VirtualBox

source: vbox/trunk/src/VBox/Main/src-client/ConsoleImpl.cpp@ 53062

Last change on this file since 53062 was 53062, checked in by vboxsync, 10 years ago

USB: Integrate USB sniffer. Make it possible to specify a file to dump the traffic to when attaching a USB device with VBoxManage

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1/* $Id: ConsoleImpl.cpp 53062 2014-10-15 12:34:18Z vboxsync $ */
2/** @file
3 * VBox Console COM Class implementation
4 */
5
6/*
7 * Copyright (C) 2005-2014 Oracle Corporation
8 *
9 * This file is part of VirtualBox Open Source Edition (OSE), as
10 * available from http://www.virtualbox.org. This file is free software;
11 * you can redistribute it and/or modify it under the terms of the GNU
12 * General Public License (GPL) as published by the Free Software
13 * Foundation, in version 2 as it comes in the "COPYING" file of the
14 * VirtualBox OSE distribution. VirtualBox OSE is distributed in the
15 * hope that it will be useful, but WITHOUT ANY WARRANTY of any kind.
16 */
17
18/** @todo Move the TAP mess back into the driver! */
19#if defined(RT_OS_WINDOWS)
20#elif defined(RT_OS_LINUX)
21# include <errno.h>
22# include <sys/ioctl.h>
23# include <sys/poll.h>
24# include <sys/fcntl.h>
25# include <sys/types.h>
26# include <sys/wait.h>
27# include <net/if.h>
28# include <linux/if_tun.h>
29# include <stdio.h>
30# include <stdlib.h>
31# include <string.h>
32#elif defined(RT_OS_FREEBSD)
33# include <errno.h>
34# include <sys/ioctl.h>
35# include <sys/poll.h>
36# include <sys/fcntl.h>
37# include <sys/types.h>
38# include <sys/wait.h>
39# include <stdio.h>
40# include <stdlib.h>
41# include <string.h>
42#elif defined(RT_OS_SOLARIS)
43# include <iprt/coredumper.h>
44#endif
45
46#include "ConsoleImpl.h"
47
48#include "Global.h"
49#include "VirtualBoxErrorInfoImpl.h"
50#include "GuestImpl.h"
51#include "KeyboardImpl.h"
52#include "MouseImpl.h"
53#include "DisplayImpl.h"
54#include "MachineDebuggerImpl.h"
55#include "USBDeviceImpl.h"
56#include "RemoteUSBDeviceImpl.h"
57#include "SharedFolderImpl.h"
58#ifdef VBOX_WITH_PDM_AUDIO_DRIVER
59#include "DrvAudioVRDE.h"
60#else
61#include "AudioSnifferInterface.h"
62#endif
63#include "Nvram.h"
64#ifdef VBOX_WITH_USB_CARDREADER
65# include "UsbCardReader.h"
66#endif
67#include "ProgressImpl.h"
68#include "ConsoleVRDPServer.h"
69#include "VMMDev.h"
70#ifdef VBOX_WITH_EXTPACK
71# include "ExtPackManagerImpl.h"
72#endif
73#include "BusAssignmentManager.h"
74#include "EmulatedUSBImpl.h"
75
76#include "VBoxEvents.h"
77#include "AutoCaller.h"
78#include "Logging.h"
79
80#include <VBox/com/array.h>
81#include "VBox/com/ErrorInfo.h"
82#include <VBox/com/listeners.h>
83
84#include <iprt/asm.h>
85#include <iprt/buildconfig.h>
86#include <iprt/cpp/utils.h>
87#include <iprt/dir.h>
88#include <iprt/file.h>
89#include <iprt/ldr.h>
90#include <iprt/path.h>
91#include <iprt/process.h>
92#include <iprt/string.h>
93#include <iprt/system.h>
94#include <iprt/base64.h>
95#include <iprt/memsafer.h>
96
97#include <VBox/vmm/vmapi.h>
98#include <VBox/vmm/vmm.h>
99#include <VBox/vmm/pdmapi.h>
100#include <VBox/vmm/pdmasynccompletion.h>
101#include <VBox/vmm/pdmnetifs.h>
102#ifdef VBOX_WITH_USB
103# include <VBox/vmm/pdmusb.h>
104#endif
105#ifdef VBOX_WITH_NETSHAPER
106# include <VBox/vmm/pdmnetshaper.h>
107#endif /* VBOX_WITH_NETSHAPER */
108#include <VBox/vmm/mm.h>
109#include <VBox/vmm/ftm.h>
110#include <VBox/vmm/ssm.h>
111#include <VBox/err.h>
112#include <VBox/param.h>
113#include <VBox/vusb.h>
114
115#include <VBox/VMMDev.h>
116
117#include <VBox/HostServices/VBoxClipboardSvc.h>
118#include <VBox/HostServices/DragAndDropSvc.h>
119#ifdef VBOX_WITH_GUEST_PROPS
120# include <VBox/HostServices/GuestPropertySvc.h>
121# include <VBox/com/array.h>
122#endif
123
124#ifdef VBOX_OPENSSL_FIPS
125# include <openssl/crypto.h>
126#endif
127
128#include <set>
129#include <algorithm>
130#include <memory> // for auto_ptr
131#include <vector>
132
133
134// VMTask and friends
135////////////////////////////////////////////////////////////////////////////////
136
137/**
138 * Task structure for asynchronous VM operations.
139 *
140 * Once created, the task structure adds itself as a Console caller. This means:
141 *
142 * 1. The user must check for #rc() before using the created structure
143 * (e.g. passing it as a thread function argument). If #rc() returns a
144 * failure, the Console object may not be used by the task (see
145 * Console::addCaller() for more details).
146 * 2. On successful initialization, the structure keeps the Console caller
147 * until destruction (to ensure Console remains in the Ready state and won't
148 * be accidentally uninitialized). Forgetting to delete the created task
149 * will lead to Console::uninit() stuck waiting for releasing all added
150 * callers.
151 *
152 * If \a aUsesVMPtr parameter is true, the task structure will also add itself
153 * as a Console::mpUVM caller with the same meaning as above. See
154 * Console::addVMCaller() for more info.
155 */
156struct VMTask
157{
158 VMTask(Console *aConsole,
159 Progress *aProgress,
160 const ComPtr<IProgress> &aServerProgress,
161 bool aUsesVMPtr)
162 : mConsole(aConsole),
163 mConsoleCaller(aConsole),
164 mProgress(aProgress),
165 mServerProgress(aServerProgress),
166 mpUVM(NULL),
167 mRC(E_FAIL),
168 mpSafeVMPtr(NULL)
169 {
170 AssertReturnVoid(aConsole);
171 mRC = mConsoleCaller.rc();
172 if (FAILED(mRC))
173 return;
174 if (aUsesVMPtr)
175 {
176 mpSafeVMPtr = new Console::SafeVMPtr(aConsole);
177 if (mpSafeVMPtr->isOk())
178 mpUVM = mpSafeVMPtr->rawUVM();
179 else
180 mRC = mpSafeVMPtr->rc();
181 }
182 }
183
184 ~VMTask()
185 {
186 releaseVMCaller();
187 }
188
189 HRESULT rc() const { return mRC; }
190 bool isOk() const { return SUCCEEDED(rc()); }
191
192 /** Releases the VM caller before destruction. Not normally necessary. */
193 void releaseVMCaller()
194 {
195 if (mpSafeVMPtr)
196 {
197 delete mpSafeVMPtr;
198 mpSafeVMPtr = NULL;
199 }
200 }
201
202 const ComObjPtr<Console> mConsole;
203 AutoCaller mConsoleCaller;
204 const ComObjPtr<Progress> mProgress;
205 Utf8Str mErrorMsg;
206 const ComPtr<IProgress> mServerProgress;
207 PUVM mpUVM;
208
209private:
210 HRESULT mRC;
211 Console::SafeVMPtr *mpSafeVMPtr;
212};
213
214struct VMTakeSnapshotTask : public VMTask
215{
216 VMTakeSnapshotTask(Console *aConsole,
217 Progress *aProgress,
218 IN_BSTR aName,
219 IN_BSTR aDescription)
220 : VMTask(aConsole, aProgress, NULL /* aServerProgress */,
221 false /* aUsesVMPtr */),
222 bstrName(aName),
223 bstrDescription(aDescription),
224 lastMachineState(MachineState_Null)
225 {}
226
227 Bstr bstrName,
228 bstrDescription;
229 Bstr bstrSavedStateFile; // received from BeginTakeSnapshot()
230 MachineState_T lastMachineState;
231 bool fTakingSnapshotOnline;
232 ULONG ulMemSize;
233};
234
235struct VMPowerUpTask : public VMTask
236{
237 VMPowerUpTask(Console *aConsole,
238 Progress *aProgress)
239 : VMTask(aConsole, aProgress, NULL /* aServerProgress */,
240 false /* aUsesVMPtr */),
241 mConfigConstructor(NULL),
242 mStartPaused(false),
243 mTeleporterEnabled(FALSE),
244 mEnmFaultToleranceState(FaultToleranceState_Inactive)
245 {}
246
247 PFNCFGMCONSTRUCTOR mConfigConstructor;
248 Utf8Str mSavedStateFile;
249 Console::SharedFolderDataMap mSharedFolders;
250 bool mStartPaused;
251 BOOL mTeleporterEnabled;
252 FaultToleranceState_T mEnmFaultToleranceState;
253
254 /* array of progress objects for hard disk reset operations */
255 typedef std::list<ComPtr<IProgress> > ProgressList;
256 ProgressList hardDiskProgresses;
257};
258
259struct VMPowerDownTask : public VMTask
260{
261 VMPowerDownTask(Console *aConsole,
262 const ComPtr<IProgress> &aServerProgress)
263 : VMTask(aConsole, NULL /* aProgress */, aServerProgress,
264 true /* aUsesVMPtr */)
265 {}
266};
267
268struct VMSaveTask : public VMTask
269{
270 VMSaveTask(Console *aConsole,
271 const ComPtr<IProgress> &aServerProgress,
272 const Utf8Str &aSavedStateFile,
273 MachineState_T aMachineStateBefore,
274 Reason_T aReason)
275 : VMTask(aConsole, NULL /* aProgress */, aServerProgress,
276 true /* aUsesVMPtr */),
277 mSavedStateFile(aSavedStateFile),
278 mMachineStateBefore(aMachineStateBefore),
279 mReason(aReason)
280 {}
281
282 Utf8Str mSavedStateFile;
283 /* The local machine state we had before. Required if something fails */
284 MachineState_T mMachineStateBefore;
285 /* The reason for saving state */
286 Reason_T mReason;
287};
288
289// Handler for global events
290////////////////////////////////////////////////////////////////////////////////
291inline static const char *networkAdapterTypeToName(NetworkAdapterType_T adapterType);
292
293class VmEventListener {
294public:
295 VmEventListener()
296 {}
297
298
299 HRESULT init(Console *aConsole)
300 {
301 mConsole = aConsole;
302 return S_OK;
303 }
304
305 void uninit()
306 {
307 }
308
309 virtual ~VmEventListener()
310 {
311 }
312
313 STDMETHOD(HandleEvent)(VBoxEventType_T aType, IEvent * aEvent)
314 {
315 switch(aType)
316 {
317 case VBoxEventType_OnNATRedirect:
318 {
319 Bstr id;
320 ComPtr<IMachine> pMachine = mConsole->i_machine();
321 ComPtr<INATRedirectEvent> pNREv = aEvent;
322 HRESULT rc = E_FAIL;
323 Assert(pNREv);
324
325 Bstr interestedId;
326 rc = pMachine->COMGETTER(Id)(interestedId.asOutParam());
327 AssertComRC(rc);
328 rc = pNREv->COMGETTER(MachineId)(id.asOutParam());
329 AssertComRC(rc);
330 if (id != interestedId)
331 break;
332 /* now we can operate with redirects */
333 NATProtocol_T proto;
334 pNREv->COMGETTER(Proto)(&proto);
335 BOOL fRemove;
336 pNREv->COMGETTER(Remove)(&fRemove);
337 bool fUdp = (proto == NATProtocol_UDP);
338 Bstr hostIp, guestIp;
339 LONG hostPort, guestPort;
340 pNREv->COMGETTER(HostIP)(hostIp.asOutParam());
341 pNREv->COMGETTER(HostPort)(&hostPort);
342 pNREv->COMGETTER(GuestIP)(guestIp.asOutParam());
343 pNREv->COMGETTER(GuestPort)(&guestPort);
344 ULONG ulSlot;
345 rc = pNREv->COMGETTER(Slot)(&ulSlot);
346 AssertComRC(rc);
347 if (FAILED(rc))
348 break;
349 mConsole->i_onNATRedirectRuleChange(ulSlot, fRemove, proto, hostIp.raw(), hostPort, guestIp.raw(), guestPort);
350 }
351 break;
352
353 case VBoxEventType_OnHostPCIDevicePlug:
354 {
355 // handle if needed
356 break;
357 }
358
359 case VBoxEventType_OnExtraDataChanged:
360 {
361 ComPtr<IExtraDataChangedEvent> pEDCEv = aEvent;
362 Bstr strMachineId;
363 Bstr strKey;
364 Bstr strVal;
365 HRESULT hrc = S_OK;
366
367 hrc = pEDCEv->COMGETTER(MachineId)(strMachineId.asOutParam());
368 if (FAILED(hrc)) break;
369
370 hrc = pEDCEv->COMGETTER(Key)(strKey.asOutParam());
371 if (FAILED(hrc)) break;
372
373 hrc = pEDCEv->COMGETTER(Value)(strVal.asOutParam());
374 if (FAILED(hrc)) break;
375
376 mConsole->i_onExtraDataChange(strMachineId.raw(), strKey.raw(), strVal.raw());
377 break;
378 }
379
380 default:
381 AssertFailed();
382 }
383 return S_OK;
384 }
385private:
386 ComObjPtr<Console> mConsole;
387};
388
389typedef ListenerImpl<VmEventListener, Console*> VmEventListenerImpl;
390
391
392VBOX_LISTENER_DECLARE(VmEventListenerImpl)
393
394
395// constructor / destructor
396/////////////////////////////////////////////////////////////////////////////
397
398Console::Console()
399 : mSavedStateDataLoaded(false)
400 , mConsoleVRDPServer(NULL)
401 , mfVRDEChangeInProcess(false)
402 , mfVRDEChangePending(false)
403 , mpUVM(NULL)
404 , mVMCallers(0)
405 , mVMZeroCallersSem(NIL_RTSEMEVENT)
406 , mVMDestroying(false)
407 , mVMPoweredOff(false)
408 , mVMIsAlreadyPoweringOff(false)
409 , mfSnapshotFolderSizeWarningShown(false)
410 , mfSnapshotFolderExt4WarningShown(false)
411 , mfSnapshotFolderDiskTypeShown(false)
412 , mfVMHasUsbController(false)
413 , mfPowerOffCausedByReset(false)
414 , mpVmm2UserMethods(NULL)
415 , m_pVMMDev(NULL)
416#ifndef VBOX_WITH_PDM_AUDIO_DRIVER
417 , mAudioSniffer(NULL)
418#endif
419 , mNvram(NULL)
420#ifdef VBOX_WITH_USB_CARDREADER
421 , mUsbCardReader(NULL)
422#endif
423 , mBusMgr(NULL)
424 , mpIfSecKey(NULL)
425 , mVMStateChangeCallbackDisabled(false)
426 , mfUseHostClipboard(true)
427 , mMachineState(MachineState_PoweredOff)
428{
429}
430
431Console::~Console()
432{}
433
434HRESULT Console::FinalConstruct()
435{
436 LogFlowThisFunc(("\n"));
437
438 RT_ZERO(mapStorageLeds);
439 RT_ZERO(mapNetworkLeds);
440 RT_ZERO(mapUSBLed);
441 RT_ZERO(mapSharedFolderLed);
442 RT_ZERO(mapCrOglLed);
443
444 for (unsigned i = 0; i < RT_ELEMENTS(maStorageDevType); ++i)
445 maStorageDevType[i] = DeviceType_Null;
446
447 MYVMM2USERMETHODS *pVmm2UserMethods = (MYVMM2USERMETHODS *)RTMemAllocZ(sizeof(*mpVmm2UserMethods) + sizeof(Console *));
448 if (!pVmm2UserMethods)
449 return E_OUTOFMEMORY;
450 pVmm2UserMethods->u32Magic = VMM2USERMETHODS_MAGIC;
451 pVmm2UserMethods->u32Version = VMM2USERMETHODS_VERSION;
452 pVmm2UserMethods->pfnSaveState = Console::i_vmm2User_SaveState;
453 pVmm2UserMethods->pfnNotifyEmtInit = Console::i_vmm2User_NotifyEmtInit;
454 pVmm2UserMethods->pfnNotifyEmtTerm = Console::i_vmm2User_NotifyEmtTerm;
455 pVmm2UserMethods->pfnNotifyPdmtInit = Console::i_vmm2User_NotifyPdmtInit;
456 pVmm2UserMethods->pfnNotifyPdmtTerm = Console::i_vmm2User_NotifyPdmtTerm;
457 pVmm2UserMethods->pfnNotifyResetTurnedIntoPowerOff = Console::i_vmm2User_NotifyResetTurnedIntoPowerOff;
458 pVmm2UserMethods->u32EndMagic = VMM2USERMETHODS_MAGIC;
459 pVmm2UserMethods->pConsole = this;
460 mpVmm2UserMethods = pVmm2UserMethods;
461
462 MYPDMISECKEY *pIfSecKey = (MYPDMISECKEY *)RTMemAllocZ(sizeof(*mpIfSecKey) + sizeof(Console *));
463 if (!pIfSecKey)
464 return E_OUTOFMEMORY;
465 pIfSecKey->pfnKeyRetain = Console::i_pdmIfSecKey_KeyRetain;
466 pIfSecKey->pfnKeyRelease = Console::i_pdmIfSecKey_KeyRelease;
467 pIfSecKey->pConsole = this;
468 mpIfSecKey = pIfSecKey;
469
470 return BaseFinalConstruct();
471}
472
473void Console::FinalRelease()
474{
475 LogFlowThisFunc(("\n"));
476
477 uninit();
478
479 BaseFinalRelease();
480}
481
482// public initializer/uninitializer for internal purposes only
483/////////////////////////////////////////////////////////////////////////////
484
485HRESULT Console::init(IMachine *aMachine, IInternalMachineControl *aControl, LockType_T aLockType)
486{
487 AssertReturn(aMachine && aControl, E_INVALIDARG);
488
489 /* Enclose the state transition NotReady->InInit->Ready */
490 AutoInitSpan autoInitSpan(this);
491 AssertReturn(autoInitSpan.isOk(), E_FAIL);
492
493 LogFlowThisFuncEnter();
494 LogFlowThisFunc(("aMachine=%p, aControl=%p\n", aMachine, aControl));
495
496 HRESULT rc = E_FAIL;
497
498 unconst(mMachine) = aMachine;
499 unconst(mControl) = aControl;
500
501 /* Cache essential properties and objects, and create child objects */
502
503 rc = mMachine->COMGETTER(State)(&mMachineState);
504 AssertComRCReturnRC(rc);
505
506#ifdef VBOX_WITH_EXTPACK
507 unconst(mptrExtPackManager).createObject();
508 rc = mptrExtPackManager->initExtPackManager(NULL, VBOXEXTPACKCTX_VM_PROCESS);
509 AssertComRCReturnRC(rc);
510#endif
511
512 // Event source may be needed by other children
513 unconst(mEventSource).createObject();
514 rc = mEventSource->init();
515 AssertComRCReturnRC(rc);
516
517 mcAudioRefs = 0;
518 mcVRDPClients = 0;
519 mu32SingleRDPClientId = 0;
520 mcGuestCredentialsProvided = false;
521
522 /* Now the VM specific parts */
523 if (aLockType == LockType_VM)
524 {
525 rc = mMachine->COMGETTER(VRDEServer)(unconst(mVRDEServer).asOutParam());
526 AssertComRCReturnRC(rc);
527
528 unconst(mGuest).createObject();
529 rc = mGuest->init(this);
530 AssertComRCReturnRC(rc);
531
532 unconst(mKeyboard).createObject();
533 rc = mKeyboard->init(this);
534 AssertComRCReturnRC(rc);
535
536 unconst(mMouse).createObject();
537 rc = mMouse->init(this);
538 AssertComRCReturnRC(rc);
539
540 unconst(mDisplay).createObject();
541 rc = mDisplay->init(this);
542 AssertComRCReturnRC(rc);
543
544 unconst(mVRDEServerInfo).createObject();
545 rc = mVRDEServerInfo->init(this);
546 AssertComRCReturnRC(rc);
547
548 unconst(mEmulatedUSB).createObject();
549 rc = mEmulatedUSB->init(this);
550 AssertComRCReturnRC(rc);
551
552 /* Grab global and machine shared folder lists */
553
554 rc = i_fetchSharedFolders(true /* aGlobal */);
555 AssertComRCReturnRC(rc);
556 rc = i_fetchSharedFolders(false /* aGlobal */);
557 AssertComRCReturnRC(rc);
558
559 /* Create other child objects */
560
561 unconst(mConsoleVRDPServer) = new ConsoleVRDPServer(this);
562 AssertReturn(mConsoleVRDPServer, E_FAIL);
563
564 /* Figure out size of meAttachmentType vector */
565 ComPtr<IVirtualBox> pVirtualBox;
566 rc = aMachine->COMGETTER(Parent)(pVirtualBox.asOutParam());
567 AssertComRC(rc);
568 ComPtr<ISystemProperties> pSystemProperties;
569 if (pVirtualBox)
570 pVirtualBox->COMGETTER(SystemProperties)(pSystemProperties.asOutParam());
571 ChipsetType_T chipsetType = ChipsetType_PIIX3;
572 aMachine->COMGETTER(ChipsetType)(&chipsetType);
573 ULONG maxNetworkAdapters = 0;
574 if (pSystemProperties)
575 pSystemProperties->GetMaxNetworkAdapters(chipsetType, &maxNetworkAdapters);
576 meAttachmentType.resize(maxNetworkAdapters);
577 for (ULONG slot = 0; slot < maxNetworkAdapters; ++slot)
578 meAttachmentType[slot] = NetworkAttachmentType_Null;
579
580 // VirtualBox 4.0: We no longer initialize the VMMDev instance here,
581 // which starts the HGCM thread. Instead, this is now done in the
582 // power-up thread when a VM is actually being powered up to avoid
583 // having HGCM threads all over the place every time a session is
584 // opened, even if that session will not run a VM.
585 // unconst(m_pVMMDev) = new VMMDev(this);
586 // AssertReturn(mVMMDev, E_FAIL);
587
588#ifdef VBOX_WITH_PDM_AUDIO_DRIVER
589 unconst(mAudioVRDE) = new AudioVRDE(this);
590 AssertComRCReturnRC(rc);
591#else
592 unconst(mAudioSniffer) = new AudioSniffer(this);
593 AssertReturn(mAudioSniffer, E_FAIL);
594#endif
595
596 FirmwareType_T enmFirmwareType;
597 mMachine->COMGETTER(FirmwareType)(&enmFirmwareType);
598 if ( enmFirmwareType == FirmwareType_EFI
599 || enmFirmwareType == FirmwareType_EFI32
600 || enmFirmwareType == FirmwareType_EFI64
601 || enmFirmwareType == FirmwareType_EFIDUAL)
602 {
603 unconst(mNvram) = new Nvram(this);
604 AssertReturn(mNvram, E_FAIL);
605 }
606
607#ifdef VBOX_WITH_USB_CARDREADER
608 unconst(mUsbCardReader) = new UsbCardReader(this);
609 AssertReturn(mUsbCardReader, E_FAIL);
610#endif
611
612 /* VirtualBox events registration. */
613 {
614 ComPtr<IEventSource> pES;
615 rc = pVirtualBox->COMGETTER(EventSource)(pES.asOutParam());
616 AssertComRC(rc);
617 ComObjPtr<VmEventListenerImpl> aVmListener;
618 aVmListener.createObject();
619 aVmListener->init(new VmEventListener(), this);
620 mVmListener = aVmListener;
621 com::SafeArray<VBoxEventType_T> eventTypes;
622 eventTypes.push_back(VBoxEventType_OnNATRedirect);
623 eventTypes.push_back(VBoxEventType_OnHostPCIDevicePlug);
624 eventTypes.push_back(VBoxEventType_OnExtraDataChanged);
625 rc = pES->RegisterListener(aVmListener, ComSafeArrayAsInParam(eventTypes), true);
626 AssertComRC(rc);
627 }
628 }
629
630 /* Confirm a successful initialization when it's the case */
631 autoInitSpan.setSucceeded();
632
633#ifdef VBOX_WITH_EXTPACK
634 /* Let the extension packs have a go at things (hold no locks). */
635 if (SUCCEEDED(rc))
636 mptrExtPackManager->i_callAllConsoleReadyHooks(this);
637#endif
638
639 LogFlowThisFuncLeave();
640
641 return S_OK;
642}
643
644/**
645 * Uninitializes the Console object.
646 */
647void Console::uninit()
648{
649 LogFlowThisFuncEnter();
650
651 /* Enclose the state transition Ready->InUninit->NotReady */
652 AutoUninitSpan autoUninitSpan(this);
653 if (autoUninitSpan.uninitDone())
654 {
655 LogFlowThisFunc(("Already uninitialized.\n"));
656 LogFlowThisFuncLeave();
657 return;
658 }
659
660 LogFlowThisFunc(("initFailed()=%d\n", autoUninitSpan.initFailed()));
661 if (mVmListener)
662 {
663 ComPtr<IEventSource> pES;
664 ComPtr<IVirtualBox> pVirtualBox;
665 HRESULT rc = mMachine->COMGETTER(Parent)(pVirtualBox.asOutParam());
666 AssertComRC(rc);
667 if (SUCCEEDED(rc) && !pVirtualBox.isNull())
668 {
669 rc = pVirtualBox->COMGETTER(EventSource)(pES.asOutParam());
670 AssertComRC(rc);
671 if (!pES.isNull())
672 {
673 rc = pES->UnregisterListener(mVmListener);
674 AssertComRC(rc);
675 }
676 }
677 mVmListener.setNull();
678 }
679
680 /* power down the VM if necessary */
681 if (mpUVM)
682 {
683 i_powerDown();
684 Assert(mpUVM == NULL);
685 }
686
687 if (mVMZeroCallersSem != NIL_RTSEMEVENT)
688 {
689 RTSemEventDestroy(mVMZeroCallersSem);
690 mVMZeroCallersSem = NIL_RTSEMEVENT;
691 }
692
693 if (mpVmm2UserMethods)
694 {
695 RTMemFree((void *)mpVmm2UserMethods);
696 mpVmm2UserMethods = NULL;
697 }
698
699 if (mpIfSecKey)
700 {
701 RTMemFree((void *)mpIfSecKey);
702 mpIfSecKey = NULL;
703 }
704
705 if (mNvram)
706 {
707 delete mNvram;
708 unconst(mNvram) = NULL;
709 }
710
711#ifdef VBOX_WITH_USB_CARDREADER
712 if (mUsbCardReader)
713 {
714 delete mUsbCardReader;
715 unconst(mUsbCardReader) = NULL;
716 }
717#endif
718#ifndef VBOX_WITH_PDM_AUDIO_DRIVER
719 if (mAudioSniffer)
720 {
721 delete mAudioSniffer;
722 unconst(mAudioSniffer) = NULL;
723 }
724#endif
725
726 // if the VM had a VMMDev with an HGCM thread, then remove that here
727 if (m_pVMMDev)
728 {
729 delete m_pVMMDev;
730 unconst(m_pVMMDev) = NULL;
731 }
732
733 if (mBusMgr)
734 {
735 mBusMgr->Release();
736 mBusMgr = NULL;
737 }
738
739 m_mapGlobalSharedFolders.clear();
740 m_mapMachineSharedFolders.clear();
741 m_mapSharedFolders.clear(); // console instances
742
743 mRemoteUSBDevices.clear();
744 mUSBDevices.clear();
745
746 for (SecretKeyMap::iterator it = m_mapSecretKeys.begin();
747 it != m_mapSecretKeys.end();
748 it++)
749 delete it->second;
750 m_mapSecretKeys.clear();
751
752 if (mVRDEServerInfo)
753 {
754 mVRDEServerInfo->uninit();
755 unconst(mVRDEServerInfo).setNull();
756 }
757
758 if (mEmulatedUSB)
759 {
760 mEmulatedUSB->uninit();
761 unconst(mEmulatedUSB).setNull();
762 }
763
764 if (mDebugger)
765 {
766 mDebugger->uninit();
767 unconst(mDebugger).setNull();
768 }
769
770 if (mDisplay)
771 {
772 mDisplay->uninit();
773 unconst(mDisplay).setNull();
774 }
775
776 if (mMouse)
777 {
778 mMouse->uninit();
779 unconst(mMouse).setNull();
780 }
781
782 if (mKeyboard)
783 {
784 mKeyboard->uninit();
785 unconst(mKeyboard).setNull();
786 }
787
788 if (mGuest)
789 {
790 mGuest->uninit();
791 unconst(mGuest).setNull();
792 }
793
794 if (mConsoleVRDPServer)
795 {
796 delete mConsoleVRDPServer;
797 unconst(mConsoleVRDPServer) = NULL;
798 }
799
800 unconst(mVRDEServer).setNull();
801
802 unconst(mControl).setNull();
803 unconst(mMachine).setNull();
804
805 // we don't perform uninit() as it's possible that some pending event refers to this source
806 unconst(mEventSource).setNull();
807
808 LogFlowThisFuncLeave();
809}
810
811#ifdef VBOX_WITH_GUEST_PROPS
812
813/**
814 * Handles guest properties on a VM reset.
815 *
816 * We must delete properties that are flagged TRANSRESET.
817 *
818 * @todo r=bird: Would be more efficient if we added a request to the HGCM
819 * service to do this instead of detouring thru VBoxSVC.
820 * (IMachine::SetGuestProperty ends up in VBoxSVC, which in turns calls
821 * back into the VM process and the HGCM service.)
822 */
823void Console::i_guestPropertiesHandleVMReset(void)
824{
825 std::vector<Utf8Str> names;
826 std::vector<Utf8Str> values;
827 std::vector<LONG64> timestamps;
828 std::vector<Utf8Str> flags;
829 HRESULT hrc = i_enumerateGuestProperties("*", names, values, timestamps, flags);
830 if (SUCCEEDED(hrc))
831 {
832 for (size_t i = 0; i < flags.size(); i++)
833 {
834 /* Delete all properties which have the flag "TRANSRESET". */
835 if (flags[i].contains("TRANSRESET", Utf8Str::CaseInsensitive))
836 {
837 hrc = mMachine->DeleteGuestProperty(Bstr(names[i]).raw());
838 if (FAILED(hrc))
839 LogRel(("RESET: Could not delete transient property \"%s\", rc=%Rhrc\n",
840 names[i].c_str(), hrc));
841 }
842 }
843 }
844 else
845 LogRel(("RESET: Unable to enumerate guest properties, rc=%Rhrc\n", hrc));
846}
847
848bool Console::i_guestPropertiesVRDPEnabled(void)
849{
850 Bstr value;
851 HRESULT hrc = mMachine->GetExtraData(Bstr("VBoxInternal2/EnableGuestPropertiesVRDP").raw(),
852 value.asOutParam());
853 if ( hrc == S_OK
854 && value == "1")
855 return true;
856 return false;
857}
858
859void Console::i_guestPropertiesVRDPUpdateLogon(uint32_t u32ClientId, const char *pszUser, const char *pszDomain)
860{
861 if (!i_guestPropertiesVRDPEnabled())
862 return;
863
864 LogFlowFunc(("\n"));
865
866 char szPropNm[256];
867 Bstr bstrReadOnlyGuest(L"RDONLYGUEST");
868
869 RTStrPrintf(szPropNm, sizeof(szPropNm), "/VirtualBox/HostInfo/VRDP/Client/%u/Name", u32ClientId);
870 Bstr clientName;
871 mVRDEServerInfo->COMGETTER(ClientName)(clientName.asOutParam());
872
873 mMachine->SetGuestProperty(Bstr(szPropNm).raw(),
874 clientName.raw(),
875 bstrReadOnlyGuest.raw());
876
877 RTStrPrintf(szPropNm, sizeof(szPropNm), "/VirtualBox/HostInfo/VRDP/Client/%u/User", u32ClientId);
878 mMachine->SetGuestProperty(Bstr(szPropNm).raw(),
879 Bstr(pszUser).raw(),
880 bstrReadOnlyGuest.raw());
881
882 RTStrPrintf(szPropNm, sizeof(szPropNm), "/VirtualBox/HostInfo/VRDP/Client/%u/Domain", u32ClientId);
883 mMachine->SetGuestProperty(Bstr(szPropNm).raw(),
884 Bstr(pszDomain).raw(),
885 bstrReadOnlyGuest.raw());
886
887 char szClientId[64];
888 RTStrPrintf(szClientId, sizeof(szClientId), "%u", u32ClientId);
889 mMachine->SetGuestProperty(Bstr("/VirtualBox/HostInfo/VRDP/LastConnectedClient").raw(),
890 Bstr(szClientId).raw(),
891 bstrReadOnlyGuest.raw());
892
893 return;
894}
895
896void Console::i_guestPropertiesVRDPUpdateActiveClient(uint32_t u32ClientId)
897{
898 if (!i_guestPropertiesVRDPEnabled())
899 return;
900
901 LogFlowFunc(("%d\n", u32ClientId));
902
903 Bstr bstrFlags(L"RDONLYGUEST,TRANSIENT");
904
905 char szClientId[64];
906 RTStrPrintf(szClientId, sizeof(szClientId), "%u", u32ClientId);
907
908 mMachine->SetGuestProperty(Bstr("/VirtualBox/HostInfo/VRDP/ActiveClient").raw(),
909 Bstr(szClientId).raw(),
910 bstrFlags.raw());
911
912 return;
913}
914
915void Console::i_guestPropertiesVRDPUpdateNameChange(uint32_t u32ClientId, const char *pszName)
916{
917 if (!i_guestPropertiesVRDPEnabled())
918 return;
919
920 LogFlowFunc(("\n"));
921
922 char szPropNm[256];
923 Bstr bstrReadOnlyGuest(L"RDONLYGUEST");
924
925 RTStrPrintf(szPropNm, sizeof(szPropNm), "/VirtualBox/HostInfo/VRDP/Client/%u/Name", u32ClientId);
926 Bstr clientName(pszName);
927
928 mMachine->SetGuestProperty(Bstr(szPropNm).raw(),
929 clientName.raw(),
930 bstrReadOnlyGuest.raw());
931
932}
933
934void Console::i_guestPropertiesVRDPUpdateIPAddrChange(uint32_t u32ClientId, const char *pszIPAddr)
935{
936 if (!i_guestPropertiesVRDPEnabled())
937 return;
938
939 LogFlowFunc(("\n"));
940
941 char szPropNm[256];
942 Bstr bstrReadOnlyGuest(L"RDONLYGUEST");
943
944 RTStrPrintf(szPropNm, sizeof(szPropNm), "/VirtualBox/HostInfo/VRDP/Client/%u/IPAddr", u32ClientId);
945 Bstr clientIPAddr(pszIPAddr);
946
947 mMachine->SetGuestProperty(Bstr(szPropNm).raw(),
948 clientIPAddr.raw(),
949 bstrReadOnlyGuest.raw());
950
951}
952
953void Console::i_guestPropertiesVRDPUpdateLocationChange(uint32_t u32ClientId, const char *pszLocation)
954{
955 if (!i_guestPropertiesVRDPEnabled())
956 return;
957
958 LogFlowFunc(("\n"));
959
960 char szPropNm[256];
961 Bstr bstrReadOnlyGuest(L"RDONLYGUEST");
962
963 RTStrPrintf(szPropNm, sizeof(szPropNm), "/VirtualBox/HostInfo/VRDP/Client/%u/Location", u32ClientId);
964 Bstr clientLocation(pszLocation);
965
966 mMachine->SetGuestProperty(Bstr(szPropNm).raw(),
967 clientLocation.raw(),
968 bstrReadOnlyGuest.raw());
969
970}
971
972void Console::i_guestPropertiesVRDPUpdateOtherInfoChange(uint32_t u32ClientId, const char *pszOtherInfo)
973{
974 if (!i_guestPropertiesVRDPEnabled())
975 return;
976
977 LogFlowFunc(("\n"));
978
979 char szPropNm[256];
980 Bstr bstrReadOnlyGuest(L"RDONLYGUEST");
981
982 RTStrPrintf(szPropNm, sizeof(szPropNm), "/VirtualBox/HostInfo/VRDP/Client/%u/OtherInfo", u32ClientId);
983 Bstr clientOtherInfo(pszOtherInfo);
984
985 mMachine->SetGuestProperty(Bstr(szPropNm).raw(),
986 clientOtherInfo.raw(),
987 bstrReadOnlyGuest.raw());
988
989}
990
991void Console::i_guestPropertiesVRDPUpdateClientAttach(uint32_t u32ClientId, bool fAttached)
992{
993 if (!i_guestPropertiesVRDPEnabled())
994 return;
995
996 LogFlowFunc(("\n"));
997
998 Bstr bstrReadOnlyGuest(L"RDONLYGUEST");
999
1000 char szPropNm[256];
1001 RTStrPrintf(szPropNm, sizeof(szPropNm), "/VirtualBox/HostInfo/VRDP/Client/%u/Attach", u32ClientId);
1002
1003 Bstr bstrValue = fAttached? "1": "0";
1004
1005 mMachine->SetGuestProperty(Bstr(szPropNm).raw(),
1006 bstrValue.raw(),
1007 bstrReadOnlyGuest.raw());
1008}
1009
1010void Console::i_guestPropertiesVRDPUpdateDisconnect(uint32_t u32ClientId)
1011{
1012 if (!i_guestPropertiesVRDPEnabled())
1013 return;
1014
1015 LogFlowFunc(("\n"));
1016
1017 Bstr bstrReadOnlyGuest(L"RDONLYGUEST");
1018
1019 char szPropNm[256];
1020 RTStrPrintf(szPropNm, sizeof(szPropNm), "/VirtualBox/HostInfo/VRDP/Client/%u/Name", u32ClientId);
1021 mMachine->SetGuestProperty(Bstr(szPropNm).raw(), NULL,
1022 bstrReadOnlyGuest.raw());
1023
1024 RTStrPrintf(szPropNm, sizeof(szPropNm), "/VirtualBox/HostInfo/VRDP/Client/%u/User", u32ClientId);
1025 mMachine->SetGuestProperty(Bstr(szPropNm).raw(), NULL,
1026 bstrReadOnlyGuest.raw());
1027
1028 RTStrPrintf(szPropNm, sizeof(szPropNm), "/VirtualBox/HostInfo/VRDP/Client/%u/Domain", u32ClientId);
1029 mMachine->SetGuestProperty(Bstr(szPropNm).raw(), NULL,
1030 bstrReadOnlyGuest.raw());
1031
1032 RTStrPrintf(szPropNm, sizeof(szPropNm), "/VirtualBox/HostInfo/VRDP/Client/%u/Attach", u32ClientId);
1033 mMachine->SetGuestProperty(Bstr(szPropNm).raw(), NULL,
1034 bstrReadOnlyGuest.raw());
1035
1036 char szClientId[64];
1037 RTStrPrintf(szClientId, sizeof(szClientId), "%d", u32ClientId);
1038 mMachine->SetGuestProperty(Bstr("/VirtualBox/HostInfo/VRDP/LastDisconnectedClient").raw(),
1039 Bstr(szClientId).raw(),
1040 bstrReadOnlyGuest.raw());
1041
1042 return;
1043}
1044
1045#endif /* VBOX_WITH_GUEST_PROPS */
1046
1047bool Console::i_isResetTurnedIntoPowerOff(void)
1048{
1049 Bstr value;
1050 HRESULT hrc = mMachine->GetExtraData(Bstr("VBoxInternal2/TurnResetIntoPowerOff").raw(),
1051 value.asOutParam());
1052 if ( hrc == S_OK
1053 && value == "1")
1054 return true;
1055 return false;
1056}
1057
1058#ifdef VBOX_WITH_EXTPACK
1059/**
1060 * Used by VRDEServer and others to talke to the extension pack manager.
1061 *
1062 * @returns The extension pack manager.
1063 */
1064ExtPackManager *Console::i_getExtPackManager()
1065{
1066 return mptrExtPackManager;
1067}
1068#endif
1069
1070
1071int Console::i_VRDPClientLogon(uint32_t u32ClientId, const char *pszUser, const char *pszPassword, const char *pszDomain)
1072{
1073 LogFlowFuncEnter();
1074 LogFlowFunc(("%d, %s, %s, %s\n", u32ClientId, pszUser, pszPassword, pszDomain));
1075
1076 AutoCaller autoCaller(this);
1077 if (!autoCaller.isOk())
1078 {
1079 /* Console has been already uninitialized, deny request */
1080 LogRel(("AUTH: Access denied (Console uninitialized).\n"));
1081 LogFlowFuncLeave();
1082 return VERR_ACCESS_DENIED;
1083 }
1084
1085 Bstr id;
1086 HRESULT hrc = mMachine->COMGETTER(Id)(id.asOutParam());
1087 Guid uuid = Guid(id);
1088
1089 AssertComRCReturn(hrc, VERR_ACCESS_DENIED);
1090
1091 AuthType_T authType = AuthType_Null;
1092 hrc = mVRDEServer->COMGETTER(AuthType)(&authType);
1093 AssertComRCReturn(hrc, VERR_ACCESS_DENIED);
1094
1095 ULONG authTimeout = 0;
1096 hrc = mVRDEServer->COMGETTER(AuthTimeout)(&authTimeout);
1097 AssertComRCReturn(hrc, VERR_ACCESS_DENIED);
1098
1099 AuthResult result = AuthResultAccessDenied;
1100 AuthGuestJudgement guestJudgement = AuthGuestNotAsked;
1101
1102 LogFlowFunc(("Auth type %d\n", authType));
1103
1104 LogRel(("AUTH: User: [%s]. Domain: [%s]. Authentication type: [%s]\n",
1105 pszUser, pszDomain,
1106 authType == AuthType_Null?
1107 "Null":
1108 (authType == AuthType_External?
1109 "External":
1110 (authType == AuthType_Guest?
1111 "Guest":
1112 "INVALID"
1113 )
1114 )
1115 ));
1116
1117 switch (authType)
1118 {
1119 case AuthType_Null:
1120 {
1121 result = AuthResultAccessGranted;
1122 break;
1123 }
1124
1125 case AuthType_External:
1126 {
1127 /* Call the external library. */
1128 result = mConsoleVRDPServer->Authenticate(uuid, guestJudgement, pszUser, pszPassword, pszDomain, u32ClientId);
1129
1130 if (result != AuthResultDelegateToGuest)
1131 {
1132 break;
1133 }
1134
1135 LogRel(("AUTH: Delegated to guest.\n"));
1136
1137 LogFlowFunc(("External auth asked for guest judgement\n"));
1138 } /* pass through */
1139
1140 case AuthType_Guest:
1141 {
1142 guestJudgement = AuthGuestNotReacted;
1143
1144 // @todo r=dj locking required here for m_pVMMDev?
1145 PPDMIVMMDEVPORT pDevPort;
1146 if ( (m_pVMMDev)
1147 && ((pDevPort = m_pVMMDev->getVMMDevPort()))
1148 )
1149 {
1150 /* Issue the request to guest. Assume that the call does not require EMT. It should not. */
1151
1152 /* Ask the guest to judge these credentials. */
1153 uint32_t u32GuestFlags = VMMDEV_SETCREDENTIALS_JUDGE;
1154
1155 int rc = pDevPort->pfnSetCredentials(pDevPort, pszUser, pszPassword, pszDomain, u32GuestFlags);
1156
1157 if (RT_SUCCESS(rc))
1158 {
1159 /* Wait for guest. */
1160 rc = m_pVMMDev->WaitCredentialsJudgement(authTimeout, &u32GuestFlags);
1161
1162 if (RT_SUCCESS(rc))
1163 {
1164 switch (u32GuestFlags & (VMMDEV_CREDENTIALS_JUDGE_OK | VMMDEV_CREDENTIALS_JUDGE_DENY |
1165 VMMDEV_CREDENTIALS_JUDGE_NOJUDGEMENT))
1166 {
1167 case VMMDEV_CREDENTIALS_JUDGE_DENY: guestJudgement = AuthGuestAccessDenied; break;
1168 case VMMDEV_CREDENTIALS_JUDGE_NOJUDGEMENT: guestJudgement = AuthGuestNoJudgement; break;
1169 case VMMDEV_CREDENTIALS_JUDGE_OK: guestJudgement = AuthGuestAccessGranted; break;
1170 default:
1171 LogFlowFunc(("Invalid guest flags %08X!!!\n", u32GuestFlags)); break;
1172 }
1173 }
1174 else
1175 {
1176 LogFlowFunc(("Wait for credentials judgement rc = %Rrc!!!\n", rc));
1177 }
1178
1179 LogFlowFunc(("Guest judgement %d\n", guestJudgement));
1180 }
1181 else
1182 {
1183 LogFlowFunc(("Could not set credentials rc = %Rrc!!!\n", rc));
1184 }
1185 }
1186
1187 if (authType == AuthType_External)
1188 {
1189 LogRel(("AUTH: Guest judgement %d.\n", guestJudgement));
1190 LogFlowFunc(("External auth called again with guest judgement = %d\n", guestJudgement));
1191 result = mConsoleVRDPServer->Authenticate(uuid, guestJudgement, pszUser, pszPassword, pszDomain, u32ClientId);
1192 }
1193 else
1194 {
1195 switch (guestJudgement)
1196 {
1197 case AuthGuestAccessGranted:
1198 result = AuthResultAccessGranted;
1199 break;
1200 default:
1201 result = AuthResultAccessDenied;
1202 break;
1203 }
1204 }
1205 } break;
1206
1207 default:
1208 AssertFailed();
1209 }
1210
1211 LogFlowFunc(("Result = %d\n", result));
1212 LogFlowFuncLeave();
1213
1214 if (result != AuthResultAccessGranted)
1215 {
1216 /* Reject. */
1217 LogRel(("AUTH: Access denied.\n"));
1218 return VERR_ACCESS_DENIED;
1219 }
1220
1221 LogRel(("AUTH: Access granted.\n"));
1222
1223 /* Multiconnection check must be made after authentication, so bad clients would not interfere with a good one. */
1224 BOOL allowMultiConnection = FALSE;
1225 hrc = mVRDEServer->COMGETTER(AllowMultiConnection)(&allowMultiConnection);
1226 AssertComRCReturn(hrc, VERR_ACCESS_DENIED);
1227
1228 BOOL reuseSingleConnection = FALSE;
1229 hrc = mVRDEServer->COMGETTER(ReuseSingleConnection)(&reuseSingleConnection);
1230 AssertComRCReturn(hrc, VERR_ACCESS_DENIED);
1231
1232 LogFlowFunc(("allowMultiConnection %d, reuseSingleConnection = %d, mcVRDPClients = %d, mu32SingleRDPClientId = %d\n",
1233 allowMultiConnection, reuseSingleConnection, mcVRDPClients, mu32SingleRDPClientId));
1234
1235 if (allowMultiConnection == FALSE)
1236 {
1237 /* Note: the 'mcVRDPClients' variable is incremented in ClientConnect callback, which is called when the client
1238 * is successfully connected, that is after the ClientLogon callback. Therefore the mcVRDPClients
1239 * value is 0 for first client.
1240 */
1241 if (mcVRDPClients != 0)
1242 {
1243 Assert(mcVRDPClients == 1);
1244 /* There is a client already.
1245 * If required drop the existing client connection and let the connecting one in.
1246 */
1247 if (reuseSingleConnection)
1248 {
1249 LogRel(("AUTH: Multiple connections are not enabled. Disconnecting existing client.\n"));
1250 mConsoleVRDPServer->DisconnectClient(mu32SingleRDPClientId, false);
1251 }
1252 else
1253 {
1254 /* Reject. */
1255 LogRel(("AUTH: Multiple connections are not enabled. Access denied.\n"));
1256 return VERR_ACCESS_DENIED;
1257 }
1258 }
1259
1260 /* Save the connected client id. From now on it will be necessary to disconnect this one. */
1261 mu32SingleRDPClientId = u32ClientId;
1262 }
1263
1264#ifdef VBOX_WITH_GUEST_PROPS
1265 i_guestPropertiesVRDPUpdateLogon(u32ClientId, pszUser, pszDomain);
1266#endif /* VBOX_WITH_GUEST_PROPS */
1267
1268 /* Check if the successfully verified credentials are to be sent to the guest. */
1269 BOOL fProvideGuestCredentials = FALSE;
1270
1271 Bstr value;
1272 hrc = mMachine->GetExtraData(Bstr("VRDP/ProvideGuestCredentials").raw(),
1273 value.asOutParam());
1274 if (SUCCEEDED(hrc) && value == "1")
1275 {
1276 /* Provide credentials only if there are no logged in users. */
1277 Utf8Str noLoggedInUsersValue;
1278 LONG64 ul64Timestamp = 0;
1279 Utf8Str flags;
1280
1281 hrc = i_getGuestProperty("/VirtualBox/GuestInfo/OS/NoLoggedInUsers",
1282 &noLoggedInUsersValue, &ul64Timestamp, &flags);
1283
1284 if (SUCCEEDED(hrc) && noLoggedInUsersValue != "false")
1285 {
1286 /* And only if there are no connected clients. */
1287 if (ASMAtomicCmpXchgBool(&mcGuestCredentialsProvided, true, false))
1288 {
1289 fProvideGuestCredentials = TRUE;
1290 }
1291 }
1292 }
1293
1294 // @todo r=dj locking required here for m_pVMMDev?
