VirtualBox

source: vbox/trunk/src/VBox/Main/MediumImpl.cpp@ 29028

Last change on this file since 29028 was 29028, checked in by vboxsync, 15 years ago

Main/Medium: New API method for directly querying the MediumFormat object associated with a medium object. Getting the backend name and then use the list of all medium format objects to find it is lots of work and quite inefficient.

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File size: 200.8 KB
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1/* $Id: MediumImpl.cpp 29028 2010-05-04 14:33:45Z vboxsync $ */
2
3/** @file
4 *
5 * VirtualBox COM class implementation
6 */
7
8/*
9 * Copyright (C) 2008-2010 Oracle Corporation
10 *
11 * This file is part of VirtualBox Open Source Edition (OSE), as
12 * available from http://www.virtualbox.org. This file is free software;
13 * you can redistribute it and/or modify it under the terms of the GNU
14 * General Public License (GPL) as published by the Free Software
15 * Foundation, in version 2 as it comes in the "COPYING" file of the
16 * VirtualBox OSE distribution. VirtualBox OSE is distributed in the
17 * hope that it will be useful, but WITHOUT ANY WARRANTY of any kind.
18 */
19
20#include "MediumImpl.h"
21#include "ProgressImpl.h"
22#include "SystemPropertiesImpl.h"
23#include "VirtualBoxImpl.h"
24
25#include "AutoCaller.h"
26#include "Logging.h"
27
28#include <VBox/com/array.h>
29#include <VBox/com/SupportErrorInfo.h>
30
31#include <VBox/err.h>
32#include <VBox/settings.h>
33
34#include <iprt/param.h>
35#include <iprt/path.h>
36#include <iprt/file.h>
37#include <iprt/tcp.h>
38
39#include <VBox/VBoxHDD.h>
40
41#include <algorithm>
42
43////////////////////////////////////////////////////////////////////////////////
44//
45// Medium data definition
46//
47////////////////////////////////////////////////////////////////////////////////
48
49/** Describes how a machine refers to this image. */
50struct BackRef
51{
52 /** Equality predicate for stdc++. */
53 struct EqualsTo : public std::unary_function <BackRef, bool>
54 {
55 explicit EqualsTo(const Guid &aMachineId) : machineId(aMachineId) {}
56
57 bool operator()(const argument_type &aThat) const
58 {
59 return aThat.machineId == machineId;
60 }
61
62 const Guid machineId;
63 };
64
65 typedef std::list<Guid> GuidList;
66
67 BackRef(const Guid &aMachineId,
68 const Guid &aSnapshotId = Guid::Empty)
69 : machineId(aMachineId),
70 fInCurState(aSnapshotId.isEmpty())
71 {
72 if (!aSnapshotId.isEmpty())
73 llSnapshotIds.push_back(aSnapshotId);
74 }
75
76 Guid machineId;
77 bool fInCurState : 1;
78 GuidList llSnapshotIds;
79};
80
81typedef std::list<BackRef> BackRefList;
82
83struct Medium::Data
84{
85 Data()
86 : pVirtualBox(NULL),
87 state(MediumState_NotCreated),
88 size(0),
89 readers(0),
90 preLockState(MediumState_NotCreated),
91 queryInfoSem(NIL_RTSEMEVENTMULTI),
92 queryInfoRunning(false),
93 type(MediumType_Normal),
94 devType(DeviceType_HardDisk),
95 logicalSize(0),
96 hddOpenMode(OpenReadWrite),
97 autoReset(false),
98 setImageId(false),
99 setParentId(false),
100 hostDrive(FALSE),
101 implicit(false),
102 numCreateDiffTasks(0),
103 vdDiskIfaces(NULL)
104 {}
105
106 /** weak VirtualBox parent */
107 VirtualBox * const pVirtualBox;
108
109 const Guid id;
110 Utf8Str strDescription;
111 MediumState_T state;
112 Utf8Str strLocation;
113 Utf8Str strLocationFull;
114 uint64_t size;
115 Utf8Str strLastAccessError;
116
117 // pParent and llChildren are protected by VirtualBox::getMediaTreeLockHandle()
118 ComObjPtr<Medium> pParent;
119 MediaList llChildren; // to add a child, just call push_back; to remove a child, call child->deparent() which does a lookup
120
121 BackRefList backRefs;
122
123 size_t readers;
124 MediumState_T preLockState;
125
126 RTSEMEVENTMULTI queryInfoSem;
127 bool queryInfoRunning : 1;
128
129 const Utf8Str strFormat;
130 ComObjPtr<MediumFormat> formatObj;
131
132 MediumType_T type;
133 DeviceType_T devType;
134 uint64_t logicalSize; /*< In MBytes. */
135
136 HDDOpenMode hddOpenMode;
137
138 BOOL autoReset : 1;
139
140 /** the following members are invalid after changing UUID on open */
141 BOOL setImageId : 1;
142 BOOL setParentId : 1;
143 const Guid imageId;
144 const Guid parentId;
145
146 BOOL hostDrive : 1;
147
148 typedef std::map <Bstr, Bstr> PropertyMap;
149 PropertyMap properties;
150
151 bool implicit : 1;
152
153 uint32_t numCreateDiffTasks;
154
155 Utf8Str vdError; /*< Error remembered by the VD error callback. */
156
157 VDINTERFACE vdIfError;
158 VDINTERFACEERROR vdIfCallsError;
159
160 VDINTERFACE vdIfConfig;
161 VDINTERFACECONFIG vdIfCallsConfig;
162
163 VDINTERFACE vdIfTcpNet;
164 VDINTERFACETCPNET vdIfCallsTcpNet;
165
166 PVDINTERFACE vdDiskIfaces;
167};
168
169////////////////////////////////////////////////////////////////////////////////
170//
171// Globals
172//
173////////////////////////////////////////////////////////////////////////////////
174
175/**
176 * Medium::Task class for asynchronous operations.
177 *
178 * @note Instances of this class must be created using new() because the
179 * task thread function will delete them when the task is complete.
180 *
181 * @note The constructor of this class adds a caller on the managed Medium
182 * object which is automatically released upon destruction.
183 */
184class Medium::Task
185{
186public:
187 Task(Medium *aMedium, Progress *aProgress)
188 : mVDOperationIfaces(NULL),
189 m_pfNeedsSaveSettings(NULL),
190 mMedium(aMedium),
191 mMediumCaller(aMedium),
192 mThread(NIL_RTTHREAD),
193 mProgress(aProgress)
194 {
195 AssertReturnVoidStmt(aMedium, mRC = E_FAIL);
196 mRC = mMediumCaller.rc();
197 if (FAILED(mRC))
198 return;
199
200 /* Set up a per-operation progress interface, can be used freely (for
201 * binary operations you can use it either on the source or target). */
202 mVDIfCallsProgress.cbSize = sizeof(VDINTERFACEPROGRESS);
203 mVDIfCallsProgress.enmInterface = VDINTERFACETYPE_PROGRESS;
204 mVDIfCallsProgress.pfnProgress = vdProgressCall;
205 int vrc = VDInterfaceAdd(&mVDIfProgress,
206 "Medium::Task::vdInterfaceProgress",
207 VDINTERFACETYPE_PROGRESS,
208 &mVDIfCallsProgress,
209 mProgress,
210 &mVDOperationIfaces);
211 AssertRC(vrc);
212 if (RT_FAILURE(vrc))
213 mRC = E_FAIL;
214 }
215
216 // Make all destructors virtual. Just in case.
217 virtual ~Task()
218 {}
219
220 HRESULT rc() const { return mRC; }
221 bool isOk() const { return SUCCEEDED(rc()); }
222
223 static int fntMediumTask(RTTHREAD aThread, void *pvUser);
224
225 bool isAsync() { return mThread != NIL_RTTHREAD; }
226
227 PVDINTERFACE mVDOperationIfaces;
228
229 // Whether the caller needs to call VirtualBox::saveSettings() after
230 // the task function returns. Only used in synchronous (wait) mode;
231 // otherwise the task will save the settings itself.
232 bool *m_pfNeedsSaveSettings;
233
234 const ComObjPtr<Medium> mMedium;
235 AutoCaller mMediumCaller;
236
237 friend HRESULT Medium::runNow(Medium::Task*, bool*);
238
239protected:
240 HRESULT mRC;
241 RTTHREAD mThread;
242
243private:
244 virtual HRESULT handler() = 0;
245
246 const ComObjPtr<Progress> mProgress;
247
248 static DECLCALLBACK(int) vdProgressCall(void *pvUser, unsigned uPercent);
249
250 VDINTERFACE mVDIfProgress;
251 VDINTERFACEPROGRESS mVDIfCallsProgress;
252};
253
254class Medium::CreateBaseTask : public Medium::Task
255{
256public:
257 CreateBaseTask(Medium *aMedium,
258 Progress *aProgress,
259 uint64_t aSize,
260 MediumVariant_T aVariant)
261 : Medium::Task(aMedium, aProgress),
262 mSize(aSize),
263 mVariant(aVariant)
264 {}
265
266 uint64_t mSize;
267 MediumVariant_T mVariant;
268
269private:
270 virtual HRESULT handler();
271};
272
273class Medium::CreateDiffTask : public Medium::Task
274{
275public:
276 CreateDiffTask(Medium *aMedium,
277 Progress *aProgress,
278 Medium *aTarget,
279 MediumVariant_T aVariant,
280 MediumLockList *aMediumLockList,
281 bool fKeepMediumLockList = false)
282 : Medium::Task(aMedium, aProgress),
283 mpMediumLockList(aMediumLockList),
284 mTarget(aTarget),
285 mVariant(aVariant),
286 mTargetCaller(aTarget),
287 mfKeepMediumLockList(fKeepMediumLockList)
288 {
289 AssertReturnVoidStmt(aTarget != NULL, mRC = E_FAIL);
290 mRC = mTargetCaller.rc();
291 if (FAILED(mRC))
292 return;
293 }
294
295 ~CreateDiffTask()
296 {
297 if (!mfKeepMediumLockList && mpMediumLockList)
298 delete mpMediumLockList;
299 }
300
301 MediumLockList *mpMediumLockList;
302
303 const ComObjPtr<Medium> mTarget;
304 MediumVariant_T mVariant;
305
306private:
307 virtual HRESULT handler();
308
309 AutoCaller mTargetCaller;
310 bool mfKeepMediumLockList;
311};
312
313class Medium::CloneTask : public Medium::Task
314{
315public:
316 CloneTask(Medium *aMedium,
317 Progress *aProgress,
318 Medium *aTarget,
319 MediumVariant_T aVariant,
320 Medium *aParent,
321 MediumLockList *aSourceMediumLockList,
322 MediumLockList *aTargetMediumLockList,
323 bool fKeepSourceMediumLockList = false,
324 bool fKeepTargetMediumLockList = false)
325 : Medium::Task(aMedium, aProgress),
326 mTarget(aTarget),
327 mParent(aParent),
328 mpSourceMediumLockList(aSourceMediumLockList),
329 mpTargetMediumLockList(aTargetMediumLockList),
330 mVariant(aVariant),
331 mTargetCaller(aTarget),
332 mParentCaller(aParent),
333 mfKeepSourceMediumLockList(fKeepSourceMediumLockList),
334 mfKeepTargetMediumLockList(fKeepTargetMediumLockList)
335 {
336 AssertReturnVoidStmt(aTarget != NULL, mRC = E_FAIL);
337 mRC = mTargetCaller.rc();
338 if (FAILED(mRC))
339 return;
340 /* aParent may be NULL */
341 mRC = mParentCaller.rc();
342 if (FAILED(mRC))
343 return;
344 AssertReturnVoidStmt(aSourceMediumLockList != NULL, mRC = E_FAIL);
345 AssertReturnVoidStmt(aTargetMediumLockList != NULL, mRC = E_FAIL);
346 }
347
348 ~CloneTask()
349 {
350 if (!mfKeepSourceMediumLockList && mpSourceMediumLockList)
351 delete mpSourceMediumLockList;
352 if (!mfKeepTargetMediumLockList && mpTargetMediumLockList)
353 delete mpTargetMediumLockList;
354 }
355
356 const ComObjPtr<Medium> mTarget;
357 const ComObjPtr<Medium> mParent;
358 MediumLockList *mpSourceMediumLockList;
359 MediumLockList *mpTargetMediumLockList;
360 MediumVariant_T mVariant;
361
362private:
363 virtual HRESULT handler();
364
365 AutoCaller mTargetCaller;
366 AutoCaller mParentCaller;
367 bool mfKeepSourceMediumLockList;
368 bool mfKeepTargetMediumLockList;
369};
370
371class Medium::CompactTask : public Medium::Task
372{
373public:
374 CompactTask(Medium *aMedium,
375 Progress *aProgress,
376 MediumLockList *aMediumLockList,
377 bool fKeepMediumLockList = false)
378 : Medium::Task(aMedium, aProgress),
379 mpMediumLockList(aMediumLockList),
380 mfKeepMediumLockList(fKeepMediumLockList)
381 {
382 AssertReturnVoidStmt(aMediumLockList != NULL, mRC = E_FAIL);
383 }
384
385 ~CompactTask()
386 {
387 if (!mfKeepMediumLockList && mpMediumLockList)
388 delete mpMediumLockList;
389 }
390
391 MediumLockList *mpMediumLockList;
392
393private:
394 virtual HRESULT handler();
395
396 bool mfKeepMediumLockList;
397};
398
399class Medium::ResetTask : public Medium::Task
400{
401public:
402 ResetTask(Medium *aMedium,
403 Progress *aProgress,
404 MediumLockList *aMediumLockList,
405 bool fKeepMediumLockList = false)
406 : Medium::Task(aMedium, aProgress),
407 mpMediumLockList(aMediumLockList),
408 mfKeepMediumLockList(fKeepMediumLockList)
409 {}
410
411 ~ResetTask()
412 {
413 if (!mfKeepMediumLockList && mpMediumLockList)
414 delete mpMediumLockList;
415 }
416
417 MediumLockList *mpMediumLockList;
418
419private:
420 virtual HRESULT handler();
421
422 bool mfKeepMediumLockList;
423};
424
425class Medium::DeleteTask : public Medium::Task
426{
427public:
428 DeleteTask(Medium *aMedium,
429 Progress *aProgress,
430 MediumLockList *aMediumLockList,
431 bool fKeepMediumLockList = false)
432 : Medium::Task(aMedium, aProgress),
433 mpMediumLockList(aMediumLockList),
434 mfKeepMediumLockList(fKeepMediumLockList)
435 {}
436
437 ~DeleteTask()
438 {
439 if (!mfKeepMediumLockList && mpMediumLockList)
440 delete mpMediumLockList;
441 }
442
443 MediumLockList *mpMediumLockList;
444
445private:
446 virtual HRESULT handler();
447
448 bool mfKeepMediumLockList;
449};
450
451class Medium::MergeTask : public Medium::Task
452{
453public:
454 MergeTask(Medium *aMedium,
455 Medium *aTarget,
456 bool fMergeForward,
457 Medium *aParentForTarget,
458 const MediaList &aChildrenToReparent,
459 Progress *aProgress,
460 MediumLockList *aMediumLockList,
461 bool fKeepMediumLockList = false)
462 : Medium::Task(aMedium, aProgress),
463 mTarget(aTarget),
464 mfMergeForward(fMergeForward),
465 mParentForTarget(aParentForTarget),
466 mChildrenToReparent(aChildrenToReparent),
467 mpMediumLockList(aMediumLockList),
468 mTargetCaller(aTarget),
469 mParentForTargetCaller(aParentForTarget),
470 mfChildrenCaller(false),
471 mfKeepMediumLockList(fKeepMediumLockList)
472 {
473 AssertReturnVoidStmt(aMediumLockList != NULL, mRC = E_FAIL);
474 for (MediaList::const_iterator it = mChildrenToReparent.begin();
475 it != mChildrenToReparent.end();
476 ++it)
477 {
478 HRESULT rc2 = (*it)->addCaller();
479 if (FAILED(rc2))
480 {
481 mRC = E_FAIL;
482 for (MediaList::const_iterator it2 = mChildrenToReparent.begin();
483 it2 != it;
484 --it2)
485 {
486 (*it2)->releaseCaller();
487 }
488 return;
489 }
490 }
491 mfChildrenCaller = true;
492 }
493
494 ~MergeTask()
495 {
496 if (!mfKeepMediumLockList && mpMediumLockList)
497 delete mpMediumLockList;
498 if (mfChildrenCaller)
499 {
500 for (MediaList::const_iterator it = mChildrenToReparent.begin();
501 it != mChildrenToReparent.end();
502 ++it)
503 {
504 (*it)->releaseCaller();
505 }
506 }
507 }
508
509 const ComObjPtr<Medium> mTarget;
510 bool mfMergeForward;
511 /* When mChildrenToReparent is empty then mParentForTarget is non-null.
512 * In other words: they are used in different cases. */
513 const ComObjPtr<Medium> mParentForTarget;
514 MediaList mChildrenToReparent;
515 MediumLockList *mpMediumLockList;
516
517private:
518 virtual HRESULT handler();
519
520 AutoCaller mTargetCaller;
521 AutoCaller mParentForTargetCaller;
522 bool mfChildrenCaller;
523 bool mfKeepMediumLockList;
524};
525
526/**
527 * Thread function for time-consuming medium tasks.
528 *
529 * @param pvUser Pointer to the Medium::Task instance.
530 */
531/* static */
532DECLCALLBACK(int) Medium::Task::fntMediumTask(RTTHREAD aThread, void *pvUser)
533{
534 LogFlowFuncEnter();
535 AssertReturn(pvUser, (int)E_INVALIDARG);
536 Medium::Task *pTask = static_cast<Medium::Task *>(pvUser);
537
538 pTask->mThread = aThread;
539
540 HRESULT rc = pTask->handler();
541
542 /* complete the progress if run asynchronously */
543 if (pTask->isAsync())
544 {
545 if (!pTask->mProgress.isNull())
546 pTask->mProgress->notifyComplete(rc);
547 }
548
549 /* pTask is no longer needed, delete it. */
550 delete pTask;
551
552 LogFlowFunc(("rc=%Rhrc\n", rc));
553 LogFlowFuncLeave();
554
555 return (int)rc;
556}
557
558/**
559 * PFNVDPROGRESS callback handler for Task operations.
560 *
561 * @param pvUser Pointer to the Progress instance.
562 * @param uPercent Completetion precentage (0-100).
563 */
564/*static*/
565DECLCALLBACK(int) Medium::Task::vdProgressCall(void *pvUser, unsigned uPercent)
566{
567 Progress *that = static_cast<Progress *>(pvUser);
568
569 if (that != NULL)
570 {
571 /* update the progress object, capping it at 99% as the final percent
572 * is used for additional operations like setting the UUIDs and similar. */
573 HRESULT rc = that->SetCurrentOperationProgress(uPercent * 99 / 100);
574 if (FAILED(rc))
575 {
576 if (rc == E_FAIL)
577 return VERR_CANCELLED;
578 else
579 return VERR_INVALID_STATE;
580 }
581 }
582
583 return VINF_SUCCESS;
584}
585
586/**
587 * Implementation code for the "create base" task.
588 */
589HRESULT Medium::CreateBaseTask::handler()
590{
591 return mMedium->taskCreateBaseHandler(*this);
592}
593
594/**
595 * Implementation code for the "create diff" task.
596 */
597HRESULT Medium::CreateDiffTask::handler()
598{
599 return mMedium->taskCreateDiffHandler(*this);
600}
601
602/**
603 * Implementation code for the "clone" task.
604 */
605HRESULT Medium::CloneTask::handler()
606{
607 return mMedium->taskCloneHandler(*this);
608}
609
610/**
611 * Implementation code for the "compact" task.
612 */
613HRESULT Medium::CompactTask::handler()
614{
615 return mMedium->taskCompactHandler(*this);
616}
617
618/**
619 * Implementation code for the "reset" task.
620 */
621HRESULT Medium::ResetTask::handler()
622{
623 return mMedium->taskResetHandler(*this);
624}
625
626/**
627 * Implementation code for the "delete" task.
628 */
629HRESULT Medium::DeleteTask::handler()
630{
631 return mMedium->taskDeleteHandler(*this);
632}
633
634/**
635 * Implementation code for the "merge" task.
636 */
637HRESULT Medium::MergeTask::handler()
638{
639 return mMedium->taskMergeHandler(*this);
640}
641
642
643////////////////////////////////////////////////////////////////////////////////
644//
645// Medium constructor / destructor
646//
647////////////////////////////////////////////////////////////////////////////////
648
649DEFINE_EMPTY_CTOR_DTOR(Medium)
650
651HRESULT Medium::FinalConstruct()
652{
653 m = new Data;
654
655 /* Initialize the callbacks of the VD error interface */
656 m->vdIfCallsError.cbSize = sizeof(VDINTERFACEERROR);
657 m->vdIfCallsError.enmInterface = VDINTERFACETYPE_ERROR;
658 m->vdIfCallsError.pfnError = vdErrorCall;
659 m->vdIfCallsError.pfnMessage = NULL;
660
661 /* Initialize the callbacks of the VD config interface */
662 m->vdIfCallsConfig.cbSize = sizeof(VDINTERFACECONFIG);
663 m->vdIfCallsConfig.enmInterface = VDINTERFACETYPE_CONFIG;
664 m->vdIfCallsConfig.pfnAreKeysValid = vdConfigAreKeysValid;
665 m->vdIfCallsConfig.pfnQuerySize = vdConfigQuerySize;
666 m->vdIfCallsConfig.pfnQuery = vdConfigQuery;
667
668 /* Initialize the callbacks of the VD TCP interface (we always use the host
669 * IP stack for now) */
670 m->vdIfCallsTcpNet.cbSize = sizeof(VDINTERFACETCPNET);
671 m->vdIfCallsTcpNet.enmInterface = VDINTERFACETYPE_TCPNET;
672 m->vdIfCallsTcpNet.pfnClientConnect = RTTcpClientConnect;
673 m->vdIfCallsTcpNet.pfnClientClose = RTTcpClientClose;
674 m->vdIfCallsTcpNet.pfnSelectOne = RTTcpSelectOne;
675 m->vdIfCallsTcpNet.pfnRead = RTTcpRead;
676 m->vdIfCallsTcpNet.pfnWrite = RTTcpWrite;
677 m->vdIfCallsTcpNet.pfnFlush = RTTcpFlush;
678 m->vdIfCallsTcpNet.pfnGetLocalAddress = RTTcpGetLocalAddress;
679 m->vdIfCallsTcpNet.pfnGetPeerAddress = RTTcpGetPeerAddress;
680
681 /* Initialize the per-disk interface chain */
682 int vrc;
683 vrc = VDInterfaceAdd(&m->vdIfError,
684 "Medium::vdInterfaceError",
685 VDINTERFACETYPE_ERROR,
686 &m->vdIfCallsError, this, &m->vdDiskIfaces);
687 AssertRCReturn(vrc, E_FAIL);
688
689 vrc = VDInterfaceAdd(&m->vdIfConfig,
690 "Medium::vdInterfaceConfig",
691 VDINTERFACETYPE_CONFIG,
692 &m->vdIfCallsConfig, this, &m->vdDiskIfaces);
693 AssertRCReturn(vrc, E_FAIL);
694
695 vrc = VDInterfaceAdd(&m->vdIfTcpNet,
696 "Medium::vdInterfaceTcpNet",
697 VDINTERFACETYPE_TCPNET,
698 &m->vdIfCallsTcpNet, this, &m->vdDiskIfaces);
699 AssertRCReturn(vrc, E_FAIL);
700
701 vrc = RTSemEventMultiCreate(&m->queryInfoSem);
702 AssertRCReturn(vrc, E_FAIL);
703 vrc = RTSemEventMultiSignal(m->queryInfoSem);
704 AssertRCReturn(vrc, E_FAIL);
705
706 return S_OK;
707}
708
709void Medium::FinalRelease()
710{
711 uninit();
712
713 delete m;
714}
715
716/**
717 * Initializes the hard disk object without creating or opening an associated
718 * storage unit.
719 *
720 * For hard disks that don't have the VD_CAP_CREATE_FIXED or
721 * VD_CAP_CREATE_DYNAMIC capability (and therefore cannot be created or deleted
722 * with the means of VirtualBox) the associated storage unit is assumed to be
723 * ready for use so the state of the hard disk object will be set to Created.
724 *
725 * @param aVirtualBox VirtualBox object.
726 * @param aLocation Storage unit location.
727 * @param pfNeedsSaveSettings Optional pointer to a bool that must have been initialized to false and that will be set to true
728 * by this function if the caller should invoke VirtualBox::saveSettings() because the global settings have changed.
729 */
730HRESULT Medium::init(VirtualBox *aVirtualBox,
731 CBSTR aFormat,
732 CBSTR aLocation,
733 bool *pfNeedsSaveSettings)
734{
735 AssertReturn(aVirtualBox != NULL, E_FAIL);
736 AssertReturn(aFormat != NULL && *aFormat != '\0', E_FAIL);
737
738 /* Enclose the state transition NotReady->InInit->Ready */
739 AutoInitSpan autoInitSpan(this);
740 AssertReturn(autoInitSpan.isOk(), E_FAIL);
741
742 HRESULT rc = S_OK;
743
744 /* share VirtualBox weakly (parent remains NULL so far) */
745 unconst(m->pVirtualBox) = aVirtualBox;
746
747 /* no storage yet */
748 m->state = MediumState_NotCreated;
749
750 /* cannot be a host drive */
751 m->hostDrive = FALSE;
752
753 /* No storage unit is created yet, no need to queryInfo() */
754
755 rc = setFormat(aFormat);
756 if (FAILED(rc)) return rc;
757
758 if (m->formatObj->capabilities() & MediumFormatCapabilities_File)
759 {
760 rc = setLocation(aLocation);
761 if (FAILED(rc)) return rc;
762 }
763 else
764 {
765 rc = setLocation(aLocation);
766 if (FAILED(rc)) return rc;
767 }
768
769 if (!(m->formatObj->capabilities() & ( MediumFormatCapabilities_CreateFixed
770 | MediumFormatCapabilities_CreateDynamic))
771 )
772 {
773 /* storage for hard disks of this format can neither be explicitly
774 * created by VirtualBox nor deleted, so we place the hard disk to
775 * Created state here and also add it to the registry */
776 m->state = MediumState_Created;
777 unconst(m->id).create();
778
779 AutoWriteLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
780 rc = m->pVirtualBox->registerHardDisk(this, pfNeedsSaveSettings);
781 }
782
783 /* Confirm a successful initialization when it's the case */
784 if (SUCCEEDED(rc))
785 autoInitSpan.setSucceeded();
786
787 return rc;
788}
789
790/**
791 * Initializes the medium object by opening the storage unit at the specified
792 * location. The enOpenMode parameter defines whether the image will be opened
793 * read/write or read-only.
794 *
795 * Note that the UUID, format and the parent of this medium will be
796 * determined when reading the medium storage unit, unless new values are
797 * specified by the parameters. If the detected or set parent is
798 * not known to VirtualBox, then this method will fail.
799 *
800 * @param aVirtualBox VirtualBox object.
801 * @param aLocation Storage unit location.
802 * @param enOpenMode Whether to open the image read/write or read-only.
803 * @param aDeviceType Device type of medium.
804 * @param aSetImageId Whether to set the image UUID or not.
