ubd_kern.c 32.9 KB
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/*
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 * Copyright (C) 2000 Jeff Dike (jdike@karaya.com)
 * Licensed under the GPL
 */

/* 2001-09-28...2002-04-17
 * Partition stuff by James_McMechan@hotmail.com
 * old style ubd by setting UBD_SHIFT to 0
 * 2002-09-27...2002-10-18 massive tinkering for 2.5
 * partitions have changed in 2.5
 * 2003-01-29 more tinkering for 2.5.59-1
 * This should now address the sysfs problems and has
 * the symlink for devfs to allow for booting with
 * the common /dev/ubd/discX/... names rather than
 * only /dev/ubdN/discN this version also has lots of
 * clean ups preparing for ubd-many.
 * James McMechan
 */

#define MAJOR_NR UBD_MAJOR
#define UBD_SHIFT 4

#include "linux/module.h"
#include "linux/blkdev.h"
#include "linux/hdreg.h"
#include "linux/init.h"
#include "linux/cdrom.h"
#include "linux/proc_fs.h"
#include "linux/ctype.h"
#include "linux/capability.h"
#include "linux/mm.h"
#include "linux/vmalloc.h"
#include "linux/blkpg.h"
#include "linux/genhd.h"
#include "linux/spinlock.h"
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#include "linux/platform_device.h"
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#include "asm/segment.h"
#include "asm/uaccess.h"
#include "asm/irq.h"
#include "asm/types.h"
#include "asm/tlbflush.h"
#include "mem_user.h"
#include "kern_util.h"
#include "kern.h"
#include "mconsole_kern.h"
#include "init.h"
#include "irq_user.h"
#include "irq_kern.h"
#include "ubd_user.h"
#include "os.h"
#include "mem.h"
#include "mem_kern.h"
#include "cow.h"

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enum ubd_req { UBD_READ, UBD_WRITE };
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struct io_thread_req {
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	struct request *req;
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	enum ubd_req op;
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	int fds[2];
	unsigned long offsets[2];
	unsigned long long offset;
	unsigned long length;
	char *buffer;
	int sectorsize;
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	unsigned long sector_mask;
	unsigned long long cow_offset;
	unsigned long bitmap_words[2];
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	int error;
};

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extern int open_ubd_file(char *file, struct openflags *openflags, int shared,
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			 char **backing_file_out, int *bitmap_offset_out,
			 unsigned long *bitmap_len_out, int *data_offset_out,
			 int *create_cow_out);
extern int create_cow_file(char *cow_file, char *backing_file,
			   struct openflags flags, int sectorsize,
			   int alignment, int *bitmap_offset_out,
			   unsigned long *bitmap_len_out,
			   int *data_offset_out);
extern int read_cow_bitmap(int fd, void *buf, int offset, int len);
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extern void do_io(struct io_thread_req *req);
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static inline int ubd_test_bit(__u64 bit, unsigned char *data)
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{
	__u64 n;
	int bits, off;

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	bits = sizeof(data[0]) * 8;
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	n = bit / bits;
	off = bit % bits;
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	return((data[n] & (1 << off)) != 0);
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}

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static inline void ubd_set_bit(__u64 bit, unsigned char *data)
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{
	__u64 n;
	int bits, off;

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	bits = sizeof(data[0]) * 8;
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	n = bit / bits;
	off = bit % bits;
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	data[n] |= (1 << off);
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}
/*End stuff from ubd_user.h*/

#define DRIVER_NAME "uml-blkdev"

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static DEFINE_MUTEX(ubd_lock);
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static int ubd_open(struct inode * inode, struct file * filp);
static int ubd_release(struct inode * inode, struct file * file);
static int ubd_ioctl(struct inode * inode, struct file * file,
		     unsigned int cmd, unsigned long arg);
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static int ubd_getgeo(struct block_device *bdev, struct hd_geometry *geo);
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#define MAX_DEV (16)
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static struct block_device_operations ubd_blops = {
        .owner		= THIS_MODULE,
        .open		= ubd_open,
        .release	= ubd_release,
        .ioctl		= ubd_ioctl,
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	.getgeo		= ubd_getgeo,
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};

/* Protected by ubd_lock */
static int fake_major = MAJOR_NR;
static struct gendisk *ubd_gendisk[MAX_DEV];
static struct gendisk *fake_gendisk[MAX_DEV];
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#ifdef CONFIG_BLK_DEV_UBD_SYNC
#define OPEN_FLAGS ((struct openflags) { .r = 1, .w = 1, .s = 1, .c = 0, \
					 .cl = 1 })
#else
#define OPEN_FLAGS ((struct openflags) { .r = 1, .w = 1, .s = 0, .c = 0, \
					 .cl = 1 })
#endif
static struct openflags global_openflags = OPEN_FLAGS;

struct cow {
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	/* backing file name */
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	char *file;
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	/* backing file fd */
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	int fd;
	unsigned long *bitmap;
	unsigned long bitmap_len;
	int bitmap_offset;
        int data_offset;
};

struct ubd {
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	/* name (and fd, below) of the file opened for writing, either the
	 * backing or the cow file. */
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	char *file;
	int count;
	int fd;
	__u64 size;
	struct openflags boot_openflags;
	struct openflags openflags;
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	unsigned shared:1;
	unsigned no_cow:1;
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	struct cow cow;
	struct platform_device pdev;
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	struct request_queue *queue;
	spinlock_t lock;
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	int active;
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};

#define DEFAULT_COW { \
	.file =			NULL, \
        .fd =			-1, \
        .bitmap =		NULL, \
	.bitmap_offset =	0, \
        .data_offset =		0, \
}

#define DEFAULT_UBD { \
	.file = 		NULL, \
	.count =		0, \
	.fd =			-1, \
	.size =			-1, \
	.boot_openflags =	OPEN_FLAGS, \
	.openflags =		OPEN_FLAGS, \
        .no_cow =               0, \
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	.shared =		0, \
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        .cow =			DEFAULT_COW, \
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	.lock =			SPIN_LOCK_UNLOCKED,	\
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	.active =		0, \
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}