1295 if ( fProvideGuestCredentials
1296 && m_pVMMDev)
1297 {
1298 uint32_t u32GuestFlags = VMMDEV_SETCREDENTIALS_GUESTLOGON;
1299
1300 PPDMIVMMDEVPORT pDevPort = m_pVMMDev->getVMMDevPort();
1301 if (pDevPort)
1302 {
1303 int rc = pDevPort->pfnSetCredentials(m_pVMMDev->getVMMDevPort(),
1304 pszUser, pszPassword, pszDomain, u32GuestFlags);
1305 AssertRC(rc);
1306 }
1307 }
1308
1309 return VINF_SUCCESS;
1310}
1311
1312void Console::i_VRDPClientStatusChange(uint32_t u32ClientId, const char *pszStatus)
1313{
1314 LogFlowFuncEnter();
1315
1316 AutoCaller autoCaller(this);
1317 AssertComRCReturnVoid(autoCaller.rc());
1318
1319 LogFlowFunc(("%s\n", pszStatus));
1320
1321#ifdef VBOX_WITH_GUEST_PROPS
1322 /* Parse the status string. */
1323 if (RTStrICmp(pszStatus, "ATTACH") == 0)
1324 {
1325 i_guestPropertiesVRDPUpdateClientAttach(u32ClientId, true);
1326 }
1327 else if (RTStrICmp(pszStatus, "DETACH") == 0)
1328 {
1329 i_guestPropertiesVRDPUpdateClientAttach(u32ClientId, false);
1330 }
1331 else if (RTStrNICmp(pszStatus, "NAME=", strlen("NAME=")) == 0)
1332 {
1333 i_guestPropertiesVRDPUpdateNameChange(u32ClientId, pszStatus + strlen("NAME="));
1334 }
1335 else if (RTStrNICmp(pszStatus, "CIPA=", strlen("CIPA=")) == 0)
1336 {
1337 i_guestPropertiesVRDPUpdateIPAddrChange(u32ClientId, pszStatus + strlen("CIPA="));
1338 }
1339 else if (RTStrNICmp(pszStatus, "CLOCATION=", strlen("CLOCATION=")) == 0)
1340 {
1341 i_guestPropertiesVRDPUpdateLocationChange(u32ClientId, pszStatus + strlen("CLOCATION="));
1342 }
1343 else if (RTStrNICmp(pszStatus, "COINFO=", strlen("COINFO=")) == 0)
1344 {
1345 i_guestPropertiesVRDPUpdateOtherInfoChange(u32ClientId, pszStatus + strlen("COINFO="));
1346 }
1347#endif
1348
1349 LogFlowFuncLeave();
1350}
1351
1352void Console::i_VRDPClientConnect(uint32_t u32ClientId)
1353{
1354 LogFlowFuncEnter();
1355
1356 AutoCaller autoCaller(this);
1357 AssertComRCReturnVoid(autoCaller.rc());
1358
1359 uint32_t u32Clients = ASMAtomicIncU32(&mcVRDPClients);
1360 VMMDev *pDev;
1361 PPDMIVMMDEVPORT pPort;
1362 if ( (u32Clients == 1)
1363 && ((pDev = i_getVMMDev()))
1364 && ((pPort = pDev->getVMMDevPort()))
1365 )
1366 {
1367 pPort->pfnVRDPChange(pPort,
1368 true,
1369 VRDP_EXPERIENCE_LEVEL_FULL); // @todo configurable
1370 }
1371
1372 NOREF(u32ClientId);
1373 mDisplay->i_VideoAccelVRDP(true);
1374
1375#ifdef VBOX_WITH_GUEST_PROPS
1376 i_guestPropertiesVRDPUpdateActiveClient(u32ClientId);
1377#endif /* VBOX_WITH_GUEST_PROPS */
1378
1379 LogFlowFuncLeave();
1380 return;
1381}
1382
1383void Console::i_VRDPClientDisconnect(uint32_t u32ClientId,
1384 uint32_t fu32Intercepted)
1385{
1386 LogFlowFuncEnter();
1387
1388 AutoCaller autoCaller(this);
1389 AssertComRCReturnVoid(autoCaller.rc());
1390
1391 AssertReturnVoid(mConsoleVRDPServer);
1392
1393 uint32_t u32Clients = ASMAtomicDecU32(&mcVRDPClients);
1394 VMMDev *pDev;
1395 PPDMIVMMDEVPORT pPort;
1396
1397 if ( (u32Clients == 0)
1398 && ((pDev = i_getVMMDev()))
1399 && ((pPort = pDev->getVMMDevPort()))
1400 )
1401 {
1402 pPort->pfnVRDPChange(pPort,
1403 false,
1404 0);
1405 }
1406
1407 mDisplay->i_VideoAccelVRDP(false);
1408
1409 if (fu32Intercepted & VRDE_CLIENT_INTERCEPT_USB)
1410 {
1411 mConsoleVRDPServer->USBBackendDelete(u32ClientId);
1412 }
1413
1414 if (fu32Intercepted & VRDE_CLIENT_INTERCEPT_CLIPBOARD)
1415 {
1416 mConsoleVRDPServer->ClipboardDelete(u32ClientId);
1417 }
1418
1419 if (fu32Intercepted & VRDE_CLIENT_INTERCEPT_AUDIO)
1420 {
1421 mcAudioRefs--;
1422
1423 if (mcAudioRefs <= 0)
1424 {
1425#ifndef VBOX_WITH_PDM_AUDIO_DRIVER
1426 if (mAudioSniffer)
1427 {
1428 PPDMIAUDIOSNIFFERPORT port = mAudioSniffer->getAudioSnifferPort();
1429 if (port)
1430 {
1431 port->pfnSetup(port, false, false);
1432 }
1433 }
1434#endif
1435 }
1436 }
1437
1438 Bstr uuid;
1439 HRESULT hrc = mMachine->COMGETTER(Id)(uuid.asOutParam());
1440 AssertComRC(hrc);
1441
1442 AuthType_T authType = AuthType_Null;
1443 hrc = mVRDEServer->COMGETTER(AuthType)(&authType);
1444 AssertComRC(hrc);
1445
1446 if (authType == AuthType_External)
1447 mConsoleVRDPServer->AuthDisconnect(uuid, u32ClientId);
1448
1449#ifdef VBOX_WITH_GUEST_PROPS
1450 i_guestPropertiesVRDPUpdateDisconnect(u32ClientId);
1451 if (u32Clients == 0)
1452 i_guestPropertiesVRDPUpdateActiveClient(0);
1453#endif /* VBOX_WITH_GUEST_PROPS */
1454
1455 if (u32Clients == 0)
1456 mcGuestCredentialsProvided = false;
1457
1458 LogFlowFuncLeave();
1459 return;
1460}
1461
1462void Console::i_VRDPInterceptAudio(uint32_t u32ClientId)
1463{
1464 LogFlowFuncEnter();
1465
1466 AutoCaller autoCaller(this);
1467 AssertComRCReturnVoid(autoCaller.rc());
1468#ifndef VBOX_WITH_PDM_AUDIO_DRIVER
1469 LogFlowFunc(("mAudioSniffer %p, u32ClientId %d.\n",
1470 mAudioSniffer, u32ClientId));
1471 NOREF(u32ClientId);
1472#endif
1473
1474 ++mcAudioRefs;
1475
1476 if (mcAudioRefs == 1)
1477 {
1478#ifndef VBOX_WITH_PDM_AUDIO_DRIVER
1479 if (mAudioSniffer)
1480 {
1481 PPDMIAUDIOSNIFFERPORT port = mAudioSniffer->getAudioSnifferPort();
1482 if (port)
1483 {
1484 port->pfnSetup(port, true, true);
1485 }
1486 }
1487#endif
1488 }
1489
1490 LogFlowFuncLeave();
1491 return;
1492}
1493
1494void Console::i_VRDPInterceptUSB(uint32_t u32ClientId, void **ppvIntercept)
1495{
1496 LogFlowFuncEnter();
1497
1498 AutoCaller autoCaller(this);
1499 AssertComRCReturnVoid(autoCaller.rc());
1500
1501 AssertReturnVoid(mConsoleVRDPServer);
1502
1503 mConsoleVRDPServer->USBBackendCreate(u32ClientId, ppvIntercept);
1504
1505 LogFlowFuncLeave();
1506 return;
1507}
1508
1509void Console::i_VRDPInterceptClipboard(uint32_t u32ClientId)
1510{
1511 LogFlowFuncEnter();
1512
1513 AutoCaller autoCaller(this);
1514 AssertComRCReturnVoid(autoCaller.rc());
1515
1516 AssertReturnVoid(mConsoleVRDPServer);
1517
1518 mConsoleVRDPServer->ClipboardCreate(u32ClientId);
1519
1520 LogFlowFuncLeave();
1521 return;
1522}
1523
1524
1525//static
1526const char *Console::sSSMConsoleUnit = "ConsoleData";
1527//static
1528uint32_t Console::sSSMConsoleVer = 0x00010001;
1529
1530inline static const char *networkAdapterTypeToName(NetworkAdapterType_T adapterType)
1531{
1532 switch (adapterType)
1533 {
1534 case NetworkAdapterType_Am79C970A:
1535 case NetworkAdapterType_Am79C973:
1536 return "pcnet";
1537#ifdef VBOX_WITH_E1000
1538 case NetworkAdapterType_I82540EM:
1539 case NetworkAdapterType_I82543GC:
1540 case NetworkAdapterType_I82545EM:
1541 return "e1000";
1542#endif
1543#ifdef VBOX_WITH_VIRTIO
1544 case NetworkAdapterType_Virtio:
1545 return "virtio-net";
1546#endif
1547 default:
1548 AssertFailed();
1549 return "unknown";
1550 }
1551 return NULL;
1552}
1553
1554/**
1555 * Loads various console data stored in the saved state file.
1556 * This method does validation of the state file and returns an error info
1557 * when appropriate.
1558 *
1559 * The method does nothing if the machine is not in the Saved file or if
1560 * console data from it has already been loaded.
1561 *
1562 * @note The caller must lock this object for writing.
1563 */
1564HRESULT Console::i_loadDataFromSavedState()
1565{
1566 if (mMachineState != MachineState_Saved || mSavedStateDataLoaded)
1567 return S_OK;
1568
1569 Bstr savedStateFile;
1570 HRESULT rc = mMachine->COMGETTER(StateFilePath)(savedStateFile.asOutParam());
1571 if (FAILED(rc))
1572 return rc;
1573
1574 PSSMHANDLE ssm;
1575 int vrc = SSMR3Open(Utf8Str(savedStateFile).c_str(), 0, &ssm);
1576 if (RT_SUCCESS(vrc))
1577 {
1578 uint32_t version = 0;
1579 vrc = SSMR3Seek(ssm, sSSMConsoleUnit, 0 /* iInstance */, &version);
1580 if (SSM_VERSION_MAJOR(version) == SSM_VERSION_MAJOR(sSSMConsoleVer))
1581 {
1582 if (RT_SUCCESS(vrc))
1583 vrc = i_loadStateFileExecInternal(ssm, version);
1584 else if (vrc == VERR_SSM_UNIT_NOT_FOUND)
1585 vrc = VINF_SUCCESS;
1586 }
1587 else
1588 vrc = VERR_SSM_UNSUPPORTED_DATA_UNIT_VERSION;
1589
1590 SSMR3Close(ssm);
1591 }
1592
1593 if (RT_FAILURE(vrc))
1594 rc = setError(VBOX_E_FILE_ERROR,
1595 tr("The saved state file '%ls' is invalid (%Rrc). Delete the saved state and try again"),
1596 savedStateFile.raw(), vrc);
1597
1598 mSavedStateDataLoaded = true;
1599
1600 return rc;
1601}
1602
1603/**
1604 * Callback handler to save various console data to the state file,
1605 * called when the user saves the VM state.
1606 *
1607 * @param pvUser pointer to Console
1608 *
1609 * @note Locks the Console object for reading.
1610 */
1611//static
1612DECLCALLBACK(void) Console::i_saveStateFileExec(PSSMHANDLE pSSM, void *pvUser)
1613{
1614 LogFlowFunc(("\n"));
1615
1616 Console *that = static_cast<Console *>(pvUser);
1617 AssertReturnVoid(that);
1618
1619 AutoCaller autoCaller(that);
1620 AssertComRCReturnVoid(autoCaller.rc());
1621
1622 AutoReadLock alock(that COMMA_LOCKVAL_SRC_POS);
1623
1624 int vrc = SSMR3PutU32(pSSM, (uint32_t)that->m_mapSharedFolders.size());
1625 AssertRC(vrc);
1626
1627 for (SharedFolderMap::const_iterator it = that->m_mapSharedFolders.begin();
1628 it != that->m_mapSharedFolders.end();
1629 ++it)
1630 {
1631 SharedFolder *pSF = (*it).second;
1632 AutoCaller sfCaller(pSF);
1633 AutoReadLock sfLock(pSF COMMA_LOCKVAL_SRC_POS);
1634
1635 Utf8Str name = pSF->i_getName();
1636 vrc = SSMR3PutU32(pSSM, (uint32_t)name.length() + 1 /* term. 0 */);
1637 AssertRC(vrc);
1638 vrc = SSMR3PutStrZ(pSSM, name.c_str());
1639 AssertRC(vrc);
1640
1641 Utf8Str hostPath = pSF->i_getHostPath();
1642 vrc = SSMR3PutU32(pSSM, (uint32_t)hostPath.length() + 1 /* term. 0 */);
1643 AssertRC(vrc);
1644 vrc = SSMR3PutStrZ(pSSM, hostPath.c_str());
1645 AssertRC(vrc);
1646
1647 vrc = SSMR3PutBool(pSSM, !!pSF->i_isWritable());
1648 AssertRC(vrc);
1649
1650 vrc = SSMR3PutBool(pSSM, !!pSF->i_isAutoMounted());
1651 AssertRC(vrc);
1652 }
1653
1654 return;
1655}
1656
1657/**
1658 * Callback handler to load various console data from the state file.
1659 * Called when the VM is being restored from the saved state.
1660 *
1661 * @param pvUser pointer to Console
1662 * @param uVersion Console unit version.
1663 * Should match sSSMConsoleVer.
1664 * @param uPass The data pass.
1665 *
1666 * @note Should locks the Console object for writing, if necessary.
1667 */
1668//static
1669DECLCALLBACK(int)
1670Console::i_loadStateFileExec(PSSMHANDLE pSSM, void *pvUser, uint32_t uVersion, uint32_t uPass)
1671{
1672 LogFlowFunc(("\n"));
1673
1674 if (SSM_VERSION_MAJOR_CHANGED(uVersion, sSSMConsoleVer))
1675 return VERR_VERSION_MISMATCH;
1676 Assert(uPass == SSM_PASS_FINAL); NOREF(uPass);
1677
1678 Console *that = static_cast<Console *>(pvUser);
1679 AssertReturn(that, VERR_INVALID_PARAMETER);
1680
1681 /* Currently, nothing to do when we've been called from VMR3Load*. */
1682 return SSMR3SkipToEndOfUnit(pSSM);
1683}
1684
1685/**
1686 * Method to load various console data from the state file.
1687 * Called from #loadDataFromSavedState.
1688 *
1689 * @param pvUser pointer to Console
1690 * @param u32Version Console unit version.
1691 * Should match sSSMConsoleVer.
1692 *
1693 * @note Locks the Console object for writing.
1694 */
1695int Console::i_loadStateFileExecInternal(PSSMHANDLE pSSM, uint32_t u32Version)
1696{
1697 AutoCaller autoCaller(this);
1698 AssertComRCReturn(autoCaller.rc(), VERR_ACCESS_DENIED);
1699
1700 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
1701
1702 AssertReturn(m_mapSharedFolders.size() == 0, VERR_INTERNAL_ERROR);
1703
1704 uint32_t size = 0;
1705 int vrc = SSMR3GetU32(pSSM, &size);
1706 AssertRCReturn(vrc, vrc);
1707
1708 for (uint32_t i = 0; i < size; ++i)
1709 {
1710 Utf8Str strName;
1711 Utf8Str strHostPath;
1712 bool writable = true;
1713 bool autoMount = false;
1714
1715 uint32_t szBuf = 0;
1716 char *buf = NULL;
1717
1718 vrc = SSMR3GetU32(pSSM, &szBuf);
1719 AssertRCReturn(vrc, vrc);
1720 buf = new char[szBuf];
1721 vrc = SSMR3GetStrZ(pSSM, buf, szBuf);
1722 AssertRC(vrc);
1723 strName = buf;
1724 delete[] buf;
1725
1726 vrc = SSMR3GetU32(pSSM, &szBuf);
1727 AssertRCReturn(vrc, vrc);
1728 buf = new char[szBuf];
1729 vrc = SSMR3GetStrZ(pSSM, buf, szBuf);
1730 AssertRC(vrc);
1731 strHostPath = buf;
1732 delete[] buf;
1733
1734 if (u32Version > 0x00010000)
1735 SSMR3GetBool(pSSM, &writable);
1736
1737 if (u32Version > 0x00010000) // ???
1738 SSMR3GetBool(pSSM, &autoMount);
1739
1740 ComObjPtr<SharedFolder> pSharedFolder;
1741 pSharedFolder.createObject();
1742 HRESULT rc = pSharedFolder->init(this,
1743 strName,
1744 strHostPath,
1745 writable,
1746 autoMount,
1747 false /* fFailOnError */);
1748 AssertComRCReturn(rc, VERR_INTERNAL_ERROR);
1749
1750 m_mapSharedFolders.insert(std::make_pair(strName, pSharedFolder));
1751 }
1752
1753 return VINF_SUCCESS;
1754}
1755
1756#ifdef VBOX_WITH_GUEST_PROPS
1757
1758// static
1759DECLCALLBACK(int) Console::i_doGuestPropNotification(void *pvExtension,
1760 uint32_t u32Function,
1761 void *pvParms,
1762 uint32_t cbParms)
1763{
1764 using namespace guestProp;
1765
1766 Assert(u32Function == 0); NOREF(u32Function);
1767
1768 /*
1769 * No locking, as this is purely a notification which does not make any
1770 * changes to the object state.
1771 */
1772 PHOSTCALLBACKDATA pCBData = reinterpret_cast<PHOSTCALLBACKDATA>(pvParms);
1773 AssertReturn(sizeof(HOSTCALLBACKDATA) == cbParms, VERR_INVALID_PARAMETER);
1774 AssertReturn(HOSTCALLBACKMAGIC == pCBData->u32Magic, VERR_INVALID_PARAMETER);
1775 LogFlow(("Console::doGuestPropNotification: pCBData={.pcszName=%s, .pcszValue=%s, .pcszFlags=%s}\n",
1776 pCBData->pcszName, pCBData->pcszValue, pCBData->pcszFlags));
1777
1778 int rc;
1779 Bstr name(pCBData->pcszName);
1780 Bstr value(pCBData->pcszValue);
1781 Bstr flags(pCBData->pcszFlags);
1782 ComObjPtr<Console> pConsole = reinterpret_cast<Console *>(pvExtension);
1783 HRESULT hrc = pConsole->mControl->PushGuestProperty(name.raw(),
1784 value.raw(),
1785 pCBData->u64Timestamp,
1786 flags.raw());
1787 if (SUCCEEDED(hrc))
1788 rc = VINF_SUCCESS;
1789 else
1790 {
1791 LogFlow(("Console::doGuestPropNotification: hrc=%Rhrc pCBData={.pcszName=%s, .pcszValue=%s, .pcszFlags=%s}\n",
1792 hrc, pCBData->pcszName, pCBData->pcszValue, pCBData->pcszFlags));
1793 rc = Global::vboxStatusCodeFromCOM(hrc);
1794 }
1795 return rc;
1796}
1797
1798HRESULT Console::i_doEnumerateGuestProperties(const Utf8Str &aPatterns,
1799 std::vector<Utf8Str> &aNames,
1800 std::vector<Utf8Str> &aValues,
1801 std::vector<LONG64> &aTimestamps,
1802 std::vector<Utf8Str> &aFlags)
1803{
1804 AssertReturn(m_pVMMDev, E_FAIL);
1805
1806 using namespace guestProp;
1807
1808 VBOXHGCMSVCPARM parm[3];
1809
1810 parm[0].type = VBOX_HGCM_SVC_PARM_PTR;
1811 parm[0].u.pointer.addr = (void*)aPatterns.c_str();
1812 parm[0].u.pointer.size = (uint32_t)aPatterns.length() + 1;
1813
1814 /*
1815 * Now things get slightly complicated. Due to a race with the guest adding
1816 * properties, there is no good way to know how much to enlarge a buffer for
1817 * the service to enumerate into. We choose a decent starting size and loop a
1818 * few times, each time retrying with the size suggested by the service plus
1819 * one Kb.
1820 */
1821 size_t cchBuf = 4096;
1822 Utf8Str Utf8Buf;
1823 int vrc = VERR_BUFFER_OVERFLOW;
1824 for (unsigned i = 0; i < 10 && (VERR_BUFFER_OVERFLOW == vrc); ++i)
1825 {
1826 try
1827 {
1828 Utf8Buf.reserve(cchBuf + 1024);
1829 }
1830 catch(...)
1831 {
1832 return E_OUTOFMEMORY;
1833 }
1834
1835 parm[1].type = VBOX_HGCM_SVC_PARM_PTR;
1836 parm[1].u.pointer.addr = Utf8Buf.mutableRaw();
1837 parm[1].u.pointer.size = (uint32_t)cchBuf + 1024;
1838
1839 parm[2].type = VBOX_HGCM_SVC_PARM_32BIT;
1840 parm[2].u.uint32 = 0;
1841
1842 vrc = m_pVMMDev->hgcmHostCall("VBoxGuestPropSvc", ENUM_PROPS_HOST, 3,
1843 &parm[0]);
1844 Utf8Buf.jolt();
1845 if (parm[2].type != VBOX_HGCM_SVC_PARM_32BIT)
1846 return setError(E_FAIL, tr("Internal application error"));
1847 cchBuf = parm[2].u.uint32;
1848 }
1849 if (VERR_BUFFER_OVERFLOW == vrc)
1850 return setError(E_UNEXPECTED,
1851 tr("Temporary failure due to guest activity, please retry"));
1852
1853 /*
1854 * Finally we have to unpack the data returned by the service into the safe
1855 * arrays supplied by the caller. We start by counting the number of entries.
1856 */
1857 const char *pszBuf
1858 = reinterpret_cast<const char *>(parm[1].u.pointer.addr);
1859 unsigned cEntries = 0;
1860 /* The list is terminated by a zero-length string at the end of a set
1861 * of four strings. */
1862 for (size_t i = 0; strlen(pszBuf + i) != 0; )
1863 {
1864 /* We are counting sets of four strings. */
1865 for (unsigned j = 0; j < 4; ++j)
1866 i += strlen(pszBuf + i) + 1;
1867 ++cEntries;
1868 }
1869
1870 aNames.resize(cEntries);
1871 aValues.resize(cEntries);
1872 aTimestamps.resize(cEntries);
1873 aFlags.resize(cEntries);
1874
1875 size_t iBuf = 0;
1876 /* Rely on the service to have formated the data correctly. */
1877 for (unsigned i = 0; i < cEntries; ++i)
1878 {
1879 size_t cchName = strlen(pszBuf + iBuf);
1880 aNames[i] = &pszBuf[iBuf];
1881 iBuf += cchName + 1;
1882
1883 size_t cchValue = strlen(pszBuf + iBuf);
1884 aValues[i] = &pszBuf[iBuf];
1885 iBuf += cchValue + 1;
1886
1887 size_t cchTimestamp = strlen(pszBuf + iBuf);
1888 aTimestamps[i] = RTStrToUInt64(&pszBuf[iBuf]);
1889 iBuf += cchTimestamp + 1;
1890
1891 size_t cchFlags = strlen(pszBuf + iBuf);
1892 aFlags[i] = &pszBuf[iBuf];
1893 iBuf += cchFlags + 1;
1894 }
1895
1896 return S_OK;
1897}
1898
1899#endif /* VBOX_WITH_GUEST_PROPS */
1900
1901
1902// IConsole properties
1903/////////////////////////////////////////////////////////////////////////////
1904HRESULT Console::getMachine(ComPtr<IMachine> &aMachine)
1905{
1906 /* mMachine is constant during life time, no need to lock */
1907 mMachine.queryInterfaceTo(aMachine.asOutParam());
1908
1909 /* callers expect to get a valid reference, better fail than crash them */
1910 if (mMachine.isNull())
1911 return E_FAIL;
1912
1913 return S_OK;
1914}
1915
1916HRESULT Console::getState(MachineState_T *aState)
1917{
1918 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1919
1920 /* we return our local state (since it's always the same as on the server) */
1921 *aState = mMachineState;
1922
1923 return S_OK;
1924}
1925
1926HRESULT Console::getGuest(ComPtr<IGuest> &aGuest)
1927{
1928 /* mGuest is constant during life time, no need to lock */
1929 mGuest.queryInterfaceTo(aGuest.asOutParam());
1930
1931 return S_OK;
1932}
1933
1934HRESULT Console::getKeyboard(ComPtr<IKeyboard> &aKeyboard)
1935{
1936 /* mKeyboard is constant during life time, no need to lock */
1937 mKeyboard.queryInterfaceTo(aKeyboard.asOutParam());
1938
1939 return S_OK;
1940}
1941
1942HRESULT Console::getMouse(ComPtr<IMouse> &aMouse)
1943{
1944 /* mMouse is constant during life time, no need to lock */
1945 mMouse.queryInterfaceTo(aMouse.asOutParam());
1946
1947 return S_OK;
1948}
1949
1950HRESULT Console::getDisplay(ComPtr<IDisplay> &aDisplay)
1951{
1952 /* mDisplay is constant during life time, no need to lock */
1953 mDisplay.queryInterfaceTo(aDisplay.asOutParam());
1954
1955 return S_OK;
1956}
1957
1958HRESULT Console::getDebugger(ComPtr<IMachineDebugger> &aDebugger)
1959{
1960 /* we need a write lock because of the lazy mDebugger initialization*/
1961 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
1962
1963 /* check if we have to create the debugger object */
1964 if (!mDebugger)
1965 {
1966 unconst(mDebugger).createObject();
1967 mDebugger->init(this);
1968 }
1969
1970 mDebugger.queryInterfaceTo(aDebugger.asOutParam());
1971
1972 return S_OK;
1973}
1974
1975HRESULT Console::getUSBDevices(std::vector<ComPtr<IUSBDevice> > &aUSBDevices)
1976{
1977 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1978
1979 size_t i = 0;
1980 aUSBDevices.resize(mUSBDevices.size());
1981 for (USBDeviceList::const_iterator it = mUSBDevices.begin(); it != mUSBDevices.end(); ++i, ++it)
1982 (*it).queryInterfaceTo(aUSBDevices[i].asOutParam());
1983
1984 return S_OK;
1985}
1986
1987
1988HRESULT Console::getRemoteUSBDevices(std::vector<ComPtr<IHostUSBDevice> > &aRemoteUSBDevices)
1989{
1990 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1991
1992 size_t i = 0;
1993 aRemoteUSBDevices.resize(mRemoteUSBDevices.size());
1994 for (RemoteUSBDeviceList::const_iterator it = mRemoteUSBDevices.begin(); it != mRemoteUSBDevices.end(); ++i, ++it)
1995 (*it).queryInterfaceTo(aRemoteUSBDevices[i].asOutParam());
1996
1997 return S_OK;
1998}
1999
2000HRESULT Console::getVRDEServerInfo(ComPtr<IVRDEServerInfo> &aVRDEServerInfo)
2001{
2002 /* mVRDEServerInfo is constant during life time, no need to lock */
2003 mVRDEServerInfo.queryInterfaceTo(aVRDEServerInfo.asOutParam());
2004
2005 return S_OK;
2006}
2007
2008HRESULT Console::getEmulatedUSB(ComPtr<IEmulatedUSB> &aEmulatedUSB)
2009{
2010 /* mEmulatedUSB is constant during life time, no need to lock */
2011 mEmulatedUSB.queryInterfaceTo(aEmulatedUSB.asOutParam());
2012
2013 return S_OK;
2014}
2015
2016HRESULT Console::getSharedFolders(std::vector<ComPtr<ISharedFolder> > &aSharedFolders)
2017{
2018 /* loadDataFromSavedState() needs a write lock */
2019 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2020
2021 /* Read console data stored in the saved state file (if not yet done) */
2022 HRESULT rc = i_loadDataFromSavedState();
2023 if (FAILED(rc)) return rc;
2024
2025 size_t i = 0;
2026 aSharedFolders.resize(m_mapSharedFolders.size());
2027 for (SharedFolderMap::const_iterator it = m_mapSharedFolders.begin(); it != m_mapSharedFolders.end(); ++i, ++it)
2028 (it)->second.queryInterfaceTo(aSharedFolders[i].asOutParam());
2029
2030 return S_OK;
2031}
2032
2033HRESULT Console::getEventSource(ComPtr<IEventSource> &aEventSource)
2034{
2035 // no need to lock - lifetime constant
2036 mEventSource.queryInterfaceTo(aEventSource.asOutParam());
2037
2038 return S_OK;
2039}
2040
2041HRESULT Console::getAttachedPCIDevices(std::vector<ComPtr<IPCIDeviceAttachment> > &aAttachedPCIDevices)
2042{
2043 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
2044
2045 if (mBusMgr)
2046 mBusMgr->listAttachedPCIDevices(aAttachedPCIDevices);
2047 else
2048 aAttachedPCIDevices.resize(0);
2049
2050 return S_OK;
2051}
2052
2053HRESULT Console::getUseHostClipboard(BOOL *aUseHostClipboard)
2054{
2055 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
2056
2057 *aUseHostClipboard = mfUseHostClipboard;
2058
2059 return S_OK;
2060}
2061
2062HRESULT Console::setUseHostClipboard(BOOL aUseHostClipboard)
2063{
2064 mfUseHostClipboard = !!aUseHostClipboard;
2065
2066 return S_OK;
2067}
2068
2069// IConsole methods
2070/////////////////////////////////////////////////////////////////////////////
2071
2072HRESULT Console::powerUp(ComPtr<IProgress> &aProgress)
2073{
2074 ComObjPtr<IProgress> pProgress;
2075 i_powerUp(pProgress.asOutParam(), false /* aPaused */);
2076 pProgress.queryInterfaceTo(aProgress.asOutParam());
2077 return S_OK;
2078}
2079
2080HRESULT Console::powerUpPaused(ComPtr<IProgress> &aProgress)
2081{
2082 ComObjPtr<IProgress> pProgress;
2083 i_powerUp(pProgress.asOutParam(), true /* aPaused */);
2084 pProgress.queryInterfaceTo(aProgress.asOutParam());
2085 return S_OK;
2086}
2087
2088HRESULT Console::powerDown(ComPtr<IProgress> &aProgress)
2089{
2090 LogFlowThisFuncEnter();
2091
2092 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2093
2094 LogFlowThisFunc(("mMachineState=%d\n", mMachineState));
2095 switch (mMachineState)
2096 {
2097 case MachineState_Running:
2098 case MachineState_Paused:
2099 case MachineState_Stuck:
2100 break;
2101
2102 /* Try cancel the teleportation. */
2103 case MachineState_Teleporting:
2104 case MachineState_TeleportingPausedVM:
2105 if (!mptrCancelableProgress.isNull())
2106 {
2107 HRESULT hrc = mptrCancelableProgress->Cancel();
2108 if (SUCCEEDED(hrc))
2109 break;
2110 }
2111 return setError(VBOX_E_INVALID_VM_STATE, tr("Cannot power down at this point in a teleportation"));
2112
2113 /* Try cancel the live snapshot. */
2114 case MachineState_LiveSnapshotting:
2115 if (!mptrCancelableProgress.isNull())
2116 {
2117 HRESULT hrc = mptrCancelableProgress->Cancel();
2118 if (SUCCEEDED(hrc))
2119 break;
2120 }
2121 return setError(VBOX_E_INVALID_VM_STATE, tr("Cannot power down at this point in a live snapshot"));
2122
2123 /* Try cancel the FT sync. */
2124 case MachineState_FaultTolerantSyncing:
2125 if (!mptrCancelableProgress.isNull())
2126 {
2127 HRESULT hrc = mptrCancelableProgress->Cancel();
2128 if (SUCCEEDED(hrc))
2129 break;
2130 }
2131 return setError(VBOX_E_INVALID_VM_STATE, tr("Cannot power down at this point in a fault tolerant sync"));
2132
2133 /* extra nice error message for a common case */
2134 case MachineState_Saved:
2135 return setError(VBOX_E_INVALID_VM_STATE, tr("Cannot power down a saved virtual machine"));
2136 case MachineState_Stopping:
2137 return setError(VBOX_E_INVALID_VM_STATE, tr("The virtual machine is being powered down"));
2138 default:
2139 return setError(VBOX_E_INVALID_VM_STATE,
2140 tr("Invalid machine state: %s (must be Running, Paused or Stuck)"),
2141 Global::stringifyMachineState(mMachineState));
2142 }
2143
2144 LogFlowThisFunc(("Initiating SHUTDOWN request...\n"));
2145
2146 /* memorize the current machine state */
2147 MachineState_T lastMachineState = mMachineState;
2148
2149 HRESULT rc = S_OK;
2150 bool fBeganPowerDown = false;
2151
2152 do
2153 {
2154 ComPtr<IProgress> pProgress;
2155
2156#ifdef VBOX_WITH_GUEST_PROPS
2157 alock.release();
2158
2159 if (i_isResetTurnedIntoPowerOff())
2160 {
2161 mMachine->DeleteGuestProperty(Bstr("/VirtualBox/HostInfo/VMPowerOffReason").raw());
2162 mMachine->SetGuestProperty(Bstr("/VirtualBox/HostInfo/VMPowerOffReason").raw(),
2163 Bstr("PowerOff").raw(), Bstr("RDONLYGUEST").raw());
2164 mMachine->SaveSettings();
2165 }
2166
2167 alock.acquire();
2168#endif
2169
2170 /*
2171 * request a progress object from the server
2172 * (this will set the machine state to Stopping on the server to block
2173 * others from accessing this machine)
2174 */
2175 rc = mControl->BeginPoweringDown(pProgress.asOutParam());
2176 if (FAILED(rc))
2177 break;
2178
2179 fBeganPowerDown = true;
2180
2181 /* sync the state with the server */
2182 i_setMachineStateLocally(MachineState_Stopping);
2183
2184 /* setup task object and thread to carry out the operation asynchronously */
2185 std::auto_ptr<VMPowerDownTask> task(new VMPowerDownTask(this, pProgress));
2186 AssertBreakStmt(task->isOk(), rc = E_FAIL);
2187
2188 int vrc = RTThreadCreate(NULL, Console::i_powerDownThread,
2189 (void *) task.get(), 0,
2190 RTTHREADTYPE_MAIN_WORKER, 0,
2191 "VMPwrDwn");
2192 if (RT_FAILURE(vrc))
2193 {
2194 rc = setError(E_FAIL, "Could not create VMPowerDown thread (%Rrc)", vrc);
2195 break;
2196 }
2197
2198 /* task is now owned by powerDownThread(), so release it */
2199 task.release();
2200
2201 /* pass the progress to the caller */
2202 pProgress.queryInterfaceTo(aProgress.asOutParam());
2203 }
2204 while (0);
2205
2206 if (FAILED(rc))
2207 {
2208 /* preserve existing error info */
2209 ErrorInfoKeeper eik;
2210
2211 if (fBeganPowerDown)
2212 {
2213 /*
2214 * cancel the requested power down procedure.
2215 * This will reset the machine state to the state it had right
2216 * before calling mControl->BeginPoweringDown().
2217 */
2218 mControl->EndPoweringDown(eik.getResultCode(), eik.getText().raw()); }
2219
2220 i_setMachineStateLocally(lastMachineState);
2221 }
2222
2223 LogFlowThisFunc(("rc=%Rhrc\n", rc));
2224 LogFlowThisFuncLeave();
2225
2226 return rc;
2227}
2228
2229HRESULT Console::reset()
2230{
2231 LogFlowThisFuncEnter();
2232
2233 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2234
2235 LogFlowThisFunc(("mMachineState=%d\n", mMachineState));
2236 if ( mMachineState != MachineState_Running
2237 && mMachineState != MachineState_Teleporting
2238 && mMachineState != MachineState_LiveSnapshotting
2239 /** @todo r=bird: This should be allowed on paused VMs as well. Later. */
2240 )
2241 return i_setInvalidMachineStateError();
2242
2243 /* protect mpUVM */
2244 SafeVMPtr ptrVM(this);
2245 if (!ptrVM.isOk())
2246 return ptrVM.rc();
2247
2248 /* release the lock before a VMR3* call (EMT will call us back)! */
2249 alock.release();
2250
2251 int vrc = VMR3Reset(ptrVM.rawUVM());
2252
2253 HRESULT rc = RT_SUCCESS(vrc) ? S_OK :
2254 setError(VBOX_E_VM_ERROR,
2255 tr("Could not reset the machine (%Rrc)"),
2256 vrc);
2257
2258 LogFlowThisFunc(("mMachineState=%d, rc=%Rhrc\n", mMachineState, rc));
2259 LogFlowThisFuncLeave();
2260 return rc;
2261}
2262
2263/*static*/ DECLCALLBACK(int) Console::i_unplugCpu(Console *pThis, PUVM pUVM, VMCPUID idCpu)
2264{
2265 LogFlowFunc(("pThis=%p pVM=%p idCpu=%u\n", pThis, pUVM, idCpu));
2266
2267 AssertReturn(pThis, VERR_INVALID_PARAMETER);
2268
2269 int vrc = PDMR3DeviceDetach(pUVM, "acpi", 0, idCpu, 0);
2270 Log(("UnplugCpu: rc=%Rrc\n", vrc));
2271
2272 return vrc;
2273}
2274
2275HRESULT Console::i_doCPURemove(ULONG aCpu, PUVM pUVM)
2276{
2277 HRESULT rc = S_OK;
2278
2279 LogFlowThisFuncEnter();
2280
2281 AutoCaller autoCaller(this);
2282 if (FAILED(autoCaller.rc())) return autoCaller.rc();
2283
2284 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2285
2286 LogFlowThisFunc(("mMachineState=%d\n", mMachineState));
2287 AssertReturn(m_pVMMDev, E_FAIL);
2288 PPDMIVMMDEVPORT pVmmDevPort = m_pVMMDev->getVMMDevPort();
2289 AssertReturn(pVmmDevPort, E_FAIL);
2290
2291 if ( mMachineState != MachineState_Running
2292 && mMachineState != MachineState_Teleporting
2293 && mMachineState != MachineState_LiveSnapshotting
2294 )
2295 return i_setInvalidMachineStateError();
2296
2297 /* Check if the CPU is present */
2298 BOOL fCpuAttached;
2299 rc = mMachine->GetCPUStatus(aCpu, &fCpuAttached);
2300 if (FAILED(rc))
2301 return rc;
2302 if (!fCpuAttached)
2303 return setError(E_FAIL, tr("CPU %d is not attached"), aCpu);
2304
2305 /* Leave the lock before any EMT/VMMDev call. */
2306 alock.release();
2307 bool fLocked = true;
2308
2309 /* Check if the CPU is unlocked */
2310 PPDMIBASE pBase;
2311 int vrc = PDMR3QueryDeviceLun(pUVM, "acpi", 0, aCpu, &pBase);
2312 if (RT_SUCCESS(vrc))
2313 {
2314 Assert(pBase);
2315 PPDMIACPIPORT pApicPort = PDMIBASE_QUERY_INTERFACE(pBase, PDMIACPIPORT);
2316
2317 /* Notify the guest if possible. */
2318 uint32_t idCpuCore, idCpuPackage;
2319 vrc = VMR3GetCpuCoreAndPackageIdFromCpuId(pUVM, aCpu, &idCpuCore, &idCpuPackage); AssertRC(vrc);
2320 if (RT_SUCCESS(vrc))
2321 vrc = pVmmDevPort->pfnCpuHotUnplug(pVmmDevPort, idCpuCore, idCpuPackage);
2322 if (RT_SUCCESS(vrc))
2323 {
2324 unsigned cTries = 100;
2325 do
2326 {
2327 /* It will take some time until the event is processed in the guest. Wait... */
2328 vrc = pApicPort ? pApicPort->pfnGetCpuStatus(pApicPort, aCpu, &fLocked) : VERR_INVALID_POINTER;
2329 if (RT_SUCCESS(vrc) && !fLocked)
2330 break;
2331
2332 /* Sleep a bit */
2333 RTThreadSleep(100);
2334 } while (cTries-- > 0);
2335 }
2336 else if (vrc == VERR_CPU_HOTPLUG_NOT_MONITORED_BY_GUEST)
2337 {
2338 /* Query one time. It is possible that the user ejected the CPU. */
2339 vrc = pApicPort ? pApicPort->pfnGetCpuStatus(pApicPort, aCpu, &fLocked) : VERR_INVALID_POINTER;
2340 }
2341 }
2342
2343 /* If the CPU was unlocked we can detach it now. */
2344 if (RT_SUCCESS(vrc) && !fLocked)
2345 {
2346 /*
2347 * Call worker in EMT, that's faster and safer than doing everything
2348 * using VMR3ReqCall.
2349 */
2350 PVMREQ pReq;
2351 vrc = VMR3ReqCallU(pUVM, 0, &pReq, 0 /* no wait! */, VMREQFLAGS_VBOX_STATUS,
2352 (PFNRT)i_unplugCpu, 3,
2353 this, pUVM, (VMCPUID)aCpu);
2354 if (vrc == VERR_TIMEOUT || RT_SUCCESS(vrc))
2355 {
2356 vrc = VMR3ReqWait(pReq, RT_INDEFINITE_WAIT);
2357 AssertRC(vrc);
2358 if (RT_SUCCESS(vrc))
2359 vrc = pReq->iStatus;
2360 }
2361 VMR3ReqFree(pReq);
2362
2363 if (RT_SUCCESS(vrc))
2364 {
2365 /* Detach it from the VM */
2366 vrc = VMR3HotUnplugCpu(pUVM, aCpu);
2367 AssertRC(vrc);
2368 }
2369 else
2370 rc = setError(VBOX_E_VM_ERROR,
2371 tr("Hot-Remove failed (rc=%Rrc)"), vrc);
2372 }
2373 else
2374 rc = setError(VBOX_E_VM_ERROR,
2375 tr("Hot-Remove was aborted because the CPU may still be used by the guest"), VERR_RESOURCE_BUSY);
2376
2377 LogFlowThisFunc(("mMachineState=%d, rc=%Rhrc\n", mMachineState, rc));
2378 LogFlowThisFuncLeave();
2379 return rc;
2380}
2381
2382/*static*/ DECLCALLBACK(int) Console::i_plugCpu(Console *pThis, PUVM pUVM, VMCPUID idCpu)
2383{
2384 LogFlowFunc(("pThis=%p uCpu=%u\n", pThis, idCpu));
2385
2386 AssertReturn(pThis, VERR_INVALID_PARAMETER);
2387
2388 int rc = VMR3HotPlugCpu(pUVM, idCpu);
2389 AssertRC(rc);
2390
2391 PCFGMNODE pInst = CFGMR3GetChild(CFGMR3GetRootU(pUVM), "Devices/acpi/0/");
2392 AssertRelease(pInst);
2393 /* nuke anything which might have been left behind. */
2394 CFGMR3RemoveNode(CFGMR3GetChildF(pInst, "LUN#%u", idCpu));
2395
2396#define RC_CHECK() do { if (RT_FAILURE(rc)) { AssertReleaseRC(rc); break; } } while (0)
2397
2398 PCFGMNODE pLunL0;
2399 PCFGMNODE pCfg;
2400 rc = CFGMR3InsertNodeF(pInst, &pLunL0, "LUN#%u", idCpu); RC_CHECK();
2401 rc = CFGMR3InsertString(pLunL0, "Driver", "ACPICpu"); RC_CHECK();
2402 rc = CFGMR3InsertNode(pLunL0, "Config", &pCfg); RC_CHECK();
2403
2404 /*
2405 * Attach the driver.
2406 */
2407 PPDMIBASE pBase;
2408 rc = PDMR3DeviceAttach(pUVM, "acpi", 0, idCpu, 0, &pBase); RC_CHECK();
2409
2410 Log(("PlugCpu: rc=%Rrc\n", rc));
2411
2412 CFGMR3Dump(pInst);
2413
2414#undef RC_CHECK
2415
2416 return VINF_SUCCESS;
2417}
2418
2419HRESULT Console::i_doCPUAdd(ULONG aCpu, PUVM pUVM)
2420{
2421 HRESULT rc = S_OK;
2422
2423 LogFlowThisFuncEnter();
2424
2425 AutoCaller autoCaller(this);
2426 if (FAILED(autoCaller.rc())) return autoCaller.rc();
2427
2428 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2429
2430 LogFlowThisFunc(("mMachineState=%d\n", mMachineState));
2431 if ( mMachineState != MachineState_Running
2432 && mMachineState != MachineState_Teleporting
2433 && mMachineState != MachineState_LiveSnapshotting
2434 /** @todo r=bird: This should be allowed on paused VMs as well. Later. */
2435 )
2436 return i_setInvalidMachineStateError();
2437
2438 AssertReturn(m_pVMMDev, E_FAIL);
2439 PPDMIVMMDEVPORT pDevPort = m_pVMMDev->getVMMDevPort();
2440 AssertReturn(pDevPort, E_FAIL);
2441
2442 /* Check if the CPU is present */
2443 BOOL fCpuAttached;
2444 rc = mMachine->GetCPUStatus(aCpu, &fCpuAttached);
2445 if (FAILED(rc)) return rc;
2446
2447 if (fCpuAttached)
2448 return setError(E_FAIL,
2449 tr("CPU %d is already attached"), aCpu);
2450
2451 /*
2452 * Call worker in EMT, that's faster and safer than doing everything
2453 * using VMR3ReqCall. Note that we separate VMR3ReqCall from VMR3ReqWait
2454 * here to make requests from under the lock in order to serialize them.
2455 */
2456 PVMREQ pReq;
2457 int vrc = VMR3ReqCallU(pUVM, 0, &pReq, 0 /* no wait! */, VMREQFLAGS_VBOX_STATUS,
2458 (PFNRT)i_plugCpu, 3,
2459 this, pUVM, aCpu);
2460
2461 /* release the lock before a VMR3* call (EMT will call us back)! */
2462 alock.release();
2463
2464 if (vrc == VERR_TIMEOUT || RT_SUCCESS(vrc))
2465 {
2466 vrc = VMR3ReqWait(pReq, RT_INDEFINITE_WAIT);
2467 AssertRC(vrc);
2468 if (RT_SUCCESS(vrc))
2469 vrc = pReq->iStatus;
2470 }
2471 VMR3ReqFree(pReq);
2472
2473 rc = RT_SUCCESS(vrc) ? S_OK :
2474 setError(VBOX_E_VM_ERROR,
2475 tr("Could not add CPU to the machine (%Rrc)"),
2476 vrc);
2477
2478 if (RT_SUCCESS(vrc))
2479 {
2480 /* Notify the guest if possible. */
2481 uint32_t idCpuCore, idCpuPackage;
2482 vrc = VMR3GetCpuCoreAndPackageIdFromCpuId(pUVM, aCpu, &idCpuCore, &idCpuPackage); AssertRC(vrc);
2483 if (RT_SUCCESS(vrc))
2484 vrc = pDevPort->pfnCpuHotPlug(pDevPort, idCpuCore, idCpuPackage);
2485 /** @todo warning if the guest doesn't support it */
2486 }
2487
2488 LogFlowThisFunc(("mMachineState=%d, rc=%Rhrc\n", mMachineState, rc));
2489 LogFlowThisFuncLeave();
2490 return rc;
2491}
2492
2493HRESULT Console::pause()
2494{
2495 LogFlowThisFuncEnter();
2496
2497 HRESULT rc = i_pause(Reason_Unspecified);
2498
2499 LogFlowThisFunc(("rc=%Rhrc\n", rc));
2500 LogFlowThisFuncLeave();
2501 return rc;
2502}
2503
2504HRESULT Console::resume()
2505{
2506 LogFlowThisFuncEnter();
2507
2508 HRESULT rc = i_resume(Reason_Unspecified);
2509
2510 LogFlowThisFunc(("rc=%Rhrc\n", rc));
2511 LogFlowThisFuncLeave();
2512 return rc;
2513}
2514
2515HRESULT Console::powerButton()
2516{
2517 LogFlowThisFuncEnter();
2518
2519 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2520
2521 if ( mMachineState != MachineState_Running
2522 && mMachineState != MachineState_Teleporting
2523 && mMachineState != MachineState_LiveSnapshotting
2524 )
2525 return i_setInvalidMachineStateError();
2526
2527 /* get the VM handle. */
2528 SafeVMPtr ptrVM(this);
2529 if (!ptrVM.isOk())
2530 return ptrVM.rc();
2531
2532 // no need to release lock, as there are no cross-thread callbacks
2533
2534 /* get the acpi device interface and press the button. */
2535 PPDMIBASE pBase;
2536 int vrc = PDMR3QueryDeviceLun(ptrVM.rawUVM(), "acpi", 0, 0, &pBase);
2537 if (RT_SUCCESS(vrc))
2538 {
2539 Assert(pBase);
2540 PPDMIACPIPORT pPort = PDMIBASE_QUERY_INTERFACE(pBase, PDMIACPIPORT);
2541 if (pPort)
2542 vrc = pPort->pfnPowerButtonPress(pPort);
2543 else
2544 vrc = VERR_PDM_MISSING_INTERFACE;
2545 }
2546
2547 HRESULT rc = RT_SUCCESS(vrc) ? S_OK :
2548 setError(VBOX_E_PDM_ERROR,
2549 tr("Controlled power off failed (%Rrc)"),
2550 vrc);
2551
2552 LogFlowThisFunc(("rc=%Rhrc\n", rc));
2553 LogFlowThisFuncLeave();
2554 return rc;
2555}
2556
2557HRESULT Console::getPowerButtonHandled(BOOL *aHandled)
2558{
2559 LogFlowThisFuncEnter();
2560
2561 *aHandled = FALSE;
2562
2563 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2564
2565 if ( mMachineState != MachineState_Running
2566 && mMachineState != MachineState_Teleporting
2567 && mMachineState != MachineState_LiveSnapshotting
2568 )
2569 return i_setInvalidMachineStateError();
2570
2571 /* get the VM handle. */
2572 SafeVMPtr ptrVM(this);
2573 if (!ptrVM.isOk())
2574 return ptrVM.rc();
2575
2576 // no need to release lock, as there are no cross-thread callbacks
2577
2578 /* get the acpi device interface and check if the button press was handled. */
2579 PPDMIBASE pBase;
2580 int vrc = PDMR3QueryDeviceLun(ptrVM.rawUVM(), "acpi", 0, 0, &pBase);
2581 if (RT_SUCCESS(vrc))
2582 {
2583 Assert(pBase);
2584 PPDMIACPIPORT pPort = PDMIBASE_QUERY_INTERFACE(pBase, PDMIACPIPORT);
2585 if (pPort)
2586 {
2587 bool fHandled = false;
2588 vrc = pPort->pfnGetPowerButtonHandled(pPort, &fHandled);
2589 if (RT_SUCCESS(vrc))
2590 *aHandled = fHandled;
2591 }
2592 else
2593 vrc = VERR_PDM_MISSING_INTERFACE;
2594 }
2595
2596 HRESULT rc = RT_SUCCESS(vrc) ? S_OK :
2597 setError(VBOX_E_PDM_ERROR,
2598 tr("Checking if the ACPI Power Button event was handled by the guest OS failed (%Rrc)"),
2599 vrc);
2600
2601 LogFlowThisFunc(("rc=%Rhrc\n", rc));
2602 LogFlowThisFuncLeave();
2603 return rc;
2604}
2605
2606HRESULT Console::getGuestEnteredACPIMode(BOOL *aEntered)
2607{
2608 LogFlowThisFuncEnter();
2609
2610 *aEntered = FALSE;
2611
2612 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2613
2614 if ( mMachineState != MachineState_Running
2615 && mMachineState != MachineState_Teleporting
2616 && mMachineState != MachineState_LiveSnapshotting
2617 )
2618 return setError(VBOX_E_INVALID_VM_STATE,
2619 tr("Invalid machine state %s when checking if the guest entered the ACPI mode)"),
2620 Global::stringifyMachineState(mMachineState));
2621
2622 /* get the VM handle. */
2623 SafeVMPtr ptrVM(this);
2624 if (!ptrVM.isOk())
2625 return ptrVM.rc();
2626
2627 // no need to release lock, as there are no cross-thread callbacks
2628
2629 /* get the acpi device interface and query the information. */
2630 PPDMIBASE pBase;
2631 int vrc = PDMR3QueryDeviceLun(ptrVM.rawUVM(), "acpi", 0, 0, &pBase);
2632 if (RT_SUCCESS(vrc))
2633 {
2634 Assert(pBase);
2635 PPDMIACPIPORT pPort = PDMIBASE_QUERY_INTERFACE(pBase, PDMIACPIPORT);
2636 if (pPort)
2637 {
2638 bool fEntered = false;
2639 vrc = pPort->pfnGetGuestEnteredACPIMode(pPort, &fEntered);
2640 if (RT_SUCCESS(vrc))
2641 *aEntered = fEntered;
2642 }
2643 else
2644 vrc = VERR_PDM_MISSING_INTERFACE;
2645 }
2646
2647 LogFlowThisFuncLeave();
2648 return S_OK;
2649}
2650
2651HRESULT Console::sleepButton()
2652{
2653 LogFlowThisFuncEnter();
2654
2655 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2656
2657 if ( mMachineState != MachineState_Running
2658 && mMachineState != MachineState_Teleporting
2659 && mMachineState != MachineState_LiveSnapshotting)
2660 return i_setInvalidMachineStateError();
2661
2662 /* get the VM handle. */
2663 SafeVMPtr ptrVM(this);
2664 if (!ptrVM.isOk())
2665 return ptrVM.rc();
2666
2667 // no need to release lock, as there are no cross-thread callbacks
2668
2669 /* get the acpi device interface and press the sleep button. */
2670 PPDMIBASE pBase;
2671 int vrc = PDMR3QueryDeviceLun(ptrVM.rawUVM(), "acpi", 0, 0, &pBase);
2672 if (RT_SUCCESS(vrc))
2673 {
2674 Assert(pBase);
2675 PPDMIACPIPORT pPort = PDMIBASE_QUERY_INTERFACE(pBase, PDMIACPIPORT);
2676 if (pPort)
2677 vrc = pPort->pfnSleepButtonPress(pPort);
2678 else
2679 vrc = VERR_PDM_MISSING_INTERFACE;
2680 }
2681
2682 HRESULT rc = RT_SUCCESS(vrc) ? S_OK :
2683 setError(VBOX_E_PDM_ERROR,
2684 tr("Sending sleep button event failed (%Rrc)"),
2685 vrc);
2686
2687 LogFlowThisFunc(("rc=%Rhrc\n", rc));
2688 LogFlowThisFuncLeave();
2689 return rc;
2690}
2691
2692HRESULT Console::saveState(ComPtr<IProgress> &aProgress)
2693{
2694 LogFlowThisFuncEnter();
2695 ComObjPtr<IProgress> pProgress;
2696
2697 HRESULT rc = i_saveState(Reason_Unspecified, pProgress.asOutParam());
2698 pProgress.queryInterfaceTo(aProgress.asOutParam());
2699
2700 LogFlowThisFunc(("rc=%Rhrc\n", rc));
2701 LogFlowThisFuncLeave();
2702 return rc;
2703}
2704
2705HRESULT Console::adoptSavedState(const com::Utf8Str &aSavedStateFile)
2706{
2707 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2708
2709 if ( mMachineState != MachineState_PoweredOff
2710 && mMachineState != MachineState_Teleported
2711 && mMachineState != MachineState_Aborted
2712 )
2713 return setError(VBOX_E_INVALID_VM_STATE,
2714 tr("Cannot adopt the saved machine state as the machine is not in Powered Off, Teleported or Aborted state (machine state: %s)"),
2715 Global::stringifyMachineState(mMachineState));
2716
2717 return mControl->AdoptSavedState(Bstr(aSavedStateFile.c_str()).raw());
2718}
2719
2720HRESULT Console::discardSavedState(BOOL aFRemoveFile)
2721{
2722 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2723
2724 if (mMachineState != MachineState_Saved)
2725 return setError(VBOX_E_INVALID_VM_STATE,
2726 tr("Cannot delete the machine state as the machine is not in the saved state (machine state: %s)"),
2727 Global::stringifyMachineState(mMachineState));
2728
2729 HRESULT rc = mControl->SetRemoveSavedStateFile(aFRemoveFile);
2730 if (FAILED(rc)) return rc;
2731
2732 /*
2733 * Saved -> PoweredOff transition will be detected in the SessionMachine
2734 * and properly handled.