805 * @param aImageId New image UUID if @aSetId is true. Empty string means
806 * create a new UUID, and a zero UUID is invalid.
807 * @param aSetParentId Whether to set the parent UUID or not.
808 * @param aParentId New parent UUID if @aSetParentId is true. Empty string
809 * means create a new UUID, and a zero UUID is valid.
810 */
811HRESULT Medium::init(VirtualBox *aVirtualBox,
812 CBSTR aLocation,
813 HDDOpenMode enOpenMode,
814 DeviceType_T aDeviceType,
815 BOOL aSetImageId,
816 const Guid &aImageId,
817 BOOL aSetParentId,
818 const Guid &aParentId)
819{
820 AssertReturn(aVirtualBox, E_INVALIDARG);
821 AssertReturn(aLocation, E_INVALIDARG);
822
823 /* Enclose the state transition NotReady->InInit->Ready */
824 AutoInitSpan autoInitSpan(this);
825 AssertReturn(autoInitSpan.isOk(), E_FAIL);
826
827 HRESULT rc = S_OK;
828
829 /* share VirtualBox weakly (parent remains NULL so far) */
830 unconst(m->pVirtualBox) = aVirtualBox;
831
832 /* there must be a storage unit */
833 m->state = MediumState_Created;
834
835 /* remember device type for correct unregistering later */
836 m->devType = aDeviceType;
837
838 /* cannot be a host drive */
839 m->hostDrive = FALSE;
840
841 /* remember the open mode (defaults to ReadWrite) */
842 m->hddOpenMode = enOpenMode;
843
844 if (aDeviceType == DeviceType_HardDisk)
845 rc = setLocation(aLocation);
846 else
847 rc = setLocation(aLocation, "RAW");
848 if (FAILED(rc)) return rc;
849
850 /* save the new uuid values, will be used by queryInfo() */
851 m->setImageId = aSetImageId;
852 unconst(m->imageId) = aImageId;
853 m->setParentId = aSetParentId;
854 unconst(m->parentId) = aParentId;
855
856 /* get all the information about the medium from the storage unit */
857 rc = queryInfo();
858
859 if (SUCCEEDED(rc))
860 {
861 /* if the storage unit is not accessible, it's not acceptable for the
862 * newly opened media so convert this into an error */
863 if (m->state == MediumState_Inaccessible)
864 {
865 Assert(!m->strLastAccessError.isEmpty());
866 rc = setError(E_FAIL, m->strLastAccessError.c_str());
867 }
868 else
869 {
870 AssertReturn(!m->id.isEmpty(), E_FAIL);
871
872 /* storage format must be detected by queryInfo() if the medium is accessible */
873 AssertReturn(!m->strFormat.isEmpty(), E_FAIL);
874 }
875 }
876
877 /* Confirm a successful initialization when it's the case */
878 if (SUCCEEDED(rc))
879 autoInitSpan.setSucceeded();
880
881 return rc;
882}
883
884/**
885 * Initializes the medium object by loading its data from the given settings
886 * node. In this mode, the image will always be opened read/write.
887 *
888 * @param aVirtualBox VirtualBox object.
889 * @param aParent Parent medium disk or NULL for a root (base) medium.
890 * @param aDeviceType Device type of the medium.
891 * @param aNode Configuration settings.
892 *
893 * @note Locks VirtualBox for writing, the medium tree for writing.
894 */
895HRESULT Medium::init(VirtualBox *aVirtualBox,
896 Medium *aParent,
897 DeviceType_T aDeviceType,
898 const settings::Medium &data)
899{
900 using namespace settings;
901
902 AssertReturn(aVirtualBox, E_INVALIDARG);
903
904 /* Enclose the state transition NotReady->InInit->Ready */
905 AutoInitSpan autoInitSpan(this);
906 AssertReturn(autoInitSpan.isOk(), E_FAIL);
907
908 HRESULT rc = S_OK;
909
910 /* share VirtualBox and parent weakly */
911 unconst(m->pVirtualBox) = aVirtualBox;
912
913 /* register with VirtualBox/parent early, since uninit() will
914 * unconditionally unregister on failure */
915 if (aParent)
916 {
917 // differencing image: add to parent
918 AutoWriteLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
919 m->pParent = aParent;
920 aParent->m->llChildren.push_back(this);
921 }
922
923 /* see below why we don't call queryInfo() (and therefore treat the medium
924 * as inaccessible for now */
925 m->state = MediumState_Inaccessible;
926 m->strLastAccessError = tr("Accessibility check was not yet performed");
927
928 /* required */
929 unconst(m->id) = data.uuid;
930
931 /* assume not a host drive */
932 m->hostDrive = FALSE;
933
934 /* optional */
935 m->strDescription = data.strDescription;
936
937 /* required */
938 if (aDeviceType == DeviceType_HardDisk)
939 {
940 AssertReturn(!data.strFormat.isEmpty(), E_FAIL);
941 rc = setFormat(Bstr(data.strFormat));
942 if (FAILED(rc)) return rc;
943 }
944 else
945 {
946 /// @todo handle host drive settings here as well?
947 if (!data.strFormat.isEmpty())
948 rc = setFormat(Bstr(data.strFormat));
949 else
950 rc = setFormat(Bstr("RAW"));
951 if (FAILED(rc)) return rc;
952 }
953
954 /* optional, only for diffs, default is false;
955 * we can only auto-reset diff images, so they
956 * must not have a parent */
957 if (aParent != NULL)
958 m->autoReset = data.fAutoReset;
959 else
960 m->autoReset = false;
961
962 /* properties (after setting the format as it populates the map). Note that
963 * if some properties are not supported but preseint in the settings file,
964 * they will still be read and accessible (for possible backward
965 * compatibility; we can also clean them up from the XML upon next
966 * XML format version change if we wish) */
967 for (settings::PropertiesMap::const_iterator it = data.properties.begin();
968 it != data.properties.end(); ++it)
969 {
970 const Utf8Str &name = it->first;
971 const Utf8Str &value = it->second;
972 m->properties[Bstr(name)] = Bstr(value);
973 }
974
975 /* required */
976 rc = setLocation(data.strLocation);
977 if (FAILED(rc)) return rc;
978
979 if (aDeviceType == DeviceType_HardDisk)
980 {
981 /* type is only for base hard disks */
982 if (m->pParent.isNull())
983 m->type = data.hdType;
984 }
985 else
986 m->type = MediumType_Writethrough;
987
988 /* remember device type for correct unregistering later */
989 m->devType = aDeviceType;
990
991 LogFlowThisFunc(("m->strLocationFull='%s', m->strFormat=%s, m->id={%RTuuid}\n",
992 m->strLocationFull.raw(), m->strFormat.raw(), m->id.raw()));
993
994 /* Don't call queryInfo() for registered media to prevent the calling
995 * thread (i.e. the VirtualBox server startup thread) from an unexpected
996 * freeze but mark it as initially inaccessible instead. The vital UUID,
997 * location and format properties are read from the registry file above; to
998 * get the actual state and the rest of the data, the user will have to call
999 * COMGETTER(State). */
1000
1001 AutoWriteLock treeLock(aVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
1002
1003 /* load all children */
1004 for (settings::MediaList::const_iterator it = data.llChildren.begin();
1005 it != data.llChildren.end();
1006 ++it)
1007 {
1008 const settings::Medium &med = *it;
1009
1010 ComObjPtr<Medium> pHD;
1011 pHD.createObject();
1012 rc = pHD->init(aVirtualBox,
1013 this, // parent
1014 aDeviceType,
1015 med); // child data
1016 if (FAILED(rc)) break;
1017
1018 rc = m->pVirtualBox->registerHardDisk(pHD, NULL /*pfNeedsSaveSettings*/);
1019 if (FAILED(rc)) break;
1020 }
1021
1022 /* Confirm a successful initialization when it's the case */
1023 if (SUCCEEDED(rc))
1024 autoInitSpan.setSucceeded();
1025
1026 return rc;
1027}
1028
1029/**
1030 * Initializes the medium object by providing the host drive information.
1031 * Not used for anything but the host floppy/host DVD case.
1032 *
1033 * @todo optimize all callers to avoid reconstructing objects with the same
1034 * information over and over again - in the typical case each VM referring to
1035 * a particular host drive has its own instance.
1036 *
1037 * @param aVirtualBox VirtualBox object.
1038 * @param aDeviceType Device type of the medium.
1039 * @param aLocation Location of the host drive.
1040 * @param aDescription Comment for this host drive.
1041 *
1042 * @note Locks VirtualBox lock for writing.
1043 */
1044HRESULT Medium::init(VirtualBox *aVirtualBox,
1045 DeviceType_T aDeviceType,
1046 CBSTR aLocation,
1047 CBSTR aDescription)
1048{
1049 ComAssertRet(aDeviceType == DeviceType_DVD || aDeviceType == DeviceType_Floppy, E_INVALIDARG);
1050 ComAssertRet(aLocation, E_INVALIDARG);
1051
1052 /* Enclose the state transition NotReady->InInit->Ready */
1053 AutoInitSpan autoInitSpan(this);
1054 AssertReturn(autoInitSpan.isOk(), E_FAIL);
1055
1056 /* share VirtualBox weakly (parent remains NULL so far) */
1057 unconst(m->pVirtualBox) = aVirtualBox;
1058
1059 /* fake up a UUID which is unique, but also reproducible */
1060 RTUUID uuid;
1061 RTUuidClear(&uuid);
1062 if (aDeviceType == DeviceType_DVD)
1063 memcpy(&uuid.au8[0], "DVD", 3);
1064 else
1065 memcpy(&uuid.au8[0], "FD", 2);
1066 /* use device name, adjusted to the end of uuid, shortened if necessary */
1067 Utf8Str loc(aLocation);
1068 size_t cbLocation = strlen(loc.raw());
1069 if (cbLocation > 12)
1070 memcpy(&uuid.au8[4], loc.raw() + (cbLocation - 12), 12);
1071 else
1072 memcpy(&uuid.au8[4 + 12 - cbLocation], loc.raw(), cbLocation);
1073 unconst(m->id) = uuid;
1074
1075 m->type = MediumType_Writethrough;
1076 m->devType = aDeviceType;
1077 m->state = MediumState_Created;
1078 m->hostDrive = true;
1079 HRESULT rc = setFormat(Bstr("RAW"));
1080 if (FAILED(rc)) return rc;
1081 rc = setLocation(aLocation);
1082 if (FAILED(rc)) return rc;
1083 m->strDescription = aDescription;
1084
1085/// @todo generate uuid (similarly to host network interface uuid) from location and device type
1086
1087 autoInitSpan.setSucceeded();
1088 return S_OK;
1089}
1090
1091/**
1092 * Uninitializes the instance.
1093 *
1094 * Called either from FinalRelease() or by the parent when it gets destroyed.
1095 *
1096 * @note All children of this hard disk get uninitialized by calling their
1097 * uninit() methods.
1098 *
1099 * @note Caller must hold the tree lock of the medium tree this medium is on.
1100 */
1101void Medium::uninit()
1102{
1103 /* Enclose the state transition Ready->InUninit->NotReady */
1104 AutoUninitSpan autoUninitSpan(this);
1105 if (autoUninitSpan.uninitDone())
1106 return;
1107
1108 if (!m->formatObj.isNull())
1109 {
1110 /* remove the caller reference we added in setFormat() */
1111 m->formatObj->releaseCaller();
1112 m->formatObj.setNull();
1113 }
1114
1115 if (m->state == MediumState_Deleting)
1116 {
1117 /* we are being uninitialized after've been deleted by merge.
1118 * Reparenting has already been done so don't touch it here (we are
1119 * now orphans and removeDependentChild() will assert) */
1120 Assert(m->pParent.isNull());
1121 }
1122 else
1123 {
1124 MediaList::iterator it;
1125 for (it = m->llChildren.begin();
1126 it != m->llChildren.end();
1127 ++it)
1128 {
1129 Medium *pChild = *it;
1130 pChild->m->pParent.setNull();
1131 pChild->uninit();
1132 }
1133 m->llChildren.clear(); // this unsets all the ComPtrs and probably calls delete
1134
1135 if (m->pParent)
1136 {
1137 // this is a differencing disk: then remove it from the parent's children list
1138 deparent();
1139 }
1140 }
1141
1142 RTSemEventMultiSignal(m->queryInfoSem);
1143 RTSemEventMultiDestroy(m->queryInfoSem);
1144 m->queryInfoSem = NIL_RTSEMEVENTMULTI;
1145
1146 unconst(m->pVirtualBox) = NULL;
1147}
1148
1149/**
1150 * Internal helper that removes "this" from the list of children of its
1151 * parent. Used in uninit() and other places when reparenting is necessary.
1152 *
1153 * The caller must hold the hard disk tree lock!
1154 */
1155void Medium::deparent()
1156{
1157 MediaList &llParent = m->pParent->m->llChildren;
1158 for (MediaList::iterator it = llParent.begin();
1159 it != llParent.end();
1160 ++it)
1161 {
1162 Medium *pParentsChild = *it;
1163 if (this == pParentsChild)
1164 {
1165 llParent.erase(it);
1166 break;
1167 }
1168 }
1169 m->pParent.setNull();
1170}
1171
1172/**
1173 * Internal helper that removes "this" from the list of children of its
1174 * parent. Used in uninit() and other places when reparenting is necessary.
1175 *
1176 * The caller must hold the hard disk tree lock!
1177 */
1178void Medium::setParent(const ComObjPtr<Medium> &pParent)
1179{
1180 m->pParent = pParent;
1181 if (pParent)
1182 pParent->m->llChildren.push_back(this);
1183}
1184
1185
1186////////////////////////////////////////////////////////////////////////////////
1187//
1188// IMedium public methods
1189//
1190////////////////////////////////////////////////////////////////////////////////
1191
1192STDMETHODIMP Medium::COMGETTER(Id)(BSTR *aId)
1193{
1194 CheckComArgOutPointerValid(aId);
1195
1196 AutoCaller autoCaller(this);
1197 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1198
1199 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1200
1201 m->id.toUtf16().cloneTo(aId);
1202
1203 return S_OK;
1204}
1205
1206STDMETHODIMP Medium::COMGETTER(Description)(BSTR *aDescription)
1207{
1208 CheckComArgOutPointerValid(aDescription);
1209
1210 AutoCaller autoCaller(this);
1211 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1212
1213 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1214
1215 m->strDescription.cloneTo(aDescription);
1216
1217 return S_OK;
1218}
1219
1220STDMETHODIMP Medium::COMSETTER(Description)(IN_BSTR aDescription)
1221{
1222 AutoCaller autoCaller(this);
1223 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1224
1225// AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
1226
1227 /// @todo update m->description and save the global registry (and local
1228 /// registries of portable VMs referring to this medium), this will also
1229 /// require to add the mRegistered flag to data
1230
1231 NOREF(aDescription);
1232
1233 ReturnComNotImplemented();
1234}
1235
1236STDMETHODIMP Medium::COMGETTER(State)(MediumState_T *aState)
1237{
1238 CheckComArgOutPointerValid(aState);
1239
1240 AutoCaller autoCaller(this);
1241 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1242
1243 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1244 *aState = m->state;
1245
1246 return S_OK;
1247}
1248
1249
1250STDMETHODIMP Medium::COMGETTER(Location)(BSTR *aLocation)
1251{
1252 CheckComArgOutPointerValid(aLocation);
1253
1254 AutoCaller autoCaller(this);
1255 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1256
1257 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1258
1259 m->strLocationFull.cloneTo(aLocation);
1260
1261 return S_OK;
1262}
1263
1264STDMETHODIMP Medium::COMSETTER(Location)(IN_BSTR aLocation)
1265{
1266 CheckComArgStrNotEmptyOrNull(aLocation);
1267
1268 AutoCaller autoCaller(this);
1269 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1270
1271 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
1272
1273 /// @todo NEWMEDIA for file names, add the default extension if no extension
1274 /// is present (using the information from the VD backend which also implies
1275 /// that one more parameter should be passed to setLocation() requesting
1276 /// that functionality since it is only allwed when called from this method
1277
1278 /// @todo NEWMEDIA rename the file and set m->location on success, then save
1279 /// the global registry (and local registries of portable VMs referring to
1280 /// this medium), this will also require to add the mRegistered flag to data
1281
1282 ReturnComNotImplemented();
1283}
1284
1285STDMETHODIMP Medium::COMGETTER(Name)(BSTR *aName)
1286{
1287 CheckComArgOutPointerValid(aName);
1288
1289 AutoCaller autoCaller(this);
1290 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1291
1292 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1293
1294 getName().cloneTo(aName);
1295
1296 return S_OK;
1297}
1298
1299STDMETHODIMP Medium::COMGETTER(DeviceType)(DeviceType_T *aDeviceType)
1300{
1301 CheckComArgOutPointerValid(aDeviceType);
1302
1303 AutoCaller autoCaller(this);
1304 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1305
1306 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1307
1308 *aDeviceType = m->devType;
1309
1310 return S_OK;
1311}
1312
1313STDMETHODIMP Medium::COMGETTER(HostDrive)(BOOL *aHostDrive)
1314{
1315 CheckComArgOutPointerValid(aHostDrive);
1316
1317 AutoCaller autoCaller(this);
1318 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1319
1320 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1321
1322 *aHostDrive = m->hostDrive;
1323
1324 return S_OK;
1325}
1326
1327STDMETHODIMP Medium::COMGETTER(Size)(ULONG64 *aSize)
1328{
1329 CheckComArgOutPointerValid(aSize);
1330
1331 AutoCaller autoCaller(this);
1332 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1333
1334 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1335
1336 *aSize = m->size;
1337
1338 return S_OK;
1339}
1340
1341STDMETHODIMP Medium::COMGETTER(Format)(BSTR *aFormat)
1342{
1343 CheckComArgOutPointerValid(aFormat);
1344
1345 AutoCaller autoCaller(this);
1346 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1347
1348 /* no need to lock, m->strFormat is const */
1349 m->strFormat.cloneTo(aFormat);
1350
1351 return S_OK;
1352}
1353
1354STDMETHODIMP Medium::COMGETTER(MediumFormat)(IMediumFormat **aMediumFormat)
1355{
1356 CheckComArgOutPointerValid(aMediumFormat);
1357
1358 AutoCaller autoCaller(this);
1359 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1360
1361 /* no need to lock, m->formatObj is const */
1362 m->formatObj.queryInterfaceTo(aMediumFormat);
1363
1364 return S_OK;
1365}
1366
1367STDMETHODIMP Medium::COMGETTER(Type)(MediumType_T *aType)
1368{
1369 CheckComArgOutPointerValid(aType);
1370
1371 AutoCaller autoCaller(this);
1372 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1373
1374 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1375
1376 *aType = m->type;
1377
1378 return S_OK;
1379}
1380
1381STDMETHODIMP Medium::COMSETTER(Type)(MediumType_T aType)
1382{
1383 AutoCaller autoCaller(this);
1384 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1385
1386 // we access mParent and members
1387 AutoMultiWriteLock2 mlock(&m->pVirtualBox->getMediaTreeLockHandle(), this->lockHandle() COMMA_LOCKVAL_SRC_POS);
1388
1389 switch (m->state)
1390 {
1391 case MediumState_Created:
1392 case MediumState_Inaccessible:
1393 break;
1394 default:
1395 return setStateError();
1396 }
1397
1398 /** @todo implement this case later */
1399 CheckComArgExpr(aType, aType != MediumType_Shareable);
1400
1401 if (m->type == aType)
1402 {
1403 /* Nothing to do */
1404 return S_OK;
1405 }
1406
1407 /* cannot change the type of a differencing hard disk */
1408 if (m->pParent)
1409 return setError(E_FAIL,
1410 tr("Cannot change the type of hard disk '%s' because it is a differencing hard disk"),
1411 m->strLocationFull.raw());
1412
1413 /* cannot change the type of a hard disk being in use by more than one VM */
1414 if (m->backRefs.size() > 1)
1415 return setError(E_FAIL,
1416 tr("Cannot change the type of hard disk '%s' because it is attached to %d virtual machines"),
1417 m->strLocationFull.raw(), m->backRefs.size());
1418
1419 switch (aType)
1420 {
1421 case MediumType_Normal:
1422 case MediumType_Immutable:
1423 {
1424 /* normal can be easily converted to immutable and vice versa even
1425 * if they have children as long as they are not attached to any
1426 * machine themselves */
1427 break;
1428 }
1429 case MediumType_Writethrough:
1430 case MediumType_Shareable:
1431 {
1432 /* cannot change to writethrough or shareable if there are children */
1433 if (getChildren().size() != 0)
1434 return setError(E_FAIL,
1435 tr("Cannot change type for hard disk '%s' since it has %d child hard disk(s)"),
1436 m->strLocationFull.raw(), getChildren().size());
1437 break;
1438 }
1439 default:
1440 AssertFailedReturn(E_FAIL);
1441 }
1442
1443 m->type = aType;
1444
1445 // saveSettings needs vbox lock
1446 ComObjPtr<VirtualBox> pVirtualBox(m->pVirtualBox);
1447 mlock.leave();
1448 AutoWriteLock alock(m->pVirtualBox COMMA_LOCKVAL_SRC_POS);
1449
1450 HRESULT rc = pVirtualBox->saveSettings();
1451
1452 return rc;
1453}
1454
1455STDMETHODIMP Medium::COMGETTER(Parent)(IMedium **aParent)
1456{
1457 CheckComArgOutPointerValid(aParent);
1458
1459 AutoCaller autoCaller(this);
1460 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1461
1462 /* we access mParent */
1463 AutoReadLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
1464
1465 m->pParent.queryInterfaceTo(aParent);
1466
1467 return S_OK;
1468}
1469
1470STDMETHODIMP Medium::COMGETTER(Children)(ComSafeArrayOut(IMedium *, aChildren))
1471{
1472 CheckComArgOutSafeArrayPointerValid(aChildren);
1473
1474 AutoCaller autoCaller(this);
1475 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1476
1477 /* we access children */
1478 AutoReadLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
1479
1480 SafeIfaceArray<IMedium> children(this->getChildren());
1481 children.detachTo(ComSafeArrayOutArg(aChildren));
1482
1483 return S_OK;
1484}
1485
1486STDMETHODIMP Medium::COMGETTER(Base)(IMedium **aBase)
1487{
1488 CheckComArgOutPointerValid(aBase);
1489
1490 /* base() will do callers/locking */
1491
1492 getBase().queryInterfaceTo(aBase);
1493
1494 return S_OK;
1495}
1496
1497STDMETHODIMP Medium::COMGETTER(ReadOnly)(BOOL *aReadOnly)
1498{
1499 CheckComArgOutPointerValid(aReadOnly);
1500
1501 AutoCaller autoCaller(this);
1502 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1503
1504 /* isRadOnly() will do locking */
1505
1506 *aReadOnly = isReadOnly();
1507
1508 return S_OK;
1509}
1510
1511STDMETHODIMP Medium::COMGETTER(LogicalSize)(ULONG64 *aLogicalSize)
1512{
1513 CheckComArgOutPointerValid(aLogicalSize);
1514
1515 {
1516 AutoCaller autoCaller(this);
1517 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1518
1519 /* we access mParent */
1520 AutoReadLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
1521
1522 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1523
1524 if (m->pParent.isNull())
1525 {
1526 *aLogicalSize = m->logicalSize;
1527
1528 return S_OK;
1529 }
1530 }
1531
1532 /* We assume that some backend may decide to return a meaningless value in
1533 * response to VDGetSize() for differencing hard disks and therefore
1534 * always ask the base hard disk ourselves. */
1535
1536 /* base() will do callers/locking */
1537
1538 return getBase()->COMGETTER(LogicalSize)(aLogicalSize);
1539}
1540
1541STDMETHODIMP Medium::COMGETTER(AutoReset)(BOOL *aAutoReset)
1542{
1543 CheckComArgOutPointerValid(aAutoReset);
1544
1545 AutoCaller autoCaller(this);
1546 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1547
1548 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1549
1550 if (m->pParent)
1551 *aAutoReset = FALSE;
1552
1553 *aAutoReset = m->autoReset;
1554
1555 return S_OK;
1556}
1557
1558STDMETHODIMP Medium::COMSETTER(AutoReset)(BOOL aAutoReset)
1559{
1560 AutoCaller autoCaller(this);
1561 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1562
1563 /* VirtualBox::saveSettings() needs a write lock */
1564 AutoMultiWriteLock2 alock(m->pVirtualBox, this COMMA_LOCKVAL_SRC_POS);
1565
1566 if (m->pParent.isNull())
1567 return setError(VBOX_E_NOT_SUPPORTED,
1568 tr("Hard disk '%s' is not differencing"),
1569 m->strLocationFull.raw());
1570
1571 if (m->autoReset != aAutoReset)
1572 {
1573 m->autoReset = aAutoReset;
1574
1575 return m->pVirtualBox->saveSettings();
1576 }
1577
1578 return S_OK;
1579}
1580STDMETHODIMP Medium::COMGETTER(LastAccessError)(BSTR *aLastAccessError)
1581{
1582 CheckComArgOutPointerValid(aLastAccessError);
1583
1584 AutoCaller autoCaller(this);
1585 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1586
1587 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1588
1589 m->strLastAccessError.cloneTo(aLastAccessError);
1590
1591 return S_OK;
1592}
1593
1594STDMETHODIMP Medium::COMGETTER(MachineIds)(ComSafeArrayOut(BSTR,aMachineIds))
1595{
1596 CheckComArgOutSafeArrayPointerValid(aMachineIds);
1597
1598 AutoCaller autoCaller(this);
1599 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1600
1601 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1602
1603 com::SafeArray<BSTR> machineIds;
1604
1605 if (m->backRefs.size() != 0)
1606 {
1607 machineIds.reset(m->backRefs.size());
1608
1609 size_t i = 0;
1610 for (BackRefList::const_iterator it = m->backRefs.begin();
1611 it != m->backRefs.end(); ++it, ++i)
1612 {
1613 it->machineId.toUtf16().detachTo(&machineIds[i]);
1614 }
1615 }
1616
1617 machineIds.detachTo(ComSafeArrayOutArg(aMachineIds));
1618
1619 return S_OK;
1620}
1621
1622STDMETHODIMP Medium::RefreshState(MediumState_T *aState)
1623{
1624 CheckComArgOutPointerValid(aState);
1625
1626 AutoCaller autoCaller(this);
1627 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1628
1629 /* queryInfo() locks this for writing. */
1630 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
1631
1632 HRESULT rc = S_OK;
1633
1634 switch (m->state)
1635 {
1636 case MediumState_Created:
1637 case MediumState_Inaccessible:
1638 case MediumState_LockedRead:
1639 {
1640 rc = queryInfo();
1641 break;
1642 }
1643 default:
1644 break;
1645 }
1646
1647 *aState = m->state;
1648
1649 return rc;
1650}
1651
1652STDMETHODIMP Medium::GetSnapshotIds(IN_BSTR aMachineId,
1653 ComSafeArrayOut(BSTR, aSnapshotIds))
1654{
1655 CheckComArgExpr(aMachineId, Guid(aMachineId).isEmpty() == false);
1656 CheckComArgOutSafeArrayPointerValid(aSnapshotIds);
1657
1658 AutoCaller autoCaller(this);
1659 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1660
1661 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1662
1663 com::SafeArray<BSTR> snapshotIds;
1664
1665 Guid id(aMachineId);
1666 for (BackRefList::const_iterator it = m->backRefs.begin();
1667 it != m->backRefs.end(); ++it)
1668 {
1669 if (it->machineId == id)
1670 {
1671 size_t size = it->llSnapshotIds.size();
1672
1673 /* if the medium is attached to the machine in the current state, we
1674 * return its ID as the first element of the array */
1675 if (it->fInCurState)
1676 ++size;
1677
1678 if (size > 0)
1679 {
1680 snapshotIds.reset(size);
1681
1682 size_t j = 0;
1683 if (it->fInCurState)
1684 it->machineId.toUtf16().detachTo(&snapshotIds[j++]);
1685
1686 for (BackRef::GuidList::const_iterator jt = it->llSnapshotIds.begin();
1687 jt != it->llSnapshotIds.end();
1688 ++jt, ++j)
1689 {
1690 (*jt).toUtf16().detachTo(&snapshotIds[j]);
1691 }
1692 }
1693
1694 break;
1695 }
1696 }
1697
1698 snapshotIds.detachTo(ComSafeArrayOutArg(aSnapshotIds));
1699
1700 return S_OK;
1701}
1702
1703/**
1704 * @note @a aState may be NULL if the state value is not needed (only for
1705 * in-process calls).
