grub/grub-core/disk/uboot/ubootdisk.c

347 lines
8.1 KiB
C

/* ubootdisk.c - disk subsystem support for U-Boot platforms */
/*
* GRUB -- GRand Unified Bootloader
* Copyright (C) 2013 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/>.
*/
#include <grub/disk.h>
#include <grub/err.h>
#include <grub/misc.h>
#include <grub/mm.h>
#include <grub/partition.h>
#include <grub/term.h>
#include <grub/types.h>
#include <grub/uboot/disk.h>
#include <grub/uboot/uboot.h>
static struct ubootdisk_data *fd_devices;
static struct ubootdisk_data *hd_devices;
static struct ubootdisk_data *cd_devices;
/*
* grub_ubootdisk_register():
* Called for each disk device enumerated as part of U-Boot initialization
* code.
*/
grub_err_t
grub_ubootdisk_register (struct device_info *newdev, int handle)
{
struct ubootdisk_data *d;
enum disktype type;
#define STOR_TYPE(x) ((x) & 0x0ff0)
switch (STOR_TYPE (newdev->type))
{
case DT_STOR_IDE:
case DT_STOR_SATA:
/* hd */
type = hd;
break;
case DT_STOR_MMC:
case DT_STOR_USB:
/* fd */
type = fd;
break;
default:
return GRUB_ERR_BAD_DEVICE;
break;
}
d = (struct ubootdisk_data *) grub_malloc (sizeof (struct ubootdisk_data));
if (!d)
return GRUB_ERR_OUT_OF_MEMORY;
d->handle = handle;
d->cookie = newdev->cookie;
d->opencount = 0;
switch (type)
{
case cd:
grub_dprintf ("ubootdisk", "registering cd device\n");
d->next = cd_devices;
cd_devices = d;
break;
case fd:
grub_dprintf ("ubootdisk", "registering fd device\n");
d->next = fd_devices;
fd_devices = d;
break;
case hd:
grub_dprintf ("ubootdisk", "registering hd device\n");
d->next = hd_devices;
hd_devices = d;
break;
default:
grub_free (d);
return GRUB_ERR_BAD_DEVICE;
}
return 0;
}
/*
* uboot_disk_iterate():
* Itarator over enumerated disk devices.
*/
static int
uboot_disk_iterate (grub_disk_dev_iterate_hook_t hook, void *hook_data,
grub_disk_pull_t pull)
{
struct ubootdisk_data *d;
char buf[16];
int count;
switch (pull)
{
case GRUB_DISK_PULL_NONE:
/* "hd" - built-in mass-storage */
for (d = hd_devices, count = 0; d; d = d->next, count++)
{
grub_snprintf (buf, sizeof (buf) - 1, "hd%d", count);
grub_dprintf ("ubootdisk", "iterating %s\n", buf);
if (hook (buf, hook_data))
return 1;
}
break;
case GRUB_DISK_PULL_REMOVABLE:
/* "floppy" - removable mass storage */
for (d = fd_devices, count = 0; d; d = d->next, count++)
{
grub_snprintf (buf, sizeof (buf) - 1, "fd%d", count);
grub_dprintf ("ubootdisk", "iterating %s\n", buf);
if (hook (buf, hook_data))
return 1;
}
/* "cdrom" - removeable read-only storage */
for (d = cd_devices, count = 0; d; d = d->next, count++)
{
grub_snprintf (buf, sizeof (buf) - 1, "cd%d", count);
grub_dprintf ("ubootdisk", "iterating %s\n", buf);
if (hook (buf, hook_data))
return 1;
}
break;
default:
return 0;
}
return 0;
}
/* Helper function for uboot_disk_open. */
static struct ubootdisk_data *
get_device (struct ubootdisk_data *devices, int num)
{
struct ubootdisk_data *d;
for (d = devices; d && num; d = d->next, num--)
;
if (num == 0)
return d;
return NULL;
}
/*
* uboot_disk_open():
* Opens a disk device already enumerated.
