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3c95fdef
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1HXCOMM Use DEFHEADING() to define headings in both help text and rST.
2HXCOMM Text between SRST and ERST is copied to the rST 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.
3c95fdef 7HXCOMM HXCOMM can be used for comments, discarded from both rST and C.
5824d651 8
de6b4f90 9DEFHEADING(Standard options:)
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10
11DEF("help", 0, QEMU_OPTION_h,
ad96090a 12 "-h or -help display this help and exit\n", QEMU_ARCH_ALL)
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13SRST
14``-h``
15 Display help and exit
16ERST
5824d651 17
9bd7e6d9 18DEF("version", 0, QEMU_OPTION_version,
ad96090a 19 "-version display version information and exit\n", QEMU_ARCH_ALL)
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20SRST
21``-version``
22 Display version information and exit
23ERST
9bd7e6d9 24
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25DEF("machine", HAS_ARG, QEMU_OPTION_machine, \
26 "-machine [type=]name[,prop[=value][,...]]\n"
585f6036 27 " selects emulated machine ('-machine help' for list)\n"
80f52a66 28 " property accel=accel1[:accel2[:...]] selects accelerator\n"
74a414a1 29 " supported accelerators are kvm, xen, hax, hvf, nvmm, whpx or tcg (default: tcg)\n"
d1048bef 30 " vmport=on|off|auto controls emulation of vmport (default: auto)\n"
8490fc78 31 " dump-guest-core=on|off include guest memory in a core dump (default=on)\n"
a52a7fdf 32 " mem-merge=on|off controls memory merge support (default: on)\n"
2eb1cd07 33 " aes-key-wrap=on|off controls support for AES key wrapping (default=on)\n"
9850c604 34 " dea-key-wrap=on|off controls support for DEA key wrapping (default=on)\n"
87252e1b 35 " suppress-vmdesc=on|off disables self-describing migration (default=off)\n"
902c053d 36 " nvdimm=on|off controls NVDIMM support (default=off)\n"
244b3f44 37 " memory-encryption=@var{} memory encryption object to use (default=none)\n"
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38 " hmat=on|off controls ACPI HMAT support (default=off)\n"
39 " memory-backend='backend-id' specifies explicitly provided backend for main RAM (default=none)\n",
80f52a66 40 QEMU_ARCH_ALL)
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41SRST
42``-machine [type=]name[,prop=value[,...]]``
43 Select the emulated machine by name. Use ``-machine help`` to list
44 available machines.
45
46 For architectures which aim to support live migration compatibility
47 across releases, each release will introduce a new versioned machine
48 type. For example, the 2.8.0 release introduced machine types
49 "pc-i440fx-2.8" and "pc-q35-2.8" for the x86\_64/i686 architectures.
50
51 To allow live migration of guests from QEMU version 2.8.0, to QEMU
52 version 2.9.0, the 2.9.0 version must support the "pc-i440fx-2.8"
53 and "pc-q35-2.8" machines too. To allow users live migrating VMs to
54 skip multiple intermediate releases when upgrading, new releases of
55 QEMU will support machine types from many previous versions.
56
57 Supported machine properties are:
58
59 ``accel=accels1[:accels2[:...]]``
60 This is used to enable an accelerator. Depending on the target
74a414a1 61 architecture, kvm, xen, hax, hvf, nvmm, whpx or tcg can be available.
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62 By default, tcg is used. If there is more than one accelerator
63 specified, the next one is used if the previous one fails to
64 initialize.
65
66 ``vmport=on|off|auto``
67 Enables emulation of VMWare IO port, for vmmouse etc. auto says
68 to select the value based on accel. For accel=xen the default is
69 off otherwise the default is on.
70
71 ``dump-guest-core=on|off``
72 Include guest memory in a core dump. The default is on.
73
74 ``mem-merge=on|off``
75 Enables or disables memory merge support. This feature, when
76 supported by the host, de-duplicates identical memory pages
77 among VMs instances (enabled by default).
78
79 ``aes-key-wrap=on|off``
80 Enables or disables AES key wrapping support on s390-ccw hosts.
81 This feature controls whether AES wrapping keys will be created
82 to allow execution of AES cryptographic functions. The default
83 is on.
84
85 ``dea-key-wrap=on|off``
86 Enables or disables DEA key wrapping support on s390-ccw hosts.
87 This feature controls whether DEA wrapping keys will be created
88 to allow execution of DEA cryptographic functions. The default
89 is on.
90
91 ``nvdimm=on|off``
92 Enables or disables NVDIMM support. The default is off.
93
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94 ``memory-encryption=``
95 Memory encryption object to use. The default is none.
96
97 ``hmat=on|off``
98 Enables or disables ACPI Heterogeneous Memory Attribute Table
99 (HMAT) support. The default is off.
8db0b204 100
95355829 101 ``memory-backend='id'``
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102 An alternative to legacy ``-mem-path`` and ``mem-prealloc`` options.
103 Allows to use a memory backend as main RAM.
104
105 For example:
106 ::
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107
108 -object memory-backend-file,id=pc.ram,size=512M,mem-path=/hugetlbfs,prealloc=on,share=on
109 -machine memory-backend=pc.ram
110 -m 512M
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111
112 Migration compatibility note:
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113
114 * as backend id one shall use value of 'default-ram-id', advertised by
115 machine type (available via ``query-machines`` QMP command), if migration
116 to/from old QEMU (<5.0) is expected.
117 * for machine types 4.0 and older, user shall
118 use ``x-use-canonical-path-for-ramblock-id=off`` backend option
119 if migration to/from old QEMU (<5.0) is expected.
120
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121 For example:
122 ::
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123
124 -object memory-backend-ram,id=pc.ram,size=512M,x-use-canonical-path-for-ramblock-id=off
125 -machine memory-backend=pc.ram
126 -m 512M
e2fcbf42 127ERST
5824d651 128
dfce81f1 129DEF("M", HAS_ARG, QEMU_OPTION_M,
11058123 130 " sgx-epc.0.memdev=memid,sgx-epc.0.node=numaid\n",
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131 QEMU_ARCH_ALL)
132
133SRST
11058123 134``sgx-epc.0.memdev=@var{memid},sgx-epc.0.node=@var{numaid}``
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135 Define an SGX EPC section.
136ERST
80f52a66 137
5824d651 138DEF("cpu", HAS_ARG, QEMU_OPTION_cpu,
585f6036 139 "-cpu cpu select CPU ('-cpu help' for list)\n", QEMU_ARCH_ALL)
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140SRST
141``-cpu model``
142 Select CPU model (``-cpu help`` for list and additional feature
143 selection)
144ERST
5824d651 145
8d4e9146 146DEF("accel", HAS_ARG, QEMU_OPTION_accel,
fe174132 147 "-accel [accel=]accelerator[,prop[=value][,...]]\n"
74a414a1 148 " select accelerator (kvm, xen, hax, hvf, nvmm, whpx or tcg; use 'help' for a list)\n"
46472d82 149 " igd-passthru=on|off (enable Xen integrated Intel graphics passthrough, default=off)\n"
11bc4a13 150 " kernel-irqchip=on|off|split controls accelerated irqchip support (default=on)\n"
23b0898e 151 " kvm-shadow-mem=size of KVM shadow MMU in bytes\n"
a35b3e14 152 " split-wx=on|off (enable TCG split w^x mapping)\n"
fe174132 153 " tb-size=n (TCG translation block cache size)\n"
2ea5cb0a 154 " dirty-ring-size=n (KVM dirty ring GFN count, default 0)\n"
0b3c5c81 155 " thread=single|multi (enable multi-threaded TCG)\n", QEMU_ARCH_ALL)
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156SRST
157``-accel name[,prop=value[,...]]``
158 This is used to enable an accelerator. Depending on the target
74a414a1 159 architecture, kvm, xen, hax, hvf, nvmm, whpx or tcg can be available. By
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160 default, tcg is used. If there is more than one accelerator
161 specified, the next one is used if the previous one fails to
162 initialize.
163
164 ``igd-passthru=on|off``
165 When Xen is in use, this option controls whether Intel
166 integrated graphics devices can be passed through to the guest
167 (default=off)
168
169 ``kernel-irqchip=on|off|split``
170 Controls KVM in-kernel irqchip support. The default is full
171 acceleration of the interrupt controllers. On x86, split irqchip
172 reduces the kernel attack surface, at a performance cost for
173 non-MSI interrupts. Disabling the in-kernel irqchip completely
174 is not recommended except for debugging purposes.
175
176 ``kvm-shadow-mem=size``
177 Defines the size of the KVM shadow MMU.
178
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179 ``split-wx=on|off``
180 Controls the use of split w^x mapping for the TCG code generation
181 buffer. Some operating systems require this to be enabled, and in
182 such a case this will default on. On other operating systems, this
183 will default off, but one may enable this for testing or debugging.
184
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185 ``tb-size=n``
186 Controls the size (in MiB) of the TCG translation block cache.
187
188 ``thread=single|multi``
189 Controls number of TCG threads. When the TCG is multi-threaded
cba42d61 190 there will be one thread per vCPU therefore taking advantage of
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191 additional host cores. The default is to enable multi-threading
192 where both the back-end and front-ends support it and no
193 incompatible TCG features have been enabled (e.g.
194 icount/replay).
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195
196 ``dirty-ring-size=n``
197 When the KVM accelerator is used, it controls the size of the per-vCPU
198 dirty page ring buffer (number of entries for each vCPU). It should
199 be a value that is power of two, and it should be 1024 or bigger (but
200 still less than the maximum value that the kernel supports). 4096
201 could be a good initial value if you have no idea which is the best.
202 Set this value to 0 to disable the feature. By default, this feature
203 is disabled (dirty-ring-size=0). When enabled, KVM will instead
204 record dirty pages in a bitmap.
205
e2fcbf42 206ERST
8d4e9146 207
5824d651 208DEF("smp", HAS_ARG, QEMU_OPTION_smp,
864c3b5c 209 "-smp [[cpus=]n][,maxcpus=maxcpus][,sockets=sockets][,dies=dies][,clusters=clusters][,cores=cores][,threads=threads]\n"
0d871785 210 " set the number of initial CPUs to 'n' [default=1]\n"
ce8ee7c6 211 " maxcpus= maximum number of total CPUs, including\n"
ca1a8a06 212 " offline CPUs for hotplug, etc\n"
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213 " sockets= number of sockets on the machine board\n"
214 " dies= number of dies in one socket\n"
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215 " clusters= number of clusters in one die\n"
216 " cores= number of cores in one cluster\n"
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217 " threads= number of threads in one core\n"
218 "Note: Different machines may have different subsets of the CPU topology\n"
219 " parameters supported, so the actual meaning of the supported parameters\n"
220 " will vary accordingly. For example, for a machine type that supports a\n"
221 " three-level CPU hierarchy of sockets/cores/threads, the parameters will\n"
222 " sequentially mean as below:\n"
223 " sockets means the number of sockets on the machine board\n"
224 " cores means the number of cores in one socket\n"
225 " threads means the number of threads in one core\n"
226 " For a particular machine type board, an expected CPU topology hierarchy\n"
227 " can be defined through the supported sub-option. Unsupported parameters\n"
228 " can also be provided in addition to the sub-option, but their values\n"
229 " must be set as 1 in the purpose of correct parsing.\n",
230 QEMU_ARCH_ALL)
e2fcbf42 231SRST
864c3b5c 232``-smp [[cpus=]n][,maxcpus=maxcpus][,sockets=sockets][,dies=dies][,clusters=clusters][,cores=cores][,threads=threads]``
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233 Simulate a SMP system with '\ ``n``\ ' CPUs initially present on
234 the machine type board. On boards supporting CPU hotplug, the optional
235 '\ ``maxcpus``\ ' parameter can be set to enable further CPUs to be
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236 added at runtime. When both parameters are omitted, the maximum number
237 of CPUs will be calculated from the provided topology members and the
238 initial CPU count will match the maximum number. When only one of them
239 is given then the omitted one will be set to its counterpart's value.
240 Both parameters may be specified, but the maximum number of CPUs must
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241 be equal to or greater than the initial CPU count. Product of the
242 CPU topology hierarchy must be equal to the maximum number of CPUs.
243 Both parameters are subject to an upper limit that is determined by
244 the specific machine type chosen.
245
246 To control reporting of CPU topology information, values of the topology
247 parameters can be specified. Machines may only support a subset of the
248 parameters and different machines may have different subsets supported
249 which vary depending on capacity of the corresponding CPU targets. So
250 for a particular machine type board, an expected topology hierarchy can
251 be defined through the supported sub-option. Unsupported parameters can
252 also be provided in addition to the sub-option, but their values must be
253 set as 1 in the purpose of correct parsing.
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254
255 Either the initial CPU count, or at least one of the topology parameters
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256 must be specified. The specified parameters must be greater than zero,
257 explicit configuration like "cpus=0" is not allowed. Values for any
258 omitted parameters will be computed from those which are given.
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259
260 For example, the following sub-option defines a CPU topology hierarchy
261 (2 sockets totally on the machine, 2 cores per socket, 2 threads per
262 core) for a machine that only supports sockets/cores/threads.
263 Some members of the option can be omitted but their values will be
264 automatically computed:
265
266 ::
267
268 -smp 8,sockets=2,cores=2,threads=2,maxcpus=8
269
270 The following sub-option defines a CPU topology hierarchy (2 sockets
271 totally on the machine, 2 dies per socket, 2 cores per die, 2 threads
272 per core) for PC machines which support sockets/dies/cores/threads.
273 Some members of the option can be omitted but their values will be
274 automatically computed:
275
276 ::
277
278 -smp 16,sockets=2,dies=2,cores=2,threads=2,maxcpus=16
279
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280 The following sub-option defines a CPU topology hierarchy (2 sockets
281 totally on the machine, 2 clusters per socket, 2 cores per cluster,
282 2 threads per core) for ARM virt machines which support sockets/clusters
283 /cores/threads. Some members of the option can be omitted but their values
284 will be automatically computed:
285
286 ::
287
288 -smp 16,sockets=2,clusters=2,cores=2,threads=2,maxcpus=16
289
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290 Historically preference was given to the coarsest topology parameters
291 when computing missing values (ie sockets preferred over cores, which
292 were preferred over threads), however, this behaviour is considered
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293 liable to change. Prior to 6.2 the preference was sockets over cores
294 over threads. Since 6.2 the preference is cores over sockets over threads.
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295
296 For example, the following option defines a machine board with 2 sockets
297 of 1 core before 6.2 and 1 socket of 2 cores after 6.2:
298
299 ::
300
301 -smp 2
e2fcbf42 302ERST
5824d651 303
268a362c 304DEF("numa", HAS_ARG, QEMU_OPTION_numa,
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305 "-numa node[,mem=size][,cpus=firstcpu[-lastcpu]][,nodeid=node][,initiator=node]\n"
306 "-numa node[,memdev=id][,cpus=firstcpu[-lastcpu]][,nodeid=node][,initiator=node]\n"
2d19c656 307 "-numa dist,src=source,dst=destination,val=distance\n"
9b12dfa0 308 "-numa cpu,node-id=node[,socket-id=x][,core-id=y][,thread-id=z]\n"
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309 "-numa hmat-lb,initiator=node,target=node,hierarchy=memory|first-level|second-level|third-level,data-type=access-latency|read-latency|write-latency[,latency=lat][,bandwidth=bw]\n"
310 "-numa hmat-cache,node-id=node,size=size,level=level[,associativity=none|direct|complex][,policy=none|write-back|write-through][,line=size]\n",
2d19c656 311 QEMU_ARCH_ALL)
e2fcbf42 312SRST
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313``-numa node[,mem=size][,cpus=firstcpu[-lastcpu]][,nodeid=node][,initiator=initiator]``
314 \
315``-numa node[,memdev=id][,cpus=firstcpu[-lastcpu]][,nodeid=node][,initiator=initiator]``
316 \
317``-numa dist,src=source,dst=destination,val=distance``
318 \
319``-numa cpu,node-id=node[,socket-id=x][,core-id=y][,thread-id=z]``
320 \
321``-numa hmat-lb,initiator=node,target=node,hierarchy=hierarchy,data-type=tpye[,latency=lat][,bandwidth=bw]``
322 \
323``-numa hmat-cache,node-id=node,size=size,level=level[,associativity=str][,policy=str][,line=size]``
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324 Define a NUMA node and assign RAM and VCPUs to it. Set the NUMA
325 distance from a source node to a destination node. Set the ACPI
326 Heterogeneous Memory Attributes for the given nodes.
327
328 Legacy VCPU assignment uses '\ ``cpus``\ ' option where firstcpu and
329 lastcpu are CPU indexes. Each '\ ``cpus``\ ' option represent a
330 contiguous range of CPU indexes (or a single VCPU if lastcpu is
331 omitted). A non-contiguous set of VCPUs can be represented by
332 providing multiple '\ ``cpus``\ ' options. If '\ ``cpus``\ ' is
333 omitted on all nodes, VCPUs are automatically split between them.
334
335 For example, the following option assigns VCPUs 0, 1, 2 and 5 to a
336 NUMA node:
337
338 ::
339
340 -numa node,cpus=0-2,cpus=5
341
342 '\ ``cpu``\ ' option is a new alternative to '\ ``cpus``\ ' option
343 which uses '\ ``socket-id|core-id|thread-id``\ ' properties to
344 assign CPU objects to a node using topology layout properties of
345 CPU. The set of properties is machine specific, and depends on used
346 machine type/'\ ``smp``\ ' options. It could be queried with
347 '\ ``hotpluggable-cpus``\ ' monitor command. '\ ``node-id``\ '
348 property specifies node to which CPU object will be assigned, it's
349 required for node to be declared with '\ ``node``\ ' option before
350 it's used with '\ ``cpu``\ ' option.
351
352 For example:
353
354 ::
355
356 -M pc \
357 -smp 1,sockets=2,maxcpus=2 \
358 -numa node,nodeid=0 -numa node,nodeid=1 \
359 -numa cpu,node-id=0,socket-id=0 -numa cpu,node-id=1,socket-id=1
360
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361 Legacy '\ ``mem``\ ' assigns a given RAM amount to a node (not supported
362 for 5.1 and newer machine types). '\ ``memdev``\ ' assigns RAM from
363 a given memory backend device to a node. If '\ ``mem``\ ' and
364 '\ ``memdev``\ ' are omitted in all nodes, RAM is split equally between them.
365
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366
367 '\ ``mem``\ ' and '\ ``memdev``\ ' are mutually exclusive.
368 Furthermore, if one node uses '\ ``memdev``\ ', all of them have to
369 use it.
370
371 '\ ``initiator``\ ' is an additional option that points to an
372 initiator NUMA node that has best performance (the lowest latency or
373 largest bandwidth) to this NUMA node. Note that this option can be
374 set only when the machine property 'hmat' is set to 'on'.
375
376 Following example creates a machine with 2 NUMA nodes, node 0 has
377 CPU. node 1 has only memory, and its initiator is node 0. Note that
378 because node 0 has CPU, by default the initiator of node 0 is itself
379 and must be itself.
380
381 ::
382
383 -machine hmat=on \
384 -m 2G,slots=2,maxmem=4G \
385 -object memory-backend-ram,size=1G,id=m0 \
386 -object memory-backend-ram,size=1G,id=m1 \
387 -numa node,nodeid=0,memdev=m0 \
388 -numa node,nodeid=1,memdev=m1,initiator=0 \
389 -smp 2,sockets=2,maxcpus=2 \
390 -numa cpu,node-id=0,socket-id=0 \
391 -numa cpu,node-id=0,socket-id=1
392
393 source and destination are NUMA node IDs. distance is the NUMA
394 distance from source to destination. The distance from a node to
395 itself is always 10. If any pair of nodes is given a distance, then
396 all pairs must be given distances. Although, when distances are only
397 given in one direction for each pair of nodes, then the distances in
398 the opposite directions are assumed to be the same. If, however, an
399 asymmetrical pair of distances is given for even one node pair, then
400 all node pairs must be provided distance values for both directions,
401 even when they are symmetrical. When a node is unreachable from
402 another node, set the pair's distance to 255.
403
404 Note that the -``numa`` option doesn't allocate any of the specified
405 resources, it just assigns existing resources to NUMA nodes. This
406 means that one still has to use the ``-m``, ``-smp`` options to
407 allocate RAM and VCPUs respectively.
408
409 Use '\ ``hmat-lb``\ ' to set System Locality Latency and Bandwidth
410 Information between initiator and target NUMA nodes in ACPI
411 Heterogeneous Attribute Memory Table (HMAT). Initiator NUMA node can
412 create memory requests, usually it has one or more processors.
413 Target NUMA node contains addressable memory.
414
415 In '\ ``hmat-lb``\ ' option, node are NUMA node IDs. hierarchy is
416 the memory hierarchy of the target NUMA node: if hierarchy is
417 'memory', the structure represents the memory performance; if
418 hierarchy is 'first-level\|second-level\|third-level', this
419 structure represents aggregated performance of memory side caches
420 for each domain. type of 'data-type' is type of data represented by
421 this structure instance: if 'hierarchy' is 'memory', 'data-type' is
422 'access\|read\|write' latency or 'access\|read\|write' bandwidth of
423 the target memory; if 'hierarchy' is
424 'first-level\|second-level\|third-level', 'data-type' is
425 'access\|read\|write' hit latency or 'access\|read\|write' hit
426 bandwidth of the target memory side cache.
427
428 lat is latency value in nanoseconds. bw is bandwidth value, the
429 possible value and units are NUM[M\|G\|T], mean that the bandwidth
430 value are NUM byte per second (or MB/s, GB/s or TB/s depending on
431 used suffix). Note that if latency or bandwidth value is 0, means
432 the corresponding latency or bandwidth information is not provided.
433
434 In '\ ``hmat-cache``\ ' option, node-id is the NUMA-id of the memory
435 belongs. size is the size of memory side cache in bytes. level is
436 the cache level described in this structure, note that the cache
437 level 0 should not be used with '\ ``hmat-cache``\ ' option.
438 associativity is the cache associativity, the possible value is
439 'none/direct(direct-mapped)/complex(complex cache indexing)'. policy
440 is the write policy. line is the cache Line size in bytes.
441
442 For example, the following options describe 2 NUMA nodes. Node 0 has
443 2 cpus and a ram, node 1 has only a ram. The processors in node 0
444 access memory in node 0 with access-latency 5 nanoseconds,
445 access-bandwidth is 200 MB/s; The processors in NUMA node 0 access
446 memory in NUMA node 1 with access-latency 10 nanoseconds,
447 access-bandwidth is 100 MB/s. And for memory side cache information,
448 NUMA node 0 and 1 both have 1 level memory cache, size is 10KB,
449 policy is write-back, the cache Line size is 8 bytes:
450
451 ::
452
453 -machine hmat=on \
454 -m 2G \
455 -object memory-backend-ram,size=1G,id=m0 \
456 -object memory-backend-ram,size=1G,id=m1 \
848dd269 457 -smp 2,sockets=2,maxcpus=2 \
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458 -numa node,nodeid=0,memdev=m0 \
459 -numa node,nodeid=1,memdev=m1,initiator=0 \
460 -numa cpu,node-id=0,socket-id=0 \
461 -numa cpu,node-id=0,socket-id=1 \
462 -numa hmat-lb,initiator=0,target=0,hierarchy=memory,data-type=access-latency,latency=5 \
463 -numa hmat-lb,initiator=0,target=0,hierarchy=memory,data-type=access-bandwidth,bandwidth=200M \
464 -numa hmat-lb,initiator=0,target=1,hierarchy=memory,data-type=access-latency,latency=10 \
465 -numa hmat-lb,initiator=0,target=1,hierarchy=memory,data-type=access-bandwidth,bandwidth=100M \
466 -numa hmat-cache,node-id=0,size=10K,level=1,associativity=direct,policy=write-back,line=8 \
467 -numa hmat-cache,node-id=1,size=10K,level=1,associativity=direct,policy=write-back,line=8
468ERST
268a362c 469
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470DEF("cxl-fixed-memory-window", HAS_ARG, QEMU_OPTION_cxl_fixed_memory_window,
471 "-cxl-fixed-memory-window targets.0=firsttarget,targets.1=secondtarget,size=size[,interleave-granularity=granularity]\n",
472 QEMU_ARCH_ALL)
473SRST
474``-cxl-fixed-memory-window targets.0=firsttarget,targets.1=secondtarget,size=size[,interleave-granularity=granularity]``
475 Define a CXL Fixed Memory Window (CFMW).
476
477 Described in the CXL 2.0 ECN: CEDT CFMWS & QTG _DSM.
478
479 They are regions of Host Physical Addresses (HPA) on a system which
480 may be interleaved across one or more CXL host bridges. The system
481 software will assign particular devices into these windows and
482 configure the downstream Host-managed Device Memory (HDM) decoders
483 in root ports, switch ports and devices appropriately to meet the
484 interleave requirements before enabling the memory devices.
485
486 ``targets.X=firsttarget`` provides the mapping to CXL host bridges
487 which may be identified by the id provied in the -device entry.
488 Multiple entries are needed to specify all the targets when
489 the fixed memory window represents interleaved memory. X is the
490 target index from 0.
491
492 ``size=size`` sets the size of the CFMW. This must be a multiple of
493 256MiB. The region will be aligned to 256MiB but the location is
494 platform and configuration dependent.
495
496 ``interleave-granularity=granularity`` sets the granularity of
497 interleave. Default 256KiB. Only 256KiB, 512KiB, 1024KiB, 2048KiB
498 4096KiB, 8192KiB and 16384KiB granularities supported.
499
500 Example:
501
502 ::
503
504 -cxl-fixed-memory-window targets.0=cxl.0,targets.1=cxl.1,size=128G,interleave-granularity=512k
505
506ERST
507
587ed6be
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508DEF("add-fd", HAS_ARG, QEMU_OPTION_add_fd,
509 "-add-fd fd=fd,set=set[,opaque=opaque]\n"
510 " Add 'fd' to fd 'set'\n", QEMU_ARCH_ALL)
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511SRST
512``-add-fd fd=fd,set=set[,opaque=opaque]``
513 Add a file descriptor to an fd set. Valid options are:
514
515 ``fd=fd``
516 This option defines the file descriptor of which a duplicate is
517 added to fd set. The file descriptor cannot be stdin, stdout, or
518 stderr.
519
520 ``set=set``
521 This option defines the ID of the fd set to add the file
522 descriptor to.
523
524 ``opaque=opaque``
525 This option defines a free-form string that can be used to
526 describe fd.
527
528 You can open an image using pre-opened file descriptors from an fd
529 set:
530
531 .. parsed-literal::
532
353a06b4
LE
533 |qemu_system| \\
534 -add-fd fd=3,set=2,opaque="rdwr:/path/to/file" \\
535 -add-fd fd=4,set=2,opaque="rdonly:/path/to/file" \\
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536 -drive file=/dev/fdset/2,index=0,media=disk
537ERST
587ed6be 538
6616b2ad
SW
539DEF("set", HAS_ARG, QEMU_OPTION_set,
540 "-set group.id.arg=value\n"
541 " set <arg> parameter for item <id> of type <group>\n"
ad96090a 542 " i.e. -set drive.$id.file=/path/to/image\n", QEMU_ARCH_ALL)
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543SRST
544``-set group.id.arg=value``
545 Set parameter arg for item id of type group
546ERST
6616b2ad
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547
548DEF("global", HAS_ARG, QEMU_OPTION_global,
3751d7c4
PB
549 "-global driver.property=value\n"
550 "-global driver=driver,property=property,value=value\n"
ad96090a
BS
551 " set a global default for a driver property\n",
552 QEMU_ARCH_ALL)
e2fcbf42 553SRST
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554``-global driver.prop=value``
555 \
556``-global driver=driver,property=property,value=value``
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557 Set default value of driver's property prop to value, e.g.:
558
559 .. parsed-literal::
560
561 |qemu_system_x86| -global ide-hd.physical_block_size=4096 disk-image.img
562
563 In particular, you can use this to set driver properties for devices
564 which are created automatically by the machine model. To create a
565 device which is not created automatically and set properties on it,
566 use -``device``.
567
568 -global driver.prop=value is shorthand for -global
569 driver=driver,property=prop,value=value. The longhand syntax works
570 even when driver contains a dot.
571ERST
6616b2ad 572
5824d651 573DEF("boot", HAS_ARG, QEMU_OPTION_boot,
2221dde5 574 "-boot [order=drives][,once=drives][,menu=on|off]\n"
c8a6ae8b 575 " [,splash=sp_name][,splash-time=sp_time][,reboot-timeout=rb_time][,strict=on|off]\n"
3d3b8303
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576 " 'drives': floppy (a), hard disk (c), CD-ROM (d), network (n)\n"
577 " 'sp_name': the file's name that would be passed to bios as logo picture, if menu=on\n"
ac05f349
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578 " 'sp_time': the period that splash picture last if menu=on, unit is ms\n"
579 " 'rb_timeout': the timeout before guest reboot when boot failed, unit is ms\n",
ad96090a 580 QEMU_ARCH_ALL)
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581SRST
582``-boot [order=drives][,once=drives][,menu=on|off][,splash=sp_name][,splash-time=sp_time][,reboot-timeout=rb_timeout][,strict=on|off]``
583 Specify boot order drives as a string of drive letters. Valid drive
584 letters depend on the target architecture. The x86 PC uses: a, b
585 (floppy 1 and 2), c (first hard disk), d (first CD-ROM), n-p
586 (Etherboot from network adapter 1-4), hard disk boot is the default.
587 To apply a particular boot order only on the first startup, specify
588 it via ``once``. Note that the ``order`` or ``once`` parameter
589 should not be used together with the ``bootindex`` property of
590 devices, since the firmware implementations normally do not support
591 both at the same time.
592
593 Interactive boot menus/prompts can be enabled via ``menu=on`` as far
594 as firmware/BIOS supports them. The default is non-interactive boot.
595
596 A splash picture could be passed to bios, enabling user to show it
597 as logo, when option splash=sp\_name is given and menu=on, If
598 firmware/BIOS supports them. Currently Seabios for X86 system
599 support it. limitation: The splash file could be a jpeg file or a
600 BMP file in 24 BPP format(true color). The resolution should be
601 supported by the SVGA mode, so the recommended is 320x240, 640x480,
602 800x640.
603
604 A timeout could be passed to bios, guest will pause for rb\_timeout
605 ms when boot failed, then reboot. If rb\_timeout is '-1', guest will
606 not reboot, qemu passes '-1' to bios by default. Currently Seabios
607 for X86 system support it.
608
609 Do strict boot via ``strict=on`` as far as firmware/BIOS supports
610 it. This only effects when boot priority is changed by bootindex
611 options. The default is non-strict boot.
612
09ce5f2d 613 .. parsed-literal::
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614
615 # try to boot from network first, then from hard disk
616 |qemu_system_x86| -boot order=nc
617 # boot from CD-ROM first, switch back to default order after reboot
618 |qemu_system_x86| -boot once=d
619 # boot with a splash picture for 5 seconds.
620 |qemu_system_x86| -boot menu=on,splash=/root/boot.bmp,splash-time=5000
621
622 Note: The legacy format '-boot drives' is still supported but its
623 use is discouraged as it may be removed from future versions.
624ERST
5824d651 625
5824d651 626DEF("m", HAS_ARG, QEMU_OPTION_m,
89f3ea2b 627 "-m [size=]megs[,slots=n,maxmem=size]\n"
6e1d3c1c 628 " configure guest RAM\n"
0daba1f0 629 " size: initial amount of guest memory\n"
c270fb9e 630 " slots: number of hotplug slots (default: none)\n"
b6fe0124
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631 " maxmem: maximum amount of guest memory (default: none)\n"
632 "NOTE: Some architectures might enforce a specific granularity\n",
6e1d3c1c 633 QEMU_ARCH_ALL)
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634SRST
635``-m [size=]megs[,slots=n,maxmem=size]``
636 Sets guest startup RAM size to megs megabytes. Default is 128 MiB.
637 Optionally, a suffix of "M" or "G" can be used to signify a value in
638 megabytes or gigabytes respectively. Optional pair slots, maxmem
639 could be used to set amount of hotpluggable memory slots and maximum
640 amount of memory. Note that maxmem must be aligned to the page size.
641
642 For example, the following command-line sets the guest startup RAM
643 size to 1GB, creates 3 slots to hotplug additional memory and sets
644 the maximum memory the guest can reach to 4GB:
645
646 .. parsed-literal::
647
648 |qemu_system| -m 1G,slots=3,maxmem=4G
649
650 If slots and maxmem are not specified, memory hotplug won't be
651 enabled and the guest startup RAM will never increase.
652ERST
5824d651 653
c902760f 654DEF("mem-path", HAS_ARG, QEMU_OPTION_mempath,
ad96090a 655 "-mem-path FILE provide backing storage for guest RAM\n", QEMU_ARCH_ALL)
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656SRST
657``-mem-path path``
658 Allocate guest RAM from a temporarily created file in path.
659ERST
c902760f 660
c902760f 661DEF("mem-prealloc", 0, QEMU_OPTION_mem_prealloc,
ad96090a
BS
662 "-mem-prealloc preallocate guest memory (use with -mem-path)\n",
663 QEMU_ARCH_ALL)
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664SRST
665``-mem-prealloc``
666 Preallocate memory when using -mem-path.
667ERST
c902760f 668
5824d651 669DEF("k", HAS_ARG, QEMU_OPTION_k,
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670 "-k language use keyboard layout (for example 'fr' for French)\n",
671 QEMU_ARCH_ALL)
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672SRST
673``-k language``
674 Use keyboard layout language (for example ``fr`` for French). This
675 option is only needed where it is not easy to get raw PC keycodes
676 (e.g. on Macs, with some X11 servers or with a VNC or curses
677 display). You don't normally need to use it on PC/Linux or
678 PC/Windows hosts.
679
680 The available layouts are:
681
682 ::
683
684 ar de-ch es fo fr-ca hu ja mk no pt-br sv
685 da en-gb et fr fr-ch is lt nl pl ru th
686 de en-us fi fr-be hr it lv nl-be pt sl tr
687
688 The default is ``en-us``.
689ERST
5824d651
BS
690
691
f0b3d811 692HXCOMM Deprecated by -audiodev
5824d651 693DEF("audio-help", 0, QEMU_OPTION_audio_help,
f0b3d811 694 "-audio-help show -audiodev equivalent of the currently specified audio settings\n",
ad96090a 695 QEMU_ARCH_ALL)
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696SRST
697``-audio-help``
698 Will show the -audiodev equivalent of the currently specified
699 (deprecated) environment variables.