1706 */
1707STDMETHODIMP Medium::LockRead(MediumState_T *aState)
1708{
1709 AutoCaller autoCaller(this);
1710 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1711
1712 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
1713
1714 /* Wait for a concurrently running queryInfo() to complete */
1715 while (m->queryInfoRunning)
1716 {
1717 alock.leave();
1718 RTSemEventMultiWait(m->queryInfoSem, RT_INDEFINITE_WAIT);
1719 alock.enter();
1720 }
1721
1722 /* return the current state before */
1723 if (aState)
1724 *aState = m->state;
1725
1726 HRESULT rc = S_OK;
1727
1728 switch (m->state)
1729 {
1730 case MediumState_Created:
1731 case MediumState_Inaccessible:
1732 case MediumState_LockedRead:
1733 {
1734 ++m->readers;
1735
1736 ComAssertMsgBreak(m->readers != 0, ("Counter overflow"), rc = E_FAIL);
1737
1738 /* Remember pre-lock state */
1739 if (m->state != MediumState_LockedRead)
1740 m->preLockState = m->state;
1741
1742 LogFlowThisFunc(("Okay - prev state=%d readers=%d\n", m->state, m->readers));
1743 m->state = MediumState_LockedRead;
1744
1745 break;
1746 }
1747 default:
1748 {
1749 LogFlowThisFunc(("Failing - state=%d\n", m->state));
1750 rc = setStateError();
1751 break;
1752 }
1753 }
1754
1755 return rc;
1756}
1757
1758/**
1759 * @note @a aState may be NULL if the state value is not needed (only for
1760 * in-process calls).
1761 */
1762STDMETHODIMP Medium::UnlockRead(MediumState_T *aState)
1763{
1764 AutoCaller autoCaller(this);
1765 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1766
1767 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
1768
1769 HRESULT rc = S_OK;
1770
1771 switch (m->state)
1772 {
1773 case MediumState_LockedRead:
1774 {
1775 Assert(m->readers != 0);
1776 --m->readers;
1777
1778 /* Reset the state after the last reader */
1779 if (m->readers == 0)
1780 {
1781 m->state = m->preLockState;
1782 /* There are cases where we inject the deleting state into
1783 * a medium locked for reading. Make sure #unmarkForDeletion()
1784 * gets the right state afterwards. */
1785 if (m->preLockState == MediumState_Deleting)
1786 m->preLockState = MediumState_Created;
1787 }
1788
1789 LogFlowThisFunc(("new state=%d\n", m->state));
1790 break;
1791 }
1792 default:
1793 {
1794 LogFlowThisFunc(("Failing - state=%d\n", m->state));
1795 rc = setError(VBOX_E_INVALID_OBJECT_STATE,
1796 tr("Medium '%s' is not locked for reading"),
1797 m->strLocationFull.raw());
1798 break;
1799 }
1800 }
1801
1802 /* return the current state after */
1803 if (aState)
1804 *aState = m->state;
1805
1806 return rc;
1807}
1808
1809/**
1810 * @note @a aState may be NULL if the state value is not needed (only for
1811 * in-process calls).
1812 */
1813STDMETHODIMP Medium::LockWrite(MediumState_T *aState)
1814{
1815 AutoCaller autoCaller(this);
1816 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1817
1818 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
1819
1820 /* Wait for a concurrently running queryInfo() to complete */
1821 while (m->queryInfoRunning)
1822 {
1823 alock.leave();
1824 RTSemEventMultiWait(m->queryInfoSem, RT_INDEFINITE_WAIT);
1825 alock.enter();
1826 }
1827
1828 /* return the current state before */
1829 if (aState)
1830 *aState = m->state;
1831
1832 HRESULT rc = S_OK;
1833
1834 switch (m->state)
1835 {
1836 case MediumState_Created:
1837 case MediumState_Inaccessible:
1838 {
1839 m->preLockState = m->state;
1840
1841 LogFlowThisFunc(("Okay - prev state=%d locationFull=%s\n", m->state, getLocationFull().c_str()));
1842 m->state = MediumState_LockedWrite;
1843 break;
1844 }
1845 default:
1846 {
1847 LogFlowThisFunc(("Failing - state=%d locationFull=%s\n", m->state, getLocationFull().c_str()));
1848 rc = setStateError();
1849 break;
1850 }
1851 }
1852
1853 return rc;
1854}
1855
1856/**
1857 * @note @a aState may be NULL if the state value is not needed (only for
1858 * in-process calls).
1859 */
1860STDMETHODIMP Medium::UnlockWrite(MediumState_T *aState)
1861{
1862 AutoCaller autoCaller(this);
1863 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1864
1865 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
1866
1867 HRESULT rc = S_OK;
1868
1869 switch (m->state)
1870 {
1871 case MediumState_LockedWrite:
1872 {
1873 m->state = m->preLockState;
1874 /* There are cases where we inject the deleting state into
1875 * a medium locked for writing. Make sure #unmarkForDeletion()
1876 * gets the right state afterwards. */
1877 if (m->preLockState == MediumState_Deleting)
1878 m->preLockState = MediumState_Created;
1879 LogFlowThisFunc(("new state=%d locationFull=%s\n", m->state, getLocationFull().c_str()));
1880 break;
1881 }
1882 default:
1883 {
1884 LogFlowThisFunc(("Failing - state=%d locationFull=%s\n", m->state, getLocationFull().c_str()));
1885 rc = setError(VBOX_E_INVALID_OBJECT_STATE,
1886 tr("Medium '%s' is not locked for writing"),
1887 m->strLocationFull.raw());
1888 break;
1889 }
1890 }
1891
1892 /* return the current state after */
1893 if (aState)
1894 *aState = m->state;
1895
1896 return rc;
1897}
1898
1899STDMETHODIMP Medium::Close()
1900{
1901 // we're accessing parent/child and backrefs, so lock the tree first, then ourselves
1902 AutoMultiWriteLock2 multilock(&m->pVirtualBox->getMediaTreeLockHandle(),
1903 this->lockHandle()
1904 COMMA_LOCKVAL_SRC_POS);
1905
1906 bool wasCreated = true;
1907 bool fNeedsSaveSettings = false;
1908
1909 switch (m->state)
1910 {
1911 case MediumState_NotCreated:
1912 wasCreated = false;
1913 break;
1914 case MediumState_Created:
1915 case MediumState_Inaccessible:
1916 break;
1917 default:
1918 return setStateError();
1919 }
1920
1921 if (m->backRefs.size() != 0)
1922 return setError(VBOX_E_OBJECT_IN_USE,
1923 tr("Medium '%s' is attached to %d virtual machines"),
1924 m->strLocationFull.raw(), m->backRefs.size());
1925
1926 /* perform extra media-dependent close checks */
1927 HRESULT rc = canClose();
1928 if (FAILED(rc)) return rc;
1929
1930 if (wasCreated)
1931 {
1932 /* remove from the list of known media before performing actual
1933 * uninitialization (to keep the media registry consistent on
1934 * failure to do so) */
1935 rc = unregisterWithVirtualBox(&fNeedsSaveSettings);
1936 if (FAILED(rc)) return rc;
1937 }
1938
1939 // make a copy of VirtualBox pointer which gets nulled by uninit()
1940 ComObjPtr<VirtualBox> pVirtualBox(m->pVirtualBox);
1941
1942 /* Keep the locks held until after uninit, as otherwise the consistency
1943 * of the medium tree cannot be guaranteed. */
1944 uninit();
1945
1946 multilock.release();
1947
1948 if (fNeedsSaveSettings)
1949 {
1950 AutoWriteLock vboxlock(pVirtualBox COMMA_LOCKVAL_SRC_POS);
1951 pVirtualBox->saveSettings();
1952 }
1953
1954 return S_OK;
1955}
1956
1957STDMETHODIMP Medium::GetProperty(IN_BSTR aName, BSTR *aValue)
1958{
1959 CheckComArgStrNotEmptyOrNull(aName);
1960 CheckComArgOutPointerValid(aValue);
1961
1962 AutoCaller autoCaller(this);
1963 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1964
1965 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1966
1967 Data::PropertyMap::const_iterator it = m->properties.find(Bstr(aName));
1968 if (it == m->properties.end())
1969 return setError(VBOX_E_OBJECT_NOT_FOUND,
1970 tr("Property '%ls' does not exist"), aName);
1971
1972 it->second.cloneTo(aValue);
1973
1974 return S_OK;
1975}
1976
1977STDMETHODIMP Medium::SetProperty(IN_BSTR aName, IN_BSTR aValue)
1978{
1979 CheckComArgStrNotEmptyOrNull(aName);
1980
1981 AutoCaller autoCaller(this);
1982 if (FAILED(autoCaller.rc())) return autoCaller.rc();
1983
1984 /* VirtualBox::saveSettings() needs a write lock */
1985 AutoMultiWriteLock2 alock(m->pVirtualBox, this COMMA_LOCKVAL_SRC_POS);
1986
1987 switch (m->state)
1988 {
1989 case MediumState_Created:
1990 case MediumState_Inaccessible:
1991 break;
1992 default:
1993 return setStateError();
1994 }
1995
1996 Data::PropertyMap::iterator it = m->properties.find(Bstr(aName));
1997 if (it == m->properties.end())
1998 return setError(VBOX_E_OBJECT_NOT_FOUND,
1999 tr("Property '%ls' does not exist"),
2000 aName);
2001
2002 if (aValue && !*aValue)
2003 it->second = (const char *)NULL;
2004 else
2005 it->second = aValue;
2006
2007 HRESULT rc = m->pVirtualBox->saveSettings();
2008
2009 return rc;
2010}
2011
2012STDMETHODIMP Medium::GetProperties(IN_BSTR aNames,
2013 ComSafeArrayOut(BSTR, aReturnNames),
2014 ComSafeArrayOut(BSTR, aReturnValues))
2015{
2016 CheckComArgOutSafeArrayPointerValid(aReturnNames);
2017 CheckComArgOutSafeArrayPointerValid(aReturnValues);
2018
2019 AutoCaller autoCaller(this);
2020 if (FAILED(autoCaller.rc())) return autoCaller.rc();
2021
2022 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
2023
2024 /// @todo make use of aNames according to the documentation
2025 NOREF(aNames);
2026
2027 com::SafeArray<BSTR> names(m->properties.size());
2028 com::SafeArray<BSTR> values(m->properties.size());
2029 size_t i = 0;
2030
2031 for (Data::PropertyMap::const_iterator it = m->properties.begin();
2032 it != m->properties.end();
2033 ++it)
2034 {
2035 it->first.cloneTo(&names[i]);
2036 it->second.cloneTo(&values[i]);
2037 ++i;
2038 }
2039
2040 names.detachTo(ComSafeArrayOutArg(aReturnNames));
2041 values.detachTo(ComSafeArrayOutArg(aReturnValues));
2042
2043 return S_OK;
2044}
2045
2046STDMETHODIMP Medium::SetProperties(ComSafeArrayIn(IN_BSTR, aNames),
2047 ComSafeArrayIn(IN_BSTR, aValues))
2048{
2049 CheckComArgSafeArrayNotNull(aNames);
2050 CheckComArgSafeArrayNotNull(aValues);
2051
2052 AutoCaller autoCaller(this);
2053 if (FAILED(autoCaller.rc())) return autoCaller.rc();
2054
2055 /* VirtualBox::saveSettings() needs a write lock */
2056 AutoMultiWriteLock2 alock(m->pVirtualBox, this COMMA_LOCKVAL_SRC_POS);
2057
2058 com::SafeArray<IN_BSTR> names(ComSafeArrayInArg(aNames));
2059 com::SafeArray<IN_BSTR> values(ComSafeArrayInArg(aValues));
2060
2061 /* first pass: validate names */
2062 for (size_t i = 0;
2063 i < names.size();
2064 ++i)
2065 {
2066 if (m->properties.find(Bstr(names[i])) == m->properties.end())
2067 return setError(VBOX_E_OBJECT_NOT_FOUND,
2068 tr("Property '%ls' does not exist"), names[i]);
2069 }
2070
2071 /* second pass: assign */
2072 for (size_t i = 0;
2073 i < names.size();
2074 ++i)
2075 {
2076 Data::PropertyMap::iterator it = m->properties.find(Bstr(names[i]));
2077 AssertReturn(it != m->properties.end(), E_FAIL);
2078
2079 if (values[i] && !*values[i])
2080 it->second = (const char *)NULL;
2081 else
2082 it->second = values[i];
2083 }
2084
2085 HRESULT rc = m->pVirtualBox->saveSettings();
2086
2087 return rc;
2088}
2089
2090STDMETHODIMP Medium::CreateBaseStorage(ULONG64 aLogicalSize,
2091 MediumVariant_T aVariant,
2092 IProgress **aProgress)
2093{
2094 CheckComArgOutPointerValid(aProgress);
2095
2096 AutoCaller autoCaller(this);
2097 if (FAILED(autoCaller.rc())) return autoCaller.rc();
2098
2099 HRESULT rc = S_OK;
2100 ComObjPtr <Progress> pProgress;
2101 Medium::Task *pTask = NULL;
2102
2103 try
2104 {
2105 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2106
2107 aVariant = (MediumVariant_T)((unsigned)aVariant & (unsigned)~MediumVariant_Diff);
2108 if ( !(aVariant & MediumVariant_Fixed)
2109 && !(m->formatObj->capabilities() & MediumFormatCapabilities_CreateDynamic))
2110 throw setError(VBOX_E_NOT_SUPPORTED,
2111 tr("Hard disk format '%s' does not support dynamic storage creation"),
2112 m->strFormat.raw());
2113 if ( (aVariant & MediumVariant_Fixed)
2114 && !(m->formatObj->capabilities() & MediumFormatCapabilities_CreateDynamic))
2115 throw setError(VBOX_E_NOT_SUPPORTED,
2116 tr("Hard disk format '%s' does not support fixed storage creation"),
2117 m->strFormat.raw());
2118
2119 if (m->state != MediumState_NotCreated)
2120 throw setStateError();
2121
2122 pProgress.createObject();
2123 rc = pProgress->init(m->pVirtualBox,
2124 static_cast<IMedium*>(this),
2125 (aVariant & MediumVariant_Fixed)
2126 ? BstrFmt(tr("Creating fixed hard disk storage unit '%s'"), m->strLocationFull.raw())
2127 : BstrFmt(tr("Creating dynamic hard disk storage unit '%s'"), m->strLocationFull.raw()),
2128 TRUE /* aCancelable */);
2129 if (FAILED(rc))
2130 throw rc;
2131
2132 /* setup task object to carry out the operation asynchronously */
2133 pTask = new Medium::CreateBaseTask(this, pProgress, aLogicalSize,
2134 aVariant);
2135 rc = pTask->rc();
2136 AssertComRC(rc);
2137 if (FAILED(rc))
2138 throw rc;
2139
2140 m->state = MediumState_Creating;
2141 }
2142 catch (HRESULT aRC) { rc = aRC; }
2143
2144 if (SUCCEEDED(rc))
2145 {
2146 rc = startThread(pTask);
2147
2148 if (SUCCEEDED(rc))
2149 pProgress.queryInterfaceTo(aProgress);
2150 }
2151 else if (pTask != NULL)
2152 delete pTask;
2153
2154 return rc;
2155}
2156
2157STDMETHODIMP Medium::DeleteStorage(IProgress **aProgress)
2158{
2159 CheckComArgOutPointerValid(aProgress);
2160
2161 AutoCaller autoCaller(this);
2162 if (FAILED(autoCaller.rc())) return autoCaller.rc();
2163
2164 ComObjPtr <Progress> pProgress;
2165
2166 HRESULT rc = deleteStorage(&pProgress, false /* aWait */,
2167 NULL /* pfNeedsSaveSettings */);
2168 if (SUCCEEDED(rc))
2169 pProgress.queryInterfaceTo(aProgress);
2170
2171 return rc;
2172}
2173
2174STDMETHODIMP Medium::CreateDiffStorage(IMedium *aTarget,
2175 MediumVariant_T aVariant,
2176 IProgress **aProgress)
2177{
2178 CheckComArgNotNull(aTarget);
2179 CheckComArgOutPointerValid(aProgress);
2180
2181 AutoCaller autoCaller(this);
2182 if (FAILED(autoCaller.rc())) return autoCaller.rc();
2183
2184 ComObjPtr<Medium> diff = static_cast<Medium*>(aTarget);
2185
2186 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2187
2188 if (m->type == MediumType_Writethrough)
2189 return setError(E_FAIL,
2190 tr("Hard disk '%s' is Writethrough"),
2191 m->strLocationFull.raw());
2192
2193 /* Apply the normal locking logic to the entire chain. */
2194 MediumLockList *pMediumLockList(new MediumLockList());
2195 HRESULT rc = diff->createMediumLockList(true, this, *pMediumLockList);
2196 if (FAILED(rc))
2197 {
2198 delete pMediumLockList;
2199 return rc;
2200 }
2201
2202 ComObjPtr <Progress> pProgress;
2203
2204 rc = createDiffStorage(diff, aVariant, pMediumLockList, &pProgress,
2205 false /* aWait */, NULL /* pfNeedsSaveSettings*/);
2206 if (FAILED(rc))
2207 delete pMediumLockList;
2208 else
2209 pProgress.queryInterfaceTo(aProgress);
2210
2211 return rc;
2212}
2213
2214STDMETHODIMP Medium::MergeTo(IMedium *aTarget, IProgress **aProgress)
2215{
2216 CheckComArgNotNull(aTarget);
2217 CheckComArgOutPointerValid(aProgress);
2218 ComAssertRet(aTarget != this, E_INVALIDARG);
2219
2220 AutoCaller autoCaller(this);
2221 if (FAILED(autoCaller.rc())) return autoCaller.rc();
2222
2223 ComObjPtr<Medium> pTarget = static_cast<Medium*>(aTarget);
2224
2225 bool fMergeForward = false;
2226 ComObjPtr<Medium> pParentForTarget;
2227 MediaList childrenToReparent;
2228 MediumLockList *pMediumLockList = NULL;
2229
2230 HRESULT rc = S_OK;
2231
2232 rc = prepareMergeTo(pTarget, NULL, NULL, true, fMergeForward,
2233 pParentForTarget, childrenToReparent, pMediumLockList);
2234 if (FAILED(rc)) return rc;
2235
2236 ComObjPtr <Progress> pProgress;
2237
2238 rc = mergeTo(pTarget, fMergeForward, pParentForTarget, childrenToReparent,
2239 pMediumLockList, &pProgress, false /* aWait */,
2240 NULL /* pfNeedsSaveSettings */);
2241 if (FAILED(rc))
2242 cancelMergeTo(childrenToReparent, pMediumLockList);
2243 else
2244 pProgress.queryInterfaceTo(aProgress);
2245
2246 return rc;
2247}
2248
2249STDMETHODIMP Medium::CloneTo(IMedium *aTarget,
2250 MediumVariant_T aVariant,
2251 IMedium *aParent,
2252 IProgress **aProgress)
2253{
2254 CheckComArgNotNull(aTarget);
2255 CheckComArgOutPointerValid(aProgress);
2256 ComAssertRet(aTarget != this, E_INVALIDARG);
2257
2258 AutoCaller autoCaller(this);
2259 if (FAILED(autoCaller.rc())) return autoCaller.rc();
2260
2261 ComObjPtr<Medium> pTarget = static_cast<Medium*>(aTarget);
2262 ComObjPtr<Medium> pParent;
2263 if (aParent)
2264 pParent = static_cast<Medium*>(aParent);
2265
2266 HRESULT rc = S_OK;
2267 ComObjPtr<Progress> pProgress;
2268 Medium::Task *pTask = NULL;
2269
2270 try
2271 {
2272 // locking: we need the tree lock first because we access parent pointers
2273 AutoReadLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
2274 // and we need to write-lock the images involved
2275 AutoMultiWriteLock3 alock(this, pTarget, pParent COMMA_LOCKVAL_SRC_POS);
2276
2277 if ( pTarget->m->state != MediumState_NotCreated
2278 && pTarget->m->state != MediumState_Created)
2279 throw pTarget->setStateError();
2280
2281 /* Build the source lock list. */
2282 MediumLockList *pSourceMediumLockList(new MediumLockList());
2283 rc = createMediumLockList(false, NULL,
2284 *pSourceMediumLockList);
2285 if (FAILED(rc))
2286 {
2287 delete pSourceMediumLockList;
2288 throw rc;
2289 }
2290
2291 /* Build the target lock list (including the to-be parent chain). */
2292 MediumLockList *pTargetMediumLockList(new MediumLockList());
2293 rc = pTarget->createMediumLockList(true, pParent,
2294 *pTargetMediumLockList);
2295 if (FAILED(rc))
2296 {
2297 delete pSourceMediumLockList;
2298 delete pTargetMediumLockList;
2299 throw rc;
2300 }
2301
2302 rc = pSourceMediumLockList->Lock();
2303 if (FAILED(rc))
2304 {
2305 delete pSourceMediumLockList;
2306 delete pTargetMediumLockList;
2307 throw setError(rc,
2308 tr("Failed to lock source media '%ls'"),
2309 getLocationFull().raw());
2310 }
2311 rc = pTargetMediumLockList->Lock();
2312 if (FAILED(rc))
2313 {
2314 delete pSourceMediumLockList;
2315 delete pTargetMediumLockList;
2316 throw setError(rc,
2317 tr("Failed to lock target media '%ls'"),
2318 pTarget->getLocationFull().raw());
2319 }
2320
2321 pProgress.createObject();
2322 rc = pProgress->init(m->pVirtualBox,
2323 static_cast <IMedium *>(this),
2324 BstrFmt(tr("Creating clone hard disk '%s'"), pTarget->m->strLocationFull.raw()),
2325 TRUE /* aCancelable */);
2326 if (FAILED(rc))
2327 {
2328 delete pSourceMediumLockList;
2329 delete pTargetMediumLockList;
2330 throw rc;
2331 }
2332
2333 /* setup task object to carry out the operation asynchronously */
2334 pTask = new Medium::CloneTask(this, pProgress, pTarget, aVariant,
2335 pParent, pSourceMediumLockList,
2336 pTargetMediumLockList);
2337 rc = pTask->rc();
2338 AssertComRC(rc);
2339 if (FAILED(rc))
2340 throw rc;
2341
2342 if (pTarget->m->state == MediumState_NotCreated)
2343 pTarget->m->state = MediumState_Creating;
2344 }
2345 catch (HRESULT aRC) { rc = aRC; }
2346
2347 if (SUCCEEDED(rc))
2348 {
2349 rc = startThread(pTask);
2350
2351 if (SUCCEEDED(rc))
2352 pProgress.queryInterfaceTo(aProgress);
2353 }
2354 else if (pTask != NULL)
2355 delete pTask;
2356
2357 return rc;
2358}
2359
2360STDMETHODIMP Medium::Compact(IProgress **aProgress)
2361{
2362 CheckComArgOutPointerValid(aProgress);
2363
2364 AutoCaller autoCaller(this);
2365 if (FAILED(autoCaller.rc())) return autoCaller.rc();
2366
2367 HRESULT rc = S_OK;
2368 ComObjPtr <Progress> pProgress;
2369 Medium::Task *pTask = NULL;
2370
2371 try
2372 {
2373 /* We need to lock both the current object, and the tree lock (would
2374 * cause a lock order violation otherwise) for createMediumLockList. */
2375 AutoMultiWriteLock2 multilock(&m->pVirtualBox->getMediaTreeLockHandle(),
2376 this->lockHandle()
2377 COMMA_LOCKVAL_SRC_POS);
2378
2379 /* Build the medium lock list. */
2380 MediumLockList *pMediumLockList(new MediumLockList());
2381 rc = createMediumLockList(true, NULL,
2382 *pMediumLockList);
2383 if (FAILED(rc))
2384 {
2385 delete pMediumLockList;
2386 throw rc;
2387 }
2388
2389 rc = pMediumLockList->Lock();
2390 if (FAILED(rc))
2391 {
2392 delete pMediumLockList;
2393 throw setError(rc,
2394 tr("Failed to lock media when compacting '%ls'"),
2395 getLocationFull().raw());
2396 }
2397
2398 pProgress.createObject();
2399 rc = pProgress->init(m->pVirtualBox,
2400 static_cast <IMedium *>(this),
2401 BstrFmt(tr("Compacting hard disk '%s'"), m->strLocationFull.raw()),
2402 TRUE /* aCancelable */);
2403 if (FAILED(rc))
2404 {
2405 delete pMediumLockList;
2406 throw rc;
2407 }
2408
2409 /* setup task object to carry out the operation asynchronously */
2410 pTask = new Medium::CompactTask(this, pProgress, pMediumLockList);
2411 rc = pTask->rc();
2412 AssertComRC(rc);
2413 if (FAILED(rc))
2414 throw rc;
2415 }
2416 catch (HRESULT aRC) { rc = aRC; }
2417
2418 if (SUCCEEDED(rc))
2419 {
2420 rc = startThread(pTask);
2421
2422 if (SUCCEEDED(rc))
2423 pProgress.queryInterfaceTo(aProgress);
2424 }
2425 else if (pTask != NULL)
2426 delete pTask;
2427
2428 return rc;
2429}
2430
2431STDMETHODIMP Medium::Resize(ULONG64 aLogicalSize, IProgress **aProgress)
2432{
2433 CheckComArgOutPointerValid(aProgress);
2434
2435 AutoCaller autoCaller(this);
2436 if (FAILED(autoCaller.rc())) return autoCaller.rc();
2437
2438 NOREF(aLogicalSize);
2439 NOREF(aProgress);
2440 ReturnComNotImplemented();
2441}
2442
2443STDMETHODIMP Medium::Reset(IProgress **aProgress)
2444{
2445 CheckComArgOutPointerValid(aProgress);
2446
2447 AutoCaller autoCaller(this);
2448 if (FAILED(autoCaller.rc())) return autoCaller.rc();
2449
2450 HRESULT rc = S_OK;
2451 ComObjPtr <Progress> pProgress;
2452 Medium::Task *pTask = NULL;
2453
2454 try
2455 {
2456 /* canClose() needs the tree lock */
2457 AutoMultiWriteLock2 multilock(&m->pVirtualBox->getMediaTreeLockHandle(),
2458 this->lockHandle()
2459 COMMA_LOCKVAL_SRC_POS);
2460
2461 LogFlowThisFunc(("ENTER for medium %s\n", m->strLocationFull.c_str()));
2462
2463 if (m->pParent.isNull())
2464 throw setError(VBOX_E_NOT_SUPPORTED,
2465 tr("Hard disk '%s' is not differencing"),
2466 m->strLocationFull.raw());
2467
2468 rc = canClose();
2469 if (FAILED(rc))
2470 throw rc;
2471
2472 /* Build the medium lock list. */
2473 MediumLockList *pMediumLockList(new MediumLockList());
2474 rc = createMediumLockList(true, NULL,
2475 *pMediumLockList);
2476 if (FAILED(rc))
2477 {
2478 delete pMediumLockList;
2479 throw rc;
2480 }
2481
2482 rc = pMediumLockList->Lock();
2483 if (FAILED(rc))
2484 {
2485 delete pMediumLockList;
2486 throw setError(rc,
2487 tr("Failed to lock media when resetting '%ls'"),
2488 getLocationFull().raw());
2489 }
2490
2491 pProgress.createObject();
2492 rc = pProgress->init(m->pVirtualBox,
2493 static_cast<IMedium*>(this),
2494 BstrFmt(tr("Resetting differencing hard disk '%s'"), m->strLocationFull.raw()),
2495 FALSE /* aCancelable */);
2496 if (FAILED(rc))
2497 throw rc;
2498
2499 /* setup task object to carry out the operation asynchronously */
2500 pTask = new Medium::ResetTask(this, pProgress, pMediumLockList);
2501 rc = pTask->rc();
2502 AssertComRC(rc);
2503 if (FAILED(rc))
2504 throw rc;
2505 }
2506 catch (HRESULT aRC) { rc = aRC; }
2507
2508 if (SUCCEEDED(rc))
2509 {
2510 rc = startThread(pTask);
2511
2512 if (SUCCEEDED(rc))
2513 pProgress.queryInterfaceTo(aProgress);
2514 }
2515 else
2516 {
2517 /* Note: on success, the task will unlock this */
2518 {
2519 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2520 HRESULT rc2 = UnlockWrite(NULL);
2521 AssertComRC(rc2);
2522 }
2523 if (pTask != NULL)
2524 delete pTask;
2525 }
2526
2527 LogFlowThisFunc(("LEAVE, rc=%Rhrc\n", rc));
2528
2529 return rc;
2530}
2531
2532////////////////////////////////////////////////////////////////////////////////
2533//
2534// Medium internal methods
2535//
2536////////////////////////////////////////////////////////////////////////////////
2537
2538/**
2539 * Internal method to return the medium's parent medium. Must have caller + locking!
