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5824d651
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1HXCOMM Use DEFHEADING() to define headings in both help text and texi
2HXCOMM Text between STEXI and ETEXI are copied to texi version and
3HXCOMM discarded from C version
ad96090a
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4HXCOMM DEF(option, HAS_ARG/0, opt_enum, opt_help, arch_mask) is used to
5HXCOMM construct option structures, enums and help message for specified
6HXCOMM architectures.
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7HXCOMM HXCOMM can be used for comments, discarded from both texi and C
8
9DEFHEADING(Standard options:)
10STEXI
11@table @option
12ETEXI
13
14DEF("help", 0, QEMU_OPTION_h,
ad96090a 15 "-h or -help display this help and exit\n", QEMU_ARCH_ALL)
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16STEXI
17@item -h
6616b2ad 18@findex -h
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19Display help and exit
20ETEXI
21
9bd7e6d9 22DEF("version", 0, QEMU_OPTION_version,
ad96090a 23 "-version display version information and exit\n", QEMU_ARCH_ALL)
9bd7e6d9
PB
24STEXI
25@item -version
6616b2ad 26@findex -version
9bd7e6d9
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27Display version information and exit
28ETEXI
29
5824d651 30DEF("M", HAS_ARG, QEMU_OPTION_M,
ad96090a 31 "-M machine select emulated machine (-M ? for list)\n", QEMU_ARCH_ALL)
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32STEXI
33@item -M @var{machine}
6616b2ad 34@findex -M
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35Select the emulated @var{machine} (@code{-M ?} for list)
36ETEXI
37
38DEF("cpu", HAS_ARG, QEMU_OPTION_cpu,
ad96090a 39 "-cpu cpu select CPU (-cpu ? for list)\n", QEMU_ARCH_ALL)
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40STEXI
41@item -cpu @var{model}
6616b2ad 42@findex -cpu
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43Select CPU model (-cpu ? for list and additional feature selection)
44ETEXI
45
46DEF("smp", HAS_ARG, QEMU_OPTION_smp,
58a04db1 47 "-smp n[,maxcpus=cpus][,cores=cores][,threads=threads][,sockets=sockets]\n"
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48 " set the number of CPUs to 'n' [default=1]\n"
49 " maxcpus= maximum number of total cpus, including\n"
ca1a8a06 50 " offline CPUs for hotplug, etc\n"
58a04db1
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51 " cores= number of CPU cores on one socket\n"
52 " threads= number of threads on one CPU core\n"
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53 " sockets= number of discrete sockets in the system\n",
54 QEMU_ARCH_ALL)
5824d651 55STEXI
58a04db1 56@item -smp @var{n}[,cores=@var{cores}][,threads=@var{threads}][,sockets=@var{sockets}][,maxcpus=@var{maxcpus}]
6616b2ad 57@findex -smp
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58Simulate an SMP system with @var{n} CPUs. On the PC target, up to 255
59CPUs are supported. On Sparc32 target, Linux limits the number of usable CPUs
60to 4.
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61For the PC target, the number of @var{cores} per socket, the number
62of @var{threads} per cores and the total number of @var{sockets} can be
63specified. Missing values will be computed. If any on the three values is
64given, the total number of CPUs @var{n} can be omitted. @var{maxcpus}
65specifies the maximum number of hotpluggable CPUs.
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66ETEXI
67
268a362c 68DEF("numa", HAS_ARG, QEMU_OPTION_numa,
ad96090a 69 "-numa node[,mem=size][,cpus=cpu[-cpu]][,nodeid=node]\n", QEMU_ARCH_ALL)
268a362c
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70STEXI
71@item -numa @var{opts}
6616b2ad 72@findex -numa
268a362c
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73Simulate a multi node NUMA system. If mem and cpus are omitted, resources
74are split equally.
75ETEXI
76
5824d651 77DEF("fda", HAS_ARG, QEMU_OPTION_fda,
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78 "-fda/-fdb file use 'file' as floppy disk 0/1 image\n", QEMU_ARCH_ALL)
79DEF("fdb", HAS_ARG, QEMU_OPTION_fdb, "", QEMU_ARCH_ALL)
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80STEXI
81@item -fda @var{file}
82@item -fdb @var{file}
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83@findex -fda
84@findex -fdb
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85Use @var{file} as floppy disk 0/1 image (@pxref{disk_images}). You can
86use the host floppy by using @file{/dev/fd0} as filename (@pxref{host_drives}).
87ETEXI
88
89DEF("hda", HAS_ARG, QEMU_OPTION_hda,
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90 "-hda/-hdb file use 'file' as IDE hard disk 0/1 image\n", QEMU_ARCH_ALL)
91DEF("hdb", HAS_ARG, QEMU_OPTION_hdb, "", QEMU_ARCH_ALL)
5824d651 92DEF("hdc", HAS_ARG, QEMU_OPTION_hdc,
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93 "-hdc/-hdd file use 'file' as IDE hard disk 2/3 image\n", QEMU_ARCH_ALL)
94DEF("hdd", HAS_ARG, QEMU_OPTION_hdd, "", QEMU_ARCH_ALL)
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95STEXI
96@item -hda @var{file}
97@item -hdb @var{file}
98@item -hdc @var{file}
99@item -hdd @var{file}
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100@findex -hda
101@findex -hdb
102@findex -hdc
103@findex -hdd
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104Use @var{file} as hard disk 0, 1, 2 or 3 image (@pxref{disk_images}).
105ETEXI
106
107DEF("cdrom", HAS_ARG, QEMU_OPTION_cdrom,
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108 "-cdrom file use 'file' as IDE cdrom image (cdrom is ide1 master)\n",
109 QEMU_ARCH_ALL)
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110STEXI
111@item -cdrom @var{file}
6616b2ad 112@findex -cdrom
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113Use @var{file} as CD-ROM image (you cannot use @option{-hdc} and
114@option{-cdrom} at the same time). You can use the host CD-ROM by
115using @file{/dev/cdrom} as filename (@pxref{host_drives}).
116ETEXI
117
118DEF("drive", HAS_ARG, QEMU_OPTION_drive,
119 "-drive [file=file][,if=type][,bus=n][,unit=m][,media=d][,index=i]\n"
120 " [,cyls=c,heads=h,secs=s[,trans=t]][,snapshot=on|off]\n"
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121 " [,cache=writethrough|writeback|unsafe|none][,format=f]\n"
122 " [,serial=s][,addr=A][,id=name][,aio=threads|native]\n"
123 " [,readonly=on|off]\n"
ad96090a 124 " use 'file' as a drive image\n", QEMU_ARCH_ALL)
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125STEXI
126@item -drive @var{option}[,@var{option}[,@var{option}[,...]]]
6616b2ad 127@findex -drive
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128
129Define a new drive. Valid options are:
130
b3f046c2 131@table @option
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132@item file=@var{file}
133This option defines which disk image (@pxref{disk_images}) to use with
134this drive. If the filename contains comma, you must double it
135(for instance, "file=my,,file" to use file "my,file").
136@item if=@var{interface}
137This option defines on which type on interface the drive is connected.
138Available types are: ide, scsi, sd, mtd, floppy, pflash, virtio.
139@item bus=@var{bus},unit=@var{unit}
140These options define where is connected the drive by defining the bus number and
141the unit id.
142@item index=@var{index}
143This option defines where is connected the drive by using an index in the list
144of available connectors of a given interface type.
145@item media=@var{media}
146This option defines the type of the media: disk or cdrom.
147@item cyls=@var{c},heads=@var{h},secs=@var{s}[,trans=@var{t}]
148These options have the same definition as they have in @option{-hdachs}.
149@item snapshot=@var{snapshot}
150@var{snapshot} is "on" or "off" and allows to enable snapshot for given drive (see @option{-snapshot}).
151@item cache=@var{cache}
016f5cf6 152@var{cache} is "none", "writeback", "unsafe", or "writethrough" and controls how the host cache is used to access block data.
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153@item aio=@var{aio}
154@var{aio} is "threads", or "native" and selects between pthread based disk I/O and native Linux AIO.
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155@item format=@var{format}
156Specify which disk @var{format} will be used rather than detecting
157the format. Can be used to specifiy format=raw to avoid interpreting
158an untrusted format header.
159@item serial=@var{serial}
160This option specifies the serial number to assign to the device.
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161@item addr=@var{addr}
162Specify the controller's PCI address (if=virtio only).
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163@end table
164
165By default, writethrough caching is used for all block device. This means that
166the host page cache will be used to read and write data but write notification
167will be sent to the guest only when the data has been reported as written by
168the storage subsystem.
169
170Writeback caching will report data writes as completed as soon as the data is
171present in the host page cache. This is safe as long as you trust your host.
172If your host crashes or loses power, then the guest may experience data
c3177288 173corruption.
5824d651 174
c304d317 175The host page cache can be avoided entirely with @option{cache=none}. This will
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176attempt to do disk IO directly to the guests memory. QEMU may still perform
177an internal copy of the data.
178
179Some block drivers perform badly with @option{cache=writethrough}, most notably,
180qcow2. If performance is more important than correctness,
0aa217e4 181@option{cache=writeback} should be used with qcow2.
5824d651 182
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183In case you don't care about data integrity over host failures, use
184cache=unsafe. This option tells qemu that it never needs to write any data
185to the disk but can instead keeps things in cache. If anything goes wrong,
186like your host losing power, the disk storage getting disconnected accidently,
c3177288
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187etc. you're image will most probably be rendered unusable. When using
188the @option{-snapshot} option, unsafe caching is always used.
016f5cf6 189
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190Instead of @option{-cdrom} you can use:
191@example
192qemu -drive file=file,index=2,media=cdrom
193@end example
194
195Instead of @option{-hda}, @option{-hdb}, @option{-hdc}, @option{-hdd}, you can
196use:
197@example
198qemu -drive file=file,index=0,media=disk
199qemu -drive file=file,index=1,media=disk
200qemu -drive file=file,index=2,media=disk
201qemu -drive file=file,index=3,media=disk
202@end example
203
204You can connect a CDROM to the slave of ide0:
205@example
206qemu -drive file=file,if=ide,index=1,media=cdrom
207@end example
208
209If you don't specify the "file=" argument, you define an empty drive:
210@example
211qemu -drive if=ide,index=1,media=cdrom
212@end example
213
214You can connect a SCSI disk with unit ID 6 on the bus #0:
215@example
216qemu -drive file=file,if=scsi,bus=0,unit=6
217@end example
218
219Instead of @option{-fda}, @option{-fdb}, you can use:
220@example
221qemu -drive file=file,index=0,if=floppy
222qemu -drive file=file,index=1,if=floppy
223@end example
224
225By default, @var{interface} is "ide" and @var{index} is automatically
226incremented:
227@example
228qemu -drive file=a -drive file=b"
229@end example
230is interpreted like:
231@example
232qemu -hda a -hdb b
233@end example
234ETEXI
235
6616b2ad
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236DEF("set", HAS_ARG, QEMU_OPTION_set,
237 "-set group.id.arg=value\n"
238 " set <arg> parameter for item <id> of type <group>\n"
ad96090a 239 " i.e. -set drive.$id.file=/path/to/image\n", QEMU_ARCH_ALL)
6616b2ad
SW
240STEXI
241@item -set
242@findex -set
243TODO
244ETEXI
245
246DEF("global", HAS_ARG, QEMU_OPTION_global,
247 "-global driver.property=value\n"
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248 " set a global default for a driver property\n",
249 QEMU_ARCH_ALL)
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250STEXI
251@item -global
252@findex -global
253TODO
254ETEXI
255
5824d651 256DEF("mtdblock", HAS_ARG, QEMU_OPTION_mtdblock,
ad96090a
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257 "-mtdblock file use 'file' as on-board Flash memory image\n",
258 QEMU_ARCH_ALL)
5824d651 259STEXI
4e257e5e 260@item -mtdblock @var{file}
6616b2ad 261@findex -mtdblock
4e257e5e 262Use @var{file} as on-board Flash memory image.
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263ETEXI
264
265DEF("sd", HAS_ARG, QEMU_OPTION_sd,
ad96090a 266 "-sd file use 'file' as SecureDigital card image\n", QEMU_ARCH_ALL)
5824d651 267STEXI
4e257e5e 268@item -sd @var{file}
6616b2ad 269@findex -sd
4e257e5e 270Use @var{file} as SecureDigital card image.
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271ETEXI
272
273DEF("pflash", HAS_ARG, QEMU_OPTION_pflash,
ad96090a 274 "-pflash file use 'file' as a parallel flash image\n", QEMU_ARCH_ALL)
5824d651 275STEXI
4e257e5e 276@item -pflash @var{file}
6616b2ad 277@findex -pflash
4e257e5e 278Use @var{file} as a parallel flash image.
