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/*
* QEMU monitor
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*
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* Copyright ( c ) 2003 - 2004 Fabrice Bellard
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18 years ago
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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 < dirent . h >
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# include "hw/hw.h"
# include "hw/usb.h"
# include "hw/pcmcia.h"
# include "hw/pc.h"
# include "hw/pci.h"
# include "gdbstub.h"
# include "net.h"
# include "qemu-char.h"
# include "sysemu.h"
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# include "monitor.h"
# include "readline.h"
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# include "console.h"
# include "block.h"
# include "audio/audio.h"
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# include "disas.h"
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# include "balloon.h"
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# include "qemu-timer.h"
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# include "migration.h"
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# include "kvm.h"
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# include "acl.h"
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// # define DEBUG
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// # define DEBUG_COMPLETION
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/*
* Supported types :
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*
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* 'F' filename
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* 'B' block device name
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* 's' string ( accept optional quote )
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* 'i' 32 bit integer
* 'l' target long ( 32 or 64 bit )
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* '/' optional gdb - like print format ( like "/10x" )
*
* '?' optional type ( for 'F' , 's' and 'i' )
*
*/
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typedef struct mon_cmd_t {
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const char * name ;
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const char * args_type ;
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void * handler ;
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const char * params ;
const char * help ;
69
} mon_cmd_t ;
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struct Monitor {
CharDriverState * chr ;
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int flags ;
int suspend_cnt ;
uint8_t outbuf [ 1024 ];
int outbuf_index ;
ReadLineState * rs ;
CPUState * mon_cpu ;
BlockDriverCompletionFunc * password_completion_cb ;
void * password_opaque ;
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LIST_ENTRY ( Monitor ) entry ;
};
static LIST_HEAD ( mon_list , Monitor ) mon_list ;
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static const mon_cmd_t mon_cmds [];
static const mon_cmd_t info_cmds [];
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Monitor * cur_mon = NULL ;
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static void monitor_command_cb ( Monitor * mon , const char * cmdline ,
void * opaque );
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static void monitor_read_command ( Monitor * mon , int show_prompt )
{
readline_start ( mon -> rs , "(qemu) " , 0 , monitor_command_cb , NULL );
if ( show_prompt )
readline_show_prompt ( mon -> rs );
}
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static int monitor_read_password ( Monitor * mon , ReadLineFunc * readline_func ,
void * opaque )
103
{
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if ( mon -> rs ) {
readline_start ( mon -> rs , "Password: " , 1 , readline_func , opaque );
/* prompt is printed on return from the command handler */
return 0 ;
} else {
monitor_printf ( mon , "terminal does not support password prompting \n " );
return - ENOTTY ;
}
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}
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void monitor_flush ( Monitor * mon )
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{
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if ( mon && mon -> outbuf_index != 0 && mon -> chr -> focus == 0 ) {
qemu_chr_write ( mon -> chr , mon -> outbuf , mon -> outbuf_index );
mon -> outbuf_index = 0 ;
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}
}
/* flush at every end of line or if the buffer is full */
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static void monitor_puts ( Monitor * mon , const char * str )
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{
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char c ;
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if ( ! mon )
return ;
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for (;;) {
c = * str ++ ;
if ( c == '\0' )
break ;
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if ( c == '\n' )
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mon -> outbuf [ mon -> outbuf_index ++ ] = '\r' ;
mon -> outbuf [ mon -> outbuf_index ++ ] = c ;
if ( mon -> outbuf_index >= ( sizeof ( mon -> outbuf ) - 1 )
|| c == '\n' )
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monitor_flush ( mon );
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}
}
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void monitor_vprintf ( Monitor * mon , const char * fmt , va_list ap )
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{
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char buf [ 4096 ];
vsnprintf ( buf , sizeof ( buf ), fmt , ap );
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monitor_puts ( mon , buf );
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}
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void monitor_printf ( Monitor * mon , const char * fmt , ...)
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{
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va_list ap ;
va_start ( ap , fmt );
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monitor_vprintf ( mon , fmt , ap );
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va_end ( ap );
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}
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void monitor_print_filename ( Monitor * mon , const char * filename )
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{
int i ;
for ( i = 0 ; filename [ i ]; i ++ ) {
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switch ( filename [ i ]) {
case ' ' :
case '"' :
case '\\' :
monitor_printf ( mon , " \\ %c" , filename [ i ]);
break ;
case '\t' :
monitor_printf ( mon , " \\ t" );
break ;
case '\r' :
monitor_printf ( mon , " \\ r" );
break ;
case '\n' :
monitor_printf ( mon , " \\ n" );
break ;
default :
monitor_printf ( mon , "%c" , filename [ i ]);
break ;
}
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}
}
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static int monitor_fprintf ( FILE * stream , const char * fmt , ...)
{
va_list ap ;
va_start ( ap , fmt );
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monitor_vprintf (( Monitor * ) stream , fmt , ap );
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va_end ( ap );
return 0 ;
}
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static int compare_cmd ( const char * name , const char * list )
{
const char * p , * pstart ;
int len ;
len = strlen ( name );
p = list ;
for (;;) {
pstart = p ;
p = strchr ( p , '|' );
if ( ! p )
p = pstart + strlen ( pstart );
if (( p - pstart ) == len && ! memcmp ( pstart , name , len ))
return 1 ;
if ( * p == '\0' )
break ;
p ++ ;
}
return 0 ;
}
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static void help_cmd_dump ( Monitor * mon , const mon_cmd_t * cmds ,
const char * prefix , const char * name )
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{
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const mon_cmd_t * cmd ;
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for ( cmd = cmds ; cmd -> name != NULL ; cmd ++ ) {
if ( ! name || ! strcmp ( name , cmd -> name ))
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monitor_printf ( mon , "%s%s %s -- %s \n " , prefix , cmd -> name ,
cmd -> params , cmd -> help );
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}
}
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static void help_cmd ( Monitor * mon , const char * name )
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{
if ( name && ! strcmp ( name , "info" )) {
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help_cmd_dump ( mon , info_cmds , "info " , NULL );
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} else {
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help_cmd_dump ( mon , mon_cmds , "" , name );
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if ( name && ! strcmp ( name , "log" )) {
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const CPULogItem * item ;
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monitor_printf ( mon , "Log items (comma separated): \n " );
monitor_printf ( mon , "%-10s %s \n " , "none" , "remove all logs" );
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for ( item = cpu_log_items ; item -> mask != 0 ; item ++ ) {
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monitor_printf ( mon , "%-10s %s \n " , item -> name , item -> help );
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}
}
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}
}
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static void do_commit ( Monitor * mon , const char * device )
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{
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int i , all_devices ;
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all_devices = ! strcmp ( device , "all" );
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for ( i = 0 ; i < nb_drives ; i ++ ) {
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if ( all_devices ||
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! strcmp ( bdrv_get_device_name ( drives_table [ i ]. bdrv ), device ))
bdrv_commit ( drives_table [ i ]. bdrv );
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}
}
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static void do_info ( Monitor * mon , const char * item )
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{
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const mon_cmd_t * cmd ;
void ( * handler )( Monitor * );
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if ( ! item )
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goto help ;
for ( cmd = info_cmds ; cmd -> name != NULL ; cmd ++ ) {
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if ( compare_cmd ( item , cmd -> name ))
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goto found ;
}
help :
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help_cmd ( mon , "info" );
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return ;
found :
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handler = cmd -> handler ;
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handler ( mon );
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}
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static void do_info_version ( Monitor * mon )
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{
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monitor_printf ( mon , "%s \n " , QEMU_VERSION QEMU_PKGVERSION );
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}
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static void do_info_name ( Monitor * mon )
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{
if ( qemu_name )
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monitor_printf ( mon , "%s \n " , qemu_name );
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}
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# if defined ( TARGET_I386 )
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static void do_info_hpet ( Monitor * mon )
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{
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monitor_printf ( mon , "HPET is %s by QEMU \n " ,
( no_hpet ) ? "disabled" : "enabled" );
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}
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# endif
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static void do_info_uuid ( Monitor * mon )
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{
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monitor_printf ( mon , UUID_FMT " \n " , qemu_uuid [ 0 ], qemu_uuid [ 1 ],
qemu_uuid [ 2 ], qemu_uuid [ 3 ], qemu_uuid [ 4 ], qemu_uuid [ 5 ],
qemu_uuid [ 6 ], qemu_uuid [ 7 ], qemu_uuid [ 8 ], qemu_uuid [ 9 ],
qemu_uuid [ 10 ], qemu_uuid [ 11 ], qemu_uuid [ 12 ], qemu_uuid [ 13 ],
qemu_uuid [ 14 ], qemu_uuid [ 15 ]);
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}
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/* get the current CPU defined by the user */
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static int mon_set_cpu ( int cpu_index )
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{
CPUState * env ;
for ( env = first_cpu ; env != NULL ; env = env -> next_cpu ) {
if ( env -> cpu_index == cpu_index ) {
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cur_mon -> mon_cpu = env ;
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return 0 ;
}
}
return - 1 ;
}
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static CPUState * mon_get_cpu ( void )
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{
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if ( ! cur_mon -> mon_cpu ) {