2540 * @return
2541 */
2542const ComObjPtr<Medium>& Medium::getParent() const
2543{
2544 return m->pParent;
2545}
2546
2547/**
2548 * Internal method to return the medium's list of child media. Must have caller + locking!
2549 * @return
2550 */
2551const MediaList& Medium::getChildren() const
2552{
2553 return m->llChildren;
2554}
2555
2556/**
2557 * Internal method to return the medium's GUID. Must have caller + locking!
2558 * @return
2559 */
2560const Guid& Medium::getId() const
2561{
2562 return m->id;
2563}
2564
2565/**
2566 * Internal method to return the medium's GUID. Must have caller + locking!
2567 * @return
2568 */
2569MediumState_T Medium::getState() const
2570{
2571 return m->state;
2572}
2573
2574/**
2575 * Internal method to return the medium's location. Must have caller + locking!
2576 * @return
2577 */
2578const Utf8Str& Medium::getLocation() const
2579{
2580 return m->strLocation;
2581}
2582
2583/**
2584 * Internal method to return the medium's full location. Must have caller + locking!
2585 * @return
2586 */
2587const Utf8Str& Medium::getLocationFull() const
2588{
2589 return m->strLocationFull;
2590}
2591
2592/**
2593 * Internal method to return the medium's format string. Must have caller + locking!
2594 * @return
2595 */
2596const Utf8Str& Medium::getFormat() const
2597{
2598 return m->strFormat;
2599}
2600
2601/**
2602 * Internal method to return the medium's format object. Must have caller + locking!
2603 * @return
2604 */
2605const ComObjPtr<MediumFormat> & Medium::getMediumFormat() const
2606{
2607 return m->formatObj;
2608}
2609
2610/**
2611 * Internal method to return the medium's size. Must have caller + locking!
2612 * @return
2613 */
2614uint64_t Medium::getSize() const
2615{
2616 return m->size;
2617}
2618
2619/**
2620 * Adds the given machine and optionally the snapshot to the list of the objects
2621 * this image is attached to.
2622 *
2623 * @param aMachineId Machine ID.
2624 * @param aSnapshotId Snapshot ID; when non-empty, adds a snapshot attachment.
2625 */
2626HRESULT Medium::attachTo(const Guid &aMachineId,
2627 const Guid &aSnapshotId /*= Guid::Empty*/)
2628{
2629 AssertReturn(!aMachineId.isEmpty(), E_FAIL);
2630
2631 LogFlowThisFunc(("ENTER, aMachineId: {%RTuuid}, aSnapshotId: {%RTuuid}\n", aMachineId.raw(), aSnapshotId.raw()));
2632
2633 AutoCaller autoCaller(this);
2634 AssertComRCReturnRC(autoCaller.rc());
2635
2636 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2637
2638 switch (m->state)
2639 {
2640 case MediumState_Created:
2641 case MediumState_Inaccessible:
2642 case MediumState_LockedRead:
2643 case MediumState_LockedWrite:
2644 break;
2645
2646 default:
2647 return setStateError();
2648 }
2649
2650 if (m->numCreateDiffTasks > 0)
2651 return setError(E_FAIL,
2652 tr("Cannot attach hard disk '%s' {%RTuuid}: %u differencing child hard disk(s) are being created"),
2653 m->strLocationFull.raw(),
2654 m->id.raw(),
2655 m->numCreateDiffTasks);
2656
2657 BackRefList::iterator it = std::find_if(m->backRefs.begin(),
2658 m->backRefs.end(),
2659 BackRef::EqualsTo(aMachineId));
2660 if (it == m->backRefs.end())
2661 {
2662 BackRef ref(aMachineId, aSnapshotId);
2663 m->backRefs.push_back(ref);
2664
2665 return S_OK;
2666 }
2667
2668 // if the caller has not supplied a snapshot ID, then we're attaching
2669 // to a machine a medium which represents the machine's current state,
2670 // so set the flag
2671 if (aSnapshotId.isEmpty())
2672 {
2673 /* sanity: no duplicate attachments */
2674 AssertReturn(!it->fInCurState, E_FAIL);
2675 it->fInCurState = true;
2676
2677 return S_OK;
2678 }
2679
2680 // otherwise: a snapshot medium is being attached
2681
2682 /* sanity: no duplicate attachments */
2683 for (BackRef::GuidList::const_iterator jt = it->llSnapshotIds.begin();
2684 jt != it->llSnapshotIds.end();
2685 ++jt)
2686 {
2687 const Guid &idOldSnapshot = *jt;
2688
2689 if (idOldSnapshot == aSnapshotId)
2690 {
2691#ifdef DEBUG
2692 dumpBackRefs();
2693#endif
2694 return setError(E_FAIL,
2695 tr("Cannot attach medium '%s' {%RTuuid} from snapshot '%RTuuid': medium is already in use by this snapshot!"),
2696 m->strLocationFull.raw(),
2697 m->id.raw(),
2698 aSnapshotId.raw(),
2699 idOldSnapshot.raw());
2700 }
2701 }
2702
2703 it->llSnapshotIds.push_back(aSnapshotId);
2704 it->fInCurState = false;
2705
2706 LogFlowThisFuncLeave();
2707
2708 return S_OK;
2709}
2710
2711/**
2712 * Removes the given machine and optionally the snapshot from the list of the
2713 * objects this image is attached to.
2714 *
2715 * @param aMachineId Machine ID.
2716 * @param aSnapshotId Snapshot ID; when non-empty, removes the snapshot
2717 * attachment.
2718 */
2719HRESULT Medium::detachFrom(const Guid &aMachineId,
2720 const Guid &aSnapshotId /*= Guid::Empty*/)
2721{
2722 AssertReturn(!aMachineId.isEmpty(), E_FAIL);
2723
2724 AutoCaller autoCaller(this);
2725 AssertComRCReturnRC(autoCaller.rc());
2726
2727 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2728
2729 BackRefList::iterator it =
2730 std::find_if(m->backRefs.begin(), m->backRefs.end(),
2731 BackRef::EqualsTo(aMachineId));
2732 AssertReturn(it != m->backRefs.end(), E_FAIL);
2733
2734 if (aSnapshotId.isEmpty())
2735 {
2736 /* remove the current state attachment */
2737 it->fInCurState = false;
2738 }
2739 else
2740 {
2741 /* remove the snapshot attachment */
2742 BackRef::GuidList::iterator jt =
2743 std::find(it->llSnapshotIds.begin(), it->llSnapshotIds.end(), aSnapshotId);
2744
2745 AssertReturn(jt != it->llSnapshotIds.end(), E_FAIL);
2746 it->llSnapshotIds.erase(jt);
2747 }
2748
2749 /* if the backref becomes empty, remove it */
2750 if (it->fInCurState == false && it->llSnapshotIds.size() == 0)
2751 m->backRefs.erase(it);
2752
2753 return S_OK;
2754}
2755
2756/**
2757 * Internal method to return the medium's list of backrefs. Must have caller + locking!
2758 * @return
2759 */
2760const Guid* Medium::getFirstMachineBackrefId() const
2761{
2762 if (!m->backRefs.size())
2763 return NULL;
2764
2765 return &m->backRefs.front().machineId;
2766}
2767
2768const Guid* Medium::getFirstMachineBackrefSnapshotId() const
2769{
2770 if (!m->backRefs.size())
2771 return NULL;
2772
2773 const BackRef &ref = m->backRefs.front();
2774 if (!ref.llSnapshotIds.size())
2775 return NULL;
2776
2777 return &ref.llSnapshotIds.front();
2778}
2779
2780#ifdef DEBUG
2781/**
2782 * Debugging helper that gets called after VirtualBox initialization that writes all
2783 * machine backreferences to the debug log.
2784 */
2785void Medium::dumpBackRefs()
2786{
2787 AutoCaller autoCaller(this);
2788 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
2789
2790 LogFlowThisFunc(("Dumping backrefs for medium '%s':\n", m->strLocationFull.raw()));
2791
2792 for (BackRefList::iterator it2 = m->backRefs.begin();
2793 it2 != m->backRefs.end();
2794 ++it2)
2795 {
2796 const BackRef &ref = *it2;
2797 LogFlowThisFunc((" Backref from machine {%RTuuid} (fInCurState: %d)\n", ref.machineId.raw(), ref.fInCurState));
2798
2799 for (BackRef::GuidList::const_iterator jt2 = it2->llSnapshotIds.begin();
2800 jt2 != it2->llSnapshotIds.end();
2801 ++jt2)
2802 {
2803 const Guid &id = *jt2;
2804 LogFlowThisFunc((" Backref from snapshot {%RTuuid}\n", id.raw()));
2805 }
2806 }
2807}
2808#endif
2809
2810/**
2811 * Checks if the given change of \a aOldPath to \a aNewPath affects the location
2812 * of this media and updates it if necessary to reflect the new location.
2813 *
2814 * @param aOldPath Old path (full).
2815 * @param aNewPath New path (full).
2816 *
2817 * @note Locks this object for writing.
2818 */
2819HRESULT Medium::updatePath(const char *aOldPath, const char *aNewPath)
2820{
2821 AssertReturn(aOldPath, E_FAIL);
2822 AssertReturn(aNewPath, E_FAIL);
2823
2824 AutoCaller autoCaller(this);
2825 if (FAILED(autoCaller.rc())) return autoCaller.rc();
2826
2827 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2828
2829 LogFlowThisFunc(("locationFull.before='%s'\n", m->strLocationFull.raw()));
2830
2831 const char *pcszMediumPath = m->strLocationFull.c_str();
2832
2833 if (RTPathStartsWith(pcszMediumPath, aOldPath))
2834 {
2835 Utf8Str newPath = Utf8StrFmt("%s%s",
2836 aNewPath,
2837 pcszMediumPath + strlen(aOldPath));
2838 Utf8Str path = newPath;
2839 m->pVirtualBox->calculateRelativePath(path, path);
2840 unconst(m->strLocationFull) = newPath;
2841 unconst(m->strLocation) = path;
2842
2843 LogFlowThisFunc(("locationFull.after='%s'\n", m->strLocationFull.raw()));
2844 }
2845
2846 return S_OK;
2847}
2848
2849/**
2850 * Checks if the given change of \a aOldPath to \a aNewPath affects the location
2851 * of this hard disk or any its child and updates the paths if necessary to
2852 * reflect the new location.
2853 *
2854 * @param aOldPath Old path (full).
2855 * @param aNewPath New path (full).
2856 *
2857 * @note Locks the medium tree for reading, this object and all children for writing.
2858 */
2859void Medium::updatePaths(const char *aOldPath, const char *aNewPath)
2860{
2861 AssertReturnVoid(aOldPath);
2862 AssertReturnVoid(aNewPath);
2863
2864 AutoCaller autoCaller(this);
2865 AssertComRCReturnVoid(autoCaller.rc());
2866
2867 /* we access children() */
2868 AutoReadLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
2869
2870 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2871
2872 updatePath(aOldPath, aNewPath);
2873
2874 /* update paths of all children */
2875 for (MediaList::const_iterator it = getChildren().begin();
2876 it != getChildren().end();
2877 ++it)
2878 {
2879 (*it)->updatePaths(aOldPath, aNewPath);
2880 }
2881}
2882
2883/**
2884 * Returns the base hard disk of the hard disk chain this hard disk is part of.
2885 *
2886 * The base hard disk is found by walking up the parent-child relationship axis.
2887 * If the hard disk doesn't have a parent (i.e. it's a base hard disk), it
2888 * returns itself in response to this method.
2889 *
2890 * @param aLevel Where to store the number of ancestors of this hard disk
2891 * (zero for the base), may be @c NULL.
2892 *
2893 * @note Locks medium tree for reading.
2894 */
2895ComObjPtr<Medium> Medium::getBase(uint32_t *aLevel /*= NULL*/)
2896{
2897 ComObjPtr<Medium> pBase;
2898 uint32_t level;
2899
2900 AutoCaller autoCaller(this);
2901 AssertReturn(autoCaller.isOk(), pBase);
2902
2903 /* we access mParent */
2904 AutoReadLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
2905
2906 pBase = this;
2907 level = 0;
2908
2909 if (m->pParent)
2910 {
2911 for (;;)
2912 {
2913 AutoCaller baseCaller(pBase);
2914 AssertReturn(baseCaller.isOk(), pBase);
2915
2916 if (pBase->m->pParent.isNull())
2917 break;
2918
2919 pBase = pBase->m->pParent;
2920 ++level;
2921 }
2922 }
2923
2924 if (aLevel != NULL)
2925 *aLevel = level;
2926
2927 return pBase;
2928}
2929
2930/**
2931 * Returns @c true if this hard disk cannot be modified because it has
2932 * dependants (children) or is part of the snapshot. Related to the hard disk
2933 * type and posterity, not to the current media state.
2934 *
2935 * @note Locks this object and medium tree for reading.
2936 */
2937bool Medium::isReadOnly()
2938{
2939 AutoCaller autoCaller(this);
2940 AssertComRCReturn(autoCaller.rc(), false);
2941
2942 /* we access children */
2943 AutoReadLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
2944
2945 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
2946
2947 switch (m->type)
2948 {
2949 case MediumType_Normal:
2950 {
2951 if (getChildren().size() != 0)
2952 return true;
2953
2954 for (BackRefList::const_iterator it = m->backRefs.begin();
2955 it != m->backRefs.end(); ++it)
2956 if (it->llSnapshotIds.size() != 0)
2957 return true;
2958
2959 return false;
2960 }
2961 case MediumType_Immutable:
2962 return true;
2963 case MediumType_Writethrough:
2964 case MediumType_Shareable:
2965 return false;
2966 default:
2967 break;
2968 }
2969
2970 AssertFailedReturn(false);
2971}
2972
2973/**
2974 * Saves hard disk data by appending a new <HardDisk> child node to the given
2975 * parent node which can be either <HardDisks> or <HardDisk>.
2976 *
2977 * @param data Settings struct to be updated.
2978 *
2979 * @note Locks this object, medium tree and children for reading.
2980 */
2981HRESULT Medium::saveSettings(settings::Medium &data)
2982{
2983 AutoCaller autoCaller(this);
2984 if (FAILED(autoCaller.rc())) return autoCaller.rc();
2985
2986 /* we access mParent */
2987 AutoReadLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
2988
2989 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
2990
2991 data.uuid = m->id;
2992 data.strLocation = m->strLocation;
2993 data.strFormat = m->strFormat;
2994
2995 /* optional, only for diffs, default is false */
2996 if (m->pParent)
2997 data.fAutoReset = !!m->autoReset;
2998 else
2999 data.fAutoReset = false;
3000
3001 /* optional */
3002 data.strDescription = m->strDescription;
3003
3004 /* optional properties */
3005 data.properties.clear();
3006 for (Data::PropertyMap::const_iterator it = m->properties.begin();
3007 it != m->properties.end();
3008 ++it)
3009 {
3010 /* only save properties that have non-default values */
3011 if (!it->second.isEmpty())
3012 {
3013 Utf8Str name = it->first;
3014 Utf8Str value = it->second;
3015 data.properties[name] = value;
3016 }
3017 }
3018
3019 /* only for base hard disks */
3020 if (m->pParent.isNull())
3021 data.hdType = m->type;
3022
3023 /* save all children */
3024 for (MediaList::const_iterator it = getChildren().begin();
3025 it != getChildren().end();
3026 ++it)
3027 {
3028 settings::Medium med;
3029 HRESULT rc = (*it)->saveSettings(med);
3030 AssertComRCReturnRC(rc);
3031 data.llChildren.push_back(med);
3032 }
3033
3034 return S_OK;
3035}
3036
3037/**
3038 * Compares the location of this hard disk to the given location.
3039 *
3040 * The comparison takes the location details into account. For example, if the
3041 * location is a file in the host's filesystem, a case insensitive comparison
3042 * will be performed for case insensitive filesystems.
3043 *
3044 * @param aLocation Location to compare to (as is).
3045 * @param aResult Where to store the result of comparison: 0 if locations
3046 * are equal, 1 if this object's location is greater than
3047 * the specified location, and -1 otherwise.
3048 */
3049HRESULT Medium::compareLocationTo(const char *aLocation, int &aResult)
3050{
3051 AutoCaller autoCaller(this);
3052 AssertComRCReturnRC(autoCaller.rc());
3053
3054 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
3055
3056 Utf8Str locationFull(m->strLocationFull);
3057
3058 /// @todo NEWMEDIA delegate the comparison to the backend?
3059
3060 if (m->formatObj->capabilities() & MediumFormatCapabilities_File)
3061 {
3062 Utf8Str location(aLocation);
3063
3064 /* For locations represented by files, append the default path if
3065 * only the name is given, and then get the full path. */
3066 if (!RTPathHavePath(aLocation))
3067 {
3068 location = Utf8StrFmt("%s%c%s",
3069 m->pVirtualBox->getDefaultHardDiskFolder().raw(),
3070 RTPATH_DELIMITER,
3071 aLocation);
3072 }
3073
3074 int vrc = m->pVirtualBox->calculateFullPath(location, location);
3075 if (RT_FAILURE(vrc))
3076 return setError(E_FAIL,
3077 tr("Invalid hard disk storage file location '%s' (%Rrc)"),
3078 location.raw(),
3079 vrc);
3080
3081 aResult = RTPathCompare(locationFull.c_str(), location.c_str());
3082 }
3083 else
3084 aResult = locationFull.compare(aLocation);
3085
3086 return S_OK;
3087}
3088
3089/**
3090 * Constructs a medium lock list for this medium. The lock is not taken.
3091 *
3092 * @note Locks the medium tree for reading.
3093 *
3094 * @param fMediumWritable Whether to associate a write lock with this medium.
3095 * @param pToBeParent Medium which will become the parent of this medium.
3096 * @param mediumLockList Where to store the resulting list.
3097 */
3098HRESULT Medium::createMediumLockList(bool fMediumWritable,
3099 Medium *pToBeParent,
3100 MediumLockList &mediumLockList)
3101{
3102 HRESULT rc = S_OK;
3103
3104 /* we access parent medium objects */
3105 AutoReadLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
3106
3107 /* paranoid sanity checking if the medium has a to-be parent medium */
3108 if (pToBeParent)
3109 {
3110 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
3111 ComAssertRet(getParent().isNull(), E_FAIL);
3112 ComAssertRet(getChildren().size() == 0, E_FAIL);
3113 }
3114
3115 ErrorInfoKeeper eik;
3116 MultiResult mrc(S_OK);
3117
3118 ComObjPtr<Medium> pMedium = this;
3119 while (!pMedium.isNull())
3120 {
3121 // need write lock for RefreshState if medium is inaccessible
3122 AutoWriteLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
3123
3124 /* Accessibility check must be first, otherwise locking interferes
3125 * with getting the medium state. Lock lists are not created for
3126 * fun, and thus getting the image status is no luxury. */
3127 MediumState_T mediumState = pMedium->getState();
3128 if (mediumState == MediumState_Inaccessible)
3129 {
3130 rc = pMedium->RefreshState(&mediumState);
3131 if (FAILED(rc)) return rc;
3132
3133 if (mediumState == MediumState_Inaccessible)
3134 {
3135 Bstr error;
3136 rc = pMedium->COMGETTER(LastAccessError)(error.asOutParam());
3137 if (FAILED(rc)) return rc;
3138
3139 Bstr loc;
3140 rc = pMedium->COMGETTER(Location)(loc.asOutParam());
3141 if (FAILED(rc)) return rc;
3142
3143 /* collect multiple errors */
3144 eik.restore();
3145
3146 /* be in sync with MediumBase::setStateError() */
3147 Assert(!error.isEmpty());
3148 mrc = setError(E_FAIL,
3149 tr("Medium '%ls' is not accessible. %ls"),
3150 loc.raw(),
3151 error.raw());
3152
3153 eik.fetch();
3154 }
3155 }
3156
3157 if (pMedium == this)
3158 mediumLockList.Prepend(pMedium, fMediumWritable);
3159 else
3160 mediumLockList.Prepend(pMedium, false);
3161
3162 pMedium = pMedium->getParent();
3163 if (pMedium.isNull() && pToBeParent)
3164 {
3165 pMedium = pToBeParent;
3166 pToBeParent = NULL;
3167 }
3168 }
3169
3170 return mrc;
3171}
3172
3173/**
3174 * Returns a preferred format for differencing hard disks.
3175 */
3176Bstr Medium::preferredDiffFormat()
3177{
3178 Utf8Str strFormat;
3179
3180 AutoCaller autoCaller(this);
3181 AssertComRCReturn(autoCaller.rc(), strFormat);
3182
3183 /* m->strFormat is const, no need to lock */
3184 strFormat = m->strFormat;
3185
3186 /* check that our own format supports diffs */
3187 if (!(m->formatObj->capabilities() & MediumFormatCapabilities_Differencing))
3188 {
3189 /* use the default format if not */
3190 AutoReadLock propsLock(m->pVirtualBox->systemProperties() COMMA_LOCKVAL_SRC_POS);
3191 strFormat = m->pVirtualBox->getDefaultHardDiskFormat();
3192 }
3193
3194 return strFormat;
3195}
3196
3197/**
3198 * Returns the medium type. Must have caller + locking!
3199 * @return
3200 */
3201MediumType_T Medium::getType() const
3202{
3203 return m->type;
3204}
3205
3206// private methods
3207////////////////////////////////////////////////////////////////////////////////
3208
3209/**
3210 * Returns a short version of the location attribute.
3211 *
3212 * @note Must be called from under this object's read or write lock.
3213 */
3214Utf8Str Medium::getName()
3215{
3216 Utf8Str name = RTPathFilename(m->strLocationFull.c_str());
3217 return name;
3218}
3219
3220/**
3221 * Sets the value of m->strLocation and calculates the value of m->strLocationFull.
3222 *
3223 * Treats non-FS-path locations specially, and prepends the default hard disk
3224 * folder if the given location string does not contain any path information
3225 * at all.
3226 *
3227 * Also, if the specified location is a file path that ends with '/' then the
3228 * file name part will be generated by this method automatically in the format
3229 * '{<uuid>}.<ext>' where <uuid> is a fresh UUID that this method will generate
3230 * and assign to this medium, and <ext> is the default extension for this
3231 * medium's storage format. Note that this procedure requires the media state to
3232 * be NotCreated and will return a failure otherwise.
3233 *
3234 * @param aLocation Location of the storage unit. If the location is a FS-path,
3235 * then it can be relative to the VirtualBox home directory.
3236 * @param aFormat Optional fallback format if it is an import and the format
3237 * cannot be determined.
3238 *
3239 * @note Must be called from under this object's write lock.