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/* Protected by ubd_lock */
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struct ubd ubd_devs[MAX_DEV] = { [ 0 ... MAX_DEV - 1 ] = DEFAULT_UBD };
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/* Only changed by fake_ide_setup which is a setup */
static int fake_ide = 0;
static struct proc_dir_entry *proc_ide_root = NULL;
static struct proc_dir_entry *proc_ide = NULL;

static void make_proc_ide(void)
{
	proc_ide_root = proc_mkdir("ide", NULL);
	proc_ide = proc_mkdir("ide0", proc_ide_root);
}

static int proc_ide_read_media(char *page, char **start, off_t off, int count,
			       int *eof, void *data)
{
	int len;

	strcpy(page, "disk\n");
	len = strlen("disk\n");
	len -= off;
	if (len < count){
		*eof = 1;
		if (len <= 0) return 0;
	}
	else len = count;
	*start = page + off;
	return len;
}

static void make_ide_entries(char *dev_name)
{
	struct proc_dir_entry *dir, *ent;
	char name[64];

	if(proc_ide_root == NULL) make_proc_ide();

	dir = proc_mkdir(dev_name, proc_ide);
	if(!dir) return;

	ent = create_proc_entry("media", S_IFREG|S_IRUGO, dir);
	if(!ent) return;
	ent->data = NULL;
	ent->read_proc = proc_ide_read_media;
	ent->write_proc = NULL;
	sprintf(name,"ide0/%s", dev_name);
	proc_symlink(dev_name, proc_ide_root, name);
}

static int fake_ide_setup(char *str)
{
	fake_ide = 1;
	return(1);
}

__setup("fake_ide", fake_ide_setup);

__uml_help(fake_ide_setup,
"fake_ide\n"
"    Create ide0 entries that map onto ubd devices.\n\n"
);

static int parse_unit(char **ptr)
{
	char *str = *ptr, *end;
	int n = -1;

	if(isdigit(*str)) {
		n = simple_strtoul(str, &end, 0);
		if(end == str)
			return(-1);
		*ptr = end;
	}
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	else if (('a' <= *str) && (*str <= 'z')) {
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		n = *str - 'a';
		str++;
		*ptr = str;
	}
	return(n);
}

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/* If *index_out == -1 at exit, the passed option was a general one;
 * otherwise, the str pointer is used (and owned) inside ubd_devs array, so it
 * should not be freed on exit.
 */
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static int ubd_setup_common(char *str, int *index_out, char **error_out)
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{
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	struct ubd *ubd_dev;
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	struct openflags flags = global_openflags;
	char *backing_file;
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	int n, err = 0, i;
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	if(index_out) *index_out = -1;
	n = *str;
	if(n == '='){
		char *end;
		int major;

		str++;
		if(!strcmp(str, "sync")){
			global_openflags = of_sync(global_openflags);
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			goto out1;
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		}
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		err = -EINVAL;
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		major = simple_strtoul(str, &end, 0);
		if((*end != '\0') || (end == str)){
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			*error_out = "Didn't parse major number";
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			goto out1;
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		}

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		mutex_lock(&ubd_lock);
		if(fake_major != MAJOR_NR){
			*error_out = "Can't assign a fake major twice";
			goto out1;
		}
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		fake_major = major;
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		printk(KERN_INFO "Setting extra ubd major number to %d\n",
		       major);
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		err = 0;
	out1:
		mutex_unlock(&ubd_lock);
		return err;
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	}

	n = parse_unit(&str);
	if(n < 0){
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		*error_out = "Couldn't parse device number";
		return -EINVAL;
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	}
	if(n >= MAX_DEV){
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		*error_out = "Device number out of range";
		return 1;
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	}

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	err = -EBUSY;
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	mutex_lock(&ubd_lock);
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	ubd_dev = &ubd_devs[n];
	if(ubd_dev->file != NULL){
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		*error_out = "Device is already configured";
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		goto out;
	}

	if (index_out)
		*index_out = n;

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	err = -EINVAL;
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	for (i = 0; i < sizeof("rscd="); i++) {
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		switch (*str) {
		case 'r':
			flags.w = 0;
			break;
		case 's':
			flags.s = 1;
			break;
		case 'd':
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			ubd_dev->no_cow = 1;
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			break;
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		case 'c':
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			ubd_dev->shared = 1;
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			break;
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		case '=':
			str++;
			goto break_loop;
		default:
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			*error_out = "Expected '=' or flag letter "
				"(r, s, c, or d)";
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			goto out;
		}
		str++;
	}

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	if (*str == '=')
		*error_out = "Too many flags specified";
	else
		*error_out = "Missing '='";
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	goto out;

break_loop:
	backing_file = strchr(str, ',');

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	if (backing_file == NULL)
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		backing_file = strchr(str, ':');

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	if(backing_file != NULL){
		if(ubd_dev->no_cow){
			*error_out = "Can't specify both 'd' and a cow file";
			goto out;
		}
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		else {
			*backing_file = '\0';
			backing_file++;
		}
	}
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	err = 0;
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	ubd_dev->file = str;
	ubd_dev->cow.file = backing_file;
	ubd_dev->boot_openflags = flags;
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out:
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	mutex_unlock(&ubd_lock);
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	return err;
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}

static int ubd_setup(char *str)
{
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	char *error;
	int err;

	err = ubd_setup_common(str, NULL, &error);
	if(err)
		printk(KERN_ERR "Failed to initialize device with \"%s\" : "
		       "%s\n", str, error);
	return 1;
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}