700ERST
f0b3d811 701
039a6837
PB
702DEF("audio", HAS_ARG, QEMU_OPTION_audio,
703 "-audio [driver=]driver,model=value[,prop[=value][,...]]\n"
704 " specifies the audio backend and device to use;\n"
705 " apart from 'model', options are the same as for -audiodev.\n"
706 " use '-audio model=help' to show possible devices.\n",
707 QEMU_ARCH_ALL)
708SRST
709``-audio [driver=]driver,model=value[,prop[=value][,...]]``
710 This option is a shortcut for configuring both the guest audio
711 hardware and the host audio backend in one go.
712 The host backend options are the same as with the corresponding
713 ``-audiodev`` options below. The guest hardware model can be set with
714 ``model=modelname``. Use ``model=help`` to list the available device
715 types.
716
717 The following two example do exactly the same, to show how ``-audio``
718 can be used to shorten the command line length:
719
720 .. parsed-literal::
721
722 |qemu_system| -audiodev pa,id=pa -device sb16,audiodev=pa
723 |qemu_system| -audio pa,model=sb16
724ERST
725
f0b3d811
KZ
726DEF("audiodev", HAS_ARG, QEMU_OPTION_audiodev,
727 "-audiodev [driver=]driver,id=id[,prop[=value][,...]]\n"
728 " specifies the audio backend to use\n"
729 " id= identifier of the backend\n"
730 " timer-period= timer period in microseconds\n"
8efac073 731 " in|out.mixing-engine= use mixing engine to mix streams inside QEMU\n"
f0b3d811
KZ
732 " in|out.fixed-settings= use fixed settings for host audio\n"
733 " in|out.frequency= frequency to use with fixed settings\n"
734 " in|out.channels= number of channels to use with fixed settings\n"
735 " in|out.format= sample format to use with fixed settings\n"
49f77e6f 736 " valid values: s8, s16, s32, u8, u16, u32, f32\n"
f0b3d811 737 " in|out.voices= number of voices to use\n"
8624725b 738 " in|out.buffer-length= length of buffer in microseconds\n"
f0b3d811
KZ
739 "-audiodev none,id=id,[,prop[=value][,...]]\n"
740 " dummy driver that discards all output\n"
741#ifdef CONFIG_AUDIO_ALSA
742 "-audiodev alsa,id=id[,prop[=value][,...]]\n"
743 " in|out.dev= name of the audio device to use\n"
dfc54343 744 " in|out.period-length= length of period in microseconds\n"
f0b3d811
KZ
745 " in|out.try-poll= attempt to use poll mode\n"
746 " threshold= threshold (in microseconds) when playback starts\n"
747#endif
748#ifdef CONFIG_AUDIO_COREAUDIO
749 "-audiodev coreaudio,id=id[,prop[=value][,...]]\n"
750 " in|out.buffer-count= number of buffers\n"
751#endif
752#ifdef CONFIG_AUDIO_DSOUND
753 "-audiodev dsound,id=id[,prop[=value][,...]]\n"
754 " latency= add extra latency to playback in microseconds\n"
755#endif
756#ifdef CONFIG_AUDIO_OSS
757 "-audiodev oss,id=id[,prop[=value][,...]]\n"
758 " in|out.dev= path of the audio device to use\n"
759 " in|out.buffer-count= number of buffers\n"
760 " in|out.try-poll= attempt to use poll mode\n"
761 " try-mmap= try using memory mapped access\n"
762 " exclusive= open device in exclusive mode\n"
763 " dsp-policy= set timing policy (0..10), -1 to use fragment mode\n"
764#endif
765#ifdef CONFIG_AUDIO_PA
766 "-audiodev pa,id=id[,prop[=value][,...]]\n"
767 " server= PulseAudio server address\n"
768 " in|out.name= source/sink device name\n"
14d4f011 769 " in|out.latency= desired latency in microseconds\n"
f0b3d811
KZ
770#endif
771#ifdef CONFIG_AUDIO_SDL
772 "-audiodev sdl,id=id[,prop[=value][,...]]\n"
5a0926c2 773 " in|out.buffer-count= number of buffers\n"
f0b3d811
KZ
774#endif
775#ifdef CONFIG_SPICE
776 "-audiodev spice,id=id[,prop[=value][,...]]\n"
739362d4
MAL
777#endif
778#ifdef CONFIG_DBUS_DISPLAY
779 "-audiodev dbus,id=id[,prop[=value][,...]]\n"
f0b3d811
KZ
780#endif
781 "-audiodev wav,id=id[,prop[=value][,...]]\n"
782 " path= path of wav file to record\n",
783 QEMU_ARCH_ALL)
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784SRST
785``-audiodev [driver=]driver,id=id[,prop[=value][,...]]``
786 Adds a new audio backend driver identified by id. There are global
787 and driver specific properties. Some values can be set differently
788 for input and output, they're marked with ``in|out.``. You can set
789 the input's property with ``in.prop`` and the output's property with
790 ``out.prop``. For example:
791
792 ::
793
794 -audiodev alsa,id=example,in.frequency=44110,out.frequency=8000
795 -audiodev alsa,id=example,out.channels=1 # leaves in.channels unspecified
796
797 NOTE: parameter validation is known to be incomplete, in many cases
798 specifying an invalid option causes QEMU to print an error message
799 and continue emulation without sound.
800
801 Valid global options are:
802
803 ``id=identifier``
804 Identifies the audio backend.
805
806 ``timer-period=period``
807 Sets the timer period used by the audio subsystem in
808 microseconds. Default is 10000 (10 ms).
809
810 ``in|out.mixing-engine=on|off``
811 Use QEMU's mixing engine to mix all streams inside QEMU and
812 convert audio formats when not supported by the backend. When
813 off, fixed-settings must be off too. Note that disabling this
814 option means that the selected backend must support multiple
815 streams and the audio formats used by the virtual cards,
816 otherwise you'll get no sound. It's not recommended to disable
817 this option unless you want to use 5.1 or 7.1 audio, as mixing
818 engine only supports mono and stereo audio. Default is on.
819
820 ``in|out.fixed-settings=on|off``
821 Use fixed settings for host audio. When off, it will change
822 based on how the guest opens the sound card. In this case you
823 must not specify frequency, channels or format. Default is on.
824
825 ``in|out.frequency=frequency``
826 Specify the frequency to use when using fixed-settings. Default
827 is 44100Hz.
828
829 ``in|out.channels=channels``
830 Specify the number of channels to use when using fixed-settings.
831 Default is 2 (stereo).
832
833 ``in|out.format=format``
834 Specify the sample format to use when using fixed-settings.
835 Valid values are: ``s8``, ``s16``, ``s32``, ``u8``, ``u16``,
49f77e6f 836 ``u32``, ``f32``. Default is ``s16``.
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837
838 ``in|out.voices=voices``
839 Specify the number of voices to use. Default is 1.
840
841 ``in|out.buffer-length=usecs``
842 Sets the size of the buffer in microseconds.
843
844``-audiodev none,id=id[,prop[=value][,...]]``
845 Creates a dummy backend that discards all outputs. This backend has
846 no backend specific properties.
847
848``-audiodev alsa,id=id[,prop[=value][,...]]``
849 Creates backend using the ALSA. This backend is only available on
850 Linux.
851
852 ALSA specific options are:
853
854 ``in|out.dev=device``
855 Specify the ALSA device to use for input and/or output. Default
856 is ``default``.
857
858 ``in|out.period-length=usecs``
859 Sets the period length in microseconds.
860
861 ``in|out.try-poll=on|off``
862 Attempt to use poll mode with the device. Default is on.
863
864 ``threshold=threshold``
865 Threshold (in microseconds) when playback starts. Default is 0.
866
867``-audiodev coreaudio,id=id[,prop[=value][,...]]``
868 Creates a backend using Apple's Core Audio. This backend is only
869 available on Mac OS and only supports playback.
870
871 Core Audio specific options are:
872
873 ``in|out.buffer-count=count``
874 Sets the count of the buffers.
875
876``-audiodev dsound,id=id[,prop[=value][,...]]``
877 Creates a backend using Microsoft's DirectSound. This backend is
878 only available on Windows and only supports playback.
879
880 DirectSound specific options are:
881
882 ``latency=usecs``
883 Add extra usecs microseconds latency to playback. Default is
884 10000 (10 ms).
885
886``-audiodev oss,id=id[,prop[=value][,...]]``
887 Creates a backend using OSS. This backend is available on most
888 Unix-like systems.
889
890 OSS specific options are:
891
892 ``in|out.dev=device``
893 Specify the file name of the OSS device to use. Default is
894 ``/dev/dsp``.
895
896 ``in|out.buffer-count=count``
897 Sets the count of the buffers.
898
899 ``in|out.try-poll=on|of``
900 Attempt to use poll mode with the device. Default is on.
901
902 ``try-mmap=on|off``
903 Try using memory mapped device access. Default is off.
904
905 ``exclusive=on|off``
906 Open the device in exclusive mode (vmix won't work in this
907 case). Default is off.
908
909 ``dsp-policy=policy``
910 Sets the timing policy (between 0 and 10, where smaller number
911 means smaller latency but higher CPU usage). Use -1 to use
912 buffer sizes specified by ``buffer`` and ``buffer-count``. This
913 option is ignored if you do not have OSS 4. Default is 5.
914
915``-audiodev pa,id=id[,prop[=value][,...]]``
916 Creates a backend using PulseAudio. This backend is available on
917 most systems.
918
919 PulseAudio specific options are:
920
921 ``server=server``
922 Sets the PulseAudio server to connect to.
923
924 ``in|out.name=sink``
925 Use the specified source/sink for recording/playback.
926
927 ``in|out.latency=usecs``
928 Desired latency in microseconds. The PulseAudio server will try
929 to honor this value but actual latencies may be lower or higher.
930
931``-audiodev sdl,id=id[,prop[=value][,...]]``
932 Creates a backend using SDL. This backend is available on most
933 systems, but you should use your platform's native backend if
5a0926c2
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934 possible.
935
936 SDL specific options are:
937
938 ``in|out.buffer-count=count``
939 Sets the count of the buffers.
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940
941``-audiodev spice,id=id[,prop[=value][,...]]``
942 Creates a backend that sends audio through SPICE. This backend
943 requires ``-spice`` and automatically selected in that case, so
944 usually you can ignore this option. This backend has no backend
945 specific properties.
946
947``-audiodev wav,id=id[,prop[=value][,...]]``
948 Creates a backend that writes audio to a WAV file.
949
950 Backend specific options are:
951
952 ``path=path``
953 Write recorded audio into the specified file. Default is
954 ``qemu.wav``.
955ERST
5824d651 956
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957DEF("device", HAS_ARG, QEMU_OPTION_device,
958 "-device driver[,prop[=value][,...]]\n"
959 " add device (based on driver)\n"
960 " prop=value,... sets driver properties\n"
961 " use '-device help' to print all possible drivers\n"
962 " use '-device driver,help' to print all possible properties\n",
963 QEMU_ARCH_ALL)
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964SRST
965``-device driver[,prop[=value][,...]]``
966 Add device driver. prop=value sets driver properties. Valid
967 properties depend on the driver. To get help on possible drivers and
968 properties, use ``-device help`` and ``-device driver,help``.
969
970 Some drivers are:
971
789101b7 972``-device ipmi-bmc-sim,id=id[,prop[=value][,...]]``
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973 Add an IPMI BMC. This is a simulation of a hardware management
974 interface processor that normally sits on a system. It provides a
975 watchdog and the ability to reset and power control the system. You
976 need to connect this to an IPMI interface to make it useful
977
978 The IPMI slave address to use for the BMC. The default is 0x20. This
979 address is the BMC's address on the I2C network of management
980 controllers. If you don't know what this means, it is safe to ignore
981 it.
982
983 ``id=id``
984 The BMC id for interfaces to use this device.
985
986 ``slave_addr=val``
987 Define slave address to use for the BMC. The default is 0x20.
988
989 ``sdrfile=file``
990 file containing raw Sensor Data Records (SDR) data. The default
991 is none.
992
993 ``fruareasize=val``
994 size of a Field Replaceable Unit (FRU) area. The default is
995 1024.
996
997 ``frudatafile=file``
998 file containing raw Field Replaceable Unit (FRU) inventory data.
999 The default is none.
1000
1001 ``guid=uuid``
1002 value for the GUID for the BMC, in standard UUID format. If this
1003 is set, get "Get GUID" command to the BMC will return it.
1004 Otherwise "Get GUID" will return an error.
1005
1006``-device ipmi-bmc-extern,id=id,chardev=id[,slave_addr=val]``
1007 Add a connection to an external IPMI BMC simulator. Instead of
1008 locally emulating the BMC like the above item, instead connect to an
1009 external entity that provides the IPMI services.
1010
1011 A connection is made to an external BMC simulator. If you do this,
1012 it is strongly recommended that you use the "reconnect=" chardev
1013 option to reconnect to the simulator if the connection is lost. Note
1014 that if this is not used carefully, it can be a security issue, as
1015 the interface has the ability to send resets, NMIs, and power off
1016 the VM. It's best if QEMU makes a connection to an external
1017 simulator running on a secure port on localhost, so neither the
1018 simulator nor QEMU is exposed to any outside network.
1019
1020 See the "lanserv/README.vm" file in the OpenIPMI library for more
1021 details on the external interface.
1022
1023``-device isa-ipmi-kcs,bmc=id[,ioport=val][,irq=val]``
1024 Add a KCS IPMI interafce on the ISA bus. This also adds a
1025 corresponding ACPI and SMBIOS entries, if appropriate.
1026
1027 ``bmc=id``
1028 The BMC to connect to, one of ipmi-bmc-sim or ipmi-bmc-extern
1029 above.
1030
1031 ``ioport=val``
1032 Define the I/O address of the interface. The default is 0xca0
1033 for KCS.
1034
1035 ``irq=val``
1036 Define the interrupt to use. The default is 5. To disable
1037 interrupts, set this to 0.
1038
1039``-device isa-ipmi-bt,bmc=id[,ioport=val][,irq=val]``
1040 Like the KCS interface, but defines a BT interface. The default port
1041 is 0xe4 and the default interrupt is 5.
323679da
CM
1042
1043``-device pci-ipmi-kcs,bmc=id``
1044 Add a KCS IPMI interafce on the PCI bus.
1045
1046 ``bmc=id``
1047 The BMC to connect to, one of ipmi-bmc-sim or ipmi-bmc-extern above.
1048
1049``-device pci-ipmi-bt,bmc=id``
1050 Like the KCS interface, but defines a BT interface on the PCI bus.
7395b3e3
PX
1051
1052``-device intel-iommu[,option=...]``
1053 This is only supported by ``-machine q35``, which will enable Intel VT-d
1054 emulation within the guest. It supports below options:
1055
1056 ``intremap=on|off`` (default: auto)
1057 This enables interrupt remapping feature. It's required to enable
1058 complete x2apic. Currently it only supports kvm kernel-irqchip modes
1059 ``off`` or ``split``, while full kernel-irqchip is not yet supported.
1060 The default value is "auto", which will be decided by the mode of
1061 kernel-irqchip.
1062
1063 ``caching-mode=on|off`` (default: off)
1064 This enables caching mode for the VT-d emulated device. When
1065 caching-mode is enabled, each guest DMA buffer mapping will generate an
1066 IOTLB invalidation from the guest IOMMU driver to the vIOMMU device in
1067 a synchronous way. It is required for ``-device vfio-pci`` to work
1068 with the VT-d device, because host assigned devices requires to setup
1069 the DMA mapping on the host before guest DMA starts.
1070
1071 ``device-iotlb=on|off`` (default: off)
1072 This enables device-iotlb capability for the emulated VT-d device. So
1073 far virtio/vhost should be the only real user for this parameter,
1074 paired with ats=on configured for the device.
1075
1076 ``aw-bits=39|48`` (default: 39)
1077 This decides the address width of IOVA address space. The address
1078 space has 39 bits width for 3-level IOMMU page tables, and 48 bits for
1079 4-level IOMMU page tables.
1080
1081 Please also refer to the wiki page for general scenarios of VT-d
1082 emulation in QEMU: https://wiki.qemu.org/Features/VT-d.
1083
e2fcbf42 1084ERST
10adb8be
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1085
1086DEF("name", HAS_ARG, QEMU_OPTION_name,
8f480de0 1087 "-name string1[,process=string2][,debug-threads=on|off]\n"
10adb8be 1088 " set the name of the guest\n"
479a5747
RB
1089 " string1 sets the window title and string2 the process name\n"
1090 " When debug-threads is enabled, individual threads are given a separate name\n"
8f480de0 1091 " NOTE: The thread names are for debugging and not a stable API.\n",
10adb8be 1092 QEMU_ARCH_ALL)
e2fcbf42
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1093SRST
1094``-name name``
1095 Sets the name of the guest. This name will be displayed in the SDL
1096 window caption. The name will also be used for the VNC server. Also
1097 optionally set the top visible process name in Linux. Naming of
1098 individual threads can also be enabled on Linux to aid debugging.
1099ERST
10adb8be
MA
1100
1101DEF("uuid", HAS_ARG, QEMU_OPTION_uuid,
1102 "-uuid %08x-%04x-%04x-%04x-%012x\n"
1103 " specify machine UUID\n", QEMU_ARCH_ALL)
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1104SRST
1105``-uuid uuid``
1106 Set system UUID.
1107ERST
10adb8be 1108
10adb8be
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1109DEFHEADING()
1110
de6b4f90 1111DEFHEADING(Block device options:)
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MA
1112
1113DEF("fda", HAS_ARG, QEMU_OPTION_fda,
1114 "-fda/-fdb file use 'file' as floppy disk 0/1 image\n", QEMU_ARCH_ALL)
1115DEF("fdb", HAS_ARG, QEMU_OPTION_fdb, "", QEMU_ARCH_ALL)
e2fcbf42 1116SRST
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1117``-fda file``
1118 \
1119``-fdb file``
923e9311
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1120 Use file as floppy disk 0/1 image (see the :ref:`disk images` chapter in
1121 the System Emulation Users Guide).
e2fcbf42 1122ERST
10adb8be
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1123
1124DEF("hda", HAS_ARG, QEMU_OPTION_hda,
1125 "-hda/-hdb file use 'file' as IDE hard disk 0/1 image\n", QEMU_ARCH_ALL)
1126DEF("hdb", HAS_ARG, QEMU_OPTION_hdb, "", QEMU_ARCH_ALL)
1127DEF("hdc", HAS_ARG, QEMU_OPTION_hdc,
1128 "-hdc/-hdd file use 'file' as IDE hard disk 2/3 image\n", QEMU_ARCH_ALL)
1129DEF("hdd", HAS_ARG, QEMU_OPTION_hdd, "", QEMU_ARCH_ALL)
e2fcbf42 1130SRST
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1131``-hda file``
1132 \
1133``-hdb file``
1134 \
1135``-hdc file``
1136 \
1137``-hdd file``
923e9311
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1138 Use file as hard disk 0, 1, 2 or 3 image (see the :ref:`disk images`
1139 chapter in the System Emulation Users Guide).
e2fcbf42 1140ERST
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1141
1142DEF("cdrom", HAS_ARG, QEMU_OPTION_cdrom,
1143 "-cdrom file use 'file' as IDE cdrom image (cdrom is ide1 master)\n",
1144 QEMU_ARCH_ALL)
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1145SRST
1146``-cdrom file``
1147 Use file as CD-ROM image (you cannot use ``-hdc`` and ``-cdrom`` at
1148 the same time). You can use the host CD-ROM by using ``/dev/cdrom``
1149 as filename.
1150ERST
10adb8be 1151
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1152DEF("blockdev", HAS_ARG, QEMU_OPTION_blockdev,
1153 "-blockdev [driver=]driver[,node-name=N][,discard=ignore|unmap]\n"
1154 " [,cache.direct=on|off][,cache.no-flush=on|off]\n"
c9b749d7
KW
1155 " [,read-only=on|off][,auto-read-only=on|off]\n"
1156 " [,force-share=on|off][,detect-zeroes=on|off|unmap]\n"
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1157 " [,driver specific parameters...]\n"
1158 " configure a block backend\n", QEMU_ARCH_ALL)
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1159SRST
1160``-blockdev option[,option[,option[,...]]]``
1161 Define a new block driver node. Some of the options apply to all
1162 block drivers, other options are only accepted for a specific block
1163 driver. See below for a list of generic options and options for the
1164 most common block drivers.
1165
1166 Options that expect a reference to another node (e.g. ``file``) can
1167 be given in two ways. Either you specify the node name of an already
1168 existing node (file=node-name), or you define a new node inline,
1169 adding options for the referenced node after a dot
1170 (file.filename=path,file.aio=native).
1171
1172 A block driver node created with ``-blockdev`` can be used for a
1173 guest device by specifying its node name for the ``drive`` property
1174 in a ``-device`` argument that defines a block device.
1175
1176 ``Valid options for any block driver node:``
1177 ``driver``
1178 Specifies the block driver to use for the given node.
1179
1180 ``node-name``
1181 This defines the name of the block driver node by which it
1182 will be referenced later. The name must be unique, i.e. it
1183 must not match the name of a different block driver node, or
1184 (if you use ``-drive`` as well) the ID of a drive.
1185
1186 If no node name is specified, it is automatically generated.
1187 The generated node name is not intended to be predictable
1188 and changes between QEMU invocations. For the top level, an
1189 explicit node name must be specified.
1190
1191 ``read-only``
1192 Open the node read-only. Guest write attempts will fail.
1193
1194 Note that some block drivers support only read-only access,
1195 either generally or in certain configurations. In this case,
1196 the default value ``read-only=off`` does not work and the
1197 option must be specified explicitly.
1198
1199 ``auto-read-only``
1200 If ``auto-read-only=on`` is set, QEMU may fall back to
1201 read-only usage even when ``read-only=off`` is requested, or
1202 even switch between modes as needed, e.g. depending on
1203 whether the image file is writable or whether a writing user
1204 is attached to the node.
1205
1206 ``force-share``
1207 Override the image locking system of QEMU by forcing the
1208 node to utilize weaker shared access for permissions where
1209 it would normally request exclusive access. When there is
1210 the potential for multiple instances to have the same file
1211 open (whether this invocation of QEMU is the first or the
1212 second instance), both instances must permit shared access
1213 for the second instance to succeed at opening the file.
1214
1215 Enabling ``force-share=on`` requires ``read-only=on``.
1216
1217 ``cache.direct``
1218 The host page cache can be avoided with ``cache.direct=on``.
1219 This will attempt to do disk IO directly to the guest's
1220 memory. QEMU may still perform an internal copy of the data.
1221
1222 ``cache.no-flush``
1223 In case you don't care about data integrity over host
1224 failures, you can use ``cache.no-flush=on``. This option
1225 tells QEMU that it never needs to write any data to the disk
1226 but can instead keep things in cache. If anything goes
1227 wrong, like your host losing power, the disk storage getting
1228 disconnected accidentally, etc. your image will most
1229 probably be rendered unusable.
1230
1231 ``discard=discard``
1232 discard is one of "ignore" (or "off") or "unmap" (or "on")
1233 and controls whether ``discard`` (also known as ``trim`` or
1234 ``unmap``) requests are ignored or passed to the filesystem.
1235 Some machine types may not support discard requests.
1236
1237 ``detect-zeroes=detect-zeroes``
1238 detect-zeroes is "off", "on" or "unmap" and enables the
1239 automatic conversion of plain zero writes by the OS to
1240 driver specific optimized zero write commands. You may even
1241 choose "unmap" if discard is set to "unmap" to allow a zero
1242 write to be converted to an ``unmap`` operation.
1243
1244 ``Driver-specific options for file``
1245 This is the protocol-level block driver for accessing regular
1246 files.
1247
1248 ``filename``
1249 The path to the image file in the local filesystem
1250
1251 ``aio``
ad1e691d
SG
1252 Specifies the AIO backend (threads/native/io_uring,
1253 default: threads)
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1254
1255 ``locking``
1256 Specifies whether the image file is protected with Linux OFD
1257 / POSIX locks. The default is to use the Linux Open File
1258 Descriptor API if available, otherwise no lock is applied.
1259 (auto/on/off, default: auto)
1260
1261 Example:
1262
1263 ::
1264
1265 -blockdev driver=file,node-name=disk,filename=disk.img
1266
1267 ``Driver-specific options for raw``
1268 This is the image format block driver for raw images. It is
1269 usually stacked on top of a protocol level block driver such as
1270 ``file``.
1271
1272 ``file``
1273 Reference to or definition of the data source block driver
1274 node (e.g. a ``file`` driver node)
1275
1276 Example 1:
1277
1278 ::
1279
1280 -blockdev driver=file,node-name=disk_file,filename=disk.img
1281 -blockdev driver=raw,node-name=disk,file=disk_file
1282
1283 Example 2:
1284
1285 ::
1286
1287 -blockdev driver=raw,node-name=disk,file.driver=file,file.filename=disk.img
1288
1289 ``Driver-specific options for qcow2``
1290 This is the image format block driver for qcow2 images. It is
1291 usually stacked on top of a protocol level block driver such as
1292 ``file``.
1293
1294 ``file``
1295 Reference to or definition of the data source block driver
1296 node (e.g. a ``file`` driver node)
1297
1298 ``backing``
1299 Reference to or definition of the backing file block device
1300 (default is taken from the image file). It is allowed to
1301 pass ``null`` here in order to disable the default backing
1302 file.
1303
1304 ``lazy-refcounts``
1305 Whether to enable the lazy refcounts feature (on/off;
1306 default is taken from the image file)
1307
1308 ``cache-size``
1309 The maximum total size of the L2 table and refcount block
1310 caches in bytes (default: the sum of l2-cache-size and
1311 refcount-cache-size)
1312
1313 ``l2-cache-size``
1314 The maximum size of the L2 table cache in bytes (default: if
1315 cache-size is not specified - 32M on Linux platforms, and 8M
1316 on non-Linux platforms; otherwise, as large as possible
1317 within the cache-size, while permitting the requested or the
1318 minimal refcount cache size)
1319
1320 ``refcount-cache-size``
1321 The maximum size of the refcount block cache in bytes
1322 (default: 4 times the cluster size; or if cache-size is
1323 specified, the part of it which is not used for the L2
1324 cache)
1325
1326 ``cache-clean-interval``
1327 Clean unused entries in the L2 and refcount caches. The
1328 interval is in seconds. The default value is 600 on
1329 supporting platforms, and 0 on other platforms. Setting it
1330 to 0 disables this feature.
1331
1332 ``pass-discard-request``
1333 Whether discard requests to the qcow2 device should be
1334 forwarded to the data source (on/off; default: on if
1335 discard=unmap is specified, off otherwise)
1336
1337 ``pass-discard-snapshot``
1338 Whether discard requests for the data source should be
1339 issued when a snapshot operation (e.g. deleting a snapshot)
1340 frees clusters in the qcow2 file (on/off; default: on)
1341
1342 ``pass-discard-other``
1343 Whether discard requests for the data source should be
1344 issued on other occasions where a cluster gets freed
1345 (on/off; default: off)
1346
1347 ``overlap-check``
1348 Which overlap checks to perform for writes to the image
1349 (none/constant/cached/all; default: cached). For details or
1350 finer granularity control refer to the QAPI documentation of
1351 ``blockdev-add``.
1352
1353 Example 1:
1354
1355 ::
1356
1357 -blockdev driver=file,node-name=my_file,filename=/tmp/disk.qcow2
1358 -blockdev driver=qcow2,node-name=hda,file=my_file,overlap-check=none,cache-size=16777216
1359
1360 Example 2:
1361
1362 ::
1363
1364 -blockdev driver=qcow2,node-name=disk,file.driver=http,file.filename=http://example.com/image.qcow2
1365
1366 ``Driver-specific options for other drivers``
1367 Please refer to the QAPI documentation of the ``blockdev-add``
1368 QMP command.
1369ERST
42e5f393 1370
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1371DEF("drive", HAS_ARG, QEMU_OPTION_drive,
1372 "-drive [file=file][,if=type][,bus=n][,unit=m][,media=d][,index=i]\n"
10adb8be 1373 " [,cache=writethrough|writeback|none|directsync|unsafe][,format=f]\n"
572023f7 1374 " [,snapshot=on|off][,rerror=ignore|stop|report]\n"
ad1e691d
SG
1375 " [,werror=ignore|stop|report|enospc][,id=name]\n"
1376 " [,aio=threads|native|io_uring]\n"
10adb8be 1377 " [,readonly=on|off][,copy-on-read=on|off]\n"
2f7133b2 1378 " [,discard=ignore|unmap][,detect-zeroes=on|off|unmap]\n"
3e9fab69
BC
1379 " [[,bps=b]|[[,bps_rd=r][,bps_wr=w]]]\n"
1380 " [[,iops=i]|[[,iops_rd=r][,iops_wr=w]]]\n"
1381 " [[,bps_max=bm]|[[,bps_rd_max=rm][,bps_wr_max=wm]]]\n"
1382 " [[,iops_max=im]|[[,iops_rd_max=irm][,iops_wr_max=iwm]]]\n"
2024c1df 1383 " [[,iops_size=is]]\n"
76f4afb4 1384 " [[,group=g]]\n"
10adb8be 1385 " use 'file' as a drive image\n", QEMU_ARCH_ALL)
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1386SRST
1387``-drive option[,option[,option[,...]]]``
1388 Define a new drive. This includes creating a block driver node (the
1389 backend) as well as a guest device, and is mostly a shortcut for
1390 defining the corresponding ``-blockdev`` and ``-device`` options.
1391
1392 ``-drive`` accepts all options that are accepted by ``-blockdev``.
1393 In addition, it knows the following options:
1394
1395 ``file=file``
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1396 This option defines which disk image (see the :ref:`disk images`
1397 chapter in the System Emulation Users Guide) to use with this drive.
1398 If the filename contains comma, you must double it (for instance,
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1399 "file=my,,file" to use file "my,file").
1400
1401 Special files such as iSCSI devices can be specified using
1402 protocol specific URLs. See the section for "Device URL Syntax"
1403 for more information.
1404
1405 ``if=interface``
1406 This option defines on which type on interface the drive is
1407 connected. Available types are: ide, scsi, sd, mtd, floppy,
1408 pflash, virtio, none.
1409
1410 ``bus=bus,unit=unit``
1411 These options define where is connected the drive by defining
1412 the bus number and the unit id.
1413
1414 ``index=index``
35aab303 1415 This option defines where the drive is connected by using an
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1416 index in the list of available connectors of a given interface
1417 type.
1418
1419 ``media=media``
1420 This option defines the type of the media: disk or cdrom.
1421
1422 ``snapshot=snapshot``
1423 snapshot is "on" or "off" and controls snapshot mode for the
1424 given drive (see ``-snapshot``).
1425
1426 ``cache=cache``
1427 cache is "none", "writeback", "unsafe", "directsync" or
1428 "writethrough" and controls how the host cache is used to access
1429 block data. This is a shortcut that sets the ``cache.direct``
1430 and ``cache.no-flush`` options (as in ``-blockdev``), and
1431 additionally ``cache.writeback``, which provides a default for
1432 the ``write-cache`` option of block guest devices (as in
1433 ``-device``). The modes correspond to the following settings:
1434
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1435 ============= =============== ============ ==============
1436 \ cache.writeback cache.direct cache.no-flush
1437 ============= =============== ============ ==============
1438 writeback on off off
1439 none on on off
1440 writethrough off off off
1441 directsync off on off
1442 unsafe on off on
1443 ============= =============== ============ ==============
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1444
1445 The default mode is ``cache=writeback``.
1446
1447 ``aio=aio``
ad1e691d
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1448 aio is "threads", "native", or "io_uring" and selects between pthread
1449 based disk I/O, native Linux AIO, or Linux io_uring API.
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1450
1451 ``format=format``
1452 Specify which disk format will be used rather than detecting the
1453 format. Can be used to specify format=raw to avoid interpreting
1454 an untrusted format header.
1455
1456 ``werror=action,rerror=action``
1457 Specify which action to take on write and read errors. Valid
1458 actions are: "ignore" (ignore the error and try to continue),
1459 "stop" (pause QEMU), "report" (report the error to the guest),
1460 "enospc" (pause QEMU only if the host disk is full; report the
1461 error to the guest otherwise). The default setting is
1462 ``werror=enospc`` and ``rerror=report``.
1463
1464 ``copy-on-read=copy-on-read``
1465 copy-on-read is "on" or "off" and enables whether to copy read
1466 backing file sectors into the image file.
1467
1468 ``bps=b,bps_rd=r,bps_wr=w``
1469 Specify bandwidth throttling limits in bytes per second, either
1470 for all request types or for reads or writes only. Small values
1471 can lead to timeouts or hangs inside the guest. A safe minimum
1472 for disks is 2 MB/s.
1473
1474 ``bps_max=bm,bps_rd_max=rm,bps_wr_max=wm``
1475 Specify bursts in bytes per second, either for all request types
1476 or for reads or writes only. Bursts allow the guest I/O to spike
1477 above the limit temporarily.
1478
1479 ``iops=i,iops_rd=r,iops_wr=w``
1480 Specify request rate limits in requests per second, either for
1481 all request types or for reads or writes only.
1482
1483 ``iops_max=bm,iops_rd_max=rm,iops_wr_max=wm``
1484 Specify bursts in requests per second, either for all request
1485 types or for reads or writes only. Bursts allow the guest I/O to
1486 spike above the limit temporarily.
