USBDEVFS_REAPURB32:
1853		snoop(&dev->dev, "%s: REAPURB32\n", __func__);
1854		ret = proc_reapurb_compat(ps, p);
1855		break;
1856
1857	case USBDEVFS_REAPURBNDELAY32:
1858		snoop(&dev->dev, "%s: REAPURBNDELAY32\n", __func__);
1859		ret = proc_reapurbnonblock_compat(ps, p);
1860		break;
1861
1862	case USBDEVFS_IOCTL32:
1863		snoop(&dev->dev, "%s: IOCTL32\n", __func__);
1864		ret = proc_ioctl_compat(ps, ptr_to_compat(p));
1865		break;
1866#endif
1867
1868	case USBDEVFS_DISCARDURB:
1869		snoop(&dev->dev, "%s: DISCARDURB\n", __func__);
1870		ret = proc_unlinkurb(ps, p);
1871		break;
1872
1873	case USBDEVFS_REAPURB:
1874		snoop(&dev->dev, "%s: REAPURB\n", __func__);
1875		ret = proc_reapurb(ps, p);
1876		break;
1877
1878	case USBDEVFS_REAPURBNDELAY:
1879		snoop(&dev->dev, "%s: REAPURBNDELAY\n", __func__);
1880		ret = proc_reapurbnonblock(ps, p);
1881		break;
1882
1883	case USBDEVFS_DISCSIGNAL:
1884		snoop(&dev->dev, "%s: DISCSIGNAL\n", __func__);
1885		ret = proc_disconnectsignal(ps, p);
1886		break;
1887
1888	case USBDEVFS_CLAIMINTERFACE:
1889		snoop(&dev->dev, "%s: CLAIMINTERFACE\n", __func__);
1890		ret = proc_claiminterface(ps, p);
1891		break;
1892
1893	case USBDEVFS_RELEASEINTERFACE:
1894		snoop(&dev->dev, "%s: RELEASEINTERFACE\n", __func__);
1895		ret = proc_releaseinterface(ps, p);
1896		break;
1897
1898	case USBDEVFS_IOCTL:
1899		snoop(&dev->dev, "%s: IOCTL\n", __func__);
1900		ret = proc_ioctl_default(ps, p);
1901		break;
1902
1903	case USBDEVFS_CLAIM_PORT:
1904		snoop(&dev->dev, "%s: CLAIM_PORT\n", __func__);
1905		ret = proc_claim_port(ps, p);
1906		break;
1907
1908	case USBDEVFS_RELEASE_PORT:
1909		snoop(&dev->dev, "%s: RELEASE_PORT\n", __func__);
1910		ret = proc_release_port(ps, p);
1911		break;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1912	}
 
 
1913	usb_unlock_device(dev);
1914	if (ret >= 0)
1915		inode->i_atime = CURRENT_TIME;
1916	return ret;
1917}
1918
1919static long usbdev_ioctl(struct file *file, unsigned int cmd,
1920			unsigned long arg)
1921{
1922	int ret;
1923
1924	ret = usbdev_do_ioctl(file, cmd, (void __user *)arg);
1925
1926	return ret;
1927}
1928
1929#ifdef CONFIG_COMPAT
1930static long usbdev_compat_ioctl(struct file *file, unsigned int cmd,
1931			unsigned long arg)
1932{
1933	int ret;
1934
1935	ret = usbdev_do_ioctl(file, cmd, compat_ptr(arg));
1936
1937	return ret;
1938}
1939#endif
1940
1941/* No kernel lock - fine */
1942static unsigned int usbdev_poll(struct file *file,
1943				struct poll_table_struct *wait)
1944{
1945	struct dev_state *ps = file->private_data;
1946	unsigned int mask = 0;
1947
1948	poll_wait(file, &ps->wait, wait);
1949	if (file->f_mode & FMODE_WRITE && !list_empty(&ps->async_completed))
1950		mask |= POLLOUT | POLLWRNORM;
1951	if (!connected(ps))
1952		mask |= POLLERR | POLLHUP;
 
 
1953	return mask;
1954}
1955
1956const struct file_operations usbdev_file_operations = {
1957	.owner =	  THIS_MODULE,
1958	.llseek =	  usbdev_lseek,
1959	.read =		  usbdev_read,
1960	.poll =		  usbdev_poll,
1961	.unlocked_ioctl = usbdev_ioctl,
1962#ifdef CONFIG_COMPAT
1963	.compat_ioctl =   usbdev_compat_ioctl,
1964#endif
1965	.open =		  usbdev_open,
1966	.release =	  usbdev_release,
1967};
1968
1969static void usbdev_remove(struct usb_device *udev)
1970{
1971	struct dev_state *ps;
1972	struct siginfo sinfo;
1973
 
 
1974	while (!list_empty(&udev->filelist)) {
1975		ps = list_entry(udev->filelist.next, struct dev_state, list);
1976		destroy_all_async(ps);
1977		wake_up_all(&ps->wait);
 
 
1978		list_del_init(&ps->list);
1979		if (ps->discsignr) {
1980			sinfo.si_signo = ps->discsignr;
1981			sinfo.si_errno = EPIPE;
1982			sinfo.si_code = SI_ASYNCIO;
1983			sinfo.si_addr = ps->disccontext;
1984			kill_pid_info_as_uid(ps->discsignr, &sinfo,
1985					ps->disc_pid, ps->disc_uid,
1986					ps->disc_euid, ps->secid);
1987		}
1988	}
 
1989}
1990
1991#ifdef CONFIG_USB_DEVICE_CLASS
1992static struct class *usb_classdev_class;
1993
1994static int usb_classdev_add(struct usb_device *dev)
1995{
1996	struct device *cldev;
1997
1998	cldev = device_create(usb_classdev_class, &dev->dev, dev->dev.devt,
1999			      NULL, "usbdev%d.%d", dev->bus->busnum,
2000			      dev->devnum);
2001	if (IS_ERR(cldev))
2002		return PTR_ERR(cldev);
2003	dev->usb_classdev = cldev;
2004	return 0;
2005}
2006
2007static void usb_classdev_remove(struct usb_device *dev)
2008{
2009	if (dev->usb_classdev)
2010		device_unregister(dev->usb_classdev);
2011}
2012
2013#else
2014#define usb_classdev_add(dev)		0
2015#define usb_classdev_remove(dev)	do {} while (0)
2016
2017#endif
2018
2019static int usbdev_notify(struct notifier_block *self,
2020			       unsigned long action, void *dev)
2021{
2022	switch (action) {
2023	case USB_DEVICE_ADD:
2024		if (usb_classdev_add(dev))
2025			return NOTIFY_BAD;
2026		break;
2027	case USB_DEVICE_REMOVE:
2028		usb_classdev_remove(dev);
2029		usbdev_remove(dev);
2030		break;
2031	}
2032	return NOTIFY_OK;
2033}
2034
2035static struct notifier_block usbdev_nb = {
2036	.notifier_call = 	usbdev_notify,
2037};
2038
2039static struct cdev usb_device_cdev;
2040
2041int __init usb_devio_init(void)
2042{
2043	int retval;
2044
2045	retval = register_chrdev_region(USB_DEVICE_DEV, USB_DEVICE_MAX,
2046					"usb_device");
2047	if (retval) {
2048		printk(KERN_ERR "Unable to register minors for usb_device\n");
2049		goto out;
2050	}
2051	cdev_init(&usb_device_cdev, &usbdev_file_operations);
2052	retval = cdev_add(&usb_device_cdev, USB_DEVICE_DEV, USB_DEVICE_MAX);
2053	if (retval) {
2054		printk(KERN_ERR "Unable to get usb_device major %d\n",
2055		       USB_DEVICE_MAJOR);
2056		goto error_cdev;
2057	}
2058#ifdef CONFIG_USB_DEVICE_CLASS
2059	usb_classdev_class = class_create(THIS_MODULE, "usb_device");
2060	if (IS_ERR(usb_classdev_class)) {
2061		printk(KERN_ERR "Unable to register usb_device class\n");
2062		retval = PTR_ERR(usb_classdev_class);
2063		cdev_del(&usb_device_cdev);
2064		usb_classdev_class = NULL;
2065		goto out;
2066	}
2067	/* devices of this class shadow the major:minor of their parent
2068	 * device, so clear ->dev_kobj to prevent adding duplicate entries
2069	 * to /sys/dev
2070	 */
2071	usb_classdev_class->dev_kobj = NULL;
2072#endif
2073	usb_register_notify(&usbdev_nb);
2074out:
2075	return retval;
2076
2077error_cdev:
2078	unregister_chrdev_region(USB_DEVICE_DEV, USB_DEVICE_MAX);
2079	goto out;
2080}
2081
2082void usb_devio_cleanup(void)
2083{
2084	usb_unregister_notify(&usbdev_nb);
2085#ifdef CONFIG_USB_DEVICE_CLASS
2086	class_destroy(usb_classdev_class);
2087#endif
2088	cdev_del(&usb_device_cdev);
2089	unregister_chrdev_region(USB_DEVICE_DEV, USB_DEVICE_MAX);
2090}
v6.13.7
   1// SPDX-License-Identifier: GPL-2.0+
   2/*****************************************************************************/
   3
   4/*
   5 *      devio.c  --  User space communication with USB devices.
   6 *
   7 *      Copyright (C) 1999-2000  Thomas Sailer (sailer@ife.ee.ethz.ch)
   8 *
 
 
 
 
 
 
 
 
 
 
 
 
 
 
   9 *  This file implements the usbfs/x/y files, where
  10 *  x is the bus number and y the device number.
  11 *
  12 *  It allows user space programs/"drivers" to communicate directly
  13 *  with USB devices without intervening kernel driver.
  14 *
  15 *  Revision history
  16 *    22.12.1999   0.1   Initial release (split from proc_usb.c)
  17 *    04.01.2000   0.2   Turned into its own filesystem
  18 *    30.09.2005   0.3   Fix user-triggerable oops in async URB delivery
  19 *    			 (CAN-2005-3055)
  20 */
  21
  22/*****************************************************************************/
  23
  24#include <linux/fs.h>
  25#include <linux/mm.h>
  26#include <linux/sched/signal.h>
  27#include <linux/slab.h>
  28#include <linux/signal.h>
  29#include <linux/poll.h>
  30#include <linux/module.h>
  31#include <linux/string.h>
  32#include <linux/usb.h>
  33#include <linux/usbdevice_fs.h>
  34#include <linux/usb/hcd.h>	/* for usbcore internals */
  35#include <linux/usb/quirks.h>
  36#include <linux/cdev.h>
  37#include <linux/notifier.h>
  38#include <linux/security.h>
  39#include <linux/user_namespace.h>
  40#include <linux/scatterlist.h>
  41#include <linux/uaccess.h>
  42#include <linux/dma-mapping.h>
  43#include <asm/byteorder.h>
  44#include <linux/moduleparam.h>
  45
  46#include "usb.h"
  47
  48#ifdef CONFIG_PM
  49#define MAYBE_CAP_SUSPEND	USBDEVFS_CAP_SUSPEND
  50#else
  51#define MAYBE_CAP_SUSPEND	0
  52#endif
  53
  54#define USB_MAXBUS			64
  55#define USB_DEVICE_MAX			(USB_MAXBUS * 128)
  56#define USB_SG_SIZE			16384 /* split-size for large txs */
  57
  58/* Mutual exclusion for ps->list in resume vs. release and remove */
  59static DEFINE_MUTEX(usbfs_mutex);
  60
  61struct usb_dev_state {
  62	struct list_head list;      /* state list */
  63	struct usb_device *dev;
  64	struct file *file;
  65	spinlock_t lock;            /* protects the async urb lists */
  66	struct list_head async_pending;
  67	struct list_head async_completed;
  68	struct list_head memory_list;
  69	wait_queue_head_t wait;     /* wake up if a request completed */
  70	wait_queue_head_t wait_for_resume;   /* wake up upon runtime resume */
  71	unsigned int discsignr;
  72	struct pid *disc_pid;
  73	const struct cred *cred;
  74	sigval_t disccontext;
  75	unsigned long ifclaimed;
 
  76	u32 disabled_bulk_eps;
  77	unsigned long interface_allowed_mask;
  78	int not_yet_resumed;
  79	bool suspend_allowed;
  80	bool privileges_dropped;
  81};
  82
  83struct usb_memory {
  84	struct list_head memlist;
  85	int vma_use_count;
  86	int urb_use_count;
  87	u32 size;
  88	void *mem;
  89	dma_addr_t dma_handle;
  90	unsigned long vm_start;
  91	struct usb_dev_state *ps;
  92};
  93
  94struct async {
  95	struct list_head asynclist;
  96	struct usb_dev_state *ps;
  97	struct pid *pid;
  98	const struct cred *cred;
  99	unsigned int signr;
 100	unsigned int ifnum;
 101	void __user *userbuffer;
 102	void __user *userurb;
 103	sigval_t userurb_sigval;
 104	struct urb *urb;
 105	struct usb_memory *usbm;
 106	unsigned int mem_usage;
 107	int status;
 