2735 */
2736 rc = i_setMachineState(MachineState_PoweredOff);
2737
2738 return rc;
2739}
2740
2741/** read the value of a LED. */
2742inline uint32_t readAndClearLed(PPDMLED pLed)
2743{
2744 if (!pLed)
2745 return 0;
2746 uint32_t u32 = pLed->Actual.u32 | pLed->Asserted.u32;
2747 pLed->Asserted.u32 = 0;
2748 return u32;
2749}
2750
2751HRESULT Console::getDeviceActivity(const std::vector<DeviceType_T> &aType,
2752 std::vector<DeviceActivity_T> &aActivity)
2753{
2754 /*
2755 * Note: we don't lock the console object here because
2756 * readAndClearLed() should be thread safe.
2757 */
2758
2759 aActivity.resize(aType.size());
2760
2761 size_t iType;
2762 for (iType = 0; iType < aType.size(); ++iType)
2763 {
2764 /* Get LED array to read */
2765 PDMLEDCORE SumLed = {0};
2766 switch (aType[iType])
2767 {
2768 case DeviceType_Floppy:
2769 case DeviceType_DVD:
2770 case DeviceType_HardDisk:
2771 {
2772 for (unsigned i = 0; i < RT_ELEMENTS(mapStorageLeds); ++i)
2773 if (maStorageDevType[i] == aType[iType])
2774 SumLed.u32 |= readAndClearLed(mapStorageLeds[i]);
2775 break;
2776 }
2777
2778 case DeviceType_Network:
2779 {
2780 for (unsigned i = 0; i < RT_ELEMENTS(mapNetworkLeds); ++i)
2781 SumLed.u32 |= readAndClearLed(mapNetworkLeds[i]);
2782 break;
2783 }
2784
2785 case DeviceType_USB:
2786 {
2787 for (unsigned i = 0; i < RT_ELEMENTS(mapUSBLed); ++i)
2788 SumLed.u32 |= readAndClearLed(mapUSBLed[i]);
2789 break;
2790 }
2791
2792 case DeviceType_SharedFolder:
2793 {
2794 SumLed.u32 |= readAndClearLed(mapSharedFolderLed);
2795 break;
2796 }
2797
2798 case DeviceType_Graphics3D:
2799 {
2800 SumLed.u32 |= readAndClearLed(mapCrOglLed);
2801 break;
2802 }
2803
2804 default:
2805 return setError(E_INVALIDARG,
2806 tr("Invalid device type: %d"),
2807 aType[iType]);
2808 }
2809
2810 /* Compose the result */
2811 switch (SumLed.u32 & (PDMLED_READING | PDMLED_WRITING))
2812 {
2813 case 0:
2814 aActivity[iType] = DeviceActivity_Idle;
2815 break;
2816 case PDMLED_READING:
2817 aActivity[iType] = DeviceActivity_Reading;
2818 break;
2819 case PDMLED_WRITING:
2820 case PDMLED_READING | PDMLED_WRITING:
2821 aActivity[iType] = DeviceActivity_Writing;
2822 break;
2823 }
2824 }
2825
2826 return S_OK;
2827}
2828
2829HRESULT Console::attachUSBDevice(const com::Guid &aId, const com::Utf8Str &aCaptureFilename)
2830{
2831#ifdef VBOX_WITH_USB
2832 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2833
2834 if ( mMachineState != MachineState_Running
2835 && mMachineState != MachineState_Paused)
2836 return setError(VBOX_E_INVALID_VM_STATE,
2837 tr("Cannot attach a USB device to the machine which is not running or paused (machine state: %s)"),
2838 Global::stringifyMachineState(mMachineState));
2839
2840 /* Get the VM handle. */
2841 SafeVMPtr ptrVM(this);
2842 if (!ptrVM.isOk())
2843 return ptrVM.rc();
2844
2845 /* Don't proceed unless we have a USB controller. */
2846 if (!mfVMHasUsbController)
2847 return setError(VBOX_E_PDM_ERROR,
2848 tr("The virtual machine does not have a USB controller"));
2849
2850 /* release the lock because the USB Proxy service may call us back
2851 * (via onUSBDeviceAttach()) */
2852 alock.release();
2853
2854 /* Request the device capture */
2855 return mControl->CaptureUSBDevice(Bstr(aId.toString()).raw(), Bstr(aCaptureFilename).raw());
2856
2857#else /* !VBOX_WITH_USB */
2858 return setError(VBOX_E_PDM_ERROR,
2859 tr("The virtual machine does not have a USB controller"));
2860#endif /* !VBOX_WITH_USB */
2861}
2862
2863HRESULT Console::detachUSBDevice(const com::Guid &aId, ComPtr<IUSBDevice> &aDevice)
2864{
2865#ifdef VBOX_WITH_USB
2866
2867 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2868
2869 /* Find it. */
2870 ComObjPtr<OUSBDevice> pUSBDevice;
2871 USBDeviceList::iterator it = mUSBDevices.begin();
2872 while (it != mUSBDevices.end())
2873 {
2874 if ((*it)->i_id() == aId)
2875 {
2876 pUSBDevice = *it;
2877 break;
2878 }
2879 ++it;
2880 }
2881
2882 if (!pUSBDevice)
2883 return setError(E_INVALIDARG,
2884 tr("USB device with UUID {%RTuuid} is not attached to this machine"),
2885 aId.raw());
2886
2887 /* Remove the device from the collection, it is re-added below for failures */
2888 mUSBDevices.erase(it);
2889
2890 /*
2891 * Inform the USB device and USB proxy about what's cooking.
2892 */
2893 alock.release();
2894 HRESULT rc = mControl->DetachUSBDevice(Bstr(aId.toString()).raw(), false /* aDone */);
2895 if (FAILED(rc))
2896 {
2897 /* Re-add the device to the collection */
2898 alock.acquire();
2899 mUSBDevices.push_back(pUSBDevice);
2900 return rc;
2901 }
2902
2903 /* Request the PDM to detach the USB device. */
2904 rc = i_detachUSBDevice(pUSBDevice);
2905 if (SUCCEEDED(rc))
2906 {
2907 /* Request the device release. Even if it fails, the device will
2908 * remain as held by proxy, which is OK for us (the VM process). */
2909 rc = mControl->DetachUSBDevice(Bstr(aId.toString()).raw(), true /* aDone */);
2910 }
2911 else
2912 {
2913 /* Re-add the device to the collection */
2914 alock.acquire();
2915 mUSBDevices.push_back(pUSBDevice);
2916 }
2917
2918 return rc;
2919
2920
2921#else /* !VBOX_WITH_USB */
2922 return setError(VBOX_E_PDM_ERROR,
2923 tr("The virtual machine does not have a USB controller"));
2924#endif /* !VBOX_WITH_USB */
2925}
2926
2927
2928HRESULT Console::findUSBDeviceByAddress(const com::Utf8Str &aName, ComPtr<IUSBDevice> &aDevice)
2929{
2930#ifdef VBOX_WITH_USB
2931
2932 aDevice = NULL;
2933
2934 SafeIfaceArray<IUSBDevice> devsvec;
2935 HRESULT rc = COMGETTER(USBDevices)(ComSafeArrayAsOutParam(devsvec));
2936 if (FAILED(rc)) return rc;
2937
2938 for (size_t i = 0; i < devsvec.size(); ++i)
2939 {
2940 Bstr address;
2941 rc = devsvec[i]->COMGETTER(Address)(address.asOutParam());
2942 if (FAILED(rc)) return rc;
2943 if (address == Bstr(aName))
2944 {
2945 ComObjPtr<OUSBDevice> pUSBDevice;
2946 pUSBDevice.createObject();
2947 pUSBDevice->init(devsvec[i]);
2948 return pUSBDevice.queryInterfaceTo(aDevice.asOutParam());
2949 }
2950 }
2951
2952 return setErrorNoLog(VBOX_E_OBJECT_NOT_FOUND,
2953 tr("Could not find a USB device with address '%s'"),
2954 aName.c_str());
2955
2956#else /* !VBOX_WITH_USB */
2957 return E_NOTIMPL;
2958#endif /* !VBOX_WITH_USB */
2959}
2960
2961HRESULT Console::findUSBDeviceById(const com::Guid &aId, ComPtr<IUSBDevice> &aDevice)
2962{
2963#ifdef VBOX_WITH_USB
2964
2965 aDevice = NULL;
2966
2967 SafeIfaceArray<IUSBDevice> devsvec;
2968 HRESULT rc = COMGETTER(USBDevices)(ComSafeArrayAsOutParam(devsvec));
2969 if (FAILED(rc)) return rc;
2970
2971 for (size_t i = 0; i < devsvec.size(); ++i)
2972 {
2973 Bstr id;
2974 rc = devsvec[i]->COMGETTER(Id)(id.asOutParam());
2975 if (FAILED(rc)) return rc;
2976 if (Utf8Str(id) == aId.toString())
2977 {
2978 ComObjPtr<OUSBDevice> pUSBDevice;
2979 pUSBDevice.createObject();
2980 pUSBDevice->init(devsvec[i]);
2981 ComObjPtr<IUSBDevice> iUSBDevice = static_cast <ComObjPtr<IUSBDevice> > (pUSBDevice);
2982 return iUSBDevice.queryInterfaceTo(aDevice.asOutParam());
2983 }
2984 }
2985
2986 return setErrorNoLog(VBOX_E_OBJECT_NOT_FOUND,
2987 tr("Could not find a USB device with uuid {%RTuuid}"),
2988 Guid(aId).raw());
2989
2990#else /* !VBOX_WITH_USB */
2991 return E_NOTIMPL;
2992#endif /* !VBOX_WITH_USB */
2993}
2994
2995HRESULT Console::createSharedFolder(const com::Utf8Str &aName, const com::Utf8Str &aHostPath, BOOL aWritable, BOOL aAutomount)
2996{
2997 LogFlowThisFunc(("Entering for '%s' -> '%s'\n", aName.c_str(), aHostPath.c_str()));
2998
2999 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3000
3001 /// @todo see @todo in AttachUSBDevice() about the Paused state
3002 if (mMachineState == MachineState_Saved)
3003 return setError(VBOX_E_INVALID_VM_STATE,
3004 tr("Cannot create a transient shared folder on the machine in the saved state"));
3005 if ( mMachineState != MachineState_PoweredOff
3006 && mMachineState != MachineState_Teleported
3007 && mMachineState != MachineState_Aborted
3008 && mMachineState != MachineState_Running
3009 && mMachineState != MachineState_Paused
3010 )
3011 return setError(VBOX_E_INVALID_VM_STATE,
3012 tr("Cannot create a transient shared folder on the machine while it is changing the state (machine state: %s)"),
3013 Global::stringifyMachineState(mMachineState));
3014
3015 ComObjPtr<SharedFolder> pSharedFolder;
3016 HRESULT rc = i_findSharedFolder(aName, pSharedFolder, false /* aSetError */);
3017 if (SUCCEEDED(rc))
3018 return setError(VBOX_E_FILE_ERROR,
3019 tr("Shared folder named '%s' already exists"),
3020 aName.c_str());
3021
3022 pSharedFolder.createObject();
3023 rc = pSharedFolder->init(this,
3024 aName,
3025 aHostPath,
3026 !!aWritable,
3027 !!aAutomount,
3028 true /* fFailOnError */);
3029 if (FAILED(rc)) return rc;
3030
3031 /* If the VM is online and supports shared folders, share this folder
3032 * under the specified name. (Ignore any failure to obtain the VM handle.) */
3033 SafeVMPtrQuiet ptrVM(this);
3034 if ( ptrVM.isOk()
3035 && m_pVMMDev
3036 && m_pVMMDev->isShFlActive()
3037 )
3038 {
3039 /* first, remove the machine or the global folder if there is any */
3040 SharedFolderDataMap::const_iterator it;
3041 if (i_findOtherSharedFolder(aName, it))
3042 {
3043 rc = removeSharedFolder(aName);
3044 if (FAILED(rc))
3045 return rc;
3046 }
3047
3048 /* second, create the given folder */
3049 rc = i_createSharedFolder(aName, SharedFolderData(aHostPath, !!aWritable, !!aAutomount));
3050 if (FAILED(rc))
3051 return rc;
3052 }
3053
3054 m_mapSharedFolders.insert(std::make_pair(aName, pSharedFolder));
3055
3056 /* Notify console callbacks after the folder is added to the list. */
3057 alock.release();
3058 fireSharedFolderChangedEvent(mEventSource, Scope_Session);
3059
3060 LogFlowThisFunc(("Leaving for '%s' -> '%s'\n", aName.c_str(), aHostPath.c_str()));
3061
3062 return rc;
3063}
3064
3065HRESULT Console::removeSharedFolder(const com::Utf8Str &aName)
3066{
3067 LogFlowThisFunc(("Entering for '%s'\n", aName.c_str()));
3068
3069 Utf8Str strName(aName);
3070
3071 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3072
3073 /// @todo see @todo in AttachUSBDevice() about the Paused state
3074 if (mMachineState == MachineState_Saved)
3075 return setError(VBOX_E_INVALID_VM_STATE,
3076 tr("Cannot remove a transient shared folder from the machine in the saved state"));
3077 if ( mMachineState != MachineState_PoweredOff
3078 && mMachineState != MachineState_Teleported
3079 && mMachineState != MachineState_Aborted
3080 && mMachineState != MachineState_Running
3081 && mMachineState != MachineState_Paused
3082 )
3083 return setError(VBOX_E_INVALID_VM_STATE,
3084 tr("Cannot remove a transient shared folder from the machine while it is changing the state (machine state: %s)"),
3085 Global::stringifyMachineState(mMachineState));
3086
3087 ComObjPtr<SharedFolder> pSharedFolder;
3088 HRESULT rc = i_findSharedFolder(aName, pSharedFolder, true /* aSetError */);
3089 if (FAILED(rc)) return rc;
3090
3091 /* protect the VM handle (if not NULL) */
3092 SafeVMPtrQuiet ptrVM(this);
3093 if ( ptrVM.isOk()
3094 && m_pVMMDev
3095 && m_pVMMDev->isShFlActive()
3096 )
3097 {
3098 /* if the VM is online and supports shared folders, UNshare this
3099 * folder. */
3100
3101 /* first, remove the given folder */
3102 rc = removeSharedFolder(strName);
3103 if (FAILED(rc)) return rc;
3104
3105 /* first, remove the machine or the global folder if there is any */
3106 SharedFolderDataMap::const_iterator it;
3107 if (i_findOtherSharedFolder(strName, it))
3108 {
3109 rc = i_createSharedFolder(strName, it->second);
3110 /* don't check rc here because we need to remove the console
3111 * folder from the collection even on failure */
3112 }
3113 }
3114
3115 m_mapSharedFolders.erase(strName);
3116
3117 /* Notify console callbacks after the folder is removed from the list. */
3118 alock.release();
3119 fireSharedFolderChangedEvent(mEventSource, Scope_Session);
3120
3121 LogFlowThisFunc(("Leaving for '%s'\n", aName.c_str()));
3122
3123 return rc;
3124}
3125
3126HRESULT Console::takeSnapshot(const com::Utf8Str &aName,
3127 const com::Utf8Str &aDescription,
3128 ComPtr<IProgress> &aProgress)
3129{
3130 LogFlowThisFuncEnter();
3131
3132 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3133 LogFlowThisFunc(("aName='%s' mMachineState=%d\n", aName.c_str(), mMachineState));
3134
3135 if (Global::IsTransient(mMachineState))
3136 return setError(VBOX_E_INVALID_VM_STATE,
3137 tr("Cannot take a snapshot of the machine while it is changing the state (machine state: %s)"),
3138 Global::stringifyMachineState(mMachineState));
3139
3140 HRESULT rc = S_OK;
3141
3142 /* prepare the progress object:
3143 a) count the no. of hard disk attachments to get a matching no. of progress sub-operations */
3144 ULONG cOperations = 2; // always at least setting up + finishing up
3145 ULONG ulTotalOperationsWeight = 2; // one each for setting up + finishing up
3146 SafeIfaceArray<IMediumAttachment> aMediumAttachments;
3147 rc = mMachine->COMGETTER(MediumAttachments)(ComSafeArrayAsOutParam(aMediumAttachments));
3148 if (FAILED(rc))
3149 return setError(rc, tr("Cannot get medium attachments of the machine"));
3150
3151 ULONG ulMemSize;
3152 rc = mMachine->COMGETTER(MemorySize)(&ulMemSize);
3153 if (FAILED(rc))
3154 return rc;
3155
3156 for (size_t i = 0;
3157 i < aMediumAttachments.size();
3158 ++i)
3159 {
3160 DeviceType_T type;
3161 rc = aMediumAttachments[i]->COMGETTER(Type)(&type);
3162 if (FAILED(rc))
3163 return rc;
3164
3165 if (type == DeviceType_HardDisk)
3166 {
3167 ++cOperations;
3168
3169 // assume that creating a diff image takes as long as saving a 1MB state
3170 // (note, the same value must be used in SessionMachine::BeginTakingSnapshot() on the server!)
3171 ulTotalOperationsWeight += 1;
3172 }
3173 }
3174
3175 // b) one extra sub-operations for online snapshots OR offline snapshots that have a saved state (needs to be copied)
3176 bool const fTakingSnapshotOnline = Global::IsOnline(mMachineState);
3177
3178 LogFlowFunc(("fTakingSnapshotOnline = %d, mMachineState = %d\n", fTakingSnapshotOnline, mMachineState));
3179
3180 if (fTakingSnapshotOnline)
3181 {
3182 ++cOperations;
3183 ulTotalOperationsWeight += ulMemSize;
3184 }
3185
3186 // finally, create the progress object
3187 ComObjPtr<Progress> pProgress;
3188 pProgress.createObject();
3189 rc = pProgress->init(static_cast<IConsole *>(this),
3190 Bstr(tr("Taking a snapshot of the virtual machine")).raw(),
3191 (mMachineState >= MachineState_FirstOnline)
3192 && (mMachineState <= MachineState_LastOnline) /* aCancelable */,
3193 cOperations,
3194 ulTotalOperationsWeight,
3195 Bstr(tr("Setting up snapshot operation")).raw(), // first sub-op description
3196 1); // ulFirstOperationWeight
3197
3198 if (FAILED(rc))
3199 return rc;
3200
3201 VMTakeSnapshotTask *pTask;
3202 if (!(pTask = new VMTakeSnapshotTask(this, pProgress, Bstr(aName).raw(), Bstr(aDescription).raw())))
3203 return E_OUTOFMEMORY;
3204
3205 Assert(pTask->mProgress);
3206
3207 try
3208 {
3209 mptrCancelableProgress = pProgress;
3210
3211 /*
3212 * If we fail here it means a PowerDown() call happened on another
3213 * thread while we were doing Pause() (which releases the Console lock).
3214 * We assign PowerDown() a higher precedence than TakeSnapshot(),
3215 * therefore just return the error to the caller.
3216 */
3217 rc = pTask->rc();
3218 if (FAILED(rc)) throw rc;
3219
3220 pTask->ulMemSize = ulMemSize;
3221
3222 /* memorize the current machine state */
3223 pTask->lastMachineState = mMachineState;
3224 pTask->fTakingSnapshotOnline = fTakingSnapshotOnline;
3225
3226 int vrc = RTThreadCreate(NULL,
3227 Console::i_fntTakeSnapshotWorker,
3228 (void *)pTask,
3229 0,
3230 RTTHREADTYPE_MAIN_WORKER,
3231 0,
3232 "TakeSnap");
3233 if (FAILED(vrc))
3234 throw setError(E_FAIL,
3235 tr("Could not create VMTakeSnap thread (%Rrc)"),
3236 vrc);
3237
3238 pTask->mProgress.queryInterfaceTo(aProgress.asOutParam());
3239 }
3240 catch (HRESULT erc)
3241 {
3242 delete pTask;
3243 rc = erc;
3244 mptrCancelableProgress.setNull();
3245 }
3246
3247 LogFlowThisFunc(("rc=%Rhrc\n", rc));
3248 LogFlowThisFuncLeave();
3249 return rc;
3250}
3251
3252HRESULT Console::deleteSnapshot(const com::Guid &aId, ComPtr<IProgress> &aProgress)
3253{
3254 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3255
3256 if (Global::IsTransient(mMachineState))
3257 return setError(VBOX_E_INVALID_VM_STATE,
3258 tr("Cannot delete a snapshot of the machine while it is changing the state (machine state: %s)"),
3259 Global::stringifyMachineState(mMachineState));
3260 ComObjPtr<IProgress> iProgress;
3261 MachineState_T machineState = MachineState_Null;
3262 HRESULT rc = mControl->DeleteSnapshot((IConsole *)this, Bstr(aId.toString()).raw(), Bstr(aId.toString()).raw(),
3263 FALSE /* fDeleteAllChildren */, &machineState, iProgress.asOutParam());
3264 if (FAILED(rc)) return rc;
3265 iProgress.queryInterfaceTo(aProgress.asOutParam());
3266
3267 i_setMachineStateLocally(machineState);
3268 return S_OK;
3269}
3270
3271HRESULT Console::deleteSnapshotAndAllChildren(const com::Guid &aId, ComPtr<IProgress> &aProgress)
3272
3273{
3274 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3275
3276 if (Global::IsTransient(mMachineState))
3277 return setError(VBOX_E_INVALID_VM_STATE,
3278 tr("Cannot delete a snapshot of the machine while it is changing the state (machine state: %s)"),
3279 Global::stringifyMachineState(mMachineState));
3280
3281 ComObjPtr<IProgress> iProgress;
3282 MachineState_T machineState = MachineState_Null;
3283 HRESULT rc = mControl->DeleteSnapshot((IConsole *)this, Bstr(aId.toString()).raw(), Bstr(aId.toString()).raw(),
3284 TRUE /* fDeleteAllChildren */, &machineState, iProgress.asOutParam());
3285 if (FAILED(rc)) return rc;
3286 iProgress.queryInterfaceTo(aProgress.asOutParam());
3287
3288 i_setMachineStateLocally(machineState);
3289 return S_OK;
3290}
3291
3292HRESULT Console::deleteSnapshotRange(const com::Guid &aStartId, const com::Guid &aEndId, ComPtr<IProgress> &aProgress)
3293{
3294 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3295
3296 if (Global::IsTransient(mMachineState))
3297 return setError(VBOX_E_INVALID_VM_STATE,
3298 tr("Cannot delete a snapshot of the machine while it is changing the state (machine state: %s)"),
3299 Global::stringifyMachineState(mMachineState));
3300
3301 ComObjPtr<IProgress> iProgress;
3302 MachineState_T machineState = MachineState_Null;
3303 HRESULT rc = mControl->DeleteSnapshot((IConsole *)this, Bstr(aStartId.toString()).raw(), Bstr(aEndId.toString()).raw(),
3304 FALSE /* fDeleteAllChildren */, &machineState, iProgress.asOutParam());
3305 if (FAILED(rc)) return rc;
3306 iProgress.queryInterfaceTo(aProgress.asOutParam());
3307
3308 i_setMachineStateLocally(machineState);
3309 return S_OK;
3310}
3311
3312HRESULT Console::restoreSnapshot(const ComPtr<ISnapshot> &aSnapshot, ComPtr<IProgress> &aProgress)
3313{
3314 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3315
3316 if (Global::IsOnlineOrTransient(mMachineState))
3317 return setError(VBOX_E_INVALID_VM_STATE,
3318 tr("Cannot delete the current state of the running machine (machine state: %s)"),
3319 Global::stringifyMachineState(mMachineState));
3320
3321 ISnapshot* iSnapshot = aSnapshot;
3322 ComObjPtr<IProgress> iProgress;
3323 MachineState_T machineState = MachineState_Null;
3324 HRESULT rc = mControl->RestoreSnapshot((IConsole*)this, iSnapshot, &machineState, iProgress.asOutParam());
3325 if (FAILED(rc)) return rc;
3326 iProgress.queryInterfaceTo(aProgress.asOutParam());
3327
3328 i_setMachineStateLocally(machineState);
3329 return S_OK;
3330}
3331
3332// Non-interface public methods
3333/////////////////////////////////////////////////////////////////////////////
3334
3335/*static*/
3336HRESULT Console::i_setErrorStatic(HRESULT aResultCode, const char *pcsz, ...)
3337{
3338 va_list args;
3339 va_start(args, pcsz);
3340 HRESULT rc = setErrorInternal(aResultCode,
3341 getStaticClassIID(),
3342 getStaticComponentName(),
3343 Utf8Str(pcsz, args),
3344 false /* aWarning */,
3345 true /* aLogIt */);
3346 va_end(args);
3347 return rc;
3348}
3349
3350HRESULT Console::i_setInvalidMachineStateError()
3351{
3352 return setError(VBOX_E_INVALID_VM_STATE,
3353 tr("Invalid machine state: %s"),
3354 Global::stringifyMachineState(mMachineState));
3355}
3356
3357
3358/* static */
3359const char *Console::i_convertControllerTypeToDev(StorageControllerType_T enmCtrlType)
3360{
3361 switch (enmCtrlType)
3362 {
3363 case StorageControllerType_LsiLogic:
3364 return "lsilogicscsi";
3365 case StorageControllerType_BusLogic:
3366 return "buslogic";
3367 case StorageControllerType_LsiLogicSas:
3368 return "lsilogicsas";
3369 case StorageControllerType_IntelAhci:
3370 return "ahci";
3371 case StorageControllerType_PIIX3:
3372 case StorageControllerType_PIIX4:
3373 case StorageControllerType_ICH6:
3374 return "piix3ide";
3375 case StorageControllerType_I82078:
3376 return "i82078";
3377 case StorageControllerType_USB:
3378 return "Msd";
3379 default:
3380 return NULL;
3381 }
3382}
3383
3384HRESULT Console::i_convertBusPortDeviceToLun(StorageBus_T enmBus, LONG port, LONG device, unsigned &uLun)
3385{
3386 switch (enmBus)
3387 {
3388 case StorageBus_IDE:
3389 case StorageBus_Floppy:
3390 {
3391 AssertMsgReturn(port < 2 && port >= 0, ("%d\n", port), E_INVALIDARG);
3392 AssertMsgReturn(device < 2 && device >= 0, ("%d\n", device), E_INVALIDARG);
3393 uLun = 2 * port + device;
3394 return S_OK;
3395 }
3396 case StorageBus_SATA:
3397 case StorageBus_SCSI:
3398 case StorageBus_SAS:
3399 {
3400 uLun = port;
3401 return S_OK;
3402 }
3403 case StorageBus_USB:
3404 {
3405 /*
3406 * It is always the first lun, the port denotes the device instance
3407 * for the Msd device.
3408 */
3409 uLun = 0;
3410 return S_OK;
3411 }
3412 default:
3413 uLun = 0;
3414 AssertMsgFailedReturn(("%d\n", enmBus), E_INVALIDARG);
3415 }
3416}
3417
3418// private methods
3419/////////////////////////////////////////////////////////////////////////////
3420
3421/**
3422 * Suspend the VM before we do any medium or network attachment change.
3423 *
3424 * @param pUVM Safe VM handle.
3425 * @param pAlock The automatic lock instance. This is for when we have
3426 * to leave it in order to avoid deadlocks.
3427 * @param pfSuspend where to store the information if we need to resume
3428 * afterwards.
3429 */
3430HRESULT Console::i_suspendBeforeConfigChange(PUVM pUVM, AutoWriteLock *pAlock, bool *pfResume)
3431{
3432 *pfResume = false;
3433 VMSTATE enmVMState = VMR3GetStateU(pUVM);
3434 switch (enmVMState)
3435 {
3436 case VMSTATE_RESETTING:
3437 case VMSTATE_RUNNING:
3438 {
3439 LogFlowFunc(("Suspending the VM...\n"));
3440 /* disable the callback to prevent Console-level state change */
3441 mVMStateChangeCallbackDisabled = true;
3442 if (pAlock)
3443 pAlock->release();
3444 int rc = VMR3Suspend(pUVM, VMSUSPENDREASON_RECONFIG);
3445 if (pAlock)
3446 pAlock->acquire();
3447 mVMStateChangeCallbackDisabled = false;
3448 if (RT_FAILURE(rc))
3449 return setErrorInternal(VBOX_E_INVALID_VM_STATE,
3450 COM_IIDOF(IConsole),
3451 getStaticComponentName(),
3452 Utf8StrFmt("Could suspend VM for medium change (%Rrc)", rc),
3453 false /*aWarning*/,
3454 true /*aLogIt*/);
3455 *pfResume = true;
3456 break;
3457 }
3458 case VMSTATE_SUSPENDED:
3459 break;
3460 default:
3461 return setErrorInternal(VBOX_E_INVALID_VM_STATE,
3462 COM_IIDOF(IConsole),
3463 getStaticComponentName(),
3464 Utf8StrFmt("Invalid state '%s' for changing medium",
3465 VMR3GetStateName(enmVMState)),
3466 false /*aWarning*/,
3467 true /*aLogIt*/);
3468 }
3469
3470 return S_OK;
3471}
3472
3473/**
3474 * Resume the VM after we did any medium or network attachment change.
3475 * This is the counterpart to Console::suspendBeforeConfigChange().
3476 *
3477 * @param pUVM Safe VM handle.
3478 */
3479void Console::i_resumeAfterConfigChange(PUVM pUVM)
3480{
3481 LogFlowFunc(("Resuming the VM...\n"));
3482 /* disable the callback to prevent Console-level state change */
3483 mVMStateChangeCallbackDisabled = true;
3484 int rc = VMR3Resume(pUVM, VMRESUMEREASON_RECONFIG);
3485 mVMStateChangeCallbackDisabled = false;
3486 AssertRC(rc);
3487 if (RT_FAILURE(rc))
3488 {
3489 VMSTATE enmVMState = VMR3GetStateU(pUVM);
3490 if (enmVMState == VMSTATE_SUSPENDED)
3491 {
3492 /* too bad, we failed. try to sync the console state with the VMM state */
3493 i_vmstateChangeCallback(pUVM, VMSTATE_SUSPENDED, enmVMState, this);
3494 }
3495 }
3496}
3497
3498/**
3499 * Process a medium change.
3500 *
3501 * @param aMediumAttachment The medium attachment with the new medium state.
3502 * @param fForce Force medium chance, if it is locked or not.
3503 * @param pUVM Safe VM handle.
3504 *
3505 * @note Locks this object for writing.
3506 */
3507HRESULT Console::i_doMediumChange(IMediumAttachment *aMediumAttachment, bool fForce, PUVM pUVM)
3508{
3509 AutoCaller autoCaller(this);
3510 AssertComRCReturnRC(autoCaller.rc());
3511
3512 /* We will need to release the write lock before calling EMT */
3513 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3514
3515 HRESULT rc = S_OK;
3516 const char *pszDevice = NULL;
3517
3518 SafeIfaceArray<IStorageController> ctrls;
3519 rc = mMachine->COMGETTER(StorageControllers)(ComSafeArrayAsOutParam(ctrls));
3520 AssertComRC(rc);
3521 IMedium *pMedium;
3522 rc = aMediumAttachment->COMGETTER(Medium)(&pMedium);
3523 AssertComRC(rc);
3524 Bstr mediumLocation;
3525 if (pMedium)
3526 {
3527 rc = pMedium->COMGETTER(Location)(mediumLocation.asOutParam());
3528 AssertComRC(rc);
3529 }
3530
3531 Bstr attCtrlName;
3532 rc = aMediumAttachment->COMGETTER(Controller)(attCtrlName.asOutParam());
3533 AssertComRC(rc);
3534 ComPtr<IStorageController> pStorageController;
3535 for (size_t i = 0; i < ctrls.size(); ++i)
3536 {
3537 Bstr ctrlName;
3538 rc = ctrls[i]->COMGETTER(Name)(ctrlName.asOutParam());
3539 AssertComRC(rc);
3540 if (attCtrlName == ctrlName)
3541 {
3542 pStorageController = ctrls[i];
3543 break;
3544 }
3545 }
3546 if (pStorageController.isNull())
3547 return setError(E_FAIL,
3548 tr("Could not find storage controller '%ls'"), attCtrlName.raw());
3549
3550 StorageControllerType_T enmCtrlType;
3551 rc = pStorageController->COMGETTER(ControllerType)(&enmCtrlType);
3552 AssertComRC(rc);
3553 pszDevice = i_convertControllerTypeToDev(enmCtrlType);
3554
3555 StorageBus_T enmBus;
3556 rc = pStorageController->COMGETTER(Bus)(&enmBus);
3557 AssertComRC(rc);
3558 ULONG uInstance;
3559 rc = pStorageController->COMGETTER(Instance)(&uInstance);
3560 AssertComRC(rc);
3561 BOOL fUseHostIOCache;
3562 rc = pStorageController->COMGETTER(UseHostIOCache)(&fUseHostIOCache);
3563 AssertComRC(rc);
3564
3565 /*
3566 * Suspend the VM first. The VM must not be running since it might have
3567 * pending I/O to the drive which is being changed.
3568 */
3569 bool fResume = false;
3570 rc = i_suspendBeforeConfigChange(pUVM, &alock, &fResume);
3571 if (FAILED(rc))
3572 return rc;
3573
3574 /*
3575 * Call worker in EMT, that's faster and safer than doing everything
3576 * using VMR3ReqCall. Note that we separate VMR3ReqCall from VMR3ReqWait
3577 * here to make requests from under the lock in order to serialize them.
3578 */
3579 PVMREQ pReq;
3580 int vrc = VMR3ReqCallU(pUVM, VMCPUID_ANY, &pReq, 0 /* no wait! */, VMREQFLAGS_VBOX_STATUS,
3581 (PFNRT)i_changeRemovableMedium, 8,
3582 this, pUVM, pszDevice, uInstance, enmBus, fUseHostIOCache, aMediumAttachment, fForce);
3583
3584 /* release the lock before waiting for a result (EMT will call us back!) */
3585 alock.release();
3586
3587 if (vrc == VERR_TIMEOUT || RT_SUCCESS(vrc))
3588 {
3589 vrc = VMR3ReqWait(pReq, RT_INDEFINITE_WAIT);
3590 AssertRC(vrc);
3591 if (RT_SUCCESS(vrc))
3592 vrc = pReq->iStatus;
3593 }
3594 VMR3ReqFree(pReq);
3595
3596 if (fResume)
3597 i_resumeAfterConfigChange(pUVM);
3598
3599 if (RT_SUCCESS(vrc))
3600 {
3601 LogFlowThisFunc(("Returns S_OK\n"));
3602 return S_OK;
3603 }
3604
3605 if (pMedium)
3606 return setError(E_FAIL,
3607 tr("Could not mount the media/drive '%ls' (%Rrc)"),
3608 mediumLocation.raw(), vrc);
3609
3610 return setError(E_FAIL,
3611 tr("Could not unmount the currently mounted media/drive (%Rrc)"),
3612 vrc);
3613}
3614
3615/**
3616 * Performs the medium change in EMT.
3617 *
3618 * @returns VBox status code.
3619 *
3620 * @param pThis Pointer to the Console object.
3621 * @param pUVM The VM handle.
3622 * @param pcszDevice The PDM device name.
3623 * @param uInstance The PDM device instance.
3624 * @param uLun The PDM LUN number of the drive.
3625 * @param fHostDrive True if this is a host drive attachment.
3626 * @param pszPath The path to the media / drive which is now being mounted / captured.
3627 * If NULL no media or drive is attached and the LUN will be configured with
3628 * the default block driver with no media. This will also be the state if
3629 * mounting / capturing the specified media / drive fails.
3630 * @param pszFormat Medium format string, usually "RAW".
3631 * @param fPassthrough Enables using passthrough mode of the host DVD drive if applicable.
3632 *
3633 * @thread EMT
3634 * @note The VM must not be running since it might have pending I/O to the drive which is being changed.
3635 */
3636DECLCALLBACK(int) Console::i_changeRemovableMedium(Console *pThis,
3637 PUVM pUVM,
3638 const char *pcszDevice,
3639 unsigned uInstance,
3640 StorageBus_T enmBus,
3641 bool fUseHostIOCache,
3642 IMediumAttachment *aMediumAtt,
3643 bool fForce)
3644{
3645 LogFlowFunc(("pThis=%p uInstance=%u pszDevice=%p:{%s} enmBus=%u, aMediumAtt=%p, fForce=%d\n",
3646 pThis, uInstance, pcszDevice, pcszDevice, enmBus, aMediumAtt, fForce));
3647
3648 AssertReturn(pThis, VERR_INVALID_PARAMETER);
3649
3650 AutoCaller autoCaller(pThis);
3651 AssertComRCReturn(autoCaller.rc(), VERR_ACCESS_DENIED);
3652
3653 /*
3654 * Check the VM for correct state.
3655 */
3656 VMSTATE enmVMState = VMR3GetStateU(pUVM);
3657 AssertReturn(enmVMState == VMSTATE_SUSPENDED, VERR_INVALID_STATE);
3658
3659 /* Determine the base path for the device instance. */
3660 PCFGMNODE pCtlInst;
3661 if (strcmp(pcszDevice, "Msd"))
3662 pCtlInst = CFGMR3GetChildF(CFGMR3GetRootU(pUVM), "Devices/%s/%u/", pcszDevice, uInstance);
3663 else
3664 pCtlInst = CFGMR3GetChildF(CFGMR3GetRootU(pUVM), "USB/%s/", pcszDevice, uInstance);
3665 AssertReturn(pCtlInst, VERR_INTERNAL_ERROR);
3666
3667 PCFGMNODE pLunL0 = NULL;
3668 int rc = pThis->i_configMediumAttachment(pCtlInst,
3669 pcszDevice,
3670 uInstance,
3671 enmBus,
3672 fUseHostIOCache,
3673 false /* fSetupMerge */,
3674 false /* fBuiltinIOCache */,
3675 0 /* uMergeSource */,
3676 0 /* uMergeTarget */,
3677 aMediumAtt,
3678 pThis->mMachineState,
3679 NULL /* phrc */,
3680 true /* fAttachDetach */,
3681 fForce /* fForceUnmount */,
3682 false /* fHotplug */,
3683 pUVM,
3684 NULL /* paLedDevType */,
3685 &pLunL0);
3686 /* Dump the changed LUN if possible, dump the complete device otherwise */
3687 CFGMR3Dump(pLunL0 ? pLunL0 : pCtlInst);
3688
3689 LogFlowFunc(("Returning %Rrc\n", rc));
3690 return rc;
3691}
3692
3693
3694/**
3695 * Attach a new storage device to the VM.
3696 *
3697 * @param aMediumAttachment The medium attachment which is added.
3698 * @param pUVM Safe VM handle.
3699 * @param fSilent Flag whether to notify the guest about the attached device.
3700 *
3701 * @note Locks this object for writing.
3702 */
3703HRESULT Console::i_doStorageDeviceAttach(IMediumAttachment *aMediumAttachment, PUVM pUVM, bool fSilent)
3704{
3705 AutoCaller autoCaller(this);
3706 AssertComRCReturnRC(autoCaller.rc());
3707
3708 /* We will need to release the write lock before calling EMT */
3709 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3710
3711 HRESULT rc = S_OK;
3712 const char *pszDevice = NULL;
3713
3714 SafeIfaceArray<IStorageController> ctrls;
3715 rc = mMachine->COMGETTER(StorageControllers)(ComSafeArrayAsOutParam(ctrls));
3716 AssertComRC(rc);
3717 IMedium *pMedium;
3718 rc = aMediumAttachment->COMGETTER(Medium)(&pMedium);
3719 AssertComRC(rc);
3720 Bstr mediumLocation;
3721 if (pMedium)
3722 {
3723 rc = pMedium->COMGETTER(Location)(mediumLocation.asOutParam());
3724 AssertComRC(rc);
3725 }
3726
3727 Bstr attCtrlName;
3728 rc = aMediumAttachment->COMGETTER(Controller)(attCtrlName.asOutParam());
3729 AssertComRC(rc);
3730 ComPtr<IStorageController> pStorageController;
3731 for (size_t i = 0; i < ctrls.size(); ++i)
3732 {
3733 Bstr ctrlName;
3734 rc = ctrls[i]->COMGETTER(Name)(ctrlName.asOutParam());
3735 AssertComRC(rc);
3736 if (attCtrlName == ctrlName)
3737 {
3738 pStorageController = ctrls[i];
3739 break;
3740 }
3741 }
3742 if (pStorageController.isNull())
3743 return setError(E_FAIL,
3744 tr("Could not find storage controller '%ls'"), attCtrlName.raw());
3745
3746 StorageControllerType_T enmCtrlType;
3747 rc = pStorageController->COMGETTER(ControllerType)(&enmCtrlType);
3748 AssertComRC(rc);
3749 pszDevice = i_convertControllerTypeToDev(enmCtrlType);
3750
3751 StorageBus_T enmBus;
3752 rc = pStorageController->COMGETTER(Bus)(&enmBus);
3753 AssertComRC(rc);
3754 ULONG uInstance;
3755 rc = pStorageController->COMGETTER(Instance)(&uInstance);
3756 AssertComRC(rc);
3757 BOOL fUseHostIOCache;
3758 rc = pStorageController->COMGETTER(UseHostIOCache)(&fUseHostIOCache);
3759 AssertComRC(rc);
3760
3761 /*
3762 * Suspend the VM first. The VM must not be running since it might have
3763 * pending I/O to the drive which is being changed.
3764 */
3765 bool fResume = false;
3766 rc = i_suspendBeforeConfigChange(pUVM, &alock, &fResume);
3767 if (FAILED(rc))
3768 return rc;
3769
3770 /*
3771 * Call worker in EMT, that's faster and safer than doing everything
3772 * using VMR3ReqCall. Note that we separate VMR3ReqCall from VMR3ReqWait
3773 * here to make requests from under the lock in order to serialize them.
3774 */
3775 PVMREQ pReq;
3776 int vrc = VMR3ReqCallU(pUVM, VMCPUID_ANY, &pReq, 0 /* no wait! */, VMREQFLAGS_VBOX_STATUS,
3777 (PFNRT)i_attachStorageDevice, 8,
3778 this, pUVM, pszDevice, uInstance, enmBus, fUseHostIOCache, aMediumAttachment, fSilent);
3779
3780 /* release the lock before waiting for a result (EMT will call us back!) */
3781 alock.release();
3782
3783 if (vrc == VERR_TIMEOUT || RT_SUCCESS(vrc))
3784 {
3785 vrc = VMR3ReqWait(pReq, RT_INDEFINITE_WAIT);
3786 AssertRC(vrc);
3787 if (RT_SUCCESS(vrc))
3788 vrc = pReq->iStatus;
3789 }
3790 VMR3ReqFree(pReq);
3791
3792 if (fResume)
3793 i_resumeAfterConfigChange(pUVM);
3794
3795 if (RT_SUCCESS(vrc))
3796 {
3797 LogFlowThisFunc(("Returns S_OK\n"));
3798 return S_OK;
3799 }
3800
3801 if (!pMedium)
3802 return setError(E_FAIL,
3803 tr("Could not mount the media/drive '%ls' (%Rrc)"),
3804 mediumLocation.raw(), vrc);
3805
3806 return setError(E_FAIL,
3807 tr("Could not unmount the currently mounted media/drive (%Rrc)"),
3808 vrc);
3809}
3810
3811
3812/**
3813 * Performs the storage attach operation in EMT.
3814 *
3815 * @returns VBox status code.
3816 *
3817 * @param pThis Pointer to the Console object.
3818 * @param pUVM The VM handle.
3819 * @param pcszDevice The PDM device name.
3820 * @param uInstance The PDM device instance.
3821 * @param fSilent Flag whether to inform the guest about the attached device.
3822 *
3823 * @thread EMT
3824 * @note The VM must not be running since it might have pending I/O to the drive which is being changed.
3825 */
3826DECLCALLBACK(int) Console::i_attachStorageDevice(Console *pThis,
3827 PUVM pUVM,
3828 const char *pcszDevice,
3829 unsigned uInstance,
3830 StorageBus_T enmBus,
3831 bool fUseHostIOCache,
3832 IMediumAttachment *aMediumAtt,
3833 bool fSilent)
3834{
3835 LogFlowFunc(("pThis=%p uInstance=%u pszDevice=%p:{%s} enmBus=%u, aMediumAtt=%p\n",
3836 pThis, uInstance, pcszDevice, pcszDevice, enmBus, aMediumAtt));
3837
3838 AssertReturn(pThis, VERR_INVALID_PARAMETER);
3839
3840 AutoCaller autoCaller(pThis);
3841 AssertComRCReturn(autoCaller.rc(), VERR_ACCESS_DENIED);
3842
3843 /*
3844 * Check the VM for correct state.
3845 */
3846 VMSTATE enmVMState = VMR3GetStateU(pUVM);
3847 AssertReturn(enmVMState == VMSTATE_SUSPENDED, VERR_INVALID_STATE);
3848
3849 /*
3850 * Determine the base path for the device instance. USB Msd devices are handled different
3851 * because the PDM USB API requires a differnet CFGM tree when attaching a new USB device.
3852 */
3853 PCFGMNODE pCtlInst;
3854
3855 if (enmBus == StorageBus_USB)
3856 pCtlInst = CFGMR3CreateTree(pUVM);
3857 else
3858 pCtlInst = CFGMR3GetChildF(CFGMR3GetRootU(pUVM), "Devices/%s/%u/", pcszDevice, uInstance);
3859
3860 AssertReturn(pCtlInst, VERR_INTERNAL_ERROR);
3861
3862 PCFGMNODE pLunL0 = NULL;
3863 int rc = pThis->i_configMediumAttachment(pCtlInst,
3864 pcszDevice,
3865 uInstance,
3866 enmBus,
3867 fUseHostIOCache,
3868 false /* fSetupMerge */,
3869 false /* fBuiltinIOCache */,
3870 0 /* uMergeSource */,
3871 0 /* uMergeTarget */,
3872 aMediumAtt,
3873 pThis->mMachineState,
3874 NULL /* phrc */,
3875 true /* fAttachDetach */,
3876 false /* fForceUnmount */,
3877 !fSilent /* fHotplug */,
3878 pUVM,
3879 NULL /* paLedDevType */,
3880 &pLunL0);
3881 /* Dump the changed LUN if possible, dump the complete device otherwise */
3882 if (enmBus != StorageBus_USB)
3883 CFGMR3Dump(pLunL0 ? pLunL0 : pCtlInst);
3884
3885 LogFlowFunc(("Returning %Rrc\n", rc));
3886 return rc;
3887}
3888
3889/**
3890 * Attach a new storage device to the VM.
3891 *
3892 * @param aMediumAttachment The medium attachment which is added.
3893 * @param pUVM Safe VM handle.
3894 * @param fSilent Flag whether to notify the guest about the detached device.
3895 *
3896 * @note Locks this object for writing.
3897 */
3898HRESULT Console::i_doStorageDeviceDetach(IMediumAttachment *aMediumAttachment, PUVM pUVM, bool fSilent)
3899{
3900 AutoCaller autoCaller(this);
3901 AssertComRCReturnRC(autoCaller.rc());
3902
3903 /* We will need to release the write lock before calling EMT */
3904 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3905
3906 HRESULT rc = S_OK;
3907 const char *pszDevice = NULL;
3908
3909 SafeIfaceArray<IStorageController> ctrls;
3910 rc = mMachine->COMGETTER(StorageControllers)(ComSafeArrayAsOutParam(ctrls));
3911 AssertComRC(rc);
3912 IMedium *pMedium;
3913 rc = aMediumAttachment->COMGETTER(Medium)(&pMedium);
3914 AssertComRC(rc);
3915 Bstr mediumLocation;
3916 if (pMedium)
3917 {
3918 rc = pMedium->COMGETTER(Location)(mediumLocation.asOutParam());
3919 AssertComRC(rc);
3920 }
3921
3922 Bstr attCtrlName;
3923 rc = aMediumAttachment->COMGETTER(Controller)(attCtrlName.asOutParam());
3924 AssertComRC(rc);
3925 ComPtr<IStorageController> pStorageController;
3926 for (size_t i = 0; i < ctrls.size(); ++i)
3927 {
3928 Bstr ctrlName;
3929 rc = ctrls[i]->COMGETTER(Name)(ctrlName.asOutParam());
3930 AssertComRC(rc);
3931 if (attCtrlName == ctrlName)
3932 {
3933 pStorageController = ctrls[i];
3934 break;
3935 }
3936 }
3937 if (pStorageController.isNull())
3938 return setError(E_FAIL,
3939 tr("Could not find storage controller '%ls'"), attCtrlName.raw());
3940
3941 StorageControllerType_T enmCtrlType;
3942 rc = pStorageController->COMGETTER(ControllerType)(&enmCtrlType);
3943 AssertComRC(rc);
3944 pszDevice = i_convertControllerTypeToDev(enmCtrlType);
3945
3946 StorageBus_T enmBus;
3947 rc = pStorageController->COMGETTER(Bus)(&enmBus);
3948 AssertComRC(rc);
3949 ULONG uInstance;
3950 rc = pStorageController->COMGETTER(Instance)(&uInstance);
3951 AssertComRC(rc);
3952
3953 /*
3954 * Suspend the VM first. The VM must not be running since it might have
3955 * pending I/O to the drive which is being changed.
3956 */
3957 bool fResume = false;
3958 rc = i_suspendBeforeConfigChange(pUVM, &alock, &fResume);
3959 if (FAILED(rc))
3960 return rc;
3961
3962 /*
3963 * Call worker in EMT, that's faster and safer than doing everything
3964 * using VMR3ReqCall. Note that we separate VMR3ReqCall from VMR3ReqWait
3965 * here to make requests from under the lock in order to serialize them.
3966 */
3967 PVMREQ pReq;
3968 int vrc = VMR3ReqCallU(pUVM, VMCPUID_ANY, &pReq, 0 /* no wait! */, VMREQFLAGS_VBOX_STATUS,
3969 (PFNRT)i_detachStorageDevice, 7,
3970 this, pUVM, pszDevice, uInstance, enmBus, aMediumAttachment, fSilent);
3971
3972 /* release the lock before waiting for a result (EMT will call us back!) */
3973 alock.release();
3974
3975 if (vrc == VERR_TIMEOUT || RT_SUCCESS(vrc))
3976 {
3977 vrc = VMR3ReqWait(pReq, RT_INDEFINITE_WAIT);
3978 AssertRC(vrc);
3979 if (RT_SUCCESS(vrc))
3980 vrc = pReq->iStatus;
3981 }
3982 VMR3ReqFree(pReq);
3983
3984 if (fResume)
3985 i_resumeAfterConfigChange(pUVM);
3986
3987 if (RT_SUCCESS(vrc))
3988 {
3989 LogFlowThisFunc(("Returns S_OK\n"));
3990 return S_OK;
3991 }
3992
3993 if (!pMedium)
3994 return setError(E_FAIL,
3995 tr("Could not mount the media/drive '%ls' (%Rrc)"),
3996 mediumLocation.raw(), vrc);
3997
3998 return setError(E_FAIL,
3999 tr("Could not unmount the currently mounted media/drive (%Rrc)"),
4000 vrc);
4001}
4002
4003/**
4004 * Performs the storage detach operation in EMT.
4005 *
4006 * @returns VBox status code.
4007 *
4008 * @param pThis Pointer to the Console object.
4009 * @param pUVM The VM handle.
4010 * @param pcszDevice The PDM device name.
4011 * @param uInstance The PDM device instance.
4012 * @param fSilent Flag whether to notify the guest about the detached device.
4013 *
4014 * @thread EMT
4015 * @note The VM must not be running since it might have pending I/O to the drive which is being changed.
