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/*
* QEMU System Emulator block driver
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*
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* Copyright ( c ) 2003 Fabrice Bellard
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*
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* Permission is hereby granted , free of charge , to any person obtaining a copy
* of this software and associated documentation files ( the "Software" ), to deal
* in the Software without restriction , including without limitation the rights
* to use , copy , modify , merge , publish , distribute , sublicense , and / or sell
* copies of the Software , and to permit persons to whom the Software is
* furnished to do so , subject to the following conditions :
*
* The above copyright notice and this permission notice shall be included in
* all copies or substantial portions of the Software .
*
* THE SOFTWARE IS PROVIDED "AS IS" , WITHOUT WARRANTY OF ANY KIND , EXPRESS OR
* IMPLIED , INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY ,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT . IN NO EVENT SHALL
* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM , DAMAGES OR OTHER
* LIABILITY , WHETHER IN AN ACTION OF CONTRACT , TORT OR OTHERWISE , ARISING FROM ,
* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
* THE SOFTWARE .
*/
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# include "config-host.h"
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# ifdef HOST_BSD
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/* include native header before sys-queue.h */
# include < sys / queue . h >
# endif
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# include "qemu-common.h"
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# include "monitor.h"
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# include "block_int.h"
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# include "module.h"
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# ifdef HOST_BSD
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# include < sys / types . h >
# include < sys / stat . h >
# include < sys / ioctl . h >
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# ifndef __DragonFly__
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# include < sys / disk . h >
# endif
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# endif
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# ifdef _WIN32
# include < windows . h >
# endif
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# define SECTOR_BITS 9
# define SECTOR_SIZE ( 1 << SECTOR_BITS )
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static BlockDriverAIOCB * bdrv_aio_readv_em ( BlockDriverState * bs ,
int64_t sector_num , QEMUIOVector * qiov , int nb_sectors ,
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BlockDriverCompletionFunc * cb , void * opaque );
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static BlockDriverAIOCB * bdrv_aio_writev_em ( BlockDriverState * bs ,
int64_t sector_num , QEMUIOVector * qiov , int nb_sectors ,
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BlockDriverCompletionFunc * cb , void * opaque );
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static int bdrv_read_em ( BlockDriverState * bs , int64_t sector_num ,
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uint8_t * buf , int nb_sectors );
static int bdrv_write_em ( BlockDriverState * bs , int64_t sector_num ,
const uint8_t * buf , int nb_sectors );
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BlockDriverState * bdrv_first ;
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static BlockDriver * first_drv ;
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int path_is_absolute ( const char * path )
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{
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const char * p ;
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# ifdef _WIN32
/* specific case for names like: "\\.\d:" */
if ( * path == '/' || * path == '\\' )
return 1 ;
# endif
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p = strchr ( path , ':' );
if ( p )
p ++ ;
else
p = path ;
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# ifdef _WIN32
return ( * p == '/' || * p == '\\' );
# else
return ( * p == '/' );
# endif
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}
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/* if filename is absolute , just copy it to dest . Otherwise , build a
path to it by considering it is relative to base_path . URL are
supported . */
void path_combine ( char * dest , int dest_size ,
const char * base_path ,
const char * filename )
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{
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const char * p , * p1 ;
int len ;
if ( dest_size <= 0 )
return ;
if ( path_is_absolute ( filename )) {
pstrcpy ( dest , dest_size , filename );
} else {
p = strchr ( base_path , ':' );
if ( p )
p ++ ;
else
p = base_path ;
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p1 = strrchr ( base_path , '/' );
# ifdef _WIN32
{
const char * p2 ;
p2 = strrchr ( base_path , '\\' );
if ( ! p1 || p2 > p1 )
p1 = p2 ;
}
# endif
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if ( p1 )
p1 ++ ;
else
p1 = base_path ;
if ( p1 > p )
p = p1 ;
len = p - base_path ;
if ( len > dest_size - 1 )
len = dest_size - 1 ;
memcpy ( dest , base_path , len );
dest [ len ] = '\0' ;
pstrcat ( dest , dest_size , filename );
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}
}
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void bdrv_register ( BlockDriver * bdrv )
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{
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if ( ! bdrv -> bdrv_aio_readv ) {
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/* add AIO emulation layer */
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bdrv -> bdrv_aio_readv = bdrv_aio_readv_em ;
bdrv -> bdrv_aio_writev = bdrv_aio_writev_em ;
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} else if ( ! bdrv -> bdrv_read ) {
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/* add synchronous IO emulation layer */
bdrv -> bdrv_read = bdrv_read_em ;
bdrv -> bdrv_write = bdrv_write_em ;
}
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bdrv -> next = first_drv ;
first_drv = bdrv ;
}
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/* create a new block device (by default it is empty) */
BlockDriverState * bdrv_new ( const char * device_name )
{
BlockDriverState ** pbs , * bs ;
bs = qemu_mallocz ( sizeof ( BlockDriverState ));
pstrcpy ( bs -> device_name , sizeof ( bs -> device_name ), device_name );
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if ( device_name [ 0 ] != '\0' ) {
/* insert at the end */
pbs = & bdrv_first ;
while ( * pbs != NULL )
pbs = & ( * pbs ) -> next ;
* pbs = bs ;
}
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return bs ;
}
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BlockDriver * bdrv_find_format ( const char * format_name )
{
BlockDriver * drv1 ;
for ( drv1 = first_drv ; drv1 != NULL ; drv1 = drv1 -> next ) {
if ( ! strcmp ( drv1 -> format_name , format_name ))
return drv1 ;
}
return NULL ;
}
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int bdrv_create ( BlockDriver * drv , const char * filename ,
QEMUOptionParameter * options )
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{
if ( ! drv -> bdrv_create )
return - ENOTSUP ;
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return drv -> bdrv_create ( filename , options );
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}
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# ifdef _WIN32
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void get_tmp_filename ( char * filename , int size )
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{
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char temp_dir [ MAX_PATH ];
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GetTempPath ( MAX_PATH , temp_dir );
GetTempFileName ( temp_dir , "qem" , 0 , filename );
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}
# else
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void get_tmp_filename ( char * filename , int size )
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{
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int fd ;
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const char * tmpdir ;
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/* XXX: race condition possible */
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tmpdir = getenv ( "TMPDIR" );
if ( ! tmpdir )
tmpdir = "/tmp" ;
snprintf ( filename , size , "%s/vl.XXXXXX" , tmpdir );
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fd = mkstemp ( filename );
close ( fd );
}
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# endif
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# ifdef _WIN32
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static int is_windows_drive_prefix ( const char * filename )
{
return ((( filename [ 0 ] >= 'a' && filename [ 0 ] <= 'z' ) ||
( filename [ 0 ] >= 'A' && filename [ 0 ] <= 'Z' )) &&
filename [ 1 ] == ':' );
}
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int is_windows_drive ( const char * filename )
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{
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if ( is_windows_drive_prefix ( filename ) &&
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filename [ 2 ] == '\0' )
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return 1 ;
if ( strstart ( filename , " \\\\ . \\ " , NULL ) ||
strstart ( filename , "//./" , NULL ))
return 1 ;
return 0 ;
}
# endif
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static BlockDriver * find_protocol ( const char * filename )
{
BlockDriver * drv1 ;
char protocol [ 128 ];
int len ;
const char * p ;
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# ifdef _WIN32
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if ( is_windows_drive ( filename ) ||
is_windows_drive_prefix ( filename ))
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return bdrv_find_format ( "raw" );
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# endif
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p = strchr ( filename , ':' );
if ( ! p )
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return bdrv_find_format ( "raw" );
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len = p - filename ;
if ( len > sizeof ( protocol ) - 1 )
len = sizeof ( protocol ) - 1 ;
memcpy ( protocol , filename , len );
protocol [ len ] = '\0' ;
for ( drv1 = first_drv ; drv1 != NULL ; drv1 = drv1 -> next ) {
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if ( drv1 -> protocol_name &&
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! strcmp ( drv1 -> protocol_name , protocol ))
return drv1 ;
}
return NULL ;
}
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/*
* Detect host devices . By convention , / dev / cdrom [ N ] is always
* recognized as a host CDROM .
