VirtualBox

source: vbox/trunk/src/VBox/Main/src-server/MediumImpl.cpp@ 99739

最後變更 在這個檔案從99739是 99739,由 vboxsync 提交於 23 月 前

*: doxygen corrections (mostly about removing @returns from functions returning void).

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1/* $Id: MediumImpl.cpp 99739 2023-05-11 01:01:08Z vboxsync $ */
2/** @file
3 * VirtualBox COM class implementation
4 */
5
6/*
7 * Copyright (C) 2008-2023 Oracle and/or its affiliates.
8 *
9 * This file is part of VirtualBox base platform packages, as
10 * available from https://www.alldomusa.eu.org.
11 *
12 * This program is free software; you can redistribute it and/or
13 * modify it under the terms of the GNU General Public License
14 * as published by the Free Software Foundation, in version 3 of the
15 * License.
16 *
17 * This program is distributed in the hope that it will be useful, but
18 * WITHOUT ANY WARRANTY; without even the implied warranty of
19 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
20 * General Public License for more details.
21 *
22 * You should have received a copy of the GNU General Public License
23 * along with this program; if not, see <https://www.gnu.org/licenses>.
24 *
25 * SPDX-License-Identifier: GPL-3.0-only
26 */
27
28#define LOG_GROUP LOG_GROUP_MAIN_MEDIUM
29#include "MediumImpl.h"
30#include "MediumIOImpl.h"
31#include "TokenImpl.h"
32#include "ProgressImpl.h"
33#include "SystemPropertiesImpl.h"
34#include "VirtualBoxImpl.h"
35#include "ExtPackManagerImpl.h"
36
37#include "AutoCaller.h"
38#include "Global.h"
39#include "LoggingNew.h"
40#include "ThreadTask.h"
41#include "VBox/com/MultiResult.h"
42#include "VBox/com/ErrorInfo.h"
43
44#include <VBox/err.h>
45#include <VBox/settings.h>
46
47#include <iprt/param.h>
48#include <iprt/path.h>
49#include <iprt/file.h>
50#include <iprt/cpp/utils.h>
51#include <iprt/memsafer.h>
52#include <iprt/base64.h>
53#include <iprt/vfs.h>
54#include <iprt/fsvfs.h>
55
56#include <VBox/vd.h>
57
58#include <algorithm>
59#include <list>
60#include <set>
61#include <map>
62
63
64typedef std::list<Guid> GuidList;
65
66
67#ifdef VBOX_WITH_EXTPACK
68static const char g_szVDPlugin[] = "VDPluginCrypt";
69#endif
70
71
72////////////////////////////////////////////////////////////////////////////////
73//
74// Medium data definition
75//
76////////////////////////////////////////////////////////////////////////////////
77#if __cplusplus < 201700 && RT_GNUC_PREREQ(11,0) /* gcc/libstdc++ 12.1.1 errors out here because unary_function is deprecated */
78# pragma GCC diagnostic push
79# pragma GCC diagnostic ignored "-Wdeprecated-declarations"
80#endif
81
82struct SnapshotRef
83{
84 /** Equality predicate for stdc++. */
85 struct EqualsTo
86#if __cplusplus < 201700 /* deprecated in C++11, removed in C++17. */
87 : public std::unary_function <SnapshotRef, bool>
88#endif
89 {
90 explicit EqualsTo(const Guid &aSnapshotId) : snapshotId(aSnapshotId) {}
91
92#if __cplusplus < 201700 /* deprecated in C++11, removed in C++17. */
93 bool operator()(const argument_type &aThat) const
94#else
95 bool operator()(const SnapshotRef &aThat) const
96#endif
97 {
98 return aThat.snapshotId == snapshotId;
99 }
100
101 const Guid snapshotId;
102 };
103
104 SnapshotRef(const Guid &aSnapshotId,
105 const int &aRefCnt = 1)
106 : snapshotId(aSnapshotId),
107 iRefCnt(aRefCnt) {}
108
109 Guid snapshotId;
110 /*
111 * The number of attachments of the medium in the same snapshot.
112 * Used for MediumType_Readonly. It is always equal to 1 for other types.
113 * Usual int is used because any changes in the BackRef are guarded by
114 * AutoWriteLock.
115 */
116 int iRefCnt;
117};
118
119/** Describes how a machine refers to this medium. */
120struct BackRef
121{
122 /** Equality predicate for stdc++. */
123 struct EqualsTo
124#if __cplusplus < 201700 /* deprecated in C++11, removed in C++17. */
125 : public std::unary_function <BackRef, bool>
126#endif
127 {
128 explicit EqualsTo(const Guid &aMachineId) : machineId(aMachineId) {}
129
130#if __cplusplus < 201700 /* deprecated in C++11, removed in C++17. */
131 bool operator()(const argument_type &aThat) const
132#else
133 bool operator()(const BackRef &aThat) const
134#endif
135 {
136 return aThat.machineId == machineId;
137 }
138
139 const Guid machineId;
140 };
141
142 BackRef(const Guid &aMachineId,
143 const Guid &aSnapshotId = Guid::Empty)
144 : machineId(aMachineId),
145 iRefCnt(1),
146 fInCurState(aSnapshotId.isZero())
147 {
148 if (aSnapshotId.isValid() && !aSnapshotId.isZero())
149 llSnapshotIds.push_back(SnapshotRef(aSnapshotId));
150 }
151
152 Guid machineId;
153 /*
154 * The number of attachments of the medium in the same machine.
155 * Used for MediumType_Readonly. It is always equal to 1 for other types.
156 * Usual int is used because any changes in the BackRef are guarded by
157 * AutoWriteLock.
158 */
159 int iRefCnt;
160 bool fInCurState : 1;
161 std::list<SnapshotRef> llSnapshotIds;
162};
163
164typedef std::list<BackRef> BackRefList;
165
166#if __cplusplus < 201700 && RT_GNUC_PREREQ(11,0)
167# pragma GCC diagnostic pop
168#endif
169
170
171struct Medium::Data
172{
173 Data()
174 : pVirtualBox(NULL),
175 state(MediumState_NotCreated),
176 variant(MediumVariant_Standard),
177 size(0),
178 readers(0),
179 preLockState(MediumState_NotCreated),
180 queryInfoSem(LOCKCLASS_MEDIUMQUERY),
181 queryInfoRunning(false),
182 type(MediumType_Normal),
183 devType(DeviceType_HardDisk),
184 logicalSize(0),
185 hddOpenMode(OpenReadWrite),
186 autoReset(false),
187 hostDrive(false),
188 implicit(false),
189 fClosing(false),
190 uOpenFlagsDef(VD_OPEN_FLAGS_IGNORE_FLUSH),
191 numCreateDiffTasks(0),
192 vdDiskIfaces(NULL),
193 vdImageIfaces(NULL),
194 fMoveThisMedium(false)
195 { }
196
197 /** weak VirtualBox parent */
198 VirtualBox * const pVirtualBox;
199
200 // pParent and llChildren are protected by VirtualBox::i_getMediaTreeLockHandle()
201 ComObjPtr<Medium> pParent;
202 MediaList llChildren; // to add a child, just call push_back; to remove
203 // a child, call child->deparent() which does a lookup
204
205 GuidList llRegistryIDs; // media registries in which this medium is listed
206
207 const Guid id;
208 Utf8Str strDescription;
209 MediumState_T state;
210 MediumVariant_T variant;
211 Utf8Str strLocationFull;
212 uint64_t size;
213 Utf8Str strLastAccessError;
214
215 BackRefList backRefs;
216
217 size_t readers;
218 MediumState_T preLockState;
219
220 /** Special synchronization for operations which must wait for
221 * Medium::i_queryInfo in another thread to complete. Using a SemRW is
222 * not quite ideal, but at least it is subject to the lock validator,
223 * unlike the SemEventMulti which we had here for many years. Catching
224 * possible deadlocks is more important than a tiny bit of efficiency. */
225 RWLockHandle queryInfoSem;
226 bool queryInfoRunning : 1;
227
228 const Utf8Str strFormat;
229 ComObjPtr<MediumFormat> formatObj;
230
231 MediumType_T type;
232 DeviceType_T devType;
233 uint64_t logicalSize;
234
235 HDDOpenMode hddOpenMode;
236
237 bool autoReset : 1;
238
239 /** New UUID to be set on the next Medium::i_queryInfo call. */
240 const Guid uuidImage;
241 /** New parent UUID to be set on the next Medium::i_queryInfo call. */
242 const Guid uuidParentImage;
243
244/** @todo r=bird: the boolean bitfields are pointless if they're not grouped! */
245 bool hostDrive : 1;
246
247 settings::StringsMap mapProperties;
248
249 bool implicit : 1;
250 /** Flag whether the medium is in the process of being closed. */
251 bool fClosing: 1;
252
253 /** Default flags passed to VDOpen(). */
254 unsigned uOpenFlagsDef;
255
256 uint32_t numCreateDiffTasks;
257
258 Utf8Str vdError; /*< Error remembered by the VD error callback. */
259
260 VDINTERFACEERROR vdIfError;
261
262 VDINTERFACECONFIG vdIfConfig;
263
264 /** The handle to the default VD TCP/IP interface. */
265 VDIFINST hTcpNetInst;
266
267 PVDINTERFACE vdDiskIfaces;
268 PVDINTERFACE vdImageIfaces;
269
270 /** Flag if the medium is going to move to a new
271 * location. */
272 bool fMoveThisMedium;
273 /** new location path */
274 Utf8Str strNewLocationFull;
275};
276
277typedef struct VDSOCKETINT
278{
279 /** Socket handle. */
280 RTSOCKET hSocket;
281} VDSOCKETINT, *PVDSOCKETINT;
282
283////////////////////////////////////////////////////////////////////////////////
284//
285// Globals
286//
287////////////////////////////////////////////////////////////////////////////////
288
289/**
290 * Medium::Task class for asynchronous operations.
291 *
292 * @note Instances of this class must be created using new() because the
293 * task thread function will delete them when the task is complete.
294 *
295 * @note The constructor of this class adds a caller on the managed Medium
296 * object which is automatically released upon destruction.
297 */
298class Medium::Task : public ThreadTask
299{
300public:
301 Task(Medium *aMedium, Progress *aProgress, bool fNotifyAboutChanges = true)
302 : ThreadTask("Medium::Task"),
303 mVDOperationIfaces(NULL),
304 mMedium(aMedium),
305 mMediumCaller(aMedium),
306 mProgress(aProgress),
307 mVirtualBoxCaller(NULL),
308 mNotifyAboutChanges(fNotifyAboutChanges)
309 {
310 AssertReturnVoidStmt(aMedium, mHrc = E_FAIL);
311 mHrc = mMediumCaller.hrc();
312 if (FAILED(mHrc))
313 return;
314
315 /* Get strong VirtualBox reference, see below. */
316 VirtualBox *pVirtualBox = aMedium->m->pVirtualBox;
317 mVirtualBox = pVirtualBox;
318 mVirtualBoxCaller.attach(pVirtualBox);
319 mHrc = mVirtualBoxCaller.hrc();
320 if (FAILED(mHrc))
321 return;
322
323 /* Set up a per-operation progress interface, can be used freely (for
324 * binary operations you can use it either on the source or target). */
325 if (mProgress)
326 {
327 mVDIfProgress.pfnProgress = aProgress->i_vdProgressCallback;
328 int vrc = VDInterfaceAdd(&mVDIfProgress.Core,
329 "Medium::Task::vdInterfaceProgress",
330 VDINTERFACETYPE_PROGRESS,
331 mProgress,
332 sizeof(mVDIfProgress),
333 &mVDOperationIfaces);
334 AssertRC(vrc);
335 if (RT_FAILURE(vrc))
336 mHrc = E_FAIL;
337 }
338 }
339
340 // Make all destructors virtual. Just in case.
341 virtual ~Task()
342 {
343 /* send the notification of completion.*/
344 if ( isAsync()
345 && !mProgress.isNull())
346 mProgress->i_notifyComplete(mHrc);
347 }
348
349 HRESULT hrc() const { return mHrc; }
350 bool isOk() const { return SUCCEEDED(hrc()); }
351 bool NotifyAboutChanges() const { return mNotifyAboutChanges; }
352
353 const ComPtr<Progress>& GetProgressObject() const {return mProgress;}
354
355 /**
356 * Runs Medium::Task::executeTask() on the current thread
357 * instead of creating a new one.
358 */
359 HRESULT runNow()
360 {
361 LogFlowFuncEnter();
362
363 mHrc = executeTask();
364
365 LogFlowFunc(("hrc=%Rhrc\n", mHrc));
366 LogFlowFuncLeave();
367 return mHrc;
368 }
369
370 /**
371 * Implementation code for the "create base" task.
372 * Used as function for execution from a standalone thread.
373 */
374 void handler()
375 {
376 LogFlowFuncEnter();
377 try
378 {
379 mHrc = executeTask(); /* (destructor picks up mHrc, see above) */
380 LogFlowFunc(("hrc=%Rhrc\n", mHrc));
381 }
382 catch (...)
383 {
384 LogRel(("Some exception in the function Medium::Task:handler()\n"));
385 }
386
387 LogFlowFuncLeave();
388 }
389
390 PVDINTERFACE mVDOperationIfaces;
391
392 const ComObjPtr<Medium> mMedium;
393 AutoCaller mMediumCaller;
394
395protected:
396 HRESULT mHrc;
397
398private:
399 virtual HRESULT executeTask() = 0;
400
401 const ComObjPtr<Progress> mProgress;
402
403 VDINTERFACEPROGRESS mVDIfProgress;
404
405 /* Must have a strong VirtualBox reference during a task otherwise the
406 * reference count might drop to 0 while a task is still running. This
407 * would result in weird behavior, including deadlocks due to uninit and
408 * locking order issues. The deadlock often is not detectable because the
409 * uninit uses event semaphores which sabotages deadlock detection. */
410 ComObjPtr<VirtualBox> mVirtualBox;
411 AutoCaller mVirtualBoxCaller;
412 bool mNotifyAboutChanges;
413};
414
415class Medium::CreateBaseTask : public Medium::Task
416{
417public:
418 CreateBaseTask(Medium *aMedium,
419 Progress *aProgress,
420 uint64_t aSize,
421 MediumVariant_T aVariant,
422 bool fNotifyAboutChanges = true)
423 : Medium::Task(aMedium, aProgress, fNotifyAboutChanges),
424 mSize(aSize),
425 mVariant(aVariant)
426 {
427 m_strTaskName = "createBase";
428 }
429
430 uint64_t mSize;
431 MediumVariant_T mVariant;
432
433private:
434 HRESULT executeTask()
435 {
436 return mMedium->i_taskCreateBaseHandler(*this);
437 }
438};
439
440class Medium::CreateDiffTask : public Medium::Task
441{
442public:
443 CreateDiffTask(Medium *aMedium,
444 Progress *aProgress,
445 Medium *aTarget,
446 MediumVariant_T aVariant,
447 MediumLockList *aMediumLockList,
448 bool fKeepMediumLockList = false,
449 bool fNotifyAboutChanges = true)
450 : Medium::Task(aMedium, aProgress, fNotifyAboutChanges),
451 mpMediumLockList(aMediumLockList),
452 mTarget(aTarget),
453 mVariant(aVariant),
454 mTargetCaller(aTarget),
455 mfKeepMediumLockList(fKeepMediumLockList)
456 {
457 AssertReturnVoidStmt(aTarget != NULL, mHrc = E_FAIL);
458 mHrc = mTargetCaller.hrc();
459 if (FAILED(mHrc))
460 return;
461 m_strTaskName = "createDiff";
462 }
463
464 ~CreateDiffTask()
465 {
466 if (!mfKeepMediumLockList && mpMediumLockList)
467 delete mpMediumLockList;
468 }
469
470 MediumLockList *mpMediumLockList;
471
472 const ComObjPtr<Medium> mTarget;
473 MediumVariant_T mVariant;
474
475private:
476 HRESULT executeTask()
477 {
478 return mMedium->i_taskCreateDiffHandler(*this);
479 }
480
481 AutoCaller mTargetCaller;
482 bool mfKeepMediumLockList;
483};
484
485class Medium::CloneTask : public Medium::Task
486{
487public:
488 CloneTask(Medium *aMedium,
489 Progress *aProgress,
490 Medium *aTarget,
491 MediumVariant_T aVariant,
492 Medium *aParent,
493 uint32_t idxSrcImageSame,
494 uint32_t idxDstImageSame,
495 MediumLockList *aSourceMediumLockList,
496 MediumLockList *aTargetMediumLockList,
497 bool fKeepSourceMediumLockList = false,
498 bool fKeepTargetMediumLockList = false,
499 bool fNotifyAboutChanges = true,
500 uint64_t aTargetLogicalSize = 0)
501 : Medium::Task(aMedium, aProgress, fNotifyAboutChanges),
502 mTarget(aTarget),
503 mParent(aParent),
504 mTargetLogicalSize(aTargetLogicalSize),
505 mpSourceMediumLockList(aSourceMediumLockList),
506 mpTargetMediumLockList(aTargetMediumLockList),
507 mVariant(aVariant),
508 midxSrcImageSame(idxSrcImageSame),
509 midxDstImageSame(idxDstImageSame),
510 mTargetCaller(aTarget),
511 mParentCaller(aParent),
512 mfKeepSourceMediumLockList(fKeepSourceMediumLockList),
513 mfKeepTargetMediumLockList(fKeepTargetMediumLockList)
514 {
515 AssertReturnVoidStmt(aTarget != NULL, mHrc = E_FAIL);
516 mHrc = mTargetCaller.hrc();
517 if (FAILED(mHrc))
518 return;
519 /* aParent may be NULL */
520 mHrc = mParentCaller.hrc();
521 if (FAILED(mHrc))
522 return;
523 AssertReturnVoidStmt(aSourceMediumLockList != NULL, mHrc = E_FAIL);
524 AssertReturnVoidStmt(aTargetMediumLockList != NULL, mHrc = E_FAIL);
525 m_strTaskName = "createClone";
526 }
527
528 ~CloneTask()
529 {
530 if (!mfKeepSourceMediumLockList && mpSourceMediumLockList)
531 delete mpSourceMediumLockList;
532 if (!mfKeepTargetMediumLockList && mpTargetMediumLockList)
533 delete mpTargetMediumLockList;
534 }
535
536 const ComObjPtr<Medium> mTarget;
537 const ComObjPtr<Medium> mParent;
538 uint64_t mTargetLogicalSize;
539 MediumLockList *mpSourceMediumLockList;
540 MediumLockList *mpTargetMediumLockList;
541 MediumVariant_T mVariant;
542 uint32_t midxSrcImageSame;
543 uint32_t midxDstImageSame;
544
545private:
546 HRESULT executeTask()
547 {
548 return mMedium->i_taskCloneHandler(*this);
549 }
550
551 AutoCaller mTargetCaller;
552 AutoCaller mParentCaller;
553 bool mfKeepSourceMediumLockList;
554 bool mfKeepTargetMediumLockList;
555};
556
557class Medium::MoveTask : public Medium::Task
558{
559public:
560 MoveTask(Medium *aMedium,
561 Progress *aProgress,
562 MediumVariant_T aVariant,
563 MediumLockList *aMediumLockList,
564 bool fKeepMediumLockList = false,
565 bool fNotifyAboutChanges = true)
566 : Medium::Task(aMedium, aProgress, fNotifyAboutChanges),
567 mpMediumLockList(aMediumLockList),
568 mVariant(aVariant),
569 mfKeepMediumLockList(fKeepMediumLockList)
570 {
571 AssertReturnVoidStmt(aMediumLockList != NULL, mHrc = E_FAIL);
572 m_strTaskName = "createMove";
573 }
574
575 ~MoveTask()
576 {
577 if (!mfKeepMediumLockList && mpMediumLockList)
578 delete mpMediumLockList;
579 }
580
581 MediumLockList *mpMediumLockList;
582 MediumVariant_T mVariant;
583
584private:
585 HRESULT executeTask()
586 {
587 return mMedium->i_taskMoveHandler(*this);
588 }
589
590 bool mfKeepMediumLockList;
591};
592
593class Medium::CompactTask : public Medium::Task
594{
595public:
596 CompactTask(Medium *aMedium,
597 Progress *aProgress,
598 MediumLockList *aMediumLockList,
599 bool fKeepMediumLockList = false,
600 bool fNotifyAboutChanges = true)
601 : Medium::Task(aMedium, aProgress, fNotifyAboutChanges),
602 mpMediumLockList(aMediumLockList),
603 mfKeepMediumLockList(fKeepMediumLockList)
604 {
605 AssertReturnVoidStmt(aMediumLockList != NULL, mHrc = E_FAIL);
606 m_strTaskName = "createCompact";
607 }
608
609 ~CompactTask()
610 {
611 if (!mfKeepMediumLockList && mpMediumLockList)
612 delete mpMediumLockList;
613 }
614
615 MediumLockList *mpMediumLockList;
616
617private:
618 HRESULT executeTask()
619 {
620 return mMedium->i_taskCompactHandler(*this);
621 }
622
623 bool mfKeepMediumLockList;
624};
625
626class Medium::ResizeTask : public Medium::Task
627{
628public:
629 ResizeTask(Medium *aMedium,
630 uint64_t aSize,
631 Progress *aProgress,
632 MediumLockList *aMediumLockList,
633 bool fKeepMediumLockList = false,
634 bool fNotifyAboutChanges = true)
635 : Medium::Task(aMedium, aProgress, fNotifyAboutChanges),
636 mSize(aSize),
637 mpMediumLockList(aMediumLockList),
638 mfKeepMediumLockList(fKeepMediumLockList)
639 {
640 AssertReturnVoidStmt(aMediumLockList != NULL, mHrc = E_FAIL);
641 m_strTaskName = "createResize";
642 }
643
644 ~ResizeTask()
645 {
646 if (!mfKeepMediumLockList && mpMediumLockList)
647 delete mpMediumLockList;
648 }
649
650 uint64_t mSize;
651 MediumLockList *mpMediumLockList;
652
653private:
654 HRESULT executeTask()
655 {
656 return mMedium->i_taskResizeHandler(*this);
657 }
658
659 bool mfKeepMediumLockList;
660};
661
662class Medium::ResetTask : public Medium::Task
663{
664public:
665 ResetTask(Medium *aMedium,
666 Progress *aProgress,
667 MediumLockList *aMediumLockList,
668 bool fKeepMediumLockList = false,
669 bool fNotifyAboutChanges = true)
670 : Medium::Task(aMedium, aProgress, fNotifyAboutChanges),
671 mpMediumLockList(aMediumLockList),
672 mfKeepMediumLockList(fKeepMediumLockList)
673 {
674 m_strTaskName = "createReset";
675 }
676
677 ~ResetTask()
678 {
679 if (!mfKeepMediumLockList && mpMediumLockList)
680 delete mpMediumLockList;
681 }
682
683 MediumLockList *mpMediumLockList;
684
685private:
686 HRESULT executeTask()
687 {
688 return mMedium->i_taskResetHandler(*this);
689 }
690
691 bool mfKeepMediumLockList;
692};
693
694class Medium::DeleteTask : public Medium::Task
695{
696public:
697 DeleteTask(Medium *aMedium,
698 Progress *aProgress,
699 MediumLockList *aMediumLockList,
700 bool fKeepMediumLockList = false,
701 bool fNotifyAboutChanges = true)
702 : Medium::Task(aMedium, aProgress, fNotifyAboutChanges),
703 mpMediumLockList(aMediumLockList),
704 mfKeepMediumLockList(fKeepMediumLockList)
705 {
706 m_strTaskName = "createDelete";
707 }
708
709 ~DeleteTask()
710 {
711 if (!mfKeepMediumLockList && mpMediumLockList)
712 delete mpMediumLockList;
713 }
714
715 MediumLockList *mpMediumLockList;
716
717private:
718 HRESULT executeTask()
719 {
720 return mMedium->i_taskDeleteHandler(*this);
721 }
722
723 bool mfKeepMediumLockList;
724};
725
726class Medium::MergeTask : public Medium::Task
727{
728public:
729 MergeTask(Medium *aMedium,
730 Medium *aTarget,
731 bool fMergeForward,
732 Medium *aParentForTarget,
733 MediumLockList *aChildrenToReparent,
734 Progress *aProgress,
735 MediumLockList *aMediumLockList,
736 bool fKeepMediumLockList = false,
737 bool fNotifyAboutChanges = true)
738 : Medium::Task(aMedium, aProgress, fNotifyAboutChanges),
739 mTarget(aTarget),
740 mfMergeForward(fMergeForward),
741 mParentForTarget(aParentForTarget),
742 mpChildrenToReparent(aChildrenToReparent),
743 mpMediumLockList(aMediumLockList),
744 mTargetCaller(aTarget),
745 mParentForTargetCaller(aParentForTarget),
746 mfKeepMediumLockList(fKeepMediumLockList)
747 {
748 AssertReturnVoidStmt(aMediumLockList != NULL, mHrc = E_FAIL);
749 m_strTaskName = "createMerge";
750 }
751
752 ~MergeTask()
753 {
754 if (!mfKeepMediumLockList && mpMediumLockList)
755 delete mpMediumLockList;
756 if (mpChildrenToReparent)
757 delete mpChildrenToReparent;
758 }
759
760 const ComObjPtr<Medium> mTarget;
761 bool mfMergeForward;
762 /* When mpChildrenToReparent is null then mParentForTarget is non-null and
763 * vice versa. In other words: they are used in different cases. */
764 const ComObjPtr<Medium> mParentForTarget;
765 MediumLockList *mpChildrenToReparent;
766 MediumLockList *mpMediumLockList;
767
768private:
769 HRESULT executeTask()
770 {
771 return mMedium->i_taskMergeHandler(*this);
772 }
773
774 AutoCaller mTargetCaller;
775 AutoCaller mParentForTargetCaller;
776 bool mfKeepMediumLockList;
777};
778
779class Medium::ImportTask : public Medium::Task
780{
781public:
782 ImportTask(Medium *aMedium,
783 Progress *aProgress,
784 const char *aFilename,
785 MediumFormat *aFormat,
786 MediumVariant_T aVariant,
787 RTVFSIOSTREAM aVfsIosSrc,
788 Medium *aParent,
789 MediumLockList *aTargetMediumLockList,
790 bool fKeepTargetMediumLockList = false,
791 bool fNotifyAboutChanges = true)
792 : Medium::Task(aMedium, aProgress, fNotifyAboutChanges),
793 mFilename(aFilename),
794 mFormat(aFormat),
795 mVariant(aVariant),
796 mParent(aParent),
797 mpTargetMediumLockList(aTargetMediumLockList),
798 mpVfsIoIf(NULL),
799 mParentCaller(aParent),
800 mfKeepTargetMediumLockList(fKeepTargetMediumLockList)
801 {
802 AssertReturnVoidStmt(aTargetMediumLockList != NULL, mHrc = E_FAIL);
803 /* aParent may be NULL */
804 mHrc = mParentCaller.hrc();
805 if (FAILED(mHrc))
806 return;
807
808 mVDImageIfaces = aMedium->m->vdImageIfaces;
809
810 int vrc = VDIfCreateFromVfsStream(aVfsIosSrc, RTFILE_O_READ, &mpVfsIoIf);
811 AssertRCReturnVoidStmt(vrc, mHrc = E_FAIL);
812
813 vrc = VDInterfaceAdd(&mpVfsIoIf->Core, "Medium::ImportTaskVfsIos",
814 VDINTERFACETYPE_IO, mpVfsIoIf,
815 sizeof(VDINTERFACEIO), &mVDImageIfaces);
816 AssertRCReturnVoidStmt(vrc, mHrc = E_FAIL);
817 m_strTaskName = "createImport";
818 }
819
820 ~ImportTask()
821 {
822 if (!mfKeepTargetMediumLockList && mpTargetMediumLockList)
823 delete mpTargetMediumLockList;
824 if (mpVfsIoIf)
825 {
826 VDIfDestroyFromVfsStream(mpVfsIoIf);
827 mpVfsIoIf = NULL;
828 }
829 }
830
831 Utf8Str mFilename;
832 ComObjPtr<MediumFormat> mFormat;
833 MediumVariant_T mVariant;
834 const ComObjPtr<Medium> mParent;
835 MediumLockList *mpTargetMediumLockList;
836 PVDINTERFACE mVDImageIfaces;
837 PVDINTERFACEIO mpVfsIoIf; /**< Pointer to the VFS I/O stream to VD I/O interface wrapper. */
838
839private:
840 HRESULT executeTask()
841 {
842 return mMedium->i_taskImportHandler(*this);
843 }
844
845 AutoCaller mParentCaller;
846 bool mfKeepTargetMediumLockList;
847};
848
849class Medium::EncryptTask : public Medium::Task
850{
851public:
852 EncryptTask(Medium *aMedium,
853 const com::Utf8Str &strNewPassword,
854 const com::Utf8Str &strCurrentPassword,
855 const com::Utf8Str &strCipher,
856 const com::Utf8Str &strNewPasswordId,
857 Progress *aProgress,
858 MediumLockList *aMediumLockList)
859 : Medium::Task(aMedium, aProgress, false),
860 mstrNewPassword(strNewPassword),
861 mstrCurrentPassword(strCurrentPassword),
862 mstrCipher(strCipher),
863 mstrNewPasswordId(strNewPasswordId),
864 mpMediumLockList(aMediumLockList)
865 {
866 AssertReturnVoidStmt(aMediumLockList != NULL, mHrc = E_FAIL);
867 /* aParent may be NULL */
868 mHrc = mParentCaller.hrc();
869 if (FAILED(mHrc))
870 return;
871
872 mVDImageIfaces = aMedium->m->vdImageIfaces;
873 m_strTaskName = "createEncrypt";
874 }
875
876 ~EncryptTask()
877 {
878 if (mstrNewPassword.length())
879 RTMemWipeThoroughly(mstrNewPassword.mutableRaw(), mstrNewPassword.length(), 10 /* cPasses */);
880 if (mstrCurrentPassword.length())
881 RTMemWipeThoroughly(mstrCurrentPassword.mutableRaw(), mstrCurrentPassword.length(), 10 /* cPasses */);
882
883 /* Keep any errors which might be set when deleting the lock list. */
884 ErrorInfoKeeper eik;
885 delete mpMediumLockList;
886 }
887
888 Utf8Str mstrNewPassword;
889 Utf8Str mstrCurrentPassword;
890 Utf8Str mstrCipher;
891 Utf8Str mstrNewPasswordId;
892 MediumLockList *mpMediumLockList;
893 PVDINTERFACE mVDImageIfaces;
894
895private:
896 HRESULT executeTask()
897 {
898 return mMedium->i_taskEncryptHandler(*this);
899 }
900
901 AutoCaller mParentCaller;
902};
903
904
905
906/**
907 * Converts the Medium device type to the VD type.
908 */
909static const char *getVDTypeName(VDTYPE enmType)
910{
911 switch (enmType)
912 {
913 case VDTYPE_HDD: return "HDD";
914 case VDTYPE_OPTICAL_DISC: return "DVD";
915 case VDTYPE_FLOPPY: return "floppy";
916 case VDTYPE_INVALID: return "invalid";
917 default:
918 AssertFailedReturn("unknown");
919 }
920}
921
922/**
923 * Converts the Medium device type to the VD type.
924 */
925static const char *getDeviceTypeName(DeviceType_T enmType)
926{
927 switch (enmType)
928 {
929 case DeviceType_HardDisk: return "HDD";
930 case DeviceType_DVD: return "DVD";
931 case DeviceType_Floppy: return "floppy";
932 case DeviceType_Null: return "null";
933 case DeviceType_Network: return "network";
934 case DeviceType_USB: return "USB";
935 case DeviceType_SharedFolder: return "shared folder";
936 case DeviceType_Graphics3D: return "graphics 3d";
937 default:
938 AssertFailedReturn("unknown");
939 }
940}
941
942
943
944////////////////////////////////////////////////////////////////////////////////
945//
946// Medium constructor / destructor
947//
948////////////////////////////////////////////////////////////////////////////////
949
950DEFINE_EMPTY_CTOR_DTOR(Medium)
951
952HRESULT Medium::FinalConstruct()
953{
954 m = new Data;
955
956 /* Initialize the callbacks of the VD error interface */
957 m->vdIfError.pfnError = i_vdErrorCall;
958 m->vdIfError.pfnMessage = NULL;
959
960 /* Initialize the callbacks of the VD config interface */
961 m->vdIfConfig.pfnAreKeysValid = i_vdConfigAreKeysValid;
962 m->vdIfConfig.pfnQuerySize = i_vdConfigQuerySize;
963 m->vdIfConfig.pfnQuery = i_vdConfigQuery;
964 m->vdIfConfig.pfnUpdate = i_vdConfigUpdate;
965 m->vdIfConfig.pfnQueryBytes = NULL;
966
967 /* Initialize the per-disk interface chain (could be done more globally,
968 * but it's not wasting much time or space so it's not worth it). */
969 int vrc;
970 vrc = VDInterfaceAdd(&m->vdIfError.Core,
971 "Medium::vdInterfaceError",
972 VDINTERFACETYPE_ERROR, this,
973 sizeof(VDINTERFACEERROR), &m->vdDiskIfaces);
974 AssertRCReturn(vrc, E_FAIL);
975
976 /* Initialize the per-image interface chain */
977 vrc = VDInterfaceAdd(&m->vdIfConfig.Core,
978 "Medium::vdInterfaceConfig",
979 VDINTERFACETYPE_CONFIG, this,
980 sizeof(VDINTERFACECONFIG), &m->vdImageIfaces);
981 AssertRCReturn(vrc, E_FAIL);
982
983 /* Initialize the callbacks of the VD TCP interface (we always use the host
984 * IP stack for now) */
985 vrc = VDIfTcpNetInstDefaultCreate(&m->hTcpNetInst, &m->vdImageIfaces);
986 AssertRCReturn(vrc, E_FAIL);
987
988 return BaseFinalConstruct();
989}
990
991void Medium::FinalRelease()
992{
993 uninit();
994
995 VDIfTcpNetInstDefaultDestroy(m->hTcpNetInst);
996 delete m;
997
998 BaseFinalRelease();
999}
1000
1001/**
1002 * Initializes an empty hard disk object without creating or opening an associated
1003 * storage unit.