4016 */
4017DECLCALLBACK(int) Console::i_detachStorageDevice(Console *pThis,
4018 PUVM pUVM,
4019 const char *pcszDevice,
4020 unsigned uInstance,
4021 StorageBus_T enmBus,
4022 IMediumAttachment *pMediumAtt,
4023 bool fSilent)
4024{
4025 LogFlowFunc(("pThis=%p uInstance=%u pszDevice=%p:{%s} enmBus=%u, pMediumAtt=%p\n",
4026 pThis, uInstance, pcszDevice, pcszDevice, enmBus, pMediumAtt));
4027
4028 AssertReturn(pThis, VERR_INVALID_PARAMETER);
4029
4030 AutoCaller autoCaller(pThis);
4031 AssertComRCReturn(autoCaller.rc(), VERR_ACCESS_DENIED);
4032
4033 /*
4034 * Check the VM for correct state.
4035 */
4036 VMSTATE enmVMState = VMR3GetStateU(pUVM);
4037 AssertReturn(enmVMState == VMSTATE_SUSPENDED, VERR_INVALID_STATE);
4038
4039 /* Determine the base path for the device instance. */
4040 PCFGMNODE pCtlInst;
4041 pCtlInst = CFGMR3GetChildF(CFGMR3GetRootU(pUVM), "Devices/%s/%u/", pcszDevice, uInstance);
4042 AssertReturn(pCtlInst || enmBus == StorageBus_USB, VERR_INTERNAL_ERROR);
4043
4044#define H() AssertMsgReturn(!FAILED(hrc), ("hrc=%Rhrc\n", hrc), VERR_GENERAL_FAILURE)
4045
4046 HRESULT hrc;
4047 int rc = VINF_SUCCESS;
4048 int rcRet = VINF_SUCCESS;
4049 unsigned uLUN;
4050 LONG lDev;
4051 LONG lPort;
4052 DeviceType_T lType;
4053 PCFGMNODE pLunL0 = NULL;
4054 PCFGMNODE pCfg = NULL;
4055
4056 hrc = pMediumAtt->COMGETTER(Device)(&lDev); H();
4057 hrc = pMediumAtt->COMGETTER(Port)(&lPort); H();
4058 hrc = pMediumAtt->COMGETTER(Type)(&lType); H();
4059 hrc = Console::i_convertBusPortDeviceToLun(enmBus, lPort, lDev, uLUN); H();
4060
4061#undef H
4062
4063 if (enmBus != StorageBus_USB)
4064 {
4065 /* First check if the LUN really exists. */
4066 pLunL0 = CFGMR3GetChildF(pCtlInst, "LUN#%u", uLUN);
4067 if (pLunL0)
4068 {
4069 uint32_t fFlags = 0;
4070
4071 if (fSilent)
4072 fFlags |= PDM_TACH_FLAGS_NOT_HOT_PLUG;
4073
4074 rc = PDMR3DeviceDetach(pUVM, pcszDevice, uInstance, uLUN, fFlags);
4075 if (rc == VERR_PDM_NO_DRIVER_ATTACHED_TO_LUN)
4076 rc = VINF_SUCCESS;
4077 AssertRCReturn(rc, rc);
4078 CFGMR3RemoveNode(pLunL0);
4079
4080 Utf8Str devicePath = Utf8StrFmt("%s/%u/LUN#%u", pcszDevice, uInstance, uLUN);
4081 pThis->mapMediumAttachments.erase(devicePath);
4082
4083 }
4084 else
4085 AssertFailedReturn(VERR_INTERNAL_ERROR);
4086
4087 CFGMR3Dump(pCtlInst);
4088 }
4089 else
4090 {
4091 /* Find the correct USB device in the list. */
4092 USBStorageDeviceList::iterator it;
4093 for (it = pThis->mUSBStorageDevices.begin(); it != pThis->mUSBStorageDevices.end(); it++)
4094 {
4095 if (it->iPort == lPort)
4096 break;
4097 }
4098
4099 AssertReturn(it != pThis->mUSBStorageDevices.end(), VERR_INTERNAL_ERROR);
4100 rc = PDMR3UsbDetachDevice(pUVM, &it->mUuid);
4101 AssertRCReturn(rc, rc);
4102 pThis->mUSBStorageDevices.erase(it);
4103 }
4104
4105 LogFlowFunc(("Returning %Rrc\n", rcRet));
4106 return rcRet;
4107}
4108
4109/**
4110 * Called by IInternalSessionControl::OnNetworkAdapterChange().
4111 *
4112 * @note Locks this object for writing.
4113 */
4114HRESULT Console::i_onNetworkAdapterChange(INetworkAdapter *aNetworkAdapter, BOOL changeAdapter)
4115{
4116 LogFlowThisFunc(("\n"));
4117
4118 AutoCaller autoCaller(this);
4119 AssertComRCReturnRC(autoCaller.rc());
4120
4121 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
4122
4123 HRESULT rc = S_OK;
4124
4125 /* don't trigger network changes if the VM isn't running */
4126 SafeVMPtrQuiet ptrVM(this);
4127 if (ptrVM.isOk())
4128 {
4129 /* Get the properties we need from the adapter */
4130 BOOL fCableConnected, fTraceEnabled;
4131 rc = aNetworkAdapter->COMGETTER(CableConnected)(&fCableConnected);
4132 AssertComRC(rc);
4133 if (SUCCEEDED(rc))
4134 {
4135 rc = aNetworkAdapter->COMGETTER(TraceEnabled)(&fTraceEnabled);
4136 AssertComRC(rc);
4137 }
4138 if (SUCCEEDED(rc))
4139 {
4140 ULONG ulInstance;
4141 rc = aNetworkAdapter->COMGETTER(Slot)(&ulInstance);
4142 AssertComRC(rc);
4143 if (SUCCEEDED(rc))
4144 {
4145 /*
4146 * Find the adapter instance, get the config interface and update
4147 * the link state.
4148 */
4149 NetworkAdapterType_T adapterType;
4150 rc = aNetworkAdapter->COMGETTER(AdapterType)(&adapterType);
4151 AssertComRC(rc);
4152 const char *pszAdapterName = networkAdapterTypeToName(adapterType);
4153
4154 // prevent cross-thread deadlocks, don't need the lock any more
4155 alock.release();
4156
4157 PPDMIBASE pBase;
4158 int vrc = PDMR3QueryDeviceLun(ptrVM.rawUVM(), pszAdapterName, ulInstance, 0, &pBase);
4159 if (RT_SUCCESS(vrc))
4160 {
4161 Assert(pBase);
4162 PPDMINETWORKCONFIG pINetCfg;
4163 pINetCfg = PDMIBASE_QUERY_INTERFACE(pBase, PDMINETWORKCONFIG);
4164 if (pINetCfg)
4165 {
4166 Log(("Console::onNetworkAdapterChange: setting link state to %d\n",
4167 fCableConnected));
4168 vrc = pINetCfg->pfnSetLinkState(pINetCfg,
4169 fCableConnected ? PDMNETWORKLINKSTATE_UP
4170 : PDMNETWORKLINKSTATE_DOWN);
4171 ComAssertRC(vrc);
4172 }
4173 if (RT_SUCCESS(vrc) && changeAdapter)
4174 {
4175 VMSTATE enmVMState = VMR3GetStateU(ptrVM.rawUVM());
4176 if ( enmVMState == VMSTATE_RUNNING /** @todo LiveMigration: Forbid or deal
4177 correctly with the _LS variants */
4178 || enmVMState == VMSTATE_SUSPENDED)
4179 {
4180 if (fTraceEnabled && fCableConnected && pINetCfg)
4181 {
4182 vrc = pINetCfg->pfnSetLinkState(pINetCfg, PDMNETWORKLINKSTATE_DOWN);
4183 ComAssertRC(vrc);
4184 }
4185
4186 rc = i_doNetworkAdapterChange(ptrVM.rawUVM(), pszAdapterName, ulInstance, 0, aNetworkAdapter);
4187
4188 if (fTraceEnabled && fCableConnected && pINetCfg)
4189 {
4190 vrc = pINetCfg->pfnSetLinkState(pINetCfg, PDMNETWORKLINKSTATE_UP);
4191 ComAssertRC(vrc);
4192 }
4193 }
4194 }
4195 }
4196 else if (vrc == VERR_PDM_DEVICE_INSTANCE_NOT_FOUND)
4197 return setError(E_FAIL,
4198 tr("The network adapter #%u is not enabled"), ulInstance);
4199 else
4200 ComAssertRC(vrc);
4201
4202 if (RT_FAILURE(vrc))
4203 rc = E_FAIL;
4204
4205 alock.acquire();
4206 }
4207 }
4208 ptrVM.release();
4209 }
4210
4211 // definitely don't need the lock any more
4212 alock.release();
4213
4214 /* notify console callbacks on success */
4215 if (SUCCEEDED(rc))
4216 fireNetworkAdapterChangedEvent(mEventSource, aNetworkAdapter);
4217
4218 LogFlowThisFunc(("Leaving rc=%#x\n", rc));
4219 return rc;
4220}
4221
4222/**
4223 * Called by IInternalSessionControl::OnNATEngineChange().
4224 *
4225 * @note Locks this object for writing.
4226 */
4227HRESULT Console::i_onNATRedirectRuleChange(ULONG ulInstance, BOOL aNatRuleRemove,
4228 NATProtocol_T aProto, IN_BSTR aHostIP,
4229 LONG aHostPort, IN_BSTR aGuestIP,
4230 LONG aGuestPort)
4231{
4232 LogFlowThisFunc(("\n"));
4233
4234 AutoCaller autoCaller(this);
4235 AssertComRCReturnRC(autoCaller.rc());
4236
4237 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
4238
4239 HRESULT rc = S_OK;
4240
4241 /* don't trigger NAT engine changes if the VM isn't running */
4242 SafeVMPtrQuiet ptrVM(this);
4243 if (ptrVM.isOk())
4244 {
4245 do
4246 {
4247 ComPtr<INetworkAdapter> pNetworkAdapter;
4248 rc = i_machine()->GetNetworkAdapter(ulInstance, pNetworkAdapter.asOutParam());
4249 if ( FAILED(rc)
4250 || pNetworkAdapter.isNull())
4251 break;
4252
4253 /*
4254 * Find the adapter instance, get the config interface and update
4255 * the link state.
4256 */
4257 NetworkAdapterType_T adapterType;
4258 rc = pNetworkAdapter->COMGETTER(AdapterType)(&adapterType);
4259 if (FAILED(rc))
4260 {
4261 AssertComRC(rc);
4262 rc = E_FAIL;
4263 break;
4264 }
4265
4266 const char *pszAdapterName = networkAdapterTypeToName(adapterType);
4267 PPDMIBASE pBase;
4268 int vrc = PDMR3QueryLun(ptrVM.rawUVM(), pszAdapterName, ulInstance, 0, &pBase);
4269 if (RT_FAILURE(vrc))
4270 {
4271 ComAssertRC(vrc);
4272 rc = E_FAIL;
4273 break;
4274 }
4275
4276 NetworkAttachmentType_T attachmentType;
4277 rc = pNetworkAdapter->COMGETTER(AttachmentType)(&attachmentType);
4278 if ( FAILED(rc)
4279 || attachmentType != NetworkAttachmentType_NAT)
4280 {
4281 rc = E_FAIL;
4282 break;
4283 }
4284
4285 /* look down for PDMINETWORKNATCONFIG interface */
4286 PPDMINETWORKNATCONFIG pNetNatCfg = NULL;
4287 while (pBase)
4288 {
4289 pNetNatCfg = (PPDMINETWORKNATCONFIG)pBase->pfnQueryInterface(pBase, PDMINETWORKNATCONFIG_IID);
4290 if (pNetNatCfg)
4291 break;
4292 /** @todo r=bird: This stinks! */
4293 PPDMDRVINS pDrvIns = PDMIBASE_2_PDMDRV(pBase);
4294 pBase = pDrvIns->pDownBase;
4295 }
4296 if (!pNetNatCfg)
4297 break;
4298
4299 bool fUdp = aProto == NATProtocol_UDP;
4300 vrc = pNetNatCfg->pfnRedirectRuleCommand(pNetNatCfg, !!aNatRuleRemove, fUdp,
4301 Utf8Str(aHostIP).c_str(), (uint16_t)aHostPort, Utf8Str(aGuestIP).c_str(),
4302 (uint16_t)aGuestPort);
4303 if (RT_FAILURE(vrc))
4304 rc = E_FAIL;
4305 } while (0); /* break loop */
4306 ptrVM.release();
4307 }
4308
4309 LogFlowThisFunc(("Leaving rc=%#x\n", rc));
4310 return rc;
4311}
4312
4313VMMDevMouseInterface *Console::i_getVMMDevMouseInterface()
4314{
4315 return m_pVMMDev;
4316}
4317
4318DisplayMouseInterface *Console::i_getDisplayMouseInterface()
4319{
4320 return mDisplay;
4321}
4322
4323/**
4324 * Parses one key value pair.
4325 *
4326 * @returns VBox status code.
4327 * @param psz Configuration string.
4328 * @param ppszEnd Where to store the pointer to the string following the key value pair.
4329 * @param ppszKey Where to store the key on success.
4330 * @param ppszVal Where to store the value on success.
4331 */
4332int Console::i_consoleParseKeyValue(const char *psz, const char **ppszEnd,
4333 char **ppszKey, char **ppszVal)
4334{
4335 int rc = VINF_SUCCESS;
4336 const char *pszKeyStart = psz;
4337 const char *pszValStart = NULL;
4338 size_t cchKey = 0;
4339 size_t cchVal = 0;
4340
4341 while ( *psz != '='
4342 && *psz)
4343 psz++;
4344
4345 /* End of string at this point is invalid. */
4346 if (*psz == '\0')
4347 return VERR_INVALID_PARAMETER;
4348
4349 cchKey = psz - pszKeyStart;
4350 psz++; /* Skip = character */
4351 pszValStart = psz;
4352
4353 while ( *psz != ','
4354 && *psz != '\n'
4355 && *psz != '\r'
4356 && *psz)
4357 psz++;
4358
4359 cchVal = psz - pszValStart;
4360
4361 if (cchKey && cchVal)
4362 {
4363 *ppszKey = RTStrDupN(pszKeyStart, cchKey);
4364 if (*ppszKey)
4365 {
4366 *ppszVal = RTStrDupN(pszValStart, cchVal);
4367 if (!*ppszVal)
4368 {
4369 RTStrFree(*ppszKey);
4370 rc = VERR_NO_MEMORY;
4371 }
4372 }
4373 else
4374 rc = VERR_NO_MEMORY;
4375 }
4376 else
4377 rc = VERR_INVALID_PARAMETER;
4378
4379 if (RT_SUCCESS(rc))
4380 *ppszEnd = psz;
4381
4382 return rc;
4383}
4384
4385/**
4386 * Removes the key interfaces from all disk attachments, useful when
4387 * changing the key store or dropping it.
4388 */
4389HRESULT Console::i_clearDiskEncryptionKeysOnAllAttachments(void)
4390{
4391 HRESULT hrc = S_OK;
4392 SafeIfaceArray<IMediumAttachment> sfaAttachments;
4393
4394 AutoCaller autoCaller(this);
4395 AssertComRCReturnRC(autoCaller.rc());
4396
4397 /* Get the VM - must be done before the read-locking. */
4398 SafeVMPtr ptrVM(this);
4399 if (!ptrVM.isOk())
4400 return ptrVM.rc();
4401
4402 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
4403
4404 hrc = mMachine->COMGETTER(MediumAttachments)(ComSafeArrayAsOutParam(sfaAttachments));
4405 AssertComRCReturnRC(hrc);
4406
4407 /* Find the correct attachment. */
4408 for (unsigned i = 0; i < sfaAttachments.size(); i++)
4409 {
4410 const ComPtr<IMediumAttachment> &pAtt = sfaAttachments[i];
4411
4412 /*
4413 * Query storage controller, port and device
4414 * to identify the correct driver.
4415 */
4416 ComPtr<IStorageController> pStorageCtrl;
4417 Bstr storageCtrlName;
4418 LONG lPort, lDev;
4419 ULONG ulStorageCtrlInst;
4420
4421 hrc = pAtt->COMGETTER(Controller)(storageCtrlName.asOutParam());
4422 AssertComRC(hrc);
4423
4424 hrc = pAtt->COMGETTER(Port)(&lPort);
4425 AssertComRC(hrc);
4426
4427 hrc = pAtt->COMGETTER(Device)(&lDev);
4428 AssertComRC(hrc);
4429
4430 hrc = mMachine->GetStorageControllerByName(storageCtrlName.raw(), pStorageCtrl.asOutParam());
4431 AssertComRC(hrc);
4432
4433 hrc = pStorageCtrl->COMGETTER(Instance)(&ulStorageCtrlInst);
4434 AssertComRC(hrc);
4435
4436 StorageControllerType_T enmCtrlType;
4437 hrc = pStorageCtrl->COMGETTER(ControllerType)(&enmCtrlType);
4438 AssertComRC(hrc);
4439 const char *pcszDevice = i_convertControllerTypeToDev(enmCtrlType);
4440
4441 StorageBus_T enmBus;
4442 hrc = pStorageCtrl->COMGETTER(Bus)(&enmBus);
4443 AssertComRC(hrc);
4444
4445 unsigned uLUN;
4446 hrc = Console::i_convertBusPortDeviceToLun(enmBus, lPort, lDev, uLUN);
4447 AssertComRC(hrc);
4448
4449 PPDMIBASE pIBase = NULL;
4450 PPDMIMEDIA pIMedium = NULL;
4451 int rc = PDMR3QueryDriverOnLun(ptrVM.rawUVM(), pcszDevice, ulStorageCtrlInst, uLUN, "VD", &pIBase);
4452 if (RT_SUCCESS(rc))
4453 {
4454 if (pIBase)
4455 {
4456 pIMedium = (PPDMIMEDIA)pIBase->pfnQueryInterface(pIBase, PDMIMEDIA_IID);
4457 if (pIMedium)
4458 {
4459 rc = pIMedium->pfnSetSecKeyIf(pIMedium, NULL);
4460 Assert(RT_SUCCESS(rc) || rc == VERR_NOT_SUPPORTED);
4461 }
4462 }
4463 }
4464 }
4465
4466 return hrc;
4467}
4468
4469/**
4470 * Configures the encryption support for the disk identified by the gien UUID with
4471 * the given key.
4472 *
4473 * @returns COM status code.
4474 * @param pszUuid The UUID of the disk to configure encryption for.
4475 */
4476HRESULT Console::i_configureEncryptionForDisk(const char *pszUuid)
4477{
4478 HRESULT hrc = S_OK;
4479 SafeIfaceArray<IMediumAttachment> sfaAttachments;
4480
4481 AutoCaller autoCaller(this);
4482 AssertComRCReturnRC(autoCaller.rc());
4483
4484 /* Get the VM - must be done before the read-locking. */
4485 SafeVMPtr ptrVM(this);
4486 if (!ptrVM.isOk())
4487 return ptrVM.rc();
4488
4489 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
4490
4491 hrc = mMachine->COMGETTER(MediumAttachments)(ComSafeArrayAsOutParam(sfaAttachments));
4492 if (FAILED(hrc))
4493 return hrc;
4494
4495 /* Find the correct attachment. */
4496 for (unsigned i = 0; i < sfaAttachments.size(); i++)
4497 {
4498 const ComPtr<IMediumAttachment> &pAtt = sfaAttachments[i];
4499 ComPtr<IMedium> pMedium;
4500 ComPtr<IMedium> pBase;
4501 Bstr uuid;
4502
4503 hrc = pAtt->COMGETTER(Medium)(pMedium.asOutParam());
4504 if (FAILED(hrc))
4505 break;
4506
4507 /* Skip non hard disk attachments. */
4508 if (pMedium.isNull())
4509 continue;
4510
4511 /* Get the UUID of the base medium and compare. */
4512 hrc = pMedium->COMGETTER(Base)(pBase.asOutParam());
4513 if (FAILED(hrc))
4514 break;
4515
4516 hrc = pBase->COMGETTER(Id)(uuid.asOutParam());
4517 if (FAILED(hrc))
4518 break;
4519
4520 if (!RTUuidCompare2Strs(Utf8Str(uuid).c_str(), pszUuid))
4521 {
4522 /*
4523 * Found the matching medium, query storage controller, port and device
4524 * to identify the correct driver.
4525 */
4526 ComPtr<IStorageController> pStorageCtrl;
4527 Bstr storageCtrlName;
4528 LONG lPort, lDev;
4529 ULONG ulStorageCtrlInst;
4530
4531 hrc = pAtt->COMGETTER(Controller)(storageCtrlName.asOutParam());
4532 if (FAILED(hrc))
4533 break;
4534
4535 hrc = pAtt->COMGETTER(Port)(&lPort);
4536 if (FAILED(hrc))
4537 break;
4538
4539 hrc = pAtt->COMGETTER(Device)(&lDev);
4540 if (FAILED(hrc))
4541 break;
4542
4543 hrc = mMachine->GetStorageControllerByName(storageCtrlName.raw(), pStorageCtrl.asOutParam());
4544 if (FAILED(hrc))
4545 break;
4546
4547 hrc = pStorageCtrl->COMGETTER(Instance)(&ulStorageCtrlInst);
4548 if (FAILED(hrc))
4549 break;
4550
4551 StorageControllerType_T enmCtrlType;
4552 hrc = pStorageCtrl->COMGETTER(ControllerType)(&enmCtrlType);
4553 AssertComRC(hrc);
4554 const char *pcszDevice = i_convertControllerTypeToDev(enmCtrlType);
4555
4556 StorageBus_T enmBus;
4557 hrc = pStorageCtrl->COMGETTER(Bus)(&enmBus);
4558 AssertComRC(hrc);
4559
4560 unsigned uLUN;
4561 hrc = Console::i_convertBusPortDeviceToLun(enmBus, lPort, lDev, uLUN);
4562 AssertComRCReturnRC(hrc);
4563
4564 PPDMIBASE pIBase = NULL;
4565 PPDMIMEDIA pIMedium = NULL;
4566 int rc = PDMR3QueryDriverOnLun(ptrVM.rawUVM(), pcszDevice, ulStorageCtrlInst, uLUN, "VD", &pIBase);
4567 if (RT_SUCCESS(rc))
4568 {
4569 if (pIBase)
4570 {
4571 pIMedium = (PPDMIMEDIA)pIBase->pfnQueryInterface(pIBase, PDMIMEDIA_IID);
4572 if (!pIMedium)
4573 return setError(E_FAIL, tr("could not query medium interface of controller"));
4574 else
4575 {
4576 rc = pIMedium->pfnSetSecKeyIf(pIMedium, mpIfSecKey);
4577 if (RT_FAILURE(rc))
4578 return setError(E_FAIL, tr("Failed to set the encryption key (%Rrc)"), rc);
4579 }
4580 }
4581 else
4582 return setError(E_FAIL, tr("could not query base interface of controller"));
4583 }
4584 }
4585 }
4586
4587 return hrc;
4588}
4589
4590/**
4591 * Parses the encryption configuration for one disk.
4592 *
4593 * @returns Pointer to the string following encryption configuration.
4594 * @param psz Pointer to the configuration for the encryption of one disk.
4595 */
4596HRESULT Console::i_consoleParseDiskEncryption(const char *psz, const char **ppszEnd)
4597{
4598 char *pszUuid = NULL;
4599 char *pszKeyEnc = NULL;
4600 int rc = VINF_SUCCESS;
4601 HRESULT hrc = S_OK;
4602
4603 while ( *psz
4604 && RT_SUCCESS(rc))
4605 {
4606 char *pszKey = NULL;
4607 char *pszVal = NULL;
4608 const char *pszEnd = NULL;
4609
4610 rc = i_consoleParseKeyValue(psz, &pszEnd, &pszKey, &pszVal);
4611 if (RT_SUCCESS(rc))
4612 {
4613 if (!RTStrCmp(pszKey, "uuid"))
4614 pszUuid = pszVal;
4615 else if (!RTStrCmp(pszKey, "dek"))
4616 pszKeyEnc = pszVal;
4617 else
4618 rc = VERR_INVALID_PARAMETER;
4619
4620 RTStrFree(pszKey);
4621
4622 if (*pszEnd == ',')
4623 psz = pszEnd + 1;
4624 else
4625 {
4626 /*
4627 * End of the configuration for the current disk, skip linefeed and
4628 * carriage returns.
4629 */
4630 while ( *pszEnd == '\n'
4631 || *pszEnd == '\r')
4632 pszEnd++;
4633
4634 psz = pszEnd;
4635 break; /* Stop parsing */
4636 }
4637
4638 }
4639 }
4640
4641 if ( RT_SUCCESS(rc)
4642 && pszUuid
4643 && pszKeyEnc)
4644 {
4645 ssize_t cbKey = 0;
4646
4647 /* Decode the key. */
4648 cbKey = RTBase64DecodedSize(pszKeyEnc, NULL);
4649 if (cbKey != -1)
4650 {
4651 uint8_t *pbKey;
4652 rc = RTMemSaferAllocZEx((void **)&pbKey, cbKey, RTMEMSAFER_F_REQUIRE_NOT_PAGABLE);
4653 if (RT_SUCCESS(rc))
4654 {
4655 rc = RTBase64Decode(pszKeyEnc, pbKey, cbKey, NULL, NULL);
4656 if (RT_SUCCESS(rc))
4657 {
4658 SecretKey *pKey = new SecretKey(pbKey, cbKey);
4659 /* Add the key to the map */
4660 m_mapSecretKeys.insert(std::make_pair(Utf8Str(pszUuid), pKey));
4661 hrc = i_configureEncryptionForDisk(pszUuid);
4662 }
4663 else
4664 hrc = setError(E_FAIL,
4665 tr("Failed to decode the key (%Rrc)"),
4666 rc);
4667 }
4668 else
4669 hrc = setError(E_FAIL,
4670 tr("Failed to allocate secure memory for the key (%Rrc)"), rc);
4671 }
4672 else
4673 hrc = setError(E_FAIL,
4674 tr("The base64 encoding of the passed key is incorrect"));
4675 }
4676 else if (RT_SUCCESS(rc))
4677 hrc = setError(E_FAIL,
4678 tr("The encryption configuration is incomplete"));
4679
4680 if (pszUuid)
4681 RTStrFree(pszUuid);
4682 if (pszKeyEnc)
4683 {
4684 RTMemWipeThoroughly(pszKeyEnc, strlen(pszKeyEnc), 10 /* cMinPasses */);
4685 RTStrFree(pszKeyEnc);
4686 }
4687
4688 if (ppszEnd)
4689 *ppszEnd = psz;
4690
4691 return hrc;
4692}
4693
4694HRESULT Console::i_setDiskEncryptionKeys(const Utf8Str &strCfg)
4695{
4696 HRESULT hrc = S_OK;
4697 const char *pszCfg = strCfg.c_str();
4698
4699 while ( *pszCfg
4700 && SUCCEEDED(hrc))
4701 {
4702 const char *pszNext = NULL;
4703 hrc = i_consoleParseDiskEncryption(pszCfg, &pszNext);
4704 pszCfg = pszNext;
4705 }
4706
4707 return hrc;
4708}
4709
4710/**
4711 * Process a network adaptor change.
4712 *
4713 * @returns COM status code.
4714 *
4715 * @parma pUVM The VM handle (caller hold this safely).
4716 * @param pszDevice The PDM device name.
4717 * @param uInstance The PDM device instance.
4718 * @param uLun The PDM LUN number of the drive.
4719 * @param aNetworkAdapter The network adapter whose attachment needs to be changed
4720 */
4721HRESULT Console::i_doNetworkAdapterChange(PUVM pUVM,
4722 const char *pszDevice,
4723 unsigned uInstance,
4724 unsigned uLun,
4725 INetworkAdapter *aNetworkAdapter)
4726{
4727 LogFlowThisFunc(("pszDevice=%p:{%s} uInstance=%u uLun=%u aNetworkAdapter=%p\n",
4728 pszDevice, pszDevice, uInstance, uLun, aNetworkAdapter));
4729
4730 AutoCaller autoCaller(this);
4731 AssertComRCReturnRC(autoCaller.rc());
4732
4733 /*
4734 * Suspend the VM first.
4735 */
4736 bool fResume = false;
4737 int rc = i_suspendBeforeConfigChange(pUVM, NULL, &fResume);
4738 if (FAILED(rc))
4739 return rc;
4740
4741 /*
4742 * Call worker in EMT, that's faster and safer than doing everything
4743 * using VM3ReqCall. Note that we separate VMR3ReqCall from VMR3ReqWait
4744 * here to make requests from under the lock in order to serialize them.
4745 */
4746 PVMREQ pReq;
4747 int vrc = VMR3ReqCallU(pUVM, 0 /*idDstCpu*/, &pReq, 0 /* no wait! */, VMREQFLAGS_VBOX_STATUS,
4748 (PFNRT)i_changeNetworkAttachment, 6,
4749 this, pUVM, pszDevice, uInstance, uLun, aNetworkAdapter);
4750
4751 if (vrc == VERR_TIMEOUT || RT_SUCCESS(vrc))
4752 {
4753 vrc = VMR3ReqWait(pReq, RT_INDEFINITE_WAIT);
4754 AssertRC(vrc);
4755 if (RT_SUCCESS(vrc))
4756 vrc = pReq->iStatus;
4757 }
4758 VMR3ReqFree(pReq);
4759
4760 if (fResume)
4761 i_resumeAfterConfigChange(pUVM);
4762
4763 if (RT_SUCCESS(vrc))
4764 {
4765 LogFlowThisFunc(("Returns S_OK\n"));
4766 return S_OK;
4767 }
4768
4769 return setError(E_FAIL,
4770 tr("Could not change the network adaptor attachement type (%Rrc)"),
4771 vrc);
4772}
4773
4774
4775/**
4776 * Performs the Network Adaptor change in EMT.
4777 *
4778 * @returns VBox status code.
4779 *
4780 * @param pThis Pointer to the Console object.
4781 * @param pUVM The VM handle.
4782 * @param pszDevice The PDM device name.
4783 * @param uInstance The PDM device instance.
4784 * @param uLun The PDM LUN number of the drive.
4785 * @param aNetworkAdapter The network adapter whose attachment needs to be changed
4786 *
4787 * @thread EMT
4788 * @note Locks the Console object for writing.
4789 * @note The VM must not be running.
4790 */
4791DECLCALLBACK(int) Console::i_changeNetworkAttachment(Console *pThis,
4792 PUVM pUVM,
4793 const char *pszDevice,
4794 unsigned uInstance,
4795 unsigned uLun,
4796 INetworkAdapter *aNetworkAdapter)
4797{
4798 LogFlowFunc(("pThis=%p pszDevice=%p:{%s} uInstance=%u uLun=%u aNetworkAdapter=%p\n",
4799 pThis, pszDevice, pszDevice, uInstance, uLun, aNetworkAdapter));
4800
4801 AssertReturn(pThis, VERR_INVALID_PARAMETER);
4802
4803 AutoCaller autoCaller(pThis);
4804 AssertComRCReturn(autoCaller.rc(), VERR_ACCESS_DENIED);
4805
4806 ComPtr<IVirtualBox> pVirtualBox;
4807 pThis->mMachine->COMGETTER(Parent)(pVirtualBox.asOutParam());
4808 ComPtr<ISystemProperties> pSystemProperties;
4809 if (pVirtualBox)
4810 pVirtualBox->COMGETTER(SystemProperties)(pSystemProperties.asOutParam());
4811 ChipsetType_T chipsetType = ChipsetType_PIIX3;
4812 pThis->mMachine->COMGETTER(ChipsetType)(&chipsetType);
4813 ULONG maxNetworkAdapters = 0;
4814 if (pSystemProperties)
4815 pSystemProperties->GetMaxNetworkAdapters(chipsetType, &maxNetworkAdapters);
4816 AssertMsg( ( !strcmp(pszDevice, "pcnet")
4817 || !strcmp(pszDevice, "e1000")
4818 || !strcmp(pszDevice, "virtio-net"))
4819 && uLun == 0
4820 && uInstance < maxNetworkAdapters,
4821 ("pszDevice=%s uLun=%d uInstance=%d\n", pszDevice, uLun, uInstance));
4822 Log(("pszDevice=%s uLun=%d uInstance=%d\n", pszDevice, uLun, uInstance));
4823
4824 /*
4825 * Check the VM for correct state.
4826 */
4827 VMSTATE enmVMState = VMR3GetStateU(pUVM);
4828 AssertReturn(enmVMState == VMSTATE_SUSPENDED, VERR_INVALID_STATE);
4829
4830 PCFGMNODE pCfg = NULL; /* /Devices/Dev/.../Config/ */
4831 PCFGMNODE pLunL0 = NULL; /* /Devices/Dev/0/LUN#0/ */
4832 PCFGMNODE pInst = CFGMR3GetChildF(CFGMR3GetRootU(pUVM), "Devices/%s/%d/", pszDevice, uInstance);
4833 AssertRelease(pInst);
4834
4835 int rc = pThis->i_configNetwork(pszDevice, uInstance, uLun, aNetworkAdapter, pCfg, pLunL0, pInst,
4836 true /*fAttachDetach*/, false /*fIgnoreConnectFailure*/);
4837
4838 LogFlowFunc(("Returning %Rrc\n", rc));
4839 return rc;
4840}
4841
4842
4843/**
4844 * Called by IInternalSessionControl::OnSerialPortChange().
4845 */
4846HRESULT Console::i_onSerialPortChange(ISerialPort *aSerialPort)
4847{
4848 LogFlowThisFunc(("\n"));
4849
4850 AutoCaller autoCaller(this);
4851 AssertComRCReturnRC(autoCaller.rc());
4852
4853 fireSerialPortChangedEvent(mEventSource, aSerialPort);
4854
4855 LogFlowThisFunc(("Leaving rc=%#x\n", S_OK));
4856 return S_OK;
4857}
4858
4859/**
4860 * Called by IInternalSessionControl::OnParallelPortChange().
4861 */
4862HRESULT Console::i_onParallelPortChange(IParallelPort *aParallelPort)
4863{
4864 LogFlowThisFunc(("\n"));
4865
4866 AutoCaller autoCaller(this);
4867 AssertComRCReturnRC(autoCaller.rc());
4868
4869 fireParallelPortChangedEvent(mEventSource, aParallelPort);
4870
4871 LogFlowThisFunc(("Leaving rc=%#x\n", S_OK));
4872 return S_OK;
4873}
4874
4875/**
4876 * Called by IInternalSessionControl::OnStorageControllerChange().
4877 */
4878HRESULT Console::i_onStorageControllerChange()
4879{
4880 LogFlowThisFunc(("\n"));
4881
4882 AutoCaller autoCaller(this);
4883 AssertComRCReturnRC(autoCaller.rc());
4884
4885 fireStorageControllerChangedEvent(mEventSource);
4886
4887 LogFlowThisFunc(("Leaving rc=%#x\n", S_OK));
4888 return S_OK;
4889}
4890
4891/**
4892 * Called by IInternalSessionControl::OnMediumChange().
4893 */
4894HRESULT Console::i_onMediumChange(IMediumAttachment *aMediumAttachment, BOOL aForce)
4895{
4896 LogFlowThisFunc(("\n"));
4897
4898 AutoCaller autoCaller(this);
4899 AssertComRCReturnRC(autoCaller.rc());
4900
4901 HRESULT rc = S_OK;
4902
4903 /* don't trigger medium changes if the VM isn't running */
4904 SafeVMPtrQuiet ptrVM(this);
4905 if (ptrVM.isOk())
4906 {
4907 rc = i_doMediumChange(aMediumAttachment, !!aForce, ptrVM.rawUVM());
4908 ptrVM.release();
4909 }
4910
4911 /* notify console callbacks on success */
4912 if (SUCCEEDED(rc))
4913 fireMediumChangedEvent(mEventSource, aMediumAttachment);
4914
4915 LogFlowThisFunc(("Leaving rc=%#x\n", rc));
4916 return rc;
4917}
4918
4919/**
4920 * Called by IInternalSessionControl::OnCPUChange().
4921 *
4922 * @note Locks this object for writing.
4923 */
4924HRESULT Console::i_onCPUChange(ULONG aCPU, BOOL aRemove)
4925{
4926 LogFlowThisFunc(("\n"));
4927
4928 AutoCaller autoCaller(this);
4929 AssertComRCReturnRC(autoCaller.rc());
4930
4931 HRESULT rc = S_OK;
4932
4933 /* don't trigger CPU changes if the VM isn't running */
4934 SafeVMPtrQuiet ptrVM(this);
4935 if (ptrVM.isOk())
4936 {
4937 if (aRemove)
4938 rc = i_doCPURemove(aCPU, ptrVM.rawUVM());
4939 else
4940 rc = i_doCPUAdd(aCPU, ptrVM.rawUVM());
4941 ptrVM.release();
4942 }
4943
4944 /* notify console callbacks on success */
4945 if (SUCCEEDED(rc))
4946 fireCPUChangedEvent(mEventSource, aCPU, aRemove);
4947
4948 LogFlowThisFunc(("Leaving rc=%#x\n", rc));
4949 return rc;
4950}
4951
4952/**
4953 * Called by IInternalSessionControl::OnCpuExecutionCapChange().
4954 *
4955 * @note Locks this object for writing.
4956 */
4957HRESULT Console::i_onCPUExecutionCapChange(ULONG aExecutionCap)
4958{
4959 LogFlowThisFunc(("\n"));
4960
4961 AutoCaller autoCaller(this);
4962 AssertComRCReturnRC(autoCaller.rc());
4963
4964 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
4965
4966 HRESULT rc = S_OK;
4967
4968 /* don't trigger the CPU priority change if the VM isn't running */
4969 SafeVMPtrQuiet ptrVM(this);
4970 if (ptrVM.isOk())
4971 {
4972 if ( mMachineState == MachineState_Running
4973 || mMachineState == MachineState_Teleporting
4974 || mMachineState == MachineState_LiveSnapshotting
4975 )
4976 {
4977 /* No need to call in the EMT thread. */
4978 rc = VMR3SetCpuExecutionCap(ptrVM.rawUVM(), aExecutionCap);
4979 }
4980 else
4981 rc = i_setInvalidMachineStateError();
4982 ptrVM.release();
4983 }
4984
4985 /* notify console callbacks on success */
4986 if (SUCCEEDED(rc))
4987 {
4988 alock.release();
4989 fireCPUExecutionCapChangedEvent(mEventSource, aExecutionCap);
4990 }
4991
4992 LogFlowThisFunc(("Leaving rc=%#x\n", rc));
4993 return rc;
4994}
4995
4996/**
4997 * Called by IInternalSessionControl::OnClipboardModeChange().
4998 *
4999 * @note Locks this object for writing.
5000 */
5001HRESULT Console::i_onClipboardModeChange(ClipboardMode_T aClipboardMode)
5002{
5003 LogFlowThisFunc(("\n"));
5004
5005 AutoCaller autoCaller(this);
5006 AssertComRCReturnRC(autoCaller.rc());
5007
5008 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
5009
5010 HRESULT rc = S_OK;
5011
5012 /* don't trigger the clipboard mode change if the VM isn't running */
5013 SafeVMPtrQuiet ptrVM(this);
5014 if (ptrVM.isOk())
5015 {
5016 if ( mMachineState == MachineState_Running
5017 || mMachineState == MachineState_Teleporting
5018 || mMachineState == MachineState_LiveSnapshotting)
5019 i_changeClipboardMode(aClipboardMode);
5020 else
5021 rc = i_setInvalidMachineStateError();
5022 ptrVM.release();
5023 }
5024
5025 /* notify console callbacks on success */
5026 if (SUCCEEDED(rc))
5027 {
5028 alock.release();
5029 fireClipboardModeChangedEvent(mEventSource, aClipboardMode);
5030 }
5031
5032 LogFlowThisFunc(("Leaving rc=%#x\n", rc));
5033 return rc;
5034}
5035
5036/**
5037 * Called by IInternalSessionControl::OnDnDModeChange().
5038 *
5039 * @note Locks this object for writing.
5040 */
5041HRESULT Console::i_onDnDModeChange(DnDMode_T aDnDMode)
5042{
5043 LogFlowThisFunc(("\n"));
5044
5045 AutoCaller autoCaller(this);
5046 AssertComRCReturnRC(autoCaller.rc());
5047
5048 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
5049
5050 HRESULT rc = S_OK;
5051
5052 /* don't trigger the drag'n'drop mode change if the VM isn't running */
5053 SafeVMPtrQuiet ptrVM(this);
5054 if (ptrVM.isOk())
5055 {
5056 if ( mMachineState == MachineState_Running
5057 || mMachineState == MachineState_Teleporting
5058 || mMachineState == MachineState_LiveSnapshotting)
5059 i_changeDnDMode(aDnDMode);
5060 else
5061 rc = i_setInvalidMachineStateError();
5062 ptrVM.release();
5063 }
5064
5065 /* notify console callbacks on success */
5066 if (SUCCEEDED(rc))
5067 {
5068 alock.release();
5069 fireDnDModeChangedEvent(mEventSource, aDnDMode);
5070 }
5071
5072 LogFlowThisFunc(("Leaving rc=%#x\n", rc));
5073 return rc;
5074}
5075
5076/**
5077 * Called by IInternalSessionControl::OnVRDEServerChange().
5078 *
5079 * @note Locks this object for writing.
5080 */
5081HRESULT Console::i_onVRDEServerChange(BOOL aRestart)
5082{
5083 AutoCaller autoCaller(this);
5084 AssertComRCReturnRC(autoCaller.rc());
5085
5086 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
5087
5088 HRESULT rc = S_OK;
5089
5090 /* don't trigger VRDE server changes if the VM isn't running */
5091 SafeVMPtrQuiet ptrVM(this);
5092 if (ptrVM.isOk())
5093 {
5094 /* Serialize. */
5095 if (mfVRDEChangeInProcess)
5096 mfVRDEChangePending = true;
5097 else
5098 {
5099 do {
5100 mfVRDEChangeInProcess = true;
5101 mfVRDEChangePending = false;
5102
5103 if ( mVRDEServer
5104 && ( mMachineState == MachineState_Running
5105 || mMachineState == MachineState_Teleporting
5106 || mMachineState == MachineState_LiveSnapshotting
5107 || mMachineState == MachineState_Paused
5108 )
5109 )
5110 {
5111 BOOL vrdpEnabled = FALSE;
5112
5113 rc = mVRDEServer->COMGETTER(Enabled)(&vrdpEnabled);
5114 ComAssertComRCRetRC(rc);
5115
5116 if (aRestart)
5117 {
5118 /* VRDP server may call this Console object back from other threads (VRDP INPUT or OUTPUT). */
5119 alock.release();
5120
5121 if (vrdpEnabled)
5122 {
5123 // If there was no VRDP server started the 'stop' will do nothing.
5124 // However if a server was started and this notification was called,
5125 // we have to restart the server.
5126 mConsoleVRDPServer->Stop();
5127
5128 if (RT_FAILURE(mConsoleVRDPServer->Launch()))
5129 rc = E_FAIL;
5130 else
5131 mConsoleVRDPServer->EnableConnections();
5132 }
5133 else
5134 mConsoleVRDPServer->Stop();
5135
5136 alock.acquire();
5137 }
5138 }
5139 else
5140 rc = i_setInvalidMachineStateError();
5141
5142 mfVRDEChangeInProcess = false;
5143 } while (mfVRDEChangePending && SUCCEEDED(rc));
5144 }
5145
5146 ptrVM.release();
5147 }
5148
5149 /* notify console callbacks on success */
5150 if (SUCCEEDED(rc))
5151 {
5152 alock.release();
5153 fireVRDEServerChangedEvent(mEventSource);
5154 }
5155
5156 return rc;
5157}
5158
5159void Console::i_onVRDEServerInfoChange()
5160{
5161 AutoCaller autoCaller(this);
5162 AssertComRCReturnVoid(autoCaller.rc());
5163
5164 fireVRDEServerInfoChangedEvent(mEventSource);
5165}
5166
5167HRESULT Console::i_onVideoCaptureChange()
5168{
5169 AutoCaller autoCaller(this);
5170 AssertComRCReturnRC(autoCaller.rc());
5171
5172 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
5173
5174 HRESULT rc = S_OK;
5175
5176 /* don't trigger video capture changes if the VM isn't running */
5177 SafeVMPtrQuiet ptrVM(this);
5178 if (ptrVM.isOk())
5179 {
5180 BOOL fEnabled;
5181 rc = mMachine->COMGETTER(VideoCaptureEnabled)(&fEnabled);
5182 SafeArray<BOOL> screens;
5183 if (SUCCEEDED(rc))
5184 rc = mMachine->COMGETTER(VideoCaptureScreens)(ComSafeArrayAsOutParam(screens));
5185 if (mDisplay)
5186 {
5187 int vrc = VINF_SUCCESS;
5188 if (SUCCEEDED(rc))
5189 vrc = mDisplay->i_VideoCaptureEnableScreens(ComSafeArrayAsInParam(screens));
5190 if (RT_SUCCESS(vrc))
5191 {
5192 if (fEnabled)
5193 {
5194 vrc = mDisplay->i_VideoCaptureStart();
5195 if (RT_FAILURE(vrc))
5196 rc = setError(E_FAIL, tr("Unable to start video capturing (%Rrc)"), vrc);
5197 }
5198 else
5199 mDisplay->i_VideoCaptureStop();
5200 }
5201 else
5202 rc = setError(E_FAIL, tr("Unable to set screens for capturing (%Rrc)"), vrc);
5203 }
5204 ptrVM.release();
5205 }
5206
5207 /* notify console callbacks on success */
5208 if (SUCCEEDED(rc))
5209 {
5210 alock.release();
5211 fireVideoCaptureChangedEvent(mEventSource);
5212 }
5213
5214 return rc;
5215}
5216
5217/**
5218 * Called by IInternalSessionControl::OnUSBControllerChange().
5219 */
5220HRESULT Console::i_onUSBControllerChange()
5221{
5222 LogFlowThisFunc(("\n"));
5223
5224 AutoCaller autoCaller(this);
5225 AssertComRCReturnRC(autoCaller.rc());
5226
5227 fireUSBControllerChangedEvent(mEventSource);
5228
5229 return S_OK;
5230}
5231
5232/**
5233 * Called by IInternalSessionControl::OnSharedFolderChange().
5234 *
5235 * @note Locks this object for writing.
5236 */
5237HRESULT Console::i_onSharedFolderChange(BOOL aGlobal)
5238{
5239 LogFlowThisFunc(("aGlobal=%RTbool\n", aGlobal));
5240
5241 AutoCaller autoCaller(this);
5242 AssertComRCReturnRC(autoCaller.rc());
5243
5244 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
5245
5246 HRESULT rc = i_fetchSharedFolders(aGlobal);
5247
5248 /* notify console callbacks on success */
5249 if (SUCCEEDED(rc))
5250 {
5251 alock.release();
5252 fireSharedFolderChangedEvent(mEventSource, aGlobal ? (Scope_T)Scope_Global : (Scope_T)Scope_Machine);
5253 }
5254
5255 return rc;
5256}
5257
5258/**
5259 * Called by IInternalSessionControl::OnUSBDeviceAttach() or locally by
5260 * processRemoteUSBDevices() after IInternalMachineControl::RunUSBDeviceFilters()
5261 * returns TRUE for a given remote USB device.
5262 *
5263 * @return S_OK if the device was attached to the VM.
5264 * @return failure if not attached.
5265 *
5266 * @param aDevice
5267 * The device in question.
5268 * @param aMaskedIfs
5269 * The interfaces to hide from the guest.
5270 *
5271 * @note Locks this object for writing.
5272 */
5273HRESULT Console::i_onUSBDeviceAttach(IUSBDevice *aDevice, IVirtualBoxErrorInfo *aError, ULONG aMaskedIfs,
5274 const Utf8Str &aCaptureFilename)
5275{
5276#ifdef VBOX_WITH_USB
5277 LogFlowThisFunc(("aDevice=%p aError=%p\n", aDevice, aError));
5278
5279 AutoCaller autoCaller(this);
5280 ComAssertComRCRetRC(autoCaller.rc());
5281
5282 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
5283
5284 /* Get the VM pointer (we don't need error info, since it's a callback). */
5285 SafeVMPtrQuiet ptrVM(this);
5286 if (!ptrVM.isOk())
5287 {
5288 /* The VM may be no more operational when this message arrives
5289 * (e.g. it may be Saving or Stopping or just PoweredOff) --
5290 * autoVMCaller.rc() will return a failure in this case. */
5291 LogFlowThisFunc(("Attach request ignored (mMachineState=%d).\n",
5292 mMachineState));
5293 return ptrVM.rc();
5294 }
5295
5296 if (aError != NULL)
5297 {
5298 /* notify callbacks about the error */
5299 alock.release();
5300 i_onUSBDeviceStateChange(aDevice, true /* aAttached */, aError);
5301 return S_OK;
5302 }
5303
5304 /* Don't proceed unless there's at least one USB hub. */
5305 if (!PDMR3UsbHasHub(ptrVM.rawUVM()))
5306 {
5307 LogFlowThisFunc(("Attach request ignored (no USB controller).\n"));
5308 return E_FAIL;
5309 }
5310
5311 alock.release();
5312 HRESULT rc = i_attachUSBDevice(aDevice, aMaskedIfs, aCaptureFilename);
5313 if (FAILED(rc))
5314 {
5315 /* take the current error info */
5316 com::ErrorInfoKeeper eik;
5317 /* the error must be a VirtualBoxErrorInfo instance */
5318 ComPtr<IVirtualBoxErrorInfo> pError = eik.takeError();
5319 Assert(!pError.isNull());
5320 if (!pError.isNull())
5321 {
5322 /* notify callbacks about the error */
5323 i_onUSBDeviceStateChange(aDevice, true /* aAttached */, pError);
5324 }
5325 }
5326
5327 return rc;
5328
5329#else /* !VBOX_WITH_USB */
5330 return E_FAIL;
5331#endif /* !VBOX_WITH_USB */
5332}
5333
5334/**
5335 * Called by IInternalSessionControl::OnUSBDeviceDetach() and locally by
5336 * processRemoteUSBDevices().
5337 *
5338 * @note Locks this object for writing.
5339 */
5340HRESULT Console::i_onUSBDeviceDetach(IN_BSTR aId,
5341 IVirtualBoxErrorInfo *aError)
5342{
5343#ifdef VBOX_WITH_USB
5344 Guid Uuid(aId);
5345 LogFlowThisFunc(("aId={%RTuuid} aError=%p\n", Uuid.raw(), aError));
5346
5347 AutoCaller autoCaller(this);
5348 AssertComRCReturnRC(autoCaller.rc());
5349
5350 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
5351
5352 /* Find the device. */
5353 ComObjPtr<OUSBDevice> pUSBDevice;
5354 USBDeviceList::iterator it = mUSBDevices.begin();
5355 while (it != mUSBDevices.end())
5356 {
5357 LogFlowThisFunc(("it={%RTuuid}\n", (*it)->i_id().raw()));
5358 if ((*it)->i_id() == Uuid)
5359 {
5360 pUSBDevice = *it;
5361 break;
5362 }
5363 ++it;
5364 }
5365
5366
5367 if (pUSBDevice.isNull())
5368 {
5369 LogFlowThisFunc(("USB device not found.\n"));
5370
5371 /* The VM may be no more operational when this message arrives
5372 * (e.g. it may be Saving or Stopping or just PoweredOff). Use
5373 * AutoVMCaller to detect it -- AutoVMCaller::rc() will return a
5374 * failure in this case. */
5375
5376 AutoVMCallerQuiet autoVMCaller(this);
5377 if (FAILED(autoVMCaller.rc()))
5378 {
5379 LogFlowThisFunc(("Detach request ignored (mMachineState=%d).\n",
5380 mMachineState));
5381 return autoVMCaller.rc();
5382 }
5383
5384 /* the device must be in the list otherwise */
5385 AssertFailedReturn(E_FAIL);
5386 }
5387
5388 if (aError != NULL)
5389 {
5390 /* notify callback about an error */
5391 alock.release();
5392 i_onUSBDeviceStateChange(pUSBDevice, false /* aAttached */, aError);
5393 return S_OK;
5394 }
5395
5396 /* Remove the device from the collection, it is re-added below for failures */
5397 mUSBDevices.erase(it);
5398
5399 alock.release();
5400 HRESULT rc = i_detachUSBDevice(pUSBDevice);
5401 if (FAILED(rc))
5402 {
5403 /* Re-add the device to the collection */
5404 alock.acquire();
5405 mUSBDevices.push_back(pUSBDevice);
5406 alock.release();
5407 /* take the current error info */
5408 com::ErrorInfoKeeper eik;
5409 /* the error must be a VirtualBoxErrorInfo instance */
5410 ComPtr<IVirtualBoxErrorInfo> pError = eik.takeError();
5411 Assert(!pError.isNull());
5412 if (!pError.isNull())
5413 {
5414 /* notify callbacks about the error */
5415 i_onUSBDeviceStateChange(pUSBDevice, false /* aAttached */, pError);
5416 }
5417 }
5418
5419 return rc;
5420
5421#else /* !VBOX_WITH_USB */
5422 return E_FAIL;
5423#endif /* !VBOX_WITH_USB */
5424}
5425
5426/**
5427 * Called by IInternalSessionControl::OnBandwidthGroupChange().
