VirtualBox

source: vbox/trunk/src/VBox/Main/src-server/SnapshotImpl.cpp@ 82901

Last change on this file since 82901 was 81964, checked in by vboxsync, 5 years ago

Main/GraphicsAdapter: Split off a few attributes from Machine interface, which affects quite a few other interfaces.
Frontends/VirtualBox+VBoxManage+VBoxSDL+VBoxShell: Adapt accordingly.

  • Property svn:eol-style set to native
  • Property svn:keywords set to Author Date Id Revision
File size: 158.9 KB
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1/* $Id: SnapshotImpl.cpp 81964 2019-11-18 20:42:02Z vboxsync $ */
2/** @file
3 * COM class implementation for Snapshot and SnapshotMachine in VBoxSVC.
4 */
5
6/*
7 * Copyright (C) 2006-2019 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#define LOG_GROUP LOG_GROUP_MAIN_SNAPSHOT
19#include <set>
20#include <map>
21
22#include "SnapshotImpl.h"
23#include "LoggingNew.h"
24
25#include "MachineImpl.h"
26#include "MediumImpl.h"
27#include "MediumFormatImpl.h"
28#include "Global.h"
29#include "ProgressImpl.h"
30
31/// @todo these three includes are required for about one or two lines, try
32// to remove them and put that code in shared code in MachineImplcpp
33#include "SharedFolderImpl.h"
34#include "USBControllerImpl.h"
35#include "USBDeviceFiltersImpl.h"
36#include "VirtualBoxImpl.h"
37
38#include "AutoCaller.h"
39#include "VBox/com/MultiResult.h"
40
41#include <iprt/path.h>
42#include <iprt/cpp/utils.h>
43
44#include <VBox/param.h>
45#include <iprt/errcore.h>
46
47#include <VBox/settings.h>
48
49////////////////////////////////////////////////////////////////////////////////
50//
51// Snapshot private data definition
52//
53////////////////////////////////////////////////////////////////////////////////
54
55typedef std::list< ComObjPtr<Snapshot> > SnapshotsList;
56
57struct Snapshot::Data
58{
59 Data()
60 : pVirtualBox(NULL)
61 {
62 RTTimeSpecSetMilli(&timeStamp, 0);
63 };
64
65 ~Data()
66 {}
67
68 const Guid uuid;
69 Utf8Str strName;
70 Utf8Str strDescription;
71 RTTIMESPEC timeStamp;
72 ComObjPtr<SnapshotMachine> pMachine;
73
74 /** weak VirtualBox parent */
75 VirtualBox * const pVirtualBox;
76
77 // pParent and llChildren are protected by the machine lock
78 ComObjPtr<Snapshot> pParent;
79 SnapshotsList llChildren;
80};
81
82////////////////////////////////////////////////////////////////////////////////
83//
84// Constructor / destructor
85//
86////////////////////////////////////////////////////////////////////////////////
87DEFINE_EMPTY_CTOR_DTOR(Snapshot)
88
89HRESULT Snapshot::FinalConstruct()
90{
91 LogFlowThisFunc(("\n"));
92 return BaseFinalConstruct();
93}
94
95void Snapshot::FinalRelease()
96{
97 LogFlowThisFunc(("\n"));
98 uninit();
99 BaseFinalRelease();
100}
101
102/**
103 * Initializes the instance
104 *
105 * @param aVirtualBox VirtualBox object
106 * @param aId id of the snapshot
107 * @param aName name of the snapshot
108 * @param aDescription name of the snapshot (NULL if no description)
109 * @param aTimeStamp timestamp of the snapshot, in ms since 1970-01-01 UTC
110 * @param aMachine machine associated with this snapshot
111 * @param aParent parent snapshot (NULL if no parent)
112 */
113HRESULT Snapshot::init(VirtualBox *aVirtualBox,
114 const Guid &aId,
115 const Utf8Str &aName,
116 const Utf8Str &aDescription,
117 const RTTIMESPEC &aTimeStamp,
118 SnapshotMachine *aMachine,
119 Snapshot *aParent)
120{
121 LogFlowThisFunc(("uuid=%s aParent->uuid=%s\n", aId.toString().c_str(), (aParent) ? aParent->m->uuid.toString().c_str() : ""));
122
123 ComAssertRet(!aId.isZero() && aId.isValid() && aMachine, E_INVALIDARG);
124
125 /* Enclose the state transition NotReady->InInit->Ready */
126 AutoInitSpan autoInitSpan(this);
127 AssertReturn(autoInitSpan.isOk(), E_FAIL);
128
129 m = new Data;
130
131 /* share parent weakly */
132 unconst(m->pVirtualBox) = aVirtualBox;
133
134 m->pParent = aParent;
135
136 unconst(m->uuid) = aId;
137 m->strName = aName;
138 m->strDescription = aDescription;
139 m->timeStamp = aTimeStamp;
140 m->pMachine = aMachine;
141
142 if (aParent)
143 aParent->m->llChildren.push_back(this);
144
145 /* Confirm a successful initialization when it's the case */
146 autoInitSpan.setSucceeded();
147
148 return S_OK;
149}
150
151/**
152 * Uninitializes the instance and sets the ready flag to FALSE.
153 * Called either from FinalRelease(), by the parent when it gets destroyed,
154 * or by a third party when it decides this object is no more valid.
155 *
156 * Since this manipulates the snapshots tree, the caller must hold the
157 * machine lock in write mode (which protects the snapshots tree)!
158 */
159void Snapshot::uninit()
160{
161 LogFlowThisFunc(("\n"));
162
163 /* Enclose the state transition Ready->InUninit->NotReady */
164 AutoUninitSpan autoUninitSpan(this);
165 if (autoUninitSpan.uninitDone())
166 return;
167
168 Assert(m->pMachine->isWriteLockOnCurrentThread());
169
170 // uninit all children
171 SnapshotsList::iterator it;
172 for (it = m->llChildren.begin();
173 it != m->llChildren.end();
174 ++it)
175 {
176 Snapshot *pChild = *it;
177 pChild->m->pParent.setNull();
178 pChild->uninit();
179 }
180 m->llChildren.clear(); // this unsets all the ComPtrs and probably calls delete
181
182 // since there is no guarantee anyone holds a reference to us except the
183 // list of children in our parent, make sure that the reference count
184 // will not drop to 0 before we've declared ourselves as uninitialized,
185 // otherwise there will be another uninit call which causes a self-deadlock
186 // because this uninit isn't complete yet.
187 ComObjPtr<Snapshot> pSnapshot(this);
188 if (m->pParent)
189 i_deparent();
190
191 if (m->pMachine)
192 {
193 m->pMachine->uninit();
194 m->pMachine.setNull();
195 }
196
197 delete m;
198 m = NULL;
199
200 autoUninitSpan.setSucceeded();
201 // see above, now the refcount may reach 0
202 pSnapshot.setNull();
203}
204
205/**
206 * Delete the current snapshot by removing it from the tree of snapshots
207 * and reparenting its children.
208 *
209 * After this, the caller must call uninit() on the snapshot. We can't call
210 * that from here because if we do, the AutoUninitSpan waits forever for
211 * the number of callers to become 0 (it is 1 because of the AutoCaller in here).
212 *
213 * NOTE: this does NOT lock the snapshot, it is assumed that the machine state
214 * (and the snapshots tree) is protected by the caller having requested the machine
215 * lock in write mode AND the machine state must be DeletingSnapshot.
216 */
217void Snapshot::i_beginSnapshotDelete()
218{
219 AutoCaller autoCaller(this);
220 if (FAILED(autoCaller.rc()))
221 return;
222
223 // caller must have acquired the machine's write lock
224 Assert( m->pMachine->mData->mMachineState == MachineState_DeletingSnapshot
225 || m->pMachine->mData->mMachineState == MachineState_DeletingSnapshotOnline
226 || m->pMachine->mData->mMachineState == MachineState_DeletingSnapshotPaused);
227 Assert(m->pMachine->isWriteLockOnCurrentThread());
228
229 // the snapshot must have only one child when being deleted or no children at all
230 AssertReturnVoid(m->llChildren.size() <= 1);
231
232 ComObjPtr<Snapshot> parentSnapshot = m->pParent;
233
234 /// @todo (dmik):
235 // when we introduce clones later, deleting the snapshot will affect
236 // the current and first snapshots of clones, if they are direct children
237 // of this snapshot. So we will need to lock machines associated with
238 // child snapshots as well and update mCurrentSnapshot and/or
239 // mFirstSnapshot fields.
240
241 if (this == m->pMachine->mData->mCurrentSnapshot)
242 {
243 m->pMachine->mData->mCurrentSnapshot = parentSnapshot;
244
245 /* we've changed the base of the current state so mark it as
246 * modified as it no longer guaranteed to be its copy */
247 m->pMachine->mData->mCurrentStateModified = TRUE;
248 }
249
250 if (this == m->pMachine->mData->mFirstSnapshot)
251 {
252 if (m->llChildren.size() == 1)
253 {
254 ComObjPtr<Snapshot> childSnapshot = m->llChildren.front();
255 m->pMachine->mData->mFirstSnapshot = childSnapshot;
256 }
257 else
258 m->pMachine->mData->mFirstSnapshot.setNull();
259 }
260
261 // reparent our children
262 for (SnapshotsList::const_iterator it = m->llChildren.begin();
263 it != m->llChildren.end();
264 ++it)
265 {
266 ComObjPtr<Snapshot> child = *it;
267 // no need to lock, snapshots tree is protected by machine lock
268 child->m->pParent = m->pParent;
269 if (m->pParent)
270 m->pParent->m->llChildren.push_back(child);
271 }
272
273 // clear our own children list (since we reparented the children)
274 m->llChildren.clear();
275}
276
277/**
278 * Internal helper that removes "this" from the list of children of its
279 * parent. Used in uninit() and other places when reparenting is necessary.
280 *
281 * The caller must hold the machine lock in write mode (which protects the snapshots tree)!
282 */
283void Snapshot::i_deparent()
284{
285 Assert(m->pMachine->isWriteLockOnCurrentThread());
286
287 SnapshotsList &llParent = m->pParent->m->llChildren;
288 for (SnapshotsList::iterator it = llParent.begin();
289 it != llParent.end();
290 ++it)
291 {
292 Snapshot *pParentsChild = *it;
293 if (this == pParentsChild)
294 {
295 llParent.erase(it);
296 break;
297 }
298 }
299
300 m->pParent.setNull();
301}
302
303////////////////////////////////////////////////////////////////////////////////
304//
305// ISnapshot public methods
306//
307////////////////////////////////////////////////////////////////////////////////
308
309HRESULT Snapshot::getId(com::Guid &aId)
310{
311 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
312
313 aId = m->uuid;
314
315 return S_OK;
316}
317
318HRESULT Snapshot::getName(com::Utf8Str &aName)
319{
320 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
321 aName = m->strName;
322 return S_OK;
323}
324
325/**
326 * @note Locks this object for writing, then calls Machine::onSnapshotChange()
327 * (see its lock requirements).
328 */
329HRESULT Snapshot::setName(const com::Utf8Str &aName)
330{
331 HRESULT rc = S_OK;
332
333 // prohibit setting a UUID only as the machine name, or else it can
334 // never be found by findMachine()
335 Guid test(aName);
336
337 if (!test.isZero() && test.isValid())
338 return setError(E_INVALIDARG, tr("A machine cannot have a UUID as its name"));
339
340 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
341
342 if (m->strName != aName)
343 {
344 m->strName = aName;
345 alock.release(); /* Important! (child->parent locks are forbidden) */
346 rc = m->pMachine->i_onSnapshotChange(this);
347 }
348
349 return rc;
350}
351
352HRESULT Snapshot::getDescription(com::Utf8Str &aDescription)
353{
354 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
355 aDescription = m->strDescription;
356 return S_OK;
357}
358
359HRESULT Snapshot::setDescription(const com::Utf8Str &aDescription)
360{
361 HRESULT rc = S_OK;
362
363 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
364 if (m->strDescription != aDescription)
365 {
366 m->strDescription = aDescription;
367 alock.release(); /* Important! (child->parent locks are forbidden) */
368 rc = m->pMachine->i_onSnapshotChange(this);
369 }
370
371 return rc;
372}
373
374HRESULT Snapshot::getTimeStamp(LONG64 *aTimeStamp)
375{
376 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
377
378 *aTimeStamp = RTTimeSpecGetMilli(&m->timeStamp);
379 return S_OK;
380}
381
382HRESULT Snapshot::getOnline(BOOL *aOnline)
383{
384 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
385
386 *aOnline = i_getStateFilePath().isNotEmpty();
387 return S_OK;
388}
389
390HRESULT Snapshot::getMachine(ComPtr<IMachine> &aMachine)
391{
392 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
393
394 m->pMachine.queryInterfaceTo(aMachine.asOutParam());
395
396 return S_OK;
397}
398
399
400HRESULT Snapshot::getParent(ComPtr<ISnapshot> &aParent)
401{
402 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
403
404 m->pParent.queryInterfaceTo(aParent.asOutParam());
405 return S_OK;
406}
407
408HRESULT Snapshot::getChildren(std::vector<ComPtr<ISnapshot> > &aChildren)
409{
410 // snapshots tree is protected by machine lock
411 AutoReadLock alock(m->pMachine COMMA_LOCKVAL_SRC_POS);
412 aChildren.resize(0);
413 for (SnapshotsList::const_iterator it = m->llChildren.begin();
414 it != m->llChildren.end();
415 ++it)
416 aChildren.push_back(*it);
417 return S_OK;
418}
419
420HRESULT Snapshot::getChildrenCount(ULONG *count)
421{
422 *count = i_getChildrenCount();
423
424 return S_OK;
425}
426
427////////////////////////////////////////////////////////////////////////////////
428//
429// Snapshot public internal methods
430//
431////////////////////////////////////////////////////////////////////////////////
432
433/**
434 * Returns the parent snapshot or NULL if there's none. Must have caller + locking!
435 * @return
436 */
437const ComObjPtr<Snapshot>& Snapshot::i_getParent() const
438{
439 return m->pParent;
440}
441
442/**
443 * Returns the first child snapshot or NULL if there's none. Must have caller + locking!
444 * @return
445 */
446const ComObjPtr<Snapshot> Snapshot::i_getFirstChild() const
447{
448 if (!m->llChildren.size())
449 return NULL;
450 return m->llChildren.front();
451}
452
453/**
454 * @note
455 * Must be called from under the object's lock!
456 */
457const Utf8Str& Snapshot::i_getStateFilePath() const
458{
459 return m->pMachine->mSSData->strStateFilePath;
460}
461
462/**
463 * Returns the depth in the snapshot tree for this snapshot.
464 *
465 * @note takes the snapshot tree lock
466 */
467
468uint32_t Snapshot::i_getDepth()
469{
470 AutoCaller autoCaller(this);
471 AssertComRC(autoCaller.rc());
472
473 // snapshots tree is protected by machine lock
474 AutoReadLock alock(m->pMachine COMMA_LOCKVAL_SRC_POS);
475
476 uint32_t cDepth = 0;
477 ComObjPtr<Snapshot> pSnap(this);
478 while (!pSnap.isNull())
479 {
480 pSnap = pSnap->m->pParent;
481 cDepth++;
482 }
483
484 return cDepth;
485}
486
487/**
488 * Returns the number of direct child snapshots, without grandchildren.
489 * Does not recurse.
490 * @return
491 */
492ULONG Snapshot::i_getChildrenCount()
493{
494 AutoCaller autoCaller(this);
495 AssertComRC(autoCaller.rc());
496
497 // snapshots tree is protected by machine lock
498 AutoReadLock alock(m->pMachine COMMA_LOCKVAL_SRC_POS);
499
500 return (ULONG)m->llChildren.size();
501}
502
503/**
504 * Implementation method for getAllChildrenCount() so we request the
505 * tree lock only once before recursing. Don't call directly.
506 * @return
507 */
508ULONG Snapshot::i_getAllChildrenCountImpl()
509{
510 AutoCaller autoCaller(this);
511 AssertComRC(autoCaller.rc());
512
513 ULONG count = (ULONG)m->llChildren.size();
514 for (SnapshotsList::const_iterator it = m->llChildren.begin();
515 it != m->llChildren.end();
516 ++it)
517 {
518 count += (*it)->i_getAllChildrenCountImpl();
519 }
520
521 return count;
522}
523
524/**
525 * Returns the number of child snapshots including all grandchildren.
526 * Recurses into the snapshots tree.
527 * @return
528 */
529ULONG Snapshot::i_getAllChildrenCount()
530{
531 AutoCaller autoCaller(this);
532 AssertComRC(autoCaller.rc());
533
534 // snapshots tree is protected by machine lock
535 AutoReadLock alock(m->pMachine COMMA_LOCKVAL_SRC_POS);
536
537 return i_getAllChildrenCountImpl();
538}
539
540/**
541 * Returns the SnapshotMachine that this snapshot belongs to.
542 * Caller must hold the snapshot's object lock!
543 * @return
544 */
545const ComObjPtr<SnapshotMachine>& Snapshot::i_getSnapshotMachine() const
546{
547 return m->pMachine;
548}
549
550/**
551 * Returns the UUID of this snapshot.
552 * Caller must hold the snapshot's object lock!
553 * @return
554 */
555Guid Snapshot::i_getId() const
556{
557 return m->uuid;
558}
559
560/**
561 * Returns the name of this snapshot.
562 * Caller must hold the snapshot's object lock!
563 * @return
564 */
565const Utf8Str& Snapshot::i_getName() const
566{
567 return m->strName;
568}
569
570/**
571 * Returns the time stamp of this snapshot.
572 * Caller must hold the snapshot's object lock!
573 * @return
574 */
575RTTIMESPEC Snapshot::i_getTimeStamp() const
576{
577 return m->timeStamp;
578}
579
580/**
581 * Searches for a snapshot with the given ID among children, grand-children,
582 * etc. of this snapshot. This snapshot itself is also included in the search.
583 *
584 * Caller must hold the machine lock (which protects the snapshots tree!)
585 */
586ComObjPtr<Snapshot> Snapshot::i_findChildOrSelf(IN_GUID aId)
587{
588 ComObjPtr<Snapshot> child;
589
590 AutoCaller autoCaller(this);
591 AssertComRC(autoCaller.rc());
592
593 // no need to lock, uuid is const
594 if (m->uuid == aId)
595 child = this;
596 else
597 {
598 for (SnapshotsList::const_iterator it = m->llChildren.begin();
599 it != m->llChildren.end();
600 ++it)
601 {
602 if ((child = (*it)->i_findChildOrSelf(aId)))
603 break;
604 }
605 }
606
607 return child;
608}
609
610/**
611 * Searches for a first snapshot with the given name among children,
612 * grand-children, etc. of this snapshot. This snapshot itself is also included
613 * in the search.
614 *
615 * Caller must hold the machine lock (which protects the snapshots tree!)
616 */
617ComObjPtr<Snapshot> Snapshot::i_findChildOrSelf(const Utf8Str &aName)
618{
619 ComObjPtr<Snapshot> child;
620 AssertReturn(!aName.isEmpty(), child);
621
622 AutoCaller autoCaller(this);
623 AssertComRC(autoCaller.rc());
624
625 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
626
627 if (m->strName == aName)
628 child = this;
629 else
630 {
631 alock.release();
632 for (SnapshotsList::const_iterator it = m->llChildren.begin();
633 it != m->llChildren.end();
634 ++it)
635 {
636 if ((child = (*it)->i_findChildOrSelf(aName)))
637 break;
638 }
639 }
640
641 return child;
642}
643
644/**
645 * Internal implementation for Snapshot::updateSavedStatePaths (below).
646 * @param strOldPath
647 * @param strNewPath
648 */
649void Snapshot::i_updateSavedStatePathsImpl(const Utf8Str &strOldPath,
650 const Utf8Str &strNewPath)
651{
652 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
653
654 const Utf8Str &path = m->pMachine->mSSData->strStateFilePath;
655 LogFlowThisFunc(("Snap[%s].statePath={%s}\n", m->strName.c_str(), path.c_str()));
656
657 /* state file may be NULL (for offline snapshots) */
658 if ( path.isNotEmpty()
659 && RTPathStartsWith(path.c_str(), strOldPath.c_str())
660 )
661 {
662 m->pMachine->mSSData->strStateFilePath = Utf8StrFmt("%s%s",
663 strNewPath.c_str(),
664 path.c_str() + strOldPath.length());
665 LogFlowThisFunc(("-> updated: {%s}\n", m->pMachine->mSSData->strStateFilePath.c_str()));
666 }
667
668 for (SnapshotsList::const_iterator it = m->llChildren.begin();
669 it != m->llChildren.end();
670 ++it)
671 {
672 Snapshot *pChild = *it;
673 pChild->i_updateSavedStatePathsImpl(strOldPath, strNewPath);
674 }
675}
676
677/**
678 * Checks if the specified path change affects the saved state file path of
679 * this snapshot or any of its (grand-)children and updates it accordingly.
680 *
681 * Intended to be called by Machine::openConfigLoader() only.
