2 * QEMU Guest Agent win32-specific command implementations
4 * Copyright IBM Corp. 2012
7 * Michael Roth <mdroth@linux.vnet.ibm.com>
8 * Gal Hammer <ghammer@redhat.com>
10 * This work is licensed under the terms of the GNU GPL, version 2 or later.
11 * See the COPYING file in the top-level directory.
13 #include "qemu/osdep.h"
26 #include <devpropdef.h>
31 #include "guest-agent-core.h"
32 #include "vss-win32.h"
33 #include "qga-qapi-commands.h"
34 #include "qapi/error.h"
35 #include "qapi/qmp/qerror.h"
36 #include "qemu/queue.h"
37 #include "qemu/host-utils.h"
38 #include "qemu/base64.h"
39 #include "commands-common.h"
42 * The following should be in devpkey.h, but it isn't. The key names were
43 * prefixed to avoid (future) name clashes. Once the definitions get into
44 * mingw the following lines can be removed.
46 DEFINE_DEVPROPKEY(qga_DEVPKEY_NAME
, 0xb725f130, 0x47ef, 0x101a, 0xa5,
47 0xf1, 0x02, 0x60, 0x8c, 0x9e, 0xeb, 0xac, 10);
48 /* DEVPROP_TYPE_STRING */
49 DEFINE_DEVPROPKEY(qga_DEVPKEY_Device_HardwareIds
, 0xa45c254e, 0xdf1c,
50 0x4efd, 0x80, 0x20, 0x67, 0xd1, 0x46, 0xa8, 0x50, 0xe0, 3);
51 /* DEVPROP_TYPE_STRING_LIST */
52 DEFINE_DEVPROPKEY(qga_DEVPKEY_Device_DriverDate
, 0xa8b865dd, 0x2e3d,
53 0x4094, 0xad, 0x97, 0xe5, 0x93, 0xa7, 0xc, 0x75, 0xd6, 2);
54 /* DEVPROP_TYPE_FILETIME */
55 DEFINE_DEVPROPKEY(qga_DEVPKEY_Device_DriverVersion
, 0xa8b865dd, 0x2e3d,
56 0x4094, 0xad, 0x97, 0xe5, 0x93, 0xa7, 0xc, 0x75, 0xd6, 3);
57 /* DEVPROP_TYPE_STRING */
58 /* The CM_Get_DevNode_PropertyW prototype is only sometimes in cfgmgr32.h */
59 #ifndef CM_Get_DevNode_Property
60 #pragma GCC diagnostic push
61 #pragma GCC diagnostic ignored "-Wredundant-decls"
62 CMAPI CONFIGRET WINAPI
CM_Get_DevNode_PropertyW(
64 CONST DEVPROPKEY
* PropertyKey
,
65 DEVPROPTYPE
* PropertyType
,
67 PULONG PropertyBufferSize
,
70 #define CM_Get_DevNode_Property CM_Get_DevNode_PropertyW
71 #pragma GCC diagnostic pop
74 #ifndef SHTDN_REASON_FLAG_PLANNED
75 #define SHTDN_REASON_FLAG_PLANNED 0x80000000
78 /* multiple of 100 nanoseconds elapsed between windows baseline
79 * (1/1/1601) and Unix Epoch (1/1/1970), accounting for leap years */
80 #define W32_FT_OFFSET (10000000ULL * 60 * 60 * 24 * \
81 (365 * (1970 - 1601) + \
82 (1970 - 1601) / 4 - 3))
84 #define INVALID_SET_FILE_POINTER ((DWORD)-1)
86 struct GuestFileHandle
{
89 QTAILQ_ENTRY(GuestFileHandle
) next
;
93 QTAILQ_HEAD(, GuestFileHandle
) filehandles
;
94 } guest_file_state
= {
95 .filehandles
= QTAILQ_HEAD_INITIALIZER(guest_file_state
.filehandles
),
98 #define FILE_GENERIC_APPEND (FILE_GENERIC_WRITE & ~FILE_WRITE_DATA)
100 typedef struct OpenFlags
{
102 DWORD desired_access
;
103 DWORD creation_disposition
;
105 static OpenFlags guest_file_open_modes
[] = {
106 {"r", GENERIC_READ
, OPEN_EXISTING
},
107 {"rb", GENERIC_READ
, OPEN_EXISTING
},
108 {"w", GENERIC_WRITE
, CREATE_ALWAYS
},
109 {"wb", GENERIC_WRITE
, CREATE_ALWAYS
},
110 {"a", FILE_GENERIC_APPEND
, OPEN_ALWAYS
},
111 {"r+", GENERIC_WRITE
| GENERIC_READ
, OPEN_EXISTING
},
112 {"rb+", GENERIC_WRITE
| GENERIC_READ
, OPEN_EXISTING
},
113 {"r+b", GENERIC_WRITE
| GENERIC_READ
, OPEN_EXISTING
},
114 {"w+", GENERIC_WRITE
| GENERIC_READ
, CREATE_ALWAYS
},
115 {"wb+", GENERIC_WRITE
| GENERIC_READ
, CREATE_ALWAYS
},
116 {"w+b", GENERIC_WRITE
| GENERIC_READ
, CREATE_ALWAYS
},
117 {"a+", FILE_GENERIC_APPEND
| GENERIC_READ
, OPEN_ALWAYS
},
118 {"ab+", FILE_GENERIC_APPEND
| GENERIC_READ
, OPEN_ALWAYS
},
119 {"a+b", FILE_GENERIC_APPEND
| GENERIC_READ
, OPEN_ALWAYS
}
122 #define debug_error(msg) do { \
123 char *suffix = g_win32_error_message(GetLastError()); \
124 g_debug("%s: %s", (msg), suffix); \
128 static OpenFlags
*find_open_flag(const char *mode_str
)
133 for (mode
= 0; mode
< ARRAY_SIZE(guest_file_open_modes
); ++mode
) {
134 OpenFlags
*flags
= guest_file_open_modes
+ mode
;
136 if (strcmp(flags
->forms
, mode_str
) == 0) {
141 error_setg(errp
, "invalid file open mode '%s'", mode_str
);
145 static int64_t guest_file_handle_add(HANDLE fh
, Error
**errp
)
147 GuestFileHandle
*gfh
;
150 handle
= ga_get_fd_handle(ga_state
, errp
);
154 gfh
= g_new0(GuestFileHandle
, 1);
157 QTAILQ_INSERT_TAIL(&guest_file_state
.filehandles
, gfh
, next
);
162 GuestFileHandle
*guest_file_handle_find(int64_t id
, Error
**errp
)
164 GuestFileHandle
*gfh
;
165 QTAILQ_FOREACH(gfh
, &guest_file_state
.filehandles
, next
) {
170 error_setg(errp
, "handle '%" PRId64
"' has not been found", id
);
174 static void handle_set_nonblocking(HANDLE fh
)
176 DWORD file_type
, pipe_state
;
177 file_type
= GetFileType(fh
);
178 if (file_type
!= FILE_TYPE_PIPE
) {
181 /* If file_type == FILE_TYPE_PIPE, according to MSDN
182 * the specified file is socket or named pipe */
183 if (!GetNamedPipeHandleState(fh
, &pipe_state
, NULL
,
184 NULL
, NULL
, NULL
, 0)) {
187 /* The fd is named pipe fd */
188 if (pipe_state
& PIPE_NOWAIT
) {
192 pipe_state
|= PIPE_NOWAIT
;
193 SetNamedPipeHandleState(fh
, &pipe_state
, NULL
, NULL
);
196 int64_t qmp_guest_file_open(const char *path
, const char *mode
, Error
**errp
)
200 HANDLE templ_file
= NULL
;
201 DWORD share_mode
= FILE_SHARE_READ
;
202 DWORD flags_and_attr
= FILE_ATTRIBUTE_NORMAL
;
203 LPSECURITY_ATTRIBUTES sa_attr
= NULL
;
204 OpenFlags
*guest_flags
;
206 wchar_t *w_path
= NULL
;
211 slog("guest-file-open called, filepath: %s, mode: %s", path
, mode
);
212 guest_flags
= find_open_flag(mode
);
213 if (guest_flags
== NULL
) {
214 error_setg(errp
, "invalid file open mode");
218 w_path
= g_utf8_to_utf16(path
, -1, NULL
, NULL
, &gerr
);
220 error_setg(errp
, "can't convert 'path' to UTF-16: %s",
226 fh
= CreateFileW(w_path
, guest_flags
->desired_access
, share_mode
, sa_attr
,
227 guest_flags
->creation_disposition
, flags_and_attr
,
229 if (fh
== INVALID_HANDLE_VALUE
) {
230 error_setg_win32(errp
, GetLastError(), "failed to open file '%s'",
235 /* set fd non-blocking to avoid common use cases (like reading from a
236 * named pipe) from hanging the agent
238 handle_set_nonblocking(fh
);
240 fd
= guest_file_handle_add(fh
, errp
);
243 error_setg(errp
, "failed to add handle to qmp handle table");
247 slog("guest-file-open, handle: % " PRId64
, fd
);
254 void qmp_guest_file_close(int64_t handle
, Error
**errp
)
257 GuestFileHandle
*gfh
= guest_file_handle_find(handle
, errp
);
258 slog("guest-file-close called, handle: %" PRId64
, handle
);
262 ret
= CloseHandle(gfh
->fh
);
264 error_setg_win32(errp
, GetLastError(), "failed close handle");
268 QTAILQ_REMOVE(&guest_file_state
.filehandles
, gfh
, next
);
272 static void acquire_privilege(const char *name
, Error
**errp
)
275 TOKEN_PRIVILEGES priv
;
277 if (OpenProcessToken(GetCurrentProcess(),
278 TOKEN_ADJUST_PRIVILEGES
| TOKEN_QUERY
, &token
))
280 if (!LookupPrivilegeValue(NULL
, name
, &priv
.Privileges
[0].Luid
)) {
281 error_setg(errp
, "no luid for requested privilege");
285 priv
.PrivilegeCount
= 1;
286 priv
.Privileges
[0].Attributes
= SE_PRIVILEGE_ENABLED
;
288 if (!AdjustTokenPrivileges(token
, FALSE
, &priv
, 0, NULL
, 0)) {
289 error_setg(errp
, "unable to acquire requested privilege");
294 error_setg(errp
, "failed to open privilege token");
303 static void execute_async(DWORD
WINAPI (*func
)(LPVOID
), LPVOID opaque
,
306 HANDLE thread
= CreateThread(NULL
, 0, func
, opaque
, 0, NULL
);
308 error_setg(errp
, "failed to dispatch asynchronous command");
312 void qmp_guest_shutdown(const char *mode
, Error
**errp
)
314 Error
*local_err
= NULL
;
315 UINT shutdown_flag
= EWX_FORCE
;
317 slog("guest-shutdown called, mode: %s", mode
);
319 if (!mode
|| strcmp(mode
, "powerdown") == 0) {
320 shutdown_flag
|= EWX_POWEROFF
;
321 } else if (strcmp(mode
, "halt") == 0) {
322 shutdown_flag
|= EWX_SHUTDOWN
;
323 } else if (strcmp(mode
, "reboot") == 0) {
324 shutdown_flag
|= EWX_REBOOT
;
326 error_setg(errp
, QERR_INVALID_PARAMETER_VALUE
, "mode",
327 "'halt', 'powerdown', or 'reboot'");
331 /* Request a shutdown privilege, but try to shut down the system
333 acquire_privilege(SE_SHUTDOWN_NAME
, &local_err
);
335 error_propagate(errp
, local_err
);
339 if (!ExitWindowsEx(shutdown_flag
, SHTDN_REASON_FLAG_PLANNED
)) {
340 g_autofree gchar
*emsg
= g_win32_error_message(GetLastError());
341 slog("guest-shutdown failed: %s", emsg
);
342 error_setg_win32(errp
, GetLastError(), "guest-shutdown failed");
346 GuestFileRead