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mon_set_cpu ( 0 );
}
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cpu_synchronize_state ( cur_mon -> mon_cpu , 0 );
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return cur_mon -> mon_cpu ;
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}
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static void do_info_registers ( Monitor * mon )
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{
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CPUState * env ;
env = mon_get_cpu ();
if ( ! env )
return ;
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# ifdef TARGET_I386
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cpu_dump_state ( env , ( FILE * ) mon , monitor_fprintf ,
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X86_DUMP_FPU );
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# else
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cpu_dump_state ( env , ( FILE * ) mon , monitor_fprintf ,
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0 );
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# endif
}
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static void do_info_cpus ( Monitor * mon )
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{
CPUState * env ;
/* just to set the default cpu if not already done */
mon_get_cpu ();
for ( env = first_cpu ; env != NULL ; env = env -> next_cpu ) {
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cpu_synchronize_state ( env , 0 );
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monitor_printf ( mon , "%c CPU #%d:" ,
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( env == mon -> mon_cpu ) ? '*' : ' ' ,
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env -> cpu_index );
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# if defined ( TARGET_I386 )
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monitor_printf ( mon , " pc=0x" TARGET_FMT_lx ,
env -> eip + env -> segs [ R_CS ]. base );
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# elif defined ( TARGET_PPC )
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monitor_printf ( mon , " nip=0x" TARGET_FMT_lx , env -> nip );
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# elif defined ( TARGET_SPARC )
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monitor_printf ( mon , " pc=0x" TARGET_FMT_lx " npc=0x" TARGET_FMT_lx ,
env -> pc , env -> npc );
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# elif defined ( TARGET_MIPS )
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monitor_printf ( mon , " PC=0x" TARGET_FMT_lx , env -> active_tc . PC );
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# endif
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if ( env -> halted )
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monitor_printf ( mon , " (halted)" );
monitor_printf ( mon , " \n " );
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}
}
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static void do_cpu_set ( Monitor * mon , int index )
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{
if ( mon_set_cpu ( index ) < 0 )
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monitor_printf ( mon , "Invalid CPU index \n " );
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}
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static void do_info_jit ( Monitor * mon )
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{
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dump_exec_info (( FILE * ) mon , monitor_fprintf );
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}
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static void do_info_history ( Monitor * mon )
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{
int i ;
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const char * str ;
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if ( ! mon -> rs )
return ;
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i = 0 ;
for (;;) {
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str = readline_get_history ( mon -> rs , i );
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if ( ! str )
break ;
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monitor_printf ( mon , "%d: '%s' \n " , i , str );
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i ++ ;
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}
}
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# if defined ( TARGET_PPC )
/* XXX: not implemented in other targets */
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static void do_info_cpu_stats ( Monitor * mon )
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{
CPUState * env ;
env = mon_get_cpu ();
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cpu_dump_statistics ( env , ( FILE * ) mon , & monitor_fprintf , 0 );
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}
# endif
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static void do_quit ( Monitor * mon )
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{
exit ( 0 );
}
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static int eject_device ( Monitor * mon , BlockDriverState * bs , int force )
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{
if ( bdrv_is_inserted ( bs )) {
if ( ! force ) {
if ( ! bdrv_is_removable ( bs )) {
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monitor_printf ( mon , "device is not removable \n " );
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return - 1 ;
}
if ( bdrv_is_locked ( bs )) {
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monitor_printf ( mon , "device is locked \n " );
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return - 1 ;
}
}
bdrv_close ( bs );
}
return 0 ;
}
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static void do_eject ( Monitor * mon , int force , const char * filename )
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{
BlockDriverState * bs ;
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bs = bdrv_find ( filename );
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if ( ! bs ) {
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monitor_printf ( mon , "device not found \n " );
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return ;
}
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eject_device ( mon , bs , force );
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}
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static void do_change_block ( Monitor * mon , const char * device ,
const char * filename , const char * fmt )
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{
BlockDriverState * bs ;
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BlockDriver * drv = NULL ;
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bs = bdrv_find ( device );
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if ( ! bs ) {
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monitor_printf ( mon , "device not found \n " );
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return ;
}
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if ( fmt ) {
drv = bdrv_find_format ( fmt );
if ( ! drv ) {
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monitor_printf ( mon , "invalid format %s \n " , fmt );
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return ;
}
}
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if ( eject_device ( mon , bs , 0 ) < 0 )
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return ;
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bdrv_open2 ( bs , filename , 0 , drv );
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monitor_read_bdrv_key_start ( mon , bs , NULL , NULL );
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}
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static void change_vnc_password_cb ( Monitor * mon , const char * password ,
void * opaque )
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{
if ( vnc_display_password ( NULL , password ) < 0 )
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monitor_printf ( mon , "could not set VNC server password \n " );
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monitor_read_command ( mon , 1 );
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}
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static void do_change_vnc ( Monitor * mon , const char * target , const char * arg )
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{
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if ( strcmp ( target , "passwd" ) == 0 ||
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strcmp ( target , "password" ) == 0 ) {
if ( arg ) {
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char password [ 9 ];
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strncpy ( password , arg , sizeof ( password ));
password [ sizeof ( password ) - 1 ] = '\0' ;
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change_vnc_password_cb ( mon , password , NULL );
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} else {
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monitor_read_password ( mon , change_vnc_password_cb , NULL );
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}
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} else {
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if ( vnc_display_open ( NULL , target ) < 0 )
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monitor_printf ( mon , "could not start VNC server on %s \n " , target );
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}
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}
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static void do_change ( Monitor * mon , const char * device , const char * target ,
const char * arg )
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{
if ( strcmp ( device , "vnc" ) == 0 ) {
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do_change_vnc ( mon , target , arg );
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} else {
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do_change_block ( mon , device , target , arg );
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}
}
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static void do_screen_dump ( Monitor * mon , const char * filename )
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{
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vga_hw_screen_dump ( filename );
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}
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static void do_logfile ( Monitor * mon , const char * filename )
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{
cpu_set_log_filename ( filename );
}
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static void do_log ( Monitor * mon , const char * items )
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{
int mask ;
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if ( ! strcmp ( items , "none" )) {
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mask = 0 ;
} else {
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mask = cpu_str_to_log_mask ( items );
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if ( ! mask ) {
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help_cmd ( mon , "log" );
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return ;
}
}
cpu_set_log ( mask );
}
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static void do_singlestep ( Monitor * mon , const char * option )
{
if ( ! option || ! strcmp ( option , "on" )) {
singlestep = 1 ;
} else if ( ! strcmp ( option , "off" )) {
singlestep = 0 ;
} else {
monitor_printf ( mon , "unexpected option %s \n " , option );
}
}
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static void do_stop ( Monitor * mon )
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{
vm_stop ( EXCP_INTERRUPT );
}
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static void encrypted_bdrv_it ( void * opaque , BlockDriverState * bs );
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struct bdrv_iterate_context {
Monitor * mon ;
int err ;
};
static void do_cont ( Monitor * mon )
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{
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struct bdrv_iterate_context context = { mon , 0 };
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bdrv_iterate ( encrypted_bdrv_it , & context );
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/* only resume the vm if all keys are set and valid */
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if ( ! context . err )
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vm_start ();
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}
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static void bdrv_key_cb ( void * opaque , int err )
{
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Monitor * mon = opaque ;
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568
/* another key was set successfully, retry to continue */
if ( ! err )
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do_cont ( mon );
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}
static void encrypted_bdrv_it ( void * opaque , BlockDriverState * bs )
{
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struct bdrv_iterate_context * context = opaque ;
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if ( ! context -> err && bdrv_key_required ( bs )) {
context -> err = - EBUSY ;
monitor_read_bdrv_key_start ( context -> mon , bs , bdrv_key_cb ,
context -> mon );
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581
582
}
}
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# ifdef CONFIG_GDBSTUB
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static void do_gdbserver ( Monitor * mon , const char * device )
{
if ( ! device )
device = "tcp::" DEFAULT_GDBSTUB_PORT ;