*/
static BlockDriver * find_hdev_driver ( const char * filename )
{
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int score_max = 0 , score ;
BlockDriver * drv = NULL , * d ;
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for ( d = first_drv ; d ; d = d -> next ) {
if ( d -> bdrv_probe_device ) {
score = d -> bdrv_probe_device ( filename );
if ( score > score_max ) {
score_max = score ;
drv = d ;
}
}
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}
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return drv ;
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}
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static BlockDriver * find_image_format ( const char * filename )
{
int ret , score , score_max ;
BlockDriver * drv1 , * drv ;
uint8_t buf [ 2048 ];
BlockDriverState * bs ;
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drv = find_protocol ( filename );
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/* no need to test disk image formats for vvfat */
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if ( drv && strcmp ( drv -> format_name , "vvfat" ) == 0 )
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return drv ;
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ret = bdrv_file_open ( & bs , filename , BDRV_O_RDONLY );
if ( ret < 0 )
return NULL ;
ret = bdrv_pread ( bs , 0 , buf , sizeof ( buf ));
bdrv_delete ( bs );
if ( ret < 0 ) {
return NULL ;
}
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score_max = 0 ;
for ( drv1 = first_drv ; drv1 != NULL ; drv1 = drv1 -> next ) {
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if ( drv1 -> bdrv_probe ) {
score = drv1 -> bdrv_probe ( buf , ret , filename );
if ( score > score_max ) {
score_max = score ;
drv = drv1 ;
}
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}
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}
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return drv ;
}
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int bdrv_file_open ( BlockDriverState ** pbs , const char * filename , int flags )
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{
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BlockDriverState * bs ;
int ret ;
bs = bdrv_new ( "" );
ret = bdrv_open2 ( bs , filename , flags | BDRV_O_FILE , NULL );
if ( ret < 0 ) {
bdrv_delete ( bs );
return ret ;
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}
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bs -> growable = 1 ;
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* pbs = bs ;
return 0 ;
}
int bdrv_open ( BlockDriverState * bs , const char * filename , int flags )
{
return bdrv_open2 ( bs , filename , flags , NULL );
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}
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int bdrv_open2 ( BlockDriverState * bs , const char * filename , int flags ,
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BlockDriver * drv )
{
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int ret , open_flags ;
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char tmp_filename [ PATH_MAX ];
char backing_filename [ PATH_MAX ];
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bs -> read_only = 0 ;
bs -> is_temporary = 0 ;
bs -> encrypted = 0 ;
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bs -> valid_key = 0 ;
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/* buffer_alignment defaulted to 512, drivers can change this value */
bs -> buffer_alignment = 512 ;
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if ( flags & BDRV_O_SNAPSHOT ) {
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BlockDriverState * bs1 ;
int64_t total_size ;
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int is_protocol = 0 ;
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BlockDriver * bdrv_qcow2 ;
QEMUOptionParameter * options ;
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/* if snapshot , we create a temporary backing file and open it
instead of opening ' filename ' directly */
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/* if there is a backing file, use it */
bs1 = bdrv_new ( "" );
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ret = bdrv_open2 ( bs1 , filename , 0 , drv );
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if ( ret < 0 ) {
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bdrv_delete ( bs1 );
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return ret ;
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}
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total_size = bdrv_getlength ( bs1 ) >> SECTOR_BITS ;
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if ( bs1 -> drv && bs1 -> drv -> protocol_name )
is_protocol = 1 ;
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bdrv_delete ( bs1 );
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get_tmp_filename ( tmp_filename , sizeof ( tmp_filename ));
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/* Real path is meaningless for protocols */
if ( is_protocol )
snprintf ( backing_filename , sizeof ( backing_filename ),
"%s" , filename );
else
realpath ( filename , backing_filename );
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bdrv_qcow2 = bdrv_find_format ( "qcow2" );
options = parse_option_parameters ( "" , bdrv_qcow2 -> create_options , NULL );
set_option_parameter_int ( options , BLOCK_OPT_SIZE , total_size * 512 );
set_option_parameter ( options , BLOCK_OPT_BACKING_FILE , backing_filename );
if ( drv ) {
set_option_parameter ( options , BLOCK_OPT_BACKING_FMT ,
drv -> format_name );
}
ret = bdrv_create ( bdrv_qcow2 , tmp_filename , options );
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if ( ret < 0 ) {
return ret ;
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}
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filename = tmp_filename ;
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drv = bdrv_qcow2 ;
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bs -> is_temporary = 1 ;
}
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pstrcpy ( bs -> filename , sizeof ( bs -> filename ), filename );
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if ( flags & BDRV_O_FILE ) {
drv = find_protocol ( filename );
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} else if ( ! drv ) {
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drv = find_hdev_driver ( filename );
if ( ! drv ) {
drv = find_image_format ( filename );
}
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}
if ( ! drv ) {
ret = - ENOENT ;
goto unlink_and_fail ;
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}
bs -> drv = drv ;
bs -> opaque = qemu_mallocz ( drv -> instance_size );
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/* Note : for compatibility , we open disk image files as RDWR , and
RDONLY as fallback */
if ( ! ( flags & BDRV_O_FILE ))
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open_flags = BDRV_O_RDWR | ( flags & BDRV_O_CACHE_MASK );
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else
open_flags = flags & ~ ( BDRV_O_FILE | BDRV_O_SNAPSHOT );
ret = drv -> bdrv_open ( bs , filename , open_flags );
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if (( ret == - EACCES || ret == - EPERM ) && ! ( flags & BDRV_O_FILE )) {
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ret = drv -> bdrv_open ( bs , filename , open_flags & ~ BDRV_O_RDWR );
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bs -> read_only = 1 ;
}
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if ( ret < 0 ) {
qemu_free ( bs -> opaque );
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bs -> opaque = NULL ;
bs -> drv = NULL ;
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unlink_and_fail :
if ( bs -> is_temporary )
unlink ( filename );
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return ret ;
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}
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if ( drv -> bdrv_getlength ) {
bs -> total_sectors = bdrv_getlength ( bs ) >> SECTOR_BITS ;
}
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# ifndef _WIN32
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if ( bs -> is_temporary ) {
unlink ( filename );
}
# endif
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if ( bs -> backing_file [ 0 ] != '\0' ) {
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/* if there is a backing file, use it */
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BlockDriver * back_drv = NULL ;
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bs -> backing_hd = bdrv_new ( "" );
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path_combine ( backing_filename , sizeof ( backing_filename ),
filename , bs -> backing_file );
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if ( bs -> backing_format [ 0 ] != '\0' )
back_drv = bdrv_find_format ( bs -> backing_format );
ret = bdrv_open2 ( bs -> backing_hd , backing_filename , open_flags ,
back_drv );
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if ( ret < 0 ) {
bdrv_close ( bs );