*guest_file_read_unsafe(GuestFileHandle
*gfh
,
347 int64_t count
, Error
**errp
)
349 GuestFileRead
*read_data
= NULL
;
355 buf
= g_malloc0(count
+ 1);
356 is_ok
= ReadFile(fh
, buf
, count
, &read_count
, NULL
);
358 error_setg_win32(errp
, GetLastError(), "failed to read file");
361 read_data
= g_new0(GuestFileRead
, 1);
362 read_data
->count
= (size_t)read_count
;
363 read_data
->eof
= read_count
== 0;
365 if (read_count
!= 0) {
366 read_data
->buf_b64
= g_base64_encode(buf
, read_count
);
374 GuestFileWrite
*qmp_guest_file_write(int64_t handle
, const char *buf_b64
,
375 bool has_count
, int64_t count
,
378 GuestFileWrite
*write_data
= NULL
;
383 GuestFileHandle
*gfh
= guest_file_handle_find(handle
, errp
);
390 buf
= qbase64_decode(buf_b64
, -1, &buf_len
, errp
);
397 } else if (count
< 0 || count
> buf_len
) {
398 error_setg(errp
, "value '%" PRId64
399 "' is invalid for argument count", count
);
403 is_ok
= WriteFile(fh
, buf
, count
, &write_count
, NULL
);
405 error_setg_win32(errp
, GetLastError(), "failed to write to file");
406 slog("guest-file-write-failed, handle: %" PRId64
, handle
);
408 write_data
= g_new0(GuestFileWrite
, 1);
409 write_data
->count
= (size_t) write_count
;
417 GuestFileSeek
*qmp_guest_file_seek(int64_t handle
, int64_t offset
,
418 GuestFileWhence
*whence_code
,
421 GuestFileHandle
*gfh
;
422 GuestFileSeek
*seek_data
;
424 LARGE_INTEGER new_pos
, off_pos
;
425 off_pos
.QuadPart
= offset
;
430 gfh
= guest_file_handle_find(handle
, errp
);
435 /* We stupidly exposed 'whence':'int' in our qapi */
436 whence
= ga_parse_whence(whence_code
, &err
);
438 error_propagate(errp
, err
);
443 res
= SetFilePointerEx(fh
, off_pos
, &new_pos
, whence
);
445 error_setg_win32(errp
, GetLastError(), "failed to seek file");
448 seek_data
= g_new0(GuestFileSeek
, 1);
449 seek_data
->position
= new_pos
.QuadPart
;
453 void qmp_guest_file_flush(int64_t handle
, Error
**errp
)
456 GuestFileHandle
*gfh
= guest_file_handle_find(handle
, errp
);
462 if (!FlushFileBuffers(fh
)) {
463 error_setg_win32(errp
, GetLastError(), "failed to flush file");
467 static GuestDiskBusType win2qemu
[] = {
468 [BusTypeUnknown
] = GUEST_DISK_BUS_TYPE_UNKNOWN
,
469 [BusTypeScsi
] = GUEST_DISK_BUS_TYPE_SCSI
,
470 [BusTypeAtapi
] = GUEST_DISK_BUS_TYPE_IDE
,
471 [BusTypeAta
] = GUEST_DISK_BUS_TYPE_IDE
,
472 [BusType1394
] = GUEST_DISK_BUS_TYPE_IEEE1394
,
473 [BusTypeSsa
] = GUEST_DISK_BUS_TYPE_SSA
,
474 [BusTypeFibre
] = GUEST_DISK_BUS_TYPE_SSA
,
475 [BusTypeUsb
] = GUEST_DISK_BUS_TYPE_USB
,
476 [BusTypeRAID
] = GUEST_DISK_BUS_TYPE_RAID
,
477 [BusTypeiScsi
] = GUEST_DISK_BUS_TYPE_ISCSI
,
478 [BusTypeSas
] = GUEST_DISK_BUS_TYPE_SAS
,
479 [BusTypeSata
] = GUEST_DISK_BUS_TYPE_SATA
,
480 [BusTypeSd
] = GUEST_DISK_BUS_TYPE_SD
,
481 [BusTypeMmc
] = GUEST_DISK_BUS_TYPE_MMC
,
482 [BusTypeVirtual
] = GUEST_DISK_BUS_TYPE_VIRTUAL
,
483 [BusTypeFileBackedVirtual
] = GUEST_DISK_BUS_TYPE_FILE_BACKED_VIRTUAL
,
485 * BusTypeSpaces currently is not supported
487 [BusTypeSpaces
] = GUEST_DISK_BUS_TYPE_UNKNOWN
,
488 [BusTypeNvme
] = GUEST_DISK_BUS_TYPE_NVME
,
491 static GuestDiskBusType
find_bus_type(STORAGE_BUS_TYPE bus
)
493 if (bus
>= ARRAY_SIZE(win2qemu
) || (int)bus
< 0) {
494 return GUEST_DISK_BUS_TYPE_UNKNOWN
;
496 return win2qemu
[(int)bus
];
499 static void get_pci_address_for_device(GuestPCIAddress
*pci
,
502 SP_DEVINFO_DATA dev_info_data
;
505 bool partial_pci
= false;
507 dev_info_data
.cbSize
= sizeof(SP_DEVINFO_DATA
);
510 SetupDiEnumDeviceInfo(dev_info
, j
, &dev_info_data
);
512 DWORD addr
, bus
, ui_slot
, type
;
514 size
= sizeof(DWORD
);
517 * There is no need to allocate buffer in the next functions. The
518 * size is known and ULONG according to
519 * https://msdn.microsoft.com/en-us/library/windows/hardware/ff543095(v=vs.85).aspx
521 if (!SetupDiGetDeviceRegistryProperty(
522 dev_info
, &dev_info_data
, SPDRP_BUSNUMBER
,
523 &type
, (PBYTE
)&bus
, size
, NULL
)) {
524 debug_error("failed to get PCI bus");
530 * The function retrieves the device's address. This value will be
531 * transformed into device function and number
533 if (!SetupDiGetDeviceRegistryProperty(
534 dev_info
, &dev_info_data
, SPDRP_ADDRESS
,
535 &type
, (PBYTE
)&addr
, size
, NULL
)) {
536 debug_error("failed to get PCI address");
542 * This call returns UINumber of DEVICE_CAPABILITIES structure.
543 * This number is typically a user-perceived slot number.
545 if (!SetupDiGetDeviceRegistryProperty(
546 dev_info
, &dev_info_data
, SPDRP_UI_NUMBER
,
547 &type
, (PBYTE
)&ui_slot
, size
, NULL
)) {
548 debug_error("failed to get PCI slot");
554 * SetupApi gives us the same information as driver with
555 * IoGetDeviceProperty. According to Microsoft:
557 * FunctionNumber = (USHORT)((propertyAddress) & 0x0000FFFF)
558 * DeviceNumber = (USHORT)(((propertyAddress) >> 16) & 0x0000FFFF)
559 * SPDRP_ADDRESS is propertyAddress, so we do the same.
561 * https://docs.microsoft.com/en-us/windows/desktop/api/setupapi/nf-setupapi-setupdigetdeviceregistrypropertya
570 func
= ((int)addr
== -1) ? -1 : addr
& 0x0000FFFF;
571 slot
= ((int)addr
== -1) ? -1 : (addr
>> 16) & 0x0000FFFF;
572 if ((int)ui_slot
!= slot
) {
573 g_debug("mismatch with reported slot values: %d vs %d",
577 pci
->slot
= (int)ui_slot
;
578 pci
->function
= func
;
585 static GuestPCIAddress
*get_empty_pci_address(void)
587 GuestPCIAddress
*pci
= NULL
;
589 pci
= g_malloc0(sizeof(*pci
));
597 static GuestPCIAddress
*get_pci_info(int number
, Error
**errp
)
599 HDEVINFO dev_info
= INVALID_HANDLE_VALUE
;
600 HDEVINFO parent_dev_info
= INVALID_HANDLE_VALUE
;
602 SP_DEVINFO_DATA dev_info_data
;
603 SP_DEVICE_INTERFACE_DATA dev_iface_data
;
606 GuestPCIAddress
*pci
= get_empty_pci_address();
608 dev_info
= SetupDiGetClassDevs(&GUID_DEVINTERFACE_DISK
, 0, 0,
609 DIGCF_PRESENT
| DIGCF_DEVICEINTERFACE
);
610 if (dev_info
== INVALID_HANDLE_VALUE
) {
611 error_setg_win32(errp
, GetLastError(), "failed to get devices tree");
615 g_debug("enumerating devices");
616 dev_info_data
.cbSize
= sizeof(SP_DEVINFO_DATA
);
617 dev_iface_data
.cbSize
= sizeof(SP_DEVICE_INTERFACE_DATA
);
618 for (i
= 0; SetupDiEnumDeviceInfo(dev_info
, i
, &dev_info_data
); i
++) {
619 g_autofree PSP_DEVICE_INTERFACE_DETAIL_DATA pdev_iface_detail_data
= NULL
;
620 STORAGE_DEVICE_NUMBER sdn
;
621 g_autofree
char *parent_dev_id
= NULL
;
622 SP_DEVINFO_DATA parent_dev_info_data
;
625 g_debug("getting device path");
626 if (SetupDiEnumDeviceInterfaces(dev_info
, &dev_info_data
,
627 &GUID_DEVINTERFACE_DISK
, 0,
629 if (!SetupDiGetDeviceInterfaceDetail(dev_info
, &dev_iface_data
,
630 pdev_iface_detail_data
,
633 if (GetLastError() == ERROR_INSUFFICIENT_BUFFER
) {
634 pdev_iface_detail_data
= g_malloc(size
);
635 pdev_iface_detail_data
->cbSize
=
636 sizeof(*pdev_iface_detail_data
);
638 error_setg_win32(errp
, GetLastError(),
639 "failed to get device interfaces");
644 if (!SetupDiGetDeviceInterfaceDetail(dev_info
, &dev_iface_data
,
645 pdev_iface_detail_data
,
648 // pdev_iface_detail_data already is allocated
649 error_setg_win32(errp
, GetLastError(),
650 "failed to get device interfaces");
654 dev_file
= CreateFile(pdev_iface_detail_data
->DevicePath
, 0,
655 FILE_SHARE_READ
, NULL
, OPEN_EXISTING
, 0,
658 if (!DeviceIoControl(dev_file
, IOCTL_STORAGE_GET_DEVICE_NUMBER
,
659 NULL
, 0, &sdn
, sizeof(sdn
), &size
, NULL
)) {
660 CloseHandle(dev_file
);
661 error_setg_win32(errp
, GetLastError(),
662 "failed to get device slot number");
666 CloseHandle(dev_file
);
667 if (sdn
.DeviceNumber
!= number
) {
671 error_setg_win32(errp
, GetLastError(),
672 "failed to get device interfaces");
676 g_debug("found device slot %d. Getting storage controller", number
);
679 DEVINST dev_inst
, parent_dev_inst
;
680 ULONG dev_id_size
= 0;
683 if (!SetupDiGetDeviceInstanceId(dev_info
, &dev_info_data
,
684 parent_dev_id
, size
, &size
)) {
685 if (GetLastError() == ERROR_INSUFFICIENT_BUFFER
) {
686 parent_dev_id
= g_malloc(size
);
688 error_setg_win32(errp
, GetLastError(),
689 "failed to get device instance ID");
694 if (!SetupDiGetDeviceInstanceId(dev_info
, &dev_info_data
,
695 parent_dev_id
, size
, &size
)) {
696 // parent_dev_id already is allocated
697 error_setg_win32(errp
, GetLastError(),
698 "failed to get device instance ID");
703 * CM API used here as opposed to
704 * SetupDiGetDeviceProperty(..., DEVPKEY_Device_Parent, ...)