if ( gdbserver_start ( device ) < 0 ) {
monitor_printf ( mon , "Could not open gdbserver on device '%s' \n " ,
device );
} else if ( strcmp ( device , "none" ) == 0 ) {
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monitor_printf ( mon , "Disabled gdbserver \n " );
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} else {
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monitor_printf ( mon , "Waiting for gdb connection on device '%s' \n " ,
device );
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}
}
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# endif
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static void monitor_printc ( Monitor * mon , int c )
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{
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monitor_printf ( mon , "'" );
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switch ( c ) {
case '\'' :
605
monitor_printf ( mon , " \\ '" );
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break ;
case '\\' :
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monitor_printf ( mon , " \\\\ " );
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break ;
case '\n' :
611
monitor_printf ( mon , " \\ n" );
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613
break ;
case '\r' :
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monitor_printf ( mon , " \\ r" );
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break ;
default :
if ( c >= 32 && c <= 126 ) {
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monitor_printf ( mon , "%c" , c );
619
} else {
620
monitor_printf ( mon , " \\ x%02x" , c );
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}
break ;
}
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monitor_printf ( mon , "'" );
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}
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static void memory_dump ( Monitor * mon , int count , int format , int wsize ,
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target_phys_addr_t addr , int is_physical )
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{
630
CPUState * env ;
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int nb_per_line , l , line_size , i , max_digits , len ;
uint8_t buf [ 16 ];
uint64_t v ;
if ( format == 'i' ) {
int flags ;
flags = 0 ;
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env = mon_get_cpu ();
if ( ! env && ! is_physical )
return ;
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# ifdef TARGET_I386
642
if ( wsize == 2 ) {
643
flags = 1 ;
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} else if ( wsize == 4 ) {
flags = 0 ;
} else {
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/* as default we use the current CS size */
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flags = 0 ;
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if ( env ) {
# ifdef TARGET_X86_64
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if (( env -> efer & MSR_EFER_LMA ) &&
652
653
654
655
656
657
658
( env -> segs [ R_CS ]. flags & DESC_L_MASK ))
flags = 2 ;
else
# endif
if ( ! ( env -> segs [ R_CS ]. flags & DESC_B_MASK ))
flags = 1 ;
}
659
660
}
# endif
661
monitor_disas ( mon , env , addr , count , is_physical , flags );
662
663
664
665
666
667
668
669
670
671
672
673
674
675
676
677
678
679
680
681
682
683
684
685
686
687
688
689
690
return ;
}
len = wsize * count ;
if ( wsize == 1 )
line_size = 8 ;
else
line_size = 16 ;
nb_per_line = line_size / wsize ;
max_digits = 0 ;
switch ( format ) {
case 'o' :
max_digits = ( wsize * 8 + 2 ) / 3 ;
break ;
default :
case 'x' :
max_digits = ( wsize * 8 ) / 4 ;
break ;
case 'u' :
case 'd' :
max_digits = ( wsize * 8 * 10 + 32 ) / 33 ;
break ;
case 'c' :
wsize = 1 ;
break ;
}
while ( len > 0 ) {
691
if ( is_physical )
692
monitor_printf ( mon , TARGET_FMT_plx ":" , addr );
693
else
694
monitor_printf ( mon , TARGET_FMT_lx ":" , ( target_ulong ) addr );
695
696
697
698
699
700
l = len ;
if ( l > line_size )
l = line_size ;
if ( is_physical ) {
cpu_physical_memory_rw ( addr , buf , l , 0 );
} else {
701
702
703
env = mon_get_cpu ();
if ( ! env )
break ;
704
if ( cpu_memory_rw_debug ( env , addr , buf , l , 0 ) < 0 ) {
705
monitor_printf ( mon , " Cannot access memory \n " );
706
707
break ;
}
708
}
ths
authored
18 years ago
709
i = 0 ;
710
711
712
713
714
715
716
717
718
719
while ( i < l ) {
switch ( wsize ) {
default :
case 1 :
v = ldub_raw ( buf + i );
break ;
case 2 :
v = lduw_raw ( buf + i );
break ;
case 4 :
720
v = ( uint32_t ) ldl_raw ( buf + i );
721
722
723
724
725
break ;
case 8 :
v = ldq_raw ( buf + i );
break ;
}
726
monitor_printf ( mon , " " );
727
728
switch ( format ) {
case 'o' :
729
monitor_printf ( mon , "%#*" PRIo64 , max_digits , v );
730
731
break ;
case 'x' :
732
monitor_printf ( mon , "0x%0*" PRIx64 , max_digits , v );
733
734
break ;
case 'u' :
735
monitor_printf ( mon , "%*" PRIu64 , max_digits , v );
736
737
break ;
case 'd' :
738
monitor_printf ( mon , "%*" PRId64 , max_digits , v );
739
740
break ;
case 'c' :
741
monitor_printc ( mon , v );
742
743
744
745
break ;
}
i += wsize ;
}
746
monitor_printf ( mon , " \n " );
747
748
749
750
751
addr += l ;
len -= l ;
}
}
752
753
754
755
756
757
# if TARGET_LONG_BITS == 64
# define GET_TLONG ( h , l ) ((( uint64_t )( h ) << 32 ) | ( l ))
# else
# define GET_TLONG ( h , l ) ( l )
# endif
758
static void do_memory_dump ( Monitor * mon , int count , int format , int size ,
759
uint32_t addrh , uint32_t addrl )
760
{
761
target_long addr = GET_TLONG ( addrh , addrl );
762
memory_dump ( mon , count , format , size , addr , 0 );
763
764
}
765
766
767
768
769
770
# if TARGET_PHYS_ADDR_BITS > 32
# define GET_TPHYSADDR ( h , l ) ((( uint64_t )( h ) << 32 ) | ( l ))
# else
# define GET_TPHYSADDR ( h , l ) ( l )
# endif
771
772
static void do_physical_memory_dump ( Monitor * mon , int count , int format ,
int size , uint32_t addrh , uint32_t addrl )
773
774
{
775
target_phys_addr_t addr = GET_TPHYSADDR ( addrh , addrl );
776
memory_dump ( mon , count , format , size , addr , 1 );
777
778
}
779
780
static void do_print ( Monitor * mon , int count , int format , int size ,
unsigned int valh , unsigned int vall )
781
{
782
783
target_phys_addr_t val = GET_TPHYSADDR ( valh , vall );
# if TARGET_PHYS_ADDR_BITS == 32
784
785
switch ( format ) {
case 'o' :
786
monitor_printf ( mon , "%#o" , val );
787
788
break ;
case 'x' :
789
monitor_printf ( mon , "%#x" , val );
790
791
break ;
case 'u' :
792
monitor_printf ( mon , "%u" , val );
793
794
795
break ;
default :
case 'd' :
796
monitor_printf ( mon , "%d" , val );
797
798
break ;
case 'c' :
799
monitor_printc ( mon , val );
800
801
break ;
}
802
803
804
# else
switch ( format ) {
case 'o' :
805
monitor_printf ( mon , "%#" PRIo64 , val );
806
807
break ;
case 'x' :
808
monitor_printf ( mon , "%#" PRIx64 , val );
809
810
break ;
case 'u' :
811
monitor_printf ( mon , "%" PRIu64 , val );
812
813
814
break ;
default :
case 'd' :
815
monitor_printf ( mon , "%" PRId64 , val );
816
817
break ;
case 'c' :
818
monitor_printc ( mon , val );
819
820
821
break ;
}
# endif
822
monitor_printf ( mon , " \n " );
823
824
}
825
static void do_memory_save ( Monitor * mon , unsigned int valh , unsigned int vall ,
826
827
828
829
830
831
832
833
834
835
836
837
838
839
uint32_t size , const char * filename )
{
FILE * f ;
target_long addr = GET_TLONG ( valh , vall );
uint32_t l ;
CPUState * env ;
uint8_t buf [ 1024 ];
env = mon_get_cpu ();
if ( ! env )
return ;
f = fopen ( filename , "wb" );
if ( ! f ) {
840
monitor_printf ( mon , "could not open '%s' \n " , filename );
841
842
843
844
845
846
847
848
849
850
851
852
853
854
return ;
}
while ( size != 0 ) {
l = sizeof ( buf );
if ( l > size )
l = size ;
cpu_memory_rw_debug ( env , addr , buf , l , 0 );
fwrite ( buf , 1 , l , f );
addr += l ;
size -= l ;
}
fclose ( f );
}
855
856
857
static void do_physical_memory_save ( Monitor * mon , unsigned int valh ,
unsigned int vall , uint32_t size ,
const char * filename )
858
859
860
861
{
FILE * f ;
uint32_t l ;
uint8_t buf [ 1024 ];
862
target_phys_addr_t addr = GET_TPHYSADDR ( valh , vall );
863
864
865
f = fopen ( filename , "wb" );
if ( ! f ) {
866
monitor_printf ( mon , "could not open '%s' \n " , filename );
867
868
869
870
871
872
873
874
875
876
877
878
879
880
881
return ;
}
while ( size != 0 ) {
l = sizeof ( buf );
if ( l > size )
l = size ;
cpu_physical_memory_rw ( addr , buf , l , 0 );
fwrite ( buf , 1 , l , f );
fflush ( f );
addr += l ;
size -= l ;
}
fclose ( f );
}
882
static void do_sum ( Monitor * mon , uint32_t start , uint32_t size )
883
884
885
886
887
888
889
890
891
892
893
894
{
uint32_t addr ;
uint8_t buf [ 1 ];
uint16_t sum ;
sum = 0 ;
for ( addr = start ; addr < ( start + size ); addr ++ ) {
cpu_physical_memory_rw ( addr , buf , 1 , 0 );
/* BSD sum algorithm ('sum' Unix command) */
sum = ( sum >> 1 ) | ( sum << 15 );
sum += buf [ 0 ];
}
895
monitor_printf ( mon , "%05d \n " , sum );
896
897
}
898
899
900
901
902
903
904
905
typedef struct {
int keycode ;
const char * name ;
} KeyDef ;
static const KeyDef key_defs [] = {
{ 0x2a , "shift" },
{ 0x36 , "shift_r" },
ths
authored
18 years ago
906
907
908
{ 0x38 , "alt" },
{ 0xb8 , "alt_r" },
ths
authored
17 years ago
909
910
{ 0x64 , "altgr" },
{ 0xe4 , "altgr_r" },
911
912
913
914
915
916
917
918
919
920
921
922
923
924
925
926
927
{ 0x1d , "ctrl" },
{ 0x9d , "ctrl_r" },
{ 0xdd , "menu" },
{ 0x01 , "esc" },
{ 0x02 , "1" },
{ 0x03 , "2" },
{ 0x04 , "3" },
{ 0x05 , "4" },
{ 0x06 , "5" },
{ 0x07 , "6" },
{ 0x08 , "7" },
{ 0x09 , "8" },
{ 0x0a , "9" },
{ 0x0b , "0" },
928
929
{ 0x0c , "minus" },
{ 0x0d , "equal" },
930
931
932
933
934
935
936
937
938
939
940
941
942
943
944
945
946
947
948
949
950
951
952
953
954
955
956
957
958
959
960
961
962
{ 0x0e , "backspace" },
{ 0x0f , "tab" },
{ 0x10 , "q" },
{ 0x11 , "w" },
{ 0x12 , "e" },
{ 0x13 , "r" },
{ 0x14 , "t" },
{ 0x15 , "y" },
{ 0x16 , "u" },
{ 0x17 , "i" },
{ 0x18 , "o" },
{ 0x19 , "p" },
{ 0x1c , "ret" },
{ 0x1e , "a" },
{ 0x1f , "s" },
{ 0x20 , "d" },
{ 0x21 , "f" },
{ 0x22 , "g" },
{ 0x23 , "h" },
{ 0x24 , "j" },
{ 0x25 , "k" },
{ 0x26 , "l" },
{ 0x2c , "z" },
{ 0x2d , "x" },
{ 0x2e , "c" },
{ 0x2f , "v" },
{ 0x30 , "b" },
{ 0x31 , "n" },
{ 0x32 , "m" },
963
964
965
{ 0x33 , "comma" },
{ 0x34 , "dot" },
{ 0x35 , "slash" },
ths
authored
18 years ago
966
967
968
{ 0x37 , "asterisk" },
969
{ 0x39 , "spc" },
970
{ 0x3a , "caps_lock" },
971
972
973
974
975
976
977
978
979
980
{ 0x3b , "f1" },
{ 0x3c , "f2" },
{ 0x3d , "f3" },
{ 0x3e , "f4" },
{ 0x3f , "f5" },
{ 0x40 , "f6" },
{ 0x41 , "f7" },
{ 0x42 , "f8" },
{ 0x43 , "f9" },
{ 0x44 , "f10" },
981
{ 0x45 , "num_lock" },
982
983
{ 0x46 , "scroll_lock" },
984
985
{ 0xb5 , "kp_divide" },
{ 0x37 , "kp_multiply" },
ths
authored
18 years ago
986
{ 0x4a , "kp_subtract" },
987
988
989
{ 0x4e , "kp_add" },
{ 0x9c , "kp_enter" },
{ 0x53 , "kp_decimal" },
990
{ 0x54 , "sysrq" },
991
992
993
994
995
996
997
998
999
1000
1001
{ 0x52 , "kp_0" },
{ 0x4f , "kp_1" },
{ 0x50 , "kp_2" },
{ 0x51 , "kp_3" },
{ 0x4b , "kp_4" },
{ 0x4c , "kp_5" },
{ 0x4d , "kp_6" },
{ 0x47 , "kp_7" },
{ 0x48 , "kp_8" },
{ 0x49 , "kp_9" },
ths
authored
18 years ago
1002
1003
1004
1005
1006
1007
1008
1009
1010
1011
1012
1013
1014
1015
1016
1017
1018
1019
1020
1021
{ 0x56 , "<" },
{ 0x57 , "f11" },
{ 0x58 , "f12" },
{ 0xb7 , "print" },
{ 0xc7 , "home" },
{ 0xc9 , "pgup" },
{ 0xd1 , "pgdn" },
{ 0xcf , "end" },
{ 0xcb , "left" },
{ 0xc8 , "up" },
{ 0xd0 , "down" },
{ 0xcd , "right" },
{ 0xd2 , "insert" },
{ 0xd3 , "delete" },
1022
1023
1024
1025
1026
1027
1028
1029
1030
1031
1032
1033
1034
1035
1036
1037
1038
# if defined ( TARGET_SPARC ) && ! defined ( TARGET_SPARC64 )
{ 0xf0 , "stop" },
{ 0xf1 , "again" },
{ 0xf2 , "props" },
{ 0xf3 , "undo" },
{ 0xf4 , "front" },
{ 0xf5 , "copy" },
{ 0xf6 , "open" },
{ 0xf7 , "paste" },
{ 0xf8 , "find" },
{ 0xf9 , "cut" },
{ 0xfa , "lf" },
{ 0xfb , "help" },
{ 0xfc , "meta_l" },
{ 0xfd , "meta_r" },
{ 0xfe , "compose" },
# endif
1039
1040
1041
1042
1043
1044
{ 0 , NULL },
};
static int get_keycode ( const char * key )
{
const KeyDef * p ;
1045
1046
char * endp ;
int ret ;
1047
1048
1049
1050
1051
for ( p = key_defs ; p -> name != NULL ; p ++ ) {
if ( ! strcmp ( key , p -> name ))
return p -> keycode ;
}
1052
1053
1054
1055
1056
if ( strstart ( key , "0x" , NULL )) {
ret = strtoul ( key , & endp , 0 );
if ( * endp == '\0' && ret >= 0x01 && ret <= 0xff )
return ret ;
}
1057
1058
1059
return - 1 ;
}
1060
1061
1062
1063
1064
1065
1066
1067
1068
1069
1070
1071
1072
1073
1074
1075
1076
1077
# define MAX_KEYCODES 16
static uint8_t keycodes [ MAX_KEYCODES ];
static int nb_pending_keycodes ;
static QEMUTimer * key_timer ;
static void release_keys ( void * opaque )
{
int keycode ;
while ( nb_pending_keycodes > 0 ) {
nb_pending_keycodes -- ;
keycode = keycodes [ nb_pending_keycodes ];
if ( keycode & 0x80 )
kbd_put_keycode ( 0xe0 );
kbd_put_keycode ( keycode | 0x80 );
}
}
1078
1079
static void do_sendkey ( Monitor * mon , const char * string , int has_hold_time ,
int hold_time )
1080
{
1081
1082
1083
1084
char keyname_buf [ 16 ];
char * separator ;
int keyname_len , keycode , i ;
1085
1086
1087
1088
1089
1090
1091
if ( nb_pending_keycodes > 0 ) {
qemu_del_timer ( key_timer );
release_keys ( NULL );
}
if ( ! has_hold_time )
hold_time = 100 ;
i = 0 ;
1092
1093
1094
1095
1096
1097
while ( 1 ) {
separator = strchr ( string , '-' );
keyname_len = separator ? separator - string : strlen ( string );
if ( keyname_len > 0 ) {
pstrcpy ( keyname_buf , sizeof ( keyname_buf ), string );
if ( keyname_len > sizeof ( keyname_buf ) - 1 ) {
1098
monitor_printf ( mon , "invalid key: '%s...' \n " , keyname_buf );
1099
return ;
1100
}
1101
if ( i == MAX_KEYCODES ) {
1102
monitor_printf ( mon , "too many keys \n " );
1103
1104
1105
1106
1107
return ;
}
keyname_buf [ keyname_len ] = 0 ;