1487
1488 ``iops_size=is``
1489 Let every is bytes of a request count as a new request for iops
1490 throttling purposes. Use this option to prevent guests from
1491 circumventing iops limits by sending fewer but larger requests.
1492
1493 ``group=g``
1494 Join a throttling quota group with given name g. All drives that
1495 are members of the same group are accounted for together. Use
1496 this option to prevent guests from circumventing throttling
1497 limits by using many small disks instead of a single larger
1498 disk.
1499
1500 By default, the ``cache.writeback=on`` mode is used. It will report
1501 data writes as completed as soon as the data is present in the host
1502 page cache. This is safe as long as your guest OS makes sure to
1503 correctly flush disk caches where needed. If your guest OS does not
1504 handle volatile disk write caches correctly and your host crashes or
1505 loses power, then the guest may experience data corruption.
1506
1507 For such guests, you should consider using ``cache.writeback=off``.
1508 This means that the host page cache will be used to read and write
1509 data, but write notification will be sent to the guest only after
1510 QEMU has made sure to flush each write to the disk. Be aware that
1511 this has a major impact on performance.
1512
1513 When using the ``-snapshot`` option, unsafe caching is always used.
1514
1515 Copy-on-read avoids accessing the same backing file sectors
1516 repeatedly and is useful when the backing file is over a slow
1517 network. By default copy-on-read is off.
1518
1519 Instead of ``-cdrom`` you can use:
1520
1521 .. parsed-literal::
1522
1523 |qemu_system| -drive file=file,index=2,media=cdrom
1524
1525 Instead of ``-hda``, ``-hdb``, ``-hdc``, ``-hdd``, you can use:
1526
1527 .. parsed-literal::
1528
1529 |qemu_system| -drive file=file,index=0,media=disk
1530 |qemu_system| -drive file=file,index=1,media=disk
1531 |qemu_system| -drive file=file,index=2,media=disk
1532 |qemu_system| -drive file=file,index=3,media=disk
1533
1534 You can open an image using pre-opened file descriptors from an fd
1535 set:
1536
1537 .. parsed-literal::
1538
353a06b4
LE
1539 |qemu_system| \\
1540 -add-fd fd=3,set=2,opaque="rdwr:/path/to/file" \\
1541 -add-fd fd=4,set=2,opaque="rdonly:/path/to/file" \\
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1542 -drive file=/dev/fdset/2,index=0,media=disk
1543
1544 You can connect a CDROM to the slave of ide0:
1545
1546 .. parsed-literal::
1547
1548 |qemu_system_x86| -drive file=file,if=ide,index=1,media=cdrom
1549
1550 If you don't specify the "file=" argument, you define an empty
1551 drive:
1552
1553 .. parsed-literal::
1554
1555 |qemu_system_x86| -drive if=ide,index=1,media=cdrom
1556
1557 Instead of ``-fda``, ``-fdb``, you can use:
1558
1559 .. parsed-literal::
1560
1561 |qemu_system_x86| -drive file=file,index=0,if=floppy
1562 |qemu_system_x86| -drive file=file,index=1,if=floppy
1563
1564 By default, interface is "ide" and index is automatically
1565 incremented:
1566
1567 .. parsed-literal::
1568
1569 |qemu_system_x86| -drive file=a -drive file=b"
1570
1571 is interpreted like:
1572
1573 .. parsed-literal::
1574
1575 |qemu_system_x86| -hda a -hdb b
1576ERST
84644c45 1577
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1578DEF("mtdblock", HAS_ARG, QEMU_OPTION_mtdblock,
1579 "-mtdblock file use 'file' as on-board Flash memory image\n",
84644c45 1580 QEMU_ARCH_ALL)
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1581SRST
1582``-mtdblock file``
1583 Use file as on-board Flash memory image.
1584ERST
84644c45 1585
10adb8be
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1586DEF("sd", HAS_ARG, QEMU_OPTION_sd,
1587 "-sd file use 'file' as SecureDigital card image\n", QEMU_ARCH_ALL)
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1588SRST
1589``-sd file``
1590 Use file as SecureDigital card image.
1591ERST
5824d651 1592
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1593DEF("pflash", HAS_ARG, QEMU_OPTION_pflash,
1594 "-pflash file use 'file' as a parallel flash image\n", QEMU_ARCH_ALL)
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1595SRST
1596``-pflash file``
1597 Use file as a parallel flash image.
1598ERST
5824d651 1599
10adb8be
MA
1600DEF("snapshot", 0, QEMU_OPTION_snapshot,
1601 "-snapshot write to temporary files instead of disk image files\n",
c70a01e4 1602 QEMU_ARCH_ALL)
e2fcbf42
PM
1603SRST
1604``-snapshot``
1605 Write to temporary files instead of disk image files. In this case,
1606 the raw disk image you use is not written back. You can however
923e9311
TH
1607 force the write back by pressing C-a s (see the :ref:`disk images`
1608 chapter in the System Emulation Users Guide).
e2fcbf42 1609ERST
5824d651 1610
74db920c 1611DEF("fsdev", HAS_ARG, QEMU_OPTION_fsdev,
b44a6b09 1612 "-fsdev local,id=id,path=path,security_model=mapped-xattr|mapped-file|passthrough|none\n"
991c180d 1613 " [,writeout=immediate][,readonly=on][,fmode=fmode][,dmode=dmode]\n"
b8bbdb88
PJ
1614 " [[,throttling.bps-total=b]|[[,throttling.bps-read=r][,throttling.bps-write=w]]]\n"
1615 " [[,throttling.iops-total=i]|[[,throttling.iops-read=r][,throttling.iops-write=w]]]\n"
1616 " [[,throttling.bps-total-max=bm]|[[,throttling.bps-read-max=rm][,throttling.bps-write-max=wm]]]\n"
1617 " [[,throttling.iops-total-max=im]|[[,throttling.iops-read-max=irm][,throttling.iops-write-max=iwm]]]\n"
b44a6b09 1618 " [[,throttling.iops-size=is]]\n"
991c180d
PB
1619 "-fsdev proxy,id=id,socket=socket[,writeout=immediate][,readonly=on]\n"
1620 "-fsdev proxy,id=id,sock_fd=sock_fd[,writeout=immediate][,readonly=on]\n"
b44a6b09 1621 "-fsdev synth,id=id\n",
74db920c
GS
1622 QEMU_ARCH_ALL)
1623
e2fcbf42 1624SRST
991c180d 1625``-fsdev local,id=id,path=path,security_model=security_model [,writeout=writeout][,readonly=on][,fmode=fmode][,dmode=dmode] [,throttling.option=value[,throttling.option=value[,...]]]``
09ce5f2d 1626 \
991c180d 1627``-fsdev proxy,id=id,socket=socket[,writeout=writeout][,readonly=on]``
09ce5f2d 1628 \
991c180d 1629``-fsdev proxy,id=id,sock_fd=sock_fd[,writeout=writeout][,readonly=on]``
09ce5f2d 1630 \
991c180d 1631``-fsdev synth,id=id[,readonly=on]``
e2fcbf42
PM
1632 Define a new file system device. Valid options are:
1633
1634 ``local``
1635 Accesses to the filesystem are done by QEMU.
1636
1637 ``proxy``
1638 Accesses to the filesystem are done by virtfs-proxy-helper(1).
1639
1640 ``synth``
1641 Synthetic filesystem, only used by QTests.
1642
1643 ``id=id``
1644 Specifies identifier for this device.
1645
1646 ``path=path``
1647 Specifies the export path for the file system device. Files
1648 under this path will be available to the 9p client on the guest.
1649
1650 ``security_model=security_model``
1651 Specifies the security model to be used for this export path.
1652 Supported security models are "passthrough", "mapped-xattr",
1653 "mapped-file" and "none". In "passthrough" security model, files
1654 are stored using the same credentials as they are created on the
1655 guest. This requires QEMU to run as root. In "mapped-xattr"
1656 security model, some of the file attributes like uid, gid, mode
1657 bits and link target are stored as file attributes. For
1658 "mapped-file" these attributes are stored in the hidden
1659 .virtfs\_metadata directory. Directories exported by this
1660 security model cannot interact with other unix tools. "none"
1661 security model is same as passthrough except the sever won't
1662 report failures if it fails to set file attributes like
1663 ownership. Security model is mandatory only for local fsdriver.
1664 Other fsdrivers (like proxy) don't take security model as a
1665 parameter.
1666
1667 ``writeout=writeout``
1668 This is an optional argument. The only supported value is
1669 "immediate". This means that host page cache will be used to
1670 read and write data but write notification will be sent to the
1671 guest only when the data has been reported as written by the
1672 storage subsystem.
1673
991c180d 1674 ``readonly=on``
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1675 Enables exporting 9p share as a readonly mount for guests. By
1676 default read-write access is given.
1677
1678 ``socket=socket``
1679 Enables proxy filesystem driver to use passed socket file for
1680 communicating with virtfs-proxy-helper(1).
1681
1682 ``sock_fd=sock_fd``
1683 Enables proxy filesystem driver to use passed socket descriptor
1684 for communicating with virtfs-proxy-helper(1). Usually a helper
1685 like libvirt will create socketpair and pass one of the fds as
1686 sock\_fd.
1687
1688 ``fmode=fmode``
1689 Specifies the default mode for newly created files on the host.
1690 Works only with security models "mapped-xattr" and
1691 "mapped-file".
1692
1693 ``dmode=dmode``
1694 Specifies the default mode for newly created directories on the
1695 host. Works only with security models "mapped-xattr" and
1696 "mapped-file".
1697
1698 ``throttling.bps-total=b,throttling.bps-read=r,throttling.bps-write=w``
1699 Specify bandwidth throttling limits in bytes per second, either
1700 for all request types or for reads or writes only.
1701
1702 ``throttling.bps-total-max=bm,bps-read-max=rm,bps-write-max=wm``
1703 Specify bursts in bytes per second, either for all request types
1704 or for reads or writes only. Bursts allow the guest I/O to spike
1705 above the limit temporarily.
1706
1707 ``throttling.iops-total=i,throttling.iops-read=r, throttling.iops-write=w``
1708 Specify request rate limits in requests per second, either for
1709 all request types or for reads or writes only.
1710
1711 ``throttling.iops-total-max=im,throttling.iops-read-max=irm, throttling.iops-write-max=iwm``
1712 Specify bursts in requests per second, either for all request
1713 types or for reads or writes only. Bursts allow the guest I/O to
1714 spike above the limit temporarily.
1715
1716 ``throttling.iops-size=is``
1717 Let every is bytes of a request count as a new request for iops
1718 throttling purposes.
1719
1720 -fsdev option is used along with -device driver "virtio-9p-...".
1721
1722``-device virtio-9p-type,fsdev=id,mount_tag=mount_tag``
1723 Options for virtio-9p-... driver are:
1724
1725 ``type``
1726 Specifies the variant to be used. Supported values are "pci",
1727 "ccw" or "device", depending on the machine type.
1728
1729 ``fsdev=id``
1730 Specifies the id value specified along with -fsdev option.
1731
1732 ``mount_tag=mount_tag``
1733 Specifies the tag name to be used by the guest to mount this
1734 export point.
1735ERST
74db920c 1736
3d54abc7 1737DEF("virtfs", HAS_ARG, QEMU_OPTION_virtfs,
b44a6b09 1738 "-virtfs local,path=path,mount_tag=tag,security_model=mapped-xattr|mapped-file|passthrough|none\n"
991c180d
PB
1739 " [,id=id][,writeout=immediate][,readonly=on][,fmode=fmode][,dmode=dmode][,multidevs=remap|forbid|warn]\n"
1740 "-virtfs proxy,mount_tag=tag,socket=socket[,id=id][,writeout=immediate][,readonly=on]\n"
1741 "-virtfs proxy,mount_tag=tag,sock_fd=sock_fd[,id=id][,writeout=immediate][,readonly=on]\n"
1742 "-virtfs synth,mount_tag=tag[,id=id][,readonly=on]\n",
3d54abc7
GS
1743 QEMU_ARCH_ALL)
1744
e2fcbf42 1745SRST
991c180d 1746``-virtfs local,path=path,mount_tag=mount_tag ,security_model=security_model[,writeout=writeout][,readonly=on] [,fmode=fmode][,dmode=dmode][,multidevs=multidevs]``
09ce5f2d 1747 \
991c180d 1748``-virtfs proxy,socket=socket,mount_tag=mount_tag [,writeout=writeout][,readonly=on]``
09ce5f2d 1749 \
991c180d 1750``-virtfs proxy,sock_fd=sock_fd,mount_tag=mount_tag [,writeout=writeout][,readonly=on]``
09ce5f2d
PM
1751 \
1752``-virtfs synth,mount_tag=mount_tag``
65abaa01
CS
1753 Define a new virtual filesystem device and expose it to the guest using
1754 a virtio-9p-device (a.k.a. 9pfs), which essentially means that a certain
1755 directory on host is made directly accessible by guest as a pass-through
1756 file system by using the 9P network protocol for communication between
1757 host and guests, if desired even accessible, shared by several guests
1758 simultaniously.
1759
1760 Note that ``-virtfs`` is actually just a convenience shortcut for its
1761 generalized form ``-fsdev -device virtio-9p-pci``.
1762
1763 The general form of pass-through file system options are:
e2fcbf42
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1764
1765 ``local``
1766 Accesses to the filesystem are done by QEMU.
1767
1768 ``proxy``
1769 Accesses to the filesystem are done by virtfs-proxy-helper(1).
1770
1771 ``synth``
1772 Synthetic filesystem, only used by QTests.
1773
1774 ``id=id``
1775 Specifies identifier for the filesystem device
1776
1777 ``path=path``
1778 Specifies the export path for the file system device. Files
1779 under this path will be available to the 9p client on the guest.
1780
1781 ``security_model=security_model``
1782 Specifies the security model to be used for this export path.
1783 Supported security models are "passthrough", "mapped-xattr",
1784 "mapped-file" and "none". In "passthrough" security model, files
1785 are stored using the same credentials as they are created on the
1786 guest. This requires QEMU to run as root. In "mapped-xattr"
1787 security model, some of the file attributes like uid, gid, mode
1788 bits and link target are stored as file attributes. For
1789 "mapped-file" these attributes are stored in the hidden
1790 .virtfs\_metadata directory. Directories exported by this
1791 security model cannot interact with other unix tools. "none"
1792 security model is same as passthrough except the sever won't
1793 report failures if it fails to set file attributes like
1794 ownership. Security model is mandatory only for local fsdriver.
1795 Other fsdrivers (like proxy) don't take security model as a
1796 parameter.
1797
1798 ``writeout=writeout``
1799 This is an optional argument. The only supported value is
1800 "immediate". This means that host page cache will be used to
1801 read and write data but write notification will be sent to the
1802 guest only when the data has been reported as written by the
1803 storage subsystem.
1804
991c180d 1805 ``readonly=on``
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1806 Enables exporting 9p share as a readonly mount for guests. By
1807 default read-write access is given.
1808
1809 ``socket=socket``
1810 Enables proxy filesystem driver to use passed socket file for
1811 communicating with virtfs-proxy-helper(1). Usually a helper like
1812 libvirt will create socketpair and pass one of the fds as
1813 sock\_fd.
1814
1815 ``sock_fd``
1816 Enables proxy filesystem driver to use passed 'sock\_fd' as the
1817 socket descriptor for interfacing with virtfs-proxy-helper(1).
1818
1819 ``fmode=fmode``
1820 Specifies the default mode for newly created files on the host.
1821 Works only with security models "mapped-xattr" and
1822 "mapped-file".
1823
1824 ``dmode=dmode``
1825 Specifies the default mode for newly created directories on the
1826 host. Works only with security models "mapped-xattr" and
1827 "mapped-file".
1828
1829 ``mount_tag=mount_tag``
1830 Specifies the tag name to be used by the guest to mount this
1831 export point.
1832
1833 ``multidevs=multidevs``
1834 Specifies how to deal with multiple devices being shared with a
1835 9p export. Supported behaviours are either "remap", "forbid" or
1836 "warn". The latter is the default behaviour on which virtfs 9p
1837 expects only one device to be shared with the same export, and
1838 if more than one device is shared and accessed via the same 9p
1839 export then only a warning message is logged (once) by qemu on
1840 host side. In order to avoid file ID collisions on guest you
1841 should either create a separate virtfs export for each device to
1842 be shared with guests (recommended way) or you might use "remap"
1843 instead which allows you to share multiple devices with only one
1844 export instead, which is achieved by remapping the original
1845 inode numbers from host to guest in a way that would prevent
1846 such collisions. Remapping inodes in such use cases is required
1847 because the original device IDs from host are never passed and
1848 exposed on guest. Instead all files of an export shared with
1849 virtfs always share the same device id on guest. So two files
1850 with identical inode numbers but from actually different devices
1851 on host would otherwise cause a file ID collision and hence
1852 potential misbehaviours on guest. "forbid" on the other hand
1853 assumes like "warn" that only one device is shared by the same
1854 export, however it will not only log a warning message but also
1855 deny access to additional devices on guest. Note though that
1856 "forbid" does currently not block all possible file access
1857 operations (e.g. readdir() would still return entries from other
1858 devices).
1859ERST
3d54abc7 1860
61d70487
MA
1861DEF("iscsi", HAS_ARG, QEMU_OPTION_iscsi,
1862 "-iscsi [user=user][,password=password]\n"
1863 " [,header-digest=CRC32C|CR32C-NONE|NONE-CRC32C|NONE\n"
1864 " [,initiator-name=initiator-iqn][,id=target-iqn]\n"
1865 " [,timeout=timeout]\n"
1866 " iSCSI session parameters\n", QEMU_ARCH_ALL)
1867
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1868SRST
1869``-iscsi``
1870 Configure iSCSI session parameters.
1871ERST
44743148 1872
5824d651
BS
1873DEFHEADING()
1874
c2a34ab2 1875DEFHEADING(USB convenience options:)
10adb8be
MA
1876
1877DEF("usb", 0, QEMU_OPTION_usb,
73f46fef 1878 "-usb enable on-board USB host controller (if not enabled by default)\n",
10adb8be 1879 QEMU_ARCH_ALL)
e2fcbf42
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1880SRST
1881``-usb``
1882 Enable USB emulation on machine types with an on-board USB host
1883 controller (if not enabled by default). Note that on-board USB host
1884 controllers may not support USB 3.0. In this case
1885 ``-device qemu-xhci`` can be used instead on machines with PCI.
1886ERST
10adb8be
MA
1887
1888DEF("usbdevice", HAS_ARG, QEMU_OPTION_usbdevice,
1889 "-usbdevice name add the host or guest USB device 'name'\n",
1890 QEMU_ARCH_ALL)
e2fcbf42
PM
1891SRST
1892``-usbdevice devname``
c2a34ab2
TH
1893 Add the USB device devname, and enable an on-board USB controller
1894 if possible and necessary (just like it can be done via
1895 ``-machine usb=on``). Note that this option is mainly intended for
1896 the user's convenience only. More fine-grained control can be
1897 achieved by selecting a USB host controller (if necessary) and the
1898 desired USB device via the ``-device`` option instead. For example,
1899 instead of using ``-usbdevice mouse`` it is possible to use
1900 ``-device qemu-xhci -device usb-mouse`` to connect the USB mouse
1901 to a USB 3.0 controller instead (at least on machines that support
1902 PCI and do not have an USB controller enabled by default yet).
1903 For more details, see the chapter about
923e9311 1904 :ref:`Connecting USB devices` in the System Emulation Users Guide.
c2a34ab2
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1905 Possible devices for devname are:
1906
1907 ``braille``
1908 Braille device. This will use BrlAPI to display the braille
1909 output on a real or fake device (i.e. it also creates a
1910 corresponding ``braille`` chardev automatically beside the
1911 ``usb-braille`` USB device).
1912
c2a34ab2
TH
1913 ``keyboard``
1914 Standard USB keyboard. Will override the PS/2 keyboard (if present).
e2fcbf42
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1915
1916 ``mouse``
1917 Virtual Mouse. This will override the PS/2 mouse emulation when
1918 activated.
1919
1920 ``tablet``
1921 Pointer device that uses absolute coordinates (like a
1922 touchscreen). This means QEMU is able to report the mouse
1923 position without having to grab the mouse. Also overrides the
1924 PS/2 mouse emulation when activated.
1925
c2a34ab2
TH
1926 ``wacom-tablet``
1927 Wacom PenPartner USB tablet.
1928
1929
e2fcbf42 1930ERST
10adb8be 1931
10adb8be
MA
1932DEFHEADING()
1933
de6b4f90 1934DEFHEADING(Display options:)
5824d651 1935
1472a95b 1936DEF("display", HAS_ARG, QEMU_OPTION_display,
88b40c68 1937#if defined(CONFIG_SPICE)
d8aec9d9 1938 "-display spice-app[,gl=on|off]\n"
88b40c68
TH
1939#endif
1940#if defined(CONFIG_SDL)
95f439bd 1941 "-display sdl[,alt_grab=on|off][,ctrl_grab=on|off][,gl=on|core|es|off]\n"
8e8e844b 1942 " [,grab-mod=<mod>][,show-cursor=on|off][,window-close=on|off]\n"
88b40c68
TH
1943#endif
1944#if defined(CONFIG_GTK)
95f439bd
TH
1945 "-display gtk[,full-screen=on|off][,gl=on|off][,grab-on-hover=on|off]\n"
1946 " [,show-cursor=on|off][,window-close=on|off]\n"
88b40c68
TH
1947#endif
1948#if defined(CONFIG_VNC)
f04ec5af 1949 "-display vnc=<display>[,<optargs>]\n"
88b40c68
TH
1950#endif
1951#if defined(CONFIG_CURSES)
2f8b7cd5 1952 "-display curses[,charset=<encoding>]\n"
88b40c68 1953#endif
f844cdb9 1954#if defined(CONFIG_COCOA)
4797adce 1955 "-display cocoa[,full-grab=on|off][,swap-opt-cmd=on|off]\n"
f844cdb9 1956#endif
88b40c68
TH
1957#if defined(CONFIG_OPENGL)
1958 "-display egl-headless[,rendernode=<file>]\n"
142ca628
MAL
1959#endif
1960#if defined(CONFIG_DBUS_DISPLAY)
1961 "-display dbus[,addr=<dbusaddr>]\n"
1962 " [,gl=on|core|es|off][,rendernode=<file>]\n"
48941a52
CE
1963#endif
1964#if defined(CONFIG_COCOA)
1965 "-display cocoa[,show-cursor=on|off][,left-command-key=on|off]\n"
88b40c68 1966#endif
144aaa99 1967 "-display none\n"
88b40c68
TH
1968 " select display backend type\n"
1969 " The default display is equivalent to\n "
f04ec5af 1970#if defined(CONFIG_GTK)
88b40c68 1971 "\"-display gtk\"\n"
f04ec5af 1972#elif defined(CONFIG_SDL)
88b40c68 1973 "\"-display sdl\"\n"
f04ec5af 1974#elif defined(CONFIG_COCOA)
88b40c68 1975 "\"-display cocoa\"\n"
f04ec5af 1976#elif defined(CONFIG_VNC)
88b40c68 1977 "\"-vnc localhost:0,to=99,id=default\"\n"
f04ec5af 1978#else
88b40c68 1979 "\"-display none\"\n"
f04ec5af
RH
1980#endif
1981 , QEMU_ARCH_ALL)
e2fcbf42
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1982SRST
1983``-display type``
1984 Select type of display to use. This option is a replacement for the
1985 old style -sdl/-curses/... options. Use ``-display help`` to list
1986 the available display types. Valid values for type are
1987
ddc71758
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1988 ``spice-app[,gl=on|off]``
1989 Start QEMU as a Spice server and launch the default Spice client
1990 application. The Spice server will redirect the serial consoles
1991 and QEMU monitors. (Since 4.0)
1992
142ca628
MAL
1993 ``dbus``
1994 Export the display over D-Bus interfaces. (Since 7.0)
1995
1996 The connection is registered with the "org.qemu" name (and queued when
1997 already owned).
1998
1999 ``addr=<dbusaddr>`` : D-Bus bus address to connect to.
2000
99997823
MAL
2001 ``p2p=yes|no`` : Use peer-to-peer connection, accepted via QMP ``add_client``.
2002
2003 ``gl=on|off|core|es`` : Use OpenGL for rendering (the D-Bus interface
2004 will share framebuffers with DMABUF file descriptors).
142ca628 2005
95f439bd 2006 ``sdl``
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2007 Display video output via SDL (usually in a separate graphics
2008 window; see the SDL documentation for other possibilities).
95f439bd
TH
2009 Valid parameters are:
2010
8e8e844b 2011 ``grab-mod=<mods>`` : Used to select the modifier keys for toggling
450e0f28
JS
2012 the mouse grabbing in conjunction with the "g" key. ``<mods>`` can be
2013 either ``lshift-lctrl-lalt`` or ``rctrl``.
8e8e844b 2014
d46156fd
TH
2015 ``alt_grab=on|off`` : Use Control+Alt+Shift-g to toggle mouse grabbing.
2016 This parameter is deprecated - use ``grab-mod`` instead.
95f439bd 2017
d46156fd
TH
2018 ``ctrl_grab=on|off`` : Use Right-Control-g to toggle mouse grabbing.
2019 This parameter is deprecated - use ``grab-mod`` instead.
95f439bd
TH
2020
2021 ``gl=on|off|core|es`` : Use OpenGL for displaying
e2fcbf42 2022
95f439bd
TH
2023 ``show-cursor=on|off`` : Force showing the mouse cursor
2024
2025 ``window-close=on|off`` : Allow to quit qemu with window close button
2026
2027 ``gtk``
ddc71758
AA
2028 Display video output in a GTK window. This interface provides
2029 drop-down menus and other UI elements to configure and control
95f439bd
TH
2030 the VM during runtime. Valid parameters are:
2031
2032 ``full-screen=on|off`` : Start in fullscreen mode
2033
2034 ``gl=on|off`` : Use OpenGL for displaying
ddc71758 2035
95f439bd
TH
2036 ``grab-on-hover=on|off`` : Grab keyboard input on mouse hover
2037
2038 ``show-cursor=on|off`` : Force showing the mouse cursor
2039
2040 ``window-close=on|off`` : Allow to quit qemu with window close button
2041
2042 ``curses[,charset=<encoding>]``
e2fcbf42
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2043 Display video output via curses. For graphics device models
2044 which support a text mode, QEMU can display this output using a
2045 curses/ncurses interface. Nothing is displayed when the graphics
2046 device is in graphical mode or if the graphics device does not
2047 support a text mode. Generally only the VGA device models
2048 support text mode. The font charset used by the guest can be
2049 specified with the ``charset`` option, for example
2050 ``charset=CP850`` for IBM CP850 encoding. The default is
2051 ``CP437``.
2052
48941a52
CE
2053 ``cocoa``
2054 Display video output in a Cocoa window. Mac only. This interface
2055 provides drop-down menus and other UI elements to configure and
2056 control the VM during runtime. Valid parameters are:
2057
2058 ``show-cursor=on|off`` : Force showing the mouse cursor
2059
2060 ``left-command-key=on|off`` : Disable forwarding left command key to host
2061
95f439bd 2062 ``egl-headless[,rendernode=<file>]``
ddc71758
AA
2063 Offload all OpenGL operations to a local DRI device. For any
2064 graphical display, this display needs to be paired with either
2065 VNC or SPICE displays.
2066
95f439bd
TH
2067 ``vnc=<display>``
2068 Start a VNC server on display <display>
2069
e2fcbf42
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2070 ``none``
2071 Do not display video output. The guest will still see an
2072 emulated graphics card, but its output will not be displayed to
2073 the QEMU user. This option differs from the -nographic option in
2074 that it only affects what is done with video output; -nographic
2075 also changes the destination of the serial and parallel port
2076 data.
e2fcbf42 2077ERST
1472a95b 2078
5824d651 2079DEF("nographic", 0, QEMU_OPTION_nographic,
ad96090a
BS
2080 "-nographic disable graphical output and redirect serial I/Os to console\n",
2081 QEMU_ARCH_ALL)
e2fcbf42
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2082SRST
2083``-nographic``
2084 Normally, if QEMU is compiled with graphical window support, it
2085 displays output such as guest graphics, guest console, and the QEMU
2086 monitor in a window. With this option, you can totally disable
2087 graphical output so that QEMU is a simple command line application.
2088 The emulated serial port is redirected on the console and muxed with
2089 the monitor (unless redirected elsewhere explicitly). Therefore, you
2090 can still use QEMU to debug a Linux kernel with a serial console.
2091 Use C-a h for help on switching between the console and monitor.
2092ERST
5824d651 2093
5824d651 2094DEF("curses", 0, QEMU_OPTION_curses,
f04ec5af 2095 "-curses shorthand for -display curses\n",
ad96090a 2096 QEMU_ARCH_ALL)
e2fcbf42
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2097SRST
2098``-curses``
2099 Normally, if QEMU is compiled with graphical window support, it
2100 displays output such as guest graphics, guest console, and the QEMU
2101 monitor in a window. With this option, QEMU can display the VGA
2102 output when in text mode using a curses/ncurses interface. Nothing
2103 is displayed in graphical mode.
2104ERST
5824d651 2105
5824d651 2106DEF("alt-grab", 0, QEMU_OPTION_alt_grab,
ad96090a
BS
2107 "-alt-grab use Ctrl-Alt-Shift to grab mouse (instead of Ctrl-Alt)\n",
2108 QEMU_ARCH_ALL)
e2fcbf42
PM
2109SRST
2110``-alt-grab``
2111 Use Ctrl-Alt-Shift to grab mouse (instead of Ctrl-Alt). Note that
2112 this also affects the special keys (for fullscreen, monitor-mode
d46156fd
TH
2113 switching, etc). This option is deprecated - please use
2114 ``-display sdl,grab-mod=lshift-lctrl-lalt`` instead.
e2fcbf42 2115ERST
5824d651 2116
0ca9f8a4 2117DEF("ctrl-grab", 0, QEMU_OPTION_ctrl_grab,
ad96090a
BS
2118 "-ctrl-grab use Right-Ctrl to grab mouse (instead of Ctrl-Alt)\n",
2119 QEMU_ARCH_ALL)
e2fcbf42
PM
2120SRST
2121``-ctrl-grab``
2122 Use Right-Ctrl to grab mouse (instead of Ctrl-Alt). Note that this
2123 also affects the special keys (for fullscreen, monitor-mode
d46156fd
TH
2124 switching, etc). This option is deprecated - please use
2125 ``-display sdl,grab-mod=rctrl`` instead.
e2fcbf42 2126ERST
0ca9f8a4 2127
5824d651 2128DEF("sdl", 0, QEMU_OPTION_sdl,
f04ec5af 2129 "-sdl shorthand for -display sdl\n", QEMU_ARCH_ALL)
e2fcbf42
PM
2130SRST
2131``-sdl``
2132 Enable SDL.
2133ERST
5824d651 2134
5324e3e9 2135#ifdef CONFIG_SPICE
29b0040b 2136DEF("spice", HAS_ARG, QEMU_OPTION_spice,
27af7788
YH
2137 "-spice [port=port][,tls-port=secured-port][,x509-dir=<dir>]\n"
2138 " [,x509-key-file=<file>][,x509-key-password=<file>]\n"
2139 " [,x509-cert-file=<file>][,x509-cacert-file=<file>]\n"
a9daa36a
DB
2140 " [,x509-dh-key-file=<file>][,addr=addr]\n"
2141 " [,ipv4=on|off][,ipv6=on|off][,unix=on|off]\n"
27af7788
YH
2142 " [,tls-ciphers=<list>]\n"
2143 " [,tls-channel=[main|display|cursor|inputs|record|playback]]\n"
2144 " [,plaintext-channel=[main|display|cursor|inputs|record|playback]]\n"
99522f69
DB
2145 " [,sasl=on|off][,disable-ticketing=on|off]\n"
2146 " [,password=<string>][,password-secret=<secret-id>]\n"
27af7788
YH
2147 " [,image-compression=[auto_glz|auto_lz|quic|glz|lz|off]]\n"
2148 " [,jpeg-wan-compression=[auto|never|always]]\n"
2149 " [,zlib-glz-wan-compression=[auto|never|always]]\n"
a9daa36a
DB
2150 " [,streaming-video=[off|all|filter]][,disable-copy-paste=on|off]\n"
2151 " [,disable-agent-file-xfer=on|off][,agent-mouse=[on|off]]\n"
5ad24e5f 2152 " [,playback-compression=[on|off]][,seamless-migration=[on|off]]\n"
7b525508 2153 " [,gl=[on|off]][,rendernode=<file>]\n"
27af7788
YH
2154 " enable spice\n"
2155 " at least one of {port, tls-port} is mandatory\n",
2156 QEMU_ARCH_ALL)
5324e3e9 2157#endif
e2fcbf42
PM
2158SRST
2159``-spice option[,option[,...]]``
2160 Enable the spice remote desktop protocol. Valid options are
2161
2162 ``port=<nr>``
2163 Set the TCP port spice is listening on for plaintext channels.
2164
2165 ``addr=<addr>``
2166 Set the IP address spice is listening on. Default is any
2167 address.
2168
a9daa36a 2169 ``ipv4=on|off``; \ ``ipv6=on|off``; \ ``unix=on|off``
e2fcbf42
PM
2170 Force using the specified IP version.
2171
99522f69 2172 ``password=<string>``
e2fcbf42
PM
2173 Set the password you need to authenticate.
2174
c47c0bcb
DB
2175 This option is deprecated and insecure because it leaves the
2176 password visible in the process listing. Use ``password-secret``
2177 instead.
2178
99522f69
DB
2179 ``password-secret=<secret-id>``
2180 Set the ID of the ``secret`` object containing the password
2181 you need to authenticate.