3240 */
3241HRESULT Medium::setLocation(const Utf8Str &aLocation, const Utf8Str &aFormat)
3242{
3243 AssertReturn(!aLocation.isEmpty(), E_FAIL);
3244
3245 AutoCaller autoCaller(this);
3246 AssertComRCReturnRC(autoCaller.rc());
3247
3248 /* formatObj may be null only when initializing from an existing path and
3249 * no format is known yet */
3250 AssertReturn( (!m->strFormat.isEmpty() && !m->formatObj.isNull())
3251 || ( autoCaller.state() == InInit
3252 && m->state != MediumState_NotCreated
3253 && m->id.isEmpty()
3254 && m->strFormat.isEmpty()
3255 && m->formatObj.isNull()),
3256 E_FAIL);
3257
3258 /* are we dealing with a new medium constructed using the existing
3259 * location? */
3260 bool isImport = m->strFormat.isEmpty();
3261
3262 if ( isImport
3263 || ( (m->formatObj->capabilities() & MediumFormatCapabilities_File)
3264 && !m->hostDrive))
3265 {
3266 Guid id;
3267
3268 Utf8Str location(aLocation);
3269
3270 if (m->state == MediumState_NotCreated)
3271 {
3272 /* must be a file (formatObj must be already known) */
3273 Assert(m->formatObj->capabilities() & MediumFormatCapabilities_File);
3274
3275 if (RTPathFilename(location.c_str()) == NULL)
3276 {
3277 /* no file name is given (either an empty string or ends with a
3278 * slash), generate a new UUID + file name if the state allows
3279 * this */
3280
3281 ComAssertMsgRet(!m->formatObj->fileExtensions().empty(),
3282 ("Must be at least one extension if it is MediumFormatCapabilities_File\n"),
3283 E_FAIL);
3284
3285 Bstr ext = m->formatObj->fileExtensions().front();
3286 ComAssertMsgRet(!ext.isEmpty(),
3287 ("Default extension must not be empty\n"),
3288 E_FAIL);
3289
3290 id.create();
3291
3292 location = Utf8StrFmt("%s{%RTuuid}.%ls",
3293 location.raw(), id.raw(), ext.raw());
3294 }
3295 }
3296
3297 /* append the default folder if no path is given */
3298 if (!RTPathHavePath(location.c_str()))
3299 location = Utf8StrFmt("%s%c%s",
3300 m->pVirtualBox->getDefaultHardDiskFolder().raw(),
3301 RTPATH_DELIMITER,
3302 location.raw());
3303
3304 /* get the full file name */
3305 Utf8Str locationFull;
3306 int vrc = m->pVirtualBox->calculateFullPath(location, locationFull);
3307 if (RT_FAILURE(vrc))
3308 return setError(VBOX_E_FILE_ERROR,
3309 tr("Invalid medium storage file location '%s' (%Rrc)"),
3310 location.raw(), vrc);
3311
3312 /* detect the backend from the storage unit if importing */
3313 if (isImport)
3314 {
3315 char *backendName = NULL;
3316
3317 /* is it a file? */
3318 {
3319 RTFILE file;
3320 vrc = RTFileOpen(&file, locationFull.c_str(), RTFILE_O_READ | RTFILE_O_OPEN | RTFILE_O_DENY_NONE);
3321 if (RT_SUCCESS(vrc))
3322 RTFileClose(file);
3323 }
3324 if (RT_SUCCESS(vrc))
3325 {
3326 vrc = VDGetFormat(NULL, locationFull.c_str(), &backendName);
3327 }
3328 else if (vrc != VERR_FILE_NOT_FOUND && vrc != VERR_PATH_NOT_FOUND)
3329 {
3330 /* assume it's not a file, restore the original location */
3331 location = locationFull = aLocation;
3332 vrc = VDGetFormat(NULL, locationFull.c_str(), &backendName);
3333 }
3334
3335 if (RT_FAILURE(vrc))
3336 {
3337 if (vrc == VERR_FILE_NOT_FOUND || vrc == VERR_PATH_NOT_FOUND)
3338 return setError(VBOX_E_FILE_ERROR,
3339 tr("Could not find file for the medium '%s' (%Rrc)"),
3340 locationFull.raw(), vrc);
3341 else if (aFormat.isEmpty())
3342 return setError(VBOX_E_IPRT_ERROR,
3343 tr("Could not get the storage format of the medium '%s' (%Rrc)"),
3344 locationFull.raw(), vrc);
3345 else
3346 {
3347 HRESULT rc = setFormat(Bstr(aFormat));
3348 /* setFormat() must not fail since we've just used the backend so
3349 * the format object must be there */
3350 AssertComRCReturnRC(rc);
3351 }
3352 }
3353 else
3354 {
3355 ComAssertRet(backendName != NULL && *backendName != '\0', E_FAIL);
3356
3357 HRESULT rc = setFormat(Bstr(backendName));
3358 RTStrFree(backendName);
3359
3360 /* setFormat() must not fail since we've just used the backend so
3361 * the format object must be there */
3362 AssertComRCReturnRC(rc);
3363 }
3364 }
3365
3366 /* is it still a file? */
3367 if (m->formatObj->capabilities() & MediumFormatCapabilities_File)
3368 {
3369 m->strLocation = location;
3370 m->strLocationFull = locationFull;
3371
3372 if (m->state == MediumState_NotCreated)
3373 {
3374 /* assign a new UUID (this UUID will be used when calling
3375 * VDCreateBase/VDCreateDiff as a wanted UUID). Note that we
3376 * also do that if we didn't generate it to make sure it is
3377 * either generated by us or reset to null */
3378 unconst(m->id) = id;
3379 }
3380 }
3381 else
3382 {
3383 m->strLocation = locationFull;
3384 m->strLocationFull = locationFull;
3385 }
3386 }
3387 else
3388 {
3389 m->strLocation = aLocation;
3390 m->strLocationFull = aLocation;
3391 }
3392
3393 return S_OK;
3394}
3395
3396/**
3397 * Queries information from the image file.
3398 *
3399 * As a result of this call, the accessibility state and data members such as
3400 * size and description will be updated with the current information.
3401 *
3402 * @note This method may block during a system I/O call that checks storage
3403 * accessibility.
3404 *
3405 * @note Locks medium tree for reading and writing (for new diff media checked
3406 * for the first time). Locks mParent for reading. Locks this object for
3407 * writing.
3408 */
3409HRESULT Medium::queryInfo()
3410{
3411 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3412
3413 if ( m->state != MediumState_Created
3414 && m->state != MediumState_Inaccessible
3415 && m->state != MediumState_LockedRead)
3416 return E_FAIL;
3417
3418 HRESULT rc = S_OK;
3419
3420 int vrc = VINF_SUCCESS;
3421
3422 /* check if a blocking queryInfo() call is in progress on some other thread,
3423 * and wait for it to finish if so instead of querying data ourselves */
3424 if (m->queryInfoRunning)
3425 {
3426 Assert( m->state == MediumState_LockedRead
3427 || m->state == MediumState_LockedWrite);
3428
3429 alock.leave();
3430
3431 vrc = RTSemEventMultiWait(m->queryInfoSem, RT_INDEFINITE_WAIT);
3432
3433 alock.enter();
3434
3435 AssertRC(vrc);
3436
3437 return S_OK;
3438 }
3439
3440 bool success = false;
3441 Utf8Str lastAccessError;
3442
3443 /* are we dealing with a new medium constructed using the existing
3444 * location? */
3445 bool isImport = m->id.isEmpty();
3446 unsigned flags = VD_OPEN_FLAGS_INFO;
3447
3448 /* Note that we don't use VD_OPEN_FLAGS_READONLY when opening new
3449 * media because that would prevent necessary modifications
3450 * when opening media of some third-party formats for the first
3451 * time in VirtualBox (such as VMDK for which VDOpen() needs to
3452 * generate an UUID if it is missing) */
3453 if ( (m->hddOpenMode == OpenReadOnly)
3454 || !isImport
3455 )
3456 flags |= VD_OPEN_FLAGS_READONLY;
3457
3458 /* Lock the medium, which makes the behavior much more consistent */
3459 if (flags & VD_OPEN_FLAGS_READONLY)
3460 rc = LockRead(NULL);
3461 else
3462 rc = LockWrite(NULL);
3463 if (FAILED(rc)) return rc;
3464
3465 /* Copies of the input state fields which are not read-only,
3466 * as we're dropping the lock. CAUTION: be extremely careful what
3467 * you do with the contents of this medium object, as you will
3468 * create races if there are concurrent changes. */
3469 Utf8Str format(m->strFormat);
3470 Utf8Str location(m->strLocationFull);
3471 ComObjPtr<MediumFormat> formatObj = m->formatObj;
3472
3473 /* "Output" values which can't be set because the lock isn't held
3474 * at the time the values are determined. */
3475 Guid mediumId = m->id;
3476 uint64_t mediumSize = 0;
3477 uint64_t mediumLogicalSize = 0;
3478
3479 /* leave the lock before a lengthy operation */
3480 vrc = RTSemEventMultiReset(m->queryInfoSem);
3481 AssertRCReturn(vrc, E_FAIL);
3482 m->queryInfoRunning = true;
3483 alock.leave();
3484
3485 try
3486 {
3487 /* skip accessibility checks for host drives */
3488 if (m->hostDrive)
3489 {
3490 success = true;
3491 throw S_OK;
3492 }
3493
3494 PVBOXHDD hdd;
3495 vrc = VDCreate(m->vdDiskIfaces, &hdd);
3496 ComAssertRCThrow(vrc, E_FAIL);
3497
3498 try
3499 {
3500 /** @todo This kind of opening of images is assuming that diff
3501 * images can be opened as base images. Should be documented if
3502 * it must work for all medium format backends. */
3503 vrc = VDOpen(hdd,
3504 format.c_str(),
3505 location.c_str(),
3506 flags,
3507 m->vdDiskIfaces);
3508 if (RT_FAILURE(vrc))
3509 {
3510 lastAccessError = Utf8StrFmt(tr("Could not open the medium '%s'%s"),
3511 location.c_str(), vdError(vrc).c_str());
3512 throw S_OK;
3513 }
3514
3515 if (formatObj->capabilities() & MediumFormatCapabilities_Uuid)
3516 {
3517 /* Modify the UUIDs if necessary. The associated fields are
3518 * not modified by other code, so no need to copy. */
3519 if (m->setImageId)
3520 {
3521 vrc = VDSetUuid(hdd, 0, m->imageId);
3522 ComAssertRCThrow(vrc, E_FAIL);
3523 }
3524 if (m->setParentId)
3525 {
3526 vrc = VDSetParentUuid(hdd, 0, m->parentId);
3527 ComAssertRCThrow(vrc, E_FAIL);
3528 }
3529 /* zap the information, these are no long-term members */
3530 m->setImageId = false;
3531 unconst(m->imageId).clear();
3532 m->setParentId = false;
3533 unconst(m->parentId).clear();
3534
3535 /* check the UUID */
3536 RTUUID uuid;
3537 vrc = VDGetUuid(hdd, 0, &uuid);
3538 ComAssertRCThrow(vrc, E_FAIL);
3539
3540 if (isImport)
3541 {
3542 mediumId = uuid;
3543
3544 if (mediumId.isEmpty() && (m->hddOpenMode == OpenReadOnly))
3545 // only when importing a VDMK that has no UUID, create one in memory
3546 mediumId.create();
3547 }
3548 else
3549 {
3550 Assert(!mediumId.isEmpty());
3551
3552 if (mediumId != uuid)
3553 {
3554 lastAccessError = Utf8StrFmt(
3555 tr("UUID {%RTuuid} of the medium '%s' does not match the value {%RTuuid} stored in the media registry ('%s')"),
3556 &uuid,
3557 location.c_str(),
3558 mediumId.raw(),
3559 m->pVirtualBox->settingsFilePath().c_str());
3560 throw S_OK;
3561 }
3562 }
3563 }
3564 else
3565 {
3566 /* the backend does not support storing UUIDs within the
3567 * underlying storage so use what we store in XML */
3568
3569 /* generate an UUID for an imported UUID-less medium */
3570 if (isImport)
3571 {
3572 if (m->setImageId)
3573 mediumId = m->imageId;
3574 else
3575 mediumId.create();
3576 }
3577 }
3578
3579 /* check the type */
3580 unsigned uImageFlags;
3581 vrc = VDGetImageFlags(hdd, 0, &uImageFlags);
3582 ComAssertRCThrow(vrc, E_FAIL);
3583
3584 if (uImageFlags & VD_IMAGE_FLAGS_DIFF)
3585 {
3586 RTUUID parentId;
3587 vrc = VDGetParentUuid(hdd, 0, &parentId);
3588 ComAssertRCThrow(vrc, E_FAIL);
3589
3590 if (isImport)
3591 {
3592 /* the parent must be known to us. Note that we freely
3593 * call locking methods of mVirtualBox and parent from the
3594 * write lock (breaking the {parent,child} lock order)
3595 * because there may be no concurrent access to the just
3596 * opened hard disk on ther threads yet (and init() will
3597 * fail if this method reporst MediumState_Inaccessible) */
3598
3599 Guid id = parentId;
3600 ComObjPtr<Medium> pParent;
3601 rc = m->pVirtualBox->findHardDisk(&id, NULL,
3602 false /* aSetError */,
3603 &pParent);
3604 if (FAILED(rc))
3605 {
3606 lastAccessError = Utf8StrFmt(
3607 tr("Parent hard disk with UUID {%RTuuid} of the hard disk '%s' is not found in the media registry ('%s')"),
3608 &parentId, location.c_str(),
3609 m->pVirtualBox->settingsFilePath().c_str());
3610 throw S_OK;
3611 }
3612
3613 /* we set mParent & children() */
3614 AutoWriteLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
3615
3616 Assert(m->pParent.isNull());
3617 m->pParent = pParent;
3618 m->pParent->m->llChildren.push_back(this);
3619 }
3620 else
3621 {
3622 /* we access mParent */
3623 AutoReadLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
3624
3625 /* check that parent UUIDs match. Note that there's no need
3626 * for the parent's AutoCaller (our lifetime is bound to
3627 * it) */
3628
3629 if (m->pParent.isNull())
3630 {
3631 lastAccessError = Utf8StrFmt(
3632 tr("Hard disk '%s' is differencing but it is not associated with any parent hard disk in the media registry ('%s')"),
3633 location.c_str(),
3634 m->pVirtualBox->settingsFilePath().c_str());
3635 throw S_OK;
3636 }
3637
3638 AutoReadLock parentLock(m->pParent COMMA_LOCKVAL_SRC_POS);
3639 if ( m->pParent->getState() != MediumState_Inaccessible
3640 && m->pParent->getId() != parentId)
3641 {
3642 lastAccessError = Utf8StrFmt(
3643 tr("Parent UUID {%RTuuid} of the hard disk '%s' does not match UUID {%RTuuid} of its parent hard disk stored in the media registry ('%s')"),
3644 &parentId, location.c_str(),
3645 m->pParent->getId().raw(),
3646 m->pVirtualBox->settingsFilePath().c_str());
3647 throw S_OK;
3648 }
3649
3650 /// @todo NEWMEDIA what to do if the parent is not
3651 /// accessible while the diff is? Probably nothing. The
3652 /// real code will detect the mismatch anyway.
3653 }
3654 }
3655
3656 mediumSize = VDGetFileSize(hdd, 0);
3657 mediumLogicalSize = VDGetSize(hdd, 0) / _1M;
3658
3659 success = true;
3660 }
3661 catch (HRESULT aRC)
3662 {
3663 rc = aRC;
3664 }
3665
3666 VDDestroy(hdd);
3667
3668 }
3669 catch (HRESULT aRC)
3670 {
3671 rc = aRC;
3672 }
3673
3674 alock.enter();
3675
3676 if (isImport)
3677 unconst(m->id) = mediumId;
3678
3679 if (success)
3680 {
3681 m->size = mediumSize;
3682 m->logicalSize = mediumLogicalSize;
3683 m->strLastAccessError.setNull();
3684 }
3685 else
3686 {
3687 m->strLastAccessError = lastAccessError;
3688 LogWarningFunc(("'%s' is not accessible (error='%s', rc=%Rhrc, vrc=%Rrc)\n",
3689 location.c_str(), m->strLastAccessError.c_str(),
3690 rc, vrc));
3691 }
3692
3693 /* inform other callers if there are any */
3694 RTSemEventMultiSignal(m->queryInfoSem);
3695 m->queryInfoRunning = false;
3696
3697 /* Set the proper state according to the result of the check */
3698 if (success)
3699 m->preLockState = MediumState_Created;
3700 else
3701 m->preLockState = MediumState_Inaccessible;
3702
3703 if (flags & VD_OPEN_FLAGS_READONLY)
3704 rc = UnlockRead(NULL);
3705 else
3706 rc = UnlockWrite(NULL);
3707 if (FAILED(rc)) return rc;
3708
3709 return rc;
3710}
3711
3712/**
3713 * Sets the extended error info according to the current media state.
3714 *
3715 * @note Must be called from under this object's write or read lock.
3716 */
3717HRESULT Medium::setStateError()
3718{
3719 HRESULT rc = E_FAIL;
3720
3721 switch (m->state)
3722 {
3723 case MediumState_NotCreated:
3724 {
3725 rc = setError(VBOX_E_INVALID_OBJECT_STATE,
3726 tr("Storage for the medium '%s' is not created"),
3727 m->strLocationFull.raw());
3728 break;
3729 }
3730 case MediumState_Created:
3731 {
3732 rc = setError(VBOX_E_INVALID_OBJECT_STATE,
3733 tr("Storage for the medium '%s' is already created"),
3734 m->strLocationFull.raw());
3735 break;
3736 }
3737 case MediumState_LockedRead:
3738 {
3739 rc = setError(VBOX_E_INVALID_OBJECT_STATE,
3740 tr("Medium '%s' is locked for reading by another task"),
3741 m->strLocationFull.raw());
3742 break;
3743 }
3744 case MediumState_LockedWrite:
3745 {
3746 rc = setError(VBOX_E_INVALID_OBJECT_STATE,
3747 tr("Medium '%s' is locked for writing by another task"),
3748 m->strLocationFull.raw());
3749 break;
3750 }
3751 case MediumState_Inaccessible:
3752 {
3753 /* be in sync with Console::powerUpThread() */
3754 if (!m->strLastAccessError.isEmpty())
3755 rc = setError(VBOX_E_INVALID_OBJECT_STATE,
3756 tr("Medium '%s' is not accessible. %s"),
3757 m->strLocationFull.raw(), m->strLastAccessError.c_str());
3758 else
3759 rc = setError(VBOX_E_INVALID_OBJECT_STATE,
3760 tr("Medium '%s' is not accessible"),
3761 m->strLocationFull.raw());
3762 break;
3763 }
3764 case MediumState_Creating:
3765 {
3766 rc = setError(VBOX_E_INVALID_OBJECT_STATE,
3767 tr("Storage for the medium '%s' is being created"),
3768 m->strLocationFull.raw());
3769 break;
3770 }
3771 case MediumState_Deleting:
3772 {
3773 rc = setError(VBOX_E_INVALID_OBJECT_STATE,
3774 tr("Storage for the medium '%s' is being deleted"),
3775 m->strLocationFull.raw());
3776 break;
3777 }
3778 default:
3779 {
3780 AssertFailed();
3781 break;
3782 }
3783 }
3784
3785 return rc;
3786}
3787
3788/**
3789 * Deletes the hard disk storage unit.
3790 *
3791 * If @a aProgress is not NULL but the object it points to is @c null then a new
3792 * progress object will be created and assigned to @a *aProgress on success,
3793 * otherwise the existing progress object is used. If Progress is NULL, then no
3794 * progress object is created/used at all.
3795 *
3796 * When @a aWait is @c false, this method will create a thread to perform the
3797 * delete operation asynchronously and will return immediately. Otherwise, it
3798 * will perform the operation on the calling thread and will not return to the
3799 * caller until the operation is completed. Note that @a aProgress cannot be
3800 * NULL when @a aWait is @c false (this method will assert in this case).
3801 *
3802 * @param aProgress Where to find/store a Progress object to track operation
3803 * completion.
3804 * @param aWait @c true if this method should block instead of creating
3805 * an asynchronous thread.
3806 * @param pfNeedsSaveSettings Optional pointer to a bool that must have been initialized to false and that will be set to true
3807 * by this function if the caller should invoke VirtualBox::saveSettings() because the global settings have changed.
3808 * This only works in "wait" mode; otherwise saveSettings gets called automatically by the thread that was created,
3809 * and this parameter is ignored.
3810 *
3811 * @note Locks mVirtualBox and this object for writing. Locks medium tree for
3812 * writing.
3813 */
3814HRESULT Medium::deleteStorage(ComObjPtr<Progress> *aProgress,
3815 bool aWait,
3816 bool *pfNeedsSaveSettings)
3817{
3818 AssertReturn(aProgress != NULL || aWait == true, E_FAIL);
3819
3820 HRESULT rc = S_OK;
3821 ComObjPtr<Progress> pProgress;
3822 Medium::Task *pTask = NULL;
3823
3824 try
3825 {
3826 /* we're accessing the media tree, and canClose() needs it too */
3827 AutoMultiWriteLock2 multilock(&m->pVirtualBox->getMediaTreeLockHandle(),
3828 this->lockHandle()
3829 COMMA_LOCKVAL_SRC_POS);
3830 LogFlowThisFunc(("aWait=%RTbool locationFull=%s\n", aWait, getLocationFull().c_str() ));
3831
3832 if ( !(m->formatObj->capabilities() & ( MediumFormatCapabilities_CreateDynamic
3833 | MediumFormatCapabilities_CreateFixed)))
3834 throw setError(VBOX_E_NOT_SUPPORTED,
3835 tr("Hard disk format '%s' does not support storage deletion"),
3836 m->strFormat.raw());
3837
3838 /* Note that we are fine with Inaccessible state too: a) for symmetry
3839 * with create calls and b) because it doesn't really harm to try, if
3840 * it is really inaccessible, the delete operation will fail anyway.
3841 * Accepting Inaccessible state is especially important because all
3842 * registered hard disks are initially Inaccessible upon VBoxSVC
3843 * startup until COMGETTER(RefreshState) is called. Accept Deleting
3844 * state because some callers need to put the image in this state early
3845 * to prevent races. */
3846 switch (m->state)
3847 {
3848 case MediumState_Created:
3849 case MediumState_Deleting:
3850 case MediumState_Inaccessible:
3851 break;
3852 default:
3853 throw setStateError();
3854 }
3855
3856 if (m->backRefs.size() != 0)
3857 {
3858 Utf8Str strMachines;
3859 for (BackRefList::const_iterator it = m->backRefs.begin();
3860 it != m->backRefs.end();
3861 ++it)
3862 {
3863 const BackRef &b = *it;
3864 if (strMachines.length())
3865 strMachines.append(", ");
3866 strMachines.append(b.machineId.toString().c_str());
3867 }
3868#ifdef DEBUG
3869 dumpBackRefs();
3870#endif
3871 throw setError(VBOX_E_OBJECT_IN_USE,
3872 tr("Cannot delete storage: hard disk '%s' is still attached to the following %d virtual machine(s): %s"),
3873 m->strLocationFull.c_str(),
3874 m->backRefs.size(),
3875 strMachines.c_str());
3876 }
3877
3878 rc = canClose();
3879 if (FAILED(rc))
3880 throw rc;
3881
3882 /* go to Deleting state, so that the medium is not actually locked */
3883 if (m->state != MediumState_Deleting)
3884 {
3885 rc = markForDeletion();
3886 if (FAILED(rc))
3887 throw rc;
3888 }
3889
3890 /* Build the medium lock list. */
3891 MediumLockList *pMediumLockList(new MediumLockList());
3892 rc = createMediumLockList(true, NULL,
3893 *pMediumLockList);
3894 if (FAILED(rc))
3895 {
3896 delete pMediumLockList;
3897 throw rc;
3898 }
3899
3900 rc = pMediumLockList->Lock();
3901 if (FAILED(rc))
3902 {
3903 delete pMediumLockList;
3904 throw setError(rc,
3905 tr("Failed to lock media when deleting '%ls'"),
3906 getLocationFull().raw());
3907 }
3908
3909 /* try to remove from the list of known hard disks before performing
3910 * actual deletion (we favor the consistency of the media registry in
3911 * the first place which would have been broken if
3912 * unregisterWithVirtualBox() failed after we successfully deleted the
3913 * storage) */
3914 rc = unregisterWithVirtualBox(pfNeedsSaveSettings);
3915 if (FAILED(rc))
3916 throw rc;
3917
3918 if (aProgress != NULL)
3919 {
3920 /* use the existing progress object... */
3921 pProgress = *aProgress;
3922
3923 /* ...but create a new one if it is null */
3924 if (pProgress.isNull())
3925 {
3926 pProgress.createObject();
3927 rc = pProgress->init(m->pVirtualBox,
3928 static_cast<IMedium*>(this),
3929 BstrFmt(tr("Deleting hard disk storage unit '%s'"), m->strLocationFull.raw()),
3930 FALSE /* aCancelable */);
3931 if (FAILED(rc))
3932 throw rc;
3933 }
3934 }
3935
3936 /* setup task object to carry out the operation sync/async */
3937 pTask = new Medium::DeleteTask(this, pProgress, pMediumLockList);
3938 rc = pTask->rc();
3939 AssertComRC(rc);
3940 if (FAILED(rc))
3941 throw rc;
3942 }
3943 catch (HRESULT aRC) { rc = aRC; }
3944
3945 if (SUCCEEDED(rc))
3946 {
3947 if (aWait)
3948 rc = runNow(pTask, NULL /* pfNeedsSaveSettings*/);
3949 else
3950 rc = startThread(pTask);
3951
3952 if (SUCCEEDED(rc) && aProgress != NULL)
3953 *aProgress = pProgress;
3954
3955 }
3956 else
3957 {
3958 if (pTask)
3959 delete pTask;
3960
3961 /* Undo deleting state if necessary. */
3962 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3963 unmarkForDeletion();
3964 }
3965
3966 return rc;
3967}
3968
3969/**
3970 * Mark a medium for deletion.
3971 *
3972 * @note Caller must hold the write lock on this medium!
3973 */
3974HRESULT Medium::markForDeletion()
3975{
3976 ComAssertRet(this->lockHandle()->isWriteLockOnCurrentThread(), E_FAIL);
3977 switch (m->state)
3978 {
3979 case MediumState_Created:
3980 case MediumState_Inaccessible:
3981 m->preLockState = m->state;
3982 m->state = MediumState_Deleting;
3983 return S_OK;
3984 default:
3985 return setStateError();
3986 }
3987}
3988
3989/**
3990 * Removes the "mark for deletion".
3991 *
3992 * @note Caller must hold the write lock on this medium!
3993 */
3994HRESULT Medium::unmarkForDeletion()
3995{
3996 ComAssertRet(this->lockHandle()->isWriteLockOnCurrentThread(), E_FAIL);
3997 switch (m->state)
3998 {
3999 case MediumState_Deleting:
4000 m->state = m->preLockState;
4001 return S_OK;
4002 default:
4003 return setStateError();
4004 }
4005}
4006
4007/**
4008 * Mark a medium for deletion which is in locked state.
4009 *
4010 * @note Caller must hold the write lock on this medium!
4011 */
4012HRESULT Medium::markLockedForDeletion()
4013{
4014 ComAssertRet(this->lockHandle()->isWriteLockOnCurrentThread(), E_FAIL);
4015 if ( ( m->state == MediumState_LockedRead
4016 || m->state == MediumState_LockedWrite)
4017 && m->preLockState == MediumState_Created)
4018 {
4019 m->preLockState = MediumState_Deleting;
4020 return S_OK;
4021 }
4022 else
4023 return setStateError();
4024}
4025
4026/**
4027 * Removes the "mark for deletion" for a medium in locked state.
4028 *
4029 * @note Caller must hold the write lock on this medium!
4030 */
4031HRESULT Medium::unmarkLockedForDeletion()
4032{
4033 ComAssertRet(this->lockHandle()->isWriteLockOnCurrentThread(), E_FAIL);
4034 if ( ( m->state == MediumState_LockedRead
4035 || m->state == MediumState_LockedWrite)
4036 && m->preLockState == MediumState_Deleting)
4037 {
4038 m->preLockState = MediumState_Created;
4039 return S_OK;
4040 }
4041 else
4042 return setStateError();
4043}
4044
4045/**
4046 * Creates a new differencing storage unit using the given target hard disk's
4047 * format and the location. Note that @c aTarget must be NotCreated.
4048 *
4049 * The @a aMediumLockList parameter contains the associated medium lock list,
4050 * which must be in locked state. If @a aWait is @c true then the caller is
4051 * responsible for unlocking.
4052 *
4053 * If @a aProgress is not NULL but the object it points to is @c null then a
4054 * new progress object will be created and assigned to @a *aProgress on
4055 * success, otherwise the existing progress object is used. If @a aProgress is
4056 * NULL, then no progress object is created/used at all.
4057 *
4058 * When @a aWait is @c false, this method will create a thread to perform the
4059 * create operation asynchronously and will return immediately. Otherwise, it
4060 * will perform the operation on the calling thread and will not return to the
4061 * caller until the operation is completed. Note that @a aProgress cannot be
4062 * NULL when @a aWait is @c false (this method will assert in this case).
4063 *
4064 * @param aTarget Target hard disk.