 108	u8 bulk_addr;
 109	u8 bulk_status;
 110};
 111
 112static bool usbfs_snoop;
 113module_param(usbfs_snoop, bool, S_IRUGO | S_IWUSR);
 114MODULE_PARM_DESC(usbfs_snoop, "true to log all usbfs traffic");
 115
 116static unsigned usbfs_snoop_max = 65536;
 117module_param(usbfs_snoop_max, uint, S_IRUGO | S_IWUSR);
 118MODULE_PARM_DESC(usbfs_snoop_max,
 119		"maximum number of bytes to print while snooping");
 120
 121#define snoop(dev, format, arg...)				\
 122	do {							\
 123		if (usbfs_snoop)				\
 124			dev_info(dev, format, ## arg);		\
 125	} while (0)
 126
 127enum snoop_when {
 128	SUBMIT, COMPLETE
 129};
 130
 131#define USB_DEVICE_DEV		MKDEV(USB_DEVICE_MAJOR, 0)
 132
 133/* Limit on the total amount of memory we can allocate for transfers */
 134static u32 usbfs_memory_mb = 16;
 135module_param(usbfs_memory_mb, uint, 0644);
 136MODULE_PARM_DESC(usbfs_memory_mb,
 137		"maximum MB allowed for usbfs buffers (0 = no limit)");
 138
 139/* Hard limit, necessary to avoid arithmetic overflow */
 140#define USBFS_XFER_MAX         (UINT_MAX / 2 - 1000000)
 141
 142static DEFINE_SPINLOCK(usbfs_memory_usage_lock);
 143static u64 usbfs_memory_usage;	/* Total memory currently allocated */
 144
 145/* Check whether it's okay to allocate more memory for a transfer */
 146static int usbfs_increase_memory_usage(u64 amount)
 147{
 148	u64 lim, total_mem;
 149	unsigned long flags;
 150	int ret;
 151
 152	lim = READ_ONCE(usbfs_memory_mb);
 153	lim <<= 20;
 154
 155	ret = 0;
 156	spin_lock_irqsave(&usbfs_memory_usage_lock, flags);
 157	total_mem = usbfs_memory_usage + amount;
 158	if (lim > 0 && total_mem > lim)
 159		ret = -ENOMEM;
 160	else
 161		usbfs_memory_usage = total_mem;
 162	spin_unlock_irqrestore(&usbfs_memory_usage_lock, flags);
 163
 164	return ret;
 165}
 166
 167/* Memory for a transfer is being deallocated */
 168static void usbfs_decrease_memory_usage(u64 amount)
 169{
 170	unsigned long flags;
 171
 172	spin_lock_irqsave(&usbfs_memory_usage_lock, flags);
 173	if (amount > usbfs_memory_usage)
 174		usbfs_memory_usage = 0;
 175	else
 176		usbfs_memory_usage -= amount;
 177	spin_unlock_irqrestore(&usbfs_memory_usage_lock, flags);
 178}
 179
 180static int connected(struct usb_dev_state *ps)
 181{
 182	return (!list_empty(&ps->list) &&
 183			ps->dev->state != USB_STATE_NOTATTACHED);
 184}
 185
 186static void dec_usb_memory_use_count(struct usb_memory *usbm, int *count)
 187{
 188	struct usb_dev_state *ps = usbm->ps;
 189	struct usb_hcd *hcd = bus_to_hcd(ps->dev->bus);
 190	unsigned long flags;
 191
 192	spin_lock_irqsave(&ps->lock, flags);
 193	--*count;
 194	if (usbm->urb_use_count == 0 && usbm->vma_use_count == 0) {
 195		list_del(&usbm->memlist);
 196		spin_unlock_irqrestore(&ps->lock, flags);
 197
 198		hcd_buffer_free_pages(hcd, usbm->size,
 199				usbm->mem, usbm->dma_handle);
 200		usbfs_decrease_memory_usage(
 201			usbm->size + sizeof(struct usb_memory));
 202		kfree(usbm);
 203	} else {
 204		spin_unlock_irqrestore(&ps->lock, flags);
 205	}
 206}
 207
 208static void usbdev_vm_open(struct vm_area_struct *vma)
 209{
 210	struct usb_memory *usbm = vma->vm_private_data;
 211	unsigned long flags;
 212
 213	spin_lock_irqsave(&usbm->ps->lock, flags);
 214	++usbm->vma_use_count;
 215	spin_unlock_irqrestore(&usbm->ps->lock, flags);
 216}
 217
 218static void usbdev_vm_close(struct vm_area_struct *vma)
 219{
 220	struct usb_memory *usbm = vma->vm_private_data;
 221
 222	dec_usb_memory_use_count(usbm, &usbm->vma_use_count);
 223}
 224
 225static const struct vm_operations_struct usbdev_vm_ops = {
 226	.open = usbdev_vm_open,
 227	.close = usbdev_vm_close
 228};
 229
 230static int usbdev_mmap(struct file *file, struct vm_area_struct *vma)
 231{
 232	struct usb_memory *usbm = NULL;
 233	struct usb_dev_state *ps = file->private_data;
 234	struct usb_hcd *hcd = bus_to_hcd(ps->dev->bus);
 235	size_t size = vma->vm_end - vma->vm_start;
 236	void *mem;
 237	unsigned long flags;
 238	dma_addr_t dma_handle = DMA_MAPPING_ERROR;
 239	int ret;
 240
 241	if (!(file->f_mode & FMODE_WRITE))
 242		return -EPERM;
 243
 244	ret = usbfs_increase_memory_usage(size + sizeof(struct usb_memory));
 245	if (ret)
 246		goto error;
 247
 248	usbm = kzalloc(sizeof(struct usb_memory), GFP_KERNEL);
 249	if (!usbm) {
 250		ret = -ENOMEM;
 251		goto error_decrease_mem;
 252	}
 253
 254	mem = hcd_buffer_alloc_pages(hcd,
 255			size, GFP_USER | __GFP_NOWARN, &dma_handle);
 256	if (!mem) {
 257		ret = -ENOMEM;
 258		goto error_free_usbm;
 259	}
 260
 261	memset(mem, 0, size);
 262
 263	usbm->mem = mem;
 264	usbm->dma_handle = dma_handle;
 265	usbm->size = size;
 266	usbm->ps = ps;
 267	usbm->vm_start = vma->vm_start;
 268	usbm->vma_use_count = 1;
 269	INIT_LIST_HEAD(&usbm->memlist);
 270
 271	/*
 272	 * In DMA-unavailable cases, hcd_buffer_alloc_pages allocates
 273	 * normal pages and assigns DMA_MAPPING_ERROR to dma_handle. Check
 274	 * whether we are in such cases, and then use remap_pfn_range (or
 275	 * dma_mmap_coherent) to map normal (or DMA) pages into the user
 276	 * space, respectively.
 277	 */
 278	if (dma_handle == DMA_MAPPING_ERROR) {
 279		if (remap_pfn_range(vma, vma->vm_start,
 280				    virt_to_phys(usbm->mem) >> PAGE_SHIFT,
 281				    size, vma->vm_page_prot) < 0) {
 282			dec_usb_memory_use_count(usbm, &usbm->vma_use_count);
 283			return -EAGAIN;
 284		}
 285	} else {
 286		if (dma_mmap_coherent(hcd->self.sysdev, vma, mem, dma_handle,
 287				      size)) {
 288			dec_usb_memory_use_count(usbm, &usbm->vma_use_count);
 289			return -EAGAIN;
 290		}
 291	}
 292
 293	vm_flags_set(vma, VM_IO | VM_DONTEXPAND | VM_DONTDUMP);
 294	vma->vm_ops = &usbdev_vm_ops;
 295	vma->vm_private_data = usbm;
 296
 297	spin_lock_irqsave(&ps->lock, flags);
 298	list_add_tail(&usbm->memlist, &ps->memory_list);
 299	spin_unlock_irqrestore(&ps->lock, flags);
 300
 301	return 0;
 302
 303error_free_usbm:
 304	kfree(usbm);
 305error_decrease_mem:
 306	usbfs_decrease_memory_usage(size + sizeof(struct usb_memory));
 307error:
 308	return ret;
 309}
 310
 311static ssize_t usbdev_read(struct file *file, char __user *buf, size_t nbytes,
 312			   loff_t *ppos)
 313{
 314	struct usb_dev_state *ps = file->private_data;
 315	struct usb_device *dev = ps->dev;
 316	ssize_t ret = 0;
 317	unsigned len;
 318	loff_t pos;
 319	int i;
 320
 321	pos = *ppos;
 322	usb_lock_device(dev);
 323	if (!connected(ps)) {
 324		ret = -ENODEV;
 325		goto err;
 326	} else if (pos < 0) {
 327		ret = -EINVAL;
 328		goto err;
 329	}
 330
 331	if (pos < sizeof(struct usb_device_descriptor)) {
 332		/* 18 bytes - fits on the stack */
 333		struct usb_device_descriptor temp_desc;
 334
 335		memcpy(&temp_desc, &dev->descriptor, sizeof(dev->descriptor));
 336		le16_to_cpus(&temp_desc.bcdUSB);
 337		le16_to_cpus(&temp_desc.idVendor);
 338		le16_to_cpus(&temp_desc.idProduct);
 339		le16_to_cpus(&temp_desc.bcdDevice);
 340
 341		len = sizeof(struct usb_device_descriptor) - pos;
 342		if (len > nbytes)
 343			len = nbytes;
 344		if (copy_to_user(buf, ((char *)&temp_desc) + pos, len)) {
 345			ret = -EFAULT;
 346			goto err;
 347		}
 348
 349		*ppos += len;
 350		buf += len;
 351		nbytes -= len;
 352		ret += len;
 353	}
 354
 355	pos = sizeof(struct usb_device_descriptor);
 356	for (i = 0; nbytes && i < dev->descriptor.bNumConfigurations; i++) {
 357		struct usb_config_descriptor *config =
 358			(struct usb_config_descriptor *)dev->rawdescriptors[i];
 359		unsigned int length = le16_to_cpu(config->wTotalLength);
 360
 361		if (*ppos < pos + length) {
 362
 363			/* The descriptor may claim to be longer than it
 364			 * really is.  Here is the actual allocated length. */
 365			unsigned alloclen =
 366				le16_to_cpu(dev->config[i].desc.wTotalLength);
 367
 368			len = length - (*ppos - pos);
 369			if (len > nbytes)
 370				len = nbytes;
 371
 372			/* Simply don't write (skip over) unallocated parts */
 373			if (alloclen > (*ppos - pos)) {
 374				alloclen -= (*ppos - pos);
 375				if (copy_to_user(buf,
 376				    dev->rawdescriptors[i] + (*ppos - pos),
 377				    min(len, alloclen))) {
 378					ret = -EFAULT;
 379					goto err;
 380				}
 381			}
 382
 383			*ppos += len;
 384			buf += len;
 385			nbytes -= len;
 386			ret += len;
 387		}
 388
 389		pos += length;
 390	}
 391
 392err:
 393	usb_unlock_device(dev);
 394	return ret;
 395}
 396
 397/*
 398 * async list handling
 399 */
 400
 401static struct async *alloc_async(unsigned int numisoframes)
 402{
 403	struct async *as;
 404
 405	as = kzalloc(sizeof(struct async), GFP_KERNEL);
 406	if (!as)
 407		return NULL;
 408	as->urb = usb_alloc_urb(numisoframes, GFP_KERNEL);
 409	if (!as->urb) {
 410		kfree(as);
 411		return NULL;
 412	}
 413	return as;
 414}
 415
 416static void free_async(struct async *as)
 417{
 418	int i;
 419
 420	put_pid(as->pid);
 421	if (as->cred)
 422		put_cred(as->cred);
 423	for (i = 0; i < as->urb->num_sgs; i++) {
 424		if (sg_page(&as->urb->sg[i]))
 425			kfree(sg_virt(&as->urb->sg[i]));
 426	}
 427
 428	kfree(as->urb->sg);
 429	if (as->usbm == NULL)
 430		kfree(as->urb->transfer_buffer);
 431	else
 432		dec_usb_memory_use_count(as->usbm, &as->usbm->urb_use_count);
 433
 434	kfree(as->urb->setup_packet);
 435	usb_free_urb(as->urb);
 436	usbfs_decrease_memory_usage(as->mem_usage);
 437	kfree(as);
 438}
 439
 440static void async_newpending(struct async *as)
 441{
 442	struct usb_dev_state *ps = as->ps;
 443	unsigned long flags;
 444
 445	spin_lock_irqsave(&ps->lock, flags);
 446	list_add_tail(&as->asynclist, &ps->async_pending);
 447	spin_unlock_irqrestore(&ps->lock, flags);
 448}
 449
 450static void async_removepending(struct async *as)
 451{
 452	struct usb_dev_state *ps = as->ps;
 453	unsigned long flags;
 454
 455	spin_lock_irqsave(&ps->lock, flags);
 456	list_del_init(&as->asynclist);
 457	spin_unlock_irqrestore(&ps->lock, flags);
 458}
 459
 460static struct async *async_getcompleted(struct usb_dev_state *ps)
 461{
 462	unsigned long flags;
 463	struct async *as = NULL;
 464
 465	spin_lock_irqsave(&ps->lock, flags);
 466	if (!list_empty(&ps->async_completed)) {
 467		as = list_entry(ps->async_completed.next, struct async,
 468				asynclist);
 469		list_del_init(&as->asynclist);
 470	}
 471	spin_unlock_irqrestore(&ps->lock, flags);
 472	return as;
 473}
 474
 475static struct async *async_getpending(struct usb_dev_state *ps,
 476					     void __user *userurb)
 477{
 
 478	struct async *as;
 479
 
 480	list_for_each_entry(as, &ps->async_pending, asynclist)
 481		if (as->userurb == userurb) {
 482			list_del_init(&as->asynclist);
 
 483			return as;
 484		}
 485
 486	return NULL;
 487}
 488
 489static void snoop_urb(struct usb_device *udev,
 490		void __user *userurb, int pipe, unsigned length,
 491		int timeout_or_status, enum snoop_when when,
 492		unsigned char *data, unsigned data_len)
 493{
 494	static const char *types[] = {"isoc", "int", "ctrl", "bulk"};
 495	static const char *dirs[] = {"out", "in"};
 496	int ep;
 497	const char *t, *d;
 498
 499	if (!usbfs_snoop)
 500		return;
 501
 502	ep = usb_pipeendpoint(pipe);
 503	t = types[usb_pipetype(pipe)];
 504	d = dirs[!!usb_pipein(pipe)];
 505
 506	if (userurb) {		/* Async */
 507		if (when == SUBMIT)
 508			dev_info(&udev->dev, "userurb %px, ep%d %s-%s, "
 509					"length %u\n",
 510					userurb, ep, t, d, length);
 511		else
 512			dev_info(&udev->dev, "userurb %px, ep%d %s-%s, "
 513					"actual_length %u status %d\n",
 514					userurb, ep, t, d, length,
 515					timeout_or_status);
 516	} else {
 517		if (when == SUBMIT)
 518			dev_info(&udev->dev, "ep%d %s-%s, length %u, "
 519					"timeout %d\n",
 520					ep, t, d, length, timeout_or_status);
 521		else
 522			dev_info(&udev->dev, "ep%d %s-%s, actual_length %u, "
 523					"status %d\n",
 524					ep, t, d, length, timeout_or_status);
 525	}
 526
 527	data_len = min(data_len, usbfs_snoop_max);
 528	if (data && data_len > 0) {
 529		print_hex_dump(KERN_DEBUG, "data: ", DUMP_PREFIX_NONE, 32, 1,
 530			data, data_len, 1);
 531	}
 532}
 533
 534static void snoop_urb_data(struct urb *urb, unsigned len)
 535{
 536	int i, size;
 537
 538	len = min(len, usbfs_snoop_max);
 539	if (!usbfs_snoop || len == 0)
 540		return;
 541
 542	if (urb->num_sgs == 0) {
 543		print_hex_dump(KERN_DEBUG, "data: ", DUMP_PREFIX_NONE, 32, 1,
 544			urb->transfer_buffer, len, 1);
 545		return;
 546	}
 547
 548	for (i = 0; i < urb->num_sgs && len; i++) {
 549		size = (len > USB_SG_SIZE) ? USB_SG_SIZE : len;
 550		print_hex_dump(KERN_DEBUG, "data: ", DUMP_PREFIX_NONE, 32, 1,
 551			sg_virt(&urb->sg[i]), size, 1);
 552		len -= size;
 553	}
 554}
 555
 556static int copy_urb_data_to_user(u8 __user *userbuffer, struct urb *urb)
 557{
 558	unsigned i, len, size;
 559
 560	if (urb->number_of_packets > 0)		/* Isochronous */
 561		len = urb->transfer_buffer_length;
 562	else					/* Non-Isoc */
 563		len = urb->actual_length;
 564
 565	if (urb->num_sgs == 0) {
 566		if (copy_to_user(userbuffer, urb->transfer_buffer, len))
 567			return -EFAULT;
 568		return 0;
 569	}
 570
 571	for (i = 0; i < urb->num_sgs && len; i++) {
 572		size = (len > USB_SG_SIZE) ? USB_SG_SIZE : len;
 573		if (copy_to_user(userbuffer, sg_virt(&urb->sg[i]), size))
 574			return -EFAULT;
 575		userbuffer += size;
 576		len -= size;
 577	}
 578
 579	return 0;
 580}
 581
 582#define AS_CONTINUATION	1
 583#define AS_UNLINK	2
 584
 585static void cancel_bulk_urbs(struct usb_dev_state *ps, unsigned bulk_addr)
 586__releases(ps->lock)
 587__acquires(ps->lock)
 588{
 589	struct urb *urb;
 590	struct async *as;
 591
 592	/* Mark all the pending URBs that match bulk_addr, up to but not
 593	 * including the first one without AS_CONTINUATION.  If such an
 594	 * URB is encountered then a new transfer has already started so
 595	 * the endpoint doesn't need to be disabled; otherwise it does.
 596	 */
 597	list_for_each_entry(as, &ps->async_pending, asynclist) {
 598		if (as->bulk_addr == bulk_addr) {
 599			if (as->bulk_status != AS_CONTINUATION)
 600				goto rescan;
 601			as->bulk_status = AS_UNLINK;
 602			as->bulk_addr = 0;
 603		}
 604	}
 605	ps->disabled_bulk_eps |= (1 << bulk_addr);
 606
 607	/* Now carefully unlink all the marked pending URBs */
 608 rescan:
 609	list_for_each_entry_reverse(as, &ps->async_pending, asynclist) {
 610		if (as->bulk_status == AS_UNLINK) {
 611			as->bulk_status = 0;		/* Only once */
 612			urb = as->urb;
 613			usb_get_urb(urb);
 614			spin_unlock(&ps->lock);		/* Allow completions */
 615			usb_unlink_urb(urb);
 616			usb_put_urb(urb);
 617			spin_lock(&ps->lock);
 618			goto rescan;
 619		}
 620	}
 621}
 622
 623static void async_completed(struct urb *urb)
 624{
 625	struct async *as = urb->context;
 626	struct usb_dev_state *ps = as->ps;
 