keycode = get_keycode ( keyname_buf );
if ( keycode < 0 ) {
1108
monitor_printf ( mon , "unknown key: '%s' \n " , keyname_buf );
1109
1110
return ;
}
1111
keycodes [ i ++ ] = keycode ;
1112
}
1113
if ( ! separator )
1114
break ;
1115
string = separator + 1 ;
1116
}
1117
nb_pending_keycodes = i ;
1118
/* key down events */
1119
for ( i = 0 ; i < nb_pending_keycodes ; i ++ ) {
1120
1121
1122
1123
1124
keycode = keycodes [ i ];
if ( keycode & 0x80 )
kbd_put_keycode ( 0xe0 );
kbd_put_keycode ( keycode & 0x7f );
}
1125
/* delayed key up events */
1126
1127
qemu_mod_timer ( key_timer , qemu_get_clock ( vm_clock ) +
muldiv64 ( ticks_per_sec , hold_time , 1000 ));
1128
1129
}
1130
1131
static int mouse_button_state ;
1132
static void do_mouse_move ( Monitor * mon , const char * dx_str , const char * dy_str ,
1133
1134
1135
1136
1137
1138
const char * dz_str )
{
int dx , dy , dz ;
dx = strtol ( dx_str , NULL , 0 );
dy = strtol ( dy_str , NULL , 0 );
dz = 0 ;
ths
authored
18 years ago
1139
if ( dz_str )
1140
1141
1142
1143
dz = strtol ( dz_str , NULL , 0 );
kbd_mouse_event ( dx , dy , dz , mouse_button_state );
}
1144
static void do_mouse_button ( Monitor * mon , int button_state )
1145
1146
1147
1148
1149
{
mouse_button_state = button_state ;
kbd_mouse_event ( 0 , 0 , 0 , mouse_button_state );
}
1150
1151
static void do_ioport_read ( Monitor * mon , int count , int format , int size ,
int addr , int has_index , int index )
1152
1153
1154
1155
1156
1157
1158
1159
1160
1161
1162
1163
1164
1165
1166
1167
1168
1169
1170
1171
1172
1173
1174
1175
1176
{
uint32_t val ;
int suffix ;
if ( has_index ) {
cpu_outb ( NULL , addr & 0xffff , index & 0xff );
addr ++ ;
}
addr &= 0xffff ;
switch ( size ) {
default :
case 1 :
val = cpu_inb ( NULL , addr );
suffix = 'b' ;
break ;
case 2 :
val = cpu_inw ( NULL , addr );
suffix = 'w' ;
break ;
case 4 :
val = cpu_inl ( NULL , addr );
suffix = 'l' ;
break ;
}
1177
1178
monitor_printf ( mon , "port%c[0x%04x] = %#0*x \n " ,
suffix , addr , size * 2 , val );
1179
}
1180
1181
1182
1183
1184
1185
1186
1187
1188
1189
1190
/* boot_set handler */
static QEMUBootSetHandler * qemu_boot_set_handler = NULL ;
static void * boot_opaque ;
void qemu_register_boot_set ( QEMUBootSetHandler * func , void * opaque )
{
qemu_boot_set_handler = func ;
boot_opaque = opaque ;
}
1191
static void do_boot_set ( Monitor * mon , const char * bootdevice )
1192
1193
1194
1195
{
int res ;
if ( qemu_boot_set_handler ) {
1196
res = qemu_boot_set_handler ( boot_opaque , bootdevice );
1197
if ( res == 0 )
1198
1199
monitor_printf ( mon , "boot device list now set to %s \n " ,
bootdevice );
1200
else
1201
1202
monitor_printf ( mon , "setting boot device list failed with "
"error %i \n " , res );
1203
} else {
1204
1205
monitor_printf ( mon , "no function defined to set boot device list for "
"this architecture \n " );
1206
1207
1208
}
}
1209
static void do_system_reset ( Monitor * mon )
1210
1211
1212
1213
{
qemu_system_reset_request ();
}
1214
static void do_system_powerdown ( Monitor * mon )
1215
1216
1217
1218
{
qemu_system_powerdown_request ();
}
1219
# if defined ( TARGET_I386 )
1220
static void print_pte ( Monitor * mon , uint32_t addr , uint32_t pte , uint32_t mask )
1221
{
1222
1223
1224
1225
1226
1227
1228
1229
1230
1231
1232
monitor_printf ( mon , "%08x: %08x %c%c%c%c%c%c%c%c \n " ,
addr ,
pte & mask ,
pte & PG_GLOBAL_MASK ? 'G' : '-' ,
pte & PG_PSE_MASK ? 'P' : '-' ,
pte & PG_DIRTY_MASK ? 'D' : '-' ,
pte & PG_ACCESSED_MASK ? 'A' : '-' ,
pte & PG_PCD_MASK ? 'C' : '-' ,
pte & PG_PWT_MASK ? 'T' : '-' ,
pte & PG_USER_MASK ? 'U' : '-' ,
pte & PG_RW_MASK ? 'W' : '-' );
1233
1234
}
1235
static void tlb_info ( Monitor * mon )
1236
{
1237
CPUState * env ;
1238
1239
1240
int l1 , l2 ;
uint32_t pgd , pde , pte ;
1241
1242
1243
1244
env = mon_get_cpu ();
if ( ! env )
return ;
1245
if ( ! ( env -> cr [ 0 ] & CR0_PG_MASK )) {
1246
monitor_printf ( mon , "PG disabled \n " );
1247
1248
1249
1250
1251
1252
1253
1254
return ;
}
pgd = env -> cr [ 3 ] & ~ 0xfff ;
for ( l1 = 0 ; l1 < 1024 ; l1 ++ ) {
cpu_physical_memory_read ( pgd + l1 * 4 , ( uint8_t * ) & pde , 4 );
pde = le32_to_cpu ( pde );
if ( pde & PG_PRESENT_MASK ) {
if (( pde & PG_PSE_MASK ) && ( env -> cr [ 4 ] & CR4_PSE_MASK )) {
1255
print_pte ( mon , ( l1 << 22 ), pde , ~ (( 1 << 20 ) - 1 ));
1256
1257
} else {
for ( l2 = 0 ; l2 < 1024 ; l2 ++ ) {
ths
authored
18 years ago
1258
cpu_physical_memory_read (( pde & ~ 0xfff ) + l2 * 4 ,
1259
1260
1261
( uint8_t * ) & pte , 4 );
pte = le32_to_cpu ( pte );
if ( pte & PG_PRESENT_MASK ) {
1262
print_pte ( mon , ( l1 << 22 ) + ( l2 << 12 ),
ths
authored
18 years ago
1263
pte & ~ PG_PSE_MASK ,
1264
1265
1266
1267
1268
1269
1270
1271
~ 0xfff );
}
}
}
}
}
}
1272
static void mem_print ( Monitor * mon , uint32_t * pstart , int * plast_prot ,
1273
1274
uint32_t end , int prot )
{
1275
1276
1277
int prot1 ;
prot1 = * plast_prot ;
if ( prot != prot1 ) {
1278
if ( * pstart != - 1 ) {
1279
1280
1281
1282
1283
monitor_printf ( mon , "%08x-%08x %08x %c%c%c \n " ,
* pstart , end , end - * pstart ,
prot1 & PG_USER_MASK ? 'u' : '-' ,
'r' ,
prot1 & PG_RW_MASK ? 'w' : '-' );
1284
1285
1286
1287
1288
1289
1290
1291
1292
}
if ( prot != 0 )
* pstart = end ;
else
* pstart = - 1 ;
* plast_prot = prot ;
}
}
1293
static void mem_info ( Monitor * mon )
1294
{
1295
CPUState * env ;
1296
1297
1298
int l1 , l2 , prot , last_prot ;
uint32_t pgd , pde , pte , start , end ;
1299
1300
1301
1302
env = mon_get_cpu ();
if ( ! env )
return ;
1303
if ( ! ( env -> cr [ 0 ] & CR0_PG_MASK )) {
1304
monitor_printf ( mon , "PG disabled \n " );
1305
1306
1307
1308
1309
1310
1311
1312
1313
1314
1315
1316
return ;
}
pgd = env -> cr [ 3 ] & ~ 0xfff ;
last_prot = 0 ;
start = - 1 ;
for ( l1 = 0 ; l1 < 1024 ; l1 ++ ) {
cpu_physical_memory_read ( pgd + l1 * 4 , ( uint8_t * ) & pde , 4 );
pde = le32_to_cpu ( pde );
end = l1 << 22 ;
if ( pde & PG_PRESENT_MASK ) {
if (( pde & PG_PSE_MASK ) && ( env -> cr [ 4 ] & CR4_PSE_MASK )) {
prot = pde & ( PG_USER_MASK | PG_RW_MASK | PG_PRESENT_MASK );
1317
mem_print ( mon , & start , & last_prot , end , prot );
1318
1319
} else {
for ( l2 = 0 ; l2 < 1024 ; l2 ++ ) {
ths
authored
18 years ago
1320
cpu_physical_memory_read (( pde & ~ 0xfff ) + l2 * 4 ,
1321
1322
1323
1324
1325
1326
1327
1328
( uint8_t * ) & pte , 4 );
pte = le32_to_cpu ( pte );
end = ( l1 << 22 ) + ( l2 << 12 );
if ( pte & PG_PRESENT_MASK ) {
prot = pte & ( PG_USER_MASK | PG_RW_MASK | PG_PRESENT_MASK );
} else {
prot = 0 ;
}
1329
mem_print ( mon , & start , & last_prot , end , prot );
1330
1331
1332
1333
}
}
} else {
prot = 0 ;
1334
mem_print ( mon , & start , & last_prot , end , prot );
1335
1336
1337
1338
1339
}
}
}
# endif
1340
1341
# if defined ( TARGET_SH4 )
1342
static void print_tlb ( Monitor * mon , int idx , tlb_t * tlb )
1343
{
1344
1345
1346
1347
1348
1349
1350
1351
monitor_printf ( mon , " tlb%i: \t "
"asid=%hhu vpn=%x \t ppn=%x \t sz=%hhu size=%u \t "
"v=%hhu shared=%hhu cached=%hhu prot=%hhu "
"dirty=%hhu writethrough=%hhu \n " ,
idx ,
tlb -> asid , tlb -> vpn , tlb -> ppn , tlb -> sz , tlb -> size ,
tlb -> v , tlb -> sh , tlb -> c , tlb -> pr ,
tlb -> d , tlb -> wt );
1352
1353
}
1354
static void tlb_info ( Monitor * mon )
1355
1356
1357
1358
{
CPUState * env = mon_get_cpu ();
int i ;
1359
monitor_printf ( mon , "ITLB: \n " );
1360
for ( i = 0 ; i < ITLB_SIZE ; i ++ )
1361
1362
print_tlb ( mon , i , & env -> itlb [ i ]);
monitor_printf ( mon , "UTLB: \n " );
1363
for ( i = 0 ; i < UTLB_SIZE ; i ++ )
1364
print_tlb ( mon , i , & env -> utlb [ i ]);
1365
1366
1367
1368
}
# endif
1369
static void do_info_kqemu ( Monitor * mon )
1370
1371
{
# ifdef USE_KQEMU
1372
CPUState * env ;
1373
1374
int val ;
val = 0 ;
1375
1376
env = mon_get_cpu ();
if ( ! env ) {
1377
monitor_printf ( mon , "No cpu initialized yet" );
1378
1379
1380
return ;
}
val = env -> kqemu_enabled ;
1381
monitor_printf ( mon , "kqemu support: " );
1382
1383
1384
switch ( val ) {
default :
case 0 :
1385
monitor_printf ( mon , "disabled \n " );
1386
1387
break ;
case 1 :
1388
monitor_printf ( mon , "enabled for user code \n " );
1389
1390
break ;
case 2 :
1391
monitor_printf ( mon , "enabled for user and kernel code \n " );
1392
1393
break ;
}
1394
# else
1395
monitor_printf ( mon , "kqemu support: not compiled \n " );
1396
# endif
ths
authored
18 years ago
1397
}
1398
1399
static void do_info_kvm ( Monitor * mon )
1400
1401
{
# ifdef CONFIG_KVM
1402
monitor_printf ( mon , "kvm support: " );
1403
if ( kvm_enabled ())
1404
monitor_printf ( mon , "enabled \n " );
1405
else
1406
monitor_printf ( mon , "disabled \n " );
1407
# else
1408
monitor_printf ( mon , "kvm support: not compiled \n " );
1409
1410
1411
# endif
}
1412
1413
1414
1415
1416
1417
1418
1419
1420
1421
# ifdef CONFIG_PROFILER
int64_t kqemu_time ;
int64_t qemu_time ;
int64_t kqemu_exec_count ;
int64_t dev_time ;
int64_t kqemu_ret_int_count ;
int64_t kqemu_ret_excp_count ;
int64_t kqemu_ret_intr_count ;
1422
static void do_info_profile ( Monitor * mon )
1423
1424
1425
1426
1427
{
int64_t total ;
total = qemu_time ;
if ( total == 0 )
total = 1 ;
1428
1429
1430
1431
1432
1433
1434
1435
1436
1437
1438
1439
1440
monitor_printf ( mon , "async time %" PRId64 " (%0.3f) \n " ,
dev_time , dev_time / ( double ) ticks_per_sec );
monitor_printf ( mon , "qemu time %" PRId64 " (%0.3f) \n " ,
qemu_time , qemu_time / ( double ) ticks_per_sec );
monitor_printf ( mon , "kqemu time %" PRId64 " (%0.3f %0.1f%%) count=%"
PRId64 " int=%" PRId64 " excp=%" PRId64 " intr=%"
PRId64 " \n " ,
kqemu_time , kqemu_time / ( double ) ticks_per_sec ,
kqemu_time / ( double ) total * 100 . 0 ,
kqemu_exec_count ,
kqemu_ret_int_count ,
kqemu_ret_excp_count ,
kqemu_ret_intr_count );
1441
1442
1443
1444
1445
1446
1447
1448
1449
1450
1451
1452
qemu_time = 0 ;
kqemu_time = 0 ;
kqemu_exec_count = 0 ;
dev_time = 0 ;
kqemu_ret_int_count = 0 ;
kqemu_ret_excp_count = 0 ;
kqemu_ret_intr_count = 0 ;
# ifdef USE_KQEMU
kqemu_record_dump ();
# endif
}
# else
1453
static void do_info_profile ( Monitor * mon )
1454
{
1455
monitor_printf ( mon , "Internal profiler not compiled \n " );
1456
1457
1458
}
# endif
1459
1460
1461
/* Capture support */
static LIST_HEAD ( capture_list_head , CaptureState ) capture_head ;
1462
static void do_info_capture ( Monitor * mon )
1463
1464
1465
1466
1467
{
int i ;
CaptureState * s ;
for ( s = capture_head . lh_first , i = 0 ; s ; s = s -> entries . le_next , ++ i ) {
1468
monitor_printf ( mon , "[%d]: " , i );
1469
1470
1471
1472
s -> ops . info ( s -> opaque );
}
}
1473
static void do_stop_capture ( Monitor * mon , int n )
1474
1475
1476
1477
1478
1479
1480
1481
1482
1483
1484
1485
1486
1487
1488
{
int i ;
CaptureState * s ;
for ( s = capture_head . lh_first , i = 0 ; s ; s = s -> entries . le_next , ++ i ) {
if ( i == n ) {
s -> ops . destroy ( s -> opaque );
LIST_REMOVE ( s , entries );
qemu_free ( s );
return ;
}
}
}
# ifdef HAS_AUDIO
1489
1490
1491
1492
static void do_wav_capture ( Monitor * mon , const char * path ,
int has_freq , int freq ,
int has_bits , int bits ,
int has_channels , int nchannels )
1493
1494
1495
1496
1497
1498
1499
1500
1501
1502
{
CaptureState * s ;
s = qemu_mallocz ( sizeof ( * s ));
freq = has_freq ? freq : 44100 ;
bits = has_bits ? bits : 16 ;
nchannels = has_channels ? nchannels : 2 ;
if ( wav_start_capture ( s , path , freq , bits , nchannels )) {
1503
monitor_printf ( mon , "Faied to add wave capture \n " );
1504
1505
1506
1507
1508
1509
qemu_free ( s );
}
LIST_INSERT_HEAD ( & capture_head , s , entries );
}
# endif
1510
# if defined ( TARGET_I386 )
1511
static void do_inject_nmi ( Monitor * mon , int cpu_index )
1512
1513
1514
1515
1516
1517
1518
1519
1520
1521
1522
{
CPUState * env ;
for ( env = first_cpu ; env != NULL ; env = env -> next_cpu )
if ( env -> cpu_index == cpu_index ) {
cpu_interrupt ( env , CPU_INTERRUPT_NMI );
break ;
}
}
# endif
1523
static void do_info_status ( Monitor * mon )
1524
{
1525
1526
1527
1528
1529
1530
1531
if ( vm_running ) {
if ( singlestep ) {
monitor_printf ( mon , "VM status: running (single step mode) \n " );
} else {
monitor_printf ( mon , "VM status: running \n " );
}
} else
1532
monitor_printf ( mon , "VM status: paused \n " );
1533
1534
1535
}
1536
static void do_balloon ( Monitor * mon , int value )
1537
1538
1539
1540
1541
{
ram_addr_t target = value ;
qemu_balloon ( target << 20 );
}
1542
static void do_info_balloon ( Monitor * mon )
1543
1544
1545
1546
{
ram_addr_t actual ;
actual = qemu_balloon_status ();
1547
if ( kvm_enabled () && ! kvm_has_sync_mmu ())
1548
1549
monitor_printf ( mon , "Using KVM without synchronous MMU, "
"ballooning disabled \n " );
1550
else if ( actual == 0 )
1551
monitor_printf ( mon , "Ballooning not activated in VM \n " );
1552
else
1553
monitor_printf ( mon , "balloon: actual=%d \n " , ( int )( actual >> 20 ));
1554
1555
}
1556
1557
static void do_acl ( Monitor * mon ,
const char * command ,
1558
1559
1560
1561
const char * aclname ,
const char * match ,
int has_index ,
int index )
1562
1563
1564
1565
1566
{
qemu_acl * acl ;
acl = qemu_acl_find ( aclname );
if ( ! acl ) {
1567
1568
monitor_printf ( mon , "acl: unknown list '%s' \n " , aclname );
return ;
1569
1570
1571
}
if ( strcmp ( command , "show" ) == 0 ) {
1572
1573
1574
int i = 0 ;
qemu_acl_entry * entry ;
monitor_printf ( mon , "policy: %s \n " ,
1575
acl -> defaultDeny ? "deny" : "allow" );
1576
1577
1578
TAILQ_FOREACH ( entry , & acl -> entries , next ) {
i ++ ;
monitor_printf ( mon , "%d: %s %s \n " , i ,
1579
1580
entry -> deny ? "deny" : "allow" ,
entry -> match );
1581
}
1582
} else if ( strcmp ( command , "reset" ) == 0 ) {
1583
1584
qemu_acl_reset ( acl );
monitor_printf ( mon , "acl: removed all rules \n " );
1585
} else if ( strcmp ( command , "policy" ) == 0 ) {
1586
1587
1588
1589
1590
1591
1592
1593
1594
1595
1596
1597
1598
1599
if ( ! match ) {
monitor_printf ( mon , "acl: missing policy parameter \n " );