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279ETEXI
280
281DEF("boot", HAS_ARG, QEMU_OPTION_boot,
2221dde5 282 "-boot [order=drives][,once=drives][,menu=on|off]\n"
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283 " 'drives': floppy (a), hard disk (c), CD-ROM (d), network (n)\n",
284 QEMU_ARCH_ALL)
5824d651 285STEXI
2221dde5 286@item -boot [order=@var{drives}][,once=@var{drives}][,menu=on|off]
6616b2ad 287@findex -boot
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288Specify boot order @var{drives} as a string of drive letters. Valid
289drive letters depend on the target achitecture. The x86 PC uses: a, b
290(floppy 1 and 2), c (first hard disk), d (first CD-ROM), n-p (Etherboot
291from network adapter 1-4), hard disk boot is the default. To apply a
292particular boot order only on the first startup, specify it via
293@option{once}.
294
295Interactive boot menus/prompts can be enabled via @option{menu=on} as far
296as firmware/BIOS supports them. The default is non-interactive boot.
297
298@example
299# try to boot from network first, then from hard disk
300qemu -boot order=nc
301# boot from CD-ROM first, switch back to default order after reboot
302qemu -boot once=d
303@end example
304
305Note: The legacy format '-boot @var{drives}' is still supported but its
306use is discouraged as it may be removed from future versions.
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307ETEXI
308
309DEF("snapshot", 0, QEMU_OPTION_snapshot,
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310 "-snapshot write to temporary files instead of disk image files\n",
311 QEMU_ARCH_ALL)
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312STEXI
313@item -snapshot
6616b2ad 314@findex -snapshot
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315Write to temporary files instead of disk image files. In this case,
316the raw disk image you use is not written back. You can however force
317the write back by pressing @key{C-a s} (@pxref{disk_images}).
318ETEXI
319
320DEF("m", HAS_ARG, QEMU_OPTION_m,
bec7c2d4 321 "-m megs set virtual RAM size to megs MB [default="
ad96090a 322 stringify(DEFAULT_RAM_SIZE) "]\n", QEMU_ARCH_ALL)
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323STEXI
324@item -m @var{megs}
6616b2ad 325@findex -m
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326Set virtual RAM size to @var{megs} megabytes. Default is 128 MiB. Optionally,
327a suffix of ``M'' or ``G'' can be used to signify a value in megabytes or
328gigabytes respectively.
329ETEXI
330
c902760f 331DEF("mem-path", HAS_ARG, QEMU_OPTION_mempath,
ad96090a 332 "-mem-path FILE provide backing storage for guest RAM\n", QEMU_ARCH_ALL)
c902760f
MT
333STEXI
334@item -mem-path @var{path}
335Allocate guest RAM from a temporarily created file in @var{path}.
336ETEXI
337
338#ifdef MAP_POPULATE
339DEF("mem-prealloc", 0, QEMU_OPTION_mem_prealloc,
ad96090a
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340 "-mem-prealloc preallocate guest memory (use with -mem-path)\n",
341 QEMU_ARCH_ALL)
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342STEXI
343@item -mem-prealloc
344Preallocate memory when using -mem-path.
345ETEXI
346#endif
347
5824d651 348DEF("k", HAS_ARG, QEMU_OPTION_k,
ad96090a
BS
349 "-k language use keyboard layout (for example 'fr' for French)\n",
350 QEMU_ARCH_ALL)
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351STEXI
352@item -k @var{language}
6616b2ad 353@findex -k
5824d651
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354Use keyboard layout @var{language} (for example @code{fr} for
355French). This option is only needed where it is not easy to get raw PC
356keycodes (e.g. on Macs, with some X11 servers or with a VNC
357display). You don't normally need to use it on PC/Linux or PC/Windows
358hosts.
359
360The available layouts are:
361@example
362ar de-ch es fo fr-ca hu ja mk no pt-br sv
363da en-gb et fr fr-ch is lt nl pl ru th
364de en-us fi fr-be hr it lv nl-be pt sl tr
365@end example
366
367The default is @code{en-us}.
368ETEXI
369
370
5824d651 371DEF("audio-help", 0, QEMU_OPTION_audio_help,
ad96090a
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372 "-audio-help print list of audio drivers and their options\n",
373 QEMU_ARCH_ALL)
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374STEXI
375@item -audio-help
6616b2ad 376@findex -audio-help
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377Will show the audio subsystem help: list of drivers, tunable
378parameters.
379ETEXI
380
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381DEF("soundhw", HAS_ARG, QEMU_OPTION_soundhw,
382 "-soundhw c1,... enable audio support\n"
383 " and only specified sound cards (comma separated list)\n"
384 " use -soundhw ? to get the list of supported cards\n"
ad96090a 385 " use -soundhw all to enable all of them\n", QEMU_ARCH_ALL)
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386STEXI
387@item -soundhw @var{card1}[,@var{card2},...] or -soundhw all
6616b2ad 388@findex -soundhw
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389Enable audio and selected sound hardware. Use ? to print all
390available sound hardware.
391
392@example
393qemu -soundhw sb16,adlib disk.img
394qemu -soundhw es1370 disk.img
395qemu -soundhw ac97 disk.img
396qemu -soundhw all disk.img
397qemu -soundhw ?
398@end example
399
400Note that Linux's i810_audio OSS kernel (for AC97) module might
401require manually specifying clocking.
402
403@example
404modprobe i810_audio clocking=48000
405@end example
406ETEXI
407
408STEXI
409@end table
410ETEXI
411
412DEF("usb", 0, QEMU_OPTION_usb,
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413 "-usb enable the USB driver (will be the default soon)\n",
414 QEMU_ARCH_ALL)
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415STEXI
416USB options:
417@table @option
418
419@item -usb
6616b2ad 420@findex -usb
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421Enable the USB driver (will be the default soon)
422ETEXI
423
424DEF("usbdevice", HAS_ARG, QEMU_OPTION_usbdevice,
ad96090a
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425 "-usbdevice name add the host or guest USB device 'name'\n",
426 QEMU_ARCH_ALL)
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427STEXI
428
429@item -usbdevice @var{devname}
6616b2ad 430@findex -usbdevice
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431Add the USB device @var{devname}. @xref{usb_devices}.
432
b3f046c2 433@table @option
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434
435@item mouse
436Virtual Mouse. This will override the PS/2 mouse emulation when activated.
437
438@item tablet
439Pointer device that uses absolute coordinates (like a touchscreen). This
440means qemu is able to report the mouse position without having to grab the
441mouse. Also overrides the PS/2 mouse emulation when activated.
442
4e257e5e 443@item disk:[format=@var{format}]:@var{file}
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444Mass storage device based on file. The optional @var{format} argument
445will be used rather than detecting the format. Can be used to specifiy
4e257e5e 446@code{format=raw} to avoid interpreting an untrusted format header.
5824d651 447
4e257e5e
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448@item host:@var{bus}.@var{addr}
449Pass through the host device identified by @var{bus}.@var{addr} (Linux only).
5824d651 450
4e257e5e
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451@item host:@var{vendor_id}:@var{product_id}
452Pass through the host device identified by @var{vendor_id}:@var{product_id}
453(Linux only).
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454
455@item serial:[vendorid=@var{vendor_id}][,productid=@var{product_id}]:@var{dev}
456Serial converter to host character device @var{dev}, see @code{-serial} for the
457available devices.
458
459@item braille
460Braille device. This will use BrlAPI to display the braille output on a real
461or fake device.
462
4e257e5e 463@item net:@var{options}
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464Network adapter that supports CDC ethernet and RNDIS protocols.
465
466@end table
467ETEXI
468
bd3c948d 469DEF("device", HAS_ARG, QEMU_OPTION_device,
40ea285c
MA
470 "-device driver[,prop[=value][,...]]\n"
471 " add device (based on driver)\n"
472 " prop=value,... sets driver properties\n"
69a319d1 473 " use -device ? to print all possible drivers\n"
9848bbf1 474 " use -device driver,? to print all possible properties\n",
ad96090a 475 QEMU_ARCH_ALL)
3dbf2c7f 476STEXI
9848bbf1 477@item -device @var{driver}[,@var{prop}[=@var{value}][,...]]
6616b2ad 478@findex -device
9848bbf1
MA
479Add device @var{driver}. @var{prop}=@var{value} sets driver
480properties. Valid properties depend on the driver. To get help on
481possible drivers and properties, use @code{-device ?} and
482@code{-device @var{driver},?}.
3dbf2c7f
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483ETEXI
484
74db920c
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485#ifdef CONFIG_LINUX
486DEFHEADING(File system options:)
487
488DEF("fsdev", HAS_ARG, QEMU_OPTION_fsdev,
9ce56db6 489 "-fsdev local,id=id,path=path,security_model=[mapped|passthrough]\n",
74db920c
GS
490 QEMU_ARCH_ALL)
491
492STEXI
493
494The general form of a File system device option is:
495@table @option
496
497@item -fsdev @var{fstype} ,id=@var{id} [,@var{options}]
498@findex -fsdev
499Fstype is one of:
500@option{local},
501The specific Fstype will determine the applicable options.
502
503Options to each backend are described below.
504
9ce56db6 505@item -fsdev local ,id=@var{id} ,path=@var{path} ,security_model=@var{security_model}
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506
507Create a file-system-"device" for local-filesystem.
508
509@option{local} is only available on Linux.
510
511@option{path} specifies the path to be exported. @option{path} is required.
512
9ce56db6
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513@option{security_model} specifies the security model to be followed.
514@option{security_model} is required.
515
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516@end table
517ETEXI
518#endif
519
3d54abc7
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520#ifdef CONFIG_LINUX
521DEFHEADING(Virtual File system pass-through options:)
522
523DEF("virtfs", HAS_ARG, QEMU_OPTION_virtfs,
9ce56db6 524 "-virtfs local,path=path,mount_tag=tag,security_model=[mapped|passthrough]\n",
3d54abc7
GS
525 QEMU_ARCH_ALL)
526
527STEXI
528
529The general form of a Virtual File system pass-through option is:
530@table @option
531
532@item -virtfs @var{fstype} [,@var{options}]
533@findex -virtfs
534Fstype is one of:
535@option{local},
536The specific Fstype will determine the applicable options.
537
538Options to each backend are described below.
539
9ce56db6 540@item -virtfs local ,path=@var{path} ,mount_tag=@var{mount_tag} ,security_model=@var{security_model}
3d54abc7
GS
541
542Create a Virtual file-system-pass through for local-filesystem.
543
544@option{local} is only available on Linux.
545
546@option{path} specifies the path to be exported. @option{path} is required.
547
9ce56db6
VJ
548@option{security_model} specifies the security model to be followed.
549@option{security_model} is required.
550
551
3d54abc7
GS
552@option{mount_tag} specifies the tag with which the exported file is mounted.
553@option{mount_tag} is required.
554
555@end table
556ETEXI
557#endif
558
74db920c
GS
559DEFHEADING()
560
5824d651 561DEF("name", HAS_ARG, QEMU_OPTION_name,
ca1a8a06
BR
562 "-name string1[,process=string2]\n"
563 " set the name of the guest\n"
ad96090a
BS
564 " string1 sets the window title and string2 the process name (on Linux)\n",
565 QEMU_ARCH_ALL)
5824d651
BS
566STEXI
567@item -name @var{name}
6616b2ad 568@findex -name
5824d651
BS
569Sets the @var{name} of the guest.
570This name will be displayed in the SDL window caption.
571The @var{name} will also be used for the VNC server.
1889465a 572Also optionally set the top visible process name in Linux.
5824d651
BS
573ETEXI
574
575DEF("uuid", HAS_ARG, QEMU_OPTION_uuid,
e8105ebb 576 "-uuid %08x-%04x-%04x-%04x-%012x\n"
ad96090a 577 " specify machine UUID\n", QEMU_ARCH_ALL)
5824d651
BS
578STEXI
579@item -uuid @var{uuid}
6616b2ad 580@findex -uuid
5824d651
BS
581Set system UUID.
582ETEXI
583
584STEXI
585@end table
586ETEXI
587
588DEFHEADING()
589
590DEFHEADING(Display options:)
591
592STEXI
593@table @option
594ETEXI
595
596DEF("nographic", 0, QEMU_OPTION_nographic,
ad96090a
BS
597 "-nographic disable graphical output and redirect serial I/Os to console\n",
598 QEMU_ARCH_ALL)
5824d651
BS
599STEXI
600@item -nographic
6616b2ad 601@findex -nographic
5824d651
BS
602Normally, QEMU uses SDL to display the VGA output. With this option,
603you can totally disable graphical output so that QEMU is a simple
604command line application. The emulated serial port is redirected on
605the console. Therefore, you can still use QEMU to debug a Linux kernel
606with a serial console.
607ETEXI
608
609#ifdef CONFIG_CURSES
610DEF("curses", 0, QEMU_OPTION_curses,
ad96090a
BS
611 "-curses use a curses/ncurses interface instead of SDL\n",
612 QEMU_ARCH_ALL)
5824d651
BS
613#endif
614STEXI
615@item -curses
6616b2ad 616@findex curses
5824d651
BS
617Normally, QEMU uses SDL to display the VGA output. With this option,
618QEMU can display the VGA output when in text mode using a
619curses/ncurses interface. Nothing is displayed in graphical mode.