4065 * @param aVariant Precise image variant to create.
4066 * @param aMediumLockList List of media which should be locked.
4067 * @param aProgress Where to find/store a Progress object to track
4068 * operation completion.
4069 * @param aWait @c true if this method should block instead of
4070 * creating an asynchronous thread.
4071 * @param pfNeedsSaveSettings Optional pointer to a bool that must have been
4072 * initialized to false and that will be set to true
4073 * by this function if the caller should invoke
4074 * VirtualBox::saveSettings() because the global
4075 * settings have changed. This only works in "wait"
4076 * mode; otherwise saveSettings is called
4077 * automatically by the thread that was created,
4078 * and this parameter is ignored.
4079 *
4080 * @note Locks this object and @a aTarget for writing.
4081 */
4082HRESULT Medium::createDiffStorage(ComObjPtr<Medium> &aTarget,
4083 MediumVariant_T aVariant,
4084 MediumLockList *aMediumLockList,
4085 ComObjPtr<Progress> *aProgress,
4086 bool aWait,
4087 bool *pfNeedsSaveSettings)
4088{
4089 AssertReturn(!aTarget.isNull(), E_FAIL);
4090 AssertReturn(aMediumLockList, E_FAIL);
4091 AssertReturn(aProgress != NULL || aWait == true, E_FAIL);
4092
4093 AutoCaller autoCaller(this);
4094 if (FAILED(autoCaller.rc())) return autoCaller.rc();
4095
4096 AutoCaller targetCaller(aTarget);
4097 if (FAILED(targetCaller.rc())) return targetCaller.rc();
4098
4099 HRESULT rc = S_OK;
4100 ComObjPtr<Progress> pProgress;
4101 Medium::Task *pTask = NULL;
4102
4103 try
4104 {
4105 AutoMultiWriteLock2 alock(this, aTarget COMMA_LOCKVAL_SRC_POS);
4106
4107 ComAssertThrow(m->type != MediumType_Writethrough, E_FAIL);
4108 ComAssertThrow(m->state == MediumState_LockedRead, E_FAIL);
4109
4110 if (aTarget->m->state != MediumState_NotCreated)
4111 throw aTarget->setStateError();
4112
4113 /* Check that the hard disk is not attached to the current state of
4114 * any VM referring to it. */
4115 for (BackRefList::const_iterator it = m->backRefs.begin();
4116 it != m->backRefs.end();
4117 ++it)
4118 {
4119 if (it->fInCurState)
4120 {
4121 /* Note: when a VM snapshot is being taken, all normal hard
4122 * disks attached to the VM in the current state will be, as an
4123 * exception, also associated with the snapshot which is about
4124 * to create (see SnapshotMachine::init()) before deassociating
4125 * them from the current state (which takes place only on
4126 * success in Machine::fixupHardDisks()), so that the size of
4127 * snapshotIds will be 1 in this case. The extra condition is
4128 * used to filter out this legal situation. */
4129 if (it->llSnapshotIds.size() == 0)
4130 throw setError(VBOX_E_INVALID_OBJECT_STATE,
4131 tr("Hard disk '%s' is attached to a virtual machine with UUID {%RTuuid}. No differencing hard disks based on it may be created until it is detached"),
4132 m->strLocationFull.raw(), it->machineId.raw());
4133
4134 Assert(it->llSnapshotIds.size() == 1);
4135 }
4136 }
4137
4138 if (aProgress != NULL)
4139 {
4140 /* use the existing progress object... */
4141 pProgress = *aProgress;
4142
4143 /* ...but create a new one if it is null */
4144 if (pProgress.isNull())
4145 {
4146 pProgress.createObject();
4147 rc = pProgress->init(m->pVirtualBox,
4148 static_cast<IMedium*>(this),
4149 BstrFmt(tr("Creating differencing hard disk storage unit '%s'"), aTarget->m->strLocationFull.raw()),
4150 TRUE /* aCancelable */);
4151 if (FAILED(rc))
4152 throw rc;
4153 }
4154 }
4155
4156 /* setup task object to carry out the operation sync/async */
4157 pTask = new Medium::CreateDiffTask(this, pProgress, aTarget, aVariant,
4158 aMediumLockList,
4159 aWait /* fKeepMediumLockList */);
4160 rc = pTask->rc();
4161 AssertComRC(rc);
4162 if (FAILED(rc))
4163 throw rc;
4164
4165 /* register a task (it will deregister itself when done) */
4166 ++m->numCreateDiffTasks;
4167 Assert(m->numCreateDiffTasks != 0); /* overflow? */
4168
4169 aTarget->m->state = MediumState_Creating;
4170 }
4171 catch (HRESULT aRC) { rc = aRC; }
4172
4173 if (SUCCEEDED(rc))
4174 {
4175 if (aWait)
4176 rc = runNow(pTask, pfNeedsSaveSettings);
4177 else
4178 rc = startThread(pTask);
4179
4180 if (SUCCEEDED(rc) && aProgress != NULL)
4181 *aProgress = pProgress;
4182 }
4183 else if (pTask != NULL)
4184 delete pTask;
4185
4186 return rc;
4187}
4188
4189/**
4190 * Prepares this (source) hard disk, target hard disk and all intermediate hard
4191 * disks for the merge operation.
4192 *
4193 * This method is to be called prior to calling the #mergeTo() to perform
4194 * necessary consistency checks and place involved hard disks to appropriate
4195 * states. If #mergeTo() is not called or fails, the state modifications
4196 * performed by this method must be undone by #cancelMergeTo().
4197 *
4198 * See #mergeTo() for more information about merging.
4199 *
4200 * @param pTarget Target hard disk.
4201 * @param aMachineId Allowed machine attachment. NULL means do not check.
4202 * @param aSnapshotId Allowed snapshot attachment. NULL or empty UUID means
4203 * do not check.
4204 * @param fLockMedia Flag whether to lock the medium lock list or not.
4205 * If set to false and the medium lock list locking fails
4206 * later you must call #cancelMergeTo().
4207 * @param fMergeForward Resulting merge direction (out).
4208 * @param pParentForTarget New parent for target medium after merge (out).
4209 * @param aChildrenToReparent List of children of the source which will have
4210 * to be reparented to the target after merge (out).
4211 * @param aMediumLockList Medium locking information (out).
4212 *
4213 * @note Locks medium tree for reading. Locks this object, aTarget and all
4214 * intermediate hard disks for writing.
4215 */
4216HRESULT Medium::prepareMergeTo(const ComObjPtr<Medium> &pTarget,
4217 const Guid *aMachineId,
4218 const Guid *aSnapshotId,
4219 bool fLockMedia,
4220 bool &fMergeForward,
4221 ComObjPtr<Medium> &pParentForTarget,
4222 MediaList &aChildrenToReparent,
4223 MediumLockList * &aMediumLockList)
4224{
4225 AssertReturn(pTarget != NULL, E_FAIL);
4226 AssertReturn(pTarget != this, E_FAIL);
4227
4228 AutoCaller autoCaller(this);
4229 AssertComRCReturnRC(autoCaller.rc());
4230
4231 AutoCaller targetCaller(pTarget);
4232 AssertComRCReturnRC(targetCaller.rc());
4233
4234 HRESULT rc = S_OK;
4235 fMergeForward = false;
4236 pParentForTarget.setNull();
4237 aChildrenToReparent.clear();
4238 Assert(aMediumLockList == NULL);
4239 aMediumLockList = NULL;
4240
4241 try
4242 {
4243 // locking: we need the tree lock first because we access parent pointers
4244 AutoReadLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
4245
4246 /* more sanity checking and figuring out the merge direction */
4247 ComObjPtr<Medium> pMedium = getParent();
4248 while (!pMedium.isNull() && pMedium != pTarget)
4249 pMedium = pMedium->getParent();
4250 if (pMedium == pTarget)
4251 fMergeForward = false;
4252 else
4253 {
4254 pMedium = pTarget->getParent();
4255 while (!pMedium.isNull() && pMedium != this)
4256 pMedium = pMedium->getParent();
4257 if (pMedium == this)
4258 fMergeForward = true;
4259 else
4260 {
4261 Utf8Str tgtLoc;
4262 {
4263 AutoReadLock alock(pTarget COMMA_LOCKVAL_SRC_POS);
4264 tgtLoc = pTarget->getLocationFull();
4265 }
4266
4267 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
4268 throw setError(E_FAIL,
4269 tr("Hard disks '%s' and '%s' are unrelated"),
4270 m->strLocationFull.raw(), tgtLoc.raw());
4271 }
4272 }
4273
4274 /* Build the lock list. */
4275 aMediumLockList = new MediumLockList();
4276 if (fMergeForward)
4277 rc = pTarget->createMediumLockList(true, NULL, *aMediumLockList);
4278 else
4279 rc = createMediumLockList(false, NULL, *aMediumLockList);
4280 if (FAILED(rc))
4281 throw rc;
4282
4283 /* Sanity checking, must be after lock list creation as it depends on
4284 * valid medium states. The medium objects must be accessible. Only
4285 * do this if immediate locking is requested, otherwise it fails when
4286 * we construct a medium lock list for an already running VM. Snapshot
4287 * deletion uses this to simplify its life. */
4288 if (fLockMedia)
4289 {
4290 {
4291 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
4292 if (m->state != MediumState_Created)
4293 throw setStateError();
4294 }
4295 {
4296 AutoReadLock alock(pTarget COMMA_LOCKVAL_SRC_POS);
4297 if (pTarget->m->state != MediumState_Created)
4298 throw pTarget->setStateError();
4299 }
4300 }
4301
4302 /* check medium attachment and other sanity conditions */
4303 if (fMergeForward)
4304 {
4305 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
4306 if (getChildren().size() > 1)
4307 {
4308 throw setError(E_FAIL,
4309 tr("Medium '%s' involved in the merge operation has more than one child medium (%d)"),
4310 m->strLocationFull.raw(), getChildren().size());
4311 }
4312 /* One backreference is only allowed if the machine ID is not empty
4313 * and it matches the machine the image is attached to (including
4314 * the snapshot ID if not empty). */
4315 if ( m->backRefs.size() != 0
4316 && ( !aMachineId
4317 || m->backRefs.size() != 1
4318 || aMachineId->isEmpty()
4319 || *getFirstMachineBackrefId() != *aMachineId
4320 || ( (!aSnapshotId || !aSnapshotId->isEmpty())
4321 && *getFirstMachineBackrefSnapshotId() != *aSnapshotId)))
4322 throw setError(E_FAIL,
4323 tr("Medium '%s' is attached to %d virtual machines"),
4324 m->strLocationFull.raw(), m->backRefs.size());
4325 if (m->type == MediumType_Immutable)
4326 throw setError(E_FAIL,
4327 tr("Medium '%s' is immutable"),
4328 m->strLocationFull.raw());
4329 }
4330 else
4331 {
4332 AutoReadLock alock(pTarget COMMA_LOCKVAL_SRC_POS);
4333 if (pTarget->getChildren().size() > 1)
4334 {
4335 throw setError(E_FAIL,
4336 tr("Medium '%s' involved in the merge operation has more than one child medium (%d)"),
4337 pTarget->m->strLocationFull.raw(),
4338 pTarget->getChildren().size());
4339 }
4340 if (pTarget->m->type == MediumType_Immutable)
4341 throw setError(E_FAIL,
4342 tr("Medium '%s' is immutable"),
4343 pTarget->m->strLocationFull.raw());
4344 }
4345 ComObjPtr<Medium> pLast(fMergeForward ? (Medium *)pTarget : this);
4346 ComObjPtr<Medium> pLastIntermediate = pLast->getParent();
4347 for (pLast = pLastIntermediate;
4348 !pLast.isNull() && pLast != pTarget && pLast != this;
4349 pLast = pLast->getParent())
4350 {
4351 AutoReadLock alock(pLast COMMA_LOCKVAL_SRC_POS);
4352 if (pLast->getChildren().size() > 1)
4353 {
4354 throw setError(E_FAIL,
4355 tr("Medium '%s' involved in the merge operation has more than one child medium (%d)"),
4356 pLast->m->strLocationFull.raw(),
4357 pLast->getChildren().size());
4358 }
4359 if (pLast->m->backRefs.size() != 0)
4360 throw setError(E_FAIL,
4361 tr("Medium '%s' is attached to %d virtual machines"),
4362 pLast->m->strLocationFull.raw(),
4363 pLast->m->backRefs.size());
4364
4365 }
4366
4367 /* Update medium states appropriately */
4368 if (m->state == MediumState_Created)
4369 {
4370 rc = markForDeletion();
4371 if (FAILED(rc))
4372 throw rc;
4373 }
4374 else
4375 {
4376 if (fLockMedia)
4377 throw setStateError();
4378 else if ( m->state == MediumState_LockedWrite
4379 || m->state == MediumState_LockedRead)
4380 {
4381 /* Either mark it for deletiion in locked state or allow
4382 * others to have done so. */
4383 if (m->preLockState == MediumState_Created)
4384 markLockedForDeletion();
4385 else if (m->preLockState != MediumState_Deleting)
4386 throw setStateError();
4387 }
4388 else
4389 throw setStateError();
4390 }
4391
4392 if (fMergeForward)
4393 {
4394 /* we will need parent to reparent target */
4395 pParentForTarget = m->pParent;
4396 }
4397 else
4398 {
4399 /* we will need to reparent children of the source */
4400 for (MediaList::const_iterator it = getChildren().begin();
4401 it != getChildren().end();
4402 ++it)
4403 {
4404 pMedium = *it;
4405 if (fLockMedia)
4406 {
4407 rc = pMedium->LockWrite(NULL);
4408 if (FAILED(rc))
4409 throw rc;
4410 }
4411
4412 aChildrenToReparent.push_back(pMedium);
4413 }
4414 }
4415 for (pLast = pLastIntermediate;
4416 !pLast.isNull() && pLast != pTarget && pLast != this;
4417 pLast = pLast->getParent())
4418 {
4419 AutoWriteLock alock(pLast COMMA_LOCKVAL_SRC_POS);
4420 if (pLast->m->state == MediumState_Created)
4421 {
4422 rc = pLast->markForDeletion();
4423 if (FAILED(rc))
4424 throw rc;
4425 }
4426 else
4427 throw pLast->setStateError();
4428 }
4429
4430 /* Tweak the lock list in the backward merge case, as the target
4431 * isn't marked to be locked for writing yet. */
4432 if (!fMergeForward)
4433 {
4434 MediumLockList::Base::iterator lockListBegin =
4435 aMediumLockList->GetBegin();
4436 MediumLockList::Base::iterator lockListEnd =
4437 aMediumLockList->GetEnd();
4438 lockListEnd--;
4439 for (MediumLockList::Base::iterator it = lockListBegin;
4440 it != lockListEnd;
4441 ++it)
4442 {
4443 MediumLock &mediumLock = *it;
4444 if (mediumLock.GetMedium() == pTarget)
4445 {
4446 HRESULT rc2 = mediumLock.UpdateLock(true);
4447 AssertComRC(rc2);
4448 break;
4449 }
4450 }
4451 }
4452
4453 if (fLockMedia)
4454 {
4455 rc = aMediumLockList->Lock();
4456 if (FAILED(rc))
4457 {
4458 AutoReadLock alock(pTarget COMMA_LOCKVAL_SRC_POS);
4459 throw setError(rc,
4460 tr("Failed to lock media when merging to '%ls'"),
4461 pTarget->getLocationFull().raw());
4462 }
4463 }
4464 }
4465 catch (HRESULT aRC) { rc = aRC; }
4466
4467 if (FAILED(rc))
4468 {
4469 delete aMediumLockList;
4470 aMediumLockList = NULL;
4471 }
4472
4473 return rc;
4474}
4475
4476/**
4477 * Merges this hard disk to the specified hard disk which must be either its
4478 * direct ancestor or descendant.
4479 *
4480 * Given this hard disk is SOURCE and the specified hard disk is TARGET, we will
4481 * get two varians of the merge operation:
4482 *
4483 * forward merge
4484 * ------------------------->
4485 * [Extra] <- SOURCE <- Intermediate <- TARGET
4486 * Any Del Del LockWr
4487 *
4488 *
4489 * backward merge
4490 * <-------------------------
4491 * TARGET <- Intermediate <- SOURCE <- [Extra]
4492 * LockWr Del Del LockWr
4493 *
4494 * Each diagram shows the involved hard disks on the hard disk chain where
4495 * SOURCE and TARGET belong. Under each hard disk there is a state value which
4496 * the hard disk must have at a time of the mergeTo() call.
4497 *
4498 * The hard disks in the square braces may be absent (e.g. when the forward
4499 * operation takes place and SOURCE is the base hard disk, or when the backward
4500 * merge operation takes place and TARGET is the last child in the chain) but if
4501 * they present they are involved too as shown.
4502 *
4503 * Nor the source hard disk neither intermediate hard disks may be attached to
4504 * any VM directly or in the snapshot, otherwise this method will assert.
4505 *
4506 * The #prepareMergeTo() method must be called prior to this method to place all
4507 * involved to necessary states and perform other consistency checks.
4508 *
4509 * If @a aWait is @c true then this method will perform the operation on the
4510 * calling thread and will not return to the caller until the operation is
4511 * completed. When this method succeeds, all intermediate hard disk objects in
4512 * the chain will be uninitialized, the state of the target hard disk (and all
4513 * involved extra hard disks) will be restored. @a aMediumLockList will not be
4514 * deleted, whether the operation is successful or not. The caller has to do
4515 * this if appropriate. Note that this (source) hard disk is not uninitialized
4516 * because of possible AutoCaller instances held by the caller of this method
4517 * on the current thread. It's therefore the responsibility of the caller to
4518 * call Medium::uninit() after releasing all callers.
4519 *
4520 * If @a aWait is @c false then this method will create a thread to perform the
4521 * operation asynchronously and will return immediately. If the operation
4522 * succeeds, the thread will uninitialize the source hard disk object and all
4523 * intermediate hard disk objects in the chain, reset the state of the target
4524 * hard disk (and all involved extra hard disks) and delete @a aMediumLockList.
4525 * If the operation fails, the thread will only reset the states of all
4526 * involved hard disks and delete @a aMediumLockList.
4527 *
4528 * When this method fails (regardless of the @a aWait mode), it is a caller's
4529 * responsiblity to undo state changes and delete @a aMediumLockList using
4530 * #cancelMergeTo().
4531 *
4532 * If @a aProgress is not NULL but the object it points to is @c null then a new
4533 * progress object will be created and assigned to @a *aProgress on success,
4534 * otherwise the existing progress object is used. If Progress is NULL, then no
4535 * progress object is created/used at all. Note that @a aProgress cannot be
4536 * NULL when @a aWait is @c false (this method will assert in this case).
4537 *
4538 * @param pTarget Target hard disk.
4539 * @param fMergeForward Merge direction.
4540 * @param pParentForTarget New parent for target medium after merge.
4541 * @param aChildrenToReparent List of children of the source which will have
4542 * to be reparented to the target after merge.
4543 * @param aMediumLockList Medium locking information.
4544 * @param aProgress Where to find/store a Progress object to track operation
4545 * completion.
4546 * @param aWait @c true if this method should block instead of creating
4547 * an asynchronous thread.
4548 * @param pfNeedsSaveSettings Optional pointer to a bool that must have been initialized to false and that will be set to true
4549 * by this function if the caller should invoke VirtualBox::saveSettings() because the global settings have changed.
4550 * This only works in "wait" mode; otherwise saveSettings gets called automatically by the thread that was created,
4551 * and this parameter is ignored.
4552 *
4553 * @note Locks the tree lock for writing. Locks the hard disks from the chain
4554 * for writing.
4555 */
4556HRESULT Medium::mergeTo(const ComObjPtr<Medium> &pTarget,
4557 bool fMergeForward,
4558 const ComObjPtr<Medium> &pParentForTarget,
4559 const MediaList &aChildrenToReparent,
4560 MediumLockList *aMediumLockList,
4561 ComObjPtr <Progress> *aProgress,
4562 bool aWait,
4563 bool *pfNeedsSaveSettings)
4564{
4565 AssertReturn(pTarget != NULL, E_FAIL);
4566 AssertReturn(pTarget != this, E_FAIL);
4567 AssertReturn(aMediumLockList != NULL, E_FAIL);
4568 AssertReturn(aProgress != NULL || aWait == true, E_FAIL);
4569
4570 AutoCaller autoCaller(this);
4571 if (FAILED(autoCaller.rc())) return autoCaller.rc();
4572
4573 HRESULT rc = S_OK;
4574 ComObjPtr <Progress> pProgress;
4575 Medium::Task *pTask = NULL;
4576
4577 try
4578 {
4579 if (aProgress != NULL)
4580 {
4581 /* use the existing progress object... */
4582 pProgress = *aProgress;
4583
4584 /* ...but create a new one if it is null */
4585 if (pProgress.isNull())
4586 {
4587 Utf8Str tgtName;
4588 {
4589 AutoReadLock alock(pTarget COMMA_LOCKVAL_SRC_POS);
4590 tgtName = pTarget->getName();
4591 }
4592
4593 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
4594
4595 pProgress.createObject();
4596 rc = pProgress->init(m->pVirtualBox,
4597 static_cast<IMedium*>(this),
4598 BstrFmt(tr("Merging hard disk '%s' to '%s'"),
4599 getName().raw(),
4600 tgtName.raw()),
4601 TRUE /* aCancelable */);
4602 if (FAILED(rc))
4603 throw rc;
4604 }
4605 }
4606
4607 /* setup task object to carry out the operation sync/async */
4608 pTask = new Medium::MergeTask(this, pTarget, fMergeForward,
4609 pParentForTarget, aChildrenToReparent,
4610 pProgress, aMediumLockList,
4611 aWait /* fKeepMediumLockList */);
4612 rc = pTask->rc();
4613 AssertComRC(rc);
4614 if (FAILED(rc))
4615 throw rc;
4616 }
4617 catch (HRESULT aRC) { rc = aRC; }
4618
4619 if (SUCCEEDED(rc))
4620 {
4621 if (aWait)
4622 rc = runNow(pTask, pfNeedsSaveSettings);
4623 else
4624 rc = startThread(pTask);
4625
4626 if (SUCCEEDED(rc) && aProgress != NULL)
4627 *aProgress = pProgress;
4628 }
4629 else if (pTask != NULL)
4630 delete pTask;
4631
4632 return rc;
4633}
4634
4635/**
4636 * Undoes what #prepareMergeTo() did. Must be called if #mergeTo() is not
4637 * called or fails. Frees memory occupied by @a aMediumLockList and unlocks
4638 * the medium objects in @a aChildrenToReparent.
4639 *
4640 * @param aChildrenToReparent List of children of the source which will have
4641 * to be reparented to the target after merge.
4642 * @param aMediumLockList Medium locking information.
4643 *
4644 * @note Locks the hard disks from the chain for writing.
4645 */
4646void Medium::cancelMergeTo(const MediaList &aChildrenToReparent,
4647 MediumLockList *aMediumLockList)
4648{
4649 AutoCaller autoCaller(this);
4650 AssertComRCReturnVoid(autoCaller.rc());
4651
4652 AssertReturnVoid(aMediumLockList != NULL);
4653
4654 /* Revert media marked for deletion to previous state. */
4655 HRESULT rc;
4656 MediumLockList::Base::const_iterator mediumListBegin =
4657 aMediumLockList->GetBegin();
4658 MediumLockList::Base::const_iterator mediumListEnd =
4659 aMediumLockList->GetEnd();
4660 for (MediumLockList::Base::const_iterator it = mediumListBegin;
4661 it != mediumListEnd;
4662 ++it)
4663 {
4664 const MediumLock &mediumLock = *it;
4665 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
4666 AutoWriteLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
4667
4668 if (pMedium->m->state == MediumState_Deleting)
4669 {
4670 rc = pMedium->unmarkForDeletion();
4671 AssertComRC(rc);
4672 }
4673 }
4674
4675 /* the destructor will do the work */
4676 delete aMediumLockList;
4677
4678 /* unlock the children which had to be reparented */
4679 for (MediaList::const_iterator it = aChildrenToReparent.begin();
4680 it != aChildrenToReparent.end();
4681 ++it)
4682 {
4683 const ComObjPtr<Medium> &pMedium = *it;
4684
4685 AutoWriteLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
4686 pMedium->UnlockWrite(NULL);
4687 }
4688}
4689
4690/**
4691 * Checks that the format ID is valid and sets it on success.
4692 *
4693 * Note that this method will caller-reference the format object on success!
4694 * This reference must be released somewhere to let the MediumFormat object be
4695 * uninitialized.
4696 *
4697 * @note Must be called from under this object's write lock.
4698 */
4699HRESULT Medium::setFormat(CBSTR aFormat)
4700{
4701 /* get the format object first */
4702 {
4703 AutoReadLock propsLock(m->pVirtualBox->systemProperties() COMMA_LOCKVAL_SRC_POS);
4704
4705 unconst(m->formatObj)
4706 = m->pVirtualBox->systemProperties()->mediumFormat(aFormat);
4707 if (m->formatObj.isNull())
4708 return setError(E_INVALIDARG,
4709 tr("Invalid hard disk storage format '%ls'"),
4710 aFormat);
4711
4712 /* reference the format permanently to prevent its unexpected
4713 * uninitialization */
4714 HRESULT rc = m->formatObj->addCaller();
4715 AssertComRCReturnRC(rc);
4716
4717 /* get properties (preinsert them as keys in the map). Note that the
4718 * map doesn't grow over the object life time since the set of
4719 * properties is meant to be constant. */
4720
4721 Assert(m->properties.empty());
4722
4723 for (MediumFormat::PropertyList::const_iterator it =
4724 m->formatObj->properties().begin();
4725 it != m->formatObj->properties().end();
4726 ++it)
4727 {
4728 m->properties.insert(std::make_pair(it->name, Bstr::Null));
4729 }
4730 }
4731
4732 unconst(m->strFormat) = aFormat;
4733
4734 return S_OK;
4735}
4736
4737/**
4738 * @note Also reused by Medium::Reset().
4739 *
4740 * @note Caller must hold the media tree write lock!
4741 */
4742HRESULT Medium::canClose()
4743{
4744 Assert(m->pVirtualBox->getMediaTreeLockHandle().isWriteLockOnCurrentThread());
4745
4746 if (getChildren().size() != 0)
4747 return setError(E_FAIL,
4748 tr("Cannot close medium '%s' because it has %d child hard disk(s)"),
4749 m->strLocationFull.raw(), getChildren().size());
4750
4751 return S_OK;
4752}
4753
4754/**
4755 * Calls either VirtualBox::unregisterImage or VirtualBox::unregisterHardDisk depending
4756 * on the device type of this medium.
4757 *
4758 * @param pfNeedsSaveSettings Optional pointer to a bool that must have been initialized to false and that will be set to true
4759 * by this function if the caller should invoke VirtualBox::saveSettings() because the global settings have changed.
4760 *
4761 * @note Caller must have locked the media tree lock for writing!