return ret ;
}
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}
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if ( ! bdrv_key_required ( bs )) {
/* call the change callback */
bs -> media_changed = 1 ;
if ( bs -> change_cb )
bs -> change_cb ( bs -> change_opaque );
}
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return 0 ;
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}
void bdrv_close ( BlockDriverState * bs )
{
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if ( bs -> drv ) {
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if ( bs -> backing_hd )
bdrv_delete ( bs -> backing_hd );
bs -> drv -> bdrv_close ( bs );
qemu_free ( bs -> opaque );
# ifdef _WIN32
if ( bs -> is_temporary ) {
unlink ( bs -> filename );
}
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# endif
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bs -> opaque = NULL ;
bs -> drv = NULL ;
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/* call the change callback */
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bs -> media_changed = 1 ;
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if ( bs -> change_cb )
bs -> change_cb ( bs -> change_opaque );
}
}
void bdrv_delete ( BlockDriverState * bs )
{
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BlockDriverState ** pbs ;
pbs = & bdrv_first ;
while ( * pbs != bs && * pbs != NULL )
pbs = & ( * pbs ) -> next ;
if ( * pbs == bs )
* pbs = bs -> next ;
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bdrv_close ( bs );
qemu_free ( bs );
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}
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/*
* Run consistency checks on an image
*
* Returns the number of errors or - errno when an internal error occurs
*/
int bdrv_check ( BlockDriverState * bs )
{
if ( bs -> drv -> bdrv_check == NULL ) {
return - ENOTSUP ;
}
return bs -> drv -> bdrv_check ( bs );
}
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/* commit COW file into the raw image */
int bdrv_commit ( BlockDriverState * bs )
{
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BlockDriver * drv = bs -> drv ;
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int64_t i , total_sectors ;
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int n , j ;
unsigned char sector [ 512 ];
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if ( ! drv )
return - ENOMEDIUM ;
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if ( bs -> read_only ) {
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return - EACCES ;
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}
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if ( ! bs -> backing_hd ) {
return - ENOTSUP ;
}
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total_sectors = bdrv_getlength ( bs ) >> SECTOR_BITS ;
for ( i = 0 ; i < total_sectors ;) {
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if ( drv -> bdrv_is_allocated ( bs , i , 65536 , & n )) {
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for ( j = 0 ; j < n ; j ++ ) {
if ( bdrv_read ( bs , i , sector , 1 ) != 0 ) {
return - EIO ;
}
if ( bdrv_write ( bs -> backing_hd , i , sector , 1 ) != 0 ) {
return - EIO ;
}
i ++ ;
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}
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} else {
i += n ;
}
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}
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if ( drv -> bdrv_make_empty )
return drv -> bdrv_make_empty ( bs );
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return 0 ;
}
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static int bdrv_check_byte_request ( BlockDriverState * bs , int64_t offset ,
size_t size )
{
int64_t len ;
if ( ! bdrv_is_inserted ( bs ))
return - ENOMEDIUM ;
if ( bs -> growable )
return 0 ;
len = bdrv_getlength ( bs );
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if ( offset < 0 )
return - EIO ;
if (( offset > len ) || ( len - offset < size ))
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return - EIO ;
return 0 ;
}
static int bdrv_check_request ( BlockDriverState * bs , int64_t sector_num ,
int nb_sectors )
{
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return bdrv_check_byte_request ( bs , sector_num * 512 , nb_sectors * 512 );
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}
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/* return < 0 if error. See bdrv_write() for the return codes */
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int bdrv_read ( BlockDriverState * bs , int64_t sector_num ,
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uint8_t * buf , int nb_sectors )
{
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BlockDriver * drv = bs -> drv ;
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if ( ! drv )
return - ENOMEDIUM ;
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if ( bdrv_check_request ( bs , sector_num , nb_sectors ))
return - EIO ;
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return drv -> bdrv_read ( bs , sector_num , buf , nb_sectors );
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}
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/* Return < 0 if error . Important errors are :
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- EIO generic I / O error ( may happen for all errors )
- ENOMEDIUM No media inserted .
- EINVAL Invalid sector number or nb_sectors
- EACCES Trying to write a read - only device
*/
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int bdrv_write ( BlockDriverState * bs , int64_t sector_num ,
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const uint8_t * buf , int nb_sectors )
{
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BlockDriver * drv = bs -> drv ;
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if ( ! bs -> drv )
return - ENOMEDIUM ;
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if ( bs -> read_only )
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return - EACCES ;
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if ( bdrv_check_request ( bs , sector_num , nb_sectors ))
return - EIO ;
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return drv -> bdrv_write ( bs , sector_num , buf , nb_sectors );
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}
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int bdrv_pread ( BlockDriverState * bs , int64_t offset ,
void * buf , int count1 )
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{
uint8_t tmp_buf [ SECTOR_SIZE ];
int len , nb_sectors , count ;
int64_t sector_num ;
count = count1 ;
/* first read to align to sector start */
len = ( SECTOR_SIZE - offset ) & ( SECTOR_SIZE - 1 );
if ( len > count )
len = count ;
sector_num = offset >> SECTOR_BITS ;
if ( len > 0 ) {
if ( bdrv_read ( bs , sector_num , tmp_buf , 1 ) < 0 )
return - EIO ;
memcpy ( buf , tmp_buf + ( offset & ( SECTOR_SIZE - 1 )), len );
count -= len ;
if ( count == 0 )
return count1 ;
sector_num ++ ;
buf += len ;
}
/* read the sectors "in place" */
nb_sectors = count >> SECTOR_BITS ;
if ( nb_sectors > 0 ) {
if ( bdrv_read ( bs , sector_num , buf , nb_sectors ) < 0 )
return - EIO ;
sector_num += nb_sectors ;
len = nb_sectors << SECTOR_BITS ;
buf += len ;
count -= len ;
}
/* add data from the last sector */
if ( count > 0 ) {
if ( bdrv_read ( bs , sector_num , tmp_buf , 1 ) < 0 )
return - EIO ;
memcpy ( buf , tmp_buf , count );
}
return count1 ;
}
663
664
int bdrv_pwrite ( BlockDriverState * bs , int64_t offset ,
const void * buf , int count1 )
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{
uint8_t tmp_buf [ SECTOR_SIZE ];
int len , nb_sectors , count ;
int64_t sector_num ;
count = count1 ;
/* first write to align to sector start */
len = ( SECTOR_SIZE - offset ) & ( SECTOR_SIZE - 1 );
if ( len > count )
len = count ;
sector_num = offset >> SECTOR_BITS ;
if ( len > 0 ) {
if ( bdrv_read ( bs , sector_num , tmp_buf , 1 ) < 0 )
return - EIO ;
memcpy ( tmp_buf + ( offset & ( SECTOR_SIZE - 1 )), buf , len );
if ( bdrv_write ( bs , sector_num , tmp_buf , 1 ) < 0 )
return - EIO ;
count -= len ;
if ( count == 0 )
return count1 ;
sector_num ++ ;
buf += len ;
}
/* write the sectors "in place" */
nb_sectors = count >> SECTOR_BITS ;
if ( nb_sectors > 0 ) {
if ( bdrv_write ( bs , sector_num , buf , nb_sectors ) < 0 )
return - EIO ;
sector_num += nb_sectors ;
len = nb_sectors << SECTOR_BITS ;
buf += len ;
count -= len ;
}
/* add data from the last sector */
if ( count > 0 ) {
if ( bdrv_read ( bs , sector_num , tmp_buf , 1 ) < 0 )
return - EIO ;
memcpy ( tmp_buf , buf , count );
if ( bdrv_write ( bs , sector_num , tmp_buf , 1 ) < 0 )
return - EIO ;
}
return count1 ;
}
/**
* Truncate file to ' offset ' bytes ( needed only for file protocols )
*/
int bdrv_truncate ( BlockDriverState * bs , int64_t offset )
{
BlockDriver * drv = bs -> drv ;
if ( ! drv )
718
return - ENOMEDIUM ;
719
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if ( ! drv -> bdrv_truncate )
return - ENOTSUP ;
return drv -> bdrv_truncate ( bs , offset );
}
/**
* Length of a file in bytes . Return < 0 if error or unknown .