682 *
683 * @param strOldPath old path (full)
684 * @param strNewPath new path (full)
685 *
686 * @note Locks the machine (for the snapshots tree) + this object + children for writing.
687 */
688void Snapshot::i_updateSavedStatePaths(const Utf8Str &strOldPath,
689 const Utf8Str &strNewPath)
690{
691 LogFlowThisFunc(("aOldPath={%s} aNewPath={%s}\n", strOldPath.c_str(), strNewPath.c_str()));
692
693 AutoCaller autoCaller(this);
694 AssertComRC(autoCaller.rc());
695
696 // snapshots tree is protected by machine lock
697 AutoWriteLock alock(m->pMachine COMMA_LOCKVAL_SRC_POS);
698
699 // call the implementation under the tree lock
700 i_updateSavedStatePathsImpl(strOldPath, strNewPath);
701}
702
703/**
704 * Returns true if this snapshot or one of its children uses the given file,
705 * whose path must be fully qualified, as its saved state. When invoked on a
706 * machine's first snapshot, this can be used to check if a saved state file
707 * is shared with any snapshots.
708 *
709 * Caller must hold the machine lock, which protects the snapshots tree.
710 *
711 * @param strPath
712 * @param pSnapshotToIgnore If != NULL, this snapshot is ignored during the checks.
713 * @return
714 */
715bool Snapshot::i_sharesSavedStateFile(const Utf8Str &strPath,
716 Snapshot *pSnapshotToIgnore)
717{
718 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
719 const Utf8Str &path = m->pMachine->mSSData->strStateFilePath;
720
721 if (!pSnapshotToIgnore || pSnapshotToIgnore != this)
722 if (path.isNotEmpty())
723 if (path == strPath)
724 return true; // no need to recurse then
725
726 // but otherwise we must check children
727 for (SnapshotsList::const_iterator it = m->llChildren.begin();
728 it != m->llChildren.end();
729 ++it)
730 {
731 Snapshot *pChild = *it;
732 if (!pSnapshotToIgnore || pSnapshotToIgnore != pChild)
733 if (pChild->i_sharesSavedStateFile(strPath, pSnapshotToIgnore))
734 return true;
735 }
736
737 return false;
738}
739
740
741/**
742 * Internal implementation for Snapshot::updateNVRAMPaths (below).
743 * @param strOldPath
744 * @param strNewPath
745 */
746void Snapshot::i_updateNVRAMPathsImpl(const Utf8Str &strOldPath,
747 const Utf8Str &strNewPath)
748{
749 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
750
751 const Utf8Str path = m->pMachine->mBIOSSettings->i_getNonVolatileStorageFile();
752 LogFlowThisFunc(("Snap[%s].nvramPath={%s}\n", m->strName.c_str(), path.c_str()));
753
754 /* NVRAM filename may be empty */
755 if ( path.isNotEmpty()
756 && RTPathStartsWith(path.c_str(), strOldPath.c_str())
757 )
758 {
759 m->pMachine->mBIOSSettings->i_updateNonVolatileStorageFile(Utf8StrFmt("%s%s",
760 strNewPath.c_str(),
761 path.c_str() + strOldPath.length()));
762 LogFlowThisFunc(("-> updated: {%s}\n", m->pMachine->mBIOSSettings->i_getNonVolatileStorageFile().c_str()));
763 }
764
765 for (SnapshotsList::const_iterator it = m->llChildren.begin();
766 it != m->llChildren.end();
767 ++it)
768 {
769 Snapshot *pChild = *it;
770 pChild->i_updateNVRAMPathsImpl(strOldPath, strNewPath);
771 }
772}
773
774/**
775 * Checks if the specified path change affects the NVRAM file path of
776 * this snapshot or any of its (grand-)children and updates it accordingly.
777 *
778 * Intended to be called by Machine::openConfigLoader() only.
779 *
780 * @param strOldPath old path (full)
781 * @param strNewPath new path (full)
782 *
783 * @note Locks the machine (for the snapshots tree) + this object + children for writing.
784 */
785void Snapshot::i_updateNVRAMPaths(const Utf8Str &strOldPath,
786 const Utf8Str &strNewPath)
787{
788 LogFlowThisFunc(("aOldPath={%s} aNewPath={%s}\n", strOldPath.c_str(), strNewPath.c_str()));
789
790 AutoCaller autoCaller(this);
791 AssertComRC(autoCaller.rc());
792
793 // snapshots tree is protected by machine lock
794 AutoWriteLock alock(m->pMachine COMMA_LOCKVAL_SRC_POS);
795
796 // call the implementation under the tree lock
797 i_updateSavedStatePathsImpl(strOldPath, strNewPath);
798}
799
800/**
801 * Saves the settings attributes of one snapshot.
802 *
803 * @param data Target for saving snapshot settings.
804 * @return
805 */
806HRESULT Snapshot::i_saveSnapshotImplOne(settings::Snapshot &data) const
807{
808 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
809
810 data.uuid = m->uuid;
811 data.strName = m->strName;
812 data.timestamp = m->timeStamp;
813 data.strDescription = m->strDescription;
814
815 // state file (only if this snapshot is online)
816 if (i_getStateFilePath().isNotEmpty())
817 m->pMachine->i_copyPathRelativeToMachine(i_getStateFilePath(), data.strStateFile);
818 else
819 data.strStateFile.setNull();
820
821 HRESULT rc = m->pMachine->i_saveHardware(data.hardware, &data.debugging, &data.autostart);
822 if (FAILED(rc)) return rc;
823
824 return S_OK;
825}
826
827/**
828 * Internal implementation for Snapshot::saveSnapshot (below). Caller has
829 * requested the snapshots tree (machine) lock.
830 *
831 * @param data Target for saving snapshot settings.
832 * @return
833 */
834HRESULT Snapshot::i_saveSnapshotImpl(settings::Snapshot &data) const
835{
836 HRESULT rc = i_saveSnapshotImplOne(data);
837 if (FAILED(rc))
838 return rc;
839
840 settings::SnapshotsList &llSettingsChildren = data.llChildSnapshots;
841 for (SnapshotsList::const_iterator it = m->llChildren.begin();
842 it != m->llChildren.end();
843 ++it)
844 {
845 // Use the heap (indirectly through the list container) to reduce the
846 // stack footprint, avoiding local settings objects on the stack which
847 // need a lot of stack space. There can be VMs with deeply nested
848 // snapshots. The stack can be quite small, especially with XPCOM.
849 llSettingsChildren.push_back(settings::Snapshot::Empty);
850 Snapshot *pSnap = *it;
851 rc = pSnap->i_saveSnapshotImpl(llSettingsChildren.back());
852 if (FAILED(rc))
853 {
854 llSettingsChildren.pop_back();
855 return rc;
856 }
857 }
858
859 return S_OK;
860}
861
862/**
863 * Saves the given snapshot and all its children.
864 * It is assumed that the given node is empty.
865 *
866 * @param data Target for saving snapshot settings.
867 */
868HRESULT Snapshot::i_saveSnapshot(settings::Snapshot &data) const
869{
870 // snapshots tree is protected by machine lock
871 AutoReadLock alock(m->pMachine COMMA_LOCKVAL_SRC_POS);
872
873 return i_saveSnapshotImpl(data);
874}
875
876/**
877 * Part of the cleanup engine of Machine::Unregister().
878 *
879 * This removes all medium attachments from the snapshot's machine and returns
880 * the snapshot's saved state file name, if any, and then calls uninit() on
881 * "this" itself.
882 *
883 * Caller must hold the machine write lock (which protects the snapshots tree!)
884 *
885 * @param writeLock Machine write lock, which can get released temporarily here.
886 * @param cleanupMode Cleanup mode; see Machine::detachAllMedia().
887 * @param llMedia List of media returned to caller, depending on cleanupMode.
888 * @param llFilenames
889 * @return
890 */
891HRESULT Snapshot::i_uninitOne(AutoWriteLock &writeLock,
892 CleanupMode_T cleanupMode,
893 MediaList &llMedia,
894 std::list<Utf8Str> &llFilenames)
895{
896 // now call detachAllMedia on the snapshot machine
897 HRESULT rc = m->pMachine->i_detachAllMedia(writeLock,
898 this /* pSnapshot */,
899 cleanupMode,
900 llMedia);
901 if (FAILED(rc))
902 return rc;
903
904 // report the saved state file if it's not on the list yet
905 if (m->pMachine->mSSData->strStateFilePath.isNotEmpty())
906 {
907 bool fFound = false;
908 for (std::list<Utf8Str>::const_iterator it = llFilenames.begin();
909 it != llFilenames.end();
910 ++it)
911 {
912 const Utf8Str &str = *it;
913 if (str == m->pMachine->mSSData->strStateFilePath)
914 {
915 fFound = true;
916 break;
917 }
918 }
919 if (!fFound)
920 llFilenames.push_back(m->pMachine->mSSData->strStateFilePath);
921 }
922
923 Utf8Str strNVRAMFile = m->pMachine->mBIOSSettings->i_getNonVolatileStorageFile();
924 if (strNVRAMFile.isNotEmpty() && RTFileExists(strNVRAMFile.c_str()))
925 llFilenames.push_back(strNVRAMFile);
926
927 i_beginSnapshotDelete();
928 uninit();
929
930 return S_OK;
931}
932
933/**
934 * Part of the cleanup engine of Machine::Unregister().
935 *
936 * This recursively removes all medium attachments from the snapshot's machine
937 * and returns the snapshot's saved state file name, if any, and then calls
938 * uninit() on "this" itself.
939 *
940 * This recurses into children first, so the given MediaList receives child
941 * media first before their parents. If the caller wants to close all media,
942 * they should go thru the list from the beginning to the end because media
943 * cannot be closed if they have children.
944 *
945 * This calls uninit() on itself, so the snapshots tree (beginning with a machine's pFirstSnapshot) becomes invalid after this.
946 * It does not alter the main machine's snapshot pointers (pFirstSnapshot, pCurrentSnapshot).
947 *
948 * Caller must hold the machine write lock (which protects the snapshots tree!)
949 *
950 * @param writeLock Machine write lock, which can get released temporarily here.
951 * @param cleanupMode Cleanup mode; see Machine::detachAllMedia().
952 * @param llMedia List of media returned to caller, depending on cleanupMode.
953 * @param llFilenames
954 * @return
955 */
956HRESULT Snapshot::i_uninitRecursively(AutoWriteLock &writeLock,
957 CleanupMode_T cleanupMode,
958 MediaList &llMedia,
959 std::list<Utf8Str> &llFilenames)
960{
961 Assert(m->pMachine->isWriteLockOnCurrentThread());
962
963 HRESULT rc = S_OK;
964
965 // make a copy of the Guid for logging before we uninit ourselves
966#ifdef LOG_ENABLED
967 Guid uuid = i_getId();
968 Utf8Str name = i_getName();
969 LogFlowThisFunc(("Entering for snapshot '%s' {%RTuuid}\n", name.c_str(), uuid.raw()));
970#endif
971
972 // Recurse into children first so that the child media appear on the list
973 // first; this way caller can close the media from the beginning to the end
974 // because parent media can't be closed if they have children and
975 // additionally it postpones the uninit() call until we no longer need
976 // anything from the list. Oh, and remember that the child removes itself
977 // from the list, so keep the iterator at the beginning.
978 for (SnapshotsList::const_iterator it = m->llChildren.begin();
979 it != m->llChildren.end();
980 it = m->llChildren.begin())
981 {
982 Snapshot *pChild = *it;
983 rc = pChild->i_uninitRecursively(writeLock, cleanupMode, llMedia, llFilenames);
984 if (FAILED(rc))
985 break;
986 }
987
988 if (SUCCEEDED(rc))
989 rc = i_uninitOne(writeLock, cleanupMode, llMedia, llFilenames);
990
991#ifdef LOG_ENABLED
992 LogFlowThisFunc(("Leaving for snapshot '%s' {%RTuuid}: %Rhrc\n", name.c_str(), uuid.raw(), rc));
993#endif
994
995 return rc;
996}
997
998////////////////////////////////////////////////////////////////////////////////
999//
1000// SnapshotMachine implementation
1001//
1002////////////////////////////////////////////////////////////////////////////////
1003
1004SnapshotMachine::SnapshotMachine()
1005 : mMachine(NULL)
1006{}
1007
1008SnapshotMachine::~SnapshotMachine()
1009{}
1010
1011HRESULT SnapshotMachine::FinalConstruct()
1012{
1013 LogFlowThisFunc(("\n"));
1014
1015 return BaseFinalConstruct();
1016}
1017
1018void SnapshotMachine::FinalRelease()
1019{
1020 LogFlowThisFunc(("\n"));
1021
1022 uninit();
1023
1024 BaseFinalRelease();
1025}
1026
1027/**
1028 * Initializes the SnapshotMachine object when taking a snapshot.
1029 *
1030 * @param aSessionMachine machine to take a snapshot from
1031 * @param aSnapshotId snapshot ID of this snapshot machine
1032 * @param aStateFilePath file where the execution state will be later saved
1033 * (or NULL for the offline snapshot)
1034 *
1035 * @note The aSessionMachine must be locked for writing.
1036 */
1037HRESULT SnapshotMachine::init(SessionMachine *aSessionMachine,
1038 IN_GUID aSnapshotId,
1039 const Utf8Str &aStateFilePath)
1040{
1041 LogFlowThisFuncEnter();
1042 LogFlowThisFunc(("mName={%s}\n", aSessionMachine->mUserData->s.strName.c_str()));
1043
1044 Guid l_guid(aSnapshotId);
1045 AssertReturn(aSessionMachine && (!l_guid.isZero() && l_guid.isValid()), E_INVALIDARG);
1046
1047 /* Enclose the state transition NotReady->InInit->Ready */
1048 AutoInitSpan autoInitSpan(this);
1049 AssertReturn(autoInitSpan.isOk(), E_FAIL);
1050
1051 AssertReturn(aSessionMachine->isWriteLockOnCurrentThread(), E_FAIL);
1052
1053 mSnapshotId = aSnapshotId;
1054 ComObjPtr<Machine> pMachine = aSessionMachine->mPeer;
1055
1056 /* mPeer stays NULL */
1057 /* memorize the primary Machine instance (i.e. not SessionMachine!) */
1058 unconst(mMachine) = pMachine;
1059 /* share the parent pointer */
1060 unconst(mParent) = pMachine->mParent;
1061
1062 /* take the pointer to Data to share */
1063 mData.share(pMachine->mData);
1064
1065 /* take the pointer to UserData to share (our UserData must always be the
1066 * same as Machine's data) */
1067 mUserData.share(pMachine->mUserData);
1068
1069 /* make a private copy of all other data */
1070 mHWData.attachCopy(aSessionMachine->mHWData);
1071
1072 /* SSData is always unique for SnapshotMachine */
1073 mSSData.allocate();
1074 mSSData->strStateFilePath = aStateFilePath;
1075
1076 HRESULT rc = S_OK;
1077
1078 /* Create copies of all attachments (mMediaData after attaching a copy
1079 * contains just references to original objects). Additionally associate
1080 * media with the snapshot (Machine::uninitDataAndChildObjects() will
1081 * deassociate at destruction). */
1082 mMediumAttachments.allocate();
1083 for (MediumAttachmentList::const_iterator
1084 it = aSessionMachine->mMediumAttachments->begin();
1085 it != aSessionMachine->mMediumAttachments->end();
1086 ++it)
1087 {
1088 ComObjPtr<MediumAttachment> pAtt;
1089 pAtt.createObject();
1090 rc = pAtt->initCopy(this, *it);
1091 if (FAILED(rc)) return rc;
1092 mMediumAttachments->push_back(pAtt);
1093
1094 Medium *pMedium = pAtt->i_getMedium();
1095 if (pMedium) // can be NULL for non-harddisk
1096 {
1097 rc = pMedium->i_addBackReference(mData->mUuid, mSnapshotId);
1098 AssertComRC(rc);
1099 }
1100 }
1101
1102 /* create copies of all shared folders (mHWData after attaching a copy
1103 * contains just references to original objects) */
1104 for (HWData::SharedFolderList::iterator
1105 it = mHWData->mSharedFolders.begin();
1106 it != mHWData->mSharedFolders.end();
1107 ++it)
1108 {
1109 ComObjPtr<SharedFolder> pFolder;
1110 pFolder.createObject();
1111 rc = pFolder->initCopy(this, *it);
1112 if (FAILED(rc)) return rc;
1113 *it = pFolder;
1114 }
1115
1116 /* create copies of all PCI device assignments (mHWData after attaching
1117 * a copy contains just references to original objects) */
1118 for (HWData::PCIDeviceAssignmentList::iterator
1119 it = mHWData->mPCIDeviceAssignments.begin();
1120 it != mHWData->mPCIDeviceAssignments.end();
1121 ++it)
1122 {
1123 ComObjPtr<PCIDeviceAttachment> pDev;
1124 pDev.createObject();
1125 rc = pDev->initCopy(this, *it);
1126 if (FAILED(rc)) return rc;
1127 *it = pDev;
1128 }
1129
1130 /* create copies of all storage controllers (mStorageControllerData
1131 * after attaching a copy contains just references to original objects) */
1132 mStorageControllers.allocate();
1133 for (StorageControllerList::const_iterator
1134 it = aSessionMachine->mStorageControllers->begin();
1135 it != aSessionMachine->mStorageControllers->end();
1136 ++it)
1137 {
1138 ComObjPtr<StorageController> ctrl;
1139 ctrl.createObject();
1140 rc = ctrl->initCopy(this, *it);
1141 if (FAILED(rc)) return rc;
1142 mStorageControllers->push_back(ctrl);
1143 }
1144
1145 /* create all other child objects that will be immutable private copies */
1146
1147 unconst(mBIOSSettings).createObject();
1148 rc = mBIOSSettings->initCopy(this, pMachine->mBIOSSettings);
1149 if (FAILED(rc)) return rc;
1150
1151 unconst(mRecordingSettings).createObject();
1152 rc = mRecordingSettings->initCopy(this, pMachine->mRecordingSettings);
1153 if (FAILED(rc)) return rc;
1154
1155 unconst(mGraphicsAdapter).createObject();
1156 rc = mGraphicsAdapter->initCopy(this, pMachine->mGraphicsAdapter);
1157 if (FAILED(rc)) return rc;
1158
1159 unconst(mVRDEServer).createObject();
1160 rc = mVRDEServer->initCopy(this, pMachine->mVRDEServer);
1161 if (FAILED(rc)) return rc;
1162
1163 unconst(mAudioAdapter).createObject();
1164 rc = mAudioAdapter->initCopy(this, pMachine->mAudioAdapter);
1165 if (FAILED(rc)) return rc;
1166
1167 /* create copies of all USB controllers (mUSBControllerData
1168 * after attaching a copy contains just references to original objects) */
1169 mUSBControllers.allocate();
1170 for (USBControllerList::const_iterator
1171 it = aSessionMachine->mUSBControllers->begin();
1172 it != aSessionMachine->mUSBControllers->end();
1173 ++it)
1174 {
1175 ComObjPtr<USBController> ctrl;
1176 ctrl.createObject();
1177 rc = ctrl->initCopy(this, *it);
1178 if (FAILED(rc)) return rc;
1179 mUSBControllers->push_back(ctrl);
1180 }
1181
1182 unconst(mUSBDeviceFilters).createObject();
1183 rc = mUSBDeviceFilters->initCopy(this, pMachine->mUSBDeviceFilters);
1184 if (FAILED(rc)) return rc;
1185
1186 mNetworkAdapters.resize(pMachine->mNetworkAdapters.size());
1187 for (ULONG slot = 0; slot < mNetworkAdapters.size(); slot++)
1188 {
1189 unconst(mNetworkAdapters[slot]).createObject();
1190 rc = mNetworkAdapters[slot]->initCopy(this, pMachine->mNetworkAdapters[slot]);
1191 if (FAILED(rc)) return rc;
1192 }
1193
1194 for (ULONG slot = 0; slot < RT_ELEMENTS(mSerialPorts); slot++)
1195 {
1196 unconst(mSerialPorts[slot]).createObject();
1197 rc = mSerialPorts[slot]->initCopy(this, pMachine->mSerialPorts[slot]);
1198 if (FAILED(rc)) return rc;
1199 }
1200
1201 for (ULONG slot = 0; slot < RT_ELEMENTS(mParallelPorts); slot++)
1202 {
1203 unconst(mParallelPorts[slot]).createObject();
1204 rc = mParallelPorts[slot]->initCopy(this, pMachine->mParallelPorts[slot]);
1205 if (FAILED(rc)) return rc;
1206 }
1207
1208 unconst(mBandwidthControl).createObject();
1209 rc = mBandwidthControl->initCopy(this, pMachine->mBandwidthControl);
1210 if (FAILED(rc)) return rc;
1211
1212 /* Confirm a successful initialization when it's the case */
1213 autoInitSpan.setSucceeded();
1214
1215 LogFlowThisFuncLeave();
1216 return S_OK;
1217}
1218
1219/**
1220 * Initializes the SnapshotMachine object when loading from the settings file.