705 * which exports are only available in mingw-w64 6+
707 cr
= CM_Locate_DevInst(&dev_inst
, parent_dev_id
, 0);
708 if (cr
!= CR_SUCCESS
) {
709 g_error("CM_Locate_DevInst failed with code %lx", cr
);
710 error_setg_win32(errp
, GetLastError(),
711 "failed to get device instance");
714 cr
= CM_Get_Parent(&parent_dev_inst
, dev_inst
, 0);
715 if (cr
!= CR_SUCCESS
) {
716 g_error("CM_Get_Parent failed with code %lx", cr
);
717 error_setg_win32(errp
, GetLastError(),
718 "failed to get parent device instance");
722 cr
= CM_Get_Device_ID_Size(&dev_id_size
, parent_dev_inst
, 0);
723 if (cr
!= CR_SUCCESS
) {
724 g_error("CM_Get_Device_ID_Size failed with code %lx", cr
);
725 error_setg_win32(errp
, GetLastError(),
726 "failed to get parent device ID length");
731 if (dev_id_size
> size
) {
732 g_free(parent_dev_id
);
733 parent_dev_id
= g_malloc(dev_id_size
);
736 cr
= CM_Get_Device_ID(parent_dev_inst
, parent_dev_id
, dev_id_size
,
738 if (cr
!= CR_SUCCESS
) {
739 g_error("CM_Get_Device_ID failed with code %lx", cr
);
740 error_setg_win32(errp
, GetLastError(),
741 "failed to get parent device ID");
746 g_debug("querying storage controller %s for PCI information",
749 SetupDiGetClassDevs(&GUID_DEVINTERFACE_STORAGEPORT
, parent_dev_id
,
750 NULL
, DIGCF_PRESENT
| DIGCF_DEVICEINTERFACE
);
752 if (parent_dev_info
== INVALID_HANDLE_VALUE
) {
753 error_setg_win32(errp
, GetLastError(),
754 "failed to get parent device");
758 parent_dev_info_data
.cbSize
= sizeof(SP_DEVINFO_DATA
);
759 if (!SetupDiEnumDeviceInfo(parent_dev_info
, 0, &parent_dev_info_data
)) {
760 error_setg_win32(errp
, GetLastError(),
761 "failed to get parent device data");
765 get_pci_address_for_device(pci
, parent_dev_info
);
771 if (parent_dev_info
!= INVALID_HANDLE_VALUE
) {
772 SetupDiDestroyDeviceInfoList(parent_dev_info
);
774 if (dev_info
!= INVALID_HANDLE_VALUE
) {
775 SetupDiDestroyDeviceInfoList(dev_info
);
780 static void get_disk_properties(HANDLE vol_h
, GuestDiskAddress
*disk
,
783 STORAGE_PROPERTY_QUERY query
;
784 STORAGE_DEVICE_DESCRIPTOR
*dev_desc
, buf
;
786 ULONG size
= sizeof(buf
);
789 query
.PropertyId
= StorageDeviceProperty
;
790 query
.QueryType
= PropertyStandardQuery
;
792 if (!DeviceIoControl(vol_h
, IOCTL_STORAGE_QUERY_PROPERTY
, &query
,
793 sizeof(STORAGE_PROPERTY_QUERY
), dev_desc
,
794 size
, &received
, NULL
)) {
795 error_setg_win32(errp
, GetLastError(), "failed to get bus type");
798 disk
->bus_type
= find_bus_type(dev_desc
->BusType
);
799 g_debug("bus type %d", disk
->bus_type
);
801 /* Query once more. Now with long enough buffer. */
802 size
= dev_desc
->Size
;
803 dev_desc
= g_malloc0(size
);
804 if (!DeviceIoControl(vol_h
, IOCTL_STORAGE_QUERY_PROPERTY
, &query
,
805 sizeof(STORAGE_PROPERTY_QUERY
), dev_desc
,
806 size
, &received
, NULL
)) {
807 error_setg_win32(errp
, GetLastError(), "failed to get serial number");
808 g_debug("failed to get serial number");
811 if (dev_desc
->SerialNumberOffset
> 0) {
815 if (dev_desc
->SerialNumberOffset
>= received
) {
816 error_setg(errp
, "failed to get serial number: offset outside the buffer");
817 g_debug("serial number offset outside the buffer");
820 serial
= (char *)dev_desc
+ dev_desc
->SerialNumberOffset
;
821 len
= received
- dev_desc
->SerialNumberOffset
;
822 g_debug("serial number \"%s\"", serial
);
824 disk
->serial
= g_strndup(serial
, len
);
833 static void get_single_disk_info(int disk_number
,
834 GuestDiskAddress
*disk
, Error
**errp
)
836 SCSI_ADDRESS addr
, *scsi_ad
;
839 Error
*local_err
= NULL
;
843 g_debug("getting disk info for: %s", disk
->dev
);
844 disk_h
= CreateFile(disk
->dev
, 0, FILE_SHARE_READ
, NULL
, OPEN_EXISTING
,
846 if (disk_h
== INVALID_HANDLE_VALUE
) {
847 error_setg_win32(errp
, GetLastError(), "failed to open disk");
851 get_disk_properties(disk_h
, disk
, &local_err
);
853 error_propagate(errp
, local_err
);
857 g_debug("bus type %d", disk
->bus_type
);
858 /* always set pci_controller as required by schema. get_pci_info() should
859 * report -1 values for non-PCI buses rather than fail. fail the command
860 * if that doesn't hold since that suggests some other unexpected
863 if (disk
->bus_type
== GUEST_DISK_BUS_TYPE_USB
) {
864 disk
->pci_controller
= get_empty_pci_address();
866 disk
->pci_controller
= get_pci_info(disk_number
, &local_err
);
868 error_propagate(errp
, local_err
);
872 if (disk
->bus_type
== GUEST_DISK_BUS_TYPE_SCSI
873 || disk
->bus_type
== GUEST_DISK_BUS_TYPE_IDE
874 || disk
->bus_type
== GUEST_DISK_BUS_TYPE_RAID
875 /* This bus type is not supported before Windows Server 2003 SP1 */
876 || disk
->bus_type
== GUEST_DISK_BUS_TYPE_SAS
878 /* We are able to use the same ioctls for different bus types
879 * according to Microsoft docs
880 * https://technet.microsoft.com/en-us/library/ee851589(v=ws.10).aspx */
881 g_debug("getting SCSI info");
882 if (DeviceIoControl(disk_h
, IOCTL_SCSI_GET_ADDRESS
, NULL
, 0, scsi_ad
,
883 sizeof(SCSI_ADDRESS
), &len
, NULL
)) {
884 disk
->unit
= addr
.Lun
;
885 disk
->target
= addr
.TargetId
;
886 disk
->bus
= addr
.PathId
;
888 /* We do not set error in this case, because we still have enough
889 * information about volume. */
897 /* VSS provider works with volumes, thus there is no difference if
898 * the volume consist of spanned disks. Info about the first disk in the
899 * volume is returned for the spanned disk group (LVM) */
900 static GuestDiskAddressList
*build_guest_disk_info(char *guid
, Error
**errp
)
902 Error
*local_err
= NULL
;
903 GuestDiskAddressList
*list
= NULL
;
904 GuestDiskAddress
*disk
= NULL
;
908 PVOLUME_DISK_EXTENTS extents
= NULL
;
910 /* strip final backslash */
911 char *name
= g_strdup(guid
);
912 if (g_str_has_suffix(name
, "\\")) {
913 name
[strlen(name
) - 1] = 0;
916 g_debug("opening %s", name
);
917 vol_h
= CreateFile(name
, 0, FILE_SHARE_READ
, NULL
, OPEN_EXISTING
,
919 if (vol_h
== INVALID_HANDLE_VALUE
) {
920 error_setg_win32(errp
, GetLastError(), "failed to open volume");
924 /* Get list of extents */
925 g_debug("getting disk extents");
926 size
= sizeof(VOLUME_DISK_EXTENTS
);
927 extents
= g_malloc0(size
);
928 if (!DeviceIoControl(vol_h
, IOCTL_VOLUME_GET_VOLUME_DISK_EXTENTS
, NULL
,
929 0, extents
, size
, &size
, NULL
)) {
930 DWORD last_err
= GetLastError();
931 if (last_err
== ERROR_MORE_DATA
) {
932 /* Try once more with big enough buffer */
933 size
= sizeof(VOLUME_DISK_EXTENTS
) +
934 (sizeof(DISK_EXTENT
) * (extents
->NumberOfDiskExtents
- 1));
936 extents
= g_malloc0(size
);
937 if (!DeviceIoControl(
938 vol_h
, IOCTL_VOLUME_GET_VOLUME_DISK_EXTENTS
, NULL
,
939 0, extents
, size
, NULL
, NULL
)) {
940 error_setg_win32(errp
, GetLastError(),
941 "failed to get disk extents");
944 } else if (last_err
== ERROR_INVALID_FUNCTION
) {
945 /* Possibly CD-ROM or a shared drive. Try to pass the volume */
946 g_debug("volume not on disk");
947 disk
= g_new0(GuestDiskAddress
, 1);
948 disk
->dev
= g_strdup(name
);
949 get_single_disk_info(0xffffffff, disk