__setup("ubd", ubd_setup);
__uml_help(ubd_setup,
"ubd<n><flags>=<filename>[(:|,)<filename2>]\n"
"    This is used to associate a device with a file in the underlying\n"
"    filesystem. When specifying two filenames, the first one is the\n"
"    COW name and the second is the backing file name. As separator you can\n"
"    use either a ':' or a ',': the first one allows writing things like;\n"
"	ubd0=~/Uml/root_cow:~/Uml/root_backing_file\n"
"    while with a ',' the shell would not expand the 2nd '~'.\n"
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"    When using only one filename, UML will detect whether to treat it like\n"
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"    a COW file or a backing file. To override this detection, add the 'd'\n"
"    flag:\n"
"	ubd0d=BackingFile\n"
"    Usually, there is a filesystem in the file, but \n"
"    that's not required. Swap devices containing swap files can be\n"
"    specified like this. Also, a file which doesn't contain a\n"
"    filesystem can have its contents read in the virtual \n"
"    machine by running 'dd' on the device. <n> must be in the range\n"
"    0 to 7. Appending an 'r' to the number will cause that device\n"
"    to be mounted read-only. For example ubd1r=./ext_fs. Appending\n"
"    an 's' will cause data to be written to disk on the host immediately.\n\n"
);

static int udb_setup(char *str)
{
	printk("udb%s specified on command line is almost certainly a ubd -> "
	       "udb TYPO\n", str);
	return(1);
}

__setup("udb", udb_setup);
__uml_help(udb_setup,
"udb\n"
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"    This option is here solely to catch ubd -> udb typos, which can be\n"
"    to impossible to catch visually unless you specifically look for\n"
"    them.  The only result of any option starting with 'udb' is an error\n"
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"    in the boot output.\n\n"
);

static int fakehd_set = 0;
static int fakehd(char *str)
{
	printk(KERN_INFO "fakehd : Changing ubd name to \"hd\".\n");
	fakehd_set = 1;
	return 1;
}

__setup("fakehd", fakehd);
__uml_help(fakehd,
"fakehd\n"
"    Change the ubd device name to \"hd\".\n\n"
);

static void do_ubd_request(request_queue_t * q);
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/* Only changed by ubd_init, which is an initcall. */
int thread_fd = -1;
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/* call ubd_finish if you need to serialize */
static void __ubd_finish(struct request *req, int error)
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{
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	int nsect;

	if(error){
		end_request(req, 0);
		return;
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	}
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	nsect = req->current_nr_sectors;
	req->sector += nsect;
	req->buffer += nsect << 9;
	req->errors = 0;
	req->nr_sectors -= nsect;
	req->current_nr_sectors = 0;
	end_request(req, 1);
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}

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/* Callable only from interrupt context - otherwise you need to do
 * spin_lock_irq()/spin_lock_irqsave() */
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static inline void ubd_finish(struct request *req, int error)
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{
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	struct ubd *dev = req->rq_disk->private_data;

	spin_lock(&dev->lock);
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	__ubd_finish(req, error);
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	spin_unlock(&dev->lock);
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}

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/* XXX - move this inside ubd_intr. */
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/* Called without dev->lock held, and only in interrupt context. */
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static void ubd_handler(void)
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{
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	struct io_thread_req req;
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	struct request *rq;
	struct ubd *dev;
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	int n;

	n = os_read_file(thread_fd, &req, sizeof(req));
	if(n != sizeof(req)){
		printk(KERN_ERR "Pid %d - spurious interrupt in ubd_handler, "
		       "err = %d\n", os_getpid(), -n);
		return;
	}
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	rq = req.req;
	dev = rq->rq_disk->private_data;
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	dev->active = 0;
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	ubd_finish(rq, req.error);
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	reactivate_fd(thread_fd, UBD_IRQ);
	spin_lock(&dev->lock);
	do_ubd_request(dev->queue);
	spin_unlock(&dev->lock);
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}

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static irqreturn_t ubd_intr(int irq, void *dev)
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{
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	ubd_handler();
	return(IRQ_HANDLED);
}
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/* Only changed by ubd_init, which is an initcall. */
static int io_pid = -1;
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void kill_io_thread(void)
{
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	if(io_pid != -1)
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		os_kill_process(io_pid, 1);
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}
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__uml_exitcall(kill_io_thread);

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static inline int ubd_file_size(struct ubd *ubd_dev, __u64 *size_out)
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{
	char *file;

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	file = ubd_dev->cow.file ? ubd_dev->cow.file : ubd_dev->file;
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	return(os_file_size(file, size_out));
}

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static void ubd_close_dev(struct ubd *ubd_dev)
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{
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	os_close_file(ubd_dev->fd);
	if(ubd_dev->cow.file == NULL)
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		return;

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	os_close_file(ubd_dev->cow.fd);
	vfree(ubd_dev->cow.bitmap);
	ubd_dev->cow.bitmap = NULL;
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}

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static int ubd_open_dev(struct ubd *ubd_dev)
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{
	struct openflags flags;
	char **back_ptr;
	int err, create_cow, *create_ptr;
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	int fd;
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	ubd_dev->openflags = ubd_dev->boot_openflags;
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	create_cow = 0;
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	create_ptr = (ubd_dev->cow.file != NULL) ? &create_cow : NULL;
	back_ptr = ubd_dev->no_cow ? NULL : &ubd_dev->cow.file;
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	fd = open_ubd_file(ubd_dev->file, &ubd_dev->openflags, ubd_dev->shared,
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				back_ptr, &ubd_dev->cow.bitmap_offset,
				&ubd_dev->cow.bitmap_len, &ubd_dev->cow.data_offset,
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				create_ptr);
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	if((fd == -ENOENT) && create_cow){
		fd = create_cow_file(ubd_dev->file, ubd_dev->cow.file,
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					  ubd_dev->openflags, 1 << 9, PAGE_SIZE,
					  &ubd_dev->cow.bitmap_offset,
					  &ubd_dev->cow.bitmap_len,
					  &ubd_dev->cow.data_offset);
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		if(fd >= 0){
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			printk(KERN_INFO "Creating \"%s\" as COW file for "
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			       "\"%s\"\n", ubd_dev->file, ubd_dev->cow.file);
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		}
	}