 627	struct pid *pid = NULL;
 628	const struct cred *cred = NULL;
 629	unsigned long flags;
 630	sigval_t addr;
 631	int signr, errno;
 632
 633	spin_lock_irqsave(&ps->lock, flags);
 634	list_move_tail(&as->asynclist, &ps->async_completed);
 635	as->status = urb->status;
 636	signr = as->signr;
 637	if (signr) {
 638		errno = as->status;
 639		addr = as->userurb_sigval;
 640		pid = get_pid(as->pid);
 641		cred = get_cred(as->cred);
 
 
 
 
 642	}
 643	snoop(&urb->dev->dev, "urb complete\n");
 644	snoop_urb(urb->dev, as->userurb, urb->pipe, urb->actual_length,
 645			as->status, COMPLETE, NULL, 0);
 646	if (usb_urb_dir_in(urb))
 647		snoop_urb_data(urb, urb->actual_length);
 648
 649	if (as->status < 0 && as->bulk_addr && as->status != -ECONNRESET &&
 650			as->status != -ENOENT)
 651		cancel_bulk_urbs(ps, as->bulk_addr);
 
 
 
 
 
 652
 653	wake_up(&ps->wait);
 654	spin_unlock_irqrestore(&ps->lock, flags);
 655
 656	if (signr) {
 657		kill_pid_usb_asyncio(signr, errno, addr, pid, cred);
 658		put_pid(pid);
 659		put_cred(cred);
 660	}
 661}
 662
 663static void destroy_async(struct usb_dev_state *ps, struct list_head *list)
 664{
 665	struct urb *urb;
 666	struct async *as;
 667	unsigned long flags;
 668
 669	spin_lock_irqsave(&ps->lock, flags);
 670	while (!list_empty(list)) {
 671		as = list_last_entry(list, struct async, asynclist);
 672		list_del_init(&as->asynclist);
 673		urb = as->urb;
 674		usb_get_urb(urb);
 675
 676		/* drop the spinlock so the completion handler can run */
 677		spin_unlock_irqrestore(&ps->lock, flags);
 678		usb_kill_urb(urb);
 679		usb_put_urb(urb);
 680		spin_lock_irqsave(&ps->lock, flags);
 681	}
 682	spin_unlock_irqrestore(&ps->lock, flags);
 683}
 684
 685static void destroy_async_on_interface(struct usb_dev_state *ps,
 686				       unsigned int ifnum)
 687{
 688	struct list_head *p, *q, hitlist;
 689	unsigned long flags;
 690
 691	INIT_LIST_HEAD(&hitlist);
 692	spin_lock_irqsave(&ps->lock, flags);
 693	list_for_each_safe(p, q, &ps->async_pending)
 694		if (ifnum == list_entry(p, struct async, asynclist)->ifnum)
 695			list_move_tail(p, &hitlist);
 696	spin_unlock_irqrestore(&ps->lock, flags);
 697	destroy_async(ps, &hitlist);
 698}
 699
 700static void destroy_all_async(struct usb_dev_state *ps)
 701{
 702	destroy_async(ps, &ps->async_pending);
 703}
 704
 705/*
 706 * interface claims are made only at the request of user level code,
 707 * which can also release them (explicitly or by closing files).
 708 * they're also undone when devices disconnect.
 709 */
 710
 711static int driver_probe(struct usb_interface *intf,
 712			const struct usb_device_id *id)
 713{
 714	return -ENODEV;
 715}
 716
 717static void driver_disconnect(struct usb_interface *intf)
 718{
 719	struct usb_dev_state *ps = usb_get_intfdata(intf);
 720	unsigned int ifnum = intf->altsetting->desc.bInterfaceNumber;
 721
 722	if (!ps)
 723		return;
 724
 725	/* NOTE:  this relies on usbcore having canceled and completed
 726	 * all pending I/O requests; 2.6 does that.
 727	 */
 728
 729	if (likely(ifnum < 8*sizeof(ps->ifclaimed)))
 730		clear_bit(ifnum, &ps->ifclaimed);
 731	else
 732		dev_warn(&intf->dev, "interface number %u out of range\n",
 733			 ifnum);
 734
 735	usb_set_intfdata(intf, NULL);
 736
 737	/* force async requests to complete */
 738	destroy_async_on_interface(ps, ifnum);
 739}
 740
 741/* We don't care about suspend/resume of claimed interfaces */
 
 
 742static int driver_suspend(struct usb_interface *intf, pm_message_t msg)
 743{
 744	return 0;
 745}
 746
 747static int driver_resume(struct usb_interface *intf)
 748{
 749	return 0;
 750}
 751
 752#ifdef CONFIG_PM
 753/* The following routines apply to the entire device, not interfaces */
 754void usbfs_notify_suspend(struct usb_device *udev)
 755{
 756	/* We don't need to handle this */
 757}
 758
 759void usbfs_notify_resume(struct usb_device *udev)
 760{
 761	struct usb_dev_state *ps;
 762
 763	/* Protect against simultaneous remove or release */
 764	mutex_lock(&usbfs_mutex);
 765	list_for_each_entry(ps, &udev->filelist, list) {
 766		WRITE_ONCE(ps->not_yet_resumed, 0);
 767		wake_up_all(&ps->wait_for_resume);
 768	}
 769	mutex_unlock(&usbfs_mutex);
 770}
 771#endif
 772
 773struct usb_driver usbfs_driver = {
 774	.name =		"usbfs",
 775	.probe =	driver_probe,
 776	.disconnect =	driver_disconnect,
 777	.suspend =	driver_suspend,
 778	.resume =	driver_resume,
 779	.supports_autosuspend = 1,
 780};
 781
 782static int claimintf(struct usb_dev_state *ps, unsigned int ifnum)
 783{
 784	struct usb_device *dev = ps->dev;
 785	struct usb_interface *intf;
 786	int err;
 787
 788	if (ifnum >= 8*sizeof(ps->ifclaimed))
 789		return -EINVAL;
 790	/* already claimed */
 791	if (test_bit(ifnum, &ps->ifclaimed))
 792		return 0;
 793
 794	if (ps->privileges_dropped &&
 795			!test_bit(ifnum, &ps->interface_allowed_mask))
 796		return -EACCES;
 797
 798	intf = usb_ifnum_to_if(dev, ifnum);
 799	if (!intf)
 800		err = -ENOENT;
 801	else {
 802		unsigned int old_suppress;
 803
 804		/* suppress uevents while claiming interface */
 805		old_suppress = dev_get_uevent_suppress(&intf->dev);
 806		dev_set_uevent_suppress(&intf->dev, 1);
 807		err = usb_driver_claim_interface(&usbfs_driver, intf, ps);
 808		dev_set_uevent_suppress(&intf->dev, old_suppress);
 809	}
 810	if (err == 0)
 811		set_bit(ifnum, &ps->ifclaimed);
 812	return err;
 813}
 814
 815static int releaseintf(struct usb_dev_state *ps, unsigned int ifnum)
 816{
 817	struct usb_device *dev;
 818	struct usb_interface *intf;
 819	int err;
 820
 821	err = -EINVAL;
 822	if (ifnum >= 8*sizeof(ps->ifclaimed))
 823		return err;
 824	dev = ps->dev;
 825	intf = usb_ifnum_to_if(dev, ifnum);
 826	if (!intf)
 827		err = -ENOENT;
 828	else if (test_and_clear_bit(ifnum, &ps->ifclaimed)) {
 829		unsigned int old_suppress;
 830
 831		/* suppress uevents while releasing interface */
 832		old_suppress = dev_get_uevent_suppress(&intf->dev);
 833		dev_set_uevent_suppress(&intf->dev, 1);
 834		usb_driver_release_interface(&usbfs_driver, intf);
 835		dev_set_uevent_suppress(&intf->dev, old_suppress);
 836		err = 0;
 837	}
 838	return err;
 839}
 840
 841static int checkintf(struct usb_dev_state *ps, unsigned int ifnum)
 842{
 843	if (ps->dev->state != USB_STATE_CONFIGURED)
 844		return -EHOSTUNREACH;
 845	if (ifnum >= 8*sizeof(ps->ifclaimed))
 846		return -EINVAL;
 847	if (test_bit(ifnum, &ps->ifclaimed))
 848		return 0;
 849	/* if not yet claimed, claim it for the driver */
 850	dev_warn(&ps->dev->dev, "usbfs: process %d (%s) did not claim "
 851		 "interface %u before use\n", task_pid_nr(current),
 852		 current->comm, ifnum);
 853	return claimintf(ps, ifnum);
 854}
 855
 856static int findintfep(struct usb_device *dev, unsigned int ep)
 857{
 858	unsigned int i, j, e;
 859	struct usb_interface *intf;
 860	struct usb_host_interface *alts;
 861	struct usb_endpoint_descriptor *endpt;
 862
 863	if (ep & ~(USB_DIR_IN|0xf))
 864		return -EINVAL;
 865	if (!dev->actconfig)
 866		return -ESRCH;
 867	for (i = 0; i < dev->actconfig->desc.bNumInterfaces; i++) {
 868		intf = dev->actconfig->interface[i];
 869		for (j = 0; j < intf->num_altsetting; j++) {
 870			alts = &intf->altsetting[j];
 871			for (e = 0; e < alts->desc.bNumEndpoints; e++) {
 872				endpt = &alts->endpoint[e].desc;
 873				if (endpt->bEndpointAddress == ep)
 874					return alts->desc.bInterfaceNumber;
 875			}
 876		}
 877	}
 878	return -ENOENT;
 879}
 880
 881static int check_ctrlrecip(struct usb_dev_state *ps, unsigned int requesttype,
 882			   unsigned int request, unsigned int index)
 883{
 884	int ret = 0;
 885	struct usb_host_interface *alt_setting;
 886
 887	if (ps->dev->state != USB_STATE_UNAUTHENTICATED
 888	 && ps->dev->state != USB_STATE_ADDRESS
 889	 && ps->dev->state != USB_STATE_CONFIGURED)
 890		return -EHOSTUNREACH;
 891	if (USB_TYPE_VENDOR == (USB_TYPE_MASK & requesttype))
 892		return 0;
 893
 894	/*
 895	 * check for the special corner case 'get_device_id' in the printer
 896	 * class specification, which we always want to allow as it is used
 897	 * to query things like ink level, etc.
 898	 */
 899	if (requesttype == 0xa1 && request == 0) {
 900		alt_setting = usb_find_alt_setting(ps->dev->actconfig,
 901						   index >> 8, index & 0xff);
 902		if (alt_setting
 903		 && alt_setting->desc.bInterfaceClass == USB_CLASS_PRINTER)
 904			return 0;
 905	}
 906
 907	index &= 0xff;
 908	switch (requesttype & USB_RECIP_MASK) {
 909	case USB_RECIP_ENDPOINT:
 910		if ((index & ~USB_DIR_IN) == 0)
 911			return 0;
 912		ret = findintfep(ps->dev, index);
 913		if (ret < 0) {
 914			/*
 915			 * Some not fully compliant Win apps seem to get
 916			 * index wrong and have the endpoint number here
 917			 * rather than the endpoint address (with the
 918			 * correct direction). Win does let this through,
 919			 * so we'll not reject it here but leave it to
 920			 * the device to not break KVM. But we warn.
 921			 */
 922			ret = findintfep(ps->dev, index ^ 0x80);
 923			if (ret >= 0)
 924				dev_info(&ps->dev->dev,
 925					"%s: process %i (%s) requesting ep %02x but needs %02x\n",
 926					__func__, task_pid_nr(current),
 927					current->comm, index, index ^ 0x80);
 928		}
 929		if (ret >= 0)
 930			ret = checkintf(ps, ret);
 931		break;
 932
 933	case USB_RECIP_INTERFACE:
 934		ret = checkintf(ps, index);
 935		break;
 936	}
 937	return ret;
 938}
 939
 940static struct usb_host_endpoint *ep_to_host_endpoint(struct usb_device *dev,
 941						     unsigned char ep)
 942{
 943	if (ep & USB_ENDPOINT_DIR_MASK)
 944		return dev->ep_in[ep & USB_ENDPOINT_NUMBER_MASK];
 945	else
 946		return dev->ep_out[ep & USB_ENDPOINT_NUMBER_MASK];
 947}
 948
 949static int parse_usbdevfs_streams(struct usb_dev_state *ps,
 950				  struct usbdevfs_streams __user *streams,
 951				  unsigned int *num_streams_ret,
 952				  unsigned int *num_eps_ret,
 953				  struct usb_host_endpoint ***eps_ret,
 954				  struct usb_interface **intf_ret)
 955{
 956	unsigned int i, num_streams, num_eps;
 957	struct usb_host_endpoint **eps;
 958	struct usb_interface *intf = NULL;
 959	unsigned char ep;
 960	int ifnum, ret;
 961
 962	if (get_user(num_streams, &streams->num_streams) ||
 963	    get_user(num_eps, &streams->num_eps))
 964		return -EFAULT;
 965
 966	if (num_eps < 1 || num_eps > USB_MAXENDPOINTS)
 967		return -EINVAL;
 968
 969	/* The XHCI controller allows max 2 ^ 16 streams */
 970	if (num_streams_ret && (num_streams < 2 || num_streams > 65536))
 971		return -EINVAL;
 972
 973	eps = kmalloc_array(num_eps, sizeof(*eps), GFP_KERNEL);
 974	if (!eps)
 975		return -ENOMEM;
 976
 977	for (i = 0; i < num_eps; i++) {
 978		if (get_user(ep, &streams->eps[i])) {
 979			ret = -EFAULT;
 980			goto error;
 981		}
 982		eps[i] = ep_to_host_endpoint(ps->dev, ep);
 983		if (!eps[i]) {
 984			ret = -EINVAL;
 985			goto error;
 986		}
 987
 988		/* usb_alloc/free_streams operate on an usb_interface */
 989		ifnum = findintfep(ps->dev, ep);
 990		if (ifnum < 0) {
 991			ret = ifnum;
 992			goto error;
 993		}
 994
 995		if (i == 0) {
 996			ret = checkintf(ps, ifnum);
 997			if (ret < 0)
 998				goto error;
 999			intf = usb_ifnum_to_if(ps->dev, ifnum);
1000		} else {
1001			/* Verify all eps belong to the same interface */
1002			if (ifnum != intf->altsetting->desc.bInterfaceNumber) {
1003				ret = -EINVAL;
1004				goto error;
1005			}
1006		}
1007	}
1008
1009	if (num_streams_ret)
1010		*num_streams_ret = num_streams;
1011	*num_eps_ret = num_eps;
1012	*eps_ret = eps;
1013	*intf_ret = intf;
1014
1015	return 0;
1016
1017error:
1018	kfree(eps);
1019	return ret;
1020}
1021
1022static struct usb_device *usbdev_lookup_by_devt(dev_t devt)
1023{
1024	struct device *dev;
1025
1026	dev = bus_find_device_by_devt(&usb_bus_type, devt);
 