, &local_err
);
951 g_debug("failed to get disk info, ignoring error: %s",
952 error_get_pretty(local_err
));
953 error_free(local_err
);
956 QAPI_LIST_PREPEND(list
, disk
);
960 error_setg_win32(errp
, GetLastError(),
961 "failed to get disk extents");
965 g_debug("Number of extents: %lu", extents
->NumberOfDiskExtents
);
967 /* Go through each extent */
968 for (i
= 0; i
< extents
->NumberOfDiskExtents
; i
++) {
969 disk
= g_new0(GuestDiskAddress
, 1);
971 /* Disk numbers directly correspond to numbers used in UNCs
973 * See documentation for DISK_EXTENT:
974 * https://docs.microsoft.com/en-us/windows/desktop/api/winioctl/ns-winioctl-_disk_extent
976 * See also Naming Files, Paths and Namespaces:
977 * https://docs.microsoft.com/en-us/windows/desktop/FileIO/naming-a-file#win32-device-namespaces
979 disk
->dev
= g_strdup_printf("\\\\.\\PhysicalDrive%lu",
980 extents
->Extents
[i
].DiskNumber
);
982 get_single_disk_info(extents
->Extents
[i
].DiskNumber
, disk
, &local_err
);
984 error_propagate(errp
, local_err
);
987 QAPI_LIST_PREPEND(list
, disk
);
993 if (vol_h
!= INVALID_HANDLE_VALUE
) {
996 qapi_free_GuestDiskAddress(disk
);
1003 GuestDiskInfoList
*qmp_guest_get_disks(Error
**errp
)
1005 GuestDiskInfoList
*ret
= NULL
;
1007 SP_DEVICE_INTERFACE_DATA dev_iface_data
;
1010 dev_info
= SetupDiGetClassDevs(&GUID_DEVINTERFACE_DISK
, 0, 0,
1011 DIGCF_PRESENT
| DIGCF_DEVICEINTERFACE
);
1012 if (dev_info
== INVALID_HANDLE_VALUE
) {
1013 error_setg_win32(errp
, GetLastError(), "failed to get device tree");
1017 g_debug("enumerating devices");
1018 dev_iface_data
.cbSize
= sizeof(SP_DEVICE_INTERFACE_DATA
);
1020 SetupDiEnumDeviceInterfaces(dev_info
, NULL
, &GUID_DEVINTERFACE_DISK
,
1021 i
, &dev_iface_data
);
1023 GuestDiskAddress
*address
= NULL
;
1024 GuestDiskInfo
*disk
= NULL
;
1025 Error
*local_err
= NULL
;
1026 g_autofree PSP_DEVICE_INTERFACE_DETAIL_DATA
1027 pdev_iface_detail_data
= NULL
;
1028 STORAGE_DEVICE_NUMBER sdn
;
1034 g_debug(" getting device path");
1035 for (attempt
= 0, result
= FALSE
; attempt
< 2 && !result
; attempt
++) {
1036 result
= SetupDiGetDeviceInterfaceDetail(dev_info
,
1037 &dev_iface_data
, pdev_iface_detail_data
, size
, &size
, NULL
);
1041 if (GetLastError() == ERROR_INSUFFICIENT_BUFFER
) {
1042 pdev_iface_detail_data
= g_realloc(pdev_iface_detail_data
,
1044 pdev_iface_detail_data
->cbSize
=
1045 sizeof(*pdev_iface_detail_data
);
1047 g_debug("failed to get device interface details");
1052 g_debug("skipping device");
1056 g_debug(" device: %s", pdev_iface_detail_data
->DevicePath
);
1057 dev_file
= CreateFile(pdev_iface_detail_data
->DevicePath
, 0,
1058 FILE_SHARE_READ
, NULL
, OPEN_EXISTING
, 0, NULL
);
1059 if (!DeviceIoControl(dev_file
, IOCTL_STORAGE_GET_DEVICE_NUMBER
,
1060 NULL
, 0, &sdn
, sizeof(sdn
), &size
, NULL
)) {
1061 CloseHandle(dev_file
);
1062 debug_error("failed to get storage device number");
1065 CloseHandle(dev_file
);
1067 disk
= g_new0(GuestDiskInfo
, 1);
1068 disk
->name
= g_strdup_printf("\\\\.\\PhysicalDrive%lu",
1071 g_debug(" number: %lu", sdn
.DeviceNumber
);
1072 address
= g_new0(GuestDiskAddress
, 1);
1073 address
->dev
= g_strdup(disk
->name
);
1074 get_single_disk_info(sdn
.DeviceNumber
, address
, &local_err
);
1076 g_debug("failed to get disk info: %s",
1077 error_get_pretty(local_err
));
1078 error_free(local_err
);
1079 qapi_free_GuestDiskAddress(address
);
1082 disk
->address
= address
;
1085 QAPI_LIST_PREPEND(ret
, disk
);
1088 SetupDiDestroyDeviceInfoList(dev_info
);
1092 static GuestFilesystemInfo
*build_guest_fsinfo(char *guid
, Error
**errp
)
1095 char mnt
, *mnt_point
;
1096 wchar_t wfs_name
[32];
1098 wchar_t vol_info
[MAX_PATH
+ 1];
1100 uint64_t i64FreeBytesToCaller
, i64TotalBytes
, i64FreeBytes
;
1101 GuestFilesystemInfo
*fs
= NULL
;
1102 HANDLE hLocalDiskHandle
= INVALID_HANDLE_VALUE
;
1104 GetVolumePathNamesForVolumeName(guid
, (LPCH
)&mnt
, 0, &info_size
);
1105 if (GetLastError() != ERROR_MORE_DATA
) {
1106 error_setg_win32(errp
, GetLastError(), "failed to get volume name");
1110 mnt_point
= g_malloc(info_size
+ 1);
1111 if (!GetVolumePathNamesForVolumeName(guid
, mnt_point
, info_size
,
1113 error_setg_win32(errp
, GetLastError(), "failed to get volume name");
1117 hLocalDiskHandle
= CreateFile(guid
, 0 , 0, NULL
, OPEN_EXISTING
,
1118 FILE_ATTRIBUTE_NORMAL
|
1119 FILE_FLAG_BACKUP_SEMANTICS
, NULL
);
1120 if (INVALID_HANDLE_VALUE
== hLocalDiskHandle
) {
1121 error_setg_win32(errp
, GetLastError(), "failed to get handle for volume");
1125 len
= strlen(mnt_point
);
1126 mnt_point
[len
] = '\\';
1127 mnt_point
[len
+ 1] = 0;
1129 if (!GetVolumeInformationByHandleW(hLocalDiskHandle
, vol_info
,
1130 sizeof(vol_info
), NULL
, NULL
, NULL
,
1131 (LPWSTR
) & wfs_name
, sizeof(wfs_name
))) {
1132 if (GetLastError() != ERROR_NOT_READY
) {
1133 error_setg_win32(errp
, GetLastError(), "failed to get volume info");
1138 fs
= g_malloc(sizeof(*fs
));
1139 fs
->name
= g_strdup(guid
);
1140 fs
->has_total_bytes
= false;
1141 fs
->has_total_bytes_privileged
= false;
1142 fs
->has_used_bytes
= false;
1144 fs
->mountpoint
= g_strdup("System Reserved");
1146 fs
->mountpoint
= g_strndup(mnt_point
, len
);
1147 if (GetDiskFreeSpaceEx(fs
->mountpoint
,
1148 (PULARGE_INTEGER
) & i64FreeBytesToCaller
,
1149 (PULARGE_INTEGER
) & i64TotalBytes
,
1150 (PULARGE_INTEGER
) & i64FreeBytes
)) {
1151 fs
->used_bytes
= i64TotalBytes
- i64FreeBytes
;
1152 fs
->total_bytes
= i64TotalBytes
;
1153 fs
->has_total_bytes
= true;
1154 fs
->has_used_bytes
= true;
1157 wcstombs(fs_name
, wfs_name
, sizeof(wfs_name
));
1158 fs
->type
= g_strdup(fs_name
);
1159 fs
->disk
= build_guest_disk_info(guid
, errp
);
1161 if (hLocalDiskHandle
!= INVALID_HANDLE_VALUE
) {
1162 CloseHandle(hLocalDiskHandle
);
1168 GuestFilesystemInfoList
*qmp_guest_get_fsinfo(Error
**errp
)
1171 GuestFilesystemInfoList
*ret
= NULL
;
1174 vol_h
= FindFirstVolume(guid
, sizeof(guid
));
1175 if (vol_h
== INVALID_HANDLE_VALUE
) {
1176 error_setg_win32(errp
, GetLastError(), "failed to find any volume");
1181 Error
*local_err
= NULL
;
1182 GuestFilesystemInfo
*info
= build_guest_fsinfo(guid
, &local_err
);
1184 g_debug("failed to get filesystem info, ignoring error: %s",
1185 error_get_pretty(local_err
));
1186 error_free(local_err
);
1189 QAPI_LIST_PREPEND(ret
, info
);
1190 } while (FindNextVolume(vol_h
, guid
, sizeof(guid
)));
1192 if (GetLastError() != ERROR_NO_MORE_FILES
) {
1193 error_setg_win32(errp
, GetLastError(), "failed to find next volume");
1196 FindVolumeClose(vol_h
);
1201 * Return status of freeze/thaw
1203 GuestFsfreezeStatus
qmp_guest_fsfreeze_status(Error
**errp
)
1205 if (!vss_initialized()) {
1206 error_setg(errp
, QERR_UNSUPPORTED
);
1210 if (ga_is_frozen(ga_state
)) {
1211 return GUEST_FSFREEZE_STATUS_FROZEN
;
1214 return GUEST_FSFREEZE_STATUS_THAWED
;
1218 * Freeze local file systems using Volume Shadow-copy Service.
1219 * The frozen state is limited for up to 10 seconds by VSS.