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	if(fd < 0){
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		printk("Failed to open '%s', errno = %d\n", ubd_dev->file,
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		       -fd);
		return fd;
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	}
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	ubd_dev->fd = fd;
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596

597
	if(ubd_dev->cow.file != NULL){
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598
		err = -ENOMEM;
599 600
		ubd_dev->cow.bitmap = (void *) vmalloc(ubd_dev->cow.bitmap_len);
		if(ubd_dev->cow.bitmap == NULL){
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			printk(KERN_ERR "Failed to vmalloc COW bitmap\n");
			goto error;
		}
		flush_tlb_kernel_vm();

606 607 608
		err = read_cow_bitmap(ubd_dev->fd, ubd_dev->cow.bitmap,
				      ubd_dev->cow.bitmap_offset,
				      ubd_dev->cow.bitmap_len);
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609 610 611
		if(err < 0)
			goto error;

612
		flags = ubd_dev->openflags;
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613
		flags.w = 0;
614
		err = open_ubd_file(ubd_dev->cow.file, &flags, ubd_dev->shared, NULL,
615
				    NULL, NULL, NULL, NULL);
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616
		if(err < 0) goto error;
617
		ubd_dev->cow.fd = err;
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618 619 620
	}
	return(0);
 error:
621
	os_close_file(ubd_dev->fd);
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	return(err);
}

625
static int ubd_disk_register(int major, u64 size, int unit,
626
			     struct gendisk **disk_out)
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{
	struct gendisk *disk;

	disk = alloc_disk(1 << UBD_SHIFT);
	if(disk == NULL)
		return(-ENOMEM);

	disk->major = major;
	disk->first_minor = unit << UBD_SHIFT;
	disk->fops = &ubd_blops;
	set_capacity(disk, size / 512);
638
	if(major == MAJOR_NR)
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639
		sprintf(disk->disk_name, "ubd%c", 'a' + unit);
640
	else
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		sprintf(disk->disk_name, "ubd_fake%d", unit);

	/* sysfs register (not for ide fake devices) */
	if (major == MAJOR_NR) {
645 646 647 648
		ubd_devs[unit].pdev.id   = unit;
		ubd_devs[unit].pdev.name = DRIVER_NAME;
		platform_device_register(&ubd_devs[unit].pdev);
		disk->driverfs_dev = &ubd_devs[unit].pdev.dev;
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	}

651
	disk->private_data = &ubd_devs[unit];
652
	disk->queue = ubd_devs[unit].queue;
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	add_disk(disk);

	*disk_out = disk;
	return 0;
}

#define ROUND_BLOCK(n) ((n + ((1 << 9) - 1)) & (-1 << 9))

661
static int ubd_add(int n, char **error_out)
L
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662
{
663
	struct ubd *ubd_dev = &ubd_devs[n];
664
	int err = 0;
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665

666
	if(ubd_dev->file == NULL)
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667
		goto out;
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668

669
	err = ubd_file_size(ubd_dev, &ubd_dev->size);
670 671
	if(err < 0){
		*error_out = "Couldn't determine size of device's file";
672
		goto out;
673
	}
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674

675
	ubd_dev->size = ROUND_BLOCK(ubd_dev->size);
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676

677 678 679 680
	err = -ENOMEM;
	ubd_dev->queue = blk_init_queue(do_ubd_request, &ubd_dev->lock);
	if (ubd_dev->queue == NULL) {
		*error_out = "Failed to initialize device queue";
681
		goto out;
682 683 684 685 686 687 688 689
	}
	ubd_dev->queue->queuedata = ubd_dev;

	err = ubd_disk_register(MAJOR_NR, ubd_dev->size, n, &ubd_gendisk[n]);
	if(err){
		*error_out = "Failed to register device";
		goto out_cleanup;
	}
690

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691
	if(fake_major != MAJOR_NR)
692
		ubd_disk_register(fake_major, ubd_dev->size, n,
693
				  &fake_gendisk[n]);
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	/* perhaps this should also be under the "if (fake_major)" above */
	/* using the fake_disk->disk_name and also the fakehd_set name */
	if (fake_ide)
		make_ide_entries(ubd_gendisk[n]->disk_name);

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	err = 0;
out:
	return err;
703 704 705 706

out_cleanup:
	blk_cleanup_queue(ubd_dev->queue);
	goto out;
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}

709
static int ubd_config(char *str, char **error_out)
L
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710
{
711
	int n, ret;
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713 714 715 716
	/* This string is possibly broken up and stored, so it's only
	 * freed if ubd_setup_common fails, or if only general options
	 * were set.
	 */
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	str = kstrdup(str, GFP_KERNEL);
718
	if (str == NULL) {
719 720
		*error_out = "Failed to allocate memory";
		return -ENOMEM;
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721
	}
722 723 724

	ret = ubd_setup_common(str, &n, error_out);
	if (ret)
725
		goto err_free;
726

727 728
	if (n == -1) {
		ret = 0;
729
		goto err_free;
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730 731
	}

732
 	mutex_lock(&ubd_lock);
733
	ret = ubd_add(n, error_out);
734
	if (ret)
735
		ubd_devs[n].file = NULL;
736
 	mutex_unlock(&ubd_lock);
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737

738 739 740 741 742 743
out:
 	return ret;

err_free:
	kfree(str);
	goto out;
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}

static int ubd_get_config(char *name, char *str, int size, char **error_out)
{
748
	struct ubd *ubd_dev;
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	int n, len = 0;

	n = parse_unit(&name);
	if((n >= MAX_DEV) || (n < 0)){
		*error_out = "ubd_get_config : device number out of range";
		return(-1);
	}