1027	if (!dev)
1028		return NULL;
1029	return to_usb_device(dev);
1030}
1031
1032/*
1033 * file operations
1034 */
1035static int usbdev_open(struct inode *inode, struct file *file)
1036{
1037	struct usb_device *dev = NULL;
1038	struct usb_dev_state *ps;
 
1039	int ret;
1040
1041	ret = -ENOMEM;
1042	ps = kzalloc(sizeof(struct usb_dev_state), GFP_KERNEL);
1043	if (!ps)
1044		goto out_free_ps;
1045
1046	ret = -ENODEV;
1047
 
 
 
1048	/* usbdev device-node */
1049	if (imajor(inode) == USB_DEVICE_MAJOR)
1050		dev = usbdev_lookup_by_devt(inode->i_rdev);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1051	if (!dev)
1052		goto out_free_ps;
1053
1054	usb_lock_device(dev);
1055	if (dev->state == USB_STATE_NOTATTACHED)
1056		goto out_unlock_device;
1057
1058	ret = usb_autoresume_device(dev);
1059	if (ret)
1060		goto out_unlock_device;
1061
1062	ps->dev = dev;
1063	ps->file = file;
1064	ps->interface_allowed_mask = 0xFFFFFFFF; /* 32 bits */
1065	spin_lock_init(&ps->lock);
1066	INIT_LIST_HEAD(&ps->list);
1067	INIT_LIST_HEAD(&ps->async_pending);
1068	INIT_LIST_HEAD(&ps->async_completed);
1069	INIT_LIST_HEAD(&ps->memory_list);
1070	init_waitqueue_head(&ps->wait);
1071	init_waitqueue_head(&ps->wait_for_resume);
1072	ps->disc_pid = get_pid(task_pid(current));
1073	ps->cred = get_current_cred();
 
 
 
 
1074	smp_wmb();
1075
1076	/* Can't race with resume; the device is already active */
1077	list_add_tail(&ps->list, &dev->filelist);
1078	file->private_data = ps;
1079	usb_unlock_device(dev);
1080	snoop(&dev->dev, "opened by process %d: %s\n", task_pid_nr(current),
1081			current->comm);
1082	return ret;
1083
1084 out_unlock_device:
1085	usb_unlock_device(dev);
1086	usb_put_dev(dev);
1087 out_free_ps:
1088	kfree(ps);
1089	return ret;
1090}
1091
1092static int usbdev_release(struct inode *inode, struct file *file)
1093{
1094	struct usb_dev_state *ps = file->private_data;
1095	struct usb_device *dev = ps->dev;
1096	unsigned int ifnum;
1097	struct async *as;
1098
1099	usb_lock_device(dev);
1100	usb_hub_release_all_ports(dev, ps);
1101
1102	/* Protect against simultaneous resume */
1103	mutex_lock(&usbfs_mutex);
1104	list_del_init(&ps->list);
1105	mutex_unlock(&usbfs_mutex);
1106
1107	for (ifnum = 0; ps->ifclaimed && ifnum < 8*sizeof(ps->ifclaimed);
1108			ifnum++) {
1109		if (test_bit(ifnum, &ps->ifclaimed))
1110			releaseintf(ps, ifnum);
1111	}
1112	destroy_all_async(ps);
1113	if (!ps->suspend_allowed)
1114		usb_autosuspend_device(dev);
1115	usb_unlock_device(dev);
1116	usb_put_dev(dev);
1117	put_pid(ps->disc_pid);
1118	put_cred(ps->cred);
1119
1120	as = async_getcompleted(ps);
1121	while (as) {
1122		free_async(as);
1123		as = async_getcompleted(ps);
1124	}
1125
1126	kfree(ps);
1127	return 0;
1128}
1129
1130static void usbfs_blocking_completion(struct urb *urb)
1131{
1132	complete((struct completion *) urb->context);
1133}
1134
1135/*
1136 * Much like usb_start_wait_urb, but returns status separately from
1137 * actual_length and uses a killable wait.
1138 */
1139static int usbfs_start_wait_urb(struct urb *urb, int timeout,
1140		unsigned int *actlen)
1141{
1142	DECLARE_COMPLETION_ONSTACK(ctx);
1143	unsigned long expire;
1144	int rc;
1145
1146	urb->context = &ctx;
1147	urb->complete = usbfs_blocking_completion;
1148	*actlen = 0;
1149	rc = usb_submit_urb(urb, GFP_KERNEL);
1150	if (unlikely(rc))
1151		return rc;
1152
1153	expire = (timeout ? msecs_to_jiffies(timeout) : MAX_SCHEDULE_TIMEOUT);
1154	rc = wait_for_completion_killable_timeout(&ctx, expire);
1155	if (rc <= 0) {
1156		usb_kill_urb(urb);
1157		*actlen = urb->actual_length;
1158		if (urb->status != -ENOENT)
1159			;	/* Completed before it was killed */
1160		else if (rc < 0)
1161			return -EINTR;
1162		else
1163			return -ETIMEDOUT;
1164	}
1165	*actlen = urb->actual_length;
1166	return urb->status;
1167}
1168
1169static int do_proc_control(struct usb_dev_state *ps,
1170		struct usbdevfs_ctrltransfer *ctrl)
1171{
1172	struct usb_device *dev = ps->dev;
 
1173	unsigned int tmo;
1174	unsigned char *tbuf;
1175	unsigned int wLength, actlen;
1176	int i, pipe, ret;
1177	struct urb *urb = NULL;
1178	struct usb_ctrlrequest *dr = NULL;
1179
1180	ret = check_ctrlrecip(ps, ctrl->bRequestType, ctrl->bRequest,
1181			      ctrl->wIndex);
 
1182	if (ret)
1183		return ret;
1184	wLength = ctrl->wLength;	/* To suppress 64k PAGE_SIZE warning */
1185	if (wLength > PAGE_SIZE)
1186		return -EINVAL;
1187	ret = usbfs_increase_memory_usage(PAGE_SIZE + sizeof(struct urb) +
1188			sizeof(struct usb_ctrlrequest));
1189	if (ret)
1190		return ret;
1191
1192	ret = -ENOMEM;
1193	tbuf = (unsigned char *)__get_free_page(GFP_KERNEL);
1194	if (!tbuf)
1195		goto done;
1196	urb = usb_alloc_urb(0, GFP_NOIO);
1197	if (!urb)
1198		goto done;
1199	dr = kmalloc(sizeof(struct usb_ctrlrequest), GFP_NOIO);
1200	if (!dr)
1201		goto done;
1202
1203	dr->bRequestType = ctrl->bRequestType;
1204	dr->bRequest = ctrl->bRequest;
1205	dr->wValue = cpu_to_le16(ctrl->wValue);
1206	dr->wIndex = cpu_to_le16(ctrl->wIndex);
1207	dr->wLength = cpu_to_le16(ctrl->wLength);
1208
1209	tmo = ctrl->timeout;
1210	snoop(&dev->dev, "control urb: bRequestType=%02x "
1211		"bRequest=%02x wValue=%04x "
1212		"wIndex=%04x wLength=%04x\n",
1213		ctrl->bRequestType, ctrl->bRequest, ctrl->wValue,
1214		ctrl->wIndex, ctrl->wLength);
1215
1216	if ((ctrl->bRequestType & USB_DIR_IN) && wLength) {
 
 
 
 
 
 
1217		pipe = usb_rcvctrlpipe(dev, 0);
1218		usb_fill_control_urb(urb, dev, pipe, (unsigned char *) dr, tbuf,
1219				wLength, NULL, NULL);
1220		snoop_urb(dev, NULL, pipe, wLength, tmo, SUBMIT, NULL, 0);
1221
1222		usb_unlock_device(dev);
1223		i = usbfs_start_wait_urb(urb, tmo, &actlen);
1224
1225		/* Linger a bit, prior to the next control message. */
1226		if (dev->quirks & USB_QUIRK_DELAY_CTRL_MSG)
1227			msleep(200);
1228		usb_lock_device(dev);
1229		snoop_urb(dev, NULL, pipe, actlen, i, COMPLETE, tbuf, actlen);
1230		if (!i && actlen) {
1231			if (copy_to_user(ctrl->data, tbuf, actlen)) {
1232				ret = -EFAULT;
1233				goto done;
 
1234			}
1235		}
1236	} else {
1237		if (wLength) {
1238			if (copy_from_user(tbuf, ctrl->data, wLength)) {
1239				ret = -EFAULT;
1240				goto done;
1241			}
1242		}
1243		pipe = usb_sndctrlpipe(dev, 0);
1244		usb_fill_control_urb(urb, dev, pipe, (unsigned char *) dr, tbuf,
1245				wLength, NULL, NULL);
1246		snoop_urb(dev, NULL, pipe, wLength, tmo, SUBMIT, tbuf, wLength);
1247
1248		usb_unlock_device(dev);
1249		i = usbfs_start_wait_urb(urb, tmo, &actlen);
1250
1251		/* Linger a bit, prior to the next control message. */
1252		if (dev->quirks & USB_QUIRK_DELAY_CTRL_MSG)
1253			msleep(200);
1254		usb_lock_device(dev);
1255		snoop_urb(dev, NULL, pipe, actlen, i, COMPLETE, NULL, 0);
1256	}
 
1257	if (i < 0 && i != -EPIPE) {
1258		dev_printk(KERN_DEBUG, &dev->dev, "usbfs: USBDEVFS_CONTROL "
1259			   "failed cmd %s rqt %u rq %u len %u ret %d\n",
1260			   current->comm, ctrl->bRequestType, ctrl->bRequest,
1261			   ctrl->wLength, i);
1262	}
1263	ret = (i < 0 ? i : actlen);
1264
1265 done:
1266	kfree(dr);
1267	usb_free_urb(urb);
1268	free_page((unsigned long) tbuf);
1269	usbfs_decrease_memory_usage(PAGE_SIZE + sizeof(struct urb) +
1270			sizeof(struct usb_ctrlrequest));
1271	return ret;
1272}
1273
1274static int proc_control(struct usb_dev_state *ps, void __user *arg)
1275{
1276	struct usbdevfs_ctrltransfer ctrl;
1277
1278	if (copy_from_user(&ctrl, arg, sizeof(ctrl)))
1279		return -EFAULT;
1280	return do_proc_control(ps, &ctrl);
1281}
1282
1283static int do_proc_bulk(struct usb_dev_state *ps,
1284		struct usbdevfs_bulktransfer *bulk)
1285{
1286	struct usb_device *dev = ps->dev;
1287	unsigned int tmo, len1, len2, pipe;
 
 
1288	unsigned char *tbuf;
1289	int i, ret;
1290	struct urb *urb = NULL;
1291	struct usb_host_endpoint *ep;
1292
1293	ret = findintfep(ps->dev, bulk->ep);
 
 
1294	if (ret < 0)
1295		return ret;
1296	ret = checkintf(ps, ret);
1297	if (ret)
1298		return ret;
1299
1300	len1 = bulk->len;
1301	if (len1 >= (INT_MAX - sizeof(struct urb)))
 
 
1302		return -EINVAL;
1303
1304	if (bulk->ep & USB_DIR_IN)
1305		pipe = usb_rcvbulkpipe(dev, bulk->ep & 0x7f);
1306	else
1307		pipe = usb_sndbulkpipe(dev, bulk->ep & 0x7f);
1308	ep = usb_pipe_endpoint(dev, pipe);
1309	if (!ep || !usb_endpoint_maxp(&ep->desc))
1310		return -EINVAL;
1311	ret = usbfs_increase_memory_usage(len1 + sizeof(struct urb));
1312	if (ret)
1313		return ret;
1314
1315	/*
1316	 * len1 can be almost arbitrarily large.  Don't WARN if it's
1317	 * too big, just fail the request.
1318	 */
1319	ret = -ENOMEM;
1320	tbuf = kmalloc(len1, GFP_KERNEL | __GFP_NOWARN);
1321	if (!tbuf)
1322		goto done;
1323	urb = usb_alloc_urb(0, GFP_KERNEL);
1324	if (!urb)
1325		goto done;
1326
1327	if ((ep->desc.bmAttributes & USB_ENDPOINT_XFERTYPE_MASK) ==
1328			USB_ENDPOINT_XFER_INT) {
1329		pipe = (pipe & ~(3 << 30)) | (PIPE_INTERRUPT << 30);
1330		usb_fill_int_urb(urb, dev, pipe, tbuf, len1,
1331				NULL, NULL, ep->desc.bInterval);
1332	} else {
1333		usb_fill_bulk_urb(urb, dev, pipe, tbuf, len1, NULL, NULL);
1334	}
1335
1336	tmo = bulk->timeout;
1337	if (bulk->ep & 0x80) {
1338		snoop_urb(dev, NULL, pipe, len1, tmo, SUBMIT, NULL, 0);
1339
1340		usb_unlock_device(dev);
1341		i = usbfs_start_wait_urb(urb, tmo, &len2);
1342		usb_lock_device(dev);
1343		snoop_urb(dev, NULL, pipe, len2, i, COMPLETE, tbuf, len2);
1344
1345		if (!i && len2) {
1346			if (copy_to_user(bulk->data, tbuf, len2)) {
1347				ret = -EFAULT;
1348				goto done;
1349			}
1350		}
1351	} else {
1352		if (len1) {
1353			if (copy_from_user(tbuf, bulk->data, len1)) {
1354				ret = -EFAULT;
1355				goto done;
1356			}
1357		}
1358		snoop_urb(dev, NULL, pipe, len1, tmo, SUBMIT, tbuf, len1);
1359
1360		usb_unlock_device(dev);
1361		i = usbfs_start_wait_urb(urb, tmo, &len2);
1362		usb_lock_device(dev);
1363		snoop_urb(dev, NULL, pipe, len2, i, COMPLETE, NULL, 0);
1364	}
1365	ret = (i < 0 ? i : len2);
1366 done:
1367	usb_free_urb(urb);
1368	kfree(tbuf);
1369	usbfs_decrease_memory_usage(len1 + sizeof(struct urb));
1370	return ret;
 