1221 int64_t qmp_guest_fsfreeze_freeze(Error
**errp
)
1223 return qmp_guest_fsfreeze_freeze_list(false, NULL
, errp
);
1226 int64_t qmp_guest_fsfreeze_freeze_list(bool has_mountpoints
,
1227 strList
*mountpoints
,
1231 Error
*local_err
= NULL
;
1233 if (!vss_initialized()) {
1234 error_setg(errp
, QERR_UNSUPPORTED
);
1238 slog("guest-fsfreeze called");
1240 /* cannot risk guest agent blocking itself on a write in this state */
1241 ga_set_frozen(ga_state
);
1243 qga_vss_fsfreeze(&i
, true, mountpoints
, &local_err
);
1245 error_propagate(errp
, local_err
);
1253 qmp_guest_fsfreeze_thaw(&local_err
);
1255 g_debug("cleanup thaw: %s", error_get_pretty(local_err
));
1256 error_free(local_err
);
1262 * Thaw local file systems using Volume Shadow-copy Service.
1264 int64_t qmp_guest_fsfreeze_thaw(Error
**errp
)
1268 if (!vss_initialized()) {
1269 error_setg(errp
, QERR_UNSUPPORTED
);
1273 qga_vss_fsfreeze(&i
, false, NULL
, errp
);
1275 ga_unset_frozen(ga_state
);
1279 static void guest_fsfreeze_cleanup(void)
1283 if (!vss_initialized()) {
1287 if (ga_is_frozen(ga_state
) == GUEST_FSFREEZE_STATUS_FROZEN
) {
1288 qmp_guest_fsfreeze_thaw(&err
);
1290 slog("failed to clean up frozen filesystems: %s",
1291 error_get_pretty(err
));
1300 * Walk list of mounted file systems in the guest, and discard unused
1303 GuestFilesystemTrimResponse
*
1304 qmp_guest_fstrim(bool has_minimum
, int64_t minimum
, Error
**errp
)
1306 GuestFilesystemTrimResponse
*resp
;
1308 WCHAR guid
[MAX_PATH
] = L
"";
1312 ZeroMemory(&osvi
, sizeof(OSVERSIONINFO
));
1313 osvi
.dwOSVersionInfoSize
= sizeof(OSVERSIONINFO
);
1314 GetVersionEx(&osvi
);
1315 win8_or_later
= (osvi
.dwMajorVersion
> 6 ||
1316 ((osvi
.dwMajorVersion
== 6) &&
1317 (osvi
.dwMinorVersion
>= 2)));
1318 if (!win8_or_later
) {
1319 error_setg(errp
, "fstrim is only supported for Win8+");
1323 handle
= FindFirstVolumeW(guid
, ARRAYSIZE(guid
));
1324 if (handle
== INVALID_HANDLE_VALUE
) {
1325 error_setg_win32(errp
, GetLastError(), "failed to find any volume");
1329 resp
= g_new0(GuestFilesystemTrimResponse
, 1);
1332 GuestFilesystemTrimResult
*res
;
1334 DWORD char_count
= 0;
1336 GError
*gerr
= NULL
;
1339 GetVolumePathNamesForVolumeNameW(guid
, NULL
, 0, &char_count
);
1341 if (GetLastError() != ERROR_MORE_DATA
) {
1344 if (GetDriveTypeW(guid
) != DRIVE_FIXED
) {
1348 uc_path
= g_new(WCHAR
, char_count
);
1349 if (!GetVolumePathNamesForVolumeNameW(guid
, uc_path
, char_count
,
1350 &char_count
) || !*uc_path
) {
1351 /* strange, but this condition could be faced even with size == 2 */
1356 res
= g_new0(GuestFilesystemTrimResult
, 1);
1358 path
= g_utf16_to_utf8(uc_path
, char_count
, NULL
, NULL
, &gerr
);
1363 res
->error
= g_strdup(gerr
->message
);
1370 QAPI_LIST_PREPEND(resp
->paths
, res
);
1372 memset(argv
, 0, sizeof(argv
));
1373 argv
[0] = (gchar
*)"defrag.exe";
1374 argv
[1] = (gchar
*)"/L";
1377 if (!g_spawn_sync(NULL
, argv
, NULL
, G_SPAWN_SEARCH_PATH
, NULL
, NULL
,
1378 &out
/* stdout */, NULL
/* stdin */,
1380 res
->error
= g_strdup(gerr
->message
);
1383 /* defrag.exe is UGLY. Exit code is ALWAYS zero.
1384 Error is reported in the output with something like
1385 (x89000020) etc code in the stdout */
1388 gchar
**lines
= g_strsplit(out
, "\r\n", 0);
1391 for (i
= 0; lines
[i
] != NULL
; i
++) {
1392 if (g_strstr_len(lines
[i
], -1, "(0x") == NULL
) {
1395 res
->error
= g_strdup(lines
[i
]);
1400 } while (FindNextVolumeW(handle
, guid
, ARRAYSIZE(guid
)));
1402 FindVolumeClose(handle
);
1407 GUEST_SUSPEND_MODE_DISK
,
1408 GUEST_SUSPEND_MODE_RAM
1411 static void check_suspend_mode(GuestSuspendMode mode
, Error
**errp
)
1413 SYSTEM_POWER_CAPABILITIES sys_pwr_caps
;
1415 ZeroMemory(&sys_pwr_caps
, sizeof(sys_pwr_caps
));
1416 if (!GetPwrCapabilities(&sys_pwr_caps
)) {
1417 error_setg(errp
, "failed to determine guest suspend capabilities");
1422 case GUEST_SUSPEND_MODE_DISK
:
1423 if (!sys_pwr_caps
.SystemS4
) {
1424 error_setg(errp
, "suspend-to-disk not supported by OS");
1427 case GUEST_SUSPEND_MODE_RAM
:
1428 if (!sys_pwr_caps
.SystemS3
) {
1429 error_setg(errp
, "suspend-to-ram not supported by OS");
1437 static DWORD WINAPI
do_suspend(LPVOID opaque
)
1439 GuestSuspendMode
*mode
= opaque
;
1442 if (!SetSuspendState(*mode
== GUEST_SUSPEND_MODE_DISK
, TRUE
, TRUE
)) {
1443 g_autofree gchar
*emsg
= g_win32_error_message(GetLastError());
1444 slog("failed to suspend guest: %s", emsg
);
1451 void qmp_guest_suspend_disk(Error
**errp
)
1453 Error
*local_err
= NULL
;
1454 GuestSuspendMode
*mode
= g_new(GuestSuspendMode
, 1);
1456 *mode
= GUEST_SUSPEND_MODE_DISK
;
1457 check_suspend_mode(*mode
, &local_err
);
1461 acquire_privilege(SE_SHUTDOWN_NAME
, &local_err
);
1465 execute_async(do_suspend
, mode
, &local_err
);
1469 error_propagate(errp
, local_err
);
1474 void qmp_guest_suspend_ram(Error
**errp
)
1476 Error
*local_err
= NULL
;
1477 GuestSuspendMode
*mode
= g_new(GuestSuspendMode
, 1);
1479 *mode
= GUEST_SUSPEND_MODE_RAM
;
1480 check_suspend_mode(*mode
, &local_err
);
1484 acquire_privilege(SE_SHUTDOWN_NAME
, &local_err
);
1488 execute_async(do_suspend
, mode
, &local_err
);
1492 error_propagate(errp
, local_err
);
1497 void qmp_guest_suspend_hybrid(Error
**errp
)
1499 error_setg(errp
, QERR_UNSUPPORTED
);
1502 static IP_ADAPTER_ADDRESSES
*guest_get_adapters_addresses(Error
**errp
)
1504 IP_ADAPTER_ADDRESSES
*adptr_addrs
= NULL
;
1505 ULONG adptr_addrs_len
= 0;
1508 /* Call the first time to get the adptr_addrs_len. */
1509 GetAdaptersAddresses(AF_UNSPEC
, GAA_FLAG_INCLUDE_PREFIX
,
1510 NULL
, adptr_addrs
, &adptr_addrs_len
);
1512 adptr_addrs
= g_malloc(adptr_addrs_len
);
1513 ret
= GetAdaptersAddresses(AF_UNSPEC
, GAA_FLAG_INCLUDE_PREFIX
,
1514 NULL
, adptr_addrs
, &adptr_addrs_len
);
1515 if (ret
!= ERROR_SUCCESS
) {
1516 error_setg_win32(errp
, ret
, "failed to get adapters addresses");
1517 g_free(adptr_addrs
);
1523 static char *guest_wctomb_dup(WCHAR
*wstr
)
1528 str_size
= WideCharToMultiByte(CP_UTF8
, 0, wstr
, -1, NULL
, 0, NULL
, NULL
);
1529 /* add 1 to str_size for NULL terminator */
1530 str
= g_malloc(str_size
+ 1);
1531 WideCharToMultiByte(CP_UTF8
, 0, wstr
, -1, str
, str_size
, NULL
, NULL
);
1535 static char *guest_addr_to_str(IP_ADAPTER_UNICAST_ADDRESS
*ip_addr
,
1538 char addr_str
[INET6_ADDRSTRLEN
+ INET_ADDRSTRLEN
];
1542 if (ip_addr
->Address
.lpSockaddr
->sa_family
== AF_INET
||
1543 ip_addr
->Address
.lpSockaddr
->sa_family
== AF_INET6
) {
1544 len
= sizeof(addr_str
);
1545 ret
= WSAAddressToString(ip_addr
->Address
.lpSockaddr
,
1546 ip_addr
->Address
.iSockaddrLength
,
1551 error_setg_win32(errp
, WSAGetLastError(),
1552 "failed address presentation form conversion");
1555 return g_strdup(addr_str
);
1560 static int64_t guest_ip_prefix(IP_ADAPTER_UNICAST_ADDRESS
*ip_addr
)
1562 /* For Windows Vista/2008 and newer, use the OnLinkPrefixLength
1563 * field to obtain the prefix.