return ;
}
if ( strcmp ( match , "allow" ) == 0 ) {
acl -> defaultDeny = 0 ;
monitor_printf ( mon , "acl: policy set to 'allow' \n " );
} else if ( strcmp ( match , "deny" ) == 0 ) {
acl -> defaultDeny = 1 ;
monitor_printf ( mon , "acl: policy set to 'deny' \n " );
} else {
monitor_printf ( mon , "acl: unknown policy '%s', expected 'deny' or 'allow' \n " , match );
}
1600
} else if (( strcmp ( command , "allow" ) == 0 ) ||
1601
1602
1603
1604
1605
1606
1607
1608
1609
1610
1611
1612
1613
1614
1615
1616
1617
( strcmp ( command , "deny" ) == 0 )) {
int deny = strcmp ( command , "deny" ) == 0 ? 1 : 0 ;
int ret ;
if ( ! match ) {
monitor_printf ( mon , "acl: missing match parameter \n " );
return ;
}
if ( has_index )
ret = qemu_acl_insert ( acl , deny , match , index );
else
ret = qemu_acl_append ( acl , deny , match );
if ( ret < 0 )
monitor_printf ( mon , "acl: unable to add acl entry \n " );
else
monitor_printf ( mon , "acl: added rule at position %d \n " , ret );
1618
} else if ( strcmp ( command , "remove" ) == 0 ) {
1619
1620
1621
1622
1623
1624
1625
1626
1627
1628
1629
1630
int ret ;
if ( ! match ) {
monitor_printf ( mon , "acl: missing match parameter \n " );
return ;
}
ret = qemu_acl_remove ( acl , match );
if ( ret < 0 )
monitor_printf ( mon , "acl: no matching acl entry \n " );
else
monitor_printf ( mon , "acl: removed rule at position %d \n " , ret );
1631
} else {
1632
monitor_printf ( mon , "acl: unknown command '%s' \n " , command );
1633
1634
1635
}
}
1636
/* Please update qemu-doc.texi when adding or changing commands */
1637
1638
static const mon_cmd_t mon_cmds [] = {
{ "help|?" , "s?" , help_cmd ,
1639
"[cmd]" , "show the help" },
ths
authored
18 years ago
1640
{ "commit" , "s" , do_commit ,
1641
"device|all" , "commit changes to the disk images (if -snapshot is used) or backing files" },
1642
{ "info" , "s?" , do_info ,
1643
"subcommand" , "show various information about the system state" },
1644
{ "q|quit" , "" , do_quit ,
1645
"" , "quit the emulator" },
1646
{ "eject" , "-fB" , do_eject ,
ths
authored
18 years ago
1647
"[-f] device" , "eject a removable medium (use -f to force it)" },
1648
1649
{ "change" , "BFs?" , do_change ,
"device filename [format]" , "change a removable medium, optional format" },
ths
authored
18 years ago
1650
{ "screendump" , "F" , do_screen_dump ,
1651
"filename" , "save screen into PPM image 'filename'" },
1652
{ "logfile" , "F" , do_logfile ,
1653
"filename" , "output logs to 'filename'" },
1654
{ "log" , "s" , do_log ,
ths
authored
18 years ago
1655
"item1[,...]" , "activate logging of the specified items to '/tmp/qemu.log'" },
1656
{ "savevm" , "s?" , do_savevm ,
ths
authored
18 years ago
1657
"tag|id" , "save a VM snapshot. If no tag or id are provided, a new snapshot is created" },
1658
{ "loadvm" , "s" , do_loadvm ,
ths
authored
18 years ago
1659
"tag|id" , "restore a VM snapshot from its tag or id" },
1660
{ "delvm" , "s" , do_delvm ,
ths
authored
18 years ago
1661
"tag|id" , "delete a VM snapshot from its tag or id" },
1662
1663
{ "singlestep" , "s?" , do_singlestep ,
"[on|off]" , "run emulation in singlestep mode or switch to normal mode" , },
ths
authored
18 years ago
1664
{ "stop" , "" , do_stop ,
1665
"" , "stop emulation" , },
ths
authored
18 years ago
1666
{ "c|cont" , "" , do_cont ,
1667
"" , "resume emulation" , },
1668
# ifdef CONFIG_GDBSTUB
ths
authored
18 years ago
1669
{ "gdbserver" , "s?" , do_gdbserver ,
1670
"[port]" , "start gdbserver session (default port=1234)" , },
1671
# endif
ths
authored
18 years ago
1672
{ "x" , "/l" , do_memory_dump ,
1673
"/fmt addr" , "virtual memory dump starting at 'addr'" , },
ths
authored
18 years ago
1674
{ "xp" , "/l" , do_physical_memory_dump ,
1675
"/fmt addr" , "physical memory dump starting at 'addr'" , },
ths
authored
18 years ago
1676
{ "p|print" , "/l" , do_print ,
1677
"/fmt expr" , "print expression value (use $reg for CPU register access)" , },
ths
authored
18 years ago
1678
{ "i" , "/ii." , do_ioport_read ,
1679
1680
"/fmt addr" , "I/O port read" },
1681
1682
{ "sendkey" , "si?" , do_sendkey ,
"keys [hold_ms]" , "send keys to the VM (e.g. 'sendkey ctrl-alt-f1', default hold time=100 ms)" },
ths
authored
18 years ago
1683
{ "system_reset" , "" , do_system_reset ,
1684
"" , "reset the system" },
ths
authored
18 years ago
1685
{ "system_powerdown" , "" , do_system_powerdown ,
1686
"" , "send system power down event" },
ths
authored
18 years ago
1687
{ "sum" , "ii" , do_sum ,
1688
"addr size" , "compute the checksum of a memory region" },
1689
1690
1691
1692
{ "usb_add" , "s" , do_usb_add ,
"device" , "add USB device (e.g. 'host:bus.addr' or 'host:vendor_id:product_id')" },
{ "usb_del" , "s" , do_usb_del ,
"device" , "remove USB device 'bus.addr'" },
ths
authored
18 years ago
1693
{ "cpu" , "i" , do_cpu_set ,
1694
"index" , "set the default CPU" },
ths
authored
18 years ago
1695
{ "mouse_move" , "sss?" , do_mouse_move ,
1696
"dx dy [dz]" , "send mouse move events" },
ths
authored
18 years ago
1697
{ "mouse_button" , "i" , do_mouse_button ,
1698
"state" , "change mouse button state (1=L, 2=M, 4=R)" },
ths
authored
18 years ago
1699
1700
{ "mouse_set" , "i" , do_mouse_set ,
"index" , "set which mouse device receives events" },
1701
1702
1703
1704
1705
# ifdef HAS_AUDIO
{ "wavcapture" , "si?i?i?" , do_wav_capture ,
"path [frequency bits channels]" ,
"capture audio to a wave file (default frequency=44100 bits=16 channels=2)" },
# endif
1706
1707
{ "stopcapture" , "i" , do_stop_capture ,
"capture index" , "stop capture" },
ths
authored
18 years ago
1708
{ "memsave" , "lis" , do_memory_save ,
1709
"addr size file" , "save to disk virtual memory dump starting at 'addr' of size 'size'" , },
1710
1711
{ "pmemsave" , "lis" , do_physical_memory_save ,
"addr size file" , "save to disk physical memory dump starting at 'addr' of size 'size'" , },
1712
1713
{ "boot_set" , "s" , do_boot_set ,
"bootdevice" , "define new values for the boot device list" },
1714
1715
1716
1717
# if defined ( TARGET_I386 )
{ "nmi" , "i" , do_inject_nmi ,
"cpu" , "inject an NMI on the given CPU" , },
# endif
1718
1719
1720
1721
1722
1723
{ "migrate" , "-ds" , do_migrate ,
"[-d] uri" , "migrate to URI (using -d to not wait for completion)" },
{ "migrate_cancel" , "" , do_migrate_cancel ,
"" , "cancel the current VM migration" },
{ "migrate_set_speed" , "s" , do_migrate_set_speed ,
"value" , "set maximum speed (in bytes) for migrations" },
1724
1725
1726
1727
1728
1729
1730
1731
1732
1733
1734
1735
1736
1737
# if defined ( TARGET_I386 )
{ "drive_add" , "ss" , drive_hot_add , "pci_addr=[[<domain>:]<bus>:]<slot> \n "
"[file=file][,if=type][,bus=n] \n "
"[,unit=m][,media=d][index=i] \n "
"[,cyls=c,heads=h,secs=s[,trans=t]] \n "
"[snapshot=on|off][,cache=on|off]" ,
"add drive to PCI storage controller" },
{ "pci_add" , "sss" , pci_device_hot_add , "pci_addr=auto|[[<domain>:]<bus>:]<slot> nic|storage [[vlan=n][,macaddr=addr][,model=type]] [file=file][,if=type][,bus=nr]..." , "hot-add PCI device" },
{ "pci_del" , "s" , pci_device_hot_remove , "pci_addr=[[<domain>:]<bus>:]<slot>" , "hot remove PCI device" },
{ "host_net_add" , "ss" , net_host_device_add ,
"[tap,user,socket,vde] options" , "add host VLAN client" },
{ "host_net_remove" , "is" , net_host_device_remove ,
"vlan_id name" , "remove host VLAN client" },
# endif
1738
1739
{ "balloon" , "i" , do_balloon ,
"target" , "request VM to change it's memory allocation (in MB)" },
1740
1741
{ "set_link" , "ss" , do_set_link ,
"name [up|down]" , "change the link status of a network adapter" },
1742
1743
1744
1745
1746
1747
{ "acl" , "sss?i?" , do_acl , "<command> <aclname> [<match>] [<index>] \n " ,
"acl show vnc.username \n "
"acl policy vnc.username deny \n "
"acl allow vnc.username fred \n "
"acl deny vnc.username bob \n "
"acl reset vnc.username \n " },
ths
authored
18 years ago
1748
{ NULL , NULL , },
1749
1750
};
1751
/* Please update qemu-doc.texi when adding or changing commands */
1752
static const mon_cmd_t info_cmds [] = {
1753
{ "version" , "" , do_info_version ,
1754
"" , "show the version of QEMU" },
1755
{ "network" , "" , do_info_network ,
1756
"" , "show the network state" },
1757
1758
{ "chardev" , "" , qemu_chr_info ,
"" , "show the character devices" },
1759
{ "block" , "" , bdrv_info ,
1760
"" , "show the block devices" },
1761
{ "blockstats" , "" , bdrv_info_stats ,
ths
authored
17 years ago
1762
"" , "show block device statistics" },
1763
1764
{ "registers" , "" , do_info_registers ,
"" , "show the cpu registers" },
1765
1766
{ "cpus" , "" , do_info_cpus ,
"" , "show infos for each CPU" },
1767
1768
{ "history" , "" , do_info_history ,
"" , "show the command line history" , },
1769
1770
{ "irq" , "" , irq_info ,
"" , "show the interrupts statistics (if available)" , },
1771
1772
{ "pic" , "" , pic_info ,
"" , "show i8259 (PIC) state" , },
1773
1774
{ "pci" , "" , pci_info ,
"" , "show PCI info" , },
1775
# if defined ( TARGET_I386 ) || defined ( TARGET_SH4 )
1776
1777
{ "tlb" , "" , tlb_info ,
"" , "show virtual to physical memory mappings" , },
1778
1779
# endif
# if defined ( TARGET_I386 )
1780
1781
{ "mem" , "" , mem_info ,
"" , "show the active virtual memory mappings" , },
1782
1783
{ "hpet" , "" , do_info_hpet ,
"" , "show state of HPET" , },
1784
# endif
1785
1786
{ "jit" , "" , do_info_jit ,
"" , "show dynamic compiler info" , },
1787
{ "kqemu" , "" , do_info_kqemu ,
1788
"" , "show KQEMU information" , },
1789
{ "kvm" , "" , do_info_kvm ,
1790
"" , "show KVM information" , },
1791
1792
1793
1794
{ "usb" , "" , usb_info ,
"" , "show guest USB devices" , },
{ "usbhost" , "" , usb_host_info ,
"" , "show host USB devices" , },
1795
1796
{ "profile" , "" , do_info_profile ,
"" , "show profiling information" , },
1797
{ "capture" , "" , do_info_capture ,
1798
"" , "show capture information" },
1799
{ "snapshots" , "" , do_info_snapshots ,
1800
"" , "show the currently saved VM snapshots" },
1801
1802
{ "status" , "" , do_info_status ,
"" , "show the current VM status (running|paused)" },
1803
1804
{ "pcmcia" , "" , pcmcia_info ,
"" , "show guest PCMCIA status" },
ths
authored
18 years ago
1805
1806
{ "mice" , "" , do_info_mice ,
"" , "show which guest mouse is receiving events" },
1807
1808
{ "vnc" , "" , do_info_vnc ,
"" , "show the vnc server status" },
ths
authored
18 years ago
1809
1810
{ "name" , "" , do_info_name ,
"" , "show the current VM name" },
1811
1812
{ "uuid" , "" , do_info_uuid ,
"" , "show the current VM UUID" },
1813
1814
1815
1816
# if defined ( TARGET_PPC )
{ "cpustats" , "" , do_info_cpu_stats ,
"" , "show CPU statistics" , },
# endif
1817
1818
1819
1820
# if defined ( CONFIG_SLIRP )
{ "slirp" , "" , do_info_slirp ,
"" , "show SLIRP statistics" , },
# endif
1821
{ "migrate" , "" , do_info_migrate , "" , "show migration status" },
1822
1823
{ "balloon" , "" , do_info_balloon ,
"" , "show balloon information" },
1824
1825
1826
{ NULL , NULL , },
};
1827
1828
1829
1830
1831
/*******************************************************************/
static const char * pch ;
static jmp_buf expr_env ;
1832
1833
1834
# define MD_TLONG 0
# define MD_I32 1
1835
1836
1837
typedef struct MonitorDef {
const char * name ;
int offset ;
1838
target_long ( * get_value )( const struct MonitorDef * md , int val );
1839
int type ;
1840
1841
} MonitorDef ;
1842
# if defined ( TARGET_I386 )
1843
static target_long monitor_get_pc ( const struct MonitorDef * md , int val )
1844
{
1845
1846
1847
1848
CPUState * env = mon_get_cpu ();
if ( ! env )
return 0 ;
return env -> eip + env -> segs [ R_CS ]. base ;
1849
1850
1851
}
# endif
1852
# if defined ( TARGET_PPC )
1853
static target_long monitor_get_ccr ( const struct MonitorDef * md , int val )
1854
{
1855
CPUState * env = mon_get_cpu ();
1856
1857
1858
unsigned int u ;
int i ;
1859
1860
1861
if ( ! env )
return 0 ;
1862
1863
u = 0 ;
for ( i = 0 ; i < 8 ; i ++ )
1864
u |= env -> crf [ i ] << ( 32 - ( 4 * i ));
1865
1866
1867
1868
return u ;
}
1869
static target_long monitor_get_msr ( const struct MonitorDef * md , int val )
1870
{
1871
1872
1873
CPUState * env = mon_get_cpu ();
if ( ! env )
return 0 ;
1874
return env -> msr ;
1875
1876
}
1877
static target_long monitor_get_xer ( const struct MonitorDef * md , int val )
1878
{
1879
1880
1881
CPUState * env = mon_get_cpu ();
if ( ! env )
return 0 ;
1882
return env -> xer ;
1883
}
1884
1885
static target_long monitor_get_decr ( const struct MonitorDef * md , int val )
1886
{
1887
1888
1889
1890
CPUState * env = mon_get_cpu ();
if ( ! env )
return 0 ;
return cpu_ppc_load_decr ( env );
1891
1892
}
1893
static target_long monitor_get_tbu ( const struct MonitorDef * md , int val )
1894
{
1895
1896
1897
1898
CPUState * env = mon_get_cpu ();
if ( ! env )
return 0 ;
return cpu_ppc_load_tbu ( env );
1899
1900
}
1901
static target_long monitor_get_tbl ( const struct MonitorDef * md , int val )
1902
{
1903
1904
1905
1906
CPUState * env = mon_get_cpu ();
if ( ! env )
return 0 ;
return cpu_ppc_load_tbl ( env );
1907
}
1908
1909
# endif
1910
# if defined ( TARGET_SPARC )
1911
# ifndef TARGET_SPARC64
1912
static target_long monitor_get_psr ( const struct MonitorDef * md , int val )
1913
{
1914
1915
1916
1917
CPUState * env = mon_get_cpu ();
if ( ! env )
return 0 ;
return GET_PSR ( env );
1918
}
1919
# endif
1920
1921
static target_long monitor_get_reg ( const struct MonitorDef * md , int val )
1922
{
1923
1924
1925
1926
CPUState * env = mon_get_cpu ();
if ( ! env )
return 0 ;
return env -> regwptr [ val ];
1927
1928
1929
}
# endif
1930
static const MonitorDef monitor_defs [] = {
1931
# ifdef TARGET_I386
1932
1933
# define SEG ( name , seg ) \
1934
{ name , offsetof ( CPUState , segs [ seg ]. selector ), NULL , MD_I32 }, \
1935
{ name ".base" , offsetof ( CPUState , segs [ seg ]. base ) }, \
1936
{ name ".limit" , offsetof ( CPUState , segs [ seg ]. limit ), NULL , MD_I32 },
1937
1938