1371}
1372
1373static int proc_bulk(struct usb_dev_state *ps, void __user *arg)
1374{
1375	struct usbdevfs_bulktransfer bulk;
1376
1377	if (copy_from_user(&bulk, arg, sizeof(bulk)))
1378		return -EFAULT;
1379	return do_proc_bulk(ps, &bulk);
1380}
1381
1382static void check_reset_of_active_ep(struct usb_device *udev,
1383		unsigned int epnum, char *ioctl_name)
1384{
1385	struct usb_host_endpoint **eps;
1386	struct usb_host_endpoint *ep;
1387
1388	eps = (epnum & USB_DIR_IN) ? udev->ep_in : udev->ep_out;
1389	ep = eps[epnum & 0x0f];
1390	if (ep && !list_empty(&ep->urb_list))
1391		dev_warn(&udev->dev, "Process %d (%s) called USBDEVFS_%s for active endpoint 0x%02x\n",
1392				task_pid_nr(current), current->comm,
1393				ioctl_name, epnum);
1394}
1395
1396static int proc_resetep(struct usb_dev_state *ps, void __user *arg)
1397{
1398	unsigned int ep;
1399	int ret;
1400
1401	if (get_user(ep, (unsigned int __user *)arg))
1402		return -EFAULT;
1403	ret = findintfep(ps->dev, ep);
1404	if (ret < 0)
1405		return ret;
1406	ret = checkintf(ps, ret);
1407	if (ret)
1408		return ret;
1409	check_reset_of_active_ep(ps->dev, ep, "RESETEP");
1410	usb_reset_endpoint(ps->dev, ep);
1411	return 0;
1412}
1413
1414static int proc_clearhalt(struct usb_dev_state *ps, void __user *arg)
1415{
1416	unsigned int ep;
1417	int pipe;
1418	int ret;
1419
1420	if (get_user(ep, (unsigned int __user *)arg))
1421		return -EFAULT;
1422	ret = findintfep(ps->dev, ep);
1423	if (ret < 0)
1424		return ret;
1425	ret = checkintf(ps, ret);
1426	if (ret)
1427		return ret;
1428	check_reset_of_active_ep(ps->dev, ep, "CLEAR_HALT");
1429	if (ep & USB_DIR_IN)
1430		pipe = usb_rcvbulkpipe(ps->dev, ep & 0x7f);
1431	else
1432		pipe = usb_sndbulkpipe(ps->dev, ep & 0x7f);
1433
1434	return usb_clear_halt(ps->dev, pipe);
1435}
1436
1437static int proc_getdriver(struct usb_dev_state *ps, void __user *arg)
1438{
1439	struct usbdevfs_getdriver gd;
1440	struct usb_interface *intf;
1441	int ret;
1442
1443	if (copy_from_user(&gd, arg, sizeof(gd)))
1444		return -EFAULT;
1445	intf = usb_ifnum_to_if(ps->dev, gd.interface);
1446	if (!intf || !intf->dev.driver)
1447		ret = -ENODATA;
1448	else {
1449		strscpy(gd.driver, intf->dev.driver->name,
1450				sizeof(gd.driver));
1451		ret = (copy_to_user(arg, &gd, sizeof(gd)) ? -EFAULT : 0);
1452	}
1453	return ret;
1454}
1455
1456static int proc_connectinfo(struct usb_dev_state *ps, void __user *arg)
1457{
1458	struct usbdevfs_connectinfo ci;
1459
1460	memset(&ci, 0, sizeof(ci));
1461	ci.devnum = ps->dev->devnum;
1462	ci.slow = ps->dev->speed == USB_SPEED_LOW;
1463
1464	if (copy_to_user(arg, &ci, sizeof(ci)))
1465		return -EFAULT;
1466	return 0;
1467}
1468
1469static int proc_conninfo_ex(struct usb_dev_state *ps,
1470			    void __user *arg, size_t size)
1471{
1472	struct usbdevfs_conninfo_ex ci;
1473	struct usb_device *udev = ps->dev;
1474
1475	if (size < sizeof(ci.size))
1476		return -EINVAL;
1477
1478	memset(&ci, 0, sizeof(ci));
1479	ci.size = sizeof(ci);
1480	ci.busnum = udev->bus->busnum;
1481	ci.devnum = udev->devnum;
1482	ci.speed = udev->speed;
1483
1484	while (udev && udev->portnum != 0) {
1485		if (++ci.num_ports <= ARRAY_SIZE(ci.ports))
1486			ci.ports[ARRAY_SIZE(ci.ports) - ci.num_ports] =
1487					udev->portnum;
1488		udev = udev->parent;
1489	}
1490
1491	if (ci.num_ports < ARRAY_SIZE(ci.ports))
1492		memmove(&ci.ports[0],
1493			&ci.ports[ARRAY_SIZE(ci.ports) - ci.num_ports],
1494			ci.num_ports);
1495
1496	if (copy_to_user(arg, &ci, min(sizeof(ci), size)))
1497		return -EFAULT;
1498
1499	return 0;
1500}
1501
1502static int proc_resetdevice(struct usb_dev_state *ps)
1503{
1504	struct usb_host_config *actconfig = ps->dev->actconfig;
1505	struct usb_interface *interface;
1506	int i, number;
1507
1508	/* Don't allow a device reset if the process has dropped the
1509	 * privilege to do such things and any of the interfaces are
1510	 * currently claimed.
1511	 */
1512	if (ps->privileges_dropped && actconfig) {
1513		for (i = 0; i < actconfig->desc.bNumInterfaces; ++i) {
1514			interface = actconfig->interface[i];
1515			number = interface->cur_altsetting->desc.bInterfaceNumber;
1516			if (usb_interface_claimed(interface) &&
1517					!test_bit(number, &ps->ifclaimed)) {
1518				dev_warn(&ps->dev->dev,
1519					"usbfs: interface %d claimed by %s while '%s' resets device\n",
1520					number,	interface->dev.driver->name, current->comm);
1521				return -EACCES;
1522			}
1523		}
1524	}
1525
1526	return usb_reset_device(ps->dev);
1527}
1528
1529static int proc_setintf(struct usb_dev_state *ps, void __user *arg)
1530{
1531	struct usbdevfs_setinterface setintf;
1532	int ret;
1533
1534	if (copy_from_user(&setintf, arg, sizeof(setintf)))
1535		return -EFAULT;
1536	ret = checkintf(ps, setintf.interface);
1537	if (ret)
1538		return ret;
1539
1540	destroy_async_on_interface(ps, setintf.interface);
1541
1542	return usb_set_interface(ps->dev, setintf.interface,
1543			setintf.altsetting);
1544}
1545
1546static int proc_setconfig(struct usb_dev_state *ps, void __user *arg)
1547{
1548	int u;
1549	int status = 0;
1550	struct usb_host_config *actconfig;
1551
1552	if (get_user(u, (int __user *)arg))
1553		return -EFAULT;
1554
1555	actconfig = ps->dev->actconfig;
1556
1557	/* Don't touch the device if any interfaces are claimed.
1558	 * It could interfere with other drivers' operations, and if
1559	 * an interface is claimed by usbfs it could easily deadlock.
1560	 */
1561	if (actconfig) {
1562		int i;
1563
1564		for (i = 0; i < actconfig->desc.bNumInterfaces; ++i) {
1565			if (usb_interface_claimed(actconfig->interface[i])) {
1566				dev_warn(&ps->dev->dev,
1567					"usbfs: interface %d claimed by %s "
1568					"while '%s' sets config #%d\n",
1569					actconfig->interface[i]
1570						->cur_altsetting
1571						->desc.bInterfaceNumber,
1572					actconfig->interface[i]
1573						->dev.driver->name,
1574					current->comm, u);
1575				status = -EBUSY;
1576				break;
1577			}
1578		}
1579	}
1580
1581	/* SET_CONFIGURATION is often abused as a "cheap" driver reset,
1582	 * so avoid usb_set_configuration()'s kick to sysfs
1583	 */
1584	if (status == 0) {
1585		if (actconfig && actconfig->desc.bConfigurationValue == u)
1586			status = usb_reset_configuration(ps->dev);
1587		else
1588			status = usb_set_configuration(ps->dev, u);
1589	}
1590
1591	return status;
1592}
1593
1594static struct usb_memory *
1595find_memory_area(struct usb_dev_state *ps, const struct usbdevfs_urb *uurb)
1596{
1597	struct usb_memory *usbm = NULL, *iter;
1598	unsigned long flags;
1599	unsigned long uurb_start = (unsigned long)uurb->buffer;
1600
1601	spin_lock_irqsave(&ps->lock, flags);
1602	list_for_each_entry(iter, &ps->memory_list, memlist) {
1603		if (uurb_start >= iter->vm_start &&
1604				uurb_start < iter->vm_start + iter->size) {
1605			if (uurb->buffer_length > iter->vm_start + iter->size -
1606					uurb_start) {
1607				usbm = ERR_PTR(-EINVAL);
1608			} else {
1609				usbm = iter;
1610				usbm->urb_use_count++;
1611			}
1612			break;
1613		}
1614	}
1615	spin_unlock_irqrestore(&ps->lock, flags);
1616	return usbm;
1617}
1618
1619static int proc_do_submiturb(struct usb_dev_state *ps, struct usbdevfs_urb *uurb,
1620			struct usbdevfs_iso_packet_desc __user *iso_frame_desc,
1621			void __user *arg, sigval_t userurb_sigval)
1622{
1623	struct usbdevfs_iso_packet_desc *isopkt = NULL;
1624	struct usb_host_endpoint *ep;
1625	struct async *as = NULL;
1626	struct usb_ctrlrequest *dr = NULL;
 
1627	unsigned int u, totlen, isofrmlen;
1628	int i, ret, num_sgs = 0, ifnum = -1;
1629	int number_of_packets = 0;
1630	unsigned int stream_id = 0;
1631	void *buf;
1632	bool is_in;
1633	bool allow_short = false;
1634	bool allow_zero = false;
1635	unsigned long mask =	USBDEVFS_URB_SHORT_NOT_OK |
1636				USBDEVFS_URB_BULK_CONTINUATION |
1637				USBDEVFS_URB_NO_FSBR |
1638				USBDEVFS_URB_ZERO_PACKET |
1639				USBDEVFS_URB_NO_INTERRUPT;
1640	/* USBDEVFS_URB_ISO_ASAP is a special case */
1641	if (uurb->type == USBDEVFS_URB_TYPE_ISO)
1642		mask |= USBDEVFS_URB_ISO_ASAP;
1643
1644	if (uurb->flags & ~mask)
1645			return -EINVAL;
1646
1647	if ((unsigned int)uurb->buffer_length >= USBFS_XFER_MAX)
1648		return -EINVAL;
1649	if (uurb->buffer_length > 0 && !uurb->buffer)
1650		return -EINVAL;
1651	if (!(uurb->type == USBDEVFS_URB_TYPE_CONTROL &&
1652	    (uurb->endpoint & ~USB_ENDPOINT_DIR_MASK) == 0)) {
1653		ifnum = findintfep(ps->dev, uurb->endpoint);
1654		if (ifnum < 0)
1655			return ifnum;
1656		ret = checkintf(ps, ifnum);
1657		if (ret)
1658			return ret;
1659	}
1660	ep = ep_to_host_endpoint(ps->dev, uurb->endpoint);
 
 
 
 
 
 
1661	if (!ep)
1662		return -ENOENT;
1663	is_in = (uurb->endpoint & USB_ENDPOINT_DIR_MASK) != 0;
1664
1665	u = 0;
1666	switch (uurb->type) {
1667	case USBDEVFS_URB_TYPE_CONTROL:
1668		if (!usb_endpoint_xfer_control(&ep->desc))
1669			return -EINVAL;
1670		/* min 8 byte setup packet */
1671		if (uurb->buffer_length < 8)
 
 
1672			return -EINVAL;
1673		dr = kmalloc(sizeof(struct usb_ctrlrequest), GFP_KERNEL);
1674		if (!dr)
1675			return -ENOMEM;
1676		if (copy_from_user(dr, uurb->buffer, 8)) {
1677			ret = -EFAULT;
1678			goto error;
1679		}
1680		if (uurb->buffer_length < (le16_to_cpu(dr->wLength) + 8)) {
1681			ret = -EINVAL;
1682			goto error;
1683		}
1684		ret = check_ctrlrecip(ps, dr->bRequestType, dr->bRequest,
1685				      le16_to_cpu(dr->wIndex));
1686		if (ret)
1687			goto error;
1688		uurb->buffer_length = le16_to_cpu(dr->wLength);
 
 
 
1689		uurb->buffer += 8;
1690		if ((dr->bRequestType & USB_DIR_IN) && uurb->buffer_length) {
1691			is_in = true;
1692			uurb->endpoint |= USB_DIR_IN;
1693		} else {
1694			is_in = false;
1695			uurb->endpoint &= ~USB_DIR_IN;
1696		}
1697		if (is_in)
1698			allow_short = true;
1699		snoop(&ps->dev->dev, "control urb: bRequestType=%02x "
1700			"bRequest=%02x wValue=%04x "
1701			"wIndex=%04x wLength=%04x\n",
1702			dr->bRequestType, dr->bRequest,
1703			__le16_to_cpu(dr->wValue),
1704			__le16_to_cpu(dr->wIndex),
1705			__le16_to_cpu(dr->wLength));
1706		u = sizeof(struct usb_ctrlrequest);
1707		break;
1708
1709	case USBDEVFS_URB_TYPE_BULK:
1710		if (!is_in)
1711			allow_zero = true;
1712		else
1713			allow_short = true;
1714		switch (usb_endpoint_type(&ep->desc)) {
1715		case USB_ENDPOINT_XFER_CONTROL:
1716		case USB_ENDPOINT_XFER_ISOC:
1717			return -EINVAL;
1718		case USB_ENDPOINT_XFER_INT:
1719			/* allow single-shot interrupt transfers */
1720			uurb->type = USBDEVFS_URB_TYPE_INTERRUPT;
1721			goto interrupt_urb;
1722		}
1723		num_sgs = DIV_ROUND_UP(uurb->buffer_length, USB_SG_SIZE);
1724		if (num_sgs == 1 || num_sgs > ps->dev->bus->sg_tablesize)
1725			num_sgs = 0;
1726		if (ep->streams)
1727			stream_id = uurb->stream_id;
1728		break;
1729
1730	case USBDEVFS_URB_TYPE_INTERRUPT:
1731		if (!usb_endpoint_xfer_int(&ep->desc))
1732			return -EINVAL;
1733 interrupt_urb:
1734		if (!is_in)
1735			allow_zero = true;
1736		else
1737			allow_short = true;
1738		break;
1739
1740	case USBDEVFS_URB_TYPE_ISO:
1741		/* arbitrary limit */
1742		if (uurb->number_of_packets < 1 ||
1743		    uurb->number_of_packets > 128)
1744			return -EINVAL;
1745		if (!usb_endpoint_xfer_isoc(&ep->desc))
1746			return -EINVAL;
1747		number_of_packets = uurb->number_of_packets;
1748		isofrmlen = sizeof(struct usbdevfs_iso_packet_desc) *
1749				   number_of_packets;
1750		isopkt = memdup_user(iso_frame_desc, isofrmlen);
1751		if (IS_ERR(isopkt)) {
1752			ret = PTR_ERR(isopkt);
1753			isopkt = NULL;
1754			goto error;
1755		}
1756		for (totlen = u = 0; u < number_of_packets; u++) {
1757			/*
1758			 * arbitrary limit need for USB 3.1 Gen2
1759			 * sizemax: 96 DPs at SSP, 96 * 1024 = 98304
1760			 */
1761			if (isopkt[u].length > 98304) {
1762				ret = -EINVAL;
1763				goto error;
1764			}
1765			totlen += isopkt[u].length;
1766		}
1767		u *= sizeof(struct usb_iso_packet_descriptor);
 