1221 *
1222 * @param aMachine machine the snapshot belongs to
1223 * @param hardware hardware settings
1224 * @param pDbg debuging settings
1225 * @param pAutostart autostart settings
1226 * @param aSnapshotId snapshot ID of this snapshot machine
1227 * @param aStateFilePath file where the execution state is saved
1228 * (or NULL for the offline snapshot)
1229 *
1230 * @note Doesn't lock anything.
1231 */
1232HRESULT SnapshotMachine::initFromSettings(Machine *aMachine,
1233 const settings::Hardware &hardware,
1234 const settings::Debugging *pDbg,
1235 const settings::Autostart *pAutostart,
1236 IN_GUID aSnapshotId,
1237 const Utf8Str &aStateFilePath)
1238{
1239 LogFlowThisFuncEnter();
1240 LogFlowThisFunc(("mName={%s}\n", aMachine->mUserData->s.strName.c_str()));
1241
1242 Guid l_guid(aSnapshotId);
1243 AssertReturn(aMachine && (!l_guid.isZero() && l_guid.isValid()), E_INVALIDARG);
1244
1245 /* Enclose the state transition NotReady->InInit->Ready */
1246 AutoInitSpan autoInitSpan(this);
1247 AssertReturn(autoInitSpan.isOk(), E_FAIL);
1248
1249 /* Don't need to lock aMachine when VirtualBox is starting up */
1250
1251 mSnapshotId = aSnapshotId;
1252
1253 /* mPeer stays NULL */
1254 /* memorize the primary Machine instance (i.e. not SessionMachine!) */
1255 unconst(mMachine) = aMachine;
1256 /* share the parent pointer */
1257 unconst(mParent) = aMachine->mParent;
1258
1259 /* take the pointer to Data to share */
1260 mData.share(aMachine->mData);
1261 /*
1262 * take the pointer to UserData to share
1263 * (our UserData must always be the same as Machine's data)
1264 */
1265 mUserData.share(aMachine->mUserData);
1266 /* allocate private copies of all other data (will be loaded from settings) */
1267 mHWData.allocate();
1268 mMediumAttachments.allocate();
1269 mStorageControllers.allocate();
1270 mUSBControllers.allocate();
1271
1272 /* SSData is always unique for SnapshotMachine */
1273 mSSData.allocate();
1274 mSSData->strStateFilePath = aStateFilePath;
1275
1276 /* create all other child objects that will be immutable private copies */
1277
1278 unconst(mBIOSSettings).createObject();
1279 mBIOSSettings->init(this);
1280
1281 unconst(mRecordingSettings).createObject();
1282 mRecordingSettings->init(this);
1283
1284 unconst(mGraphicsAdapter).createObject();
1285 mGraphicsAdapter->init(this);
1286
1287 unconst(mVRDEServer).createObject();
1288 mVRDEServer->init(this);
1289
1290 unconst(mAudioAdapter).createObject();
1291 mAudioAdapter->init(this);
1292
1293 unconst(mUSBDeviceFilters).createObject();
1294 mUSBDeviceFilters->init(this);
1295
1296 mNetworkAdapters.resize(Global::getMaxNetworkAdapters(mHWData->mChipsetType));
1297 for (ULONG slot = 0; slot < mNetworkAdapters.size(); slot++)
1298 {
1299 unconst(mNetworkAdapters[slot]).createObject();
1300 mNetworkAdapters[slot]->init(this, slot);
1301 }
1302
1303 for (ULONG slot = 0; slot < RT_ELEMENTS(mSerialPorts); slot++)
1304 {
1305 unconst(mSerialPorts[slot]).createObject();
1306 mSerialPorts[slot]->init(this, slot);
1307 }
1308
1309 for (ULONG slot = 0; slot < RT_ELEMENTS(mParallelPorts); slot++)
1310 {
1311 unconst(mParallelPorts[slot]).createObject();
1312 mParallelPorts[slot]->init(this, slot);
1313 }
1314
1315 unconst(mBandwidthControl).createObject();
1316 mBandwidthControl->init(this);
1317
1318 /* load hardware and storage settings */
1319 HRESULT rc = i_loadHardware(NULL, &mSnapshotId, hardware, pDbg, pAutostart);
1320
1321 if (SUCCEEDED(rc))
1322 /* commit all changes made during the initialization */
1323 i_commit(); /// @todo r=dj why do we need a commit in init?!? this is very expensive
1324 /// @todo r=klaus for some reason the settings loading logic backs up
1325 // the settings, and therefore a commit is needed. Should probably be changed.
1326
1327 /* Confirm a successful initialization when it's the case */
1328 if (SUCCEEDED(rc))
1329 autoInitSpan.setSucceeded();
1330
1331 LogFlowThisFuncLeave();
1332 return rc;
1333}
1334
1335/**
1336 * Uninitializes this SnapshotMachine object.
1337 */
1338void SnapshotMachine::uninit()
1339{
1340 LogFlowThisFuncEnter();
1341
1342 /* Enclose the state transition Ready->InUninit->NotReady */
1343 AutoUninitSpan autoUninitSpan(this);
1344 if (autoUninitSpan.uninitDone())
1345 return;
1346
1347 uninitDataAndChildObjects();
1348
1349 /* free the essential data structure last */
1350 mData.free();
1351
1352 unconst(mMachine) = NULL;
1353 unconst(mParent) = NULL;
1354 unconst(mPeer) = NULL;
1355
1356 LogFlowThisFuncLeave();
1357}
1358
1359/**
1360 * Overrides VirtualBoxBase::lockHandle() in order to share the lock handle
1361 * with the primary Machine instance (mMachine) if it exists.
1362 */
1363RWLockHandle *SnapshotMachine::lockHandle() const
1364{
1365 AssertReturn(mMachine != NULL, NULL);
1366 return mMachine->lockHandle();
1367}
1368
1369////////////////////////////////////////////////////////////////////////////////
1370//
1371// SnapshotMachine public internal methods
1372//
1373////////////////////////////////////////////////////////////////////////////////
1374
1375/**
1376 * Called by the snapshot object associated with this SnapshotMachine when
1377 * snapshot data such as name or description is changed.
1378 *
1379 * @warning Caller must hold no locks when calling this.
1380 */
1381HRESULT SnapshotMachine::i_onSnapshotChange(Snapshot *aSnapshot)
1382{
1383 AutoMultiWriteLock2 mlock(this, aSnapshot COMMA_LOCKVAL_SRC_POS);
1384 Guid uuidMachine(mData->mUuid),
1385 uuidSnapshot(aSnapshot->i_getId());
1386 bool fNeedsGlobalSaveSettings = false;
1387
1388 /* Flag the machine as dirty or change won't get saved. We disable the
1389 * modification of the current state flag, cause this snapshot data isn't
1390 * related to the current state. */
1391 mMachine->i_setModified(Machine::IsModified_Snapshots, false /* fAllowStateModification */);
1392 HRESULT rc = mMachine->i_saveSettings(&fNeedsGlobalSaveSettings,
1393 SaveS_Force); // we know we need saving, no need to check
1394 mlock.release();
1395
1396 if (SUCCEEDED(rc) && fNeedsGlobalSaveSettings)
1397 {
1398 // save the global settings
1399 AutoWriteLock vboxlock(mParent COMMA_LOCKVAL_SRC_POS);
1400 rc = mParent->i_saveSettings();
1401 }
1402
1403 /* inform callbacks */
1404 mParent->i_onSnapshotChange(uuidMachine, uuidSnapshot);
1405
1406 return rc;
1407}
1408
1409////////////////////////////////////////////////////////////////////////////////
1410//
1411// SessionMachine task records
1412//
1413////////////////////////////////////////////////////////////////////////////////
1414
1415/**
1416 * Still abstract base class for SessionMachine::TakeSnapshotTask,
1417 * SessionMachine::RestoreSnapshotTask and SessionMachine::DeleteSnapshotTask.
1418 */
1419class SessionMachine::SnapshotTask
1420 : public SessionMachine::Task
1421{
1422public:
1423 SnapshotTask(SessionMachine *m,
1424 Progress *p,
1425 const Utf8Str &t,
1426 Snapshot *s)
1427 : Task(m, p, t),
1428 m_pSnapshot(s)
1429 {}
1430
1431 ComObjPtr<Snapshot> m_pSnapshot;
1432};
1433
1434/** Take snapshot task */
1435class SessionMachine::TakeSnapshotTask
1436 : public SessionMachine::SnapshotTask
1437{
1438public:
1439 TakeSnapshotTask(SessionMachine *m,
1440 Progress *p,
1441 const Utf8Str &t,
1442 Snapshot *s,
1443 const Utf8Str &strName,
1444 const Utf8Str &strDescription,
1445 const Guid &uuidSnapshot,
1446 bool fPause,
1447 uint32_t uMemSize,
1448 bool fTakingSnapshotOnline)
1449 : SnapshotTask(m, p, t, s),
1450 m_strName(strName),
1451 m_strDescription(strDescription),
1452 m_uuidSnapshot(uuidSnapshot),
1453 m_fPause(fPause),
1454 m_uMemSize(uMemSize),
1455 m_fTakingSnapshotOnline(fTakingSnapshotOnline)
1456 {
1457 if (fTakingSnapshotOnline)
1458 m_pDirectControl = m->mData->mSession.mDirectControl;
1459 // If the VM is already paused then there's no point trying to pause
1460 // again during taking an (always online) snapshot.
1461 if (m_machineStateBackup == MachineState_Paused)
1462 m_fPause = false;
1463 }
1464
1465private:
1466 void handler()
1467 {
1468 try
1469 {
1470 ((SessionMachine *)(Machine *)m_pMachine)->i_takeSnapshotHandler(*this);
1471 }
1472 catch(...)
1473 {
1474 LogRel(("Some exception in the function i_takeSnapshotHandler()\n"));
1475 }
1476 }
1477
1478 Utf8Str m_strName;
1479 Utf8Str m_strDescription;
1480 Guid m_uuidSnapshot;
1481 Utf8Str m_strStateFilePath;
1482 ComPtr<IInternalSessionControl> m_pDirectControl;
1483 bool m_fPause;
1484 uint32_t m_uMemSize;
1485 bool m_fTakingSnapshotOnline;
1486
1487 friend HRESULT SessionMachine::i_finishTakingSnapshot(TakeSnapshotTask &task, AutoWriteLock &alock, bool aSuccess);
1488 friend void SessionMachine::i_takeSnapshotHandler(TakeSnapshotTask &task);
1489 friend void SessionMachine::i_takeSnapshotProgressCancelCallback(void *pvUser);
1490};
1491
1492/** Restore snapshot task */
1493class SessionMachine::RestoreSnapshotTask
1494 : public SessionMachine::SnapshotTask
1495{
1496public:
1497 RestoreSnapshotTask(SessionMachine *m,
1498 Progress *p,
1499 const Utf8Str &t,
1500 Snapshot *s)
1501 : SnapshotTask(m, p, t, s)
1502 {}
1503
1504private:
1505 void handler()
1506 {
1507 try
1508 {
1509 ((SessionMachine *)(Machine *)m_pMachine)->i_restoreSnapshotHandler(*this);
1510 }
1511 catch(...)
1512 {
1513 LogRel(("Some exception in the function i_restoreSnapshotHandler()\n"));
1514 }
1515 }
1516};
1517
1518/** Delete snapshot task */
1519class SessionMachine::DeleteSnapshotTask
1520 : public SessionMachine::SnapshotTask
1521{
1522public:
1523 DeleteSnapshotTask(SessionMachine *m,
1524 Progress *p,
1525 const Utf8Str &t,
1526 bool fDeleteOnline,
1527 Snapshot *s)
1528 : SnapshotTask(m, p, t, s),
1529 m_fDeleteOnline(fDeleteOnline)
1530 {}
1531
1532private:
1533 void handler()
1534 {
1535 try
1536 {
1537 ((SessionMachine *)(Machine *)m_pMachine)->i_deleteSnapshotHandler(*this);
1538 }
1539 catch(...)
1540 {
1541 LogRel(("Some exception in the function i_deleteSnapshotHandler()\n"));
1542 }
1543 }
1544
1545 bool m_fDeleteOnline;
1546 friend void SessionMachine::i_deleteSnapshotHandler(DeleteSnapshotTask &task);
1547};
1548
1549
1550////////////////////////////////////////////////////////////////////////////////
1551//
1552// TakeSnapshot methods (Machine and related tasks)
1553//
1554////////////////////////////////////////////////////////////////////////////////
1555
1556HRESULT Machine::takeSnapshot(const com::Utf8Str &aName,
1557 const com::Utf8Str &aDescription,
1558 BOOL fPause,
1559 com::Guid &aId,
1560 ComPtr<IProgress> &aProgress)
1561{
1562 NOREF(aName);
1563 NOREF(aDescription);
1564 NOREF(fPause);
1565 NOREF(aId);
1566 NOREF(aProgress);
1567 ReturnComNotImplemented();
1568}
1569
1570HRESULT SessionMachine::takeSnapshot(const com::Utf8Str &aName,
1571 const com::Utf8Str &aDescription,
1572 BOOL fPause,
1573 com::Guid &aId,
1574 ComPtr<IProgress> &aProgress)
1575{
1576 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
1577 LogFlowThisFunc(("aName='%s' mMachineState=%d\n", aName.c_str(), mData->mMachineState));
1578
1579 if (Global::IsTransient(mData->mMachineState))
1580 return setError(VBOX_E_INVALID_VM_STATE,
1581 tr("Cannot take a snapshot of the machine while it is changing the state (machine state: %s)"),
1582 Global::stringifyMachineState(mData->mMachineState));
1583
1584 HRESULT rc = i_checkStateDependency(MutableOrSavedOrRunningStateDep);
1585 if (FAILED(rc))
1586 return rc;
1587
1588 // prepare the progress object:
1589 // a) count the no. of hard disk attachments to get a matching no. of progress sub-operations
1590 ULONG cOperations = 2; // always at least setting up + finishing up
1591 ULONG ulTotalOperationsWeight = 2; // one each for setting up + finishing up
1592
1593 for (MediumAttachmentList::iterator
1594 it = mMediumAttachments->begin();
1595 it != mMediumAttachments->end();
1596 ++it)
1597 {
1598 const ComObjPtr<MediumAttachment> pAtt(*it);
1599 AutoReadLock attlock(pAtt COMMA_LOCKVAL_SRC_POS);
1600 AutoCaller attCaller(pAtt);
1601 if (pAtt->i_getType() == DeviceType_HardDisk)
1602 {
1603 ++cOperations;
1604
1605 // assume that creating a diff image takes as long as saving a 1MB state
1606 ulTotalOperationsWeight += 1;
1607 }
1608 }
1609
1610 // b) one extra sub-operations for online snapshots OR offline snapshots that have a saved state (needs to be copied)
1611 const bool fTakingSnapshotOnline = Global::IsOnline(mData->mMachineState);
1612 LogFlowThisFunc(("fTakingSnapshotOnline = %d\n", fTakingSnapshotOnline));
1613 if (fTakingSnapshotOnline)
1614 {
1615 ++cOperations;
1616 ulTotalOperationsWeight += mHWData->mMemorySize;
1617 }
1618
1619 // finally, create the progress object
1620 ComObjPtr<Progress> pProgress;
1621 pProgress.createObject();
1622 rc = pProgress->init(mParent,
1623 static_cast<IMachine *>(this),
1624 Bstr(tr("Taking a snapshot of the virtual machine")).raw(),
1625 fTakingSnapshotOnline /* aCancelable */,
1626 cOperations,
1627 ulTotalOperationsWeight,
1628 Bstr(tr("Setting up snapshot operation")).raw(), // first sub-op description
1629 1); // ulFirstOperationWeight
1630 if (FAILED(rc))
1631 return rc;
1632
1633 /* create an ID for the snapshot */
1634 Guid snapshotId;
1635 snapshotId.create();
1636
1637 /* create and start the task on a separate thread (note that it will not
1638 * start working until we release alock) */
1639 TakeSnapshotTask *pTask = new TakeSnapshotTask(this,
1640 pProgress,
1641 "TakeSnap",
1642 NULL /* pSnapshot */,
1643 aName,
1644 aDescription,
1645 snapshotId,
1646 !!fPause,
1647 mHWData->mMemorySize,
1648 fTakingSnapshotOnline);
1649 MachineState_T const machineStateBackup = pTask->m_machineStateBackup;
1650 rc = pTask->createThread();
1651 pTask = NULL;
1652 if (FAILED(rc))
1653 return rc;
1654
1655 /* set the proper machine state (note: after creating a Task instance) */
1656 if (fTakingSnapshotOnline)
1657 {
1658 if (machineStateBackup != MachineState_Paused && !fPause)
1659 i_setMachineState(MachineState_LiveSnapshotting);
1660 else
1661 i_setMachineState(MachineState_OnlineSnapshotting);
1662 i_updateMachineStateOnClient();
1663 }
1664 else
1665 i_setMachineState(MachineState_Snapshotting);
1666
1667 aId = snapshotId;
1668 pProgress.queryInterfaceTo(aProgress.asOutParam());
1669
1670 return rc;
1671}
1672
1673/**
1674 * Task thread implementation for SessionMachine::TakeSnapshot(), called from
1675 * SessionMachine::taskHandler().
1676 *
1677 * @note Locks this object for writing.
1678 *
1679 * @param task
1680 * @return
1681 */
1682void SessionMachine::i_takeSnapshotHandler(TakeSnapshotTask &task)
1683{
1684 LogFlowThisFuncEnter();
1685
1686 // Taking a snapshot consists of the following:
1687 // 1) creating a Snapshot object with the current state of the machine
1688 // (hardware + storage)
1689 // 2) creating a diff image for each virtual hard disk, into which write
1690 // operations go after the snapshot has been created
1691 // 3) if the machine is online: saving the state of the virtual machine
1692 // (in the VM process)
1693 // 4) reattach the hard disks
1694 // 5) update the various snapshot/machine objects, save settings
1695
1696 HRESULT rc = S_OK;
1697 AutoCaller autoCaller(this);
1698 LogFlowThisFunc(("state=%d\n", getObjectState().getState()));
1699 if (FAILED(autoCaller.rc()))
1700 {
1701 /* we might have been uninitialized because the session was accidentally
1702 * closed by the client, so don't assert */
1703 rc = setError(E_FAIL,
1704 tr("The session has been accidentally closed"));
1705 task.m_pProgress->i_notifyComplete(rc);
1706 LogFlowThisFuncLeave();
1707 return;
1708 }
1709
1710 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
1711
1712 bool fBeganTakingSnapshot = false;
1713 BOOL fSuspendedBySave = FALSE;
1714
1715 std::set<ComObjPtr<Medium> > pMediumsForNotify;
1716 std::map<Guid, DeviceType_T> uIdsForNotify;
1717
1718 try
1719 {
1720 /// @todo at this point we have to be in the right state!!!!
1721 AssertStmt( mData->mMachineState == MachineState_Snapshotting
1722 || mData->mMachineState == MachineState_OnlineSnapshotting
1723 || mData->mMachineState == MachineState_LiveSnapshotting, throw E_FAIL);
1724 AssertStmt(task.m_machineStateBackup != mData->mMachineState, throw E_FAIL);
1725 AssertStmt(task.m_pSnapshot.isNull(), throw E_FAIL);
1726
1727 if ( mData->mCurrentSnapshot
1728 && mData->mCurrentSnapshot->i_getDepth() >= SETTINGS_SNAPSHOT_DEPTH_MAX)
1729 {
1730 throw setError(VBOX_E_INVALID_OBJECT_STATE,
1731 tr("Cannot take another snapshot for machine '%s', because it exceeds the maximum snapshot depth limit. Please delete some earlier snapshot which you no longer need"),
1732 mUserData->s.strName.c_str());
1733 }
1734
1735 /* save settings to ensure current changes are committed and
1736 * hard disks are fixed up */
1737 rc = i_saveSettings(NULL);
1738 // no need to check for whether VirtualBox.xml needs changing since
1739 // we can't have a machine XML rename pending at this point
1740 if (FAILED(rc))
1741 throw rc;
1742
1743 /* task.m_strStateFilePath is "" when the machine is offline or saved */
1744 if (task.m_fTakingSnapshotOnline)
1745 {
1746 Bstr value;
1747 rc = GetExtraData(Bstr("VBoxInternal2/ForceTakeSnapshotWithoutState").raw(),
1748 value.asOutParam());
1749 if (FAILED(rc) || value != "1")
1750 // creating a new online snapshot: we need a fresh saved state file
1751 i_composeSavedStateFilename(task.m_strStateFilePath);
1752 }
1753 else if (task.m_machineStateBackup == MachineState_Saved)
1754 // taking an offline snapshot from machine in "saved" state: use existing state file
1755 task.m_strStateFilePath = mSSData->strStateFilePath;
1756
1757 if (task.m_strStateFilePath.isNotEmpty())
1758 {
1759 // ensure the directory for the saved state file exists
1760 rc = VirtualBox::i_ensureFilePathExists(task.m_strStateFilePath, true /* fCreate */);
1761 if (FAILED(rc))
1762 throw rc;
1763 }
1764
1765 /* STEP 1: create the snapshot object */
1766
1767 /* create a snapshot machine object */
1768 ComObjPtr<SnapshotMachine> pSnapshotMachine;
1769 pSnapshotMachine.createObject();
1770 rc = pSnapshotMachine->init(this, task.m_uuidSnapshot.ref(), task.m_strStateFilePath);
1771 AssertComRCThrowRC(rc);
1772
1773 /* create a snapshot object */
1774 RTTIMESPEC time;
1775 RTTimeNow(&time);
1776 task.m_pSnapshot.createObject();
1777 rc = task.m_pSnapshot->init(mParent,
1778 task.m_uuidSnapshot,
1779 task.m_strName,
1780 task.m_strDescription,
1781 time,
1782 pSnapshotMachine,
1783 mData->mCurrentSnapshot);
1784 AssertComRCThrowRC(rc);
1785
1786 /* STEP 2: create the diff images */
1787 LogFlowThisFunc(("Creating differencing hard disks (online=%d)...\n",
1788 task.m_fTakingSnapshotOnline));
1789
1790 // Backup the media data so we can recover if something goes wrong.