1939
1940
1941
1942
1943
1944
{ "eax" , offsetof ( CPUState , regs [ 0 ]) },
{ "ecx" , offsetof ( CPUState , regs [ 1 ]) },
{ "edx" , offsetof ( CPUState , regs [ 2 ]) },
{ "ebx" , offsetof ( CPUState , regs [ 3 ]) },
{ "esp|sp" , offsetof ( CPUState , regs [ 4 ]) },
{ "ebp|fp" , offsetof ( CPUState , regs [ 5 ]) },
{ "esi" , offsetof ( CPUState , regs [ 6 ]) },
1945
{ "edi" , offsetof ( CPUState , regs [ 7 ]) },
1946
1947
1948
1949
1950
1951
1952
1953
1954
1955
# ifdef TARGET_X86_64
{ "r8" , offsetof ( CPUState , regs [ 8 ]) },
{ "r9" , offsetof ( CPUState , regs [ 9 ]) },
{ "r10" , offsetof ( CPUState , regs [ 10 ]) },
{ "r11" , offsetof ( CPUState , regs [ 11 ]) },
{ "r12" , offsetof ( CPUState , regs [ 12 ]) },
{ "r13" , offsetof ( CPUState , regs [ 13 ]) },
{ "r14" , offsetof ( CPUState , regs [ 14 ]) },
{ "r15" , offsetof ( CPUState , regs [ 15 ]) },
# endif
1956
{ "eflags" , offsetof ( CPUState , eflags ) },
1957
1958
1959
1960
{ "eip" , offsetof ( CPUState , eip ) },
SEG ( "cs" , R_CS )
SEG ( "ds" , R_DS )
SEG ( "es" , R_ES )
1961
SEG ( "ss" , R_SS )
1962
1963
1964
SEG ( "fs" , R_FS )
SEG ( "gs" , R_GS )
{ "pc" , 0 , monitor_get_pc , },
1965
# elif defined ( TARGET_PPC )
1966
/* General purpose registers */
1967
1968
1969
1970
1971
1972
1973
1974
1975
1976
1977
1978
1979
1980
1981
1982
1983
1984
1985
1986
1987
1988
1989
1990
1991
1992
1993
1994
1995
1996
1997
1998
{ "r0" , offsetof ( CPUState , gpr [ 0 ]) },
{ "r1" , offsetof ( CPUState , gpr [ 1 ]) },
{ "r2" , offsetof ( CPUState , gpr [ 2 ]) },
{ "r3" , offsetof ( CPUState , gpr [ 3 ]) },
{ "r4" , offsetof ( CPUState , gpr [ 4 ]) },
{ "r5" , offsetof ( CPUState , gpr [ 5 ]) },
{ "r6" , offsetof ( CPUState , gpr [ 6 ]) },
{ "r7" , offsetof ( CPUState , gpr [ 7 ]) },
{ "r8" , offsetof ( CPUState , gpr [ 8 ]) },
{ "r9" , offsetof ( CPUState , gpr [ 9 ]) },
{ "r10" , offsetof ( CPUState , gpr [ 10 ]) },
{ "r11" , offsetof ( CPUState , gpr [ 11 ]) },
{ "r12" , offsetof ( CPUState , gpr [ 12 ]) },
{ "r13" , offsetof ( CPUState , gpr [ 13 ]) },
{ "r14" , offsetof ( CPUState , gpr [ 14 ]) },
{ "r15" , offsetof ( CPUState , gpr [ 15 ]) },
{ "r16" , offsetof ( CPUState , gpr [ 16 ]) },
{ "r17" , offsetof ( CPUState , gpr [ 17 ]) },
{ "r18" , offsetof ( CPUState , gpr [ 18 ]) },
{ "r19" , offsetof ( CPUState , gpr [ 19 ]) },
{ "r20" , offsetof ( CPUState , gpr [ 20 ]) },
{ "r21" , offsetof ( CPUState , gpr [ 21 ]) },
{ "r22" , offsetof ( CPUState , gpr [ 22 ]) },
{ "r23" , offsetof ( CPUState , gpr [ 23 ]) },
{ "r24" , offsetof ( CPUState , gpr [ 24 ]) },
{ "r25" , offsetof ( CPUState , gpr [ 25 ]) },
{ "r26" , offsetof ( CPUState , gpr [ 26 ]) },
{ "r27" , offsetof ( CPUState , gpr [ 27 ]) },
{ "r28" , offsetof ( CPUState , gpr [ 28 ]) },
{ "r29" , offsetof ( CPUState , gpr [ 29 ]) },
{ "r30" , offsetof ( CPUState , gpr [ 30 ]) },
{ "r31" , offsetof ( CPUState , gpr [ 31 ]) },
1999
2000
2001
2002
2003
2004
2005
2006
2007
2008
2009
2010
2011
2012
2013
2014
2015
2016
2017
2018
2019
2020
2021
2022
2023
2024
2025
2026
2027
2028
2029
2030
2031
2032
2033
/* Floating point registers */
{ "f0" , offsetof ( CPUState , fpr [ 0 ]) },
{ "f1" , offsetof ( CPUState , fpr [ 1 ]) },
{ "f2" , offsetof ( CPUState , fpr [ 2 ]) },
{ "f3" , offsetof ( CPUState , fpr [ 3 ]) },
{ "f4" , offsetof ( CPUState , fpr [ 4 ]) },
{ "f5" , offsetof ( CPUState , fpr [ 5 ]) },
{ "f6" , offsetof ( CPUState , fpr [ 6 ]) },
{ "f7" , offsetof ( CPUState , fpr [ 7 ]) },
{ "f8" , offsetof ( CPUState , fpr [ 8 ]) },
{ "f9" , offsetof ( CPUState , fpr [ 9 ]) },
{ "f10" , offsetof ( CPUState , fpr [ 10 ]) },
{ "f11" , offsetof ( CPUState , fpr [ 11 ]) },
{ "f12" , offsetof ( CPUState , fpr [ 12 ]) },
{ "f13" , offsetof ( CPUState , fpr [ 13 ]) },
{ "f14" , offsetof ( CPUState , fpr [ 14 ]) },
{ "f15" , offsetof ( CPUState , fpr [ 15 ]) },
{ "f16" , offsetof ( CPUState , fpr [ 16 ]) },
{ "f17" , offsetof ( CPUState , fpr [ 17 ]) },
{ "f18" , offsetof ( CPUState , fpr [ 18 ]) },
{ "f19" , offsetof ( CPUState , fpr [ 19 ]) },
{ "f20" , offsetof ( CPUState , fpr [ 20 ]) },
{ "f21" , offsetof ( CPUState , fpr [ 21 ]) },
{ "f22" , offsetof ( CPUState , fpr [ 22 ]) },
{ "f23" , offsetof ( CPUState , fpr [ 23 ]) },
{ "f24" , offsetof ( CPUState , fpr [ 24 ]) },
{ "f25" , offsetof ( CPUState , fpr [ 25 ]) },
{ "f26" , offsetof ( CPUState , fpr [ 26 ]) },
{ "f27" , offsetof ( CPUState , fpr [ 27 ]) },
{ "f28" , offsetof ( CPUState , fpr [ 28 ]) },
{ "f29" , offsetof ( CPUState , fpr [ 29 ]) },
{ "f30" , offsetof ( CPUState , fpr [ 30 ]) },
{ "f31" , offsetof ( CPUState , fpr [ 31 ]) },
{ "fpscr" , offsetof ( CPUState , fpscr ) },
/* Next instruction pointer */
2034
{ "nip|pc" , offsetof ( CPUState , nip ) },
2035
2036
{ "lr" , offsetof ( CPUState , lr ) },
{ "ctr" , offsetof ( CPUState , ctr ) },
2037
{ "decr" , 0 , & monitor_get_decr , },
2038
{ "ccr" , 0 , & monitor_get_ccr , },
2039
/* Machine state register */
2040
2041
{ "msr" , 0 , & monitor_get_msr , },
{ "xer" , 0 , & monitor_get_xer , },
2042
2043
{ "tbu" , 0 , & monitor_get_tbu , },
{ "tbl" , 0 , & monitor_get_tbl , },
2044
2045
2046
2047
2048
# if defined ( TARGET_PPC64 )
/* Address space register */
{ "asr" , offsetof ( CPUState , asr ) },
# endif
/* Segment registers */
2049
2050
2051
2052
2053
2054
2055
2056
2057
2058
2059
2060
2061
2062
2063
2064
2065
2066
{ "sdr1" , offsetof ( CPUState , sdr1 ) },
{ "sr0" , offsetof ( CPUState , sr [ 0 ]) },
{ "sr1" , offsetof ( CPUState , sr [ 1 ]) },
{ "sr2" , offsetof ( CPUState , sr [ 2 ]) },
{ "sr3" , offsetof ( CPUState , sr [ 3 ]) },
{ "sr4" , offsetof ( CPUState , sr [ 4 ]) },
{ "sr5" , offsetof ( CPUState , sr [ 5 ]) },
{ "sr6" , offsetof ( CPUState , sr [ 6 ]) },
{ "sr7" , offsetof ( CPUState , sr [ 7 ]) },
{ "sr8" , offsetof ( CPUState , sr [ 8 ]) },
{ "sr9" , offsetof ( CPUState , sr [ 9 ]) },
{ "sr10" , offsetof ( CPUState , sr [ 10 ]) },
{ "sr11" , offsetof ( CPUState , sr [ 11 ]) },
{ "sr12" , offsetof ( CPUState , sr [ 12 ]) },
{ "sr13" , offsetof ( CPUState , sr [ 13 ]) },
{ "sr14" , offsetof ( CPUState , sr [ 14 ]) },
{ "sr15" , offsetof ( CPUState , sr [ 15 ]) },
/* Too lazy to put BATs and SPRs ... */
2067
2068
2069
2070
2071
2072
2073
2074
2075
2076
2077
2078
2079
2080
2081
2082
2083
2084
2085
2086
2087
2088
2089
2090
2091
2092
2093
2094
2095
2096
2097
2098
2099
2100
2101
2102
# elif defined ( TARGET_SPARC )
{ "g0" , offsetof ( CPUState , gregs [ 0 ]) },
{ "g1" , offsetof ( CPUState , gregs [ 1 ]) },
{ "g2" , offsetof ( CPUState , gregs [ 2 ]) },
{ "g3" , offsetof ( CPUState , gregs [ 3 ]) },
{ "g4" , offsetof ( CPUState , gregs [ 4 ]) },
{ "g5" , offsetof ( CPUState , gregs [ 5 ]) },
{ "g6" , offsetof ( CPUState , gregs [ 6 ]) },
{ "g7" , offsetof ( CPUState , gregs [ 7 ]) },
{ "o0" , 0 , monitor_get_reg },
{ "o1" , 1 , monitor_get_reg },
{ "o2" , 2 , monitor_get_reg },
{ "o3" , 3 , monitor_get_reg },
{ "o4" , 4 , monitor_get_reg },
{ "o5" , 5 , monitor_get_reg },
{ "o6" , 6 , monitor_get_reg },
{ "o7" , 7 , monitor_get_reg },
{ "l0" , 8 , monitor_get_reg },
{ "l1" , 9 , monitor_get_reg },
{ "l2" , 10 , monitor_get_reg },
{ "l3" , 11 , monitor_get_reg },
{ "l4" , 12 , monitor_get_reg },
{ "l5" , 13 , monitor_get_reg },
{ "l6" , 14 , monitor_get_reg },
{ "l7" , 15 , monitor_get_reg },
{ "i0" , 16 , monitor_get_reg },
{ "i1" , 17 , monitor_get_reg },
{ "i2" , 18 , monitor_get_reg },
{ "i3" , 19 , monitor_get_reg },
{ "i4" , 20 , monitor_get_reg },
{ "i5" , 21 , monitor_get_reg },
{ "i6" , 22 , monitor_get_reg },
{ "i7" , 23 , monitor_get_reg },
{ "pc" , offsetof ( CPUState , pc ) },
{ "npc" , offsetof ( CPUState , npc ) },
{ "y" , offsetof ( CPUState , y ) },
2103
# ifndef TARGET_SPARC64
2104
2105
{ "psr" , 0 , & monitor_get_psr , },
{ "wim" , offsetof ( CPUState , wim ) },
2106
# endif
2107
2108
2109
2110
2111
2112
2113
2114
2115
2116
2117
2118
2119
2120
2121
2122
2123
2124
2125
2126
2127
2128
2129
2130
2131
2132
2133
2134
2135
2136
2137
2138
2139
2140
{ "tbr" , offsetof ( CPUState , tbr ) },
{ "fsr" , offsetof ( CPUState , fsr ) },
{ "f0" , offsetof ( CPUState , fpr [ 0 ]) },
{ "f1" , offsetof ( CPUState , fpr [ 1 ]) },
{ "f2" , offsetof ( CPUState , fpr [ 2 ]) },
{ "f3" , offsetof ( CPUState , fpr [ 3 ]) },
{ "f4" , offsetof ( CPUState , fpr [ 4 ]) },
{ "f5" , offsetof ( CPUState , fpr [ 5 ]) },
{ "f6" , offsetof ( CPUState , fpr [ 6 ]) },
{ "f7" , offsetof ( CPUState , fpr [ 7 ]) },
{ "f8" , offsetof ( CPUState , fpr [ 8 ]) },
{ "f9" , offsetof ( CPUState , fpr [ 9 ]) },
{ "f10" , offsetof ( CPUState , fpr [ 10 ]) },
{ "f11" , offsetof ( CPUState , fpr [ 11 ]) },
{ "f12" , offsetof ( CPUState , fpr [ 12 ]) },
{ "f13" , offsetof ( CPUState , fpr [ 13 ]) },
{ "f14" , offsetof ( CPUState , fpr [ 14 ]) },
{ "f15" , offsetof ( CPUState , fpr [ 15 ]) },
{ "f16" , offsetof ( CPUState , fpr [ 16 ]) },
{ "f17" , offsetof ( CPUState , fpr [ 17 ]) },
{ "f18" , offsetof ( CPUState , fpr [ 18 ]) },
{ "f19" , offsetof ( CPUState , fpr [ 19 ]) },
{ "f20" , offsetof ( CPUState , fpr [ 20 ]) },
{ "f21" , offsetof ( CPUState , fpr [ 21 ]) },
{ "f22" , offsetof ( CPUState , fpr [ 22 ]) },
{ "f23" , offsetof ( CPUState , fpr [ 23 ]) },
{ "f24" , offsetof ( CPUState , fpr [ 24 ]) },
{ "f25" , offsetof ( CPUState , fpr [ 25 ]) },
{ "f26" , offsetof ( CPUState , fpr [ 26 ]) },
{ "f27" , offsetof ( CPUState , fpr [ 27 ]) },
{ "f28" , offsetof ( CPUState , fpr [ 28 ]) },
{ "f29" , offsetof ( CPUState , fpr [ 29 ]) },
{ "f30" , offsetof ( CPUState , fpr [ 30 ]) },
{ "f31" , offsetof ( CPUState , fpr [ 31 ]) },
2141
2142
2143
2144
2145
2146
2147
2148
2149
2150
2151
2152
2153
2154
2155
2156
2157
2158
2159
2160
2161
2162
2163
2164
2165
2166
# ifdef TARGET_SPARC64
{ "f32" , offsetof ( CPUState , fpr [ 32 ]) },
{ "f34" , offsetof ( CPUState , fpr [ 34 ]) },
{ "f36" , offsetof ( CPUState , fpr [ 36 ]) },
{ "f38" , offsetof ( CPUState , fpr [ 38 ]) },
{ "f40" , offsetof ( CPUState , fpr [ 40 ]) },
{ "f42" , offsetof ( CPUState , fpr [ 42 ]) },
{ "f44" , offsetof ( CPUState , fpr [ 44 ]) },
{ "f46" , offsetof ( CPUState , fpr [ 46 ]) },
{ "f48" , offsetof ( CPUState , fpr [ 48 ]) },
{ "f50" , offsetof ( CPUState , fpr [ 50 ]) },
{ "f52" , offsetof ( CPUState , fpr [ 52 ]) },
{ "f54" , offsetof ( CPUState , fpr [ 54 ]) },
{ "f56" , offsetof ( CPUState , fpr [ 56 ]) },
{ "f58" , offsetof ( CPUState , fpr [ 58 ]) },
{ "f60" , offsetof ( CPUState , fpr [ 60 ]) },
{ "f62" , offsetof ( CPUState , fpr [ 62 ]) },
{ "asi" , offsetof ( CPUState , asi ) },
{ "pstate" , offsetof ( CPUState , pstate ) },
{ "cansave" , offsetof ( CPUState , cansave ) },
{ "canrestore" , offsetof ( CPUState , canrestore ) },
{ "otherwin" , offsetof ( CPUState , otherwin ) },
{ "wstate" , offsetof ( CPUState , wstate ) },
{ "cleanwin" , offsetof ( CPUState , cleanwin ) },
{ "fprs" , offsetof ( CPUState , fprs ) },
# endif
2167
2168
2169
2170
# endif
{ NULL },
};
2171
static void expr_error ( Monitor * mon , const char * msg )
2172
{
2173
monitor_printf ( mon , "%s \n " , msg );
2174
2175
2176
longjmp ( expr_env , 1 );
}
2177
/* return 0 if OK, -1 if not found, -2 if no CPU defined */
2178
static int get_monitor_def ( target_long * pval , const char * name )
2179
{
2180
const MonitorDef * md ;
2181
2182
void * ptr ;
2183
2184
2185
for ( md = monitor_defs ; md -> name != NULL ; md ++ ) {
if ( compare_cmd ( name , md -> name )) {
if ( md -> get_value ) {
2186
* pval = md -> get_value ( md , md -> offset );
2187
} else {
2188
2189
2190
2191
CPUState * env = mon_get_cpu ();
if ( ! env )
return - 2 ;
ptr = ( uint8_t * ) env + md -> offset ;
2192
2193
2194
2195
2196
2197
2198
2199
2200
2201
2202
switch ( md -> type ) {
case MD_I32 :
* pval = * ( int32_t * ) ptr ;
break ;
case MD_TLONG :
* pval = * ( target_long * ) ptr ;
break ;
default :
* pval = 0 ;
break ;
}
2203
2204
2205
2206
2207
2208
2209
2210
2211
2212
2213
}
return 0 ;
}
}
return - 1 ;
}
static void next ( void )
{
if ( pch != '\0' ) {
pch ++ ;
2214
while ( qemu_isspace ( * pch ))
2215
2216
2217
2218
pch ++ ;
}
}
2219
static int64_t expr_sum ( Monitor * mon );
2220
2221
static int64_t expr_unary ( Monitor * mon )
2222
{
2223
int64_t n ;
2224
char * p ;
2225
int ret ;
2226
2227
2228
2229
switch ( * pch ) {
case '+' :
next ();
2230
n = expr_unary ( mon );
2231
2232
2233
break ;
case '-' :
next ();
2234
n = - expr_unary ( mon );
2235
2236
2237
break ;
case '~' :
next ();
2238
n = ~ expr_unary ( mon );
2239
2240
2241
break ;
case '(' :
next ();
2242
n = expr_sum ( mon );
2243
if ( * pch != ')' ) {
2244
expr_error ( mon , "')' expected" );
2245
2246
2247
}
next ();
break ;
2248
2249
2250
case '\'' :
pch ++ ;
if ( * pch == '\0' )
2251
expr_error ( mon , "character constant expected" );
2252
2253
2254
n = * pch ;
pch ++ ;
if ( * pch != '\'' )
2255
expr_error ( mon , "missing terminating \' character" );
2256
2257
next ();
break ;
2258
2259
2260
case '$' :
{
char buf [ 128 ], * q ;
ths
authored
17 years ago
2261
target_long reg = 0 ;
ths
authored
18 years ago
2262
2263
2264
2265
2266
2267
pch ++ ;
q = buf ;
while (( * pch >= 'a' && * pch <= 'z' ) ||
( * pch >= 'A' && * pch <= 'Z' ) ||
( * pch >= '0' && * pch <= '9' ) ||
2268
* pch == '_' || * pch == '.' ) {
2269
2270
2271
2272
if (( q - buf ) < sizeof ( buf ) - 1 )
* q ++ = * pch ;
pch ++ ;
}
2273
while ( qemu_isspace ( * pch ))
2274
2275
pch ++ ;
* q = 0 ;
2276
ret = get_monitor_def ( & reg , buf );
2277
if ( ret == - 1 )
2278
expr_error ( mon , "unknown register" );
ths
authored
18 years ago
2279
else if ( ret == - 2 )
2280
expr_error ( mon , "no cpu defined" );
2281
n = reg ;
2282
2283
2284
}
break ;
case '\0' :
2285
expr_error ( mon , "unexpected end of expression" );
2286
2287
2288
n = 0 ;
break ;
default :
2289
# if TARGET_PHYS_ADDR_BITS > 32
2290
2291
n = strtoull ( pch , & p , 0 );
# else
2292
n = strtoul ( pch , & p , 0 );
2293
# endif
2294
if ( pch == p ) {
2295
expr_error ( mon , "invalid char in expression" );
2296
2297
}
pch = p ;
2298