 
 
 
1768		uurb->buffer_length = totlen;
1769		break;
1770
1771	default:
1772		return -EINVAL;
1773	}
1774
1775	if (uurb->buffer_length > 0 &&
1776			!access_ok(uurb->buffer, uurb->buffer_length)) {
1777		ret = -EFAULT;
1778		goto error;
 
 
1779	}
1780	as = alloc_async(number_of_packets);
1781	if (!as) {
1782		ret = -ENOMEM;
1783		goto error;
 
1784	}
1785
1786	as->usbm = find_memory_area(ps, uurb);
1787	if (IS_ERR(as->usbm)) {
1788		ret = PTR_ERR(as->usbm);
1789		as->usbm = NULL;
1790		goto error;
1791	}
1792
1793	/* do not use SG buffers when memory mapped segments
1794	 * are in use
1795	 */
1796	if (as->usbm)
1797		num_sgs = 0;
1798
1799	u += sizeof(struct async) + sizeof(struct urb) +
1800	     (as->usbm ? 0 : uurb->buffer_length) +
1801	     num_sgs * sizeof(struct scatterlist);
1802	ret = usbfs_increase_memory_usage(u);
1803	if (ret)
1804		goto error;
1805	as->mem_usage = u;
1806
1807	if (num_sgs) {
1808		as->urb->sg = kmalloc_array(num_sgs,
1809					    sizeof(struct scatterlist),
1810					    GFP_KERNEL | __GFP_NOWARN);
1811		if (!as->urb->sg) {
1812			ret = -ENOMEM;
1813			goto error;
1814		}
1815		as->urb->num_sgs = num_sgs;
1816		sg_init_table(as->urb->sg, as->urb->num_sgs);
1817
1818		totlen = uurb->buffer_length;
1819		for (i = 0; i < as->urb->num_sgs; i++) {
1820			u = (totlen > USB_SG_SIZE) ? USB_SG_SIZE : totlen;
1821			buf = kmalloc(u, GFP_KERNEL);
1822			if (!buf) {
1823				ret = -ENOMEM;
1824				goto error;
1825			}
1826			sg_set_buf(&as->urb->sg[i], buf, u);
1827
1828			if (!is_in) {
1829				if (copy_from_user(buf, uurb->buffer, u)) {
1830					ret = -EFAULT;
1831					goto error;
1832				}
1833				uurb->buffer += u;
1834			}
1835			totlen -= u;
1836		}
1837	} else if (uurb->buffer_length > 0) {
1838		if (as->usbm) {
1839			unsigned long uurb_start = (unsigned long)uurb->buffer;
1840
1841			as->urb->transfer_buffer = as->usbm->mem +
1842					(uurb_start - as->usbm->vm_start);
1843		} else {
1844			as->urb->transfer_buffer = kmalloc(uurb->buffer_length,
1845					GFP_KERNEL | __GFP_NOWARN);
1846			if (!as->urb->transfer_buffer) {
1847				ret = -ENOMEM;
1848				goto error;
1849			}
1850			if (!is_in) {
1851				if (copy_from_user(as->urb->transfer_buffer,
1852						   uurb->buffer,
1853						   uurb->buffer_length)) {
1854					ret = -EFAULT;
1855					goto error;
1856				}
1857			} else if (uurb->type == USBDEVFS_URB_TYPE_ISO) {
1858				/*
1859				 * Isochronous input data may end up being
1860				 * discontiguous if some of the packets are
1861				 * short. Clear the buffer so that the gaps
1862				 * don't leak kernel data to userspace.
1863				 */
1864				memset(as->urb->transfer_buffer, 0,
1865						uurb->buffer_length);
1866			}
1867		}
 
 
 
 
 
 
 
1868	}
1869	as->urb->dev = ps->dev;
1870	as->urb->pipe = (uurb->type << 30) |
1871			__create_pipe(ps->dev, uurb->endpoint & 0xf) |
1872			(uurb->endpoint & USB_DIR_IN);
1873
1874	/* This tedious sequence is necessary because the URB_* flags
1875	 * are internal to the kernel and subject to change, whereas
1876	 * the USBDEVFS_URB_* flags are a user API and must not be changed.
1877	 */
1878	u = (is_in ? URB_DIR_IN : URB_DIR_OUT);
1879	if (uurb->flags & USBDEVFS_URB_ISO_ASAP)
1880		u |= URB_ISO_ASAP;
1881	if (allow_short && uurb->flags & USBDEVFS_URB_SHORT_NOT_OK)
1882		u |= URB_SHORT_NOT_OK;
1883	if (allow_zero && uurb->flags & USBDEVFS_URB_ZERO_PACKET)
 
 
1884		u |= URB_ZERO_PACKET;
1885	if (uurb->flags & USBDEVFS_URB_NO_INTERRUPT)
1886		u |= URB_NO_INTERRUPT;
1887	as->urb->transfer_flags = u;
1888
1889	if (!allow_short && uurb->flags & USBDEVFS_URB_SHORT_NOT_OK)
1890		dev_warn(&ps->dev->dev, "Requested nonsensical USBDEVFS_URB_SHORT_NOT_OK.\n");
1891	if (!allow_zero && uurb->flags & USBDEVFS_URB_ZERO_PACKET)
1892		dev_warn(&ps->dev->dev, "Requested nonsensical USBDEVFS_URB_ZERO_PACKET.\n");
1893
1894	as->urb->transfer_buffer_length = uurb->buffer_length;
1895	as->urb->setup_packet = (unsigned char *)dr;
1896	dr = NULL;
1897	as->urb->start_frame = uurb->start_frame;
1898	as->urb->number_of_packets = number_of_packets;
1899	as->urb->stream_id = stream_id;
1900
1901	if (ep->desc.bInterval) {
1902		if (uurb->type == USBDEVFS_URB_TYPE_ISO ||
1903				ps->dev->speed == USB_SPEED_HIGH ||
1904				ps->dev->speed >= USB_SPEED_SUPER)
1905			as->urb->interval = 1 <<
1906					min(15, ep->desc.bInterval - 1);
1907		else
1908			as->urb->interval = ep->desc.bInterval;
1909	}
1910
1911	as->urb->context = as;
1912	as->urb->complete = async_completed;
1913	for (totlen = u = 0; u < number_of_packets; u++) {
1914		as->urb->iso_frame_desc[u].offset = totlen;
1915		as->urb->iso_frame_desc[u].length = isopkt[u].length;
1916		totlen += isopkt[u].length;
1917	}
1918	kfree(isopkt);
1919	isopkt = NULL;
1920	as->ps = ps;
1921	as->userurb = arg;
1922	as->userurb_sigval = userurb_sigval;
1923	if (as->usbm) {
1924		unsigned long uurb_start = (unsigned long)uurb->buffer;
1925
1926		as->urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
1927		as->urb->transfer_dma = as->usbm->dma_handle +
1928				(uurb_start - as->usbm->vm_start);
1929	} else if (is_in && uurb->buffer_length > 0)
1930		as->userbuffer = uurb->buffer;
 
 
1931	as->signr = uurb->signr;
1932	as->ifnum = ifnum;
1933	as->pid = get_pid(task_pid(current));
1934	as->cred = get_current_cred();
 
 
 
 
 
 
 
 
 
1935	snoop_urb(ps->dev, as->userurb, as->urb->pipe,
1936			as->urb->transfer_buffer_length, 0, SUBMIT,
1937			NULL, 0);
1938	if (!is_in)
1939		snoop_urb_data(as->urb, as->urb->transfer_buffer_length);
1940
1941	async_newpending(as);
1942
1943	if (usb_endpoint_xfer_bulk(&ep->desc)) {
1944		spin_lock_irq(&ps->lock);
1945
1946		/* Not exactly the endpoint address; the direction bit is
1947		 * shifted to the 0x10 position so that the value will be
1948		 * between 0 and 31.
1949		 */
1950		as->bulk_addr = usb_endpoint_num(&ep->desc) |
1951			((ep->desc.bEndpointAddress & USB_ENDPOINT_DIR_MASK)
1952				>> 3);
1953
1954		/* If this bulk URB is the start of a new transfer, re-enable
1955		 * the endpoint.  Otherwise mark it as a continuation URB.
1956		 */
1957		if (uurb->flags & USBDEVFS_URB_BULK_CONTINUATION)
1958			as->bulk_status = AS_CONTINUATION;
1959		else
1960			ps->disabled_bulk_eps &= ~(1 << as->bulk_addr);
1961
1962		/* Don't accept continuation URBs if the endpoint is
1963		 * disabled because of an earlier error.
1964		 */
1965		if (ps->disabled_bulk_eps & (1 << as->bulk_addr))
1966			ret = -EREMOTEIO;
1967		else
1968			ret = usb_submit_urb(as->urb, GFP_ATOMIC);
1969		spin_unlock_irq(&ps->lock);
1970	} else {
1971		ret = usb_submit_urb(as->urb, GFP_KERNEL);
1972	}
1973
1974	if (ret) {
1975		dev_printk(KERN_DEBUG, &ps->dev->dev,
1976			   "usbfs: usb_submit_urb returned %d\n", ret);
1977		snoop_urb(ps->dev, as->userurb, as->urb->pipe,
1978				0, ret, COMPLETE, NULL, 0);
1979		async_removepending(as);
1980		goto error;
 
1981	}
1982	return 0;
1983
1984 error:
1985	kfree(isopkt);
1986	kfree(dr);
1987	if (as)
1988		free_async(as);
1989	return ret;
1990}
1991
1992static int proc_submiturb(struct usb_dev_state *ps, void __user *arg)
1993{
1994	struct usbdevfs_urb uurb;
1995	sigval_t userurb_sigval;
1996
1997	if (copy_from_user(&uurb, arg, sizeof(uurb)))
1998		return -EFAULT;
1999
2000	memset(&userurb_sigval, 0, sizeof(userurb_sigval));
2001	userurb_sigval.sival_ptr = arg;
2002
2003	return proc_do_submiturb(ps, &uurb,
2004			(((struct usbdevfs_urb __user *)arg)->iso_frame_desc),
2005			arg, userurb_sigval);
2006}
2007
2008static int proc_unlinkurb(struct usb_dev_state *ps, void __user *arg)
2009{
2010	struct urb *urb;
2011	struct async *as;
2012	unsigned long flags;
2013
2014	spin_lock_irqsave(&ps->lock, flags);
2015	as = async_getpending(ps, arg);
2016	if (!as) {
2017		spin_unlock_irqrestore(&ps->lock, flags);
2018		return -EINVAL;
2019	}
2020
2021	urb = as->urb;
2022	usb_get_urb(urb);
2023	spin_unlock_irqrestore(&ps->lock, flags);
2024
2025	usb_kill_urb(urb);
2026	usb_put_urb(urb);
2027
2028	return 0;
2029}
2030
2031static void compute_isochronous_actual_length(struct urb *urb)
2032{
2033	unsigned int i;
2034
2035	if (urb->number_of_packets > 0) {
2036		urb->actual_length = 0;
2037		for (i = 0; i < urb->number_of_packets; i++)
2038			urb->actual_length +=
2039					urb->iso_frame_desc[i].actual_length;
2040	}
2041}
2042
2043static int processcompl(struct async *as, void __user * __user *arg)
2044{
2045	struct urb *urb = as->urb;
2046	struct usbdevfs_urb __user *userurb = as->userurb;
2047	void __user *addr = as->userurb;
2048	unsigned int i;
2049
2050	compute_isochronous_actual_length(urb);
2051	if (as->userbuffer && urb->actual_length) {
2052		if (copy_urb_data_to_user(as->userbuffer, urb))
 
 
 
 
2053			goto err_out;
2054	}
2055	if (put_user(as->status, &userurb->status))
2056		goto err_out;
2057	if (put_user(urb->actual_length, &userurb->actual_length))
2058		goto err_out;
2059	if (put_user(urb->error_count, &userurb->error_count))
2060		goto err_out;
2061
2062	if (usb_endpoint_xfer_isoc(&urb->ep->desc)) {
2063		for (i = 0; i < urb->number_of_packets; i++) {
2064			if (put_user(urb->iso_frame_desc[i].actual_length,
2065				     &userurb->iso_frame_desc[i].actual_length))
2066				goto err_out;
2067			if (put_user(urb->iso_frame_desc[i].status,
2068				     &userurb->iso_frame_desc[i].status))
2069				goto err_out;
2070		}
2071	}
2072
2073	if (put_user(addr, (void __user * __user *)arg))
2074		return -EFAULT;
2075	return 0;
2076
2077err_out:
2078	return -EFAULT;
2079}
2080
2081static struct async *reap_as(struct usb_dev_state *ps)
2082{
2083	DECLARE_WAITQUEUE(wait, current);
2084	struct async *as = NULL;
2085	struct usb_device *dev = ps->dev;
2086
2087	add_wait_queue(&ps->wait, &wait);
2088	for (;;) {
2089		__set_current_state(TASK_INTERRUPTIBLE);
2090		as = async_getcompleted(ps);
2091		if (as || !connected(ps))
2092			break;
2093		if (signal_pending(current))
2094			break;
2095		usb_unlock_device(dev);
2096		schedule();
2097		usb_lock_device(dev);
2098	}
2099	remove_wait_queue(&ps->wait, &wait);
2100	set_current_state(TASK_RUNNING);
2101	return as;
2102}
2103
2104static int proc_reapurb(struct usb_dev_state *ps, void __user *arg)
2105{
2106	struct async *as = reap_as(ps);
2107
2108	if (as) {
2109		int retval;
2110
2111		snoop(&ps->dev->dev, "reap %px\n", as->userurb);
2112		retval = processcompl(as, (void __user * __user *)arg);
2113		free_async(as);
2114		return retval;
2115	}
2116	if (signal_pending(current))
2117		return -EINTR;
2118	return -ENODEV;
2119}
2120
2121static int proc_reapurbnonblock(struct usb_dev_state *ps, void __user *arg)
2122{
2123	int retval;
2124	struct async *as;
2125
2126	as = async_getcompleted(ps);
 
2127	if (as) {
2128		snoop(&ps->dev->dev, "reap %px\n", as->userurb);
2129		retval = processcompl(as, (void __user * __user *)arg);
2130		free_async(as);
2131	} else {
2132		retval = (connected(ps) ? -EAGAIN : -ENODEV);
2133	}
2134	return retval;
2135}
2136
2137#ifdef CONFIG_COMPAT
2138static int proc_control_compat(struct usb_dev_state *ps,
2139				struct usbdevfs_ctrltransfer32 __user *p32)
2140{
2141	struct usbdevfs_ctrltransfer ctrl;
2142	u32 udata;
2143
2144	if (copy_from_user(&ctrl, p32, sizeof(*p32) - sizeof(compat_caddr_t)) ||
2145	    get_user(udata, &p32->data))
 