*/
int64_t bdrv_getlength ( BlockDriverState * bs )
{
BlockDriver * drv = bs -> drv ;
if ( ! drv )
731
return - ENOMEDIUM ;
732
733
734
735
736
if ( ! drv -> bdrv_getlength ) {
/* legacy mode */
return bs -> total_sectors * SECTOR_SIZE ;
}
return drv -> bdrv_getlength ( bs );
737
738
}
739
/* return 0 as number of sectors if no device present or error */
ths
authored
17 years ago
740
void bdrv_get_geometry ( BlockDriverState * bs , uint64_t * nb_sectors_ptr )
741
{
742
743
744
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746
747
748
int64_t length ;
length = bdrv_getlength ( bs );
if ( length < 0 )
length = 0 ;
else
length = length >> SECTOR_BITS ;
* nb_sectors_ptr = length ;
749
}
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struct partition {
uint8_t boot_ind ; /* 0x80 - active */
uint8_t head ; /* starting head */
uint8_t sector ; /* starting sector */
uint8_t cyl ; /* starting cylinder */
uint8_t sys_ind ; /* What partition type */
uint8_t end_head ; /* end head */
uint8_t end_sector ; /* end sector */
uint8_t end_cyl ; /* end cylinder */
uint32_t start_sect ; /* starting sector counting from 0 */
uint32_t nr_sects ; /* nr of sectors in partition */
} __attribute__ (( packed ));
/* try to guess the disk logical geometry from the MSDOS partition table. Return 0 if OK, -1 if could not guess */
static int guess_disk_lchs ( BlockDriverState * bs ,
int * pcylinders , int * pheads , int * psectors )
{
uint8_t buf [ 512 ];
int ret , i , heads , sectors , cylinders ;
struct partition * p ;
uint32_t nr_sects ;
772
uint64_t nb_sectors ;
773
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811
bdrv_get_geometry ( bs , & nb_sectors );
ret = bdrv_read ( bs , 0 , buf , 1 );
if ( ret < 0 )
return - 1 ;
/* test msdos magic */
if ( buf [ 510 ] != 0x55 || buf [ 511 ] != 0xaa )
return - 1 ;
for ( i = 0 ; i < 4 ; i ++ ) {
p = (( struct partition * )( buf + 0x1be )) + i ;
nr_sects = le32_to_cpu ( p -> nr_sects );
if ( nr_sects && p -> end_head ) {
/* We make the assumption that the partition terminates on
a cylinder boundary */
heads = p -> end_head + 1 ;
sectors = p -> end_sector & 63 ;
if ( sectors == 0 )
continue ;
cylinders = nb_sectors / ( heads * sectors );
if ( cylinders < 1 || cylinders > 16383 )
continue ;
* pheads = heads ;
* psectors = sectors ;
* pcylinders = cylinders ;
# if 0
printf ( "guessed geometry: LCHS=%d %d %d \n " ,
cylinders , heads , sectors );
# endif
return 0 ;
}
}
return - 1 ;
}
void bdrv_guess_geometry ( BlockDriverState * bs , int * pcyls , int * pheads , int * psecs )
{
int translation , lba_detected = 0 ;
int cylinders , heads , secs ;
812
uint64_t nb_sectors ;
813
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/* if a geometry hint is available, use it */
bdrv_get_geometry ( bs , & nb_sectors );
bdrv_get_geometry_hint ( bs , & cylinders , & heads , & secs );
translation = bdrv_get_translation_hint ( bs );
if ( cylinders != 0 ) {
* pcyls = cylinders ;
* pheads = heads ;
* psecs = secs ;
} else {
if ( guess_disk_lchs ( bs , & cylinders , & heads , & secs ) == 0 ) {
if ( heads > 16 ) {
/* if heads > 16 , it means that a BIOS LBA
translation was active , so the default
hardware geometry is OK */
lba_detected = 1 ;
goto default_geometry ;
} else {
* pcyls = cylinders ;
* pheads = heads ;
* psecs = secs ;
/* disable any translation to be in sync with
the logical geometry */
if ( translation == BIOS_ATA_TRANSLATION_AUTO ) {
bdrv_set_translation_hint ( bs ,
BIOS_ATA_TRANSLATION_NONE );
}
}
} else {
default_geometry :
/* if no geometry, use a standard physical disk geometry */
cylinders = nb_sectors / ( 16 * 63 );
if ( cylinders > 16383 )
cylinders = 16383 ;
else if ( cylinders < 2 )
cylinders = 2 ;
* pcyls = cylinders ;
* pheads = 16 ;
* psecs = 63 ;
if (( lba_detected == 1 ) && ( translation == BIOS_ATA_TRANSLATION_AUTO )) {
if (( * pcyls * * pheads ) <= 131072 ) {
bdrv_set_translation_hint ( bs ,
BIOS_ATA_TRANSLATION_LARGE );
} else {
bdrv_set_translation_hint ( bs ,
BIOS_ATA_TRANSLATION_LBA );
}
}
}
bdrv_set_geometry_hint ( bs , * pcyls , * pheads , * psecs );
}
}
ths
authored
18 years ago
867
void bdrv_set_geometry_hint ( BlockDriverState * bs ,
868
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int cyls , int heads , int secs )
{
bs -> cyls = cyls ;
bs -> heads = heads ;
bs -> secs = secs ;
}
void bdrv_set_type_hint ( BlockDriverState * bs , int type )
{
bs -> type = type ;
bs -> removable = (( type == BDRV_TYPE_CDROM ||
type == BDRV_TYPE_FLOPPY ));
}
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void bdrv_set_translation_hint ( BlockDriverState * bs , int translation )
{
bs -> translation = translation ;
}
ths
authored
18 years ago
887