4762 */
4763HRESULT Medium::unregisterWithVirtualBox(bool *pfNeedsSaveSettings)
4764{
4765 /* Note that we need to de-associate ourselves from the parent to let
4766 * unregisterHardDisk() properly save the registry */
4767
4768 /* we modify mParent and access children */
4769 Assert(m->pVirtualBox->getMediaTreeLockHandle().isWriteLockOnCurrentThread());
4770
4771 Medium *pParentBackup = m->pParent;
4772 AssertReturn(getChildren().size() == 0, E_FAIL);
4773 if (m->pParent)
4774 deparent();
4775
4776 HRESULT rc = E_FAIL;
4777 switch (m->devType)
4778 {
4779 case DeviceType_DVD:
4780 rc = m->pVirtualBox->unregisterImage(this, DeviceType_DVD, pfNeedsSaveSettings);
4781 break;
4782
4783 case DeviceType_Floppy:
4784 rc = m->pVirtualBox->unregisterImage(this, DeviceType_Floppy, pfNeedsSaveSettings);
4785 break;
4786
4787 case DeviceType_HardDisk:
4788 rc = m->pVirtualBox->unregisterHardDisk(this, pfNeedsSaveSettings);
4789 break;
4790
4791 default:
4792 break;
4793 }
4794
4795 if (FAILED(rc))
4796 {
4797 if (pParentBackup)
4798 {
4799 /* re-associate with the parent as we are still relatives in the
4800 * registry */
4801 m->pParent = pParentBackup;
4802 m->pParent->m->llChildren.push_back(this);
4803 }
4804 }
4805
4806 return rc;
4807}
4808
4809/**
4810 * Returns the last error message collected by the vdErrorCall callback and
4811 * resets it.
4812 *
4813 * The error message is returned prepended with a dot and a space, like this:
4814 * <code>
4815 * ". <error_text> (%Rrc)"
4816 * </code>
4817 * to make it easily appendable to a more general error message. The @c %Rrc
4818 * format string is given @a aVRC as an argument.
4819 *
4820 * If there is no last error message collected by vdErrorCall or if it is a
4821 * null or empty string, then this function returns the following text:
4822 * <code>
4823 * " (%Rrc)"
4824 * </code>
4825 *
4826 * @note Doesn't do any object locking; it is assumed that the caller makes sure
4827 * the callback isn't called by more than one thread at a time.
4828 *
4829 * @param aVRC VBox error code to use when no error message is provided.
4830 */
4831Utf8Str Medium::vdError(int aVRC)
4832{
4833 Utf8Str error;
4834
4835 if (m->vdError.isEmpty())
4836 error = Utf8StrFmt(" (%Rrc)", aVRC);
4837 else
4838 error = Utf8StrFmt(".\n%s", m->vdError.raw());
4839
4840 m->vdError.setNull();
4841
4842 return error;
4843}
4844
4845/**
4846 * Error message callback.
4847 *
4848 * Puts the reported error message to the m->vdError field.
4849 *
4850 * @note Doesn't do any object locking; it is assumed that the caller makes sure
4851 * the callback isn't called by more than one thread at a time.
4852 *
4853 * @param pvUser The opaque data passed on container creation.
4854 * @param rc The VBox error code.
4855 * @param RT_SRC_POS_DECL Use RT_SRC_POS.
4856 * @param pszFormat Error message format string.
4857 * @param va Error message arguments.
4858 */
4859/*static*/
4860DECLCALLBACK(void) Medium::vdErrorCall(void *pvUser, int rc, RT_SRC_POS_DECL,
4861 const char *pszFormat, va_list va)
4862{
4863 NOREF(pszFile); NOREF(iLine); NOREF(pszFunction); /* RT_SRC_POS_DECL */
4864
4865 Medium *that = static_cast<Medium*>(pvUser);
4866 AssertReturnVoid(that != NULL);
4867
4868 if (that->m->vdError.isEmpty())
4869 that->m->vdError =
4870 Utf8StrFmt("%s (%Rrc)", Utf8StrFmtVA(pszFormat, va).raw(), rc);
4871 else
4872 that->m->vdError =
4873 Utf8StrFmt("%s.\n%s (%Rrc)", that->m->vdError.raw(),
4874 Utf8StrFmtVA(pszFormat, va).raw(), rc);
4875}
4876
4877/* static */
4878DECLCALLBACK(bool) Medium::vdConfigAreKeysValid(void *pvUser,
4879 const char * /* pszzValid */)
4880{
4881 Medium *that = static_cast<Medium*>(pvUser);
4882 AssertReturn(that != NULL, false);
4883
4884 /* we always return true since the only keys we have are those found in
4885 * VDBACKENDINFO */
4886 return true;
4887}
4888
4889/* static */
4890DECLCALLBACK(int) Medium::vdConfigQuerySize(void *pvUser, const char *pszName,
4891 size_t *pcbValue)
4892{
4893 AssertReturn(VALID_PTR(pcbValue), VERR_INVALID_POINTER);
4894
4895 Medium *that = static_cast<Medium*>(pvUser);
4896 AssertReturn(that != NULL, VERR_GENERAL_FAILURE);
4897
4898 Data::PropertyMap::const_iterator it =
4899 that->m->properties.find(Bstr(pszName));
4900 if (it == that->m->properties.end())
4901 return VERR_CFGM_VALUE_NOT_FOUND;
4902
4903 /* we interpret null values as "no value" in Medium */
4904 if (it->second.isEmpty())
4905 return VERR_CFGM_VALUE_NOT_FOUND;
4906
4907 *pcbValue = it->second.length() + 1 /* include terminator */;
4908
4909 return VINF_SUCCESS;
4910}
4911
4912/* static */
4913DECLCALLBACK(int) Medium::vdConfigQuery(void *pvUser, const char *pszName,
4914 char *pszValue, size_t cchValue)
4915{
4916 AssertReturn(VALID_PTR(pszValue), VERR_INVALID_POINTER);
4917
4918 Medium *that = static_cast<Medium*>(pvUser);
4919 AssertReturn(that != NULL, VERR_GENERAL_FAILURE);
4920
4921 Data::PropertyMap::const_iterator it =
4922 that->m->properties.find(Bstr(pszName));
4923 if (it == that->m->properties.end())
4924 return VERR_CFGM_VALUE_NOT_FOUND;
4925
4926 Utf8Str value = it->second;
4927 if (value.length() >= cchValue)
4928 return VERR_CFGM_NOT_ENOUGH_SPACE;
4929
4930 /* we interpret null values as "no value" in Medium */
4931 if (it->second.isEmpty())
4932 return VERR_CFGM_VALUE_NOT_FOUND;
4933
4934 memcpy(pszValue, value.c_str(), value.length() + 1);
4935
4936 return VINF_SUCCESS;
4937}
4938
4939/**
4940 * Starts a new thread driven by the appropriate Medium::Task::handler() method.
4941 *
4942 * @note When the task is executed by this method, IProgress::notifyComplete()
4943 * is automatically called for the progress object associated with this
4944 * task when the task is finished to signal the operation completion for
4945 * other threads asynchronously waiting for it.
4946 */
4947HRESULT Medium::startThread(Medium::Task *pTask)
4948{
4949#ifdef VBOX_WITH_MAIN_LOCK_VALIDATION
4950 /* Extreme paranoia: The calling thread should not hold the medium
4951 * tree lock or any medium lock. Since there is no separate lock class
4952 * for medium objects be even more strict: no other object locks. */
4953 Assert(!AutoLockHoldsLocksInClass(LOCKCLASS_LISTOFMEDIA));
4954 Assert(!AutoLockHoldsLocksInClass(getLockingClass()));
4955#endif
4956
4957 /// @todo use a more descriptive task name
4958 int vrc = RTThreadCreate(NULL, Medium::Task::fntMediumTask, pTask,
4959 0, RTTHREADTYPE_MAIN_HEAVY_WORKER, 0,
4960 "Medium::Task");
4961 if (RT_FAILURE(vrc))
4962 {
4963 delete pTask;
4964 ComAssertMsgRCRet(vrc,
4965 ("Could not create Medium::Task thread (%Rrc)\n",
4966 vrc),
4967 E_FAIL);
4968 }
4969
4970 return S_OK;
4971}
4972
4973/**
4974 * Fix the parent UUID of all children to point to this medium as their
4975 * parent.
4976 */
4977HRESULT Medium::fixParentUuidOfChildren(const MediaList &childrenToReparent)
4978{
4979 MediumLockList mediumLockList;
4980 HRESULT rc = createMediumLockList(false, this, mediumLockList);
4981 AssertComRCReturnRC(rc);
4982
4983 try
4984 {
4985 PVBOXHDD hdd;
4986 int vrc = VDCreate(m->vdDiskIfaces, &hdd);
4987 ComAssertRCThrow(vrc, E_FAIL);
4988
4989 try
4990 {
4991 MediumLockList::Base::iterator lockListBegin =
4992 mediumLockList.GetBegin();
4993 MediumLockList::Base::iterator lockListEnd =
4994 mediumLockList.GetEnd();
4995 for (MediumLockList::Base::iterator it = lockListBegin;
4996 it != lockListEnd;
4997 ++it)
4998 {
4999 MediumLock &mediumLock = *it;
5000 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
5001 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
5002
5003 // open the image
5004 vrc = VDOpen(hdd,
5005 pMedium->m->strFormat.c_str(),
5006 pMedium->m->strLocationFull.c_str(),
5007 VD_OPEN_FLAGS_READONLY,
5008 pMedium->m->vdDiskIfaces);
5009 if (RT_FAILURE(vrc))
5010 throw vrc;
5011 }
5012
5013 for (MediaList::const_iterator it = childrenToReparent.begin();
5014 it != childrenToReparent.end();
5015 ++it)
5016 {
5017 /* VD_OPEN_FLAGS_INFO since UUID is wrong yet */
5018 vrc = VDOpen(hdd,
5019 (*it)->m->strFormat.c_str(),
5020 (*it)->m->strLocationFull.c_str(),
5021 VD_OPEN_FLAGS_INFO,
5022 (*it)->m->vdDiskIfaces);
5023 if (RT_FAILURE(vrc))
5024 throw vrc;
5025
5026 vrc = VDSetParentUuid(hdd, VD_LAST_IMAGE, m->id);
5027 if (RT_FAILURE(vrc))
5028 throw vrc;
5029
5030 vrc = VDClose(hdd, false /* fDelete */);
5031 if (RT_FAILURE(vrc))
5032 throw vrc;
5033
5034 (*it)->UnlockWrite(NULL);
5035 }
5036 }
5037 catch (HRESULT aRC) { rc = aRC; }
5038 catch (int aVRC)
5039 {
5040 throw setError(E_FAIL,
5041 tr("Could not update medium UUID references to parent '%s' (%s)"),
5042 m->strLocationFull.raw(),
5043 vdError(aVRC).raw());
5044 }
5045
5046 VDDestroy(hdd);
5047 }
5048 catch (HRESULT aRC) { rc = aRC; }
5049
5050 return rc;
5051}
5052
5053/**
5054 * Runs Medium::Task::handler() on the current thread instead of creating
5055 * a new one.
5056 *
5057 * This call implies that it is made on another temporary thread created for
5058 * some asynchronous task. Avoid calling it from a normal thread since the task
5059 * operations are potentially lengthy and will block the calling thread in this
5060 * case.
5061 *
5062 * @note When the task is executed by this method, IProgress::notifyComplete()
5063 * is not called for the progress object associated with this task when
5064 * the task is finished. Instead, the result of the operation is returned
5065 * by this method directly and it's the caller's responsibility to
5066 * complete the progress object in this case.
5067 */
5068HRESULT Medium::runNow(Medium::Task *pTask,
5069 bool *pfNeedsSaveSettings)
5070{
5071#ifdef VBOX_WITH_MAIN_LOCK_VALIDATION
5072 /* Extreme paranoia: The calling thread should not hold the medium
5073 * tree lock or any medium lock. Since there is no separate lock class
5074 * for medium objects be even more strict: no other object locks. */
5075 Assert(!AutoLockHoldsLocksInClass(LOCKCLASS_LISTOFMEDIA));
5076 Assert(!AutoLockHoldsLocksInClass(getLockingClass()));
5077#endif
5078
5079 pTask->m_pfNeedsSaveSettings = pfNeedsSaveSettings;
5080
5081 /* NIL_RTTHREAD indicates synchronous call. */
5082 return (HRESULT)Medium::Task::fntMediumTask(NIL_RTTHREAD, pTask);
5083}
5084
5085/**
5086 * Implementation code for the "create base" task.
5087 *
5088 * This only gets started from Medium::CreateBaseStorage() and always runs
5089 * asynchronously. As a result, we always save the VirtualBox.xml file when
5090 * we're done here.
5091 *
5092 * @param task
5093 * @return
5094 */
5095HRESULT Medium::taskCreateBaseHandler(Medium::CreateBaseTask &task)
5096{
5097 HRESULT rc = S_OK;
5098
5099 /* these parameters we need after creation */
5100 uint64_t size = 0, logicalSize = 0;
5101 bool fGenerateUuid = false;
5102
5103 try
5104 {
5105 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
5106
5107 /* The object may request a specific UUID (through a special form of
5108 * the setLocation() argument). Otherwise we have to generate it */
5109 Guid id = m->id;
5110 fGenerateUuid = id.isEmpty();
5111 if (fGenerateUuid)
5112 {
5113 id.create();
5114 /* VirtualBox::registerHardDisk() will need UUID */
5115 unconst(m->id) = id;
5116 }
5117
5118 Utf8Str format(m->strFormat);
5119 Utf8Str location(m->strLocationFull);
5120 uint64_t capabilities = m->formatObj->capabilities();
5121 ComAssertThrow(capabilities & ( VD_CAP_CREATE_FIXED
5122 | VD_CAP_CREATE_DYNAMIC), E_FAIL);
5123 Assert(m->state == MediumState_Creating);
5124
5125 PVBOXHDD hdd;
5126 int vrc = VDCreate(m->vdDiskIfaces, &hdd);
5127 ComAssertRCThrow(vrc, E_FAIL);
5128
5129 /* unlock before the potentially lengthy operation */
5130 thisLock.leave();
5131
5132 try
5133 {
5134 /* ensure the directory exists */
5135 rc = VirtualBox::ensureFilePathExists(location);
5136 if (FAILED(rc))
5137 throw rc;
5138
5139 PDMMEDIAGEOMETRY geo = { 0, 0, 0 }; /* auto-detect */
5140
5141 vrc = VDCreateBase(hdd,
5142 format.c_str(),
5143 location.c_str(),
5144 task.mSize * _1M,
5145 task.mVariant,
5146 NULL,
5147 &geo,
5148 &geo,
5149 id.raw(),
5150 VD_OPEN_FLAGS_NORMAL,
5151 NULL,
5152 task.mVDOperationIfaces);
5153 if (RT_FAILURE(vrc))
5154 {
5155 throw setError(E_FAIL,
5156 tr("Could not create the hard disk storage unit '%s'%s"),
5157 location.raw(), vdError(vrc).raw());
5158 }
5159
5160 size = VDGetFileSize(hdd, 0);
5161 logicalSize = VDGetSize(hdd, 0) / _1M;
5162 }
5163 catch (HRESULT aRC) { rc = aRC; }
5164
5165 VDDestroy(hdd);
5166 }
5167 catch (HRESULT aRC) { rc = aRC; }
5168
5169 if (SUCCEEDED(rc))
5170 {
5171 /* register with mVirtualBox as the last step and move to
5172 * Created state only on success (leaving an orphan file is
5173 * better than breaking media registry consistency) */
5174 bool fNeedsSaveSettings = false;
5175 AutoWriteLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
5176 rc = m->pVirtualBox->registerHardDisk(this, &fNeedsSaveSettings);
5177 treeLock.release();
5178
5179 if (fNeedsSaveSettings)
5180 {
5181 AutoWriteLock vboxlock(m->pVirtualBox COMMA_LOCKVAL_SRC_POS);
5182 m->pVirtualBox->saveSettings();
5183 }
5184 }
5185
5186 // reenter the lock before changing state
5187 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
5188
5189 if (SUCCEEDED(rc))
5190 {
5191 m->state = MediumState_Created;
5192
5193 m->size = size;
5194 m->logicalSize = logicalSize;
5195 }
5196 else
5197 {
5198 /* back to NotCreated on failure */
5199 m->state = MediumState_NotCreated;
5200
5201 /* reset UUID to prevent it from being reused next time */
5202 if (fGenerateUuid)
5203 unconst(m->id).clear();
5204 }
5205
5206 return rc;
5207}
5208
5209/**
5210 * Implementation code for the "create diff" task.
5211 *
5212 * This task always gets started from Medium::createDiffStorage() and can run
5213 * synchronously or asynchronously depending on the "wait" parameter passed to
5214 * that function. If we run synchronously, the caller expects the bool
5215 * *pfNeedsSaveSettings to be set before returning; otherwise (in asynchronous
5216 * mode), we save the settings ourselves.
5217 *
5218 * @param task
5219 * @return
5220 */
5221HRESULT Medium::taskCreateDiffHandler(Medium::CreateDiffTask &task)
5222{
5223 HRESULT rc = S_OK;
5224
5225 bool fNeedsSaveSettings = false;
5226
5227 const ComObjPtr<Medium> &pTarget = task.mTarget;
5228
5229 uint64_t size = 0, logicalSize = 0;
5230 bool fGenerateUuid = false;
5231
5232 try
5233 {
5234 /* Lock both in {parent,child} order. */
5235 AutoMultiWriteLock2 mediaLock(this, pTarget COMMA_LOCKVAL_SRC_POS);
5236
5237 /* The object may request a specific UUID (through a special form of
5238 * the setLocation() argument). Otherwise we have to generate it */
5239 Guid targetId = pTarget->m->id;
5240 fGenerateUuid = targetId.isEmpty();
5241 if (fGenerateUuid)
5242 {
5243 targetId.create();
5244 /* VirtualBox::registerHardDisk() will need UUID */
5245 unconst(pTarget->m->id) = targetId;
5246 }
5247
5248 Guid id = m->id;
5249
5250 Utf8Str targetFormat(pTarget->m->strFormat);
5251 Utf8Str targetLocation(pTarget->m->strLocationFull);
5252 uint64_t capabilities = m->formatObj->capabilities();
5253 ComAssertThrow(capabilities & VD_CAP_CREATE_DYNAMIC, E_FAIL);
5254
5255 Assert(pTarget->m->state == MediumState_Creating);
5256 Assert(m->state == MediumState_LockedRead);
5257
5258 PVBOXHDD hdd;
5259 int vrc = VDCreate(m->vdDiskIfaces, &hdd);
5260 ComAssertRCThrow(vrc, E_FAIL);
5261
5262 /* the two media are now protected by their non-default states;
5263 * unlock the media before the potentially lengthy operation */
5264 mediaLock.leave();
5265
5266 try
5267 {
5268 /* Open all hard disk images in the target chain but the last. */
5269 MediumLockList::Base::const_iterator targetListBegin =
5270 task.mpMediumLockList->GetBegin();
5271 MediumLockList::Base::const_iterator targetListEnd =
5272 task.mpMediumLockList->GetEnd();
5273 for (MediumLockList::Base::const_iterator it = targetListBegin;
5274 it != targetListEnd;
5275 ++it)
5276 {
5277 const MediumLock &mediumLock = *it;
5278 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
5279
5280 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
5281
5282 /* Skip over the target diff image */
5283 if (pMedium->m->state == MediumState_Creating)
5284 continue;
5285
5286 /* sanity check */
5287 Assert(pMedium->m->state == MediumState_LockedRead);
5288
5289 /* Open all images in appropriate mode. */
5290 vrc = VDOpen(hdd,
5291 pMedium->m->strFormat.c_str(),
5292 pMedium->m->strLocationFull.c_str(),
5293 VD_OPEN_FLAGS_READONLY,
5294 pMedium->m->vdDiskIfaces);
5295 if (RT_FAILURE(vrc))
5296 throw setError(E_FAIL,
5297 tr("Could not open the hard disk storage unit '%s'%s"),
5298 pMedium->m->strLocationFull.raw(),
5299 vdError(vrc).raw());
5300 }
5301
5302 /* ensure the target directory exists */
5303 rc = VirtualBox::ensureFilePathExists(targetLocation);
5304 if (FAILED(rc))
5305 throw rc;
5306
5307 vrc = VDCreateDiff(hdd,
5308 targetFormat.c_str(),
5309 targetLocation.c_str(),
5310 task.mVariant | VD_IMAGE_FLAGS_DIFF,
5311 NULL,
5312 targetId.raw(),
5313 id.raw(),
5314 VD_OPEN_FLAGS_NORMAL,
5315 pTarget->m->vdDiskIfaces,
5316 task.mVDOperationIfaces);
5317 if (RT_FAILURE(vrc))
5318 throw setError(E_FAIL,
5319 tr("Could not create the differencing hard disk storage unit '%s'%s"),
5320 targetLocation.raw(), vdError(vrc).raw());
5321
5322 size = VDGetFileSize(hdd, VD_LAST_IMAGE);
5323 logicalSize = VDGetSize(hdd, VD_LAST_IMAGE) / _1M;
5324 }
5325 catch (HRESULT aRC) { rc = aRC; }
5326
5327 VDDestroy(hdd);
5328 }
5329 catch (HRESULT aRC) { rc = aRC; }
5330
5331 if (SUCCEEDED(rc))
5332 {
5333 AutoWriteLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
5334
5335 Assert(pTarget->m->pParent.isNull());
5336
5337 /* associate the child with the parent */
5338 pTarget->m->pParent = this;
5339 m->llChildren.push_back(pTarget);
5340
5341 /** @todo r=klaus neither target nor base() are locked,
5342 * potential race! */
5343 /* diffs for immutable hard disks are auto-reset by default */
5344 pTarget->m->autoReset = (getBase()->m->type == MediumType_Immutable);
5345
5346 /* register with mVirtualBox as the last step and move to
5347 * Created state only on success (leaving an orphan file is
5348 * better than breaking media registry consistency) */
5349 rc = m->pVirtualBox->registerHardDisk(pTarget, &fNeedsSaveSettings);
5350
5351 if (FAILED(rc))
5352 /* break the parent association on failure to register */
5353 deparent();
5354 }
5355
5356 AutoMultiWriteLock2 mediaLock(this, pTarget COMMA_LOCKVAL_SRC_POS);
5357
5358 if (SUCCEEDED(rc))
5359 {
5360 pTarget->m->state = MediumState_Created;
5361
5362 pTarget->m->size = size;
5363 pTarget->m->logicalSize = logicalSize;
5364 }
5365 else
5366 {
5367 /* back to NotCreated on failure */
5368 pTarget->m->state = MediumState_NotCreated;
5369
5370 pTarget->m->autoReset = FALSE;
5371
5372 /* reset UUID to prevent it from being reused next time */
5373 if (fGenerateUuid)
5374 unconst(pTarget->m->id).clear();
5375 }
5376
5377 if (task.isAsync())
5378 {
5379 if (fNeedsSaveSettings)
5380 {
5381 mediaLock.leave();
5382 AutoWriteLock vboxlock(m->pVirtualBox COMMA_LOCKVAL_SRC_POS);
5383 m->pVirtualBox->saveSettings();
5384 }
5385 }
5386 else
5387 // synchronous mode: report save settings result to caller
5388 if (task.m_pfNeedsSaveSettings)
5389 *task.m_pfNeedsSaveSettings = fNeedsSaveSettings;
5390
5391 /* deregister the task registered in createDiffStorage() */
5392 Assert(m->numCreateDiffTasks != 0);
5393 --m->numCreateDiffTasks;
5394
5395 /* Note that in sync mode, it's the caller's responsibility to
5396 * unlock the hard disk */
5397
5398 return rc;
5399}
5400
5401/**
5402 * Implementation code for the "merge" task.
5403 *
5404 * This task always gets started from Medium::mergeTo() and can run
5405 * synchronously or asynchrously depending on the "wait" parameter passed to
5406 * that function. If we run synchronously, the caller expects the bool
5407 * *pfNeedsSaveSettings to be set before returning; otherwise (in asynchronous
5408 * mode), we save the settings ourselves.
5409 *
5410 * @param task
5411 * @return
5412 */
5413HRESULT Medium::taskMergeHandler(Medium::MergeTask &task)
5414{
5415 HRESULT rc = S_OK;
5416
5417 const ComObjPtr<Medium> &pTarget = task.mTarget;
5418
5419 try
5420 {
5421 PVBOXHDD hdd;
5422 int vrc = VDCreate(m->vdDiskIfaces, &hdd);
5423 ComAssertRCThrow(vrc, E_FAIL);
5424
5425 try
5426 {
5427 // Similar code appears in SessionMachine::onlineMergeMedium, so
5428 // if you make any changes below check whether they are applicable
5429 // in that context as well.
5430
5431 unsigned uTargetIdx = VD_LAST_IMAGE;
5432 unsigned uSourceIdx = VD_LAST_IMAGE;
5433 /* Open all hard disks in the chain. */
5434 MediumLockList::Base::iterator lockListBegin =
5435 task.mpMediumLockList->GetBegin();
5436 MediumLockList::Base::iterator lockListEnd =
5437 task.mpMediumLockList->GetEnd();
5438 unsigned i = 0;
5439 for (MediumLockList::Base::iterator it = lockListBegin;
5440 it != lockListEnd;
5441 ++it)
5442 {
5443 MediumLock &mediumLock = *it;
5444 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
5445
5446 if (pMedium == this)
5447 uSourceIdx = i;
5448 else if (pMedium == pTarget)
5449 uTargetIdx = i;
5450
5451 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
5452
5453 /*
5454 * complex sanity (sane complexity)
5455 *
5456 * The current image must be in the Deleting (image is merged)
5457 * or LockedRead (parent image) state if it is not the target.
5458 * If it is the target it must be in the LockedWrite state.
5459 */
5460 Assert( ( pMedium != pTarget
5461 && ( pMedium->m->state == MediumState_Deleting
5462 || pMedium->m->state == MediumState_LockedRead))
5463 || ( pMedium == pTarget
5464 && pMedium->m->state == MediumState_LockedWrite));
5465
5466 /*
5467 * Image must be the target, in the LockedRead state
5468 * or Deleting state where it is not allowed to be attached
5469 * to a virtual machine.