620ETEXI
621
622#ifdef CONFIG_SDL
623DEF("no-frame", 0, QEMU_OPTION_no_frame,
ad96090a
BS
624 "-no-frame open SDL window without a frame and window decorations\n",
625 QEMU_ARCH_ALL)
5824d651
BS
626#endif
627STEXI
628@item -no-frame
6616b2ad 629@findex -no-frame
5824d651
BS
630Do not use decorations for SDL windows and start them using the whole
631available screen space. This makes the using QEMU in a dedicated desktop
632workspace more convenient.
633ETEXI
634
635#ifdef CONFIG_SDL
636DEF("alt-grab", 0, QEMU_OPTION_alt_grab,
ad96090a
BS
637 "-alt-grab use Ctrl-Alt-Shift to grab mouse (instead of Ctrl-Alt)\n",
638 QEMU_ARCH_ALL)
5824d651
BS
639#endif
640STEXI
641@item -alt-grab
6616b2ad 642@findex -alt-grab
5824d651
BS
643Use Ctrl-Alt-Shift to grab mouse (instead of Ctrl-Alt).
644ETEXI
645
0ca9f8a4
DK
646#ifdef CONFIG_SDL
647DEF("ctrl-grab", 0, QEMU_OPTION_ctrl_grab,
ad96090a
BS
648 "-ctrl-grab use Right-Ctrl to grab mouse (instead of Ctrl-Alt)\n",
649 QEMU_ARCH_ALL)
0ca9f8a4
DK
650#endif
651STEXI
652@item -ctrl-grab
6616b2ad 653@findex -ctrl-grab
0ca9f8a4
DK
654Use Right-Ctrl to grab mouse (instead of Ctrl-Alt).
655ETEXI
656
5824d651
BS
657#ifdef CONFIG_SDL
658DEF("no-quit", 0, QEMU_OPTION_no_quit,
ad96090a 659 "-no-quit disable SDL window close capability\n", QEMU_ARCH_ALL)
5824d651
BS
660#endif
661STEXI
662@item -no-quit
6616b2ad 663@findex -no-quit
5824d651
BS
664Disable SDL window close capability.
665ETEXI
666
667#ifdef CONFIG_SDL
668DEF("sdl", 0, QEMU_OPTION_sdl,
ad96090a 669 "-sdl enable SDL\n", QEMU_ARCH_ALL)
5824d651
BS
670#endif
671STEXI
672@item -sdl
6616b2ad 673@findex -sdl
5824d651
BS
674Enable SDL.
675ETEXI
676
677DEF("portrait", 0, QEMU_OPTION_portrait,
ad96090a
BS
678 "-portrait rotate graphical output 90 deg left (only PXA LCD)\n",
679 QEMU_ARCH_ALL)
5824d651
BS
680STEXI
681@item -portrait
6616b2ad 682@findex -portrait
5824d651
BS
683Rotate graphical output 90 deg left (only PXA LCD).
684ETEXI
685
686DEF("vga", HAS_ARG, QEMU_OPTION_vga,
94909d9f 687 "-vga [std|cirrus|vmware|xenfb|none]\n"
ad96090a 688 " select video card type\n", QEMU_ARCH_ALL)
5824d651
BS
689STEXI
690@item -vga @var{type}
6616b2ad 691@findex -vga
5824d651 692Select type of VGA card to emulate. Valid values for @var{type} are
b3f046c2 693@table @option
5824d651
BS
694@item cirrus
695Cirrus Logic GD5446 Video card. All Windows versions starting from
696Windows 95 should recognize and use this graphic card. For optimal
697performances, use 16 bit color depth in the guest and the host OS.
698(This one is the default)
699@item std
700Standard VGA card with Bochs VBE extensions. If your guest OS
701supports the VESA 2.0 VBE extensions (e.g. Windows XP) and if you want
702to use high resolution modes (>= 1280x1024x16) then you should use
703this option.
704@item vmware
705VMWare SVGA-II compatible adapter. Use it if you have sufficiently
706recent XFree86/XOrg server or Windows guest with a driver for this
707card.
708@item none
709Disable VGA card.
710@end table
711ETEXI
712
713DEF("full-screen", 0, QEMU_OPTION_full_screen,
ad96090a 714 "-full-screen start in full screen\n", QEMU_ARCH_ALL)
5824d651
BS
715STEXI
716@item -full-screen
6616b2ad 717@findex -full-screen
5824d651
BS
718Start in full screen.
719ETEXI
720
5824d651 721DEF("g", 1, QEMU_OPTION_g ,
ad96090a
BS
722 "-g WxH[xDEPTH] Set the initial graphical resolution and depth\n",
723 QEMU_ARCH_PPC | QEMU_ARCH_SPARC)
5824d651 724STEXI
95d5f08b 725@item -g @var{width}x@var{height}[x@var{depth}]
6616b2ad 726@findex -g
95d5f08b 727Set the initial graphical resolution and depth (PPC, SPARC only).
5824d651
BS
728ETEXI
729
730DEF("vnc", HAS_ARG, QEMU_OPTION_vnc ,
ad96090a 731 "-vnc display start a VNC server on display\n", QEMU_ARCH_ALL)
5824d651
BS
732STEXI
733@item -vnc @var{display}[,@var{option}[,@var{option}[,...]]]
6616b2ad 734@findex -vnc
5824d651
BS
735Normally, QEMU uses SDL to display the VGA output. With this option,
736you can have QEMU listen on VNC display @var{display} and redirect the VGA
737display over the VNC session. It is very useful to enable the usb
738tablet device when using this option (option @option{-usbdevice
739tablet}). When using the VNC display, you must use the @option{-k}
740parameter to set the keyboard layout if you are not using en-us. Valid
741syntax for the @var{display} is
742
b3f046c2 743@table @option
5824d651
BS
744
745@item @var{host}:@var{d}
746
747TCP connections will only be allowed from @var{host} on display @var{d}.
748By convention the TCP port is 5900+@var{d}. Optionally, @var{host} can
749be omitted in which case the server will accept connections from any host.
750
4e257e5e 751@item unix:@var{path}
5824d651
BS
752
753Connections will be allowed over UNIX domain sockets where @var{path} is the
754location of a unix socket to listen for connections on.
755
756@item none
757
758VNC is initialized but not started. The monitor @code{change} command
759can be used to later start the VNC server.
760
761@end table
762
763Following the @var{display} value there may be one or more @var{option} flags
764separated by commas. Valid options are
765
b3f046c2 766@table @option
5824d651
BS
767
768@item reverse
769
770Connect to a listening VNC client via a ``reverse'' connection. The
771client is specified by the @var{display}. For reverse network
772connections (@var{host}:@var{d},@code{reverse}), the @var{d} argument
773is a TCP port number, not a display number.
774
775@item password
776
777Require that password based authentication is used for client connections.
778The password must be set separately using the @code{change} command in the
779@ref{pcsys_monitor}
780
781@item tls
782
783Require that client use TLS when communicating with the VNC server. This
784uses anonymous TLS credentials so is susceptible to a man-in-the-middle
785attack. It is recommended that this option be combined with either the
4e257e5e 786@option{x509} or @option{x509verify} options.
5824d651
BS
787
788@item x509=@var{/path/to/certificate/dir}
789
790Valid if @option{tls} is specified. Require that x509 credentials are used
791for negotiating the TLS session. The server will send its x509 certificate
792to the client. It is recommended that a password be set on the VNC server
793to provide authentication of the client when this is used. The path following
794this option specifies where the x509 certificates are to be loaded from.
795See the @ref{vnc_security} section for details on generating certificates.
796
797@item x509verify=@var{/path/to/certificate/dir}
798
799Valid if @option{tls} is specified. Require that x509 credentials are used
800for negotiating the TLS session. The server will send its x509 certificate
801to the client, and request that the client send its own x509 certificate.
802The server will validate the client's certificate against the CA certificate,
803and reject clients when validation fails. If the certificate authority is
804trusted, this is a sufficient authentication mechanism. You may still wish
805to set a password on the VNC server as a second authentication layer. The
806path following this option specifies where the x509 certificates are to
807be loaded from. See the @ref{vnc_security} section for details on generating
808certificates.
809
810@item sasl
811
812Require that the client use SASL to authenticate with the VNC server.
813The exact choice of authentication method used is controlled from the
814system / user's SASL configuration file for the 'qemu' service. This
815is typically found in /etc/sasl2/qemu.conf. If running QEMU as an
816unprivileged user, an environment variable SASL_CONF_PATH can be used
817to make it search alternate locations for the service config.
818While some SASL auth methods can also provide data encryption (eg GSSAPI),
819it is recommended that SASL always be combined with the 'tls' and
820'x509' settings to enable use of SSL and server certificates. This
821ensures a data encryption preventing compromise of authentication
822credentials. See the @ref{vnc_security} section for details on using
823SASL authentication.
824
825@item acl
826
827Turn on access control lists for checking of the x509 client certificate
828and SASL party. For x509 certs, the ACL check is made against the
829certificate's distinguished name. This is something that looks like
830@code{C=GB,O=ACME,L=Boston,CN=bob}. For SASL party, the ACL check is
831made against the username, which depending on the SASL plugin, may
832include a realm component, eg @code{bob} or @code{bob@@EXAMPLE.COM}.
833When the @option{acl} flag is set, the initial access list will be
834empty, with a @code{deny} policy. Thus no one will be allowed to
835use the VNC server until the ACLs have been loaded. This can be
836achieved using the @code{acl} monitor command.
837
838@end table
839ETEXI
840
841STEXI
842@end table
843ETEXI
844
845DEFHEADING()
846
5824d651 847DEFHEADING(i386 target only:)
5824d651
BS
848STEXI
849@table @option
850ETEXI
851
5824d651 852DEF("win2k-hack", 0, QEMU_OPTION_win2k_hack,
ad96090a
BS
853 "-win2k-hack use it when installing Windows 2000 to avoid a disk full bug\n",
854 QEMU_ARCH_I386)
5824d651
BS
855STEXI
856@item -win2k-hack
6616b2ad 857@findex -win2k-hack
5824d651
BS
858Use it when installing Windows 2000 to avoid a disk full bug. After
859Windows 2000 is installed, you no longer need this option (this option
860slows down the IDE transfers).
861ETEXI
862
1ed2fc1f 863HXCOMM Deprecated by -rtc
ad96090a 864DEF("rtc-td-hack", 0, QEMU_OPTION_rtc_td_hack, "", QEMU_ARCH_I386)
5824d651 865
5824d651 866DEF("no-fd-bootchk", 0, QEMU_OPTION_no_fd_bootchk,
ad96090a
BS
867 "-no-fd-bootchk disable boot signature checking for floppy disks\n",
868 QEMU_ARCH_I386)
5824d651
BS
869STEXI
870@item -no-fd-bootchk
6616b2ad 871@findex -no-fd-bootchk
5824d651
BS
872Disable boot signature checking for floppy disks in Bochs BIOS. It may
873be needed to boot from old floppy disks.
6616b2ad 874TODO: check reference to Bochs BIOS.
5824d651
BS
875ETEXI
876
5824d651 877DEF("no-acpi", 0, QEMU_OPTION_no_acpi,
ad96090a 878 "-no-acpi disable ACPI\n", QEMU_ARCH_I386)
5824d651
BS
879STEXI
880@item -no-acpi
6616b2ad 881@findex -no-acpi
5824d651
BS
882Disable ACPI (Advanced Configuration and Power Interface) support. Use
883it if your guest OS complains about ACPI problems (PC target machine
884only).
885ETEXI
886
5824d651 887DEF("no-hpet", 0, QEMU_OPTION_no_hpet,
ad96090a 888 "-no-hpet disable HPET\n", QEMU_ARCH_I386)
5824d651
BS
889STEXI
890@item -no-hpet
6616b2ad 891@findex -no-hpet
5824d651
BS
892Disable HPET support.
893ETEXI
894
7d4c3d53
MA
895DEF("balloon", HAS_ARG, QEMU_OPTION_balloon,
896 "-balloon none disable balloon device\n"
897 "-balloon virtio[,addr=str]\n"
ad96090a 898 " enable virtio balloon device (default)\n", QEMU_ARCH_ALL)
df97b920 899STEXI
7d4c3d53 900@item -balloon none
6616b2ad 901@findex -balloon
7d4c3d53
MA
902Disable balloon device.
903@item -balloon virtio[,addr=@var{addr}]
904Enable virtio balloon device (default), optionally with PCI address
905@var{addr}.
df97b920
EH
906ETEXI
907
5824d651
BS
908DEF("acpitable", HAS_ARG, QEMU_OPTION_acpitable,
909 "-acpitable [sig=str][,rev=n][,oem_id=str][,oem_table_id=str][,oem_rev=n][,asl_compiler_id=str][,asl_compiler_rev=n][,data=file1[:file2]...]\n"
ad96090a 910 " ACPI table description\n", QEMU_ARCH_I386)
5824d651
BS
911STEXI
912@item -acpitable [sig=@var{str}][,rev=@var{n}][,oem_id=@var{str}][,oem_table_id=@var{str}][,oem_rev=@var{n}] [,asl_compiler_id=@var{str}][,asl_compiler_rev=@var{n}][,data=@var{file1}[:@var{file2}]...]