1004 *
1005 * This gets called by VirtualBox::CreateMedium() in which case uuidMachineRegistry
1006 * is empty since starting with VirtualBox 4.0, we no longer add opened media to a
1007 * registry automatically (this is deferred until the medium is attached to a machine).
1008 *
1009 * This also gets called when VirtualBox creates diff images; in this case uuidMachineRegistry
1010 * is set to the registry of the parent image to make sure they all end up in the same
1011 * file.
1012 *
1013 * For hard disks that don't have the MediumFormatCapabilities_CreateFixed or
1014 * MediumFormatCapabilities_CreateDynamic capability (and therefore cannot be created or deleted
1015 * with the means of VirtualBox) the associated storage unit is assumed to be
1016 * ready for use so the state of the hard disk object will be set to Created.
1017 *
1018 * @param aVirtualBox VirtualBox object.
1019 * @param aFormat
1020 * @param aLocation Storage unit location.
1021 * @param uuidMachineRegistry The registry to which this medium should be added
1022 * (global registry UUID or machine UUID or empty if none).
1023 * @param aDeviceType Device Type.
1024 */
1025HRESULT Medium::init(VirtualBox *aVirtualBox,
1026 const Utf8Str &aFormat,
1027 const Utf8Str &aLocation,
1028 const Guid &uuidMachineRegistry,
1029 const DeviceType_T aDeviceType)
1030{
1031 AssertReturn(aVirtualBox != NULL, E_FAIL);
1032 AssertReturn(!aFormat.isEmpty(), E_FAIL);
1033
1034 /* Enclose the state transition NotReady->InInit->Ready */
1035 AutoInitSpan autoInitSpan(this);
1036 AssertReturn(autoInitSpan.isOk(), E_FAIL);
1037
1038 HRESULT hrc = S_OK;
1039
1040 unconst(m->pVirtualBox) = aVirtualBox;
1041
1042 if (uuidMachineRegistry.isValid() && !uuidMachineRegistry.isZero())
1043 m->llRegistryIDs.push_back(uuidMachineRegistry);
1044
1045 /* no storage yet */
1046 m->state = MediumState_NotCreated;
1047
1048 /* cannot be a host drive */
1049 m->hostDrive = false;
1050
1051 m->devType = aDeviceType;
1052
1053 /* No storage unit is created yet, no need to call Medium::i_queryInfo */
1054
1055 hrc = i_setFormat(aFormat);
1056 if (FAILED(hrc)) return hrc;
1057
1058 hrc = i_setLocation(aLocation);
1059 if (FAILED(hrc)) return hrc;
1060
1061 if (!(m->formatObj->i_getCapabilities() & ( MediumFormatCapabilities_CreateFixed
1062 | MediumFormatCapabilities_CreateDynamic
1063 | MediumFormatCapabilities_File))
1064 )
1065 {
1066 /* Storage for media of this format can neither be explicitly
1067 * created by VirtualBox nor deleted, so we place the medium to
1068 * Inaccessible state here and also add it to the registry. The
1069 * state means that one has to use RefreshState() to update the
1070 * medium format specific fields. */
1071 m->state = MediumState_Inaccessible;
1072 // create new UUID
1073 unconst(m->id).create();
1074
1075 AutoWriteLock treeLock(m->pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
1076 ComObjPtr<Medium> pMedium;
1077
1078 /*
1079 * Check whether the UUID is taken already and create a new one
1080 * if required.
1081 * Try this only a limited amount of times in case the PRNG is broken
1082 * in some way to prevent an endless loop.
1083 */
1084 for (unsigned i = 0; i < 5; i++)
1085 {
1086 bool fInUse;
1087
1088 fInUse = m->pVirtualBox->i_isMediaUuidInUse(m->id, aDeviceType);
1089 if (fInUse)
1090 {
1091 // create new UUID
1092 unconst(m->id).create();
1093 }
1094 else
1095 break;
1096 }
1097
1098 hrc = m->pVirtualBox->i_registerMedium(this, &pMedium, treeLock);
1099 Assert(this == pMedium || FAILED(hrc));
1100 }
1101
1102 /* Confirm a successful initialization when it's the case */
1103 if (SUCCEEDED(hrc))
1104 autoInitSpan.setSucceeded();
1105
1106 return hrc;
1107}
1108
1109/**
1110 * Initializes the medium object by opening the storage unit at the specified
1111 * location. The enOpenMode parameter defines whether the medium will be opened
1112 * read/write or read-only.
1113 *
1114 * This gets called by VirtualBox::OpenMedium() and also by
1115 * Machine::AttachDevice() and createImplicitDiffs() when new diff
1116 * images are created.
1117 *
1118 * There is no registry for this case since starting with VirtualBox 4.0, we
1119 * no longer add opened media to a registry automatically (this is deferred
1120 * until the medium is attached to a machine).
1121 *
1122 * For hard disks, the UUID, format and the parent of this medium will be
1123 * determined when reading the medium storage unit. For DVD and floppy images,
1124 * which have no UUIDs in their storage units, new UUIDs are created.
1125 * If the detected or set parent is not known to VirtualBox, then this method
1126 * will fail.
1127 *
1128 * @param aVirtualBox VirtualBox object.
1129 * @param aLocation Storage unit location.
1130 * @param enOpenMode Whether to open the medium read/write or read-only.
1131 * @param fForceNewUuid Whether a new UUID should be set to avoid duplicates.
1132 * @param aDeviceType Device type of medium.
1133 */
1134HRESULT Medium::init(VirtualBox *aVirtualBox,
1135 const Utf8Str &aLocation,
1136 HDDOpenMode enOpenMode,
1137 bool fForceNewUuid,
1138 DeviceType_T aDeviceType)
1139{
1140 AssertReturn(aVirtualBox, E_INVALIDARG);
1141 AssertReturn(!aLocation.isEmpty(), E_INVALIDARG);
1142
1143 HRESULT hrc = S_OK;
1144
1145 {
1146 /* Enclose the state transition NotReady->InInit->Ready */
1147 AutoInitSpan autoInitSpan(this);
1148 AssertReturn(autoInitSpan.isOk(), E_FAIL);
1149
1150 unconst(m->pVirtualBox) = aVirtualBox;
1151
1152 /* there must be a storage unit */
1153 m->state = MediumState_Created;
1154
1155 /* remember device type for correct unregistering later */
1156 m->devType = aDeviceType;
1157
1158 /* cannot be a host drive */
1159 m->hostDrive = false;
1160
1161 /* remember the open mode (defaults to ReadWrite) */
1162 m->hddOpenMode = enOpenMode;
1163
1164 if (aDeviceType == DeviceType_DVD)
1165 m->type = MediumType_Readonly;
1166 else if (aDeviceType == DeviceType_Floppy)
1167 m->type = MediumType_Writethrough;
1168
1169 hrc = i_setLocation(aLocation);
1170 if (FAILED(hrc)) return hrc;
1171
1172 /* get all the information about the medium from the storage unit */
1173 if (fForceNewUuid)
1174 unconst(m->uuidImage).create();
1175
1176 m->state = MediumState_Inaccessible;
1177 m->strLastAccessError = tr("Accessibility check was not yet performed");
1178
1179 /* Confirm a successful initialization before the call to i_queryInfo.
1180 * Otherwise we can end up with a AutoCaller deadlock because the
1181 * medium becomes visible but is not marked as initialized. Causes
1182 * locking trouble (e.g. trying to save media registries) which is
1183 * hard to solve. */
1184 autoInitSpan.setSucceeded();
1185 }
1186
1187 /* we're normal code from now on, no longer init */
1188 AutoCaller autoCaller(this);
1189 if (FAILED(autoCaller.hrc()))
1190 return autoCaller.hrc();
1191
1192 /* need to call i_queryInfo immediately to correctly place the medium in
1193 * the respective media tree and update other information such as uuid */
1194 hrc = i_queryInfo(fForceNewUuid /* fSetImageId */, false /* fSetParentId */, autoCaller);
1195 if (SUCCEEDED(hrc))
1196 {
1197 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1198
1199 /* if the storage unit is not accessible, it's not acceptable for the
1200 * newly opened media so convert this into an error */
1201 if (m->state == MediumState_Inaccessible)
1202 {
1203 Assert(!m->strLastAccessError.isEmpty());
1204 hrc = setError(E_FAIL, "%s", m->strLastAccessError.c_str());
1205 alock.release();
1206 autoCaller.release();
1207 uninit();
1208 }
1209 else
1210 {
1211 AssertStmt(!m->id.isZero(),
1212 alock.release(); autoCaller.release(); uninit(); return E_FAIL);
1213
1214 /* storage format must be detected by Medium::i_queryInfo if the
1215 * medium is accessible */
1216 AssertStmt(!m->strFormat.isEmpty(),
1217 alock.release(); autoCaller.release(); uninit(); return E_FAIL);
1218 }
1219 }
1220 else
1221 {
1222 /* opening this image failed, mark the object as dead */
1223 autoCaller.release();
1224 uninit();
1225 }
1226
1227 return hrc;
1228}
1229
1230/**
1231 * Initializes the medium object by loading its data from the given settings
1232 * node. The medium will always be opened read/write.
1233 *
1234 * In this case, since we're loading from a registry, uuidMachineRegistry is
1235 * always set: it's either the global registry UUID or a machine UUID when
1236 * loading from a per-machine registry.
1237 *
1238 * @param aParent Parent medium disk or NULL for a root (base) medium.
1239 * @param aDeviceType Device type of the medium.
1240 * @param uuidMachineRegistry The registry to which this medium should be
1241 * added (global registry UUID or machine UUID).
1242 * @param data Configuration settings.
1243 * @param strMachineFolder The machine folder with which to resolve relative paths;
1244 * if empty, then we use the VirtualBox home directory
1245 *
1246 * @note Locks the medium tree for writing.
1247 */
1248HRESULT Medium::initOne(Medium *aParent,
1249 DeviceType_T aDeviceType,
1250 const Guid &uuidMachineRegistry,
1251 const Utf8Str &strMachineFolder,
1252 const settings::Medium &data)
1253{
1254 HRESULT hrc;
1255
1256 if (uuidMachineRegistry.isValid() && !uuidMachineRegistry.isZero())
1257 m->llRegistryIDs.push_back(uuidMachineRegistry);
1258
1259 /* register with VirtualBox/parent early, since uninit() will
1260 * unconditionally unregister on failure */
1261 if (aParent)
1262 {
1263 // differencing medium: add to parent
1264 AutoWriteLock treeLock(m->pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
1265 // no need to check maximum depth as settings reading did it
1266 i_setParent(aParent);
1267 }
1268
1269 /* see below why we don't call Medium::i_queryInfo (and therefore treat
1270 * the medium as inaccessible for now */
1271 m->state = MediumState_Inaccessible;
1272 m->strLastAccessError = tr("Accessibility check was not yet performed");
1273
1274 /* required */
1275 unconst(m->id) = data.uuid;
1276
1277 /* assume not a host drive */
1278 m->hostDrive = false;
1279
1280 /* optional */
1281 m->strDescription = data.strDescription;
1282
1283 /* required */
1284 if (aDeviceType == DeviceType_HardDisk)
1285 {
1286 AssertReturn(!data.strFormat.isEmpty(), E_FAIL);
1287 hrc = i_setFormat(data.strFormat);
1288 if (FAILED(hrc)) return hrc;
1289 }
1290 else
1291 {
1292 /// @todo handle host drive settings here as well?
1293 if (!data.strFormat.isEmpty())
1294 hrc = i_setFormat(data.strFormat);
1295 else
1296 hrc = i_setFormat("RAW");
1297 if (FAILED(hrc)) return hrc;
1298 }
1299
1300 /* optional, only for diffs, default is false; we can only auto-reset
1301 * diff media so they must have a parent */
1302 if (aParent != NULL)
1303 m->autoReset = data.fAutoReset;
1304 else
1305 m->autoReset = false;
1306
1307 /* properties (after setting the format as it populates the map). Note that
1308 * if some properties are not supported but present in the settings file,
1309 * they will still be read and accessible (for possible backward
1310 * compatibility; we can also clean them up from the XML upon next
1311 * XML format version change if we wish) */
1312 for (settings::StringsMap::const_iterator it = data.properties.begin();
1313 it != data.properties.end();
1314 ++it)
1315 {
1316 const Utf8Str &name = it->first;
1317 const Utf8Str &value = it->second;
1318 m->mapProperties[name] = value;
1319 }
1320
1321 /* try to decrypt an optional iSCSI initiator secret */
1322 settings::StringsMap::const_iterator itCph = data.properties.find("InitiatorSecretEncrypted");
1323 if ( itCph != data.properties.end()
1324 && !itCph->second.isEmpty())
1325 {
1326 Utf8Str strPlaintext;
1327 int vrc = m->pVirtualBox->i_decryptSetting(&strPlaintext, itCph->second);
1328 if (RT_SUCCESS(vrc))
1329 m->mapProperties["InitiatorSecret"] = strPlaintext;
1330 }
1331
1332 Utf8Str strFull;
1333 if (m->formatObj->i_getCapabilities() & MediumFormatCapabilities_File)
1334 {
1335 // compose full path of the medium, if it's not fully qualified...
1336 // slightly convoluted logic here. If the caller has given us a
1337 // machine folder, then a relative path will be relative to that:
1338 if ( !strMachineFolder.isEmpty()
1339 && !RTPathStartsWithRoot(data.strLocation.c_str())
1340 )
1341 {
1342 strFull = strMachineFolder;
1343 strFull += RTPATH_SLASH;
1344 strFull += data.strLocation;
1345 }
1346 else
1347 {
1348 // Otherwise use the old VirtualBox "make absolute path" logic:
1349 int vrc = m->pVirtualBox->i_calculateFullPath(data.strLocation, strFull);
1350 if (RT_FAILURE(vrc))
1351 return Global::vboxStatusCodeToCOM(vrc);
1352 }
1353 }
1354 else
1355 strFull = data.strLocation;
1356
1357 hrc = i_setLocation(strFull);
1358 if (FAILED(hrc)) return hrc;
1359
1360 if (aDeviceType == DeviceType_HardDisk)
1361 {
1362 /* type is only for base hard disks */
1363 if (m->pParent.isNull())
1364 m->type = data.hdType;
1365 }
1366 else if (aDeviceType == DeviceType_DVD)
1367 m->type = MediumType_Readonly;
1368 else
1369 m->type = MediumType_Writethrough;
1370
1371 /* remember device type for correct unregistering later */
1372 m->devType = aDeviceType;
1373
1374 LogFlowThisFunc(("m->strLocationFull='%s', m->strFormat=%s, m->id={%RTuuid}\n",
1375 m->strLocationFull.c_str(), m->strFormat.c_str(), m->id.raw()));
1376
1377 return S_OK;
1378}
1379
1380/**
1381 * Initializes and registers the medium object and its children by loading its
1382 * data from the given settings node. The medium will always be opened
1383 * read/write.
1384 *
1385 * @todo r=bird: What's that stuff about 'always be opened read/write'?
1386 *
1387 * In this case, since we're loading from a registry, uuidMachineRegistry is
1388 * always set: it's either the global registry UUID or a machine UUID when
1389 * loading from a per-machine registry.
1390 *
1391 * The only caller is currently VirtualBox::initMedia().
1392 *
1393 * @param aVirtualBox VirtualBox object.
1394 * @param aDeviceType Device type of the medium.
1395 * @param uuidMachineRegistry The registry to which this medium should be added
1396 * (global registry UUID or machine UUID).
1397 * @param strMachineFolder The machine folder with which to resolve relative
1398 * paths; if empty, then we use the VirtualBox home directory
1399 * @param data Configuration settings.
1400 * @param mediaTreeLock Autolock.
1401 * @param uIdsForNotify List to be updated with newly registered media.
1402 *
1403 * @note Assumes that the medium tree lock is held for writing. May release
1404 * and lock it again. At the end it is always held.
1405 */
1406/* static */
1407HRESULT Medium::initFromSettings(VirtualBox *aVirtualBox,
1408 DeviceType_T aDeviceType,
1409 const Guid &uuidMachineRegistry,
1410 const Utf8Str &strMachineFolder,
1411 const settings::Medium &data,
1412 AutoWriteLock &mediaTreeLock,
1413 std::list<std::pair<Guid, DeviceType_T> > &uIdsForNotify)
1414{
1415 Assert(aVirtualBox->i_getMediaTreeLockHandle().isWriteLockOnCurrentThread());
1416 AssertReturn(aVirtualBox, E_INVALIDARG);
1417
1418 HRESULT hrc = S_OK;
1419
1420 MediaList llMediaTocleanup;
1421
1422 std::list<const settings::Medium *> llSettingsTodo;
1423 llSettingsTodo.push_back(&data);
1424 MediaList llParentsTodo;
1425 llParentsTodo.push_back(NULL);
1426
1427 while (!llSettingsTodo.empty())
1428 {
1429 const settings::Medium *current = llSettingsTodo.front();
1430 llSettingsTodo.pop_front();
1431 ComObjPtr<Medium> pParent = llParentsTodo.front();
1432 llParentsTodo.pop_front();
1433
1434 bool fReleasedMediaTreeLock = false;
1435 ComObjPtr<Medium> pMedium;
1436 hrc = pMedium.createObject();
1437 if (FAILED(hrc))
1438 break;
1439 ComObjPtr<Medium> pActualMedium(pMedium);
1440
1441 {
1442 AutoInitSpan autoInitSpan(pMedium);
1443 AssertBreakStmt(autoInitSpan.isOk(), hrc = E_FAIL);
1444
1445 unconst(pMedium->m->pVirtualBox) = aVirtualBox;
1446 hrc = pMedium->initOne(pParent, aDeviceType, uuidMachineRegistry, strMachineFolder, *current);
1447 if (FAILED(hrc))
1448 break;
1449 hrc = aVirtualBox->i_registerMedium(pActualMedium, &pActualMedium, mediaTreeLock, true /*fCalledFromMediumInit*/);
1450 if (SUCCEEDED(hrc) && pActualMedium == pMedium)
1451 {
1452 /* It is a truly new medium, remember details for cleanup. */
1453 autoInitSpan.setSucceeded();
1454 llMediaTocleanup.push_front(pMedium);
1455 }
1456 else
1457 {
1458 /* Since the newly created medium was replaced by an already
1459 * known one when merging medium trees, we can immediately mark
1460 * it as failed. */
1461 autoInitSpan.setFailed();
1462 mediaTreeLock.release();
1463 fReleasedMediaTreeLock = true;
1464 }
1465 }
1466 if (fReleasedMediaTreeLock)
1467 {
1468 /* With the InitSpan out of the way it's safe to let the refcount
1469 * drop to 0 without causing uninit trouble. */
1470 pMedium.setNull();
1471 mediaTreeLock.acquire();
1472
1473 if (FAILED(hrc))
1474 break;
1475 }
1476
1477 /* create all children */
1478 std::list<settings::Medium>::const_iterator itBegin = current->llChildren.begin();
1479 std::list<settings::Medium>::const_iterator itEnd = current->llChildren.end();
1480 for (std::list<settings::Medium>::const_iterator it = itBegin; it != itEnd; ++it)
1481 {
1482 llSettingsTodo.push_back(&*it);
1483 llParentsTodo.push_back(pActualMedium);
1484 }
1485 }
1486
1487 if (SUCCEEDED(hrc))
1488 {
1489 /* Check for consistency. */
1490 Assert(llSettingsTodo.size() == 0);
1491 Assert(llParentsTodo.size() == 0);
1492 /* Create the list of notifications, parent first. */
1493 for (MediaList::const_reverse_iterator it = llMediaTocleanup.rbegin(); it != llMediaTocleanup.rend(); ++it)
1494 {
1495 ComObjPtr<Medium> pMedium = *it;
1496 AutoCaller mediumCaller(pMedium);
1497 if (mediumCaller.isOk())
1498 {
1499 const Guid &id = pMedium->i_getId();
1500 uIdsForNotify.push_back(std::pair<Guid, DeviceType_T>(id, aDeviceType));
1501 }
1502 }
1503 }
1504 else
1505 {
1506 /* Forget state of the settings processing. */
1507 llSettingsTodo.clear();
1508 llParentsTodo.clear();
1509 /* Unregister all accumulated medium objects in the right order (last
1510 * created to first created, avoiding config leftovers). */
1511 MediaList::const_iterator itBegin = llMediaTocleanup.begin();
1512 MediaList::const_iterator itEnd = llMediaTocleanup.end();
1513 for (MediaList::const_iterator it = itBegin; it != itEnd; ++it)
1514 {
1515 ComObjPtr<Medium> pMedium = *it;
1516 pMedium->i_unregisterWithVirtualBox();
1517 }
1518 /* Forget the only references to all newly created medium objects,
1519 * triggering freeing (uninit happened in unregistering above). */
1520 mediaTreeLock.release();
1521 llMediaTocleanup.clear();
1522 mediaTreeLock.acquire();
1523 }
1524
1525 return hrc;
1526}
1527
1528/**
1529 * Initializes the medium object by providing the host drive information.
1530 * Not used for anything but the host floppy/host DVD case.
1531 *
1532 * There is no registry for this case.
1533 *
1534 * @param aVirtualBox VirtualBox object.
1535 * @param aDeviceType Device type of the medium.
1536 * @param aLocation Location of the host drive.
1537 * @param aDescription Comment for this host drive.
1538 *
1539 * @note Locks VirtualBox lock for writing.
1540 */
1541HRESULT Medium::init(VirtualBox *aVirtualBox,
1542 DeviceType_T aDeviceType,
1543 const Utf8Str &aLocation,
1544 const Utf8Str &aDescription /* = Utf8Str::Empty */)
1545{
1546 ComAssertRet(aDeviceType == DeviceType_DVD || aDeviceType == DeviceType_Floppy, E_INVALIDARG);
1547 ComAssertRet(!aLocation.isEmpty(), E_INVALIDARG);
1548
1549 /* Enclose the state transition NotReady->InInit->Ready */
1550 AutoInitSpan autoInitSpan(this);
1551 AssertReturn(autoInitSpan.isOk(), E_FAIL);
1552
1553 unconst(m->pVirtualBox) = aVirtualBox;
1554
1555 // We do not store host drives in VirtualBox.xml or anywhere else, so if we want
1556 // host drives to be identifiable by UUID and not give the drive a different UUID
1557 // every time VirtualBox starts, we need to fake a reproducible UUID here:
1558 RTUUID uuid;
1559 RTUuidClear(&uuid);
1560 if (aDeviceType == DeviceType_DVD)
1561 memcpy(&uuid.au8[0], "DVD", 3);
1562 else
1563 memcpy(&uuid.au8[0], "FD", 2);
1564 /* use device name, adjusted to the end of uuid, shortened if necessary */
1565 size_t lenLocation = aLocation.length();
1566 if (lenLocation > 12)
1567 memcpy(&uuid.au8[4], aLocation.c_str() + (lenLocation - 12), 12);
1568 else
1569 memcpy(&uuid.au8[4 + 12 - lenLocation], aLocation.c_str(), lenLocation);
1570 unconst(m->id) = uuid;
1571
1572 if (aDeviceType == DeviceType_DVD)
1573 m->type = MediumType_Readonly;
1574 else
1575 m->type = MediumType_Writethrough;
1576 m->devType = aDeviceType;
1577 m->state = MediumState_Created;
1578 m->hostDrive = true;
1579 HRESULT hrc = i_setFormat("RAW");
1580 if (FAILED(hrc)) return hrc;
1581 hrc = i_setLocation(aLocation);
1582 if (FAILED(hrc)) return hrc;
1583 m->strDescription = aDescription;
1584
1585 autoInitSpan.setSucceeded();
1586 return S_OK;
1587}
1588
1589/**
1590 * Uninitializes the instance.
1591 *
1592 * Called either from FinalRelease() or by the parent when it gets destroyed.
1593 *
1594 * @note All children of this medium get uninitialized, too, in a stack
1595 * friendly manner.
1596 */
1597void Medium::uninit()
1598{
1599 /* It is possible that some previous/concurrent uninit has already cleared
1600 * the pVirtualBox reference, and in this case we don't need to continue.
1601 * Normally this would be handled through the AutoUninitSpan magic, however
1602 * this cannot be done at this point as the media tree must be locked
1603 * before reaching the AutoUninitSpan, otherwise deadlocks can happen.
1604 *
1605 * NOTE: The tree lock is higher priority than the medium caller and medium
1606 * object locks, i.e. the medium caller may have to be released and be
1607 * re-acquired in the right place later. See Medium::getParent() for sample
1608 * code how to do this safely. */
1609 VirtualBox *pVirtualBox = m->pVirtualBox;
1610 if (!pVirtualBox)
1611 return;
1612
1613 /* Caller must not hold the object (checked below) or media tree lock. */
1614 Assert(!pVirtualBox->i_getMediaTreeLockHandle().isWriteLockOnCurrentThread());
1615
1616 AutoWriteLock treeLock(pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
1617
1618 /* Must use a list without refcounting help since "this" might already have
1619 * reached 0, and then the refcount must not be increased again since it
1620 * would otherwise trigger a double free. For all other list entries this
1621 * needs manual refcount updating, to make sure the refcount for children
1622 * does not drop to 0 too early. */
1623 std::list<Medium *> llMediaTodo;
1624 llMediaTodo.push_back(this);
1625
1626 while (!llMediaTodo.empty())
1627 {
1628 Medium *pMedium = llMediaTodo.front();
1629 llMediaTodo.pop_front();
1630
1631 /* Enclose the state transition Ready->InUninit->NotReady */
1632 AutoUninitSpan autoUninitSpan(pMedium);
1633 if (autoUninitSpan.uninitDone())
1634 {
1635 if (pMedium != this)
1636 pMedium->Release();
1637 continue;
1638 }
1639
1640 Assert(!pMedium->isWriteLockOnCurrentThread());
1641#ifdef DEBUG
1642 if (!pMedium->m->backRefs.empty())
1643 pMedium->i_dumpBackRefs();
1644#endif
1645 Assert(pMedium->m->backRefs.empty());
1646
1647 pMedium->m->formatObj.setNull();
1648
1649 if (pMedium->m->state == MediumState_Deleting)
1650 {
1651 /* This medium has been already deleted (directly or as part of a
1652 * merge). Reparenting has already been done. */
1653 Assert(pMedium->m->pParent.isNull());
1654 Assert(pMedium->m->llChildren.empty());
1655 if (pMedium != this)
1656 pMedium->Release();
1657 continue;
1658 }
1659
1660 //Assert(!pMedium->m->pParent);
1661 /** @todo r=klaus Should not be necessary, since the caller should be
1662 * doing the deparenting. No time right now to test everything. */
1663 if (pMedium == this && pMedium->m->pParent)
1664 pMedium->i_deparent();
1665
1666 /* Process all children */
1667 MediaList::const_iterator itBegin = pMedium->m->llChildren.begin();
1668 MediaList::const_iterator itEnd = pMedium->m->llChildren.end();
1669 for (MediaList::const_iterator it = itBegin; it != itEnd; ++it)
1670 {
1671 Medium *pChild = *it;
1672 pChild->m->pParent.setNull();
1673 pChild->AddRef();
1674 llMediaTodo.push_back(pChild);
1675 }
1676
1677 /* Children information obsolete, will be processed anyway. */
1678 pMedium->m->llChildren.clear();
1679
1680 unconst(pMedium->m->pVirtualBox) = NULL;
1681
1682 if (pMedium != this)
1683 pMedium->Release();
1684
1685 autoUninitSpan.setSucceeded();
1686 }
1687}
1688
1689/**
1690 * Internal helper that removes "this" from the list of children of its
1691 * parent. Used in uninit() and other places when reparenting is necessary.
1692 *
1693 * The caller must hold the medium tree lock!
1694 */
1695void Medium::i_deparent()
1696{
1697 MediaList &llParent = m->pParent->m->llChildren;
1698 for (MediaList::iterator it = llParent.begin();
1699 it != llParent.end();
1700 ++it)
1701 {
1702 Medium *pParentsChild = *it;
1703 if (this == pParentsChild)
1704 {
1705 llParent.erase(it);
1706 break;
1707 }
1708 }
1709 m->pParent.setNull();
1710}
1711
1712/**
1713 * Internal helper that removes "this" from the list of children of its
1714 * parent. Used in uninit() and other places when reparenting is necessary.
1715 *
1716 * The caller must hold the medium tree lock!
1717 */
1718void Medium::i_setParent(const ComObjPtr<Medium> &pParent)
1719{
1720 m->pParent = pParent;
1721 if (pParent)
1722 pParent->m->llChildren.push_back(this);
1723}
1724
1725
1726////////////////////////////////////////////////////////////////////////////////
1727//
1728// IMedium public methods
1729//
1730////////////////////////////////////////////////////////////////////////////////
1731
1732HRESULT Medium::getId(com::Guid &aId)
1733{
1734 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1735
1736 aId = m->id;
1737
1738 return S_OK;
1739}
1740
1741HRESULT Medium::getDescription(AutoCaller &autoCaller, com::Utf8Str &aDescription)
1742{
1743 NOREF(autoCaller);
1744 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1745
1746 aDescription = m->strDescription;
1747
1748 return S_OK;
1749}
1750
1751HRESULT Medium::setDescription(AutoCaller &autoCaller, const com::Utf8Str &aDescription)
1752{
1753 /// @todo update m->strDescription and save the global registry (and local
1754 /// registries of portable VMs referring to this medium), this will also
1755 /// require to add the mRegistered flag to data
1756
1757 HRESULT hrc = S_OK;
1758
1759 MediumLockList *pMediumLockList(new MediumLockList());
1760
1761 try
1762 {
1763 autoCaller.release();
1764
1765 // to avoid redundant locking, which just takes a time, just call required functions.