757
	ubd_dev = &ubd_devs[n];
758
	mutex_lock(&ubd_lock);
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759

760
	if(ubd_dev->file == NULL){
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761 762 763 764
		CONFIG_CHUNK(str, size, len, "", 1);
		goto out;
	}

765
	CONFIG_CHUNK(str, size, len, ubd_dev->file, 0);
L
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766

767
	if(ubd_dev->cow.file != NULL){
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768
		CONFIG_CHUNK(str, size, len, ",", 0);
769
		CONFIG_CHUNK(str, size, len, ubd_dev->cow.file, 1);
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770 771 772 773
	}
	else CONFIG_CHUNK(str, size, len, "", 1);

 out:
774
	mutex_unlock(&ubd_lock);
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775 776 777
	return(len);
}

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778 779 780 781 782 783 784 785 786 787
static int ubd_id(char **str, int *start_out, int *end_out)
{
        int n;

	n = parse_unit(str);
        *start_out = 0;
        *end_out = MAX_DEV - 1;
        return n;
}

788
static int ubd_remove(int n, char **error_out)
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789
{
790
	struct gendisk *disk;
791
	struct ubd *ubd_dev;
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792
	int err = -ENODEV;
L
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793

794
	mutex_lock(&ubd_lock);
L
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795

796
	ubd_dev = &ubd_devs[n];
L
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797

798
	if(ubd_dev->file == NULL)
J
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799
		goto out;
L
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800

J
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801 802
	/* you cannot remove a open disk */
	err = -EBUSY;
803
	if(ubd_dev->count > 0)
L
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804 805
		goto out;

806 807 808 809 810 811
 	disk = ubd_gendisk[n];
 	ubd_gendisk[n] = NULL;
	if(disk != NULL){
		del_gendisk(disk);
		put_disk(disk);
	}
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812 813 814 815 816 817 818

	if(fake_gendisk[n] != NULL){
		del_gendisk(fake_gendisk[n]);
		put_disk(fake_gendisk[n]);
		fake_gendisk[n] = NULL;
	}

819
	blk_cleanup_queue(ubd_dev->queue);
820 821
	platform_device_unregister(&ubd_dev->pdev);
	*ubd_dev = ((struct ubd) DEFAULT_UBD);
L
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822
	err = 0;
J
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823
out:
824
	mutex_unlock(&ubd_lock);
J
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825
	return err;
L
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}

828
/* All these are called by mconsole in process context and without
829
 * ubd-specific locks.  The structure itself is const except for .list.
830
 */
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831
static struct mc_device ubd_mc = {
J
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832
	.list		= LIST_HEAD_INIT(ubd_mc.list),
L
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833 834 835
	.name		= "ubd",
	.config		= ubd_config,
 	.get_config	= ubd_get_config,
J
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836
	.id		= ubd_id,
L
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837 838 839
	.remove		= ubd_remove,
};

840
static int __init ubd_mc_init(void)
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841 842 843 844 845 846 847
{
	mconsole_register_dev(&ubd_mc);
	return 0;
}

__initcall(ubd_mc_init);

848 849 850 851
static int __init ubd0_init(void)
{
	struct ubd *ubd_dev = &ubd_devs[0];

852
	mutex_lock(&ubd_lock);
853 854
	if(ubd_dev->file == NULL)
		ubd_dev->file = "root_fs";
855 856
	mutex_unlock(&ubd_lock);

857 858 859 860 861
	return(0);
}

__initcall(ubd0_init);

862
/* Used in ubd_init, which is an initcall */
863 864 865 866
static struct platform_driver ubd_driver = {
	.driver = {
		.name  = DRIVER_NAME,
	},
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867 868
};

869
static int __init ubd_init(void)
L
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870
{
871 872
	char *error;
	int i, err;
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873 874 875 876 877 878 879 880 881 882 883

	if (register_blkdev(MAJOR_NR, "ubd"))
		return -1;

	if (fake_major != MAJOR_NR) {
		char name[sizeof("ubd_nnn\0")];

		snprintf(name, sizeof(name), "ubd_%d", fake_major);
		if (register_blkdev(fake_major, "ubd"))
			return -1;
	}
884
	platform_driver_register(&ubd_driver);
885
 	mutex_lock(&ubd_lock);
886 887 888 889 890 891
	for (i = 0; i < MAX_DEV; i++){
		err = ubd_add(i, &error);
		if(err)
			printk(KERN_ERR "Failed to initialize ubd device %d :"
			       "%s\n", i, error);
	}
892
 	mutex_unlock(&ubd_lock);
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893 894 895 896 897
	return 0;
}

late_initcall(ubd_init);

898
static int __init ubd_driver_init(void){
899 900 901 902 903 904 905 906 907 908
	unsigned long stack;
	int err;

	/* Set by CONFIG_BLK_DEV_UBD_SYNC or ubd=sync.*/
	if(global_openflags.s){
		printk(KERN_INFO "ubd: Synchronous mode\n");
		/* Letting ubd=sync be like using ubd#s= instead of ubd#= is
		 * enough. So use anyway the io thread. */
	}
	stack = alloc_stack(0, 0);
909
	io_pid = start_io_thread(stack + PAGE_SIZE - sizeof(void *),
910 911
				 &thread_fd);
	if(io_pid < 0){
912
		printk(KERN_ERR
913 914 915 916 917
		       "ubd : Failed to start I/O thread (errno = %d) - "
		       "falling back to synchronous I/O\n", -io_pid);
		io_pid = -1;
		return(0);
	}
918
	err = um_request_irq(UBD_IRQ, thread_fd, IRQ_READ, ubd_intr,
919
			     IRQF_DISABLED, "ubd", ubd_devs);
920 921
	if(err != 0)
		printk(KERN_ERR "um_request_irq failed - errno = %d\n", -err);
922
	return 0;
923 924 925 926
}

device_initcall(ubd_driver_init);