1791 // The matching commit() is in fixupMedia() during SessionMachine::i_finishTakingSnapshot()
1792 i_setModified(IsModified_Storage);
1793 mMediumAttachments.backup();
1794
1795 alock.release();
1796 /* create new differencing hard disks and attach them to this machine */
1797 rc = i_createImplicitDiffs(task.m_pProgress,
1798 1, // operation weight; must be the same as in Machine::TakeSnapshot()
1799 task.m_fTakingSnapshotOnline);
1800 if (FAILED(rc))
1801 throw rc;
1802 alock.acquire();
1803
1804 // MUST NOT save the settings or the media registry here, because
1805 // this causes trouble with rolling back settings if the user cancels
1806 // taking the snapshot after the diff images have been created.
1807
1808 fBeganTakingSnapshot = true;
1809
1810 // STEP 3: save the VM state (if online)
1811 if (task.m_fTakingSnapshotOnline)
1812 {
1813 task.m_pProgress->SetNextOperation(Bstr(tr("Saving the machine state")).raw(),
1814 mHWData->mMemorySize); // operation weight, same as computed
1815 // when setting up progress object
1816
1817 if (task.m_strStateFilePath.isNotEmpty())
1818 {
1819 alock.release();
1820 task.m_pProgress->i_setCancelCallback(i_takeSnapshotProgressCancelCallback, &task);
1821 rc = task.m_pDirectControl->SaveStateWithReason(Reason_Snapshot,
1822 task.m_pProgress,
1823 task.m_pSnapshot,
1824 Bstr(task.m_strStateFilePath).raw(),
1825 task.m_fPause,
1826 &fSuspendedBySave);
1827 task.m_pProgress->i_setCancelCallback(NULL, NULL);
1828 alock.acquire();
1829 if (FAILED(rc))
1830 throw rc;
1831 }
1832 else
1833 LogRel(("Machine: skipped saving state as part of online snapshot\n"));
1834
1835 if (FAILED(task.m_pProgress->NotifyPointOfNoReturn()))
1836 throw setError(E_FAIL, tr("Canceled"));
1837
1838 // STEP 4: reattach hard disks
1839 LogFlowThisFunc(("Reattaching new differencing hard disks...\n"));
1840
1841 task.m_pProgress->SetNextOperation(Bstr(tr("Reconfiguring medium attachments")).raw(),
1842 1); // operation weight, same as computed when setting up progress object
1843
1844 com::SafeIfaceArray<IMediumAttachment> atts;
1845 rc = COMGETTER(MediumAttachments)(ComSafeArrayAsOutParam(atts));
1846 if (FAILED(rc))
1847 throw rc;
1848
1849 alock.release();
1850 rc = task.m_pDirectControl->ReconfigureMediumAttachments(ComSafeArrayAsInParam(atts));
1851 alock.acquire();
1852 if (FAILED(rc))
1853 throw rc;
1854 }
1855
1856 // Handle NVRAM file snapshotting
1857 Utf8Str strNVRAM = mBIOSSettings->i_getNonVolatileStorageFile();
1858 Utf8Str strNVRAMSnap = pSnapshotMachine->i_getSnapshotNVRAMFilename();
1859 if (strNVRAM.isNotEmpty() && strNVRAMSnap.isNotEmpty() && RTFileExists(strNVRAM.c_str()))
1860 {
1861 Utf8Str strNVRAMSnapAbs;
1862 i_calculateFullPath(strNVRAMSnap, strNVRAMSnapAbs);
1863 rc = VirtualBox::i_ensureFilePathExists(strNVRAMSnapAbs, true /* fCreate */);
1864 if (FAILED(rc))
1865 throw rc;
1866 int vrc = RTFileCopy(strNVRAM.c_str(), strNVRAMSnapAbs.c_str());
1867 if (RT_FAILURE(vrc))
1868 throw setErrorBoth(VBOX_E_IPRT_ERROR, vrc,
1869 tr("Could not copy NVRAM file '%s' to '%s' (%Rrc)"),
1870 strNVRAM.c_str(), strNVRAMSnapAbs.c_str(), vrc);
1871 pSnapshotMachine->mBIOSSettings->i_updateNonVolatileStorageFile(strNVRAMSnap);
1872 }
1873
1874 // store parent of newly created diffs before commit for notify
1875 {
1876 MediumAttachmentList &oldAtts = *mMediumAttachments.backedUpData();
1877 for (MediumAttachmentList::const_iterator
1878 it = mMediumAttachments->begin();
1879 it != mMediumAttachments->end();
1880 ++it)
1881 {
1882 MediumAttachment *pAttach = *it;
1883 Medium *pMedium = pAttach->i_getMedium();
1884 if (!pMedium)
1885 continue;
1886
1887 bool fFound = false;
1888 /* was this medium attached before? */
1889 for (MediumAttachmentList::iterator
1890 oldIt = oldAtts.begin();
1891 oldIt != oldAtts.end();
1892 ++oldIt)
1893 {
1894 MediumAttachment *pOldAttach = *oldIt;
1895 if (pOldAttach->i_getMedium() == pMedium)
1896 {
1897 fFound = true;
1898 break;
1899 }
1900 }
1901 if (!fFound)
1902 {
1903 pMediumsForNotify.insert(pMedium->i_getParent());
1904 uIdsForNotify[pMedium->i_getId()] = pMedium->i_getDeviceType();
1905 }
1906 }
1907 }
1908
1909 /*
1910 * Finalize the requested snapshot object. This will reset the
1911 * machine state to the state it had at the beginning.
1912 */
1913 rc = i_finishTakingSnapshot(task, alock, true /*aSuccess*/);
1914 // do not throw rc here because we can't call i_finishTakingSnapshot() twice
1915 LogFlowThisFunc(("i_finishTakingSnapshot -> %Rhrc [mMachineState=%s]\n", rc, Global::stringifyMachineState(mData->mMachineState)));
1916 }
1917 catch (HRESULT rcThrown)
1918 {
1919 rc = rcThrown;
1920 LogThisFunc(("Caught %Rhrc [mMachineState=%s]\n", rc, Global::stringifyMachineState(mData->mMachineState)));
1921
1922 /// @todo r=klaus check that the implicit diffs created above are cleaned up im the relevant error cases
1923
1924 /* preserve existing error info */
1925 ErrorInfoKeeper eik;
1926
1927 if (fBeganTakingSnapshot)
1928 i_finishTakingSnapshot(task, alock, false /*aSuccess*/);
1929
1930 // have to postpone this to the end as i_finishTakingSnapshot() needs
1931 // it for various cleanup steps
1932 if (task.m_pSnapshot)
1933 {
1934 task.m_pSnapshot->uninit();
1935 task.m_pSnapshot.setNull();
1936 }
1937 }
1938 Assert(alock.isWriteLockOnCurrentThread());
1939
1940 {
1941 // Keep all error information over the cleanup steps
1942 ErrorInfoKeeper eik;
1943
1944 /*
1945 * Fix up the machine state.
1946 *
1947 * For offline snapshots we just update the local copy, for the other
1948 * variants do the entire work. This ensures that the state is in sync
1949 * with the VM process (in particular the VM execution state).
1950 */
1951 bool fNeedClientMachineStateUpdate = false;
1952 if ( mData->mMachineState == MachineState_LiveSnapshotting
1953 || mData->mMachineState == MachineState_OnlineSnapshotting
1954 || mData->mMachineState == MachineState_Snapshotting)
1955 {
1956 if (!task.m_fTakingSnapshotOnline)
1957 i_setMachineState(task.m_machineStateBackup);
1958 else
1959 {
1960 MachineState_T enmMachineState = MachineState_Null;
1961 HRESULT rc2 = task.m_pDirectControl->COMGETTER(NominalState)(&enmMachineState);
1962 if (FAILED(rc2) || enmMachineState == MachineState_Null)
1963 {
1964 AssertMsgFailed(("state=%s\n", Global::stringifyMachineState(enmMachineState)));
1965 // pure nonsense, try to continue somehow
1966 enmMachineState = MachineState_Aborted;
1967 }
1968 if (enmMachineState == MachineState_Paused)
1969 {
1970 if (fSuspendedBySave)
1971 {
1972 alock.release();
1973 rc2 = task.m_pDirectControl->ResumeWithReason(Reason_Snapshot);
1974 alock.acquire();
1975 if (SUCCEEDED(rc2))
1976 enmMachineState = task.m_machineStateBackup;
1977 }
1978 else
1979 enmMachineState = task.m_machineStateBackup;
1980 }
1981 if (enmMachineState != mData->mMachineState)
1982 {
1983 fNeedClientMachineStateUpdate = true;
1984 i_setMachineState(enmMachineState);
1985 }
1986 }
1987 }
1988
1989 /* check the remote state to see that we got it right. */
1990 MachineState_T enmMachineState = MachineState_Null;
1991 if (!task.m_pDirectControl.isNull())
1992 {
1993 ComPtr<IConsole> pConsole;
1994 task.m_pDirectControl->COMGETTER(RemoteConsole)(pConsole.asOutParam());
1995 if (!pConsole.isNull())
1996 pConsole->COMGETTER(State)(&enmMachineState);
1997 }
1998 LogFlowThisFunc(("local mMachineState=%s remote mMachineState=%s\n",
1999 Global::stringifyMachineState(mData->mMachineState),
2000 Global::stringifyMachineState(enmMachineState)));
2001
2002 if (fNeedClientMachineStateUpdate)
2003 i_updateMachineStateOnClient();
2004 }
2005
2006 task.m_pProgress->i_notifyComplete(rc);
2007
2008 if (SUCCEEDED(rc))
2009 mParent->i_onSnapshotTaken(mData->mUuid, task.m_uuidSnapshot);
2010
2011 if (SUCCEEDED(rc))
2012 {
2013 for (std::map<Guid, DeviceType_T>::const_iterator it = uIdsForNotify.begin();
2014 it != uIdsForNotify.end();
2015 ++it)
2016 {
2017 mParent->i_onMediumRegistered(it->first, it->second, TRUE);
2018 }
2019
2020 for (std::set<ComObjPtr<Medium> >::const_iterator it = pMediumsForNotify.begin();
2021 it != pMediumsForNotify.end();
2022 ++it)
2023 {
2024 if (it->isNotNull())
2025 mParent->i_onMediumConfigChanged(*it);
2026 }
2027 }
2028 LogFlowThisFuncLeave();
2029}
2030
2031
2032/**
2033 * Progress cancelation callback employed by SessionMachine::i_takeSnapshotHandler.
2034 */
2035/*static*/
2036void SessionMachine::i_takeSnapshotProgressCancelCallback(void *pvUser)
2037{
2038 TakeSnapshotTask *pTask = (TakeSnapshotTask *)pvUser;
2039 AssertPtrReturnVoid(pTask);
2040 AssertReturnVoid(!pTask->m_pDirectControl.isNull());
2041 pTask->m_pDirectControl->CancelSaveStateWithReason();
2042}
2043
2044
2045/**
2046 * Called by the Console when it's done saving the VM state into the snapshot
2047 * (if online) and reconfiguring the hard disks. See BeginTakingSnapshot() above.
2048 *
2049 * This also gets called if the console part of snapshotting failed after the
2050 * BeginTakingSnapshot() call, to clean up the server side.
2051 *
2052 * @note Locks VirtualBox and this object for writing.
2053 *
2054 * @param task
2055 * @param alock
2056 * @param aSuccess Whether Console was successful with the client-side
2057 * snapshot things.
2058 * @return
2059 */
2060HRESULT SessionMachine::i_finishTakingSnapshot(TakeSnapshotTask &task, AutoWriteLock &alock, bool aSuccess)
2061{
2062 LogFlowThisFunc(("\n"));
2063
2064 Assert(alock.isWriteLockOnCurrentThread());
2065
2066 AssertReturn( !aSuccess
2067 || mData->mMachineState == MachineState_Snapshotting
2068 || mData->mMachineState == MachineState_OnlineSnapshotting
2069 || mData->mMachineState == MachineState_LiveSnapshotting, E_FAIL);
2070
2071 ComObjPtr<Snapshot> pOldFirstSnap = mData->mFirstSnapshot;
2072 ComObjPtr<Snapshot> pOldCurrentSnap = mData->mCurrentSnapshot;
2073
2074 HRESULT rc = S_OK;
2075
2076 if (aSuccess)
2077 {
2078 // new snapshot becomes the current one
2079 mData->mCurrentSnapshot = task.m_pSnapshot;
2080
2081 /* memorize the first snapshot if necessary */
2082 if (!mData->mFirstSnapshot)
2083 mData->mFirstSnapshot = mData->mCurrentSnapshot;
2084
2085 int flSaveSettings = SaveS_Force; // do not do a deep compare in machine settings,
2086 // snapshots change, so we know we need to save
2087 if (!task.m_fTakingSnapshotOnline)
2088 /* the machine was powered off or saved when taking a snapshot, so
2089 * reset the mCurrentStateModified flag */
2090 flSaveSettings |= SaveS_ResetCurStateModified;
2091
2092 rc = i_saveSettings(NULL, flSaveSettings);
2093 }
2094
2095 if (aSuccess && SUCCEEDED(rc))
2096 {
2097 /* associate old hard disks with the snapshot and do locking/unlocking*/
2098 i_commitMedia(task.m_fTakingSnapshotOnline);
2099 alock.release();
2100 }
2101 else
2102 {
2103 /* delete all differencing hard disks created (this will also attach
2104 * their parents back by rolling back mMediaData) */
2105 alock.release();
2106
2107 i_rollbackMedia();
2108
2109 mData->mFirstSnapshot = pOldFirstSnap; // might have been changed above
2110 mData->mCurrentSnapshot = pOldCurrentSnap; // might have been changed above
2111
2112 // delete the saved state file (it might have been already created)
2113 if (task.m_fTakingSnapshotOnline)
2114 // no need to test for whether the saved state file is shared: an online
2115 // snapshot means that a new saved state file was created, which we must
2116 // clean up now
2117 RTFileDelete(task.m_pSnapshot->i_getStateFilePath().c_str());
2118
2119 alock.acquire();
2120
2121 task.m_pSnapshot->uninit();
2122 alock.release();
2123
2124 }
2125
2126 /* clear out the snapshot data */
2127 task.m_pSnapshot.setNull();
2128
2129 /* alock has been released already */
2130 mParent->i_saveModifiedRegistries();
2131
2132 alock.acquire();
2133
2134 return rc;
2135}
2136
2137////////////////////////////////////////////////////////////////////////////////
2138//
2139// RestoreSnapshot methods (Machine and related tasks)
2140//
2141////////////////////////////////////////////////////////////////////////////////
2142
2143HRESULT Machine::restoreSnapshot(const ComPtr<ISnapshot> &aSnapshot,
2144 ComPtr<IProgress> &aProgress)
2145{
2146 NOREF(aSnapshot);
2147 NOREF(aProgress);
2148 ReturnComNotImplemented();
2149}
2150
2151/**
2152 * Restoring a snapshot happens entirely on the server side, the machine cannot be running.
2153 *
2154 * This creates a new thread that does the work and returns a progress object to the client.
2155 * Actual work then takes place in RestoreSnapshotTask::handler().
2156 *
2157 * @note Locks this + children objects for writing!
2158 *
2159 * @param aSnapshot in: the snapshot to restore.
2160 * @param aProgress out: progress object to monitor restore thread.
2161 * @return
2162 */
2163HRESULT SessionMachine::restoreSnapshot(const ComPtr<ISnapshot> &aSnapshot,
2164 ComPtr<IProgress> &aProgress)
2165{
2166 LogFlowThisFuncEnter();
2167
2168 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2169
2170 // machine must not be running
2171 if (Global::IsOnlineOrTransient(mData->mMachineState))
2172 return setError(VBOX_E_INVALID_VM_STATE,
2173 tr("Cannot delete the current state of the running machine (machine state: %s)"),
2174 Global::stringifyMachineState(mData->mMachineState));
2175
2176 HRESULT rc = i_checkStateDependency(MutableOrSavedStateDep);
2177 if (FAILED(rc))
2178 return rc;
2179
2180 ISnapshot* iSnapshot = aSnapshot;
2181 ComObjPtr<Snapshot> pSnapshot(static_cast<Snapshot*>(iSnapshot));
2182 ComObjPtr<SnapshotMachine> pSnapMachine = pSnapshot->i_getSnapshotMachine();
2183
2184 // create a progress object. The number of operations is:
2185 // 1 (preparing) + # of hard disks + 1 (if we need to copy the saved state file) */
2186 LogFlowThisFunc(("Going thru snapshot machine attachments to determine progress setup\n"));
2187
2188 ULONG ulOpCount = 1; // one for preparations
2189 ULONG ulTotalWeight = 1; // one for preparations
2190 for (MediumAttachmentList::iterator
2191 it = pSnapMachine->mMediumAttachments->begin();
2192 it != pSnapMachine->mMediumAttachments->end();
2193 ++it)
2194 {
2195 ComObjPtr<MediumAttachment> &pAttach = *it;
2196 AutoReadLock attachLock(pAttach COMMA_LOCKVAL_SRC_POS);
2197 if (pAttach->i_getType() == DeviceType_HardDisk)
2198 {
2199 ++ulOpCount;
2200 ++ulTotalWeight; // assume one MB weight for each differencing hard disk to manage
2201 Assert(pAttach->i_getMedium());
2202 LogFlowThisFunc(("op %d: considering hard disk attachment %s\n", ulOpCount,
2203 pAttach->i_getMedium()->i_getName().c_str()));
2204 }
2205 }
2206
2207 ComObjPtr<Progress> pProgress;
2208 pProgress.createObject();
2209 pProgress->init(mParent, static_cast<IMachine*>(this),
2210 BstrFmt(tr("Restoring snapshot '%s'"), pSnapshot->i_getName().c_str()).raw(),
2211 FALSE /* aCancelable */,
2212 ulOpCount,
2213 ulTotalWeight,
2214 Bstr(tr("Restoring machine settings")).raw(),
2215 1);
2216
2217 /* create and start the task on a separate thread (note that it will not
2218 * start working until we release alock) */
2219 RestoreSnapshotTask *pTask = new RestoreSnapshotTask(this,
2220 pProgress,
2221 "RestoreSnap",
2222 pSnapshot);
2223 rc = pTask->createThread();
2224 pTask = NULL;
2225 if (FAILED(rc))
2226 return rc;
2227
2228 /* set the proper machine state (note: after creating a Task instance) */
2229 i_setMachineState(MachineState_RestoringSnapshot);
2230
2231 /* return the progress to the caller */
2232 pProgress.queryInterfaceTo(aProgress.asOutParam());
2233
2234 LogFlowThisFuncLeave();
2235
2236 return S_OK;
2237}
2238
2239/**
2240 * Worker method for the restore snapshot thread created by SessionMachine::RestoreSnapshot().
2241 * This method gets called indirectly through SessionMachine::taskHandler() which then
2242 * calls RestoreSnapshotTask::handler().
2243 *
2244 * The RestoreSnapshotTask contains the progress object returned to the console by
2245 * SessionMachine::RestoreSnapshot, through which progress and results are reported.
2246 *
2247 * @note Locks mParent + this object for writing.
2248 *
2249 * @param task Task data.
2250 */
2251void SessionMachine::i_restoreSnapshotHandler(RestoreSnapshotTask &task)
2252{
2253 LogFlowThisFuncEnter();
2254
2255 AutoCaller autoCaller(this);
2256
2257 LogFlowThisFunc(("state=%d\n", getObjectState().getState()));
2258 if (!autoCaller.isOk())
2259 {
2260 /* we might have been uninitialized because the session was accidentally
2261 * closed by the client, so don't assert */
2262 task.m_pProgress->i_notifyComplete(E_FAIL,
2263 COM_IIDOF(IMachine),
2264 getComponentName(),
2265 tr("The session has been accidentally closed"));
2266
2267 LogFlowThisFuncLeave();
2268 return;
2269 }
2270
2271 HRESULT rc = S_OK;
2272 Guid snapshotId;
2273 std::set<ComObjPtr<Medium> > pMediumsForNotify;
2274 std::map<Guid, std::pair<DeviceType_T, BOOL> > uIdsForNotify;
2275
2276 try
2277 {
2278 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2279
2280 /* Discard all current changes to mUserData (name, OSType etc.).