1766 // the error will be just stored and will be reported after locks will be acquired again
1767
1768 const char *pszError = NULL;
1769
1770
1771 /* Build the lock list. */
1772 hrc = i_createMediumLockList(true /* fFailIfInaccessible */,
1773 this /* pToLockWrite */,
1774 true /* fMediumLockWriteAll */,
1775 NULL,
1776 *pMediumLockList);
1777 if (FAILED(hrc))
1778 pszError = tr("Failed to create medium lock list for '%s'");
1779 else
1780 {
1781 hrc = pMediumLockList->Lock();
1782 if (FAILED(hrc))
1783 pszError = tr("Failed to lock media '%s'");
1784 }
1785
1786 // locking: we need the tree lock first because we access parent pointers
1787 // and we need to write-lock the media involved
1788 AutoWriteLock treeLock(m->pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
1789
1790 autoCaller.add();
1791 AssertComRCThrowRC(autoCaller.hrc());
1792
1793 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
1794
1795 if (FAILED(hrc))
1796 throw setError(hrc, pszError, i_getLocationFull().c_str());
1797
1798 /* Set a new description */
1799 m->strDescription = aDescription;
1800
1801 // save the settings
1802 alock.release();
1803 autoCaller.release();
1804 treeLock.release();
1805 i_markRegistriesModified();
1806 m->pVirtualBox->i_saveModifiedRegistries();
1807 m->pVirtualBox->i_onMediumConfigChanged(this);
1808 }
1809 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
1810
1811 delete pMediumLockList;
1812
1813 return hrc;
1814}
1815
1816HRESULT Medium::getState(MediumState_T *aState)
1817{
1818 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1819 *aState = m->state;
1820
1821 return S_OK;
1822}
1823
1824HRESULT Medium::getVariant(std::vector<MediumVariant_T> &aVariant)
1825{
1826 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1827
1828 const size_t cBits = sizeof(MediumVariant_T) * 8;
1829 aVariant.resize(cBits);
1830 for (size_t i = 0; i < cBits; ++i)
1831 aVariant[i] = (MediumVariant_T)(m->variant & RT_BIT(i));
1832
1833 return S_OK;
1834}
1835
1836HRESULT Medium::getLocation(com::Utf8Str &aLocation)
1837{
1838 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1839
1840 aLocation = m->strLocationFull;
1841
1842 return S_OK;
1843}
1844
1845HRESULT Medium::getName(com::Utf8Str &aName)
1846{
1847 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1848
1849 aName = i_getName();
1850
1851 return S_OK;
1852}
1853
1854HRESULT Medium::getDeviceType(DeviceType_T *aDeviceType)
1855{
1856 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1857
1858 *aDeviceType = m->devType;
1859
1860 return S_OK;
1861}
1862
1863HRESULT Medium::getHostDrive(BOOL *aHostDrive)
1864{
1865 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1866
1867 *aHostDrive = m->hostDrive;
1868
1869 return S_OK;
1870}
1871
1872HRESULT Medium::getSize(LONG64 *aSize)
1873{
1874 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1875
1876 *aSize = (LONG64)m->size;
1877
1878 return S_OK;
1879}
1880
1881HRESULT Medium::getFormat(com::Utf8Str &aFormat)
1882{
1883 /* no need to lock, m->strFormat is const */
1884
1885 aFormat = m->strFormat;
1886 return S_OK;
1887}
1888
1889HRESULT Medium::getMediumFormat(ComPtr<IMediumFormat> &aMediumFormat)
1890{
1891 /* no need to lock, m->formatObj is const */
1892 m->formatObj.queryInterfaceTo(aMediumFormat.asOutParam());
1893
1894 return S_OK;
1895}
1896
1897HRESULT Medium::getType(AutoCaller &autoCaller, MediumType_T *aType)
1898{
1899 NOREF(autoCaller);
1900 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1901
1902 *aType = m->type;
1903
1904 return S_OK;
1905}
1906
1907HRESULT Medium::setType(AutoCaller &autoCaller, MediumType_T aType)
1908{
1909 autoCaller.release();
1910
1911 /* It is possible that some previous/concurrent uninit has already cleared
1912 * the pVirtualBox reference, see #uninit(). */
1913 ComObjPtr<VirtualBox> pVirtualBox(m->pVirtualBox);
1914
1915 // we access m->pParent
1916 AutoReadLock treeLock(!pVirtualBox.isNull() ? &pVirtualBox->i_getMediaTreeLockHandle() : NULL COMMA_LOCKVAL_SRC_POS);
1917
1918 autoCaller.add();
1919 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
1920
1921 AutoWriteLock mlock(this COMMA_LOCKVAL_SRC_POS);
1922
1923 /* Wait for a concurrently running Medium::i_queryInfo to complete. */
1924 while (m->queryInfoRunning)
1925 {
1926 mlock.release();
1927 autoCaller.release();
1928 treeLock.release();
1929 /* Must not hold the media tree lock, as Medium::i_queryInfo needs
1930 * this lock and thus we would run into a deadlock here. */
1931 Assert(!m->pVirtualBox->i_getMediaTreeLockHandle().isWriteLockOnCurrentThread());
1932 /* must not hold the object lock now */
1933 Assert(!isWriteLockOnCurrentThread());
1934 {
1935 AutoReadLock qlock(m->queryInfoSem COMMA_LOCKVAL_SRC_POS);
1936 }
1937 treeLock.acquire();
1938 autoCaller.add();
1939 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
1940 mlock.acquire();
1941 }
1942
1943 switch (m->state)
1944 {
1945 case MediumState_Created:
1946 case MediumState_Inaccessible:
1947 break;
1948 default:
1949 return i_setStateError();
1950 }
1951
1952 if (m->type == aType)
1953 {
1954 /* Nothing to do */
1955 return S_OK;
1956 }
1957
1958 DeviceType_T devType = i_getDeviceType();
1959 // DVD media can only be readonly.
1960 if (devType == DeviceType_DVD && aType != MediumType_Readonly)
1961 return setError(VBOX_E_INVALID_OBJECT_STATE,
1962 tr("Cannot change the type of DVD medium '%s'"),
1963 m->strLocationFull.c_str());
1964 // Floppy media can only be writethrough or readonly.
1965 if ( devType == DeviceType_Floppy
1966 && aType != MediumType_Writethrough
1967 && aType != MediumType_Readonly)
1968 return setError(VBOX_E_INVALID_OBJECT_STATE,
1969 tr("Cannot change the type of floppy medium '%s'"),
1970 m->strLocationFull.c_str());
1971
1972 /* cannot change the type of a differencing medium */
1973 if (m->pParent)
1974 return setError(VBOX_E_INVALID_OBJECT_STATE,
1975 tr("Cannot change the type of medium '%s' because it is a differencing medium"),
1976 m->strLocationFull.c_str());
1977
1978 /* Cannot change the type of a medium being in use by more than one VM.
1979 * If the change is to Immutable or MultiAttach then it must not be
1980 * directly attached to any VM, otherwise the assumptions about indirect
1981 * attachment elsewhere are violated and the VM becomes inaccessible.
1982 * Attaching an immutable medium triggers the diff creation, and this is
1983 * vital for the correct operation. */
1984 if ( m->backRefs.size() > 1
1985 || ( ( aType == MediumType_Immutable
1986 || aType == MediumType_MultiAttach)
1987 && m->backRefs.size() > 0))
1988 return setError(VBOX_E_INVALID_OBJECT_STATE,
1989 tr("Cannot change the type of medium '%s' because it is attached to %d virtual machines",
1990 "", m->backRefs.size()),
1991 m->strLocationFull.c_str(), m->backRefs.size());
1992
1993 switch (aType)
1994 {
1995 case MediumType_Normal:
1996 case MediumType_Immutable:
1997 case MediumType_MultiAttach:
1998 {
1999 /* normal can be easily converted to immutable and vice versa even
2000 * if they have children as long as they are not attached to any
2001 * machine themselves */
2002 break;
2003 }
2004 case MediumType_Writethrough:
2005 case MediumType_Shareable:
2006 case MediumType_Readonly:
2007 {
2008 /* cannot change to writethrough, shareable or readonly
2009 * if there are children */
2010 if (i_getChildren().size() != 0)
2011 return setError(VBOX_E_OBJECT_IN_USE,
2012 tr("Cannot change type for medium '%s' since it has %d child media", "", i_getChildren().size()),
2013 m->strLocationFull.c_str(), i_getChildren().size());
2014 if (aType == MediumType_Shareable)
2015 {
2016 MediumVariant_T variant = i_getVariant();
2017 if (!(variant & MediumVariant_Fixed))
2018 return setError(VBOX_E_INVALID_OBJECT_STATE,
2019 tr("Cannot change type for medium '%s' to 'Shareable' since it is a dynamic medium storage unit"),
2020 m->strLocationFull.c_str());
2021 }
2022 else if (aType == MediumType_Readonly && devType == DeviceType_HardDisk)
2023 {
2024 // Readonly hard disks are not allowed, this medium type is reserved for
2025 // DVDs and floppy images at the moment. Later we might allow readonly hard
2026 // disks, but that's extremely unusual and many guest OSes will have trouble.
2027 return setError(VBOX_E_INVALID_OBJECT_STATE,
2028 tr("Cannot change type for medium '%s' to 'Readonly' since it is a hard disk"),
2029 m->strLocationFull.c_str());
2030 }
2031 break;
2032 }
2033 default:
2034 AssertFailedReturn(E_FAIL);
2035 }
2036
2037 if (aType == MediumType_MultiAttach)
2038 {
2039 // This type is new with VirtualBox 4.0 and therefore requires settings
2040 // version 1.11 in the settings backend. Unfortunately it is not enough to do
2041 // the usual routine in MachineConfigFile::bumpSettingsVersionIfNeeded() for
2042 // two reasons: The medium type is a property of the media registry tree, which
2043 // can reside in the global config file (for pre-4.0 media); we would therefore
2044 // possibly need to bump the global config version. We don't want to do that though
2045 // because that might make downgrading to pre-4.0 impossible.
2046 // As a result, we can only use these two new types if the medium is NOT in the
2047 // global registry:
2048 const Guid &uuidGlobalRegistry = m->pVirtualBox->i_getGlobalRegistryId();
2049 if (i_isInRegistry(uuidGlobalRegistry))
2050 return setError(VBOX_E_INVALID_OBJECT_STATE,
2051 tr("Cannot change type for medium '%s': the media type 'MultiAttach' can only be used "
2052 "on media registered with a machine that was created with VirtualBox 4.0 or later"),
2053 m->strLocationFull.c_str());
2054 }
2055
2056 m->type = aType;
2057
2058 // save the settings
2059 mlock.release();
2060 autoCaller.release();
2061 treeLock.release();
2062 i_markRegistriesModified();
2063 m->pVirtualBox->i_saveModifiedRegistries();
2064 m->pVirtualBox->i_onMediumConfigChanged(this);
2065
2066 return S_OK;
2067}
2068
2069HRESULT Medium::getAllowedTypes(std::vector<MediumType_T> &aAllowedTypes)
2070{
2071 NOREF(aAllowedTypes);
2072 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
2073
2074 ReturnComNotImplemented();
2075}
2076
2077HRESULT Medium::getParent(AutoCaller &autoCaller, ComPtr<IMedium> &aParent)
2078{
2079 autoCaller.release();
2080
2081 /* It is possible that some previous/concurrent uninit has already cleared
2082 * the pVirtualBox reference, see #uninit(). */
2083 ComObjPtr<VirtualBox> pVirtualBox(m->pVirtualBox);
2084
2085 /* we access m->pParent */
2086 AutoReadLock treeLock(!pVirtualBox.isNull() ? &pVirtualBox->i_getMediaTreeLockHandle() : NULL COMMA_LOCKVAL_SRC_POS);
2087
2088 autoCaller.add();
2089 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
2090
2091 m->pParent.queryInterfaceTo(aParent.asOutParam());
2092
2093 return S_OK;
2094}
2095
2096HRESULT Medium::getChildren(AutoCaller &autoCaller, std::vector<ComPtr<IMedium> > &aChildren)
2097{
2098 autoCaller.release();
2099
2100 /* It is possible that some previous/concurrent uninit has already cleared
2101 * the pVirtualBox reference, see #uninit(). */
2102 ComObjPtr<VirtualBox> pVirtualBox(m->pVirtualBox);
2103
2104 /* we access children */
2105 AutoReadLock treeLock(!pVirtualBox.isNull() ? &pVirtualBox->i_getMediaTreeLockHandle() : NULL COMMA_LOCKVAL_SRC_POS);
2106
2107 autoCaller.add();
2108 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
2109
2110 MediaList children(this->i_getChildren());
2111 aChildren.resize(children.size());
2112 size_t i = 0;
2113 for (MediaList::const_iterator it = children.begin(); it != children.end(); ++it, ++i)
2114 (*it).queryInterfaceTo(aChildren[i].asOutParam());
2115 return S_OK;
2116}
2117
2118HRESULT Medium::getBase(AutoCaller &autoCaller, ComPtr<IMedium> &aBase)
2119{
2120 autoCaller.release();
2121
2122 /* i_getBase() will do callers/locking */
2123 i_getBase().queryInterfaceTo(aBase.asOutParam());
2124
2125 return S_OK;
2126}
2127
2128HRESULT Medium::getReadOnly(AutoCaller &autoCaller, BOOL *aReadOnly)
2129{
2130 autoCaller.release();
2131
2132 /* isReadOnly() will do locking */
2133 *aReadOnly = i_isReadOnly();
2134
2135 return S_OK;
2136}
2137
2138HRESULT Medium::getLogicalSize(LONG64 *aLogicalSize)
2139{
2140 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
2141
2142 *aLogicalSize = (LONG64)m->logicalSize;
2143
2144 return S_OK;
2145}
2146
2147HRESULT Medium::getAutoReset(BOOL *aAutoReset)
2148{
2149 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
2150
2151 if (m->pParent.isNull())
2152 *aAutoReset = FALSE;
2153 else
2154 *aAutoReset = m->autoReset;
2155
2156 return S_OK;
2157}
2158
2159HRESULT Medium::setAutoReset(BOOL aAutoReset)
2160{
2161 AutoWriteLock mlock(this COMMA_LOCKVAL_SRC_POS);
2162
2163 if (m->pParent.isNull())
2164 return setError(VBOX_E_NOT_SUPPORTED,
2165 tr("Medium '%s' is not differencing"),
2166 m->strLocationFull.c_str());
2167
2168 if (m->autoReset != !!aAutoReset)
2169 {
2170 m->autoReset = !!aAutoReset;
2171
2172 // save the settings
2173 mlock.release();
2174 i_markRegistriesModified();
2175 m->pVirtualBox->i_saveModifiedRegistries();
2176 m->pVirtualBox->i_onMediumConfigChanged(this);
2177 }
2178
2179 return S_OK;
2180}
2181
2182HRESULT Medium::getLastAccessError(com::Utf8Str &aLastAccessError)
2183{
2184 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
2185
2186 aLastAccessError = m->strLastAccessError;
2187
2188 return S_OK;
2189}
2190
2191HRESULT Medium::getMachineIds(std::vector<com::Guid> &aMachineIds)
2192{
2193 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
2194
2195 if (m->backRefs.size() != 0)
2196 {
2197 BackRefList brlist(m->backRefs);
2198 aMachineIds.resize(brlist.size());
2199 size_t i = 0;
2200 for (BackRefList::const_iterator it = brlist.begin(); it != brlist.end(); ++it, ++i)
2201 aMachineIds[i] = it->machineId;
2202 }
2203
2204 return S_OK;
2205}
2206
2207HRESULT Medium::setIds(AutoCaller &autoCaller,
2208 BOOL aSetImageId,
2209 const com::Guid &aImageId,
2210 BOOL aSetParentId,
2211 const com::Guid &aParentId)
2212{
2213 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2214
2215 /* Wait for a concurrently running Medium::i_queryInfo to complete. */
2216 if (m->queryInfoRunning)
2217 {
2218 /* Must not hold the media tree lock, as Medium::i_queryInfo needs this
2219 * lock and thus we would run into a deadlock here. */
2220 Assert(!m->pVirtualBox->i_getMediaTreeLockHandle().isWriteLockOnCurrentThread());
2221 while (m->queryInfoRunning)
2222 {
2223 alock.release();
2224 /* must not hold the object lock now */
2225 Assert(!isWriteLockOnCurrentThread());
2226 {
2227 AutoReadLock qlock(m->queryInfoSem COMMA_LOCKVAL_SRC_POS);
2228 }
2229 alock.acquire();
2230 }
2231 }
2232
2233 switch (m->state)
2234 {
2235 case MediumState_Created:
2236 break;
2237 default:
2238 return i_setStateError();
2239 }
2240
2241 Guid imageId, parentId;
2242 if (aSetImageId)
2243 {
2244 if (aImageId.isZero())
2245 imageId.create();
2246 else
2247 {
2248 imageId = aImageId;
2249 if (!imageId.isValid())
2250 return setError(E_INVALIDARG, tr("Argument %s is invalid"), "aImageId");
2251 }
2252 }
2253 if (aSetParentId)
2254 {
2255 if (aParentId.isZero())
2256 parentId.create();
2257 else
2258 parentId = aParentId;
2259 }
2260
2261 const Guid uPrevImage = m->uuidImage;
2262 unconst(m->uuidImage) = imageId;
2263 ComObjPtr<Medium> pPrevParent = i_getParent();
2264 unconst(m->uuidParentImage) = parentId;
2265
2266 // must not hold any locks before calling Medium::i_queryInfo
2267 alock.release();
2268
2269 HRESULT hrc = i_queryInfo(!!aSetImageId /* fSetImageId */,
2270 !!aSetParentId /* fSetParentId */,
2271 autoCaller);
2272
2273 AutoReadLock arlock(this COMMA_LOCKVAL_SRC_POS);
2274 const Guid uCurrImage = m->uuidImage;
2275 ComObjPtr<Medium> pCurrParent = i_getParent();
2276 arlock.release();
2277
2278 if (SUCCEEDED(hrc))
2279 {
2280 if (uCurrImage != uPrevImage)
2281 m->pVirtualBox->i_onMediumConfigChanged(this);
2282 if (pPrevParent != pCurrParent)
2283 {
2284 if (pPrevParent)
2285 m->pVirtualBox->i_onMediumConfigChanged(pPrevParent);
2286 if (pCurrParent)
2287 m->pVirtualBox->i_onMediumConfigChanged(pCurrParent);
2288 }
2289 }
2290
2291 return hrc;
2292}
2293
2294HRESULT Medium::refreshState(AutoCaller &autoCaller, MediumState_T *aState)
2295{
2296 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
2297
2298 HRESULT hrc = S_OK;
2299
2300 switch (m->state)
2301 {
2302 case MediumState_Created:
2303 case MediumState_Inaccessible:
2304 case MediumState_LockedRead:
2305 {
2306 // must not hold any locks before calling Medium::i_queryInfo
2307 alock.release();
2308
2309 hrc = i_queryInfo(false /* fSetImageId */, false /* fSetParentId */, autoCaller);
2310
2311 alock.acquire();
2312 break;
2313 }
2314 default:
2315 break;
2316 }
2317
2318 *aState = m->state;
2319
2320 return hrc;
2321}
2322
2323HRESULT Medium::getSnapshotIds(const com::Guid &aMachineId,
2324 std::vector<com::Guid> &aSnapshotIds)
2325{
2326 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
2327
2328 for (BackRefList::const_iterator it = m->backRefs.begin();
2329 it != m->backRefs.end(); ++it)
2330 {
2331 if (it->machineId == aMachineId)
2332 {
2333 size_t size = it->llSnapshotIds.size();
2334
2335 /* if the medium is attached to the machine in the current state, we
2336 * return its ID as the first element of the array */
2337 if (it->fInCurState)
2338 ++size;
2339
2340 if (size > 0)
2341 {
2342 aSnapshotIds.resize(size);
2343
2344 size_t j = 0;
2345 if (it->fInCurState)
2346 aSnapshotIds[j++] = it->machineId.toUtf16();
2347
2348 for(std::list<SnapshotRef>::const_iterator jt = it->llSnapshotIds.begin(); jt != it->llSnapshotIds.end(); ++jt, ++j)
2349 aSnapshotIds[j] = jt->snapshotId;
2350 }
2351
2352 break;
2353 }
2354 }
2355
2356 return S_OK;
2357}
2358
2359HRESULT Medium::lockRead(ComPtr<IToken> &aToken)
2360{
2361 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2362
2363 /* Wait for a concurrently running Medium::i_queryInfo to complete. */
2364 if (m->queryInfoRunning)
2365 {
2366 /* Must not hold the media tree lock, as Medium::i_queryInfo needs this
2367 * lock and thus we would run into a deadlock here. */
2368 Assert(!m->pVirtualBox->i_getMediaTreeLockHandle().isWriteLockOnCurrentThread());
2369 while (m->queryInfoRunning)
2370 {
2371 alock.release();
2372 /* must not hold the object lock now */
2373 Assert(!isWriteLockOnCurrentThread());
2374 {
2375 AutoReadLock qlock(m->queryInfoSem COMMA_LOCKVAL_SRC_POS);
2376 }
2377 alock.acquire();
2378 }
2379 }
2380
2381 HRESULT hrc = S_OK;
2382
2383 switch (m->state)
2384 {
2385 case MediumState_Created:
2386 case MediumState_Inaccessible:
2387 case MediumState_LockedRead:
2388 {
2389 ++m->readers;
2390
2391 ComAssertMsgBreak(m->readers != 0, (tr("Counter overflow")), hrc = E_FAIL);
2392
2393 /* Remember pre-lock state */
2394 if (m->state != MediumState_LockedRead)
2395 m->preLockState = m->state;
2396
2397 LogFlowThisFunc(("Okay - prev state=%d readers=%d\n", m->state, m->readers));
2398 m->state = MediumState_LockedRead;
2399
2400 ComObjPtr<MediumLockToken> pToken;
2401 hrc = pToken.createObject();
2402 if (SUCCEEDED(hrc))
2403 hrc = pToken->init(this, false /* fWrite */);
2404 if (FAILED(hrc))
2405 {
2406 --m->readers;
2407 if (m->readers == 0)
2408 m->state = m->preLockState;
2409 return hrc;
2410 }
2411
2412 pToken.queryInterfaceTo(aToken.asOutParam());
2413 break;
2414 }
2415 default:
2416 {
2417 LogFlowThisFunc(("Failing - state=%d\n", m->state));
2418 hrc = i_setStateError();
2419 break;
2420 }
2421 }
2422
2423 return hrc;
2424}
2425
2426/**
2427 * @note @a aState may be NULL if the state value is not needed (only for
2428 * in-process calls).
2429 */
2430HRESULT Medium::i_unlockRead(MediumState_T *aState)
2431{
2432 AutoCaller autoCaller(this);
2433 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
2434
2435 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2436
2437 HRESULT hrc = S_OK;
2438
2439 switch (m->state)
2440 {
2441 case MediumState_LockedRead:
2442 {
2443 ComAssertMsgBreak(m->readers != 0, (tr("Counter underflow")), hrc = E_FAIL);
2444 --m->readers;
2445
2446 /* Reset the state after the last reader */
2447 if (m->readers == 0)
2448 {
2449 m->state = m->preLockState;
2450 /* There are cases where we inject the deleting state into
2451 * a medium locked for reading. Make sure #unmarkForDeletion()
2452 * gets the right state afterwards. */
2453 if (m->preLockState == MediumState_Deleting)
2454 m->preLockState = MediumState_Created;
2455 }
2456
2457 LogFlowThisFunc(("new state=%d\n", m->state));
2458 break;
2459 }
2460 default:
2461 {
2462 LogFlowThisFunc(("Failing - state=%d\n", m->state));
2463 hrc = setError(VBOX_E_INVALID_OBJECT_STATE, tr("Medium '%s' is not locked for reading"), m->strLocationFull.c_str());
2464 break;
2465 }
2466 }
2467
2468 /* return the current state after */
2469 if (aState)
2470 *aState = m->state;
2471
2472 return hrc;
2473}
2474HRESULT Medium::lockWrite(ComPtr<IToken> &aToken)
2475{
2476 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2477
2478 /* Wait for a concurrently running Medium::i_queryInfo to complete. */
2479 if (m->queryInfoRunning)
2480 {
2481 /* Must not hold the media tree lock, as Medium::i_queryInfo needs this
2482 * lock and thus we would run into a deadlock here. */
2483 Assert(!m->pVirtualBox->i_getMediaTreeLockHandle().isWriteLockOnCurrentThread());
2484 while (m->queryInfoRunning)
2485 {
2486 alock.release();
2487 /* must not hold the object lock now */
2488 Assert(!isWriteLockOnCurrentThread());
2489 {
2490 AutoReadLock qlock(m->queryInfoSem COMMA_LOCKVAL_SRC_POS);
2491 }
2492 alock.acquire();
2493 }
2494 }
2495
2496 HRESULT hrc = S_OK;
2497
2498 switch (m->state)
2499 {
2500 case MediumState_Created:
2501 case MediumState_Inaccessible:
2502 {
2503 m->preLockState = m->state;
2504
2505 LogFlowThisFunc(("Okay - prev state=%d locationFull=%s\n", m->state, i_getLocationFull().c_str()));
2506 m->state = MediumState_LockedWrite;
2507
2508 ComObjPtr<MediumLockToken> pToken;
2509 hrc = pToken.createObject();
2510 if (SUCCEEDED(hrc))
2511 hrc = pToken->init(this, true /* fWrite */);
2512 if (FAILED(hrc))
2513 {
2514 m->state = m->preLockState;
2515 return hrc;
2516 }
2517
2518 pToken.queryInterfaceTo(aToken.asOutParam());
2519 break;
2520 }
2521 default:
2522 {
2523 LogFlowThisFunc(("Failing - state=%d locationFull=%s\n", m->state, i_getLocationFull().c_str()));
2524 hrc = i_setStateError();
2525 break;
2526 }
2527 }
2528
2529 return hrc;
2530}
2531
2532/**
2533 * @note @a aState may be NULL if the state value is not needed (only for
2534 * in-process calls).