void bdrv_get_geometry_hint ( BlockDriverState * bs ,
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int * pcyls , int * pheads , int * psecs )
{
* pcyls = bs -> cyls ;
* pheads = bs -> heads ;
* psecs = bs -> secs ;
}
int bdrv_get_type_hint ( BlockDriverState * bs )
{
return bs -> type ;
}
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904
int bdrv_get_translation_hint ( BlockDriverState * bs )
{
return bs -> translation ;
}
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914
int bdrv_is_removable ( BlockDriverState * bs )
{
return bs -> removable ;
}
int bdrv_is_read_only ( BlockDriverState * bs )
{
return bs -> read_only ;
}
ths
authored
17 years ago
915
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int bdrv_is_sg ( BlockDriverState * bs )
{
return bs -> sg ;
}
920
/* XXX: no longer used */
ths
authored
18 years ago
921
void bdrv_set_change_cb ( BlockDriverState * bs ,
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void ( * change_cb )( void * opaque ), void * opaque )
{
bs -> change_cb = change_cb ;
bs -> change_opaque = opaque ;
}
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int bdrv_is_encrypted ( BlockDriverState * bs )
{
if ( bs -> backing_hd && bs -> backing_hd -> encrypted )
return 1 ;
return bs -> encrypted ;
}
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int bdrv_key_required ( BlockDriverState * bs )
{
BlockDriverState * backing_hd = bs -> backing_hd ;
if ( backing_hd && backing_hd -> encrypted && ! backing_hd -> valid_key )
return 1 ;
return ( bs -> encrypted && ! bs -> valid_key );
}
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int bdrv_set_key ( BlockDriverState * bs , const char * key )
{
int ret ;
if ( bs -> backing_hd && bs -> backing_hd -> encrypted ) {
ret = bdrv_set_key ( bs -> backing_hd , key );
if ( ret < 0 )
return ret ;
if ( ! bs -> encrypted )
return 0 ;
}
if ( ! bs -> encrypted || ! bs -> drv || ! bs -> drv -> bdrv_set_key )
return - 1 ;
956
ret = bs -> drv -> bdrv_set_key ( bs , key );
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if ( ret < 0 ) {
bs -> valid_key = 0 ;
} else if ( ! bs -> valid_key ) {
bs -> valid_key = 1 ;
/* call the change callback now, we skipped it on open */
bs -> media_changed = 1 ;
if ( bs -> change_cb )
bs -> change_cb ( bs -> change_opaque );
}
966
return ret ;
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}
void bdrv_get_format ( BlockDriverState * bs , char * buf , int buf_size )
{
971
if ( ! bs -> drv ) {
972
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977
buf [ 0 ] = '\0' ;
} else {
pstrcpy ( buf , buf_size , bs -> drv -> format_name );
}
}
ths
authored
18 years ago
978
void bdrv_iterate_format ( void ( * it )( void * opaque , const char * name ),
979
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void * opaque )
{
BlockDriver * drv ;
for ( drv = first_drv ; drv != NULL ; drv = drv -> next ) {
it ( opaque , drv -> format_name );
}
}
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998
BlockDriverState * bdrv_find ( const char * name )
{
BlockDriverState * bs ;
for ( bs = bdrv_first ; bs != NULL ; bs = bs -> next ) {
if ( ! strcmp ( name , bs -> device_name ))
return bs ;
}
return NULL ;
}
999
void bdrv_iterate ( void ( * it )( void * opaque , BlockDriverState * bs ), void * opaque )
1000
1001
1002
1003
{
BlockDriverState * bs ;
for ( bs = bdrv_first ; bs != NULL ; bs = bs -> next ) {
1004
it ( opaque , bs );
1005
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1007
}
}
1008
1009
1010
1011
1012
const char * bdrv_get_device_name ( BlockDriverState * bs )
{
return bs -> device_name ;
}
1013
1014
void bdrv_flush ( BlockDriverState * bs )
{
1015
1016
if ( ! bs -> drv )
return ;
1017
1018
1019
1020
1021
1022
if ( bs -> drv -> bdrv_flush )
bs -> drv -> bdrv_flush ( bs );
if ( bs -> backing_hd )
bdrv_flush ( bs -> backing_hd );
}
1023
1024
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1028
1029
1030
1031
1032
void bdrv_flush_all ( void )
{
BlockDriverState * bs ;
for ( bs = bdrv_first ; bs != NULL ; bs = bs -> next )
if ( bs -> drv && ! bdrv_is_read_only ( bs ) &&
( ! bdrv_is_removable ( bs ) || bdrv_is_inserted ( bs )))
bdrv_flush ( bs );
}
ths
authored
17 years ago
1033
1034
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1059
/*
* Returns true iff the specified sector is present in the disk image . Drivers
* not implementing the functionality are assumed to not support backing files ,
* hence all their sectors are reported as allocated .
*
* ' pnum ' is set to the number of sectors ( including and immediately following
* the specified sector ) that are known to be in the same
* allocated / unallocated state .
*
* ' nb_sectors ' is the max value ' pnum ' should be set to .