2182
a9daa36a 2183 ``sasl=on|off``
e2fcbf42
PM
2184 Require that the client use SASL to authenticate with the spice.
2185 The exact choice of authentication method used is controlled
2186 from the system / user's SASL configuration file for the 'qemu'
2187 service. This is typically found in /etc/sasl2/qemu.conf. If
2188 running QEMU as an unprivileged user, an environment variable
2189 SASL\_CONF\_PATH can be used to make it search alternate
2190 locations for the service config. While some SASL auth methods
2191 can also provide data encryption (eg GSSAPI), it is recommended
2192 that SASL always be combined with the 'tls' and 'x509' settings
2193 to enable use of SSL and server certificates. This ensures a
2194 data encryption preventing compromise of authentication
2195 credentials.
2196
a9daa36a 2197 ``disable-ticketing=on|off``
e2fcbf42
PM
2198 Allow client connects without authentication.
2199
a9daa36a 2200 ``disable-copy-paste=on|off``
e2fcbf42
PM
2201 Disable copy paste between the client and the guest.
2202
a9daa36a 2203 ``disable-agent-file-xfer=on|off``
e2fcbf42
PM
2204 Disable spice-vdagent based file-xfer between the client and the
2205 guest.
2206
2207 ``tls-port=<nr>``
2208 Set the TCP port spice is listening on for encrypted channels.
2209
2210 ``x509-dir=<dir>``
2211 Set the x509 file directory. Expects same filenames as -vnc
2212 $display,x509=$dir
2213
2214 ``x509-key-file=<file>``; \ ``x509-key-password=<file>``; \ ``x509-cert-file=<file>``; \ ``x509-cacert-file=<file>``; \ ``x509-dh-key-file=<file>``
2215 The x509 file names can also be configured individually.
2216
2217 ``tls-ciphers=<list>``
2218 Specify which ciphers to use.
2219
2220 ``tls-channel=[main|display|cursor|inputs|record|playback]``; \ ``plaintext-channel=[main|display|cursor|inputs|record|playback]``
2221 Force specific channel to be used with or without TLS
2222 encryption. The options can be specified multiple times to
2223 configure multiple channels. The special name "default" can be
2224 used to set the default mode. For channels which are not
2225 explicitly forced into one mode the spice client is allowed to
2226 pick tls/plaintext as he pleases.
2227
2228 ``image-compression=[auto_glz|auto_lz|quic|glz|lz|off]``
2229 Configure image compression (lossless). Default is auto\_glz.
2230
2231 ``jpeg-wan-compression=[auto|never|always]``; \ ``zlib-glz-wan-compression=[auto|never|always]``
2232 Configure wan image compression (lossy for slow links). Default
2233 is auto.
2234
2235 ``streaming-video=[off|all|filter]``
2236 Configure video stream detection. Default is off.
2237
2238 ``agent-mouse=[on|off]``
2239 Enable/disable passing mouse events via vdagent. Default is on.
2240
2241 ``playback-compression=[on|off]``
2242 Enable/disable audio stream compression (using celt 0.5.1).
2243 Default is on.
2244
2245 ``seamless-migration=[on|off]``
2246 Enable/disable spice seamless migration. Default is off.
2247
2248 ``gl=[on|off]``
2249 Enable/disable OpenGL context. Default is off.
2250
2251 ``rendernode=<file>``
2252 DRM render node for OpenGL rendering. If not specified, it will
2253 pick the first available. (Since 2.9)
2254ERST
29b0040b 2255
5824d651 2256DEF("portrait", 0, QEMU_OPTION_portrait,
ad96090a
BS
2257 "-portrait rotate graphical output 90 deg left (only PXA LCD)\n",
2258 QEMU_ARCH_ALL)
e2fcbf42
PM
2259SRST
2260``-portrait``
2261 Rotate graphical output 90 deg left (only PXA LCD).
2262ERST
5824d651 2263
9312805d
VK
2264DEF("rotate", HAS_ARG, QEMU_OPTION_rotate,
2265 "-rotate <deg> rotate graphical output some deg left (only PXA LCD)\n",
2266 QEMU_ARCH_ALL)
e2fcbf42
PM
2267SRST
2268``-rotate deg``
2269 Rotate graphical output some deg left (only PXA LCD).
2270ERST
9312805d 2271
5824d651 2272DEF("vga", HAS_ARG, QEMU_OPTION_vga,
a94f0c5c 2273 "-vga [std|cirrus|vmware|qxl|xenfb|tcx|cg3|virtio|none]\n"
ad96090a 2274 " select video card type\n", QEMU_ARCH_ALL)
e2fcbf42
PM
2275SRST
2276``-vga type``
2277 Select type of VGA card to emulate. Valid values for type are
2278
2279 ``cirrus``
2280 Cirrus Logic GD5446 Video card. All Windows versions starting
2281 from Windows 95 should recognize and use this graphic card. For
2282 optimal performances, use 16 bit color depth in the guest and
2283 the host OS. (This card was the default before QEMU 2.2)
2284
2285 ``std``
2286 Standard VGA card with Bochs VBE extensions. If your guest OS
2287 supports the VESA 2.0 VBE extensions (e.g. Windows XP) and if
2288 you want to use high resolution modes (>= 1280x1024x16) then you
2289 should use this option. (This card is the default since QEMU
2290 2.2)
2291
2292 ``vmware``
2293 VMWare SVGA-II compatible adapter. Use it if you have
2294 sufficiently recent XFree86/XOrg server or Windows guest with a
2295 driver for this card.
2296
2297 ``qxl``
2298 QXL paravirtual graphic card. It is VGA compatible (including
2299 VESA 2.0 VBE support). Works best with qxl guest drivers
2300 installed though. Recommended choice when using the spice
2301 protocol.
2302
2303 ``tcx``
2304 (sun4m only) Sun TCX framebuffer. This is the default
2305 framebuffer for sun4m machines and offers both 8-bit and 24-bit
2306 colour depths at a fixed resolution of 1024x768.
2307
2308 ``cg3``
2309 (sun4m only) Sun cgthree framebuffer. This is a simple 8-bit
2310 framebuffer for sun4m machines available in both 1024x768
2311 (OpenBIOS) and 1152x900 (OBP) resolutions aimed at people
2312 wishing to run older Solaris versions.
2313
2314 ``virtio``
2315 Virtio VGA card.
2316
2317 ``none``
2318 Disable VGA card.
2319ERST
5824d651
BS
2320
2321DEF("full-screen", 0, QEMU_OPTION_full_screen,
ad96090a 2322 "-full-screen start in full screen\n", QEMU_ARCH_ALL)
e2fcbf42
PM
2323SRST
2324``-full-screen``
2325 Start in full screen.
2326ERST
5824d651 2327
60f9a4ef 2328DEF("g", HAS_ARG, QEMU_OPTION_g ,
ad96090a 2329 "-g WxH[xDEPTH] Set the initial graphical resolution and depth\n",
8ac919a0 2330 QEMU_ARCH_PPC | QEMU_ARCH_SPARC | QEMU_ARCH_M68K)
e2fcbf42 2331SRST
09ce5f2d 2332``-g`` *width*\ ``x``\ *height*\ ``[x``\ *depth*\ ``]``
e2fcbf42
PM
2333 Set the initial graphical resolution and depth (PPC, SPARC only).
2334
2335 For PPC the default is 800x600x32.
2336
2337 For SPARC with the TCX graphics device, the default is 1024x768x8
2338 with the option of 1024x768x24. For cgthree, the default is
2339 1024x768x8 with the option of 1152x900x8 for people who wish to use
2340 OBP.
2341ERST
5824d651
BS
2342
2343DEF("vnc", HAS_ARG, QEMU_OPTION_vnc ,
f04ec5af 2344 "-vnc <display> shorthand for -display vnc=<display>\n", QEMU_ARCH_ALL)
e2fcbf42
PM
2345SRST
2346``-vnc display[,option[,option[,...]]]``
2347 Normally, if QEMU is compiled with graphical window support, it
2348 displays output such as guest graphics, guest console, and the QEMU
2349 monitor in a window. With this option, you can have QEMU listen on
2350 VNC display display and redirect the VGA display over the VNC
2351 session. It is very useful to enable the usb tablet device when
2352 using this option (option ``-device usb-tablet``). When using the
2353 VNC display, you must use the ``-k`` parameter to set the keyboard
2354 layout if you are not using en-us. Valid syntax for the display is
2355
2356 ``to=L``
2357 With this option, QEMU will try next available VNC displays,
2358 until the number L, if the origianlly defined "-vnc display" is
2359 not available, e.g. port 5900+display is already used by another
2360 application. By default, to=0.
2361
2362 ``host:d``
2363 TCP connections will only be allowed from host on display d. By
2364 convention the TCP port is 5900+d. Optionally, host can be
2365 omitted in which case the server will accept connections from
2366 any host.
2367
2368 ``unix:path``
2369 Connections will be allowed over UNIX domain sockets where path
2370 is the location of a unix socket to listen for connections on.
2371
2372 ``none``
2373 VNC is initialized but not started. The monitor ``change``
2374 command can be used to later start the VNC server.
2375
2376 Following the display value there may be one or more option flags
2377 separated by commas. Valid options are
2378
82a17d1d 2379 ``reverse=on|off``
e2fcbf42
PM
2380 Connect to a listening VNC client via a "reverse" connection.
2381 The client is specified by the display. For reverse network
2382 connections (host:d,``reverse``), the d argument is a TCP port
2383 number, not a display number.
2384
82a17d1d 2385 ``websocket=on|off``
e2fcbf42
PM
2386 Opens an additional TCP listening port dedicated to VNC
2387 Websocket connections. If a bare websocket option is given, the
2388 Websocket port is 5700+display. An alternative port can be
2389 specified with the syntax ``websocket``\ =port.
2390
2391 If host is specified connections will only be allowed from this
2392 host. It is possible to control the websocket listen address
2393 independently, using the syntax ``websocket``\ =host:port.
2394
2395 If no TLS credentials are provided, the websocket connection
2396 runs in unencrypted mode. If TLS credentials are provided, the
2397 websocket connection requires encrypted client connections.
2398
82a17d1d 2399 ``password=on|off``
e2fcbf42
PM
2400 Require that password based authentication is used for client
2401 connections.
2402
2403 The password must be set separately using the ``set_password``
923e9311 2404 command in the :ref:`QEMU monitor`. The
e2fcbf42
PM
2405 syntax to change your password is:
2406 ``set_password <protocol> <password>`` where <protocol> could be
2407 either "vnc" or "spice".
2408
2409 If you would like to change <protocol> password expiration, you
2410 should use ``expire_password <protocol> <expiration-time>``
2411 where expiration time could be one of the following options:
2412 now, never, +seconds or UNIX time of expiration, e.g. +60 to
2413 make password expire in 60 seconds, or 1335196800 to make
2414 password expire on "Mon Apr 23 12:00:00 EDT 2012" (UNIX time for
2415 this date and time).
2416
2417 You can also use keywords "now" or "never" for the expiration
2418 time to allow <protocol> password to expire immediately or never
2419 expire.
2420
6c6840e9
DB
2421 ``password-secret=<secret-id>``
2422 Require that password based authentication is used for client
2423 connections, using the password provided by the ``secret``
2424 object identified by ``secret-id``.
2425
e2fcbf42
PM
2426 ``tls-creds=ID``
2427 Provides the ID of a set of TLS credentials to use to secure the
2428 VNC server. They will apply to both the normal VNC server socket
2429 and the websocket socket (if enabled). Setting TLS credentials
2430 will cause the VNC server socket to enable the VeNCrypt auth
2431 mechanism. The credentials should have been previously created
2432 using the ``-object tls-creds`` argument.
2433
2434 ``tls-authz=ID``
2435 Provides the ID of the QAuthZ authorization object against which
2436 the client's x509 distinguished name will validated. This object
2437 is only resolved at time of use, so can be deleted and recreated
2438 on the fly while the VNC server is active. If missing, it will
2439 default to denying access.
2440
82a17d1d 2441 ``sasl=on|off``
e2fcbf42
PM
2442 Require that the client use SASL to authenticate with the VNC
2443 server. The exact choice of authentication method used is
2444 controlled from the system / user's SASL configuration file for
2445 the 'qemu' service. This is typically found in
2446 /etc/sasl2/qemu.conf. If running QEMU as an unprivileged user,
2447 an environment variable SASL\_CONF\_PATH can be used to make it
2448 search alternate locations for the service config. While some
2449 SASL auth methods can also provide data encryption (eg GSSAPI),
2450 it is recommended that SASL always be combined with the 'tls'
2451 and 'x509' settings to enable use of SSL and server
2452 certificates. This ensures a data encryption preventing
2453 compromise of authentication credentials. See the
923e9311
TH
2454 :ref:`VNC security` section in the System Emulation Users Guide
2455 for details on using SASL authentication.
e2fcbf42
PM
2456
2457 ``sasl-authz=ID``
2458 Provides the ID of the QAuthZ authorization object against which
2459 the client's SASL username will validated. This object is only
2460 resolved at time of use, so can be deleted and recreated on the
2461 fly while the VNC server is active. If missing, it will default
2462 to denying access.
2463
82a17d1d 2464 ``acl=on|off``
e2fcbf42
PM
2465 Legacy method for enabling authorization of clients against the
2466 x509 distinguished name and SASL username. It results in the
2467 creation of two ``authz-list`` objects with IDs of
2468 ``vnc.username`` and ``vnc.x509dname``. The rules for these
2469 objects must be configured with the HMP ACL commands.
2470
2471 This option is deprecated and should no longer be used. The new
2472 ``sasl-authz`` and ``tls-authz`` options are a replacement.
2473
82a17d1d 2474 ``lossy=on|off``
e2fcbf42
PM
2475 Enable lossy compression methods (gradient, JPEG, ...). If this
2476 option is set, VNC client may receive lossy framebuffer updates
2477 depending on its encoding settings. Enabling this option can
2478 save a lot of bandwidth at the expense of quality.
2479
82a17d1d 2480 ``non-adaptive=on|off``
e2fcbf42
PM
2481 Disable adaptive encodings. Adaptive encodings are enabled by
2482 default. An adaptive encoding will try to detect frequently
2483 updated screen regions, and send updates in these regions using
2484 a lossy encoding (like JPEG). This can be really helpful to save
2485 bandwidth when playing videos. Disabling adaptive encodings
2486 restores the original static behavior of encodings like Tight.
2487
2488 ``share=[allow-exclusive|force-shared|ignore]``
2489 Set display sharing policy. 'allow-exclusive' allows clients to
2490 ask for exclusive access. As suggested by the rfb spec this is
2491 implemented by dropping other connections. Connecting multiple
2492 clients in parallel requires all clients asking for a shared
2493 session (vncviewer: -shared switch). This is the default.
2494 'force-shared' disables exclusive client access. Useful for
2495 shared desktop sessions, where you don't want someone forgetting
2496 specify -shared disconnect everybody else. 'ignore' completely
2497 ignores the shared flag and allows everybody connect
2498 unconditionally. Doesn't conform to the rfb spec but is
2499 traditional QEMU behavior.
2500
2501 ``key-delay-ms``
2502 Set keyboard delay, for key down and key up events, in
2503 milliseconds. Default is 10. Keyboards are low-bandwidth
2504 devices, so this slowdown can help the device and guest to keep
2505 up and not lose events in case events are arriving in bulk.
2506 Possible causes for the latter are flaky network connections, or
2507 scripts for automated testing.
2508
2509 ``audiodev=audiodev``
2510 Use the specified audiodev when the VNC client requests audio
2511 transmission. When not using an -audiodev argument, this option
2512 must be omitted, otherwise is must be present and specify a
2513 valid audiodev.
7b5fa0b5 2514
82a17d1d 2515 ``power-control=on|off``
7b5fa0b5
DB
2516 Permit the remote client to issue shutdown, reboot or reset power
2517 control requests.
e2fcbf42 2518ERST
5824d651 2519
a3adb7ad 2520ARCHHEADING(, QEMU_ARCH_I386)
5824d651 2521
de6b4f90 2522ARCHHEADING(i386 target only:, QEMU_ARCH_I386)
5824d651 2523
5824d651 2524DEF("win2k-hack", 0, QEMU_OPTION_win2k_hack,
ad96090a
BS
2525 "-win2k-hack use it when installing Windows 2000 to avoid a disk full bug\n",
2526 QEMU_ARCH_I386)
e2fcbf42
PM
2527SRST
2528``-win2k-hack``
2529 Use it when installing Windows 2000 to avoid a disk full bug. After
2530 Windows 2000 is installed, you no longer need this option (this
2531 option slows down the IDE transfers).
2532ERST
5824d651 2533
5824d651 2534DEF("no-fd-bootchk", 0, QEMU_OPTION_no_fd_bootchk,
ad96090a
BS
2535 "-no-fd-bootchk disable boot signature checking for floppy disks\n",
2536 QEMU_ARCH_I386)
e2fcbf42
PM
2537SRST
2538``-no-fd-bootchk``
2539 Disable boot signature checking for floppy disks in BIOS. May be
2540 needed to boot from old floppy disks.
2541ERST
5824d651 2542
5824d651 2543DEF("no-acpi", 0, QEMU_OPTION_no_acpi,
f5d8c8cd 2544 "-no-acpi disable ACPI\n", QEMU_ARCH_I386 | QEMU_ARCH_ARM)
e2fcbf42
PM
2545SRST
2546``-no-acpi``
2547 Disable ACPI (Advanced Configuration and Power Interface) support.
2548 Use it if your guest OS complains about ACPI problems (PC target
2549 machine only).
2550ERST
5824d651 2551
5824d651 2552DEF("no-hpet", 0, QEMU_OPTION_no_hpet,
ad96090a 2553 "-no-hpet disable HPET\n", QEMU_ARCH_I386)
e2fcbf42
PM
2554SRST
2555``-no-hpet``
2556 Disable HPET support.
2557ERST
5824d651 2558
5824d651 2559DEF("acpitable", HAS_ARG, QEMU_OPTION_acpitable,
104bf02e 2560 "-acpitable [sig=str][,rev=n][,oem_id=str][,oem_table_id=str][,oem_rev=n][,asl_compiler_id=str][,asl_compiler_rev=n][,{data|file}=file1[:file2]...]\n"
ad96090a 2561 " ACPI table description\n", QEMU_ARCH_I386)
e2fcbf42
PM
2562SRST
2563``-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]...]``
2564 Add ACPI table with specified header fields and context from
2565 specified files. For file=, take whole ACPI table from the specified
2566 files, including all ACPI headers (possible overridden by other
2567 options). For data=, only data portion of the table is used, all
2568 header information is specified in the command line. If a SLIC table
2569 is supplied to QEMU, then the SLIC's oem\_id and oem\_table\_id
2570 fields will override the same in the RSDT and the FADT (a.k.a.
2571 FACP), in order to ensure the field matches required by the
2572 Microsoft SLIC spec and the ACPI spec.
2573ERST
5824d651 2574
b6f6e3d3
AL
2575DEF("smbios", HAS_ARG, QEMU_OPTION_smbios,
2576 "-smbios file=binary\n"
ca1a8a06 2577 " load SMBIOS entry from binary file\n"
b155eb1d
GS
2578 "-smbios type=0[,vendor=str][,version=str][,date=str][,release=%d.%d]\n"
2579 " [,uefi=on|off]\n"
ca1a8a06 2580 " specify SMBIOS type 0 fields\n"
b6f6e3d3
AL
2581 "-smbios type=1[,manufacturer=str][,product=str][,version=str][,serial=str]\n"
2582 " [,uuid=uuid][,sku=str][,family=str]\n"
b155eb1d
GS
2583 " specify SMBIOS type 1 fields\n"
2584 "-smbios type=2[,manufacturer=str][,product=str][,version=str][,serial=str]\n"
2585 " [,asset=str][,location=str]\n"
2586 " specify SMBIOS type 2 fields\n"
2587 "-smbios type=3[,manufacturer=str][,version=str][,serial=str][,asset=str]\n"
2588 " [,sku=str]\n"
2589 " specify SMBIOS type 3 fields\n"
2590 "-smbios type=4[,sock_pfx=str][,manufacturer=str][,version=str][,serial=str]\n"
c906e039 2591 " [,asset=str][,part=str][,max-speed=%d][,current-speed=%d]\n"
cb5fb04f 2592 " [,processor-id=%d]\n"
b155eb1d 2593 " specify SMBIOS type 4 fields\n"
48a7ff4d
DB
2594 "-smbios type=11[,value=str][,path=filename]\n"
2595 " specify SMBIOS type 11 fields\n"
b155eb1d 2596 "-smbios type=17[,loc_pfx=str][,bank=str][,manufacturer=str][,serial=str]\n"
3ebd6cc8 2597 " [,asset=str][,part=str][,speed=%d]\n"
05dfb447
VB
2598 " specify SMBIOS type 17 fields\n"
2599 "-smbios type=41[,designation=str][,kind=str][,instance=%d][,pcidev=str]\n"
2600 " specify SMBIOS type 41 fields\n",
c30e1565 2601 QEMU_ARCH_I386 | QEMU_ARCH_ARM)
e2fcbf42
PM
2602SRST
2603``-smbios file=binary``
2604 Load SMBIOS entry from binary file.
2605
2606``-smbios type=0[,vendor=str][,version=str][,date=str][,release=%d.%d][,uefi=on|off]``
2607 Specify SMBIOS type 0 fields
2608
2609``-smbios type=1[,manufacturer=str][,product=str][,version=str][,serial=str][,uuid=uuid][,sku=str][,family=str]``
2610 Specify SMBIOS type 1 fields
2611
2612``-smbios type=2[,manufacturer=str][,product=str][,version=str][,serial=str][,asset=str][,location=str]``
2613 Specify SMBIOS type 2 fields
2614
2615``-smbios type=3[,manufacturer=str][,version=str][,serial=str][,asset=str][,sku=str]``
2616 Specify SMBIOS type 3 fields
2617
cb5fb04f 2618``-smbios type=4[,sock_pfx=str][,manufacturer=str][,version=str][,serial=str][,asset=str][,part=str][,processor-id=%d]``
e2fcbf42
PM
2619 Specify SMBIOS type 4 fields
2620
48a7ff4d
DB
2621``-smbios type=11[,value=str][,path=filename]``
2622 Specify SMBIOS type 11 fields
2623
2624 This argument can be repeated multiple times, and values are added in the order they are parsed.
2625 Applications intending to use OEM strings data are encouraged to use their application name as
2626 a prefix for the value string. This facilitates passing information for multiple applications
2627 concurrently.
2628
2629 The ``value=str`` syntax provides the string data inline, while the ``path=filename`` syntax
2630 loads data from a file on disk. Note that the file is not permitted to contain any NUL bytes.
2631
2632 Both the ``value`` and ``path`` options can be repeated multiple times and will be added to
2633 the SMBIOS table in the order in which they appear.
2634
2635 Note that on the x86 architecture, the total size of all SMBIOS tables is limited to 65535
2636 bytes. Thus the OEM strings data is not suitable for passing large amounts of data into the
2637 guest. Instead it should be used as a indicator to inform the guest where to locate the real
2638 data set, for example, by specifying the serial ID of a block device.
2639
2640 An example passing three strings is
2641
2642 .. parsed-literal::
2643
2644 -smbios type=11,value=cloud-init:ds=nocloud-net;s=http://10.10.0.1:8000/,\\
2645 value=anaconda:method=http://dl.fedoraproject.org/pub/fedora/linux/releases/25/x86_64/os,\\
2646 path=/some/file/with/oemstringsdata.txt
2647
2648 In the guest OS this is visible with the ``dmidecode`` command
2649
2650 .. parsed-literal::
2651
2652 $ dmidecode -t 11
2653 Handle 0x0E00, DMI type 11, 5 bytes
2654 OEM Strings
2655 String 1: cloud-init:ds=nocloud-net;s=http://10.10.0.1:8000/
2656 String 2: anaconda:method=http://dl.fedoraproject.org/pub/fedora/linux/releases/25/x86_64/os
2657 String 3: myapp:some extra data
2658
2659
e2fcbf42
PM
2660``-smbios type=17[,loc_pfx=str][,bank=str][,manufacturer=str][,serial=str][,asset=str][,part=str][,speed=%d]``
2661 Specify SMBIOS type 17 fields
05dfb447
VB
2662
2663``-smbios type=41[,designation=str][,kind=str][,instance=%d][,pcidev=str]``
2664 Specify SMBIOS type 41 fields
2665
2666 This argument can be repeated multiple times. Its main use is to allow network interfaces be created
2667 as ``enoX`` on Linux, with X being the instance number, instead of the name depending on the interface
2668 position on the PCI bus.
2669
2670 Here is an example of use:
2671
2672 .. parsed-literal::
2673
2674 -netdev user,id=internet \\
2675 -device virtio-net-pci,mac=50:54:00:00:00:42,netdev=internet,id=internet-dev \\
2676 -smbios type=41,designation='Onboard LAN',instance=1,kind=ethernet,pcidev=internet-dev
2677
2678 In the guest OS, the device should then appear as ``eno1``:
2679
2680 ..parsed-literal::
2681
2682 $ ip -brief l
2683 lo UNKNOWN 00:00:00:00:00:00 <LOOPBACK,UP,LOWER_UP>
2684 eno1 UP 50:54:00:00:00:42 <BROADCAST,MULTICAST,UP,LOWER_UP>
2685
2686 Currently, the PCI device has to be attached to the root bus.
2687
e2fcbf42 2688ERST
b6f6e3d3 2689
c70a01e4 2690DEFHEADING()
5824d651 2691
de6b4f90 2692DEFHEADING(Network options:)
5824d651 2693
6a8b4a5b 2694DEF("netdev", HAS_ARG, QEMU_OPTION_netdev,
5824d651 2695#ifdef CONFIG_SLIRP
8b0dc246
DB
2696 "-netdev user,id=str[,ipv4=on|off][,net=addr[/mask]][,host=addr]\n"
2697 " [,ipv6=on|off][,ipv6-net=addr[/int]][,ipv6-host=addr]\n"
0b11c036 2698 " [,restrict=on|off][,hostname=host][,dhcpstart=addr]\n"
f18d1375 2699 " [,dns=addr][,ipv6-dns=addr][,dnssearch=domain][,domainname=domain]\n"
0fca92b9 2700 " [,tftp=dir][,tftp-server-name=name][,bootfile=f][,hostfwd=rule][,guestfwd=rule]"
ad196a9d 2701#ifndef _WIN32
c92ef6a2 2702 "[,smb=dir[,smbserver=addr]]\n"
ad196a9d 2703#endif
6a8b4a5b
TH
2704 " configure a user mode network backend with ID 'str',\n"
2705 " its DHCP server and optional services\n"
5824d651
BS
2706#endif
2707#ifdef _WIN32
6a8b4a5b
TH
2708 "-netdev tap,id=str,ifname=name\n"
2709 " configure a host TAP network backend with ID 'str'\n"
5824d651 2710#else
6a8b4a5b 2711 "-netdev tap,id=str[,fd=h][,fds=x:y:...:z][,ifname=name][,script=file][,downscript=dfile]\n"
584613ea 2712 " [,br=bridge][,helper=helper][,sndbuf=nbytes][,vnet_hdr=on|off][,vhost=on|off]\n"
6a8b4a5b 2713 " [,vhostfd=h][,vhostfds=x:y:...:z][,vhostforce=on|off][,queues=n]\n"
69e87b32 2714 " [,poll-us=n]\n"
6a8b4a5b 2715 " configure a host TAP network backend with ID 'str'\n"
584613ea 2716 " connected to a bridge (default=" DEFAULT_BRIDGE_INTERFACE ")\n"
a7c36ee4
CB
2717 " use network scripts 'file' (default=" DEFAULT_NETWORK_SCRIPT ")\n"
2718 " to configure it and 'dfile' (default=" DEFAULT_NETWORK_DOWN_SCRIPT ")\n"
2719 " to deconfigure it\n"
ca1a8a06 2720 " use '[down]script=no' to disable script execution\n"
a7c36ee4
CB
2721 " use network helper 'helper' (default=" DEFAULT_BRIDGE_HELPER ") to\n"
2722 " configure it\n"
5824d651 2723 " use 'fd=h' to connect to an already opened TAP interface\n"
2ca81baa 2724 " use 'fds=x:y:...:z' to connect to already opened multiqueue capable TAP interfaces\n"
ca1a8a06 2725 " use 'sndbuf=nbytes' to limit the size of the send buffer (the\n"
f157ed20 2726 " default is disabled 'sndbuf=0' to enable flow control set 'sndbuf=1048576')\n"
ca1a8a06
BR
2727 " use vnet_hdr=off to avoid enabling the IFF_VNET_HDR tap flag\n"
2728 " use vnet_hdr=on to make the lack of IFF_VNET_HDR support an error condition\n"
82b0d80e 2729 " use vhost=on to enable experimental in kernel accelerator\n"
5430a28f
MT
2730 " (only has effect for virtio guests which use MSIX)\n"
2731 " use vhostforce=on to force vhost on for non-MSIX virtio guests\n"
82b0d80e 2732 " use 'vhostfd=h' to connect to an already opened vhost net device\n"
2ca81baa 2733 " use 'vhostfds=x:y:...:z to connect to multiple already opened vhost net devices\n"
ec396014 2734 " use 'queues=n' to specify the number of queues to be created for multiqueue TAP\n"
cba42d61 2735 " use 'poll-us=n' to specify the maximum number of microseconds that could be\n"
69e87b32 2736 " spent on busy polling for vhost net\n"
6a8b4a5b
TH
2737 "-netdev bridge,id=str[,br=bridge][,helper=helper]\n"
2738 " configure a host TAP network backend with ID 'str' that is\n"
2739 " connected to a bridge (default=" DEFAULT_BRIDGE_INTERFACE ")\n"
2740 " using the program 'helper (default=" DEFAULT_BRIDGE_HELPER ")\n"
3fb69aa1
AI
2741#endif
2742#ifdef __linux__
6a8b4a5b 2743 "-netdev l2tpv3,id=str,src=srcaddr,dst=dstaddr[,srcport=srcport][,dstport=dstport]\n"
8b0dc246
DB
2744 " [,rxsession=rxsession],txsession=txsession[,ipv6=on|off][,udp=on|off]\n"
2745 " [,cookie64=on|off][,counter][,pincounter][,txcookie=txcookie]\n"
6a8b4a5b
TH
2746 " [,rxcookie=rxcookie][,offset=offset]\n"
2747 " configure a network backend with ID 'str' connected to\n"
2748 " an Ethernet over L2TPv3 pseudowire.\n"
3fb69aa1 2749 " Linux kernel 3.3+ as well as most routers can talk\n"
2f47b403 2750 " L2TPv3. This transport allows connecting a VM to a VM,\n"
3fb69aa1 2751 " VM to a router and even VM to Host. It is a nearly-universal\n"
21843dc4 2752 " standard (RFC3931). Note - this implementation uses static\n"
3fb69aa1
AI
2753 " pre-configured tunnels (same as the Linux kernel).\n"
2754 " use 'src=' to specify source address\n"
2755 " use 'dst=' to specify destination address\n"
2756 " use 'udp=on' to specify udp encapsulation\n"
3952651a 2757 " use 'srcport=' to specify source udp port\n"
3fb69aa1
AI
2758 " use 'dstport=' to specify destination udp port\n"
2759 " use 'ipv6=on' to force v6\n"
2760 " L2TPv3 uses cookies to prevent misconfiguration as\n"
2761 " well as a weak security measure\n"
2762 " use 'rxcookie=0x012345678' to specify a rxcookie\n"
2763 " use 'txcookie=0x012345678' to specify a txcookie\n"
2764 " use 'cookie64=on' to set cookie size to 64 bit, otherwise 32\n"
2765 " use 'counter=off' to force a 'cut-down' L2TPv3 with no counter\n"
2766 " use 'pincounter=on' to work around broken counter handling in peer\n"
2767 " use 'offset=X' to add an extra offset between header and data\n"
5824d651 2768#endif
6a8b4a5b
TH
2769 "-netdev socket,id=str[,fd=h][,listen=[host]:port][,connect=host:port]\n"
2770 " configure a network backend to connect to another network\n"
2771 " using a socket connection\n"
2772 "-netdev socket,id=str[,fd=h][,mcast=maddr:port[,localaddr=addr]]\n"
2773 " configure a network backend to connect to a multicast maddr and port\n"
3a75e74c 2774 " use 'localaddr=addr' to specify the host address to send packets from\n"
6a8b4a5b
TH
2775 "-netdev socket,id=str[,fd=h][,udp=host:port][,localaddr=host:port]\n"
2776 " configure a network backend to connect to another network\n"
2777 " using an UDP tunnel\n"
5824d651 2778#ifdef CONFIG_VDE
6a8b4a5b
TH
2779 "-netdev vde,id=str[,sock=socketpath][,port=n][,group=groupname][,mode=octalmode]\n"
2780 " configure a network backend to connect to port 'n' of a vde switch\n"
2781 " running on host and listening for incoming connections on 'socketpath'.\n"
5824d651
BS
2782 " Use group 'groupname' and mode 'octalmode' to change default\n"
2783 " ownership and permissions for communication port.\n"
58952137
VM
2784#endif
2785#ifdef CONFIG_NETMAP
6a8b4a5b 2786 "-netdev netmap,id=str,ifname=name[,devname=nmname]\n"
58952137
VM
2787 " attach to the existing netmap-enabled network interface 'name', or to a\n"
2788 " VALE port (created on the fly) called 'name' ('nmname' is name of the \n"
2789 " netmap device, defaults to '/dev/netmap')\n"
5824d651 2790#endif
253dc14c 2791#ifdef CONFIG_POSIX
6a8b4a5b
TH
2792 "-netdev vhost-user,id=str,chardev=dev[,vhostforce=on|off]\n"
2793 " configure a vhost-user network, backed by a chardev 'dev'\n"
108a6481
CL
2794#endif
2795#ifdef __linux__
2796 "-netdev vhost-vdpa,id=str,vhostdev=/path/to/dev\n"
2797 " configure a vhost-vdpa network,Establish a vhost-vdpa netdev\n"
b0290db1
VY
2798#endif
2799#ifdef CONFIG_VMNET
2800 "-netdev vmnet-host,id=str[,isolated=on|off][,net-uuid=uuid]\n"
2801 " [,start-address=addr,end-address=addr,subnet-mask=mask]\n"
2802 " configure a vmnet network backend in host mode with ID 'str',\n"
2803 " isolate this interface from others with 'isolated',\n"
2804 " configure the address range and choose a subnet mask,\n"
2805 " specify network UUID 'uuid' to disable DHCP and interact with\n"
2806 " vmnet-host interfaces within this isolated network\n"
2807 "-netdev vmnet-shared,id=str[,isolated=on|off][,nat66-prefix=addr]\n"
2808 " [,start-address=addr,end-address=addr,subnet-mask=mask]\n"
2809 " configure a vmnet network backend in shared mode with ID 'str',\n"
2810 " configure the address range and choose a subnet mask,\n"
2811 " set IPv6 ULA prefix (of length 64) to use for internal network,\n"
2812 " isolate this interface from others with 'isolated'\n"
2813 "-netdev vmnet-bridged,id=str,ifname=name[,isolated=on|off]\n"
2814 " configure a vmnet network backend in bridged mode with ID 'str',\n"
2815 " use 'ifname=name' to select a physical network interface to be bridged,\n"
2816 " isolate this interface from others with 'isolated'\n"
253dc14c 2817#endif
18d65d22 2818 "-netdev hubport,id=str,hubid=n[,netdev=nd]\n"
af1a5c3e 2819 " configure a hub port on the hub with ID 'n'\n", QEMU_ARCH_ALL)
78cd6f7b 2820DEF("nic", HAS_ARG, QEMU_OPTION_nic,
dfaa7d50 2821 "-nic [tap|bridge|"
78cd6f7b
TH
2822#ifdef CONFIG_SLIRP
2823 "user|"
2824#endif
2825#ifdef __linux__
2826 "l2tpv3|"
2827#endif
2828#ifdef CONFIG_VDE
2829 "vde|"
2830#endif
2831#ifdef CONFIG_NETMAP
2832 "netmap|"
2833#endif
2834#ifdef CONFIG_POSIX
2835 "vhost-user|"
b0290db1
VY
2836#endif
2837#ifdef CONFIG_VMNET
2838 "vmnet-host|vmnet-shared|vmnet-bridged|"
78cd6f7b
TH
2839#endif
2840 "socket][,option][,...][mac=macaddr]\n"
2841 " initialize an on-board / default host NIC (using MAC address\n"
2842 " macaddr) and connect it to the given host network backend\n"
dfaa7d50 2843 "-nic none use it alone to have zero network devices (the default is to\n"
78cd6f7b
TH
2844 " provided a 'user' network connection)\n",
2845 QEMU_ARCH_ALL)
6a8b4a5b 2846DEF("net", HAS_ARG, QEMU_OPTION_net,
af1a5c3e 2847 "-net nic[,macaddr=mac][,model=type][,name=str][,addr=str][,vectors=v]\n"
0e60a82d 2848 " configure or create an on-board (or machine default) NIC and\n"
af1a5c3e 2849 " connect it to hub 0 (please use -nic unless you need a hub)\n"
6a8b4a5b 2850 "-net ["
a1ea458f
MM
2851#ifdef CONFIG_SLIRP
2852 "user|"
2853#endif
2854 "tap|"
a7c36ee4 2855 "bridge|"
a1ea458f
MM
2856#ifdef CONFIG_VDE
2857 "vde|"
58952137
VM
2858#endif
2859#ifdef CONFIG_NETMAP
2860 "netmap|"
b0290db1
VY
2861#endif
2862#ifdef CONFIG_VMNET
2863 "vmnet-host|vmnet-shared|vmnet-bridged|"
a1ea458f 2864#endif
af1a5c3e 2865 "socket][,option][,option][,...]\n"
6a8b4a5b
TH
2866 " old way to initialize a host network interface\n"
2867 " (use the -netdev option if possible instead)\n", QEMU_ARCH_ALL)
e2fcbf42
PM
2868SRST
2869``-nic [tap|bridge|user|l2tpv3|vde|netmap|vhost-user|socket][,...][,mac=macaddr][,model=mn]``
2870 This option is a shortcut for configuring both the on-board
2871 (default) guest NIC hardware and the host network backend in one go.