2535 */
2536HRESULT Medium::i_unlockWrite(MediumState_T *aState)
2537{
2538 AutoCaller autoCaller(this);
2539 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
2540
2541 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2542
2543 HRESULT hrc = S_OK;
2544
2545 switch (m->state)
2546 {
2547 case MediumState_LockedWrite:
2548 {
2549 m->state = m->preLockState;
2550 /* There are cases where we inject the deleting state into
2551 * a medium locked for writing. Make sure #unmarkForDeletion()
2552 * gets the right state afterwards. */
2553 if (m->preLockState == MediumState_Deleting)
2554 m->preLockState = MediumState_Created;
2555 LogFlowThisFunc(("new state=%d locationFull=%s\n", m->state, i_getLocationFull().c_str()));
2556 break;
2557 }
2558 default:
2559 {
2560 LogFlowThisFunc(("Failing - state=%d locationFull=%s\n", m->state, i_getLocationFull().c_str()));
2561 hrc = setError(VBOX_E_INVALID_OBJECT_STATE, tr("Medium '%s' is not locked for writing"), m->strLocationFull.c_str());
2562 break;
2563 }
2564 }
2565
2566 /* return the current state after */
2567 if (aState)
2568 *aState = m->state;
2569
2570 return hrc;
2571}
2572
2573HRESULT Medium::close(AutoCaller &aAutoCaller)
2574{
2575 // make a copy of VirtualBox pointer which gets nulled by uninit()
2576 ComObjPtr<VirtualBox> pVirtualBox(m->pVirtualBox);
2577
2578 Guid uId = i_getId();
2579 DeviceType_T devType = i_getDeviceType();
2580 MultiResult mrc = i_close(aAutoCaller);
2581
2582 pVirtualBox->i_saveModifiedRegistries();
2583
2584 if (SUCCEEDED(mrc) && uId.isValid() && !uId.isZero())
2585 pVirtualBox->i_onMediumRegistered(uId, devType, FALSE);
2586
2587 return mrc;
2588}
2589
2590HRESULT Medium::getProperty(const com::Utf8Str &aName,
2591 com::Utf8Str &aValue)
2592{
2593 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
2594
2595 settings::StringsMap::const_iterator it = m->mapProperties.find(aName);
2596 if (it == m->mapProperties.end())
2597 {
2598 if (!aName.startsWith("Special/"))
2599 return setError(VBOX_E_OBJECT_NOT_FOUND,
2600 tr("Property '%s' does not exist"), aName.c_str());
2601 else
2602 /* be more silent here */
2603 return VBOX_E_OBJECT_NOT_FOUND;
2604 }
2605
2606 aValue = it->second;
2607
2608 return S_OK;
2609}
2610
2611HRESULT Medium::setProperty(const com::Utf8Str &aName,
2612 const com::Utf8Str &aValue)
2613{
2614 AutoWriteLock mlock(this COMMA_LOCKVAL_SRC_POS);
2615
2616 /* Wait for a concurrently running Medium::i_queryInfo to complete. */
2617 if (m->queryInfoRunning)
2618 {
2619 /* Must not hold the media tree lock, as Medium::i_queryInfo needs this
2620 * lock and thus we would run into a deadlock here. */
2621 Assert(!m->pVirtualBox->i_getMediaTreeLockHandle().isWriteLockOnCurrentThread());
2622 while (m->queryInfoRunning)
2623 {
2624 mlock.release();
2625 /* must not hold the object lock now */
2626 Assert(!isWriteLockOnCurrentThread());
2627 {
2628 AutoReadLock qlock(m->queryInfoSem COMMA_LOCKVAL_SRC_POS);
2629 }
2630 mlock.acquire();
2631 }
2632 }
2633
2634 switch (m->state)
2635 {
2636 case MediumState_NotCreated:
2637 case MediumState_Created:
2638 case MediumState_Inaccessible:
2639 break;
2640 default:
2641 return i_setStateError();
2642 }
2643
2644 settings::StringsMap::iterator it = m->mapProperties.find(aName);
2645 if ( !aName.startsWith("Special/")
2646 && !i_isPropertyForFilter(aName))
2647 {
2648 if (it == m->mapProperties.end())
2649 return setError(VBOX_E_OBJECT_NOT_FOUND,
2650 tr("Property '%s' does not exist"),
2651 aName.c_str());
2652 it->second = aValue;
2653 }
2654 else
2655 {
2656 if (it == m->mapProperties.end())
2657 {
2658 if (!aValue.isEmpty())
2659 m->mapProperties[aName] = aValue;
2660 }
2661 else
2662 {
2663 if (!aValue.isEmpty())
2664 it->second = aValue;
2665 else
2666 m->mapProperties.erase(it);
2667 }
2668 }
2669
2670 // save the settings
2671 mlock.release();
2672 i_markRegistriesModified();
2673 m->pVirtualBox->i_saveModifiedRegistries();
2674 m->pVirtualBox->i_onMediumConfigChanged(this);
2675
2676 return S_OK;
2677}
2678
2679HRESULT Medium::getProperties(const com::Utf8Str &aNames,
2680 std::vector<com::Utf8Str> &aReturnNames,
2681 std::vector<com::Utf8Str> &aReturnValues)
2682{
2683 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
2684
2685 /// @todo make use of aNames according to the documentation
2686 NOREF(aNames);
2687
2688 aReturnNames.resize(m->mapProperties.size());
2689 aReturnValues.resize(m->mapProperties.size());
2690 size_t i = 0;
2691 for (settings::StringsMap::const_iterator it = m->mapProperties.begin();
2692 it != m->mapProperties.end();
2693 ++it, ++i)
2694 {
2695 aReturnNames[i] = it->first;
2696 aReturnValues[i] = it->second;
2697 }
2698 return S_OK;
2699}
2700
2701HRESULT Medium::setProperties(const std::vector<com::Utf8Str> &aNames,
2702 const std::vector<com::Utf8Str> &aValues)
2703{
2704 AutoWriteLock mlock(this COMMA_LOCKVAL_SRC_POS);
2705
2706 /* first pass: validate names */
2707 for (size_t i = 0;
2708 i < aNames.size();
2709 ++i)
2710 {
2711 Utf8Str strName(aNames[i]);
2712 if ( !strName.startsWith("Special/")
2713 && !i_isPropertyForFilter(strName)
2714 && m->mapProperties.find(strName) == m->mapProperties.end())
2715 return setError(VBOX_E_OBJECT_NOT_FOUND,
2716 tr("Property '%s' does not exist"), strName.c_str());
2717 }
2718
2719 /* second pass: assign */
2720 for (size_t i = 0;
2721 i < aNames.size();
2722 ++i)
2723 {
2724 Utf8Str strName(aNames[i]);
2725 Utf8Str strValue(aValues[i]);
2726 settings::StringsMap::iterator it = m->mapProperties.find(strName);
2727 if ( !strName.startsWith("Special/")
2728 && !i_isPropertyForFilter(strName))
2729 {
2730 AssertReturn(it != m->mapProperties.end(), E_FAIL);
2731 it->second = strValue;
2732 }
2733 else
2734 {
2735 if (it == m->mapProperties.end())
2736 {
2737 if (!strValue.isEmpty())
2738 m->mapProperties[strName] = strValue;
2739 }
2740 else
2741 {
2742 if (!strValue.isEmpty())
2743 it->second = strValue;
2744 else
2745 m->mapProperties.erase(it);
2746 }
2747 }
2748 }
2749
2750 // save the settings
2751 mlock.release();
2752 i_markRegistriesModified();
2753 m->pVirtualBox->i_saveModifiedRegistries();
2754 m->pVirtualBox->i_onMediumConfigChanged(this);
2755
2756 return S_OK;
2757}
2758
2759HRESULT Medium::createBaseStorage(LONG64 aLogicalSize,
2760 const std::vector<MediumVariant_T> &aVariant,
2761 ComPtr<IProgress> &aProgress)
2762{
2763 if (aLogicalSize < 0)
2764 return setError(E_INVALIDARG, tr("The medium size argument (%lld) is negative"), aLogicalSize);
2765
2766 HRESULT hrc = S_OK;
2767 ComObjPtr<Progress> pProgress;
2768 Medium::Task *pTask = NULL;
2769
2770 try
2771 {
2772 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
2773
2774 ULONG mediumVariantFlags = 0;
2775
2776 if (aVariant.size())
2777 {
2778 for (size_t i = 0; i < aVariant.size(); i++)
2779 mediumVariantFlags |= (ULONG)aVariant[i];
2780 }
2781
2782 mediumVariantFlags &= ((unsigned)~MediumVariant_Diff);
2783
2784 if ( !(mediumVariantFlags & MediumVariant_Fixed)
2785 && !(m->formatObj->i_getCapabilities() & MediumFormatCapabilities_CreateDynamic))
2786 throw setError(VBOX_E_NOT_SUPPORTED,
2787 tr("Medium format '%s' does not support dynamic storage creation"),
2788 m->strFormat.c_str());
2789
2790 if ( (mediumVariantFlags & MediumVariant_Fixed)
2791 && !(m->formatObj->i_getCapabilities() & MediumFormatCapabilities_CreateFixed))
2792 throw setError(VBOX_E_NOT_SUPPORTED,
2793 tr("Medium format '%s' does not support fixed storage creation"),
2794 m->strFormat.c_str());
2795
2796 if ( (mediumVariantFlags & MediumVariant_Formatted)
2797 && i_getDeviceType() != DeviceType_Floppy)
2798 throw setError(VBOX_E_NOT_SUPPORTED,
2799 tr("Medium variant 'formatted' applies to floppy images only"));
2800
2801 if (m->state != MediumState_NotCreated)
2802 throw i_setStateError();
2803
2804 pProgress.createObject();
2805 hrc = pProgress->init(m->pVirtualBox,
2806 static_cast<IMedium*>(this),
2807 mediumVariantFlags & MediumVariant_Fixed
2808 ? BstrFmt(tr("Creating fixed medium storage unit '%s'"), m->strLocationFull.c_str()).raw()
2809 : BstrFmt(tr("Creating dynamic medium storage unit '%s'"), m->strLocationFull.c_str()).raw(),
2810 TRUE /* aCancelable */);
2811 if (FAILED(hrc))
2812 throw hrc;
2813
2814 /* setup task object to carry out the operation asynchronously */
2815 pTask = new Medium::CreateBaseTask(this, pProgress, (uint64_t)aLogicalSize,
2816 (MediumVariant_T)mediumVariantFlags);
2817 hrc = pTask->hrc();
2818 AssertComRC(hrc);
2819 if (FAILED(hrc))
2820 throw hrc;
2821
2822 m->state = MediumState_Creating;
2823 }
2824 catch (HRESULT hrcXcpt)
2825 {
2826 hrc = hrcXcpt;
2827 }
2828
2829 if (SUCCEEDED(hrc))
2830 {
2831 hrc = pTask->createThread();
2832 pTask = NULL;
2833
2834 if (SUCCEEDED(hrc))
2835 pProgress.queryInterfaceTo(aProgress.asOutParam());
2836 }
2837 else if (pTask != NULL)
2838 delete pTask;
2839
2840 return hrc;
2841}
2842
2843HRESULT Medium::deleteStorage(ComPtr<IProgress> &aProgress)
2844{
2845 ComObjPtr<Progress> pProgress;
2846
2847 MultiResult mrc = i_deleteStorage(&pProgress,
2848 false /* aWait */,
2849 true /* aNotify */);
2850 /* Must save the registries in any case, since an entry was removed. */
2851 m->pVirtualBox->i_saveModifiedRegistries();
2852
2853 if (SUCCEEDED(mrc))
2854 pProgress.queryInterfaceTo(aProgress.asOutParam());
2855
2856 return mrc;
2857}
2858
2859HRESULT Medium::createDiffStorage(AutoCaller &autoCaller,
2860 const ComPtr<IMedium> &aTarget,
2861 const std::vector<MediumVariant_T> &aVariant,
2862 ComPtr<IProgress> &aProgress)
2863{
2864 IMedium *aT = aTarget;
2865 ComObjPtr<Medium> diff = static_cast<Medium*>(aT);
2866
2867 autoCaller.release();
2868
2869 /* It is possible that some previous/concurrent uninit has already cleared
2870 * the pVirtualBox reference, see #uninit(). */
2871 ComObjPtr<VirtualBox> pVirtualBox(m->pVirtualBox);
2872
2873 // we access m->pParent
2874 AutoReadLock treeLock(!pVirtualBox.isNull() ? &pVirtualBox->i_getMediaTreeLockHandle() : NULL COMMA_LOCKVAL_SRC_POS);
2875
2876 autoCaller.add();
2877 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
2878
2879 AutoMultiWriteLock2 alock(this, diff COMMA_LOCKVAL_SRC_POS);
2880
2881 if (m->type == MediumType_Writethrough)
2882 return setError(VBOX_E_INVALID_OBJECT_STATE,
2883 tr("Medium type of '%s' is Writethrough"),
2884 m->strLocationFull.c_str());
2885 else if (m->type == MediumType_Shareable)
2886 return setError(VBOX_E_INVALID_OBJECT_STATE,
2887 tr("Medium type of '%s' is Shareable"),
2888 m->strLocationFull.c_str());
2889 else if (m->type == MediumType_Readonly)
2890 return setError(VBOX_E_INVALID_OBJECT_STATE,
2891 tr("Medium type of '%s' is Readonly"),
2892 m->strLocationFull.c_str());
2893
2894 /* Apply the normal locking logic to the entire chain. */
2895 MediumLockList *pMediumLockList(new MediumLockList());
2896 alock.release();
2897 autoCaller.release();
2898 treeLock.release();
2899 HRESULT hrc = diff->i_createMediumLockList(true /* fFailIfInaccessible */,
2900 diff /* pToLockWrite */,
2901 false /* fMediumLockWriteAll */,
2902 this,
2903 *pMediumLockList);
2904 treeLock.acquire();
2905 autoCaller.add();
2906 if (FAILED(autoCaller.hrc()))
2907 hrc = autoCaller.hrc();
2908 alock.acquire();
2909 if (FAILED(hrc))
2910 {
2911 delete pMediumLockList;
2912 return hrc;
2913 }
2914
2915 alock.release();
2916 autoCaller.release();
2917 treeLock.release();
2918 hrc = pMediumLockList->Lock();
2919 treeLock.acquire();
2920 autoCaller.add();
2921 if (FAILED(autoCaller.hrc()))
2922 hrc = autoCaller.hrc();
2923 alock.acquire();
2924 if (FAILED(hrc))
2925 {
2926 delete pMediumLockList;
2927
2928 return setError(hrc, tr("Could not lock medium when creating diff '%s'"),
2929 diff->i_getLocationFull().c_str());
2930 }
2931
2932 Guid parentMachineRegistry;
2933 if (i_getFirstRegistryMachineId(parentMachineRegistry))
2934 {
2935 /* since this medium has been just created it isn't associated yet */
2936 diff->m->llRegistryIDs.push_back(parentMachineRegistry);
2937 alock.release();
2938 autoCaller.release();
2939 treeLock.release();
2940 diff->i_markRegistriesModified();
2941 treeLock.acquire();
2942 autoCaller.add();
2943 alock.acquire();
2944 }
2945
2946 alock.release();
2947 autoCaller.release();
2948 treeLock.release();
2949
2950 ComObjPtr<Progress> pProgress;
2951
2952 ULONG mediumVariantFlags = 0;
2953
2954 if (aVariant.size())
2955 {
2956 for (size_t i = 0; i < aVariant.size(); i++)
2957 mediumVariantFlags |= (ULONG)aVariant[i];
2958 }
2959
2960 if (mediumVariantFlags & MediumVariant_Formatted)
2961 {
2962 delete pMediumLockList;
2963 return setError(VBOX_E_NOT_SUPPORTED,
2964 tr("Medium variant 'formatted' applies to floppy images only"));
2965 }
2966
2967 hrc = i_createDiffStorage(diff, (MediumVariant_T)mediumVariantFlags, pMediumLockList,
2968 &pProgress, false /* aWait */, true /* aNotify */);
2969 if (FAILED(hrc))
2970 delete pMediumLockList;
2971 else
2972 pProgress.queryInterfaceTo(aProgress.asOutParam());
2973
2974 return hrc;
2975}
2976
2977HRESULT Medium::mergeTo(const ComPtr<IMedium> &aTarget,
2978 ComPtr<IProgress> &aProgress)
2979{
2980 IMedium *aT = aTarget;
2981
2982 ComAssertRet(aT != this, E_INVALIDARG);
2983
2984 ComObjPtr<Medium> pTarget = static_cast<Medium*>(aT);
2985
2986 bool fMergeForward = false;
2987 ComObjPtr<Medium> pParentForTarget;
2988 MediumLockList *pChildrenToReparent = NULL;
2989 MediumLockList *pMediumLockList = NULL;
2990
2991 HRESULT hrc = i_prepareMergeTo(pTarget, NULL, NULL, true, fMergeForward,
2992 pParentForTarget, pChildrenToReparent, pMediumLockList);
2993 if (FAILED(hrc)) return hrc;
2994
2995 ComObjPtr<Progress> pProgress;
2996
2997 hrc = i_mergeTo(pTarget, fMergeForward, pParentForTarget, pChildrenToReparent,
2998 pMediumLockList, &pProgress, false /* aWait */, true /* aNotify */);
2999 if (FAILED(hrc))
3000 i_cancelMergeTo(pChildrenToReparent, pMediumLockList);
3001 else
3002 pProgress.queryInterfaceTo(aProgress.asOutParam());
3003
3004 return hrc;
3005}
3006
3007HRESULT Medium::cloneToBase(const ComPtr<IMedium> &aTarget,
3008 const std::vector<MediumVariant_T> &aVariant,
3009 ComPtr<IProgress> &aProgress)
3010{
3011 return cloneTo(aTarget, aVariant, NULL, aProgress);
3012}
3013
3014HRESULT Medium::cloneTo(const ComPtr<IMedium> &aTarget,
3015 const std::vector<MediumVariant_T> &aVariant,
3016 const ComPtr<IMedium> &aParent,
3017 ComPtr<IProgress> &aProgress)
3018{
3019 /** @todo r=jack: Remove redundancy. Call Medium::resizeAndCloneTo. */
3020
3021 /** @todo r=klaus The code below needs to be double checked with regard
3022 * to lock order violations, it probably causes lock order issues related
3023 * to the AutoCaller usage. */
3024 ComAssertRet(aTarget != this, E_INVALIDARG);
3025
3026 IMedium *aT = aTarget;
3027 ComObjPtr<Medium> pTarget = static_cast<Medium*>(aT);
3028 ComObjPtr<Medium> pParent;
3029 if (aParent)
3030 {
3031 IMedium *aP = aParent;
3032 pParent = static_cast<Medium*>(aP);
3033 }
3034
3035 HRESULT hrc = S_OK;
3036 ComObjPtr<Progress> pProgress;
3037 Medium::Task *pTask = NULL;
3038
3039 try
3040 {
3041 // locking: we need the tree lock first because we access parent pointers
3042 // and we need to write-lock the media involved
3043 uint32_t cHandles = 3;
3044 LockHandle* pHandles[4] = { &m->pVirtualBox->i_getMediaTreeLockHandle(),
3045 this->lockHandle(),
3046 pTarget->lockHandle() };
3047 /* Only add parent to the lock if it is not null */
3048 if (!pParent.isNull())
3049 pHandles[cHandles++] = pParent->lockHandle();
3050 AutoWriteLock alock(cHandles,
3051 pHandles
3052 COMMA_LOCKVAL_SRC_POS);
3053
3054 if ( pTarget->m->state != MediumState_NotCreated
3055 && pTarget->m->state != MediumState_Created)
3056 throw pTarget->i_setStateError();
3057
3058 /* Build the source lock list. */
3059 MediumLockList *pSourceMediumLockList(new MediumLockList());
3060 alock.release();
3061 hrc = i_createMediumLockList(true /* fFailIfInaccessible */,
3062 NULL /* pToLockWrite */,
3063 false /* fMediumLockWriteAll */,
3064 NULL,
3065 *pSourceMediumLockList);
3066 alock.acquire();
3067 if (FAILED(hrc))
3068 {
3069 delete pSourceMediumLockList;
3070 throw hrc;
3071 }
3072
3073 /* Build the target lock list (including the to-be parent chain). */
3074 MediumLockList *pTargetMediumLockList(new MediumLockList());
3075 alock.release();
3076 hrc = pTarget->i_createMediumLockList(true /* fFailIfInaccessible */,
3077 pTarget /* pToLockWrite */,
3078 false /* fMediumLockWriteAll */,
3079 pParent,
3080 *pTargetMediumLockList);
3081 alock.acquire();
3082 if (FAILED(hrc))
3083 {
3084 delete pSourceMediumLockList;
3085 delete pTargetMediumLockList;
3086 throw hrc;
3087 }
3088
3089 alock.release();
3090 hrc = pSourceMediumLockList->Lock();
3091 alock.acquire();
3092 if (FAILED(hrc))
3093 {
3094 delete pSourceMediumLockList;
3095 delete pTargetMediumLockList;
3096 throw setError(hrc,
3097 tr("Failed to lock source media '%s'"),
3098 i_getLocationFull().c_str());
3099 }
3100 alock.release();
3101 hrc = pTargetMediumLockList->Lock();
3102 alock.acquire();
3103 if (FAILED(hrc))
3104 {
3105 delete pSourceMediumLockList;
3106 delete pTargetMediumLockList;
3107 throw setError(hrc,
3108 tr("Failed to lock target media '%s'"),
3109 pTarget->i_getLocationFull().c_str());
3110 }
3111
3112 pProgress.createObject();
3113 hrc = pProgress->init(m->pVirtualBox,
3114 static_cast <IMedium *>(this),
3115 BstrFmt(tr("Creating clone medium '%s'"), pTarget->m->strLocationFull.c_str()).raw(),
3116 TRUE /* aCancelable */);
3117 if (FAILED(hrc))
3118 {
3119 delete pSourceMediumLockList;
3120 delete pTargetMediumLockList;
3121 throw hrc;
3122 }
3123
3124 ULONG mediumVariantFlags = 0;
3125
3126 if (aVariant.size())
3127 {
3128 for (size_t i = 0; i < aVariant.size(); i++)
3129 mediumVariantFlags |= (ULONG)aVariant[i];
3130 }
3131
3132 if (mediumVariantFlags & MediumVariant_Formatted)
3133 {
3134 delete pSourceMediumLockList;
3135 delete pTargetMediumLockList;
3136 throw setError(VBOX_E_NOT_SUPPORTED,
3137 tr("Medium variant 'formatted' applies to floppy images only"));
3138 }
3139
3140 /* setup task object to carry out the operation asynchronously */
3141 pTask = new Medium::CloneTask(this, pProgress, pTarget,
3142 (MediumVariant_T)mediumVariantFlags,
3143 pParent, UINT32_MAX, UINT32_MAX,
3144 pSourceMediumLockList, pTargetMediumLockList);
3145 hrc = pTask->hrc();
3146 AssertComRC(hrc);
3147 if (FAILED(hrc))
3148 throw hrc;
3149
3150 if (pTarget->m->state == MediumState_NotCreated)
3151 pTarget->m->state = MediumState_Creating;
3152 }
3153 catch (HRESULT hrcXcpt)
3154 {
3155 hrc = hrcXcpt;
3156 }
3157
3158 if (SUCCEEDED(hrc))
3159 {
3160 hrc = pTask->createThread();
3161 pTask = NULL;
3162 if (SUCCEEDED(hrc))
3163 pProgress.queryInterfaceTo(aProgress.asOutParam());
3164 }
3165 else if (pTask != NULL)
3166 delete pTask;
3167
3168 return hrc;
3169}
3170
3171/**
3172 * This is a helper function that combines the functionality of
3173 * Medium::cloneTo() and Medium::resize(). The target medium will take the
3174 * contents of the calling medium.
3175 *
3176 * @param aTarget Medium to resize and clone to
3177 * @param aLogicalSize Desired size for targer medium
3178 * @param aVariant
3179 * @param aParent
3180 * @param aProgress
3181 * @return HRESULT
3182 */
3183HRESULT Medium::resizeAndCloneTo(const ComPtr<IMedium> &aTarget,
3184 LONG64 aLogicalSize,
3185 const std::vector<MediumVariant_T> &aVariant,
3186 const ComPtr<IMedium> &aParent,
3187 ComPtr<IProgress> &aProgress)
3188{
3189 /* Check for valid args */
3190 ComAssertRet(aTarget != this, E_INVALIDARG);
3191 CheckComArgExpr(aLogicalSize, aLogicalSize >= 0);
3192
3193 /* Convert args to usable/needed types */
3194 IMedium *aT = aTarget;
3195 ComObjPtr<Medium> pTarget = static_cast<Medium*>(aT);
3196 ComObjPtr<Medium> pParent;
3197 if (aParent)
3198 {
3199 IMedium *aP = aParent;
3200 pParent = static_cast<Medium*>(aP);
3201 }
3202
3203 /* Set up variables. Fetch needed data in lockable blocks */
3204 HRESULT hrc = S_OK;
3205 Medium::Task *pTask = NULL;
3206
3207 Utf8Str strSourceName;
3208 {
3209 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
3210 strSourceName = i_getName();
3211 }
3212
3213 uint64_t uTargetExistingSize = 0;
3214 Utf8Str strTargetName;
3215 {
3216 AutoReadLock alock(pTarget COMMA_LOCKVAL_SRC_POS);
3217 uTargetExistingSize = pTarget->i_getLogicalSize();
3218 strTargetName = pTarget->i_getName();
3219 }
3220
3221 /* Set up internal multi-subprocess progress object */
3222 ComObjPtr<Progress> pProgress;
3223 pProgress.createObject();
3224 hrc = pProgress->init(m->pVirtualBox,
3225 static_cast<IMedium*>(this),
3226 BstrFmt(tr("Resizing medium and cloning into it")).raw(),
3227 TRUE, /* aCancelable */
3228 2, /* Number of opearations */
3229 BstrFmt(tr("Resizing medium before clone")).raw()
3230 );
3231 if (FAILED(hrc))
3232 return hrc;
3233
3234 /* If target does not exist, handle resize. */
3235 if (pTarget->m->state != MediumState_NotCreated && aLogicalSize > 0)
3236 {
3237 if ((LONG64)uTargetExistingSize != aLogicalSize) {
3238 if (!i_isMediumFormatFile())
3239 {
3240 hrc = setError(VBOX_E_NOT_SUPPORTED,
3241 tr("Sizes of '%s' and '%s' are different and medium format does not support resing"),
3242 strSourceName.c_str(), strTargetName.c_str());
3243 return hrc;
3244 }
3245
3246 /**
3247 * Need to lock the target medium as i_resize does do so
3248 * automatically.
3249 */
3250
3251 ComPtr<IToken> pToken;
3252 hrc = pTarget->LockWrite(pToken.asOutParam());
3253
3254 if (FAILED(hrc)) return hrc;
3255
3256 /**
3257 * Have to make own lock list, because "resize" method resizes only
3258 * last image in the lock chain.
3259 */
3260
3261 MediumLockList* pMediumLockListForResize = new MediumLockList();
3262 pMediumLockListForResize->Append(pTarget, pTarget->m->state == MediumState_LockedWrite);
3263
3264 hrc = pMediumLockListForResize->Lock(true /* fSkipOverLockedMedia */);
3265 if (FAILED(hrc))
3266 {
3267 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3268 hrc = setError(hrc,
3269 tr("Failed to lock the medium '%s' to resize before merge"),
3270 strTargetName.c_str());
3271 delete pMediumLockListForResize;
3272 return hrc;
3273 }
3274
3275
3276 hrc = pTarget->i_resize((uint64_t)aLogicalSize, pMediumLockListForResize, &pProgress, true, false);
3277 if (FAILED(hrc))
3278 {
3279 /* No need to setError becasue i_resize and i_taskResizeHandler handle this automatically. */
3280 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3281 delete pMediumLockListForResize;
3282 return hrc;
3283 }
3284
3285 delete pMediumLockListForResize;
3286
3287 pTarget->m->logicalSize = (uint64_t)aLogicalSize;
3288
3289 pToken->Abandon();
3290 pToken.setNull();
3291 }
3292 }
3293
3294 /* Report progress to supplied progress argument */
3295 if (SUCCEEDED(hrc))
3296 {
3297 pProgress.queryInterfaceTo(aProgress.asOutParam());
3298 }
3299
3300 try
3301 {
3302 // locking: we need the tree lock first because we access parent pointers
3303 // and we need to write-lock the media involved
3304 uint32_t cHandles = 3;
3305 LockHandle* pHandles[4] = { &m->pVirtualBox->i_getMediaTreeLockHandle(),
3306 this->lockHandle(),
3307 pTarget->lockHandle() };
3308 /* Only add parent to the lock if it is not null */
3309 if (!pParent.isNull())
3310 pHandles[cHandles++] = pParent->lockHandle();
3311 AutoWriteLock alock(cHandles,
3312 pHandles
3313 COMMA_LOCKVAL_SRC_POS);
3314
3315 if ( pTarget->m->state != MediumState_NotCreated
3316 && pTarget->m->state != MediumState_Created)
3317 throw pTarget->i_setStateError();
3318
3319 /* Build the source lock list. */
3320 MediumLockList *pSourceMediumLockList(new MediumLockList());
3321 alock.release();
3322 hrc = i_createMediumLockList(true /* fFailIfInaccessible */,
3323 NULL /* pToLockWrite */,
3324 false /* fMediumLockWriteAll */,
3325 NULL,
3326 *pSourceMediumLockList);
3327 alock.acquire();
3328 if (FAILED(hrc))
3329 {
3330 delete pSourceMediumLockList;
3331 throw hrc;
3332 }
3333
3334 /* Build the target lock list (including the to-be parent chain). */
3335 MediumLockList *pTargetMediumLockList(new MediumLockList());
3336 alock.release();
3337 hrc = pTarget->i_createMediumLockList(true /* fFailIfInaccessible */,
3338 pTarget /* pToLockWrite */,
3339 false /* fMediumLockWriteAll */,
3340 pParent,
3341 *pTargetMediumLockList);
3342 alock.acquire();
3343 if (FAILED(hrc))
3344 {
3345 delete pSourceMediumLockList;
3346 delete pTargetMediumLockList;
3347 throw hrc;
3348 }
3349
3350 alock.release();
3351 hrc = pSourceMediumLockList->Lock();
3352 alock.acquire();
3353 if (FAILED(hrc))
3354 {
3355 delete pSourceMediumLockList;
3356 delete pTargetMediumLockList;
3357 throw setError(hrc,
3358 tr("Failed to lock source media '%s'"),
3359 i_getLocationFull().c_str());
3360 }
3361 alock.release();
3362 hrc = pTargetMediumLockList->Lock();
3363 alock.acquire();
3364 if (FAILED(hrc))
3365 {
3366 delete pSourceMediumLockList;
3367 delete pTargetMediumLockList;
3368 throw setError(hrc,
3369 tr("Failed to lock target media '%s'"),
3370 pTarget->i_getLocationFull().c_str());
3371 }
3372
3373 ULONG mediumVariantFlags = 0;
3374
3375 if (aVariant.size())
3376 {
3377 for (size_t i = 0; i < aVariant.size(); i++)
3378 mediumVariantFlags |= (ULONG)aVariant[i];
3379 }
3380
3381 if (mediumVariantFlags & MediumVariant_Formatted)
3382 {
3383 delete pSourceMediumLockList;
3384 delete pTargetMediumLockList;
3385 throw setError(VBOX_E_NOT_SUPPORTED,
3386 tr("Medium variant 'formatted' applies to floppy images only"));
3387 }
3388
3389 if (pTarget->m->state != MediumState_NotCreated || aLogicalSize == 0)
3390 {
3391 /* setup task object to carry out the operation asynchronously */
3392 pTask = new Medium::CloneTask(this, pProgress, pTarget,
3393 (MediumVariant_T)mediumVariantFlags,
3394 pParent, UINT32_MAX, UINT32_MAX,
3395 pSourceMediumLockList, pTargetMediumLockList,
3396 false, false, true, 0);
3397 }
3398 else
3399 {
3400 /* setup task object to carry out the operation asynchronously */
3401 pTask = new Medium::CloneTask(this, pProgress, pTarget,
3402 (MediumVariant_T)mediumVariantFlags,
3403 pParent, UINT32_MAX, UINT32_MAX,
3404 pSourceMediumLockList, pTargetMediumLockList,
3405 false, false, true, (uint64_t)aLogicalSize);
3406 }
3407
3408 hrc = pTask->hrc();
3409 AssertComRC(hrc);
3410 if (FAILED(hrc))
3411 throw hrc;
3412
3413 if (pTarget->m->state == MediumState_NotCreated)
3414 pTarget->m->state = MediumState_Creating;
3415 }
3416 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
3417
3418 if (SUCCEEDED(hrc))
3419 {
3420 hrc = pTask->createThread();
3421 pTask = NULL;
3422 if (SUCCEEDED(hrc))
3423 pProgress.queryInterfaceTo(aProgress.asOutParam());
3424 }
3425 else if (pTask != NULL)
3426 delete pTask;
3427
3428 return hrc;
3429}
3430
3431HRESULT Medium::moveTo(AutoCaller &autoCaller, const com::Utf8Str &aLocation, ComPtr<IProgress> &aProgress)
3432{
3433 ComObjPtr<Medium> pParent;
3434 ComObjPtr<Progress> pProgress;
3435 HRESULT hrc = S_OK;
3436 Medium::Task *pTask = NULL;
3437
3438 try
3439 {
3440 /// @todo NEWMEDIA for file names, add the default extension if no extension
3441 /// is present (using the information from the VD backend which also implies
3442 /// that one more parameter should be passed to moveTo() requesting
3443 /// that functionality since it is only allowed when called from this method
3444
3445 /// @todo NEWMEDIA rename the file and set m->location on success, then save
3446 /// the global registry (and local registries of portable VMs referring to
3447 /// this medium), this will also require to add the mRegistered flag to data
3448
3449 autoCaller.release();
3450
3451 // locking: we need the tree lock first because we access parent pointers
3452 // and we need to write-lock the media involved
3453 AutoWriteLock treeLock(m->pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
3454
3455 autoCaller.add();
3456 AssertComRCThrowRC(autoCaller.hrc());
3457
3458 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3459
3460 /* play with locations */
3461 {
3462 /* get source path and filename */
3463 Utf8Str sourcePath = i_getLocationFull();
3464 Utf8Str sourceFName = i_getName();
3465
3466 if (aLocation.isEmpty())
3467 {
3468 hrc = setErrorVrc(VERR_PATH_ZERO_LENGTH,
3469 tr("Medium '%s' can't be moved. Destination path is empty."),
3470 i_getLocationFull().c_str());
3471 throw hrc;
3472 }
3473
3474 /* extract destination path and filename */
3475 Utf8Str destPath(aLocation);
3476 Utf8Str destFName(destPath);
3477 destFName.stripPath();
3478
3479 if (destFName.isNotEmpty() && !RTPathHasSuffix(destFName.c_str()))
3480 {
3481 /*
3482 * The target path has no filename: Either "/path/to/new/location" or
3483 * just "newname" (no trailing backslash or there is no filename extension).
3484 */
3485 if (destPath.equals(destFName))
3486 {
3487 /* new path contains only "newname", no path, no extension */
3488 destFName.append(RTPathSuffix(sourceFName.c_str()));
3489 destPath = destFName;
3490 }
3491 else
3492 {
3493 /* new path looks like "/path/to/new/location" */
3494 destFName.setNull();
3495 destPath.append(RTPATH_SLASH);
3496 }
3497 }
3498
3499 if (destFName.isEmpty())
3500 {
3501 /* No target name */
3502 destPath.append(sourceFName);
3503 }
3504 else
3505 {
3506 if (destPath.equals(destFName))
3507 {
3508 /*
3509 * The target path contains of only a filename without a directory.
3510 * Move the medium within the source directory to the new name
3511 * (actually rename operation).
3512 * Scratches sourcePath!