while ( qemu_isspace ( * pch ))
2299
2300
2301
2302
2303
2304
2305
pch ++ ;
break ;
}
return n ;
}
2306
static int64_t expr_prod ( Monitor * mon )
2307
{
2308
int64_t val , val2 ;
2309
int op ;
ths
authored
18 years ago
2310
2311
val = expr_unary ( mon );
2312
2313
2314
2315
2316
for (;;) {
op = * pch ;
if ( op != '*' && op != '/' && op != '%' )
break ;
next ();
2317
val2 = expr_unary ( mon );
2318
2319
2320
2321
2322
2323
2324
switch ( op ) {
default :
case '*' :
val *= val2 ;
break ;
case '/' :
case '%' :
ths
authored
18 years ago
2325
if ( val2 == 0 )
2326
expr_error ( mon , "division by zero" );
2327
2328
2329
2330
2331
2332
2333
2334
2335
2336
if ( op == '/' )
val /= val2 ;
else
val %= val2 ;
break ;
}
}
return val ;
}
2337
static int64_t expr_logic ( Monitor * mon )
2338
{
2339
int64_t val , val2 ;
2340
int op ;
2341
2342
val = expr_prod ( mon );
2343
2344
2345
2346
2347
for (;;) {
op = * pch ;
if ( op != '&' && op != '|' && op != '^' )
break ;
next ();
2348
val2 = expr_prod ( mon );
2349
2350
2351
2352
2353
2354
2355
2356
2357
2358
2359
2360
2361
2362
2363
2364
switch ( op ) {
default :
case '&' :
val &= val2 ;
break ;
case '|' :
val |= val2 ;
break ;
case '^' :
val ^= val2 ;
break ;
}
}
return val ;
}
2365
static int64_t expr_sum ( Monitor * mon )
2366
{
2367
int64_t val , val2 ;
2368
int op ;
2369
2370
val = expr_logic ( mon );
2371
2372
2373
2374
2375
for (;;) {
op = * pch ;
if ( op != '+' && op != '-' )
break ;
next ();
2376
val2 = expr_logic ( mon );
2377
2378
2379
2380
2381
2382
2383
2384
if ( op == '+' )
val += val2 ;
else
val -= val2 ;
}
return val ;
}
2385
static int get_expr ( Monitor * mon , int64_t * pval , const char ** pp )
2386
2387
2388
2389
2390
2391
{
pch = * pp ;
if ( setjmp ( expr_env )) {
* pp = pch ;
return - 1 ;
}
2392
while ( qemu_isspace ( * pch ))
2393
pch ++ ;
2394
* pval = expr_sum ( mon );
2395
2396
2397
2398
2399
2400
2401
2402
2403
2404
* pp = pch ;
return 0 ;
}
static int get_str ( char * buf , int buf_size , const char ** pp )
{
const char * p ;
char * q ;
int c ;
2405
q = buf ;
2406
p = * pp ;
2407
while ( qemu_isspace ( * p ))
2408
2409
2410
p ++ ;
if ( * p == '\0' ) {
fail :
2411
* q = '\0' ;
2412
2413
2414
2415
2416
2417
2418
2419
2420
2421
2422
2423
2424
2425
2426
2427
2428
2429
2430
2431
2432
2433
2434
2435
2436
2437
2438
2439
2440
2441
2442
2443
2444
2445
2446
* pp = p ;
return - 1 ;
}
if ( * p == '\"' ) {
p ++ ;
while ( * p != '\0' && * p != '\"' ) {
if ( * p == '\\' ) {
p ++ ;
c = * p ++ ;
switch ( c ) {
case 'n' :
c = '\n' ;
break ;
case 'r' :
c = '\r' ;
break ;
case '\\' :
case '\'' :
case '\"' :
break ;
default :
qemu_printf ( "unsupported escape code: ' \\ %c' \n " , c );
goto fail ;
}
if (( q - buf ) < buf_size - 1 ) {
* q ++ = c ;
}
} else {
if (( q - buf ) < buf_size - 1 ) {
* q ++ = * p ;
}
p ++ ;
}
}
if ( * p != '\"' ) {
2447
qemu_printf ( "unterminated string \n " );
2448
2449
2450
2451
goto fail ;
}
p ++ ;
} else {
2452
while ( * p != '\0' && ! qemu_isspace ( * p )) {
2453
2454
2455
2456
2457
2458
if (( q - buf ) < buf_size - 1 ) {
* q ++ = * p ;
}
p ++ ;
}
}
2459
* q = '\0' ;
2460
2461
2462
2463
2464
2465
2466
2467
2468
* pp = p ;
return 0 ;
}
static int default_fmt_format = 'x' ;
static int default_fmt_size = 4 ;
# define MAX_ARGS 16
2469
static void monitor_handle_command ( Monitor * mon , const char * cmdline )
2470
2471
2472
2473
{
const char * p , * pstart , * typestr ;
char * q ;
int c , nb_args , len , i , has_arg ;
2474
const mon_cmd_t * cmd ;
2475
2476
2477
2478
char cmdname [ 256 ];
char buf [ 1024 ];
void * str_allocated [ MAX_ARGS ];
void * args [ MAX_ARGS ];
2479
2480
2481
2482
2483
2484
2485
2486
2487
2488
2489
2490
void ( * handler_0 )( Monitor * mon );
void ( * handler_1 )( Monitor * mon , void * arg0 );
void ( * handler_2 )( Monitor * mon , void * arg0 , void * arg1 );
void ( * handler_3 )( Monitor * mon , void * arg0 , void * arg1 , void * arg2 );
void ( * handler_4 )( Monitor * mon , void * arg0 , void * arg1 , void * arg2 ,
void * arg3 );
void ( * handler_5 )( Monitor * mon , void * arg0 , void * arg1 , void * arg2 ,
void * arg3 , void * arg4 );
void ( * handler_6 )( Monitor * mon , void * arg0 , void * arg1 , void * arg2 ,
void * arg3 , void * arg4 , void * arg5 );
void ( * handler_7 )( Monitor * mon , void * arg0 , void * arg1 , void * arg2 ,
void * arg3 , void * arg4 , void * arg5 , void * arg6 );
2491
2492
# ifdef DEBUG
2493
monitor_printf ( mon , "command='%s' \n " , cmdline );
2494
# endif
ths
authored
18 years ago
2495
2496
/* extract the command name */
2497
p = cmdline ;
2498
q = cmdname ;
2499
while ( qemu_isspace ( * p ))
2500
2501
2502
2503
p ++ ;
if ( * p == '\0' )
return ;
pstart = p ;
2504
while ( * p != '\0' && * p != '/' && ! qemu_isspace ( * p ))
2505
2506
2507
2508
2509
2510
p ++ ;
len = p - pstart ;
if ( len > sizeof ( cmdname ) - 1 )
len = sizeof ( cmdname ) - 1 ;
memcpy ( cmdname , pstart , len );
cmdname [ len ] = '\0' ;
ths
authored
18 years ago
2511
2512
/* find the command */
2513
for ( cmd = mon_cmds ; cmd -> name != NULL ; cmd ++ ) {
ths
authored
18 years ago
2514
if ( compare_cmd ( cmdname , cmd -> name ))
2515
2516
goto found ;
}
2517
monitor_printf ( mon , "unknown command: '%s' \n " , cmdname );
2518
2519
2520
2521
2522
return ;
found :
for ( i = 0 ; i < MAX_ARGS ; i ++ )
str_allocated [ i ] = NULL ;
ths
authored
18 years ago
2523
2524
2525
2526
/* parse the parameters */
typestr = cmd -> args_type ;
nb_args = 0 ;
2527
for (;;) {
2528
2529
c = * typestr ;
if ( c == '\0' )
2530
break ;
2531
2532
2533
typestr ++ ;
switch ( c ) {
case 'F' :
2534
case 'B' :
2535
2536
2537
2538
case 's' :
{
int ret ;
char * str ;
ths
authored
18 years ago
2539
2540
while ( qemu_isspace ( * p ))
2541
2542
2543
2544
2545
2546
2547
2548
2549
2550
2551
p ++ ;
if ( * typestr == '?' ) {
typestr ++ ;
if ( * p == '\0' ) {
/* no optional string: NULL argument */
str = NULL ;
goto add_str ;
}
}
ret = get_str ( buf , sizeof ( buf ), & p );
if ( ret < 0 ) {
2552
2553
switch ( c ) {
case 'F' :
2554
2555
monitor_printf ( mon , "%s: filename expected \n " ,
cmdname );
2556
2557
break ;
case 'B' :
2558
2559
monitor_printf ( mon , "%s: block device name expected \n " ,
cmdname );
2560
2561
break ;
default :
2562
monitor_printf ( mon , "%s: string expected \n " , cmdname );
2563
2564
break ;
}
2565
2566
2567
goto fail ;
}
str = qemu_malloc ( strlen ( buf ) + 1 );
2568
pstrcpy ( str , sizeof ( buf ), buf );
2569
2570
2571
2572
str_allocated [ nb_args ] = str ;
add_str :
if ( nb_args >= MAX_ARGS ) {
error_args :
2573
monitor_printf ( mon , "%s: too many arguments \n " , cmdname );
2574
2575
2576
2577
goto fail ;
}
args [ nb_args ++ ] = str ;
}
2578
break ;
2579
2580
2581
case '/' :
{
int count , format , size ;
ths
authored
18 years ago
2582
2583
while ( qemu_isspace ( * p ))
2584
2585
2586
2587
2588
p ++ ;
if ( * p == '/' ) {
/* format found */
p ++ ;
count = 1 ;
2589
if ( qemu_isdigit ( * p )) {
2590
count = 0 ;
2591
while ( qemu_isdigit ( * p )) {
2592
2593
2594
2595
2596
2597
2598
2599
2600
2601
2602
2603
2604
2605
2606
2607
2608
2609
2610
2611
2612
2613
2614
2615
2616
2617
2618
2619
2620
2621
2622
2623
2624
2625
2626
2627
2628
2629
count = count * 10 + ( * p - '0' );
p ++ ;
}
}
size = - 1 ;
format = - 1 ;
for (;;) {
switch ( * p ) {
case 'o' :
case 'd' :
case 'u' :
case 'x' :
case 'i' :
case 'c' :
format = * p ++ ;
break ;
case 'b' :
size = 1 ;
p ++ ;
break ;
case 'h' :
size = 2 ;
p ++ ;
break ;
case 'w' :
size = 4 ;
p ++ ;
break ;
case 'g' :
case 'L' :
size = 8 ;
p ++ ;
break ;
default :
goto next ;
}
}
next :
2630
if ( * p != '\0' && ! qemu_isspace ( * p )) {
2631
2632
monitor_printf ( mon , "invalid char in format: '%c' \n " ,
* p );
2633
2634
2635
2636
goto fail ;
}
if ( format < 0 )
format = default_fmt_format ;
2637
2638
2639
2640
if ( format != 'i' ) {
/* for 'i', not specifying a size gives -1 as size */
if ( size < 0 )
size = default_fmt_size ;
2641
default_fmt_size = size ;
2642
}
2643
2644
2645
2646
default_fmt_format = format ;
} else {
count = 1 ;
format = default_fmt_format ;
2647
2648
2649
2650
2651
if ( format != 'i' ) {
size = default_fmt_size ;
} else {
size = - 1 ;
}
2652
2653
2654
}
if ( nb_args + 3 > MAX_ARGS )
goto error_args ;
2655
2656
2657
args [ nb_args ++ ] = ( void * )( long ) count ;
args [ nb_args ++ ] = ( void * )( long ) format ;
args [ nb_args ++ ] = ( void * )( long ) size ;
2658
}
2659
break ;
2660
case 'i' :
2661
case 'l' :
2662
{
2663
int64_t val ;
2664
2665
while ( qemu_isspace ( * p ))
2666
p ++ ;
2667
2668
2669
2670
2671
2672
2673
2674
2675
if ( * typestr == '?' || * typestr == '.' ) {
if ( * typestr == '?' ) {
if ( * p == '\0' )
has_arg = 0 ;
else
has_arg = 1 ;
} else {
if ( * p == '.' ) {
p ++ ;
2676
while ( qemu_isspace ( * p ))
2677
2678
2679
2680
2681
2682
p ++ ;
has_arg = 1 ;
} else {
has_arg = 0 ;
}
}
2683
typestr ++ ;
2684
2685
if ( nb_args >= MAX_ARGS )
goto error_args ;
2686
args [ nb_args ++ ] = ( void * )( long ) has_arg ;
2687
2688
2689
2690
2691
2692
2693
if ( ! has_arg ) {
if ( nb_args >= MAX_ARGS )
goto error_args ;
val = - 1 ;
goto add_num ;
}
}
2694
if ( get_expr ( mon , & val , & p ))
2695
2696
goto fail ;
add_num :
2697
2698
2699
if ( c == 'i' ) {
if ( nb_args >= MAX_ARGS )
goto error_args ;
2700
args [ nb_args ++ ] = ( void * )( long ) val ;
2701
2702
2703
} else {
if (( nb_args + 1 ) >= MAX_ARGS )
goto error_args ;
2704
# if TARGET_PHYS_ADDR_BITS > 32
2705
args [ nb_args ++ ] = ( void * )( long )(( val >> 32 ) & 0xffffffff );
2706
2707
2708
# else
args [ nb_args ++ ] = ( void * ) 0 ;
# endif
2709
args [ nb_args ++ ] = ( void * )( long )( val & 0xffffffff );
2710
}
2711
2712
2713
2714
2715
2716
}
break ;
case '-' :
{
int has_option ;
/* option */
ths
authored
18 years ago
2717
2718
2719
2720
c = * typestr ++ ;
if ( c == '\0' )
goto bad_type ;
2721
while ( qemu_isspace ( * p ))
2722
2723
2724
2725
2726
p ++ ;
has_option = 0 ;
if ( * p == '-' ) {
p ++ ;
if ( * p != c ) {
2727
2728
monitor_printf ( mon , "%s: unsupported option -%c \n " ,
cmdname , * p );
2729
2730
2731
2732
2733
2734
2735
goto fail ;
}
p ++ ;
has_option = 1 ;
}
if ( nb_args >= MAX_ARGS )
goto error_args ;
2736
args [ nb_args ++ ] = ( void * )( long ) has_option ;
2737
2738
2739
2740
}
break ;
default :
bad_type :
2741
monitor_printf ( mon , "%s: unknown type '%c' \n " , cmdname , c );
2742
2743
goto fail ;
}
2744
}
2745
/* check that all arguments were parsed */
2746
while ( qemu_isspace ( * p ))
2747
2748
p ++ ;
if ( * p != '\0' ) {
2749
2750
monitor_printf ( mon , "%s: extraneous characters at the end of line \n " ,
cmdname );
2751
goto fail ;
2752
}
2753
2754
2755
switch ( nb_args ) {
case 0 :
2756
handler_0 = cmd -> handler ;
2757
handler_0 ( mon );
2758
2759
break ;
case 1 :
2760
handler_1 = cmd -> handler ;
2761
handler_1 ( mon , args [ 0 ]);
2762
2763
break ;
case 2 :
2764
handler_2 = cmd -> handler ;
2765
handler_2 ( mon , args [ 0 ], args [ 1 ]);
2766
2767
break ;
case 3 :
2768
handler_3 = cmd -> handler ;
2769
handler_3 ( mon , args [ 0 ], args [ 1 ], args [ 2 ]);
2770
2771
break ;
case 4 :
2772
handler_4 = cmd -> handler ;
2773
handler_4 ( mon , args [ 0 ], args [ 1 ], args [ 2 ], args [ 3 ]);
2774
2775
break ;
case 5 :
2776
handler_5 = cmd -> handler ;
2777
handler_5 ( mon , args [ 0 ], args [ 1 ], args [ 2 ], args [ 3 ], args [ 4 ]);
2778
break ;
2779
case 6 :
2780
handler_6 = cmd -> handler ;
2781
handler_6 ( mon , args [ 0 ], args [ 1 ], args [ 2 ], args [ 3 ], args [ 4 ], args [ 5 ]);
2782
break ;
2783
case 7 :
2784
handler_7 = cmd -> handler ;
2785
2786
handler_7 ( mon , args [ 0 ], args [ 1 ], args [ 2 ], args [ 3 ], args [ 4 ], args [ 5 ],
args [ 6 ]);
2787
break ;
2788
default :
2789
monitor_printf ( mon , "unsupported number of arguments: %d \n " , nb_args );
2790
goto fail ;
2791
}
2792
2793
2794
fail :
for ( i = 0 ; i < MAX_ARGS ; i ++ )
qemu_free ( str_allocated [ i ]);
2795
2796
2797
return ;
}
2798
2799
2800
2801
2802
2803
2804
2805
2806
2807
2808
2809
2810
2811
2812
2813
2814
2815
static void cmd_completion ( const char * name , const char * list )
{
const char * p , * pstart ;
char cmd [ 128 ];
int len ;
p = list ;
for (;;) {
pstart = p ;
p = strchr ( p , '|' );
if ( ! p )
p = pstart + strlen ( pstart );
len = p - pstart ;
if ( len > sizeof ( cmd ) - 2 )
len = sizeof ( cmd ) - 2 ;
memcpy ( cmd , pstart , len );
cmd [ len ] = '\0' ;
if ( name [ 0 ] == '\0' || ! strncmp ( name , cmd , strlen ( name ))) {
2816
readline_add_completion ( cur_mon -> rs , cmd );
2817
2818
2819
2820
2821
2822
2823
2824
2825
2826
2827
2828
2829
2830
2831
2832
}
if ( * p == '\0' )
break ;
p ++ ;
}
}
static void file_completion ( const char * input )
{
DIR * ffs ;
struct dirent * d ;
char path [ 1024 ];
char file [ 1024 ], file_prefix [ 1024 ];
int input_path_len ;
const char * p ;
ths
authored
18 years ago
2833
p = strrchr ( input , '/' );
2834
2835
2836
if ( ! p ) {
input_path_len = 0 ;
pstrcpy ( file_prefix , sizeof ( file_prefix ), input );
2837
pstrcpy ( path , sizeof ( path ), "." );
2838
2839
2840
2841
2842
2843
2844
2845
2846
} else {
input_path_len = p - input + 1 ;
memcpy ( path , input , input_path_len );
if ( input_path_len > sizeof ( path ) - 1 )
input_path_len = sizeof ( path ) - 1 ;
path [ input_path_len ] = '\0' ;
pstrcpy ( file_prefix , sizeof ( file_prefix ), p + 1 );
}
# ifdef DEBUG_COMPLETION
2847
2848
monitor_printf ( cur_mon , "input='%s' path='%s' prefix='%s' \n " ,
input , path , file_prefix );
2849
2850
2851
2852
2853
2854
2855
2856
2857
2858
2859
# endif
ffs = opendir ( path );
if ( ! ffs )
return ;
for (;;) {
struct stat sb ;
d = readdir ( ffs );
if ( ! d )
break ;
if ( strstart ( d -> d_name , file_prefix , NULL )) {
memcpy ( file , input , input_path_len );
2860
2861
2862
if ( input_path_len < sizeof ( file ))
pstrcpy ( file + input_path_len , sizeof ( file ) - input_path_len ,
d -> d_name );
2863
2864
2865
2866
2867
/* stat the file to find out if it ' s a directory .