2281 * Note that the machine is powered off, so there is no need to inform
2282 * the direct session. */
2283 if (mData->flModifications)
2284 i_rollback(false /* aNotify */);
2285
2286 /* Delete the saved state file if the machine was Saved prior to this
2287 * operation */
2288 if (task.m_machineStateBackup == MachineState_Saved)
2289 {
2290 Assert(!mSSData->strStateFilePath.isEmpty());
2291
2292 // release the saved state file AFTER unsetting the member variable
2293 // so that releaseSavedStateFile() won't think it's still in use
2294 Utf8Str strStateFile(mSSData->strStateFilePath);
2295 mSSData->strStateFilePath.setNull();
2296 i_releaseSavedStateFile(strStateFile, NULL /* pSnapshotToIgnore */ );
2297
2298 task.modifyBackedUpState(MachineState_PoweredOff);
2299
2300 rc = i_saveStateSettings(SaveSTS_StateFilePath);
2301 if (FAILED(rc))
2302 throw rc;
2303 }
2304
2305 RTTIMESPEC snapshotTimeStamp;
2306 RTTimeSpecSetMilli(&snapshotTimeStamp, 0);
2307
2308 {
2309 AutoReadLock snapshotLock(task.m_pSnapshot COMMA_LOCKVAL_SRC_POS);
2310
2311 /* remember the timestamp of the snapshot we're restoring from */
2312 snapshotTimeStamp = task.m_pSnapshot->i_getTimeStamp();
2313
2314 // save the snapshot ID (paranoia, here we hold the lock)
2315 snapshotId = task.m_pSnapshot->i_getId();
2316
2317 ComPtr<SnapshotMachine> pSnapshotMachine(task.m_pSnapshot->i_getSnapshotMachine());
2318
2319 /* copy all hardware data from the snapshot */
2320 i_copyFrom(pSnapshotMachine);
2321
2322 LogFlowThisFunc(("Restoring hard disks from the snapshot...\n"));
2323
2324 // restore the attachments from the snapshot
2325 i_setModified(IsModified_Storage);
2326 mMediumAttachments.backup();
2327 mMediumAttachments->clear();
2328 for (MediumAttachmentList::const_iterator
2329 it = pSnapshotMachine->mMediumAttachments->begin();
2330 it != pSnapshotMachine->mMediumAttachments->end();
2331 ++it)
2332 {
2333 ComObjPtr<MediumAttachment> pAttach;
2334 pAttach.createObject();
2335 pAttach->initCopy(this, *it);
2336 mMediumAttachments->push_back(pAttach);
2337 }
2338
2339 /* release the locks before the potentially lengthy operation */
2340 snapshotLock.release();
2341 alock.release();
2342
2343 rc = i_createImplicitDiffs(task.m_pProgress,
2344 1,
2345 false /* aOnline */);
2346 if (FAILED(rc))
2347 throw rc;
2348
2349 alock.acquire();
2350 snapshotLock.acquire();
2351
2352 /* Note: on success, current (old) hard disks will be
2353 * deassociated/deleted on #commit() called from #i_saveSettings() at
2354 * the end. On failure, newly created implicit diffs will be
2355 * deleted by #rollback() at the end. */
2356
2357 /* should not have a saved state file associated at this point */
2358 Assert(mSSData->strStateFilePath.isEmpty());
2359
2360 const Utf8Str &strSnapshotStateFile = task.m_pSnapshot->i_getStateFilePath();
2361
2362 if (strSnapshotStateFile.isNotEmpty())
2363 // online snapshot: then share the state file
2364 mSSData->strStateFilePath = strSnapshotStateFile;
2365
2366 const Utf8Str srcNVRAM(pSnapshotMachine->mBIOSSettings->i_getNonVolatileStorageFile());
2367 const Utf8Str dstNVRAM(mBIOSSettings->i_getNonVolatileStorageFile());
2368 if (dstNVRAM.isNotEmpty() && RTFileExists(dstNVRAM.c_str()))
2369 RTFileDelete(dstNVRAM.c_str());
2370 if (srcNVRAM.isNotEmpty() && dstNVRAM.isNotEmpty() && RTFileExists(srcNVRAM.c_str()))
2371 RTFileCopy(srcNVRAM.c_str(), dstNVRAM.c_str());
2372
2373 LogFlowThisFunc(("Setting new current snapshot {%RTuuid}\n", task.m_pSnapshot->i_getId().raw()));
2374 /* make the snapshot we restored from the current snapshot */
2375 mData->mCurrentSnapshot = task.m_pSnapshot;
2376 }
2377
2378 // store parent of newly created diffs for notify
2379 {
2380 MediumAttachmentList &oldAtts = *mMediumAttachments.backedUpData();
2381 for (MediumAttachmentList::const_iterator
2382 it = mMediumAttachments->begin();
2383 it != mMediumAttachments->end();
2384 ++it)
2385 {
2386 MediumAttachment *pAttach = *it;
2387 Medium *pMedium = pAttach->i_getMedium();
2388 if (!pMedium)
2389 continue;
2390
2391 bool fFound = false;
2392 /* was this medium attached before? */
2393 for (MediumAttachmentList::iterator
2394 oldIt = oldAtts.begin();
2395 oldIt != oldAtts.end();
2396 ++oldIt)
2397 {
2398 MediumAttachment *pOldAttach = *oldIt;
2399 if (pOldAttach->i_getMedium() == pMedium)
2400 {
2401 fFound = true;
2402 break;
2403 }
2404 }
2405 if (!fFound)
2406 {
2407 pMediumsForNotify.insert(pMedium->i_getParent());
2408 uIdsForNotify[pMedium->i_getId()] = std::pair<DeviceType_T, BOOL>(pMedium->i_getDeviceType(), TRUE);
2409 }
2410 }
2411 }
2412
2413 /* grab differencing hard disks from the old attachments that will
2414 * become unused and need to be auto-deleted */
2415 std::list< ComObjPtr<MediumAttachment> > llDiffAttachmentsToDelete;
2416
2417 for (MediumAttachmentList::const_iterator
2418 it = mMediumAttachments.backedUpData()->begin();
2419 it != mMediumAttachments.backedUpData()->end();
2420 ++it)
2421 {
2422 ComObjPtr<MediumAttachment> pAttach = *it;
2423 ComObjPtr<Medium> pMedium = pAttach->i_getMedium();
2424
2425 /* while the hard disk is attached, the number of children or the
2426 * parent cannot change, so no lock */
2427 if ( !pMedium.isNull()
2428 && pAttach->i_getType() == DeviceType_HardDisk
2429 && !pMedium->i_getParent().isNull()
2430 && pMedium->i_getChildren().size() == 0
2431 )
2432 {
2433 LogFlowThisFunc(("Picked differencing image '%s' for deletion\n", pMedium->i_getName().c_str()));
2434
2435 llDiffAttachmentsToDelete.push_back(pAttach);
2436 }
2437 }
2438
2439 /* we have already deleted the current state, so set the execution
2440 * state accordingly no matter of the delete snapshot result */
2441 if (mSSData->strStateFilePath.isNotEmpty())
2442 task.modifyBackedUpState(MachineState_Saved);
2443 else
2444 task.modifyBackedUpState(MachineState_PoweredOff);
2445
2446 /* Paranoia: no one must have saved the settings in the mean time. If
2447 * it happens nevertheless we'll close our eyes and continue below. */
2448 Assert(mMediumAttachments.isBackedUp());
2449
2450 /* assign the timestamp from the snapshot */
2451 Assert(RTTimeSpecGetMilli(&snapshotTimeStamp) != 0);
2452 mData->mLastStateChange = snapshotTimeStamp;
2453
2454 // detach the current-state diffs that we detected above and build a list of
2455 // image files to delete _after_ i_saveSettings()
2456
2457 MediaList llDiffsToDelete;
2458
2459 for (std::list< ComObjPtr<MediumAttachment> >::iterator it = llDiffAttachmentsToDelete.begin();
2460 it != llDiffAttachmentsToDelete.end();
2461 ++it)
2462 {
2463 ComObjPtr<MediumAttachment> pAttach = *it; // guaranteed to have only attachments where medium != NULL
2464 ComObjPtr<Medium> pMedium = pAttach->i_getMedium();
2465
2466 AutoWriteLock mlock(pMedium COMMA_LOCKVAL_SRC_POS);
2467
2468 LogFlowThisFunc(("Detaching old current state in differencing image '%s'\n", pMedium->i_getName().c_str()));
2469
2470 // Normally we "detach" the medium by removing the attachment object
2471 // from the current machine data; i_saveSettings() below would then
2472 // compare the current machine data with the one in the backup
2473 // and actually call Medium::removeBackReference(). But that works only half
2474 // the time in our case so instead we force a detachment here:
2475 // remove from machine data
2476 mMediumAttachments->remove(pAttach);
2477 // Remove it from the backup or else i_saveSettings will try to detach
2478 // it again and assert. The paranoia check avoids crashes (see
2479 // assert above) if this code is buggy and saves settings in the
2480 // wrong place.
2481 if (mMediumAttachments.isBackedUp())
2482 mMediumAttachments.backedUpData()->remove(pAttach);
2483 // then clean up backrefs
2484 pMedium->i_removeBackReference(mData->mUuid);
2485
2486 llDiffsToDelete.push_back(pMedium);
2487 }
2488
2489 // save machine settings, reset the modified flag and commit;
2490 bool fNeedsGlobalSaveSettings = false;
2491 rc = i_saveSettings(&fNeedsGlobalSaveSettings,
2492 SaveS_ResetCurStateModified);
2493 if (FAILED(rc))
2494 throw rc;
2495
2496 // release the locks before updating registry and deleting image files
2497 alock.release();
2498
2499 // unconditionally add the parent registry.
2500 mParent->i_markRegistryModified(mParent->i_getGlobalRegistryId());
2501
2502 // from here on we cannot roll back on failure any more
2503
2504 for (MediaList::iterator it = llDiffsToDelete.begin();
2505 it != llDiffsToDelete.end();
2506 ++it)
2507 {
2508 ComObjPtr<Medium> &pMedium = *it;
2509 LogFlowThisFunc(("Deleting old current state in differencing image '%s'\n", pMedium->i_getName().c_str()));
2510
2511 ComObjPtr<Medium> pParent = pMedium->i_getParent();
2512 // store the id here because it becomes NULL after deleting storage.
2513 com::Guid id = pMedium->i_getId();
2514 HRESULT rc2 = pMedium->i_deleteStorage(NULL /* aProgress */,
2515 true /* aWait */,
2516 false /* aNotify */);
2517 // ignore errors here because we cannot roll back after i_saveSettings() above
2518 if (SUCCEEDED(rc2))
2519 {
2520 pMediumsForNotify.insert(pParent);
2521 uIdsForNotify[id] = std::pair<DeviceType_T, BOOL>(pMedium->i_getDeviceType(), FALSE);
2522 pMedium->uninit();
2523 }
2524 }
2525 }
2526 catch (HRESULT aRC)
2527 {
2528 rc = aRC;
2529 }
2530
2531 if (FAILED(rc))
2532 {
2533 /* preserve existing error info */
2534 ErrorInfoKeeper eik;
2535
2536 /* undo all changes on failure */
2537 i_rollback(false /* aNotify */);
2538
2539 }
2540
2541 mParent->i_saveModifiedRegistries();
2542
2543 /* restore the machine state */
2544 i_setMachineState(task.m_machineStateBackup);
2545
2546 /* set the result (this will try to fetch current error info on failure) */
2547 task.m_pProgress->i_notifyComplete(rc);
2548
2549 if (SUCCEEDED(rc))
2550 {
2551 mParent->i_onSnapshotRestored(mData->mUuid, snapshotId);
2552 for (std::map<Guid, std::pair<DeviceType_T, BOOL> >::const_iterator it = uIdsForNotify.begin();
2553 it != uIdsForNotify.end();
2554 ++it)
2555 {
2556 mParent->i_onMediumRegistered(it->first, it->second.first, it->second.second);
2557 }
2558 for (std::set<ComObjPtr<Medium> >::const_iterator it = pMediumsForNotify.begin();
2559 it != pMediumsForNotify.end();
2560 ++it)
2561 {
2562 if (it->isNotNull())
2563 mParent->i_onMediumConfigChanged(*it);
2564 }
2565 }
2566
2567 LogFlowThisFunc(("Done restoring snapshot (rc=%08X)\n", rc));
2568
2569 LogFlowThisFuncLeave();
2570}
2571
2572////////////////////////////////////////////////////////////////////////////////
2573//
2574// DeleteSnapshot methods (SessionMachine and related tasks)
2575//
2576////////////////////////////////////////////////////////////////////////////////
2577
2578HRESULT Machine::deleteSnapshot(const com::Guid &aId, ComPtr<IProgress> &aProgress)
2579{
2580 NOREF(aId);
2581 NOREF(aProgress);
2582 ReturnComNotImplemented();
2583}
2584
2585HRESULT SessionMachine::deleteSnapshot(const com::Guid &aId, ComPtr<IProgress> &aProgress)
2586{
2587 return i_deleteSnapshot(aId, aId,
2588 FALSE /* fDeleteAllChildren */,
2589 aProgress);
2590}
2591
2592HRESULT Machine::deleteSnapshotAndAllChildren(const com::Guid &aId, ComPtr<IProgress> &aProgress)
2593{
2594 NOREF(aId);
2595 NOREF(aProgress);
2596 ReturnComNotImplemented();
2597}
2598
2599HRESULT SessionMachine::deleteSnapshotAndAllChildren(const com::Guid &aId, ComPtr<IProgress> &aProgress)
2600{
2601 return i_deleteSnapshot(aId, aId,
2602 TRUE /* fDeleteAllChildren */,
2603 aProgress);
2604}
2605
2606HRESULT Machine::deleteSnapshotRange(const com::Guid &aStartId, const com::Guid &aEndId, ComPtr<IProgress> &aProgress)
2607{
2608 NOREF(aStartId);
2609 NOREF(aEndId);
2610 NOREF(aProgress);
2611 ReturnComNotImplemented();
2612}
2613
2614HRESULT SessionMachine::deleteSnapshotRange(const com::Guid &aStartId, const com::Guid &aEndId, ComPtr<IProgress> &aProgress)
2615{
2616 return i_deleteSnapshot(aStartId, aEndId,
2617 FALSE /* fDeleteAllChildren */,
2618 aProgress);
2619}
2620
2621
2622/**
2623 * Implementation for SessionMachine::i_deleteSnapshot().
2624 *
2625 * Gets called from SessionMachine::DeleteSnapshot(). Deleting a snapshot
2626 * happens entirely on the server side if the machine is not running, and
2627 * if it is running then the merges are done via internal session callbacks.
2628 *
2629 * This creates a new thread that does the work and returns a progress
2630 * object to the client.
2631 *
2632 * Actual work then takes place in SessionMachine::i_deleteSnapshotHandler().
2633 *
2634 * @note Locks mParent + this + children objects for writing!
2635 */
2636HRESULT SessionMachine::i_deleteSnapshot(const com::Guid &aStartId,
2637 const com::Guid &aEndId,
2638 BOOL aDeleteAllChildren,
2639 ComPtr<IProgress> &aProgress)
2640{
2641 LogFlowThisFuncEnter();
2642
2643 AssertReturn(!aStartId.isZero() && !aEndId.isZero() && aStartId.isValid() && aEndId.isValid(), E_INVALIDARG);
2644
2645 /** @todo implement the "and all children" and "range" variants */
2646 if (aDeleteAllChildren || aStartId != aEndId)
2647 ReturnComNotImplemented();
2648
2649 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2650
2651 if (Global::IsTransient(mData->mMachineState))
2652 return setError(VBOX_E_INVALID_VM_STATE,
2653 tr("Cannot delete a snapshot of the machine while it is changing the state (machine state: %s)"),
2654 Global::stringifyMachineState(mData->mMachineState));
2655
2656 // be very picky about machine states
2657 if ( Global::IsOnlineOrTransient(mData->mMachineState)
2658 && mData->mMachineState != MachineState_PoweredOff
2659 && mData->mMachineState != MachineState_Saved
2660 && mData->mMachineState != MachineState_Teleported
2661 && mData->mMachineState != MachineState_Aborted
2662 && mData->mMachineState != MachineState_Running
2663 && mData->mMachineState != MachineState_Paused)
2664 return setError(VBOX_E_INVALID_VM_STATE,
2665 tr("Invalid machine state: %s"),
2666 Global::stringifyMachineState(mData->mMachineState));
2667
2668 HRESULT rc = i_checkStateDependency(MutableOrSavedOrRunningStateDep);
2669 if (FAILED(rc))
2670 return rc;
2671
2672 ComObjPtr<Snapshot> pSnapshot;
2673 rc = i_findSnapshotById(aStartId, pSnapshot, true /* aSetError */);
2674 if (FAILED(rc))
2675 return rc;
2676
2677 AutoWriteLock snapshotLock(pSnapshot COMMA_LOCKVAL_SRC_POS);
2678 Utf8Str str;
2679
2680 size_t childrenCount = pSnapshot->i_getChildrenCount();
2681 if (childrenCount > 1)
2682 return setError(VBOX_E_INVALID_OBJECT_STATE,
2683 tr("Snapshot '%s' of the machine '%s' cannot be deleted, because it has %d child snapshots, which is more than the one snapshot allowed for deletion"),
2684 pSnapshot->i_getName().c_str(),
2685 mUserData->s.strName.c_str(),
2686 childrenCount);
2687
2688 if (pSnapshot == mData->mCurrentSnapshot && childrenCount >= 1)
2689 return setError(VBOX_E_INVALID_OBJECT_STATE,
2690 tr("Snapshot '%s' of the machine '%s' cannot be deleted, because it is the current snapshot and has one child snapshot"),
2691 pSnapshot->i_getName().c_str(),
2692 mUserData->s.strName.c_str());
2693
2694 /* If the snapshot being deleted is the current one, ensure current
2695 * settings are committed and saved.
2696 */
2697 if (pSnapshot == mData->mCurrentSnapshot)
2698 {
2699 if (mData->flModifications)
2700 {
2701 rc = i_saveSettings(NULL);
2702 // no need to change for whether VirtualBox.xml needs saving since
2703 // we can't have a machine XML rename pending at this point
2704 if (FAILED(rc)) return rc;
2705 }
2706 }
2707
2708 ComObjPtr<SnapshotMachine> pSnapMachine = pSnapshot->i_getSnapshotMachine();
2709
2710 /* create a progress object. The number of operations is:
2711 * 1 (preparing) + 1 if the snapshot is online + # of normal hard disks
2712 */
2713 LogFlowThisFunc(("Going thru snapshot machine attachments to determine progress setup\n"));
2714
2715 ULONG ulOpCount = 1; // one for preparations
2716 ULONG ulTotalWeight = 1; // one for preparations
2717
2718 if (pSnapshot->i_getStateFilePath().isNotEmpty())
2719 {
2720 ++ulOpCount;
2721 ++ulTotalWeight; // assume 1 MB for deleting the state file
2722 }
2723
2724 bool fDeleteOnline = mData->mMachineState == MachineState_Running || mData->mMachineState == MachineState_Paused;
2725
2726 // count normal hard disks and add their sizes to the weight
2727 for (MediumAttachmentList::iterator
2728 it = pSnapMachine->mMediumAttachments->begin();
2729 it != pSnapMachine->mMediumAttachments->end();
2730 ++it)
2731 {
2732 ComObjPtr<MediumAttachment> &pAttach = *it;
2733 AutoReadLock attachLock(pAttach COMMA_LOCKVAL_SRC_POS);
2734 if (pAttach->i_getType() == DeviceType_HardDisk)
2735 {
2736 ComObjPtr<Medium> pHD = pAttach->i_getMedium();
2737 Assert(pHD);
2738 AutoReadLock mlock(pHD COMMA_LOCKVAL_SRC_POS);
2739
2740 MediumType_T type = pHD->i_getType();
2741 // writethrough and shareable images are unaffected by snapshots,
2742 // so do nothing for them
2743 if ( type != MediumType_Writethrough
2744 && type != MediumType_Shareable
2745 && type != MediumType_Readonly)
2746 {
2747 // normal or immutable media need attention
2748 ++ulOpCount;
2749 // offline merge includes medium resizing
2750 if (!fDeleteOnline)
2751 ++ulOpCount;
2752 ulTotalWeight += (ULONG)(pHD->i_getSize() / _1M);
2753 }
2754 LogFlowThisFunc(("op %d: considering hard disk attachment %s\n", ulOpCount, pHD->i_getName().c_str()));
2755 }
2756 }
2757
2758 ComObjPtr<Progress> pProgress;
2759 pProgress.createObject();
2760 pProgress->init(mParent, static_cast<IMachine*>(this),
2761 BstrFmt(tr("Deleting snapshot '%s'"), pSnapshot->i_getName().c_str()).raw(),
2762 FALSE /* aCancelable */,
2763 ulOpCount,
2764 ulTotalWeight,
2765 Bstr(tr("Setting up")).raw(),
2766 1);
2767
2768 /* create and start the task on a separate thread */
2769 DeleteSnapshotTask *pTask = new DeleteSnapshotTask(this, pProgress,
2770 "DeleteSnap",
2771 fDeleteOnline,
2772 pSnapshot);
2773 rc = pTask->createThread();
2774 pTask = NULL;
2775 if (FAILED(rc))
2776 return rc;
2777
2778 // the task might start running but will block on acquiring the machine's write lock
2779 // which we acquired above; once this function leaves, the task will be unblocked;
2780 // set the proper machine state here now (note: after creating a Task instance)
2781 if (mData->mMachineState == MachineState_Running)
2782 {
2783 i_setMachineState(MachineState_DeletingSnapshotOnline);
2784 i_updateMachineStateOnClient();
2785 }
2786 else if (mData->mMachineState == MachineState_Paused)
2787 {
2788 i_setMachineState(MachineState_DeletingSnapshotPaused);
2789 i_updateMachineStateOnClient();
2790 }
2791 else
2792 i_setMachineState(MachineState_DeletingSnapshot);
2793
2794 /* return the progress to the caller */
2795 pProgress.queryInterfaceTo(aProgress.asOutParam());
2796
2797 LogFlowThisFuncLeave();
2798
2799 return S_OK;
2800}
2801
2802/**
2803 * Helper struct for SessionMachine::deleteSnapshotHandler().