2872 The host backend options are the same as with the corresponding
2873 ``-netdev`` options below. The guest NIC model can be set with
2874 ``model=modelname``. Use ``model=help`` to list the available device
2875 types. The hardware MAC address can be set with ``mac=macaddr``.
2876
2877 The following two example do exactly the same, to show how ``-nic``
2878 can be used to shorten the command line length:
2879
2880 .. parsed-literal::
2881
2882 |qemu_system| -netdev user,id=n1,ipv6=off -device e1000,netdev=n1,mac=52:54:98:76:54:32
2883 |qemu_system| -nic user,ipv6=off,model=e1000,mac=52:54:98:76:54:32
2884
2885``-nic none``
2886 Indicate that no network devices should be configured. It is used to
2887 override the default configuration (default NIC with "user" host
2888 network backend) which is activated if no other networking options
2889 are provided.
2890
2891``-netdev user,id=id[,option][,option][,...]``
2892 Configure user mode host network backend which requires no
2893 administrator privilege to run. Valid options are:
2894
2895 ``id=id``
2896 Assign symbolic name for use in monitor commands.
2897
2898 ``ipv4=on|off and ipv6=on|off``
2899 Specify that either IPv4 or IPv6 must be enabled. If neither is
2900 specified both protocols are enabled.
2901
2902 ``net=addr[/mask]``
2903 Set IP network address the guest will see. Optionally specify
2904 the netmask, either in the form a.b.c.d or as number of valid
2905 top-most bits. Default is 10.0.2.0/24.
2906
2907 ``host=addr``
2908 Specify the guest-visible address of the host. Default is the
2909 2nd IP in the guest network, i.e. x.x.x.2.
2910
2911 ``ipv6-net=addr[/int]``
2912 Set IPv6 network address the guest will see (default is
2913 fec0::/64). The network prefix is given in the usual hexadecimal
2914 IPv6 address notation. The prefix size is optional, and is given
2915 as the number of valid top-most bits (default is 64).
2916
2917 ``ipv6-host=addr``
2918 Specify the guest-visible IPv6 address of the host. Default is
2919 the 2nd IPv6 in the guest network, i.e. xxxx::2.
2920
2921 ``restrict=on|off``
2922 If this option is enabled, the guest will be isolated, i.e. it
2923 will not be able to contact the host and no guest IP packets
2924 will be routed over the host to the outside. This option does
2925 not affect any explicitly set forwarding rules.
2926
2927 ``hostname=name``
2928 Specifies the client hostname reported by the built-in DHCP
2929 server.
2930
2931 ``dhcpstart=addr``
2932 Specify the first of the 16 IPs the built-in DHCP server can
2933 assign. Default is the 15th to 31st IP in the guest network,
2934 i.e. x.x.x.15 to x.x.x.31.
2935
2936 ``dns=addr``
2937 Specify the guest-visible address of the virtual nameserver. The
2938 address must be different from the host address. Default is the
2939 3rd IP in the guest network, i.e. x.x.x.3.
2940
2941 ``ipv6-dns=addr``
2942 Specify the guest-visible address of the IPv6 virtual
2943 nameserver. The address must be different from the host address.
2944 Default is the 3rd IP in the guest network, i.e. xxxx::3.
2945
2946 ``dnssearch=domain``
2947 Provides an entry for the domain-search list sent by the
2948 built-in DHCP server. More than one domain suffix can be
2949 transmitted by specifying this option multiple times. If
2950 supported, this will cause the guest to automatically try to
2951 append the given domain suffix(es) in case a domain name can not
2952 be resolved.
2953
2954 Example:
2955
2956 .. parsed-literal::
2957
2958 |qemu_system| -nic user,dnssearch=mgmt.example.org,dnssearch=example.org
2959
2960 ``domainname=domain``
2961 Specifies the client domain name reported by the built-in DHCP
2962 server.
2963
2964 ``tftp=dir``
2965 When using the user mode network stack, activate a built-in TFTP
2966 server. The files in dir will be exposed as the root of a TFTP
2967 server. The TFTP client on the guest must be configured in
2968 binary mode (use the command ``bin`` of the Unix TFTP client).
2969
2970 ``tftp-server-name=name``
2971 In BOOTP reply, broadcast name as the "TFTP server name"
2972 (RFC2132 option 66). This can be used to advise the guest to
2973 load boot files or configurations from a different server than
2974 the host address.
2975
2976 ``bootfile=file``
2977 When using the user mode network stack, broadcast file as the
2978 BOOTP filename. In conjunction with ``tftp``, this can be used
2979 to network boot a guest from a local directory.
2980
2981 Example (using pxelinux):
2982
2983 .. parsed-literal::
2984
353a06b4 2985 |qemu_system| -hda linux.img -boot n -device e1000,netdev=n1 \\
e2fcbf42
PM
2986 -netdev user,id=n1,tftp=/path/to/tftp/files,bootfile=/pxelinux.0
2987
2988 ``smb=dir[,smbserver=addr]``
2989 When using the user mode network stack, activate a built-in SMB
2990 server so that Windows OSes can access to the host files in
2991 ``dir`` transparently. The IP address of the SMB server can be
2992 set to addr. By default the 4th IP in the guest network is used,
2993 i.e. x.x.x.4.
2994
2995 In the guest Windows OS, the line:
2996
2997 ::
2998
2999 10.0.2.4 smbserver
3000
3001 must be added in the file ``C:\WINDOWS\LMHOSTS`` (for windows
3002 9x/Me) or ``C:\WINNT\SYSTEM32\DRIVERS\ETC\LMHOSTS`` (Windows
3003 NT/2000).
3004
3005 Then ``dir`` can be accessed in ``\\smbserver\qemu``.
3006
3007 Note that a SAMBA server must be installed on the host OS.
3008
3009 ``hostfwd=[tcp|udp]:[hostaddr]:hostport-[guestaddr]:guestport``
3010 Redirect incoming TCP or UDP connections to the host port
3011 hostport to the guest IP address guestaddr on guest port
3012 guestport. If guestaddr is not specified, its value is x.x.x.15
3013 (default first address given by the built-in DHCP server). By
3014 specifying hostaddr, the rule can be bound to a specific host
3015 interface. If no connection type is set, TCP is used. This
3016 option can be given multiple times.
3017
3018 For example, to redirect host X11 connection from screen 1 to
3019 guest screen 0, use the following:
3020
09ce5f2d 3021 .. parsed-literal::
e2fcbf42
PM
3022
3023 # on the host
3024 |qemu_system| -nic user,hostfwd=tcp:127.0.0.1:6001-:6000
3025 # this host xterm should open in the guest X11 server
3026 xterm -display :1
3027
3028 To redirect telnet connections from host port 5555 to telnet
3029 port on the guest, use the following:
3030
09ce5f2d 3031 .. parsed-literal::
e2fcbf42
PM
3032
3033 # on the host
3034 |qemu_system| -nic user,hostfwd=tcp::5555-:23
3035 telnet localhost 5555
3036
3037 Then when you use on the host ``telnet localhost 5555``, you
3038 connect to the guest telnet server.
3039
3040 ``guestfwd=[tcp]:server:port-dev``; \ ``guestfwd=[tcp]:server:port-cmd:command``
3041 Forward guest TCP connections to the IP address server on port
3042 port to the character device dev or to a program executed by
3043 cmd:command which gets spawned for each connection. This option
3044 can be given multiple times.
3045
3046 You can either use a chardev directly and have that one used
3047 throughout QEMU's lifetime, like in the following example:
3048
09ce5f2d 3049 .. parsed-literal::
e2fcbf42
PM
3050
3051 # open 10.10.1.1:4321 on bootup, connect 10.0.2.100:1234 to it whenever
3052 # the guest accesses it
3053 |qemu_system| -nic user,guestfwd=tcp:10.0.2.100:1234-tcp:10.10.1.1:4321
3054
3055 Or you can execute a command on every TCP connection established
3056 by the guest, so that QEMU behaves similar to an inetd process
3057 for that virtual server:
3058
09ce5f2d 3059 .. parsed-literal::
e2fcbf42
PM
3060
3061 # call "netcat 10.10.1.1 4321" on every TCP connection to 10.0.2.100:1234
3062 # and connect the TCP stream to its stdin/stdout
3063 |qemu_system| -nic 'user,id=n1,guestfwd=tcp:10.0.2.100:1234-cmd:netcat 10.10.1.1 4321'
3064
3065``-netdev tap,id=id[,fd=h][,ifname=name][,script=file][,downscript=dfile][,br=bridge][,helper=helper]``
3066 Configure a host TAP network backend with ID id.
3067
3068 Use the network script file to configure it and the network script
3069 dfile to deconfigure it. If name is not provided, the OS
3070 automatically provides one. The default network configure script is
3071 ``/etc/qemu-ifup`` and the default network deconfigure script is
3072 ``/etc/qemu-ifdown``. Use ``script=no`` or ``downscript=no`` to
3073 disable script execution.
3074
3075 If running QEMU as an unprivileged user, use the network helper
8d73ec89 3076 to configure the TAP interface and attach it to the bridge.
e2fcbf42
PM
3077 The default network helper executable is
3078 ``/path/to/qemu-bridge-helper`` and the default bridge device is
3079 ``br0``.
3080
3081 ``fd``\ =h can be used to specify the handle of an already opened
3082 host TAP interface.
3083
3084 Examples:
3085
09ce5f2d 3086 .. parsed-literal::
e2fcbf42
PM
3087
3088 #launch a QEMU instance with the default network script
3089 |qemu_system| linux.img -nic tap
3090
09ce5f2d 3091 .. parsed-literal::
e2fcbf42
PM
3092
3093 #launch a QEMU instance with two NICs, each one connected
3094 #to a TAP device
353a06b4
LE
3095 |qemu_system| linux.img \\
3096 -netdev tap,id=nd0,ifname=tap0 -device e1000,netdev=nd0 \\
e2fcbf42
PM
3097 -netdev tap,id=nd1,ifname=tap1 -device rtl8139,netdev=nd1
3098
09ce5f2d 3099 .. parsed-literal::
e2fcbf42
PM
3100
3101 #launch a QEMU instance with the default network helper to
3102 #connect a TAP device to bridge br0
353a06b4 3103 |qemu_system| linux.img -device virtio-net-pci,netdev=n1 \\
e2fcbf42
PM
3104 -netdev tap,id=n1,"helper=/path/to/qemu-bridge-helper"
3105
3106``-netdev bridge,id=id[,br=bridge][,helper=helper]``
3107 Connect a host TAP network interface to a host bridge device.
3108
3109 Use the network helper helper to configure the TAP interface and
3110 attach it to the bridge. The default network helper executable is
3111 ``/path/to/qemu-bridge-helper`` and the default bridge device is
3112 ``br0``.
3113
3114 Examples:
3115
09ce5f2d 3116 .. parsed-literal::
e2fcbf42
PM
3117
3118 #launch a QEMU instance with the default network helper to
3119 #connect a TAP device to bridge br0
3120 |qemu_system| linux.img -netdev bridge,id=n1 -device virtio-net,netdev=n1
3121
09ce5f2d 3122 .. parsed-literal::
e2fcbf42
PM
3123
3124 #launch a QEMU instance with the default network helper to
3125 #connect a TAP device to bridge qemubr0
3126 |qemu_system| linux.img -netdev bridge,br=qemubr0,id=n1 -device virtio-net,netdev=n1
3127
3128``-netdev socket,id=id[,fd=h][,listen=[host]:port][,connect=host:port]``
3129 This host network backend can be used to connect the guest's network
3130 to another QEMU virtual machine using a TCP socket connection. If
3131 ``listen`` is specified, QEMU waits for incoming connections on port
3132 (host is optional). ``connect`` is used to connect to another QEMU
3133 instance using the ``listen`` option. ``fd``\ =h specifies an
3134 already opened TCP socket.
3135
3136 Example:
3137
09ce5f2d 3138 .. parsed-literal::
e2fcbf42
PM
3139
3140 # launch a first QEMU instance
353a06b4
LE
3141 |qemu_system| linux.img \\
3142 -device e1000,netdev=n1,mac=52:54:00:12:34:56 \\
e2fcbf42
PM
3143 -netdev socket,id=n1,listen=:1234
3144 # connect the network of this instance to the network of the first instance
353a06b4
LE
3145 |qemu_system| linux.img \\
3146 -device e1000,netdev=n2,mac=52:54:00:12:34:57 \\
e2fcbf42
PM
3147 -netdev socket,id=n2,connect=127.0.0.1:1234
3148
3149``-netdev socket,id=id[,fd=h][,mcast=maddr:port[,localaddr=addr]]``
3150 Configure a socket host network backend to share the guest's network
3151 traffic with another QEMU virtual machines using a UDP multicast
3152 socket, effectively making a bus for every QEMU with same multicast
3153 address maddr and port. NOTES:
3154
3155 1. Several QEMU can be running on different hosts and share same bus
3156 (assuming correct multicast setup for these hosts).
3157
3158 2. mcast support is compatible with User Mode Linux (argument
3159 ``ethN=mcast``), see http://user-mode-linux.sf.net.
3160
3161 3. Use ``fd=h`` to specify an already opened UDP multicast socket.
3162
3163 Example:
3164
09ce5f2d 3165 .. parsed-literal::
e2fcbf42
PM
3166
3167 # launch one QEMU instance
353a06b4
LE
3168 |qemu_system| linux.img \\
3169 -device e1000,netdev=n1,mac=52:54:00:12:34:56 \\
e2fcbf42
PM
3170 -netdev socket,id=n1,mcast=230.0.0.1:1234
3171 # launch another QEMU instance on same "bus"
353a06b4
LE
3172 |qemu_system| linux.img \\
3173 -device e1000,netdev=n2,mac=52:54:00:12:34:57 \\
e2fcbf42
PM
3174 -netdev socket,id=n2,mcast=230.0.0.1:1234
3175 # launch yet another QEMU instance on same "bus"
353a06b4
LE
3176 |qemu_system| linux.img \\
3177 -device e1000,netdev=n3,mac=52:54:00:12:34:58 \\
e2fcbf42
PM
3178 -netdev socket,id=n3,mcast=230.0.0.1:1234
3179
3180 Example (User Mode Linux compat.):
3181
09ce5f2d 3182 .. parsed-literal::
e2fcbf42
PM
3183
3184 # launch QEMU instance (note mcast address selected is UML's default)
353a06b4
LE
3185 |qemu_system| linux.img \\
3186 -device e1000,netdev=n1,mac=52:54:00:12:34:56 \\
e2fcbf42
PM
3187 -netdev socket,id=n1,mcast=239.192.168.1:1102
3188 # launch UML
3189 /path/to/linux ubd0=/path/to/root_fs eth0=mcast
3190
3191 Example (send packets from host's 1.2.3.4):
3192
3193 .. parsed-literal::
3194
353a06b4
LE
3195 |qemu_system| linux.img \\
3196 -device e1000,netdev=n1,mac=52:54:00:12:34:56 \\
e2fcbf42
PM
3197 -netdev socket,id=n1,mcast=239.192.168.1:1102,localaddr=1.2.3.4
3198
8b0dc246 3199``-netdev l2tpv3,id=id,src=srcaddr,dst=dstaddr[,srcport=srcport][,dstport=dstport],txsession=txsession[,rxsession=rxsession][,ipv6=on|off][,udp=on|off][,cookie64][,counter][,pincounter][,txcookie=txcookie][,rxcookie=rxcookie][,offset=offset]``
e2fcbf42
PM
3200 Configure a L2TPv3 pseudowire host network backend. L2TPv3 (RFC3931)
3201 is a popular protocol to transport Ethernet (and other Layer 2) data
3202 frames between two systems. It is present in routers, firewalls and
3203 the Linux kernel (from version 3.3 onwards).
3204
3205 This transport allows a VM to communicate to another VM, router or
3206 firewall directly.
3207
3208 ``src=srcaddr``
3209 source address (mandatory)
3210
3211 ``dst=dstaddr``
3212 destination address (mandatory)
3213
3214 ``udp``
3215 select udp encapsulation (default is ip).
3216
3217 ``srcport=srcport``
3218 source udp port.
3219
3220 ``dstport=dstport``
3221 destination udp port.
3222
3223 ``ipv6``
3224 force v6, otherwise defaults to v4.
3225
3226 ``rxcookie=rxcookie``; \ ``txcookie=txcookie``
3227 Cookies are a weak form of security in the l2tpv3 specification.
3228 Their function is mostly to prevent misconfiguration. By default
3229 they are 32 bit.
3230
3231 ``cookie64``
3232 Set cookie size to 64 bit instead of the default 32
3233
3234 ``counter=off``
3235 Force a 'cut-down' L2TPv3 with no counter as in
3236 draft-mkonstan-l2tpext-keyed-ipv6-tunnel-00
3237
3238 ``pincounter=on``
3239 Work around broken counter handling in peer. This may also help
3240 on networks which have packet reorder.
3241
3242 ``offset=offset``
3243 Add an extra offset between header and data
3244
3245 For example, to attach a VM running on host 4.3.2.1 via L2TPv3 to
3246 the bridge br-lan on the remote Linux host 1.2.3.4:
3247
09ce5f2d 3248 .. parsed-literal::
e2fcbf42
PM
3249
3250 # Setup tunnel on linux host using raw ip as encapsulation
3251 # on 1.2.3.4
353a06b4 3252 ip l2tp add tunnel remote 4.3.2.1 local 1.2.3.4 tunnel_id 1 peer_tunnel_id 1 \\
e2fcbf42 3253 encap udp udp_sport 16384 udp_dport 16384
353a06b4 3254 ip l2tp add session tunnel_id 1 name vmtunnel0 session_id \\
e2fcbf42
PM
3255 0xFFFFFFFF peer_session_id 0xFFFFFFFF
3256 ifconfig vmtunnel0 mtu 1500
3257 ifconfig vmtunnel0 up
3258 brctl addif br-lan vmtunnel0
3259
3260
3261 # on 4.3.2.1
3262 # launch QEMU instance - if your network has reorder or is very lossy add ,pincounter
3263
353a06b4 3264 |qemu_system| linux.img -device e1000,netdev=n1 \\
e2fcbf42
PM
3265 -netdev l2tpv3,id=n1,src=4.2.3.1,dst=1.2.3.4,udp,srcport=16384,dstport=16384,rxsession=0xffffffff,txsession=0xffffffff,counter
3266
3267``-netdev vde,id=id[,sock=socketpath][,port=n][,group=groupname][,mode=octalmode]``
3268 Configure VDE backend to connect to PORT n of a vde switch running
3269 on host and listening for incoming connections on socketpath. Use
3270 GROUP groupname and MODE octalmode to change default ownership and
3271 permissions for communication port. This option is only available if
3272 QEMU has been compiled with vde support enabled.
3273
3274 Example:
3275
09ce5f2d 3276 .. parsed-literal::
e2fcbf42
PM
3277
3278 # launch vde switch
3279 vde_switch -F -sock /tmp/myswitch
3280 # launch QEMU instance
3281 |qemu_system| linux.img -nic vde,sock=/tmp/myswitch
3282
3283``-netdev vhost-user,chardev=id[,vhostforce=on|off][,queues=n]``
3284 Establish a vhost-user netdev, backed by a chardev id. The chardev
3285 should be a unix domain socket backed one. The vhost-user uses a
3286 specifically defined protocol to pass vhost ioctl replacement
3287 messages to an application on the other end of the socket. On
3288 non-MSIX guests, the feature can be forced with vhostforce. Use
3289 'queues=n' to specify the number of queues to be created for
3290 multiqueue vhost-user.
3291
3292 Example:
3293
3294 ::
3295
3296 qemu -m 512 -object memory-backend-file,id=mem,size=512M,mem-path=/hugetlbfs,share=on \
3297 -numa node,memdev=mem \
3298 -chardev socket,id=chr0,path=/path/to/socket \
3299 -netdev type=vhost-user,id=net0,chardev=chr0 \
3300 -device virtio-net-pci,netdev=net0
3301
108a6481
CL
3302``-netdev vhost-vdpa,vhostdev=/path/to/dev``
3303 Establish a vhost-vdpa netdev.
3304
3305 vDPA device is a device that uses a datapath which complies with
3306 the virtio specifications with a vendor specific control path.
3307 vDPA devices can be both physically located on the hardware or
3308 emulated by software.
3309
e2fcbf42
PM
3310``-netdev hubport,id=id,hubid=hubid[,netdev=nd]``
3311 Create a hub port on the emulated hub with ID hubid.
3312
3313 The hubport netdev lets you connect a NIC to a QEMU emulated hub
3314 instead of a single netdev. Alternatively, you can also connect the
3315 hubport to another netdev with ID nd by using the ``netdev=nd``
3316 option.
3317
3318``-net nic[,netdev=nd][,macaddr=mac][,model=type] [,name=name][,addr=addr][,vectors=v]``
3319 Legacy option to configure or create an on-board (or machine
3320 default) Network Interface Card(NIC) and connect it either to the
3321 emulated hub with ID 0 (i.e. the default hub), or to the netdev nd.
3322 If model is omitted, then the default NIC model associated with the
3323 machine type is used. Note that the default NIC model may change in
3324 future QEMU releases, so it is highly recommended to always specify
3325 a model. Optionally, the MAC address can be changed to mac, the
3326 device address set to addr (PCI cards only), and a name can be
3327 assigned for use in monitor commands. Optionally, for PCI cards, you
3328 can specify the number v of MSI-X vectors that the card should have;
3329 this option currently only affects virtio cards; set v = 0 to
3330 disable MSI-X. If no ``-net`` option is specified, a single NIC is
3331 created. QEMU can emulate several different models of network card.
3332 Use ``-net nic,model=help`` for a list of available devices for your
3333 target.
3334
3335``-net user|tap|bridge|socket|l2tpv3|vde[,...][,name=name]``
3336 Configure a host network backend (with the options corresponding to
3337 the same ``-netdev`` option) and connect it to the emulated hub 0
3338 (the default hub). Use name to specify the name of the hub port.
3339ERST
5824d651 3340
7273a2db
MB
3341DEFHEADING()
3342
de6b4f90 3343DEFHEADING(Character device options:)
7273a2db
MB
3344
3345DEF("chardev", HAS_ARG, QEMU_OPTION_chardev,
517b3d40 3346 "-chardev help\n"
d0d7708b 3347 "-chardev null,id=id[,mux=on|off][,logfile=PATH][,logappend=on|off]\n"
ba858d1f 3348 "-chardev socket,id=id[,host=host],port=port[,to=to][,ipv4=on|off][,ipv6=on|off][,nodelay=on|off]\n"
bfdc1267 3349 " [,server=on|off][,wait=on|off][,telnet=on|off][,websocket=on|off][,reconnect=seconds][,mux=on|off]\n"
fd4a5fd4 3350 " [,logfile=PATH][,logappend=on|off][,tls-creds=ID][,tls-authz=ID] (tcp)\n"
bfdc1267 3351 "-chardev socket,id=id,path=path[,server=on|off][,wait=on|off][,telnet=on|off][,websocket=on|off][,reconnect=seconds]\n"
e339273b 3352 " [,mux=on|off][,logfile=PATH][,logappend=on|off][,abstract=on|off][,tight=on|off] (unix)\n"
7273a2db 3353 "-chardev udp,id=id[,host=host],port=port[,localaddr=localaddr]\n"
bfdc1267 3354 " [,localport=localport][,ipv4=on|off][,ipv6=on|off][,mux=on|off]\n"
d0d7708b
DB
3355 " [,logfile=PATH][,logappend=on|off]\n"
3356 "-chardev msmouse,id=id[,mux=on|off][,logfile=PATH][,logappend=on|off]\n"
7273a2db 3357 "-chardev vc,id=id[[,width=width][,height=height]][[,cols=cols][,rows=rows]]\n"
d0d7708b
DB
3358 " [,mux=on|off][,logfile=PATH][,logappend=on|off]\n"
3359 "-chardev ringbuf,id=id[,size=size][,logfile=PATH][,logappend=on|off]\n"
3360 "-chardev file,id=id,path=path[,mux=on|off][,logfile=PATH][,logappend=on|off]\n"
3361 "-chardev pipe,id=id,path=path[,mux=on|off][,logfile=PATH][,logappend=on|off]\n"
7273a2db 3362#ifdef _WIN32
d0d7708b
DB
3363 "-chardev console,id=id[,mux=on|off][,logfile=PATH][,logappend=on|off]\n"
3364 "-chardev serial,id=id,path=path[,mux=on|off][,logfile=PATH][,logappend=on|off]\n"
7273a2db 3365#else
d0d7708b
DB
3366 "-chardev pty,id=id[,mux=on|off][,logfile=PATH][,logappend=on|off]\n"
3367 "-chardev stdio,id=id[,mux=on|off][,signal=on|off][,logfile=PATH][,logappend=on|off]\n"
7273a2db
MB
3368#endif
3369#ifdef CONFIG_BRLAPI
d0d7708b 3370 "-chardev braille,id=id[,mux=on|off][,logfile=PATH][,logappend=on|off]\n"
7273a2db
MB
3371#endif
3372#if defined(__linux__) || defined(__sun__) || defined(__FreeBSD__) \
3373 || defined(__NetBSD__) || defined(__OpenBSD__) || defined(__DragonFly__)
d0d7708b
DB
3374 "-chardev serial,id=id,path=path[,mux=on|off][,logfile=PATH][,logappend=on|off]\n"
3375 "-chardev tty,id=id,path=path[,mux=on|off][,logfile=PATH][,logappend=on|off]\n"
7273a2db
MB
3376#endif
3377#if defined(__linux__) || defined(__FreeBSD__) || defined(__DragonFly__)
d0d7708b
DB
3378 "-chardev parallel,id=id,path=path[,mux=on|off][,logfile=PATH][,logappend=on|off]\n"
3379 "-chardev parport,id=id,path=path[,mux=on|off][,logfile=PATH][,logappend=on|off]\n"
cbcc6336
AL
3380#endif
3381#if defined(CONFIG_SPICE)
d0d7708b
DB
3382 "-chardev spicevmc,id=id,name=name[,debug=debug][,logfile=PATH][,logappend=on|off]\n"
3383 "-chardev spiceport,id=id,name=name[,debug=debug][,logfile=PATH][,logappend=on|off]\n"
7273a2db 3384#endif
ad96090a 3385 , QEMU_ARCH_ALL
7273a2db
MB
3386)
3387
e2fcbf42
PM
3388SRST
3389The general form of a character device option is:
3390
3391``-chardev backend,id=id[,mux=on|off][,options]``
3392 Backend is one of: ``null``, ``socket``, ``udp``, ``msmouse``,
3393 ``vc``, ``ringbuf``, ``file``, ``pipe``, ``console``, ``serial``,
3394 ``pty``, ``stdio``, ``braille``, ``tty``, ``parallel``, ``parport``,
3395 ``spicevmc``, ``spiceport``. The specific backend will determine the
3396 applicable options.
3397
3398 Use ``-chardev help`` to print all available chardev backend types.
3399
3400 All devices must have an id, which can be any string up to 127
3401 characters long. It is used to uniquely identify this device in
3402 other command line directives.
3403
3404 A character device may be used in multiplexing mode by multiple
3405 front-ends. Specify ``mux=on`` to enable this mode. A multiplexer is
3406 a "1:N" device, and here the "1" end is your specified chardev
3407 backend, and the "N" end is the various parts of QEMU that can talk
3408 to a chardev. If you create a chardev with ``id=myid`` and
3409 ``mux=on``, QEMU will create a multiplexer with your specified ID,
3410 and you can then configure multiple front ends to use that chardev
3411 ID for their input/output. Up to four different front ends can be
3412 connected to a single multiplexed chardev. (Without multiplexing
3413 enabled, a chardev can only be used by a single front end.) For
3414 instance you could use this to allow a single stdio chardev to be
3415 used by two serial ports and the QEMU monitor:
3416
3417 ::
3418
3419 -chardev stdio,mux=on,id=char0 \
3420 -mon chardev=char0,mode=readline \
3421 -serial chardev:char0 \
3422 -serial chardev:char0
3423
3424 You can have more than one multiplexer in a system configuration;
3425 for instance you could have a TCP port multiplexed between UART 0
3426 and UART 1, and stdio multiplexed between the QEMU monitor and a
3427 parallel port:
3428
3429 ::
3430
3431 -chardev stdio,mux=on,id=char0 \
3432 -mon chardev=char0,mode=readline \
3433 -parallel chardev:char0 \
3434 -chardev tcp,...,mux=on,id=char1 \
3435 -serial chardev:char1 \
3436 -serial chardev:char1
3437
3438 When you're using a multiplexed character device, some escape
923e9311
TH
3439 sequences are interpreted in the input. See the chapter about
3440 :ref:`keys in the character backend multiplexer` in the
3441 System Emulation Users Guide for more details.
e2fcbf42
PM
3442
3443 Note that some other command line options may implicitly create
3444 multiplexed character backends; for instance ``-serial mon:stdio``
3445 creates a multiplexed stdio backend connected to the serial port and
3446 the QEMU monitor, and ``-nographic`` also multiplexes the console
3447 and the monitor to stdio.
3448
3449 There is currently no support for multiplexing in the other
3450 direction (where a single QEMU front end takes input and output from
3451 multiple chardevs).
3452
3453 Every backend supports the ``logfile`` option, which supplies the
3454 path to a file to record all data transmitted via the backend. The
3455 ``logappend`` option controls whether the log file will be truncated
3456 or appended to when opened.
3457
3458The available backends are:
3459
3460``-chardev null,id=id``
3461 A void device. This device will not emit any data, and will drop any
3462 data it receives. The null backend does not take any options.
