grub2/include/grub/disk.h
Glenn Washburn 9c3149a2f2 luks2: Better error handling when setting up the cryptodisk
Do some sanity checking on data coming from the LUKS2 header. If segment.size
is "dynamic", verify that the offset is not past the end of disk. Otherwise,
check for errors from grub_strtoull() when converting segment size from
string. If a GRUB_ERR_BAD_NUMBER error was returned, then the string was
not a valid parsable number, so skip the key. If GRUB_ERR_OUT_OF_RANGE was
returned, then there was an overflow in converting to a 64-bit unsigned
integer. So this could be a very large disk (perhaps large RAID array).
In this case skip the key too. Additionally, enforce some other limits
and fail if needed.

Signed-off-by: Glenn Washburn <development@efficientek.com>
Reviewed-by: Daniel Kiper <daniel.kiper@oracle.com>
2020-12-18 23:00:28 +01:00

295 lines
8.4 KiB
C

/*
* GRUB -- GRand Unified Bootloader
* Copyright (C) 2002,2003,2004,2005,2006,2007,2008,2009 Free Software Foundation, Inc.
*
* GRUB is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* GRUB is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with GRUB. If not, see <http://www.gnu.org/licenses/>.
*/
#ifndef GRUB_DISK_HEADER
#define GRUB_DISK_HEADER 1
#include <config.h>
#include <grub/symbol.h>
#include <grub/err.h>
#include <grub/types.h>
#include <grub/device.h>
/* For NULL. */
#include <grub/mm.h>
/* For ALIGN_UP. */
#include <grub/misc.h>
/* These are used to set a device id. When you add a new disk device,
you must define a new id for it here. */
enum grub_disk_dev_id
{
GRUB_DISK_DEVICE_BIOSDISK_ID,
GRUB_DISK_DEVICE_OFDISK_ID,
GRUB_DISK_DEVICE_LOOPBACK_ID,
GRUB_DISK_DEVICE_EFIDISK_ID,
GRUB_DISK_DEVICE_DISKFILTER_ID,
GRUB_DISK_DEVICE_HOST_ID,
GRUB_DISK_DEVICE_ATA_ID,
GRUB_DISK_DEVICE_MEMDISK_ID,
GRUB_DISK_DEVICE_NAND_ID,
GRUB_DISK_DEVICE_SCSI_ID,
GRUB_DISK_DEVICE_CRYPTODISK_ID,
GRUB_DISK_DEVICE_ARCDISK_ID,
GRUB_DISK_DEVICE_HOSTDISK_ID,
GRUB_DISK_DEVICE_PROCFS_ID,
GRUB_DISK_DEVICE_CBFSDISK_ID,
GRUB_DISK_DEVICE_UBOOTDISK_ID,
GRUB_DISK_DEVICE_XEN,
GRUB_DISK_DEVICE_OBDISK_ID,
};
struct grub_disk;
#ifdef GRUB_UTIL
struct grub_disk_memberlist;
#endif
typedef enum
{
GRUB_DISK_PULL_NONE,
GRUB_DISK_PULL_REMOVABLE,
GRUB_DISK_PULL_RESCAN,
GRUB_DISK_PULL_MAX
} grub_disk_pull_t;
typedef int (*grub_disk_dev_iterate_hook_t) (const char *name, void *data);
/* Disk device. */
struct grub_disk_dev
{
/* The device name. */
const char *name;
/* The device id used by the cache manager. */
enum grub_disk_dev_id id;
/* Call HOOK with each device name, until HOOK returns non-zero. */
int (*disk_iterate) (grub_disk_dev_iterate_hook_t hook, void *hook_data,
grub_disk_pull_t pull);
/* Open the device named NAME, and set up DISK. */
grub_err_t (*disk_open) (const char *name, struct grub_disk *disk);
/* Close the disk DISK. */
void (*disk_close) (struct grub_disk *disk);
/* Read SIZE sectors from the sector SECTOR of the disk DISK into BUF. */
grub_err_t (*disk_read) (struct grub_disk *disk, grub_disk_addr_t sector,
grub_size_t size, char *buf);
/* Write SIZE sectors from BUF into the sector SECTOR of the disk DISK. */
grub_err_t (*disk_write) (struct grub_disk *disk, grub_disk_addr_t sector,
grub_size_t size, const char *buf);
#ifdef GRUB_UTIL
struct grub_disk_memberlist *(*disk_memberlist) (struct grub_disk *disk);
const char * (*disk_raidname) (struct grub_disk *disk);
#endif
/* The next disk device. */
struct grub_disk_dev *next;
};
typedef struct grub_disk_dev *grub_disk_dev_t;
extern grub_disk_dev_t EXPORT_VAR (grub_disk_dev_list);
struct grub_partition;
typedef void (*grub_disk_read_hook_t) (grub_disk_addr_t sector,
unsigned offset, unsigned length,
void *data);
/* Disk. */
struct grub_disk
{
/* The disk name. */
const char *name;
/* The underlying disk device. */
grub_disk_dev_t dev;
/* The total number of sectors. */
grub_uint64_t total_sectors;
/* Logarithm of sector size. */
unsigned int log_sector_size;
/* Maximum number of sectors read divided by GRUB_DISK_CACHE_SIZE. */
unsigned int max_agglomerate;
/* The id used by the disk cache manager. */
unsigned long id;
/* The partition information. This is machine-specific. */
struct grub_partition *partition;
/* Called when a sector was read. OFFSET is between 0 and