2804 */
2805struct MediumDeleteRec
2806{
2807 MediumDeleteRec()
2808 : mfNeedsOnlineMerge(false),
2809 mpMediumLockList(NULL)
2810 {}
2811
2812 MediumDeleteRec(const ComObjPtr<Medium> &aHd,
2813 const ComObjPtr<Medium> &aSource,
2814 const ComObjPtr<Medium> &aTarget,
2815 const ComObjPtr<MediumAttachment> &aOnlineMediumAttachment,
2816 bool fMergeForward,
2817 const ComObjPtr<Medium> &aParentForTarget,
2818 MediumLockList *aChildrenToReparent,
2819 bool fNeedsOnlineMerge,
2820 MediumLockList *aMediumLockList,
2821 const ComPtr<IToken> &aHDLockToken)
2822 : mpHD(aHd),
2823 mpSource(aSource),
2824 mpTarget(aTarget),
2825 mpOnlineMediumAttachment(aOnlineMediumAttachment),
2826 mfMergeForward(fMergeForward),
2827 mpParentForTarget(aParentForTarget),
2828 mpChildrenToReparent(aChildrenToReparent),
2829 mfNeedsOnlineMerge(fNeedsOnlineMerge),
2830 mpMediumLockList(aMediumLockList),
2831 mpHDLockToken(aHDLockToken)
2832 {}
2833
2834 MediumDeleteRec(const ComObjPtr<Medium> &aHd,
2835 const ComObjPtr<Medium> &aSource,
2836 const ComObjPtr<Medium> &aTarget,
2837 const ComObjPtr<MediumAttachment> &aOnlineMediumAttachment,
2838 bool fMergeForward,
2839 const ComObjPtr<Medium> &aParentForTarget,
2840 MediumLockList *aChildrenToReparent,
2841 bool fNeedsOnlineMerge,
2842 MediumLockList *aMediumLockList,
2843 const ComPtr<IToken> &aHDLockToken,
2844 const Guid &aMachineId,
2845 const Guid &aSnapshotId)
2846 : mpHD(aHd),
2847 mpSource(aSource),
2848 mpTarget(aTarget),
2849 mpOnlineMediumAttachment(aOnlineMediumAttachment),
2850 mfMergeForward(fMergeForward),
2851 mpParentForTarget(aParentForTarget),
2852 mpChildrenToReparent(aChildrenToReparent),
2853 mfNeedsOnlineMerge(fNeedsOnlineMerge),
2854 mpMediumLockList(aMediumLockList),
2855 mpHDLockToken(aHDLockToken),
2856 mMachineId(aMachineId),
2857 mSnapshotId(aSnapshotId)
2858 {}
2859
2860 ComObjPtr<Medium> mpHD;
2861 ComObjPtr<Medium> mpSource;
2862 ComObjPtr<Medium> mpTarget;
2863 ComObjPtr<MediumAttachment> mpOnlineMediumAttachment;
2864 bool mfMergeForward;
2865 ComObjPtr<Medium> mpParentForTarget;
2866 MediumLockList *mpChildrenToReparent;
2867 bool mfNeedsOnlineMerge;
2868 MediumLockList *mpMediumLockList;
2869 /** optional lock token, used only in case mpHD is not merged/deleted */
2870 ComPtr<IToken> mpHDLockToken;
2871 /* these are for reattaching the hard disk in case of a failure: */
2872 Guid mMachineId;
2873 Guid mSnapshotId;
2874};
2875
2876typedef std::list<MediumDeleteRec> MediumDeleteRecList;
2877
2878/**
2879 * Worker method for the delete snapshot thread created by
2880 * SessionMachine::DeleteSnapshot(). This method gets called indirectly
2881 * through SessionMachine::taskHandler() which then calls
2882 * DeleteSnapshotTask::handler().
2883 *
2884 * The DeleteSnapshotTask contains the progress object returned to the console
2885 * by SessionMachine::DeleteSnapshot, through which progress and results are
2886 * reported.
2887 *
2888 * SessionMachine::DeleteSnapshot() has set the machine state to
2889 * MachineState_DeletingSnapshot right after creating this task. Since we block
2890 * on the machine write lock at the beginning, once that has been acquired, we
2891 * can assume that the machine state is indeed that.
2892 *
2893 * @note Locks the machine + the snapshot + the media tree for writing!
2894 *
2895 * @param task Task data.
2896 */
2897void SessionMachine::i_deleteSnapshotHandler(DeleteSnapshotTask &task)
2898{
2899 LogFlowThisFuncEnter();
2900
2901 MultiResult mrc(S_OK);
2902 AutoCaller autoCaller(this);
2903 LogFlowThisFunc(("state=%d\n", getObjectState().getState()));
2904 if (FAILED(autoCaller.rc()))
2905 {
2906 /* we might have been uninitialized because the session was accidentally
2907 * closed by the client, so don't assert */
2908 mrc = setError(E_FAIL,
2909 tr("The session has been accidentally closed"));
2910 task.m_pProgress->i_notifyComplete(mrc);
2911 LogFlowThisFuncLeave();
2912 return;
2913 }
2914
2915 MediumDeleteRecList toDelete;
2916 Guid snapshotId;
2917 std::set<ComObjPtr<Medium> > pMediumsForNotify;
2918 std::map<Guid,DeviceType_T> uIdsForNotify;
2919
2920 try
2921 {
2922 HRESULT rc = S_OK;
2923
2924 /* Locking order: */
2925 AutoMultiWriteLock2 multiLock(this->lockHandle(), // machine
2926 task.m_pSnapshot->lockHandle() // snapshot
2927 COMMA_LOCKVAL_SRC_POS);
2928 // once we have this lock, we know that SessionMachine::DeleteSnapshot()
2929 // has exited after setting the machine state to MachineState_DeletingSnapshot
2930
2931 AutoWriteLock treeLock(mParent->i_getMediaTreeLockHandle()
2932 COMMA_LOCKVAL_SRC_POS);
2933
2934 ComObjPtr<SnapshotMachine> pSnapMachine = task.m_pSnapshot->i_getSnapshotMachine();
2935 // no need to lock the snapshot machine since it is const by definition
2936 Guid machineId = pSnapMachine->i_getId();
2937
2938 // save the snapshot ID (for callbacks)
2939 snapshotId = task.m_pSnapshot->i_getId();
2940
2941 // first pass:
2942 LogFlowThisFunc(("1: Checking hard disk merge prerequisites...\n"));
2943
2944 // Go thru the attachments of the snapshot machine (the media in here
2945 // point to the disk states _before_ the snapshot was taken, i.e. the
2946 // state we're restoring to; for each such medium, we will need to
2947 // merge it with its one and only child (the diff image holding the
2948 // changes written after the snapshot was taken).
2949 for (MediumAttachmentList::iterator
2950 it = pSnapMachine->mMediumAttachments->begin();
2951 it != pSnapMachine->mMediumAttachments->end();
2952 ++it)
2953 {
2954 ComObjPtr<MediumAttachment> &pAttach = *it;
2955 AutoReadLock attachLock(pAttach COMMA_LOCKVAL_SRC_POS);
2956 if (pAttach->i_getType() != DeviceType_HardDisk)
2957 continue;
2958
2959 ComObjPtr<Medium> pHD = pAttach->i_getMedium();
2960 Assert(!pHD.isNull());
2961
2962 {
2963 // writethrough, shareable and readonly images are
2964 // unaffected by snapshots, skip them
2965 AutoReadLock medlock(pHD COMMA_LOCKVAL_SRC_POS);
2966 MediumType_T type = pHD->i_getType();
2967 if ( type == MediumType_Writethrough
2968 || type == MediumType_Shareable
2969 || type == MediumType_Readonly)
2970 continue;
2971 }
2972
2973#ifdef DEBUG
2974 pHD->i_dumpBackRefs();
2975#endif
2976
2977 // needs to be merged with child or deleted, check prerequisites
2978 ComObjPtr<Medium> pTarget;
2979 ComObjPtr<Medium> pSource;
2980 bool fMergeForward = false;
2981 ComObjPtr<Medium> pParentForTarget;
2982 MediumLockList *pChildrenToReparent = NULL;
2983 bool fNeedsOnlineMerge = false;
2984 bool fOnlineMergePossible = task.m_fDeleteOnline;
2985 MediumLockList *pMediumLockList = NULL;
2986 MediumLockList *pVMMALockList = NULL;
2987 ComPtr<IToken> pHDLockToken;
2988 ComObjPtr<MediumAttachment> pOnlineMediumAttachment;
2989 if (fOnlineMergePossible)
2990 {
2991 // Look up the corresponding medium attachment in the currently
2992 // running VM. Any failure prevents a live merge. Could be made
2993 // a tad smarter by trying a few candidates, so that e.g. disks
2994 // which are simply moved to a different controller slot do not
2995 // prevent online merging in general.
2996 pOnlineMediumAttachment =
2997 i_findAttachment(*mMediumAttachments.data(),
2998 pAttach->i_getControllerName(),
2999 pAttach->i_getPort(),
3000 pAttach->i_getDevice());
3001 if (pOnlineMediumAttachment)
3002 {
3003 rc = mData->mSession.mLockedMedia.Get(pOnlineMediumAttachment,
3004 pVMMALockList);
3005 if (FAILED(rc))
3006 fOnlineMergePossible = false;
3007 }
3008 else
3009 fOnlineMergePossible = false;
3010 }
3011
3012 // no need to hold the lock any longer
3013 attachLock.release();
3014
3015 treeLock.release();
3016 rc = i_prepareDeleteSnapshotMedium(pHD, machineId, snapshotId,
3017 fOnlineMergePossible,
3018 pVMMALockList, pSource, pTarget,
3019 fMergeForward, pParentForTarget,
3020 pChildrenToReparent,
3021 fNeedsOnlineMerge,
3022 pMediumLockList,
3023 pHDLockToken);
3024 treeLock.acquire();
3025 if (FAILED(rc))
3026 throw rc;
3027
3028 // For simplicity, prepareDeleteSnapshotMedium selects the merge
3029 // direction in the following way: we merge pHD onto its child
3030 // (forward merge), not the other way round, because that saves us
3031 // from unnecessarily shuffling around the attachments for the
3032 // machine that follows the snapshot (next snapshot or current
3033 // state), unless it's a base image. Backwards merges of the first
3034 // snapshot into the base image is essential, as it ensures that
3035 // when all snapshots are deleted the only remaining image is a
3036 // base image. Important e.g. for medium formats which do not have
3037 // a file representation such as iSCSI.
3038
3039 // not going to merge a big source into a small target on online merge. Otherwise it will be resized
3040 if (fNeedsOnlineMerge && pSource->i_getLogicalSize() > pTarget->i_getLogicalSize())
3041 {
3042 rc = setError(E_FAIL,
3043 tr("Unable to merge storage '%s', because it is smaller than the source image. If you resize it to have a capacity of at least %lld bytes you can retry"),
3044 pTarget->i_getLocationFull().c_str(), pSource->i_getLogicalSize());
3045 throw rc;
3046 }
3047
3048 // a couple paranoia checks for backward merges
3049 if (pMediumLockList != NULL && !fMergeForward)
3050 {
3051 // parent is null -> this disk is a base hard disk: we will
3052 // then do a backward merge, i.e. merge its only child onto the
3053 // base disk. Here we need then to update the attachment that
3054 // refers to the child and have it point to the parent instead
3055 Assert(pHD->i_getChildren().size() == 1);
3056
3057 ComObjPtr<Medium> pReplaceHD = pHD->i_getChildren().front();
3058
3059 ComAssertThrow(pReplaceHD == pSource, E_FAIL);
3060 }
3061
3062 Guid replaceMachineId;
3063 Guid replaceSnapshotId;
3064
3065 const Guid *pReplaceMachineId = pSource->i_getFirstMachineBackrefId();
3066 // minimal sanity checking
3067 Assert(!pReplaceMachineId || *pReplaceMachineId == mData->mUuid);
3068 if (pReplaceMachineId)
3069 replaceMachineId = *pReplaceMachineId;
3070
3071 const Guid *pSnapshotId = pSource->i_getFirstMachineBackrefSnapshotId();
3072 if (pSnapshotId)
3073 replaceSnapshotId = *pSnapshotId;
3074
3075 if (replaceMachineId.isValid() && !replaceMachineId.isZero())
3076 {
3077 // Adjust the backreferences, otherwise merging will assert.
3078 // Note that the medium attachment object stays associated
3079 // with the snapshot until the merge was successful.
3080 HRESULT rc2 = S_OK;
3081 rc2 = pSource->i_removeBackReference(replaceMachineId, replaceSnapshotId);
3082 AssertComRC(rc2);
3083
3084 toDelete.push_back(MediumDeleteRec(pHD, pSource, pTarget,
3085 pOnlineMediumAttachment,
3086 fMergeForward,
3087 pParentForTarget,
3088 pChildrenToReparent,
3089 fNeedsOnlineMerge,
3090 pMediumLockList,
3091 pHDLockToken,
3092 replaceMachineId,
3093 replaceSnapshotId));
3094 }
3095 else
3096 toDelete.push_back(MediumDeleteRec(pHD, pSource, pTarget,
3097 pOnlineMediumAttachment,
3098 fMergeForward,
3099 pParentForTarget,
3100 pChildrenToReparent,
3101 fNeedsOnlineMerge,
3102 pMediumLockList,
3103 pHDLockToken));
3104 }
3105
3106 {
3107 /* check available space on the storage */
3108 RTFOFF pcbTotal = 0;
3109 RTFOFF pcbFree = 0;
3110 uint32_t pcbBlock = 0;
3111 uint32_t pcbSector = 0;
3112 std::multimap<uint32_t, uint64_t> neededStorageFreeSpace;
3113 std::map<uint32_t, const char*> serialMapToStoragePath;
3114
3115 for (MediumDeleteRecList::const_iterator
3116 it = toDelete.begin();
3117 it != toDelete.end();
3118 ++it)
3119 {
3120 uint64_t diskSize = 0;
3121 uint32_t pu32Serial = 0;
3122 ComObjPtr<Medium> pSource_local = it->mpSource;
3123 ComObjPtr<Medium> pTarget_local = it->mpTarget;
3124 ComPtr<IMediumFormat> pTargetFormat;
3125
3126 {
3127 if ( pSource_local.isNull()
3128 || pSource_local == pTarget_local)
3129 continue;
3130 }
3131
3132 rc = pTarget_local->COMGETTER(MediumFormat)(pTargetFormat.asOutParam());
3133 if (FAILED(rc))
3134 throw rc;
3135
3136 if (pTarget_local->i_isMediumFormatFile())
3137 {
3138 int vrc = RTFsQuerySerial(pTarget_local->i_getLocationFull().c_str(), &pu32Serial);
3139 if (RT_FAILURE(vrc))
3140 {
3141 rc = setError(E_FAIL,
3142 tr("Unable to merge storage '%s'. Can't get storage UID"),
3143 pTarget_local->i_getLocationFull().c_str());
3144 throw rc;
3145 }
3146
3147 pSource_local->COMGETTER(Size)((LONG64*)&diskSize);
3148
3149 /** @todo r=klaus this is too pessimistic... should take
3150 * the current size and maximum size of the target image
3151 * into account, because a X GB image with Y GB capacity
3152 * can only grow by Y-X GB (ignoring overhead, which
3153 * unfortunately is hard to estimate, some have next to
3154 * nothing, some have a certain percentage...) */
3155 /* store needed free space in multimap */
3156 neededStorageFreeSpace.insert(std::make_pair(pu32Serial, diskSize));
3157 /* linking storage UID with snapshot path, it is a helper container (just for easy finding needed path) */
3158 serialMapToStoragePath.insert(std::make_pair(pu32Serial, pTarget_local->i_getLocationFull().c_str()));
3159 }
3160 }
3161
3162 while (!neededStorageFreeSpace.empty())
3163 {
3164 std::pair<std::multimap<uint32_t,uint64_t>::iterator,std::multimap<uint32_t,uint64_t>::iterator> ret;
3165 uint64_t commonSourceStoragesSize = 0;
3166
3167 /* find all records in multimap with identical storage UID */
3168 ret = neededStorageFreeSpace.equal_range(neededStorageFreeSpace.begin()->first);
3169 std::multimap<uint32_t,uint64_t>::const_iterator it_ns = ret.first;
3170
3171 for (; it_ns != ret.second ; ++it_ns)
3172 {
3173 commonSourceStoragesSize += it_ns->second;
3174 }
3175
3176 /* find appropriate path by storage UID */
3177 std::map<uint32_t,const char*>::const_iterator it_sm = serialMapToStoragePath.find(ret.first->first);
3178 /* get info about a storage */
3179 if (it_sm == serialMapToStoragePath.end())
3180 {
3181 LogFlowThisFunc(("Path to the storage wasn't found...\n"));
3182
3183 rc = setError(E_INVALIDARG,
3184 tr("Unable to merge storage '%s'. Path to the storage wasn't found"),
3185 it_sm->second);
3186 throw rc;
3187 }
3188
3189 int vrc = RTFsQuerySizes(it_sm->second, &pcbTotal, &pcbFree, &pcbBlock, &pcbSector);
3190 if (RT_FAILURE(vrc))
3191 {
3192 rc = setError(E_FAIL,
3193 tr("Unable to merge storage '%s'. Can't get the storage size"),
3194 it_sm->second);
3195 throw rc;
3196 }
3197
3198 if (commonSourceStoragesSize > (uint64_t)pcbFree)
3199 {
3200 LogFlowThisFunc(("Not enough free space to merge...\n"));
3201
3202 rc = setError(E_OUTOFMEMORY,
3203 tr("Unable to merge storage '%s'. Not enough free storage space"),
3204 it_sm->second);
3205 throw rc;
3206 }
3207
3208 neededStorageFreeSpace.erase(ret.first, ret.second);
3209 }
3210
3211 serialMapToStoragePath.clear();
3212 }
3213
3214 // we can release the locks now since the machine state is MachineState_DeletingSnapshot
3215 treeLock.release();
3216 multiLock.release();
3217
3218 /* Now we checked that we can successfully merge all normal hard disks
3219 * (unless a runtime error like end-of-disc happens). Now get rid of
3220 * the saved state (if present), as that will free some disk space.
3221 * The snapshot itself will be deleted as late as possible, so that
3222 * the user can repeat the delete operation if he runs out of disk
3223 * space or cancels the delete operation. */
3224
3225 /* second pass: */
3226 LogFlowThisFunc(("2: Deleting saved state...\n"));
3227
3228 {
3229 // saveAllSnapshots() needs a machine lock, and the snapshots
3230 // tree is protected by the machine lock as well
3231 AutoWriteLock machineLock(this COMMA_LOCKVAL_SRC_POS);
3232
3233 Utf8Str stateFilePath = task.m_pSnapshot->i_getStateFilePath();
3234 if (!stateFilePath.isEmpty())
3235 {
3236 task.m_pProgress->SetNextOperation(Bstr(tr("Deleting the execution state")).raw(),
3237 1); // weight
3238
3239 i_releaseSavedStateFile(stateFilePath, task.m_pSnapshot /* pSnapshotToIgnore */);
3240
3241 // machine will need saving now
3242 machineLock.release();
3243 mParent->i_markRegistryModified(i_getId());
3244 }
3245 }
3246
3247 /* third pass: */
3248 LogFlowThisFunc(("3: Performing actual hard disk merging...\n"));
3249
3250 /// @todo NEWMEDIA turn the following errors into warnings because the
3251 /// snapshot itself has been already deleted (and interpret these
3252 /// warnings properly on the GUI side)
3253 for (MediumDeleteRecList::iterator it = toDelete.begin();
3254 it != toDelete.end();)
3255 {
3256 const ComObjPtr<Medium> &pMedium(it->mpHD);
3257 ULONG ulWeight;
3258
3259 {
3260 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
3261 ulWeight = (ULONG)(pMedium->i_getSize() / _1M);
3262 }
3263
3264 const char *pszOperationText = it->mfNeedsOnlineMerge ?