5428 *
5429 * @note Locks this object for writing.
5430 */
5431HRESULT Console::i_onBandwidthGroupChange(IBandwidthGroup *aBandwidthGroup)
5432{
5433 LogFlowThisFunc(("\n"));
5434
5435 AutoCaller autoCaller(this);
5436 AssertComRCReturnRC(autoCaller.rc());
5437
5438 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
5439
5440 HRESULT rc = S_OK;
5441
5442 /* don't trigger bandwidth group changes if the VM isn't running */
5443 SafeVMPtrQuiet ptrVM(this);
5444 if (ptrVM.isOk())
5445 {
5446 if ( mMachineState == MachineState_Running
5447 || mMachineState == MachineState_Teleporting
5448 || mMachineState == MachineState_LiveSnapshotting
5449 )
5450 {
5451 /* No need to call in the EMT thread. */
5452 LONG64 cMax;
5453 Bstr strName;
5454 BandwidthGroupType_T enmType;
5455 rc = aBandwidthGroup->COMGETTER(Name)(strName.asOutParam());
5456 if (SUCCEEDED(rc))
5457 rc = aBandwidthGroup->COMGETTER(MaxBytesPerSec)(&cMax);
5458 if (SUCCEEDED(rc))
5459 rc = aBandwidthGroup->COMGETTER(Type)(&enmType);
5460
5461 if (SUCCEEDED(rc))
5462 {
5463 int vrc = VINF_SUCCESS;
5464 if (enmType == BandwidthGroupType_Disk)
5465 vrc = PDMR3AsyncCompletionBwMgrSetMaxForFile(ptrVM.rawUVM(), Utf8Str(strName).c_str(), (uint32_t)cMax);
5466#ifdef VBOX_WITH_NETSHAPER
5467 else if (enmType == BandwidthGroupType_Network)
5468 vrc = PDMR3NsBwGroupSetLimit(ptrVM.rawUVM(), Utf8Str(strName).c_str(), cMax);
5469 else
5470 rc = E_NOTIMPL;
5471#endif /* VBOX_WITH_NETSHAPER */
5472 AssertRC(vrc);
5473 }
5474 }
5475 else
5476 rc = i_setInvalidMachineStateError();
5477 ptrVM.release();
5478 }
5479
5480 /* notify console callbacks on success */
5481 if (SUCCEEDED(rc))
5482 {
5483 alock.release();
5484 fireBandwidthGroupChangedEvent(mEventSource, aBandwidthGroup);
5485 }
5486
5487 LogFlowThisFunc(("Leaving rc=%#x\n", rc));
5488 return rc;
5489}
5490
5491/**
5492 * Called by IInternalSessionControl::OnStorageDeviceChange().
5493 *
5494 * @note Locks this object for writing.
5495 */
5496HRESULT Console::i_onStorageDeviceChange(IMediumAttachment *aMediumAttachment, BOOL aRemove, BOOL aSilent)
5497{
5498 LogFlowThisFunc(("\n"));
5499
5500 AutoCaller autoCaller(this);
5501 AssertComRCReturnRC(autoCaller.rc());
5502
5503 HRESULT rc = S_OK;
5504
5505 /* don't trigger medium changes if the VM isn't running */
5506 SafeVMPtrQuiet ptrVM(this);
5507 if (ptrVM.isOk())
5508 {
5509 if (aRemove)
5510 rc = i_doStorageDeviceDetach(aMediumAttachment, ptrVM.rawUVM(), RT_BOOL(aSilent));
5511 else
5512 rc = i_doStorageDeviceAttach(aMediumAttachment, ptrVM.rawUVM(), RT_BOOL(aSilent));
5513 ptrVM.release();
5514 }
5515
5516 /* notify console callbacks on success */
5517 if (SUCCEEDED(rc))
5518 fireStorageDeviceChangedEvent(mEventSource, aMediumAttachment, aRemove, aSilent);
5519
5520 LogFlowThisFunc(("Leaving rc=%#x\n", rc));
5521 return rc;
5522}
5523
5524HRESULT Console::i_onExtraDataChange(IN_BSTR aMachineId, IN_BSTR aKey, IN_BSTR aVal)
5525{
5526 LogFlowThisFunc(("\n"));
5527
5528 AutoCaller autoCaller(this);
5529 if (FAILED(autoCaller.rc()))
5530 return autoCaller.rc();
5531
5532 if (!aMachineId)
5533 return S_OK;
5534
5535 HRESULT hrc = S_OK;
5536 Bstr idMachine(aMachineId);
5537 Bstr idSelf;
5538 hrc = mMachine->COMGETTER(Id)(idSelf.asOutParam());
5539 if ( FAILED(hrc)
5540 || idMachine != idSelf)
5541 return hrc;
5542
5543 /* don't do anything if the VM isn't running */
5544 SafeVMPtrQuiet ptrVM(this);
5545 if (ptrVM.isOk())
5546 {
5547 Bstr strKey(aKey);
5548 Bstr strVal(aVal);
5549
5550 if (strKey == "VBoxInternal2/TurnResetIntoPowerOff")
5551 {
5552 int vrc = VMR3SetPowerOffInsteadOfReset(ptrVM.rawUVM(), strVal == "1");
5553 AssertRC(vrc);
5554 }
5555
5556 ptrVM.release();
5557 }
5558
5559 /* notify console callbacks on success */
5560 if (SUCCEEDED(hrc))
5561 fireExtraDataChangedEvent(mEventSource, aMachineId, aKey, aVal);
5562
5563 LogFlowThisFunc(("Leaving hrc=%#x\n", hrc));
5564 return hrc;
5565}
5566
5567/**
5568 * @note Temporarily locks this object for writing.
5569 */
5570HRESULT Console::i_getGuestProperty(const Utf8Str &aName, Utf8Str *aValue, LONG64 *aTimestamp, Utf8Str *aFlags)
5571{
5572#ifndef VBOX_WITH_GUEST_PROPS
5573 ReturnComNotImplemented();
5574#else /* VBOX_WITH_GUEST_PROPS */
5575 if (!RT_VALID_PTR(aValue))
5576 return E_POINTER;
5577 if (aTimestamp != NULL && !RT_VALID_PTR(aTimestamp))
5578 return E_POINTER;
5579 if (aFlags != NULL && !RT_VALID_PTR(aFlags))
5580 return E_POINTER;
5581
5582 AutoCaller autoCaller(this);
5583 AssertComRCReturnRC(autoCaller.rc());
5584
5585 /* protect mpUVM (if not NULL) */
5586 SafeVMPtrQuiet ptrVM(this);
5587 if (FAILED(ptrVM.rc()))
5588 return ptrVM.rc();
5589
5590 /* Note: validity of mVMMDev which is bound to uninit() is guaranteed by
5591 * ptrVM, so there is no need to hold a lock of this */
5592
5593 HRESULT rc = E_UNEXPECTED;
5594 using namespace guestProp;
5595
5596 try
5597 {
5598 VBOXHGCMSVCPARM parm[4];
5599 char szBuffer[MAX_VALUE_LEN + MAX_FLAGS_LEN];
5600
5601 parm[0].type = VBOX_HGCM_SVC_PARM_PTR;
5602 parm[0].u.pointer.addr = (void*)aName.c_str();
5603 parm[0].u.pointer.size = (uint32_t)aName.length() + 1; /* The + 1 is the null terminator */
5604
5605 parm[1].type = VBOX_HGCM_SVC_PARM_PTR;
5606 parm[1].u.pointer.addr = szBuffer;
5607 parm[1].u.pointer.size = sizeof(szBuffer);
5608
5609 parm[2].type = VBOX_HGCM_SVC_PARM_64BIT;
5610 parm[2].u.uint64 = 0;
5611
5612 parm[3].type = VBOX_HGCM_SVC_PARM_32BIT;
5613 parm[3].u.uint32 = 0;
5614
5615 int vrc = m_pVMMDev->hgcmHostCall("VBoxGuestPropSvc", GET_PROP_HOST,
5616 4, &parm[0]);
5617 /* The returned string should never be able to be greater than our buffer */
5618 AssertLogRel(vrc != VERR_BUFFER_OVERFLOW);
5619 AssertLogRel(RT_FAILURE(vrc) || parm[2].type == VBOX_HGCM_SVC_PARM_64BIT);
5620 if (RT_SUCCESS(vrc))
5621 {
5622 *aValue = szBuffer;
5623
5624 if (aTimestamp)
5625 *aTimestamp = parm[2].u.uint64;
5626
5627 if (aFlags)
5628 *aFlags = &szBuffer[strlen(szBuffer) + 1];
5629
5630 rc = S_OK;
5631 }
5632 else if (vrc == VERR_NOT_FOUND)
5633 {
5634 *aValue = "";
5635 rc = S_OK;
5636 }
5637 else
5638 rc = setError(VBOX_E_IPRT_ERROR,
5639 tr("The VBoxGuestPropSvc service call failed with the error %Rrc"),
5640 vrc);
5641 }
5642 catch(std::bad_alloc & /*e*/)
5643 {
5644 rc = E_OUTOFMEMORY;
5645 }
5646
5647 return rc;
5648#endif /* VBOX_WITH_GUEST_PROPS */
5649}
5650
5651/**
5652 * @note Temporarily locks this object for writing.
5653 */
5654HRESULT Console::i_setGuestProperty(const Utf8Str &aName, const Utf8Str &aValue, const Utf8Str &aFlags)
5655{
5656#ifndef VBOX_WITH_GUEST_PROPS
5657 ReturnComNotImplemented();
5658#else /* VBOX_WITH_GUEST_PROPS */
5659
5660 AutoCaller autoCaller(this);
5661 AssertComRCReturnRC(autoCaller.rc());
5662
5663 /* protect mpUVM (if not NULL) */
5664 SafeVMPtrQuiet ptrVM(this);
5665 if (FAILED(ptrVM.rc()))
5666 return ptrVM.rc();
5667
5668 /* Note: validity of mVMMDev which is bound to uninit() is guaranteed by
5669 * ptrVM, so there is no need to hold a lock of this */
5670
5671 using namespace guestProp;
5672
5673 VBOXHGCMSVCPARM parm[3];
5674
5675 parm[0].type = VBOX_HGCM_SVC_PARM_PTR;
5676 parm[0].u.pointer.addr = (void*)aName.c_str();
5677 parm[0].u.pointer.size = (uint32_t)aName.length() + 1; /* The + 1 is the null terminator */
5678
5679 parm[1].type = VBOX_HGCM_SVC_PARM_PTR;
5680 parm[1].u.pointer.addr = (void *)aValue.c_str();
5681 parm[1].u.pointer.size = (uint32_t)aValue.length() + 1; /* The + 1 is the null terminator */
5682
5683 int vrc;
5684 if (aFlags.isEmpty())
5685 {
5686 vrc = m_pVMMDev->hgcmHostCall("VBoxGuestPropSvc", SET_PROP_VALUE_HOST,
5687 2, &parm[0]);
5688 }
5689 else
5690 {
5691 parm[2].type = VBOX_HGCM_SVC_PARM_PTR;
5692 parm[2].u.pointer.addr = (void*)aFlags.c_str();
5693 parm[2].u.pointer.size = (uint32_t)aFlags.length() + 1; /* The + 1 is the null terminator */
5694
5695 vrc = m_pVMMDev->hgcmHostCall("VBoxGuestPropSvc", SET_PROP_HOST,
5696 3, &parm[0]);
5697 }
5698
5699 HRESULT hrc = S_OK;
5700 if (RT_FAILURE(vrc))
5701 hrc = setError(VBOX_E_IPRT_ERROR, tr("The VBoxGuestPropSvc service call failed with the error %Rrc"), vrc);
5702 return hrc;
5703#endif /* VBOX_WITH_GUEST_PROPS */
5704}
5705
5706HRESULT Console::i_deleteGuestProperty(const Utf8Str &aName)
5707{
5708#ifndef VBOX_WITH_GUEST_PROPS
5709 ReturnComNotImplemented();
5710#else /* VBOX_WITH_GUEST_PROPS */
5711
5712 AutoCaller autoCaller(this);
5713 AssertComRCReturnRC(autoCaller.rc());
5714
5715 /* protect mpUVM (if not NULL) */
5716 SafeVMPtrQuiet ptrVM(this);
5717 if (FAILED(ptrVM.rc()))
5718 return ptrVM.rc();
5719
5720 /* Note: validity of mVMMDev which is bound to uninit() is guaranteed by
5721 * ptrVM, so there is no need to hold a lock of this */
5722
5723 using namespace guestProp;
5724
5725 VBOXHGCMSVCPARM parm[1];
5726
5727 parm[0].type = VBOX_HGCM_SVC_PARM_PTR;
5728 parm[0].u.pointer.addr = (void*)aName.c_str();
5729 parm[0].u.pointer.size = (uint32_t)aName.length() + 1; /* The + 1 is the null terminator */
5730
5731 int vrc = m_pVMMDev->hgcmHostCall("VBoxGuestPropSvc", DEL_PROP_HOST,
5732 1, &parm[0]);
5733
5734 HRESULT hrc = S_OK;
5735 if (RT_FAILURE(vrc))
5736 hrc = setError(VBOX_E_IPRT_ERROR, tr("The VBoxGuestPropSvc service call failed with the error %Rrc"), vrc);
5737 return hrc;
5738#endif /* VBOX_WITH_GUEST_PROPS */
5739}
5740
5741/**
5742 * @note Temporarily locks this object for writing.
5743 */
5744HRESULT Console::i_enumerateGuestProperties(const Utf8Str &aPatterns,
5745 std::vector<Utf8Str> &aNames,
5746 std::vector<Utf8Str> &aValues,
5747 std::vector<LONG64> &aTimestamps,
5748 std::vector<Utf8Str> &aFlags)
5749{
5750#ifndef VBOX_WITH_GUEST_PROPS
5751 ReturnComNotImplemented();
5752#else /* VBOX_WITH_GUEST_PROPS */
5753
5754 AutoCaller autoCaller(this);
5755 AssertComRCReturnRC(autoCaller.rc());
5756
5757 /* protect mpUVM (if not NULL) */
5758 AutoVMCallerWeak autoVMCaller(this);
5759 if (FAILED(autoVMCaller.rc()))
5760 return autoVMCaller.rc();
5761
5762 /* Note: validity of mVMMDev which is bound to uninit() is guaranteed by
5763 * autoVMCaller, so there is no need to hold a lock of this */
5764
5765 return i_doEnumerateGuestProperties(aPatterns, aNames, aValues, aTimestamps, aFlags);
5766#endif /* VBOX_WITH_GUEST_PROPS */
5767}
5768
5769
5770/*
5771 * Internal: helper function for connecting progress reporting
5772 */
5773static int onlineMergeMediumProgress(void *pvUser, unsigned uPercentage)
5774{
5775 HRESULT rc = S_OK;
5776 IProgress *pProgress = static_cast<IProgress *>(pvUser);
5777 if (pProgress)
5778 rc = pProgress->SetCurrentOperationProgress(uPercentage);
5779 return SUCCEEDED(rc) ? VINF_SUCCESS : VERR_GENERAL_FAILURE;
5780}
5781
5782/**
5783 * @note Temporarily locks this object for writing. bird: And/or reading?
5784 */
5785HRESULT Console::i_onlineMergeMedium(IMediumAttachment *aMediumAttachment,
5786 ULONG aSourceIdx, ULONG aTargetIdx,
5787 IProgress *aProgress)
5788{
5789 AutoCaller autoCaller(this);
5790 AssertComRCReturnRC(autoCaller.rc());
5791
5792 HRESULT rc = S_OK;
5793 int vrc = VINF_SUCCESS;
5794
5795 /* Get the VM - must be done before the read-locking. */
5796 SafeVMPtr ptrVM(this);
5797 if (!ptrVM.isOk())
5798 return ptrVM.rc();
5799
5800 /* We will need to release the lock before doing the actual merge */
5801 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
5802
5803 /* paranoia - we don't want merges to happen while teleporting etc. */
5804 switch (mMachineState)
5805 {
5806 case MachineState_DeletingSnapshotOnline:
5807 case MachineState_DeletingSnapshotPaused:
5808 break;
5809
5810 default:
5811 return i_setInvalidMachineStateError();
5812 }
5813
5814 /** @todo AssertComRC -> AssertComRCReturn! Could potentially end up
5815 * using uninitialized variables here. */
5816 BOOL fBuiltinIOCache;
5817 rc = mMachine->COMGETTER(IOCacheEnabled)(&fBuiltinIOCache);
5818 AssertComRC(rc);
5819 SafeIfaceArray<IStorageController> ctrls;
5820 rc = mMachine->COMGETTER(StorageControllers)(ComSafeArrayAsOutParam(ctrls));
5821 AssertComRC(rc);
5822 LONG lDev;
5823 rc = aMediumAttachment->COMGETTER(Device)(&lDev);
5824 AssertComRC(rc);
5825 LONG lPort;
5826 rc = aMediumAttachment->COMGETTER(Port)(&lPort);
5827 AssertComRC(rc);
5828 IMedium *pMedium;
5829 rc = aMediumAttachment->COMGETTER(Medium)(&pMedium);
5830 AssertComRC(rc);
5831 Bstr mediumLocation;
5832 if (pMedium)
5833 {
5834 rc = pMedium->COMGETTER(Location)(mediumLocation.asOutParam());
5835 AssertComRC(rc);
5836 }
5837
5838 Bstr attCtrlName;
5839 rc = aMediumAttachment->COMGETTER(Controller)(attCtrlName.asOutParam());
5840 AssertComRC(rc);
5841 ComPtr<IStorageController> pStorageController;
5842 for (size_t i = 0; i < ctrls.size(); ++i)
5843 {
5844 Bstr ctrlName;
5845 rc = ctrls[i]->COMGETTER(Name)(ctrlName.asOutParam());
5846 AssertComRC(rc);
5847 if (attCtrlName == ctrlName)
5848 {
5849 pStorageController = ctrls[i];
5850 break;
5851 }
5852 }
5853 if (pStorageController.isNull())
5854 return setError(E_FAIL,
5855 tr("Could not find storage controller '%ls'"),
5856 attCtrlName.raw());
5857
5858 StorageControllerType_T enmCtrlType;
5859 rc = pStorageController->COMGETTER(ControllerType)(&enmCtrlType);
5860 AssertComRC(rc);
5861 const char *pcszDevice = i_convertControllerTypeToDev(enmCtrlType);
5862
5863 StorageBus_T enmBus;
5864 rc = pStorageController->COMGETTER(Bus)(&enmBus);
5865 AssertComRC(rc);
5866 ULONG uInstance;
5867 rc = pStorageController->COMGETTER(Instance)(&uInstance);
5868 AssertComRC(rc);
5869 BOOL fUseHostIOCache;
5870 rc = pStorageController->COMGETTER(UseHostIOCache)(&fUseHostIOCache);
5871 AssertComRC(rc);
5872
5873 unsigned uLUN;
5874 rc = Console::i_convertBusPortDeviceToLun(enmBus, lPort, lDev, uLUN);
5875 AssertComRCReturnRC(rc);
5876
5877 alock.release();
5878
5879 /* Pause the VM, as it might have pending IO on this drive */
5880 VMSTATE enmVMState = VMR3GetStateU(ptrVM.rawUVM());
5881 if (mMachineState == MachineState_DeletingSnapshotOnline)
5882 {
5883 LogFlowFunc(("Suspending the VM...\n"));
5884 /* disable the callback to prevent Console-level state change */
5885 mVMStateChangeCallbackDisabled = true;
5886 int vrc2 = VMR3Suspend(ptrVM.rawUVM(), VMSUSPENDREASON_RECONFIG);
5887 mVMStateChangeCallbackDisabled = false;
5888 AssertRCReturn(vrc2, E_FAIL);
5889 }
5890
5891 vrc = VMR3ReqCallWaitU(ptrVM.rawUVM(), VMCPUID_ANY,
5892 (PFNRT)i_reconfigureMediumAttachment, 13,
5893 this, ptrVM.rawUVM(), pcszDevice, uInstance, enmBus, fUseHostIOCache,
5894 fBuiltinIOCache, true /* fSetupMerge */, aSourceIdx, aTargetIdx,
5895 aMediumAttachment, mMachineState, &rc);
5896 /* error handling is after resuming the VM */
5897
5898 if (mMachineState == MachineState_DeletingSnapshotOnline)
5899 {
5900 LogFlowFunc(("Resuming the VM...\n"));
5901 /* disable the callback to prevent Console-level state change */
5902 mVMStateChangeCallbackDisabled = true;
5903 int vrc2 = VMR3Resume(ptrVM.rawUVM(), VMRESUMEREASON_RECONFIG);
5904 mVMStateChangeCallbackDisabled = false;
5905 if (RT_FAILURE(vrc2))
5906 {
5907 /* too bad, we failed. try to sync the console state with the VMM state */
5908 AssertLogRelRC(vrc2);
5909 i_vmstateChangeCallback(ptrVM.rawUVM(), VMSTATE_SUSPENDED, enmVMState, this);
5910 }
5911 }
5912
5913 if (RT_FAILURE(vrc))
5914 return setError(E_FAIL, tr("%Rrc"), vrc);
5915 if (FAILED(rc))
5916 return rc;
5917
5918 PPDMIBASE pIBase = NULL;
5919 PPDMIMEDIA pIMedium = NULL;
5920 vrc = PDMR3QueryDriverOnLun(ptrVM.rawUVM(), pcszDevice, uInstance, uLUN, "VD", &pIBase);
5921 if (RT_SUCCESS(vrc))
5922 {
5923 if (pIBase)
5924 {
5925 pIMedium = (PPDMIMEDIA)pIBase->pfnQueryInterface(pIBase, PDMIMEDIA_IID);
5926 if (!pIMedium)
5927 return setError(E_FAIL, tr("could not query medium interface of controller"));
5928 }
5929 else
5930 return setError(E_FAIL, tr("could not query base interface of controller"));
5931 }
5932
5933 /* Finally trigger the merge. */
5934 vrc = pIMedium->pfnMerge(pIMedium, onlineMergeMediumProgress, aProgress);
5935 if (RT_FAILURE(vrc))
5936 return setError(E_FAIL, tr("Failed to perform an online medium merge (%Rrc)"), vrc);
5937
5938 /* Pause the VM, as it might have pending IO on this drive */
5939 enmVMState = VMR3GetStateU(ptrVM.rawUVM());
5940 if (mMachineState == MachineState_DeletingSnapshotOnline)
5941 {
5942 LogFlowFunc(("Suspending the VM...\n"));
5943 /* disable the callback to prevent Console-level state change */
5944 mVMStateChangeCallbackDisabled = true;
5945 int vrc2 = VMR3Suspend(ptrVM.rawUVM(), VMSUSPENDREASON_RECONFIG);
5946 mVMStateChangeCallbackDisabled = false;
5947 AssertRCReturn(vrc2, E_FAIL);
5948 }
5949
5950 /* Update medium chain and state now, so that the VM can continue. */
5951 rc = mControl->FinishOnlineMergeMedium();
5952
5953 vrc = VMR3ReqCallWaitU(ptrVM.rawUVM(), VMCPUID_ANY,
5954 (PFNRT)i_reconfigureMediumAttachment, 13,
5955 this, ptrVM.rawUVM(), pcszDevice, uInstance, enmBus, fUseHostIOCache,
5956 fBuiltinIOCache, false /* fSetupMerge */, 0 /* uMergeSource */,
5957 0 /* uMergeTarget */, aMediumAttachment, mMachineState, &rc);
5958 /* error handling is after resuming the VM */
5959
5960 if (mMachineState == MachineState_DeletingSnapshotOnline)
5961 {
5962 LogFlowFunc(("Resuming the VM...\n"));
5963 /* disable the callback to prevent Console-level state change */
5964 mVMStateChangeCallbackDisabled = true;
5965 int vrc2 = VMR3Resume(ptrVM.rawUVM(), VMRESUMEREASON_RECONFIG);
5966 mVMStateChangeCallbackDisabled = false;
5967 AssertRC(vrc2);
5968 if (RT_FAILURE(vrc2))
5969 {
5970 /* too bad, we failed. try to sync the console state with the VMM state */
5971 i_vmstateChangeCallback(ptrVM.rawUVM(), VMSTATE_SUSPENDED, enmVMState, this);
5972 }
5973 }
5974
5975 if (RT_FAILURE(vrc))
5976 return setError(E_FAIL, tr("%Rrc"), vrc);
5977 if (FAILED(rc))
5978 return rc;
5979
5980 return rc;
5981}
5982
5983
5984/**
5985 * Load an HGCM service.
5986 *
5987 * Main purpose of this method is to allow extension packs to load HGCM
5988 * service modules, which they can't, because the HGCM functionality lives
5989 * in module VBoxC (and ConsoleImpl.cpp is part of it and thus can call it).
5990 * Extension modules must not link directly against VBoxC, (XP)COM is
5991 * handling this.
5992 */
5993int Console::i_hgcmLoadService(const char *pszServiceLibrary, const char *pszServiceName)
5994{
5995 /* Everyone seems to delegate all HGCM calls to VMMDev, so stick to this
5996 * convention. Adds one level of indirection for no obvious reason. */
5997 AssertPtrReturn(m_pVMMDev, VERR_INVALID_STATE);
5998 return m_pVMMDev->hgcmLoadService(pszServiceLibrary, pszServiceName);
5999}
6000
6001/**
6002 * Merely passes the call to Guest::enableVMMStatistics().
6003 */
6004void Console::i_enableVMMStatistics(BOOL aEnable)
6005{
6006 if (mGuest)
6007 mGuest->i_enableVMMStatistics(aEnable);
6008}
6009
6010/**
6011 * Worker for Console::Pause and internal entry point for pausing a VM for
6012 * a specific reason.
6013 */
6014HRESULT Console::i_pause(Reason_T aReason)
6015{
6016 LogFlowThisFuncEnter();
6017
6018 AutoCaller autoCaller(this);
6019 if (FAILED(autoCaller.rc())) return autoCaller.rc();
6020
6021 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
6022
6023 switch (mMachineState)
6024 {
6025 case MachineState_Running:
6026 case MachineState_Teleporting:
6027 case MachineState_LiveSnapshotting:
6028 break;
6029
6030 case MachineState_Paused:
6031 case MachineState_TeleportingPausedVM:
6032 case MachineState_Saving:
6033 return setError(VBOX_E_INVALID_VM_STATE, tr("Already paused"));
6034
6035 default:
6036 return i_setInvalidMachineStateError();
6037 }
6038
6039 /* get the VM handle. */
6040 SafeVMPtr ptrVM(this);
6041 if (!ptrVM.isOk())
6042 return ptrVM.rc();
6043
6044 /* release the lock before a VMR3* call (EMT will call us back)! */
6045 alock.release();
6046
6047 LogFlowThisFunc(("Sending PAUSE request...\n"));
6048 if (aReason != Reason_Unspecified)
6049 LogRel(("Pausing VM execution, reason \"%s\"\n", Global::stringifyReason(aReason)));
6050
6051 /** @todo r=klaus make use of aReason */
6052 VMSUSPENDREASON enmReason = VMSUSPENDREASON_USER;
6053 if (aReason == Reason_HostSuspend)
6054 enmReason = VMSUSPENDREASON_HOST_SUSPEND;
6055 else if (aReason == Reason_HostBatteryLow)
6056 enmReason = VMSUSPENDREASON_HOST_BATTERY_LOW;
6057 int vrc = VMR3Suspend(ptrVM.rawUVM(), enmReason);
6058
6059 HRESULT hrc = S_OK;
6060 if (RT_FAILURE(vrc))
6061 hrc = setError(VBOX_E_VM_ERROR, tr("Could not suspend the machine execution (%Rrc)"), vrc);
6062 else
6063 {
6064 /* Unconfigure disk encryption from all attachments. */
6065 i_clearDiskEncryptionKeysOnAllAttachments();
6066
6067 /* Clear any keys we have stored. */
6068 for (SecretKeyMap::iterator it = m_mapSecretKeys.begin();
6069 it != m_mapSecretKeys.end();
6070 it++)
6071 delete it->second;
6072 m_mapSecretKeys.clear();
6073 }
6074
6075 LogFlowThisFunc(("hrc=%Rhrc\n", hrc));
6076 LogFlowThisFuncLeave();
6077 return hrc;
6078}
6079
6080/**
6081 * Worker for Console::Resume and internal entry point for resuming a VM for
6082 * a specific reason.
6083 */
6084HRESULT Console::i_resume(Reason_T aReason)
6085{
6086 LogFlowThisFuncEnter();
6087
6088 AutoCaller autoCaller(this);
6089 if (FAILED(autoCaller.rc())) return autoCaller.rc();
6090
6091 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
6092
6093 if (mMachineState != MachineState_Paused)
6094 return setError(VBOX_E_INVALID_VM_STATE,
6095 tr("Cannot resume the machine as it is not paused (machine state: %s)"),
6096 Global::stringifyMachineState(mMachineState));
6097
6098 /* get the VM handle. */
6099 SafeVMPtr ptrVM(this);
6100 if (!ptrVM.isOk())
6101 return ptrVM.rc();
6102
6103 /* release the lock before a VMR3* call (EMT will call us back)! */
6104 alock.release();
6105
6106 LogFlowThisFunc(("Sending RESUME request...\n"));
6107 if (aReason != Reason_Unspecified)
6108 LogRel(("Resuming VM execution, reason \"%s\"\n", Global::stringifyReason(aReason)));
6109
6110 int vrc;
6111 if (VMR3GetStateU(ptrVM.rawUVM()) == VMSTATE_CREATED)
6112 {
6113#ifdef VBOX_WITH_EXTPACK
6114 vrc = mptrExtPackManager->i_callAllVmPowerOnHooks(this, VMR3GetVM(ptrVM.rawUVM()));
6115#else
6116 vrc = VINF_SUCCESS;
6117#endif
6118 if (RT_SUCCESS(vrc))
6119 vrc = VMR3PowerOn(ptrVM.rawUVM()); /* (PowerUpPaused) */
6120 }
6121 else
6122 {
6123 VMRESUMEREASON enmReason = VMRESUMEREASON_USER;
6124 if (aReason == Reason_HostResume)
6125 enmReason = VMRESUMEREASON_HOST_RESUME;
6126 vrc = VMR3Resume(ptrVM.rawUVM(), enmReason);
6127 }
6128
6129 HRESULT rc = RT_SUCCESS(vrc) ? S_OK :
6130 setError(VBOX_E_VM_ERROR,
6131 tr("Could not resume the machine execution (%Rrc)"),
6132 vrc);
6133
6134 LogFlowThisFunc(("rc=%Rhrc\n", rc));
6135 LogFlowThisFuncLeave();
6136 return rc;
6137}
6138
6139/**
6140 * Worker for Console::SaveState and internal entry point for saving state of
6141 * a VM for a specific reason.
6142 */
6143HRESULT Console::i_saveState(Reason_T aReason, IProgress **aProgress)
6144{
6145 LogFlowThisFuncEnter();
6146
6147 CheckComArgOutPointerValid(aProgress);
6148
6149 AutoCaller autoCaller(this);
6150 if (FAILED(autoCaller.rc())) return autoCaller.rc();
6151
6152 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
6153
6154 LogFlowThisFunc(("mMachineState=%d\n", mMachineState));
6155 if ( mMachineState != MachineState_Running
6156 && mMachineState != MachineState_Paused)
6157 {
6158 return setError(VBOX_E_INVALID_VM_STATE,
6159 tr("Cannot save the execution state as the machine is not running or paused (machine state: %s)"),
6160 Global::stringifyMachineState(mMachineState));
6161 }
6162
6163 Bstr strDisableSaveState;
6164 mMachine->GetExtraData(Bstr("VBoxInternal2/DisableSaveState").raw(), strDisableSaveState.asOutParam());
6165 if (strDisableSaveState == "1")
6166 return setError(VBOX_E_VM_ERROR,
6167 tr("Saving the execution state is disabled for this VM"));
6168
6169 if (aReason != Reason_Unspecified)
6170 LogRel(("Saving state of VM, reason \"%s\"\n", Global::stringifyReason(aReason)));
6171
6172 /* memorize the current machine state */
6173 MachineState_T lastMachineState = mMachineState;
6174
6175 if (mMachineState == MachineState_Running)
6176 {
6177 /* get the VM handle. */
6178 SafeVMPtr ptrVM(this);
6179 if (!ptrVM.isOk())
6180 return ptrVM.rc();
6181
6182 /* release the lock before a VMR3* call (EMT will call us back)! */
6183 alock.release();
6184 VMSUSPENDREASON enmReason = VMSUSPENDREASON_USER;
6185 if (aReason == Reason_HostSuspend)
6186 enmReason = VMSUSPENDREASON_HOST_SUSPEND;
6187 else if (aReason == Reason_HostBatteryLow)
6188 enmReason = VMSUSPENDREASON_HOST_BATTERY_LOW;
6189 int vrc = VMR3Suspend(ptrVM.rawUVM(), enmReason);
6190 alock.acquire();
6191
6192 HRESULT hrc = S_OK;
6193 if (RT_FAILURE(vrc))
6194 hrc = setError(VBOX_E_VM_ERROR, tr("Could not suspend the machine execution (%Rrc)"), vrc);
6195 if (FAILED(hrc))
6196 return hrc;
6197 }
6198
6199 HRESULT rc = S_OK;
6200 bool fBeganSavingState = false;
6201 bool fTaskCreationFailed = false;
6202
6203 do
6204 {
6205 ComPtr<IProgress> pProgress;
6206 Bstr stateFilePath;
6207
6208 /*
6209 * request a saved state file path from the server
6210 * (this will set the machine state to Saving on the server to block
6211 * others from accessing this machine)
6212 */
6213 rc = mControl->BeginSavingState(pProgress.asOutParam(),
6214 stateFilePath.asOutParam());
6215 if (FAILED(rc))
6216 break;
6217
6218 fBeganSavingState = true;
6219
6220 /* sync the state with the server */
6221 i_setMachineStateLocally(MachineState_Saving);
6222
6223 /* ensure the directory for the saved state file exists */
6224 {
6225 Utf8Str dir = stateFilePath;
6226 dir.stripFilename();
6227 if (!RTDirExists(dir.c_str()))
6228 {
6229 int vrc = RTDirCreateFullPath(dir.c_str(), 0700);
6230 if (RT_FAILURE(vrc))
6231 {
6232 rc = setError(VBOX_E_FILE_ERROR,
6233 tr("Could not create a directory '%s' to save the state to (%Rrc)"),
6234 dir.c_str(), vrc);
6235 break;
6236 }
6237 }
6238 }
6239
6240 /* Create a task object early to ensure mpUVM protection is successful. */
6241 std::auto_ptr<VMSaveTask> task(new VMSaveTask(this, pProgress,
6242 stateFilePath,
6243 lastMachineState,
6244 aReason));
6245 rc = task->rc();
6246 /*
6247 * If we fail here it means a PowerDown() call happened on another
6248 * thread while we were doing Pause() (which releases the Console lock).
6249 * We assign PowerDown() a higher precedence than SaveState(),
6250 * therefore just return the error to the caller.
6251 */
6252 if (FAILED(rc))
6253 {
6254 fTaskCreationFailed = true;
6255 break;
6256 }
6257
6258 /* create a thread to wait until the VM state is saved */
6259 int vrc = RTThreadCreate(NULL, Console::i_saveStateThread, (void *)task.get(),
6260 0, RTTHREADTYPE_MAIN_WORKER, 0, "VMSave");
6261 if (RT_FAILURE(vrc))
6262 {
6263 rc = setError(E_FAIL, "Could not create VMSave thread (%Rrc)", vrc);
6264 break;
6265 }
6266
6267 /* task is now owned by saveStateThread(), so release it */
6268 task.release();
6269
6270 /* return the progress to the caller */
6271 pProgress.queryInterfaceTo(aProgress);
6272 } while (0);
6273
6274 if (FAILED(rc) && !fTaskCreationFailed)
6275 {
6276 /* preserve existing error info */
6277 ErrorInfoKeeper eik;
6278
6279 if (fBeganSavingState)
6280 {
6281 /*
6282 * cancel the requested save state procedure.
6283 * This will reset the machine state to the state it had right
6284 * before calling mControl->BeginSavingState().
6285 */
6286 mControl->EndSavingState(eik.getResultCode(), eik.getText().raw());
6287 }
6288
6289 if (lastMachineState == MachineState_Running)
6290 {
6291 /* restore the paused state if appropriate */
6292 i_setMachineStateLocally(MachineState_Paused);
6293 /* restore the running state if appropriate */
6294 SafeVMPtr ptrVM(this);
6295 if (ptrVM.isOk())
6296 {
6297 alock.release();
6298 VMR3Resume(ptrVM.rawUVM(), VMRESUMEREASON_STATE_RESTORED);
6299 alock.acquire();
6300 }
6301 }
6302 else
6303 i_setMachineStateLocally(lastMachineState);
6304 }
6305
6306 LogFlowThisFunc(("rc=%Rhrc\n", rc));
6307 LogFlowThisFuncLeave();
6308 return rc;
6309}
6310
6311/**
6312 * Gets called by Session::UpdateMachineState()
6313 * (IInternalSessionControl::updateMachineState()).
6314 *
6315 * Must be called only in certain cases (see the implementation).
6316 *
6317 * @note Locks this object for writing.
6318 */
6319HRESULT Console::i_updateMachineState(MachineState_T aMachineState)
6320{
6321 AutoCaller autoCaller(this);
6322 AssertComRCReturnRC(autoCaller.rc());
6323
6324 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
6325
6326 AssertReturn( mMachineState == MachineState_Saving
6327 || mMachineState == MachineState_LiveSnapshotting
6328 || mMachineState == MachineState_RestoringSnapshot
6329 || mMachineState == MachineState_DeletingSnapshot
6330 || mMachineState == MachineState_DeletingSnapshotOnline
6331 || mMachineState == MachineState_DeletingSnapshotPaused
6332 , E_FAIL);
6333
6334 return i_setMachineStateLocally(aMachineState);
6335}
6336
6337void Console::i_onMousePointerShapeChange(bool fVisible, bool fAlpha,
6338 uint32_t xHot, uint32_t yHot,
6339 uint32_t width, uint32_t height,
6340 const uint8_t *pu8Shape,
6341 uint32_t cbShape)
6342{
6343#if 0
6344 LogFlowThisFuncEnter();
6345 LogFlowThisFunc(("fVisible=%d, fAlpha=%d, xHot = %d, yHot = %d, width=%d, height=%d, shape=%p\n",
6346 fVisible, fAlpha, xHot, yHot, width, height, pShape));
6347#endif
6348
6349 AutoCaller autoCaller(this);
6350 AssertComRCReturnVoid(autoCaller.rc());
6351
6352 if (!mMouse.isNull())
6353 mMouse->updateMousePointerShape(fVisible, fAlpha, xHot, yHot, width, height,
6354 pu8Shape, cbShape);
6355
6356 com::SafeArray<BYTE> shape(cbShape);
6357 if (pu8Shape)
6358 memcpy(shape.raw(), pu8Shape, cbShape);
6359 fireMousePointerShapeChangedEvent(mEventSource, fVisible, fAlpha, xHot, yHot, width, height, ComSafeArrayAsInParam(shape));
6360
6361#if 0
6362 LogFlowThisFuncLeave();
6363#endif
6364}
6365
6366void Console::i_onMouseCapabilityChange(BOOL supportsAbsolute, BOOL supportsRelative,
6367 BOOL supportsMT, BOOL needsHostCursor)
6368{
6369 LogFlowThisFunc(("supportsAbsolute=%d supportsRelative=%d needsHostCursor=%d\n",
6370 supportsAbsolute, supportsRelative, needsHostCursor));
6371
6372 AutoCaller autoCaller(this);
6373 AssertComRCReturnVoid(autoCaller.rc());
6374
6375 fireMouseCapabilityChangedEvent(mEventSource, supportsAbsolute, supportsRelative, supportsMT, needsHostCursor);
6376}
6377
6378void Console::i_onStateChange(MachineState_T machineState)
6379{
6380 AutoCaller autoCaller(this);
6381 AssertComRCReturnVoid(autoCaller.rc());
6382 fireStateChangedEvent(mEventSource, machineState);
6383}
6384
6385void Console::i_onAdditionsStateChange()
6386{
6387 AutoCaller autoCaller(this);
6388 AssertComRCReturnVoid(autoCaller.rc());
6389
6390 fireAdditionsStateChangedEvent(mEventSource);
6391}
6392
6393/**
6394 * @remarks This notification only is for reporting an incompatible
6395 * Guest Additions interface, *not* the Guest Additions version!
6396 *
6397 * The user will be notified inside the guest if new Guest
6398 * Additions are available (via VBoxTray/VBoxClient).
6399 */
6400void Console::i_onAdditionsOutdated()
6401{
6402 AutoCaller autoCaller(this);
6403 AssertComRCReturnVoid(autoCaller.rc());
6404
6405 /** @todo implement this */
6406}
6407
6408void Console::i_onKeyboardLedsChange(bool fNumLock, bool fCapsLock, bool fScrollLock)
6409{
6410 AutoCaller autoCaller(this);
6411 AssertComRCReturnVoid(autoCaller.rc());
6412
6413 fireKeyboardLedsChangedEvent(mEventSource, fNumLock, fCapsLock, fScrollLock);
6414}
6415
6416void Console::i_onUSBDeviceStateChange(IUSBDevice *aDevice, bool aAttached,
6417 IVirtualBoxErrorInfo *aError)
6418{
6419 AutoCaller autoCaller(this);
6420 AssertComRCReturnVoid(autoCaller.rc());
6421
6422 fireUSBDeviceStateChangedEvent(mEventSource, aDevice, aAttached, aError);
6423}
6424
6425void Console::i_onRuntimeError(BOOL aFatal, IN_BSTR aErrorID, IN_BSTR aMessage)
6426{
6427 AutoCaller autoCaller(this);
6428 AssertComRCReturnVoid(autoCaller.rc());
6429
6430 fireRuntimeErrorEvent(mEventSource, aFatal, aErrorID, aMessage);
6431}
6432
6433HRESULT Console::i_onShowWindow(BOOL aCheck, BOOL *aCanShow, LONG64 *aWinId)
6434{
6435 AssertReturn(aCanShow, E_POINTER);
6436 AssertReturn(aWinId, E_POINTER);
6437
6438 *aCanShow = FALSE;
6439 *aWinId = 0;
6440
6441 AutoCaller autoCaller(this);
6442 AssertComRCReturnRC(autoCaller.rc());
6443
6444 VBoxEventDesc evDesc;
6445 if (aCheck)
6446 {
6447 evDesc.init(mEventSource, VBoxEventType_OnCanShowWindow);
6448 BOOL fDelivered = evDesc.fire(5000); /* Wait up to 5 secs for delivery */
6449 //Assert(fDelivered);
6450 if (fDelivered)
6451 {
6452 ComPtr<IEvent> pEvent;
6453 evDesc.getEvent(pEvent.asOutParam());
6454 // bit clumsy
6455 ComPtr<ICanShowWindowEvent> pCanShowEvent = pEvent;
6456 if (pCanShowEvent)
6457 {
6458 BOOL fVetoed = FALSE;
6459 pCanShowEvent->IsVetoed(&fVetoed);
6460 *aCanShow = !fVetoed;
6461 }
6462 else
6463 {
6464 AssertFailed();
6465 *aCanShow = TRUE;
6466 }
6467 }
6468 else
6469 *aCanShow = TRUE;
6470 }
6471 else
6472 {
6473 evDesc.init(mEventSource, VBoxEventType_OnShowWindow, INT64_C(0));
6474 BOOL fDelivered = evDesc.fire(5000); /* Wait up to 5 secs for delivery */
6475 //Assert(fDelivered);
6476 if (fDelivered)
6477 {
6478 ComPtr<IEvent> pEvent;
6479 evDesc.getEvent(pEvent.asOutParam());
6480 ComPtr<IShowWindowEvent> pShowEvent = pEvent;
6481 if (pShowEvent)
6482 {
6483 LONG64 iEvWinId = 0;
6484 pShowEvent->COMGETTER(WinId)(&iEvWinId);
6485 if (iEvWinId != 0 && *aWinId == 0)
6486 *aWinId = iEvWinId;
6487 }
6488 else
6489 AssertFailed();
6490 }
6491 }
6492
6493 return S_OK;
6494}
6495
6496// private methods
6497////////////////////////////////////////////////////////////////////////////////
6498
6499/**
6500 * Increases the usage counter of the mpUVM pointer.
6501 *
6502 * Guarantees that VMR3Destroy() will not be called on it at least until
6503 * releaseVMCaller() is called.
6504 *
6505 * If this method returns a failure, the caller is not allowed to use mpUVM and
6506 * may return the failed result code to the upper level. This method sets the
6507 * extended error info on failure if \a aQuiet is false.
6508 *
6509 * Setting \a aQuiet to true is useful for methods that don't want to return
6510 * the failed result code to the caller when this method fails (e.g. need to
6511 * silently check for the mpUVM availability).
6512 *
6513 * When mpUVM is NULL but \a aAllowNullVM is true, a corresponding error will be
6514 * returned instead of asserting. Having it false is intended as a sanity check
6515 * for methods that have checked mMachineState and expect mpUVM *NOT* to be
6516 * NULL.
6517 *
6518 * @param aQuiet true to suppress setting error info
6519 * @param aAllowNullVM true to accept mpUVM being NULL and return a failure
6520 * (otherwise this method will assert if mpUVM is NULL)
6521 *
6522 * @note Locks this object for writing.
6523 */
6524HRESULT Console::i_addVMCaller(bool aQuiet /* = false */,
6525 bool aAllowNullVM /* = false */)
6526{
6527 AutoCaller autoCaller(this);
6528 /** @todo Fix race during console/VM reference destruction, refer @bugref{6318}
6529 * comment 25. */
6530 if (FAILED(autoCaller.rc()))
6531 return autoCaller.rc();
6532
6533 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
6534
6535 if (mVMDestroying)
6536 {
6537 /* powerDown() is waiting for all callers to finish */
6538 return aQuiet ? E_ACCESSDENIED : setError(E_ACCESSDENIED,
6539 tr("The virtual machine is being powered down"));
6540 }
6541
6542 if (mpUVM == NULL)
6543 {
6544 Assert(aAllowNullVM == true);
6545
6546 /* The machine is not powered up */
6547 return aQuiet ? E_ACCESSDENIED : setError(E_ACCESSDENIED,
6548 tr("The virtual machine is not powered up"));
6549 }
6550
6551 ++mVMCallers;
6552
6553 return S_OK;
6554}
6555
6556/**
6557 * Decreases the usage counter of the mpUVM pointer.
6558 *
6559 * Must always complete the addVMCaller() call after the mpUVM pointer is no
6560 * more necessary.
6561 *
6562 * @note Locks this object for writing.
6563 */
6564void Console::i_releaseVMCaller()
6565{
6566 AutoCaller autoCaller(this);
6567 AssertComRCReturnVoid(autoCaller.rc());
6568
6569 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
6570
6571 AssertReturnVoid(mpUVM != NULL);
6572
6573 Assert(mVMCallers > 0);
6574 --mVMCallers;
6575
6576 if (mVMCallers == 0 && mVMDestroying)
6577 {
6578 /* inform powerDown() there are no more callers */
6579 RTSemEventSignal(mVMZeroCallersSem);
6580 }
6581}
6582
6583
6584HRESULT Console::i_safeVMPtrRetainer(PUVM *a_ppUVM, bool a_Quiet)
6585{
6586 *a_ppUVM = NULL;
6587
6588 AutoCaller autoCaller(this);
6589 AssertComRCReturnRC(autoCaller.rc());
6590 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
6591
6592 /*
6593 * Repeat the checks done by addVMCaller.
6594 */
6595 if (mVMDestroying) /* powerDown() is waiting for all callers to finish */
6596 return a_Quiet
6597 ? E_ACCESSDENIED
6598 : setError(E_ACCESSDENIED, tr("The virtual machine is being powered down"));
6599 PUVM pUVM = mpUVM;
6600 if (!pUVM)
6601 return a_Quiet
6602 ? E_ACCESSDENIED
6603 : setError(E_ACCESSDENIED, tr("The virtual machine is powered off"));
6604
6605 /*
6606 * Retain a reference to the user mode VM handle and get the global handle.
6607 */
6608 uint32_t cRefs = VMR3RetainUVM(pUVM);
6609 if (cRefs == UINT32_MAX)
6610 return a_Quiet
6611 ? E_ACCESSDENIED
6612 : setError(E_ACCESSDENIED, tr("The virtual machine is powered off"));
6613
6614 /* done */
6615 *a_ppUVM = pUVM;
6616 return S_OK;
6617}
6618
6619void Console::i_safeVMPtrReleaser(PUVM *a_ppUVM)
6620{
6621 if (*a_ppUVM)
6622 VMR3ReleaseUVM(*a_ppUVM);
6623 *a_ppUVM = NULL;
6624}
6625
6626
6627/**
6628 * Initialize the release logging facility. In case something
6629 * goes wrong, there will be no release logging. Maybe in the future
6630 * we can add some logic to use different file names in this case.
6631 * Note that the logic must be in sync with Machine::DeleteSettings().
6632 */
6633HRESULT Console::i_consoleInitReleaseLog(const ComPtr<IMachine> aMachine)
6634{
6635 HRESULT hrc = S_OK;
6636
6637 Bstr logFolder;
6638 hrc = aMachine->COMGETTER(LogFolder)(logFolder.asOutParam());
6639 if (FAILED(hrc))
6640 return hrc;
6641
6642 Utf8Str logDir = logFolder;
6643
6644 /* make sure the Logs folder exists */
6645 Assert(logDir.length());
6646 if (!RTDirExists(logDir.c_str()))
6647 RTDirCreateFullPath(logDir.c_str(), 0700);
6648
6649 Utf8Str logFile = Utf8StrFmt("%s%cVBox.log",
6650 logDir.c_str(), RTPATH_DELIMITER);
6651 Utf8Str pngFile = Utf8StrFmt("%s%cVBox.png",
6652 logDir.c_str(), RTPATH_DELIMITER);
6653
6654 /*
6655 * Age the old log files
6656 * Rename .(n-1) to .(n), .(n-2) to .(n-1), ..., and the last log file to .1
6657 * Overwrite target files in case they exist.
6658 */
6659 ComPtr<IVirtualBox> pVirtualBox;
6660 aMachine->COMGETTER(Parent)(pVirtualBox.asOutParam());
6661 ComPtr<ISystemProperties> pSystemProperties;
6662 pVirtualBox->COMGETTER(SystemProperties)(pSystemProperties.asOutParam());
6663 ULONG cHistoryFiles = 3;
6664 pSystemProperties->COMGETTER(LogHistoryCount)(&cHistoryFiles);
6665 if (cHistoryFiles)
6666 {
6667 for (int i = cHistoryFiles-1; i >= 0; i--)
6668 {
6669 Utf8Str *files[] = { &logFile, &pngFile };
6670 Utf8Str oldName, newName;
6671
6672 for (unsigned int j = 0; j < RT_ELEMENTS(files); ++j)
6673 {
6674 if (i > 0)
6675 oldName = Utf8StrFmt("%s.%d", files[j]->c_str(), i);
6676 else
6677 oldName = *files[j];
6678 newName = Utf8StrFmt("%s.%d", files[j]->c_str(), i + 1);
6679 /* If the old file doesn't exist, delete the new file (if it
6680 * exists) to provide correct rotation even if the sequence is
6681 * broken */
6682 if ( RTFileRename(oldName.c_str(), newName.c_str(), RTFILEMOVE_FLAGS_REPLACE)
6683 == VERR_FILE_NOT_FOUND)
6684 RTFileDelete(newName.c_str());
6685 }
6686 }
6687 }
6688
6689 char szError[RTPATH_MAX + 128];
6690 int vrc = com::VBoxLogRelCreate("VM", logFile.c_str(),
6691 RTLOGFLAGS_PREFIX_TIME_PROG | RTLOGFLAGS_RESTRICT_GROUPS,
6692 "all all.restrict -default.restrict",
6693 "VBOX_RELEASE_LOG", RTLOGDEST_FILE,
6694 32768 /* cMaxEntriesPerGroup */,
6695 0 /* cHistory */, 0 /* uHistoryFileTime */,
6696 0 /* uHistoryFileSize */, szError, sizeof(szError));
6697 if (RT_FAILURE(vrc))
6698 hrc = setError(E_FAIL, tr("Failed to open release log (%s, %Rrc)"),
6699 szError, vrc);
6700
6701 /* If we've made any directory changes, flush the directory to increase
6702 the likelihood that the log file will be usable after a system panic.