6616b2ad 913@findex -acpitable
5824d651
BS
914Add ACPI table with specified header fields and context from specified files.
915ETEXI
916
b6f6e3d3
AL
917DEF("smbios", HAS_ARG, QEMU_OPTION_smbios,
918 "-smbios file=binary\n"
ca1a8a06 919 " load SMBIOS entry from binary file\n"
e8105ebb 920 "-smbios type=0[,vendor=str][,version=str][,date=str][,release=%d.%d]\n"
ca1a8a06 921 " specify SMBIOS type 0 fields\n"
b6f6e3d3
AL
922 "-smbios type=1[,manufacturer=str][,product=str][,version=str][,serial=str]\n"
923 " [,uuid=uuid][,sku=str][,family=str]\n"
ad96090a 924 " specify SMBIOS type 1 fields\n", QEMU_ARCH_I386)
b6f6e3d3
AL
925STEXI
926@item -smbios file=@var{binary}
6616b2ad 927@findex -smbios
b6f6e3d3
AL
928Load SMBIOS entry from binary file.
929
930@item -smbios type=0[,vendor=@var{str}][,version=@var{str}][,date=@var{str}][,release=@var{%d.%d}]
6616b2ad 931@findex -smbios
b6f6e3d3
AL
932Specify SMBIOS type 0 fields
933
609c1dac 934@item -smbios type=1[,manufacturer=@var{str}][,product=@var{str}] [,version=@var{str}][,serial=@var{str}][,uuid=@var{uuid}][,sku=@var{str}] [,family=@var{str}]
b6f6e3d3
AL
935Specify SMBIOS type 1 fields
936ETEXI
937
5824d651 938DEFHEADING()
5824d651
BS
939STEXI
940@end table
941ETEXI
942
943DEFHEADING(Network options:)
944STEXI
945@table @option
946ETEXI
947
ad196a9d
JK
948HXCOMM Legacy slirp options (now moved to -net user):
949#ifdef CONFIG_SLIRP
ad96090a
BS
950DEF("tftp", HAS_ARG, QEMU_OPTION_tftp, "", QEMU_ARCH_ALL)
951DEF("bootp", HAS_ARG, QEMU_OPTION_bootp, "", QEMU_ARCH_ALL)
952DEF("redir", HAS_ARG, QEMU_OPTION_redir, "", QEMU_ARCH_ALL)
ad196a9d 953#ifndef _WIN32
ad96090a 954DEF("smb", HAS_ARG, QEMU_OPTION_smb, "", QEMU_ARCH_ALL)
ad196a9d
JK
955#endif
956#endif
957
bab7944c 958DEF("net", HAS_ARG, QEMU_OPTION_net,
ffe6370c 959 "-net nic[,vlan=n][,macaddr=mac][,model=type][,name=str][,addr=str][,vectors=v]\n"
5824d651
BS
960 " create a new Network Interface Card and connect it to VLAN 'n'\n"
961#ifdef CONFIG_SLIRP
c92ef6a2
JK
962 "-net user[,vlan=n][,name=str][,net=addr[/mask]][,host=addr][,restrict=y|n]\n"
963 " [,hostname=host][,dhcpstart=addr][,dns=addr][,tftp=dir][,bootfile=f]\n"
964 " [,hostfwd=rule][,guestfwd=rule]"
ad196a9d 965#ifndef _WIN32
c92ef6a2 966 "[,smb=dir[,smbserver=addr]]\n"
ad196a9d
JK
967#endif
968 " connect the user mode network stack to VLAN 'n', configure its\n"
969 " DHCP server and enabled optional services\n"
5824d651
BS
970#endif
971#ifdef _WIN32
972 "-net tap[,vlan=n][,name=str],ifname=name\n"
973 " connect the host TAP network interface to VLAN 'n'\n"
974#else
82b0d80e 975 "-net tap[,vlan=n][,name=str][,fd=h][,ifname=name][,script=file][,downscript=dfile][,sndbuf=nbytes][,vnet_hdr=on|off][,vhost=on|off][,vhostfd=h]\n"
5824d651 976 " connect the host TAP network interface to VLAN 'n' and use the\n"
bec7c2d4
PB
977 " network scripts 'file' (default=" DEFAULT_NETWORK_SCRIPT ")\n"
978 " and 'dfile' (default=" DEFAULT_NETWORK_DOWN_SCRIPT ")\n"
ca1a8a06 979 " use '[down]script=no' to disable script execution\n"
5824d651 980 " use 'fd=h' to connect to an already opened TAP interface\n"
ca1a8a06
BR
981 " use 'sndbuf=nbytes' to limit the size of the send buffer (the\n"
982 " default of 'sndbuf=1048576' can be disabled using 'sndbuf=0')\n"
983 " use vnet_hdr=off to avoid enabling the IFF_VNET_HDR tap flag\n"
984 " use vnet_hdr=on to make the lack of IFF_VNET_HDR support an error condition\n"
82b0d80e
MT
985 " use vhost=on to enable experimental in kernel accelerator\n"
986 " use 'vhostfd=h' to connect to an already opened vhost net device\n"
5824d651
BS
987#endif
988 "-net socket[,vlan=n][,name=str][,fd=h][,listen=[host]:port][,connect=host:port]\n"
989 " connect the vlan 'n' to another VLAN using a socket connection\n"
990 "-net socket[,vlan=n][,name=str][,fd=h][,mcast=maddr:port]\n"
991 " connect the vlan 'n' to multicast maddr and port\n"
992#ifdef CONFIG_VDE
993 "-net vde[,vlan=n][,name=str][,sock=socketpath][,port=n][,group=groupname][,mode=octalmode]\n"
994 " connect the vlan 'n' to port 'n' of a vde switch running\n"
995 " on host and listening for incoming connections on 'socketpath'.\n"
996 " Use group 'groupname' and mode 'octalmode' to change default\n"
997 " ownership and permissions for communication port.\n"
998#endif
bb9ea79e
AL
999 "-net dump[,vlan=n][,file=f][,len=n]\n"
1000 " dump traffic on vlan 'n' to file 'f' (max n bytes per packet)\n"
ca1a8a06 1001 "-net none use it alone to have zero network devices. If no -net option\n"
ad96090a 1002 " is provided, the default is '-net nic -net user'\n", QEMU_ARCH_ALL)
a1ea458f
MM
1003DEF("netdev", HAS_ARG, QEMU_OPTION_netdev,
1004 "-netdev ["
1005#ifdef CONFIG_SLIRP
1006 "user|"
1007#endif
1008 "tap|"
1009#ifdef CONFIG_VDE
1010 "vde|"
1011#endif
ad96090a 1012 "socket],id=str[,option][,option][,...]\n", QEMU_ARCH_ALL)
5824d651 1013STEXI
609c1dac 1014@item -net nic[,vlan=@var{n}][,macaddr=@var{mac}][,model=@var{type}] [,name=@var{name}][,addr=@var{addr}][,vectors=@var{v}]
6616b2ad 1015@findex -net
5824d651 1016Create a new Network Interface Card and connect it to VLAN @var{n} (@var{n}
0d6b0b1d 1017= 0 is the default). The NIC is an e1000 by default on the PC
5607c388
MA
1018target. Optionally, the MAC address can be changed to @var{mac}, the
1019device address set to @var{addr} (PCI cards only),
ffe6370c
MT
1020and a @var{name} can be assigned for use in monitor commands.
1021Optionally, for PCI cards, you can specify the number @var{v} of MSI-X vectors
1022that the card should have; this option currently only affects virtio cards; set
1023@var{v} = 0 to disable MSI-X. If no @option{-net} option is specified, a single
1024NIC is created. Qemu can emulate several different models of network card.
5824d651 1025Valid values for @var{type} are
ffe6370c 1026@code{virtio}, @code{i82551}, @code{i82557b}, @code{i82559er},
5824d651
BS
1027@code{ne2k_pci}, @code{ne2k_isa}, @code{pcnet}, @code{rtl8139},
1028@code{e1000}, @code{smc91c111}, @code{lance} and @code{mcf_fec}.
1029Not all devices are supported on all targets. Use -net nic,model=?
1030for a list of available devices for your target.
1031
ad196a9d 1032@item -net user[,@var{option}][,@var{option}][,...]
5824d651 1033Use the user mode network stack which requires no administrator
ad196a9d
JK
1034privilege to run. Valid options are:
1035
b3f046c2 1036@table @option
ad196a9d
JK
1037@item vlan=@var{n}
1038Connect user mode stack to VLAN @var{n} (@var{n} = 0 is the default).
1039
1040@item name=@var{name}
1041Assign symbolic name for use in monitor commands.
1042
c92ef6a2
JK
1043@item net=@var{addr}[/@var{mask}]
1044Set IP network address the guest will see. Optionally specify the netmask,
1045either in the form a.b.c.d or as number of valid top-most bits. Default is
104610.0.2.0/8.
1047
1048@item host=@var{addr}
1049Specify the guest-visible address of the host. Default is the 2nd IP in the
1050guest network, i.e. x.x.x.2.
ad196a9d
JK
1051
1052@item restrict=y|yes|n|no
1053If this options is enabled, the guest will be isolated, i.e. it will not be
1054able to contact the host and no guest IP packets will be routed over the host
1055to the outside. This option does not affect explicitly set forwarding rule.
1056
1057@item hostname=@var{name}
1058Specifies the client hostname reported by the builtin DHCP server.
1059
c92ef6a2
JK
1060@item dhcpstart=@var{addr}
1061Specify the first of the 16 IPs the built-in DHCP server can assign. Default
1062is the 16th to 31st IP in the guest network, i.e. x.x.x.16 to x.x.x.31.
1063
1064@item dns=@var{addr}
1065Specify the guest-visible address of the virtual nameserver. The address must
1066be different from the host address. Default is the 3rd IP in the guest network,
1067i.e. x.x.x.3.
1068
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1069@item tftp=@var{dir}
1070When using the user mode network stack, activate a built-in TFTP
1071server. The files in @var{dir} will be exposed as the root of a TFTP server.
1072The TFTP client on the guest must be configured in binary mode (use the command
c92ef6a2 1073@code{bin} of the Unix TFTP client).
ad196a9d
JK
1074
1075@item bootfile=@var{file}
1076When using the user mode network stack, broadcast @var{file} as the BOOTP
1077filename. In conjunction with @option{tftp}, this can be used to network boot
1078a guest from a local directory.
1079
1080Example (using pxelinux):
1081@example
1082qemu -hda linux.img -boot n -net user,tftp=/path/to/tftp/files,bootfile=/pxelinux.0
1083@end example
1084
c92ef6a2 1085@item smb=@var{dir}[,smbserver=@var{addr}]
ad196a9d
JK
1086When using the user mode network stack, activate a built-in SMB
1087server so that Windows OSes can access to the host files in @file{@var{dir}}
c92ef6a2
JK
1088transparently. The IP address of the SMB server can be set to @var{addr}. By
1089default the 4th IP in the guest network is used, i.e. x.x.x.4.
ad196a9d
JK
1090
1091In the guest Windows OS, the line:
1092@example
109310.0.2.4 smbserver
1094@end example
1095must be added in the file @file{C:\WINDOWS\LMHOSTS} (for windows 9x/Me)
1096or @file{C:\WINNT\SYSTEM32\DRIVERS\ETC\LMHOSTS} (Windows NT/2000).
1097
1098Then @file{@var{dir}} can be accessed in @file{\\smbserver\qemu}.
1099
1100Note that a SAMBA server must be installed on the host OS in
1101@file{/usr/sbin/smbd}. QEMU was tested successfully with smbd versions from
1102Red Hat 9, Fedora Core 3 and OpenSUSE 11.x.
1103
3c6a0580 1104@item hostfwd=[tcp|udp]:[@var{hostaddr}]:@var{hostport}-[@var{guestaddr}]:@var{guestport}
c92ef6a2
JK
1105Redirect incoming TCP or UDP connections to the host port @var{hostport} to
1106the guest IP address @var{guestaddr} on guest port @var{guestport}. If
1107@var{guestaddr} is not specified, its value is x.x.x.15 (default first address
3c6a0580
JK
1108given by the built-in DHCP server). By specifying @var{hostaddr}, the rule can
1109be bound to a specific host interface. If no connection type is set, TCP is
c92ef6a2 1110used. This option can be given multiple times.
ad196a9d
JK
1111
1112For example, to redirect host X11 connection from screen 1 to guest
1113screen 0, use the following:
1114
1115@example
1116# on the host
3c6a0580 1117qemu -net user,hostfwd=tcp:127.0.0.1:6001-:6000 [...]
ad196a9d
JK
1118# this host xterm should open in the guest X11 server
1119xterm -display :1
1120@end example
1121
1122To redirect telnet connections from host port 5555 to telnet port on
1123the guest, use the following:
1124
1125@example
1126# on the host
aa375206 1127qemu -net user,hostfwd=tcp::5555-:23 [...]
ad196a9d
JK
1128telnet localhost 5555
1129@end example
1130
1131Then when you use on the host @code{telnet localhost 5555}, you
1132connect to the guest telnet server.