1565 return ip_addr
->OnLinkPrefixLength
;
1568 #define INTERFACE_PATH_BUF_SZ 512
1570 static DWORD
get_interface_index(const char *guid
)
1574 wchar_t wbuf
[INTERFACE_PATH_BUF_SZ
];
1575 snwprintf(wbuf
, INTERFACE_PATH_BUF_SZ
, L
"\\device\\tcpip_%s", guid
);
1576 wbuf
[INTERFACE_PATH_BUF_SZ
- 1] = 0;
1577 status
= GetAdapterIndex (wbuf
, &index
);
1578 if (status
!= NO_ERROR
) {
1585 typedef NETIOAPI_API (WINAPI
*GetIfEntry2Func
)(PMIB_IF_ROW2 Row
);
1587 static int guest_get_network_stats(const char *name
,
1588 GuestNetworkInterfaceStat
*stats
)
1590 OSVERSIONINFO os_ver
;
1592 os_ver
.dwOSVersionInfoSize
= sizeof(OSVERSIONINFO
);
1593 GetVersionEx(&os_ver
);
1594 if (os_ver
.dwMajorVersion
>= 6) {
1595 MIB_IF_ROW2 a_mid_ifrow
;
1596 GetIfEntry2Func getifentry2_ex
;
1598 HMODULE module
= GetModuleHandle("iphlpapi");
1599 PVOID func
= GetProcAddress(module
, "GetIfEntry2");
1605 getifentry2_ex
= (GetIfEntry2Func
)func
;
1606 if_index
= get_interface_index(name
);
1607 if (if_index
== (DWORD
)~0) {
1611 memset(&a_mid_ifrow
, 0, sizeof(a_mid_ifrow
));
1612 a_mid_ifrow
.InterfaceIndex
= if_index
;
1613 if (NO_ERROR
== getifentry2_ex(&a_mid_ifrow
)) {
1614 stats
->rx_bytes
= a_mid_ifrow
.InOctets
;
1615 stats
->rx_packets
= a_mid_ifrow
.InUcastPkts
;
1616 stats
->rx_errs
= a_mid_ifrow
.InErrors
;
1617 stats
->rx_dropped
= a_mid_ifrow
.InDiscards
;
1618 stats
->tx_bytes
= a_mid_ifrow
.OutOctets
;
1619 stats
->tx_packets
= a_mid_ifrow
.OutUcastPkts
;
1620 stats
->tx_errs
= a_mid_ifrow
.OutErrors
;
1621 stats
->tx_dropped
= a_mid_ifrow
.OutDiscards
;
1628 GuestNetworkInterfaceList
*qmp_guest_network_get_interfaces(Error
**errp
)
1630 IP_ADAPTER_ADDRESSES
*adptr_addrs
, *addr
;
1631 IP_ADAPTER_UNICAST_ADDRESS
*ip_addr
= NULL
;
1632 GuestNetworkInterfaceList
*head
= NULL
, **tail
= &head
;
1633 GuestIpAddressList
*head_addr
, **tail_addr
;
1634 GuestNetworkInterface
*info
;
1635 GuestNetworkInterfaceStat
*interface_stat
= NULL
;
1636 GuestIpAddress
*address_item
= NULL
;
1637 unsigned char *mac_addr
;
1643 adptr_addrs
= guest_get_adapters_addresses(errp
);
1644 if (adptr_addrs
== NULL
) {
1648 /* Make WSA APIs available. */
1649 wsa_version
= MAKEWORD(2, 2);
1650 ret
= WSAStartup(wsa_version
, &wsa_data
);
1652 error_setg_win32(errp
, ret
, "failed socket startup");
1656 for (addr
= adptr_addrs
; addr
; addr
= addr
->Next
) {
1657 info
= g_malloc0(sizeof(*info
));
1659 QAPI_LIST_APPEND(tail
, info
);
1661 info
->name
= guest_wctomb_dup(addr
->FriendlyName
);
1663 if (addr
->PhysicalAddressLength
!= 0) {
1664 mac_addr
= addr
->PhysicalAddress
;
1666 info
->hardware_address
=
1667 g_strdup_printf("%02x:%02x:%02x:%02x:%02x:%02x",
1668 (int) mac_addr
[0], (int) mac_addr
[1],
1669 (int) mac_addr
[2], (int) mac_addr
[3],
1670 (int) mac_addr
[4], (int) mac_addr
[5]);
1674 tail_addr
= &head_addr
;
1675 for (ip_addr
= addr
->FirstUnicastAddress
;
1677 ip_addr
= ip_addr
->Next
) {
1678 addr_str
= guest_addr_to_str(ip_addr
, errp
);
1679 if (addr_str
== NULL
) {
1683 address_item
= g_malloc0(sizeof(*address_item
));
1685 QAPI_LIST_APPEND(tail_addr
, address_item
);
1687 address_item
->ip_address
= addr_str
;
1688 address_item
->prefix
= guest_ip_prefix(ip_addr
);
1689 if (ip_addr
->Address
.lpSockaddr
->sa_family
== AF_INET
) {
1690 address_item
->ip_address_type
= GUEST_IP_ADDRESS_TYPE_IPV4
;
1691 } else if (ip_addr
->Address
.lpSockaddr
->sa_family
== AF_INET6
) {
1692 address_item
->ip_address_type
= GUEST_IP_ADDRESS_TYPE_IPV6
;
1696 info
->has_ip_addresses
= true;
1697 info
->ip_addresses
= head_addr
;
1699 if (!info
->statistics
) {
1700 interface_stat
= g_malloc0(sizeof(*interface_stat
));
1701 if (guest_get_network_stats(addr
->AdapterName
, interface_stat
)
1703 g_free(interface_stat
);
1705 info
->statistics
= interface_stat
;
1711 g_free(adptr_addrs
);
1715 static int64_t filetime_to_ns(const FILETIME
*tf
)
1717 return ((((int64_t)tf
->dwHighDateTime
<< 32) | tf
->dwLowDateTime
)
1718 - W32_FT_OFFSET
) * 100;
1721 void qmp_guest_set_time(bool has_time
, int64_t time_ns
, Error
**errp
)
1723 Error
*local_err
= NULL
;
1729 /* Unfortunately, Windows libraries don't provide an easy way to access
1732 * https://msdn.microsoft.com/en-us/library/aa908981.aspx
1734 * Instead, a workaround is to use the Windows win32tm command to
1735 * resync the time using the Windows Time service.
1740 HRESULT hr
= system("w32tm /resync /nowait");
1742 if (GetLastError() != 0) {
1743 strerror_s((LPTSTR
) & msg_buffer
, 0, errno
);
1744 error_setg(errp
, "system(...) failed: %s", (LPCTSTR
)msg_buffer
);
1745 } else if (hr
!= 0) {
1746 if (hr
== HRESULT_FROM_WIN32(ERROR_SERVICE_NOT_ACTIVE
)) {
1747 error_setg(errp
, "Windows Time service not running on the "
1750 if (!FormatMessage(FORMAT_MESSAGE_ALLOCATE_BUFFER
|
1751 FORMAT_MESSAGE_FROM_SYSTEM
|
1752 FORMAT_MESSAGE_IGNORE_INSERTS
, NULL
,
1753 (DWORD
)hr
, MAKELANGID(LANG_NEUTRAL
,
1754 SUBLANG_DEFAULT
), (LPTSTR
) & msg_buffer
, 0,
1756 error_setg(errp
, "w32tm failed with error (0x%lx), couldn'"
1757 "t retrieve error message", hr
);
1759 error_setg(errp
, "w32tm failed with error (0x%lx): %s", hr
,
1760 (LPCTSTR
)msg_buffer
);
1761 LocalFree(msg_buffer
);
1764 } else if (!InternetGetConnectedState(&ret_flags
, 0)) {
1765 error_setg(errp
, "No internet connection on guest, sync not "
1771 /* Validate time passed by user. */
1772 if (time_ns
< 0 || time_ns
/ 100 > INT64_MAX
- W32_FT_OFFSET
) {
1773 error_setg(errp
, "Time %" PRId64
"is invalid", time_ns
);
1777 time
= time_ns
/ 100 + W32_FT_OFFSET
;
1779 tf
.dwLowDateTime
= (DWORD
) time
;
1780 tf
.dwHighDateTime
= (DWORD
) (time
>> 32);
1782 if (!FileTimeToSystemTime(&tf
, &ts
)) {
1783 error_setg(errp
, "Failed to convert system time %d",
1784 (int)GetLastError());
1788 acquire_privilege(SE_SYSTEMTIME_NAME
, &local_err
);
1790 error_propagate(errp
, local_err
);
1794 if (!SetSystemTime(&ts
)) {
1795 error_setg(errp
, "Failed to set time to guest: %d", (int)GetLastError());
1800 GuestLogicalProcessorList
*qmp_guest_get_vcpus(Error
**errp
)
1802 PSYSTEM_LOGICAL_PROCESSOR_INFORMATION pslpi
, ptr
;
1804 GuestLogicalProcessorList
*head
, **tail
;
1805 Error
*local_err
= NULL
;
1814 if ((GetLogicalProcessorInformation(pslpi
, &length
) == FALSE
) &&
1815 (GetLastError() == ERROR_INSUFFICIENT_BUFFER
) &&
1816 (length
> sizeof(SYSTEM_LOGICAL_PROCESSOR_INFORMATION
))) {
1817 ptr
= pslpi
= g_malloc0(length
);
1818 if (GetLogicalProcessorInformation(pslpi
, &length
) == FALSE
) {
1819 error_setg(&local_err
, "Failed to get processor information: %d",
1820 (int)GetLastError());
1823 error_setg(&local_err
,
1824 "Failed to get processor information buffer length: %d",
1825 (int)GetLastError());
1828 while ((local_err
== NULL
) && (length
> 0)) {
1829 if (pslpi
->Relationship
== RelationProcessorCore
) {
1830 ULONG_PTR cpu_bits
= pslpi
->ProcessorMask
;
1832 while (cpu_bits
> 0) {
1833 if (!!(cpu_bits
& 1)) {
1834 GuestLogicalProcessor
*vcpu
;
1836 vcpu
= g_malloc0(sizeof *vcpu
);
1837 vcpu
->logical_id
= current
++;
1838 vcpu
->online
= true;
1839 vcpu
->has_can_offline
= true;
1841 QAPI_LIST_APPEND(tail
, vcpu
);
1846 length
-= sizeof(SYSTEM_LOGICAL_PROCESSOR_INFORMATION
);
1847 pslpi
++; /* next entry */
1852 if (local_err
== NULL
) {
1856 /* there's no guest with zero VCPUs */
1857 error_setg(&local_err
, "Guest reported zero VCPUs");
1860 qapi_free_GuestLogicalProcessorList(head
);
1861 error_propagate(errp
, local_err
);
1865 int64_t qmp_guest_set_vcpus(GuestLogicalProcessorList
*vcpus
, Error
**errp
)
1867 error_setg(errp
, QERR_UNSUPPORTED