3463
bfdc1267 3464``-chardev socket,id=id[,TCP options or unix options][,server=on|off][,wait=on|off][,telnet=on|off][,websocket=on|off][,reconnect=seconds][,tls-creds=id][,tls-authz=id]``
e2fcbf42
PM
3465 Create a two-way stream socket, which can be either a TCP or a unix
3466 socket. A unix socket will be created if ``path`` is specified.
3467 Behaviour is undefined if TCP options are specified for a unix
3468 socket.
3469
bfdc1267 3470 ``server=on|off`` specifies that the socket shall be a listening socket.
e2fcbf42 3471
bfdc1267 3472 ``wait=on|off`` specifies that QEMU should not block waiting for a client
e2fcbf42
PM
3473 to connect to a listening socket.
3474
bfdc1267 3475 ``telnet=on|off`` specifies that traffic on the socket should interpret
e2fcbf42
PM
3476 telnet escape sequences.
3477
bfdc1267 3478 ``websocket=on|off`` specifies that the socket uses WebSocket protocol for
e2fcbf42
PM
3479 communication.
3480
3481 ``reconnect`` sets the timeout for reconnecting on non-server
3482 sockets when the remote end goes away. qemu will delay this many
3483 seconds and then attempt to reconnect. Zero disables reconnecting,
3484 and is the default.
3485
3486 ``tls-creds`` requests enablement of the TLS protocol for
3487 encryption, and specifies the id of the TLS credentials to use for
3488 the handshake. The credentials must be previously created with the
3489 ``-object tls-creds`` argument.
3490
3491 ``tls-auth`` provides the ID of the QAuthZ authorization object
3492 against which the client's x509 distinguished name will be
3493 validated. This object is only resolved at time of use, so can be
3494 deleted and recreated on the fly while the chardev server is active.
3495 If missing, it will default to denying access.
3496
3497 TCP and unix socket options are given below:
3498
a9b1315f 3499 ``TCP options: port=port[,host=host][,to=to][,ipv4=on|off][,ipv6=on|off][,nodelay=on|off]``
e2fcbf42
PM
3500 ``host`` for a listening socket specifies the local address to
3501 be bound. For a connecting socket species the remote host to
3502 connect to. ``host`` is optional for listening sockets. If not
3503 specified it defaults to ``0.0.0.0``.
3504
3505 ``port`` for a listening socket specifies the local port to be
3506 bound. For a connecting socket specifies the port on the remote
3507 host to connect to. ``port`` can be given as either a port
3508 number or a service name. ``port`` is required.
3509
3510 ``to`` is only relevant to listening sockets. If it is
3511 specified, and ``port`` cannot be bound, QEMU will attempt to
3512 bind to subsequent ports up to and including ``to`` until it
3513 succeeds. ``to`` must be specified as a port number.
3514
bfdc1267
DB
3515 ``ipv4=on|off`` and ``ipv6=on|off`` specify that either IPv4
3516 or IPv6 must be used. If neither is specified the socket may
3517 use either protocol.
e2fcbf42 3518
a9b1315f 3519 ``nodelay=on|off`` disables the Nagle algorithm.
e2fcbf42 3520
e339273b 3521 ``unix options: path=path[,abstract=on|off][,tight=on|off]``
e2fcbf42
PM
3522 ``path`` specifies the local path of the unix socket. ``path``
3523 is required.
bfdc1267 3524 ``abstract=on|off`` specifies the use of the abstract socket namespace,
e339273b 3525 rather than the filesystem. Optional, defaults to false.
bfdc1267 3526 ``tight=on|off`` sets the socket length of abstract sockets to their minimum,
e339273b 3527 rather than the full sun_path length. Optional, defaults to true.
e2fcbf42 3528
bfdc1267 3529``-chardev udp,id=id[,host=host],port=port[,localaddr=localaddr][,localport=localport][,ipv4=on|off][,ipv6=on|off]``
e2fcbf42
PM
3530 Sends all traffic from the guest to a remote host over UDP.
3531
3532 ``host`` specifies the remote host to connect to. If not specified
3533 it defaults to ``localhost``.
3534
3535 ``port`` specifies the port on the remote host to connect to.
3536 ``port`` is required.
3537
3538 ``localaddr`` specifies the local address to bind to. If not
3539 specified it defaults to ``0.0.0.0``.
3540
3541 ``localport`` specifies the local port to bind to. If not specified
3542 any available local port will be used.
3543
bfdc1267 3544 ``ipv4=on|off`` and ``ipv6=on|off`` specify that either IPv4 or IPv6 must be used.
e2fcbf42
PM
3545 If neither is specified the device may use either protocol.
3546
3547``-chardev msmouse,id=id``
3548 Forward QEMU's emulated msmouse events to the guest. ``msmouse``
3549 does not take any options.
3550
3551``-chardev vc,id=id[[,width=width][,height=height]][[,cols=cols][,rows=rows]]``
3552 Connect to a QEMU text console. ``vc`` may optionally be given a
3553 specific size.
3554
3555 ``width`` and ``height`` specify the width and height respectively
3556 of the console, in pixels.
3557
3558 ``cols`` and ``rows`` specify that the console be sized to fit a
3559 text console with the given dimensions.
3560
3561``-chardev ringbuf,id=id[,size=size]``
3562 Create a ring buffer with fixed size ``size``. size must be a power
3563 of two and defaults to ``64K``.
3564
3565``-chardev file,id=id,path=path``
3566 Log all traffic received from the guest to a file.
3567
3568 ``path`` specifies the path of the file to be opened. This file will
3569 be created if it does not already exist, and overwritten if it does.
3570 ``path`` is required.
3571
3572``-chardev pipe,id=id,path=path``
3573 Create a two-way connection to the guest. The behaviour differs
3574 slightly between Windows hosts and other hosts:
3575
3576 On Windows, a single duplex pipe will be created at
3577 ``\\.pipe\path``.
3578
3579 On other hosts, 2 pipes will be created called ``path.in`` and
3580 ``path.out``. Data written to ``path.in`` will be received by the
3581 guest. Data written by the guest can be read from ``path.out``. QEMU
3582 will not create these fifos, and requires them to be present.
3583
3584 ``path`` forms part of the pipe path as described above. ``path`` is
3585 required.
3586
3587``-chardev console,id=id``
3588 Send traffic from the guest to QEMU's standard output. ``console``
3589 does not take any options.
3590
3591 ``console`` is only available on Windows hosts.
3592
3593``-chardev serial,id=id,path=path``
3594 Send traffic from the guest to a serial device on the host.
3595
3596 On Unix hosts serial will actually accept any tty device, not only
3597 serial lines.
3598
3599 ``path`` specifies the name of the serial device to open.
3600
3601``-chardev pty,id=id``
3602 Create a new pseudo-terminal on the host and connect to it. ``pty``
3603 does not take any options.
3604
3605 ``pty`` is not available on Windows hosts.
3606
3607``-chardev stdio,id=id[,signal=on|off]``
3608 Connect to standard input and standard output of the QEMU process.
3609
3610 ``signal`` controls if signals are enabled on the terminal, that
3611 includes exiting QEMU with the key sequence Control-c. This option
3612 is enabled by default, use ``signal=off`` to disable it.
3613
3614``-chardev braille,id=id``
3615 Connect to a local BrlAPI server. ``braille`` does not take any
3616 options.
3617
3618``-chardev tty,id=id,path=path``
3619 ``tty`` is only available on Linux, Sun, FreeBSD, NetBSD, OpenBSD
3620 and DragonFlyBSD hosts. It is an alias for ``serial``.
3621
3622 ``path`` specifies the path to the tty. ``path`` is required.
3623
09ce5f2d
PM
3624``-chardev parallel,id=id,path=path``
3625 \
3626``-chardev parport,id=id,path=path``
e2fcbf42
PM
3627 ``parallel`` is only available on Linux, FreeBSD and DragonFlyBSD
3628 hosts.
3629
3630 Connect to a local parallel port.
3631
3632 ``path`` specifies the path to the parallel port device. ``path`` is
3633 required.
3634
3635``-chardev spicevmc,id=id,debug=debug,name=name``
3636 ``spicevmc`` is only available when spice support is built in.
3637
3638 ``debug`` debug level for spicevmc
3639
3640 ``name`` name of spice channel to connect to
3641
3642 Connect to a spice virtual machine channel, such as vdiport.
3643
3644``-chardev spiceport,id=id,debug=debug,name=name``
3645 ``spiceport`` is only available when spice support is built in.
3646
3647 ``debug`` debug level for spicevmc
3648
3649 ``name`` name of spice port to connect to
3650
3651 Connect to a spice port, allowing a Spice client to handle the
3652 traffic identified by a name (preferably a fqdn).
3653ERST
5a49d3e9 3654
7273a2db
MB
3655DEFHEADING()
3656
d1a0cf73 3657#ifdef CONFIG_TPM
de6b4f90 3658DEFHEADING(TPM device options:)
d1a0cf73
SB
3659
3660DEF("tpmdev", HAS_ARG, QEMU_OPTION_tpmdev, \
92dcc234
SB
3661 "-tpmdev passthrough,id=id[,path=path][,cancel-path=path]\n"
3662 " use path to provide path to a character device; default is /dev/tpm0\n"
3663 " use cancel-path to provide path to TPM's cancel sysfs entry; if\n"
f4ede81e
AV
3664 " not provided it will be searched for in /sys/class/misc/tpm?/device\n"
3665 "-tpmdev emulator,id=id,chardev=dev\n"
3666 " configure the TPM device using chardev backend\n",
d1a0cf73 3667 QEMU_ARCH_ALL)
e2fcbf42
PM
3668SRST
3669The general form of a TPM device option is:
3670
3671``-tpmdev backend,id=id[,options]``
3672 The specific backend type will determine the applicable options. The
3673 ``-tpmdev`` option creates the TPM backend and requires a
3674 ``-device`` option that specifies the TPM frontend interface model.
3675
3676 Use ``-tpmdev help`` to print all available TPM backend types.
3677
3678The available backends are:
3679
3680``-tpmdev passthrough,id=id,path=path,cancel-path=cancel-path``
3681 (Linux-host only) Enable access to the host's TPM using the
3682 passthrough driver.
3683
3684 ``path`` specifies the path to the host's TPM device, i.e., on a
3685 Linux host this would be ``/dev/tpm0``. ``path`` is optional and by
3686 default ``/dev/tpm0`` is used.
3687
3688 ``cancel-path`` specifies the path to the host TPM device's sysfs
3689 entry allowing for cancellation of an ongoing TPM command.
3690 ``cancel-path`` is optional and by default QEMU will search for the
3691 sysfs entry to use.
3692
3693 Some notes about using the host's TPM with the passthrough driver:
3694
3695 The TPM device accessed by the passthrough driver must not be used
3696 by any other application on the host.
3697
3698 Since the host's firmware (BIOS/UEFI) has already initialized the
3699 TPM, the VM's firmware (BIOS/UEFI) will not be able to initialize
3700 the TPM again and may therefore not show a TPM-specific menu that
3701 would otherwise allow the user to configure the TPM, e.g., allow the
3702 user to enable/disable or activate/deactivate the TPM. Further, if
3703 TPM ownership is released from within a VM then the host's TPM will
3704 get disabled and deactivated. To enable and activate the TPM again
3705 afterwards, the host has to be rebooted and the user is required to
3706 enter the firmware's menu to enable and activate the TPM. If the TPM
3707 is left disabled and/or deactivated most TPM commands will fail.
3708
3709 To create a passthrough TPM use the following two options:
3710
3711 ::
3712
3713 -tpmdev passthrough,id=tpm0 -device tpm-tis,tpmdev=tpm0
3714
3715 Note that the ``-tpmdev`` id is ``tpm0`` and is referenced by
3716 ``tpmdev=tpm0`` in the device option.
3717
3718``-tpmdev emulator,id=id,chardev=dev``
3719 (Linux-host only) Enable access to a TPM emulator using Unix domain
3720 socket based chardev backend.
3721
3722 ``chardev`` specifies the unique ID of a character device backend
3723 that provides connection to the software TPM server.
3724
3725 To create a TPM emulator backend device with chardev socket backend:
3726
3727 ::
3728
3729 -chardev socket,id=chrtpm,path=/tmp/swtpm-sock -tpmdev emulator,id=tpm0,chardev=chrtpm -device tpm-tis,tpmdev=tpm0
3730ERST
d1a0cf73
SB
3731
3732DEFHEADING()
3733
3734#endif
3735
de6b4f90 3736DEFHEADING(Linux/Multiboot boot specific:)
e2fcbf42
PM
3737SRST
3738When using these options, you can use a given Linux or Multiboot kernel
3739without installing it in the disk image. It can be useful for easier
3740testing of various kernels.
3741
3742
3743ERST
5824d651
BS
3744
3745DEF("kernel", HAS_ARG, QEMU_OPTION_kernel, \
ad96090a 3746 "-kernel bzImage use 'bzImage' as kernel image\n", QEMU_ARCH_ALL)
e2fcbf42
PM
3747SRST
3748``-kernel bzImage``
3749 Use bzImage as kernel image. The kernel can be either a Linux kernel
3750 or in multiboot format.
3751ERST
5824d651
BS
3752
3753DEF("append", HAS_ARG, QEMU_OPTION_append, \
ad96090a 3754 "-append cmdline use 'cmdline' as kernel command line\n", QEMU_ARCH_ALL)
e2fcbf42
PM
3755SRST
3756``-append cmdline``
3757 Use cmdline as kernel command line
3758ERST
5824d651
BS
3759
3760DEF("initrd", HAS_ARG, QEMU_OPTION_initrd, \
ad96090a 3761 "-initrd file use 'file' as initial ram disk\n", QEMU_ARCH_ALL)
e2fcbf42
PM
3762SRST
3763``-initrd file``
3764 Use file as initial ram disk.
3765
3766``-initrd "file1 arg=foo,file2"``
3767 This syntax is only available with multiboot.
3768
3769 Use file1 and file2 as modules and pass arg=foo as parameter to the
3770 first module.
3771ERST
5824d651 3772
412beee6 3773DEF("dtb", HAS_ARG, QEMU_OPTION_dtb, \
379b5c7c 3774 "-dtb file use 'file' as device tree image\n", QEMU_ARCH_ALL)
e2fcbf42
PM
3775SRST
3776``-dtb file``
3777 Use file as a device tree binary (dtb) image and pass it to the
3778 kernel on boot.
3779ERST
412beee6 3780
5824d651
BS
3781DEFHEADING()
3782
de6b4f90 3783DEFHEADING(Debug/Expert options:)
5824d651 3784
6dd75472 3785DEF("compat", HAS_ARG, QEMU_OPTION_compat,
dbb675c1 3786 "-compat [deprecated-input=accept|reject|crash][,deprecated-output=accept|hide]\n"
57df0dff
MA
3787 " Policy for handling deprecated management interfaces\n"
3788 "-compat [unstable-input=accept|reject|crash][,unstable-output=accept|hide]\n"
3789 " Policy for handling unstable management interfaces\n",
6dd75472
MA
3790 QEMU_ARCH_ALL)
3791SRST
3792``-compat [deprecated-input=@var{input-policy}][,deprecated-output=@var{output-policy}]``
3793 Set policy for handling deprecated management interfaces (experimental):
3794
3795 ``deprecated-input=accept`` (default)
3796 Accept deprecated commands and arguments
3797 ``deprecated-input=reject``
3798 Reject deprecated commands and arguments
dbb675c1
MA
3799 ``deprecated-input=crash``
3800 Crash on deprecated commands and arguments
6dd75472
MA
3801 ``deprecated-output=accept`` (default)
3802 Emit deprecated command results and events
3803 ``deprecated-output=hide``
3804 Suppress deprecated command results and events
3805
3806 Limitation: covers only syntactic aspects of QMP.
57df0dff
MA
3807
3808``-compat [unstable-input=@var{input-policy}][,unstable-output=@var{output-policy}]``
3809 Set policy for handling unstable management interfaces (experimental):
3810
3811 ``unstable-input=accept`` (default)
3812 Accept unstable commands and arguments
3813 ``unstable-input=reject``
3814 Reject unstable commands and arguments
3815 ``unstable-input=crash``
3816 Crash on unstable commands and arguments
3817 ``unstable-output=accept`` (default)
3818 Emit unstable command results and events
3819 ``unstable-output=hide``
3820 Suppress unstable command results and events
3821
3822 Limitation: covers only syntactic aspects of QMP.
6dd75472
MA
3823ERST
3824
81b2b810
GS
3825DEF("fw_cfg", HAS_ARG, QEMU_OPTION_fwcfg,
3826 "-fw_cfg [name=]<name>,file=<file>\n"
63d3145a 3827 " add named fw_cfg entry with contents from file\n"
6407d76e 3828 "-fw_cfg [name=]<name>,string=<str>\n"
63d3145a 3829 " add named fw_cfg entry with contents from string\n",
81b2b810 3830 QEMU_ARCH_ALL)
e2fcbf42
PM
3831SRST
3832``-fw_cfg [name=]name,file=file``
3833 Add named fw\_cfg entry with contents from file file.
3834
3835``-fw_cfg [name=]name,string=str``
3836 Add named fw\_cfg entry with contents from string str.
3837
3838 The terminating NUL character of the contents of str will not be
3839 included as part of the fw\_cfg item data. To insert contents with
3840 embedded NUL characters, you have to use the file parameter.
3841
3842 The fw\_cfg entries are passed by QEMU through to the guest.
3843
3844 Example:
3845
3846 ::
3847
3848 -fw_cfg name=opt/com.mycompany/blob,file=./my_blob.bin
3849
3850 creates an fw\_cfg entry named opt/com.mycompany/blob with contents
3851 from ./my\_blob.bin.
3852ERST
81b2b810 3853
5824d651 3854DEF("serial", HAS_ARG, QEMU_OPTION_serial, \
ad96090a
BS
3855 "-serial dev redirect the serial port to char device 'dev'\n",
3856 QEMU_ARCH_ALL)
e2fcbf42
PM
3857SRST
3858``-serial dev``
3859 Redirect the virtual serial port to host character device dev. The
3860 default device is ``vc`` in graphical mode and ``stdio`` in non
3861 graphical mode.
3862
3863 This option can be used several times to simulate up to 4 serial
3864 ports.
3865
3866 Use ``-serial none`` to disable all serial ports.
3867
3868 Available character devices are:
3869
3870 ``vc[:WxH]``
3871 Virtual console. Optionally, a width and height can be given in
3872 pixel with
3873
3874 ::
3875
3876 vc:800x600
3877
3878 It is also possible to specify width or height in characters:
3879
3880 ::
3881
3882 vc:80Cx24C
3883
3884 ``pty``
3885 [Linux only] Pseudo TTY (a new PTY is automatically allocated)
3886
3887 ``none``
3888 No device is allocated.
3889
3890 ``null``
3891 void device
3892
3893 ``chardev:id``
3894 Use a named character device defined with the ``-chardev``
3895 option.
3896
3897 ``/dev/XXX``
3898 [Linux only] Use host tty, e.g. ``/dev/ttyS0``. The host serial
3899 port parameters are set according to the emulated ones.
3900
3901 ``/dev/parportN``
3902 [Linux only, parallel port only] Use host parallel port N.
3903 Currently SPP and EPP parallel port features can be used.
3904
3905 ``file:filename``
3906 Write output to filename. No character can be read.
3907
3908 ``stdio``
3909 [Unix only] standard input/output
3910
3911 ``pipe:filename``
3912 name pipe filename
3913
3914 ``COMn``
3915 [Windows only] Use host serial port n
3916
3917 ``udp:[remote_host]:remote_port[@[src_ip]:src_port]``
3918 This implements UDP Net Console. When remote\_host or src\_ip
3919 are not specified they default to ``0.0.0.0``. When not using a
3920 specified src\_port a random port is automatically chosen.
3921
3922 If you just want a simple readonly console you can use
3923 ``netcat`` or ``nc``, by starting QEMU with:
3924 ``-serial udp::4555`` and nc as: ``nc -u -l -p 4555``. Any time
3925 QEMU writes something to that port it will appear in the
3926 netconsole session.
3927
3928 If you plan to send characters back via netconsole or you want
3929 to stop and start QEMU a lot of times, you should have QEMU use
3930 the same source port each time by using something like ``-serial
3931 udp::4555@:4556`` to QEMU. Another approach is to use a patched
3932 version of netcat which can listen to a TCP port and send and
3933 receive characters via udp. If you have a patched version of
3934 netcat which activates telnet remote echo and single char
3935 transfer, then you can use the following options to set up a
3936 netcat redirector to allow telnet on port 5555 to access the
3937 QEMU port.
3938
3939 ``QEMU Options:``
3940 -serial udp::4555@:4556
3941
3942 ``netcat options:``
3943 -u -P 4555 -L 0.0.0.0:4556 -t -p 5555 -I -T
3944
3945 ``telnet options:``
3946 localhost 5555
3947
a9b1315f 3948 ``tcp:[host]:port[,server=on|off][,wait=on|off][,nodelay=on|off][,reconnect=seconds]``
e2fcbf42
PM
3949 The TCP Net Console has two modes of operation. It can send the
3950 serial I/O to a location or wait for a connection from a
3951 location. By default the TCP Net Console is sent to host at the
bfdc1267 3952 port. If you use the ``server=on`` option QEMU will wait for a client
e2fcbf42 3953 socket application to connect to the port before continuing,
a9b1315f 3954 unless the ``wait=on|off`` option was specified. The ``nodelay=on|off``
bfdc1267
DB
3955 option disables the Nagle buffering algorithm. The ``reconnect=on``
3956 option only applies if ``server=no`` is set, if the connection goes
e2fcbf42
PM
3957 down it will attempt to reconnect at the given interval. If host
3958 is omitted, 0.0.0.0 is assumed. Only one TCP connection at a
bfdc1267 3959 time is accepted. You can use ``telnet=on`` to connect to the
e2fcbf42
PM
3960 corresponding character device.
3961
3962 ``Example to send tcp console to 192.168.0.2 port 4444``
3963 -serial tcp:192.168.0.2:4444
3964
3965 ``Example to listen and wait on port 4444 for connection``
bfdc1267 3966 -serial tcp::4444,server=on
e2fcbf42
PM
3967
3968 ``Example to not wait and listen on ip 192.168.0.100 port 4444``
bfdc1267 3969 -serial tcp:192.168.0.100:4444,server=on,wait=off
e2fcbf42 3970
a9b1315f 3971 ``telnet:host:port[,server=on|off][,wait=on|off][,nodelay=on|off]``
e2fcbf42
PM
3972 The telnet protocol is used instead of raw tcp sockets. The
3973 options work the same as if you had specified ``-serial tcp``.
3974 The difference is that the port acts like a telnet server or
3975 client using telnet option negotiation. This will also allow you
3976 to send the MAGIC\_SYSRQ sequence if you use a telnet that
3977 supports sending the break sequence. Typically in unix telnet
3978 you do it with Control-] and then type "send break" followed by
3979 pressing the enter key.
3980
a9b1315f 3981 ``websocket:host:port,server=on[,wait=on|off][,nodelay=on|off]``
e2fcbf42
PM
3982 The WebSocket protocol is used instead of raw tcp socket. The
3983 port acts as a WebSocket server. Client mode is not supported.
3984
bfdc1267 3985 ``unix:path[,server=on|off][,wait=on|off][,reconnect=seconds]``
e2fcbf42
PM
3986 A unix domain socket is used instead of a tcp socket. The option
3987 works the same as if you had specified ``-serial tcp`` except
3988 the unix domain socket path is used for connections.
3989
3990 ``mon:dev_string``
3991 This is a special option to allow the monitor to be multiplexed
3992 onto another serial port. The monitor is accessed with key
3993 sequence of Control-a and then pressing c. dev\_string should be
3994 any one of the serial devices specified above. An example to
3995 multiplex the monitor onto a telnet server listening on port
3996 4444 would be:
3997
bfdc1267 3998 ``-serial mon:telnet::4444,server=on,wait=off``
e2fcbf42
PM
3999
4000 When the monitor is multiplexed to stdio in this way, Ctrl+C
4001 will not terminate QEMU any more but will be passed to the guest
4002 instead.
4003
4004 ``braille``
4005 Braille device. This will use BrlAPI to display the braille
4006 output on a real or fake device.
4007
4008 ``msmouse``
4009 Three button serial mouse. Configure the guest to use Microsoft
4010 protocol.
4011ERST
5824d651
BS
4012
4013DEF("parallel", HAS_ARG, QEMU_OPTION_parallel, \
ad96090a
BS
4014 "-parallel dev redirect the parallel port to char device 'dev'\n",
4015 QEMU_ARCH_ALL)
e2fcbf42
PM
4016SRST
4017``-parallel dev``
4018 Redirect the virtual parallel port to host device dev (same devices
4019 as the serial port). On Linux hosts, ``/dev/parportN`` can be used
4020 to use hardware devices connected on the corresponding host parallel
4021 port.
4022
4023 This option can be used several times to simulate up to 3 parallel
4024 ports.
4025
4026 Use ``-parallel none`` to disable all parallel ports.
4027ERST
5824d651
BS
4028
4029DEF("monitor", HAS_ARG, QEMU_OPTION_monitor, \
ad96090a
BS
4030 "-monitor dev redirect the monitor to char device 'dev'\n",
4031 QEMU_ARCH_ALL)
e2fcbf42
PM
4032SRST
4033``-monitor dev``
4034 Redirect the monitor to host device dev (same devices as the serial
4035 port). The default device is ``vc`` in graphical mode and ``stdio``
4036 in non graphical mode. Use ``-monitor none`` to disable the default
4037 monitor.
4038ERST
6ca5582d 4039DEF("qmp", HAS_ARG, QEMU_OPTION_qmp, \
ad96090a
BS
4040 "-qmp dev like -monitor but opens in 'control' mode\n",
4041 QEMU_ARCH_ALL)
e2fcbf42
PM
4042SRST
4043``-qmp dev``
4044 Like -monitor but opens in 'control' mode.
4045ERST
4821cd4c
HR
4046DEF("qmp-pretty", HAS_ARG, QEMU_OPTION_qmp_pretty, \
4047 "-qmp-pretty dev like -qmp but uses pretty JSON formatting\n",
4048 QEMU_ARCH_ALL)
e2fcbf42
PM
4049SRST
4050``-qmp-pretty dev``
4051 Like -qmp but uses pretty JSON formatting.
4052ERST
5824d651 4053
22a0e04b 4054DEF("mon", HAS_ARG, QEMU_OPTION_mon, \
ef670726 4055 "-mon [chardev=]name[,mode=readline|control][,pretty[=on|off]]\n", QEMU_ARCH_ALL)
e2fcbf42
PM
4056SRST
4057``-mon [chardev=]name[,mode=readline|control][,pretty[=on|off]]``
16b3f3bb
AS
4058 Setup monitor on chardev name. ``mode=control`` configures
4059 a QMP monitor (a JSON RPC-style protocol) and it is not the
4060 same as HMP, the human monitor that has a "(qemu)" prompt.
4061 ``pretty`` is only valid when ``mode=control``,
4062 turning on JSON pretty printing to ease
283d845c 4063 human reading and debugging.
e2fcbf42 4064ERST
22a0e04b 4065
c9f398e5 4066DEF("debugcon", HAS_ARG, QEMU_OPTION_debugcon, \
ad96090a
BS
4067 "-debugcon dev redirect the debug console to char device 'dev'\n",
4068 QEMU_ARCH_ALL)
e2fcbf42
PM
4069SRST
4070``-debugcon dev``
4071 Redirect the debug console to host device dev (same devices as the
4072 serial port). The debug console is an I/O port which is typically
4073 port 0xe9; writing to that I/O port sends output to this device. The
4074 default device is ``vc`` in graphical mode and ``stdio`` in non
4075 graphical mode.
4076ERST
c9f398e5 4077
5824d651 4078DEF("pidfile", HAS_ARG, QEMU_OPTION_pidfile, \
ad96090a 4079 "-pidfile file write PID to 'file'\n", QEMU_ARCH_ALL)
e2fcbf42
PM
4080SRST
4081``-pidfile file``
4082 Store the QEMU process PID in file. It is useful if you launch QEMU
4083 from a script.
4084ERST
5824d651 4085
1b530a6d 4086DEF("singlestep", 0, QEMU_OPTION_singlestep, \
ad96090a 4087 "-singlestep always run in singlestep mode\n", QEMU_ARCH_ALL)
e2fcbf42
PM
4088SRST
4089``-singlestep``
4090 Run the emulation in single step mode.
4091ERST
1b530a6d 4092
047f7038 4093DEF("preconfig", 0, QEMU_OPTION_preconfig, \
361ac948 4094 "--preconfig pause QEMU before machine is initialized (experimental)\n",
047f7038 4095 QEMU_ARCH_ALL)
e2fcbf42
PM
4096SRST
4097``--preconfig``
4098 Pause QEMU for interactive configuration before the machine is
4099 created, which allows querying and configuring properties that will
4100 affect machine initialization. Use QMP command 'x-exit-preconfig' to
4101 exit the preconfig state and move to the next state (i.e. run guest
4102 if -S isn't used or pause the second time if -S is used). This
4103 option is experimental.
4104ERST
047f7038 4105
5824d651 4106DEF("S", 0, QEMU_OPTION_S, \
ad96090a
BS
4107 "-S freeze CPU at startup (use 'c' to start execution)\n",
4108 QEMU_ARCH_ALL)
e2fcbf42
PM
4109SRST
4110``-S``
4111 Do not start CPU at startup (you must type 'c' in the monitor).
4112ERST
5824d651 4113
6f131f13 4114DEF("overcommit", HAS_ARG, QEMU_OPTION_overcommit,
dfaa7d50 4115 "-overcommit [mem-lock=on|off][cpu-pm=on|off]\n"
6f131f13
MT
4116 " run qemu with overcommit hints\n"
4117 " mem-lock=on|off controls memory lock support (default: off)\n"
4118 " cpu-pm=on|off controls cpu power management (default: off)\n",
4119 QEMU_ARCH_ALL)
e2fcbf42
PM
4120SRST
4121``-overcommit mem-lock=on|off``
09ce5f2d 4122 \
e2fcbf42
PM
4123``-overcommit cpu-pm=on|off``
4124 Run qemu with hints about host resource overcommit. The default is
4125 to assume that host overcommits all resources.
4126
4127 Locking qemu and guest memory can be enabled via ``mem-lock=on``
4128 (disabled by default). This works when host memory is not
c8c9dc42 4129 overcommitted and reduces the worst-case latency for guest.
e2fcbf42
PM
4130
4131 Guest ability to manage power state of host cpus (increasing latency
4132 for other processes on the same host cpu, but decreasing latency for
4133 guest) can be enabled via ``cpu-pm=on`` (disabled by default). This
4134 works best when host CPU is not overcommitted. When used, host
4135 estimates of CPU cycle and power utilization will be incorrect, not
4136 taking into account guest idle time.
4137ERST
6f131f13 4138
59030a8c 4139DEF("gdb", HAS_ARG, QEMU_OPTION_gdb, \
e5910d42
PM
4140 "-gdb dev accept gdb connection on 'dev'. (QEMU defaults to starting\n"
4141 " the guest without waiting for gdb to connect; use -S too\n"
4142 " if you want it to not start execution.)\n",
4143 QEMU_ARCH_ALL)
e2fcbf42
PM
4144SRST
4145``-gdb dev``
923e9311
TH
4146 Accept a gdb connection on device dev (see the :ref:`GDB usage` chapter
4147 in the System Emulation Users Guide). Note that this option does not pause QEMU
e5910d42
PM
4148 execution -- if you want QEMU to not start the guest until you
4149 connect with gdb and issue a ``continue`` command, you will need to
4150 also pass the ``-S`` option to QEMU.
4151
4152 The most usual configuration is to listen on a local TCP socket::
4153
4154 -gdb tcp::3117
4155
4156 but you can specify other backends; UDP, pseudo TTY, or even stdio
4157 are all reasonable use cases. For example, a stdio connection
4158 allows you to start QEMU from within gdb and establish the
4159 connection via a pipe:
e2fcbf42 4160
09ce5f2d 4161 .. parsed-literal::
e2fcbf42
PM
4162
4163 (gdb) target remote | exec |qemu_system| -gdb stdio ...
4164ERST
5824d651 4165
59030a8c 4166DEF("s", 0, QEMU_OPTION_s, \
ad96090a
BS
4167 "-s shorthand for -gdb tcp::" DEFAULT_GDBSTUB_PORT "\n",
4168 QEMU_ARCH_ALL)
e2fcbf42
PM
4169SRST
4170``-s``
4171 Shorthand for -gdb tcp::1234, i.e. open a gdbserver on TCP port 1234
923e9311 4172 (see the :ref:`GDB usage` chapter in the System Emulation Users Guide).
e2fcbf42 4173ERST
5824d651
BS
4174
4175DEF("d", HAS_ARG, QEMU_OPTION_d, \
989b697d 4176 "-d item1,... enable logging of specified items (use '-d help' for a list of log items)\n",
ad96090a 4177 QEMU_ARCH_ALL)
e2fcbf42
PM
4178SRST
4179``-d item1[,...]``
4180 Enable logging of specified items. Use '-d help' for a list of log
4181 items.
4182ERST
5824d651 4183
c235d738 4184DEF("D", HAS_ARG, QEMU_OPTION_D, \
989b697d 4185 "-D logfile output log to logfile (default stderr)\n",
c235d738 4186 QEMU_ARCH_ALL)
e2fcbf42
PM
4187SRST
4188``-D logfile``
4189 Output log in logfile instead of to stderr
4190ERST
c235d738 4191
3514552e
AB
4192DEF("dfilter", HAS_ARG, QEMU_OPTION_DFILTER, \
4193 "-dfilter range,.. filter debug output to range of addresses (useful for -d cpu,exec,etc..)\n",
4194 QEMU_ARCH_ALL)
e2fcbf42
PM
4195SRST
4196``-dfilter range1[,...]``
4197 Filter debug output to that relevant to a range of target addresses.
4198 The filter spec can be either start+size, start-size or start..end
4199 where start end and size are the addresses and sizes required. For
4200 example:
4201
4202 ::
4203
4204 -dfilter 0x8000..0x8fff,0xffffffc000080000+0x200,0xffffffc000060000-0x1000
4205
4206 Will dump output for any code in the 0x1000 sized block starting at
4207 0x8000 and the 0x200 sized block starting at 0xffffffc000080000 and
4208 another 0x1000 sized block starting at 0xffffffc00005f000.