L
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927 928 929
static int ubd_open(struct inode *inode, struct file *filp)
{
	struct gendisk *disk = inode->i_bdev->bd_disk;
930
	struct ubd *ubd_dev = disk->private_data;
L
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931 932
	int err = 0;

933 934
	if(ubd_dev->count == 0){
		err = ubd_open_dev(ubd_dev);
L
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935 936
		if(err){
			printk(KERN_ERR "%s: Can't open \"%s\": errno = %d\n",
937
			       disk->disk_name, ubd_dev->file, -err);
L
Linus Torvalds 已提交
938 939 940
			goto out;
		}
	}
941 942
	ubd_dev->count++;
	set_disk_ro(disk, !ubd_dev->openflags.w);
943 944 945

	/* This should no more be needed. And it didn't work anyway to exclude
	 * read-write remounting of filesystems.*/
946
	/*if((filp->f_mode & FMODE_WRITE) && !ubd_dev->openflags.w){
947
	        if(--ubd_dev->count == 0) ubd_close_dev(ubd_dev);
L
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948
	        err = -EROFS;
949
	}*/
L
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950 951 952 953 954 955 956
 out:
	return(err);
}

static int ubd_release(struct inode * inode, struct file * file)
{
	struct gendisk *disk = inode->i_bdev->bd_disk;
957
	struct ubd *ubd_dev = disk->private_data;
L
Linus Torvalds 已提交
958

959
	if(--ubd_dev->count == 0)
960
		ubd_close_dev(ubd_dev);
L
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961 962 963
	return(0);
}

964 965 966 967
static void cowify_bitmap(__u64 io_offset, int length, unsigned long *cow_mask,
			  __u64 *cow_offset, unsigned long *bitmap,
			  __u64 bitmap_offset, unsigned long *bitmap_words,
			  __u64 bitmap_len)
L
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968
{
969 970 971 972 973 974 975 976
	__u64 sector = io_offset >> 9;
	int i, update_bitmap = 0;

	for(i = 0; i < length >> 9; i++){
		if(cow_mask != NULL)
			ubd_set_bit(i, (unsigned char *) cow_mask);
		if(ubd_test_bit(sector + i, (unsigned char *) bitmap))
			continue;
L
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977

978 979 980 981 982 983
		update_bitmap = 1;
		ubd_set_bit(sector + i, (unsigned char *) bitmap);
	}

	if(!update_bitmap)
		return;
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984

985
	*cow_offset = sector / (sizeof(unsigned long) * 8);
L
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986

987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014
	/* This takes care of the case where we're exactly at the end of the
	 * device, and *cow_offset + 1 is off the end.  So, just back it up
	 * by one word.  Thanks to Lynn Kerby for the fix and James McMechan
	 * for the original diagnosis.
	 */
	if(*cow_offset == ((bitmap_len + sizeof(unsigned long) - 1) /
			   sizeof(unsigned long) - 1))
		(*cow_offset)--;

	bitmap_words[0] = bitmap[*cow_offset];
	bitmap_words[1] = bitmap[*cow_offset + 1];

	*cow_offset *= sizeof(unsigned long);
	*cow_offset += bitmap_offset;
}

static void cowify_req(struct io_thread_req *req, unsigned long *bitmap,
		       __u64 bitmap_offset, __u64 bitmap_len)
{
	__u64 sector = req->offset >> 9;
	int i;

	if(req->length > (sizeof(req->sector_mask) * 8) << 9)
		panic("Operation too long");

	if(req->op == UBD_READ) {
		for(i = 0; i < req->length >> 9; i++){
			if(ubd_test_bit(sector + i, (unsigned char *) bitmap))
1015
				ubd_set_bit(i, (unsigned char *)
1016 1017 1018 1019 1020 1021
					    &req->sector_mask);
                }
	}
	else cowify_bitmap(req->offset, req->length, &req->sector_mask,
			   &req->cow_offset, bitmap, bitmap_offset,
			   req->bitmap_words, bitmap_len);
L
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}

1024
/* Called with dev->lock held */
1025
static int prepare_request(struct request *req, struct io_thread_req *io_req)
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1026 1027
{
	struct gendisk *disk = req->rq_disk;
1028
	struct ubd *ubd_dev = disk->private_data;
1029 1030 1031
	__u64 offset;
	int len;

1032
	/* This should be impossible now */
1033
	if((rq_data_dir(req) == WRITE) && !ubd_dev->openflags.w){
1034
		printk("Write attempted on readonly ubd device %s\n",
L
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1035
		       disk->disk_name);
1036
		end_request(req, 0);
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1037 1038 1039
		return(1);
	}

1040 1041 1042
	offset = ((__u64) req->sector) << 9;
	len = req->current_nr_sectors << 9;

1043
	io_req->req = req;
1044 1045
	io_req->fds[0] = (ubd_dev->cow.file != NULL) ? ubd_dev->cow.fd : ubd_dev->fd;
	io_req->fds[1] = ubd_dev->fd;
1046
	io_req->cow_offset = -1;
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1047 1048 1049
	io_req->offset = offset;
	io_req->length = len;
	io_req->error = 0;
1050 1051 1052
	io_req->sector_mask = 0;

	io_req->op = (rq_data_dir(req) == READ) ? UBD_READ : UBD_WRITE;
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1053
	io_req->offsets[0] = 0;
1054
	io_req->offsets[1] = ubd_dev->cow.data_offset;
1055
	io_req->buffer = req->buffer;
L
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1056 1057
	io_req->sectorsize = 1 << 9;

1058 1059 1060
	if(ubd_dev->cow.file != NULL)
		cowify_req(io_req, ubd_dev->cow.bitmap, ubd_dev->cow.bitmap_offset,
			   ubd_dev->cow.bitmap_len);
1061

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1062 1063 1064
	return(0);
}