the sector size minus 1, and LENGTH is between 0 and the sector size. */
grub_disk_read_hook_t read_hook;
/* Caller-specific data passed to the read hook. */
void *read_hook_data;
/* Device-specific data. */
void *data;
};
typedef struct grub_disk *grub_disk_t;
#ifdef GRUB_UTIL
struct grub_disk_memberlist
{
grub_disk_t disk;
struct grub_disk_memberlist *next;
};
typedef struct grub_disk_memberlist *grub_disk_memberlist_t;
#endif
/* The sector size. */
#define GRUB_DISK_SECTOR_SIZE 0x200
#define GRUB_DISK_SECTOR_BITS 9
/*
* Some drivers have problems with disks above reasonable sizes.
* Set max disk size at 1 EiB.
*/
#define GRUB_DISK_MAX_SECTORS (1ULL << (60 - GRUB_DISK_SECTOR_BITS))
/* The maximum number of disk caches. */
#define GRUB_DISK_CACHE_NUM 1021
/* The size of a disk cache in 512B units. Must be at least as big as the
largest supported sector size, currently 16K. */
#define GRUB_DISK_CACHE_BITS 6
#define GRUB_DISK_CACHE_SIZE (1 << GRUB_DISK_CACHE_BITS)
#define GRUB_DISK_MAX_MAX_AGGLOMERATE ((1 << (30 - GRUB_DISK_CACHE_BITS - GRUB_DISK_SECTOR_BITS)) - 1)
/* Return value of grub_disk_native_sectors() in case disk size is unknown. */
#define GRUB_DISK_SIZE_UNKNOWN 0xffffffffffffffffULL
/* Convert sector number from one sector size to another. */
static inline grub_disk_addr_t
grub_convert_sector (grub_disk_addr_t sector,
grub_size_t log_sector_size_from,
grub_size_t log_sector_size_to)
{
if (log_sector_size_from == log_sector_size_to)
return sector;
else if (log_sector_size_from < log_sector_size_to)
{
sector = ALIGN_UP (sector, 1 << (log_sector_size_to - log_sector_size_from));
return sector >> (log_sector_size_to - log_sector_size_from);
}
else
return sector << (log_sector_size_from - log_sector_size_to);
}
/* Convert to GRUB native disk sized sector from disk sized sector. */
static inline grub_disk_addr_t
grub_disk_from_native_sector (grub_disk_t disk, grub_disk_addr_t sector)
{
return sector << (disk->log_sector_size - GRUB_DISK_SECTOR_BITS);
}
/* This is called from the memory manager. */
void grub_disk_cache_invalidate_all (void);
void EXPORT_FUNC(grub_disk_dev_register) (grub_disk_dev_t dev);
void EXPORT_FUNC(grub_disk_dev_unregister) (grub_disk_dev_t dev);
static inline int
grub_disk_dev_iterate (grub_disk_dev_iterate_hook_t hook, void *hook_data)
{
grub_disk_dev_t p;
grub_disk_pull_t pull;
for (pull = 0; pull < GRUB_DISK_PULL_MAX; pull++)
for (p = grub_disk_dev_list; p; p = p->next)
if (p->disk_iterate && (p->disk_iterate) (hook, hook_data, pull))
return 1;
return 0;
}
grub_disk_t EXPORT_FUNC(grub_disk_open) (const char *name);
void EXPORT_FUNC(grub_disk_close) (grub_disk_t disk);
grub_err_t EXPORT_FUNC(grub_disk_read) (grub_disk_t disk,
grub_disk_addr_t sector,
grub_off_t offset,
grub_size_t size,
void *buf);
grub_err_t grub_disk_write (grub_disk_t disk,
grub_disk_addr_t sector,
grub_off_t offset,
grub_size_t size,
const void *buf);
extern grub_err_t (*EXPORT_VAR(grub_disk_write_weak)) (grub_disk_t disk,
grub_disk_addr_t sector,
grub_off_t offset,
grub_size_t size,
const void *buf);
grub_uint64_t EXPORT_FUNC(grub_disk_native_sectors) (grub_disk_t disk);
#if DISK_CACHE_STATS
void
EXPORT_FUNC(grub_disk_cache_get_performance) (unsigned long *hits, unsigned long *misses);
#endif
extern void (* EXPORT_VAR(grub_disk_firmware_fini)) (void);
extern int EXPORT_VAR(grub_disk_firmware_is_tainted);
static inline void
grub_stop_disk_firmware (void)
{
/* To prevent two drivers operating on the same disks. */
grub_disk_firmware_is_tainted = 1;
if (grub_disk_firmware_fini)
{
grub_disk_firmware_fini ();
grub_disk_firmware_fini = NULL;
}
}
/* Disk cache. */
struct grub_disk_cache
{
enum grub_disk_dev_id dev_id;
unsigned long disk_id;
grub_disk_addr_t sector;
char *data;
int lock;
};
extern struct grub_disk_cache EXPORT_VAR(grub_disk_cache_table)[GRUB_DISK_CACHE_NUM];
#if defined (GRUB_UTIL)
void grub_lvm_init (void);
void grub_ldm_init (void);
void grub_mdraid09_init (void);
void grub_mdraid1x_init (void);
void grub_diskfilter_init (void);
void grub_lvm_fini (void);
void grub_ldm_fini (void);
void grub_mdraid09_fini (void);
void grub_mdraid1x_fini (void);
void grub_diskfilter_fini (void);
#endif
#endif /* ! GRUB_DISK_HEADER */