4209ERST
3514552e 4210
9c09a251
RH
4211DEF("seed", HAS_ARG, QEMU_OPTION_seed, \
4212 "-seed number seed the pseudo-random number generator\n",
4213 QEMU_ARCH_ALL)
e2fcbf42
PM
4214SRST
4215``-seed number``
4216 Force the guest to use a deterministic pseudo-random number
4217 generator, seeded with number. This does not affect crypto routines
4218 within the host.
4219ERST
9c09a251 4220
5824d651 4221DEF("L", HAS_ARG, QEMU_OPTION_L, \
ad96090a
BS
4222 "-L path set the directory for the BIOS, VGA BIOS and keymaps\n",
4223 QEMU_ARCH_ALL)
e2fcbf42
PM
4224SRST
4225``-L path``
4226 Set the directory for the BIOS, VGA BIOS and keymaps.
4227
4228 To list all the data directories, use ``-L help``.
4229ERST
5824d651
BS
4230
4231DEF("bios", HAS_ARG, QEMU_OPTION_bios, \
ad96090a 4232 "-bios file set the filename for the BIOS\n", QEMU_ARCH_ALL)
e2fcbf42
PM
4233SRST
4234``-bios file``
4235 Set the filename for the BIOS.
4236ERST
5824d651 4237
5824d651 4238DEF("enable-kvm", 0, QEMU_OPTION_enable_kvm, \
21abf010
TH
4239 "-enable-kvm enable KVM full virtualization support\n",
4240 QEMU_ARCH_ARM | QEMU_ARCH_I386 | QEMU_ARCH_MIPS | QEMU_ARCH_PPC |
4241 QEMU_ARCH_RISCV | QEMU_ARCH_S390X)
e2fcbf42
PM
4242SRST
4243``-enable-kvm``
4244 Enable KVM full virtualization support. This option is only
4245 available if KVM support is enabled when compiling.
4246ERST
5824d651 4247
e37630ca 4248DEF("xen-domid", HAS_ARG, QEMU_OPTION_xen_domid,
eeb3647c
TH
4249 "-xen-domid id specify xen guest domain id\n",
4250 QEMU_ARCH_ARM | QEMU_ARCH_I386)
e37630ca
AL
4251DEF("xen-attach", 0, QEMU_OPTION_xen_attach,
4252 "-xen-attach attach to existing xen domain\n"
1077bcac 4253 " libxl will use this when starting QEMU\n",
eeb3647c 4254 QEMU_ARCH_ARM | QEMU_ARCH_I386)
1c599472
PD
4255DEF("xen-domid-restrict", 0, QEMU_OPTION_xen_domid_restrict,
4256 "-xen-domid-restrict restrict set of available xen operations\n"
4257 " to specified domain id. (Does not affect\n"
4258 " xenpv machine type).\n",
eeb3647c 4259 QEMU_ARCH_ARM | QEMU_ARCH_I386)
e2fcbf42
PM
4260SRST
4261``-xen-domid id``
4262 Specify xen guest domain id (XEN only).
4263
4264``-xen-attach``
4265 Attach to existing xen domain. libxl will use this when starting
4266 QEMU (XEN only). Restrict set of available xen operations to
4267 specified domain id (XEN only).
4268ERST
e37630ca 4269
5824d651 4270DEF("no-reboot", 0, QEMU_OPTION_no_reboot, \
ad96090a 4271 "-no-reboot exit instead of rebooting\n", QEMU_ARCH_ALL)
e2fcbf42
PM
4272SRST
4273``-no-reboot``
4274 Exit instead of rebooting.
4275ERST
5824d651
BS
4276
4277DEF("no-shutdown", 0, QEMU_OPTION_no_shutdown, \
ad96090a 4278 "-no-shutdown stop before shutdown\n", QEMU_ARCH_ALL)
e2fcbf42
PM
4279SRST
4280``-no-shutdown``
4281 Don't exit QEMU on guest shutdown, but instead only stop the
4282 emulation. This allows for instance switching to monitor to commit
4283 changes to the disk image.
4284ERST
5824d651 4285
2a5ad60b 4286DEF("action", HAS_ARG, QEMU_OPTION_action,
c27025e0
PB
4287 "-action reboot=reset|shutdown\n"
4288 " action when guest reboots [default=reset]\n"
2a5ad60b
AJ
4289 "-action shutdown=poweroff|pause\n"
4290 " action when guest shuts down [default=poweroff]\n"
c27025e0
PB
4291 "-action panic=pause|shutdown|none\n"
4292 " action when guest panics [default=shutdown]\n"
2a5ad60b
AJ
4293 "-action watchdog=reset|shutdown|poweroff|inject-nmi|pause|debug|none\n"
4294 " action when watchdog fires [default=reset]\n",
4295 QEMU_ARCH_ALL)
4296SRST
4297``-action event=action``
4298 The action parameter serves to modify QEMU's default behavior when
4299 certain guest events occur. It provides a generic method for specifying the
4300 same behaviors that are modified by the ``-no-reboot`` and ``-no-shutdown``
4301 parameters.
4302
4303 Examples:
4304
c753e8e7 4305 ``-action panic=none``
2a5ad60b
AJ
4306 ``-action reboot=shutdown,shutdown=pause``
4307 ``-watchdog i6300esb -action watchdog=pause``
4308
4309ERST
4310
5824d651
BS
4311DEF("loadvm", HAS_ARG, QEMU_OPTION_loadvm, \
4312 "-loadvm [tag|id]\n" \
ad96090a
BS
4313 " start right away with a saved state (loadvm in monitor)\n",
4314 QEMU_ARCH_ALL)
e2fcbf42
PM
4315SRST
4316``-loadvm file``
4317 Start right away with a saved state (``loadvm`` in monitor)
4318ERST
5824d651
BS
4319
4320#ifndef _WIN32
4321DEF("daemonize", 0, QEMU_OPTION_daemonize, \
ad96090a 4322 "-daemonize daemonize QEMU after initializing\n", QEMU_ARCH_ALL)
5824d651 4323#endif
e2fcbf42
PM
4324SRST
4325``-daemonize``
4326 Daemonize the QEMU process after initialization. QEMU will not
4327 detach from standard IO until it is ready to receive connections on
4328 any of its devices. This option is a useful way for external
4329 programs to launch QEMU without having to cope with initialization
4330 race conditions.
4331ERST
5824d651
BS
4332
4333DEF("option-rom", HAS_ARG, QEMU_OPTION_option_rom, \
ad96090a
BS
4334 "-option-rom rom load a file, rom, into the option ROM space\n",
4335 QEMU_ARCH_ALL)
e2fcbf42
PM
4336SRST
4337``-option-rom file``
4338 Load the contents of file as an option ROM. This option is useful to
4339 load things like EtherBoot.
4340ERST
5824d651 4341
1ed2fc1f 4342DEF("rtc", HAS_ARG, QEMU_OPTION_rtc, \
238d1240 4343 "-rtc [base=utc|localtime|<datetime>][,clock=host|rt|vm][,driftfix=none|slew]\n" \
ad96090a
BS
4344 " set the RTC base and clock, enable drift fix for clock ticks (x86 only)\n",
4345 QEMU_ARCH_ALL)
5824d651 4346
e2fcbf42
PM
4347SRST
4348``-rtc [base=utc|localtime|datetime][,clock=host|rt|vm][,driftfix=none|slew]``
4349 Specify ``base`` as ``utc`` or ``localtime`` to let the RTC start at
4350 the current UTC or local time, respectively. ``localtime`` is
4351 required for correct date in MS-DOS or Windows. To start at a
4352 specific point in time, provide datetime in the format
4353 ``2006-06-17T16:01:21`` or ``2006-06-17``. The default base is UTC.
4354
4355 By default the RTC is driven by the host system time. This allows
4356 using of the RTC as accurate reference clock inside the guest,
4357 specifically if the host time is smoothly following an accurate
4358 external reference clock, e.g. via NTP. If you want to isolate the
4359 guest time from the host, you can set ``clock`` to ``rt`` instead,
4360 which provides a host monotonic clock if host support it. To even
4361 prevent the RTC from progressing during suspension, you can set
4362 ``clock`` to ``vm`` (virtual clock). '\ ``clock=vm``\ ' is
4363 recommended especially in icount mode in order to preserve
4364 determinism; however, note that in icount mode the speed of the
4365 virtual clock is variable and can in general differ from the host
4366 clock.
4367
4368 Enable ``driftfix`` (i386 targets only) if you experience time drift
4369 problems, specifically with Windows' ACPI HAL. This option will try
4370 to figure out how many timer interrupts were not processed by the
4371 Windows guest and will re-inject them.
4372ERST
5824d651
BS
4373
4374DEF("icount", HAS_ARG, QEMU_OPTION_icount, \
fa647905 4375 "-icount [shift=N|auto][,align=on|off][,sleep=on|off][,rr=record|replay,rrfile=<filename>[,rrsnapshot=<snapshot>]]\n" \
bc14ca24 4376 " enable virtual instruction counter with 2^N clock ticks per\n" \
f1f4b57e 4377 " instruction, enable aligning the host and virtual clocks\n" \
fa647905
PM
4378 " or disable real time cpu sleeping, and optionally enable\n" \
4379 " record-and-replay mode\n", QEMU_ARCH_ALL)
e2fcbf42 4380SRST
fa647905 4381``-icount [shift=N|auto][,align=on|off][,sleep=on|off][,rr=record|replay,rrfile=filename[,rrsnapshot=snapshot]]``
e2fcbf42
PM
4382 Enable virtual instruction counter. The virtual cpu will execute one
4383 instruction every 2^N ns of virtual time. If ``auto`` is specified
4384 then the virtual cpu speed will be automatically adjusted to keep
4385 virtual time within a few seconds of real time.
4386
e2fcbf42
PM
4387 Note that while this option can give deterministic behavior, it does
4388 not provide cycle accurate emulation. Modern CPUs contain
4389 superscalar out of order cores with complex cache hierarchies. The
4390 number of instructions executed often has little or no correlation
4391 with actual performance.
4392
fa647905
PM
4393 When the virtual cpu is sleeping, the virtual time will advance at
4394 default speed unless ``sleep=on`` is specified. With
4395 ``sleep=on``, the virtual time will jump to the next timer
4396 deadline instantly whenever the virtual cpu goes to sleep mode and
4397 will not advance if no timer is enabled. This behavior gives
4398 deterministic execution times from the guest point of view.
4399 The default if icount is enabled is ``sleep=off``.
4400 ``sleep=on`` cannot be used together with either ``shift=auto``
4401 or ``align=on``.
4402
e2fcbf42
PM
4403 ``align=on`` will activate the delay algorithm which will try to
4404 synchronise the host clock and the virtual clock. The goal is to
4405 have a guest running at the real frequency imposed by the shift
4406 option. Whenever the guest clock is behind the host clock and if
4407 ``align=on`` is specified then we print a message to the user to
4408 inform about the delay. Currently this option does not work when
4409 ``shift`` is ``auto``. Note: The sync algorithm will work for those
4410 shift values for which the guest clock runs ahead of the host clock.
4411 Typically this happens when the shift value is high (how high
fa647905
PM
4412 depends on the host machine). The default if icount is enabled
4413 is ``align=off``.
4414
4415 When the ``rr`` option is specified deterministic record/replay is
4416 enabled. The ``rrfile=`` option must also be provided to
4417 specify the path to the replay log. In record mode data is written
4418 to this file, and in replay mode it is read back.
4419 If the ``rrsnapshot`` option is given then it specifies a VM snapshot
4420 name. In record mode, a new VM snapshot with the given name is created
4421 at the start of execution recording. In replay mode this option
4422 specifies the snapshot name used to load the initial VM state.
e2fcbf42 4423ERST
5824d651 4424
9dd986cc 4425DEF("watchdog", HAS_ARG, QEMU_OPTION_watchdog, \
d7933ef3 4426 "-watchdog model\n" \
ad96090a
BS
4427 " enable virtual hardware watchdog [default=none]\n",
4428 QEMU_ARCH_ALL)
e2fcbf42
PM
4429SRST
4430``-watchdog model``
4431 Create a virtual hardware watchdog device. Once enabled (by a guest
4432 action), the watchdog must be periodically polled by an agent inside
4433 the guest or else the guest will be restarted. Choose a model for
4434 which your guest has drivers.
4435
4436 The model is the model of hardware watchdog to emulate. Use
4437 ``-watchdog help`` to list available hardware models. Only one
4438 watchdog can be enabled for a guest.
4439
4440 The following models may be available:
4441
4442 ``ib700``
4443 iBASE 700 is a very simple ISA watchdog with a single timer.
4444
4445 ``i6300esb``
4446 Intel 6300ESB I/O controller hub is a much more featureful
4447 PCI-based dual-timer watchdog.
4448
4449 ``diag288``
4450 A virtual watchdog for s390x backed by the diagnose 288
4451 hypercall (currently KVM only).
4452ERST
9dd986cc
RJ
4453
4454DEF("watchdog-action", HAS_ARG, QEMU_OPTION_watchdog_action, \
7ad9270e 4455 "-watchdog-action reset|shutdown|poweroff|inject-nmi|pause|debug|none\n" \
ad96090a
BS
4456 " action when watchdog fires [default=reset]\n",
4457 QEMU_ARCH_ALL)
e2fcbf42
PM
4458SRST
4459``-watchdog-action action``
4460 The action controls what QEMU will do when the watchdog timer
4461 expires. The default is ``reset`` (forcefully reset the guest).
4462 Other possible actions are: ``shutdown`` (attempt to gracefully
4463 shutdown the guest), ``poweroff`` (forcefully poweroff the guest),
4464 ``inject-nmi`` (inject a NMI into the guest), ``pause`` (pause the
4465 guest), ``debug`` (print a debug message and continue), or ``none``
4466 (do nothing).
4467
4468 Note that the ``shutdown`` action requires that the guest responds
4469 to ACPI signals, which it may not be able to do in the sort of
4470 situations where the watchdog would have expired, and thus
4471 ``-watchdog-action shutdown`` is not recommended for production use.
4472
4473 Examples:
4474
4475 ``-watchdog i6300esb -watchdog-action pause``; \ ``-watchdog ib700``
4476
4477ERST
9dd986cc 4478
5824d651 4479DEF("echr", HAS_ARG, QEMU_OPTION_echr, \
ad96090a
BS
4480 "-echr chr set terminal escape character instead of ctrl-a\n",
4481 QEMU_ARCH_ALL)
e2fcbf42
PM
4482SRST
4483``-echr numeric_ascii_value``
4484 Change the escape character used for switching to the monitor when
4485 using monitor and serial sharing. The default is ``0x01`` when using
4486 the ``-nographic`` option. ``0x01`` is equal to pressing
4487 ``Control-a``. You can select a different character from the ascii
4488 control keys where 1 through 26 map to Control-a through Control-z.
4489 For instance you could use the either of the following to change the
4490 escape character to Control-t.
4491
4492 ``-echr 0x14``; \ ``-echr 20``
4493
4494ERST
5824d651 4495
5824d651 4496DEF("incoming", HAS_ARG, QEMU_OPTION_incoming, \
bf24095f
DB
4497 "-incoming tcp:[host]:port[,to=maxport][,ipv4=on|off][,ipv6=on|off]\n" \
4498 "-incoming rdma:host:port[,ipv4=on|off][,ipv6=on|off]\n" \
7c601803
MT
4499 "-incoming unix:socketpath\n" \
4500 " prepare for incoming migration, listen on\n" \
4501 " specified protocol and socket address\n" \
4502 "-incoming fd:fd\n" \
4503 "-incoming exec:cmdline\n" \
4504 " accept incoming migration on given file descriptor\n" \
1597051b
DDAG
4505 " or from given external command\n" \
4506 "-incoming defer\n" \
4507 " wait for the URI to be specified via migrate_incoming\n",
ad96090a 4508 QEMU_ARCH_ALL)
e2fcbf42 4509SRST
bf24095f 4510``-incoming tcp:[host]:port[,to=maxport][,ipv4=on|off][,ipv6=on|off]``
09ce5f2d 4511 \
bf24095f 4512``-incoming rdma:host:port[,ipv4=on|off][,ipv6=on|off]``
e2fcbf42
PM
4513 Prepare for incoming migration, listen on a given tcp port.
4514
4515``-incoming unix:socketpath``
4516 Prepare for incoming migration, listen on a given unix socket.
4517
4518``-incoming fd:fd``
4519 Accept incoming migration from a given filedescriptor.
4520
4521``-incoming exec:cmdline``
4522 Accept incoming migration as an output from specified external
4523 command.
4524
4525``-incoming defer``
4526 Wait for the URI to be specified via migrate\_incoming. The monitor
4527 can be used to change settings (such as migration parameters) prior
4528 to issuing the migrate\_incoming to allow the migration to begin.
4529ERST
5824d651 4530
d15c05fc
AA
4531DEF("only-migratable", 0, QEMU_OPTION_only_migratable, \
4532 "-only-migratable allow only migratable devices\n", QEMU_ARCH_ALL)
e2fcbf42
PM
4533SRST
4534``-only-migratable``
4535 Only allow migratable devices. Devices will not be allowed to enter
4536 an unmigratable state.
4537ERST
d15c05fc 4538
d8c208dd 4539DEF("nodefaults", 0, QEMU_OPTION_nodefaults, \
ad96090a 4540 "-nodefaults don't create default devices\n", QEMU_ARCH_ALL)
e2fcbf42
PM
4541SRST
4542``-nodefaults``
4543 Don't create default devices. Normally, QEMU sets the default
4544 devices like serial port, parallel port, virtual console, monitor
4545 device, VGA adapter, floppy and CD-ROM drive and others. The
4546 ``-nodefaults`` option will disable all those default devices.
4547ERST
d8c208dd 4548
5824d651
BS
4549#ifndef _WIN32
4550DEF("chroot", HAS_ARG, QEMU_OPTION_chroot, \
ad96090a
BS
4551 "-chroot dir chroot to dir just before starting the VM\n",
4552 QEMU_ARCH_ALL)
5824d651 4553#endif
e2fcbf42
PM
4554SRST
4555``-chroot dir``
4556 Immediately before starting guest execution, chroot to the specified
4557 directory. Especially useful in combination with -runas.
4558ERST
5824d651
BS
4559
4560#ifndef _WIN32
4561DEF("runas", HAS_ARG, QEMU_OPTION_runas, \
2c42f1e8
IJ
4562 "-runas user change to user id user just before starting the VM\n" \
4563 " user can be numeric uid:gid instead\n",
ad96090a 4564 QEMU_ARCH_ALL)
5824d651 4565#endif
e2fcbf42
PM
4566SRST
4567``-runas user``
4568 Immediately before starting guest execution, drop root privileges,
4569 switching to the specified user.
4570ERST
5824d651 4571
5824d651
BS
4572DEF("prom-env", HAS_ARG, QEMU_OPTION_prom_env,
4573 "-prom-env variable=value\n"
ad96090a
BS
4574 " set OpenBIOS nvram variables\n",
4575 QEMU_ARCH_PPC | QEMU_ARCH_SPARC)
e2fcbf42
PM
4576SRST
4577``-prom-env variable=value``
4578 Set OpenBIOS nvram variable to given value (PPC, SPARC only).
4579
4580 ::
4581
4582 qemu-system-sparc -prom-env 'auto-boot?=false' \
4583 -prom-env 'boot-device=sd(0,2,0):d' -prom-env 'boot-args=linux single'
4584
4585 ::
4586
4587 qemu-system-ppc -prom-env 'auto-boot?=false' \
4588 -prom-env 'boot-device=hd:2,\yaboot' \
4589 -prom-env 'boot-args=conf=hd:2,\yaboot.conf'
4590ERST
5824d651 4591DEF("semihosting", 0, QEMU_OPTION_semihosting,
f7bbcfb5 4592 "-semihosting semihosting mode\n",
9d49bcf6 4593 QEMU_ARCH_ARM | QEMU_ARCH_M68K | QEMU_ARCH_XTENSA |
a10b9d93 4594 QEMU_ARCH_MIPS | QEMU_ARCH_NIOS2 | QEMU_ARCH_RISCV)
e2fcbf42
PM
4595SRST
4596``-semihosting``
a10b9d93 4597 Enable semihosting mode (ARM, M68K, Xtensa, MIPS, Nios II, RISC-V only).
e2fcbf42
PM
4598
4599 Note that this allows guest direct access to the host filesystem, so
4600 should only be used with a trusted guest OS.
4601
4602 See the -semihosting-config option documentation for further
4603 information about the facilities this enables.
4604ERST
a38bb079 4605DEF("semihosting-config", HAS_ARG, QEMU_OPTION_semihosting_config,
4e7f9032 4606 "-semihosting-config [enable=on|off][,target=native|gdb|auto][,chardev=id][,arg=str[,...]]\n" \
a59d31a1 4607 " semihosting configuration\n",
9d49bcf6 4608QEMU_ARCH_ARM | QEMU_ARCH_M68K | QEMU_ARCH_XTENSA |
a10b9d93 4609QEMU_ARCH_MIPS | QEMU_ARCH_NIOS2 | QEMU_ARCH_RISCV)
e2fcbf42
PM
4610SRST
4611``-semihosting-config [enable=on|off][,target=native|gdb|auto][,chardev=id][,arg=str[,...]]``
a10b9d93 4612 Enable and configure semihosting (ARM, M68K, Xtensa, MIPS, Nios II, RISC-V
e2fcbf42
PM
4613 only).
4614
4615 Note that this allows guest direct access to the host filesystem, so
4616 should only be used with a trusted guest OS.
4617
4618 On Arm this implements the standard semihosting API, version 2.0.
4619
4620 On M68K this implements the "ColdFire GDB" interface used by
4621 libgloss.
4622
4623 Xtensa semihosting provides basic file IO calls, such as
4624 open/read/write/seek/select. Tensilica baremetal libc for ISS and
4625 linux platform "sim" use this interface.
4626
a10b9d93
KP
4627 On RISC-V this implements the standard semihosting API, version 0.2.
4628
e2fcbf42
PM
4629 ``target=native|gdb|auto``
4630 Defines where the semihosting calls will be addressed, to QEMU
4631 (``native``) or to GDB (``gdb``). The default is ``auto``, which
4632 means ``gdb`` during debug sessions and ``native`` otherwise.
4633
4634 ``chardev=str1``
4635 Send the output to a chardev backend output for native or auto
4636 output when not in gdb
4637
4638 ``arg=str1,arg=str2,...``
4639 Allows the user to pass input arguments, and can be used
4640 multiple times to build up a list. The old-style
4641 ``-kernel``/``-append`` method of passing a command line is
4642 still supported for backward compatibility. If both the
4643 ``--semihosting-config arg`` and the ``-kernel``/``-append`` are
4644 specified, the former is passed to semihosting as it always
4645 takes precedence.
4646ERST
5824d651 4647DEF("old-param", 0, QEMU_OPTION_old_param,
ad96090a 4648 "-old-param old param mode\n", QEMU_ARCH_ARM)
e2fcbf42
PM
4649SRST
4650``-old-param``
4651 Old param mode (ARM only).
4652ERST
95d5f08b 4653
7d76ad4f 4654DEF("sandbox", HAS_ARG, QEMU_OPTION_sandbox, \
73a1e647 4655 "-sandbox on[,obsolete=allow|deny][,elevateprivileges=allow|deny|children]\n" \
24f8cdc5 4656 " [,spawn=allow|deny][,resourcecontrol=allow|deny]\n" \
2b716fa6
EO
4657 " Enable seccomp mode 2 system call filter (default 'off').\n" \
4658 " use 'obsolete' to allow obsolete system calls that are provided\n" \
4659 " by the kernel, but typically no longer used by modern\n" \
73a1e647 4660 " C library implementations.\n" \
d42304b1
PMD
4661 " use 'elevateprivileges' to allow or deny the QEMU process ability\n" \
4662 " to elevate privileges using set*uid|gid system calls.\n" \
73a1e647 4663 " The value 'children' will deny set*uid|gid system calls for\n" \
995a226f
EO
4664 " main QEMU process but will allow forks and execves to run unprivileged\n" \
4665 " use 'spawn' to avoid QEMU to spawn new threads or processes by\n" \
d42304b1 4666 " blocking *fork and execve\n" \
24f8cdc5 4667 " use 'resourcecontrol' to disable process affinity and schedular priority\n",
7d76ad4f 4668 QEMU_ARCH_ALL)
e2fcbf42
PM
4669SRST
4670``-sandbox arg[,obsolete=string][,elevateprivileges=string][,spawn=string][,resourcecontrol=string]``
4671 Enable Seccomp mode 2 system call filter. 'on' will enable syscall
4672 filtering and 'off' will disable it. The default is 'off'.
4673
4674 ``obsolete=string``
4675 Enable Obsolete system calls
4676
4677 ``elevateprivileges=string``
4678 Disable set\*uid\|gid system calls
4679
4680 ``spawn=string``
4681 Disable \*fork and execve
4682
4683 ``resourcecontrol=string``
4684 Disable process affinity and schedular priority
4685ERST
7d76ad4f 4686
715a664a 4687DEF("readconfig", HAS_ARG, QEMU_OPTION_readconfig,
e960a7ee
PB
4688 "-readconfig <file>\n"
4689 " read config file\n", QEMU_ARCH_ALL)
e2fcbf42
PM
4690SRST
4691``-readconfig file``
4692 Read device configuration from file. This approach is useful when
4693 you want to spawn QEMU process with many command line options but
4694 you don't want to exceed the command line character limit.
4695ERST
2feac451 4696
f29a5614
EH
4697DEF("no-user-config", 0, QEMU_OPTION_nouserconfig,
4698 "-no-user-config\n"
3478eae9 4699 " do not load default user-provided config files at startup\n",
f29a5614 4700 QEMU_ARCH_ALL)
e2fcbf42
PM
4701SRST
4702``-no-user-config``
4703 The ``-no-user-config`` option makes QEMU not load any of the
4704 user-provided config files on sysconfdir.
4705ERST
2feac451 4706
ab6540d5 4707DEF("trace", HAS_ARG, QEMU_OPTION_trace,
10578a25 4708 "-trace [[enable=]<pattern>][,events=<file>][,file=<file>]\n"
23d15e86 4709 " specify tracing options\n",
ab6540d5 4710 QEMU_ARCH_ALL)
e2fcbf42
PM
4711SRST
4712``-trace [[enable=]pattern][,events=file][,file=file]``
09ce5f2d 4713 .. include:: ../qemu-option-trace.rst.inc
e2fcbf42 4714
e2fcbf42 4715ERST
42229a75 4716DEF("plugin", HAS_ARG, QEMU_OPTION_plugin,
3a445acb 4717 "-plugin [file=]<file>[,<argname>=<argvalue>]\n"
42229a75
LV
4718 " load a plugin\n",
4719 QEMU_ARCH_ALL)
e2fcbf42 4720SRST
3a445acb 4721``-plugin file=file[,argname=argvalue]``
e2fcbf42
PM
4722 Load a plugin.
4723
4724 ``file=file``
4725 Load the given plugin from a shared library file.
4726
3a445acb
MM
4727 ``argname=argvalue``
4728 Argument passed to the plugin. (Can be given multiple times.)
e2fcbf42 4729ERST
3dbf2c7f 4730
31e70d6c
MA
4731HXCOMM Internal use
4732DEF("qtest", HAS_ARG, QEMU_OPTION_qtest, "", QEMU_ARCH_ALL)
4733DEF("qtest-log", HAS_ARG, QEMU_OPTION_qtest_log, "", QEMU_ARCH_ALL)
c7f0f3b1 4734
5e2ac519 4735DEF("msg", HAS_ARG, QEMU_OPTION_msg,
2880ffb0 4736 "-msg [timestamp[=on|off]][,guest-name=[on|off]]\n"
deda497b 4737 " control error message format\n"
2880ffb0
MS
4738 " timestamp=on enables timestamps (default: off)\n"
4739 " guest-name=on enables guest name prefix but only if\n"
4740 " -name guest option is set (default: off)\n",
5e2ac519 4741 QEMU_ARCH_ALL)
e2fcbf42 4742SRST
2880ffb0 4743``-msg [timestamp[=on|off]][,guest-name[=on|off]]``
e2fcbf42
PM
4744 Control error message format.
4745
4746 ``timestamp=on|off``
4747 Prefix messages with a timestamp. Default is off.
2880ffb0
MS
4748
4749 ``guest-name=on|off``
4750 Prefix messages with guest name but only if -name guest option is set
4751 otherwise the option is ignored. Default is off.
e2fcbf42 4752ERST
5e2ac519 4753
abfd9ce3
AS
4754DEF("dump-vmstate", HAS_ARG, QEMU_OPTION_dump_vmstate,
4755 "-dump-vmstate <file>\n"
4756 " Output vmstate information in JSON format to file.\n"
4757 " Use the scripts/vmstate-static-checker.py file to\n"
4758 " check for possible regressions in migration code\n"
2382053f 4759 " by comparing two such vmstate dumps.\n",
abfd9ce3 4760 QEMU_ARCH_ALL)
e2fcbf42
PM
4761SRST
4762``-dump-vmstate file``
4763 Dump json-encoded vmstate information for current machine type to
4764 file in file
4765ERST
abfd9ce3 4766
12df189d
EC
4767DEF("enable-sync-profile", 0, QEMU_OPTION_enable_sync_profile,
4768 "-enable-sync-profile\n"
4769 " enable synchronization profiling\n",
4770 QEMU_ARCH_ALL)
e2fcbf42
PM
4771SRST
4772``-enable-sync-profile``
4773 Enable synchronization profiling.
4774ERST
12df189d 4775
43f187a5 4776DEFHEADING()
de6b4f90
MA
4777
4778DEFHEADING(Generic object creation:)
b9174d4f
DB
4779
4780DEF("object", HAS_ARG, QEMU_OPTION_object,
4781 "-object TYPENAME[,PROP1=VALUE1,...]\n"
4782 " create a new object of type TYPENAME setting properties\n"
4783 " in the order they are specified. Note that the 'id'\n"
4784 " property must be set. These objects are placed in the\n"
4785 " '/objects' path.\n",
4786 QEMU_ARCH_ALL)
e2fcbf42
PM
4787SRST
4788``-object typename[,prop1=value1,...]``
4789 Create a new object of type typename setting properties in the order
4790 they are specified. Note that the 'id' property must be set. These
4791 objects are placed in the '/objects' path.
4792
86635aa4 4793 ``-object memory-backend-file,id=id,size=size,mem-path=dir,share=on|off,discard-data=on|off,merge=on|off,dump=on|off,prealloc=on|off,host-nodes=host-nodes,policy=default|preferred|bind|interleave,align=align,readonly=on|off``
e2fcbf42
PM
4794 Creates a memory file backend object, which can be used to back
4795 the guest RAM with huge pages.
4796
4797 The ``id`` parameter is a unique ID that will be used to
56c9f00e
RH
4798 reference this memory region in other parameters, e.g. ``-numa``,
4799 ``-device nvdimm``, etc.
e2fcbf42
PM
4800
4801 The ``size`` option provides the size of the memory region, and
56c9f00e 4802 accepts common suffixes, e.g. ``500M``.
e2fcbf42
PM
4803
4804 The ``mem-path`` provides the path to either a shared memory or
4805 huge page filesystem mount.
4806
4807 The ``share`` boolean option determines whether the memory
4808 region is marked as private to QEMU, or shared. The latter
4809 allows a co-operating external process to access the QEMU memory
4810 region.
4811
4812 The ``share`` is also required for pvrdma devices due to
4813 limitations in the RDMA API provided by Linux.
4814
4815 Setting share=on might affect the ability to configure NUMA
4816 bindings for the memory backend under some circumstances, see
4817 Documentation/vm/numa\_memory\_policy.txt on the Linux kernel
4818 source tree for additional details.
4819
4820 Setting the ``discard-data`` boolean option to on indicates that
4821 file contents can be destroyed when QEMU exits, to avoid
4822 unnecessarily flushing data to the backing file. Note that
4823 ``discard-data`` is only an optimization, and QEMU might not
4824 discard file contents if it aborts unexpectedly or is terminated
4825 using SIGKILL.
4826
4827 The ``merge`` boolean option enables memory merge, also known as
4828 MADV\_MERGEABLE, so that Kernel Samepage Merging will consider
4829 the pages for memory deduplication.
4830
4831 Setting the ``dump`` boolean option to off excludes the memory
4832 from core dumps. This feature is also known as MADV\_DONTDUMP.
4833
4834 The ``prealloc`` boolean option enables memory preallocation.
4835
4836 The ``host-nodes`` option binds the memory range to a list of
4837 NUMA host nodes.
4838
4839 The ``policy`` option sets the NUMA policy to one of the
4840 following values:
4841
4842 ``default``
4843 default host policy
4844
4845 ``preferred``
4846 prefer the given host node list for allocation
4847
4848 ``bind``
4849 restrict memory allocation to the given host node list
4850
4851 ``interleave``
4852 interleave memory allocations across the given host node
4853 list
4854
4855 The ``align`` option specifies the base address alignment when
4856 QEMU mmap(2) ``mem-path``, and accepts common suffixes, eg
4857 ``2M``. Some backend store specified by ``mem-path`` requires an
4858 alignment different than the default one used by QEMU, eg the
4859 device DAX /dev/dax0.0 requires 2M alignment rather than 4K. In
4860 such cases, users can specify the required alignment via this
4861 option.