5824d651 1133
c92ef6a2 1134@item guestfwd=[tcp]:@var{server}:@var{port}-@var{dev}
3c6a0580
JK
1135Forward guest TCP connections to the IP address @var{server} on port @var{port}
1136to the character device @var{dev}. This option can be given multiple times.
ad196a9d
JK
1137
1138@end table
1139
1140Note: Legacy stand-alone options -tftp, -bootp, -smb and -redir are still
1141processed and applied to -net user. Mixing them with the new configuration
1142syntax gives undefined results. Their use for new applications is discouraged
1143as they will be removed from future versions.
5824d651 1144
609c1dac 1145@item -net tap[,vlan=@var{n}][,name=@var{name}][,fd=@var{h}][,ifname=@var{name}] [,script=@var{file}][,downscript=@var{dfile}]
5824d651
BS
1146Connect the host TAP network interface @var{name} to VLAN @var{n}, use
1147the network script @var{file} to configure it and the network script
1148@var{dfile} to deconfigure it. If @var{name} is not provided, the OS
1149automatically provides one. @option{fd}=@var{h} can be used to specify
1150the handle of an already opened host TAP interface. The default network
1151configure script is @file{/etc/qemu-ifup} and the default network
1152deconfigure script is @file{/etc/qemu-ifdown}. Use @option{script=no}
1153or @option{downscript=no} to disable script execution. Example:
1154
1155@example
1156qemu linux.img -net nic -net tap
1157@end example
1158
1159More complicated example (two NICs, each one connected to a TAP device)
1160@example
1161qemu linux.img -net nic,vlan=0 -net tap,vlan=0,ifname=tap0 \
1162 -net nic,vlan=1 -net tap,vlan=1,ifname=tap1
1163@end example
1164
609c1dac 1165@item -net socket[,vlan=@var{n}][,name=@var{name}][,fd=@var{h}] [,listen=[@var{host}]:@var{port}][,connect=@var{host}:@var{port}]
5824d651
BS
1166
1167Connect the VLAN @var{n} to a remote VLAN in another QEMU virtual
1168machine using a TCP socket connection. If @option{listen} is
1169specified, QEMU waits for incoming connections on @var{port}
1170(@var{host} is optional). @option{connect} is used to connect to
1171another QEMU instance using the @option{listen} option. @option{fd}=@var{h}
1172specifies an already opened TCP socket.
1173
1174Example:
1175@example
1176# launch a first QEMU instance
1177qemu linux.img -net nic,macaddr=52:54:00:12:34:56 \
1178 -net socket,listen=:1234
1179# connect the VLAN 0 of this instance to the VLAN 0
1180# of the first instance
1181qemu linux.img -net nic,macaddr=52:54:00:12:34:57 \
1182 -net socket,connect=127.0.0.1:1234
1183@end example
1184
609c1dac 1185@item -net socket[,vlan=@var{n}][,name=@var{name}][,fd=@var{h}] [,mcast=@var{maddr}:@var{port}]
5824d651
BS
1186
1187Create a VLAN @var{n} shared with another QEMU virtual
1188machines using a UDP multicast socket, effectively making a bus for
1189every QEMU with same multicast address @var{maddr} and @var{port}.
1190NOTES:
1191@enumerate
1192@item
1193Several QEMU can be running on different hosts and share same bus (assuming
1194correct multicast setup for these hosts).
1195@item
1196mcast support is compatible with User Mode Linux (argument @option{eth@var{N}=mcast}), see
1197@url{http://user-mode-linux.sf.net}.
1198@item
1199Use @option{fd=h} to specify an already opened UDP multicast socket.
1200@end enumerate
1201
1202Example:
1203@example
1204# launch one QEMU instance
1205qemu linux.img -net nic,macaddr=52:54:00:12:34:56 \
1206 -net socket,mcast=230.0.0.1:1234
1207# launch another QEMU instance on same "bus"
1208qemu linux.img -net nic,macaddr=52:54:00:12:34:57 \
1209 -net socket,mcast=230.0.0.1:1234
1210# launch yet another QEMU instance on same "bus"
1211qemu linux.img -net nic,macaddr=52:54:00:12:34:58 \
1212 -net socket,mcast=230.0.0.1:1234
1213@end example
1214
1215Example (User Mode Linux compat.):
1216@example
1217# launch QEMU instance (note mcast address selected
1218# is UML's default)
1219qemu linux.img -net nic,macaddr=52:54:00:12:34:56 \
1220 -net socket,mcast=239.192.168.1:1102
1221# launch UML
1222/path/to/linux ubd0=/path/to/root_fs eth0=mcast
1223@end example
1224
609c1dac 1225@item -net vde[,vlan=@var{n}][,name=@var{name}][,sock=@var{socketpath}] [,port=@var{n}][,group=@var{groupname}][,mode=@var{octalmode}]
5824d651
BS
1226Connect VLAN @var{n} to PORT @var{n} of a vde switch running on host and
1227listening for incoming connections on @var{socketpath}. Use GROUP @var{groupname}
1228and MODE @var{octalmode} to change default ownership and permissions for
1229communication port. This option is available only if QEMU has been compiled
1230with vde support enabled.
1231
1232Example:
1233@example
1234# launch vde switch
1235vde_switch -F -sock /tmp/myswitch
1236# launch QEMU instance
1237qemu linux.img -net nic -net vde,sock=/tmp/myswitch
1238@end example
1239
bb9ea79e
AL
1240@item -net dump[,vlan=@var{n}][,file=@var{file}][,len=@var{len}]
1241Dump network traffic on VLAN @var{n} to file @var{file} (@file{qemu-vlan0.pcap} by default).
1242At most @var{len} bytes (64k by default) per packet are stored. The file format is
1243libpcap, so it can be analyzed with tools such as tcpdump or Wireshark.
1244
5824d651
BS
1245@item -net none
1246Indicate that no network devices should be configured. It is used to
1247override the default configuration (@option{-net nic -net user}) which
1248is activated if no @option{-net} options are provided.
5824d651
BS
1249
1250@end table
1251ETEXI
1252
7273a2db
MB
1253DEFHEADING()
1254
1255DEFHEADING(Character device options:)
1256
1257DEF("chardev", HAS_ARG, QEMU_OPTION_chardev,
97331287 1258 "-chardev null,id=id[,mux=on|off]\n"
7273a2db 1259 "-chardev socket,id=id[,host=host],port=host[,to=to][,ipv4][,ipv6][,nodelay]\n"
97331287
JK
1260 " [,server][,nowait][,telnet][,mux=on|off] (tcp)\n"
1261 "-chardev socket,id=id,path=path[,server][,nowait][,telnet],[mux=on|off] (unix)\n"
7273a2db 1262 "-chardev udp,id=id[,host=host],port=port[,localaddr=localaddr]\n"
97331287
JK
1263 " [,localport=localport][,ipv4][,ipv6][,mux=on|off]\n"
1264 "-chardev msmouse,id=id[,mux=on|off]\n"
7273a2db 1265 "-chardev vc,id=id[[,width=width][,height=height]][[,cols=cols][,rows=rows]]\n"
97331287
JK
1266 " [,mux=on|off]\n"
1267 "-chardev file,id=id,path=path[,mux=on|off]\n"
1268 "-chardev pipe,id=id,path=path[,mux=on|off]\n"
7273a2db 1269#ifdef _WIN32
97331287
JK
1270 "-chardev console,id=id[,mux=on|off]\n"
1271 "-chardev serial,id=id,path=path[,mux=on|off]\n"
7273a2db 1272#else
97331287 1273 "-chardev pty,id=id[,mux=on|off]\n"
b7fdb3ab 1274 "-chardev stdio,id=id[,mux=on|off][,signal=on|off]\n"
7273a2db
MB
1275#endif
1276#ifdef CONFIG_BRLAPI
97331287 1277 "-chardev braille,id=id[,mux=on|off]\n"
7273a2db
MB
1278#endif
1279#if defined(__linux__) || defined(__sun__) || defined(__FreeBSD__) \
1280 || defined(__NetBSD__) || defined(__OpenBSD__) || defined(__DragonFly__)
97331287 1281 "-chardev tty,id=id,path=path[,mux=on|off]\n"
7273a2db
MB
1282#endif
1283#if defined(__linux__) || defined(__FreeBSD__) || defined(__DragonFly__)
97331287 1284 "-chardev parport,id=id,path=path[,mux=on|off]\n"
7273a2db 1285#endif
ad96090a 1286 , QEMU_ARCH_ALL
7273a2db
MB
1287)
1288
1289STEXI
1290
1291The general form of a character device option is:
1292@table @option
1293
97331287 1294@item -chardev @var{backend} ,id=@var{id} [,mux=on|off] [,@var{options}]
6616b2ad 1295@findex -chardev
7273a2db
MB
1296Backend is one of:
1297@option{null},
1298@option{socket},
1299@option{udp},
1300@option{msmouse},
1301@option{vc},
1302@option{file},
1303@option{pipe},
1304@option{console},
1305@option{serial},
1306@option{pty},
1307@option{stdio},
1308@option{braille},
1309@option{tty},
1310@option{parport}.
1311The specific backend will determine the applicable options.
1312
1313All devices must have an id, which can be any string up to 127 characters long.
1314It is used to uniquely identify this device in other command line directives.
1315
97331287
JK
1316A character device may be used in multiplexing mode by multiple front-ends.
1317The key sequence of @key{Control-a} and @key{c} will rotate the input focus
1318between attached front-ends. Specify @option{mux=on} to enable this mode.
1319
7273a2db
MB
1320Options to each backend are described below.
1321
1322@item -chardev null ,id=@var{id}
1323A void device. This device will not emit any data, and will drop any data it
1324receives. The null backend does not take any options.
1325
1326@item -chardev socket ,id=@var{id} [@var{TCP options} or @var{unix options}] [,server] [,nowait] [,telnet]
1327
1328Create a two-way stream socket, which can be either a TCP or a unix socket. A
1329unix socket will be created if @option{path} is specified. Behaviour is
1330undefined if TCP options are specified for a unix socket.
1331
1332@option{server} specifies that the socket shall be a listening socket.
1333
1334@option{nowait} specifies that QEMU should not block waiting for a client to
1335connect to a listening socket.
1336
1337@option{telnet} specifies that traffic on the socket should interpret telnet
1338escape sequences.
1339
1340TCP and unix socket options are given below:
1341
1342@table @option
1343
8d533561 1344@item TCP options: port=@var{port} [,host=@var{host}] [,to=@var{to}] [,ipv4] [,ipv6] [,nodelay]
7273a2db
MB
1345
1346@option{host} for a listening socket specifies the local address to be bound.
1347For a connecting socket species the remote host to connect to. @option{host} is
1348optional for listening sockets. If not specified it defaults to @code{0.0.0.0}.
1349
1350@option{port} for a listening socket specifies the local port to be bound. For a
1351connecting socket specifies the port on the remote host to connect to.
1352@option{port} can be given as either a port number or a service name.
1353@option{port} is required.
1354
1355@option{to} is only relevant to listening sockets. If it is specified, and
1356@option{port} cannot be bound, QEMU will attempt to bind to subsequent ports up
1357to and including @option{to} until it succeeds. @option{to} must be specified
1358as a port number.
1359
1360@option{ipv4} and @option{ipv6} specify that either IPv4 or IPv6 must be used.
1361If neither is specified the socket may use either protocol.
1362
1363@option{nodelay} disables the Nagle algorithm.
1364
1365@item unix options: path=@var{path}
1366
1367@option{path} specifies the local path of the unix socket. @option{path} is
1368required.
1369
1370@end table
1371
1372@item -chardev udp ,id=@var{id} [,host=@var{host}] ,port=@var{port} [,localaddr=@var{localaddr}] [,localport=@var{localport}] [,ipv4] [,ipv6]
1373
1374Sends all traffic from the guest to a remote host over UDP.
1375
1376@option{host} specifies the remote host to connect to. If not specified it
1377defaults to @code{localhost}.
1378
1379@option{port} specifies the port on the remote host to connect to. @option{port}
1380is required.
1381
1382@option{localaddr} specifies the local address to bind to. If not specified it
1383defaults to @code{0.0.0.0}.
1384
1385@option{localport} specifies the local port to bind to. If not specified any
1386available local port will be used.
1387
1388@option{ipv4} and @option{ipv6} specify that either IPv4 or IPv6 must be used.
1389If neither is specified the device may use either protocol.
1390
1391@item -chardev msmouse ,id=@var{id}
1392
1393Forward QEMU's emulated msmouse events to the guest. @option{msmouse} does not
1394take any options.
1395
1396@item -chardev vc ,id=@var{id} [[,width=@var{width}] [,height=@var{height}]] [[,cols=@var{cols}] [,rows=@var{rows}]]
1397
1398Connect to a QEMU text console. @option{vc} may optionally be given a specific
1399size.
1400
1401@option{width} and @option{height} specify the width and height respectively of
1402the console, in pixels.
1403
1404@option{cols} and @option{rows} specify that the console be sized to fit a text
1405console with the given dimensions.