*/
int bdrv_is_allocated ( BlockDriverState * bs , int64_t sector_num , int nb_sectors ,
int * pnum )
{
int64_t n ;
if ( ! bs -> drv -> bdrv_is_allocated ) {
if ( sector_num >= bs -> total_sectors ) {
* pnum = 0 ;
return 0 ;
}
n = bs -> total_sectors - sector_num ;
* pnum = ( n < nb_sectors ) ? ( n ) : ( nb_sectors );
return 1 ;
}
return bs -> drv -> bdrv_is_allocated ( bs , sector_num , nb_sectors , pnum );
}
1060
void bdrv_info ( Monitor * mon )
1061
1062
1063
1064
{
BlockDriverState * bs ;
for ( bs = bdrv_first ; bs != NULL ; bs = bs -> next ) {
1065
1066
monitor_printf ( mon , "%s:" , bs -> device_name );
monitor_printf ( mon , " type=" );
1067
1068
switch ( bs -> type ) {
case BDRV_TYPE_HD :
1069
monitor_printf ( mon , "hd" );
1070
1071
break ;
case BDRV_TYPE_CDROM :
1072
monitor_printf ( mon , "cdrom" );
1073
1074
break ;
case BDRV_TYPE_FLOPPY :
1075
monitor_printf ( mon , "floppy" );
1076
1077
break ;
}
1078
monitor_printf ( mon , " removable=%d" , bs -> removable );
1079
if ( bs -> removable ) {
1080
monitor_printf ( mon , " locked=%d" , bs -> locked );
1081
}
1082
if ( bs -> drv ) {
1083
1084
monitor_printf ( mon , " file=" );
monitor_print_filename ( mon , bs -> filename );
ths
authored
18 years ago
1085
if ( bs -> backing_file [ 0 ] != '\0' ) {
1086
1087
1088
1089
1090
1091
monitor_printf ( mon , " backing_file=" );
monitor_print_filename ( mon , bs -> backing_file );
}
monitor_printf ( mon , " ro=%d" , bs -> read_only );
monitor_printf ( mon , " drv=%s" , bs -> drv -> format_name );
monitor_printf ( mon , " encrypted=%d" , bdrv_is_encrypted ( bs ));
1092
} else {
1093
monitor_printf ( mon , " [not inserted]" );
1094
}
1095
monitor_printf ( mon , " \n " );
1096
1097
}
}
ths
authored
17 years ago
1098
1099
/* The "info blockstats" command. */
1100
void bdrv_info_stats ( Monitor * mon )
ths
authored
17 years ago
1101
1102
1103
1104
{
BlockDriverState * bs ;
for ( bs = bdrv_first ; bs != NULL ; bs = bs -> next ) {
1105
1106
1107
1108
1109
monitor_printf ( mon , "%s:"
" rd_bytes=%" PRIu64
" wr_bytes=%" PRIu64
" rd_operations=%" PRIu64
" wr_operations=%" PRIu64
1110
" \n " ,
1111
1112
1113
bs -> device_name ,
bs -> rd_bytes , bs -> wr_bytes ,
bs -> rd_ops , bs -> wr_ops );
ths
authored
17 years ago
1114
1115
}
}
1116
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1120
1121
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1124
1125
1126
const char * bdrv_get_encrypted_filename ( BlockDriverState * bs )
{
if ( bs -> backing_hd && bs -> backing_hd -> encrypted )
return bs -> backing_file ;
else if ( bs -> encrypted )
return bs -> filename ;
else
return NULL ;
}
ths
authored
18 years ago
1127
void bdrv_get_backing_filename ( BlockDriverState * bs ,
1128
1129
1130
1131
1132
1133
1134
1135
1136
char * filename , int filename_size )
{
if ( ! bs -> backing_hd ) {
pstrcpy ( filename , filename_size , "" );
} else {
pstrcpy ( filename , filename_size , bs -> backing_file );
}
}
ths
authored
18 years ago
1137
int bdrv_write_compressed ( BlockDriverState * bs , int64_t sector_num ,
1138
1139
1140
1141
const uint8_t * buf , int nb_sectors )
{
BlockDriver * drv = bs -> drv ;
if ( ! drv )
1142
return - ENOMEDIUM ;
1143
1144
if ( ! drv -> bdrv_write_compressed )
return - ENOTSUP ;
1145
1146
if ( bdrv_check_request ( bs , sector_num , nb_sectors ))
return - EIO ;
1147
1148
return drv -> bdrv_write_compressed ( bs , sector_num , buf , nb_sectors );
}
ths
authored
18 years ago
1149
1150
1151
1152
1153
int bdrv_get_info ( BlockDriverState * bs , BlockDriverInfo * bdi )
{
BlockDriver * drv = bs -> drv ;
if ( ! drv )
1154
return - ENOMEDIUM ;
1155
1156
1157
1158
1159
1160
if ( ! drv -> bdrv_get_info )
return - ENOTSUP ;
memset ( bdi , 0 , sizeof ( * bdi ));
return drv -> bdrv_get_info ( bs , bdi );
}
1161
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1164
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1168
1169
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1174
1175
1176
1177
1178
1179
1180
int bdrv_put_buffer ( BlockDriverState * bs , const uint8_t * buf , int64_t pos , int size )
{
BlockDriver * drv = bs -> drv ;
if ( ! drv )
return - ENOMEDIUM ;
if ( ! drv -> bdrv_put_buffer )
return - ENOTSUP ;
return drv -> bdrv_put_buffer ( bs , buf , pos , size );
}
int bdrv_get_buffer ( BlockDriverState * bs , uint8_t * buf , int64_t pos , int size )
{
BlockDriver * drv = bs -> drv ;
if ( ! drv )
return - ENOMEDIUM ;
if ( ! drv -> bdrv_get_buffer )
return - ENOTSUP ;
return drv -> bdrv_get_buffer ( bs , buf , pos , size );
}
1181
1182
1183
/**************************************************************/
/* handling of snapshots */
ths
authored
18 years ago
1184
int bdrv_snapshot_create ( BlockDriverState * bs ,
1185
1186
1187
1188
QEMUSnapshotInfo * sn_info )
{
BlockDriver * drv = bs -> drv ;
if ( ! drv )
1189
return - ENOMEDIUM ;
1190
1191
1192
1193
1194
if ( ! drv -> bdrv_snapshot_create )
return - ENOTSUP ;
return drv -> bdrv_snapshot_create ( bs , sn_info );
}
ths
authored
18 years ago
1195
int bdrv_snapshot_goto ( BlockDriverState * bs ,
1196
1197
1198
1199
const char * snapshot_id )
{
BlockDriver * drv = bs -> drv ;
if ( ! drv )
1200
return - ENOMEDIUM ;
1201
1202
1203
1204
1205
1206
1207
1208
1209
if ( ! drv -> bdrv_snapshot_goto )
return - ENOTSUP ;
return drv -> bdrv_snapshot_goto ( bs , snapshot_id );
}
int bdrv_snapshot_delete ( BlockDriverState * bs , const char * snapshot_id )
{
BlockDriver * drv = bs -> drv ;
if ( ! drv )
1210
return - ENOMEDIUM ;
1211
1212
1213
1214
1215
if ( ! drv -> bdrv_snapshot_delete )
return - ENOTSUP ;
return drv -> bdrv_snapshot_delete ( bs , snapshot_id );
}
ths
authored
18 years ago
1216
int bdrv_snapshot_list ( BlockDriverState * bs ,
1217
1218
1219
1220
QEMUSnapshotInfo ** psn_info )
{
BlockDriver * drv = bs -> drv ;
if ( ! drv )
1221
return - ENOMEDIUM ;
1222
1223
1224
1225
1226
1227
1228
1229
1230
1231
1232
1233
1234
1235
1236
1237
1238
1239
1240
if ( ! drv -> bdrv_snapshot_list )
return - ENOTSUP ;
return drv -> bdrv_snapshot_list ( bs , psn_info );
}
# define NB_SUFFIXES 4
char * get_human_readable_size ( char * buf , int buf_size , int64_t size )
{
static const char suffixes [ NB_SUFFIXES ] = "KMGT" ;
int64_t base ;
int i ;
if ( size <= 999 ) {
snprintf ( buf , buf_size , "%" PRId64 , size );
} else {
base = 1024 ;
for ( i = 0 ; i < NB_SUFFIXES ; i ++ ) {
if ( size < ( 10 * base )) {