4862
4863 The ``pmem`` option specifies whether the backing file specified
4864 by ``mem-path`` is in host persistent memory that can be
4865 accessed using the SNIA NVM programming model (e.g. Intel
4866 NVDIMM). If ``pmem`` is set to 'on', QEMU will take necessary
4867 operations to guarantee the persistence of its own writes to
4868 ``mem-path`` (e.g. in vNVDIMM label emulation and live
4869 migration). Also, we will map the backend-file with MAP\_SYNC
4870 flag, which ensures the file metadata is in sync for
4871 ``mem-path`` in case of host crash or a power failure. MAP\_SYNC
4872 requires support from both the host kernel (since Linux kernel
4873 4.15) and the filesystem of ``mem-path`` mounted with DAX
4874 option.
4875
86635aa4
SH
4876 The ``readonly`` option specifies whether the backing file is opened
4877 read-only or read-write (default).
4878
e2fcbf42
PM
4879 ``-object memory-backend-ram,id=id,merge=on|off,dump=on|off,share=on|off,prealloc=on|off,size=size,host-nodes=host-nodes,policy=default|preferred|bind|interleave``
4880 Creates a memory backend object, which can be used to back the
4881 guest RAM. Memory backend objects offer more control than the
4882 ``-m`` option that is traditionally used to define guest RAM.
4883 Please refer to ``memory-backend-file`` for a description of the
4884 options.
4885
4886 ``-object memory-backend-memfd,id=id,merge=on|off,dump=on|off,share=on|off,prealloc=on|off,size=size,host-nodes=host-nodes,policy=default|preferred|bind|interleave,seal=on|off,hugetlb=on|off,hugetlbsize=size``
4887 Creates an anonymous memory file backend object, which allows
4888 QEMU to share the memory with an external process (e.g. when
4889 using vhost-user). The memory is allocated with memfd and
4890 optional sealing. (Linux only)
4891
4892 The ``seal`` option creates a sealed-file, that will block
4893 further resizing the memory ('on' by default).
4894
4895 The ``hugetlb`` option specify the file to be created resides in
4896 the hugetlbfs filesystem (since Linux 4.14). Used in conjunction
4897 with the ``hugetlb`` option, the ``hugetlbsize`` option specify
4898 the hugetlb page size on systems that support multiple hugetlb
4899 page sizes (it must be a power of 2 value supported by the
4900 system).
4901
4902 In some versions of Linux, the ``hugetlb`` option is
4903 incompatible with the ``seal`` option (requires at least Linux
4904 4.16).
4905
4906 Please refer to ``memory-backend-file`` for a description of the
4907 other options.
4908
4909 The ``share`` boolean option is on by default with memfd.
4910
4911 ``-object rng-builtin,id=id``
4912 Creates a random number generator backend which obtains entropy
4913 from QEMU builtin functions. The ``id`` parameter is a unique ID
4914 that will be used to reference this entropy backend from the
4915 ``virtio-rng`` device. By default, the ``virtio-rng`` device
4916 uses this RNG backend.
4917
4918 ``-object rng-random,id=id,filename=/dev/random``
4919 Creates a random number generator backend which obtains entropy
4920 from a device on the host. The ``id`` parameter is a unique ID
4921 that will be used to reference this entropy backend from the
4922 ``virtio-rng`` device. The ``filename`` parameter specifies
4923 which file to obtain entropy from and if omitted defaults to
4924 ``/dev/urandom``.
4925
4926 ``-object rng-egd,id=id,chardev=chardevid``
4927 Creates a random number generator backend which obtains entropy
4928 from an external daemon running on the host. The ``id``
4929 parameter is a unique ID that will be used to reference this
4930 entropy backend from the ``virtio-rng`` device. The ``chardev``
4931 parameter is the unique ID of a character device backend that
4932 provides the connection to the RNG daemon.
4933
4934 ``-object tls-creds-anon,id=id,endpoint=endpoint,dir=/path/to/cred/dir,verify-peer=on|off``
4935 Creates a TLS anonymous credentials object, which can be used to
4936 provide TLS support on network backends. The ``id`` parameter is
4937 a unique ID which network backends will use to access the
4938 credentials. The ``endpoint`` is either ``server`` or ``client``
4939 depending on whether the QEMU network backend that uses the
4940 credentials will be acting as a client or as a server. If
4941 ``verify-peer`` is enabled (the default) then once the handshake
4942 is completed, the peer credentials will be verified, though this
4943 is a no-op for anonymous credentials.
4944
4945 The dir parameter tells QEMU where to find the credential files.
4946 For server endpoints, this directory may contain a file
4947 dh-params.pem providing diffie-hellman parameters to use for the
4948 TLS server. If the file is missing, QEMU will generate a set of
4949 DH parameters at startup. This is a computationally expensive
4950 operation that consumes random pool entropy, so it is
4951 recommended that a persistent set of parameters be generated
4952 upfront and saved.
4953
4954 ``-object tls-creds-psk,id=id,endpoint=endpoint,dir=/path/to/keys/dir[,username=username]``
4955 Creates a TLS Pre-Shared Keys (PSK) credentials object, which
4956 can be used to provide TLS support on network backends. The
4957 ``id`` parameter is a unique ID which network backends will use
4958 to access the credentials. The ``endpoint`` is either ``server``
4959 or ``client`` depending on whether the QEMU network backend that
4960 uses the credentials will be acting as a client or as a server.
4961 For clients only, ``username`` is the username which will be
4962 sent to the server. If omitted it defaults to "qemu".
4963
4964 The dir parameter tells QEMU where to find the keys file. It is
4965 called "dir/keys.psk" and contains "username:key" pairs. This
4966 file can most easily be created using the GnuTLS ``psktool``
4967 program.
4968
4969 For server endpoints, dir may also contain a file dh-params.pem
4970 providing diffie-hellman parameters to use for the TLS server.
4971 If the file is missing, QEMU will generate a set of DH
4972 parameters at startup. This is a computationally expensive
4973 operation that consumes random pool entropy, so it is
4974 recommended that a persistent set of parameters be generated up
4975 front and saved.
4976
4977 ``-object tls-creds-x509,id=id,endpoint=endpoint,dir=/path/to/cred/dir,priority=priority,verify-peer=on|off,passwordid=id``
4978 Creates a TLS anonymous credentials object, which can be used to
4979 provide TLS support on network backends. The ``id`` parameter is
4980 a unique ID which network backends will use to access the
4981 credentials. The ``endpoint`` is either ``server`` or ``client``
4982 depending on whether the QEMU network backend that uses the
4983 credentials will be acting as a client or as a server. If
4984 ``verify-peer`` is enabled (the default) then once the handshake
4985 is completed, the peer credentials will be verified. With x509
4986 certificates, this implies that the clients must be provided
4987 with valid client certificates too.
4988
4989 The dir parameter tells QEMU where to find the credential files.
4990 For server endpoints, this directory may contain a file
4991 dh-params.pem providing diffie-hellman parameters to use for the
4992 TLS server. If the file is missing, QEMU will generate a set of
4993 DH parameters at startup. This is a computationally expensive
4994 operation that consumes random pool entropy, so it is
4995 recommended that a persistent set of parameters be generated
4996 upfront and saved.
4997
4998 For x509 certificate credentials the directory will contain
4999 further files providing the x509 certificates. The certificates
5000 must be stored in PEM format, in filenames ca-cert.pem,
5001 ca-crl.pem (optional), server-cert.pem (only servers),
5002 server-key.pem (only servers), client-cert.pem (only clients),
5003 and client-key.pem (only clients).
5004
5005 For the server-key.pem and client-key.pem files which contain
5006 sensitive private keys, it is possible to use an encrypted
5007 version by providing the passwordid parameter. This provides the
5008 ID of a previously created ``secret`` object containing the
5009 password for decryption.
5010
5011 The priority parameter allows to override the global default
5012 priority used by gnutls. This can be useful if the system
5013 administrator needs to use a weaker set of crypto priorities for
5014 QEMU without potentially forcing the weakness onto all
5015 applications. Or conversely if one wants wants a stronger
5016 default for QEMU than for all other applications, they can do
5017 this through this parameter. Its format is a gnutls priority
5018 string as described at
5019 https://gnutls.org/manual/html_node/Priority-Strings.html.
5020
993aec27
PMD
5021 ``-object tls-cipher-suites,id=id,priority=priority``
5022 Creates a TLS cipher suites object, which can be used to control
5023 the TLS cipher/protocol algorithms that applications are permitted
5024 to use.
5025
5026 The ``id`` parameter is a unique ID which frontends will use to
5027 access the ordered list of permitted TLS cipher suites from the
5028 host.
5029
5030 The ``priority`` parameter allows to override the global default
5031 priority used by gnutls. This can be useful if the system
e2fcbf42
PM
5032 administrator needs to use a weaker set of crypto priorities for
5033 QEMU without potentially forcing the weakness onto all
5034 applications. Or conversely if one wants wants a stronger
5035 default for QEMU than for all other applications, they can do
5036 this through this parameter. Its format is a gnutls priority
5037 string as described at
5038 https://gnutls.org/manual/html_node/Priority-Strings.html.
5039
69699f30
PMD
5040 An example of use of this object is to control UEFI HTTPS Boot.
5041 The tls-cipher-suites object exposes the ordered list of permitted
5042 TLS cipher suites from the host side to the guest firmware, via
5043 fw_cfg. The list is represented as an array of IANA_TLS_CIPHER
5044 objects. The firmware uses the IANA_TLS_CIPHER array for configuring
5045 guest-side TLS.
5046
5047 In the following example, the priority at which the host-side policy
5048 is retrieved is given by the ``priority`` property.
5049 Given that QEMU uses GNUTLS, ``priority=@SYSTEM`` may be used to
5050 refer to /etc/crypto-policies/back-ends/gnutls.config.
5051
5052 .. parsed-literal::
5053
353a06b4
LE
5054 # |qemu_system| \\
5055 -object tls-cipher-suites,id=mysuite0,priority=@SYSTEM \\
69699f30
PMD
5056 -fw_cfg name=etc/edk2/https/ciphers,gen_id=mysuite0
5057
e2fcbf42
PM
5058 ``-object filter-buffer,id=id,netdev=netdevid,interval=t[,queue=all|rx|tx][,status=on|off][,position=head|tail|id=<id>][,insert=behind|before]``
5059 Interval t can't be 0, this filter batches the packet delivery:
5060 all packets arriving in a given interval on netdev netdevid are
5061 delayed until the end of the interval. Interval is in
5062 microseconds. ``status`` is optional that indicate whether the
5063 netfilter is on (enabled) or off (disabled), the default status
5064 for netfilter will be 'on'.
5065
5066 queue all\|rx\|tx is an option that can be applied to any
5067 netfilter.
5068
5069 ``all``: the filter is attached both to the receive and the
5070 transmit queue of the netdev (default).
5071
5072 ``rx``: the filter is attached to the receive queue of the
5073 netdev, where it will receive packets sent to the netdev.
5074
5075 ``tx``: the filter is attached to the transmit queue of the
5076 netdev, where it will receive packets sent by the netdev.
5077
5078 position head\|tail\|id=<id> is an option to specify where the
5079 filter should be inserted in the filter list. It can be applied
5080 to any netfilter.
5081
5082 ``head``: the filter is inserted at the head of the filter list,
5083 before any existing filters.
5084
5085 ``tail``: the filter is inserted at the tail of the filter list,
5086 behind any existing filters (default).
5087
5088 ``id=<id>``: the filter is inserted before or behind the filter
5089 specified by <id>, see the insert option below.
5090
5091 insert behind\|before is an option to specify where to insert
5092 the new filter relative to the one specified with
5093 position=id=<id>. It can be applied to any netfilter.
5094
5095 ``before``: insert before the specified filter.
5096
5097 ``behind``: insert behind the specified filter (default).
5098
5099 ``-object filter-mirror,id=id,netdev=netdevid,outdev=chardevid,queue=all|rx|tx[,vnet_hdr_support][,position=head|tail|id=<id>][,insert=behind|before]``
5100 filter-mirror on netdev netdevid,mirror net packet to
5101 chardevchardevid, if it has the vnet\_hdr\_support flag,
5102 filter-mirror will mirror packet with vnet\_hdr\_len.
5103
5104 ``-object filter-redirector,id=id,netdev=netdevid,indev=chardevid,outdev=chardevid,queue=all|rx|tx[,vnet_hdr_support][,position=head|tail|id=<id>][,insert=behind|before]``
5105 filter-redirector on netdev netdevid,redirect filter's net
5106 packet to chardev chardevid,and redirect indev's packet to
5107 filter.if it has the vnet\_hdr\_support flag, filter-redirector
5108 will redirect packet with vnet\_hdr\_len. Create a
5109 filter-redirector we need to differ outdev id from indev id, id
5110 can not be the same. we can just use indev or outdev, but at
5111 least one of indev or outdev need to be specified.
5112
5113 ``-object filter-rewriter,id=id,netdev=netdevid,queue=all|rx|tx,[vnet_hdr_support][,position=head|tail|id=<id>][,insert=behind|before]``
5114 Filter-rewriter is a part of COLO project.It will rewrite tcp
5115 packet to secondary from primary to keep secondary tcp
5116 connection,and rewrite tcp packet to primary from secondary make
5117 tcp packet can be handled by client.if it has the
5118 vnet\_hdr\_support flag, we can parse packet with vnet header.
5119
5120 usage: colo secondary: -object
5121 filter-redirector,id=f1,netdev=hn0,queue=tx,indev=red0 -object
5122 filter-redirector,id=f2,netdev=hn0,queue=rx,outdev=red1 -object
5123 filter-rewriter,id=rew0,netdev=hn0,queue=all
5124
5125 ``-object filter-dump,id=id,netdev=dev[,file=filename][,maxlen=len][,position=head|tail|id=<id>][,insert=behind|before]``
5126 Dump the network traffic on netdev dev to the file specified by
5127 filename. At most len bytes (64k by default) per packet are
5128 stored. The file format is libpcap, so it can be analyzed with
5129 tools such as tcpdump or Wireshark.
5130
a2e5cb7a 5131 ``-object colo-compare,id=id,primary_in=chardevid,secondary_in=chardevid,outdev=chardevid,iothread=id[,vnet_hdr_support][,notify_dev=id][,compare_timeout=@var{ms}][,expired_scan_cycle=@var{ms}][,max_queue_size=@var{size}]``
2b28a7ef
ZC
5132 Colo-compare gets packet from primary\_in chardevid and
5133 secondary\_in, then compare whether the payload of primary packet
5134 and secondary packet are the same. If same, it will output
5135 primary packet to out\_dev, else it will notify COLO-framework to do
5136 checkpoint and send primary packet to out\_dev. In order to
5137 improve efficiency, we need to put the task of comparison in
5138 another iothread. If it has the vnet\_hdr\_support flag,
5139 colo compare will send/recv packet with vnet\_hdr\_len.
5140 The compare\_timeout=@var{ms} determines the maximum time of the
5141 colo-compare hold the packet. The expired\_scan\_cycle=@var{ms}
5142 is to set the period of scanning expired primary node network packets.
5143 The max\_queue\_size=@var{size} is to set the max compare queue
5144 size depend on user environment.
5145 If user want to use Xen COLO, need to add the notify\_dev to
9cc43c94 5146 notify Xen colo-frame to do checkpoint.
e2fcbf42 5147
2b28a7ef
ZC
5148 COLO-compare must be used with the help of filter-mirror,
5149 filter-redirector and filter-rewriter.
e2fcbf42
PM
5150
5151 ::
5152
5153 KVM COLO
5154
5155 primary:
5156 -netdev tap,id=hn0,vhost=off,script=/etc/qemu-ifup,downscript=/etc/qemu-ifdown
5157 -device e1000,id=e0,netdev=hn0,mac=52:a4:00:12:78:66
bfdc1267
DB
5158 -chardev socket,id=mirror0,host=3.3.3.3,port=9003,server=on,wait=off
5159 -chardev socket,id=compare1,host=3.3.3.3,port=9004,server=on,wait=off
5160 -chardev socket,id=compare0,host=3.3.3.3,port=9001,server=on,wait=off
e2fcbf42 5161 -chardev socket,id=compare0-0,host=3.3.3.3,port=9001
bfdc1267 5162 -chardev socket,id=compare_out,host=3.3.3.3,port=9005,server=on,wait=off
e2fcbf42
PM
5163 -chardev socket,id=compare_out0,host=3.3.3.3,port=9005
5164 -object iothread,id=iothread1
5165 -object filter-mirror,id=m0,netdev=hn0,queue=tx,outdev=mirror0
5166 -object filter-redirector,netdev=hn0,id=redire0,queue=rx,indev=compare_out
5167 -object filter-redirector,netdev=hn0,id=redire1,queue=rx,outdev=compare0
5168 -object colo-compare,id=comp0,primary_in=compare0-0,secondary_in=compare1,outdev=compare_out0,iothread=iothread1
5169
5170 secondary:
5171 -netdev tap,id=hn0,vhost=off,script=/etc/qemu-ifup,down script=/etc/qemu-ifdown
5172 -device e1000,netdev=hn0,mac=52:a4:00:12:78:66
5173 -chardev socket,id=red0,host=3.3.3.3,port=9003
5174 -chardev socket,id=red1,host=3.3.3.3,port=9004
5175 -object filter-redirector,id=f1,netdev=hn0,queue=tx,indev=red0
5176 -object filter-redirector,id=f2,netdev=hn0,queue=rx,outdev=red1
5177
5178
5179 Xen COLO
5180
5181 primary:
5182 -netdev tap,id=hn0,vhost=off,script=/etc/qemu-ifup,downscript=/etc/qemu-ifdown
5183 -device e1000,id=e0,netdev=hn0,mac=52:a4:00:12:78:66
bfdc1267
DB
5184 -chardev socket,id=mirror0,host=3.3.3.3,port=9003,server=on,wait=off
5185 -chardev socket,id=compare1,host=3.3.3.3,port=9004,server=on,wait=off
5186 -chardev socket,id=compare0,host=3.3.3.3,port=9001,server=on,wait=off
e2fcbf42 5187 -chardev socket,id=compare0-0,host=3.3.3.3,port=9001
bfdc1267 5188 -chardev socket,id=compare_out,host=3.3.3.3,port=9005,server=on,wait=off
e2fcbf42 5189 -chardev socket,id=compare_out0,host=3.3.3.3,port=9005
bfdc1267 5190 -chardev socket,id=notify_way,host=3.3.3.3,port=9009,server=on,wait=off
e2fcbf42
PM
5191 -object filter-mirror,id=m0,netdev=hn0,queue=tx,outdev=mirror0
5192 -object filter-redirector,netdev=hn0,id=redire0,queue=rx,indev=compare_out
5193 -object filter-redirector,netdev=hn0,id=redire1,queue=rx,outdev=compare0
5194 -object iothread,id=iothread1
5195 -object colo-compare,id=comp0,primary_in=compare0-0,secondary_in=compare1,outdev=compare_out0,notify_dev=nofity_way,iothread=iothread1
5196
5197 secondary:
5198 -netdev tap,id=hn0,vhost=off,script=/etc/qemu-ifup,down script=/etc/qemu-ifdown
5199 -device e1000,netdev=hn0,mac=52:a4:00:12:78:66
5200 -chardev socket,id=red0,host=3.3.3.3,port=9003
5201 -chardev socket,id=red1,host=3.3.3.3,port=9004
5202 -object filter-redirector,id=f1,netdev=hn0,queue=tx,indev=red0
5203 -object filter-redirector,id=f2,netdev=hn0,queue=rx,outdev=red1
5204
5205 If you want to know the detail of above command line, you can
5206 read the colo-compare git log.
5207
5208 ``-object cryptodev-backend-builtin,id=id[,queues=queues]``
5209 Creates a cryptodev backend which executes crypto opreation from
5210 the QEMU cipher APIS. The id parameter is a unique ID that will
5211 be used to reference this cryptodev backend from the
5212 ``virtio-crypto`` device. The queues parameter is optional,
5213 which specify the queue number of cryptodev backend, the default
5214 of queues is 1.
5215
09ce5f2d 5216 .. parsed-literal::
e2fcbf42 5217
353a06b4
LE
5218 # |qemu_system| \\
5219 [...] \\
5220 -object cryptodev-backend-builtin,id=cryptodev0 \\
5221 -device virtio-crypto-pci,id=crypto0,cryptodev=cryptodev0 \\
e2fcbf42
PM
5222 [...]
5223
5224 ``-object cryptodev-vhost-user,id=id,chardev=chardevid[,queues=queues]``
5225 Creates a vhost-user cryptodev backend, backed by a chardev
5226 chardevid. The id parameter is a unique ID that will be used to
5227 reference this cryptodev backend from the ``virtio-crypto``
5228 device. The chardev should be a unix domain socket backed one.
5229 The vhost-user uses a specifically defined protocol to pass
5230 vhost ioctl replacement messages to an application on the other
5231 end of the socket. The queues parameter is optional, which
5232 specify the queue number of cryptodev backend for multiqueue
5233 vhost-user, the default of queues is 1.
5234
09ce5f2d 5235 .. parsed-literal::
e2fcbf42 5236
353a06b4
LE
5237 # |qemu_system| \\
5238 [...] \\
5239 -chardev socket,id=chardev0,path=/path/to/socket \\
5240 -object cryptodev-vhost-user,id=cryptodev0,chardev=chardev0 \\
5241 -device virtio-crypto-pci,id=crypto0,cryptodev=cryptodev0 \\
e2fcbf42
PM
5242 [...]
5243
5244 ``-object secret,id=id,data=string,format=raw|base64[,keyid=secretid,iv=string]``
09ce5f2d 5245 \
e2fcbf42
PM
5246 ``-object secret,id=id,file=filename,format=raw|base64[,keyid=secretid,iv=string]``
5247 Defines a secret to store a password, encryption key, or some
5248 other sensitive data. The sensitive data can either be passed
5249 directly via the data parameter, or indirectly via the file
5250 parameter. Using the data parameter is insecure unless the
5251 sensitive data is encrypted.
5252
5253 The sensitive data can be provided in raw format (the default),
5254 or base64. When encoded as JSON, the raw format only supports
5255 valid UTF-8 characters, so base64 is recommended for sending
5256 binary data. QEMU will convert from which ever format is
5257 provided to the format it needs internally. eg, an RBD password
5258 can be provided in raw format, even though it will be base64
5259 encoded when passed onto the RBD sever.
5260
5261 For added protection, it is possible to encrypt the data
5262 associated with a secret using the AES-256-CBC cipher. Use of
5263 encryption is indicated by providing the keyid and iv
5264 parameters. The keyid parameter provides the ID of a previously
5265 defined secret that contains the AES-256 decryption key. This
5266 key should be 32-bytes long and be base64 encoded. The iv
5267 parameter provides the random initialization vector used for
5268 encryption of this particular secret and should be a base64
5269 encrypted string of the 16-byte IV.
5270
5271 The simplest (insecure) usage is to provide the secret inline
5272
09ce5f2d 5273 .. parsed-literal::
e2fcbf42
PM
5274
5275 # |qemu_system| -object secret,id=sec0,data=letmein,format=raw
5276
5277 The simplest secure usage is to provide the secret via a file
5278
5279 # printf "letmein" > mypasswd.txt # QEMU\_SYSTEM\_MACRO -object
5280 secret,id=sec0,file=mypasswd.txt,format=raw
5281
5282 For greater security, AES-256-CBC should be used. To illustrate
5283 usage, consider the openssl command line tool which can encrypt
5284 the data. Note that when encrypting, the plaintext must be
5285 padded to the cipher block size (32 bytes) using the standard
5286 PKCS#5/6 compatible padding algorithm.
5287
5288 First a master key needs to be created in base64 encoding:
5289
5290 ::
5291
5292 # openssl rand -base64 32 > key.b64
5293 # KEY=$(base64 -d key.b64 | hexdump -v -e '/1 "%02X"')
5294
5295 Each secret to be encrypted needs to have a random
5296 initialization vector generated. These do not need to be kept
5297 secret
5298
5299 ::
5300
5301 # openssl rand -base64 16 > iv.b64
5302 # IV=$(base64 -d iv.b64 | hexdump -v -e '/1 "%02X"')
5303
5304 The secret to be defined can now be encrypted, in this case
5305 we're telling openssl to base64 encode the result, but it could
5306 be left as raw bytes if desired.
5307
5308 ::
5309
5310 # SECRET=$(printf "letmein" |
5311 openssl enc -aes-256-cbc -a -K $KEY -iv $IV)
5312
5313 When launching QEMU, create a master secret pointing to
5314 ``key.b64`` and specify that to be used to decrypt the user
5315 password. Pass the contents of ``iv.b64`` to the second secret
5316
09ce5f2d 5317 .. parsed-literal::
e2fcbf42 5318
353a06b4
LE
5319 # |qemu_system| \\
5320 -object secret,id=secmaster0,format=base64,file=key.b64 \\
5321 -object secret,id=sec0,keyid=secmaster0,format=base64,\\
e2fcbf42
PM
5322 data=$SECRET,iv=$(<iv.b64)
5323
55cdf566 5324 ``-object sev-guest,id=id,cbitpos=cbitpos,reduced-phys-bits=val,[sev-device=string,policy=policy,handle=handle,dh-cert-file=file,session-file=file,kernel-hashes=on|off]``
e2fcbf42
PM
5325 Create a Secure Encrypted Virtualization (SEV) guest object,
5326 which can be used to provide the guest memory encryption support
5327 on AMD processors.
5328
5329 When memory encryption is enabled, one of the physical address
5330 bit (aka the C-bit) is utilized to mark if a memory page is
5331 protected. The ``cbitpos`` is used to provide the C-bit
5332 position. The C-bit position is Host family dependent hence user
5333 must provide this value. On EPYC, the value should be 47.
5334
5335 When memory encryption is enabled, we loose certain bits in
5336 physical address space. The ``reduced-phys-bits`` is used to
5337 provide the number of bits we loose in physical address space.
5338 Similar to C-bit, the value is Host family dependent. On EPYC,
5339 the value should be 5.
5340
5341 The ``sev-device`` provides the device file to use for
5342 communicating with the SEV firmware running inside AMD Secure
5343 Processor. The default device is '/dev/sev'. If hardware
5344 supports memory encryption then /dev/sev devices are created by
5345 CCP driver.
5346
5347 The ``policy`` provides the guest policy to be enforced by the
5348 SEV firmware and restrict what configuration and operational
5349 commands can be performed on this guest by the hypervisor. The
5350 policy should be provided by the guest owner and is bound to the
5351 guest and cannot be changed throughout the lifetime of the
5352 guest. The default is 0.
5353
5354 If guest ``policy`` allows sharing the key with another SEV
5355 guest then ``handle`` can be use to provide handle of the guest
5356 from which to share the key.
5357
5358 The ``dh-cert-file`` and ``session-file`` provides the guest
5359 owner's Public Diffie-Hillman key defined in SEV spec. The PDH
5360 and session parameters are used for establishing a cryptographic
5361 session with the guest owner to negotiate keys used for
5362 attestation. The file must be encoded in base64.
5363
55cdf566
DM
5364 The ``kernel-hashes`` adds the hashes of given kernel/initrd/
5365 cmdline to a designated guest firmware page for measured Linux
5366 boot with -kernel. The default is off. (Since 6.2)
5367
e2fcbf42
PM
5368 e.g to launch a SEV guest
5369
09ce5f2d 5370 .. parsed-literal::
e2fcbf42 5371
353a06b4
LE
5372 # |qemu_system_x86| \\
5373 ...... \\
5374 -object sev-guest,id=sev0,cbitpos=47,reduced-phys-bits=5 \\
5375 -machine ...,memory-encryption=sev0 \\
e2fcbf42
PM
5376 .....
5377
5378 ``-object authz-simple,id=id,identity=string``
5379 Create an authorization object that will control access to
5380 network services.
5381
5382 The ``identity`` parameter is identifies the user and its format
5383 depends on the network service that authorization object is
5384 associated with. For authorizing based on TLS x509 certificates,
5385 the identity must be the x509 distinguished name. Note that care
5386 must be taken to escape any commas in the distinguished name.
5387
5388 An example authorization object to validate a x509 distinguished
5389 name would look like:
5390
09ce5f2d 5391 .. parsed-literal::
e2fcbf42 5392
353a06b4
LE
5393 # |qemu_system| \\
5394 ... \\
5395 -object 'authz-simple,id=auth0,identity=CN=laptop.example.com,,O=Example Org,,L=London,,ST=London,,C=GB' \\
e2fcbf42
PM
5396 ...
5397
5398 Note the use of quotes due to the x509 distinguished name
5399 containing whitespace, and escaping of ','.
5400
4d7beeab 5401 ``-object authz-listfile,id=id,filename=path,refresh=on|off``
e2fcbf42
PM
5402 Create an authorization object that will control access to
5403 network services.
5404
5405 The ``filename`` parameter is the fully qualified path to a file
5406 containing the access control list rules in JSON format.
5407
5408 An example set of rules that match against SASL usernames might
5409 look like:
5410
5411 ::
5412
5413 {
5414 "rules": [
5415 { "match": "fred", "policy": "allow", "format": "exact" },
5416 { "match": "bob", "policy": "allow", "format": "exact" },
5417 { "match": "danb", "policy": "deny", "format": "glob" },
5418 { "match": "dan*", "policy": "allow", "format": "exact" },
5419 ],
5420 "policy": "deny"
5421 }
5422
5423 When checking access the object will iterate over all the rules
5424 and the first rule to match will have its ``policy`` value
5425 returned as the result. If no rules match, then the default
5426 ``policy`` value is returned.
5427
5428 The rules can either be an exact string match, or they can use
5429 the simple UNIX glob pattern matching to allow wildcards to be
5430 used.
5431
5432 If ``refresh`` is set to true the file will be monitored and
5433 automatically reloaded whenever its content changes.
5434
5435 As with the ``authz-simple`` object, the format of the identity
5436 strings being matched depends on the network service, but is
5437 usually a TLS x509 distinguished name, or a SASL username.
5438
5439 An example authorization object to validate a SASL username
5440 would look like:
5441
09ce5f2d 5442 .. parsed-literal::
e2fcbf42 5443
353a06b4
LE
5444 # |qemu_system| \\
5445 ... \\
4d7beeab 5446 -object authz-simple,id=auth0,filename=/etc/qemu/vnc-sasl.acl,refresh=on \\
e2fcbf42
PM
5447 ...
5448
5449 ``-object authz-pam,id=id,service=string``
5450 Create an authorization object that will control access to
5451 network services.
5452
5453 The ``service`` parameter provides the name of a PAM service to
5454 use for authorization. It requires that a file
5455 ``/etc/pam.d/service`` exist to provide the configuration for
5456 the ``account`` subsystem.
5457
5458 An example authorization object to validate a TLS x509
5459 distinguished name would look like:
5460
09ce5f2d 5461 .. parsed-literal::
e2fcbf42 5462
353a06b4
LE
5463 # |qemu_system| \\
5464 ... \\
5465 -object authz-pam,id=auth0,service=qemu-vnc \\
e2fcbf42
PM
5466 ...
5467
5468 There would then be a corresponding config file for PAM at
5469 ``/etc/pam.d/qemu-vnc`` that contains:
5470
5471 ::
5472
5473 account requisite pam_listfile.so item=user sense=allow \
5474 file=/etc/qemu/vnc.allow
5475
5476 Finally the ``/etc/qemu/vnc.allow`` file would contain the list
5477 of x509 distingished names that are permitted access
5478
5479 ::
5480
5481 CN=laptop.example.com,O=Example Home,L=London,ST=London,C=GB
5482
1793ad02 5483 ``-object iothread,id=id,poll-max-ns=poll-max-ns,poll-grow=poll-grow,poll-shrink=poll-shrink,aio-max-batch=aio-max-batch``
e2fcbf42
PM
5484 Creates a dedicated event loop thread that devices can be
5485 assigned to. This is known as an IOThread. By default device
5486 emulation happens in vCPU threads or the main event loop thread.
5487 This can become a scalability bottleneck. IOThreads allow device
5488 emulation and I/O to run on other host CPUs.
5489
5490 The ``id`` parameter is a unique ID that will be used to
5491 reference this IOThread from ``-device ...,iothread=id``.
5492 Multiple devices can be assigned to an IOThread. Note that not
5493 all devices support an ``iothread`` parameter.
5494
5495 The ``query-iothreads`` QMP command lists IOThreads and reports
5496 their thread IDs so that the user can configure host CPU
5497 pinning/affinity.
5498
5499 IOThreads use an adaptive polling algorithm to reduce event loop
5500 latency. Instead of entering a blocking system call to monitor
5501 file descriptors and then pay the cost of being woken up when an
5502 event occurs, the polling algorithm spins waiting for events for
5503 a short time. The algorithm's default parameters are suitable
5504 for many cases but can be adjusted based on knowledge of the
5505 workload and/or host device latency.
5506
5507 The ``poll-max-ns`` parameter is the maximum number of
5508 nanoseconds to busy wait for events. Polling can be disabled by
5509 setting this value to 0.
5510
5511 The ``poll-grow`` parameter is the multiplier used to increase
5512 the polling time when the algorithm detects it is missing events
5513 due to not polling long enough.
5514
5515 The ``poll-shrink`` parameter is the divisor used to decrease
5516 the polling time when the algorithm detects it is spending too
5517 long polling without encountering events.
5518
1793ad02
SG
5519 The ``aio-max-batch`` parameter is the maximum number of requests
5520 in a batch for the AIO engine, 0 means that the engine will use
5521 its default.
5522
5523 The IOThread parameters can be modified at run-time using the
e2fcbf42
PM
5524 ``qom-set`` command (where ``iothread1`` is the IOThread's
5525 ``id``):
5526
5527 ::
5528
5529 (qemu) qom-set /objects/iothread1 poll-max-ns 100000
5530ERST
b9174d4f
DB
5531
5532
3dbf2c7f 5533HXCOMM This is the last statement. Insert new options before this line!
fd5fc4b1
PB
5534
5535#undef DEF
5536#undef DEFHEADING
5537#undef ARCHHEADING