2146		return -EFAULT;
2147	ctrl.data = compat_ptr(udata);
2148	return do_proc_control(ps, &ctrl);
2149}
2150
2151static int proc_bulk_compat(struct usb_dev_state *ps,
2152			struct usbdevfs_bulktransfer32 __user *p32)
2153{
2154	struct usbdevfs_bulktransfer bulk;
2155	compat_caddr_t addr;
 
 
 
 
 
 
 
 
 
2156
2157	if (get_user(bulk.ep, &p32->ep) ||
2158	    get_user(bulk.len, &p32->len) ||
2159	    get_user(bulk.timeout, &p32->timeout) ||
2160	    get_user(addr, &p32->data))
2161		return -EFAULT;
2162	bulk.data = compat_ptr(addr);
2163	return do_proc_bulk(ps, &bulk);
2164}
2165
2166static int proc_disconnectsignal_compat(struct usb_dev_state *ps, void __user *arg)
2167{
2168	struct usbdevfs_disconnectsignal32 ds;
2169
2170	if (copy_from_user(&ds, arg, sizeof(ds)))
2171		return -EFAULT;
2172	ps->discsignr = ds.signr;
2173	ps->disccontext.sival_int = ds.context;
2174	return 0;
2175}
2176
2177static int get_urb32(struct usbdevfs_urb *kurb,
2178		     struct usbdevfs_urb32 __user *uurb)
2179{
2180	struct usbdevfs_urb32 urb32;
2181	if (copy_from_user(&urb32, uurb, sizeof(*uurb)))
 
 
 
 
 
 
 
 
 
 
2182		return -EFAULT;
2183	kurb->type = urb32.type;
2184	kurb->endpoint = urb32.endpoint;
2185	kurb->status = urb32.status;
2186	kurb->flags = urb32.flags;
2187	kurb->buffer = compat_ptr(urb32.buffer);
2188	kurb->buffer_length = urb32.buffer_length;
2189	kurb->actual_length = urb32.actual_length;
2190	kurb->start_frame = urb32.start_frame;
2191	kurb->number_of_packets = urb32.number_of_packets;
2192	kurb->error_count = urb32.error_count;
2193	kurb->signr = urb32.signr;
2194	kurb->usercontext = compat_ptr(urb32.usercontext);
2195	return 0;
2196}
2197
2198static int proc_submiturb_compat(struct usb_dev_state *ps, void __user *arg)
2199{
2200	struct usbdevfs_urb uurb;
2201	sigval_t userurb_sigval;
2202
2203	if (get_urb32(&uurb, (struct usbdevfs_urb32 __user *)arg))
2204		return -EFAULT;
2205
2206	memset(&userurb_sigval, 0, sizeof(userurb_sigval));
2207	userurb_sigval.sival_int = ptr_to_compat(arg);
2208
2209	return proc_do_submiturb(ps, &uurb,
2210			((struct usbdevfs_urb32 __user *)arg)->iso_frame_desc,
2211			arg, userurb_sigval);
2212}
2213
2214static int processcompl_compat(struct async *as, void __user * __user *arg)
2215{
2216	struct urb *urb = as->urb;
2217	struct usbdevfs_urb32 __user *userurb = as->userurb;
2218	void __user *addr = as->userurb;
2219	unsigned int i;
2220
2221	compute_isochronous_actual_length(urb);
2222	if (as->userbuffer && urb->actual_length) {
2223		if (copy_urb_data_to_user(as->userbuffer, urb))
2224			return -EFAULT;
2225	}
2226	if (put_user(as->status, &userurb->status))
2227		return -EFAULT;
2228	if (put_user(urb->actual_length, &userurb->actual_length))
2229		return -EFAULT;
2230	if (put_user(urb->error_count, &userurb->error_count))
2231		return -EFAULT;
2232
2233	if (usb_endpoint_xfer_isoc(&urb->ep->desc)) {
2234		for (i = 0; i < urb->number_of_packets; i++) {
2235			if (put_user(urb->iso_frame_desc[i].actual_length,
2236				     &userurb->iso_frame_desc[i].actual_length))
2237				return -EFAULT;
2238			if (put_user(urb->iso_frame_desc[i].status,
2239				     &userurb->iso_frame_desc[i].status))
2240				return -EFAULT;
2241		}
2242	}
2243
2244	if (put_user(ptr_to_compat(addr), (u32 __user *)arg))
2245		return -EFAULT;
2246	return 0;
2247}
2248
2249static int proc_reapurb_compat(struct usb_dev_state *ps, void __user *arg)
2250{
2251	struct async *as = reap_as(ps);
2252
2253	if (as) {
2254		int retval;
2255
2256		snoop(&ps->dev->dev, "reap %px\n", as->userurb);
2257		retval = processcompl_compat(as, (void __user * __user *)arg);
2258		free_async(as);
2259		return retval;
2260	}
2261	if (signal_pending(current))
2262		return -EINTR;
2263	return -ENODEV;
2264}
2265
2266static int proc_reapurbnonblock_compat(struct usb_dev_state *ps, void __user *arg)
2267{
2268	int retval;
2269	struct async *as;
2270
 
2271	as = async_getcompleted(ps);
2272	if (as) {
2273		snoop(&ps->dev->dev, "reap %px\n", as->userurb);
2274		retval = processcompl_compat(as, (void __user * __user *)arg);
2275		free_async(as);
2276	} else {
2277		retval = (connected(ps) ? -EAGAIN : -ENODEV);
2278	}
2279	return retval;
2280}
2281
2282
2283#endif
2284
2285static int proc_disconnectsignal(struct usb_dev_state *ps, void __user *arg)
2286{
2287	struct usbdevfs_disconnectsignal ds;
2288
2289	if (copy_from_user(&ds, arg, sizeof(ds)))
2290		return -EFAULT;
2291	ps->discsignr = ds.signr;
2292	ps->disccontext.sival_ptr = ds.context;
2293	return 0;
2294}
2295
2296static int proc_claiminterface(struct usb_dev_state *ps, void __user *arg)
2297{
2298	unsigned int ifnum;
2299
2300	if (get_user(ifnum, (unsigned int __user *)arg))
2301		return -EFAULT;
2302	return claimintf(ps, ifnum);
2303}
2304
2305static int proc_releaseinterface(struct usb_dev_state *ps, void __user *arg)
2306{
2307	unsigned int ifnum;
2308	int ret;
2309
2310	if (get_user(ifnum, (unsigned int __user *)arg))
2311		return -EFAULT;
2312	ret = releaseintf(ps, ifnum);
2313	if (ret < 0)
2314		return ret;
2315	destroy_async_on_interface(ps, ifnum);
2316	return 0;
2317}
2318
2319static int proc_ioctl(struct usb_dev_state *ps, struct usbdevfs_ioctl *ctl)
2320{
2321	int			size;
2322	void			*buf = NULL;
2323	int			retval = 0;
2324	struct usb_interface    *intf = NULL;
2325	struct usb_driver       *driver = NULL;
2326
2327	if (ps->privileges_dropped)
2328		return -EACCES;
2329
2330	if (!connected(ps))
2331		return -ENODEV;
2332
2333	/* alloc buffer */
2334	size = _IOC_SIZE(ctl->ioctl_code);
2335	if (size > 0) {
2336		buf = kmalloc(size, GFP_KERNEL);
2337		if (buf == NULL)
2338			return -ENOMEM;
2339		if ((_IOC_DIR(ctl->ioctl_code) & _IOC_WRITE)) {
2340			if (copy_from_user(buf, ctl->data, size)) {
2341				kfree(buf);
2342				return -EFAULT;
2343			}
2344		} else {
2345			memset(buf, 0, size);
2346		}
2347	}
2348
 
 
 
 
 
2349	if (ps->dev->state != USB_STATE_CONFIGURED)
2350		retval = -EHOSTUNREACH;
2351	else if (!(intf = usb_ifnum_to_if(ps->dev, ctl->ifno)))
2352		retval = -EINVAL;
2353	else switch (ctl->ioctl_code) {
2354
2355	/* disconnect kernel driver from interface */
2356	case USBDEVFS_DISCONNECT:
2357		if (intf->dev.driver) {
2358			driver = to_usb_driver(intf->dev.driver);
2359			dev_dbg(&intf->dev, "disconnect by usbfs\n");
2360			usb_driver_release_interface(driver, intf);
2361		} else
2362			retval = -ENODATA;
2363		break;
2364
2365	/* let kernel drivers try to (re)bind to the interface */
2366	case USBDEVFS_CONNECT:
2367		if (!intf->dev.driver)
2368			retval = device_attach(&intf->dev);
2369		else
2370			retval = -EBUSY;
2371		break;
2372
2373	/* talk directly to the interface's driver */
2374	default:
2375		if (intf->dev.driver)
2376			driver = to_usb_driver(intf->dev.driver);
2377		if (driver == NULL || driver->unlocked_ioctl == NULL) {
2378			retval = -ENOTTY;
2379		} else {
2380			retval = driver->unlocked_ioctl(intf, ctl->ioctl_code, buf);
2381			if (retval == -ENOIOCTLCMD)
2382				retval = -ENOTTY;
2383		}
2384	}
2385
2386	/* cleanup and return */
2387	if (retval >= 0
2388			&& (_IOC_DIR(ctl->ioctl_code) & _IOC_READ) != 0
2389			&& size > 0
2390			&& copy_to_user(ctl->data, buf, size) != 0)
2391		retval = -EFAULT;
2392
2393	kfree(buf);
2394	return retval;
2395}
2396
2397static int proc_ioctl_default(struct usb_dev_state *ps, void __user *arg)
2398{
2399	struct usbdevfs_ioctl	ctrl;
2400
2401	if (copy_from_user(&ctrl, arg, sizeof(ctrl)))
2402		return -EFAULT;
2403	return proc_ioctl(ps, &ctrl);
2404}
2405
2406#ifdef CONFIG_COMPAT
2407static int proc_ioctl_compat(struct usb_dev_state *ps, compat_uptr_t arg)
2408{
2409	struct usbdevfs_ioctl32 ioc32;
2410	struct usbdevfs_ioctl ctrl;
 
2411
2412	if (copy_from_user(&ioc32, compat_ptr(arg), sizeof(ioc32)))
 
 
 