);
1872 get_net_error_message(gint error
)
1874 HMODULE module
= NULL
;
1875 gchar
*retval
= NULL
;
1876 wchar_t *msg
= NULL
;
1880 flags
= FORMAT_MESSAGE_ALLOCATE_BUFFER
|
1881 FORMAT_MESSAGE_IGNORE_INSERTS
|
1882 FORMAT_MESSAGE_FROM_SYSTEM
;
1884 if (error
>= NERR_BASE
&& error
<= MAX_NERR
) {
1885 module
= LoadLibraryExW(L
"netmsg.dll", NULL
, LOAD_LIBRARY_AS_DATAFILE
);
1887 if (module
!= NULL
) {
1888 flags
|= FORMAT_MESSAGE_FROM_HMODULE
;
1892 FormatMessageW(flags
, module
, error
, 0, (LPWSTR
)&msg
, 0, NULL
);
1895 nchars
= wcslen(msg
);
1898 msg
[nchars
- 1] == L
'\n' &&
1899 msg
[nchars
- 2] == L
'\r') {
1900 msg
[nchars
- 2] = L
'\0';
1903 retval
= g_utf16_to_utf8(msg
, -1, NULL
, NULL
, NULL
);
1908 if (module
!= NULL
) {
1909 FreeLibrary(module
);
1915 void qmp_guest_set_user_password(const char *username
,
1916 const char *password
,
1921 char *rawpasswddata
= NULL
;
1922 size_t rawpasswdlen
;
1923 wchar_t *user
= NULL
, *wpass
= NULL
;
1924 USER_INFO_1003 pi1003
= { 0, };
1925 GError
*gerr
= NULL
;
1928 error_setg(errp
, QERR_UNSUPPORTED
);
1932 rawpasswddata
= (char *)qbase64_decode(password
, -1, &rawpasswdlen
, errp
);
1933 if (!rawpasswddata
) {
1936 rawpasswddata
= g_renew(char, rawpasswddata
, rawpasswdlen
+ 1);
1937 rawpasswddata
[rawpasswdlen
] = '\0';
1939 user
= g_utf8_to_utf16(username
, -1, NULL
, NULL
, &gerr
);
1941 error_setg(errp
, "can't convert 'username' to UTF-16: %s",
1947 wpass
= g_utf8_to_utf16(rawpasswddata
, -1, NULL
, NULL
, &gerr
);
1949 error_setg(errp
, "can't convert 'password' to UTF-16: %s",
1955 pi1003
.usri1003_password
= wpass
;
1956 nas
= NetUserSetInfo(NULL
, user
,
1957 1003, (LPBYTE
)&pi1003
,
1960 if (nas
!= NERR_Success
) {
1961 gchar
*msg
= get_net_error_message(nas
);
1962 error_setg(errp
, "failed to set password: %s", msg
);
1969 g_free(rawpasswddata
);
1972 GuestMemoryBlockList
*qmp_guest_get_memory_blocks(Error
**errp
)
1974 error_setg(errp
, QERR_UNSUPPORTED
);
1978 GuestMemoryBlockResponseList
*
1979 qmp_guest_set_memory_blocks(GuestMemoryBlockList
*mem_blks
, Error
**errp
)
1981 error_setg(errp
, QERR_UNSUPPORTED
);
1985 GuestMemoryBlockInfo
*qmp_guest_get_memory_block_info(Error
**errp
)
1987 error_setg(errp
, QERR_UNSUPPORTED
);
1991 /* add unsupported commands to the list of blocked RPCs */
1992 GList
*ga_command_init_blockedrpcs(GList
*blockedrpcs
)
1994 const char *list_unsupported
[] = {
1995 "guest-suspend-hybrid",
1997 "guest-get-memory-blocks", "guest-set-memory-blocks",
1998 "guest-get-memory-block-size", "guest-get-memory-block-info",
2000 char **p
= (char **)list_unsupported
;
2003 blockedrpcs
= g_list_append(blockedrpcs
, g_strdup(*p
++));
2006 if (!vss_init(true)) {
2007 g_debug("vss_init failed, vss commands are going to be disabled");
2008 const char *list
[] = {
2009 "guest-get-fsinfo", "guest-fsfreeze-status",
2010 "guest-fsfreeze-freeze", "guest-fsfreeze-thaw", NULL
};
2014 blockedrpcs
= g_list_append(blockedrpcs
, g_strdup(*p
++));
2021 /* register init/cleanup routines for stateful command groups */
2022 void ga_command_state_init(GAState
*s
, GACommandState
*cs
)
2024 if (!vss_initialized()) {
2025 ga_command_state_add(cs
, NULL
, guest_fsfreeze_cleanup
);
2029 /* MINGW is missing two fields: IncomingFrames & OutgoingFrames */
2030 typedef struct _GA_WTSINFOA
{
2031 WTS_CONNECTSTATE_CLASS State
;
2033 DWORD IncomingBytes
;
2034 DWORD OutgoingBytes
;
2035 DWORD IncomingFrames
;
2036 DWORD OutgoingFrames
;
2037 DWORD IncomingCompressedBytes
;
2038 DWORD OutgoingCompressedBy
;
2039 CHAR WinStationName
[WINSTATIONNAME_LENGTH
];
2040 CHAR Domain
[DOMAIN_LENGTH
];
2041 CHAR UserName
[USERNAME_LENGTH
+ 1];
2042 LARGE_INTEGER ConnectTime
;
2043 LARGE_INTEGER DisconnectTime
;
2044 LARGE_INTEGER LastInputTime
;
2045 LARGE_INTEGER LogonTime
;
2046 LARGE_INTEGER CurrentTime
;
2050 GuestUserList
*qmp_guest_get_users(Error
**errp
)
2052 #define QGA_NANOSECONDS 10000000
2054 GHashTable
*cache
= NULL
;
2055 GuestUserList
*head
= NULL
, **tail
= &head
;
2057 DWORD buffer_size
= 0, count
= 0, i
= 0;
2058 GA_WTSINFOA
*info
= NULL
;
2059 WTS_SESSION_INFOA
*entries
= NULL
;
2060 GuestUser
*user
= NULL
;
2061 gpointer value
= NULL
;
2063 double login_time
= 0;
2065 cache
= g_hash_table_new(g_str_hash
, g_str_equal
);
2067 if (WTSEnumerateSessionsA(NULL
, 0, 1, &entries
, &count
)) {
2068 for (i
= 0; i
< count
; ++i
) {
2071 if (WTSQuerySessionInformationA(
2073 entries
[i
].SessionId
,
2079 if (strlen(info
->UserName
) == 0) {
2080 WTSFreeMemory(info
);
2084 login
= info
->LogonTime
.QuadPart
;
2085 login
-= W32_FT_OFFSET
;
2086 login_time
= ((double)login
) / QGA_NANOSECONDS
;
2088 if (g_hash_table_contains(cache
, info
->UserName
)) {
2089 value
= g_hash_table_lookup(cache
, info
->UserName
);
2090 user
= (GuestUser
*)value
;
2091 if (user
->login_time
> login_time
) {
2092 user
->login_time
= login_time
;
2095 user
= g_new0(GuestUser
, 1);
2097 user
->user
= g_strdup(info
->UserName
);
2098 user
->domain
= g_strdup(info
->Domain
);
2100 user
->login_time
= login_time
;
2102 g_hash_table_add(cache
, user
->user
);
2104 QAPI_LIST_APPEND(tail
, user
);
2107 WTSFreeMemory(info
);
2109 WTSFreeMemory(entries
);
2111 g_hash_table_destroy(cache
);
2115 typedef struct _ga_matrix_lookup_t
{
2118 const char *version
;
2119 const char *version_id
;
2120 } ga_matrix_lookup_t
;
2122 static const ga_matrix_lookup_t WIN_CLIENT_VERSION_MATRIX
[] = {
2123 { 5, 0, "Microsoft Windows 2000", "2000"},
2124 { 5, 1, "Microsoft Windows XP", "xp"},
2125 { 6, 0, "Microsoft Windows Vista", "vista"},
2126 { 6, 1, "Microsoft Windows 7" "7"},
2127 { 6, 2, "Microsoft Windows 8", "8"},
2128 { 6, 3, "Microsoft Windows 8.1", "8.1"},
2132 static const ga_matrix_lookup_t WIN_SERVER_VERSION_MATRIX
[] = {
2133 { 5, 2, "Microsoft Windows Server 2003", "2003"},
2134 { 6, 0, "Microsoft Windows Server 2008", "2008"},
2135 { 6, 1, "Microsoft Windows Server 2008 R2", "2008r2"},
2136 { 6, 2, "Microsoft Windows Server 2012", "2012"},
2137 { 6, 3, "Microsoft Windows Server 2012 R2", "2012r2"},
2141 typedef struct _ga_win_10_0_t
{
2143 const char *version
;
2144 const char *version_id
;
2147 static const ga_win_10_0_t WIN_10_0_SERVER_VERSION_MATRIX
[] = {
2148 {14393, "Microsoft Windows Server 2016", "2016"},
2149 {17763, "Microsoft Windows Server 2019", "2019"},
2150 {20344, "Microsoft Windows Server 2022", "2022"},
2151 {26040, "MIcrosoft Windows Server 2025", "2025"},
2155 static const ga_win_10_0_t WIN_10_0_CLIENT_VERSION_MATRIX
[] = {
2156 {10240, "Microsoft Windows 10", "10"},
2157 {22000, "Microsoft Windows 11", "11"},
2161 static void ga_get_win_version(RTL_OSVERSIONINFOEXW
*info
, Error
**errp
)
2163 typedef NTSTATUS(WINAPI
*rtl_get_version_t
)(
2164 RTL_OSVERSIONINFOEXW
*os_version_info_ex
);
2166 info
->dwOSVersionInfoSize
= sizeof(RTL_OSVERSIONINFOEXW
);
2168 HMODULE module
= GetModuleHandle("ntdll");
2169 PVOID fun
= GetProcAddress(module
, "RtlGetVersion");
2171 error_setg(errp
, "Failed to get address of RtlGetVersion");
2175 rtl_get_version_t rtl_get_version
= (rtl_get_version_t
)fun
;
2176 rtl_get_version(info
);
2180 static char *ga_get_win_name(const OSVERSIONINFOEXW
*os_version
, bool id
)
2182 DWORD major
= os_version
->dwMajorVersion
;
2183 DWORD minor
= os_version
->dwMinorVersion
;
2184 DWORD build
= os_version
->dwBuildNumber
;
2185 int tbl_idx
= (os_version
->wProductType
!= VER_NT_WORKSTATION
);
2186 const ga_matrix_lookup_t
*table
= tbl_idx
?
2187 WIN_SERVER_VERSION_MATRIX
: WIN_CLIENT_VERSION_MATRIX
;
2188 const ga_win_10_0_t
*win_10_0_table
= tbl_idx
?