*/
static grub_err_t
uboot_disk_open (const char *name, struct grub_disk *disk)
{
struct ubootdisk_data *d;
struct device_info *devinfo;
int num;
int retval;
grub_dprintf ("ubootdisk", "Opening '%s'\n", name);
num = grub_strtoul (name + 2, 0, 10);
if (grub_errno != GRUB_ERR_NONE)
{
grub_dprintf ("ubootdisk", "Opening '%s' failed, invalid number\n",
name);
goto fail;
}
if (name[1] != 'd')
{
grub_dprintf ("ubootdisk", "Opening '%s' failed, invalid name\n", name);
goto fail;
}
switch (name[0])
{
case 'f':
d = get_device (fd_devices, num);
break;
case 'c':
d = get_device (cd_devices, num);
break;
case 'h':
d = get_device (hd_devices, num);
break;
default:
goto fail;
}
if (!d)
goto fail;
/*
* Subsystems may call open on the same device recursively - but U-Boot
* does not deal with this. So simply keep track of number of calls and
* return success if already open.
*/
if (d->opencount > 0)
{
grub_dprintf ("ubootdisk", "(%s) already open\n", disk->name);
d->opencount++;
retval = 0;
}
else
{
retval = uboot_dev_open (d->handle);
if (retval != 0)
goto fail;
d->opencount = 1;
}
grub_dprintf ("ubootdisk", "cookie: 0x%08x\n", (grub_addr_t) d->cookie);
disk->id = (grub_addr_t) d->cookie;
/* Device has previously been enumerated, so this should never fail */
if ((devinfo = uboot_dev_get (d->handle)) == NULL)
goto fail;
d->block_size = devinfo->di_stor.block_size;
if (d->block_size == 0)
{
grub_printf ("%s: no block size!\n", __FUNCTION__);
return GRUB_ERR_IO;
}
for (disk->log_sector_size = 0;
(1U << disk->log_sector_size) < d->block_size;
disk->log_sector_size++);
grub_dprintf ("ubootdisk", "(%s) blocksize=%d, log_sector_size=%d\n",
disk->name, d->block_size, disk->log_sector_size);
disk->total_sectors = GRUB_DISK_SIZE_UNKNOWN;
disk->data = d;
return GRUB_ERR_NONE;
fail:
return grub_error (GRUB_ERR_UNKNOWN_DEVICE, "no such device");
}
static void
uboot_disk_close (struct grub_disk *disk)
{
struct ubootdisk_data *d;
int retval;
d = disk->data;
/*
* In mirror of open function, keep track of number of calls to close and
* send on to U-Boot only when opencount would decrease to 0.
*/
if (d->opencount > 1)
{
grub_dprintf ("ubootdisk", "Closed (%s)\n", disk->name);
d->opencount--;
}
else if (d->opencount == 1)
{
retval = uboot_dev_close (d->handle);
d->opencount--;
grub_dprintf ("ubootdisk", "closed %s (%d)\n", disk->name, retval);
}
else
{
grub_dprintf ("ubootdisk", "device %s not open!\n", disk->name);
}
}
/*
* uboot_disk_read():
* Called from within disk subsystem to read a sequence of blocks into the
* disk cache. Maps directly on top of U-Boot API, only wrap in some error
* handling.
*/
static grub_err_t
uboot_disk_read (struct grub_disk *disk,
grub_disk_addr_t offset, grub_size_t numblocks, char *buf)
{
struct ubootdisk_data *d;
lbasize_t real_size;
int retval;
d = disk->data;
retval = uboot_dev_read (d->handle, buf, numblocks, offset, &real_size);
grub_dprintf ("ubootdisk",
"retval=%d, numblocks=%d, real_size=%llu, sector=%llu\n",
retval, numblocks, (grub_uint64_t) real_size,
(grub_uint64_t) offset);
if (retval != 0)
return grub_error (GRUB_ERR_IO, "U-Boot disk read error");
return GRUB_ERR_NONE;
}
static grub_err_t
uboot_disk_write (struct grub_disk *disk __attribute__ ((unused)),
grub_disk_addr_t sector __attribute__ ((unused)),
grub_size_t size __attribute__ ((unused)),
const char *buf __attribute__ ((unused)))
{
grub_dprintf ("ubootdisk", "attempt to write\n");
return GRUB_ERR_NOT_IMPLEMENTED_YET;
}
static struct grub_disk_dev grub_ubootdisk_dev = {
.name = "ubootdisk",
.id = GRUB_DISK_DEVICE_UBOOTDISK_ID,
.iterate = uboot_disk_iterate,
.open = uboot_disk_open,
.close = uboot_disk_close,
.read = uboot_disk_read,
.write = uboot_disk_write,
.next = 0
};
void
grub_ubootdisk_init (void)
{
grub_disk_dev_register (&grub_ubootdisk_dev);
}
void
grub_ubootdisk_fini (void)
{
grub_disk_dev_unregister (&grub_ubootdisk_dev);
}