3265 tr("Merging differencing image '%s'")
3266 : tr("Resizing before merge differencing image '%s'");
3267
3268 task.m_pProgress->SetNextOperation(BstrFmt(pszOperationText,
3269 pMedium->i_getName().c_str()).raw(),
3270 ulWeight);
3271
3272 bool fNeedSourceUninit = false;
3273 bool fReparentTarget = false;
3274 if (it->mpMediumLockList == NULL)
3275 {
3276 /* no real merge needed, just updating state and delete
3277 * diff files if necessary */
3278 AutoMultiWriteLock2 mLock(&mParent->i_getMediaTreeLockHandle(), pMedium->lockHandle() COMMA_LOCKVAL_SRC_POS);
3279
3280 Assert( !it->mfMergeForward
3281 || pMedium->i_getChildren().size() == 0);
3282
3283 /* Delete the differencing hard disk (has no children). Two
3284 * exceptions: if it's the last medium in the chain or if it's
3285 * a backward merge we don't want to handle due to complexity.
3286 * In both cases leave the image in place. If it's the first
3287 * exception the user can delete it later if he wants. */
3288 if (!pMedium->i_getParent().isNull())
3289 {
3290 Assert(pMedium->i_getState() == MediumState_Deleting);
3291 /* No need to hold the lock any longer. */
3292 mLock.release();
3293 ComObjPtr<Medium> pParent = pMedium->i_getParent();
3294 Guid uMedium = pMedium->i_getId();
3295 DeviceType_T uMediumType = pMedium->i_getDeviceType();
3296 rc = pMedium->i_deleteStorage(&task.m_pProgress,
3297 true /* aWait */,
3298 false /* aNotify */);
3299 if (FAILED(rc))
3300 throw rc;
3301
3302 pMediumsForNotify.insert(pParent);
3303 uIdsForNotify[uMedium] = uMediumType;
3304
3305 // need to uninit the deleted medium
3306 fNeedSourceUninit = true;
3307 }
3308 }
3309 else
3310 {
3311 {
3312 //store ids before merging for notify
3313 pMediumsForNotify.insert(it->mpTarget);
3314 if (it->mfMergeForward)
3315 pMediumsForNotify.insert(it->mpSource->i_getParent());
3316 else
3317 {
3318 //children which will be reparented to target
3319 for (MediaList::const_iterator iit = it->mpSource->i_getChildren().begin();
3320 iit != it->mpSource->i_getChildren().end();
3321 ++iit)
3322 {
3323 pMediumsForNotify.insert(*iit);
3324 }
3325 }
3326 if (it->mfMergeForward)
3327 {
3328 for (ComObjPtr<Medium> pTmpMedium = it->mpTarget->i_getParent();
3329 pTmpMedium && pTmpMedium != it->mpSource;
3330 pTmpMedium = pTmpMedium->i_getParent())
3331 {
3332 uIdsForNotify[pTmpMedium->i_getId()] = pTmpMedium->i_getDeviceType();
3333 }
3334 uIdsForNotify[it->mpSource->i_getId()] = it->mpSource->i_getDeviceType();
3335 }
3336 else
3337 {
3338 for (ComObjPtr<Medium> pTmpMedium = it->mpSource;
3339 pTmpMedium && pTmpMedium != it->mpTarget;
3340 pTmpMedium = pTmpMedium->i_getParent())
3341 {
3342 uIdsForNotify[pTmpMedium->i_getId()] = pTmpMedium->i_getDeviceType();
3343 }
3344 }
3345 }
3346
3347 bool fNeedsSave = false;
3348 if (it->mfNeedsOnlineMerge)
3349 {
3350 // Put the medium merge information (MediumDeleteRec) where
3351 // SessionMachine::FinishOnlineMergeMedium can get at it.
3352 // This callback will arrive while onlineMergeMedium is
3353 // still executing, and there can't be two tasks.
3354 /// @todo r=klaus this hack needs to go, and the logic needs to be "unconvoluted", putting SessionMachine in charge of coordinating the reconfig/resume.
3355 mConsoleTaskData.mDeleteSnapshotInfo = (void *)&(*it);
3356 // online medium merge, in the direction decided earlier
3357 rc = i_onlineMergeMedium(it->mpOnlineMediumAttachment,
3358 it->mpSource,
3359 it->mpTarget,
3360 it->mfMergeForward,
3361 it->mpParentForTarget,
3362 it->mpChildrenToReparent,
3363 it->mpMediumLockList,
3364 task.m_pProgress,
3365 &fNeedsSave);
3366 mConsoleTaskData.mDeleteSnapshotInfo = NULL;
3367 }
3368 else
3369 {
3370 // normal medium merge, in the direction decided earlier
3371 rc = it->mpSource->i_mergeTo(it->mpTarget,
3372 it->mfMergeForward,
3373 it->mpParentForTarget,
3374 it->mpChildrenToReparent,
3375 it->mpMediumLockList,
3376 &task.m_pProgress,
3377 true /* aWait */,
3378 false /* aNotify */);
3379 }
3380
3381 // If the merge failed, we need to do our best to have a usable
3382 // VM configuration afterwards. The return code doesn't tell
3383 // whether the merge completed and so we have to check if the
3384 // source medium (diff images are always file based at the
3385 // moment) is still there or not. Be careful not to lose the
3386 // error code below, before the "Delayed failure exit".
3387 if (FAILED(rc))
3388 {
3389 AutoReadLock mlock(it->mpSource COMMA_LOCKVAL_SRC_POS);
3390 if (!it->mpSource->i_isMediumFormatFile())
3391 // Diff medium not backed by a file - cannot get status so
3392 // be pessimistic.
3393 throw rc;
3394 const Utf8Str &loc = it->mpSource->i_getLocationFull();
3395 // Source medium is still there, so merge failed early.
3396 if (RTFileExists(loc.c_str()))
3397 throw rc;
3398
3399 // Source medium is gone. Assume the merge succeeded and
3400 // thus it's safe to remove the attachment. We use the
3401 // "Delayed failure exit" below.
3402 }
3403
3404 // need to change the medium attachment for backward merges
3405 fReparentTarget = !it->mfMergeForward;
3406
3407 if (!it->mfNeedsOnlineMerge)
3408 {
3409 // need to uninit the medium deleted by the merge
3410 fNeedSourceUninit = true;
3411
3412 // delete the no longer needed medium lock list, which
3413 // implicitly handled the unlocking
3414 delete it->mpMediumLockList;
3415 it->mpMediumLockList = NULL;
3416 }
3417 }
3418
3419 // Now that the medium is successfully merged/deleted/whatever,
3420 // remove the medium attachment from the snapshot. For a backwards
3421 // merge the target attachment needs to be removed from the
3422 // snapshot, as the VM will take it over. For forward merges the
3423 // source medium attachment needs to be removed.
3424 ComObjPtr<MediumAttachment> pAtt;
3425 if (fReparentTarget)
3426 {
3427 pAtt = i_findAttachment(*(pSnapMachine->mMediumAttachments.data()),
3428 it->mpTarget);
3429 it->mpTarget->i_removeBackReference(machineId, snapshotId);
3430 }
3431 else
3432 pAtt = i_findAttachment(*(pSnapMachine->mMediumAttachments.data()),
3433 it->mpSource);
3434 pSnapMachine->mMediumAttachments->remove(pAtt);
3435
3436 if (fReparentTarget)
3437 {
3438 // Search for old source attachment and replace with target.
3439 // There can be only one child snapshot in this case.
3440 ComObjPtr<Machine> pMachine = this;
3441 Guid childSnapshotId;
3442 ComObjPtr<Snapshot> pChildSnapshot = task.m_pSnapshot->i_getFirstChild();
3443 if (pChildSnapshot)
3444 {
3445 pMachine = pChildSnapshot->i_getSnapshotMachine();
3446 childSnapshotId = pChildSnapshot->i_getId();
3447 }
3448 pAtt = i_findAttachment(*(pMachine->mMediumAttachments).data(), it->mpSource);
3449 if (pAtt)
3450 {
3451 AutoWriteLock attLock(pAtt COMMA_LOCKVAL_SRC_POS);
3452 pAtt->i_updateMedium(it->mpTarget);
3453 it->mpTarget->i_addBackReference(pMachine->mData->mUuid, childSnapshotId);
3454 }
3455 else
3456 {
3457 // If no attachment is found do not change anything. Maybe
3458 // the source medium was not attached to the snapshot.
3459 // If this is an online deletion the attachment was updated
3460 // already to allow the VM continue execution immediately.
3461 // Needs a bit of special treatment due to this difference.
3462 if (it->mfNeedsOnlineMerge)
3463 it->mpTarget->i_addBackReference(pMachine->mData->mUuid, childSnapshotId);
3464 }
3465 }
3466
3467 if (fNeedSourceUninit)
3468 {
3469 // make sure that the diff image to be deleted has no parent,
3470 // even in error cases (where the deparenting may be missing)
3471 if (it->mpSource->i_getParent())
3472 it->mpSource->i_deparent();
3473 it->mpSource->uninit();
3474 }
3475
3476 // One attachment is merged, must save the settings
3477 mParent->i_markRegistryModified(i_getId());
3478
3479 // prevent calling cancelDeleteSnapshotMedium() for this attachment
3480 it = toDelete.erase(it);
3481
3482 // Delayed failure exit when the merge cleanup failed but the
3483 // merge actually succeeded.
3484 if (FAILED(rc))
3485 throw rc;
3486 }
3487
3488 /* 3a: delete NVRAM file if present. */
3489 {
3490 Utf8Str NVRAMPath = pSnapMachine->mBIOSSettings->i_getNonVolatileStorageFile();
3491 if (NVRAMPath.isNotEmpty() && RTFileExists(NVRAMPath.c_str()))
3492 RTFileDelete(NVRAMPath.c_str());
3493 }
3494
3495 /* third pass: */
3496 {
3497 // beginSnapshotDelete() needs the machine lock, and the snapshots
3498 // tree is protected by the machine lock as well
3499 AutoWriteLock machineLock(this COMMA_LOCKVAL_SRC_POS);
3500
3501 task.m_pSnapshot->i_beginSnapshotDelete();
3502 task.m_pSnapshot->uninit();
3503
3504 machineLock.release();
3505 mParent->i_markRegistryModified(i_getId());
3506 }
3507 }
3508 catch (HRESULT aRC) {
3509 mrc = aRC;
3510 }
3511
3512 if (FAILED(mrc))
3513 {
3514 // preserve existing error info so that the result can
3515 // be properly reported to the progress object below
3516 ErrorInfoKeeper eik;
3517
3518 AutoMultiWriteLock2 multiLock(this->lockHandle(), // machine
3519 &mParent->i_getMediaTreeLockHandle() // media tree
3520 COMMA_LOCKVAL_SRC_POS);
3521
3522 // un-prepare the remaining hard disks
3523 for (MediumDeleteRecList::const_iterator it = toDelete.begin();
3524 it != toDelete.end();
3525 ++it)
3526 i_cancelDeleteSnapshotMedium(it->mpHD, it->mpSource,
3527 it->mpChildrenToReparent,
3528 it->mfNeedsOnlineMerge,
3529 it->mpMediumLockList, it->mpHDLockToken,
3530 it->mMachineId, it->mSnapshotId);
3531 }
3532
3533 // whether we were successful or not, we need to set the machine
3534 // state and save the machine settings;
3535 {
3536 // preserve existing error info so that the result can
3537 // be properly reported to the progress object below
3538 ErrorInfoKeeper eik;
3539
3540 // restore the machine state that was saved when the
3541 // task was started
3542 i_setMachineState(task.m_machineStateBackup);
3543 if (Global::IsOnline(mData->mMachineState))
3544 i_updateMachineStateOnClient();
3545
3546 mParent->i_saveModifiedRegistries();
3547 }
3548
3549 // report the result (this will try to fetch current error info on failure)
3550 task.m_pProgress->i_notifyComplete(mrc);
3551
3552 if (SUCCEEDED(mrc))
3553 {
3554 mParent->i_onSnapshotDeleted(mData->mUuid, snapshotId);
3555 for (std::map<Guid, DeviceType_T>::const_iterator it = uIdsForNotify.begin();
3556 it != uIdsForNotify.end();
3557 ++it)
3558 {
3559 mParent->i_onMediumRegistered(it->first, it->second, FALSE);
3560 }
3561 for (std::set<ComObjPtr<Medium> >::const_iterator it = pMediumsForNotify.begin();
3562 it != pMediumsForNotify.end();
3563 ++it)
3564 {
3565 if (it->isNotNull())
3566 mParent->i_onMediumConfigChanged(*it);
3567 }
3568 }
3569
3570 LogFlowThisFunc(("Done deleting snapshot (rc=%08X)\n", (HRESULT)mrc));
3571 LogFlowThisFuncLeave();
3572}
3573
3574/**
3575 * Checks that this hard disk (part of a snapshot) may be deleted/merged and
3576 * performs necessary state changes. Must not be called for writethrough disks
3577 * because there is nothing to delete/merge then.
3578 *
3579 * This method is to be called prior to calling #deleteSnapshotMedium().
3580 * If #deleteSnapshotMedium() is not called or fails, the state modifications
3581 * performed by this method must be undone by #cancelDeleteSnapshotMedium().
3582 *
3583 * @return COM status code
3584 * @param aHD Hard disk which is connected to the snapshot.
3585 * @param aMachineId UUID of machine this hard disk is attached to.
3586 * @param aSnapshotId UUID of snapshot this hard disk is attached to. May
3587 * be a zero UUID if no snapshot is applicable.
3588 * @param fOnlineMergePossible Flag whether an online merge is possible.
3589 * @param aVMMALockList Medium lock list for the medium attachment of this VM.
3590 * Only used if @a fOnlineMergePossible is @c true, and
3591 * must be non-NULL in this case.
3592 * @param aSource Source hard disk for merge (out).
3593 * @param aTarget Target hard disk for merge (out).
3594 * @param aMergeForward Merge direction decision (out).
3595 * @param aParentForTarget New parent if target needs to be reparented (out).
3596 * @param aChildrenToReparent MediumLockList with children which have to be
3597 * reparented to the target (out).
3598 * @param fNeedsOnlineMerge Whether this merge needs to be done online (out).
3599 * If this is set to @a true then the @a aVMMALockList
3600 * parameter has been modified and is returned as
3601 * @a aMediumLockList.
3602 * @param aMediumLockList Where to store the created medium lock list (may
3603 * return NULL if no real merge is necessary).
3604 * @param aHDLockToken Where to store the write lock token for aHD, in case
3605 * it is not merged or deleted (out).
3606 *
3607 * @note Caller must hold media tree lock for writing. This locks this object
3608 * and every medium object on the merge chain for writing.
3609 */
3610HRESULT SessionMachine::i_prepareDeleteSnapshotMedium(const ComObjPtr<Medium> &aHD,
3611 const Guid &aMachineId,
3612 const Guid &aSnapshotId,
3613 bool fOnlineMergePossible,
3614 MediumLockList *aVMMALockList,
3615 ComObjPtr<Medium> &aSource,
3616 ComObjPtr<Medium> &aTarget,
3617 bool &aMergeForward,
3618 ComObjPtr<Medium> &aParentForTarget,
3619 MediumLockList * &aChildrenToReparent,
3620 bool &fNeedsOnlineMerge,
3621 MediumLockList * &aMediumLockList,
3622 ComPtr<IToken> &aHDLockToken)
3623{
3624 Assert(!mParent->i_getMediaTreeLockHandle().isWriteLockOnCurrentThread());
3625 Assert(!fOnlineMergePossible || VALID_PTR(aVMMALockList));
3626
3627 AutoWriteLock alock(aHD COMMA_LOCKVAL_SRC_POS);
3628
3629 // Medium must not be writethrough/shareable/readonly at this point
3630 MediumType_T type = aHD->i_getType();
3631 AssertReturn( type != MediumType_Writethrough
3632 && type != MediumType_Shareable
3633 && type != MediumType_Readonly, E_FAIL);
3634
3635 aChildrenToReparent = NULL;
3636 aMediumLockList = NULL;
3637 fNeedsOnlineMerge = false;
3638
3639 if (aHD->i_getChildren().size() == 0)
3640 {
3641 /* This technically is no merge, set those values nevertheless.
3642 * Helps with updating the medium attachments. */
3643 aSource = aHD;
3644 aTarget = aHD;
3645
3646 /* special treatment of the last hard disk in the chain: */
3647 if (aHD->i_getParent().isNull())
3648 {
3649 /* lock only, to prevent any usage until the snapshot deletion
3650 * is completed */
3651 alock.release();
3652 return aHD->LockWrite(aHDLockToken.asOutParam());
3653 }
3654
3655 /* the differencing hard disk w/o children will be deleted, protect it
3656 * from attaching to other VMs (this is why Deleting) */
3657 return aHD->i_markForDeletion();
3658 }
3659
3660 /* not going multi-merge as it's too expensive */
3661 if (aHD->i_getChildren().size() > 1)
3662 return setError(E_FAIL,
3663 tr("Hard disk '%s' has more than one child hard disk (%d)"),
3664 aHD->i_getLocationFull().c_str(),
3665 aHD->i_getChildren().size());
3666
3667 ComObjPtr<Medium> pChild = aHD->i_getChildren().front();
3668
3669 AutoWriteLock childLock(pChild COMMA_LOCKVAL_SRC_POS);
3670
3671 /* the rest is a normal merge setup */
3672 if (aHD->i_getParent().isNull())
3673 {
3674 /* base hard disk, backward merge */
3675 const Guid *pMachineId1 = pChild->i_getFirstMachineBackrefId();
3676 const Guid *pMachineId2 = aHD->i_getFirstMachineBackrefId();
3677 if (pMachineId1 && pMachineId2 && *pMachineId1 != *pMachineId2)
3678 {
3679 /* backward merge is too tricky, we'll just detach on snapshot
3680 * deletion, so lock only, to prevent any usage */
3681 childLock.release();
3682 alock.release();
3683 return aHD->LockWrite(aHDLockToken.asOutParam());
3684 }
3685
3686 aSource = pChild;
3687 aTarget = aHD;
3688 }
3689 else
3690 {
3691 /* Determine best merge direction. */
3692 bool fMergeForward = true;
3693
3694 childLock.release();
3695 alock.release();
3696 HRESULT rc = aHD->i_queryPreferredMergeDirection(pChild, fMergeForward);
3697 alock.acquire();
3698 childLock.acquire();
3699
3700 if (FAILED(rc) && rc != E_FAIL)
3701 return rc;
3702
3703 if (fMergeForward)
3704 {
3705 aSource = aHD;
3706 aTarget = pChild;
3707 LogFlowThisFunc(("Forward merging selected\n"));
3708 }
3709 else
3710 {
3711 aSource = pChild;
3712 aTarget = aHD;
3713 LogFlowThisFunc(("Backward merging selected\n"));
3714 }
3715 }
3716
3717 HRESULT rc;
3718 childLock.release();
3719 alock.release();
3720 rc = aSource->i_prepareMergeTo(aTarget, &aMachineId, &aSnapshotId,
3721 !fOnlineMergePossible /* fLockMedia */,
3722 aMergeForward, aParentForTarget,
3723 aChildrenToReparent, aMediumLockList);
3724 alock.acquire();
3725 childLock.acquire();
3726 if (SUCCEEDED(rc) && fOnlineMergePossible)
3727 {
3728 /* Try to lock the newly constructed medium lock list. If it succeeds
3729 * this can be handled as an offline merge, i.e. without the need of
3730 * asking the VM to do the merging. Only continue with the online
3731 * merging preparation if applicable. */
3732 childLock.release();
3733 alock.release();
3734 rc = aMediumLockList->Lock();
3735 alock.acquire();
3736 childLock.acquire();
3737 if (FAILED(rc))
3738 {
3739 /* Locking failed, this cannot be done as an offline merge. Try to
3740 * combine the locking information into the lock list of the medium
3741 * attachment in the running VM. If that fails or locking the
3742 * resulting lock list fails then the merge cannot be done online.