 
2413		return -EFAULT;
2414	ctrl.ifno = ioc32.ifno;
2415	ctrl.ioctl_code = ioc32.ioctl_code;
2416	ctrl.data = compat_ptr(ioc32.data);
2417	return proc_ioctl(ps, &ctrl);
2418}
2419#endif
2420
2421static int proc_claim_port(struct usb_dev_state *ps, void __user *arg)
2422{
2423	unsigned portnum;
2424	int rc;
2425
2426	if (get_user(portnum, (unsigned __user *) arg))
2427		return -EFAULT;
2428	rc = usb_hub_claim_port(ps->dev, portnum, ps);
2429	if (rc == 0)
2430		snoop(&ps->dev->dev, "port %d claimed by process %d: %s\n",
2431			portnum, task_pid_nr(current), current->comm);
2432	return rc;
2433}
2434
2435static int proc_release_port(struct usb_dev_state *ps, void __user *arg)
2436{
2437	unsigned portnum;
2438
2439	if (get_user(portnum, (unsigned __user *) arg))
2440		return -EFAULT;
2441	return usb_hub_release_port(ps->dev, portnum, ps);
2442}
2443
2444static int proc_get_capabilities(struct usb_dev_state *ps, void __user *arg)
2445{
2446	__u32 caps;
2447
2448	caps = USBDEVFS_CAP_ZERO_PACKET | USBDEVFS_CAP_NO_PACKET_SIZE_LIM |
2449			USBDEVFS_CAP_REAP_AFTER_DISCONNECT | USBDEVFS_CAP_MMAP |
2450			USBDEVFS_CAP_DROP_PRIVILEGES |
2451			USBDEVFS_CAP_CONNINFO_EX | MAYBE_CAP_SUSPEND;
2452	if (!ps->dev->bus->no_stop_on_short)
2453		caps |= USBDEVFS_CAP_BULK_CONTINUATION;
2454	if (ps->dev->bus->sg_tablesize)
2455		caps |= USBDEVFS_CAP_BULK_SCATTER_GATHER;
2456
2457	if (put_user(caps, (__u32 __user *)arg))
2458		return -EFAULT;
2459
2460	return 0;
2461}
2462
2463static int proc_disconnect_claim(struct usb_dev_state *ps, void __user *arg)
2464{
2465	struct usbdevfs_disconnect_claim dc;
2466	struct usb_interface *intf;
2467
2468	if (copy_from_user(&dc, arg, sizeof(dc)))
2469		return -EFAULT;
2470
2471	intf = usb_ifnum_to_if(ps->dev, dc.interface);
2472	if (!intf)
2473		return -EINVAL;
2474
2475	if (intf->dev.driver) {
2476		struct usb_driver *driver = to_usb_driver(intf->dev.driver);
2477
2478		if (ps->privileges_dropped)
2479			return -EACCES;
2480
2481		if ((dc.flags & USBDEVFS_DISCONNECT_CLAIM_IF_DRIVER) &&
2482				strncmp(dc.driver, intf->dev.driver->name,
2483					sizeof(dc.driver)) != 0)
2484			return -EBUSY;
2485
2486		if ((dc.flags & USBDEVFS_DISCONNECT_CLAIM_EXCEPT_DRIVER) &&
2487				strncmp(dc.driver, intf->dev.driver->name,
2488					sizeof(dc.driver)) == 0)
2489			return -EBUSY;
2490
2491		dev_dbg(&intf->dev, "disconnect by usbfs\n");
2492		usb_driver_release_interface(driver, intf);
2493	}
2494
2495	return claimintf(ps, dc.interface);
2496}
2497
2498static int proc_alloc_streams(struct usb_dev_state *ps, void __user *arg)
2499{
2500	unsigned num_streams, num_eps;
2501	struct usb_host_endpoint **eps;
2502	struct usb_interface *intf;
2503	int r;
2504
2505	r = parse_usbdevfs_streams(ps, arg, &num_streams, &num_eps,
2506				   &eps, &intf);
2507	if (r)
2508		return r;
2509
2510	destroy_async_on_interface(ps,
2511				   intf->altsetting[0].desc.bInterfaceNumber);
2512
2513	r = usb_alloc_streams(intf, eps, num_eps, num_streams, GFP_KERNEL);
2514	kfree(eps);
2515	return r;
2516}
2517
2518static int proc_free_streams(struct usb_dev_state *ps, void __user *arg)
2519{
2520	unsigned num_eps;
2521	struct usb_host_endpoint **eps;
2522	struct usb_interface *intf;
2523	int r;
2524
2525	r = parse_usbdevfs_streams(ps, arg, NULL, &num_eps, &eps, &intf);
2526	if (r)
2527		return r;
2528
2529	destroy_async_on_interface(ps,
2530				   intf->altsetting[0].desc.bInterfaceNumber);
2531
2532	r = usb_free_streams(intf, eps, num_eps, GFP_KERNEL);
2533	kfree(eps);
2534	return r;
2535}
2536
2537static int proc_drop_privileges(struct usb_dev_state *ps, void __user *arg)
2538{
2539	u32 data;
2540
2541	if (copy_from_user(&data, arg, sizeof(data)))
2542		return -EFAULT;
2543
2544	/* This is a one way operation. Once privileges are
2545	 * dropped, you cannot regain them. You may however reissue
2546	 * this ioctl to shrink the allowed interfaces mask.
2547	 */
2548	ps->interface_allowed_mask &= data;
2549	ps->privileges_dropped = true;
2550
2551	return 0;
2552}
2553
2554static int proc_forbid_suspend(struct usb_dev_state *ps)
2555{
2556	int ret = 0;
2557
2558	if (ps->suspend_allowed) {
2559		ret = usb_autoresume_device(ps->dev);
2560		if (ret == 0)
2561			ps->suspend_allowed = false;
2562		else if (ret != -ENODEV)
2563			ret = -EIO;
2564	}
2565	return ret;
2566}
2567
2568static int proc_allow_suspend(struct usb_dev_state *ps)
2569{
2570	if (!connected(ps))
2571		return -ENODEV;
2572
2573	WRITE_ONCE(ps->not_yet_resumed, 1);
2574	if (!ps->suspend_allowed) {
2575		usb_autosuspend_device(ps->dev);
2576		ps->suspend_allowed = true;
2577	}
2578	return 0;
2579}
2580
2581static int proc_wait_for_resume(struct usb_dev_state *ps)
2582{
2583	int ret;
2584
2585	usb_unlock_device(ps->dev);
2586	ret = wait_event_interruptible(ps->wait_for_resume,
2587			READ_ONCE(ps->not_yet_resumed) == 0);
2588	usb_lock_device(ps->dev);
2589
2590	if (ret != 0)
2591		return -EINTR;
2592	return proc_forbid_suspend(ps);
2593}
2594
2595/*
2596 * NOTE:  All requests here that have interface numbers as parameters
2597 * are assuming that somehow the configuration has been prevented from
2598 * changing.  But there's no mechanism to ensure that...
2599 */
2600static long usbdev_do_ioctl(struct file *file, unsigned int cmd,
2601				void __user *p)
2602{
2603	struct usb_dev_state *ps = file->private_data;
2604	struct inode *inode = file_inode(file);
2605	struct usb_device *dev = ps->dev;
2606	int ret = -ENOTTY;
2607
2608	if (!(file->f_mode & FMODE_WRITE))
2609		return -EPERM;
2610
2611	usb_lock_device(dev);
2612
2613	/* Reap operations are allowed even after disconnection */
2614	switch (cmd) {
2615	case USBDEVFS_REAPURB:
2616		snoop(&dev->dev, "%s: REAPURB\n", __func__);
2617		ret = proc_reapurb(ps, p);
2618		goto done;
2619
2620	case USBDEVFS_REAPURBNDELAY:
2621		snoop(&dev->dev, "%s: REAPURBNDELAY\n", __func__);
2622		ret = proc_reapurbnonblock(ps, p);
2623		goto done;
2624
2625#ifdef CONFIG_COMPAT
2626	case USBDEVFS_REAPURB32:
2627		snoop(&dev->dev, "%s: REAPURB32\n", __func__);
2628		ret = proc_reapurb_compat(ps, p);
2629		goto done;
2630
2631	case USBDEVFS_REAPURBNDELAY32:
2632		snoop(&dev->dev, "%s: REAPURBNDELAY32\n", __func__);
2633		ret = proc_reapurbnonblock_compat(ps, p);
2634		goto done;
2635#endif
2636	}
2637
2638	if (!connected(ps)) {
2639		usb_unlock_device(dev);
2640		return -ENODEV;
2641	}
2642
2643	switch (cmd) {
2644	case USBDEVFS_CONTROL:
2645		snoop(&dev->dev, "%s: CONTROL\n", __func__);
2646		ret = proc_control(ps, p);
2647		if (ret >= 0)
2648			inode_set_mtime_to_ts(inode,
2649					      inode_set_ctime_current(inode));
2650		break;
2651
2652	case USBDEVFS_BULK:
2653		snoop(&dev->dev, "%s: BULK\n", __func__);
2654		ret = proc_bulk(ps, p);
2655		if (ret >= 0)
2656			inode_set_mtime_to_ts(inode,
2657					      inode_set_ctime_current(inode));
2658		break;
2659
2660	case USBDEVFS_RESETEP:
2661		snoop(&dev->dev, "%s: RESETEP\n", __func__);
2662		ret = proc_resetep(ps, p);
2663		if (ret >= 0)
2664			inode_set_mtime_to_ts(inode,
2665					      inode_set_ctime_current(inode));
2666		break;
2667
2668	case USBDEVFS_RESET:
2669		snoop(&dev->dev, "%s: RESET\n", __func__);
2670		ret = proc_resetdevice(ps);
2671		break;
2672
2673	case USBDEVFS_CLEAR_HALT:
2674		snoop(&dev->dev, "%s: CLEAR_HALT\n", __func__);
2675		ret = proc_clearhalt(ps, p);
2676		if (ret >= 0)
2677			inode_set_mtime_to_ts(inode,
2678					      inode_set_ctime_current(inode));
2679		break;
2680
2681	case USBDEVFS_GETDRIVER:
2682		snoop(&dev->dev, "%s: GETDRIVER\n", __func__);
2683		ret = proc_getdriver(ps, p);
2684		break;
2685
2686	case USBDEVFS_CONNECTINFO:
2687		snoop(&dev->dev, "%s: CONNECTINFO\n", __func__);
2688		ret = proc_connectinfo(ps, p);
2689		break;
2690
2691	case USBDEVFS_SETINTERFACE:
2692		snoop(&dev->dev, "%s: SETINTERFACE\n", __func__);
2693		ret = proc_setintf(ps, p);
2694		break;
2695
2696	case USBDEVFS_SETCONFIGURATION:
2697		snoop(&dev->dev, "%s: SETCONFIGURATION\n", __func__);
2698		ret = proc_setconfig(ps, p);
2699		break;
2700
2701	case USBDEVFS_SUBMITURB:
2702		snoop(&dev->dev, "%s: SUBMITURB\n", __func__);
2703		ret = proc_submiturb(ps, p);
2704		if (ret >= 0)
2705			inode_set_mtime_to_ts(inode,
2706					      inode_set_ctime_current(inode));
2707		break;
2708
2709#ifdef CONFIG_COMPAT
2710	case USBDEVFS_CONTROL32:
2711		snoop(&dev->dev, "%s: CONTROL32\n", __func__);
2712		ret = proc_control_compat(ps, p);
2713		if (ret >= 0)
2714			inode_set_mtime_to_ts(inode,
2715					      inode_set_ctime_current(inode));
2716		break;
2717
2718	case USBDEVFS_BULK32:
2719		snoop(&dev->dev, "%s: BULK32\n", __func__);
2720		ret = proc_bulk_compat(ps, p);
2721		if (ret >= 0)
2722			inode_set_mtime_to_ts(inode,
2723					      inode_set_ctime_current(inode));
2724		break;
2725
2726	case USBDEVFS_DISCSIGNAL32:
2727		snoop(&dev->dev, "%s: DISCSIGNAL32\n", __func__);
2728		ret = proc_disconnectsignal_compat(ps, p);
2729		break;
2730
2731	case USBDEVFS_SUBMITURB32:
2732		snoop(&dev->dev, "%s: SUBMITURB32\n", __func__);
2733		ret = proc_submiturb_compat(ps, p);
2734		if (ret >= 0)
2735			inode_set_mtime_to_ts(inode,
2736					      inode_set_ctime_current(inode));
 
 
 
 
 
 
 
 
 
2737		break;
2738
2739	case USBDEVFS_IOCTL32:
2740		snoop(&dev->dev, "%s: IOCTL32\n", __func__);
2741		ret = proc_ioctl_compat(ps, ptr_to_compat(p));
2742		break;
2743#endif
2744
2745	case USBDEVFS_DISCARDURB:
2746		snoop(&dev->dev, "%s: DISCARDURB %px\n", __func__, p);
2747		ret = proc_unlinkurb(ps, p);
2748		break;
2749
 
 
 
 
 
 
 
 
 
 
2750	case USBDEVFS_DISCSIGNAL:
2751		snoop(&dev->dev, "%s: DISCSIGNAL\n", __func__);
2752		ret = proc_disconnectsignal(ps, p);
2753		break;
2754
2755	case USBDEVFS_CLAIMINTERFACE:
2756		snoop(&dev->dev, "%s: CLAIMINTERFACE\n", __func__);
2757		ret = proc_claiminterface(ps, p);
2758		break;
2759
2760	case USBDEVFS_RELEASEINTERFACE:
2761		snoop(&dev->dev, "%s: RELEASEINTERFACE\n", __func__);
2762		ret = proc_releaseinterface(ps, p);
2763		break;
2764
2765	case USBDEVFS_IOCTL:
2766		snoop(&dev->dev, "%s: IOCTL\n", __func__);
2767		ret = proc_ioctl_default(ps, p);
2768		break;
2769
2770	case USBDEVFS_CLAIM_PORT:
2771		snoop(&dev->dev, "%s: CLAIM_PORT\n", __func__);
2772		ret = proc_claim_port(ps, p);
2773		break;
2774
2775	case USBDEVFS_RELEASE_PORT:
2776		snoop(&dev->dev, "%s: RELEASE_PORT\n", __func__);
2777		ret = proc_release_port(ps, p);
2778		break;
2779	case USBDEVFS_GET_CAPABILITIES:
2780		ret = proc_get_capabilities(ps, p);
2781		break;
2782	case USBDEVFS_DISCONNECT_CLAIM:
2783		ret = proc_disconnect_claim(ps, p);
2784		break;
2785	case USBDEVFS_ALLOC_STREAMS:
2786		ret = proc_alloc_streams(ps, p);
2787		break;
2788	case USBDEVFS_FREE_STREAMS:
2789		ret = proc_free_streams(ps, p);
2790		break;
2791	case USBDEVFS_DROP_PRIVILEGES:
2792		ret = proc_drop_privileges(ps, p);
2793		break;
2794	case USBDEVFS_GET_SPEED:
2795		ret = ps->dev->speed;
2796		break;
2797	case USBDEVFS_FORBID_SUSPEND:
2798		ret = proc_forbid_suspend(ps);
2799		break;
2800	case USBDEVFS_ALLOW_SUSPEND:
2801		ret = proc_allow_suspend(ps);
2802		break;
2803	case USBDEVFS_WAIT_FOR_RESUME:
2804		ret = proc_wait_for_resume(ps);
2805		break;
2806	}
2807
2808	/* Handle variable-length commands */
2809	switch (cmd & ~IOCSIZE_MASK) {
2810	case USBDEVFS_CONNINFO_EX(0):
2811		ret = proc_conninfo_ex(ps, p, _IOC_SIZE(cmd));
2812		break;
2813	}
2814
2815 done:
2816	usb_unlock_device(dev);
2817	if (ret >= 0)
2818		inode_set_atime_to_ts(inode, current_time(inode));
2819	return ret;
2820}
2821
2822static long usbdev_ioctl(struct file *file, unsigned int cmd,
2823			unsigned long arg)
2824{
2825	int ret;
2826
2827	ret = usbdev_do_ioctl(file, cmd, (void __user *)arg);
2828
2829	return ret;
2830}
2831
 
 
 
 
 
 
 
 
 
 
 
 
2832/* No kernel lock - fine */
2833static __poll_t usbdev_poll(struct file *file,
2834				struct poll_table_struct *wait)
2835{
2836	struct usb_dev_state *ps = file->private_data;
2837	__poll_t mask = 0;
2838
2839	poll_wait(file, &ps->wait, wait);
2840	if (file->f_mode & FMODE_WRITE && !list_empty(&ps->async_completed))
2841		mask |= EPOLLOUT | EPOLLWRNORM;
2842	if (!connected(ps))
2843		mask |= EPOLLHUP;
2844	if (list_empty(&ps->list))
2845		mask |= EPOLLERR;
2846	return mask;
2847}
2848
2849const struct file_operations usbdev_file_operations = {
2850	.owner =	  THIS_MODULE,
2851	.llseek =	  no_seek_end_llseek,
2852	.read =		  usbdev_read,
2853	.poll =		  usbdev_poll,
2854	.unlocked_ioctl = usbdev_ioctl,
2855	.compat_ioctl =   compat_ptr_ioctl,
2856	.mmap =           usbdev_mmap,
 
2857	.open =		  usbdev_open,
2858	.release =	  usbdev_release,
2859};
2860
2861static void usbdev_remove(struct usb_device *udev)
2862{
2863	struct usb_dev_state *ps;
 
2864
2865	/* Protect against simultaneous resume */
2866	mutex_lock(&usbfs_mutex);
2867	while (!list_empty(&udev->filelist)) {
2868		ps = list_entry(udev->filelist.next, struct usb_dev_state, list);
2869		destroy_all_async(ps);
2870		wake_up_all(&ps->wait);
2871		WRITE_ONCE(ps->not_yet_resumed, 0);
2872		wake_up_all(&ps->wait_for_resume);
2873		list_del_init(&ps->list);
2874		if (ps->discsignr)
2875			kill_pid_usb_asyncio(ps->discsignr, EPIPE, ps->disccontext,
2876					     ps->disc_pid, ps->cred);
 
 
 
 
 
 
2877	}
2878	mutex_unlock(&usbfs_mutex);
2879}
2880
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
2881static int usbdev_notify(struct notifier_block *self,
2882			       unsigned long action, void *dev)
2883{
2884	switch (action) {
2885	case USB_DEVICE_ADD:
 
 
2886		break;
2887	case USB_DEVICE_REMOVE:
 
2888		usbdev_remove(dev);
2889		break;
2890	}
2891	return NOTIFY_OK;
2892}
2893
2894static struct notifier_block usbdev_nb = {
2895	.notifier_call =	usbdev_notify,
2896};
2897
2898static struct cdev usb_device_cdev;
2899
2900int __init usb_devio_init(void)
2901{
2902	int retval;
2903
2904	retval = register_chrdev_region(USB_DEVICE_DEV, USB_DEVICE_MAX,
2905					"usb_device");
2906	if (retval) {
2907		printk(KERN_ERR "Unable to register minors for usb_device\n");
2908		goto out;
2909	}
2910	cdev_init(&usb_device_cdev, &usbdev_file_operations);
2911	retval = cdev_add(&usb_device_cdev, USB_DEVICE_DEV, USB_DEVICE_MAX);
2912	if (retval) {
2913		printk(KERN_ERR "Unable to get usb_device major %d\n",
2914		       USB_DEVICE_MAJOR);
2915		goto error_cdev;
2916	}
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
2917	usb_register_notify(&usbdev_nb);
2918out:
2919	return retval;
2920
2921error_cdev:
2922	unregister_chrdev_region(USB_DEVICE_DEV, USB_DEVICE_MAX);
2923	goto out;
2924}
2925
2926void usb_devio_cleanup(void)
2927{
2928	usb_unregister_notify(&usbdev_nb);
 
 
 
2929	cdev_del(&usb_device_cdev);
2930	unregister_chrdev_region(USB_DEVICE_DEV, USB_DEVICE_MAX);
2931}