ths
authored
18 years ago
1241
snprintf ( buf , buf_size , "%0.1f%c" ,
1242
1243
1244
1245
( double ) size / base ,
suffixes [ i ]);
break ;
} else if ( size < ( 1000 * base ) || i == ( NB_SUFFIXES - 1 )) {
ths
authored
18 years ago
1246
snprintf ( buf , buf_size , "%" PRId64 "%c" ,
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(( size + ( base >> 1 )) / base ),
suffixes [ i ]);
break ;
}
base = base * 1024 ;
}
}
return buf ;
}
char * bdrv_snapshot_dump ( char * buf , int buf_size , QEMUSnapshotInfo * sn )
{
char buf1 [ 128 ], date_buf [ 128 ], clock_buf [ 128 ];
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1262
# ifdef _WIN32
struct tm * ptm ;
# else
1263
struct tm tm ;
1264
# endif
1265
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1267
1268
time_t ti ;
int64_t secs ;
if ( ! sn ) {
ths
authored
18 years ago
1269
1270
snprintf ( buf , buf_size ,
"%-10s%-20s%7s%20s%15s" ,
1271
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1273
"ID" , "TAG" , "VM SIZE" , "DATE" , "VM CLOCK" );
} else {
ti = sn -> date_sec ;
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1278
# ifdef _WIN32
ptm = localtime ( & ti );
strftime ( date_buf , sizeof ( date_buf ),
"%Y-%m-%d %H:%M:%S" , ptm );
# else
1279
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localtime_r ( & ti , & tm );
strftime ( date_buf , sizeof ( date_buf ),
"%Y-%m-%d %H:%M:%S" , & tm );
1282
# endif
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secs = sn -> vm_clock_nsec / 1000000000 ;
snprintf ( clock_buf , sizeof ( clock_buf ),
"%02d:%02d:%02d.%03d" ,
( int )( secs / 3600 ),
( int )(( secs / 60 ) % 60 ),
ths
authored
18 years ago
1288
( int )( secs % 60 ),
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( int )(( sn -> vm_clock_nsec / 1000000 ) % 1000 ));
snprintf ( buf , buf_size ,
ths
authored
18 years ago
1291
"%-10s%-20s%7s%20s%15s" ,
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sn -> id_str , sn -> name ,
get_human_readable_size ( buf1 , sizeof ( buf1 ), sn -> vm_state_size ),
date_buf ,
clock_buf );
}
return buf ;
}
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/**************************************************************/
1302
/* async I/Os */
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BlockDriverAIOCB * bdrv_aio_readv ( BlockDriverState * bs , int64_t sector_num ,
1305
QEMUIOVector * qiov , int nb_sectors ,
1306
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BlockDriverCompletionFunc * cb , void * opaque )
{
1308
BlockDriver * drv = bs -> drv ;
ths
authored
17 years ago
1309
BlockDriverAIOCB * ret ;
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if ( ! drv )
1312
return NULL ;
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if ( bdrv_check_request ( bs , sector_num , nb_sectors ))
return NULL ;
ths
authored
18 years ago
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ret = drv -> bdrv_aio_readv ( bs , sector_num , qiov , nb_sectors ,
cb , opaque );
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authored
17 years ago
1318
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if ( ret ) {
/* Update stats even though technically transfer has not happened. */
bs -> rd_bytes += ( unsigned ) nb_sectors * SECTOR_SIZE ;
bs -> rd_ops ++ ;
}
return ret ;
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}
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BlockDriverAIOCB * bdrv_aio_writev ( BlockDriverState * bs , int64_t sector_num ,
QEMUIOVector * qiov , int nb_sectors ,
BlockDriverCompletionFunc * cb , void * opaque )
1331
{
1332
BlockDriver * drv = bs -> drv ;
ths
authored
17 years ago
1333
BlockDriverAIOCB * ret ;
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if ( ! drv )
1336
return NULL ;
1337
if ( bs -> read_only )
1338
return NULL ;
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if ( bdrv_check_request ( bs , sector_num , nb_sectors ))
return NULL ;
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ret = drv -> bdrv_aio_writev ( bs , sector_num , qiov , nb_sectors ,
cb , opaque );
ths
authored
17 years ago
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if ( ret ) {
/* Update stats even though technically transfer has not happened. */
bs -> wr_bytes += ( unsigned ) nb_sectors * SECTOR_SIZE ;
bs -> wr_ops ++ ;
}
return ret ;
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1355
}
void bdrv_aio_cancel ( BlockDriverAIOCB * acb )
{
1356
acb -> pool -> cancel ( acb );
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}
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/**************************************************************/
/* async block device emulation */
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1383
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typedef struct BlockDriverAIOCBSync {
BlockDriverAIOCB common ;
QEMUBH * bh ;
int ret ;
/* vector translation state */
QEMUIOVector * qiov ;
uint8_t * bounce ;
int is_write ;
} BlockDriverAIOCBSync ;
static void bdrv_aio_cancel_em ( BlockDriverAIOCB * blockacb )
{
BlockDriverAIOCBSync * acb = ( BlockDriverAIOCBSync * ) blockacb ;
qemu_bh_cancel ( acb -> bh );
qemu_aio_release ( acb );
}
static AIOPool bdrv_em_aio_pool = {
. aiocb_size = sizeof ( BlockDriverAIOCBSync ),
. cancel = bdrv_aio_cancel_em ,
};
1385
static void bdrv_aio_bh_cb ( void * opaque )
1386
{
1387
BlockDriverAIOCBSync * acb = opaque ;
1388
1389
1390
if ( ! acb -> is_write )
qemu_iovec_from_buffer ( acb -> qiov , acb -> bounce , acb -> qiov -> size );
1391
qemu_vfree ( acb -> bounce );
1392
acb -> common . cb ( acb -> common . opaque , acb -> ret );
1393
1394
qemu_aio_release ( acb );
1395
}
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1404
static BlockDriverAIOCB * bdrv_aio_rw_vector ( BlockDriverState * bs ,
int64_t sector_num ,
QEMUIOVector * qiov ,
int nb_sectors ,
BlockDriverCompletionFunc * cb ,
void * opaque ,
int is_write )
1405
{
1406
1407
BlockDriverAIOCBSync * acb ;
1408
acb = qemu_aio_get ( & bdrv_em_aio_pool , bs , cb , opaque );
1409
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acb -> is_write = is_write ;
acb -> qiov = qiov ;
1411
acb -> bounce = qemu_blockalign ( bs , qiov -> size );
1412
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if ( ! acb -> bh )
acb -> bh = qemu_bh_new ( bdrv_aio_bh_cb , acb );
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if ( is_write ) {