6703
6704 Tip: Try 'export VBOX_RELEASE_LOG_FLAGS=flush' if the last bits of the log
6705 is missing. Just don't have too high hopes for this to help. */
6706 if (SUCCEEDED(hrc) || cHistoryFiles)
6707 RTDirFlush(logDir.c_str());
6708
6709 return hrc;
6710}
6711
6712/**
6713 * Common worker for PowerUp and PowerUpPaused.
6714 *
6715 * @returns COM status code.
6716 *
6717 * @param aProgress Where to return the progress object.
6718 * @param aPaused true if PowerUpPaused called.
6719 */
6720HRESULT Console::i_powerUp(IProgress **aProgress, bool aPaused)
6721{
6722
6723 LogFlowThisFuncEnter();
6724
6725 CheckComArgOutPointerValid(aProgress);
6726
6727 AutoCaller autoCaller(this);
6728 if (FAILED(autoCaller.rc())) return autoCaller.rc();
6729
6730 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
6731
6732 LogFlowThisFunc(("mMachineState=%d\n", mMachineState));
6733 HRESULT rc = S_OK;
6734 ComObjPtr<Progress> pPowerupProgress;
6735 bool fBeganPoweringUp = false;
6736
6737 LONG cOperations = 1;
6738 LONG ulTotalOperationsWeight = 1;
6739
6740 try
6741 {
6742
6743 if (Global::IsOnlineOrTransient(mMachineState))
6744 throw setError(VBOX_E_INVALID_VM_STATE,
6745 tr("The virtual machine is already running or busy (machine state: %s)"),
6746 Global::stringifyMachineState(mMachineState));
6747
6748 /* Set up release logging as early as possible after the check if
6749 * there is already a running VM which we shouldn't disturb. */
6750 rc = i_consoleInitReleaseLog(mMachine);
6751 if (FAILED(rc))
6752 throw rc;
6753
6754#ifdef VBOX_OPENSSL_FIPS
6755 LogRel(("crypto: FIPS mode %s\n", FIPS_mode() ? "enabled" : "FAILED"));
6756#endif
6757
6758 /* test and clear the TeleporterEnabled property */
6759 BOOL fTeleporterEnabled;
6760 rc = mMachine->COMGETTER(TeleporterEnabled)(&fTeleporterEnabled);
6761 if (FAILED(rc))
6762 throw rc;
6763
6764#if 0 /** @todo we should save it afterwards, but that isn't necessarily a good idea. Find a better place for this (VBoxSVC). */
6765 if (fTeleporterEnabled)
6766 {
6767 rc = mMachine->COMSETTER(TeleporterEnabled)(FALSE);
6768 if (FAILED(rc))
6769 throw rc;
6770 }
6771#endif
6772
6773 /* test the FaultToleranceState property */
6774 FaultToleranceState_T enmFaultToleranceState;
6775 rc = mMachine->COMGETTER(FaultToleranceState)(&enmFaultToleranceState);
6776 if (FAILED(rc))
6777 throw rc;
6778 BOOL fFaultToleranceSyncEnabled = (enmFaultToleranceState == FaultToleranceState_Standby);
6779
6780 /* Create a progress object to track progress of this operation. Must
6781 * be done as early as possible (together with BeginPowerUp()) as this
6782 * is vital for communicating as much as possible early powerup
6783 * failure information to the API caller */
6784 pPowerupProgress.createObject();
6785 Bstr progressDesc;
6786 if (mMachineState == MachineState_Saved)
6787 progressDesc = tr("Restoring virtual machine");
6788 else if (fTeleporterEnabled)
6789 progressDesc = tr("Teleporting virtual machine");
6790 else if (fFaultToleranceSyncEnabled)
6791 progressDesc = tr("Fault Tolerance syncing of remote virtual machine");
6792 else
6793 progressDesc = tr("Starting virtual machine");
6794
6795 Bstr savedStateFile;
6796
6797 /*
6798 * Saved VMs will have to prove that their saved states seem kosher.
6799 */
6800 if (mMachineState == MachineState_Saved)
6801 {
6802 rc = mMachine->COMGETTER(StateFilePath)(savedStateFile.asOutParam());
6803 if (FAILED(rc))
6804 throw rc;
6805 ComAssertRet(!savedStateFile.isEmpty(), E_FAIL);
6806 int vrc = SSMR3ValidateFile(Utf8Str(savedStateFile).c_str(), false /* fChecksumIt */);
6807 if (RT_FAILURE(vrc))
6808 throw setError(VBOX_E_FILE_ERROR,
6809 tr("VM cannot start because the saved state file '%ls' is invalid (%Rrc). Delete the saved state prior to starting the VM"),
6810 savedStateFile.raw(), vrc);
6811 }
6812
6813 /* Read console data, including console shared folders, stored in the
6814 * saved state file (if not yet done).
6815 */
6816 rc = i_loadDataFromSavedState();
6817 if (FAILED(rc))
6818 throw rc;
6819
6820 /* Check all types of shared folders and compose a single list */
6821 SharedFolderDataMap sharedFolders;
6822 {
6823 /* first, insert global folders */
6824 for (SharedFolderDataMap::const_iterator it = m_mapGlobalSharedFolders.begin();
6825 it != m_mapGlobalSharedFolders.end();
6826 ++it)
6827 {
6828 const SharedFolderData &d = it->second;
6829 sharedFolders[it->first] = d;
6830 }
6831
6832 /* second, insert machine folders */
6833 for (SharedFolderDataMap::const_iterator it = m_mapMachineSharedFolders.begin();
6834 it != m_mapMachineSharedFolders.end();
6835 ++it)
6836 {
6837 const SharedFolderData &d = it->second;
6838 sharedFolders[it->first] = d;
6839 }
6840
6841 /* third, insert console folders */
6842 for (SharedFolderMap::const_iterator it = m_mapSharedFolders.begin();
6843 it != m_mapSharedFolders.end();
6844 ++it)
6845 {
6846 SharedFolder *pSF = it->second;
6847 AutoCaller sfCaller(pSF);
6848 AutoReadLock sfLock(pSF COMMA_LOCKVAL_SRC_POS);
6849 sharedFolders[it->first] = SharedFolderData(pSF->i_getHostPath(),
6850 pSF->i_isWritable(),
6851 pSF->i_isAutoMounted());
6852 }
6853 }
6854
6855 /* Setup task object and thread to carry out the operaton
6856 * Asycnhronously */
6857 std::auto_ptr<VMPowerUpTask> task(new VMPowerUpTask(this, pPowerupProgress));
6858 ComAssertComRCRetRC(task->rc());
6859
6860 task->mConfigConstructor = i_configConstructor;
6861 task->mSharedFolders = sharedFolders;
6862 task->mStartPaused = aPaused;
6863 if (mMachineState == MachineState_Saved)
6864 task->mSavedStateFile = savedStateFile;
6865 task->mTeleporterEnabled = fTeleporterEnabled;
6866 task->mEnmFaultToleranceState = enmFaultToleranceState;
6867
6868 /* Reset differencing hard disks for which autoReset is true,
6869 * but only if the machine has no snapshots OR the current snapshot
6870 * is an OFFLINE snapshot; otherwise we would reset the current
6871 * differencing image of an ONLINE snapshot which contains the disk
6872 * state of the machine while it was previously running, but without
6873 * the corresponding machine state, which is equivalent to powering
6874 * off a running machine and not good idea
6875 */
6876 ComPtr<ISnapshot> pCurrentSnapshot;
6877 rc = mMachine->COMGETTER(CurrentSnapshot)(pCurrentSnapshot.asOutParam());
6878 if (FAILED(rc))
6879 throw rc;
6880
6881 BOOL fCurrentSnapshotIsOnline = false;
6882 if (pCurrentSnapshot)
6883 {
6884 rc = pCurrentSnapshot->COMGETTER(Online)(&fCurrentSnapshotIsOnline);
6885 if (FAILED(rc))
6886 throw rc;
6887 }
6888
6889 if (!fCurrentSnapshotIsOnline)
6890 {
6891 LogFlowThisFunc(("Looking for immutable images to reset\n"));
6892
6893 com::SafeIfaceArray<IMediumAttachment> atts;
6894 rc = mMachine->COMGETTER(MediumAttachments)(ComSafeArrayAsOutParam(atts));
6895 if (FAILED(rc))
6896 throw rc;
6897
6898 for (size_t i = 0;
6899 i < atts.size();
6900 ++i)
6901 {
6902 DeviceType_T devType;
6903 rc = atts[i]->COMGETTER(Type)(&devType);
6904 /** @todo later applies to floppies as well */
6905 if (devType == DeviceType_HardDisk)
6906 {
6907 ComPtr<IMedium> pMedium;
6908 rc = atts[i]->COMGETTER(Medium)(pMedium.asOutParam());
6909 if (FAILED(rc))
6910 throw rc;
6911
6912 /* needs autoreset? */
6913 BOOL autoReset = FALSE;
6914 rc = pMedium->COMGETTER(AutoReset)(&autoReset);
6915 if (FAILED(rc))
6916 throw rc;
6917
6918 if (autoReset)
6919 {
6920 ComPtr<IProgress> pResetProgress;
6921 rc = pMedium->Reset(pResetProgress.asOutParam());
6922 if (FAILED(rc))
6923 throw rc;
6924
6925 /* save for later use on the powerup thread */
6926 task->hardDiskProgresses.push_back(pResetProgress);
6927 }
6928 }
6929 }
6930 }
6931 else
6932 LogFlowThisFunc(("Machine has a current snapshot which is online, skipping immutable images reset\n"));
6933
6934 /* setup task object and thread to carry out the operation
6935 * asynchronously */
6936
6937#ifdef VBOX_WITH_EXTPACK
6938 mptrExtPackManager->i_dumpAllToReleaseLog();
6939#endif
6940
6941#ifdef RT_OS_SOLARIS
6942 /* setup host core dumper for the VM */
6943 Bstr value;
6944 HRESULT hrc = mMachine->GetExtraData(Bstr("VBoxInternal2/CoreDumpEnabled").raw(), value.asOutParam());
6945 if (SUCCEEDED(hrc) && value == "1")
6946 {
6947 Bstr coreDumpDir, coreDumpReplaceSys, coreDumpLive;
6948 mMachine->GetExtraData(Bstr("VBoxInternal2/CoreDumpDir").raw(), coreDumpDir.asOutParam());
6949 mMachine->GetExtraData(Bstr("VBoxInternal2/CoreDumpReplaceSystemDump").raw(), coreDumpReplaceSys.asOutParam());
6950 mMachine->GetExtraData(Bstr("VBoxInternal2/CoreDumpLive").raw(), coreDumpLive.asOutParam());
6951
6952 uint32_t fCoreFlags = 0;
6953 if ( coreDumpReplaceSys.isEmpty() == false
6954 && Utf8Str(coreDumpReplaceSys).toUInt32() == 1)
6955 fCoreFlags |= RTCOREDUMPER_FLAGS_REPLACE_SYSTEM_DUMP;
6956
6957 if ( coreDumpLive.isEmpty() == false
6958 && Utf8Str(coreDumpLive).toUInt32() == 1)
6959 fCoreFlags |= RTCOREDUMPER_FLAGS_LIVE_CORE;
6960
6961 Utf8Str strDumpDir(coreDumpDir);
6962 const char *pszDumpDir = strDumpDir.c_str();
6963 if ( pszDumpDir
6964 && *pszDumpDir == '\0')
6965 pszDumpDir = NULL;
6966
6967 int vrc;
6968 if ( pszDumpDir
6969 && !RTDirExists(pszDumpDir))
6970 {
6971 /*
6972 * Try create the directory.
6973 */
6974 vrc = RTDirCreateFullPath(pszDumpDir, 0700);
6975 if (RT_FAILURE(vrc))
6976 throw setError(E_FAIL, "Failed to setup CoreDumper. Couldn't create dump directory '%s' (%Rrc)\n",
6977 pszDumpDir, vrc);
6978 }
6979
6980 vrc = RTCoreDumperSetup(pszDumpDir, fCoreFlags);
6981 if (RT_FAILURE(vrc))
6982 throw setError(E_FAIL, "Failed to setup CoreDumper (%Rrc)", vrc);
6983 else
6984 LogRel(("CoreDumper setup successful. pszDumpDir=%s fFlags=%#x\n", pszDumpDir ? pszDumpDir : ".", fCoreFlags));
6985 }
6986#endif
6987
6988
6989 // If there is immutable drive the process that.
6990 VMPowerUpTask::ProgressList progresses(task->hardDiskProgresses);
6991 if (aProgress && progresses.size() > 0){
6992
6993 for (VMPowerUpTask::ProgressList::const_iterator it = progresses.begin(); it != progresses.end(); ++it)
6994 {
6995 ++cOperations;
6996 ulTotalOperationsWeight += 1;
6997 }
6998 rc = pPowerupProgress->init(static_cast<IConsole *>(this),
6999 progressDesc.raw(),
7000 TRUE, // Cancelable
7001 cOperations,
7002 ulTotalOperationsWeight,
7003 Bstr(tr("Starting Hard Disk operations")).raw(),
7004 1);
7005 AssertComRCReturnRC(rc);
7006 }
7007 else if ( mMachineState == MachineState_Saved
7008 || (!fTeleporterEnabled && !fFaultToleranceSyncEnabled))
7009 {
7010 rc = pPowerupProgress->init(static_cast<IConsole *>(this),
7011 progressDesc.raw(),
7012 FALSE /* aCancelable */);
7013 }
7014 else if (fTeleporterEnabled)
7015 {
7016 rc = pPowerupProgress->init(static_cast<IConsole *>(this),
7017 progressDesc.raw(),
7018 TRUE /* aCancelable */,
7019 3 /* cOperations */,
7020 10 /* ulTotalOperationsWeight */,
7021 Bstr(tr("Teleporting virtual machine")).raw(),
7022 1 /* ulFirstOperationWeight */);
7023 }
7024 else if (fFaultToleranceSyncEnabled)
7025 {
7026 rc = pPowerupProgress->init(static_cast<IConsole *>(this),
7027 progressDesc.raw(),
7028 TRUE /* aCancelable */,
7029 3 /* cOperations */,
7030 10 /* ulTotalOperationsWeight */,
7031 Bstr(tr("Fault Tolerance syncing of remote virtual machine")).raw(),
7032 1 /* ulFirstOperationWeight */);
7033 }
7034
7035 if (FAILED(rc))
7036 throw rc;
7037
7038 /* Tell VBoxSVC and Machine about the progress object so they can
7039 combine/proxy it to any openRemoteSession caller. */
7040 LogFlowThisFunc(("Calling BeginPowerUp...\n"));
7041 rc = mControl->BeginPowerUp(pPowerupProgress);
7042 if (FAILED(rc))
7043 {
7044 LogFlowThisFunc(("BeginPowerUp failed\n"));
7045 throw rc;
7046 }
7047 fBeganPoweringUp = true;
7048
7049 LogFlowThisFunc(("Checking if canceled...\n"));
7050 BOOL fCanceled;
7051 rc = pPowerupProgress->COMGETTER(Canceled)(&fCanceled);
7052 if (FAILED(rc))
7053 throw rc;
7054
7055 if (fCanceled)
7056 {
7057 LogFlowThisFunc(("Canceled in BeginPowerUp\n"));
7058 throw setError(E_FAIL, tr("Powerup was canceled"));
7059 }
7060 LogFlowThisFunc(("Not canceled yet.\n"));
7061
7062 /** @todo this code prevents starting a VM with unavailable bridged
7063 * networking interface. The only benefit is a slightly better error
7064 * message, which should be moved to the driver code. This is the
7065 * only reason why I left the code in for now. The driver allows
7066 * unavailable bridged networking interfaces in certain circumstances,
7067 * and this is sabotaged by this check. The VM will initially have no
7068 * network connectivity, but the user can fix this at runtime. */
7069#if 0
7070 /* the network cards will undergo a quick consistency check */
7071 for (ULONG slot = 0;
7072 slot < maxNetworkAdapters;
7073 ++slot)
7074 {
7075 ComPtr<INetworkAdapter> pNetworkAdapter;
7076 mMachine->GetNetworkAdapter(slot, pNetworkAdapter.asOutParam());
7077 BOOL enabled = FALSE;
7078 pNetworkAdapter->COMGETTER(Enabled)(&enabled);
7079 if (!enabled)
7080 continue;
7081
7082 NetworkAttachmentType_T netattach;
7083 pNetworkAdapter->COMGETTER(AttachmentType)(&netattach);
7084 switch (netattach)
7085 {
7086 case NetworkAttachmentType_Bridged:
7087 {
7088 /* a valid host interface must have been set */
7089 Bstr hostif;
7090 pNetworkAdapter->COMGETTER(HostInterface)(hostif.asOutParam());
7091 if (hostif.isEmpty())
7092 {
7093 throw setError(VBOX_E_HOST_ERROR,
7094 tr("VM cannot start because host interface networking requires a host interface name to be set"));
7095 }
7096 ComPtr<IVirtualBox> pVirtualBox;
7097 mMachine->COMGETTER(Parent)(pVirtualBox.asOutParam());
7098 ComPtr<IHost> pHost;
7099 pVirtualBox->COMGETTER(Host)(pHost.asOutParam());
7100 ComPtr<IHostNetworkInterface> pHostInterface;
7101 if (!SUCCEEDED(pHost->FindHostNetworkInterfaceByName(hostif.raw(),
7102 pHostInterface.asOutParam())))
7103 {
7104 throw setError(VBOX_E_HOST_ERROR,
7105 tr("VM cannot start because the host interface '%ls' does not exist"),
7106 hostif.raw());
7107 }
7108 break;
7109 }
7110 default:
7111 break;
7112 }
7113 }
7114#endif // 0
7115
7116 /* setup task object and thread to carry out the operation
7117 * asynchronously */
7118 if (aProgress){
7119 rc = pPowerupProgress.queryInterfaceTo(aProgress);
7120 AssertComRCReturnRC(rc);
7121 }
7122
7123 int vrc = RTThreadCreate(NULL, Console::i_powerUpThread,
7124 (void *)task.get(), 0,
7125 RTTHREADTYPE_MAIN_WORKER, 0, "VMPwrUp");
7126 if (RT_FAILURE(vrc))
7127 throw setError(E_FAIL, "Could not create VMPowerUp thread (%Rrc)", vrc);
7128
7129 /* task is now owned by powerUpThread(), so release it */
7130 task.release();
7131
7132 /* finally, set the state: no right to fail in this method afterwards
7133 * since we've already started the thread and it is now responsible for
7134 * any error reporting and appropriate state change! */
7135 if (mMachineState == MachineState_Saved)
7136 i_setMachineState(MachineState_Restoring);
7137 else if (fTeleporterEnabled)
7138 i_setMachineState(MachineState_TeleportingIn);
7139 else if (enmFaultToleranceState == FaultToleranceState_Standby)
7140 i_setMachineState(MachineState_FaultTolerantSyncing);
7141 else
7142 i_setMachineState(MachineState_Starting);
7143 }
7144 catch (HRESULT aRC) { rc = aRC; }
7145
7146 if (FAILED(rc) && fBeganPoweringUp)
7147 {
7148
7149 /* The progress object will fetch the current error info */
7150 if (!pPowerupProgress.isNull())
7151 pPowerupProgress->i_notifyComplete(rc);
7152
7153 /* Save the error info across the IPC below. Can't be done before the
7154 * progress notification above, as saving the error info deletes it
7155 * from the current context, and thus the progress object wouldn't be
7156 * updated correctly. */
7157 ErrorInfoKeeper eik;
7158
7159 /* signal end of operation */
7160 mControl->EndPowerUp(rc);
7161 }
7162
7163 LogFlowThisFunc(("mMachineState=%d, rc=%Rhrc\n", mMachineState, rc));
7164 LogFlowThisFuncLeave();
7165 return rc;
7166}
7167
7168/**
7169 * Internal power off worker routine.
7170 *
7171 * This method may be called only at certain places with the following meaning
7172 * as shown below:
7173 *
7174 * - if the machine state is either Running or Paused, a normal
7175 * Console-initiated powerdown takes place (e.g. PowerDown());
7176 * - if the machine state is Saving, saveStateThread() has successfully done its
7177 * job;
7178 * - if the machine state is Starting or Restoring, powerUpThread() has failed
7179 * to start/load the VM;
7180 * - if the machine state is Stopping, the VM has powered itself off (i.e. not
7181 * as a result of the powerDown() call).
7182 *
7183 * Calling it in situations other than the above will cause unexpected behavior.
7184 *
7185 * Note that this method should be the only one that destroys mpUVM and sets it
7186 * to NULL.
7187 *
7188 * @param aProgress Progress object to run (may be NULL).
7189 *
7190 * @note Locks this object for writing.
7191 *
7192 * @note Never call this method from a thread that called addVMCaller() or
7193 * instantiated an AutoVMCaller object; first call releaseVMCaller() or
7194 * release(). Otherwise it will deadlock.
7195 */
7196HRESULT Console::i_powerDown(IProgress *aProgress /*= NULL*/)
7197{
7198 LogFlowThisFuncEnter();
7199
7200 AutoCaller autoCaller(this);
7201 AssertComRCReturnRC(autoCaller.rc());
7202
7203 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
7204
7205 /* Total # of steps for the progress object. Must correspond to the
7206 * number of "advance percent count" comments in this method! */
7207 enum { StepCount = 7 };
7208 /* current step */
7209 ULONG step = 0;
7210
7211 HRESULT rc = S_OK;
7212 int vrc = VINF_SUCCESS;
7213
7214 /* sanity */
7215 Assert(mVMDestroying == false);
7216
7217 PUVM pUVM = mpUVM; Assert(pUVM != NULL);
7218 uint32_t cRefs = VMR3RetainUVM(pUVM); Assert(cRefs != UINT32_MAX);
7219
7220 AssertMsg( mMachineState == MachineState_Running
7221 || mMachineState == MachineState_Paused
7222 || mMachineState == MachineState_Stuck
7223 || mMachineState == MachineState_Starting
7224 || mMachineState == MachineState_Stopping
7225 || mMachineState == MachineState_Saving
7226 || mMachineState == MachineState_Restoring
7227 || mMachineState == MachineState_TeleportingPausedVM
7228 || mMachineState == MachineState_FaultTolerantSyncing
7229 || mMachineState == MachineState_TeleportingIn
7230 , ("Invalid machine state: %s\n", Global::stringifyMachineState(mMachineState)));
7231
7232 LogRel(("Console::powerDown(): A request to power off the VM has been issued (mMachineState=%s, InUninit=%d)\n",
7233 Global::stringifyMachineState(mMachineState), getObjectState().getState() == ObjectState::InUninit));
7234
7235 /* Check if we need to power off the VM. In case of mVMPoweredOff=true, the
7236 * VM has already powered itself off in vmstateChangeCallback() and is just
7237 * notifying Console about that. In case of Starting or Restoring,
7238 * powerUpThread() is calling us on failure, so the VM is already off at
7239 * that point. */
7240 if ( !mVMPoweredOff
7241 && ( mMachineState == MachineState_Starting
7242 || mMachineState == MachineState_Restoring
7243 || mMachineState == MachineState_FaultTolerantSyncing
7244 || mMachineState == MachineState_TeleportingIn)
7245 )
7246 mVMPoweredOff = true;
7247
7248 /*
7249 * Go to Stopping state if not already there.
7250 *
7251 * Note that we don't go from Saving/Restoring to Stopping because
7252 * vmstateChangeCallback() needs it to set the state to Saved on
7253 * VMSTATE_TERMINATED. In terms of protecting from inappropriate operations
7254 * while leaving the lock below, Saving or Restoring should be fine too.
7255 * Ditto for TeleportingPausedVM -> Teleported.
7256 */
7257 if ( mMachineState != MachineState_Saving
7258 && mMachineState != MachineState_Restoring
7259 && mMachineState != MachineState_Stopping
7260 && mMachineState != MachineState_TeleportingIn
7261 && mMachineState != MachineState_TeleportingPausedVM
7262 && mMachineState != MachineState_FaultTolerantSyncing
7263 )
7264 i_setMachineState(MachineState_Stopping);
7265
7266 /* ----------------------------------------------------------------------
7267 * DONE with necessary state changes, perform the power down actions (it's
7268 * safe to release the object lock now if needed)
7269 * ---------------------------------------------------------------------- */
7270
7271 if (mDisplay)
7272 {
7273 alock.release();
7274
7275 mDisplay->i_notifyPowerDown();
7276
7277 alock.acquire();
7278 }
7279
7280 /* Stop the VRDP server to prevent new clients connection while VM is being
7281 * powered off. */
7282 if (mConsoleVRDPServer)
7283 {
7284 LogFlowThisFunc(("Stopping VRDP server...\n"));
7285
7286 /* Leave the lock since EMT could call us back as addVMCaller() */
7287 alock.release();
7288
7289 mConsoleVRDPServer->Stop();
7290
7291 alock.acquire();
7292 }
7293
7294 /* advance percent count */
7295 if (aProgress)
7296 aProgress->SetCurrentOperationProgress(99 * (++step) / StepCount );
7297
7298
7299 /* ----------------------------------------------------------------------
7300 * Now, wait for all mpUVM callers to finish their work if there are still
7301 * some on other threads. NO methods that need mpUVM (or initiate other calls
7302 * that need it) may be called after this point
7303 * ---------------------------------------------------------------------- */
7304
7305 /* go to the destroying state to prevent from adding new callers */
7306 mVMDestroying = true;
7307
7308 if (mVMCallers > 0)
7309 {
7310 /* lazy creation */
7311 if (mVMZeroCallersSem == NIL_RTSEMEVENT)
7312 RTSemEventCreate(&mVMZeroCallersSem);
7313
7314 LogFlowThisFunc(("Waiting for mpUVM callers (%d) to drop to zero...\n", mVMCallers));
7315
7316 alock.release();
7317
7318 RTSemEventWait(mVMZeroCallersSem, RT_INDEFINITE_WAIT);
7319
7320 alock.acquire();
7321 }
7322
7323 /* advance percent count */
7324 if (aProgress)
7325 aProgress->SetCurrentOperationProgress(99 * (++step) / StepCount );
7326
7327 vrc = VINF_SUCCESS;
7328
7329 /*
7330 * Power off the VM if not already done that.
7331 * Leave the lock since EMT will call vmstateChangeCallback.
7332 *
7333 * Note that VMR3PowerOff() may fail here (invalid VMSTATE) if the
7334 * VM-(guest-)initiated power off happened in parallel a ms before this
7335 * call. So far, we let this error pop up on the user's side.
7336 */
7337 if (!mVMPoweredOff)
7338 {
7339 LogFlowThisFunc(("Powering off the VM...\n"));
7340 alock.release();
7341 vrc = VMR3PowerOff(pUVM);
7342#ifdef VBOX_WITH_EXTPACK
7343 mptrExtPackManager->i_callAllVmPowerOffHooks(this, VMR3GetVM(pUVM));
7344#endif
7345 alock.acquire();
7346 }
7347
7348 /* advance percent count */
7349 if (aProgress)
7350 aProgress->SetCurrentOperationProgress(99 * (++step) / StepCount );
7351
7352#ifdef VBOX_WITH_HGCM
7353 /* Shutdown HGCM services before destroying the VM. */
7354 if (m_pVMMDev)
7355 {
7356 LogFlowThisFunc(("Shutdown HGCM...\n"));
7357
7358 /* Leave the lock since EMT will call us back as addVMCaller() */
7359 alock.release();
7360
7361 m_pVMMDev->hgcmShutdown();
7362
7363 alock.acquire();
7364 }
7365
7366 /* advance percent count */
7367 if (aProgress)
7368 aProgress->SetCurrentOperationProgress(99 * (++step) / StepCount);
7369
7370#endif /* VBOX_WITH_HGCM */
7371
7372 LogFlowThisFunc(("Ready for VM destruction.\n"));
7373
7374 /* If we are called from Console::uninit(), then try to destroy the VM even
7375 * on failure (this will most likely fail too, but what to do?..) */
7376 if (RT_SUCCESS(vrc) || getObjectState().getState() == ObjectState::InUninit)
7377 {
7378 /* If the machine has a USB controller, release all USB devices
7379 * (symmetric to the code in captureUSBDevices()) */
7380 if (mfVMHasUsbController)
7381 {
7382 alock.release();
7383 i_detachAllUSBDevices(false /* aDone */);
7384 alock.acquire();
7385 }
7386
7387 /* Now we've got to destroy the VM as well. (mpUVM is not valid beyond
7388 * this point). We release the lock before calling VMR3Destroy() because
7389 * it will result into calling destructors of drivers associated with
7390 * Console children which may in turn try to lock Console (e.g. by
7391 * instantiating SafeVMPtr to access mpUVM). It's safe here because
7392 * mVMDestroying is set which should prevent any activity. */
7393
7394 /* Set mpUVM to NULL early just in case if some old code is not using
7395 * addVMCaller()/releaseVMCaller(). (We have our own ref on pUVM.) */
7396 VMR3ReleaseUVM(mpUVM);
7397 mpUVM = NULL;
7398
7399 LogFlowThisFunc(("Destroying the VM...\n"));
7400
7401 alock.release();
7402
7403 vrc = VMR3Destroy(pUVM);
7404
7405 /* take the lock again */
7406 alock.acquire();
7407
7408 /* advance percent count */
7409 if (aProgress)
7410 aProgress->SetCurrentOperationProgress(99 * (++step) / StepCount);
7411
7412 if (RT_SUCCESS(vrc))
7413 {
7414 LogFlowThisFunc(("Machine has been destroyed (mMachineState=%d)\n",
7415 mMachineState));
7416 /* Note: the Console-level machine state change happens on the
7417 * VMSTATE_TERMINATE state change in vmstateChangeCallback(). If
7418 * powerDown() is called from EMT (i.e. from vmstateChangeCallback()
7419 * on receiving VM-initiated VMSTATE_OFF), VMSTATE_TERMINATE hasn't
7420 * occurred yet. This is okay, because mMachineState is already
7421 * Stopping in this case, so any other attempt to call PowerDown()
7422 * will be rejected. */
7423 }
7424 else
7425 {
7426 /* bad bad bad, but what to do? (Give Console our UVM ref.) */
7427 mpUVM = pUVM;
7428 pUVM = NULL;
7429 rc = setError(VBOX_E_VM_ERROR,
7430 tr("Could not destroy the machine. (Error: %Rrc)"),
7431 vrc);
7432 }
7433
7434 /* Complete the detaching of the USB devices. */
7435 if (mfVMHasUsbController)
7436 {
7437 alock.release();
7438 i_detachAllUSBDevices(true /* aDone */);
7439 alock.acquire();
7440 }
7441
7442 /* advance percent count */
7443 if (aProgress)
7444 aProgress->SetCurrentOperationProgress(99 * (++step) / StepCount);
7445 }
7446 else
7447 {
7448 rc = setError(VBOX_E_VM_ERROR,
7449 tr("Could not power off the machine. (Error: %Rrc)"),
7450 vrc);
7451 }
7452
7453 /*
7454 * Finished with the destruction.
7455 *
7456 * Note that if something impossible happened and we've failed to destroy
7457 * the VM, mVMDestroying will remain true and mMachineState will be
7458 * something like Stopping, so most Console methods will return an error
7459 * to the caller.
7460 */
7461 if (pUVM != NULL)
7462 VMR3ReleaseUVM(pUVM);
7463 else
7464 mVMDestroying = false;
7465
7466 LogFlowThisFuncLeave();
7467 return rc;
7468}
7469
7470/**
7471 * @note Locks this object for writing.
7472 */
7473HRESULT Console::i_setMachineState(MachineState_T aMachineState,
7474 bool aUpdateServer /* = true */)
7475{
7476 AutoCaller autoCaller(this);
7477 AssertComRCReturnRC(autoCaller.rc());
7478
7479 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
7480
7481 HRESULT rc = S_OK;
7482
7483 if (mMachineState != aMachineState)
7484 {
7485 LogThisFunc(("machineState=%s -> %s aUpdateServer=%RTbool\n",
7486 Global::stringifyMachineState(mMachineState), Global::stringifyMachineState(aMachineState), aUpdateServer));
7487 mMachineState = aMachineState;
7488
7489 /// @todo (dmik)
7490 // possibly, we need to redo onStateChange() using the dedicated
7491 // Event thread, like it is done in VirtualBox. This will make it
7492 // much safer (no deadlocks possible if someone tries to use the
7493 // console from the callback), however, listeners will lose the
7494 // ability to synchronously react to state changes (is it really
7495 // necessary??)
7496 LogFlowThisFunc(("Doing onStateChange()...\n"));
7497 i_onStateChange(aMachineState);
7498 LogFlowThisFunc(("Done onStateChange()\n"));
7499
7500 if (aUpdateServer)
7501 {
7502 /* Server notification MUST be done from under the lock; otherwise
7503 * the machine state here and on the server might go out of sync
7504 * which can lead to various unexpected results (like the machine
7505 * state being >= MachineState_Running on the server, while the
7506 * session state is already SessionState_Unlocked at the same time
7507 * there).
7508 *
7509 * Cross-lock conditions should be carefully watched out: calling
7510 * UpdateState we will require Machine and SessionMachine locks
7511 * (remember that here we're holding the Console lock here, and also
7512 * all locks that have been acquire by the thread before calling
7513 * this method).
7514 */
7515 LogFlowThisFunc(("Doing mControl->UpdateState()...\n"));
7516 rc = mControl->UpdateState(aMachineState);
7517 LogFlowThisFunc(("mControl->UpdateState()=%Rhrc\n", rc));
7518 }
7519 }
7520
7521 return rc;
7522}
7523
7524/**
7525 * Searches for a shared folder with the given logical name
7526 * in the collection of shared folders.
7527 *
7528 * @param aName logical name of the shared folder
7529 * @param aSharedFolder where to return the found object
7530 * @param aSetError whether to set the error info if the folder is
7531 * not found
7532 * @return
7533 * S_OK when found or E_INVALIDARG when not found
7534 *
7535 * @note The caller must lock this object for writing.
7536 */
7537HRESULT Console::i_findSharedFolder(const Utf8Str &strName,
7538 ComObjPtr<SharedFolder> &aSharedFolder,
7539 bool aSetError /* = false */)
7540{
7541 /* sanity check */
7542 AssertReturn(isWriteLockOnCurrentThread(), E_FAIL);
7543
7544 SharedFolderMap::const_iterator it = m_mapSharedFolders.find(strName);
7545 if (it != m_mapSharedFolders.end())
7546 {
7547 aSharedFolder = it->second;
7548 return S_OK;
7549 }
7550
7551 if (aSetError)
7552 setError(VBOX_E_FILE_ERROR,
7553 tr("Could not find a shared folder named '%s'."),
7554 strName.c_str());
7555
7556 return VBOX_E_FILE_ERROR;
7557}
7558
7559/**
7560 * Fetches the list of global or machine shared folders from the server.
7561 *
7562 * @param aGlobal true to fetch global folders.
7563 *
7564 * @note The caller must lock this object for writing.
7565 */
7566HRESULT Console::i_fetchSharedFolders(BOOL aGlobal)
7567{
7568 /* sanity check */
7569 AssertReturn( getObjectState().getState() == ObjectState::InInit
7570 || isWriteLockOnCurrentThread(), E_FAIL);
7571
7572 LogFlowThisFunc(("Entering\n"));
7573
7574 /* Check if we're online and keep it that way. */
7575 SafeVMPtrQuiet ptrVM(this);
7576 AutoVMCallerQuietWeak autoVMCaller(this);
7577 bool const online = ptrVM.isOk()
7578 && m_pVMMDev
7579 && m_pVMMDev->isShFlActive();
7580
7581 HRESULT rc = S_OK;
7582
7583 try
7584 {
7585 if (aGlobal)
7586 {
7587 /// @todo grab & process global folders when they are done
7588 }
7589 else
7590 {
7591 SharedFolderDataMap oldFolders;
7592 if (online)
7593 oldFolders = m_mapMachineSharedFolders;
7594
7595 m_mapMachineSharedFolders.clear();
7596
7597 SafeIfaceArray<ISharedFolder> folders;
7598 rc = mMachine->COMGETTER(SharedFolders)(ComSafeArrayAsOutParam(folders));
7599 if (FAILED(rc)) throw rc;
7600
7601 for (size_t i = 0; i < folders.size(); ++i)
7602 {
7603 ComPtr<ISharedFolder> pSharedFolder = folders[i];
7604
7605 Bstr bstrName;
7606 Bstr bstrHostPath;
7607 BOOL writable;
7608 BOOL autoMount;
7609
7610 rc = pSharedFolder->COMGETTER(Name)(bstrName.asOutParam());
7611 if (FAILED(rc)) throw rc;
7612 Utf8Str strName(bstrName);
7613
7614 rc = pSharedFolder->COMGETTER(HostPath)(bstrHostPath.asOutParam());
7615 if (FAILED(rc)) throw rc;
7616 Utf8Str strHostPath(bstrHostPath);
7617
7618 rc = pSharedFolder->COMGETTER(Writable)(&writable);
7619 if (FAILED(rc)) throw rc;
7620
7621 rc = pSharedFolder->COMGETTER(AutoMount)(&autoMount);
7622 if (FAILED(rc)) throw rc;
7623
7624 m_mapMachineSharedFolders.insert(std::make_pair(strName,
7625 SharedFolderData(strHostPath, !!writable, !!autoMount)));
7626
7627 /* send changes to HGCM if the VM is running */
7628 if (online)
7629 {
7630 SharedFolderDataMap::iterator it = oldFolders.find(strName);
7631 if ( it == oldFolders.end()
7632 || it->second.m_strHostPath != strHostPath)
7633 {
7634 /* a new machine folder is added or
7635 * the existing machine folder is changed */
7636 if (m_mapSharedFolders.find(strName) != m_mapSharedFolders.end())
7637 ; /* the console folder exists, nothing to do */
7638 else
7639 {
7640 /* remove the old machine folder (when changed)
7641 * or the global folder if any (when new) */
7642 if ( it != oldFolders.end()
7643 || m_mapGlobalSharedFolders.find(strName) != m_mapGlobalSharedFolders.end()
7644 )
7645 {
7646 rc = removeSharedFolder(strName);
7647 if (FAILED(rc)) throw rc;
7648 }
7649
7650 /* create the new machine folder */
7651 rc = i_createSharedFolder(strName,
7652 SharedFolderData(strHostPath, !!writable, !!autoMount));
7653 if (FAILED(rc)) throw rc;
7654 }
7655 }
7656 /* forget the processed (or identical) folder */
7657 if (it != oldFolders.end())
7658 oldFolders.erase(it);
7659 }
7660 }
7661
7662 /* process outdated (removed) folders */
7663 if (online)
7664 {
7665 for (SharedFolderDataMap::const_iterator it = oldFolders.begin();
7666 it != oldFolders.end(); ++it)
7667 {
7668 if (m_mapSharedFolders.find(it->first) != m_mapSharedFolders.end())
7669 ; /* the console folder exists, nothing to do */
7670 else
7671 {
7672 /* remove the outdated machine folder */
7673 rc = removeSharedFolder(it->first);
7674 if (FAILED(rc)) throw rc;
7675
7676 /* create the global folder if there is any */
7677 SharedFolderDataMap::const_iterator git =
7678 m_mapGlobalSharedFolders.find(it->first);
7679 if (git != m_mapGlobalSharedFolders.end())
7680 {
7681 rc = i_createSharedFolder(git->first, git->second);
7682 if (FAILED(rc)) throw rc;
7683 }
7684 }
7685 }
7686 }
7687 }
7688 }
7689 catch (HRESULT rc2)
7690 {
7691 rc = rc2;
7692 if (online)
7693 i_setVMRuntimeErrorCallbackF(0, "BrokenSharedFolder",
7694 N_("Broken shared folder!"));
7695 }
7696
7697 LogFlowThisFunc(("Leaving\n"));
7698
7699 return rc;
7700}
7701
7702/**
7703 * Searches for a shared folder with the given name in the list of machine
7704 * shared folders and then in the list of the global shared folders.
7705 *
7706 * @param aName Name of the folder to search for.
7707 * @param aIt Where to store the pointer to the found folder.
7708 * @return @c true if the folder was found and @c false otherwise.
7709 *
7710 * @note The caller must lock this object for reading.
7711 */
7712bool Console::i_findOtherSharedFolder(const Utf8Str &strName,
7713 SharedFolderDataMap::const_iterator &aIt)
7714{
7715 /* sanity check */
7716 AssertReturn(isWriteLockOnCurrentThread(), false);
7717
7718 /* first, search machine folders */
7719 aIt = m_mapMachineSharedFolders.find(strName);
7720 if (aIt != m_mapMachineSharedFolders.end())
7721 return true;
7722
7723 /* second, search machine folders */
7724 aIt = m_mapGlobalSharedFolders.find(strName);
7725 if (aIt != m_mapGlobalSharedFolders.end())
7726 return true;
7727
7728 return false;
7729}
7730
7731/**
7732 * Calls the HGCM service to add a shared folder definition.
7733 *
7734 * @param aName Shared folder name.
7735 * @param aHostPath Shared folder path.
7736 *
7737 * @note Must be called from under AutoVMCaller and when mpUVM != NULL!
7738 * @note Doesn't lock anything.
7739 */
7740HRESULT Console::i_createSharedFolder(const Utf8Str &strName, const SharedFolderData &aData)
7741{
7742 ComAssertRet(strName.isNotEmpty(), E_FAIL);
7743 ComAssertRet(aData.m_strHostPath.isNotEmpty(), E_FAIL);
7744
7745 /* sanity checks */
7746 AssertReturn(mpUVM, E_FAIL);
7747 AssertReturn(m_pVMMDev && m_pVMMDev->isShFlActive(), E_FAIL);
7748
7749 VBOXHGCMSVCPARM parms[SHFL_CPARMS_ADD_MAPPING];
7750 SHFLSTRING *pFolderName, *pMapName;
7751 size_t cbString;
7752
7753 Bstr value;
7754 HRESULT hrc = mMachine->GetExtraData(BstrFmt("VBoxInternal2/SharedFoldersEnableSymlinksCreate/%s",
7755 strName.c_str()).raw(),
7756 value.asOutParam());
7757 bool fSymlinksCreate = hrc == S_OK && value == "1";
7758
7759 Log(("Adding shared folder '%s' -> '%s'\n", strName.c_str(), aData.m_strHostPath.c_str()));
7760
7761 // check whether the path is valid and exists
7762 char hostPathFull[RTPATH_MAX];
7763 int vrc = RTPathAbsEx(NULL,
7764 aData.m_strHostPath.c_str(),
7765 hostPathFull,
7766 sizeof(hostPathFull));
7767
7768 bool fMissing = false;
7769 if (RT_FAILURE(vrc))
7770 return setError(E_INVALIDARG,
7771 tr("Invalid shared folder path: '%s' (%Rrc)"),
7772 aData.m_strHostPath.c_str(), vrc);
7773 if (!RTPathExists(hostPathFull))
7774 fMissing = true;
7775
7776 /* Check whether the path is full (absolute) */
7777 if (RTPathCompare(aData.m_strHostPath.c_str(), hostPathFull) != 0)
7778 return setError(E_INVALIDARG,
7779 tr("Shared folder path '%s' is not absolute"),
7780 aData.m_strHostPath.c_str());
7781
7782 // now that we know the path is good, give it to HGCM
7783
7784 Bstr bstrName(strName);
7785 Bstr bstrHostPath(aData.m_strHostPath);
7786
7787 cbString = (bstrHostPath.length() + 1) * sizeof(RTUTF16);
7788 if (cbString >= UINT16_MAX)
7789 return setError(E_INVALIDARG, tr("The name is too long"));
7790 pFolderName = (SHFLSTRING*)RTMemAllocZ(SHFLSTRING_HEADER_SIZE + cbString);
7791 Assert(pFolderName);
7792 memcpy(pFolderName->String.ucs2, bstrHostPath.raw(), cbString);
7793
7794 pFolderName->u16Size = (uint16_t)cbString;
7795 pFolderName->u16Length = (uint16_t)cbString - sizeof(RTUTF16);
7796
7797 parms[0].type = VBOX_HGCM_SVC_PARM_PTR;
7798 parms[0].u.pointer.addr = pFolderName;
7799 parms[0].u.pointer.size = ShflStringSizeOfBuffer(pFolderName);
7800
7801 cbString = (bstrName.length() + 1) * sizeof(RTUTF16);
7802 if (cbString >= UINT16_MAX)
7803 {
7804 RTMemFree(pFolderName);
7805 return setError(E_INVALIDARG, tr("The host path is too long"));
7806 }
7807 pMapName = (SHFLSTRING*)RTMemAllocZ(SHFLSTRING_HEADER_SIZE + cbString);
7808 Assert(pMapName);
7809 memcpy(pMapName->String.ucs2, bstrName.raw(), cbString);
7810
7811 pMapName->u16Size = (uint16_t)cbString;
7812 pMapName->u16Length = (uint16_t)cbString - sizeof(RTUTF16);
7813
7814 parms[1].type = VBOX_HGCM_SVC_PARM_PTR;
7815 parms[1].u.pointer.addr = pMapName;
7816 parms[1].u.pointer.size = ShflStringSizeOfBuffer(pMapName);
7817
7818 parms[2].type = VBOX_HGCM_SVC_PARM_32BIT;
7819 parms[2].u.uint32 = (aData.m_fWritable ? SHFL_ADD_MAPPING_F_WRITABLE : 0)
7820 | (aData.m_fAutoMount ? SHFL_ADD_MAPPING_F_AUTOMOUNT : 0)
7821 | (fSymlinksCreate ? SHFL_ADD_MAPPING_F_CREATE_SYMLINKS : 0)
7822 | (fMissing ? SHFL_ADD_MAPPING_F_MISSING : 0)
7823 ;
7824
7825 vrc = m_pVMMDev->hgcmHostCall("VBoxSharedFolders",
7826 SHFL_FN_ADD_MAPPING,
7827 SHFL_CPARMS_ADD_MAPPING, &parms[0]);
7828 RTMemFree(pFolderName);
7829 RTMemFree(pMapName);
7830
7831 if (RT_FAILURE(vrc))
7832 return setError(E_FAIL,
7833 tr("Could not create a shared folder '%s' mapped to '%s' (%Rrc)"),
7834 strName.c_str(), aData.m_strHostPath.c_str(), vrc);
7835
7836 if (fMissing)
7837 return setError(E_INVALIDARG,
7838 tr("Shared folder path '%s' does not exist on the host"),
7839 aData.m_strHostPath.c_str());
7840
7841 return S_OK;
7842}
7843
7844/**
7845 * Calls the HGCM service to remove the shared folder definition.
7846 *
7847 * @param aName Shared folder name.
7848 *
7849 * @note Must be called from under AutoVMCaller and when mpUVM != NULL!
7850 * @note Doesn't lock anything.
7851 */
7852HRESULT Console::i_removeSharedFolder(const Utf8Str &strName)
7853{
7854 ComAssertRet(strName.isNotEmpty(), E_FAIL);
7855
7856 /* sanity checks */
7857 AssertReturn(mpUVM, E_FAIL);
7858 AssertReturn(m_pVMMDev && m_pVMMDev->isShFlActive(), E_FAIL);
7859
7860 VBOXHGCMSVCPARM parms;
7861 SHFLSTRING *pMapName;
7862 size_t cbString;
7863
7864 Log(("Removing shared folder '%s'\n", strName.c_str()));
7865
7866 Bstr bstrName(strName);
7867 cbString = (bstrName.length() + 1) * sizeof(RTUTF16);
7868 if (cbString >= UINT16_MAX)
7869 return setError(E_INVALIDARG, tr("The name is too long"));
7870 pMapName = (SHFLSTRING *) RTMemAllocZ(SHFLSTRING_HEADER_SIZE + cbString);
7871 Assert(pMapName);
7872 memcpy(pMapName->String.ucs2, bstrName.raw(), cbString);
7873
7874 pMapName->u16Size = (uint16_t)cbString;
7875 pMapName->u16Length = (uint16_t)cbString - sizeof(RTUTF16);
7876
7877 parms.type = VBOX_HGCM_SVC_PARM_PTR;
7878 parms.u.pointer.addr = pMapName;
7879 parms.u.pointer.size = ShflStringSizeOfBuffer(pMapName);
7880
7881 int vrc = m_pVMMDev->hgcmHostCall("VBoxSharedFolders",
7882 SHFL_FN_REMOVE_MAPPING,
7883 1, &parms);
7884 RTMemFree(pMapName);
7885 if (RT_FAILURE(vrc))
7886 return setError(E_FAIL,
7887 tr("Could not remove the shared folder '%s' (%Rrc)"),
7888 strName.c_str(), vrc);
7889
7890 return S_OK;
7891}
7892
7893/** @callback_method_impl{FNVMATSTATE}
7894 *
7895 * @note Locks the Console object for writing.
7896 * @remarks The @a pUVM parameter can be NULL in one case where powerUpThread()
7897 * calls after the VM was destroyed.
7898 */
7899DECLCALLBACK(void) Console::i_vmstateChangeCallback(PUVM pUVM, VMSTATE enmState, VMSTATE enmOldState, void *pvUser)
7900{
7901 LogFlowFunc(("Changing state from %s to %s (pUVM=%p)\n",
7902 VMR3GetStateName(enmOldState), VMR3GetStateName(enmState), pUVM));
7903
7904 Console *that = static_cast<Console *>(pvUser);
7905 AssertReturnVoid(that);
7906
7907 AutoCaller autoCaller(that);
7908
7909 /* Note that we must let this method proceed even if Console::uninit() has
7910 * been already called. In such case this VMSTATE change is a result of:
7911 * 1) powerDown() called from uninit() itself, or
7912 * 2) VM-(guest-)initiated power off. */
7913 AssertReturnVoid( autoCaller.isOk()
7914 || that->getObjectState().getState() == ObjectState::InUninit);
7915
7916 switch (enmState)
7917 {
7918 /*
7919 * The VM has terminated
7920 */
7921 case VMSTATE_OFF:
7922 {
7923#ifdef VBOX_WITH_GUEST_PROPS
7924 if (that->i_isResetTurnedIntoPowerOff())
7925 {
7926 Bstr strPowerOffReason;
7927
7928 if (that->mfPowerOffCausedByReset)
7929 strPowerOffReason = Bstr("Reset");
7930 else
7931 strPowerOffReason = Bstr("PowerOff");
7932
7933 that->mMachine->DeleteGuestProperty(Bstr("/VirtualBox/HostInfo/VMPowerOffReason").raw());
7934 that->mMachine->SetGuestProperty(Bstr("/VirtualBox/HostInfo/VMPowerOffReason").raw(),
7935 strPowerOffReason.raw(), Bstr("RDONLYGUEST").raw());
7936 that->mMachine->SaveSettings();
7937 }
7938#endif
7939
7940 AutoWriteLock alock(that COMMA_LOCKVAL_SRC_POS);
7941
7942 if (that->mVMStateChangeCallbackDisabled)
7943 return;
7944
7945 /* Do we still think that it is running? It may happen if this is a
7946 * VM-(guest-)initiated shutdown/poweroff.
7947 */
7948 if ( that->mMachineState != MachineState_Stopping
7949 && that->mMachineState != MachineState_Saving
7950 && that->mMachineState != MachineState_Restoring
7951 && that->mMachineState != MachineState_TeleportingIn
7952 && that->mMachineState != MachineState_FaultTolerantSyncing
7953 && that->mMachineState != MachineState_TeleportingPausedVM
7954 && !that->mVMIsAlreadyPoweringOff
7955 )
7956 {
7957 LogFlowFunc(("VM has powered itself off but Console still thinks it is running. Notifying.\n"));
7958
7959 /*
7960 * Prevent powerDown() from calling VMR3PowerOff() again if this was called from
7961 * the power off state change.
7962 * When called from the Reset state make sure to call VMR3PowerOff() first.
7963 */
7964 Assert(that->mVMPoweredOff == false);
7965 that->mVMPoweredOff = true;
7966
7967 /*
7968 * request a progress object from the server
7969 * (this will set the machine state to Stopping on the server
7970 * to block others from accessing this machine)
7971 */
7972 ComPtr<IProgress> pProgress;
7973 HRESULT rc = that->mControl->BeginPoweringDown(pProgress.asOutParam());
7974 AssertComRC(rc);
7975
7976 /* sync the state with the server */
7977 that->i_setMachineStateLocally(MachineState_Stopping);
7978
7979 /* Setup task object and thread to carry out the operation
7980 * asynchronously (if we call powerDown() right here but there
7981 * is one or more mpUVM callers (added with addVMCaller()) we'll
7982 * deadlock).
7983 */
7984 std::auto_ptr<VMPowerDownTask> task(new VMPowerDownTask(that, pProgress));
7985
7986 /* If creating a task failed, this can currently mean one of
7987 * two: either Console::uninit() has been called just a ms
7988 * before (so a powerDown() call is already on the way), or
7989 * powerDown() itself is being already executed. Just do
7990 * nothing.