2189 WIN_10_0_SERVER_VERSION_MATRIX
: WIN_10_0_CLIENT_VERSION_MATRIX
;
2190 const ga_win_10_0_t
*win_10_0_version
= NULL
;
2191 while (table
->version
!= NULL
) {
2192 if (major
== 10 && minor
== 0) {
2193 while (win_10_0_table
->version
!= NULL
) {
2194 if (build
>= win_10_0_table
->first_build
) {
2195 win_10_0_version
= win_10_0_table
;
2199 if (win_10_0_table
) {
2201 return g_strdup(win_10_0_version
->version_id
);
2203 return g_strdup(win_10_0_version
->version
);
2206 } else if (major
== table
->major
&& minor
== table
->minor
) {
2208 return g_strdup(table
->version_id
);
2210 return g_strdup(table
->version
);
2215 slog("failed to lookup Windows version: major=%lu, minor=%lu",
2217 return g_strdup("N/A");
2220 static char *ga_get_win_product_name(Error
**errp
)
2222 HKEY key
= INVALID_HANDLE_VALUE
;
2224 char *result
= g_malloc0(size
);
2225 LONG err
= ERROR_SUCCESS
;
2227 err
= RegOpenKeyA(HKEY_LOCAL_MACHINE
,
2228 "SOFTWARE\\Microsoft\\Windows NT\\CurrentVersion",
2230 if (err
!= ERROR_SUCCESS
) {
2231 error_setg_win32(errp
, err
, "failed to open registry key");
2236 err
= RegQueryValueExA(key
, "ProductName", NULL
, NULL
,
2237 (LPBYTE
)result
, &size
);
2238 if (err
== ERROR_MORE_DATA
) {
2239 slog("ProductName longer than expected (%lu bytes), retrying",
2244 result
= g_malloc0(size
);
2245 err
= RegQueryValueExA(key
, "ProductName", NULL
, NULL
,
2246 (LPBYTE
)result
, &size
);
2249 if (err
!= ERROR_SUCCESS
) {
2250 error_setg_win32(errp
, err
, "failed to retrieve ProductName");
2258 if (key
!= INVALID_HANDLE_VALUE
) {
2265 static char *ga_get_current_arch(void)
2268 GetNativeSystemInfo(&info
);
2269 char *result
= NULL
;
2270 switch (info
.wProcessorArchitecture
) {
2271 case PROCESSOR_ARCHITECTURE_AMD64
:
2272 result
= g_strdup("x86_64");
2274 case PROCESSOR_ARCHITECTURE_ARM
:
2275 result
= g_strdup("arm");
2277 case PROCESSOR_ARCHITECTURE_IA64
:
2278 result
= g_strdup("ia64");
2280 case PROCESSOR_ARCHITECTURE_INTEL
:
2281 result
= g_strdup("x86");
2283 case PROCESSOR_ARCHITECTURE_UNKNOWN
:
2285 slog("unknown processor architecture 0x%0x",
2286 info
.wProcessorArchitecture
);
2287 result
= g_strdup("unknown");
2293 GuestOSInfo
*qmp_guest_get_osinfo(Error
**errp
)
2295 Error
*local_err
= NULL
;
2296 OSVERSIONINFOEXW os_version
= {0};
2301 ga_get_win_version(&os_version
, &local_err
);
2303 error_propagate(errp
, local_err
);
2307 server
= os_version
.wProductType
!= VER_NT_WORKSTATION
;
2308 product_name
= ga_get_win_product_name(errp
);
2309 if (product_name
== NULL
) {
2313 info
= g_new0(GuestOSInfo
, 1);
2315 info
->kernel_version
= g_strdup_printf("%lu.%lu",
2316 os_version
.dwMajorVersion
,
2317 os_version
.dwMinorVersion
);
2318 info
->kernel_release
= g_strdup_printf("%lu",
2319 os_version
.dwBuildNumber
);
2320 info
->machine
= ga_get_current_arch();
2322 info
->id
= g_strdup("mswindows");
2323 info
->name
= g_strdup("Microsoft Windows");
2324 info
->pretty_name
= product_name
;
2325 info
->version
= ga_get_win_name(&os_version
, false);
2326 info
->version_id
= ga_get_win_name(&os_version
, true);
2327 info
->variant
= g_strdup(server
? "server" : "client");
2328 info
->variant_id
= g_strdup(server
? "server" : "client");
2334 * Safely get device property. Returned strings are using wide characters.
2335 * Caller is responsible for freeing the buffer.
2337 static LPBYTE
cm_get_property(DEVINST devInst
, const DEVPROPKEY
*propName
,
2338 PDEVPROPTYPE propType
)
2341 g_autofree LPBYTE buffer
= NULL
;
2342 ULONG buffer_len
= 0;
2344 /* First query for needed space */
2345 cr
= CM_Get_DevNode_PropertyW(devInst
, propName
, propType
,
2346 buffer
, &buffer_len
, 0);
2347 if (cr
!= CR_SUCCESS
&& cr
!= CR_BUFFER_SMALL
) {
2349 slog("failed to get property size, error=0x%lx", cr
);
2352 buffer
= g_new0(BYTE
, buffer_len
+ 1);
2353 cr
= CM_Get_DevNode_PropertyW(devInst
, propName
, propType
,
2354 buffer
, &buffer_len
, 0);
2355 if (cr
!= CR_SUCCESS
) {
2356 slog("failed to get device property, error=0x%lx", cr
);
2359 return g_steal_pointer(&buffer
);
2362 static GStrv
ga_get_hardware_ids(DEVINST devInstance
)
2364 GArray
*values
= NULL
;
2365 DEVPROPTYPE cm_type
;
2367 g_autofree LPWSTR property
= (LPWSTR
)cm_get_property(devInstance
,
2368 &qga_DEVPKEY_Device_HardwareIds
, &cm_type
);
2369 if (property
== NULL
) {
2370 slog("failed to get hardware IDs");
2373 if (*property
== '\0') {
2377 values
= g_array_new(TRUE
, TRUE
, sizeof(gchar
*));
2378 for (id
= property
; '\0' != *id
; id
+= lstrlenW(id
) + 1) {
2379 gchar
*id8
= g_utf16_to_utf8(id
, -1, NULL
, NULL
, NULL
);
2380 g_array_append_val(values
, id8
);
2382 return (GStrv
)g_array_free(values
, FALSE
);
2386 * https://docs.microsoft.com/en-us/windows-hardware/drivers/install/identifiers-for-pci-devices
2388 #define DEVICE_PCI_RE "PCI\\\\VEN_(1AF4|1B36)&DEV_([0-9A-B]{4})(&|$)"
2390 GuestDeviceInfoList
*qmp_guest_get_devices(Error
**errp
)
2392 GuestDeviceInfoList
*head
= NULL
, **tail
= &head
;
2393 HDEVINFO dev_info
= INVALID_HANDLE_VALUE
;
2394 SP_DEVINFO_DATA dev_info_data
;
2396 GError
*gerr
= NULL
;
2397 g_autoptr(GRegex
) device_pci_re
= NULL
;
2398 DEVPROPTYPE cm_type
;
2400 device_pci_re
= g_regex_new(DEVICE_PCI_RE
,
2401 G_REGEX_ANCHORED
| G_REGEX_OPTIMIZE
, 0,
2403 g_assert(device_pci_re
!= NULL
);
2405 dev_info_data
.cbSize
= sizeof(SP_DEVINFO_DATA
);
2406 dev_info
= SetupDiGetClassDevs(0, 0, 0, DIGCF_PRESENT
| DIGCF_ALLCLASSES
);
2407 if (dev_info
== INVALID_HANDLE_VALUE
) {
2408 error_setg(errp
, "failed to get device tree");
2412 slog("enumerating devices");
2413 for (i
= 0; SetupDiEnumDeviceInfo(dev_info
, i
, &dev_info_data
); i
++) {
2415 g_autofree LPWSTR name
= NULL
;
2416 g_autofree LPFILETIME date
= NULL
;
2417 g_autofree LPWSTR version
= NULL
;
2418 g_auto(GStrv
) hw_ids
= NULL
;
2419 g_autoptr(GuestDeviceInfo
) device
= g_new0(GuestDeviceInfo
, 1);
2420 g_autofree
char *vendor_id
= NULL
;
2421 g_autofree
char *device_id
= NULL
;
2423 name
= (LPWSTR
)cm_get_property(dev_info_data
.DevInst
,
2424 &qga_DEVPKEY_NAME
, &cm_type
);
2426 slog("failed to get device description");
2429 device
->driver_name
= g_utf16_to_utf8(name
, -1, NULL
, NULL
, NULL
);
2430 if (device
->driver_name
== NULL
) {
2431 error_setg(errp
, "conversion to utf8 failed (driver name)");
2434 slog("querying device: %s", device
->driver_name
);
2435 hw_ids
= ga_get_hardware_ids(dev_info_data
.DevInst
);
2436 if (hw_ids
== NULL
) {
2439 for (j
= 0; hw_ids
[j
] != NULL
; j
++) {
2440 g_autoptr(GMatchInfo
) match_info
;
2441 GuestDeviceIdPCI
*id
;
2442 if (!g_regex_match(device_pci_re
, hw_ids
[j
], 0, &match_info
)) {
2447 vendor_id
= g_match_info_fetch(match_info
, 1);
2448 device_id
= g_match_info_fetch(match_info
, 2);
2450 device
->id
= g_new0(GuestDeviceId
, 1);
2451 device
->id
->type
= GUEST_DEVICE_TYPE_PCI
;
2452 id
= &device
->id
->u
.pci
;
2453 id
->vendor_id
= g_ascii_strtoull(vendor_id
, NULL
, 16);
2454 id
->device_id
= g_ascii_strtoull(device_id
, NULL
, 16);
2462 version
= (LPWSTR
)cm_get_property(dev_info_data
.DevInst
,
2463 &qga_DEVPKEY_Device_DriverVersion
, &cm_type
);
2464 if (version
== NULL
) {
2465 slog("failed to get driver version");
2468 device
->driver_version
= g_utf16_to_utf8(version
, -1, NULL
,
2470 if (device
->driver_version
== NULL
) {
2471 error_setg(errp
, "conversion to utf8 failed (driver version)");
2475 date
= (LPFILETIME
)cm_get_property(dev_info_data
.DevInst
,
2476 &qga_DEVPKEY_Device_DriverDate
, &cm_type
);
2478 slog("failed to get driver date");
2481 device
->driver_date
= filetime_to_ns(date
);
2482 device
->has_driver_date
= true;
2484 slog("driver: %s\ndriver version: %" PRId64
",%s\n",
2485 device
->driver_name
, device
->driver_date
,
2486 device
->driver_version
);
2487 QAPI_LIST_APPEND(tail
, g_steal_pointer(&device
));
2490 if (dev_info
!= INVALID_HANDLE_VALUE
) {
2491 SetupDiDestroyDeviceInfoList(dev_info
);
2496 char *qga_get_host_name(Error
**errp
)
2498 wchar_t tmp
[MAX_COMPUTERNAME_LENGTH
+ 1];
2499 DWORD size
= G_N_ELEMENTS(tmp
);
2501 if (GetComputerNameW(tmp
, &size
) == 0) {
2502 error_setg_win32(errp
, GetLastError(), "failed close handle");
2506 return g_utf16_to_utf8(tmp
, size
, NULL
, NULL
, NULL
);
2509 GuestDiskStatsInfoList
*qmp_guest_get_diskstats(Error
**errp
)
2511 error_setg(errp
, QERR_UNSUPPORTED
);
2515 GuestCpuStatsList
*qmp_guest_get_cpustats(Error
**errp
)
2517 error_setg(errp
, QERR_UNSUPPORTED
);