1065
/* Called with dev->lock held */
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1066 1067 1068 1069
static void do_ubd_request(request_queue_t *q)
{
	struct io_thread_req io_req;
	struct request *req;
1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081
	int err, n;

	if(thread_fd == -1){
		while((req = elv_next_request(q)) != NULL){
			err = prepare_request(req, &io_req);
			if(!err){
				do_io(&io_req);
				__ubd_finish(req, io_req.error);
			}
		}
	}
	else {
1082 1083
		struct ubd *dev = q->queuedata;
		if(dev->active || (req = elv_next_request(q)) == NULL)
1084 1085 1086
			return;
		err = prepare_request(req, &io_req);
		if(!err){
1087
			dev->active = 1;
1088 1089 1090 1091 1092
			n = os_write_file(thread_fd, (char *) &io_req,
					 sizeof(io_req));
			if(n != sizeof(io_req))
				printk("write to io thread failed, "
				       "errno = %d\n", -n);
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1093 1094 1095 1096
		}
	}
}

1097 1098
static int ubd_getgeo(struct block_device *bdev, struct hd_geometry *geo)
{
1099
	struct ubd *ubd_dev = bdev->bd_disk->private_data;
1100 1101 1102

	geo->heads = 128;
	geo->sectors = 32;
1103
	geo->cylinders = ubd_dev->size / (128 * 32 * 512);
1104 1105 1106
	return 0;
}

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static int ubd_ioctl(struct inode * inode, struct file * file,
		     unsigned int cmd, unsigned long arg)
{
1110
	struct ubd *ubd_dev = inode->i_bdev->bd_disk->private_data;
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1111 1112 1113 1114 1115 1116 1117 1118 1119
	struct hd_driveid ubd_id = {
		.cyls		= 0,
		.heads		= 128,
		.sectors	= 32,
	};

	switch (cmd) {
		struct cdrom_volctrl volume;
	case HDIO_GET_IDENTITY:
1120
		ubd_id.cyls = ubd_dev->size / (128 * 32 * 512);
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		if(copy_to_user((char __user *) arg, (char *) &ubd_id,
				 sizeof(ubd_id)))
			return(-EFAULT);
		return(0);
1125

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	case CDROMVOLREAD:
		if(copy_from_user(&volume, (char __user *) arg, sizeof(volume)))
			return(-EFAULT);
		volume.channel0 = 255;
		volume.channel1 = 255;
		volume.channel2 = 255;
		volume.channel3 = 255;
		if(copy_to_user((char __user *) arg, &volume, sizeof(volume)))
			return(-EFAULT);
		return(0);
	}
	return(-EINVAL);
}

1140
static int path_requires_switch(char *from_cmdline, char *from_cow, char *cow)
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{
	struct uml_stat buf1, buf2;
	int err;

1145 1146 1147 1148
	if(from_cmdline == NULL)
		return 0;
	if(!strcmp(from_cmdline, from_cow))
		return 0;
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	err = os_stat_file(from_cmdline, &buf1);
	if(err < 0){
		printk("Couldn't stat '%s', err = %d\n", from_cmdline, -err);
1153
		return 0;
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	}
	err = os_stat_file(from_cow, &buf2);
	if(err < 0){
		printk("Couldn't stat '%s', err = %d\n", from_cow, -err);
1158
		return 1;
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	}
	if((buf1.ust_dev == buf2.ust_dev) && (buf1.ust_ino == buf2.ust_ino))
1161
		return 0;
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	printk("Backing file mismatch - \"%s\" requested,\n"
	       "\"%s\" specified in COW header of \"%s\"\n",
	       from_cmdline, from_cow, cow);
1166
	return 1;
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}

static int backing_file_mismatch(char *file, __u64 size, time_t mtime)
{
	unsigned long modtime;
1172
	unsigned long long actual;
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	int err;

	err = os_file_modtime(file, &modtime);
	if(err < 0){
		printk("Failed to get modification time of backing file "
		       "\"%s\", err = %d\n", file, -err);
		return(err);
	}

	err = os_file_size(file, &actual);
	if(err < 0){
		printk("Failed to get size of backing file \"%s\", "
		       "err = %d\n", file, -err);
		return(err);
	}

  	if(actual != size){
		/*__u64 can be a long on AMD64 and with %lu GCC complains; so
		 * the typecast.*/
		printk("Size mismatch (%llu vs %llu) of COW header vs backing "
		       "file\n", (unsigned long long) size, actual);
		return(-EINVAL);
	}
	if(modtime != mtime){
		printk("mtime mismatch (%ld vs %ld) of COW header vs backing "
		       "file\n", mtime, modtime);
		return(-EINVAL);
	}
	return(0);
}

int read_cow_bitmap(int fd, void *buf, int offset, int len)
{
	int err;

	err = os_seek_file(fd, offset);
	if(err < 0)
		return(err);

	err = os_read_file(fd, buf, len);
	if(err < 0)
		return(err);

	return(0);
}

1219
int open_ubd_file(char *file, struct openflags *openflags, int shared,
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		  char **backing_file_out, int *bitmap_offset_out,
		  unsigned long *bitmap_len_out, int *data_offset_out,
		  int *create_cow_out)
{
	time_t mtime;
	unsigned long long size;
	__u32 version, align;
	char *backing_file;
1228
	int fd, err, sectorsize, asked_switch, mode = 0644;
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	fd = os_open_file(file, *openflags, mode);
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	if (fd < 0) {
		if ((fd == -ENOENT) && (create_cow_out != NULL))
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			*create_cow_out = 1;
1234 1235 1236
                if (!openflags->w ||
                   ((fd != -EROFS) && (fd != -EACCES)))
			return fd;
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		openflags->w = 0;
		fd = os_open_file(file, *openflags, mode);
1239 1240
		if (fd < 0)
			return fd;
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        }