7991 */
7992 if (!task->isOk())
7993 {
7994 LogFlowFunc(("Console is already being uninitialized.\n"));
7995 return;
7996 }
7997
7998 int vrc = RTThreadCreate(NULL, Console::i_powerDownThread,
7999 (void *)task.get(), 0,
8000 RTTHREADTYPE_MAIN_WORKER, 0,
8001 "VMPwrDwn");
8002 AssertMsgRCReturnVoid(vrc, ("Could not create VMPowerDown thread (%Rrc)\n", vrc));
8003
8004 /* task is now owned by powerDownThread(), so release it */
8005 task.release();
8006 }
8007 break;
8008 }
8009
8010 /* The VM has been completely destroyed.
8011 *
8012 * Note: This state change can happen at two points:
8013 * 1) At the end of VMR3Destroy() if it was not called from EMT.
8014 * 2) At the end of vmR3EmulationThread if VMR3Destroy() was
8015 * called by EMT.
8016 */
8017 case VMSTATE_TERMINATED:
8018 {
8019 AutoWriteLock alock(that COMMA_LOCKVAL_SRC_POS);
8020
8021 if (that->mVMStateChangeCallbackDisabled)
8022 break;
8023
8024 /* Terminate host interface networking. If pUVM is NULL, we've been
8025 * manually called from powerUpThread() either before calling
8026 * VMR3Create() or after VMR3Create() failed, so no need to touch
8027 * networking.
8028 */
8029 if (pUVM)
8030 that->i_powerDownHostInterfaces();
8031
8032 /* From now on the machine is officially powered down or remains in
8033 * the Saved state.
8034 */
8035 switch (that->mMachineState)
8036 {
8037 default:
8038 AssertFailed();
8039 /* fall through */
8040 case MachineState_Stopping:
8041 /* successfully powered down */
8042 that->i_setMachineState(MachineState_PoweredOff);
8043 break;
8044 case MachineState_Saving:
8045 /* successfully saved */
8046 that->i_setMachineState(MachineState_Saved);
8047 break;
8048 case MachineState_Starting:
8049 /* failed to start, but be patient: set back to PoweredOff
8050 * (for similarity with the below) */
8051 that->i_setMachineState(MachineState_PoweredOff);
8052 break;
8053 case MachineState_Restoring:
8054 /* failed to load the saved state file, but be patient: set
8055 * back to Saved (to preserve the saved state file) */
8056 that->i_setMachineState(MachineState_Saved);
8057 break;
8058 case MachineState_TeleportingIn:
8059 /* Teleportation failed or was canceled. Back to powered off. */
8060 that->i_setMachineState(MachineState_PoweredOff);
8061 break;
8062 case MachineState_TeleportingPausedVM:
8063 /* Successfully teleported the VM. */
8064 that->i_setMachineState(MachineState_Teleported);
8065 break;
8066 case MachineState_FaultTolerantSyncing:
8067 /* Fault tolerant sync failed or was canceled. Back to powered off. */
8068 that->i_setMachineState(MachineState_PoweredOff);
8069 break;
8070 }
8071 break;
8072 }
8073
8074 case VMSTATE_RESETTING:
8075 {
8076#ifdef VBOX_WITH_GUEST_PROPS
8077 /* Do not take any read/write locks here! */
8078 that->i_guestPropertiesHandleVMReset();
8079#endif
8080 break;
8081 }
8082
8083 case VMSTATE_SUSPENDED:
8084 {
8085 AutoWriteLock alock(that COMMA_LOCKVAL_SRC_POS);
8086
8087 if (that->mVMStateChangeCallbackDisabled)
8088 break;
8089
8090 switch (that->mMachineState)
8091 {
8092 case MachineState_Teleporting:
8093 that->i_setMachineState(MachineState_TeleportingPausedVM);
8094 break;
8095
8096 case MachineState_LiveSnapshotting:
8097 that->i_setMachineState(MachineState_Saving);
8098 break;
8099
8100 case MachineState_TeleportingPausedVM:
8101 case MachineState_Saving:
8102 case MachineState_Restoring:
8103 case MachineState_Stopping:
8104 case MachineState_TeleportingIn:
8105 case MachineState_FaultTolerantSyncing:
8106 /* The worker thread handles the transition. */
8107 break;
8108
8109 default:
8110 AssertMsgFailed(("%s\n", Global::stringifyMachineState(that->mMachineState)));
8111 case MachineState_Running:
8112 that->i_setMachineState(MachineState_Paused);
8113 break;
8114
8115 case MachineState_Paused:
8116 /* Nothing to do. */
8117 break;
8118 }
8119 break;
8120 }
8121
8122 case VMSTATE_SUSPENDED_LS:
8123 case VMSTATE_SUSPENDED_EXT_LS:
8124 {
8125 AutoWriteLock alock(that COMMA_LOCKVAL_SRC_POS);
8126 if (that->mVMStateChangeCallbackDisabled)
8127 break;
8128 switch (that->mMachineState)
8129 {
8130 case MachineState_Teleporting:
8131 that->i_setMachineState(MachineState_TeleportingPausedVM);
8132 break;
8133
8134 case MachineState_LiveSnapshotting:
8135 that->i_setMachineState(MachineState_Saving);
8136 break;
8137
8138 case MachineState_TeleportingPausedVM:
8139 case MachineState_Saving:
8140 /* ignore */
8141 break;
8142
8143 default:
8144 AssertMsgFailed(("%s/%s -> %s\n", Global::stringifyMachineState(that->mMachineState),
8145 VMR3GetStateName(enmOldState), VMR3GetStateName(enmState) ));
8146 that->i_setMachineState(MachineState_Paused);
8147 break;
8148 }
8149 break;
8150 }
8151
8152 case VMSTATE_RUNNING:
8153 {
8154 if ( enmOldState == VMSTATE_POWERING_ON
8155 || enmOldState == VMSTATE_RESUMING
8156 || enmOldState == VMSTATE_RUNNING_FT)
8157 {
8158 AutoWriteLock alock(that COMMA_LOCKVAL_SRC_POS);
8159
8160 if (that->mVMStateChangeCallbackDisabled)
8161 break;
8162
8163 Assert( ( ( that->mMachineState == MachineState_Starting
8164 || that->mMachineState == MachineState_Paused)
8165 && enmOldState == VMSTATE_POWERING_ON)
8166 || ( ( that->mMachineState == MachineState_Restoring
8167 || that->mMachineState == MachineState_TeleportingIn
8168 || that->mMachineState == MachineState_Paused
8169 || that->mMachineState == MachineState_Saving
8170 )
8171 && enmOldState == VMSTATE_RESUMING)
8172 || ( that->mMachineState == MachineState_FaultTolerantSyncing
8173 && enmOldState == VMSTATE_RUNNING_FT));
8174
8175 that->i_setMachineState(MachineState_Running);
8176 }
8177
8178 break;
8179 }
8180
8181 case VMSTATE_RUNNING_LS:
8182 AssertMsg( that->mMachineState == MachineState_LiveSnapshotting
8183 || that->mMachineState == MachineState_Teleporting,
8184 ("%s/%s -> %s\n", Global::stringifyMachineState(that->mMachineState),
8185 VMR3GetStateName(enmOldState), VMR3GetStateName(enmState) ));
8186 break;
8187
8188 case VMSTATE_RUNNING_FT:
8189 AssertMsg(that->mMachineState == MachineState_FaultTolerantSyncing,
8190 ("%s/%s -> %s\n", Global::stringifyMachineState(that->mMachineState),
8191 VMR3GetStateName(enmOldState), VMR3GetStateName(enmState) ));
8192 break;
8193
8194 case VMSTATE_FATAL_ERROR:
8195 {
8196 AutoWriteLock alock(that COMMA_LOCKVAL_SRC_POS);
8197
8198 if (that->mVMStateChangeCallbackDisabled)
8199 break;
8200
8201 /* Fatal errors are only for running VMs. */
8202 Assert(Global::IsOnline(that->mMachineState));
8203
8204 /* Note! 'Pause' is used here in want of something better. There
8205 * are currently only two places where fatal errors might be
8206 * raised, so it is not worth adding a new externally
8207 * visible state for this yet. */
8208 that->i_setMachineState(MachineState_Paused);
8209 break;
8210 }
8211
8212 case VMSTATE_GURU_MEDITATION:
8213 {
8214 AutoWriteLock alock(that COMMA_LOCKVAL_SRC_POS);
8215
8216 if (that->mVMStateChangeCallbackDisabled)
8217 break;
8218
8219 /* Guru are only for running VMs */
8220 Assert(Global::IsOnline(that->mMachineState));
8221
8222 that->i_setMachineState(MachineState_Stuck);
8223 break;
8224 }
8225
8226 default: /* shut up gcc */
8227 break;
8228 }
8229}
8230
8231/**
8232 * Changes the clipboard mode.
8233 *
8234 * @param aClipboardMode new clipboard mode.
8235 */
8236void Console::i_changeClipboardMode(ClipboardMode_T aClipboardMode)
8237{
8238 VMMDev *pVMMDev = m_pVMMDev;
8239 Assert(pVMMDev);
8240
8241 VBOXHGCMSVCPARM parm;
8242 parm.type = VBOX_HGCM_SVC_PARM_32BIT;
8243
8244 switch (aClipboardMode)
8245 {
8246 default:
8247 case ClipboardMode_Disabled:
8248 LogRel(("Shared clipboard mode: Off\n"));
8249 parm.u.uint32 = VBOX_SHARED_CLIPBOARD_MODE_OFF;
8250 break;
8251 case ClipboardMode_GuestToHost:
8252 LogRel(("Shared clipboard mode: Guest to Host\n"));
8253 parm.u.uint32 = VBOX_SHARED_CLIPBOARD_MODE_GUEST_TO_HOST;
8254 break;
8255 case ClipboardMode_HostToGuest:
8256 LogRel(("Shared clipboard mode: Host to Guest\n"));
8257 parm.u.uint32 = VBOX_SHARED_CLIPBOARD_MODE_HOST_TO_GUEST;
8258 break;
8259 case ClipboardMode_Bidirectional:
8260 LogRel(("Shared clipboard mode: Bidirectional\n"));
8261 parm.u.uint32 = VBOX_SHARED_CLIPBOARD_MODE_BIDIRECTIONAL;
8262 break;
8263 }
8264
8265 pVMMDev->hgcmHostCall("VBoxSharedClipboard", VBOX_SHARED_CLIPBOARD_HOST_FN_SET_MODE, 1, &parm);
8266}
8267
8268/**
8269 * Changes the drag'n_drop mode.
8270 *
8271 * @param aDnDMode new drag'n'drop mode.
8272 */
8273int Console::i_changeDnDMode(DnDMode_T aDnDMode)
8274{
8275 VMMDev *pVMMDev = m_pVMMDev;
8276 AssertPtrReturn(pVMMDev, VERR_INVALID_POINTER);
8277
8278 VBOXHGCMSVCPARM parm;
8279 RT_ZERO(parm);
8280 parm.type = VBOX_HGCM_SVC_PARM_32BIT;
8281
8282 switch (aDnDMode)
8283 {
8284 default:
8285 case DnDMode_Disabled:
8286 LogRel(("Changed drag'n drop mode to: Off\n"));
8287 parm.u.uint32 = VBOX_DRAG_AND_DROP_MODE_OFF;
8288 break;
8289 case DnDMode_GuestToHost:
8290 LogRel(("Changed drag'n drop mode to: Guest to Host\n"));
8291 parm.u.uint32 = VBOX_DRAG_AND_DROP_MODE_GUEST_TO_HOST;
8292 break;
8293 case DnDMode_HostToGuest:
8294 LogRel(("Changed drag'n drop mode to: Host to Guest\n"));
8295 parm.u.uint32 = VBOX_DRAG_AND_DROP_MODE_HOST_TO_GUEST;
8296 break;
8297 case DnDMode_Bidirectional:
8298 LogRel(("Changed drag'n drop mode to: Bidirectional\n"));
8299 parm.u.uint32 = VBOX_DRAG_AND_DROP_MODE_BIDIRECTIONAL;
8300 break;
8301 }
8302
8303 int rc = pVMMDev->hgcmHostCall("VBoxDragAndDropSvc",
8304 DragAndDropSvc::HOST_DND_SET_MODE, 1, &parm);
8305 LogFlowFunc(("rc=%Rrc\n", rc));
8306 return rc;
8307}
8308
8309#ifdef VBOX_WITH_USB
8310/**
8311 * Sends a request to VMM to attach the given host device.
8312 * After this method succeeds, the attached device will appear in the
8313 * mUSBDevices collection.
8314 *
8315 * @param aHostDevice device to attach
8316 *
8317 * @note Synchronously calls EMT.
8318 */
8319HRESULT Console::i_attachUSBDevice(IUSBDevice *aHostDevice, ULONG aMaskedIfs,
8320 const Utf8Str &aCaptureFilename)
8321{
8322 AssertReturn(aHostDevice, E_FAIL);
8323 AssertReturn(!isWriteLockOnCurrentThread(), E_FAIL);
8324
8325 HRESULT hrc;
8326
8327 /*
8328 * Get the address and the Uuid, and call the pfnCreateProxyDevice roothub
8329 * method in EMT (using usbAttachCallback()).
8330 */
8331 Bstr BstrAddress;
8332 hrc = aHostDevice->COMGETTER(Address)(BstrAddress.asOutParam());
8333 ComAssertComRCRetRC(hrc);
8334
8335 Utf8Str Address(BstrAddress);
8336
8337 Bstr id;
8338 hrc = aHostDevice->COMGETTER(Id)(id.asOutParam());
8339 ComAssertComRCRetRC(hrc);
8340 Guid uuid(id);
8341
8342 BOOL fRemote = FALSE;
8343 hrc = aHostDevice->COMGETTER(Remote)(&fRemote);
8344 ComAssertComRCRetRC(hrc);
8345
8346 /* Get the VM handle. */
8347 SafeVMPtr ptrVM(this);
8348 if (!ptrVM.isOk())
8349 return ptrVM.rc();
8350
8351 LogFlowThisFunc(("Proxying USB device '%s' {%RTuuid}...\n",
8352 Address.c_str(), uuid.raw()));
8353
8354 void *pvRemoteBackend = NULL;
8355 if (fRemote)
8356 {
8357 RemoteUSBDevice *pRemoteUSBDevice = static_cast<RemoteUSBDevice *>(aHostDevice);
8358 pvRemoteBackend = i_consoleVRDPServer()->USBBackendRequestPointer(pRemoteUSBDevice->clientId(), &uuid);
8359 if (!pvRemoteBackend)
8360 return E_INVALIDARG; /* The clientId is invalid then. */
8361 }
8362
8363 USHORT portVersion = 0;
8364 hrc = aHostDevice->COMGETTER(PortVersion)(&portVersion);
8365 AssertComRCReturnRC(hrc);
8366 Assert(portVersion == 1 || portVersion == 2 || portVersion == 3);
8367
8368 int vrc = VMR3ReqCallWaitU(ptrVM.rawUVM(), 0 /* idDstCpu (saved state, see #6232) */,
8369 (PFNRT)i_usbAttachCallback, 10,
8370 this, ptrVM.rawUVM(), aHostDevice, uuid.raw(), fRemote,
8371 Address.c_str(), pvRemoteBackend, portVersion, aMaskedIfs,
8372 aCaptureFilename.isEmpty() ? NULL : aCaptureFilename.c_str());
8373 if (RT_SUCCESS(vrc))
8374 {
8375 /* Create a OUSBDevice and add it to the device list */
8376 ComObjPtr<OUSBDevice> pUSBDevice;
8377 pUSBDevice.createObject();
8378 hrc = pUSBDevice->init(aHostDevice);
8379 AssertComRC(hrc);
8380
8381 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
8382 mUSBDevices.push_back(pUSBDevice);
8383 LogFlowFunc(("Attached device {%RTuuid}\n", pUSBDevice->i_id().raw()));
8384
8385 /* notify callbacks */
8386 alock.release();
8387 i_onUSBDeviceStateChange(pUSBDevice, true /* aAttached */, NULL);
8388 }
8389 else
8390 {
8391 LogWarningThisFunc(("Failed to create proxy device for '%s' {%RTuuid} (%Rrc)\n",
8392 Address.c_str(), uuid.raw(), vrc));
8393
8394 switch (vrc)
8395 {
8396 case VERR_VUSB_NO_PORTS:
8397 hrc = setError(E_FAIL, tr("Failed to attach the USB device. (No available ports on the USB controller)."));
8398 break;
8399 case VERR_VUSB_USBFS_PERMISSION:
8400 hrc = setError(E_FAIL, tr("Not permitted to open the USB device, check usbfs options"));
8401 break;
8402 default:
8403 hrc = setError(E_FAIL, tr("Failed to create a proxy device for the USB device. (Error: %Rrc)"), vrc);
8404 break;
8405 }
8406 }
8407
8408 return hrc;
8409}
8410
8411/**
8412 * USB device attach callback used by AttachUSBDevice().
8413 * Note that AttachUSBDevice() doesn't return until this callback is executed,
8414 * so we don't use AutoCaller and don't care about reference counters of
8415 * interface pointers passed in.
8416 *
8417 * @thread EMT
8418 * @note Locks the console object for writing.
8419 */
8420//static
8421DECLCALLBACK(int)
8422Console::i_usbAttachCallback(Console *that, PUVM pUVM, IUSBDevice *aHostDevice, PCRTUUID aUuid, bool aRemote,
8423 const char *aAddress, void *pvRemoteBackend, USHORT aPortVersion, ULONG aMaskedIfs,
8424 const char *pszCaptureFilename)
8425{
8426 LogFlowFuncEnter();
8427 LogFlowFunc(("that={%p} aUuid={%RTuuid}\n", that, aUuid));
8428
8429 AssertReturn(that && aUuid, VERR_INVALID_PARAMETER);
8430 AssertReturn(!that->isWriteLockOnCurrentThread(), VERR_GENERAL_FAILURE);
8431
8432 int vrc = PDMR3UsbCreateProxyDevice(pUVM, aUuid, aRemote, aAddress, pvRemoteBackend,
8433 aPortVersion == 3 ? VUSB_STDVER_30 :
8434 aPortVersion == 2 ? VUSB_STDVER_11 : VUSB_STDVER_20,
8435 aMaskedIfs, pszCaptureFilename);
8436 LogFlowFunc(("vrc=%Rrc\n", vrc));
8437 LogFlowFuncLeave();
8438 return vrc;
8439}
8440
8441/**
8442 * Sends a request to VMM to detach the given host device. After this method
8443 * succeeds, the detached device will disappear from the mUSBDevices
8444 * collection.
8445 *
8446 * @param aHostDevice device to attach
8447 *
8448 * @note Synchronously calls EMT.
8449 */
8450HRESULT Console::i_detachUSBDevice(const ComObjPtr<OUSBDevice> &aHostDevice)
8451{
8452 AssertReturn(!isWriteLockOnCurrentThread(), E_FAIL);
8453
8454 /* Get the VM handle. */
8455 SafeVMPtr ptrVM(this);
8456 if (!ptrVM.isOk())
8457 return ptrVM.rc();
8458
8459 /* if the device is attached, then there must at least one USB hub. */
8460 AssertReturn(PDMR3UsbHasHub(ptrVM.rawUVM()), E_FAIL);
8461
8462 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
8463 LogFlowThisFunc(("Detaching USB proxy device {%RTuuid}...\n",
8464 aHostDevice->i_id().raw()));
8465
8466 /*
8467 * If this was a remote device, release the backend pointer.
8468 * The pointer was requested in usbAttachCallback.
8469 */
8470 BOOL fRemote = FALSE;
8471
8472 HRESULT hrc2 = aHostDevice->COMGETTER(Remote)(&fRemote);
8473 if (FAILED(hrc2))
8474 i_setErrorStatic(hrc2, "GetRemote() failed");
8475
8476 PCRTUUID pUuid = aHostDevice->i_id().raw();
8477 if (fRemote)
8478 {
8479 Guid guid(*pUuid);
8480 i_consoleVRDPServer()->USBBackendReleasePointer(&guid);
8481 }
8482
8483 alock.release();
8484 int vrc = VMR3ReqCallWaitU(ptrVM.rawUVM(), 0 /* idDstCpu (saved state, see #6232) */,
8485 (PFNRT)i_usbDetachCallback, 5,
8486 this, ptrVM.rawUVM(), pUuid);
8487 if (RT_SUCCESS(vrc))
8488 {
8489 LogFlowFunc(("Detached device {%RTuuid}\n", pUuid));
8490
8491 /* notify callbacks */
8492 i_onUSBDeviceStateChange(aHostDevice, false /* aAttached */, NULL);
8493 }
8494
8495 ComAssertRCRet(vrc, E_FAIL);
8496
8497 return S_OK;
8498}
8499
8500/**
8501 * USB device detach callback used by DetachUSBDevice().
8502 *
8503 * Note that DetachUSBDevice() doesn't return until this callback is executed,
8504 * so we don't use AutoCaller and don't care about reference counters of
8505 * interface pointers passed in.
8506 *
8507 * @thread EMT
8508 */
8509//static
8510DECLCALLBACK(int)
8511Console::i_usbDetachCallback(Console *that, PUVM pUVM, PCRTUUID aUuid)
8512{
8513 LogFlowFuncEnter();
8514 LogFlowFunc(("that={%p} aUuid={%RTuuid}\n", that, aUuid));
8515
8516 AssertReturn(that && aUuid, VERR_INVALID_PARAMETER);
8517 AssertReturn(!that->isWriteLockOnCurrentThread(), VERR_GENERAL_FAILURE);
8518
8519 int vrc = PDMR3UsbDetachDevice(pUVM, aUuid);
8520
8521 LogFlowFunc(("vrc=%Rrc\n", vrc));
8522 LogFlowFuncLeave();
8523 return vrc;
8524}
8525#endif /* VBOX_WITH_USB */
8526
8527/* Note: FreeBSD needs this whether netflt is used or not. */
8528#if ((defined(RT_OS_LINUX) && !defined(VBOX_WITH_NETFLT)) || defined(RT_OS_FREEBSD))
8529/**
8530 * Helper function to handle host interface device creation and attachment.
8531 *
8532 * @param networkAdapter the network adapter which attachment should be reset
8533 * @return COM status code
8534 *
8535 * @note The caller must lock this object for writing.
8536 *
8537 * @todo Move this back into the driver!
8538 */
8539HRESULT Console::i_attachToTapInterface(INetworkAdapter *networkAdapter)
8540{
8541 LogFlowThisFunc(("\n"));
8542 /* sanity check */
8543 AssertReturn(isWriteLockOnCurrentThread(), E_FAIL);
8544
8545# ifdef VBOX_STRICT
8546 /* paranoia */
8547 NetworkAttachmentType_T attachment;
8548 networkAdapter->COMGETTER(AttachmentType)(&attachment);
8549 Assert(attachment == NetworkAttachmentType_Bridged);
8550# endif /* VBOX_STRICT */
8551
8552 HRESULT rc = S_OK;
8553
8554 ULONG slot = 0;
8555 rc = networkAdapter->COMGETTER(Slot)(&slot);
8556 AssertComRC(rc);
8557
8558# ifdef RT_OS_LINUX
8559 /*
8560 * Allocate a host interface device
8561 */
8562 int rcVBox = RTFileOpen(&maTapFD[slot], "/dev/net/tun",
8563 RTFILE_O_READWRITE | RTFILE_O_OPEN | RTFILE_O_DENY_NONE | RTFILE_O_INHERIT);
8564 if (RT_SUCCESS(rcVBox))
8565 {
8566 /*
8567 * Set/obtain the tap interface.
8568 */
8569 struct ifreq IfReq;
8570 RT_ZERO(IfReq);
8571 /* The name of the TAP interface we are using */
8572 Bstr tapDeviceName;
8573 rc = networkAdapter->COMGETTER(BridgedInterface)(tapDeviceName.asOutParam());
8574 if (FAILED(rc))
8575 tapDeviceName.setNull(); /* Is this necessary? */
8576 if (tapDeviceName.isEmpty())
8577 {
8578 LogRel(("No TAP device name was supplied.\n"));
8579 rc = setError(E_FAIL, tr("No TAP device name was supplied for the host networking interface"));
8580 }
8581
8582 if (SUCCEEDED(rc))
8583 {
8584 /* If we are using a static TAP device then try to open it. */
8585 Utf8Str str(tapDeviceName);
8586 RTStrCopy(IfReq.ifr_name, sizeof(IfReq.ifr_name), str.c_str()); /** @todo bitch about names which are too long... */
8587 IfReq.ifr_flags = IFF_TAP | IFF_NO_PI;
8588 rcVBox = ioctl(RTFileToNative(maTapFD[slot]), TUNSETIFF, &IfReq);
8589 if (rcVBox != 0)
8590 {
8591 LogRel(("Failed to open the host network interface %ls\n", tapDeviceName.raw()));
8592 rc = setError(E_FAIL,
8593 tr("Failed to open the host network interface %ls"),
8594 tapDeviceName.raw());
8595 }
8596 }
8597 if (SUCCEEDED(rc))
8598 {
8599 /*
8600 * Make it pollable.
8601 */
8602 if (fcntl(RTFileToNative(maTapFD[slot]), F_SETFL, O_NONBLOCK) != -1)
8603 {
8604 Log(("i_attachToTapInterface: %RTfile %ls\n", maTapFD[slot], tapDeviceName.raw()));
8605 /*
8606 * Here is the right place to communicate the TAP file descriptor and
8607 * the host interface name to the server if/when it becomes really
8608 * necessary.
8609 */
8610 maTAPDeviceName[slot] = tapDeviceName;
8611 rcVBox = VINF_SUCCESS;
8612 }
8613 else
8614 {
8615 int iErr = errno;
8616
8617 LogRel(("Configuration error: Failed to configure /dev/net/tun non blocking. Error: %s\n", strerror(iErr)));
8618 rcVBox = VERR_HOSTIF_BLOCKING;
8619 rc = setError(E_FAIL,
8620 tr("could not set up the host networking device for non blocking access: %s"),
8621 strerror(errno));
8622 }
8623 }
8624 }
8625 else
8626 {
8627 LogRel(("Configuration error: Failed to open /dev/net/tun rc=%Rrc\n", rcVBox));
8628 switch (rcVBox)
8629 {
8630 case VERR_ACCESS_DENIED:
8631 /* will be handled by our caller */
8632 rc = rcVBox;
8633 break;
8634 default:
8635 rc = setError(E_FAIL,
8636 tr("Could not set up the host networking device: %Rrc"),
8637 rcVBox);
8638 break;
8639 }
8640 }
8641
8642# elif defined(RT_OS_FREEBSD)
8643 /*
8644 * Set/obtain the tap interface.
8645 */
8646 /* The name of the TAP interface we are using */
8647 Bstr tapDeviceName;
8648 rc = networkAdapter->COMGETTER(BridgedInterface)(tapDeviceName.asOutParam());
8649 if (FAILED(rc))
8650 tapDeviceName.setNull(); /* Is this necessary? */
8651 if (tapDeviceName.isEmpty())
8652 {
8653 LogRel(("No TAP device name was supplied.\n"));
8654 rc = setError(E_FAIL, tr("No TAP device name was supplied for the host networking interface"));
8655 }
8656 char szTapdev[1024] = "/dev/";
8657 /* If we are using a static TAP device then try to open it. */
8658 Utf8Str str(tapDeviceName);
8659 if (str.length() + strlen(szTapdev) <= sizeof(szTapdev))
8660 strcat(szTapdev, str.c_str());
8661 else
8662 memcpy(szTapdev + strlen(szTapdev), str.c_str(),
8663 sizeof(szTapdev) - strlen(szTapdev) - 1); /** @todo bitch about names which are too long... */
8664 int rcVBox = RTFileOpen(&maTapFD[slot], szTapdev,
8665 RTFILE_O_READWRITE | RTFILE_O_OPEN | RTFILE_O_DENY_NONE | RTFILE_O_INHERIT | RTFILE_O_NON_BLOCK);
8666
8667 if (RT_SUCCESS(rcVBox))
8668 maTAPDeviceName[slot] = tapDeviceName;
8669 else
8670 {
8671 switch (rcVBox)
8672 {
8673 case VERR_ACCESS_DENIED:
8674 /* will be handled by our caller */
8675 rc = rcVBox;
8676 break;
8677 default:
8678 rc = setError(E_FAIL,
8679 tr("Failed to open the host network interface %ls"),
8680 tapDeviceName.raw());
8681 break;
8682 }
8683 }
8684# else
8685# error "huh?"
8686# endif
8687 /* in case of failure, cleanup. */
8688 if (RT_FAILURE(rcVBox) && SUCCEEDED(rc))
8689 {
8690 LogRel(("General failure attaching to host interface\n"));
8691 rc = setError(E_FAIL,
8692 tr("General failure attaching to host interface"));
8693 }
8694 LogFlowThisFunc(("rc=%d\n", rc));
8695 return rc;
8696}
8697
8698
8699/**
8700 * Helper function to handle detachment from a host interface
8701 *
8702 * @param networkAdapter the network adapter which attachment should be reset
8703 * @return COM status code
8704 *
8705 * @note The caller must lock this object for writing.
8706 *
8707 * @todo Move this back into the driver!
8708 */
8709HRESULT Console::i_detachFromTapInterface(INetworkAdapter *networkAdapter)
8710{
8711 /* sanity check */
8712 LogFlowThisFunc(("\n"));
8713 AssertReturn(isWriteLockOnCurrentThread(), E_FAIL);
8714
8715 HRESULT rc = S_OK;
8716# ifdef VBOX_STRICT
8717 /* paranoia */
8718 NetworkAttachmentType_T attachment;
8719 networkAdapter->COMGETTER(AttachmentType)(&attachment);
8720 Assert(attachment == NetworkAttachmentType_Bridged);
8721# endif /* VBOX_STRICT */
8722
8723 ULONG slot = 0;
8724 rc = networkAdapter->COMGETTER(Slot)(&slot);
8725 AssertComRC(rc);
8726
8727 /* is there an open TAP device? */
8728 if (maTapFD[slot] != NIL_RTFILE)
8729 {
8730 /*
8731 * Close the file handle.
8732 */
8733 Bstr tapDeviceName, tapTerminateApplication;
8734 bool isStatic = true;
8735 rc = networkAdapter->COMGETTER(BridgedInterface)(tapDeviceName.asOutParam());
8736 if (FAILED(rc) || tapDeviceName.isEmpty())
8737 {
8738 /* If the name is empty, this is a dynamic TAP device, so close it now,
8739 so that the termination script can remove the interface. Otherwise we still
8740 need the FD to pass to the termination script. */
8741 isStatic = false;
8742 int rcVBox = RTFileClose(maTapFD[slot]);
8743 AssertRC(rcVBox);
8744 maTapFD[slot] = NIL_RTFILE;
8745 }
8746 if (isStatic)
8747 {
8748 /* If we are using a static TAP device, we close it now, after having called the
8749 termination script. */
8750 int rcVBox = RTFileClose(maTapFD[slot]);
8751 AssertRC(rcVBox);
8752 }
8753 /* the TAP device name and handle are no longer valid */
8754 maTapFD[slot] = NIL_RTFILE;
8755 maTAPDeviceName[slot] = "";
8756 }
8757 LogFlowThisFunc(("returning %d\n", rc));
8758 return rc;
8759}
8760#endif /* (RT_OS_LINUX || RT_OS_FREEBSD) && !VBOX_WITH_NETFLT */
8761
8762/**
8763 * Called at power down to terminate host interface networking.
8764 *
8765 * @note The caller must lock this object for writing.
8766 */
8767HRESULT Console::i_powerDownHostInterfaces()
8768{
8769 LogFlowThisFunc(("\n"));
8770
8771 /* sanity check */
8772 AssertReturn(isWriteLockOnCurrentThread(), E_FAIL);
8773
8774 /*
8775 * host interface termination handling
8776 */
8777 HRESULT rc = S_OK;
8778 ComPtr<IVirtualBox> pVirtualBox;
8779 mMachine->COMGETTER(Parent)(pVirtualBox.asOutParam());
8780 ComPtr<ISystemProperties> pSystemProperties;
8781 if (pVirtualBox)
8782 pVirtualBox->COMGETTER(SystemProperties)(pSystemProperties.asOutParam());
8783 ChipsetType_T chipsetType = ChipsetType_PIIX3;
8784 mMachine->COMGETTER(ChipsetType)(&chipsetType);
8785 ULONG maxNetworkAdapters = 0;
8786 if (pSystemProperties)
8787 pSystemProperties->GetMaxNetworkAdapters(chipsetType, &maxNetworkAdapters);
8788
8789 for (ULONG slot = 0; slot < maxNetworkAdapters; slot++)
8790 {
8791 ComPtr<INetworkAdapter> pNetworkAdapter;
8792 rc = mMachine->GetNetworkAdapter(slot, pNetworkAdapter.asOutParam());
8793 if (FAILED(rc)) break;
8794
8795 BOOL enabled = FALSE;
8796 pNetworkAdapter->COMGETTER(Enabled)(&enabled);
8797 if (!enabled)
8798 continue;
8799
8800 NetworkAttachmentType_T attachment;
8801 pNetworkAdapter->COMGETTER(AttachmentType)(&attachment);
8802 if (attachment == NetworkAttachmentType_Bridged)
8803 {
8804#if ((defined(RT_OS_LINUX) || defined(RT_OS_FREEBSD)) && !defined(VBOX_WITH_NETFLT))
8805 HRESULT rc2 = i_detachFromTapInterface(pNetworkAdapter);
8806 if (FAILED(rc2) && SUCCEEDED(rc))
8807 rc = rc2;
8808#endif /* (RT_OS_LINUX || RT_OS_FREEBSD) && !VBOX_WITH_NETFLT */
8809 }
8810 }
8811
8812 return rc;
8813}
8814
8815
8816/**
8817 * Process callback handler for VMR3LoadFromFile, VMR3LoadFromStream, VMR3Save
8818 * and VMR3Teleport.
8819 *
8820 * @param pUVM The user mode VM handle.
8821 * @param uPercent Completion percentage (0-100).
8822 * @param pvUser Pointer to an IProgress instance.
8823 * @return VINF_SUCCESS.
8824 */
8825/*static*/
8826DECLCALLBACK(int) Console::i_stateProgressCallback(PUVM pUVM, unsigned uPercent, void *pvUser)
8827{
8828 IProgress *pProgress = static_cast<IProgress *>(pvUser);
8829
8830 /* update the progress object */
8831 if (pProgress)
8832 pProgress->SetCurrentOperationProgress(uPercent);
8833
8834 NOREF(pUVM);
8835 return VINF_SUCCESS;
8836}
8837
8838/**
8839 * @copydoc FNVMATERROR
8840 *
8841 * @remarks Might be some tiny serialization concerns with access to the string
8842 * object here...
8843 */
8844/*static*/ DECLCALLBACK(void)
8845Console::i_genericVMSetErrorCallback(PUVM pUVM, void *pvUser, int rc, RT_SRC_POS_DECL,
8846 const char *pszErrorFmt, va_list va)
8847{
8848 Utf8Str *pErrorText = (Utf8Str *)pvUser;
8849 AssertPtr(pErrorText);
8850
8851 /* We ignore RT_SRC_POS_DECL arguments to avoid confusion of end-users. */
8852 va_list va2;
8853 va_copy(va2, va);
8854
8855 /* Append to any the existing error message. */
8856 if (pErrorText->length())
8857 *pErrorText = Utf8StrFmt("%s.\n%N (%Rrc)", pErrorText->c_str(),
8858 pszErrorFmt, &va2, rc, rc);
8859 else
8860 *pErrorText = Utf8StrFmt("%N (%Rrc)", pszErrorFmt, &va2, rc, rc);
8861
8862 va_end(va2);
8863
8864 NOREF(pUVM);
8865}
8866
8867/**
8868 * VM runtime error callback function.
8869 * See VMSetRuntimeError for the detailed description of parameters.
8870 *
8871 * @param pUVM The user mode VM handle. Ignored, so passing NULL
8872 * is fine.
8873 * @param pvUser The user argument, pointer to the Console instance.
8874 * @param fFlags The action flags. See VMSETRTERR_FLAGS_*.
8875 * @param pszErrorId Error ID string.
8876 * @param pszFormat Error message format string.
8877 * @param va Error message arguments.
8878 * @thread EMT.
8879 */
8880/* static */ DECLCALLBACK(void)
8881Console::i_setVMRuntimeErrorCallback(PUVM pUVM, void *pvUser, uint32_t fFlags,
8882 const char *pszErrorId,
8883 const char *pszFormat, va_list va)
8884{
8885 bool const fFatal = !!(fFlags & VMSETRTERR_FLAGS_FATAL);
8886 LogFlowFuncEnter();
8887
8888 Console *that = static_cast<Console *>(pvUser);
8889 AssertReturnVoid(that);
8890
8891 Utf8Str message(pszFormat, va);
8892
8893 LogRel(("Console: VM runtime error: fatal=%RTbool, errorID=%s message=\"%s\"\n",
8894 fFatal, pszErrorId, message.c_str()));
8895
8896 /* Set guest property if the reason of the error is a missing DEK for a disk. */
8897 if (!RTStrCmp(pszErrorId, "DrvVD_DEKMISSING"))
8898 {
8899 that->mMachine->DeleteGuestProperty(Bstr("/VirtualBox/HostInfo/DekMissing").raw());
8900 that->mMachine->SetGuestProperty(Bstr("/VirtualBox/HostInfo/DekMissing").raw(),
8901 Bstr("1").raw(), Bstr("RDONLYGUEST").raw());
8902 that->mMachine->SaveSettings();
8903 }
8904
8905
8906 that->i_onRuntimeError(BOOL(fFatal), Bstr(pszErrorId).raw(), Bstr(message).raw());
8907
8908 LogFlowFuncLeave(); NOREF(pUVM);
8909}
8910
8911/**
8912 * Captures USB devices that match filters of the VM.
8913 * Called at VM startup.
8914 *
8915 * @param pUVM The VM handle.
8916 */
8917HRESULT Console::i_captureUSBDevices(PUVM pUVM)
8918{
8919 LogFlowThisFunc(("\n"));
8920
8921 /* sanity check */
8922 AssertReturn(!isWriteLockOnCurrentThread(), E_FAIL);
8923 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
8924
8925 /* If the machine has a USB controller, ask the USB proxy service to
8926 * capture devices */
8927 if (mfVMHasUsbController)
8928 {
8929 /* release the lock before calling Host in VBoxSVC since Host may call
8930 * us back from under its lock (e.g. onUSBDeviceAttach()) which would
8931 * produce an inter-process dead-lock otherwise. */
8932 alock.release();
8933
8934 HRESULT hrc = mControl->AutoCaptureUSBDevices();
8935 ComAssertComRCRetRC(hrc);
8936 }
8937
8938 return S_OK;
8939}
8940
8941
8942/**
8943 * Detach all USB device which are attached to the VM for the
8944 * purpose of clean up and such like.
8945 */
8946void Console::i_detachAllUSBDevices(bool aDone)
8947{
8948 LogFlowThisFunc(("aDone=%RTbool\n", aDone));
8949
8950 /* sanity check */
8951 AssertReturnVoid(!isWriteLockOnCurrentThread());
8952 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
8953
8954 mUSBDevices.clear();
8955
8956 /* release the lock before calling Host in VBoxSVC since Host may call
8957 * us back from under its lock (e.g. onUSBDeviceAttach()) which would
8958 * produce an inter-process dead-lock otherwise. */
8959 alock.release();
8960
8961 mControl->DetachAllUSBDevices(aDone);
8962}
8963
8964/**
8965 * @note Locks this object for writing.
8966 */
8967void Console::i_processRemoteUSBDevices(uint32_t u32ClientId, VRDEUSBDEVICEDESC *pDevList, uint32_t cbDevList, bool fDescExt)
8968{
8969 LogFlowThisFuncEnter();
8970 LogFlowThisFunc(("u32ClientId = %d, pDevList=%p, cbDevList = %d, fDescExt = %d\n",
8971 u32ClientId, pDevList, cbDevList, fDescExt));
8972
8973 AutoCaller autoCaller(this);
8974 if (!autoCaller.isOk())
8975 {
8976 /* Console has been already uninitialized, deny request */
8977 AssertMsgFailed(("Console is already uninitialized\n"));
8978 LogFlowThisFunc(("Console is already uninitialized\n"));
8979 LogFlowThisFuncLeave();
8980 return;
8981 }
8982
8983 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
8984
8985 /*
8986 * Mark all existing remote USB devices as dirty.
8987 */
8988 for (RemoteUSBDeviceList::iterator it = mRemoteUSBDevices.begin();
8989 it != mRemoteUSBDevices.end();
8990 ++it)
8991 {
8992 (*it)->dirty(true);
8993 }
8994
8995 /*
8996 * Process the pDevList and add devices those are not already in the mRemoteUSBDevices list.
8997 */
8998 /** @todo (sunlover) REMOTE_USB Strict validation of the pDevList. */
8999 VRDEUSBDEVICEDESC *e = pDevList;
9000
9001 /* The cbDevList condition must be checked first, because the function can
9002 * receive pDevList = NULL and cbDevList = 0 on client disconnect.
9003 */
9004 while (cbDevList >= 2 && e->oNext)
9005 {
9006 /* Sanitize incoming strings in case they aren't valid UTF-8. */
9007 if (e->oManufacturer)
9008 RTStrPurgeEncoding((char *)e + e->oManufacturer);
9009 if (e->oProduct)
9010 RTStrPurgeEncoding((char *)e + e->oProduct);
9011 if (e->oSerialNumber)
9012 RTStrPurgeEncoding((char *)e + e->oSerialNumber);
9013
9014 LogFlowThisFunc(("vendor %04X, product %04X, name = %s\n",
9015 e->idVendor, e->idProduct,
9016 e->oProduct? (char *)e + e->oProduct: ""));
9017
9018 bool fNewDevice = true;
9019
9020 for (RemoteUSBDeviceList::iterator it = mRemoteUSBDevices.begin();
9021 it != mRemoteUSBDevices.end();
9022 ++it)
9023 {
9024 if ((*it)->devId() == e->id
9025 && (*it)->clientId() == u32ClientId)
9026 {
9027 /* The device is already in the list. */
9028 (*it)->dirty(false);
9029 fNewDevice = false;
9030 break;
9031 }
9032 }
9033
9034 if (fNewDevice)
9035 {
9036 LogRel(("Remote USB: ++++ Vendor %04X. Product %04X. Name = [%s].\n",
9037 e->idVendor, e->idProduct, e->oProduct? (char *)e + e->oProduct: ""));
9038
9039 /* Create the device object and add the new device to list. */
9040 ComObjPtr<RemoteUSBDevice> pUSBDevice;
9041 pUSBDevice.createObject();
9042 pUSBDevice->init(u32ClientId, e, fDescExt);
9043
9044 mRemoteUSBDevices.push_back(pUSBDevice);
9045
9046 /* Check if the device is ok for current USB filters. */
9047 BOOL fMatched = FALSE;
9048 ULONG fMaskedIfs = 0;
9049
9050 HRESULT hrc = mControl->RunUSBDeviceFilters(pUSBDevice, &fMatched, &fMaskedIfs);
9051
9052 AssertComRC(hrc);
9053
9054 LogFlowThisFunc(("USB filters return %d %#x\n", fMatched, fMaskedIfs));
9055
9056 if (fMatched)
9057 {
9058 alock.release();
9059 hrc = i_onUSBDeviceAttach(pUSBDevice, NULL, fMaskedIfs, Utf8Str());
9060 alock.acquire();
9061
9062 /// @todo (r=dmik) warning reporting subsystem
9063
9064 if (hrc == S_OK)
9065 {
9066 LogFlowThisFunc(("Device attached\n"));
9067 pUSBDevice->captured(true);
9068 }
9069 }
9070 }
9071
9072 if (cbDevList < e->oNext)
9073 {
9074 LogWarningThisFunc(("cbDevList %d > oNext %d\n",
9075 cbDevList, e->oNext));
9076 break;
9077 }
9078
9079 cbDevList -= e->oNext;
9080
9081 e = (VRDEUSBDEVICEDESC *)((uint8_t *)e + e->oNext);
9082 }
9083
9084 /*
9085 * Remove dirty devices, that is those which are not reported by the server anymore.
9086 */
9087 for (;;)
9088 {
9089 ComObjPtr<RemoteUSBDevice> pUSBDevice;
9090
9091 RemoteUSBDeviceList::iterator it = mRemoteUSBDevices.begin();
9092 while (it != mRemoteUSBDevices.end())
9093 {
9094 if ((*it)->dirty())
9095 {
9096 pUSBDevice = *it;
9097 break;
9098 }
9099
9100 ++it;
9101 }
9102
9103 if (!pUSBDevice)
9104 {
9105 break;
9106 }
9107
9108 USHORT vendorId = 0;
9109 pUSBDevice->COMGETTER(VendorId)(&vendorId);
9110
9111 USHORT productId = 0;
9112 pUSBDevice->COMGETTER(ProductId)(&productId);
9113
9114 Bstr product;
9115 pUSBDevice->COMGETTER(Product)(product.asOutParam());
9116
9117 LogRel(("Remote USB: ---- Vendor %04X. Product %04X. Name = [%ls].\n",
9118 vendorId, productId, product.raw()));
9119
9120 /* Detach the device from VM. */
9121 if (pUSBDevice->captured())
9122 {
9123 Bstr uuid;
9124 pUSBDevice->COMGETTER(Id)(uuid.asOutParam());
9125 alock.release();
9126 i_onUSBDeviceDetach(uuid.raw(), NULL);
9127 alock.acquire();
9128 }
9129
9130 /* And remove it from the list. */
9131 mRemoteUSBDevices.erase(it);
9132 }
9133
9134 LogFlowThisFuncLeave();
9135}
9136
9137/**
9138 * Progress cancelation callback for fault tolerance VM poweron
9139 */
9140static void faultToleranceProgressCancelCallback(void *pvUser)
9141{
9142 PUVM pUVM = (PUVM)pvUser;
9143
9144 if (pUVM)
9145 FTMR3CancelStandby(pUVM);
9146}
9147
9148/**
9149 * Thread function which starts the VM (also from saved state) and
9150 * track progress.
9151 *
9152 * @param Thread The thread id.
9153 * @param pvUser Pointer to a VMPowerUpTask structure.
9154 * @return VINF_SUCCESS (ignored).
9155 *
9156 * @note Locks the Console object for writing.
9157 */
9158/*static*/
9159DECLCALLBACK(int) Console::i_powerUpThread(RTTHREAD Thread, void *pvUser)
9160{
9161 LogFlowFuncEnter();
9162
9163 std::auto_ptr<VMPowerUpTask> task(static_cast<VMPowerUpTask *>(pvUser));
9164 AssertReturn(task.get(), VERR_INVALID_PARAMETER);
9165
9166 AssertReturn(!task->mConsole.isNull(), VERR_INVALID_PARAMETER);
9167 AssertReturn(!task->mProgress.isNull(), VERR_INVALID_PARAMETER);
9168
9169 VirtualBoxBase::initializeComForThread();
9170
9171 HRESULT rc = S_OK;
9172 int vrc = VINF_SUCCESS;
9173
9174 /* Set up a build identifier so that it can be seen from core dumps what
9175 * exact build was used to produce the core. */
9176 static char saBuildID[40];
9177 RTStrPrintf(saBuildID, sizeof(saBuildID), "%s%s%s%s VirtualBox %s r%u %s%s%s%s",
9178 "BU", "IL", "DI", "D", RTBldCfgVersion(), RTBldCfgRevision(), "BU", "IL", "DI", "D");
9179
9180 ComObjPtr<Console> pConsole = task->mConsole;
9181
9182 /* Note: no need to use addCaller() because VMPowerUpTask does that */
9183
9184 /* The lock is also used as a signal from the task initiator (which
9185 * releases it only after RTThreadCreate()) that we can start the job */
9186 AutoWriteLock alock(pConsole COMMA_LOCKVAL_SRC_POS);
9187
9188 /* sanity */
9189 Assert(pConsole->mpUVM == NULL);
9190
9191 try
9192 {
9193 // Create the VMM device object, which starts the HGCM thread; do this only
9194 // once for the console, for the pathological case that the same console
9195 // object is used to power up a VM twice. VirtualBox 4.0: we now do that
9196 // here instead of the Console constructor (see Console::init())
9197 if (!pConsole->m_pVMMDev)
9198 {
9199 pConsole->m_pVMMDev = new VMMDev(pConsole);
9200 AssertReturn(pConsole->m_pVMMDev, E_FAIL);
9201 }
9202
9203 /* wait for auto reset ops to complete so that we can successfully lock
9204 * the attached hard disks by calling LockMedia() below */
9205 for (VMPowerUpTask::ProgressList::const_iterator
9206 it = task->hardDiskProgresses.begin();
9207 it != task->hardDiskProgresses.end(); ++it)
9208 {
9209 HRESULT rc2 = (*it)->WaitForCompletion(-1);
9210 AssertComRC(rc2);
9211
9212 rc = task->mProgress->SetNextOperation(BstrFmt(tr("Disk Image Reset Operation - Immutable Image")).raw(), 1);
9213 AssertComRCReturnRC(rc);
9214 }
9215
9216 /*
9217 * Lock attached media. This method will also check their accessibility.
9218 * If we're a teleporter, we'll have to postpone this action so we can
9219 * migrate between local processes.
9220 *
9221 * Note! The media will be unlocked automatically by
9222 * SessionMachine::i_setMachineState() when the VM is powered down.
9223 */
9224 if ( !task->mTeleporterEnabled
9225 && task->mEnmFaultToleranceState != FaultToleranceState_Standby)
9226 {
9227 rc = pConsole->mControl->LockMedia();
9228 if (FAILED(rc)) throw rc;
9229 }
9230
9231 /* Create the VRDP server. In case of headless operation, this will
9232 * also create the framebuffer, required at VM creation.
9233 */
9234 ConsoleVRDPServer *server = pConsole->i_consoleVRDPServer();
9235 Assert(server);
9236
9237 /* Does VRDP server call Console from the other thread?
9238 * Not sure (and can change), so release the lock just in case.
9239 */
9240 alock.release();
9241 vrc = server->Launch();
9242 alock.acquire();
9243
9244 if (vrc == VERR_NET_ADDRESS_IN_USE)
9245 {
9246 Utf8Str errMsg;
9247 Bstr bstr;
9248 pConsole->mVRDEServer->GetVRDEProperty(Bstr("TCP/Ports").raw(), bstr.asOutParam());
9249 Utf8Str ports = bstr;
9250 errMsg = Utf8StrFmt(tr("VirtualBox Remote Desktop Extension server can't bind to the port: %s"),
9251 ports.c_str());
9252 LogRel(("VRDE: Warning: failed to launch VRDE server (%Rrc): '%s'\n",
9253 vrc, errMsg.c_str()));
9254 }
9255 else if (vrc == VINF_NOT_SUPPORTED)
9256 {
9257 /* This means that the VRDE is not installed. */
9258 LogRel(("VRDE: VirtualBox Remote Desktop Extension is not available.\n"));
9259 }
9260 else if (RT_FAILURE(vrc))
9261 {
9262 /* Fail, if the server is installed but can't start. */
9263 Utf8Str errMsg;
9264 switch (vrc)
9265 {
9266 case VERR_FILE_NOT_FOUND:
9267 {
9268 /* VRDE library file is missing. */
9269 errMsg = Utf8StrFmt(tr("Could not find the VirtualBox Remote Desktop Extension library."));
9270 break;
9271 }
9272 default:
9273 errMsg = Utf8StrFmt(tr("Failed to launch Remote Desktop Extension server (%Rrc)"),
9274 vrc);
9275 }
9276 LogRel(("VRDE: Failed: (%Rrc), error message: '%s'\n",
9277 vrc, errMsg.c_str()));
9278 throw i_setErrorStatic(E_FAIL, errMsg.c_str());
9279 }
9280
9281 ComPtr<IMachine> pMachine = pConsole->i_machine();
9282 ULONG cCpus = 1;
9283 pMachine->COMGETTER(CPUCount)(&cCpus);
9284
9285 /*
9286 * Create the VM
9287 *
9288 * Note! Release the lock since EMT will call Console. It's safe because
9289 * mMachineState is either Starting or Restoring state here.