3513 */
3514 destPath = sourcePath.stripFilename().append(RTPATH_SLASH).append(destFName);
3515 }
3516
3517 const char *pszSuffix = RTPathSuffix(sourceFName.c_str());
3518
3519 /* Suffix is empty and one is deduced from the medium format */
3520 if (pszSuffix == NULL)
3521 {
3522 Utf8Str strExt = i_getFormat();
3523 if (strExt.compare("RAW", Utf8Str::CaseInsensitive) == 0)
3524 {
3525 DeviceType_T devType = i_getDeviceType();
3526 switch (devType)
3527 {
3528 case DeviceType_DVD:
3529 strExt = "iso";
3530 break;
3531 case DeviceType_Floppy:
3532 strExt = "img";
3533 break;
3534 default:
3535 hrc = setErrorVrc(VERR_NOT_A_FILE, /** @todo r=bird: Mixing status codes again. */
3536 tr("Medium '%s' has RAW type. \"Move\" operation isn't supported for this type."),
3537 i_getLocationFull().c_str());
3538 throw hrc;
3539 }
3540 }
3541 else if (strExt.compare("Parallels", Utf8Str::CaseInsensitive) == 0)
3542 {
3543 strExt = "hdd";
3544 }
3545
3546 /* Set the target extension like on the source. Any conversions are prohibited */
3547 strExt.toLower();
3548 destPath.stripSuffix().append('.').append(strExt);
3549 }
3550 else
3551 destPath.stripSuffix().append(pszSuffix);
3552 }
3553
3554 /* Simple check for existence */
3555 if (RTFileExists(destPath.c_str()))
3556 throw setError(VBOX_E_FILE_ERROR,
3557 tr("The given path '%s' is an existing file. Delete or rename this file."),
3558 destPath.c_str());
3559
3560 if (!i_isMediumFormatFile())
3561 throw setErrorVrc(VERR_NOT_A_FILE,
3562 tr("Medium '%s' isn't a file object. \"Move\" operation isn't supported."),
3563 i_getLocationFull().c_str());
3564 /* Path must be absolute */
3565 if (!RTPathStartsWithRoot(destPath.c_str()))
3566 throw setError(VBOX_E_FILE_ERROR,
3567 tr("The given path '%s' is not fully qualified"),
3568 destPath.c_str());
3569 /* Check path for a new file object */
3570 hrc = VirtualBox::i_ensureFilePathExists(destPath, true);
3571 if (FAILED(hrc))
3572 throw hrc;
3573
3574 /* Set needed variables for "moving" procedure. It'll be used later in separate thread task */
3575 hrc = i_preparationForMoving(destPath);
3576 if (FAILED(hrc))
3577 throw setErrorVrc(VERR_NO_CHANGE,
3578 tr("Medium '%s' is already in the correct location"),
3579 i_getLocationFull().c_str());
3580 }
3581
3582 /* Check VMs which have this medium attached to*/
3583 std::vector<com::Guid> aMachineIds;
3584 hrc = getMachineIds(aMachineIds);
3585 std::vector<com::Guid>::const_iterator currMachineID = aMachineIds.begin();
3586 std::vector<com::Guid>::const_iterator lastMachineID = aMachineIds.end();
3587
3588 while (currMachineID != lastMachineID)
3589 {
3590 Guid id(*currMachineID);
3591 ComObjPtr<Machine> aMachine;
3592
3593 alock.release();
3594 autoCaller.release();
3595 treeLock.release();
3596 hrc = m->pVirtualBox->i_findMachine(id, false, true, &aMachine);
3597 treeLock.acquire();
3598 autoCaller.add();
3599 AssertComRCThrowRC(autoCaller.hrc());
3600 alock.acquire();
3601
3602 if (SUCCEEDED(hrc))
3603 {
3604 ComObjPtr<SessionMachine> sm;
3605 ComPtr<IInternalSessionControl> ctl;
3606
3607 alock.release();
3608 autoCaller.release();
3609 treeLock.release();
3610 bool ses = aMachine->i_isSessionOpenVM(sm, &ctl);
3611 treeLock.acquire();
3612 autoCaller.add();
3613 AssertComRCThrowRC(autoCaller.hrc());
3614 alock.acquire();
3615
3616 if (ses)
3617 throw setError(VBOX_E_INVALID_VM_STATE,
3618 tr("At least the VM '%s' to whom this medium '%s' attached has currently an opened session. Stop all VMs before relocating this medium"),
3619 id.toString().c_str(), i_getLocationFull().c_str());
3620 }
3621 ++currMachineID;
3622 }
3623
3624 /* Build the source lock list. */
3625 MediumLockList *pMediumLockList(new MediumLockList());
3626 alock.release();
3627 autoCaller.release();
3628 treeLock.release();
3629 hrc = i_createMediumLockList(true /* fFailIfInaccessible */,
3630 this /* pToLockWrite */,
3631 true /* fMediumLockWriteAll */,
3632 NULL,
3633 *pMediumLockList);
3634 treeLock.acquire();
3635 autoCaller.add();
3636 AssertComRCThrowRC(autoCaller.hrc());
3637 alock.acquire();
3638 if (FAILED(hrc))
3639 {
3640 delete pMediumLockList;
3641 throw setError(hrc, tr("Failed to create medium lock list for '%s'"), i_getLocationFull().c_str());
3642 }
3643 alock.release();
3644 autoCaller.release();
3645 treeLock.release();
3646 hrc = pMediumLockList->Lock();
3647 treeLock.acquire();
3648 autoCaller.add();
3649 AssertComRCThrowRC(autoCaller.hrc());
3650 alock.acquire();
3651 if (FAILED(hrc))
3652 {
3653 delete pMediumLockList;
3654 throw setError(hrc, tr("Failed to lock media '%s'"), i_getLocationFull().c_str());
3655 }
3656
3657 pProgress.createObject();
3658 hrc = pProgress->init(m->pVirtualBox,
3659 static_cast <IMedium *>(this),
3660 BstrFmt(tr("Moving medium '%s'"), m->strLocationFull.c_str()).raw(),
3661 TRUE /* aCancelable */);
3662
3663 /* Do the disk moving. */
3664 if (SUCCEEDED(hrc))
3665 {
3666 ULONG mediumVariantFlags = i_getVariant();
3667
3668 /* setup task object to carry out the operation asynchronously */
3669 pTask = new Medium::MoveTask(this, pProgress,
3670 (MediumVariant_T)mediumVariantFlags,
3671 pMediumLockList);
3672 hrc = pTask->hrc();
3673 AssertComRC(hrc);
3674 if (FAILED(hrc))
3675 throw hrc;
3676 }
3677
3678 }
3679 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
3680
3681 if (SUCCEEDED(hrc))
3682 {
3683 hrc = pTask->createThread();
3684 pTask = NULL;
3685 if (SUCCEEDED(hrc))
3686 pProgress.queryInterfaceTo(aProgress.asOutParam());
3687 }
3688 else
3689 {
3690 if (pTask)
3691 delete pTask;
3692 }
3693
3694 return hrc;
3695}
3696
3697HRESULT Medium::setLocation(const com::Utf8Str &aLocation)
3698{
3699 HRESULT hrc = S_OK;
3700
3701 try
3702 {
3703 // locking: we need the tree lock first because we access parent pointers
3704 // and we need to write-lock the media involved
3705 AutoWriteLock treeLock(m->pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
3706
3707 AutoCaller autoCaller(this);
3708 AssertComRCThrowRC(autoCaller.hrc());
3709
3710 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3711
3712 Utf8Str destPath(aLocation);
3713
3714 // some check for file based medium
3715 if (i_isMediumFormatFile())
3716 {
3717 /* Path must be absolute */
3718 if (!RTPathStartsWithRoot(destPath.c_str()))
3719 throw setError(VBOX_E_FILE_ERROR, tr("The given path '%s' is not fully qualified"), destPath.c_str());
3720
3721 /* Simple check for existence */
3722 if (!RTFileExists(destPath.c_str()))
3723 throw setError(VBOX_E_FILE_ERROR,
3724 tr("The given path '%s' is not an existing file. New location is invalid."),
3725 destPath.c_str());
3726 }
3727
3728 /* Check VMs which have this medium attached to*/
3729 std::vector<com::Guid> aMachineIds;
3730 hrc = getMachineIds(aMachineIds);
3731
3732 // switch locks only if there are machines with this medium attached
3733 if (!aMachineIds.empty())
3734 {
3735 std::vector<com::Guid>::const_iterator currMachineID = aMachineIds.begin();
3736 std::vector<com::Guid>::const_iterator lastMachineID = aMachineIds.end();
3737
3738 alock.release();
3739 autoCaller.release();
3740 treeLock.release();
3741
3742 while (currMachineID != lastMachineID)
3743 {
3744 Guid id(*currMachineID);
3745 ComObjPtr<Machine> aMachine;
3746 hrc = m->pVirtualBox->i_findMachine(id, false, true, &aMachine);
3747 if (SUCCEEDED(hrc))
3748 {
3749 ComObjPtr<SessionMachine> sm;
3750 ComPtr<IInternalSessionControl> ctl;
3751
3752 bool ses = aMachine->i_isSessionOpenVM(sm, &ctl);
3753 if (ses)
3754 {
3755 treeLock.acquire();
3756 autoCaller.add();
3757 AssertComRCThrowRC(autoCaller.hrc());
3758 alock.acquire();
3759
3760 throw setError(VBOX_E_INVALID_VM_STATE,
3761 tr("At least the VM '%s' to whom this medium '%s' attached has currently an opened session. Stop all VMs before set location for this medium"),
3762 id.toString().c_str(),
3763 i_getLocationFull().c_str());
3764 }
3765 }
3766 ++currMachineID;
3767 }
3768
3769 treeLock.acquire();
3770 autoCaller.add();
3771 AssertComRCThrowRC(autoCaller.hrc());
3772 alock.acquire();
3773 }
3774
3775 m->strLocationFull = destPath;
3776
3777 // save the settings
3778 alock.release();
3779 autoCaller.release();
3780 treeLock.release();
3781
3782 i_markRegistriesModified();
3783 m->pVirtualBox->i_saveModifiedRegistries();
3784
3785 MediumState_T mediumState;
3786 refreshState(autoCaller, &mediumState);
3787 m->pVirtualBox->i_onMediumConfigChanged(this);
3788 }
3789 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
3790
3791 return hrc;
3792}
3793
3794HRESULT Medium::compact(ComPtr<IProgress> &aProgress)
3795{
3796 HRESULT hrc = S_OK;
3797 ComObjPtr<Progress> pProgress;
3798 Medium::Task *pTask = NULL;
3799
3800 try
3801 {
3802 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3803
3804 /* Build the medium lock list. */
3805 MediumLockList *pMediumLockList(new MediumLockList());
3806 alock.release();
3807 hrc = i_createMediumLockList(true /* fFailIfInaccessible */ ,
3808 this /* pToLockWrite */,
3809 false /* fMediumLockWriteAll */,
3810 NULL,
3811 *pMediumLockList);
3812 alock.acquire();
3813 if (FAILED(hrc))
3814 {
3815 delete pMediumLockList;
3816 throw hrc;
3817 }
3818
3819 alock.release();
3820 hrc = pMediumLockList->Lock();
3821 alock.acquire();
3822 if (FAILED(hrc))
3823 {
3824 delete pMediumLockList;
3825 throw setError(hrc,
3826 tr("Failed to lock media when compacting '%s'"),
3827 i_getLocationFull().c_str());
3828 }
3829
3830 pProgress.createObject();
3831 hrc = pProgress->init(m->pVirtualBox,
3832 static_cast <IMedium *>(this),
3833 BstrFmt(tr("Compacting medium '%s'"), m->strLocationFull.c_str()).raw(),
3834 TRUE /* aCancelable */);
3835 if (FAILED(hrc))
3836 {
3837 delete pMediumLockList;
3838 throw hrc;
3839 }
3840
3841 /* setup task object to carry out the operation asynchronously */
3842 pTask = new Medium::CompactTask(this, pProgress, pMediumLockList);
3843 hrc = pTask->hrc();
3844 AssertComRC(hrc);
3845 if (FAILED(hrc))
3846 throw hrc;
3847 }
3848 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
3849
3850 if (SUCCEEDED(hrc))
3851 {
3852 hrc = pTask->createThread();
3853 pTask = NULL;
3854 if (SUCCEEDED(hrc))
3855 pProgress.queryInterfaceTo(aProgress.asOutParam());
3856 }
3857 else if (pTask != NULL)
3858 delete pTask;
3859
3860 return hrc;
3861}
3862
3863HRESULT Medium::resize(LONG64 aLogicalSize,
3864 ComPtr<IProgress> &aProgress)
3865{
3866 CheckComArgExpr(aLogicalSize, aLogicalSize > 0);
3867 HRESULT hrc = S_OK;
3868 ComObjPtr<Progress> pProgress;
3869
3870 /* Build the medium lock list. */
3871 MediumLockList *pMediumLockList(new MediumLockList());
3872
3873 try
3874 {
3875 const char *pszError = NULL;
3876
3877 hrc = i_createMediumLockList(true /* fFailIfInaccessible */ ,
3878 this /* pToLockWrite */,
3879 false /* fMediumLockWriteAll */,
3880 NULL,
3881 *pMediumLockList);
3882 if (FAILED(hrc))
3883 pszError = tr("Failed to create medium lock list when resizing '%s'");
3884 else
3885 {
3886 hrc = pMediumLockList->Lock();
3887 if (FAILED(hrc))
3888 pszError = tr("Failed to lock media when resizing '%s'");
3889 }
3890
3891
3892 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
3893
3894 if (FAILED(hrc))
3895 {
3896 throw setError(hrc, pszError, i_getLocationFull().c_str());
3897 }
3898
3899 pProgress.createObject();
3900 hrc = pProgress->init(m->pVirtualBox,
3901 static_cast <IMedium *>(this),
3902 BstrFmt(tr("Resizing medium '%s'"), m->strLocationFull.c_str()).raw(),
3903 TRUE /* aCancelable */);
3904 if (FAILED(hrc))
3905 {
3906 throw hrc;
3907 }
3908 }
3909 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
3910
3911 if (SUCCEEDED(hrc))
3912 hrc = i_resize((uint64_t)aLogicalSize, pMediumLockList, &pProgress, false /* aWait */, true /* aNotify */);
3913
3914 if (SUCCEEDED(hrc))
3915 pProgress.queryInterfaceTo(aProgress.asOutParam());
3916 else
3917 delete pMediumLockList;
3918
3919 return hrc;
3920}
3921
3922HRESULT Medium::reset(AutoCaller &autoCaller, ComPtr<IProgress> &aProgress)
3923{
3924 HRESULT hrc = S_OK;
3925 ComObjPtr<Progress> pProgress;
3926 Medium::Task *pTask = NULL;
3927
3928 try
3929 {
3930 autoCaller.release();
3931
3932 /* It is possible that some previous/concurrent uninit has already
3933 * cleared the pVirtualBox reference, see #uninit(). */
3934 ComObjPtr<VirtualBox> pVirtualBox(m->pVirtualBox);
3935
3936 /* i_canClose() needs the tree lock */
3937 AutoMultiWriteLock2 multilock(!pVirtualBox.isNull() ? &pVirtualBox->i_getMediaTreeLockHandle() : NULL,
3938 this->lockHandle()
3939 COMMA_LOCKVAL_SRC_POS);
3940
3941 autoCaller.add();
3942 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
3943
3944 LogFlowThisFunc(("ENTER for medium %s\n", m->strLocationFull.c_str()));
3945
3946 if (m->pParent.isNull())
3947 throw setError(VBOX_E_NOT_SUPPORTED,
3948 tr("Medium type of '%s' is not differencing"),
3949 m->strLocationFull.c_str());
3950
3951 hrc = i_canClose();
3952 if (FAILED(hrc))
3953 throw hrc;
3954
3955 /* Build the medium lock list. */
3956 MediumLockList *pMediumLockList(new MediumLockList());
3957 multilock.release();
3958 hrc = i_createMediumLockList(true /* fFailIfInaccessible */,
3959 this /* pToLockWrite */,
3960 false /* fMediumLockWriteAll */,
3961 NULL,
3962 *pMediumLockList);
3963 multilock.acquire();
3964 if (FAILED(hrc))
3965 {
3966 delete pMediumLockList;
3967 throw hrc;
3968 }
3969
3970 multilock.release();
3971 hrc = pMediumLockList->Lock();
3972 multilock.acquire();
3973 if (FAILED(hrc))
3974 {
3975 delete pMediumLockList;
3976 throw setError(hrc,
3977 tr("Failed to lock media when resetting '%s'"),
3978 i_getLocationFull().c_str());
3979 }
3980
3981 pProgress.createObject();
3982 hrc = pProgress->init(m->pVirtualBox,
3983 static_cast<IMedium*>(this),
3984 BstrFmt(tr("Resetting differencing medium '%s'"), m->strLocationFull.c_str()).raw(),
3985 FALSE /* aCancelable */);
3986 if (FAILED(hrc))
3987 throw hrc;
3988
3989 /* setup task object to carry out the operation asynchronously */
3990 pTask = new Medium::ResetTask(this, pProgress, pMediumLockList);
3991 hrc = pTask->hrc();
3992 AssertComRC(hrc);
3993 if (FAILED(hrc))
3994 throw hrc;
3995 }
3996 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
3997
3998 if (SUCCEEDED(hrc))
3999 {
4000 hrc = pTask->createThread();
4001 pTask = NULL;
4002 if (SUCCEEDED(hrc))
4003 pProgress.queryInterfaceTo(aProgress.asOutParam());
4004 }
4005 else if (pTask != NULL)
4006 delete pTask;
4007
4008 LogFlowThisFunc(("LEAVE, hrc=%Rhrc\n", hrc));
4009
4010 return hrc;
4011}
4012
4013HRESULT Medium::changeEncryption(const com::Utf8Str &aCurrentPassword, const com::Utf8Str &aCipher,
4014 const com::Utf8Str &aNewPassword, const com::Utf8Str &aNewPasswordId,
4015 ComPtr<IProgress> &aProgress)
4016{
4017 HRESULT hrc = S_OK;
4018 ComObjPtr<Progress> pProgress;
4019 Medium::Task *pTask = NULL;
4020
4021 try
4022 {
4023 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
4024
4025 DeviceType_T devType = i_getDeviceType();
4026 /* Cannot encrypt DVD or floppy images so far. */
4027 if ( devType == DeviceType_DVD
4028 || devType == DeviceType_Floppy)
4029 return setError(VBOX_E_INVALID_OBJECT_STATE,
4030 tr("Cannot encrypt DVD or Floppy medium '%s'"),
4031 m->strLocationFull.c_str());
4032
4033 /* Cannot encrypt media which are attached to more than one virtual machine. */
4034 if (m->backRefs.size() > 1)
4035 return setError(VBOX_E_INVALID_OBJECT_STATE,
4036 tr("Cannot encrypt medium '%s' because it is attached to %d virtual machines", "", m->backRefs.size()),
4037 m->strLocationFull.c_str(), m->backRefs.size());
4038
4039 if (i_getChildren().size() != 0)
4040 return setError(VBOX_E_INVALID_OBJECT_STATE,
4041 tr("Cannot encrypt medium '%s' because it has %d children", "", i_getChildren().size()),
4042 m->strLocationFull.c_str(), i_getChildren().size());
4043
4044 /* Build the medium lock list. */
4045 MediumLockList *pMediumLockList(new MediumLockList());
4046 alock.release();
4047 hrc = i_createMediumLockList(true /* fFailIfInaccessible */ ,
4048 this /* pToLockWrite */,
4049 true /* fMediumLockAllWrite */,
4050 NULL,
4051 *pMediumLockList);
4052 alock.acquire();
4053 if (FAILED(hrc))
4054 {
4055 delete pMediumLockList;
4056 throw hrc;
4057 }
4058
4059 alock.release();
4060 hrc = pMediumLockList->Lock();
4061 alock.acquire();
4062 if (FAILED(hrc))
4063 {
4064 delete pMediumLockList;
4065 throw setError(hrc,
4066 tr("Failed to lock media for encryption '%s'"),
4067 i_getLocationFull().c_str());
4068 }
4069
4070 /*
4071 * Check all media in the chain to not contain any branches or references to
4072 * other virtual machines, we support encrypting only a list of differencing media at the moment.
4073 */
4074 MediumLockList::Base::const_iterator mediumListBegin = pMediumLockList->GetBegin();
4075 MediumLockList::Base::const_iterator mediumListEnd = pMediumLockList->GetEnd();
4076 for (MediumLockList::Base::const_iterator it = mediumListBegin;
4077 it != mediumListEnd;
4078 ++it)
4079 {
4080 const MediumLock &mediumLock = *it;
4081 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
4082 AutoReadLock mediumReadLock(pMedium COMMA_LOCKVAL_SRC_POS);
4083
4084 Assert(pMedium->m->state == MediumState_LockedWrite);
4085
4086 if (pMedium->m->backRefs.size() > 1)
4087 {
4088 hrc = setError(VBOX_E_INVALID_OBJECT_STATE,
4089 tr("Cannot encrypt medium '%s' because it is attached to %d virtual machines", "",
4090 pMedium->m->backRefs.size()),
4091 pMedium->m->strLocationFull.c_str(), pMedium->m->backRefs.size());
4092 break;
4093 }
4094 else if (pMedium->i_getChildren().size() > 1)
4095 {
4096 hrc = setError(VBOX_E_INVALID_OBJECT_STATE,
4097 tr("Cannot encrypt medium '%s' because it has %d children", "", pMedium->i_getChildren().size()),
4098 pMedium->m->strLocationFull.c_str(), pMedium->i_getChildren().size());
4099 break;
4100 }
4101 }
4102
4103 if (FAILED(hrc))
4104 {
4105 delete pMediumLockList;
4106 throw hrc;
4107 }
4108
4109 const char *pszAction = tr("Encrypting medium");
4110 if ( aCurrentPassword.isNotEmpty()
4111 && aCipher.isEmpty())
4112 pszAction = tr("Decrypting medium");
4113
4114 pProgress.createObject();
4115 hrc = pProgress->init(m->pVirtualBox,
4116 static_cast <IMedium *>(this),
4117 BstrFmt("%s '%s'", pszAction, m->strLocationFull.c_str()).raw(),
4118 TRUE /* aCancelable */);
4119 if (FAILED(hrc))
4120 {
4121 delete pMediumLockList;
4122 throw hrc;
4123 }
4124
4125 /* setup task object to carry out the operation asynchronously */
4126 pTask = new Medium::EncryptTask(this, aNewPassword, aCurrentPassword,
4127 aCipher, aNewPasswordId, pProgress, pMediumLockList);
4128 hrc = pTask->hrc();
4129 AssertComRC(hrc);
4130 if (FAILED(hrc))
4131 throw hrc;
4132 }
4133 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
4134
4135 if (SUCCEEDED(hrc))
4136 {
4137 hrc = pTask->createThread();
4138 pTask = NULL;
4139 if (SUCCEEDED(hrc))
4140 pProgress.queryInterfaceTo(aProgress.asOutParam());
4141 }
4142 else if (pTask != NULL)
4143 delete pTask;
4144
4145 return hrc;
4146}
4147
4148HRESULT Medium::getEncryptionSettings(AutoCaller &autoCaller, com::Utf8Str &aCipher, com::Utf8Str &aPasswordId)
4149{
4150#ifndef VBOX_WITH_EXTPACK
4151 RT_NOREF(aCipher, aPasswordId);
4152#endif
4153 HRESULT hrc = S_OK;
4154
4155 try
4156 {
4157 autoCaller.release();
4158 ComObjPtr<Medium> pBase = i_getBase();
4159 autoCaller.add();
4160 if (FAILED(autoCaller.hrc()))
4161 throw hrc;
4162 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
4163
4164 /* Check whether encryption is configured for this medium. */
4165 settings::StringsMap::iterator it = pBase->m->mapProperties.find("CRYPT/KeyStore");
4166 if (it == pBase->m->mapProperties.end())
4167 throw VBOX_E_NOT_SUPPORTED;
4168
4169# ifdef VBOX_WITH_EXTPACK
4170 ExtPackManager *pExtPackManager = m->pVirtualBox->i_getExtPackManager();
4171 if (pExtPackManager->i_isExtPackUsable(ORACLE_PUEL_EXTPACK_NAME))
4172 {
4173 /* Load the plugin */
4174 Utf8Str strPlugin;
4175 hrc = pExtPackManager->i_getLibraryPathForExtPack(g_szVDPlugin, ORACLE_PUEL_EXTPACK_NAME, &strPlugin);
4176 if (SUCCEEDED(hrc))
4177 {
4178 int vrc = VDPluginLoadFromFilename(strPlugin.c_str());
4179 if (RT_FAILURE(vrc))
4180 throw setErrorBoth(VBOX_E_NOT_SUPPORTED, vrc,
4181 tr("Retrieving encryption settings of the image failed because the encryption plugin could not be loaded (%s)"),
4182 i_vdError(vrc).c_str());
4183 }
4184 else
4185 throw setError(VBOX_E_NOT_SUPPORTED,
4186 tr("Encryption is not supported because the extension pack '%s' is missing the encryption plugin (old extension pack installed?)"),
4187 ORACLE_PUEL_EXTPACK_NAME);
4188 }
4189 else
4190 throw setError(VBOX_E_NOT_SUPPORTED,
4191 tr("Encryption is not supported because the extension pack '%s' is missing"),
4192 ORACLE_PUEL_EXTPACK_NAME);
4193
4194 PVDISK pDisk = NULL;
4195 int vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &pDisk);
4196 ComAssertRCThrow(vrc, E_FAIL);
4197
4198 MediumCryptoFilterSettings CryptoSettings;
4199
4200 i_taskEncryptSettingsSetup(&CryptoSettings, NULL, it->second.c_str(), NULL, false /* fCreateKeyStore */);
4201 vrc = VDFilterAdd(pDisk, "CRYPT", VD_FILTER_FLAGS_READ | VD_FILTER_FLAGS_INFO, CryptoSettings.vdFilterIfaces);
4202 if (RT_FAILURE(vrc))
4203 throw setErrorBoth(VBOX_E_INVALID_OBJECT_STATE, vrc,
4204 tr("Failed to load the encryption filter: %s"),
4205 i_vdError(vrc).c_str());
4206
4207 it = pBase->m->mapProperties.find("CRYPT/KeyId");
4208 if (it == pBase->m->mapProperties.end())
4209 throw setError(VBOX_E_INVALID_OBJECT_STATE,
4210 tr("Image is configured for encryption but doesn't has a KeyId set"));
4211
4212 aPasswordId = it->second.c_str();
4213 aCipher = CryptoSettings.pszCipherReturned;
4214 RTStrFree(CryptoSettings.pszCipherReturned);
4215
4216 VDDestroy(pDisk);
4217# else
4218 throw setError(VBOX_E_NOT_SUPPORTED,
4219 tr("Encryption is not supported because extension pack support is not built in"));
4220# endif
4221 }
4222 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
4223
4224 return hrc;
4225}
4226
4227HRESULT Medium::checkEncryptionPassword(const com::Utf8Str &aPassword)
4228{
4229 HRESULT hrc = S_OK;
4230
4231 try
4232 {
4233 ComObjPtr<Medium> pBase = i_getBase();
4234 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
4235
4236 settings::StringsMap::iterator it = pBase->m->mapProperties.find("CRYPT/KeyStore");
4237 if (it == pBase->m->mapProperties.end())
4238 throw setError(VBOX_E_NOT_SUPPORTED,
4239 tr("The image is not configured for encryption"));
4240
4241 if (aPassword.isEmpty())
4242 throw setError(E_INVALIDARG,
4243 tr("The given password must not be empty"));
4244
4245# ifdef VBOX_WITH_EXTPACK
4246 ExtPackManager *pExtPackManager = m->pVirtualBox->i_getExtPackManager();
4247 if (pExtPackManager->i_isExtPackUsable(ORACLE_PUEL_EXTPACK_NAME))
4248 {
4249 /* Load the plugin */
4250 Utf8Str strPlugin;
4251 hrc = pExtPackManager->i_getLibraryPathForExtPack(g_szVDPlugin, ORACLE_PUEL_EXTPACK_NAME, &strPlugin);
4252 if (SUCCEEDED(hrc))
4253 {
4254 int vrc = VDPluginLoadFromFilename(strPlugin.c_str());
4255 if (RT_FAILURE(vrc))
4256 throw setErrorBoth(VBOX_E_NOT_SUPPORTED, vrc,
4257 tr("Retrieving encryption settings of the image failed because the encryption plugin could not be loaded (%s)"),
4258 i_vdError(vrc).c_str());
4259 }
4260 else
4261 throw setError(VBOX_E_NOT_SUPPORTED,
4262 tr("Encryption is not supported because the extension pack '%s' is missing the encryption plugin (old extension pack installed?)"),
4263 ORACLE_PUEL_EXTPACK_NAME);
4264 }
4265 else
4266 throw setError(VBOX_E_NOT_SUPPORTED,
4267 tr("Encryption is not supported because the extension pack '%s' is missing"),
4268 ORACLE_PUEL_EXTPACK_NAME);
4269
4270 PVDISK pDisk = NULL;
4271 int vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &pDisk);
4272 ComAssertRCThrow(vrc, E_FAIL);
4273
4274 MediumCryptoFilterSettings CryptoSettings;
4275
4276 i_taskEncryptSettingsSetup(&CryptoSettings, NULL, it->second.c_str(), aPassword.c_str(),
4277 false /* fCreateKeyStore */);
4278 vrc = VDFilterAdd(pDisk, "CRYPT", VD_FILTER_FLAGS_READ, CryptoSettings.vdFilterIfaces);
4279 if (vrc == VERR_VD_PASSWORD_INCORRECT)
4280 throw setError(VBOX_E_PASSWORD_INCORRECT,
4281 tr("The given password is incorrect"));
4282 else if (RT_FAILURE(vrc))
4283 throw setErrorBoth(VBOX_E_INVALID_OBJECT_STATE, vrc,
4284 tr("Failed to load the encryption filter: %s"),
4285 i_vdError(vrc).c_str());
4286
4287 VDDestroy(pDisk);
4288# else
4289 throw setError(VBOX_E_NOT_SUPPORTED,
4290 tr("Encryption is not supported because extension pack support is not built in"));
4291# endif
4292 }
4293 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
4294
4295 return hrc;
4296}
4297
4298HRESULT Medium::openForIO(BOOL aWritable, com::Utf8Str const &aPassword, ComPtr<IMediumIO> &aMediumIO)
4299{
4300 /*
4301 * Input validation.
4302 */
4303 if (aWritable && i_isReadOnly())
4304 return setError(E_ACCESSDENIED, tr("Write access denied: read-only"));
4305
4306 com::Utf8Str const strKeyId = i_getKeyId();
4307 if (strKeyId.isEmpty() && aPassword.isNotEmpty())
4308 return setError(E_INVALIDARG, tr("Password given for unencrypted medium"));
4309 if (strKeyId.isNotEmpty() && aPassword.isEmpty())
4310 return setError(E_INVALIDARG, tr("Password needed for encrypted medium"));
4311
4312 /*
4313 * Create IO object and return it.
4314 */
4315 ComObjPtr<MediumIO> ptrIO;
4316 HRESULT hrc = ptrIO.createObject();
4317 if (SUCCEEDED(hrc))
4318 {
4319 hrc = ptrIO->initForMedium(this, m->pVirtualBox, aWritable != FALSE, strKeyId, aPassword);
4320 if (SUCCEEDED(hrc))
4321 ptrIO.queryInterfaceTo(aMediumIO.asOutParam());
4322 }
4323 return hrc;
4324}
4325
4326
4327////////////////////////////////////////////////////////////////////////////////
4328//
4329// Medium public internal methods
4330//
4331////////////////////////////////////////////////////////////////////////////////
4332
4333/**
4334 * Internal method to return the medium's parent medium. Must have caller + locking!
4335 * @return
4336 */
4337const ComObjPtr<Medium>& Medium::i_getParent() const
4338{
4339 return m->pParent;
4340}
4341
4342/**
4343 * Internal method to return the medium's list of child media. Must have caller + locking!
4344 * @return
4345 */
4346const MediaList& Medium::i_getChildren() const
4347{
4348 return m->llChildren;
4349}
4350
4351/**
4352 * Internal method to return the medium's GUID. Must have caller + locking!
4353 * @return
4354 */
4355const Guid& Medium::i_getId() const
4356{
4357 return m->id;
4358}
4359
4360/**
4361 * Internal method to return the medium's state. Must have caller + locking!
4362 * @return
4363 */
4364MediumState_T Medium::i_getState() const
4365{
4366 return m->state;
4367}
4368
4369/**
4370 * Internal method to return the medium's variant. Must have caller + locking!
4371 * @return
4372 */
4373MediumVariant_T Medium::i_getVariant() const
4374{
4375 return m->variant;
4376}
4377
4378/**
4379 * Internal method which returns true if this medium represents a host drive.
4380 * @return
4381 */
4382bool Medium::i_isHostDrive() const
4383{
4384 return m->hostDrive;
4385}
4386
4387/**
4388 * Internal method which returns true if this medium is in the process of being closed.
4389 * @return
4390 */
4391bool Medium::i_isClosing() const
4392{
4393 return m->fClosing;
4394}
4395
4396/**
4397 * Internal method to return the medium's full location. Must have caller + locking!
4398 * @return
4399 */
4400const Utf8Str& Medium::i_getLocationFull() const
4401{
4402 return m->strLocationFull;
4403}
4404
4405/**
4406 * Internal method to return the medium's format string. Must have caller + locking!
4407 * @return
4408 */
4409const Utf8Str& Medium::i_getFormat() const
4410{
4411 return m->strFormat;
4412}
4413
4414/**
4415 * Internal method to return the medium's format object. Must have caller + locking!
4416 * @return
4417 */
4418const ComObjPtr<MediumFormat>& Medium::i_getMediumFormat() const
4419{
4420 return m->formatObj;
4421}
4422
4423/**
4424 * Internal method that returns true if the medium is represented by a file on the host disk
4425 * (and not iSCSI or something).
4426 * @return
4427 */
4428bool Medium::i_isMediumFormatFile() const
4429{
4430 if ( m->formatObj
4431 && (m->formatObj->i_getCapabilities() & MediumFormatCapabilities_File)
4432 )
4433 return true;
4434 return false;
4435}
4436
4437/**
4438 * Internal method to return the medium's size. Must have caller + locking!
4439 * @return
4440 */
4441uint64_t Medium::i_getSize() const
4442{
4443 return m->size;
4444}
4445
4446/**
4447 * Internal method to return the medium's size. Must have caller + locking!
4448 * @return
4449 */
4450uint64_t Medium::i_getLogicalSize() const
4451{
4452 return m->logicalSize;
4453}
4454
4455/**
4456 * Returns the medium device type. Must have caller + locking!
4457 * @return
4458 */
4459DeviceType_T Medium::i_getDeviceType() const
4460{
4461 return m->devType;
4462}
4463
4464/**
4465 * Returns the medium type. Must have caller + locking!
4466 * @return
4467 */
4468MediumType_T Medium::i_getType() const
4469{
4470 return m->type;
4471}
4472
4473/**
4474 * Returns a short version of the location attribute.
4475 *
4476 * @note Must be called from under this object's read or write lock.
4477 */
4478Utf8Str Medium::i_getName()
4479{
4480 Utf8Str name = RTPathFilename(m->strLocationFull.c_str());
4481 return name;
4482}
4483
4484/**
4485 * Same as i_addRegistry() except that we don't check the object state, making
4486 * it safe to call with initFromSettings() on the call stack.
4487 */
4488bool Medium::i_addRegistryNoCallerCheck(const Guid &id)
4489{
4490 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
4491
4492 bool fAdd = true;
4493
4494 // hard disks cannot be in more than one registry
4495 if ( m->devType == DeviceType_HardDisk
4496 && m->llRegistryIDs.size() > 0)
4497 fAdd = false;
4498
4499 // no need to add the UUID twice
4500 if (fAdd)
4501 {
4502 for (GuidList::const_iterator it = m->llRegistryIDs.begin();
4503 it != m->llRegistryIDs.end();
4504 ++it)
4505 {
4506 if ((*it) == id)
4507 {
4508 fAdd = false;
4509 break;
4510 }
4511 }
4512 }
4513
4514 if (fAdd)
4515 m->llRegistryIDs.push_back(id);
4516
4517 return fAdd;
4518}
4519
4520/**
4521 * This adds the given UUID to the list of media registries in which this
4522 * medium should be registered. The UUID can either be a machine UUID,
4523 * to add a machine registry, or the global registry UUID as returned by
4524 * VirtualBox::getGlobalRegistryId().
4525 *
4526 * Note that for hard disks, this method does nothing if the medium is
4527 * already in another registry to avoid having hard disks in more than
4528 * one registry, which causes trouble with keeping diff images in sync.
4529 * See getFirstRegistryMachineId() for details.
4530 *
4531 * @param id
4532 * @return true if the registry was added; false if the given id was already on the list.
4533 */
4534bool Medium::i_addRegistry(const Guid &id)
4535{
4536 AutoCaller autoCaller(this);
4537 if (FAILED(autoCaller.hrc()))
4538 return false;
4539 return i_addRegistryNoCallerCheck(id);
4540}
4541
4542/**
4543 * This adds the given UUID to the list of media registries in which this
4544 * medium should be registered. The UUID can either be a machine UUID,
4545 * to add a machine registry, or the global registry UUID as returned by
4546 * VirtualBox::getGlobalRegistryId(). Thisis applied to all children.
4547 *
4548 * Note that for hard disks, this method does nothing if the medium is
4549 * already in another registry to avoid having hard disks in more than
4550 * one registry, which causes trouble with keeping diff images in sync.
4551 * See getFirstRegistryMachineId() for details.
4552 *
4553 * @note the caller must hold the media tree lock for reading.
4554 *
4555 * @param id
4556 * @return true if the registry was added; false if the given id was already on the list.