1406
1407@item -chardev file ,id=@var{id} ,path=@var{path}
1408
1409Log all traffic received from the guest to a file.
1410
1411@option{path} specifies the path of the file to be opened. This file will be
1412created if it does not already exist, and overwritten if it does. @option{path}
1413is required.
1414
1415@item -chardev pipe ,id=@var{id} ,path=@var{path}
1416
1417Create a two-way connection to the guest. The behaviour differs slightly between
1418Windows hosts and other hosts:
1419
1420On Windows, a single duplex pipe will be created at
1421@file{\\.pipe\@option{path}}.
1422
1423On other hosts, 2 pipes will be created called @file{@option{path}.in} and
1424@file{@option{path}.out}. Data written to @file{@option{path}.in} will be
1425received by the guest. Data written by the guest can be read from
1426@file{@option{path}.out}. QEMU will not create these fifos, and requires them to
1427be present.
1428
1429@option{path} forms part of the pipe path as described above. @option{path} is
1430required.
1431
1432@item -chardev console ,id=@var{id}
1433
1434Send traffic from the guest to QEMU's standard output. @option{console} does not
1435take any options.
1436
1437@option{console} is only available on Windows hosts.
1438
1439@item -chardev serial ,id=@var{id} ,path=@option{path}
1440
1441Send traffic from the guest to a serial device on the host.
1442
1443@option{serial} is
1444only available on Windows hosts.
1445
1446@option{path} specifies the name of the serial device to open.
1447
1448@item -chardev pty ,id=@var{id}
1449
1450Create a new pseudo-terminal on the host and connect to it. @option{pty} does
1451not take any options.
1452
1453@option{pty} is not available on Windows hosts.
1454
b7fdb3ab 1455@item -chardev stdio ,id=@var{id} [,signal=on|off]
7273a2db 1456Connect to standard input and standard output of the qemu process.
b7fdb3ab
AJ
1457
1458@option{signal} controls if signals are enabled on the terminal, that includes
1459exiting QEMU with the key sequence @key{Control-c}. This option is enabled by
1460default, use @option{signal=off} to disable it.
1461
1462@option{stdio} is not available on Windows hosts.
7273a2db
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1463
1464@item -chardev braille ,id=@var{id}
1465
1466Connect to a local BrlAPI server. @option{braille} does not take any options.
1467
1468@item -chardev tty ,id=@var{id} ,path=@var{path}
1469
1470Connect to a local tty device.
1471
1472@option{tty} is only available on Linux, Sun, FreeBSD, NetBSD, OpenBSD and
1473DragonFlyBSD hosts.
1474
1475@option{path} specifies the path to the tty. @option{path} is required.
1476
1477@item -chardev parport ,id=@var{id} ,path=@var{path}
1478
1479@option{parport} is only available on Linux, FreeBSD and DragonFlyBSD hosts.
1480
1481Connect to a local parallel port.
1482
1483@option{path} specifies the path to the parallel port device. @option{path} is
1484required.
1485
1486@end table
1487ETEXI
1488
1489DEFHEADING()
1490
1491DEFHEADING(Bluetooth(R) options:)
1492
5824d651 1493DEF("bt", HAS_ARG, QEMU_OPTION_bt, \
5824d651
BS
1494 "-bt hci,null dumb bluetooth HCI - doesn't respond to commands\n" \
1495 "-bt hci,host[:id]\n" \
1496 " use host's HCI with the given name\n" \
1497 "-bt hci[,vlan=n]\n" \
1498 " emulate a standard HCI in virtual scatternet 'n'\n" \
1499 "-bt vhci[,vlan=n]\n" \
1500 " add host computer to virtual scatternet 'n' using VHCI\n" \
1501 "-bt device:dev[,vlan=n]\n" \
ad96090a
BS
1502 " emulate a bluetooth device 'dev' in scatternet 'n'\n",
1503 QEMU_ARCH_ALL)
5824d651 1504STEXI
5824d651
BS
1505@table @option
1506
1507@item -bt hci[...]
6616b2ad 1508@findex -bt
5824d651
BS
1509Defines the function of the corresponding Bluetooth HCI. -bt options
1510are matched with the HCIs present in the chosen machine type. For
1511example when emulating a machine with only one HCI built into it, only
1512the first @code{-bt hci[...]} option is valid and defines the HCI's
1513logic. The Transport Layer is decided by the machine type. Currently
1514the machines @code{n800} and @code{n810} have one HCI and all other
1515machines have none.
1516
1517@anchor{bt-hcis}
1518The following three types are recognized:
1519
b3f046c2 1520@table @option
5824d651
BS
1521@item -bt hci,null
1522(default) The corresponding Bluetooth HCI assumes no internal logic
1523and will not respond to any HCI commands or emit events.
1524
1525@item -bt hci,host[:@var{id}]
1526(@code{bluez} only) The corresponding HCI passes commands / events
1527to / from the physical HCI identified by the name @var{id} (default:
1528@code{hci0}) on the computer running QEMU. Only available on @code{bluez}
1529capable systems like Linux.
1530
1531@item -bt hci[,vlan=@var{n}]
1532Add a virtual, standard HCI that will participate in the Bluetooth
1533scatternet @var{n} (default @code{0}). Similarly to @option{-net}
1534VLANs, devices inside a bluetooth network @var{n} can only communicate
1535with other devices in the same network (scatternet).
1536@end table
1537
1538@item -bt vhci[,vlan=@var{n}]
1539(Linux-host only) Create a HCI in scatternet @var{n} (default 0) attached
1540to the host bluetooth stack instead of to the emulated target. This
1541allows the host and target machines to participate in a common scatternet
1542and communicate. Requires the Linux @code{vhci} driver installed. Can
1543be used as following:
1544
1545@example
1546qemu [...OPTIONS...] -bt hci,vlan=5 -bt vhci,vlan=5
1547@end example
1548
1549@item -bt device:@var{dev}[,vlan=@var{n}]
1550Emulate a bluetooth device @var{dev} and place it in network @var{n}
1551(default @code{0}). QEMU can only emulate one type of bluetooth devices
1552currently:
1553
b3f046c2 1554@table @option
5824d651
BS
1555@item keyboard
1556Virtual wireless keyboard implementing the HIDP bluetooth profile.
1557@end table
1558@end table
1559ETEXI
1560
1561DEFHEADING()
1562
7677f05d 1563DEFHEADING(Linux/Multiboot boot specific:)
5824d651 1564STEXI
7677f05d
AG
1565
1566When using these options, you can use a given Linux or Multiboot
1567kernel without installing it in the disk image. It can be useful
5824d651
BS
1568for easier testing of various kernels.
1569
1570@table @option
1571ETEXI
1572
1573DEF("kernel", HAS_ARG, QEMU_OPTION_kernel, \
ad96090a 1574 "-kernel bzImage use 'bzImage' as kernel image\n", QEMU_ARCH_ALL)
5824d651
BS
1575STEXI
1576@item -kernel @var{bzImage}
6616b2ad 1577@findex -kernel
7677f05d
AG
1578Use @var{bzImage} as kernel image. The kernel can be either a Linux kernel
1579or in multiboot format.
5824d651
BS
1580ETEXI
1581
1582DEF("append", HAS_ARG, QEMU_OPTION_append, \
ad96090a 1583 "-append cmdline use 'cmdline' as kernel command line\n", QEMU_ARCH_ALL)
5824d651
BS
1584STEXI
1585@item -append @var{cmdline}
6616b2ad 1586@findex -append
5824d651
BS
1587Use @var{cmdline} as kernel command line
1588ETEXI
1589
1590DEF("initrd", HAS_ARG, QEMU_OPTION_initrd, \
ad96090a 1591 "-initrd file use 'file' as initial ram disk\n", QEMU_ARCH_ALL)
5824d651
BS
1592STEXI
1593@item -initrd @var{file}
6616b2ad 1594@findex -initrd
5824d651 1595Use @var{file} as initial ram disk.
7677f05d
AG
1596
1597@item -initrd "@var{file1} arg=foo,@var{file2}"
1598
1599This syntax is only available with multiboot.
1600
1601Use @var{file1} and @var{file2} as modules and pass arg=foo as parameter to the
1602first module.
5824d651
BS
1603ETEXI
1604
1605STEXI
1606@end table
1607ETEXI
1608
1609DEFHEADING()
1610
1611DEFHEADING(Debug/Expert options:)
1612
1613STEXI
1614@table @option
1615ETEXI
1616
1617DEF("serial", HAS_ARG, QEMU_OPTION_serial, \
ad96090a
BS
1618 "-serial dev redirect the serial port to char device 'dev'\n",
1619 QEMU_ARCH_ALL)
5824d651
BS
1620STEXI
1621@item -serial @var{dev}
6616b2ad 1622@findex -serial
5824d651
BS
1623Redirect the virtual serial port to host character device
1624@var{dev}. The default device is @code{vc} in graphical mode and
1625@code{stdio} in non graphical mode.
1626
1627This option can be used several times to simulate up to 4 serial
1628ports.
1629
1630Use @code{-serial none} to disable all serial ports.
1631
1632Available character devices are:
b3f046c2 1633@table @option
4e257e5e 1634@item vc[:@var{W}x@var{H}]
5824d651
BS
1635Virtual console. Optionally, a width and height can be given in pixel with
1636@example
1637vc:800x600
1638@end example
1639It is also possible to specify width or height in characters:
1640@example
1641vc:80Cx24C
1642@end example
1643@item pty
1644[Linux only] Pseudo TTY (a new PTY is automatically allocated)
1645@item none
1646No device is allocated.
1647@item null
1648void device
1649@item /dev/XXX
1650[Linux only] Use host tty, e.g. @file{/dev/ttyS0}. The host serial port
1651parameters are set according to the emulated ones.
1652@item /dev/parport@var{N}
1653[Linux only, parallel port only] Use host parallel port
1654@var{N}. Currently SPP and EPP parallel port features can be used.
1655@item file:@var{filename}
1656Write output to @var{filename}. No character can be read.
1657@item stdio
1658[Unix only] standard input/output
1659@item pipe:@var{filename}
1660name pipe @var{filename}
1661@item COM@var{n}
1662[Windows only] Use host serial port @var{n}
1663@item udp:[@var{remote_host}]:@var{remote_port}[@@[@var{src_ip}]:@var{src_port}]
1664This implements UDP Net Console.
1665When @var{remote_host} or @var{src_ip} are not specified
1666they default to @code{0.0.0.0}.
1667When not using a specified @var{src_port} a random port is automatically chosen.
5824d651
BS
1668
1669If you just want a simple readonly console you can use @code{netcat} or
1670@code{nc}, by starting qemu with: @code{-serial udp::4555} and nc as:
1671@code{nc -u -l -p 4555}. Any time qemu writes something to that port it
1672will appear in the netconsole session.
1673
1674If you plan to send characters back via netconsole or you want to stop
1675and start qemu a lot of times, you should have qemu use the same
1676source port each time by using something like @code{-serial
1677udp::4555@@:4556} to qemu. Another approach is to use a patched
1678version of netcat which can listen to a TCP port and send and receive
1679characters via udp. If you have a patched version of netcat which
1680activates telnet remote echo and single char transfer, then you can
1681use the following options to step up a netcat redirector to allow
1682telnet on port 5555 to access the qemu port.
1683@table @code
1684@item Qemu Options:
1685-serial udp::4555@@:4556
1686@item netcat options:
1687-u -P 4555 -L 0.0.0.0:4556 -t -p 5555 -I -T
1688@item telnet options:
1689localhost 5555
1690@end table
1691
1692@item tcp:[@var{host}]:@var{port}[,@var{server}][,nowait][,nodelay]
1693The TCP Net Console has two modes of operation. It can send the serial
1694I/O to a location or wait for a connection from a location. By default
1695the TCP Net Console is sent to @var{host} at the @var{port}. If you use
1696the @var{server} option QEMU will wait for a client socket application
1697to connect to the port before continuing, unless the @code{nowait}
1698option was specified. The @code{nodelay} option disables the Nagle buffering
1699algorithm. If @var{host} is omitted, 0.0.0.0 is assumed. Only
1700one TCP connection at a time is accepted. You can use @code{telnet} to
1701connect to the corresponding character device.
1702@table @code
1703@item Example to send tcp console to 192.168.0.2 port 4444
1704-serial tcp:192.168.0.2:4444
1705@item Example to listen and wait on port 4444 for connection
1706-serial tcp::4444,server
1707@item Example to not wait and listen on ip 192.168.0.100 port 4444
1708-serial tcp:192.168.0.100:4444,server,nowait
1709@end table
1710
1711@item telnet:@var{host}:@var{port}[,server][,nowait][,nodelay]
1712The telnet protocol is used instead of raw tcp sockets. The options
1713work the same as if you had specified @code{-serial tcp}. The
1714difference is that the port acts like a telnet server or client using
1715telnet option negotiation. This will also allow you to send the
1716MAGIC_SYSRQ sequence if you use a telnet that supports sending the break
1717sequence. Typically in unix telnet you do it with Control-] and then
1718type "send break" followed by pressing the enter key.