1243 1244 1245 1246 1247 1248 1249 1250
	if(shared)
		printk("Not locking \"%s\" on the host\n", file);
	else {
		err = os_lock_file(fd, openflags->w);
		if(err < 0){
			printk("Failed to lock '%s', err = %d\n", file, -err);
			goto out_close;
		}
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	}

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	/* Successful return case! */
1254 1255
	if(backing_file_out == NULL)
		return(fd);
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	err = read_cow_header(file_reader, &fd, &version, &backing_file, &mtime,
			      &size, &sectorsize, &align, bitmap_offset_out);
	if(err && (*backing_file_out != NULL)){
		printk("Failed to read COW header from COW file \"%s\", "
		       "errno = %d\n", file, -err);
		goto out_close;
	}
1264 1265
	if(err)
		return(fd);
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1267
	asked_switch = path_requires_switch(*backing_file_out, backing_file, file);
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	/* Allow switching only if no mismatch. */
	if (asked_switch && !backing_file_mismatch(*backing_file_out, size, mtime)) {
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		printk("Switching backing file to '%s'\n", *backing_file_out);
		err = write_cow_header(file, fd, *backing_file_out,
				       sectorsize, align, &size);
1274
		if (err) {
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			printk("Switch failed, errno = %d\n", -err);
1276
			goto out_close;
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		}
1278
	} else {
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		*backing_file_out = backing_file;
		err = backing_file_mismatch(*backing_file_out, size, mtime);
1281 1282
		if (err)
			goto out_close;
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	}

	cow_sizes(version, size, sectorsize, align, *bitmap_offset_out,
		  bitmap_len_out, data_offset_out);

1288
        return fd;
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 out_close:
	os_close_file(fd);
1291
	return err;
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}

int create_cow_file(char *cow_file, char *backing_file, struct openflags flags,
		    int sectorsize, int alignment, int *bitmap_offset_out,
		    unsigned long *bitmap_len_out, int *data_offset_out)
{
	int err, fd;

	flags.c = 1;
1301
	fd = open_ubd_file(cow_file, &flags, 0, NULL, NULL, NULL, NULL, NULL);
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	if(fd < 0){
		err = fd;
		printk("Open of COW file '%s' failed, errno = %d\n", cow_file,
		       -err);
		goto out;
	}

	err = init_cow_file(fd, cow_file, backing_file, sectorsize, alignment,
			    bitmap_offset_out, bitmap_len_out,
			    data_offset_out);
	if(!err)
		return(fd);
	os_close_file(fd);
 out:
	return(err);
}

1319
static int update_bitmap(struct io_thread_req *req)
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{
1321
	int n;
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1323 1324
	if(req->cow_offset == -1)
		return(0);
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	n = os_seek_file(req->fds[1], req->cow_offset);
	if(n < 0){
		printk("do_io - bitmap lseek failed : err = %d\n", -n);
		return(1);
	}
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1332 1333 1334 1335 1336 1337 1338
	n = os_write_file(req->fds[1], &req->bitmap_words,
		          sizeof(req->bitmap_words));
	if(n != sizeof(req->bitmap_words)){
		printk("do_io - bitmap update failed, err = %d fd = %d\n", -n,
		       req->fds[1]);
		return(1);
	}
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1340 1341
	return(0);
}
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1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397
void do_io(struct io_thread_req *req)
{
	char *buf;
	unsigned long len;
	int n, nsectors, start, end, bit;
	int err;
	__u64 off;

	nsectors = req->length / req->sectorsize;
	start = 0;
	do {
		bit = ubd_test_bit(start, (unsigned char *) &req->sector_mask);
		end = start;
		while((end < nsectors) &&
		      (ubd_test_bit(end, (unsigned char *)
				    &req->sector_mask) == bit))
			end++;

		off = req->offset + req->offsets[bit] +
			start * req->sectorsize;
		len = (end - start) * req->sectorsize;
		buf = &req->buffer[start * req->sectorsize];

		err = os_seek_file(req->fds[bit], off);
		if(err < 0){
			printk("do_io - lseek failed : err = %d\n", -err);
			req->error = 1;
			return;
		}
		if(req->op == UBD_READ){
			n = 0;
			do {
				buf = &buf[n];
				len -= n;
				n = os_read_file(req->fds[bit], buf, len);
				if (n < 0) {
					printk("do_io - read failed, err = %d "
					       "fd = %d\n", -n, req->fds[bit]);
					req->error = 1;
					return;
				}
			} while((n < len) && (n != 0));
			if (n < len) memset(&buf[n], 0, len - n);
		} else {
			n = os_write_file(req->fds[bit], buf, len);
			if(n != len){
				printk("do_io - write failed err = %d "
				       "fd = %d\n", -n, req->fds[bit]);
				req->error = 1;
				return;
			}
		}

		start = end;
	} while(start < nsectors);
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1399
	req->error = update_bitmap(req);
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}
1401 1402 1403 1404 1405 1406

/* Changed in start_io_thread, which is serialized by being called only
 * from ubd_init, which is an initcall.
 */
int kernel_fd = -1;

1407 1408
/* Only changed by the io thread. XXX: currently unused. */
static int io_count = 0;
1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435

int io_thread(void *arg)
{
	struct io_thread_req req;
	int n;

	ignore_sigwinch_sig();
	while(1){
		n = os_read_file(kernel_fd, &req, sizeof(req));
		if(n != sizeof(req)){
			if(n < 0)
				printk("io_thread - read failed, fd = %d, "
				       "err = %d\n", kernel_fd, -n);
			else {
				printk("io_thread - short read, fd = %d, "
				       "length = %d\n", kernel_fd, n);
			}
			continue;
		}
		io_count++;
		do_io(&req);
		n = os_write_file(kernel_fd, &req, sizeof(req));
		if(n != sizeof(req))
			printk("io_thread - write failed, fd = %d, err = %d\n",
			       kernel_fd, -n);
	}

1436 1437
	return 0;
}