* In that case add a slash to speed up typing long paths
*/
stat ( file , & sb ) ;
if ( S_ISDIR ( sb . st_mode ))
2868
pstrcat ( file , sizeof ( file ), "/" ) ;
2869
readline_add_completion ( cur_mon -> rs , file ) ;
2870
2871
2872
2873
2874
}
}
closedir ( ffs ) ;
}
2875
static void block_completion_it ( void * opaque , BlockDriverState * bs )
2876
{
2877
const char * name = bdrv_get_device_name ( bs ) ;
2878
2879
2880
2881
const char * input = opaque ;
if ( input [ 0 ] == '\0' ||
! strncmp ( name , ( char * ) input , strlen ( input ))) {
2882
readline_add_completion ( cur_mon -> rs , name ) ;
2883
2884
2885
2886
2887
2888
2889
2890
2891
2892
2893
2894
2895
2896
}
}
/* NOTE: this parser is an approximate form of the real command parser */
static void parse_cmdline ( const char * cmdline ,
int * pnb_args , char ** args )
{
const char * p ;
int nb_args , ret ;
char buf [ 1024 ] ;
p = cmdline ;
nb_args = 0 ;
for ( ;; ) {
2897
while ( qemu_isspace ( * p ))
2898
2899
2900
2901
2902
2903
2904
2905
2906
2907
2908
2909
2910
2911
p ++ ;
if ( * p == '\0' )
break ;
if ( nb_args >= MAX_ARGS )
break ;
ret = get_str ( buf , sizeof ( buf ), & p ) ;
args [ nb_args ] = qemu_strdup ( buf ) ;
nb_args ++ ;
if ( ret < 0 )
break ;
}
* pnb_args = nb_args ;
}
2912
static void monitor_find_completion ( const char * cmdline )
2913
2914
2915
2916
2917
{
const char * cmdname ;
char * args [ MAX_ARGS ] ;
int nb_args , i , len ;
const char * ptype , * str ;
2918
const mon_cmd_t * cmd ;
2919
const KeyDef * key ;
2920
2921
2922
2923
parse_cmdline ( cmdline , & nb_args , args ) ;
# ifdef DEBUG_COMPLETION
for ( i = 0 ; i < nb_args ; i ++ ) {
2924
monitor_printf ( cur_mon , "arg%d = '%s' \n " , i , ( char * ) args [ i ]) ;
2925
2926
2927
2928
2929
2930
}
# endif
/* if the line ends with a space , it means we want to complete the
next arg */
len = strlen ( cmdline ) ;
2931
if ( len > 0 && qemu_isspace ( cmdline [ len - 1 ])) {
2932
2933
2934
2935
2936
2937
2938
2939
2940
2941
if ( nb_args >= MAX_ARGS )
return ;
args [ nb_args ++ ] = qemu_strdup ( "" ) ;
}
if ( nb_args <= 1 ) {
/* command completion */
if ( nb_args == 0 )
cmdname = "" ;
else
cmdname = args [ 0 ] ;
2942
readline_set_completion_index ( cur_mon -> rs , strlen ( cmdname )) ;
2943
for ( cmd = mon_cmds ; cmd -> name != NULL ; cmd ++ ) {
2944
2945
2946
2947
cmd_completion ( cmdname , cmd -> name ) ;
}
} else {
/* find the command */
2948
for ( cmd = mon_cmds ; cmd -> name != NULL ; cmd ++ ) {
2949
2950
2951
2952
2953
2954
2955
2956
2957
2958
2959
2960
2961
2962
2963
2964
2965
if ( compare_cmd ( args [ 0 ], cmd -> name ))
goto found ;
}
return ;
found :
ptype = cmd -> args_type ;
for ( i = 0 ; i < nb_args - 2 ; i ++ ) {
if ( * ptype != '\0' ) {
ptype ++ ;
while ( * ptype == '?' )
ptype ++ ;
}
}
str = args [ nb_args - 1 ];
switch ( * ptype ) {
case 'F' :
/* file completion */
2966
readline_set_completion_index ( cur_mon -> rs , strlen ( str ));
2967
2968
2969
2970
file_completion ( str );
break ;
case 'B' :
/* block device name completion */
2971
readline_set_completion_index ( cur_mon -> rs , strlen ( str ));
2972
2973
bdrv_iterate ( block_completion_it , ( void * ) str );
break ;
2974
2975
2976
case 's' :
/* XXX: more generic ? */
if ( ! strcmp ( cmd -> name , "info" )) {
2977
readline_set_completion_index ( cur_mon -> rs , strlen ( str ));
2978
2979
2980
for ( cmd = info_cmds ; cmd -> name != NULL ; cmd ++ ) {
cmd_completion ( str , cmd -> name );
}
2981
} else if ( ! strcmp ( cmd -> name , "sendkey" )) {
2982
2983
2984
char * sep = strrchr ( str , '-' );
if ( sep )
str = sep + 1 ;
2985
readline_set_completion_index ( cur_mon -> rs , strlen ( str ));
2986
2987
2988
for ( key = key_defs ; key -> name != NULL ; key ++ ) {
cmd_completion ( str , key -> name );
}
2989
2990
}
break ;
2991
2992
2993
2994
2995
2996
2997
2998
default :
break ;
}
}
for ( i = 0 ; i < nb_args ; i ++ )
qemu_free ( args [ i ]);
}
2999
static int monitor_can_read ( void * opaque )
3000
{
3001
3002
3003
Monitor * mon = opaque ;
return ( mon -> suspend_cnt == 0 ) ? 128 : 0 ;
3004
3005
}
3006
static void monitor_read ( void * opaque , const uint8_t * buf , int size )
3007
{
3008
Monitor * old_mon = cur_mon ;
3009
int i ;
3010
3011
3012
cur_mon = opaque ;
3013
3014
3015
3016
3017
3018
3019
3020
3021
if ( cur_mon -> rs ) {
for ( i = 0 ; i < size ; i ++ )
readline_handle_byte ( cur_mon -> rs , buf [ i ]);
} else {
if ( size == 0 || buf [ size - 1 ] != 0 )
monitor_printf ( cur_mon , "corrupted command \n " );
else
monitor_handle_command ( cur_mon , ( char * ) buf );
}
3022
3023
3024
cur_mon = old_mon ;
}
3025
3026
static void monitor_command_cb ( Monitor * mon , const char * cmdline , void * opaque )
3027
{
3028
monitor_suspend ( mon );
3029
monitor_handle_command ( mon , cmdline );
3030
monitor_resume ( mon );
3031
3032
}
3033
int monitor_suspend ( Monitor * mon )
3034
{
3035
3036
if ( ! mon -> rs )
return - ENOTTY ;
3037
mon -> suspend_cnt ++ ;
3038
return 0 ;
3039
3040
}
3041
void monitor_resume ( Monitor * mon )
3042
{
3043
3044
if ( ! mon -> rs )
return ;
3045
3046
if ( -- mon -> suspend_cnt == 0 )
readline_show_prompt ( mon -> rs );
3047
3048
}
3049
static void monitor_event ( void * opaque , int event )
ths
authored
18 years ago
3050
{
3051
3052
Monitor * mon = opaque ;
3053
3054
3055
3056
3057
3058
3059
3060
3061
3062
3063
3064
3065
switch ( event ) {
case CHR_EVENT_MUX_IN :
readline_restart ( mon -> rs );
monitor_resume ( mon );
monitor_flush ( mon );
break ;
case CHR_EVENT_MUX_OUT :
if ( mon -> suspend_cnt == 0 )
monitor_printf ( mon , " \n " );
monitor_flush ( mon );
monitor_suspend ( mon );
break ;
ths
authored
18 years ago
3066
3067
3068
3069
3070
3071
3072
3073
case CHR_EVENT_RESET :
monitor_printf ( mon , "QEMU %s monitor - type 'help' for more "
"information \n " , QEMU_VERSION );
if ( mon -> chr -> focus == 0 )
readline_show_prompt ( mon -> rs );
break ;
}
ths
authored
18 years ago
3074
3075
}
3076
3077
3078
3079
3080
3081
3082
3083
3084
/*
* Local variables :
* c - indent - level : 4
* c - basic - offset : 4
* tab - width : 8
* End :
*/
3085
void monitor_init ( CharDriverState * chr , int flags )
3086
{
3087
static int is_first_init = 1 ;
3088
Monitor * mon ;
ths
authored
18 years ago
3089
3090
if ( is_first_init ) {
3091
key_timer = qemu_new_timer ( vm_clock , release_keys , NULL );
ths
authored
18 years ago
3092
3093
is_first_init = 0 ;
}
3094
3095
mon = qemu_mallocz ( sizeof ( * mon ));
ths
authored
18 years ago
3096
3097
mon -> chr = chr ;
3098
mon -> flags = flags ;
3099
3100
if ( mon -> chr -> focus != 0 )
mon -> suspend_cnt = 1 ; /* mux'ed monitors start suspended */
3101
3102
3103
3104
if ( flags & MONITOR_USE_READLINE ) {
mon -> rs = readline_init ( mon , monitor_find_completion );
monitor_read_command ( mon , 0 );
}
3105
3106
3107
qemu_chr_add_handlers ( chr , monitor_can_read , monitor_read , monitor_event ,
mon );
3108
3109
LIST_INSERT_HEAD ( & mon_list , mon , entry );
3110
if ( ! cur_mon || ( flags & MONITOR_IS_DEFAULT ))
3111
cur_mon = mon ;
3112
3113
}
3114
static void bdrv_password_cb ( Monitor * mon , const char * password , void * opaque )
3115
{
3116
3117
BlockDriverState * bs = opaque ;
int ret = 0 ;
3118
3119
if ( bdrv_set_key ( bs , password ) != 0 ) {
3120
monitor_printf ( mon , "invalid password \n " );
3121
ret = - EPERM ;
3122
}
3123
3124
if ( mon -> password_completion_cb )
mon -> password_completion_cb ( mon -> password_opaque , ret );
3125
3126
monitor_read_command ( mon , 1 );
3127
}
3128
3129
void monitor_read_bdrv_key_start ( Monitor * mon , BlockDriverState * bs ,
3130
3131
BlockDriverCompletionFunc * completion_cb ,
void * opaque )
3132
{
3133
3134
int err ;
3135
3136
3137
3138
3139
if ( ! bdrv_key_required ( bs )) {
if ( completion_cb )
completion_cb ( opaque , 0 );
return ;
}
3140
3141
3142
monitor_printf ( mon , "%s (%s) is encrypted. \n " , bdrv_get_device_name ( bs ),
bdrv_get_encrypted_filename ( bs ));
3143
3144
3145
mon -> password_completion_cb = completion_cb ;
mon -> password_opaque = opaque ;
3146
3147
3148
3149
3150
err = monitor_read_password ( mon , bdrv_password_cb , bs );
if ( err && completion_cb )
completion_cb ( opaque , err );
3151
}