9290 */
9291 alock.release();
9292
9293 PVM pVM;
9294 vrc = VMR3Create(cCpus,
9295 pConsole->mpVmm2UserMethods,
9296 Console::i_genericVMSetErrorCallback,
9297 &task->mErrorMsg,
9298 task->mConfigConstructor,
9299 static_cast<Console *>(pConsole),
9300 &pVM, NULL);
9301
9302 alock.acquire();
9303
9304 /* Enable client connections to the server. */
9305 pConsole->i_consoleVRDPServer()->EnableConnections();
9306
9307 if (RT_SUCCESS(vrc))
9308 {
9309 do
9310 {
9311 /*
9312 * Register our load/save state file handlers
9313 */
9314 vrc = SSMR3RegisterExternal(pConsole->mpUVM, sSSMConsoleUnit, 0 /*iInstance*/, sSSMConsoleVer, 0 /* cbGuess */,
9315 NULL, NULL, NULL,
9316 NULL, i_saveStateFileExec, NULL,
9317 NULL, i_loadStateFileExec, NULL,
9318 static_cast<Console *>(pConsole));
9319 AssertRCBreak(vrc);
9320
9321 vrc = static_cast<Console *>(pConsole)->i_getDisplay()->i_registerSSM(pConsole->mpUVM);
9322 AssertRC(vrc);
9323 if (RT_FAILURE(vrc))
9324 break;
9325
9326 /*
9327 * Synchronize debugger settings
9328 */
9329 MachineDebugger *machineDebugger = pConsole->i_getMachineDebugger();
9330 if (machineDebugger)
9331 machineDebugger->i_flushQueuedSettings();
9332
9333 /*
9334 * Shared Folders
9335 */
9336 if (pConsole->m_pVMMDev->isShFlActive())
9337 {
9338 /* Does the code below call Console from the other thread?
9339 * Not sure, so release the lock just in case. */
9340 alock.release();
9341
9342 for (SharedFolderDataMap::const_iterator it = task->mSharedFolders.begin();
9343 it != task->mSharedFolders.end();
9344 ++it)
9345 {
9346 const SharedFolderData &d = it->second;
9347 rc = pConsole->i_createSharedFolder(it->first, d);
9348 if (FAILED(rc))
9349 {
9350 ErrorInfoKeeper eik;
9351 pConsole->i_setVMRuntimeErrorCallbackF(0, "BrokenSharedFolder",
9352 N_("The shared folder '%s' could not be set up: %ls.\n"
9353 "The shared folder setup will not be complete. It is recommended to power down the virtual "
9354 "machine and fix the shared folder settings while the machine is not running"),
9355 it->first.c_str(), eik.getText().raw());
9356 }
9357 }
9358 if (FAILED(rc))
9359 rc = S_OK; // do not fail with broken shared folders
9360
9361 /* acquire the lock again */
9362 alock.acquire();
9363 }
9364
9365 /* release the lock before a lengthy operation */
9366 alock.release();
9367
9368 /*
9369 * Capture USB devices.
9370 */
9371 rc = pConsole->i_captureUSBDevices(pConsole->mpUVM);
9372 if (FAILED(rc))
9373 break;
9374
9375 /* Load saved state? */
9376 if (task->mSavedStateFile.length())
9377 {
9378 LogFlowFunc(("Restoring saved state from '%s'...\n",
9379 task->mSavedStateFile.c_str()));
9380
9381 vrc = VMR3LoadFromFile(pConsole->mpUVM,
9382 task->mSavedStateFile.c_str(),
9383 Console::i_stateProgressCallback,
9384 static_cast<IProgress *>(task->mProgress));
9385
9386 if (RT_SUCCESS(vrc))
9387 {
9388 if (task->mStartPaused)
9389 /* done */
9390 pConsole->i_setMachineState(MachineState_Paused);
9391 else
9392 {
9393 /* Start/Resume the VM execution */
9394#ifdef VBOX_WITH_EXTPACK
9395 vrc = pConsole->mptrExtPackManager->i_callAllVmPowerOnHooks(pConsole, pVM);
9396#endif
9397 if (RT_SUCCESS(vrc))
9398 vrc = VMR3Resume(pConsole->mpUVM, VMRESUMEREASON_STATE_RESTORED);
9399 AssertLogRelRC(vrc);
9400 }
9401 }
9402
9403 /* Power off in case we failed loading or resuming the VM */
9404 if (RT_FAILURE(vrc))
9405 {
9406 int vrc2 = VMR3PowerOff(pConsole->mpUVM); AssertLogRelRC(vrc2);
9407#ifdef VBOX_WITH_EXTPACK
9408 pConsole->mptrExtPackManager->i_callAllVmPowerOffHooks(pConsole, pVM);
9409#endif
9410 }
9411 }
9412 else if (task->mTeleporterEnabled)
9413 {
9414 /* -> ConsoleImplTeleporter.cpp */
9415 bool fPowerOffOnFailure;
9416 rc = pConsole->i_teleporterTrg(pConsole->mpUVM, pMachine, &task->mErrorMsg, task->mStartPaused,
9417 task->mProgress, &fPowerOffOnFailure);
9418 if (FAILED(rc) && fPowerOffOnFailure)
9419 {
9420 ErrorInfoKeeper eik;
9421 int vrc2 = VMR3PowerOff(pConsole->mpUVM); AssertLogRelRC(vrc2);
9422#ifdef VBOX_WITH_EXTPACK
9423 pConsole->mptrExtPackManager->i_callAllVmPowerOffHooks(pConsole, pVM);
9424#endif
9425 }
9426 }
9427 else if (task->mEnmFaultToleranceState != FaultToleranceState_Inactive)
9428 {
9429 /*
9430 * Get the config.
9431 */
9432 ULONG uPort;
9433 ULONG uInterval;
9434 Bstr bstrAddress, bstrPassword;
9435
9436 rc = pMachine->COMGETTER(FaultTolerancePort)(&uPort);
9437 if (SUCCEEDED(rc))
9438 {
9439 rc = pMachine->COMGETTER(FaultToleranceSyncInterval)(&uInterval);
9440 if (SUCCEEDED(rc))
9441 rc = pMachine->COMGETTER(FaultToleranceAddress)(bstrAddress.asOutParam());
9442 if (SUCCEEDED(rc))
9443 rc = pMachine->COMGETTER(FaultTolerancePassword)(bstrPassword.asOutParam());
9444 }
9445 if (task->mProgress->i_setCancelCallback(faultToleranceProgressCancelCallback, pConsole->mpUVM))
9446 {
9447 if (SUCCEEDED(rc))
9448 {
9449 Utf8Str strAddress(bstrAddress);
9450 const char *pszAddress = strAddress.isEmpty() ? NULL : strAddress.c_str();
9451 Utf8Str strPassword(bstrPassword);
9452 const char *pszPassword = strPassword.isEmpty() ? NULL : strPassword.c_str();
9453
9454 /* Power on the FT enabled VM. */
9455#ifdef VBOX_WITH_EXTPACK
9456 vrc = pConsole->mptrExtPackManager->i_callAllVmPowerOnHooks(pConsole, pVM);
9457#endif
9458 if (RT_SUCCESS(vrc))
9459 vrc = FTMR3PowerOn(pConsole->mpUVM,
9460 task->mEnmFaultToleranceState == FaultToleranceState_Master /* fMaster */,
9461 uInterval,
9462 pszAddress,
9463 uPort,
9464 pszPassword);
9465 AssertLogRelRC(vrc);
9466 }
9467 task->mProgress->i_setCancelCallback(NULL, NULL);
9468 }
9469 else
9470 rc = E_FAIL;
9471 }
9472 else if (task->mStartPaused)
9473 /* done */
9474 pConsole->i_setMachineState(MachineState_Paused);
9475 else
9476 {
9477 /* Power on the VM (i.e. start executing) */
9478#ifdef VBOX_WITH_EXTPACK
9479 vrc = pConsole->mptrExtPackManager->i_callAllVmPowerOnHooks(pConsole, pVM);
9480#endif
9481 if (RT_SUCCESS(vrc))
9482 vrc = VMR3PowerOn(pConsole->mpUVM);
9483 AssertLogRelRC(vrc);
9484 }
9485
9486 /* acquire the lock again */
9487 alock.acquire();
9488 }
9489 while (0);
9490
9491 /* On failure, destroy the VM */
9492 if (FAILED(rc) || RT_FAILURE(vrc))
9493 {
9494 /* preserve existing error info */
9495 ErrorInfoKeeper eik;
9496
9497 /* powerDown() will call VMR3Destroy() and do all necessary
9498 * cleanup (VRDP, USB devices) */
9499 alock.release();
9500 HRESULT rc2 = pConsole->i_powerDown();
9501 alock.acquire();
9502 AssertComRC(rc2);
9503 }
9504 else
9505 {
9506 /*
9507 * Deregister the VMSetError callback. This is necessary as the
9508 * pfnVMAtError() function passed to VMR3Create() is supposed to
9509 * be sticky but our error callback isn't.
9510 */
9511 alock.release();
9512 VMR3AtErrorDeregister(pConsole->mpUVM, Console::i_genericVMSetErrorCallback, &task->mErrorMsg);
9513 /** @todo register another VMSetError callback? */
9514 alock.acquire();
9515 }
9516 }
9517 else
9518 {
9519 /*
9520 * If VMR3Create() failed it has released the VM memory.
9521 */
9522 VMR3ReleaseUVM(pConsole->mpUVM);
9523 pConsole->mpUVM = NULL;
9524 }
9525
9526 if (SUCCEEDED(rc) && RT_FAILURE(vrc))
9527 {
9528 /* If VMR3Create() or one of the other calls in this function fail,
9529 * an appropriate error message has been set in task->mErrorMsg.
9530 * However since that happens via a callback, the rc status code in
9531 * this function is not updated.
9532 */
9533 if (!task->mErrorMsg.length())
9534 {
9535 /* If the error message is not set but we've got a failure,
9536 * convert the VBox status code into a meaningful error message.
9537 * This becomes unused once all the sources of errors set the
9538 * appropriate error message themselves.
9539 */
9540 AssertMsgFailed(("Missing error message during powerup for status code %Rrc\n", vrc));
9541 task->mErrorMsg = Utf8StrFmt(tr("Failed to start VM execution (%Rrc)"),
9542 vrc);
9543 }
9544
9545 /* Set the error message as the COM error.
9546 * Progress::notifyComplete() will pick it up later. */
9547 throw i_setErrorStatic(E_FAIL, task->mErrorMsg.c_str());
9548 }
9549 }
9550 catch (HRESULT aRC) { rc = aRC; }
9551
9552 if ( pConsole->mMachineState == MachineState_Starting
9553 || pConsole->mMachineState == MachineState_Restoring
9554 || pConsole->mMachineState == MachineState_TeleportingIn
9555 )
9556 {
9557 /* We are still in the Starting/Restoring state. This means one of:
9558 *
9559 * 1) we failed before VMR3Create() was called;
9560 * 2) VMR3Create() failed.
9561 *
9562 * In both cases, there is no need to call powerDown(), but we still
9563 * need to go back to the PoweredOff/Saved state. Reuse
9564 * vmstateChangeCallback() for that purpose.
9565 */
9566
9567 /* preserve existing error info */
9568 ErrorInfoKeeper eik;
9569
9570 Assert(pConsole->mpUVM == NULL);
9571 i_vmstateChangeCallback(NULL, VMSTATE_TERMINATED, VMSTATE_CREATING, pConsole);
9572 }
9573
9574 /*
9575 * Evaluate the final result. Note that the appropriate mMachineState value
9576 * is already set by vmstateChangeCallback() in all cases.
9577 */
9578
9579 /* release the lock, don't need it any more */
9580 alock.release();
9581
9582 if (SUCCEEDED(rc))
9583 {
9584 /* Notify the progress object of the success */
9585 task->mProgress->i_notifyComplete(S_OK);
9586 }
9587 else
9588 {
9589 /* The progress object will fetch the current error info */
9590 task->mProgress->i_notifyComplete(rc);
9591 LogRel(("Power up failed (vrc=%Rrc, rc=%Rhrc (%#08X))\n", vrc, rc, rc));
9592 }
9593
9594 /* Notify VBoxSVC and any waiting openRemoteSession progress object. */
9595 pConsole->mControl->EndPowerUp(rc);
9596
9597#if defined(RT_OS_WINDOWS)
9598 /* uninitialize COM */
9599 CoUninitialize();
9600#endif
9601
9602 LogFlowFuncLeave();
9603
9604 return VINF_SUCCESS;
9605}
9606
9607
9608/**
9609 * Reconfigures a medium attachment (part of taking or deleting an online snapshot).
9610 *
9611 * @param pThis Reference to the console object.
9612 * @param pUVM The VM handle.
9613 * @param lInstance The instance of the controller.
9614 * @param pcszDevice The name of the controller type.
9615 * @param enmBus The storage bus type of the controller.
9616 * @param fSetupMerge Whether to set up a medium merge
9617 * @param uMergeSource Merge source image index
9618 * @param uMergeTarget Merge target image index
9619 * @param aMediumAtt The medium attachment.
9620 * @param aMachineState The current machine state.
9621 * @param phrc Where to store com error - only valid if we return VERR_GENERAL_FAILURE.
9622 * @return VBox status code.
9623 */
9624/* static */
9625DECLCALLBACK(int) Console::i_reconfigureMediumAttachment(Console *pThis,
9626 PUVM pUVM,
9627 const char *pcszDevice,
9628 unsigned uInstance,
9629 StorageBus_T enmBus,
9630 bool fUseHostIOCache,
9631 bool fBuiltinIOCache,
9632 bool fSetupMerge,
9633 unsigned uMergeSource,
9634 unsigned uMergeTarget,
9635 IMediumAttachment *aMediumAtt,
9636 MachineState_T aMachineState,
9637 HRESULT *phrc)
9638{
9639 LogFlowFunc(("pUVM=%p aMediumAtt=%p phrc=%p\n", pUVM, aMediumAtt, phrc));
9640
9641 HRESULT hrc;
9642 Bstr bstr;
9643 *phrc = S_OK;
9644#define H() do { if (FAILED(hrc)) { AssertMsgFailed(("hrc=%Rhrc (%#x)\n", hrc, hrc)); *phrc = hrc; return VERR_GENERAL_FAILURE; } } while (0)
9645
9646 /* Ignore attachments other than hard disks, since at the moment they are
9647 * not subject to snapshotting in general. */
9648 DeviceType_T lType;
9649 hrc = aMediumAtt->COMGETTER(Type)(&lType); H();
9650 if (lType != DeviceType_HardDisk)
9651 return VINF_SUCCESS;
9652
9653 /* Determine the base path for the device instance. */
9654 PCFGMNODE pCtlInst;
9655
9656 if (enmBus == StorageBus_USB)
9657 pCtlInst = CFGMR3GetChildF(CFGMR3GetRootU(pUVM), "USB/%s/", pcszDevice);
9658 else
9659 pCtlInst = CFGMR3GetChildF(CFGMR3GetRootU(pUVM), "Devices/%s/%u/", pcszDevice, uInstance);
9660
9661 AssertReturn(pCtlInst, VERR_INTERNAL_ERROR);
9662
9663 /* Update the device instance configuration. */
9664 PCFGMNODE pLunL0 = NULL;
9665 int rc = pThis->i_configMediumAttachment(pCtlInst,
9666 pcszDevice,
9667 uInstance,
9668 enmBus,
9669 fUseHostIOCache,
9670 fBuiltinIOCache,
9671 fSetupMerge,
9672 uMergeSource,
9673 uMergeTarget,
9674 aMediumAtt,
9675 aMachineState,
9676 phrc,
9677 true /* fAttachDetach */,
9678 false /* fForceUnmount */,
9679 false /* fHotplug */,
9680 pUVM,
9681 NULL /* paLedDevType */,
9682 &pLunL0);
9683 /* Dump the changed LUN if possible, dump the complete device otherwise */
9684 CFGMR3Dump(pLunL0 ? pLunL0 : pCtlInst);
9685 if (RT_FAILURE(rc))
9686 {
9687 AssertMsgFailed(("rc=%Rrc\n", rc));
9688 return rc;
9689 }
9690
9691#undef H
9692
9693 LogFlowFunc(("Returns success\n"));
9694 return VINF_SUCCESS;
9695}
9696
9697/**
9698 * Progress cancelation callback employed by Console::fntTakeSnapshotWorker.
9699 */
9700static void takesnapshotProgressCancelCallback(void *pvUser)
9701{
9702 PUVM pUVM = (PUVM)pvUser;
9703 SSMR3Cancel(pUVM);
9704}
9705
9706/**
9707 * Worker thread created by Console::TakeSnapshot.
9708 * @param Thread The current thread (ignored).
9709 * @param pvUser The task.
9710 * @return VINF_SUCCESS (ignored).
9711 */
9712/*static*/
9713DECLCALLBACK(int) Console::i_fntTakeSnapshotWorker(RTTHREAD Thread, void *pvUser)
9714{
9715 VMTakeSnapshotTask *pTask = (VMTakeSnapshotTask*)pvUser;
9716
9717 // taking a snapshot consists of the following:
9718
9719 // 1) creating a diff image for each virtual hard disk, into which write operations go after
9720 // the snapshot has been created (done in VBoxSVC, in SessionMachine::BeginTakingSnapshot)
9721 // 2) creating a Snapshot object with the state of the machine (hardware + storage,
9722 // done in VBoxSVC, also in SessionMachine::BeginTakingSnapshot)
9723 // 3) saving the state of the virtual machine (here, in the VM process, if the machine is online)
9724
9725 Console *that = pTask->mConsole;
9726 bool fBeganTakingSnapshot = false;
9727 bool fSuspenededBySave = false;
9728
9729 AutoCaller autoCaller(that);
9730 if (FAILED(autoCaller.rc()))
9731 {
9732 that->mptrCancelableProgress.setNull();
9733 return autoCaller.rc();
9734 }
9735
9736 AutoWriteLock alock(that COMMA_LOCKVAL_SRC_POS);
9737
9738 HRESULT rc = S_OK;
9739
9740 try
9741 {
9742 /* STEP 1 + 2:
9743 * request creating the diff images on the server and create the snapshot object
9744 * (this will set the machine state to Saving on the server to block
9745 * others from accessing this machine)
9746 */
9747 rc = that->mControl->BeginTakingSnapshot(that,
9748 pTask->bstrName.raw(),
9749 pTask->bstrDescription.raw(),
9750 pTask->mProgress,
9751 pTask->fTakingSnapshotOnline,
9752 pTask->bstrSavedStateFile.asOutParam());
9753 if (FAILED(rc))
9754 throw rc;
9755
9756 fBeganTakingSnapshot = true;
9757
9758 /* Check sanity: for offline snapshots there must not be a saved state
9759 * file name. All other combinations are valid (even though online
9760 * snapshots without saved state file seems inconsistent - there are
9761 * some exotic use cases, which need to be explicitly enabled, see the
9762 * code of SessionMachine::BeginTakingSnapshot. */
9763 if ( !pTask->fTakingSnapshotOnline
9764 && !pTask->bstrSavedStateFile.isEmpty())
9765 throw i_setErrorStatic(E_FAIL, "Invalid state of saved state file");
9766
9767 /* sync the state with the server */
9768 if (pTask->lastMachineState == MachineState_Running)
9769 that->i_setMachineStateLocally(MachineState_LiveSnapshotting);
9770 else
9771 that->i_setMachineStateLocally(MachineState_Saving);
9772
9773 // STEP 3: save the VM state (if online)
9774 if (pTask->fTakingSnapshotOnline)
9775 {
9776 int vrc;
9777 SafeVMPtr ptrVM(that);
9778 if (!ptrVM.isOk())
9779 throw ptrVM.rc();
9780
9781 pTask->mProgress->SetNextOperation(Bstr(tr("Saving the machine state")).raw(),
9782 pTask->ulMemSize); // operation weight, same as computed
9783 // when setting up progress object
9784 if (!pTask->bstrSavedStateFile.isEmpty())
9785 {
9786 Utf8Str strSavedStateFile(pTask->bstrSavedStateFile);
9787
9788 pTask->mProgress->i_setCancelCallback(takesnapshotProgressCancelCallback, ptrVM.rawUVM());
9789
9790 alock.release();
9791 LogFlowFunc(("VMR3Save...\n"));
9792 vrc = VMR3Save(ptrVM.rawUVM(),
9793 strSavedStateFile.c_str(),
9794 true /*fContinueAfterwards*/,
9795 Console::i_stateProgressCallback,
9796 static_cast<IProgress *>(pTask->mProgress),
9797 &fSuspenededBySave);
9798 alock.acquire();
9799 if (RT_FAILURE(vrc))
9800 throw i_setErrorStatic(E_FAIL,
9801 tr("Failed to save the machine state to '%s' (%Rrc)"),
9802 strSavedStateFile.c_str(), vrc);
9803
9804 pTask->mProgress->i_setCancelCallback(NULL, NULL);
9805 }
9806 else
9807 LogRel(("Console: skipped saving state as part of online snapshot\n"));
9808
9809 if (!pTask->mProgress->i_notifyPointOfNoReturn())
9810 throw i_setErrorStatic(E_FAIL, tr("Canceled"));
9811 that->mptrCancelableProgress.setNull();
9812
9813 // STEP 4: reattach hard disks
9814 LogFlowFunc(("Reattaching new differencing hard disks...\n"));
9815
9816 pTask->mProgress->SetNextOperation(Bstr(tr("Reconfiguring medium attachments")).raw(),
9817 1); // operation weight, same as computed when setting up progress object
9818
9819 com::SafeIfaceArray<IMediumAttachment> atts;
9820 rc = that->mMachine->COMGETTER(MediumAttachments)(ComSafeArrayAsOutParam(atts));
9821 if (FAILED(rc))
9822 throw rc;
9823
9824 for (size_t i = 0;
9825 i < atts.size();
9826 ++i)
9827 {
9828 ComPtr<IStorageController> pStorageController;
9829 Bstr controllerName;
9830 ULONG lInstance;
9831 StorageControllerType_T enmController;
9832 StorageBus_T enmBus;
9833 BOOL fUseHostIOCache;
9834
9835 /*
9836 * We can't pass a storage controller object directly
9837 * (g++ complains about not being able to pass non POD types through '...')
9838 * so we have to query needed values here and pass them.
9839 */
9840 rc = atts[i]->COMGETTER(Controller)(controllerName.asOutParam());
9841 if (FAILED(rc))
9842 throw rc;
9843
9844 rc = that->mMachine->GetStorageControllerByName(controllerName.raw(),
9845 pStorageController.asOutParam());
9846 if (FAILED(rc))
9847 throw rc;
9848
9849 rc = pStorageController->COMGETTER(ControllerType)(&enmController);
9850 if (FAILED(rc))
9851 throw rc;
9852 rc = pStorageController->COMGETTER(Instance)(&lInstance);
9853 if (FAILED(rc))
9854 throw rc;
9855 rc = pStorageController->COMGETTER(Bus)(&enmBus);
9856 if (FAILED(rc))
9857 throw rc;
9858 rc = pStorageController->COMGETTER(UseHostIOCache)(&fUseHostIOCache);
9859 if (FAILED(rc))
9860 throw rc;
9861
9862 const char *pcszDevice = Console::i_convertControllerTypeToDev(enmController);
9863
9864 BOOL fBuiltinIOCache;
9865 rc = that->mMachine->COMGETTER(IOCacheEnabled)(&fBuiltinIOCache);
9866 if (FAILED(rc))
9867 throw rc;
9868
9869 /*
9870 * don't release the lock since reconfigureMediumAttachment
9871 * isn't going to need the Console lock.
9872 */
9873 vrc = VMR3ReqCallWaitU(ptrVM.rawUVM(), VMCPUID_ANY,
9874 (PFNRT)i_reconfigureMediumAttachment, 13,
9875 that, ptrVM.rawUVM(), pcszDevice, lInstance, enmBus, fUseHostIOCache,
9876 fBuiltinIOCache, false /* fSetupMerge */, 0 /* uMergeSource */,
9877 0 /* uMergeTarget */, atts[i], that->mMachineState, &rc);
9878 if (RT_FAILURE(vrc))
9879 throw i_setErrorStatic(E_FAIL, Console::tr("%Rrc"), vrc);
9880 if (FAILED(rc))
9881 throw rc;
9882 }
9883 }
9884
9885 /*
9886 * finalize the requested snapshot object.
9887 * This will reset the machine state to the state it had right
9888 * before calling mControl->BeginTakingSnapshot().
9889 */
9890 rc = that->mControl->EndTakingSnapshot(TRUE /*aSuccess*/);
9891 // do not throw rc here because we can't call EndTakingSnapshot() twice
9892 LogFlowFunc(("EndTakingSnapshot -> %Rhrc [mMachineState=%s]\n", rc, Global::stringifyMachineState(that->mMachineState)));
9893 }
9894 catch (HRESULT rcThrown)
9895 {
9896 /* preserve existing error info */
9897 ErrorInfoKeeper eik;
9898
9899 if (fBeganTakingSnapshot)
9900 that->mControl->EndTakingSnapshot(FALSE /*aSuccess*/);
9901
9902 rc = rcThrown;
9903 LogFunc(("Caught %Rhrc [mMachineState=%s]\n", rc, Global::stringifyMachineState(that->mMachineState)));
9904 }
9905 Assert(alock.isWriteLockOnCurrentThread());
9906
9907 if (FAILED(rc)) /* Must come before calling setMachineState. */
9908 pTask->mProgress->i_notifyComplete(rc);
9909
9910 /*
9911 * Fix up the machine state.
9912 *
9913 * For live snapshots we do all the work, for the two other variations we
9914 * just update the local copy.
9915 */
9916 MachineState_T enmMachineState;
9917 that->mMachine->COMGETTER(State)(&enmMachineState);
9918 if ( that->mMachineState == MachineState_LiveSnapshotting
9919 || that->mMachineState == MachineState_Saving)
9920 {
9921
9922 if (!pTask->fTakingSnapshotOnline)
9923 that->i_setMachineStateLocally(pTask->lastMachineState);
9924 else if (SUCCEEDED(rc))
9925 {
9926 Assert( pTask->lastMachineState == MachineState_Running
9927 || pTask->lastMachineState == MachineState_Paused);
9928 Assert(that->mMachineState == MachineState_Saving);
9929 if (pTask->lastMachineState == MachineState_Running)
9930 {
9931 LogFlowFunc(("VMR3Resume...\n"));
9932 SafeVMPtr ptrVM(that);
9933 alock.release();
9934 int vrc = VMR3Resume(ptrVM.rawUVM(), VMRESUMEREASON_STATE_SAVED);
9935 alock.acquire();
9936 if (RT_FAILURE(vrc))
9937 {
9938 rc = i_setErrorStatic(VBOX_E_VM_ERROR, tr("Could not resume the machine execution (%Rrc)"), vrc);
9939 pTask->mProgress->i_notifyComplete(rc);
9940 if (that->mMachineState == MachineState_Saving)
9941 that->i_setMachineStateLocally(MachineState_Paused);
9942 }
9943 }
9944 else
9945 that->i_setMachineStateLocally(MachineState_Paused);
9946 }
9947 else
9948 {
9949 /** @todo this could probably be made more generic and reused elsewhere. */
9950 /* paranoid cleanup on for a failed online snapshot. */
9951 VMSTATE enmVMState = VMR3GetStateU(that->mpUVM);
9952 switch (enmVMState)
9953 {
9954 case VMSTATE_RUNNING:
9955 case VMSTATE_RUNNING_LS:
9956 case VMSTATE_DEBUGGING:
9957 case VMSTATE_DEBUGGING_LS:
9958 case VMSTATE_POWERING_OFF:
9959 case VMSTATE_POWERING_OFF_LS:
9960 case VMSTATE_RESETTING:
9961 case VMSTATE_RESETTING_LS:
9962 Assert(!fSuspenededBySave);
9963 that->i_setMachineState(MachineState_Running);
9964 break;
9965
9966 case VMSTATE_GURU_MEDITATION:
9967 case VMSTATE_GURU_MEDITATION_LS:
9968 that->i_setMachineState(MachineState_Stuck);
9969 break;
9970
9971 case VMSTATE_FATAL_ERROR:
9972 case VMSTATE_FATAL_ERROR_LS:
9973 if (pTask->lastMachineState == MachineState_Paused)
9974 that->i_setMachineStateLocally(pTask->lastMachineState);
9975 else
9976 that->i_setMachineState(MachineState_Paused);
9977 break;
9978
9979 default:
9980 AssertMsgFailed(("%s\n", VMR3GetStateName(enmVMState)));
9981 case VMSTATE_SUSPENDED:
9982 case VMSTATE_SUSPENDED_LS:
9983 case VMSTATE_SUSPENDING:
9984 case VMSTATE_SUSPENDING_LS:
9985 case VMSTATE_SUSPENDING_EXT_LS:
9986 if (fSuspenededBySave)
9987 {
9988 Assert(pTask->lastMachineState == MachineState_Running);
9989 LogFlowFunc(("VMR3Resume (on failure)...\n"));
9990 SafeVMPtr ptrVM(that);
9991 alock.release();
9992 int vrc = VMR3Resume(ptrVM.rawUVM(), VMRESUMEREASON_STATE_SAVED); AssertLogRelRC(vrc);
9993 alock.acquire();
9994 if (RT_FAILURE(vrc))
9995 that->i_setMachineState(MachineState_Paused);
9996 }
9997 else if (pTask->lastMachineState == MachineState_Paused)
9998 that->i_setMachineStateLocally(pTask->lastMachineState);
9999 else
10000 that->i_setMachineState(MachineState_Paused);
10001 break;
10002 }
10003
10004 }
10005 }
10006 /*else: somebody else has change the state... Leave it. */
10007
10008 /* check the remote state to see that we got it right. */
10009 that->mMachine->COMGETTER(State)(&enmMachineState);
10010 AssertLogRelMsg(that->mMachineState == enmMachineState,
10011 ("mMachineState=%s enmMachineState=%s\n", Global::stringifyMachineState(that->mMachineState),
10012 Global::stringifyMachineState(enmMachineState) ));
10013
10014
10015 if (SUCCEEDED(rc)) /* The failure cases are handled above. */
10016 pTask->mProgress->i_notifyComplete(rc);
10017
10018 delete pTask;
10019
10020 LogFlowFuncLeave();
10021 return VINF_SUCCESS;
10022}
10023
10024/**
10025 * Thread for executing the saved state operation.
10026 *
10027 * @param Thread The thread handle.
10028 * @param pvUser Pointer to a VMSaveTask structure.
10029 * @return VINF_SUCCESS (ignored).
10030 *
10031 * @note Locks the Console object for writing.
10032 */
10033/*static*/
10034DECLCALLBACK(int) Console::i_saveStateThread(RTTHREAD Thread, void *pvUser)
10035{
10036 LogFlowFuncEnter();
10037
10038 std::auto_ptr<VMSaveTask> task(static_cast<VMSaveTask*>(pvUser));
10039 AssertReturn(task.get(), VERR_INVALID_PARAMETER);
10040
10041 Assert(task->mSavedStateFile.length());
10042 Assert(task->mProgress.isNull());
10043 Assert(!task->mServerProgress.isNull());
10044
10045 const ComObjPtr<Console> &that = task->mConsole;
10046 Utf8Str errMsg;
10047 HRESULT rc = S_OK;
10048
10049 LogFlowFunc(("Saving the state to '%s'...\n", task->mSavedStateFile.c_str()));
10050
10051 bool fSuspenededBySave;
10052 int vrc = VMR3Save(task->mpUVM,
10053 task->mSavedStateFile.c_str(),
10054 false, /*fContinueAfterwards*/
10055 Console::i_stateProgressCallback,
10056 static_cast<IProgress *>(task->mServerProgress),
10057 &fSuspenededBySave);
10058 if (RT_FAILURE(vrc))
10059 {
10060 errMsg = Utf8StrFmt(Console::tr("Failed to save the machine state to '%s' (%Rrc)"),
10061 task->mSavedStateFile.c_str(), vrc);
10062 rc = E_FAIL;
10063 }
10064 Assert(!fSuspenededBySave);
10065
10066 /* lock the console once we're going to access it */
10067 AutoWriteLock thatLock(that COMMA_LOCKVAL_SRC_POS);
10068
10069 /* synchronize the state with the server */
10070 if (SUCCEEDED(rc))
10071 {
10072 /*
10073 * The machine has been successfully saved, so power it down
10074 * (vmstateChangeCallback() will set state to Saved on success).
10075 * Note: we release the task's VM caller, otherwise it will
10076 * deadlock.
10077 */
10078 task->releaseVMCaller();
10079 thatLock.release();
10080 rc = that->i_powerDown();
10081 thatLock.acquire();
10082 }
10083
10084 /*
10085 * If we failed, reset the local machine state.
10086 */
10087 if (FAILED(rc))
10088 that->i_setMachineStateLocally(task->mMachineStateBefore);
10089
10090 /*
10091 * Finalize the requested save state procedure. In case of failure it will
10092 * reset the machine state to the state it had right before calling
10093 * mControl->BeginSavingState(). This must be the last thing because it
10094 * will set the progress to completed, and that means that the frontend
10095 * can immediately uninit the associated console object.
10096 */
10097 that->mControl->EndSavingState(rc, Bstr(errMsg).raw());
10098
10099 LogFlowFuncLeave();
10100 return VINF_SUCCESS;
10101}
10102
10103/**
10104 * Thread for powering down the Console.
10105 *
10106 * @param Thread The thread handle.
10107 * @param pvUser Pointer to the VMTask structure.
10108 * @return VINF_SUCCESS (ignored).
10109 *
10110 * @note Locks the Console object for writing.
10111 */
10112/*static*/
10113DECLCALLBACK(int) Console::i_powerDownThread(RTTHREAD Thread, void *pvUser)
10114{
10115 LogFlowFuncEnter();
10116
10117 std::auto_ptr<VMPowerDownTask> task(static_cast<VMPowerDownTask *>(pvUser));
10118 AssertReturn(task.get(), VERR_INVALID_PARAMETER);
10119
10120 AssertReturn(task->isOk(), VERR_GENERAL_FAILURE);
10121
10122 Assert(task->mProgress.isNull());
10123
10124 const ComObjPtr<Console> &that = task->mConsole;
10125
10126 /* Note: no need to use addCaller() to protect Console because VMTask does
10127 * that */
10128
10129 /* wait until the method tat started us returns */
10130 AutoWriteLock thatLock(that COMMA_LOCKVAL_SRC_POS);
10131
10132 /* release VM caller to avoid the powerDown() deadlock */
10133 task->releaseVMCaller();
10134
10135 thatLock.release();
10136
10137 that->i_powerDown(task->mServerProgress);
10138
10139 /* complete the operation */
10140 that->mControl->EndPoweringDown(S_OK, Bstr().raw());
10141
10142 LogFlowFuncLeave();
10143 return VINF_SUCCESS;
10144}
10145
10146
10147/**
10148 * @interface_method_impl{VMM2USERMETHODS,pfnSaveState}
10149 */
10150/*static*/ DECLCALLBACK(int)
10151Console::i_vmm2User_SaveState(PCVMM2USERMETHODS pThis, PUVM pUVM)
10152{
10153 Console *pConsole = ((MYVMM2USERMETHODS *)pThis)->pConsole;
10154 NOREF(pUVM);
10155
10156 /*
10157 * For now, just call SaveState. We should probably try notify the GUI so
10158 * it can pop up a progress object and stuff.
10159 */
10160 HRESULT hrc = pConsole->SaveState(NULL);
10161 return SUCCEEDED(hrc) ? VINF_SUCCESS : Global::vboxStatusCodeFromCOM(hrc);
10162}
10163
10164/**
10165 * @interface_method_impl{VMM2USERMETHODS,pfnNotifyEmtInit}
10166 */
10167/*static*/ DECLCALLBACK(void)
10168Console::i_vmm2User_NotifyEmtInit(PCVMM2USERMETHODS pThis, PUVM pUVM, PUVMCPU pUVCpu)
10169{
10170 NOREF(pThis); NOREF(pUVM); NOREF(pUVCpu);
10171 VirtualBoxBase::initializeComForThread();
10172}
10173
10174/**
10175 * @interface_method_impl{VMM2USERMETHODS,pfnNotifyEmtTerm}
10176 */
10177/*static*/ DECLCALLBACK(void)
10178Console::i_vmm2User_NotifyEmtTerm(PCVMM2USERMETHODS pThis, PUVM pUVM, PUVMCPU pUVCpu)
10179{
10180 NOREF(pThis); NOREF(pUVM); NOREF(pUVCpu);
10181 VirtualBoxBase::uninitializeComForThread();
10182}
10183
10184/**
10185 * @interface_method_impl{VMM2USERMETHODS,pfnNotifyPdmtInit}
10186 */
10187/*static*/ DECLCALLBACK(void)
10188Console::i_vmm2User_NotifyPdmtInit(PCVMM2USERMETHODS pThis, PUVM pUVM)
10189{
10190 NOREF(pThis); NOREF(pUVM);
10191 VirtualBoxBase::initializeComForThread();
10192}
10193
10194/**
10195 * @interface_method_impl{VMM2USERMETHODS,pfnNotifyPdmtTerm}
10196 */
10197/*static*/ DECLCALLBACK(void)
10198Console::i_vmm2User_NotifyPdmtTerm(PCVMM2USERMETHODS pThis, PUVM pUVM)
10199{
10200 NOREF(pThis); NOREF(pUVM);
10201 VirtualBoxBase::uninitializeComForThread();
10202}
10203
10204/**
10205 * @interface_method_impl{VMM2USERMETHODS,pfnNotifyResetTurnedIntoPowerOff}
10206 */
10207/*static*/ DECLCALLBACK(void)
10208Console::i_vmm2User_NotifyResetTurnedIntoPowerOff(PCVMM2USERMETHODS pThis, PUVM pUVM)
10209{
10210 Console *pConsole = ((MYVMM2USERMETHODS *)pThis)->pConsole;
10211 NOREF(pUVM);
10212
10213 pConsole->mfPowerOffCausedByReset = true;
10214}
10215
10216
10217
10218
10219/**
10220 * @interface_method_impl{PDMISECKEY,pfnKeyRetain}
10221 */
10222/*static*/ DECLCALLBACK(int)
10223Console::i_pdmIfSecKey_KeyRetain(PPDMISECKEY pInterface, const char *pszId, const uint8_t **ppbKey,
10224 size_t *pcbKey)
10225{
10226 Console *pConsole = ((MYPDMISECKEY *)pInterface)->pConsole;
10227
10228 SecretKeyMap::const_iterator it = pConsole->m_mapSecretKeys.find(Utf8Str(pszId));
10229 if (it != pConsole->m_mapSecretKeys.end())
10230 {
10231 SecretKey *pKey = (*it).second;
10232
10233 ASMAtomicIncU32(&pKey->m_cRefs);
10234 *ppbKey = pKey->m_pbKey;
10235 *pcbKey = pKey->m_cbKey;
10236 return VINF_SUCCESS;
10237 }
10238
10239 return VERR_NOT_FOUND;
10240}
10241
10242/**
10243 * @interface_method_impl{PDMISECKEY,pfnKeyRelease}
10244 */
10245/*static*/ DECLCALLBACK(int)
10246Console::i_pdmIfSecKey_KeyRelease(PPDMISECKEY pInterface, const char *pszId)
10247{
10248 Console *pConsole = ((MYPDMISECKEY *)pInterface)->pConsole;
10249 SecretKeyMap::const_iterator it = pConsole->m_mapSecretKeys.find(Utf8Str(pszId));
10250 if (it != pConsole->m_mapSecretKeys.end())
10251 {
10252 SecretKey *pKey = (*it).second;
10253 ASMAtomicDecU32(&pKey->m_cRefs);
10254 return VINF_SUCCESS;
10255 }
10256
10257 return VERR_NOT_FOUND;
10258}
10259
10260
10261
10262
10263/**
10264 * The Main status driver instance data.
10265 */
10266typedef struct DRVMAINSTATUS
10267{
10268 /** The LED connectors. */
10269 PDMILEDCONNECTORS ILedConnectors;
10270 /** Pointer to the LED ports interface above us. */
10271 PPDMILEDPORTS pLedPorts;
10272 /** Pointer to the array of LED pointers. */
10273 PPDMLED *papLeds;
10274 /** The unit number corresponding to the first entry in the LED array. */
10275 RTUINT iFirstLUN;
10276 /** The unit number corresponding to the last entry in the LED array.
10277 * (The size of the LED array is iLastLUN - iFirstLUN + 1.) */
10278 RTUINT iLastLUN;
10279 /** Pointer to the driver instance. */
10280 PPDMDRVINS pDrvIns;
10281 /** The Media Notify interface. */
10282 PDMIMEDIANOTIFY IMediaNotify;
10283 /** Map for translating PDM storage controller/LUN information to
10284 * IMediumAttachment references. */
10285 Console::MediumAttachmentMap *pmapMediumAttachments;
10286 /** Device name+instance for mapping */
10287 char *pszDeviceInstance;
10288 /** Pointer to the Console object, for driver triggered activities. */
10289 Console *pConsole;
10290} DRVMAINSTATUS, *PDRVMAINSTATUS;
10291
10292
10293/**
10294 * Notification about a unit which have been changed.
10295 *
10296 * The driver must discard any pointers to data owned by
10297 * the unit and requery it.
10298 *
10299 * @param pInterface Pointer to the interface structure containing the called function pointer.
10300 * @param iLUN The unit number.
10301 */
10302DECLCALLBACK(void) Console::i_drvStatus_UnitChanged(PPDMILEDCONNECTORS pInterface, unsigned iLUN)
10303{
10304 PDRVMAINSTATUS pThis = RT_FROM_MEMBER(pInterface, DRVMAINSTATUS, ILedConnectors);
10305 if (iLUN >= pThis->iFirstLUN && iLUN <= pThis->iLastLUN)
10306 {
10307 PPDMLED pLed;
10308 int rc = pThis->pLedPorts->pfnQueryStatusLed(pThis->pLedPorts, iLUN, &pLed);
10309 if (RT_FAILURE(rc))
10310 pLed = NULL;
10311 ASMAtomicWritePtr(&pThis->papLeds[iLUN - pThis->iFirstLUN], pLed);
10312 Log(("drvStatus_UnitChanged: iLUN=%d pLed=%p\n", iLUN, pLed));
10313 }
10314}
10315
10316
10317/**
10318 * Notification about a medium eject.
10319 *
10320 * @returns VBox status.
10321 * @param pInterface Pointer to the interface structure containing the called function pointer.
10322 * @param uLUN The unit number.
10323 */
10324DECLCALLBACK(int) Console::i_drvStatus_MediumEjected(PPDMIMEDIANOTIFY pInterface, unsigned uLUN)
10325{
10326 PDRVMAINSTATUS pThis = RT_FROM_MEMBER(pInterface, DRVMAINSTATUS, IMediaNotify);
10327 PPDMDRVINS pDrvIns = pThis->pDrvIns;
10328 LogFunc(("uLUN=%d\n", uLUN));
10329 if (pThis->pmapMediumAttachments)
10330 {
10331 AutoWriteLock alock(pThis->pConsole COMMA_LOCKVAL_SRC_POS);
10332
10333 ComPtr<IMediumAttachment> pMediumAtt;
10334 Utf8Str devicePath = Utf8StrFmt("%s/LUN#%u", pThis->pszDeviceInstance, uLUN);
10335 Console::MediumAttachmentMap::const_iterator end = pThis->pmapMediumAttachments->end();
10336 Console::MediumAttachmentMap::const_iterator it = pThis->pmapMediumAttachments->find(devicePath);
10337 if (it != end)
10338 pMediumAtt = it->second;
10339 Assert(!pMediumAtt.isNull());
10340 if (!pMediumAtt.isNull())
10341 {
10342 IMedium *pMedium = NULL;
10343 HRESULT rc = pMediumAtt->COMGETTER(Medium)(&pMedium);
10344 AssertComRC(rc);
10345 if (SUCCEEDED(rc) && pMedium)
10346 {
10347 BOOL fHostDrive = FALSE;
10348 rc = pMedium->COMGETTER(HostDrive)(&fHostDrive);
10349 AssertComRC(rc);
10350 if (!fHostDrive)
10351 {
10352 alock.release();
10353
10354 ComPtr<IMediumAttachment> pNewMediumAtt;
10355 rc = pThis->pConsole->mControl->EjectMedium(pMediumAtt, pNewMediumAtt.asOutParam());
10356 if (SUCCEEDED(rc))
10357 fireMediumChangedEvent(pThis->pConsole->mEventSource, pNewMediumAtt);
10358
10359 alock.acquire();
10360 if (pNewMediumAtt != pMediumAtt)
10361 {
10362 pThis->pmapMediumAttachments->erase(devicePath);
10363 pThis->pmapMediumAttachments->insert(std::make_pair(devicePath, pNewMediumAtt));
10364 }
10365 }
10366 }
10367 }
10368 }
10369 return VINF_SUCCESS;
10370}
10371
10372
10373/**
10374 * @interface_method_impl{PDMIBASE,pfnQueryInterface}
10375 */
10376DECLCALLBACK(void *) Console::i_drvStatus_QueryInterface(PPDMIBASE pInterface, const char *pszIID)
10377{
10378 PPDMDRVINS pDrvIns = PDMIBASE_2_PDMDRV(pInterface);
10379 PDRVMAINSTATUS pThis = PDMINS_2_DATA(pDrvIns, PDRVMAINSTATUS);
10380 PDMIBASE_RETURN_INTERFACE(pszIID, PDMIBASE, &pDrvIns->IBase);
10381 PDMIBASE_RETURN_INTERFACE(pszIID, PDMILEDCONNECTORS, &pThis->ILedConnectors);
10382 PDMIBASE_RETURN_INTERFACE(pszIID, PDMIMEDIANOTIFY, &pThis->IMediaNotify);
10383 return NULL;
10384}
10385
10386
10387/**
10388 * Destruct a status driver instance.
10389 *
10390 * @returns VBox status.
10391 * @param pDrvIns The driver instance data.
10392 */
10393DECLCALLBACK(void) Console::i_drvStatus_Destruct(PPDMDRVINS pDrvIns)
10394{
10395 PDMDRV_CHECK_VERSIONS_RETURN_VOID(pDrvIns);
10396 PDRVMAINSTATUS pThis = PDMINS_2_DATA(pDrvIns, PDRVMAINSTATUS);
10397 LogFlowFunc(("iInstance=%d\n", pDrvIns->iInstance));
10398
10399 if (pThis->papLeds)
10400 {
10401 unsigned iLed = pThis->iLastLUN - pThis->iFirstLUN + 1;
10402 while (iLed-- > 0)
10403 ASMAtomicWriteNullPtr(&pThis->papLeds[iLed]);
10404 }
10405}
10406
10407
10408/**
10409 * Construct a status driver instance.
10410 *
10411 * @copydoc FNPDMDRVCONSTRUCT
10412 */
10413DECLCALLBACK(int) Console::i_drvStatus_Construct(PPDMDRVINS pDrvIns, PCFGMNODE pCfg, uint32_t fFlags)
10414{
10415 PDMDRV_CHECK_VERSIONS_RETURN(pDrvIns);
10416 PDRVMAINSTATUS pThis = PDMINS_2_DATA(pDrvIns, PDRVMAINSTATUS);
10417 LogFlowFunc(("iInstance=%d\n", pDrvIns->iInstance));
10418
10419 /*
10420 * Validate configuration.
10421 */
10422 if (!CFGMR3AreValuesValid(pCfg, "papLeds\0pmapMediumAttachments\0DeviceInstance\0pConsole\0First\0Last\0"))
10423 return VERR_PDM_DRVINS_UNKNOWN_CFG_VALUES;
10424 AssertMsgReturn(PDMDrvHlpNoAttach(pDrvIns) == VERR_PDM_NO_ATTACHED_DRIVER,
10425 ("Configuration error: Not possible to attach anything to this driver!\n"),
10426 VERR_PDM_DRVINS_NO_ATTACH);
10427
10428 /*
10429 * Data.
10430 */
10431 pDrvIns->IBase.pfnQueryInterface = Console::i_drvStatus_QueryInterface;
10432 pThis->ILedConnectors.pfnUnitChanged = Console::i_drvStatus_UnitChanged;
10433 pThis->IMediaNotify.pfnEjected = Console::i_drvStatus_MediumEjected;
10434 pThis->pDrvIns = pDrvIns;
10435 pThis->pszDeviceInstance = NULL;
10436
10437 /*
10438 * Read config.
10439 */
10440 int rc = CFGMR3QueryPtr(pCfg, "papLeds", (void **)&pThis->papLeds);
10441 if (RT_FAILURE(rc))
10442 {
10443 AssertMsgFailed(("Configuration error: Failed to query the \"papLeds\" value! rc=%Rrc\n", rc));
10444 return rc;
10445 }
10446
10447 rc = CFGMR3QueryPtrDef(pCfg, "pmapMediumAttachments", (void **)&pThis->pmapMediumAttachments, NULL);
10448 if (RT_FAILURE(rc))
10449 {
10450 AssertMsgFailed(("Configuration error: Failed to query the \"pmapMediumAttachments\" value! rc=%Rrc\n", rc));
10451 return rc;
10452 }
10453 if (pThis->pmapMediumAttachments)
10454 {
10455 rc = CFGMR3QueryStringAlloc(pCfg, "DeviceInstance", &pThis->pszDeviceInstance);
10456 if (RT_FAILURE(rc))
10457 {
10458 AssertMsgFailed(("Configuration error: Failed to query the \"DeviceInstance\" value! rc=%Rrc\n", rc));
10459 return rc;
10460 }
10461 rc = CFGMR3QueryPtr(pCfg, "pConsole", (void **)&pThis->pConsole);
10462 if (RT_FAILURE(rc))
10463 {
10464 AssertMsgFailed(("Configuration error: Failed to query the \"pConsole\" value! rc=%Rrc\n", rc));
10465 return rc;
10466 }
10467 }
10468
10469 rc = CFGMR3QueryU32(pCfg, "First", &pThis->iFirstLUN);
10470 if (rc == VERR_CFGM_VALUE_NOT_FOUND)
10471 pThis->iFirstLUN = 0;
10472 else if (RT_FAILURE(rc))
10473 {
10474 AssertMsgFailed(("Configuration error: Failed to query the \"First\" value! rc=%Rrc\n", rc));
10475 return rc;
10476 }
10477
10478 rc = CFGMR3QueryU32(pCfg, "Last", &pThis->iLastLUN);
10479 if (rc == VERR_CFGM_VALUE_NOT_FOUND)
10480 pThis->iLastLUN = 0;
10481 else if (RT_FAILURE(rc))
10482 {
10483 AssertMsgFailed(("Configuration error: Failed to query the \"Last\" value! rc=%Rrc\n", rc));
10484 return rc;
10485 }
10486 if (pThis->iFirstLUN > pThis->iLastLUN)
10487 {
10488 AssertMsgFailed(("Configuration error: Invalid unit range %u-%u\n", pThis->iFirstLUN, pThis->iLastLUN));
10489 return VERR_GENERAL_FAILURE;
10490 }
10491
10492 /*
10493 * Get the ILedPorts interface of the above driver/device and
10494 * query the LEDs we want.
10495 */
10496 pThis->pLedPorts = PDMIBASE_QUERY_INTERFACE(pDrvIns->pUpBase, PDMILEDPORTS);
10497 AssertMsgReturn(pThis->pLedPorts, ("Configuration error: No led ports interface above!\n"),
10498 VERR_PDM_MISSING_INTERFACE_ABOVE);
10499
10500 for (unsigned i = pThis->iFirstLUN; i <= pThis->iLastLUN; ++i)
10501 Console::i_drvStatus_UnitChanged(&pThis->ILedConnectors, i);
10502
10503 return VINF_SUCCESS;
10504}
10505
10506
10507/**
10508 * Console status driver (LED) registration record.
10509 */
10510const PDMDRVREG Console::DrvStatusReg =
10511{
10512 /* u32Version */
10513 PDM_DRVREG_VERSION,
10514 /* szName */
10515 "MainStatus",
10516 /* szRCMod */
10517 "",
10518 /* szR0Mod */
10519 "",
10520 /* pszDescription */
10521 "Main status driver (Main as in the API).",
10522 /* fFlags */
10523 PDM_DRVREG_FLAGS_HOST_BITS_DEFAULT,
10524 /* fClass. */
10525 PDM_DRVREG_CLASS_STATUS,
10526 /* cMaxInstances */
10527 ~0U,
10528 /* cbInstance */
10529 sizeof(DRVMAINSTATUS),
10530 /* pfnConstruct */
10531 Console::i_drvStatus_Construct,
10532 /* pfnDestruct */
10533 Console::i_drvStatus_Destruct,
10534 /* pfnRelocate */
10535 NULL,
10536 /* pfnIOCtl */
10537 NULL,
10538 /* pfnPowerOn */
10539 NULL,
10540 /* pfnReset */
10541 NULL,
10542 /* pfnSuspend */
10543 NULL,
10544 /* pfnResume */
10545 NULL,
10546 /* pfnAttach */
10547 NULL,
10548 /* pfnDetach */
10549 NULL,
10550 /* pfnPowerOff */
10551 NULL,
10552 /* pfnSoftReset */
10553 NULL,
10554 /* u32EndVersion */
10555 PDM_DRVREG_VERSION
10556};
10557
10558
10559
10560/* vi: set tabstop=4 shiftwidth=4 expandtab: */
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