5470 */
5471 Assert( pMedium == pTarget
5472 || pMedium->m->state == MediumState_LockedRead
5473 || ( pMedium->m->backRefs.size() == 0
5474 && pMedium->m->state == MediumState_Deleting));
5475 /* The source medium must be in Deleting state. */
5476 Assert( pMedium != this
5477 || pMedium->m->state == MediumState_Deleting);
5478
5479 unsigned uOpenFlags = 0;
5480
5481 if ( pMedium->m->state == MediumState_LockedRead
5482 || pMedium->m->state == MediumState_Deleting)
5483 uOpenFlags = VD_OPEN_FLAGS_READONLY;
5484
5485 /* Open the image */
5486 vrc = VDOpen(hdd,
5487 pMedium->m->strFormat.c_str(),
5488 pMedium->m->strLocationFull.c_str(),
5489 uOpenFlags,
5490 pMedium->m->vdDiskIfaces);
5491 if (RT_FAILURE(vrc))
5492 throw vrc;
5493
5494 i++;
5495 }
5496
5497 ComAssertThrow( uSourceIdx != VD_LAST_IMAGE
5498 && uTargetIdx != VD_LAST_IMAGE, E_FAIL);
5499
5500 vrc = VDMerge(hdd, uSourceIdx, uTargetIdx,
5501 task.mVDOperationIfaces);
5502 if (RT_FAILURE(vrc))
5503 throw vrc;
5504
5505 /* update parent UUIDs */
5506 if (!task.mfMergeForward)
5507 {
5508 /* we need to update UUIDs of all source's children
5509 * which cannot be part of the container at once so
5510 * add each one in there individually */
5511 if (task.mChildrenToReparent.size() > 0)
5512 {
5513 for (MediaList::const_iterator it = task.mChildrenToReparent.begin();
5514 it != task.mChildrenToReparent.end();
5515 ++it)
5516 {
5517 /* VD_OPEN_FLAGS_INFO since UUID is wrong yet */
5518 vrc = VDOpen(hdd,
5519 (*it)->m->strFormat.c_str(),
5520 (*it)->m->strLocationFull.c_str(),
5521 VD_OPEN_FLAGS_INFO,
5522 (*it)->m->vdDiskIfaces);
5523 if (RT_FAILURE(vrc))
5524 throw vrc;
5525
5526 vrc = VDSetParentUuid(hdd, VD_LAST_IMAGE,
5527 pTarget->m->id);
5528 if (RT_FAILURE(vrc))
5529 throw vrc;
5530
5531 vrc = VDClose(hdd, false /* fDelete */);
5532 if (RT_FAILURE(vrc))
5533 throw vrc;
5534
5535 (*it)->UnlockWrite(NULL);
5536 }
5537 }
5538 }
5539 }
5540 catch (HRESULT aRC) { rc = aRC; }
5541 catch (int aVRC)
5542 {
5543 throw setError(E_FAIL,
5544 tr("Could not merge the hard disk '%s' to '%s'%s"),
5545 m->strLocationFull.raw(),
5546 pTarget->m->strLocationFull.raw(),
5547 vdError(aVRC).raw());
5548 }
5549
5550 VDDestroy(hdd);
5551 }
5552 catch (HRESULT aRC) { rc = aRC; }
5553
5554 HRESULT rc2;
5555
5556 if (SUCCEEDED(rc))
5557 {
5558 /* all hard disks but the target were successfully deleted by
5559 * VDMerge; reparent the last one and uninitialize deleted media. */
5560
5561 AutoWriteLock treeLock(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
5562
5563 if (task.mfMergeForward)
5564 {
5565 /* first, unregister the target since it may become a base
5566 * hard disk which needs re-registration */
5567 rc2 = m->pVirtualBox->unregisterHardDisk(pTarget, NULL /*&fNeedsSaveSettings*/);
5568 AssertComRC(rc2);
5569
5570 /* then, reparent it and disconnect the deleted branch at
5571 * both ends (chain->parent() is source's parent) */
5572 pTarget->deparent();
5573 pTarget->m->pParent = task.mParentForTarget;
5574 if (pTarget->m->pParent)
5575 {
5576 pTarget->m->pParent->m->llChildren.push_back(pTarget);
5577 deparent();
5578 }
5579
5580 /* then, register again */
5581 rc2 = m->pVirtualBox->registerHardDisk(pTarget, NULL /*&fNeedsSaveSettings*/);
5582 AssertComRC(rc2);
5583 }
5584 else
5585 {
5586 Assert(pTarget->getChildren().size() == 1);
5587 Medium *targetChild = pTarget->getChildren().front();
5588
5589 /* disconnect the deleted branch at the elder end */
5590 targetChild->deparent();
5591
5592 /* reparent source's children and disconnect the deleted
5593 * branch at the younger end */
5594 if (task.mChildrenToReparent.size() > 0)
5595 {
5596 /* obey {parent,child} lock order */
5597 AutoWriteLock sourceLock(this COMMA_LOCKVAL_SRC_POS);
5598
5599 for (MediaList::const_iterator it = task.mChildrenToReparent.begin();
5600 it != task.mChildrenToReparent.end();
5601 it++)
5602 {
5603 Medium *pMedium = *it;
5604 AutoWriteLock childLock(pMedium COMMA_LOCKVAL_SRC_POS);
5605
5606 pMedium->deparent(); // removes pMedium from source
5607 pMedium->setParent(pTarget);
5608 }
5609 }
5610 }
5611
5612 /* unregister and uninitialize all hard disks removed by the merge */
5613 MediumLockList::Base::iterator lockListBegin =
5614 task.mpMediumLockList->GetBegin();
5615 MediumLockList::Base::iterator lockListEnd =
5616 task.mpMediumLockList->GetEnd();
5617 for (MediumLockList::Base::iterator it = lockListBegin;
5618 it != lockListEnd;
5619 )
5620 {
5621 MediumLock &mediumLock = *it;
5622 /* Create a real copy of the medium pointer, as the medium
5623 * lock deletion below would invalidate the referenced object. */
5624 const ComObjPtr<Medium> pMedium = mediumLock.GetMedium();
5625
5626 /* The target and all images not merged (readonly) are skipped */
5627 if ( pMedium == pTarget
5628 || pMedium->m->state == MediumState_LockedRead)
5629 {
5630 ++it;
5631 continue;
5632 }
5633
5634 rc2 = pMedium->m->pVirtualBox->unregisterHardDisk(pMedium,
5635 NULL /*pfNeedsSaveSettings*/);
5636 AssertComRC(rc2);
5637
5638 /* now, uninitialize the deleted hard disk (note that
5639 * due to the Deleting state, uninit() will not touch
5640 * the parent-child relationship so we need to
5641 * uninitialize each disk individually) */
5642
5643 /* note that the operation initiator hard disk (which is
5644 * normally also the source hard disk) is a special case
5645 * -- there is one more caller added by Task to it which
5646 * we must release. Also, if we are in sync mode, the
5647 * caller may still hold an AutoCaller instance for it
5648 * and therefore we cannot uninit() it (it's therefore
5649 * the caller's responsibility) */
5650 if (pMedium == this)
5651 {
5652 Assert(getChildren().size() == 0);
5653 Assert(m->backRefs.size() == 0);
5654 task.mMediumCaller.release();
5655 }
5656
5657 /* Delete the medium lock list entry, which also releases the
5658 * caller added by MergeChain before uninit() and updates the
5659 * iterator to point to the right place. */
5660 rc2 = task.mpMediumLockList->RemoveByIterator(it);
5661 AssertComRC(rc2);
5662
5663 if (task.isAsync() || pMedium != this)
5664 pMedium->uninit();
5665 }
5666 }
5667
5668 if (task.isAsync())
5669 {
5670 // in asynchronous mode, save settings now
5671 AutoWriteLock vboxlock(m->pVirtualBox COMMA_LOCKVAL_SRC_POS);
5672 m->pVirtualBox->saveSettings();
5673 }
5674 else
5675 // synchronous mode: report save settings result to caller
5676 if (task.m_pfNeedsSaveSettings)
5677 *task.m_pfNeedsSaveSettings = true;
5678
5679 if (FAILED(rc))
5680 {
5681 /* Here we come if either VDMerge() failed (in which case we
5682 * assume that it tried to do everything to make a further
5683 * retry possible -- e.g. not deleted intermediate hard disks
5684 * and so on) or VirtualBox::saveSettings() failed (where we
5685 * should have the original tree but with intermediate storage
5686 * units deleted by VDMerge()). We have to only restore states
5687 * (through the MergeChain dtor) unless we are run synchronously
5688 * in which case it's the responsibility of the caller as stated
5689 * in the mergeTo() docs. The latter also implies that we
5690 * don't own the merge chain, so release it in this case. */
5691 if (task.isAsync())
5692 {
5693 Assert(task.mChildrenToReparent.size() == 0);
5694 cancelMergeTo(task.mChildrenToReparent, task.mpMediumLockList);
5695 }
5696 }
5697
5698 return rc;
5699}
5700
5701/**
5702 * Implementation code for the "clone" task.
5703 *
5704 * This only gets started from Medium::CloneTo() and always runs asynchronously.
5705 * As a result, we always save the VirtualBox.xml file when we're done here.
5706 *
5707 * @param task
5708 * @return
5709 */
5710HRESULT Medium::taskCloneHandler(Medium::CloneTask &task)
5711{
5712 HRESULT rc = S_OK;
5713
5714 const ComObjPtr<Medium> &pTarget = task.mTarget;
5715 const ComObjPtr<Medium> &pParent = task.mParent;
5716
5717 bool fCreatingTarget = false;
5718
5719 uint64_t size = 0, logicalSize = 0;
5720 bool fGenerateUuid = false;
5721
5722 try
5723 {
5724 /* Lock all in {parent,child} order. The lock is also used as a
5725 * signal from the task initiator (which releases it only after
5726 * RTThreadCreate()) that we can start the job. */
5727 AutoMultiWriteLock3 thisLock(this, pTarget, pParent COMMA_LOCKVAL_SRC_POS);
5728
5729 fCreatingTarget = pTarget->m->state == MediumState_Creating;
5730
5731 /* The object may request a specific UUID (through a special form of
5732 * the setLocation() argument). Otherwise we have to generate it */
5733 Guid targetId = pTarget->m->id;
5734 fGenerateUuid = targetId.isEmpty();
5735 if (fGenerateUuid)
5736 {
5737 targetId.create();
5738 /* VirtualBox::registerHardDisk() will need UUID */
5739 unconst(pTarget->m->id) = targetId;
5740 }
5741
5742 PVBOXHDD hdd;
5743 int vrc = VDCreate(m->vdDiskIfaces, &hdd);
5744 ComAssertRCThrow(vrc, E_FAIL);
5745
5746 try
5747 {
5748 /* Open all hard disk images in the source chain. */
5749 MediumLockList::Base::const_iterator sourceListBegin =
5750 task.mpSourceMediumLockList->GetBegin();
5751 MediumLockList::Base::const_iterator sourceListEnd =
5752 task.mpSourceMediumLockList->GetEnd();
5753 for (MediumLockList::Base::const_iterator it = sourceListBegin;
5754 it != sourceListEnd;
5755 ++it)
5756 {
5757 const MediumLock &mediumLock = *it;
5758 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
5759 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
5760
5761 /* sanity check */
5762 Assert(pMedium->m->state == MediumState_LockedRead);
5763
5764 /** Open all images in read-only mode. */
5765 vrc = VDOpen(hdd,
5766 pMedium->m->strFormat.c_str(),
5767 pMedium->m->strLocationFull.c_str(),
5768 VD_OPEN_FLAGS_READONLY,
5769 pMedium->m->vdDiskIfaces);
5770 if (RT_FAILURE(vrc))
5771 throw setError(E_FAIL,
5772 tr("Could not open the hard disk storage unit '%s'%s"),
5773 pMedium->m->strLocationFull.raw(),
5774 vdError(vrc).raw());
5775 }
5776
5777 Utf8Str targetFormat(pTarget->m->strFormat);
5778 Utf8Str targetLocation(pTarget->m->strLocationFull);
5779
5780 Assert( pTarget->m->state == MediumState_Creating
5781 || pTarget->m->state == MediumState_LockedWrite);
5782 Assert(m->state == MediumState_LockedRead);
5783 Assert(pParent.isNull() || pParent->m->state == MediumState_LockedRead);
5784
5785 /* unlock before the potentially lengthy operation */
5786 thisLock.leave();
5787
5788 /* ensure the target directory exists */
5789 rc = VirtualBox::ensureFilePathExists(targetLocation);
5790 if (FAILED(rc))
5791 throw rc;
5792
5793 PVBOXHDD targetHdd;
5794 vrc = VDCreate(m->vdDiskIfaces, &targetHdd);
5795 ComAssertRCThrow(vrc, E_FAIL);
5796
5797 try
5798 {
5799 /* Open all hard disk images in the target chain. */
5800 MediumLockList::Base::const_iterator targetListBegin =
5801 task.mpTargetMediumLockList->GetBegin();
5802 MediumLockList::Base::const_iterator targetListEnd =
5803 task.mpTargetMediumLockList->GetEnd();
5804 for (MediumLockList::Base::const_iterator it = targetListBegin;
5805 it != targetListEnd;
5806 ++it)
5807 {
5808 const MediumLock &mediumLock = *it;
5809 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
5810
5811 /* If the target medium is not created yet there's no
5812 * reason to open it. */
5813 if (pMedium == pTarget && fCreatingTarget)
5814 continue;
5815
5816 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
5817
5818 /* sanity check */
5819 Assert( pMedium->m->state == MediumState_LockedRead
5820 || pMedium->m->state == MediumState_LockedWrite);
5821
5822 /* Open all images in appropriate mode. */
5823 vrc = VDOpen(targetHdd,
5824 pMedium->m->strFormat.c_str(),
5825 pMedium->m->strLocationFull.c_str(),
5826 (pMedium->m->state == MediumState_LockedWrite) ? VD_OPEN_FLAGS_NORMAL : VD_OPEN_FLAGS_READONLY,
5827 pMedium->m->vdDiskIfaces);
5828 if (RT_FAILURE(vrc))
5829 throw setError(E_FAIL,
5830 tr("Could not open the hard disk storage unit '%s'%s"),
5831 pMedium->m->strLocationFull.raw(),
5832 vdError(vrc).raw());
5833 }
5834
5835 /** @todo r=klaus target isn't locked, race getting the state */
5836 vrc = VDCopy(hdd,
5837 VD_LAST_IMAGE,
5838 targetHdd,
5839 targetFormat.c_str(),
5840 (fCreatingTarget) ? targetLocation.raw() : (char *)NULL,
5841 false,
5842 0,
5843 task.mVariant,
5844 targetId.raw(),
5845 NULL,
5846 pTarget->m->vdDiskIfaces,
5847 task.mVDOperationIfaces);
5848 if (RT_FAILURE(vrc))
5849 throw setError(E_FAIL,
5850 tr("Could not create the clone hard disk '%s'%s"),
5851 targetLocation.raw(), vdError(vrc).raw());
5852
5853 size = VDGetFileSize(targetHdd, VD_LAST_IMAGE);
5854 logicalSize = VDGetSize(targetHdd, VD_LAST_IMAGE) / _1M;
5855 }
5856 catch (HRESULT aRC) { rc = aRC; }
5857
5858 VDDestroy(targetHdd);
5859 }
5860 catch (HRESULT aRC) { rc = aRC; }
5861
5862 VDDestroy(hdd);
5863 }
5864 catch (HRESULT aRC) { rc = aRC; }
5865
5866 /* Only do the parent changes for newly created images. */
5867 if (SUCCEEDED(rc) && fCreatingTarget)
5868 {
5869 /* we set mParent & children() */
5870 AutoWriteLock alock2(m->pVirtualBox->getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
5871
5872 Assert(pTarget->m->pParent.isNull());
5873
5874 if (pParent)
5875 {
5876 /* associate the clone with the parent and deassociate
5877 * from VirtualBox */
5878 pTarget->m->pParent = pParent;
5879 pParent->m->llChildren.push_back(pTarget);
5880
5881 /* register with mVirtualBox as the last step and move to
5882 * Created state only on success (leaving an orphan file is
5883 * better than breaking media registry consistency) */
5884 rc = pParent->m->pVirtualBox->registerHardDisk(pTarget, NULL /* pfNeedsSaveSettings */);
5885
5886 if (FAILED(rc))
5887 /* break parent association on failure to register */
5888 pTarget->deparent(); // removes target from parent
5889 }
5890 else
5891 {
5892 /* just register */
5893 rc = m->pVirtualBox->registerHardDisk(pTarget, NULL /* pfNeedsSaveSettings */);
5894 }
5895 }
5896
5897 if (fCreatingTarget)
5898 {
5899 AutoWriteLock mLock(pTarget COMMA_LOCKVAL_SRC_POS);
5900
5901 if (SUCCEEDED(rc))
5902 {
5903 pTarget->m->state = MediumState_Created;
5904
5905 pTarget->m->size = size;
5906 pTarget->m->logicalSize = logicalSize;
5907 }
5908 else
5909 {
5910 /* back to NotCreated on failure */
5911 pTarget->m->state = MediumState_NotCreated;
5912
5913 /* reset UUID to prevent it from being reused next time */
5914 if (fGenerateUuid)
5915 unconst(pTarget->m->id).clear();
5916 }
5917 }
5918
5919 // now, at the end of this task (always asynchronous), save the settings
5920 {
5921 AutoWriteLock vboxlock(m->pVirtualBox COMMA_LOCKVAL_SRC_POS);
5922 m->pVirtualBox->saveSettings();
5923 }
5924
5925 /* Everything is explicitly unlocked when the task exits,
5926 * as the task destruction also destroys the source chain. */
5927
5928 /* Make sure the source chain is released early. It could happen
5929 * that we get a deadlock in Appliance::Import when Medium::Close
5930 * is called & the source chain is released at the same time. */
5931 task.mpSourceMediumLockList->Clear();
5932
5933 return rc;
5934}
5935
5936/**
5937 * Implementation code for the "delete" task.
5938 *
5939 * This task always gets started from Medium::deleteStorage() and can run
5940 * synchronously or asynchrously depending on the "wait" parameter passed to
5941 * that function.
5942 *
5943 * @param task
5944 * @return
5945 */
5946HRESULT Medium::taskDeleteHandler(Medium::DeleteTask &task)
5947{
5948 NOREF(task);
5949 HRESULT rc = S_OK;
5950
5951 try
5952 {
5953 /* The lock is also used as a signal from the task initiator (which
5954 * releases it only after RTThreadCreate()) that we can start the job */
5955 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
5956
5957 PVBOXHDD hdd;
5958 int vrc = VDCreate(m->vdDiskIfaces, &hdd);
5959 ComAssertRCThrow(vrc, E_FAIL);
5960
5961 Utf8Str format(m->strFormat);
5962 Utf8Str location(m->strLocationFull);
5963
5964 /* unlock before the potentially lengthy operation */
5965 Assert(m->state == MediumState_Deleting);
5966 thisLock.release();
5967
5968 try
5969 {
5970 vrc = VDOpen(hdd,
5971 format.c_str(),
5972 location.c_str(),
5973 VD_OPEN_FLAGS_READONLY | VD_OPEN_FLAGS_INFO,
5974 m->vdDiskIfaces);
5975 if (RT_SUCCESS(vrc))
5976 vrc = VDClose(hdd, true /* fDelete */);
5977
5978 if (RT_FAILURE(vrc))
5979 throw setError(E_FAIL,
5980 tr("Could not delete the hard disk storage unit '%s'%s"),
5981 location.raw(), vdError(vrc).raw());
5982
5983 }
5984 catch (HRESULT aRC) { rc = aRC; }
5985
5986 VDDestroy(hdd);
5987 }
5988 catch (HRESULT aRC) { rc = aRC; }
5989
5990 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
5991
5992 /* go to the NotCreated state even on failure since the storage
5993 * may have been already partially deleted and cannot be used any
5994 * more. One will be able to manually re-open the storage if really
5995 * needed to re-register it. */
5996 m->state = MediumState_NotCreated;
5997
5998 /* Reset UUID to prevent Create* from reusing it again */
5999 unconst(m->id).clear();
6000
6001 return rc;
6002}
6003
6004/**
6005 * Implementation code for the "reset" task.
6006 *
6007 * This always gets started asynchronously from Medium::Reset().
6008 *
6009 * @param task
6010 * @return
6011 */
6012HRESULT Medium::taskResetHandler(Medium::ResetTask &task)
6013{
6014 HRESULT rc = S_OK;
6015
6016 uint64_t size = 0, logicalSize = 0;
6017
6018 try
6019 {
6020 /* The lock is also used as a signal from the task initiator (which
6021 * releases it only after RTThreadCreate()) that we can start the job */
6022 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
6023
6024 /// @todo Below we use a pair of delete/create operations to reset
6025 /// the diff contents but the most efficient way will of course be
6026 /// to add a VDResetDiff() API call
6027
6028 PVBOXHDD hdd;
6029 int vrc = VDCreate(m->vdDiskIfaces, &hdd);
6030 ComAssertRCThrow(vrc, E_FAIL);
6031
6032 Guid id = m->id;
6033 Utf8Str format(m->strFormat);
6034 Utf8Str location(m->strLocationFull);
6035
6036 Medium *pParent = m->pParent;
6037 Guid parentId = pParent->m->id;
6038 Utf8Str parentFormat(pParent->m->strFormat);
6039 Utf8Str parentLocation(pParent->m->strLocationFull);
6040
6041 Assert(m->state == MediumState_LockedWrite);
6042
6043 /* unlock before the potentially lengthy operation */
6044 thisLock.release();
6045
6046 try
6047 {
6048 /* Open all hard disk images in the target chain but the last. */
6049 MediumLockList::Base::const_iterator targetListBegin =
6050 task.mpMediumLockList->GetBegin();
6051 MediumLockList::Base::const_iterator targetListEnd =
6052 task.mpMediumLockList->GetEnd();
6053 for (MediumLockList::Base::const_iterator it = targetListBegin;
6054 it != targetListEnd;
6055 ++it)
6056 {
6057 const MediumLock &mediumLock = *it;
6058 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
6059
6060 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
6061
6062 /* sanity check */
6063 Assert(pMedium->m->state == MediumState_LockedRead);
6064
6065 /* Open all images in appropriate mode. */
6066 vrc = VDOpen(hdd,
6067 pMedium->m->strFormat.c_str(),
6068 pMedium->m->strLocationFull.c_str(),
6069 VD_OPEN_FLAGS_READONLY,
6070 pMedium->m->vdDiskIfaces);
6071 if (RT_FAILURE(vrc))
6072 throw setError(E_FAIL,
6073 tr("Could not open the hard disk storage unit '%s'%s"),
6074 pMedium->m->strLocationFull.raw(),
6075 vdError(vrc).raw());
6076
6077 /* Done when we hit the image which should be reset */
6078 if (pMedium == this)
6079 break;
6080 }
6081
6082 /* first, delete the storage unit */
6083 vrc = VDClose(hdd, true /* fDelete */);
6084 if (RT_FAILURE(vrc))
6085 throw setError(E_FAIL,
6086 tr("Could not delete the hard disk storage unit '%s'%s"),
6087 location.raw(), vdError(vrc).raw());
6088
6089 /* next, create it again */
6090 vrc = VDOpen(hdd,
6091 parentFormat.c_str(),
6092 parentLocation.c_str(),
6093 VD_OPEN_FLAGS_READONLY | VD_OPEN_FLAGS_INFO,
6094 m->vdDiskIfaces);
6095 if (RT_FAILURE(vrc))
6096 throw setError(E_FAIL,
6097 tr("Could not open the hard disk storage unit '%s'%s"),
6098 parentLocation.raw(), vdError(vrc).raw());
6099
6100 vrc = VDCreateDiff(hdd,
6101 format.c_str(),
6102 location.c_str(),
6103 /// @todo use the same image variant as before
6104 VD_IMAGE_FLAGS_NONE,
6105 NULL,
6106 id.raw(),
6107 parentId.raw(),
6108 VD_OPEN_FLAGS_NORMAL,
6109 m->vdDiskIfaces,
6110 task.mVDOperationIfaces);
6111 if (RT_FAILURE(vrc))
6112 throw setError(E_FAIL,
6113 tr("Could not create the differencing hard disk storage unit '%s'%s"),
6114 location.raw(), vdError(vrc).raw());
6115
6116 size = VDGetFileSize(hdd, VD_LAST_IMAGE);
6117 logicalSize = VDGetSize(hdd, VD_LAST_IMAGE) / _1M;
6118 }
6119 catch (HRESULT aRC) { rc = aRC; }
6120
6121 VDDestroy(hdd);
6122 }
6123 catch (HRESULT aRC) { rc = aRC; }
6124
6125 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
6126
6127 m->size = size;
6128 m->logicalSize = logicalSize;
6129
6130 if (task.isAsync())
6131 {
6132 /* unlock ourselves when done */
6133 HRESULT rc2 = UnlockWrite(NULL);
6134 AssertComRC(rc2);
6135 }
6136
6137 /* Note that in sync mode, it's the caller's responsibility to
6138 * unlock the hard disk */
6139
6140 return rc;
6141}
6142
6143/**
6144 * Implementation code for the "compact" task.
6145 *
6146 * @param task
6147 * @return
6148 */
6149HRESULT Medium::taskCompactHandler(Medium::CompactTask &task)
6150{
6151 HRESULT rc = S_OK;
6152
6153 /* Lock all in {parent,child} order. The lock is also used as a
6154 * signal from the task initiator (which releases it only after
6155 * RTThreadCreate()) that we can start the job. */
6156 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
6157
6158 try
6159 {
6160 PVBOXHDD hdd;
6161 int vrc = VDCreate(m->vdDiskIfaces, &hdd);
6162 ComAssertRCThrow(vrc, E_FAIL);
6163
6164 try
6165 {
6166 /* Open all hard disk images in the chain. */
6167 MediumLockList::Base::const_iterator mediumListBegin =
6168 task.mpMediumLockList->GetBegin();
6169 MediumLockList::Base::const_iterator mediumListEnd =
6170 task.mpMediumLockList->GetEnd();
6171 MediumLockList::Base::const_iterator mediumListLast =
6172 mediumListEnd;
6173 mediumListLast--;
6174 for (MediumLockList::Base::const_iterator it = mediumListBegin;
6175 it != mediumListEnd;
6176 ++it)
6177 {
6178 const MediumLock &mediumLock = *it;
6179 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
6180 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
6181
6182 /* sanity check */
6183 if (it == mediumListLast)
6184 Assert(pMedium->m->state == MediumState_LockedWrite);
6185 else
6186 Assert(pMedium->m->state == MediumState_LockedRead);
6187
6188 /** Open all images but last in read-only mode. */
6189 vrc = VDOpen(hdd,
6190 pMedium->m->strFormat.c_str(),
6191 pMedium->m->strLocationFull.c_str(),
6192 (it == mediumListLast) ? VD_OPEN_FLAGS_NORMAL : VD_OPEN_FLAGS_READONLY,
6193 pMedium->m->vdDiskIfaces);
6194 if (RT_FAILURE(vrc))
6195 throw setError(E_FAIL,
6196 tr("Could not open the hard disk storage unit '%s'%s"),
6197 pMedium->m->strLocationFull.raw(),
6198 vdError(vrc).raw());
6199 }
6200
6201 Assert(m->state == MediumState_LockedWrite);
6202
6203 Utf8Str location(m->strLocationFull);
6204
6205 /* unlock before the potentially lengthy operation */
6206 thisLock.leave();
6207
6208 vrc = VDCompact(hdd, VD_LAST_IMAGE, task.mVDOperationIfaces);
6209 if (RT_FAILURE(vrc))
6210 {
6211 if (vrc == VERR_NOT_SUPPORTED)
6212 throw setError(VBOX_E_NOT_SUPPORTED,
6213 tr("Compacting is not yet supported for hard disk '%s'"),
6214 location.raw());
6215 else if (vrc == VERR_NOT_IMPLEMENTED)
6216 throw setError(E_NOTIMPL,
6217 tr("Compacting is not implemented, hard disk '%s'"),
6218 location.raw());
6219 else
6220 throw setError(E_FAIL,
6221 tr("Could not compact hard disk '%s'%s"),
6222 location.raw(),
6223 vdError(vrc).raw());
6224 }
6225 }
6226 catch (HRESULT aRC) { rc = aRC; }
6227
6228 VDDestroy(hdd);
6229 }
6230 catch (HRESULT aRC) { rc = aRC; }
6231
6232 /* Everything is explicitly unlocked when the task exits,
6233 * as the task destruction also destroys the image chain. */
6234
6235 return rc;
6236}
6237
6238/* vi: set tabstop=4 shiftwidth=4 expandtab: */
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