4557 */
4558bool Medium::i_addRegistryAll(const Guid &id)
4559{
4560 MediaList llMediaTodo;
4561 llMediaTodo.push_back(this);
4562
4563 bool fAdd = false;
4564
4565 while (!llMediaTodo.empty())
4566 {
4567 ComObjPtr<Medium> pMedium = llMediaTodo.front();
4568 llMediaTodo.pop_front();
4569
4570 AutoCaller mediumCaller(pMedium);
4571 if (FAILED(mediumCaller.hrc())) continue;
4572
4573 fAdd |= pMedium->i_addRegistryNoCallerCheck(id);
4574
4575 // protected by the medium tree lock held by our original caller
4576 MediaList::const_iterator itBegin = pMedium->i_getChildren().begin();
4577 MediaList::const_iterator itEnd = pMedium->i_getChildren().end();
4578 for (MediaList::const_iterator it = itBegin; it != itEnd; ++it)
4579 llMediaTodo.push_back(*it);
4580 }
4581
4582 return fAdd;
4583}
4584
4585/**
4586 * Removes the given UUID from the list of media registry UUIDs of this medium.
4587 *
4588 * @param id
4589 * @return true if the UUID was found or false if not.
4590 */
4591bool Medium::i_removeRegistry(const Guid &id)
4592{
4593 AutoCaller autoCaller(this);
4594 if (FAILED(autoCaller.hrc()))
4595 return false;
4596 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
4597
4598 bool fRemove = false;
4599
4600 /// @todo r=klaus eliminate this code, replace it by using find.
4601 for (GuidList::iterator it = m->llRegistryIDs.begin();
4602 it != m->llRegistryIDs.end();
4603 ++it)
4604 {
4605 if ((*it) == id)
4606 {
4607 // getting away with this as the iterator isn't used after
4608 m->llRegistryIDs.erase(it);
4609 fRemove = true;
4610 break;
4611 }
4612 }
4613
4614 return fRemove;
4615}
4616
4617/**
4618 * Removes the given UUID from the list of media registry UUIDs, for this
4619 * medium and all its children.
4620 *
4621 * @note the caller must hold the media tree lock for reading.
4622 *
4623 * @param id
4624 * @return true if the UUID was found or false if not.
4625 */
4626bool Medium::i_removeRegistryAll(const Guid &id)
4627{
4628 MediaList llMediaTodo;
4629 llMediaTodo.push_back(this);
4630
4631 bool fRemove = false;
4632
4633 while (!llMediaTodo.empty())
4634 {
4635 ComObjPtr<Medium> pMedium = llMediaTodo.front();
4636 llMediaTodo.pop_front();
4637
4638 AutoCaller mediumCaller(pMedium);
4639 if (FAILED(mediumCaller.hrc())) continue;
4640
4641 fRemove |= pMedium->i_removeRegistry(id);
4642
4643 // protected by the medium tree lock held by our original caller
4644 MediaList::const_iterator itBegin = pMedium->i_getChildren().begin();
4645 MediaList::const_iterator itEnd = pMedium->i_getChildren().end();
4646 for (MediaList::const_iterator it = itBegin; it != itEnd; ++it)
4647 llMediaTodo.push_back(*it);
4648 }
4649
4650 return fRemove;
4651}
4652
4653/**
4654 * Returns true if id is in the list of media registries for this medium.
4655 *
4656 * Must have caller + read locking!
4657 *
4658 * @param id
4659 * @return
4660 */
4661bool Medium::i_isInRegistry(const Guid &id)
4662{
4663 /// @todo r=klaus eliminate this code, replace it by using find.
4664 for (GuidList::const_iterator it = m->llRegistryIDs.begin();
4665 it != m->llRegistryIDs.end();
4666 ++it)
4667 {
4668 if (*it == id)
4669 return true;
4670 }
4671
4672 return false;
4673}
4674
4675/**
4676 * Internal method to return the medium's first registry machine (i.e. the machine in whose
4677 * machine XML this medium is listed).
4678 *
4679 * Every attached medium must now (4.0) reside in at least one media registry, which is identified
4680 * by a UUID. This is either a machine UUID if the machine is from 4.0 or newer, in which case
4681 * machines have their own media registries, or it is the pseudo-UUID of the VirtualBox
4682 * object if the machine is old and still needs the global registry in VirtualBox.xml.
4683 *
4684 * By definition, hard disks may only be in one media registry, in which all its children
4685 * will be stored as well. Otherwise we run into problems with having keep multiple registries
4686 * in sync. (This is the "cloned VM" case in which VM1 may link to the disks of VM2; in this
4687 * case, only VM2's registry is used for the disk in question.)
4688 *
4689 * If there is no medium registry, particularly if the medium has not been attached yet, this
4690 * does not modify uuid and returns false.
4691 *
4692 * ISOs and RAWs, by contrast, can be in more than one repository to make things easier for
4693 * the user.
4694 *
4695 * Must have caller + locking!
4696 *
4697 * @param uuid Receives first registry machine UUID, if available.
4698 * @return true if uuid was set.
4699 */
4700bool Medium::i_getFirstRegistryMachineId(Guid &uuid) const
4701{
4702 if (m->llRegistryIDs.size())
4703 {
4704 uuid = m->llRegistryIDs.front();
4705 return true;
4706 }
4707 return false;
4708}
4709
4710/**
4711 * Marks all the registries in which this medium is registered as modified.
4712 */
4713void Medium::i_markRegistriesModified()
4714{
4715 AutoCaller autoCaller(this);
4716 if (FAILED(autoCaller.hrc())) return;
4717
4718 // Get local copy, as keeping the lock over VirtualBox::markRegistryModified
4719 // causes trouble with the lock order
4720 GuidList llRegistryIDs;
4721 {
4722 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
4723 llRegistryIDs = m->llRegistryIDs;
4724 }
4725
4726 autoCaller.release();
4727
4728 /* Save the error information now, the implicit restore when this goes
4729 * out of scope will throw away spurious additional errors created below. */
4730 ErrorInfoKeeper eik;
4731 for (GuidList::const_iterator it = llRegistryIDs.begin();
4732 it != llRegistryIDs.end();
4733 ++it)
4734 {
4735 m->pVirtualBox->i_markRegistryModified(*it);
4736 }
4737}
4738
4739/**
4740 * Adds the given machine and optionally the snapshot to the list of the objects
4741 * this medium is attached to.
4742 *
4743 * @param aMachineId Machine ID.
4744 * @param aSnapshotId Snapshot ID; when non-empty, adds a snapshot attachment.
4745 */
4746HRESULT Medium::i_addBackReference(const Guid &aMachineId,
4747 const Guid &aSnapshotId /*= Guid::Empty*/)
4748{
4749 AssertReturn(aMachineId.isValid(), E_FAIL);
4750
4751 LogFlowThisFunc(("ENTER, aMachineId: {%RTuuid}, aSnapshotId: {%RTuuid}\n", aMachineId.raw(), aSnapshotId.raw()));
4752
4753 AutoCaller autoCaller(this);
4754 AssertComRCReturnRC(autoCaller.hrc());
4755
4756 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
4757
4758 switch (m->state)
4759 {
4760 case MediumState_Created:
4761 case MediumState_Inaccessible:
4762 case MediumState_LockedRead:
4763 case MediumState_LockedWrite:
4764 break;
4765
4766 default:
4767 return i_setStateError();
4768 }
4769
4770 if (m->numCreateDiffTasks > 0)
4771 return setError(VBOX_E_OBJECT_IN_USE,
4772 tr("Cannot attach medium '%s' {%RTuuid}: %u differencing child media are being created", "",
4773 m->numCreateDiffTasks),
4774 m->strLocationFull.c_str(),
4775 m->id.raw(),
4776 m->numCreateDiffTasks);
4777
4778 BackRefList::iterator it = std::find_if(m->backRefs.begin(),
4779 m->backRefs.end(),
4780 BackRef::EqualsTo(aMachineId));
4781 if (it == m->backRefs.end())
4782 {
4783 BackRef ref(aMachineId, aSnapshotId);
4784 m->backRefs.push_back(ref);
4785
4786 return S_OK;
4787 }
4788 bool fDvd = false;
4789 {
4790 AutoReadLock arlock(this COMMA_LOCKVAL_SRC_POS);
4791 /*
4792 * Check the medium is DVD and readonly. It's for the case if DVD
4793 * will be able to be writable sometime in the future.
4794 */
4795 fDvd = m->type == MediumType_Readonly && m->devType == DeviceType_DVD;
4796 }
4797
4798 // if the caller has not supplied a snapshot ID, then we're attaching
4799 // to a machine a medium which represents the machine's current state,
4800 // so set the flag
4801
4802 if (aSnapshotId.isZero())
4803 {
4804 // Allow DVD having MediumType_Readonly to be attached twice.
4805 // (the medium already had been added to back reference)
4806 if (fDvd)
4807 {
4808 it->iRefCnt++;
4809 return S_OK;
4810 }
4811
4812 /* sanity: no duplicate attachments */
4813 if (it->fInCurState)
4814 return setError(VBOX_E_OBJECT_IN_USE,
4815 tr("Cannot attach medium '%s' {%RTuuid}: medium is already associated with the current state of machine uuid {%RTuuid}!"),
4816 m->strLocationFull.c_str(),
4817 m->id.raw(),
4818 aMachineId.raw());
4819 it->fInCurState = true;
4820
4821 return S_OK;
4822 }
4823
4824 // otherwise: a snapshot medium is being attached
4825
4826 /* sanity: no duplicate attachments */
4827 for (std::list<SnapshotRef>::iterator jt = it->llSnapshotIds.begin();
4828 jt != it->llSnapshotIds.end();
4829 ++jt)
4830 {
4831 const Guid &idOldSnapshot = jt->snapshotId;
4832
4833 if (idOldSnapshot == aSnapshotId)
4834 {
4835 if (fDvd)
4836 {
4837 jt->iRefCnt++;
4838 return S_OK;
4839 }
4840#ifdef DEBUG
4841 i_dumpBackRefs();
4842#endif
4843 return setError(VBOX_E_OBJECT_IN_USE,
4844 tr("Cannot attach medium '%s' {%RTuuid} from snapshot '%RTuuid': medium is already in use by this snapshot!"),
4845 m->strLocationFull.c_str(),
4846 m->id.raw(),
4847 aSnapshotId.raw());
4848 }
4849 }
4850
4851 it->llSnapshotIds.push_back(SnapshotRef(aSnapshotId));
4852 // Do not touch fInCurState, as the image may be attached to the current
4853 // state *and* a snapshot, otherwise we lose the current state association!
4854
4855 LogFlowThisFuncLeave();
4856
4857 return S_OK;
4858}
4859
4860/**
4861 * Removes the given machine and optionally the snapshot from the list of the
4862 * objects this medium is attached to.
4863 *
4864 * @param aMachineId Machine ID.
4865 * @param aSnapshotId Snapshot ID; when non-empty, removes the snapshot
4866 * attachment.
4867 */
4868HRESULT Medium::i_removeBackReference(const Guid &aMachineId,
4869 const Guid &aSnapshotId /*= Guid::Empty*/)
4870{
4871 AssertReturn(aMachineId.isValid(), E_FAIL);
4872
4873 AutoCaller autoCaller(this);
4874 AssertComRCReturnRC(autoCaller.hrc());
4875
4876 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
4877
4878 BackRefList::iterator it =
4879 std::find_if(m->backRefs.begin(), m->backRefs.end(),
4880 BackRef::EqualsTo(aMachineId));
4881 AssertReturn(it != m->backRefs.end(), E_FAIL);
4882
4883 if (aSnapshotId.isZero())
4884 {
4885 it->iRefCnt--;
4886 if (it->iRefCnt > 0)
4887 return S_OK;
4888
4889 /* remove the current state attachment */
4890 it->fInCurState = false;
4891 }
4892 else
4893 {
4894 /* remove the snapshot attachment */
4895 std::list<SnapshotRef>::iterator jt =
4896 std::find_if(it->llSnapshotIds.begin(),
4897 it->llSnapshotIds.end(),
4898 SnapshotRef::EqualsTo(aSnapshotId));
4899
4900 AssertReturn(jt != it->llSnapshotIds.end(), E_FAIL);
4901
4902 jt->iRefCnt--;
4903 if (jt->iRefCnt > 0)
4904 return S_OK;
4905
4906 it->llSnapshotIds.erase(jt);
4907 }
4908
4909 /* if the backref becomes empty, remove it */
4910 if (it->fInCurState == false && it->llSnapshotIds.size() == 0)
4911 m->backRefs.erase(it);
4912
4913 return S_OK;
4914}
4915
4916/**
4917 * Internal method to return the medium's list of backrefs. Must have caller + locking!
4918 * @return
4919 */
4920const Guid* Medium::i_getFirstMachineBackrefId() const
4921{
4922 if (!m->backRefs.size())
4923 return NULL;
4924
4925 return &m->backRefs.front().machineId;
4926}
4927
4928/**
4929 * Internal method which returns a machine that either this medium or one of its children
4930 * is attached to. This is used for finding a replacement media registry when an existing
4931 * media registry is about to be deleted in VirtualBox::unregisterMachine().
4932 *
4933 * Must have caller + locking, *and* caller must hold the media tree lock!
4934 * @param aId Id to ignore when looking for backrefs.
4935 * @return
4936 */
4937const Guid* Medium::i_getAnyMachineBackref(const Guid &aId) const
4938{
4939 std::list<const Medium *> llMediaTodo;
4940 llMediaTodo.push_back(this);
4941
4942 while (!llMediaTodo.empty())
4943 {
4944 const Medium *pMedium = llMediaTodo.front();
4945 llMediaTodo.pop_front();
4946
4947 if (pMedium->m->backRefs.size())
4948 {
4949 if (pMedium->m->backRefs.front().machineId != aId)
4950 return &pMedium->m->backRefs.front().machineId;
4951 if (pMedium->m->backRefs.size() > 1)
4952 {
4953 BackRefList::const_iterator it = pMedium->m->backRefs.begin();
4954 ++it;
4955 return &it->machineId;
4956 }
4957 }
4958
4959 MediaList::const_iterator itBegin = pMedium->i_getChildren().begin();
4960 MediaList::const_iterator itEnd = pMedium->i_getChildren().end();
4961 for (MediaList::const_iterator it = itBegin; it != itEnd; ++it)
4962 llMediaTodo.push_back(*it);
4963 }
4964
4965 return NULL;
4966}
4967
4968const Guid* Medium::i_getFirstMachineBackrefSnapshotId() const
4969{
4970 if (!m->backRefs.size())
4971 return NULL;
4972
4973 const BackRef &ref = m->backRefs.front();
4974 if (ref.llSnapshotIds.empty())
4975 return NULL;
4976
4977 return &ref.llSnapshotIds.front().snapshotId;
4978}
4979
4980size_t Medium::i_getMachineBackRefCount() const
4981{
4982 return m->backRefs.size();
4983}
4984
4985#ifdef DEBUG
4986/**
4987 * Debugging helper that gets called after VirtualBox initialization that writes all
4988 * machine backreferences to the debug log.
4989 */
4990void Medium::i_dumpBackRefs()
4991{
4992 AutoCaller autoCaller(this);
4993 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
4994
4995 LogFlowThisFunc(("Dumping backrefs for medium '%s':\n", m->strLocationFull.c_str()));
4996
4997 for (BackRefList::iterator it2 = m->backRefs.begin();
4998 it2 != m->backRefs.end();
4999 ++it2)
5000 {
5001 const BackRef &ref = *it2;
5002 LogFlowThisFunc((" Backref from machine {%RTuuid} (fInCurState: %d, iRefCnt: %d)\n", ref.machineId.raw(), ref.fInCurState, ref.iRefCnt));
5003
5004 for (std::list<SnapshotRef>::const_iterator jt2 = it2->llSnapshotIds.begin();
5005 jt2 != it2->llSnapshotIds.end();
5006 ++jt2)
5007 {
5008 const Guid &id = jt2->snapshotId;
5009 LogFlowThisFunc((" Backref from snapshot {%RTuuid} (iRefCnt = %d)\n", id.raw(), jt2->iRefCnt));
5010 }
5011 }
5012}
5013#endif
5014
5015/**
5016 * Checks if the given change of \a aOldPath to \a aNewPath affects the location
5017 * of this media and updates it if necessary to reflect the new location.
5018 *
5019 * @param strOldPath Old path (full).
5020 * @param strNewPath New path (full).
5021 *
5022 * @note Locks this object for writing.
5023 */
5024HRESULT Medium::i_updatePath(const Utf8Str &strOldPath, const Utf8Str &strNewPath)
5025{
5026 AssertReturn(!strOldPath.isEmpty(), E_FAIL);
5027 AssertReturn(!strNewPath.isEmpty(), E_FAIL);
5028
5029 AutoCaller autoCaller(this);
5030 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
5031
5032 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
5033
5034 LogFlowThisFunc(("locationFull.before='%s'\n", m->strLocationFull.c_str()));
5035
5036 const char *pcszMediumPath = m->strLocationFull.c_str();
5037
5038 if (RTPathStartsWith(pcszMediumPath, strOldPath.c_str()))
5039 {
5040 Utf8Str newPath(strNewPath);
5041 newPath.append(pcszMediumPath + strOldPath.length());
5042 unconst(m->strLocationFull) = newPath;
5043
5044 m->pVirtualBox->i_onMediumConfigChanged(this);
5045
5046 LogFlowThisFunc(("locationFull.after='%s'\n", m->strLocationFull.c_str()));
5047 // we changed something
5048 return S_OK;
5049 }
5050
5051 // no change was necessary, signal error which the caller needs to interpret
5052 return VBOX_E_FILE_ERROR;
5053}
5054
5055/**
5056 * Returns the base medium of the media chain this medium is part of.
5057 *
5058 * The base medium is found by walking up the parent-child relationship axis.
5059 * If the medium doesn't have a parent (i.e. it's a base medium), it
5060 * returns itself in response to this method.
5061 *
5062 * @param aLevel Where to store the number of ancestors of this medium
5063 * (zero for the base), may be @c NULL.
5064 *
5065 * @note Locks medium tree for reading.
5066 */
5067ComObjPtr<Medium> Medium::i_getBase(uint32_t *aLevel /*= NULL*/)
5068{
5069 ComObjPtr<Medium> pBase;
5070
5071 /* it is possible that some previous/concurrent uninit has already cleared
5072 * the pVirtualBox reference, and in this case we don't need to continue */
5073 ComObjPtr<VirtualBox> pVirtualBox(m->pVirtualBox);
5074 if (!pVirtualBox)
5075 return pBase;
5076
5077 /* we access m->pParent */
5078 AutoReadLock treeLock(pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
5079
5080 AutoCaller autoCaller(this);
5081 AssertReturn(autoCaller.isOk(), pBase);
5082
5083 pBase = this;
5084 uint32_t level = 0;
5085
5086 if (m->pParent)
5087 {
5088 for (;;)
5089 {
5090 AutoCaller baseCaller(pBase);
5091 AssertReturn(baseCaller.isOk(), pBase);
5092
5093 if (pBase->m->pParent.isNull())
5094 break;
5095
5096 pBase = pBase->m->pParent;
5097 ++level;
5098 }
5099 }
5100
5101 if (aLevel != NULL)
5102 *aLevel = level;
5103
5104 return pBase;
5105}
5106
5107/**
5108 * Returns the depth of this medium in the media chain.
5109 *
5110 * @note Locks medium tree for reading.
5111 */
5112uint32_t Medium::i_getDepth()
5113{
5114 /* it is possible that some previous/concurrent uninit has already cleared
5115 * the pVirtualBox reference, and in this case we don't need to continue */
5116 ComObjPtr<VirtualBox> pVirtualBox(m->pVirtualBox);
5117 if (!pVirtualBox)
5118 return 1;
5119
5120 /* we access m->pParent */
5121 AutoReadLock treeLock(pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
5122
5123 uint32_t cDepth = 0;
5124 ComObjPtr<Medium> pMedium(this);
5125 while (!pMedium.isNull())
5126 {
5127 AutoCaller autoCaller(this);
5128 AssertReturn(autoCaller.isOk(), cDepth + 1);
5129
5130 pMedium = pMedium->m->pParent;
5131 cDepth++;
5132 }
5133
5134 return cDepth;
5135}
5136
5137/**
5138 * Returns @c true if this medium cannot be modified because it has
5139 * dependents (children) or is part of the snapshot. Related to the medium
5140 * type and posterity, not to the current media state.
5141 *
5142 * @note Locks this object and medium tree for reading.
5143 */
5144bool Medium::i_isReadOnly()
5145{
5146 /* it is possible that some previous/concurrent uninit has already cleared
5147 * the pVirtualBox reference, and in this case we don't need to continue */
5148 ComObjPtr<VirtualBox> pVirtualBox(m->pVirtualBox);
5149 if (!pVirtualBox)
5150 return false;
5151
5152 /* we access children */
5153 AutoReadLock treeLock(m->pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
5154
5155 AutoCaller autoCaller(this);
5156 AssertComRCReturn(autoCaller.hrc(), false);
5157
5158 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
5159
5160 switch (m->type)
5161 {
5162 case MediumType_Normal:
5163 {
5164 if (i_getChildren().size() != 0)
5165 return true;
5166
5167 for (BackRefList::const_iterator it = m->backRefs.begin();
5168 it != m->backRefs.end(); ++it)
5169 if (it->llSnapshotIds.size() != 0)
5170 return true;
5171
5172 if (m->variant & MediumVariant_VmdkStreamOptimized)
5173 return true;
5174
5175 return false;
5176 }
5177 case MediumType_Immutable:
5178 case MediumType_MultiAttach:
5179 return true;
5180 case MediumType_Writethrough:
5181 case MediumType_Shareable:
5182 case MediumType_Readonly: /* explicit readonly media has no diffs */
5183 return false;
5184 default:
5185 break;
5186 }
5187
5188 AssertFailedReturn(false);
5189}
5190
5191/**
5192 * Internal method to update the medium's id. Must have caller + locking!
5193 */
5194void Medium::i_updateId(const Guid &id)
5195{
5196 unconst(m->id) = id;
5197}
5198
5199/**
5200 * Saves the settings of one medium.
5201 *
5202 * @note Caller MUST take care of the medium tree lock and caller.
5203 *
5204 * @param data Settings struct to be updated.
5205 * @param strHardDiskFolder Folder for which paths should be relative.
5206 */
5207void Medium::i_saveSettingsOne(settings::Medium &data, const Utf8Str &strHardDiskFolder)
5208{
5209 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
5210
5211 data.uuid = m->id;
5212
5213 // make path relative if needed
5214 if ( !strHardDiskFolder.isEmpty()
5215 && RTPathStartsWith(m->strLocationFull.c_str(), strHardDiskFolder.c_str())
5216 )
5217 data.strLocation = m->strLocationFull.substr(strHardDiskFolder.length() + 1);
5218 else
5219 data.strLocation = m->strLocationFull;
5220 data.strFormat = m->strFormat;
5221
5222 /* optional, only for diffs, default is false */
5223 if (m->pParent)
5224 data.fAutoReset = m->autoReset;
5225 else
5226 data.fAutoReset = false;
5227
5228 /* optional */
5229 data.strDescription = m->strDescription;
5230
5231 /* optional properties */
5232 data.properties.clear();
5233
5234 /* handle iSCSI initiator secrets transparently */
5235 bool fHaveInitiatorSecretEncrypted = false;
5236 Utf8Str strCiphertext;
5237 settings::StringsMap::const_iterator itPln = m->mapProperties.find("InitiatorSecret");
5238 if ( itPln != m->mapProperties.end()
5239 && !itPln->second.isEmpty())
5240 {
5241 /* Encrypt the plain secret. If that does not work (i.e. no or wrong settings key
5242 * specified), just use the encrypted secret (if there is any). */
5243 int vrc = m->pVirtualBox->i_encryptSetting(itPln->second, &strCiphertext);
5244 if (RT_SUCCESS(vrc))
5245 fHaveInitiatorSecretEncrypted = true;
5246 }
5247 for (settings::StringsMap::const_iterator it = m->mapProperties.begin();
5248 it != m->mapProperties.end();
5249 ++it)
5250 {
5251 /* only save properties that have non-default values */
5252 if (!it->second.isEmpty())
5253 {
5254 const Utf8Str &name = it->first;
5255 const Utf8Str &value = it->second;
5256 bool fCreateOnly = false;
5257 for (MediumFormat::PropertyArray::const_iterator itf = m->formatObj->i_getProperties().begin();
5258 itf != m->formatObj->i_getProperties().end();
5259 ++itf)
5260 {
5261 if ( itf->strName.equals(name)
5262 && (itf->flags & VD_CFGKEY_CREATEONLY))
5263 {
5264 fCreateOnly = true;
5265 break;
5266 }
5267 }
5268 if (!fCreateOnly)
5269 /* do NOT store the plain InitiatorSecret */
5270 if ( !fHaveInitiatorSecretEncrypted
5271 || !name.equals("InitiatorSecret"))
5272 data.properties[name] = value;
5273 }
5274 }
5275 if (fHaveInitiatorSecretEncrypted)
5276 data.properties["InitiatorSecretEncrypted"] = strCiphertext;
5277
5278 /* only for base media */
5279 if (m->pParent.isNull())
5280 data.hdType = m->type;
5281}
5282
5283/**
5284 * Saves medium data by putting it into the provided data structure.
5285 * The settings of all children is saved, too.
5286 *
5287 * @param data Settings struct to be updated.
5288 * @param strHardDiskFolder Folder for which paths should be relative.
5289 *
5290 * @note Locks this object, medium tree and children for reading.
5291 */
5292HRESULT Medium::i_saveSettings(settings::Medium &data,
5293 const Utf8Str &strHardDiskFolder)
5294{
5295 /* we access m->pParent */
5296 AutoReadLock treeLock(m->pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
5297
5298 AutoCaller autoCaller(this);
5299 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
5300
5301 MediaList llMediaTodo;
5302 llMediaTodo.push_back(this);
5303 std::list<settings::Medium *> llSettingsTodo;
5304 llSettingsTodo.push_back(&data);
5305
5306 while (!llMediaTodo.empty())
5307 {
5308 ComObjPtr<Medium> pMedium = llMediaTodo.front();
5309 llMediaTodo.pop_front();
5310 settings::Medium *current = llSettingsTodo.front();
5311 llSettingsTodo.pop_front();
5312
5313 AutoCaller mediumCaller(pMedium);
5314 if (FAILED(mediumCaller.hrc())) return mediumCaller.hrc();
5315
5316 pMedium->i_saveSettingsOne(*current, strHardDiskFolder);
5317
5318 /* save all children */
5319 MediaList::const_iterator itBegin = pMedium->i_getChildren().begin();
5320 MediaList::const_iterator itEnd = pMedium->i_getChildren().end();
5321 for (MediaList::const_iterator it = itBegin; it != itEnd; ++it)
5322 {
5323 llMediaTodo.push_back(*it);
5324 current->llChildren.push_back(settings::Medium::Empty);
5325 llSettingsTodo.push_back(&current->llChildren.back());
5326 }
5327 }
5328
5329 return S_OK;
5330}
5331
5332/**
5333 * Constructs a medium lock list for this medium. The lock is not taken.
5334 *
5335 * @note Caller MUST NOT hold the media tree or medium lock.
5336 *
5337 * @param fFailIfInaccessible If true, this fails with an error if a medium is inaccessible. If false,
5338 * inaccessible media are silently skipped and not locked (i.e. their state remains "Inaccessible");
5339 * this is necessary for a VM's removable media VM startup for which we do not want to fail.
5340 * @param pToLockWrite If not NULL, associate a write lock with this medium object.
5341 * @param fMediumLockWriteAll Whether to associate a write lock to all other media too.
5342 * @param pToBeParent Medium which will become the parent of this medium.
5343 * @param mediumLockList Where to store the resulting list.
5344 */
5345HRESULT Medium::i_createMediumLockList(bool fFailIfInaccessible,
5346 Medium *pToLockWrite,
5347 bool fMediumLockWriteAll,
5348 Medium *pToBeParent,
5349 MediumLockList &mediumLockList)
5350{
5351 /** @todo r=klaus this needs to be reworked, as the code below uses
5352 * i_getParent without holding the tree lock, and changing this is
5353 * a significant amount of effort. */
5354 Assert(!m->pVirtualBox->i_getMediaTreeLockHandle().isWriteLockOnCurrentThread());
5355 Assert(!isWriteLockOnCurrentThread());
5356
5357 AutoCaller autoCaller(this);
5358 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
5359
5360 HRESULT hrc = S_OK;
5361
5362 /* paranoid sanity checking if the medium has a to-be parent medium */
5363 if (pToBeParent)
5364 {
5365 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
5366 ComAssertRet(i_getParent().isNull(), E_FAIL);
5367 ComAssertRet(i_getChildren().size() == 0, E_FAIL);
5368 }
5369
5370 ErrorInfoKeeper eik;
5371 MultiResult mrc(S_OK);
5372
5373 ComObjPtr<Medium> pMedium = this;
5374 while (!pMedium.isNull())
5375 {
5376 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
5377
5378 /* Accessibility check must be first, otherwise locking interferes
5379 * with getting the medium state. Lock lists are not created for
5380 * fun, and thus getting the medium status is no luxury. */
5381 MediumState_T mediumState = pMedium->i_getState();
5382 if (mediumState == MediumState_Inaccessible)
5383 {
5384 alock.release();
5385 hrc = pMedium->i_queryInfo(false /* fSetImageId */, false /* fSetParentId */, autoCaller);
5386 alock.acquire();
5387 if (FAILED(hrc)) return hrc;
5388
5389 mediumState = pMedium->i_getState();
5390 if (mediumState == MediumState_Inaccessible)
5391 {
5392 // ignore inaccessible ISO media and silently return S_OK,
5393 // otherwise VM startup (esp. restore) may fail without good reason
5394 if (!fFailIfInaccessible)
5395 return S_OK;
5396
5397 // otherwise report an error
5398 Bstr error;
5399 hrc = pMedium->COMGETTER(LastAccessError)(error.asOutParam());
5400 if (FAILED(hrc)) return hrc;
5401
5402 /* collect multiple errors */
5403 eik.restore();
5404 Assert(!error.isEmpty());
5405 mrc = setError(E_FAIL,
5406 "%ls",
5407 error.raw());
5408 // error message will be something like
5409 // "Could not open the medium ... VD: error VERR_FILE_NOT_FOUND opening image file ... (VERR_FILE_NOT_FOUND).
5410 eik.fetch();
5411 }
5412 }
5413
5414 if (pMedium == pToLockWrite)
5415 mediumLockList.Prepend(pMedium, true);
5416 else
5417 mediumLockList.Prepend(pMedium, fMediumLockWriteAll);
5418
5419 pMedium = pMedium->i_getParent();
5420 if (pMedium.isNull() && pToBeParent)
5421 {
5422 pMedium = pToBeParent;
5423 pToBeParent = NULL;
5424 }
5425 }
5426
5427 return mrc;
5428}
5429
5430/**
5431 * Creates a new differencing storage unit using the format of the given target
5432 * medium and the location. Note that @c aTarget must be NotCreated.
5433 *
5434 * The @a aMediumLockList parameter contains the associated medium lock list,
5435 * which must be in locked state. If @a aWait is @c true then the caller is
5436 * responsible for unlocking.
5437 *
5438 * If @a aProgress is not NULL but the object it points to is @c null then a
5439 * new progress object will be created and assigned to @a *aProgress on
5440 * success, otherwise the existing progress object is used. If @a aProgress is
5441 * NULL, then no progress object is created/used at all.
5442 *
5443 * When @a aWait is @c false, this method will create a thread to perform the
5444 * create operation asynchronously and will return immediately. Otherwise, it
5445 * will perform the operation on the calling thread and will not return to the
5446 * caller until the operation is completed. Note that @a aProgress cannot be
5447 * NULL when @a aWait is @c false (this method will assert in this case).
5448 *
5449 * @param aTarget Target medium.
5450 * @param aVariant Precise medium variant to create.
5451 * @param aMediumLockList List of media which should be locked.
5452 * @param aProgress Where to find/store a Progress object to track
5453 * operation completion.
5454 * @param aWait @c true if this method should block instead of
5455 * creating an asynchronous thread.
5456 * @param aNotify Notify about media for which metadata is changed
5457 * during execution of the function.
5458 *
5459 * @note Locks this object and @a aTarget for writing.