1719
1720@item unix:@var{path}[,server][,nowait]
1721A unix domain socket is used instead of a tcp socket. The option works the
1722same as if you had specified @code{-serial tcp} except the unix domain socket
1723@var{path} is used for connections.
1724
1725@item mon:@var{dev_string}
1726This is a special option to allow the monitor to be multiplexed onto
1727another serial port. The monitor is accessed with key sequence of
1728@key{Control-a} and then pressing @key{c}. See monitor access
1729@ref{pcsys_keys} in the -nographic section for more keys.
1730@var{dev_string} should be any one of the serial devices specified
1731above. An example to multiplex the monitor onto a telnet server
1732listening on port 4444 would be:
1733@table @code
1734@item -serial mon:telnet::4444,server,nowait
1735@end table
1736
1737@item braille
1738Braille device. This will use BrlAPI to display the braille output on a real
1739or fake device.
1740
be8b28a9
KW
1741@item msmouse
1742Three button serial mouse. Configure the guest to use Microsoft protocol.
5824d651
BS
1743@end table
1744ETEXI
1745
1746DEF("parallel", HAS_ARG, QEMU_OPTION_parallel, \
ad96090a
BS
1747 "-parallel dev redirect the parallel port to char device 'dev'\n",
1748 QEMU_ARCH_ALL)
5824d651
BS
1749STEXI
1750@item -parallel @var{dev}
6616b2ad 1751@findex -parallel
5824d651
BS
1752Redirect the virtual parallel port to host device @var{dev} (same
1753devices as the serial port). On Linux hosts, @file{/dev/parportN} can
1754be used to use hardware devices connected on the corresponding host
1755parallel port.
1756
1757This option can be used several times to simulate up to 3 parallel
1758ports.
1759
1760Use @code{-parallel none} to disable all parallel ports.
1761ETEXI
1762
1763DEF("monitor", HAS_ARG, QEMU_OPTION_monitor, \
ad96090a
BS
1764 "-monitor dev redirect the monitor to char device 'dev'\n",
1765 QEMU_ARCH_ALL)
5824d651 1766STEXI
4e307fc8 1767@item -monitor @var{dev}
6616b2ad 1768@findex -monitor
5824d651
BS
1769Redirect the monitor to host device @var{dev} (same devices as the
1770serial port).
1771The default device is @code{vc} in graphical mode and @code{stdio} in
1772non graphical mode.
1773ETEXI
6ca5582d 1774DEF("qmp", HAS_ARG, QEMU_OPTION_qmp, \
ad96090a
BS
1775 "-qmp dev like -monitor but opens in 'control' mode\n",
1776 QEMU_ARCH_ALL)
95d5f08b
SW
1777STEXI
1778@item -qmp @var{dev}
6616b2ad 1779@findex -qmp
95d5f08b
SW
1780Like -monitor but opens in 'control' mode.
1781ETEXI
5824d651 1782
22a0e04b 1783DEF("mon", HAS_ARG, QEMU_OPTION_mon, \
ad96090a 1784 "-mon chardev=[name][,mode=readline|control][,default]\n", QEMU_ARCH_ALL)
22a0e04b
GH
1785STEXI
1786@item -mon chardev=[name][,mode=readline|control][,default]
6616b2ad 1787@findex -mon
22a0e04b
GH
1788Setup monitor on chardev @var{name}.
1789ETEXI
1790
c9f398e5 1791DEF("debugcon", HAS_ARG, QEMU_OPTION_debugcon, \
ad96090a
BS
1792 "-debugcon dev redirect the debug console to char device 'dev'\n",
1793 QEMU_ARCH_ALL)
c9f398e5
PA
1794STEXI
1795@item -debugcon @var{dev}
6616b2ad 1796@findex -debugcon
c9f398e5
PA
1797Redirect the debug console to host device @var{dev} (same devices as the
1798serial port). The debug console is an I/O port which is typically port
17990xe9; writing to that I/O port sends output to this device.
1800The default device is @code{vc} in graphical mode and @code{stdio} in
1801non graphical mode.
1802ETEXI
1803
5824d651 1804DEF("pidfile", HAS_ARG, QEMU_OPTION_pidfile, \
ad96090a 1805 "-pidfile file write PID to 'file'\n", QEMU_ARCH_ALL)
5824d651
BS
1806STEXI
1807@item -pidfile @var{file}
6616b2ad 1808@findex -pidfile
5824d651
BS
1809Store the QEMU process PID in @var{file}. It is useful if you launch QEMU
1810from a script.
1811ETEXI
1812
1b530a6d 1813DEF("singlestep", 0, QEMU_OPTION_singlestep, \
ad96090a 1814 "-singlestep always run in singlestep mode\n", QEMU_ARCH_ALL)
1b530a6d
AJ
1815STEXI
1816@item -singlestep
6616b2ad 1817@findex -singlestep
1b530a6d
AJ
1818Run the emulation in single step mode.
1819ETEXI
1820
5824d651 1821DEF("S", 0, QEMU_OPTION_S, \
ad96090a
BS
1822 "-S freeze CPU at startup (use 'c' to start execution)\n",
1823 QEMU_ARCH_ALL)
5824d651
BS
1824STEXI
1825@item -S
6616b2ad 1826@findex -S
5824d651
BS
1827Do not start CPU at startup (you must type 'c' in the monitor).
1828ETEXI
1829
59030a8c 1830DEF("gdb", HAS_ARG, QEMU_OPTION_gdb, \
ad96090a 1831 "-gdb dev wait for gdb connection on 'dev'\n", QEMU_ARCH_ALL)
59030a8c
AL
1832STEXI
1833@item -gdb @var{dev}
6616b2ad 1834@findex -gdb
59030a8c
AL
1835Wait for gdb connection on device @var{dev} (@pxref{gdb_usage}). Typical
1836connections will likely be TCP-based, but also UDP, pseudo TTY, or even
1837stdio are reasonable use case. The latter is allowing to start qemu from
1838within gdb and establish the connection via a pipe:
1839@example
1840(gdb) target remote | exec qemu -gdb stdio ...
1841@end example
5824d651
BS
1842ETEXI
1843
59030a8c 1844DEF("s", 0, QEMU_OPTION_s, \
ad96090a
BS
1845 "-s shorthand for -gdb tcp::" DEFAULT_GDBSTUB_PORT "\n",
1846 QEMU_ARCH_ALL)
5824d651 1847STEXI
59030a8c 1848@item -s
6616b2ad 1849@findex -s
59030a8c
AL
1850Shorthand for -gdb tcp::1234, i.e. open a gdbserver on TCP port 1234
1851(@pxref{gdb_usage}).
5824d651
BS
1852ETEXI
1853
1854DEF("d", HAS_ARG, QEMU_OPTION_d, \
ad96090a
BS
1855 "-d item1,... output log to /tmp/qemu.log (use -d ? for a list of log items)\n",
1856 QEMU_ARCH_ALL)
5824d651
BS
1857STEXI
1858@item -d
6616b2ad 1859@findex -d
5824d651
BS
1860Output log in /tmp/qemu.log
1861ETEXI
1862
1863DEF("hdachs", HAS_ARG, QEMU_OPTION_hdachs, \
1864 "-hdachs c,h,s[,t]\n" \
1865 " force hard disk 0 physical geometry and the optional BIOS\n" \
ad96090a
BS
1866 " translation (t=none or lba) (usually qemu can guess them)\n",
1867 QEMU_ARCH_ALL)
5824d651
BS
1868STEXI
1869@item -hdachs @var{c},@var{h},@var{s},[,@var{t}]
6616b2ad 1870@findex -hdachs
5824d651
BS
1871Force hard disk 0 physical geometry (1 <= @var{c} <= 16383, 1 <=
1872@var{h} <= 16, 1 <= @var{s} <= 63) and optionally force the BIOS
1873translation mode (@var{t}=none, lba or auto). Usually QEMU can guess
1874all those parameters. This option is useful for old MS-DOS disk
1875images.
1876ETEXI
1877
1878DEF("L", HAS_ARG, QEMU_OPTION_L, \
ad96090a
BS
1879 "-L path set the directory for the BIOS, VGA BIOS and keymaps\n",
1880 QEMU_ARCH_ALL)
5824d651
BS
1881STEXI
1882@item -L @var{path}
6616b2ad 1883@findex -L
5824d651
BS
1884Set the directory for the BIOS, VGA BIOS and keymaps.
1885ETEXI
1886
1887DEF("bios", HAS_ARG, QEMU_OPTION_bios, \
ad96090a 1888 "-bios file set the filename for the BIOS\n", QEMU_ARCH_ALL)
5824d651
BS
1889STEXI
1890@item -bios @var{file}
6616b2ad 1891@findex -bios
5824d651
BS
1892Set the filename for the BIOS.
1893ETEXI
1894
5824d651 1895DEF("enable-kvm", 0, QEMU_OPTION_enable_kvm, \
ad96090a 1896 "-enable-kvm enable KVM full virtualization support\n", QEMU_ARCH_ALL)
5824d651
BS
1897STEXI
1898@item -enable-kvm
6616b2ad 1899@findex -enable-kvm
5824d651
BS
1900Enable KVM full virtualization support. This option is only available
1901if KVM support is enabled when compiling.
1902ETEXI
1903
e37630ca 1904DEF("xen-domid", HAS_ARG, QEMU_OPTION_xen_domid,
ad96090a 1905 "-xen-domid id specify xen guest domain id\n", QEMU_ARCH_ALL)
e37630ca
AL
1906DEF("xen-create", 0, QEMU_OPTION_xen_create,
1907 "-xen-create create domain using xen hypercalls, bypassing xend\n"
ad96090a
BS
1908 " warning: should not be used when xend is in use\n",
1909 QEMU_ARCH_ALL)
e37630ca
AL
1910DEF("xen-attach", 0, QEMU_OPTION_xen_attach,
1911 "-xen-attach attach to existing xen domain\n"
ad96090a
BS
1912 " xend will use this when starting qemu\n",
1913 QEMU_ARCH_ALL)
95d5f08b
SW
1914STEXI
1915@item -xen-domid @var{id}
6616b2ad 1916@findex -xen-domid
95d5f08b
SW
1917Specify xen guest domain @var{id} (XEN only).
1918@item -xen-create
6616b2ad 1919@findex -xen-create
95d5f08b
SW
1920Create domain using xen hypercalls, bypassing xend.
1921Warning: should not be used when xend is in use (XEN only).
1922@item -xen-attach
6616b2ad 1923@findex -xen-attach
95d5f08b
SW
1924Attach to existing xen domain.
1925xend will use this when starting qemu (XEN only).
1926ETEXI
e37630ca 1927
5824d651 1928DEF("no-reboot", 0, QEMU_OPTION_no_reboot, \
ad96090a 1929 "-no-reboot exit instead of rebooting\n", QEMU_ARCH_ALL)
5824d651
BS
1930STEXI
1931@item -no-reboot
6616b2ad 1932@findex -no-reboot
5824d651
BS
1933Exit instead of rebooting.
1934ETEXI
1935
1936DEF("no-shutdown", 0, QEMU_OPTION_no_shutdown, \
ad96090a 1937 "-no-shutdown stop before shutdown\n", QEMU_ARCH_ALL)
5824d651
BS
1938STEXI
1939@item -no-shutdown
6616b2ad 1940@findex -no-shutdown
5824d651
BS
1941Don't exit QEMU on guest shutdown, but instead only stop the emulation.
1942This allows for instance switching to monitor to commit changes to the
1943disk image.
1944ETEXI
1945
1946DEF("loadvm", HAS_ARG, QEMU_OPTION_loadvm, \
1947 "-loadvm [tag|id]\n" \
ad96090a
BS
1948 " start right away with a saved state (loadvm in monitor)\n",
1949 QEMU_ARCH_ALL)
5824d651
BS
1950STEXI
1951@item -loadvm @var{file}
6616b2ad 1952@findex -loadvm
5824d651
BS
1953Start right away with a saved state (@code{loadvm} in monitor)
1954ETEXI
1955
1956#ifndef _WIN32
1957DEF("daemonize", 0, QEMU_OPTION_daemonize, \
ad96090a 1958 "-daemonize daemonize QEMU after initializing\n", QEMU_ARCH_ALL)
5824d651
BS
1959#endif
1960STEXI
1961@item -daemonize
6616b2ad 1962@findex -daemonize
5824d651
BS
1963Daemonize the QEMU process after initialization. QEMU will not detach from
1964standard IO until it is ready to receive connections on any of its devices.
1965This option is a useful way for external programs to launch QEMU without having
1966to cope with initialization race conditions.
1967ETEXI
1968
1969DEF("option-rom", HAS_ARG, QEMU_OPTION_option_rom, \
ad96090a
BS
1970 "-option-rom rom load a file, rom, into the option ROM space\n",
1971 QEMU_ARCH_ALL)
5824d651
BS
1972STEXI
1973@item -option-rom @var{file}
6616b2ad 1974@findex -option-rom
5824d651
BS
1975Load the contents of @var{file} as an option ROM.
1976This option is useful to load things like EtherBoot.