3743 * It can be repeated by the user when the VM is shut down. */
3744 MediumLockList::Base::iterator lockListVMMABegin =
3745 aVMMALockList->GetBegin();
3746 MediumLockList::Base::iterator lockListVMMAEnd =
3747 aVMMALockList->GetEnd();
3748 MediumLockList::Base::iterator lockListBegin =
3749 aMediumLockList->GetBegin();
3750 MediumLockList::Base::iterator lockListEnd =
3751 aMediumLockList->GetEnd();
3752 for (MediumLockList::Base::iterator it = lockListVMMABegin,
3753 it2 = lockListBegin;
3754 it2 != lockListEnd;
3755 ++it, ++it2)
3756 {
3757 if ( it == lockListVMMAEnd
3758 || it->GetMedium() != it2->GetMedium())
3759 {
3760 fOnlineMergePossible = false;
3761 break;
3762 }
3763 bool fLockReq = (it2->GetLockRequest() || it->GetLockRequest());
3764 childLock.release();
3765 alock.release();
3766 rc = it->UpdateLock(fLockReq);
3767 alock.acquire();
3768 childLock.acquire();
3769 if (FAILED(rc))
3770 {
3771 // could not update the lock, trigger cleanup below
3772 fOnlineMergePossible = false;
3773 break;
3774 }
3775 }
3776
3777 if (fOnlineMergePossible)
3778 {
3779 /* we will lock the children of the source for reparenting */
3780 if (aChildrenToReparent && !aChildrenToReparent->IsEmpty())
3781 {
3782 /* Cannot just call aChildrenToReparent->Lock(), as one of
3783 * the children is the one under which the current state of
3784 * the VM is located, and this means it is already locked
3785 * (for reading). Note that no special unlocking is needed,
3786 * because cancelMergeTo will unlock everything locked in
3787 * its context (using the unlock on destruction), and both
3788 * cancelDeleteSnapshotMedium (in case something fails) and
3789 * FinishOnlineMergeMedium re-define the read/write lock
3790 * state of everything which the VM need, search for the
3791 * UpdateLock method calls. */
3792 childLock.release();
3793 alock.release();
3794 rc = aChildrenToReparent->Lock(true /* fSkipOverLockedMedia */);
3795 alock.acquire();
3796 childLock.acquire();
3797 MediumLockList::Base::iterator childrenToReparentBegin = aChildrenToReparent->GetBegin();
3798 MediumLockList::Base::iterator childrenToReparentEnd = aChildrenToReparent->GetEnd();
3799 for (MediumLockList::Base::iterator it = childrenToReparentBegin;
3800 it != childrenToReparentEnd;
3801 ++it)
3802 {
3803 ComObjPtr<Medium> pMedium = it->GetMedium();
3804 AutoReadLock mediumLock(pMedium COMMA_LOCKVAL_SRC_POS);
3805 if (!it->IsLocked())
3806 {
3807 mediumLock.release();
3808 childLock.release();
3809 alock.release();
3810 rc = aVMMALockList->Update(pMedium, true);
3811 alock.acquire();
3812 childLock.acquire();
3813 mediumLock.acquire();
3814 if (FAILED(rc))
3815 throw rc;
3816 }
3817 }
3818 }
3819 }
3820
3821 if (fOnlineMergePossible)
3822 {
3823 childLock.release();
3824 alock.release();
3825 rc = aVMMALockList->Lock();
3826 alock.acquire();
3827 childLock.acquire();
3828 if (FAILED(rc))
3829 {
3830 aSource->i_cancelMergeTo(aChildrenToReparent, aMediumLockList);
3831 rc = setError(rc,
3832 tr("Cannot lock hard disk '%s' for a live merge"),
3833 aHD->i_getLocationFull().c_str());
3834 }
3835 else
3836 {
3837 delete aMediumLockList;
3838 aMediumLockList = aVMMALockList;
3839 fNeedsOnlineMerge = true;
3840 }
3841 }
3842 else
3843 {
3844 aSource->i_cancelMergeTo(aChildrenToReparent, aMediumLockList);
3845 rc = setError(rc,
3846 tr("Failed to construct lock list for a live merge of hard disk '%s'"),
3847 aHD->i_getLocationFull().c_str());
3848 }
3849
3850 // fix the VM's lock list if anything failed
3851 if (FAILED(rc))
3852 {
3853 lockListVMMABegin = aVMMALockList->GetBegin();
3854 lockListVMMAEnd = aVMMALockList->GetEnd();
3855 MediumLockList::Base::iterator lockListLast = lockListVMMAEnd;
3856 --lockListLast;
3857 for (MediumLockList::Base::iterator it = lockListVMMABegin;
3858 it != lockListVMMAEnd;
3859 ++it)
3860 {
3861 childLock.release();
3862 alock.release();
3863 it->UpdateLock(it == lockListLast);
3864 alock.acquire();
3865 childLock.acquire();
3866 ComObjPtr<Medium> pMedium = it->GetMedium();
3867 AutoWriteLock mediumLock(pMedium COMMA_LOCKVAL_SRC_POS);
3868 // blindly apply this, only needed for medium objects which
3869 // would be deleted as part of the merge
3870 pMedium->i_unmarkLockedForDeletion();
3871 }
3872 }
3873 }
3874 }
3875 else if (FAILED(rc))
3876 {
3877 aSource->i_cancelMergeTo(aChildrenToReparent, aMediumLockList);
3878 rc = setError(rc,
3879 tr("Cannot lock hard disk '%s' when deleting a snapshot"),
3880 aHD->i_getLocationFull().c_str());
3881 }
3882
3883 return rc;
3884}
3885
3886/**
3887 * Cancels the deletion/merging of this hard disk (part of a snapshot). Undoes
3888 * what #prepareDeleteSnapshotMedium() did. Must be called if
3889 * #deleteSnapshotMedium() is not called or fails.
3890 *
3891 * @param aHD Hard disk which is connected to the snapshot.
3892 * @param aSource Source hard disk for merge.
3893 * @param aChildrenToReparent Children to unlock.
3894 * @param fNeedsOnlineMerge Whether this merge needs to be done online.
3895 * @param aMediumLockList Medium locks to cancel.
3896 * @param aHDLockToken Optional write lock token for aHD.
3897 * @param aMachineId Machine id to attach the medium to.
3898 * @param aSnapshotId Snapshot id to attach the medium to.
3899 *
3900 * @note Locks the medium tree and the hard disks in the chain for writing.
3901 */
3902void SessionMachine::i_cancelDeleteSnapshotMedium(const ComObjPtr<Medium> &aHD,
3903 const ComObjPtr<Medium> &aSource,
3904 MediumLockList *aChildrenToReparent,
3905 bool fNeedsOnlineMerge,
3906 MediumLockList *aMediumLockList,
3907 const ComPtr<IToken> &aHDLockToken,
3908 const Guid &aMachineId,
3909 const Guid &aSnapshotId)
3910{
3911 if (aMediumLockList == NULL)
3912 {
3913 AutoMultiWriteLock2 mLock(&mParent->i_getMediaTreeLockHandle(), aHD->lockHandle() COMMA_LOCKVAL_SRC_POS);
3914
3915 Assert(aHD->i_getChildren().size() == 0);
3916
3917 if (aHD->i_getParent().isNull())
3918 {
3919 Assert(!aHDLockToken.isNull());
3920 if (!aHDLockToken.isNull())
3921 {
3922 HRESULT rc = aHDLockToken->Abandon();
3923 AssertComRC(rc);
3924 }
3925 }
3926 else
3927 {
3928 HRESULT rc = aHD->i_unmarkForDeletion();
3929 AssertComRC(rc);
3930 }
3931 }
3932 else
3933 {
3934 if (fNeedsOnlineMerge)
3935 {
3936 // Online merge uses the medium lock list of the VM, so give
3937 // an empty list to cancelMergeTo so that it works as designed.
3938 aSource->i_cancelMergeTo(aChildrenToReparent, new MediumLockList());
3939
3940 // clean up the VM medium lock list ourselves
3941 MediumLockList::Base::iterator lockListBegin =
3942 aMediumLockList->GetBegin();
3943 MediumLockList::Base::iterator lockListEnd =
3944 aMediumLockList->GetEnd();
3945 MediumLockList::Base::iterator lockListLast = lockListEnd;
3946 --lockListLast;
3947 for (MediumLockList::Base::iterator it = lockListBegin;
3948 it != lockListEnd;
3949 ++it)
3950 {
3951 ComObjPtr<Medium> pMedium = it->GetMedium();
3952 AutoWriteLock mediumLock(pMedium COMMA_LOCKVAL_SRC_POS);
3953 if (pMedium->i_getState() == MediumState_Deleting)
3954 pMedium->i_unmarkForDeletion();
3955 else
3956 {
3957 // blindly apply this, only needed for medium objects which
3958 // would be deleted as part of the merge
3959 pMedium->i_unmarkLockedForDeletion();
3960 }
3961 mediumLock.release();
3962 it->UpdateLock(it == lockListLast);
3963 mediumLock.acquire();
3964 }
3965 }
3966 else
3967 {
3968 aSource->i_cancelMergeTo(aChildrenToReparent, aMediumLockList);
3969 }
3970 }
3971
3972 if (aMachineId.isValid() && !aMachineId.isZero())
3973 {
3974 // reattach the source media to the snapshot
3975 HRESULT rc = aSource->i_addBackReference(aMachineId, aSnapshotId);
3976 AssertComRC(rc);
3977 }
3978}
3979
3980/**
3981 * Perform an online merge of a hard disk, i.e. the equivalent of
3982 * Medium::mergeTo(), just for running VMs. If this fails you need to call
3983 * #cancelDeleteSnapshotMedium().
3984 *
3985 * @return COM status code
3986 * @param aMediumAttachment Identify where the disk is attached in the VM.
3987 * @param aSource Source hard disk for merge.
3988 * @param aTarget Target hard disk for merge.
3989 * @param fMergeForward Merge direction.
3990 * @param aParentForTarget New parent if target needs to be reparented.
3991 * @param aChildrenToReparent Medium lock list with children which have to be
3992 * reparented to the target.
3993 * @param aMediumLockList Where to store the created medium lock list (may
3994 * return NULL if no real merge is necessary).
3995 * @param aProgress Progress indicator.
3996 * @param pfNeedsMachineSaveSettings Whether the VM settings need to be saved (out).
3997 */
3998HRESULT SessionMachine::i_onlineMergeMedium(const ComObjPtr<MediumAttachment> &aMediumAttachment,
3999 const ComObjPtr<Medium> &aSource,
4000 const ComObjPtr<Medium> &aTarget,
4001 bool fMergeForward,
4002 const ComObjPtr<Medium> &aParentForTarget,
4003 MediumLockList *aChildrenToReparent,
4004 MediumLockList *aMediumLockList,
4005 ComObjPtr<Progress> &aProgress,
4006 bool *pfNeedsMachineSaveSettings)
4007{
4008 AssertReturn(aSource != NULL, E_FAIL);
4009 AssertReturn(aTarget != NULL, E_FAIL);
4010 AssertReturn(aSource != aTarget, E_FAIL);
4011 AssertReturn(aMediumLockList != NULL, E_FAIL);
4012 NOREF(fMergeForward);
4013 NOREF(aParentForTarget);
4014 NOREF(aChildrenToReparent);
4015
4016 HRESULT rc = S_OK;
4017
4018 try
4019 {
4020 // Similar code appears in Medium::taskMergeHandle, so
4021 // if you make any changes below check whether they are applicable
4022 // in that context as well.
4023
4024 unsigned uTargetIdx = (unsigned)-1;
4025 unsigned uSourceIdx = (unsigned)-1;
4026 /* Sanity check all hard disks in the chain. */
4027 MediumLockList::Base::iterator lockListBegin =
4028 aMediumLockList->GetBegin();
4029 MediumLockList::Base::iterator lockListEnd =
4030 aMediumLockList->GetEnd();
4031 unsigned i = 0;
4032 for (MediumLockList::Base::iterator it = lockListBegin;
4033 it != lockListEnd;
4034 ++it)
4035 {
4036 MediumLock &mediumLock = *it;
4037 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
4038
4039 if (pMedium == aSource)
4040 uSourceIdx = i;
4041 else if (pMedium == aTarget)
4042 uTargetIdx = i;
4043
4044 // In Medium::taskMergeHandler there is lots of consistency
4045 // checking which we cannot do here, as the state details are
4046 // impossible to get outside the Medium class. The locking should
4047 // have done the checks already.
4048
4049 i++;
4050 }
4051
4052 ComAssertThrow( uSourceIdx != (unsigned)-1
4053 && uTargetIdx != (unsigned)-1, E_FAIL);
4054
4055 ComPtr<IInternalSessionControl> directControl;
4056 {
4057 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
4058
4059 if (mData->mSession.mState != SessionState_Locked)
4060 throw setError(VBOX_E_INVALID_VM_STATE,
4061 tr("Machine is not locked by a session (session state: %s)"),
4062 Global::stringifySessionState(mData->mSession.mState));
4063 directControl = mData->mSession.mDirectControl;
4064 }
4065
4066 // Must not hold any locks here, as this will call back to finish
4067 // updating the medium attachment, chain linking and state.
4068 rc = directControl->OnlineMergeMedium(aMediumAttachment,
4069 uSourceIdx, uTargetIdx,
4070 aProgress);
4071 if (FAILED(rc))
4072 throw rc;
4073 }
4074 catch (HRESULT aRC) { rc = aRC; }
4075
4076 // The callback mentioned above takes care of update the medium state
4077
4078 if (pfNeedsMachineSaveSettings)
4079 *pfNeedsMachineSaveSettings = true;
4080
4081 return rc;
4082}
4083
4084/**
4085 * Implementation for IInternalMachineControl::finishOnlineMergeMedium().
4086 *
4087 * Gets called after the successful completion of an online merge from
4088 * Console::onlineMergeMedium(), which gets invoked indirectly above in
4089 * the call to IInternalSessionControl::onlineMergeMedium.
4090 *
4091 * This updates the medium information and medium state so that the VM
4092 * can continue with the updated state of the medium chain.
4093 */
4094HRESULT SessionMachine::finishOnlineMergeMedium()
4095{
4096 HRESULT rc = S_OK;
4097 MediumDeleteRec *pDeleteRec = (MediumDeleteRec *)mConsoleTaskData.mDeleteSnapshotInfo;
4098 AssertReturn(pDeleteRec, E_FAIL);
4099 bool fSourceHasChildren = false;
4100
4101 // all hard disks but the target were successfully deleted by
4102 // the merge; reparent target if necessary and uninitialize media
4103
4104 AutoWriteLock treeLock(mParent->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
4105
4106 // Declare this here to make sure the object does not get uninitialized
4107 // before this method completes. Would normally happen as halfway through
4108 // we delete the last reference to the no longer existing medium object.
4109 ComObjPtr<Medium> targetChild;
4110
4111 if (pDeleteRec->mfMergeForward)
4112 {
4113 // first, unregister the target since it may become a base
4114 // hard disk which needs re-registration
4115 rc = mParent->i_unregisterMedium(pDeleteRec->mpTarget);
4116 AssertComRC(rc);
4117
4118 // then, reparent it and disconnect the deleted branch at
4119 // both ends (chain->parent() is source's parent)
4120 pDeleteRec->mpTarget->i_deparent();
4121 pDeleteRec->mpTarget->i_setParent(pDeleteRec->mpParentForTarget);
4122 if (pDeleteRec->mpParentForTarget)
4123 pDeleteRec->mpSource->i_deparent();
4124
4125 // then, register again
4126 rc = mParent->i_registerMedium(pDeleteRec->mpTarget, &pDeleteRec->mpTarget, treeLock);
4127 AssertComRC(rc);
4128 }
4129 else
4130 {
4131 Assert(pDeleteRec->mpTarget->i_getChildren().size() == 1);
4132 targetChild = pDeleteRec->mpTarget->i_getChildren().front();
4133
4134 // disconnect the deleted branch at the elder end
4135 targetChild->i_deparent();
4136
4137 // Update parent UUIDs of the source's children, reparent them and
4138 // disconnect the deleted branch at the younger end
4139 if (pDeleteRec->mpChildrenToReparent && !pDeleteRec->mpChildrenToReparent->IsEmpty())
4140 {
4141 fSourceHasChildren = true;
4142 // Fix the parent UUID of the images which needs to be moved to
4143 // underneath target. The running machine has the images opened,
4144 // but only for reading since the VM is paused. If anything fails
4145 // we must continue. The worst possible result is that the images
4146 // need manual fixing via VBoxManage to adjust the parent UUID.
4147 treeLock.release();
4148 pDeleteRec->mpTarget->i_fixParentUuidOfChildren(pDeleteRec->mpChildrenToReparent);
4149 // The childen are still write locked, unlock them now and don't
4150 // rely on the destructor doing it very late.
4151 pDeleteRec->mpChildrenToReparent->Unlock();
4152 treeLock.acquire();
4153
4154 // obey {parent,child} lock order
4155 AutoWriteLock sourceLock(pDeleteRec->mpSource COMMA_LOCKVAL_SRC_POS);
4156
4157 MediumLockList::Base::iterator childrenBegin = pDeleteRec->mpChildrenToReparent->GetBegin();
4158 MediumLockList::Base::iterator childrenEnd = pDeleteRec->mpChildrenToReparent->GetEnd();
4159 for (MediumLockList::Base::iterator it = childrenBegin;
4160 it != childrenEnd;
4161 ++it)
4162 {
4163 Medium *pMedium = it->GetMedium();
4164 AutoWriteLock childLock(pMedium COMMA_LOCKVAL_SRC_POS);
4165
4166 pMedium->i_deparent(); // removes pMedium from source
4167 pMedium->i_setParent(pDeleteRec->mpTarget);
4168 }
4169 }
4170 }
4171
4172 /* unregister and uninitialize all hard disks removed by the merge */
4173 MediumLockList *pMediumLockList = NULL;
4174 rc = mData->mSession.mLockedMedia.Get(pDeleteRec->mpOnlineMediumAttachment, pMediumLockList);
4175 const ComObjPtr<Medium> &pLast = pDeleteRec->mfMergeForward ? pDeleteRec->mpTarget : pDeleteRec->mpSource;
4176 AssertReturn(SUCCEEDED(rc) && pMediumLockList, E_FAIL);
4177 MediumLockList::Base::iterator lockListBegin =
4178 pMediumLockList->GetBegin();
4179 MediumLockList::Base::iterator lockListEnd =
4180 pMediumLockList->GetEnd();
4181 for (MediumLockList::Base::iterator it = lockListBegin;
4182 it != lockListEnd;
4183 )
4184 {
4185 MediumLock &mediumLock = *it;
4186 /* Create a real copy of the medium pointer, as the medium
4187 * lock deletion below would invalidate the referenced object. */
4188 const ComObjPtr<Medium> pMedium = mediumLock.GetMedium();
4189
4190 /* The target and all images not merged (readonly) are skipped */
4191 if ( pMedium == pDeleteRec->mpTarget
4192 || pMedium->i_getState() == MediumState_LockedRead)
4193 {
4194 ++it;
4195 }
4196 else
4197 {
4198 rc = mParent->i_unregisterMedium(pMedium);
4199 AssertComRC(rc);
4200
4201 /* now, uninitialize the deleted hard disk (note that
4202 * due to the Deleting state, uninit() will not touch
4203 * the parent-child relationship so we need to
4204 * uninitialize each disk individually) */
4205
4206 /* note that the operation initiator hard disk (which is
4207 * normally also the source hard disk) is a special case
4208 * -- there is one more caller added by Task to it which
4209 * we must release. Also, if we are in sync mode, the
4210 * caller may still hold an AutoCaller instance for it
4211 * and therefore we cannot uninit() it (it's therefore
4212 * the caller's responsibility) */
4213 if (pMedium == pDeleteRec->mpSource)
4214 {
4215 Assert(pDeleteRec->mpSource->i_getChildren().size() == 0);
4216 Assert(pDeleteRec->mpSource->i_getFirstMachineBackrefId() == NULL);
4217 }
4218
4219 /* Delete the medium lock list entry, which also releases the
4220 * caller added by MergeChain before uninit() and updates the
4221 * iterator to point to the right place. */
4222 rc = pMediumLockList->RemoveByIterator(it);
4223 AssertComRC(rc);
4224
4225 treeLock.release();
4226 pMedium->uninit();
4227 treeLock.acquire();
4228 }
4229
4230 /* Stop as soon as we reached the last medium affected by the merge.
4231 * The remaining images must be kept unchanged. */
4232 if (pMedium == pLast)
4233 break;
4234 }
4235
4236 /* Could be in principle folded into the previous loop, but let's keep
4237 * things simple. Update the medium locking to be the standard state:
4238 * all parent images locked for reading, just the last diff for writing. */
4239 lockListBegin = pMediumLockList->GetBegin();
4240 lockListEnd = pMediumLockList->GetEnd();
4241 MediumLockList::Base::iterator lockListLast = lockListEnd;
4242 --lockListLast;
4243 for (MediumLockList::Base::iterator it = lockListBegin;
4244 it != lockListEnd;
4245 ++it)
4246 {
4247 it->UpdateLock(it == lockListLast);
4248 }
4249
4250 /* If this is a backwards merge of the only remaining snapshot (i.e. the
4251 * source has no children) then update the medium associated with the
4252 * attachment, as the previously associated one (source) is now deleted.
4253 * Without the immediate update the VM could not continue running. */
4254 if (!pDeleteRec->mfMergeForward && !fSourceHasChildren)
4255 {
4256 AutoWriteLock attLock(pDeleteRec->mpOnlineMediumAttachment COMMA_LOCKVAL_SRC_POS);
4257 pDeleteRec->mpOnlineMediumAttachment->i_updateMedium(pDeleteRec->mpTarget);
4258 }
4259
4260 return S_OK;
4261}
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