5460 */
5461HRESULT Medium::i_createDiffStorage(ComObjPtr<Medium> &aTarget,
5462 MediumVariant_T aVariant,
5463 MediumLockList *aMediumLockList,
5464 ComObjPtr<Progress> *aProgress,
5465 bool aWait,
5466 bool aNotify)
5467{
5468 AssertReturn(!aTarget.isNull(), E_FAIL);
5469 AssertReturn(aMediumLockList, E_FAIL);
5470 AssertReturn(aProgress != NULL || aWait == true, E_FAIL);
5471
5472 AutoCaller autoCaller(this);
5473 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
5474
5475 AutoCaller targetCaller(aTarget);
5476 if (FAILED(targetCaller.hrc())) return targetCaller.hrc();
5477
5478 HRESULT hrc = S_OK;
5479 ComObjPtr<Progress> pProgress;
5480 Medium::Task *pTask = NULL;
5481
5482 try
5483 {
5484 AutoMultiWriteLock2 alock(this, aTarget COMMA_LOCKVAL_SRC_POS);
5485
5486 ComAssertThrow( m->type != MediumType_Writethrough
5487 && m->type != MediumType_Shareable
5488 && m->type != MediumType_Readonly, E_FAIL);
5489 ComAssertThrow(m->state == MediumState_LockedRead, E_FAIL);
5490
5491 if (aTarget->m->state != MediumState_NotCreated)
5492 throw aTarget->i_setStateError();
5493
5494 /* Check that the medium is not attached to the current state of
5495 * any VM referring to it. */
5496 for (BackRefList::const_iterator it = m->backRefs.begin();
5497 it != m->backRefs.end();
5498 ++it)
5499 {
5500 if (it->fInCurState)
5501 {
5502 /* Note: when a VM snapshot is being taken, all normal media
5503 * attached to the VM in the current state will be, as an
5504 * exception, also associated with the snapshot which is about
5505 * to create (see SnapshotMachine::init()) before deassociating
5506 * them from the current state (which takes place only on
5507 * success in Machine::fixupHardDisks()), so that the size of
5508 * snapshotIds will be 1 in this case. The extra condition is
5509 * used to filter out this legal situation. */
5510 if (it->llSnapshotIds.size() == 0)
5511 throw setError(VBOX_E_INVALID_OBJECT_STATE,
5512 tr("Medium '%s' is attached to a virtual machine with UUID {%RTuuid}. No differencing media based on it may be created until it is detached"),
5513 m->strLocationFull.c_str(), it->machineId.raw());
5514
5515 Assert(it->llSnapshotIds.size() == 1);
5516 }
5517 }
5518
5519 if (aProgress != NULL)
5520 {
5521 /* use the existing progress object... */
5522 pProgress = *aProgress;
5523
5524 /* ...but create a new one if it is null */
5525 if (pProgress.isNull())
5526 {
5527 pProgress.createObject();
5528 hrc = pProgress->init(m->pVirtualBox,
5529 static_cast<IMedium*>(this),
5530 BstrFmt(tr("Creating differencing medium storage unit '%s'"),
5531 aTarget->m->strLocationFull.c_str()).raw(),
5532 TRUE /* aCancelable */);
5533 if (FAILED(hrc))
5534 throw hrc;
5535 }
5536 }
5537
5538 /* setup task object to carry out the operation sync/async */
5539 pTask = new Medium::CreateDiffTask(this, pProgress, aTarget, aVariant,
5540 aMediumLockList,
5541 aWait /* fKeepMediumLockList */,
5542 aNotify);
5543 hrc = pTask->hrc();
5544 AssertComRC(hrc);
5545 if (FAILED(hrc))
5546 throw hrc;
5547
5548 /* register a task (it will deregister itself when done) */
5549 ++m->numCreateDiffTasks;
5550 Assert(m->numCreateDiffTasks != 0); /* overflow? */
5551
5552 aTarget->m->state = MediumState_Creating;
5553 }
5554 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
5555
5556 if (SUCCEEDED(hrc))
5557 {
5558 if (aWait)
5559 {
5560 hrc = pTask->runNow();
5561 delete pTask;
5562 }
5563 else
5564 hrc = pTask->createThread();
5565 pTask = NULL;
5566 if (SUCCEEDED(hrc) && aProgress != NULL)
5567 *aProgress = pProgress;
5568 }
5569 else if (pTask != NULL)
5570 delete pTask;
5571
5572 return hrc;
5573}
5574
5575/**
5576 * Returns a preferred format for differencing media.
5577 */
5578Utf8Str Medium::i_getPreferredDiffFormat()
5579{
5580 AutoCaller autoCaller(this);
5581 AssertComRCReturn(autoCaller.hrc(), Utf8Str::Empty);
5582
5583 /* check that our own format supports diffs */
5584 if (!(m->formatObj->i_getCapabilities() & MediumFormatCapabilities_Differencing))
5585 {
5586 /* use the default format if not */
5587 Utf8Str tmp;
5588 m->pVirtualBox->i_getDefaultHardDiskFormat(tmp);
5589 return tmp;
5590 }
5591
5592 /* m->strFormat is const, no need to lock */
5593 return m->strFormat;
5594}
5595
5596/**
5597 * Returns a preferred variant for differencing media.
5598 */
5599MediumVariant_T Medium::i_getPreferredDiffVariant()
5600{
5601 AutoCaller autoCaller(this);
5602 AssertComRCReturn(autoCaller.hrc(), MediumVariant_Standard);
5603
5604 /* check that our own format supports diffs */
5605 if (!(m->formatObj->i_getCapabilities() & MediumFormatCapabilities_Differencing))
5606 return MediumVariant_Standard;
5607
5608 /* m->variant is const, no need to lock */
5609 ULONG mediumVariantFlags = (ULONG)m->variant;
5610 mediumVariantFlags &= ~(ULONG)(MediumVariant_Fixed | MediumVariant_VmdkStreamOptimized | MediumVariant_VmdkESX | MediumVariant_VmdkRawDisk);
5611 mediumVariantFlags |= MediumVariant_Diff;
5612 return (MediumVariant_T)mediumVariantFlags;
5613}
5614
5615/**
5616 * Implementation for the public Medium::Close() with the exception of calling
5617 * VirtualBox::saveRegistries(), in case someone wants to call this for several
5618 * media.
5619 *
5620 * After this returns with success, uninit() has been called on the medium, and
5621 * the object is no longer usable ("not ready" state).
5622 *
5623 * @param autoCaller AutoCaller instance which must have been created on the caller's
5624 * stack for this medium. This gets released hereupon
5625 * which the Medium instance gets uninitialized.
5626 * @return
5627 */
5628HRESULT Medium::i_close(AutoCaller &autoCaller)
5629{
5630 // must temporarily drop the caller, need the tree lock first
5631 autoCaller.release();
5632
5633 // we're accessing parent/child and backrefs, so lock the tree first, then ourselves
5634 AutoMultiWriteLock2 multilock(&m->pVirtualBox->i_getMediaTreeLockHandle(),
5635 this->lockHandle()
5636 COMMA_LOCKVAL_SRC_POS);
5637
5638 autoCaller.add();
5639 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
5640
5641 /* Wait for a concurrently running Medium::i_queryInfo to complete. */
5642 while (m->queryInfoRunning)
5643 {
5644 autoCaller.release();
5645 multilock.release();
5646 /* Must not hold the media tree lock, as Medium::i_queryInfo needs
5647 * this lock and thus we would run into a deadlock here. */
5648 Assert(!m->pVirtualBox->i_getMediaTreeLockHandle().isWriteLockOnCurrentThread());
5649 /* must not hold the object lock now */
5650 Assert(!isWriteLockOnCurrentThread());
5651 {
5652 AutoReadLock qlock(m->queryInfoSem COMMA_LOCKVAL_SRC_POS);
5653 }
5654 multilock.acquire();
5655 autoCaller.add();
5656 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
5657 }
5658
5659 LogFlowFunc(("ENTER for %s\n", i_getLocationFull().c_str()));
5660
5661 bool wasCreated = true;
5662
5663 switch (m->state)
5664 {
5665 case MediumState_NotCreated:
5666 wasCreated = false;
5667 break;
5668 case MediumState_Created:
5669 case MediumState_Inaccessible:
5670 break;
5671 default:
5672 return i_setStateError();
5673 }
5674
5675 if (m->fClosing)
5676 return setError(VBOX_E_OBJECT_IN_USE,
5677 tr("Medium '%s' cannot be closed because it is already in the process of being closed", ""),
5678 m->strLocationFull.c_str());
5679
5680 if (m->backRefs.size() != 0)
5681 return setError(VBOX_E_OBJECT_IN_USE,
5682 tr("Medium '%s' cannot be closed because it is still attached to %d virtual machines", "",
5683 m->backRefs.size()),
5684 m->strLocationFull.c_str(), m->backRefs.size());
5685
5686 // perform extra media-dependent close checks
5687 HRESULT hrc = i_canClose();
5688 if (FAILED(hrc)) return hrc;
5689
5690 m->fClosing = true;
5691
5692 if (wasCreated)
5693 {
5694 // remove from the list of known media before performing actual
5695 // uninitialization (to keep the media registry consistent on
5696 // failure to do so)
5697 hrc = i_unregisterWithVirtualBox();
5698 if (FAILED(hrc)) return hrc;
5699
5700 multilock.release();
5701 // Release the AutoCaller now, as otherwise uninit() will simply hang.
5702 // Needs to be done before mark the registries as modified and saving
5703 // the registry, as otherwise there may be a deadlock with someone else
5704 // closing this object while we're in i_saveModifiedRegistries(), which
5705 // needs the media tree lock, which the other thread holds until after
5706 // uninit() below.
5707 autoCaller.release();
5708 i_markRegistriesModified();
5709 m->pVirtualBox->i_saveModifiedRegistries();
5710 }
5711 else
5712 {
5713 multilock.release();
5714 // release the AutoCaller, as otherwise uninit() will simply hang
5715 autoCaller.release();
5716 }
5717
5718 uninit();
5719
5720 LogFlowFuncLeave();
5721
5722 return hrc;
5723}
5724
5725/**
5726 * Deletes the medium storage unit.
5727 *
5728 * If @a aProgress is not NULL but the object it points to is @c null then a new
5729 * progress object will be created and assigned to @a *aProgress on success,
5730 * otherwise the existing progress object is used. If Progress is NULL, then no
5731 * progress object is created/used at all.
5732 *
5733 * When @a aWait is @c false, this method will create a thread to perform the
5734 * delete operation asynchronously and will return immediately. Otherwise, it
5735 * will perform the operation on the calling thread and will not return to the
5736 * caller until the operation is completed. Note that @a aProgress cannot be
5737 * NULL when @a aWait is @c false (this method will assert in this case).
5738 *
5739 * @param aProgress Where to find/store a Progress object to track operation
5740 * completion.
5741 * @param aWait @c true if this method should block instead of creating
5742 * an asynchronous thread.
5743 * @param aNotify Notify about media for which metadata is changed
5744 * during execution of the function.
5745 *
5746 * @note Locks mVirtualBox and this object for writing. Locks medium tree for
5747 * writing.
5748 */
5749HRESULT Medium::i_deleteStorage(ComObjPtr<Progress> *aProgress,
5750 bool aWait, bool aNotify)
5751{
5752 AssertReturn(aProgress != NULL || aWait == true, E_FAIL);
5753
5754 HRESULT hrc = S_OK;
5755 ComObjPtr<Progress> pProgress;
5756 Medium::Task *pTask = NULL;
5757
5758 try
5759 {
5760 /* we're accessing the media tree, and i_canClose() needs it too */
5761 AutoWriteLock treelock(m->pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
5762
5763 AutoCaller autoCaller(this);
5764 AssertComRCThrowRC(autoCaller.hrc());
5765
5766 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
5767
5768 LogFlowThisFunc(("aWait=%RTbool locationFull=%s\n", aWait, i_getLocationFull().c_str() ));
5769
5770 if ( !(m->formatObj->i_getCapabilities() & ( MediumFormatCapabilities_CreateDynamic
5771 | MediumFormatCapabilities_CreateFixed)))
5772 throw setError(VBOX_E_NOT_SUPPORTED,
5773 tr("Medium format '%s' does not support storage deletion"),
5774 m->strFormat.c_str());
5775
5776 /* Wait for a concurrently running Medium::i_queryInfo to complete. */
5777 /** @todo r=klaus would be great if this could be moved to the async
5778 * part of the operation as it can take quite a while */
5779 while (m->queryInfoRunning)
5780 {
5781 alock.release();
5782 autoCaller.release();
5783 treelock.release();
5784 /* Must not hold the media tree lock or the object lock, as
5785 * Medium::i_queryInfo needs this lock and thus we would run
5786 * into a deadlock here. */
5787 Assert(!m->pVirtualBox->i_getMediaTreeLockHandle().isWriteLockOnCurrentThread());
5788 Assert(!isWriteLockOnCurrentThread());
5789 {
5790 AutoReadLock qlock(m->queryInfoSem COMMA_LOCKVAL_SRC_POS);
5791 }
5792 treelock.acquire();
5793 autoCaller.add();
5794 AssertComRCThrowRC(autoCaller.hrc());
5795 alock.acquire();
5796 }
5797
5798 /* Note that we are fine with Inaccessible state too: a) for symmetry
5799 * with create calls and b) because it doesn't really harm to try, if
5800 * it is really inaccessible, the delete operation will fail anyway.
5801 * Accepting Inaccessible state is especially important because all
5802 * registered media are initially Inaccessible upon VBoxSVC startup
5803 * until COMGETTER(RefreshState) is called. Accept Deleting state
5804 * because some callers need to put the medium in this state early
5805 * to prevent races. */
5806 switch (m->state)
5807 {
5808 case MediumState_Created:
5809 case MediumState_Deleting:
5810 case MediumState_Inaccessible:
5811 break;
5812 default:
5813 throw i_setStateError();
5814 }
5815
5816 if (m->backRefs.size() != 0)
5817 {
5818 Utf8Str strMachines;
5819 for (BackRefList::const_iterator it = m->backRefs.begin();
5820 it != m->backRefs.end();
5821 ++it)
5822 {
5823 const BackRef &b = *it;
5824 if (strMachines.length())
5825 strMachines.append(", ");
5826 strMachines.append(b.machineId.toString().c_str());
5827 }
5828#ifdef DEBUG
5829 i_dumpBackRefs();
5830#endif
5831 throw setError(VBOX_E_OBJECT_IN_USE,
5832 tr("Cannot delete storage: medium '%s' is still attached to the following %d virtual machine(s): %s",
5833 "", m->backRefs.size()),
5834 m->strLocationFull.c_str(),
5835 m->backRefs.size(),
5836 strMachines.c_str());
5837 }
5838
5839 hrc = i_canClose();
5840 if (FAILED(hrc))
5841 throw hrc;
5842
5843 /* go to Deleting state, so that the medium is not actually locked */
5844 if (m->state != MediumState_Deleting)
5845 {
5846 hrc = i_markForDeletion();
5847 if (FAILED(hrc))
5848 throw hrc;
5849 }
5850
5851 /* Build the medium lock list. */
5852 MediumLockList *pMediumLockList(new MediumLockList());
5853 alock.release();
5854 autoCaller.release();
5855 treelock.release();
5856 hrc = i_createMediumLockList(true /* fFailIfInaccessible */,
5857 this /* pToLockWrite */,
5858 false /* fMediumLockWriteAll */,
5859 NULL,
5860 *pMediumLockList);
5861 treelock.acquire();
5862 autoCaller.add();
5863 AssertComRCThrowRC(autoCaller.hrc());
5864 alock.acquire();
5865 if (FAILED(hrc))
5866 {
5867 delete pMediumLockList;
5868 throw hrc;
5869 }
5870
5871 alock.release();
5872 autoCaller.release();
5873 treelock.release();
5874 hrc = pMediumLockList->Lock();
5875 treelock.acquire();
5876 autoCaller.add();
5877 AssertComRCThrowRC(autoCaller.hrc());
5878 alock.acquire();
5879 if (FAILED(hrc))
5880 {
5881 delete pMediumLockList;
5882 throw setError(hrc,
5883 tr("Failed to lock media when deleting '%s'"),
5884 i_getLocationFull().c_str());
5885 }
5886
5887 /* try to remove from the list of known media before performing
5888 * actual deletion (we favor the consistency of the media registry
5889 * which would have been broken if unregisterWithVirtualBox() failed
5890 * after we successfully deleted the storage) */
5891 hrc = i_unregisterWithVirtualBox();
5892 if (FAILED(hrc))
5893 throw hrc;
5894 // no longer need lock
5895 alock.release();
5896 autoCaller.release();
5897 treelock.release();
5898 i_markRegistriesModified();
5899
5900 if (aProgress != NULL)
5901 {
5902 /* use the existing progress object... */
5903 pProgress = *aProgress;
5904
5905 /* ...but create a new one if it is null */
5906 if (pProgress.isNull())
5907 {
5908 pProgress.createObject();
5909 hrc = pProgress->init(m->pVirtualBox,
5910 static_cast<IMedium*>(this),
5911 BstrFmt(tr("Deleting medium storage unit '%s'"), m->strLocationFull.c_str()).raw(),
5912 FALSE /* aCancelable */);
5913 if (FAILED(hrc))
5914 throw hrc;
5915 }
5916 }
5917
5918 /* setup task object to carry out the operation sync/async */
5919 pTask = new Medium::DeleteTask(this, pProgress, pMediumLockList, false, aNotify);
5920 hrc = pTask->hrc();
5921 AssertComRC(hrc);
5922 if (FAILED(hrc))
5923 throw hrc;
5924 }
5925 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
5926
5927 if (SUCCEEDED(hrc))
5928 {
5929 if (aWait)
5930 {
5931 hrc = pTask->runNow();
5932 delete pTask;
5933 }
5934 else
5935 hrc = pTask->createThread();
5936 pTask = NULL;
5937 if (SUCCEEDED(hrc) && aProgress != NULL)
5938 *aProgress = pProgress;
5939 }
5940 else
5941 {
5942 if (pTask)
5943 delete pTask;
5944
5945 /* Undo deleting state if necessary. */
5946 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
5947 /* Make sure that any error signalled by unmarkForDeletion() is not
5948 * ending up in the error list (if the caller uses MultiResult). It
5949 * usually is spurious, as in most cases the medium hasn't been marked
5950 * for deletion when the error was thrown above. */
5951 ErrorInfoKeeper eik;
5952 i_unmarkForDeletion();
5953 }
5954
5955 return hrc;
5956}
5957
5958/**
5959 * Mark a medium for deletion.
5960 *
5961 * @note Caller must hold the write lock on this medium!
5962 */
5963HRESULT Medium::i_markForDeletion()
5964{
5965 ComAssertRet(isWriteLockOnCurrentThread(), E_FAIL);
5966 switch (m->state)
5967 {
5968 case MediumState_Created:
5969 case MediumState_Inaccessible:
5970 m->preLockState = m->state;
5971 m->state = MediumState_Deleting;
5972 return S_OK;
5973 default:
5974 return i_setStateError();
5975 }
5976}
5977
5978/**
5979 * Removes the "mark for deletion".
5980 *
5981 * @note Caller must hold the write lock on this medium!
5982 */
5983HRESULT Medium::i_unmarkForDeletion()
5984{
5985 ComAssertRet(isWriteLockOnCurrentThread(), E_FAIL);
5986 switch (m->state)
5987 {
5988 case MediumState_Deleting:
5989 m->state = m->preLockState;
5990 return S_OK;
5991 default:
5992 return i_setStateError();
5993 }
5994}
5995
5996/**
5997 * Mark a medium for deletion which is in locked state.
5998 *
5999 * @note Caller must hold the write lock on this medium!
6000 */
6001HRESULT Medium::i_markLockedForDeletion()
6002{
6003 ComAssertRet(isWriteLockOnCurrentThread(), E_FAIL);
6004 if ( ( m->state == MediumState_LockedRead
6005 || m->state == MediumState_LockedWrite)
6006 && m->preLockState == MediumState_Created)
6007 {
6008 m->preLockState = MediumState_Deleting;
6009 return S_OK;
6010 }
6011 else
6012 return i_setStateError();
6013}
6014
6015/**
6016 * Removes the "mark for deletion" for a medium in locked state.
6017 *
6018 * @note Caller must hold the write lock on this medium!
6019 */
6020HRESULT Medium::i_unmarkLockedForDeletion()
6021{
6022 ComAssertRet(isWriteLockOnCurrentThread(), E_FAIL);
6023 if ( ( m->state == MediumState_LockedRead
6024 || m->state == MediumState_LockedWrite)
6025 && m->preLockState == MediumState_Deleting)
6026 {
6027 m->preLockState = MediumState_Created;
6028 return S_OK;
6029 }
6030 else
6031 return i_setStateError();
6032}
6033
6034/**
6035 * Queries the preferred merge direction from this to the other medium, i.e.
6036 * the one which requires the least amount of I/O and therefore time and
6037 * disk consumption.
6038 *
6039 * @returns Status code.
6040 * @retval E_FAIL in case determining the merge direction fails for some reason,
6041 * for example if getting the size of the media fails. There is no
6042 * error set though and the caller is free to continue to find out
6043 * what was going wrong later. Leaves fMergeForward unset.
6044 * @retval VBOX_E_INVALID_OBJECT_STATE if both media are not related to each other
6045 * An error is set.
6046 * @param pOther The other medium to merge with.
6047 * @param fMergeForward Resulting preferred merge direction (out).
6048 */
6049HRESULT Medium::i_queryPreferredMergeDirection(const ComObjPtr<Medium> &pOther,
6050 bool &fMergeForward)
6051{
6052 AssertReturn(pOther != NULL, E_FAIL);
6053 AssertReturn(pOther != this, E_FAIL);
6054
6055 HRESULT hrc = S_OK;
6056 bool fThisParent = false; /**<< Flag whether this medium is the parent of pOther. */
6057
6058 try
6059 {
6060 // locking: we need the tree lock first because we access parent pointers
6061 AutoWriteLock treeLock(m->pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
6062
6063 AutoCaller autoCaller(this);
6064 AssertComRCThrowRC(autoCaller.hrc());
6065
6066 AutoCaller otherCaller(pOther);
6067 AssertComRCThrowRC(otherCaller.hrc());
6068
6069 /* more sanity checking and figuring out the current merge direction */
6070 ComObjPtr<Medium> pMedium = i_getParent();
6071 while (!pMedium.isNull() && pMedium != pOther)
6072 pMedium = pMedium->i_getParent();
6073 if (pMedium == pOther)
6074 fThisParent = false;
6075 else
6076 {
6077 pMedium = pOther->i_getParent();
6078 while (!pMedium.isNull() && pMedium != this)
6079 pMedium = pMedium->i_getParent();
6080 if (pMedium == this)
6081 fThisParent = true;
6082 else
6083 {
6084 Utf8Str tgtLoc;
6085 {
6086 AutoReadLock alock(pOther COMMA_LOCKVAL_SRC_POS);
6087 tgtLoc = pOther->i_getLocationFull();
6088 }
6089
6090 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
6091 throw setError(VBOX_E_INVALID_OBJECT_STATE,
6092 tr("Media '%s' and '%s' are unrelated"),
6093 m->strLocationFull.c_str(), tgtLoc.c_str());
6094 }
6095 }
6096
6097 /*
6098 * Figure out the preferred merge direction. The current way is to
6099 * get the current sizes of file based images and select the merge
6100 * direction depending on the size.
6101 *
6102 * Can't use the VD API to get current size here as the media might
6103 * be write locked by a running VM. Resort to RTFileQuerySize().
6104 */
6105 int vrc = VINF_SUCCESS;
6106 uint64_t cbMediumThis = 0;
6107 uint64_t cbMediumOther = 0;
6108
6109 if (i_isMediumFormatFile() && pOther->i_isMediumFormatFile())
6110 {
6111 vrc = RTFileQuerySizeByPath(this->i_getLocationFull().c_str(), &cbMediumThis);
6112 if (RT_SUCCESS(vrc))
6113 {
6114 vrc = RTFileQuerySizeByPath(pOther->i_getLocationFull().c_str(),
6115 &cbMediumOther);
6116 }
6117
6118 if (RT_FAILURE(vrc))
6119 hrc = E_FAIL;
6120 else
6121 {
6122 /*
6123 * Check which merge direction might be more optimal.
6124 * This method is not bullet proof of course as there might
6125 * be overlapping blocks in the images so the file size is
6126 * not the best indicator but it is good enough for our purpose
6127 * and everything else is too complicated, especially when the
6128 * media are used by a running VM.
6129 */
6130
6131 uint32_t mediumVariants = MediumVariant_Fixed | MediumVariant_VmdkStreamOptimized;
6132 uint32_t mediumCaps = MediumFormatCapabilities_CreateDynamic | MediumFormatCapabilities_File;
6133
6134 bool fDynamicOther = pOther->i_getMediumFormat()->i_getCapabilities() & mediumCaps
6135 && pOther->i_getVariant() & ~mediumVariants;
6136 bool fDynamicThis = i_getMediumFormat()->i_getCapabilities() & mediumCaps
6137 && i_getVariant() & ~mediumVariants;
6138 bool fMergeIntoThis = (fDynamicThis && !fDynamicOther)
6139 || (fDynamicThis == fDynamicOther && cbMediumThis > cbMediumOther);
6140 fMergeForward = fMergeIntoThis != fThisParent;
6141 }
6142 }
6143 }
6144 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
6145
6146 return hrc;
6147}
6148
6149/**
6150 * Prepares this (source) medium, target medium and all intermediate media
6151 * for the merge operation.
6152 *
6153 * This method is to be called prior to calling the #mergeTo() to perform
6154 * necessary consistency checks and place involved media to appropriate
6155 * states. If #mergeTo() is not called or fails, the state modifications
6156 * performed by this method must be undone by #i_cancelMergeTo().
6157 *
6158 * See #mergeTo() for more information about merging.
6159 *
6160 * @param pTarget Target medium.
6161 * @param aMachineId Allowed machine attachment. NULL means do not check.
6162 * @param aSnapshotId Allowed snapshot attachment. NULL or empty UUID means
6163 * do not check.
6164 * @param fLockMedia Flag whether to lock the medium lock list or not.
6165 * If set to false and the medium lock list locking fails
6166 * later you must call #i_cancelMergeTo().
6167 * @param fMergeForward Resulting merge direction (out).
6168 * @param pParentForTarget New parent for target medium after merge (out).
6169 * @param aChildrenToReparent Medium lock list containing all children of the
6170 * source which will have to be reparented to the target
6171 * after merge (out).
6172 * @param aMediumLockList Medium locking information (out).
6173 *
6174 * @note Locks medium tree for reading. Locks this object, aTarget and all
6175 * intermediate media for writing.
6176 */
6177HRESULT Medium::i_prepareMergeTo(const ComObjPtr<Medium> &pTarget,
6178 const Guid *aMachineId,
6179 const Guid *aSnapshotId,
6180 bool fLockMedia,
6181 bool &fMergeForward,
6182 ComObjPtr<Medium> &pParentForTarget,
6183 MediumLockList * &aChildrenToReparent,
6184 MediumLockList * &aMediumLockList)
6185{
6186 AssertReturn(pTarget != NULL, E_FAIL);
6187 AssertReturn(pTarget != this, E_FAIL);
6188
6189 HRESULT hrc = S_OK;
6190 fMergeForward = false;
6191 pParentForTarget.setNull();
6192 Assert(aChildrenToReparent == NULL);
6193 aChildrenToReparent = NULL;
6194 Assert(aMediumLockList == NULL);
6195 aMediumLockList = NULL;
6196
6197 try
6198 {
6199 // locking: we need the tree lock first because we access parent pointers
6200 AutoWriteLock treeLock(m->pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
6201
6202 AutoCaller autoCaller(this);
6203 AssertComRCThrowRC(autoCaller.hrc());
6204
6205 AutoCaller targetCaller(pTarget);
6206 AssertComRCThrowRC(targetCaller.hrc());
6207
6208 /* more sanity checking and figuring out the merge direction */
6209 ComObjPtr<Medium> pMedium = i_getParent();
6210 while (!pMedium.isNull() && pMedium != pTarget)
6211 pMedium = pMedium->i_getParent();
6212 if (pMedium == pTarget)
6213 fMergeForward = false;
6214 else
6215 {
6216 pMedium = pTarget->i_getParent();
6217 while (!pMedium.isNull() && pMedium != this)
6218 pMedium = pMedium->i_getParent();
6219 if (pMedium == this)
6220 fMergeForward = true;
6221 else
6222 {
6223 Utf8Str tgtLoc;
6224 {
6225 AutoReadLock alock(pTarget COMMA_LOCKVAL_SRC_POS);
6226 tgtLoc = pTarget->i_getLocationFull();
6227 }
6228
6229 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
6230 throw setError(VBOX_E_INVALID_OBJECT_STATE,
6231 tr("Media '%s' and '%s' are unrelated"),
6232 m->strLocationFull.c_str(), tgtLoc.c_str());
6233 }
6234 }
6235
6236 /* Build the lock list. */
6237 aMediumLockList = new MediumLockList();
6238 targetCaller.release();
6239 autoCaller.release();
6240 treeLock.release();
6241 if (fMergeForward)
6242 hrc = pTarget->i_createMediumLockList(true /* fFailIfInaccessible */,
6243 pTarget /* pToLockWrite */,
6244 false /* fMediumLockWriteAll */,
6245 NULL,
6246 *aMediumLockList);
6247 else
6248 hrc = i_createMediumLockList(true /* fFailIfInaccessible */,
6249 pTarget /* pToLockWrite */,
6250 false /* fMediumLockWriteAll */,
6251 NULL,
6252 *aMediumLockList);
6253 treeLock.acquire();
6254 autoCaller.add();
6255 AssertComRCThrowRC(autoCaller.hrc());
6256 targetCaller.add();
6257 AssertComRCThrowRC(targetCaller.hrc());
6258 if (FAILED(hrc))
6259 throw hrc;
6260
6261 /* Sanity checking, must be after lock list creation as it depends on
6262 * valid medium states. The medium objects must be accessible. Only
6263 * do this if immediate locking is requested, otherwise it fails when
6264 * we construct a medium lock list for an already running VM. Snapshot
6265 * deletion uses this to simplify its life. */
6266 if (fLockMedia)
6267 {
6268 {
6269 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
6270 if (m->state != MediumState_Created)
6271 throw i_setStateError();
6272 }
6273 {
6274 AutoReadLock alock(pTarget COMMA_LOCKVAL_SRC_POS);
6275 if (pTarget->m->state != MediumState_Created)
6276 throw pTarget->i_setStateError();
6277 }
6278 }
6279
6280 /* check medium attachment and other sanity conditions */
6281 if (fMergeForward)
6282 {
6283 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
6284 if (i_getChildren().size() > 1)
6285 {
6286 throw setError(VBOX_E_INVALID_OBJECT_STATE,
6287 tr("Medium '%s' involved in the merge operation has more than one child medium (%d)"),
6288 m->strLocationFull.c_str(), i_getChildren().size());
6289 }
6290 /* One backreference is only allowed if the machine ID is not empty
6291 * and it matches the machine the medium is attached to (including
6292 * the snapshot ID if not empty). */
6293 if ( m->backRefs.size() != 0
6294 && ( !aMachineId
6295 || m->backRefs.size() != 1
6296 || aMachineId->isZero()
6297 || *i_getFirstMachineBackrefId() != *aMachineId
6298 || ( (!aSnapshotId || !aSnapshotId->isZero())
6299 && *i_getFirstMachineBackrefSnapshotId() != *aSnapshotId)))
6300 throw setError(VBOX_E_OBJECT_IN_USE,
6301 tr("Medium '%s' is attached to %d virtual machines", "", m->backRefs.size()),
6302 m->strLocationFull.c_str(), m->backRefs.size());
6303 if (m->type == MediumType_Immutable)
6304 throw setError(VBOX_E_INVALID_OBJECT_STATE,
6305 tr("Medium '%s' is immutable"),
6306 m->strLocationFull.c_str());
6307 if (m->type == MediumType_MultiAttach)
6308 throw setError(VBOX_E_INVALID_OBJECT_STATE,
6309 tr("Medium '%s' is multi-attach"),
6310 m->strLocationFull.c_str());
6311 }
6312 else
6313 {
6314 AutoReadLock alock(pTarget COMMA_LOCKVAL_SRC_POS);
6315 if (pTarget->i_getChildren().size() > 1)
6316 {
6317 throw setError(VBOX_E_OBJECT_IN_USE,
6318 tr("Medium '%s' involved in the merge operation has more than one child medium (%d)"),
6319 pTarget->m->strLocationFull.c_str(),
6320 pTarget->i_getChildren().size());
6321 }
6322 if (pTarget->m->type == MediumType_Immutable)
6323 throw setError(VBOX_E_INVALID_OBJECT_STATE,
6324 tr("Medium '%s' is immutable"),
6325 pTarget->m->strLocationFull.c_str());
6326 if (pTarget->m->type == MediumType_MultiAttach)
6327 throw setError(VBOX_E_INVALID_OBJECT_STATE,
6328 tr("Medium '%s' is multi-attach"),
6329 pTarget->m->strLocationFull.c_str());
6330 }
6331 ComObjPtr<Medium> pLast(fMergeForward ? (Medium *)pTarget : this);
6332 ComObjPtr<Medium> pLastIntermediate = pLast->i_getParent();
6333 for (pLast = pLastIntermediate;
6334 !pLast.isNull() && pLast != pTarget && pLast != this;
6335 pLast = pLast->i_getParent())
6336 {
6337 AutoReadLock alock(pLast COMMA_LOCKVAL_SRC_POS);
6338 if (pLast->i_getChildren().size() > 1)
6339 {
6340 throw setError(VBOX_E_OBJECT_IN_USE,
6341 tr("Medium '%s' involved in the merge operation has more than one child medium (%d)"),
6342 pLast->m->strLocationFull.c_str(),
6343 pLast->i_getChildren().size());
6344 }
6345 if (pLast->m->backRefs.size() != 0)
6346 throw setError(VBOX_E_OBJECT_IN_USE,
6347 tr("Medium '%s' is attached to %d virtual machines", "", pLast->m->backRefs.size()),
6348 pLast->m->strLocationFull.c_str(),
6349 pLast->m->backRefs.size());
6350
6351 }
6352
6353 /* Update medium states appropriately */
6354 {
6355 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
6356
6357 if (m->state == MediumState_Created)
6358 {
6359 hrc = i_markForDeletion();
6360 if (FAILED(hrc))
6361 throw hrc;
6362 }
6363 else
6364 {
6365 if (fLockMedia)
6366 throw i_setStateError();
6367 else if ( m->state == MediumState_LockedWrite
6368 || m->state == MediumState_LockedRead)
6369 {
6370 /* Either mark it for deletion in locked state or allow
6371 * others to have done so. */
6372 if (m->preLockState == MediumState_Created)
6373 i_markLockedForDeletion();
6374 else if (m->preLockState != MediumState_Deleting)
6375 throw i_setStateError();
6376 }
6377 else
6378 throw i_setStateError();
6379 }
6380 }
6381
6382 if (fMergeForward)
6383 {
6384 /* we will need parent to reparent target */
6385 pParentForTarget = i_getParent();
6386 }
6387 else
6388 {
6389 /* we will need to reparent children of the source */
6390 aChildrenToReparent = new MediumLockList();
6391 for (MediaList::const_iterator it = i_getChildren().begin();
6392 it != i_getChildren().end();
6393 ++it)
6394 {
6395 pMedium = *it;
6396 aChildrenToReparent->Append(pMedium, true /* fLockWrite */);
6397 }
6398 if (fLockMedia && aChildrenToReparent)
6399 {
6400 targetCaller.release();
6401 autoCaller.release();
6402 treeLock.release();
6403 hrc = aChildrenToReparent->Lock();
6404 treeLock.acquire();
6405 autoCaller.add();
6406 AssertComRCThrowRC(autoCaller.hrc());
6407 targetCaller.add();
6408 AssertComRCThrowRC(targetCaller.hrc());
6409 if (FAILED(hrc))
6410 throw hrc;
6411 }
6412 }
6413 for (pLast = pLastIntermediate;
6414 !pLast.isNull() && pLast != pTarget && pLast != this;
6415 pLast = pLast->i_getParent())
6416 {
6417 AutoWriteLock alock(pLast COMMA_LOCKVAL_SRC_POS);
6418 if (pLast->m->state == MediumState_Created)
6419 {
6420 hrc = pLast->i_markForDeletion();
6421 if (FAILED(hrc))
6422 throw hrc;
6423 }
6424 else
6425 throw pLast->i_setStateError();
6426 }
6427
6428 /* Tweak the lock list in the backward merge case, as the target
6429 * isn't marked to be locked for writing yet. */
6430 if (!fMergeForward)
6431 {
6432 MediumLockList::Base::iterator lockListBegin =
6433 aMediumLockList->GetBegin();
6434 MediumLockList::Base::iterator lockListEnd =
6435 aMediumLockList->GetEnd();
6436 ++lockListEnd;
6437 for (MediumLockList::Base::iterator it = lockListBegin;
6438 it != lockListEnd;
6439 ++it)
6440 {
6441 MediumLock &mediumLock = *it;
6442 if (mediumLock.GetMedium() == pTarget)
6443 {
6444 HRESULT hrc2 = mediumLock.UpdateLock(true);
6445 AssertComRC(hrc2);
6446 break;
6447 }
6448 }
6449 }
6450
6451 if (fLockMedia)
6452 {
6453 targetCaller.release();
6454 autoCaller.release();
6455 treeLock.release();
6456 hrc = aMediumLockList->Lock();
6457 treeLock.acquire();
6458 autoCaller.add();
6459 AssertComRCThrowRC(autoCaller.hrc());
6460 targetCaller.add();
6461 AssertComRCThrowRC(targetCaller.hrc());
6462 if (FAILED(hrc))
6463 {
6464 AutoReadLock alock(pTarget COMMA_LOCKVAL_SRC_POS);
6465 throw setError(hrc,
6466 tr("Failed to lock media when merging to '%s'"),
6467 pTarget->i_getLocationFull().c_str());
6468 }
6469 }
6470 }
6471 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
6472
6473 if (FAILED(hrc))
6474 {
6475 if (aMediumLockList)
6476 {
6477 delete aMediumLockList;
6478 aMediumLockList = NULL;
6479 }
6480 if (aChildrenToReparent)
6481 {
6482 delete aChildrenToReparent;
6483 aChildrenToReparent = NULL;
6484 }
6485 }
6486
6487 return hrc;
6488}
6489
6490/**
6491 * Merges this medium to the specified medium which must be either its
6492 * direct ancestor or descendant.