1977ETEXI
1978
1979DEF("clock", HAS_ARG, QEMU_OPTION_clock, \
1980 "-clock force the use of the given methods for timer alarm.\n" \
ad96090a
BS
1981 " To see what timers are available use -clock ?\n",
1982 QEMU_ARCH_ALL)
5824d651
BS
1983STEXI
1984@item -clock @var{method}
6616b2ad 1985@findex -clock
5824d651
BS
1986Force the use of the given methods for timer alarm. To see what timers
1987are available use -clock ?.
1988ETEXI
1989
1ed2fc1f 1990HXCOMM Options deprecated by -rtc
ad96090a
BS
1991DEF("localtime", 0, QEMU_OPTION_localtime, "", QEMU_ARCH_ALL)
1992DEF("startdate", HAS_ARG, QEMU_OPTION_startdate, "", QEMU_ARCH_ALL)
1ed2fc1f 1993
1ed2fc1f 1994DEF("rtc", HAS_ARG, QEMU_OPTION_rtc, \
6875204c 1995 "-rtc [base=utc|localtime|date][,clock=host|vm][,driftfix=none|slew]\n" \
ad96090a
BS
1996 " set the RTC base and clock, enable drift fix for clock ticks (x86 only)\n",
1997 QEMU_ARCH_ALL)
5824d651 1998
5824d651
BS
1999STEXI
2000
6875204c 2001@item -rtc [base=utc|localtime|@var{date}][,clock=host|vm][,driftfix=none|slew]
6616b2ad 2002@findex -rtc
1ed2fc1f
JK
2003Specify @option{base} as @code{utc} or @code{localtime} to let the RTC start at the current
2004UTC or local time, respectively. @code{localtime} is required for correct date in
2005MS-DOS or Windows. To start at a specific point in time, provide @var{date} in the
2006format @code{2006-06-17T16:01:21} or @code{2006-06-17}. The default base is UTC.
2007
6875204c
JK
2008By default the RTC is driven by the host system time. This allows to use the
2009RTC as accurate reference clock inside the guest, specifically if the host
2010time is smoothly following an accurate external reference clock, e.g. via NTP.
2011If you want to isolate the guest time from the host, even prevent it from
2012progressing during suspension, you can set @option{clock} to @code{vm} instead.
2013
1ed2fc1f
JK
2014Enable @option{driftfix} (i386 targets only) if you experience time drift problems,
2015specifically with Windows' ACPI HAL. This option will try to figure out how
2016many timer interrupts were not processed by the Windows guest and will
2017re-inject them.
5824d651
BS
2018ETEXI
2019
2020DEF("icount", HAS_ARG, QEMU_OPTION_icount, \
2021 "-icount [N|auto]\n" \
bc14ca24 2022 " enable virtual instruction counter with 2^N clock ticks per\n" \
ad96090a 2023 " instruction\n", QEMU_ARCH_ALL)
5824d651 2024STEXI
4e257e5e 2025@item -icount [@var{N}|auto]
6616b2ad 2026@findex -icount
5824d651 2027Enable virtual instruction counter. The virtual cpu will execute one
4e257e5e 2028instruction every 2^@var{N} ns of virtual time. If @code{auto} is specified
5824d651
BS
2029then the virtual cpu speed will be automatically adjusted to keep virtual
2030time within a few seconds of real time.
2031
2032Note that while this option can give deterministic behavior, it does not
2033provide cycle accurate emulation. Modern CPUs contain superscalar out of
2034order cores with complex cache hierarchies. The number of instructions
2035executed often has little or no correlation with actual performance.
2036ETEXI
2037
9dd986cc
RJ
2038DEF("watchdog", HAS_ARG, QEMU_OPTION_watchdog, \
2039 "-watchdog i6300esb|ib700\n" \
ad96090a
BS
2040 " enable virtual hardware watchdog [default=none]\n",
2041 QEMU_ARCH_ALL)
9dd986cc
RJ
2042STEXI
2043@item -watchdog @var{model}
6616b2ad 2044@findex -watchdog
9dd986cc
RJ
2045Create a virtual hardware watchdog device. Once enabled (by a guest
2046action), the watchdog must be periodically polled by an agent inside
2047the guest or else the guest will be restarted.
2048
2049The @var{model} is the model of hardware watchdog to emulate. Choices
2050for model are: @code{ib700} (iBASE 700) which is a very simple ISA
2051watchdog with a single timer, or @code{i6300esb} (Intel 6300ESB I/O
2052controller hub) which is a much more featureful PCI-based dual-timer
2053watchdog. Choose a model for which your guest has drivers.
2054
2055Use @code{-watchdog ?} to list available hardware models. Only one
2056watchdog can be enabled for a guest.
2057ETEXI
2058
2059DEF("watchdog-action", HAS_ARG, QEMU_OPTION_watchdog_action, \
2060 "-watchdog-action reset|shutdown|poweroff|pause|debug|none\n" \
ad96090a
BS
2061 " action when watchdog fires [default=reset]\n",
2062 QEMU_ARCH_ALL)
9dd986cc
RJ
2063STEXI
2064@item -watchdog-action @var{action}
2065
2066The @var{action} controls what QEMU will do when the watchdog timer
2067expires.
2068The default is
2069@code{reset} (forcefully reset the guest).
2070Other possible actions are:
2071@code{shutdown} (attempt to gracefully shutdown the guest),
2072@code{poweroff} (forcefully poweroff the guest),
2073@code{pause} (pause the guest),
2074@code{debug} (print a debug message and continue), or
2075@code{none} (do nothing).
2076
2077Note that the @code{shutdown} action requires that the guest responds
2078to ACPI signals, which it may not be able to do in the sort of
2079situations where the watchdog would have expired, and thus
2080@code{-watchdog-action shutdown} is not recommended for production use.
2081
2082Examples:
2083
2084@table @code
2085@item -watchdog i6300esb -watchdog-action pause
2086@item -watchdog ib700
2087@end table
2088ETEXI
2089
5824d651 2090DEF("echr", HAS_ARG, QEMU_OPTION_echr, \
ad96090a
BS
2091 "-echr chr set terminal escape character instead of ctrl-a\n",
2092 QEMU_ARCH_ALL)
5824d651
BS
2093STEXI
2094
4e257e5e 2095@item -echr @var{numeric_ascii_value}
6616b2ad 2096@findex -echr
5824d651
BS
2097Change the escape character used for switching to the monitor when using
2098monitor and serial sharing. The default is @code{0x01} when using the
2099@code{-nographic} option. @code{0x01} is equal to pressing
2100@code{Control-a}. You can select a different character from the ascii
2101control keys where 1 through 26 map to Control-a through Control-z. For
2102instance you could use the either of the following to change the escape
2103character to Control-t.
2104@table @code
2105@item -echr 0x14
2106@item -echr 20
2107@end table
2108ETEXI
2109
2110DEF("virtioconsole", HAS_ARG, QEMU_OPTION_virtiocon, \
2111 "-virtioconsole c\n" \
ad96090a 2112 " set virtio console\n", QEMU_ARCH_ALL)
5824d651
BS
2113STEXI
2114@item -virtioconsole @var{c}
6616b2ad 2115@findex -virtioconsole
5824d651 2116Set virtio console.
98b19252
AS
2117
2118This option is maintained for backward compatibility.
2119
2120Please use @code{-device virtconsole} for the new way of invocation.
5824d651
BS
2121ETEXI
2122
2123DEF("show-cursor", 0, QEMU_OPTION_show_cursor, \
ad96090a 2124 "-show-cursor show cursor\n", QEMU_ARCH_ALL)
5824d651 2125STEXI
95d5f08b 2126@item -show-cursor
6616b2ad 2127@findex -show-cursor
95d5f08b 2128Show cursor.
5824d651
BS
2129ETEXI
2130
2131DEF("tb-size", HAS_ARG, QEMU_OPTION_tb_size, \
ad96090a 2132 "-tb-size n set TB size\n", QEMU_ARCH_ALL)
5824d651 2133STEXI
95d5f08b 2134@item -tb-size @var{n}
6616b2ad 2135@findex -tb-size
95d5f08b 2136Set TB size.
5824d651
BS
2137ETEXI
2138
2139DEF("incoming", HAS_ARG, QEMU_OPTION_incoming, \
ad96090a
BS
2140 "-incoming p prepare for incoming migration, listen on port p\n",
2141 QEMU_ARCH_ALL)
5824d651 2142STEXI
95d5f08b 2143@item -incoming @var{port}
6616b2ad 2144@findex -incoming
95d5f08b 2145Prepare for incoming migration, listen on @var{port}.
5824d651
BS
2146ETEXI
2147
d8c208dd 2148DEF("nodefaults", 0, QEMU_OPTION_nodefaults, \
ad96090a 2149 "-nodefaults don't create default devices\n", QEMU_ARCH_ALL)
d8c208dd 2150STEXI
3dbf2c7f 2151@item -nodefaults
6616b2ad 2152@findex -nodefaults
3dbf2c7f 2153Don't create default devices.
d8c208dd
GH
2154ETEXI
2155
5824d651
BS
2156#ifndef _WIN32
2157DEF("chroot", HAS_ARG, QEMU_OPTION_chroot, \
ad96090a
BS
2158 "-chroot dir chroot to dir just before starting the VM\n",
2159 QEMU_ARCH_ALL)
5824d651
BS
2160#endif
2161STEXI
4e257e5e 2162@item -chroot @var{dir}
6616b2ad 2163@findex -chroot
5824d651
BS
2164Immediately before starting guest execution, chroot to the specified
2165directory. Especially useful in combination with -runas.
2166ETEXI
2167
2168#ifndef _WIN32
2169DEF("runas", HAS_ARG, QEMU_OPTION_runas, \
ad96090a
BS
2170 "-runas user change to user id user just before starting the VM\n",
2171 QEMU_ARCH_ALL)
5824d651
BS
2172#endif
2173STEXI
4e257e5e 2174@item -runas @var{user}
6616b2ad 2175@findex -runas
5824d651
BS
2176Immediately before starting guest execution, drop root privileges, switching
2177to the specified user.
2178ETEXI
2179
5824d651
BS
2180DEF("prom-env", HAS_ARG, QEMU_OPTION_prom_env,
2181 "-prom-env variable=value\n"
ad96090a
BS
2182 " set OpenBIOS nvram variables\n",
2183 QEMU_ARCH_PPC | QEMU_ARCH_SPARC)
95d5f08b
SW
2184STEXI
2185@item -prom-env @var{variable}=@var{value}
6616b2ad 2186@findex -prom-env
95d5f08b
SW
2187Set OpenBIOS nvram @var{variable} to given @var{value} (PPC, SPARC only).
2188ETEXI
5824d651 2189DEF("semihosting", 0, QEMU_OPTION_semihosting,
ad96090a 2190 "-semihosting semihosting mode\n", QEMU_ARCH_ARM | QEMU_ARCH_M68K)
95d5f08b
SW
2191STEXI
2192@item -semihosting
6616b2ad 2193@findex -semihosting
95d5f08b
SW
2194Semihosting mode (ARM, M68K only).
2195ETEXI
5824d651 2196DEF("old-param", 0, QEMU_OPTION_old_param,
ad96090a 2197 "-old-param old param mode\n", QEMU_ARCH_ARM)
95d5f08b
SW
2198STEXI
2199@item -old-param
6616b2ad 2200@findex -old-param (ARM)
95d5f08b
SW
2201Old param mode (ARM only).
2202ETEXI
2203
715a664a 2204DEF("readconfig", HAS_ARG, QEMU_OPTION_readconfig,
ad96090a 2205 "-readconfig <file>\n", QEMU_ARCH_ALL)
3dbf2c7f
SW
2206STEXI
2207@item -readconfig @var{file}
6616b2ad 2208@findex -readconfig
3dbf2c7f
SW
2209Read device configuration from @var{file}.
2210ETEXI
715a664a
GH
2211DEF("writeconfig", HAS_ARG, QEMU_OPTION_writeconfig,
2212 "-writeconfig <file>\n"
ad96090a 2213 " read/write config file\n", QEMU_ARCH_ALL)
3dbf2c7f
SW
2214STEXI
2215@item -writeconfig @var{file}
6616b2ad 2216@findex -writeconfig
3dbf2c7f
SW
2217Write device configuration to @var{file}.
2218ETEXI
292444cb
AL
2219DEF("nodefconfig", 0, QEMU_OPTION_nodefconfig,
2220 "-nodefconfig\n"
ad96090a
BS
2221 " do not load default config files at startup\n",
2222 QEMU_ARCH_ALL)
292444cb
AL
2223STEXI
2224@item -nodefconfig
6616b2ad 2225@findex -nodefconfig
292444cb
AL
2226Normally QEMU loads a configuration file from @var{sysconfdir}/qemu.conf and
2227@var{sysconfdir}/target-@var{ARCH}.conf on startup. The @code{-nodefconfig}
2228option will prevent QEMU from loading these configuration files at startup.
2229ETEXI
3dbf2c7f
SW
2230
2231HXCOMM This is the last statement. Insert new options before this line!
2232STEXI
2233@end table
2234ETEXI