qemu_iovec_to_buffer ( acb -> qiov , acb -> bounce );
acb -> ret = bdrv_write ( bs , sector_num , acb -> bounce , nb_sectors );
} else {
acb -> ret = bdrv_read ( bs , sector_num , acb -> bounce , nb_sectors );
}
1423
qemu_bh_schedule ( acb -> bh );
1424
1425
return & acb -> common ;
1426
1427
}
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1429
static BlockDriverAIOCB * bdrv_aio_readv_em ( BlockDriverState * bs ,
int64_t sector_num , QEMUIOVector * qiov , int nb_sectors ,
1430
BlockDriverCompletionFunc * cb , void * opaque )
1431
{
1432
1433
return bdrv_aio_rw_vector ( bs , sector_num , qiov , nb_sectors , cb , opaque , 0 );
}
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static BlockDriverAIOCB * bdrv_aio_writev_em ( BlockDriverState * bs ,
int64_t sector_num , QEMUIOVector * qiov , int nb_sectors ,
BlockDriverCompletionFunc * cb , void * opaque )
{
return bdrv_aio_rw_vector ( bs , sector_num , qiov , nb_sectors , cb , opaque , 1 );
1440
1441
}
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1443
/**************************************************************/
/* sync block device emulation */
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1447
static void bdrv_rw_em_cb ( void * opaque , int ret )
{
* ( int * ) opaque = ret ;
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1449
}
1450
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# define NOT_DONE 0x7fffffff
ths
authored
18 years ago
1452
static int bdrv_read_em ( BlockDriverState * bs , int64_t sector_num ,
1453
uint8_t * buf , int nb_sectors )
1454
{
1455
1456
int async_ret ;
BlockDriverAIOCB * acb ;
1457
1458
struct iovec iov ;
QEMUIOVector qiov ;
1459
1460
async_ret = NOT_DONE ;
1461
iov . iov_base = ( void * ) buf ;
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1463
1464
1465
iov . iov_len = nb_sectors * 512 ;
qemu_iovec_init_external ( & qiov , & iov , 1 );
acb = bdrv_aio_readv ( bs , sector_num , & qiov , nb_sectors ,
bdrv_rw_em_cb , & async_ret );
1466
if ( acb == NULL )
1467
return - 1 ;
1468
1469
1470
1471
while ( async_ret == NOT_DONE ) {
qemu_aio_wait ();
}
1472
1473
return async_ret ;
1474
1475
}
1476
1477
1478
static int bdrv_write_em ( BlockDriverState * bs , int64_t sector_num ,
const uint8_t * buf , int nb_sectors )
{
1479
1480
int async_ret ;
BlockDriverAIOCB * acb ;
1481
1482
struct iovec iov ;
QEMUIOVector qiov ;
1483
1484
async_ret = NOT_DONE ;
1485
1486
1487
1488
1489
iov . iov_base = ( void * ) buf ;
iov . iov_len = nb_sectors * 512 ;
qemu_iovec_init_external ( & qiov , & iov , 1 );
acb = bdrv_aio_writev ( bs , sector_num , & qiov , nb_sectors ,
bdrv_rw_em_cb , & async_ret );
1490
if ( acb == NULL )
1491
return - 1 ;
1492
1493
1494
1495
1496
while ( async_ret == NOT_DONE ) {
qemu_aio_wait ();
}
return async_ret ;
}
1497
1498
1499
void bdrv_init ( void )
{
1500
module_call_init ( MODULE_INIT_BLOCK );
1501
}
1502
1503
1504
void * qemu_aio_get ( AIOPool * pool , BlockDriverState * bs ,
BlockDriverCompletionFunc * cb , void * opaque )
1505
1506
1507
{
BlockDriverAIOCB * acb ;
1508
1509
1510
if ( pool -> free_aiocb ) {
acb = pool -> free_aiocb ;
pool -> free_aiocb = acb -> next ;
1511
} else {
1512
1513
acb = qemu_mallocz ( pool -> aiocb_size );
acb -> pool = pool ;
1514
1515
1516
1517
1518
1519
1520
1521
1522
}
acb -> bs = bs ;
acb -> cb = cb ;
acb -> opaque = opaque ;
return acb ;
}
void qemu_aio_release ( void * p )
{
1523
1524
1525
1526
BlockDriverAIOCB * acb = ( BlockDriverAIOCB * ) p ;
AIOPool * pool = acb -> pool ;
acb -> next = pool -> free_aiocb ;
pool -> free_aiocb = acb ;
1527
}
1528
1529
1530
1531
1532
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1536
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1538
1539
1540
1541
1542
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1544
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1547
1548
/**************************************************************/
/* removable device support */
/**
* Return TRUE if the media is present
*/
int bdrv_is_inserted ( BlockDriverState * bs )
{
BlockDriver * drv = bs -> drv ;
int ret ;
if ( ! drv )
return 0 ;
if ( ! drv -> bdrv_is_inserted )
return 1 ;
ret = drv -> bdrv_is_inserted ( bs );
return ret ;
}
/**
* Return TRUE if the media changed since the last call to this
ths
authored
18 years ago
1549
* function . It is currently only used for floppy disks
1550
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1600
1601
1602
*/
int bdrv_media_changed ( BlockDriverState * bs )
{
BlockDriver * drv = bs -> drv ;
int ret ;
if ( ! drv || ! drv -> bdrv_media_changed )
ret = - ENOTSUP ;
else
ret = drv -> bdrv_media_changed ( bs );
if ( ret == - ENOTSUP )
ret = bs -> media_changed ;
bs -> media_changed = 0 ;
return ret ;
}
/**
* If eject_flag is TRUE , eject the media . Otherwise , close the tray
*/
void bdrv_eject ( BlockDriverState * bs , int eject_flag )
{
BlockDriver * drv = bs -> drv ;
int ret ;
if ( ! drv || ! drv -> bdrv_eject ) {
ret = - ENOTSUP ;
} else {
ret = drv -> bdrv_eject ( bs , eject_flag );
}
if ( ret == - ENOTSUP ) {
if ( eject_flag )
bdrv_close ( bs );
}
}
int bdrv_is_locked ( BlockDriverState * bs )
{
return bs -> locked ;
}
/**
* Lock or unlock the media ( if it is locked , the user won ' t be able
* to eject it manually ).
*/
void bdrv_set_locked ( BlockDriverState * bs , int locked )
{
BlockDriver * drv = bs -> drv ;
bs -> locked = locked ;
if ( drv && drv -> bdrv_set_locked ) {
drv -> bdrv_set_locked ( bs , locked );
}
}
ths
authored
17 years ago
1603
1604
1605
1606
1607
1608
1609
1610
1611
1612
1613
/* needed for generic scsi interface */
int bdrv_ioctl ( BlockDriverState * bs , unsigned long int req , void * buf )
{
BlockDriver * drv = bs -> drv ;
if ( drv && drv -> bdrv_ioctl )
return drv -> bdrv_ioctl ( bs , req , buf );
return - ENOTSUP ;
}
1614
1615
1616
1617
BlockDriverAIOCB * bdrv_aio_ioctl ( BlockDriverState * bs ,
unsigned long int req , void * buf ,
BlockDriverCompletionFunc * cb , void * opaque )
1618
{
1619
BlockDriver * drv = bs -> drv ;
1620
1621
1622
1623
if ( drv && drv -> bdrv_aio_ioctl )
return drv -> bdrv_aio_ioctl ( bs , req , buf , cb , opaque );
return NULL ;
1624
}
1625
1626
1627
1628
1629
void * qemu_blockalign ( BlockDriverState * bs , size_t size )
{
return qemu_memalign (( bs && bs -> buffer_alignment ) ? bs -> buffer_alignment : 512 , size );
}