6493 *
6494 * Given this medium is SOURCE and the specified medium is TARGET, we will
6495 * get two variants of the merge operation:
6496 *
6497 * forward merge
6498 * ------------------------->
6499 * [Extra] <- SOURCE <- Intermediate <- TARGET
6500 * Any Del Del LockWr
6501 *
6502 *
6503 * backward merge
6504 * <-------------------------
6505 * TARGET <- Intermediate <- SOURCE <- [Extra]
6506 * LockWr Del Del LockWr
6507 *
6508 * Each diagram shows the involved media on the media chain where
6509 * SOURCE and TARGET belong. Under each medium there is a state value which
6510 * the medium must have at a time of the mergeTo() call.
6511 *
6512 * The media in the square braces may be absent (e.g. when the forward
6513 * operation takes place and SOURCE is the base medium, or when the backward
6514 * merge operation takes place and TARGET is the last child in the chain) but if
6515 * they present they are involved too as shown.
6516 *
6517 * Neither the source medium nor intermediate media may be attached to
6518 * any VM directly or in the snapshot, otherwise this method will assert.
6519 *
6520 * The #i_prepareMergeTo() method must be called prior to this method to place
6521 * all involved to necessary states and perform other consistency checks.
6522 *
6523 * If @a aWait is @c true then this method will perform the operation on the
6524 * calling thread and will not return to the caller until the operation is
6525 * completed. When this method succeeds, all intermediate medium objects in
6526 * the chain will be uninitialized, the state of the target medium (and all
6527 * involved extra media) will be restored. @a aMediumLockList will not be
6528 * deleted, whether the operation is successful or not. The caller has to do
6529 * this if appropriate. Note that this (source) medium is not uninitialized
6530 * because of possible AutoCaller instances held by the caller of this method
6531 * on the current thread. It's therefore the responsibility of the caller to
6532 * call Medium::uninit() after releasing all callers.
6533 *
6534 * If @a aWait is @c false then this method will create a thread to perform the
6535 * operation asynchronously and will return immediately. If the operation
6536 * succeeds, the thread will uninitialize the source medium object and all
6537 * intermediate medium objects in the chain, reset the state of the target
6538 * medium (and all involved extra media) and delete @a aMediumLockList.
6539 * If the operation fails, the thread will only reset the states of all
6540 * involved media and delete @a aMediumLockList.
6541 *
6542 * When this method fails (regardless of the @a aWait mode), it is a caller's
6543 * responsibility to undo state changes and delete @a aMediumLockList using
6544 * #i_cancelMergeTo().
6545 *
6546 * If @a aProgress is not NULL but the object it points to is @c null then a new
6547 * progress object will be created and assigned to @a *aProgress on success,
6548 * otherwise the existing progress object is used. If Progress is NULL, then no
6549 * progress object is created/used at all. Note that @a aProgress cannot be
6550 * NULL when @a aWait is @c false (this method will assert in this case).
6551 *
6552 * @param pTarget Target medium.
6553 * @param fMergeForward Merge direction.
6554 * @param pParentForTarget New parent for target medium after merge.
6555 * @param aChildrenToReparent List of children of the source which will have
6556 * to be reparented to the target after merge.
6557 * @param aMediumLockList Medium locking information.
6558 * @param aProgress Where to find/store a Progress object to track operation
6559 * completion.
6560 * @param aWait @c true if this method should block instead of creating
6561 * an asynchronous thread.
6562 * @param aNotify Notify about media for which metadata is changed
6563 * during execution of the function.
6564 *
6565 * @note Locks the tree lock for writing. Locks the media from the chain
6566 * for writing.
6567 */
6568HRESULT Medium::i_mergeTo(const ComObjPtr<Medium> &pTarget,
6569 bool fMergeForward,
6570 const ComObjPtr<Medium> &pParentForTarget,
6571 MediumLockList *aChildrenToReparent,
6572 MediumLockList *aMediumLockList,
6573 ComObjPtr<Progress> *aProgress,
6574 bool aWait, bool aNotify)
6575{
6576 AssertReturn(pTarget != NULL, E_FAIL);
6577 AssertReturn(pTarget != this, E_FAIL);
6578 AssertReturn(aMediumLockList != NULL, E_FAIL);
6579 AssertReturn(aProgress != NULL || aWait == true, E_FAIL);
6580
6581 AutoCaller autoCaller(this);
6582 AssertComRCReturnRC(autoCaller.hrc());
6583
6584 AutoCaller targetCaller(pTarget);
6585 AssertComRCReturnRC(targetCaller.hrc());
6586
6587 HRESULT hrc = S_OK;
6588 ComObjPtr<Progress> pProgress;
6589 Medium::Task *pTask = NULL;
6590
6591 try
6592 {
6593 if (aProgress != NULL)
6594 {
6595 /* use the existing progress object... */
6596 pProgress = *aProgress;
6597
6598 /* ...but create a new one if it is null */
6599 if (pProgress.isNull())
6600 {
6601 Utf8Str tgtName;
6602 {
6603 AutoReadLock alock(pTarget COMMA_LOCKVAL_SRC_POS);
6604 tgtName = pTarget->i_getName();
6605 }
6606
6607 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
6608
6609 pProgress.createObject();
6610 hrc = pProgress->init(m->pVirtualBox,
6611 static_cast<IMedium*>(this),
6612 BstrFmt(tr("Merging medium '%s' to '%s'"),
6613 i_getName().c_str(),
6614 tgtName.c_str()).raw(),
6615 TRUE, /* aCancelable */
6616 2, /* Number of opearations */
6617 BstrFmt(tr("Resizing medium '%s' before merge"),
6618 tgtName.c_str()).raw()
6619 );
6620 if (FAILED(hrc))
6621 throw hrc;
6622 }
6623 }
6624
6625 /* setup task object to carry out the operation sync/async */
6626 pTask = new Medium::MergeTask(this, pTarget, fMergeForward,
6627 pParentForTarget, aChildrenToReparent,
6628 pProgress, aMediumLockList,
6629 aWait /* fKeepMediumLockList */,
6630 aNotify);
6631 hrc = pTask->hrc();
6632 AssertComRC(hrc);
6633 if (FAILED(hrc))
6634 throw hrc;
6635 }
6636 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
6637
6638 if (SUCCEEDED(hrc))
6639 {
6640 if (aWait)
6641 {
6642 hrc = pTask->runNow();
6643 delete pTask;
6644 }
6645 else
6646 hrc = pTask->createThread();
6647 pTask = NULL;
6648 if (SUCCEEDED(hrc) && aProgress != NULL)
6649 *aProgress = pProgress;
6650 }
6651 else if (pTask != NULL)
6652 delete pTask;
6653
6654 return hrc;
6655}
6656
6657/**
6658 * Undoes what #i_prepareMergeTo() did. Must be called if #mergeTo() is not
6659 * called or fails. Frees memory occupied by @a aMediumLockList and unlocks
6660 * the medium objects in @a aChildrenToReparent.
6661 *
6662 * @param aChildrenToReparent List of children of the source which will have
6663 * to be reparented to the target after merge.
6664 * @param aMediumLockList Medium locking information.
6665 *
6666 * @note Locks the tree lock for writing. Locks the media from the chain
6667 * for writing.
6668 */
6669void Medium::i_cancelMergeTo(MediumLockList *aChildrenToReparent,
6670 MediumLockList *aMediumLockList)
6671{
6672 AutoCaller autoCaller(this);
6673 AssertComRCReturnVoid(autoCaller.hrc());
6674
6675 AssertReturnVoid(aMediumLockList != NULL);
6676
6677 /* Revert media marked for deletion to previous state. */
6678 MediumLockList::Base::const_iterator mediumListBegin =
6679 aMediumLockList->GetBegin();
6680 MediumLockList::Base::const_iterator mediumListEnd =
6681 aMediumLockList->GetEnd();
6682 for (MediumLockList::Base::const_iterator it = mediumListBegin;
6683 it != mediumListEnd;
6684 ++it)
6685 {
6686 const MediumLock &mediumLock = *it;
6687 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
6688 AutoWriteLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
6689
6690 if (pMedium->m->state == MediumState_Deleting)
6691 {
6692 HRESULT hrc = pMedium->i_unmarkForDeletion();
6693 AssertComRC(hrc);
6694 }
6695 else if ( ( pMedium->m->state == MediumState_LockedWrite
6696 || pMedium->m->state == MediumState_LockedRead)
6697 && pMedium->m->preLockState == MediumState_Deleting)
6698 {
6699 HRESULT hrc = pMedium->i_unmarkLockedForDeletion();
6700 AssertComRC(hrc);
6701 }
6702 }
6703
6704 /* the destructor will do the work */
6705 delete aMediumLockList;
6706
6707 /* unlock the children which had to be reparented, the destructor will do
6708 * the work */
6709 if (aChildrenToReparent)
6710 delete aChildrenToReparent;
6711}
6712
6713/**
6714 * Resizes the media.
6715 *
6716 * If @a aWait is @c true then this method will perform the operation on the
6717 * calling thread and will not return to the caller until the operation is
6718 * completed. When this method succeeds, the state of the target medium (and all
6719 * involved extra media) will be restored. @a aMediumLockList will not be
6720 * deleted, whether the operation is successful or not. The caller has to do
6721 * this if appropriate.
6722 *
6723 * If @a aWait is @c false then this method will create a thread to perform the
6724 * operation asynchronously and will return immediately. The thread will reset
6725 * the state of the target medium (and all involved extra media) and delete
6726 * @a aMediumLockList.
6727 *
6728 * When this method fails (regardless of the @a aWait mode), it is a caller's
6729 * responsibility to undo state changes and delete @a aMediumLockList.
6730 *
6731 * If @a aProgress is not NULL but the object it points to is @c null then a new
6732 * progress object will be created and assigned to @a *aProgress on success,
6733 * otherwise the existing progress object is used. If Progress is NULL, then no
6734 * progress object is created/used at all. Note that @a aProgress cannot be
6735 * NULL when @a aWait is @c false (this method will assert in this case).
6736 *
6737 * @param aLogicalSize New nominal capacity of the medium in bytes.
6738 * @param aMediumLockList Medium locking information.
6739 * @param aProgress Where to find/store a Progress object to track operation
6740 * completion.
6741 * @param aWait @c true if this method should block instead of creating
6742 * an asynchronous thread.
6743 * @param aNotify Notify about media for which metadata is changed
6744 * during execution of the function.
6745 *
6746 * @note Locks the media from the chain for writing.
6747 */
6748
6749HRESULT Medium::i_resize(uint64_t aLogicalSize,
6750 MediumLockList *aMediumLockList,
6751 ComObjPtr<Progress> *aProgress,
6752 bool aWait,
6753 bool aNotify)
6754{
6755 AssertReturn(aMediumLockList != NULL, E_FAIL);
6756 AssertReturn(aProgress != NULL || aWait == true, E_FAIL);
6757
6758 AutoCaller autoCaller(this);
6759 AssertComRCReturnRC(autoCaller.hrc());
6760
6761 HRESULT hrc = S_OK;
6762 ComObjPtr<Progress> pProgress;
6763 Medium::Task *pTask = NULL;
6764
6765 try
6766 {
6767 if (aProgress != NULL)
6768 {
6769 /* use the existing progress object... */
6770 pProgress = *aProgress;
6771
6772 /* ...but create a new one if it is null */
6773 if (pProgress.isNull())
6774 {
6775 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
6776
6777 pProgress.createObject();
6778 hrc = pProgress->init(m->pVirtualBox,
6779 static_cast <IMedium *>(this),
6780 BstrFmt(tr("Resizing medium '%s'"), m->strLocationFull.c_str()).raw(),
6781 TRUE /* aCancelable */);
6782 if (FAILED(hrc))
6783 throw hrc;
6784 }
6785 }
6786
6787 /* setup task object to carry out the operation asynchronously */
6788 pTask = new Medium::ResizeTask(this,
6789 aLogicalSize,
6790 pProgress,
6791 aMediumLockList,
6792 aWait /* fKeepMediumLockList */,
6793 aNotify);
6794 hrc = pTask->hrc();
6795 AssertComRC(hrc);
6796 if (FAILED(hrc))
6797 throw hrc;
6798 }
6799 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
6800
6801 if (SUCCEEDED(hrc))
6802 {
6803 if (aWait)
6804 {
6805 hrc = pTask->runNow();
6806 delete pTask;
6807 }
6808 else
6809 hrc = pTask->createThread();
6810 pTask = NULL;
6811 if (SUCCEEDED(hrc) && aProgress != NULL)
6812 *aProgress = pProgress;
6813 }
6814 else if (pTask != NULL)
6815 delete pTask;
6816
6817 return hrc;
6818}
6819
6820/**
6821 * Fix the parent UUID of all children to point to this medium as their
6822 * parent.
6823 */
6824HRESULT Medium::i_fixParentUuidOfChildren(MediumLockList *pChildrenToReparent)
6825{
6826 /** @todo r=klaus The code below needs to be double checked with regard
6827 * to lock order violations, it probably causes lock order issues related
6828 * to the AutoCaller usage. Likewise the code using this method seems
6829 * problematic. */
6830 Assert(!isWriteLockOnCurrentThread());
6831 Assert(!m->pVirtualBox->i_getMediaTreeLockHandle().isWriteLockOnCurrentThread());
6832 MediumLockList mediumLockList;
6833 HRESULT hrc = i_createMediumLockList(true /* fFailIfInaccessible */,
6834 NULL /* pToLockWrite */,
6835 false /* fMediumLockWriteAll */,
6836 this,
6837 mediumLockList);
6838 AssertComRCReturnRC(hrc);
6839
6840 try
6841 {
6842 PVDISK hdd;
6843 int vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &hdd);
6844 ComAssertRCThrow(vrc, E_FAIL);
6845
6846 try
6847 {
6848 MediumLockList::Base::iterator lockListBegin =
6849 mediumLockList.GetBegin();
6850 MediumLockList::Base::iterator lockListEnd =
6851 mediumLockList.GetEnd();
6852 for (MediumLockList::Base::iterator it = lockListBegin;
6853 it != lockListEnd;
6854 ++it)
6855 {
6856 MediumLock &mediumLock = *it;
6857 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
6858 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
6859
6860 // open the medium
6861 vrc = VDOpen(hdd,
6862 pMedium->m->strFormat.c_str(),
6863 pMedium->m->strLocationFull.c_str(),
6864 VD_OPEN_FLAGS_READONLY | m->uOpenFlagsDef,
6865 pMedium->m->vdImageIfaces);
6866 if (RT_FAILURE(vrc))
6867 throw vrc;
6868 }
6869
6870 MediumLockList::Base::iterator childrenBegin = pChildrenToReparent->GetBegin();
6871 MediumLockList::Base::iterator childrenEnd = pChildrenToReparent->GetEnd();
6872 for (MediumLockList::Base::iterator it = childrenBegin;
6873 it != childrenEnd;
6874 ++it)
6875 {
6876 Medium *pMedium = it->GetMedium();
6877 /* VD_OPEN_FLAGS_INFO since UUID is wrong yet */
6878 vrc = VDOpen(hdd,
6879 pMedium->m->strFormat.c_str(),
6880 pMedium->m->strLocationFull.c_str(),
6881 VD_OPEN_FLAGS_INFO | m->uOpenFlagsDef,
6882 pMedium->m->vdImageIfaces);
6883 if (RT_FAILURE(vrc))
6884 throw vrc;
6885
6886 vrc = VDSetParentUuid(hdd, VD_LAST_IMAGE, m->id.raw());
6887 if (RT_FAILURE(vrc))
6888 throw vrc;
6889
6890 vrc = VDClose(hdd, false /* fDelete */);
6891 if (RT_FAILURE(vrc))
6892 throw vrc;
6893 }
6894 }
6895 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
6896 catch (int vrcXcpt)
6897 {
6898 hrc = setErrorBoth(E_FAIL, vrcXcpt,
6899 tr("Could not update medium UUID references to parent '%s' (%s)"),
6900 m->strLocationFull.c_str(),
6901 i_vdError(vrcXcpt).c_str());
6902 }
6903
6904 VDDestroy(hdd);
6905 }
6906 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
6907
6908 return hrc;
6909}
6910
6911/**
6912 *
6913 * @note Similar code exists in i_taskExportHandler.
6914 */
6915HRESULT Medium::i_addRawToFss(const char *aFilename, SecretKeyStore *pKeyStore, RTVFSFSSTREAM hVfsFssDst,
6916 const ComObjPtr<Progress> &aProgress, bool fSparse)
6917{
6918 AutoCaller autoCaller(this);
6919 HRESULT hrc = autoCaller.hrc();
6920 if (SUCCEEDED(hrc))
6921 {
6922 /*
6923 * Get a readonly hdd for this medium.
6924 */
6925 MediumCryptoFilterSettings CryptoSettingsRead;
6926 MediumLockList SourceMediumLockList;
6927 PVDISK pHdd;
6928 hrc = i_openForIO(false /*fWritable*/, pKeyStore, &pHdd, &SourceMediumLockList, &CryptoSettingsRead);
6929 if (SUCCEEDED(hrc))
6930 {
6931 /*
6932 * Create a VFS file interface to the HDD and attach a progress wrapper
6933 * that monitors the progress reading of the raw image. The image will
6934 * be read twice if hVfsFssDst does sparse processing.
6935 */
6936 RTVFSFILE hVfsFileDisk = NIL_RTVFSFILE;
6937 int vrc = VDCreateVfsFileFromDisk(pHdd, 0 /*fFlags*/, &hVfsFileDisk);
6938 if (RT_SUCCESS(vrc))
6939 {
6940 RTVFSFILE hVfsFileProgress = NIL_RTVFSFILE;
6941 vrc = RTVfsCreateProgressForFile(hVfsFileDisk, aProgress->i_iprtProgressCallback, &*aProgress,
6942 RTVFSPROGRESS_F_CANCELABLE | RTVFSPROGRESS_F_FORWARD_SEEK_AS_READ,
6943 VDGetSize(pHdd, VD_LAST_IMAGE) * (fSparse ? 2 : 1) /*cbExpectedRead*/,
6944 0 /*cbExpectedWritten*/, &hVfsFileProgress);
6945 RTVfsFileRelease(hVfsFileDisk);
6946 if (RT_SUCCESS(vrc))
6947 {
6948 RTVFSOBJ hVfsObj = RTVfsObjFromFile(hVfsFileProgress);
6949 RTVfsFileRelease(hVfsFileProgress);
6950
6951 vrc = RTVfsFsStrmAdd(hVfsFssDst, aFilename, hVfsObj, 0 /*fFlags*/);
6952 RTVfsObjRelease(hVfsObj);
6953 if (RT_FAILURE(vrc))
6954 hrc = setErrorBoth(VBOX_E_FILE_ERROR, vrc, tr("Failed to add '%s' to output (%Rrc)"), aFilename, vrc);
6955 }
6956 else
6957 hrc = setErrorBoth(VBOX_E_FILE_ERROR, vrc,
6958 tr("RTVfsCreateProgressForFile failed when processing '%s' (%Rrc)"), aFilename, vrc);
6959 }
6960 else
6961 hrc = setErrorBoth(VBOX_E_FILE_ERROR, vrc, tr("VDCreateVfsFileFromDisk failed for '%s' (%Rrc)"), aFilename, vrc);
6962 VDDestroy(pHdd);
6963 }
6964 }
6965 return hrc;
6966}
6967
6968/**
6969 * Used by IAppliance to export disk images.
6970 *
6971 * @param aFilename Filename to create (UTF8).
6972 * @param aFormat Medium format for creating @a aFilename.
6973 * @param aVariant Which exact image format variant to use for the
6974 * destination image.
6975 * @param pKeyStore The optional key store for decrypting the data for
6976 * encrypted media during the export.
6977 * @param hVfsIosDst The destination I/O stream object.
6978 * @param aProgress Progress object to use.
6979 * @return
6980 *
6981 * @note The source format is defined by the Medium instance.
6982 */
6983HRESULT Medium::i_exportFile(const char *aFilename,
6984 const ComObjPtr<MediumFormat> &aFormat,
6985 MediumVariant_T aVariant,
6986 SecretKeyStore *pKeyStore,
6987 RTVFSIOSTREAM hVfsIosDst,
6988 const ComObjPtr<Progress> &aProgress)
6989{
6990 AssertPtrReturn(aFilename, E_INVALIDARG);
6991 AssertReturn(aFormat.isNotNull(), E_INVALIDARG);
6992 AssertReturn(aProgress.isNotNull(), E_INVALIDARG);
6993
6994 AutoCaller autoCaller(this);
6995 HRESULT hrc = autoCaller.hrc();
6996 if (SUCCEEDED(hrc))
6997 {
6998 /*
6999 * Setup VD interfaces.
7000 */
7001 PVDINTERFACE pVDImageIfaces = m->vdImageIfaces;
7002 PVDINTERFACEIO pVfsIoIf;
7003 int vrc = VDIfCreateFromVfsStream(hVfsIosDst, RTFILE_O_WRITE, &pVfsIoIf);
7004 if (RT_SUCCESS(vrc))
7005 {
7006 vrc = VDInterfaceAdd(&pVfsIoIf->Core, "Medium::ExportTaskVfsIos", VDINTERFACETYPE_IO,
7007 pVfsIoIf, sizeof(VDINTERFACEIO), &pVDImageIfaces);
7008 if (RT_SUCCESS(vrc))
7009 {
7010 /*
7011 * Get a readonly hdd for this medium (source).
7012 */
7013 MediumCryptoFilterSettings CryptoSettingsRead;
7014 MediumLockList SourceMediumLockList;
7015 PVDISK pSrcHdd;
7016 hrc = i_openForIO(false /*fWritable*/, pKeyStore, &pSrcHdd, &SourceMediumLockList, &CryptoSettingsRead);
7017 if (SUCCEEDED(hrc))
7018 {
7019 /*
7020 * Create the target medium.
7021 */
7022 Utf8Str strDstFormat(aFormat->i_getId());
7023
7024 /* ensure the target directory exists */
7025 uint64_t fDstCapabilities = aFormat->i_getCapabilities();
7026 if (fDstCapabilities & MediumFormatCapabilities_File)
7027 {
7028 Utf8Str strDstLocation(aFilename);
7029 hrc = VirtualBox::i_ensureFilePathExists(strDstLocation.c_str(),
7030 !(aVariant & MediumVariant_NoCreateDir) /* fCreate */);
7031 }
7032 if (SUCCEEDED(hrc))
7033 {
7034 PVDISK pDstHdd;
7035 vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &pDstHdd);
7036 if (RT_SUCCESS(vrc))
7037 {
7038 /*
7039 * Create an interface for getting progress callbacks.
7040 */
7041 VDINTERFACEPROGRESS ProgressIf = VDINTERFACEPROGRESS_INITALIZER(aProgress->i_vdProgressCallback);
7042 PVDINTERFACE pProgress = NULL;
7043 vrc = VDInterfaceAdd(&ProgressIf.Core, "export-progress", VDINTERFACETYPE_PROGRESS,
7044 &*aProgress, sizeof(ProgressIf), &pProgress);
7045 AssertRC(vrc);
7046
7047 /*
7048 * Do the exporting.
7049 */
7050 vrc = VDCopy(pSrcHdd,
7051 VD_LAST_IMAGE,
7052 pDstHdd,
7053 strDstFormat.c_str(),
7054 aFilename,
7055 false /* fMoveByRename */,
7056 0 /* cbSize */,
7057 aVariant & ~(MediumVariant_NoCreateDir | MediumVariant_Formatted | MediumVariant_VmdkESX | MediumVariant_VmdkRawDisk),
7058 NULL /* pDstUuid */,
7059 VD_OPEN_FLAGS_NORMAL | VD_OPEN_FLAGS_SEQUENTIAL,
7060 pProgress,
7061 pVDImageIfaces,
7062 NULL);
7063 if (RT_SUCCESS(vrc))
7064 hrc = S_OK;
7065 else
7066 hrc = setErrorBoth(VBOX_E_FILE_ERROR, vrc, tr("Could not create the exported medium '%s'%s"),
7067 aFilename, i_vdError(vrc).c_str());
7068 VDDestroy(pDstHdd);
7069 }
7070 else
7071 hrc = setErrorVrc(vrc);
7072 }
7073 }
7074 VDDestroy(pSrcHdd);
7075 }
7076 else
7077 hrc = setErrorVrc(vrc, "VDInterfaceAdd -> %Rrc", vrc);
7078 VDIfDestroyFromVfsStream(pVfsIoIf);
7079 }
7080 else
7081 hrc = setErrorVrc(vrc, "VDIfCreateFromVfsStream -> %Rrc", vrc);
7082 }
7083 return hrc;
7084}
7085
7086/**
7087 * Used by IAppliance to import disk images.
7088 *
7089 * @param aFilename Filename to read (UTF8).
7090 * @param aFormat Medium format for reading @a aFilename.
7091 * @param aVariant Which exact image format variant to use
7092 * for the destination image.
7093 * @param aVfsIosSrc Handle to the source I/O stream.
7094 * @param aParent Parent medium. May be NULL.
7095 * @param aProgress Progress object to use.
7096 * @param aNotify Notify about media for which metadata is changed
7097 * during execution of the function.
7098 * @return
7099 * @note The destination format is defined by the Medium instance.
7100 *
7101 * @todo The only consumer of this method (Appliance::i_importOneDiskImage) is
7102 * already on a worker thread, so perhaps consider bypassing the thread
7103 * here and run in the task synchronously? VBoxSVC has enough threads as
7104 * it is...
7105 */
7106HRESULT Medium::i_importFile(const char *aFilename,
7107 const ComObjPtr<MediumFormat> &aFormat,
7108 MediumVariant_T aVariant,
7109 RTVFSIOSTREAM aVfsIosSrc,
7110 const ComObjPtr<Medium> &aParent,
7111 const ComObjPtr<Progress> &aProgress,
7112 bool aNotify)
7113{
7114 /** @todo r=klaus The code below needs to be double checked with regard
7115 * to lock order violations, it probably causes lock order issues related
7116 * to the AutoCaller usage. */
7117 AssertPtrReturn(aFilename, E_INVALIDARG);
7118 AssertReturn(!aFormat.isNull(), E_INVALIDARG);
7119 AssertReturn(!aProgress.isNull(), E_INVALIDARG);
7120
7121 AutoCaller autoCaller(this);
7122 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
7123
7124 HRESULT hrc = S_OK;
7125 Medium::Task *pTask = NULL;
7126
7127 try
7128 {
7129 // locking: we need the tree lock first because we access parent pointers
7130 // and we need to write-lock the media involved
7131 uint32_t cHandles = 2;
7132 LockHandle* pHandles[3] = { &m->pVirtualBox->i_getMediaTreeLockHandle(),
7133 this->lockHandle() };
7134 /* Only add parent to the lock if it is not null */
7135 if (!aParent.isNull())
7136 pHandles[cHandles++] = aParent->lockHandle();
7137 AutoWriteLock alock(cHandles,
7138 pHandles
7139 COMMA_LOCKVAL_SRC_POS);
7140
7141 if ( m->state != MediumState_NotCreated
7142 && m->state != MediumState_Created)
7143 throw i_setStateError();
7144
7145 /* Build the target lock list. */
7146 MediumLockList *pTargetMediumLockList(new MediumLockList());
7147 alock.release();
7148 hrc = i_createMediumLockList(true /* fFailIfInaccessible */,
7149 this /* pToLockWrite */,
7150 false /* fMediumLockWriteAll */,
7151 aParent,
7152 *pTargetMediumLockList);
7153 alock.acquire();
7154 if (FAILED(hrc))
7155 {
7156 delete pTargetMediumLockList;
7157 throw hrc;
7158 }
7159
7160 alock.release();
7161 hrc = pTargetMediumLockList->Lock();
7162 alock.acquire();
7163 if (FAILED(hrc))
7164 {
7165 delete pTargetMediumLockList;
7166 throw setError(hrc,
7167 tr("Failed to lock target media '%s'"),
7168 i_getLocationFull().c_str());
7169 }
7170
7171 /* setup task object to carry out the operation asynchronously */
7172 pTask = new Medium::ImportTask(this, aProgress, aFilename, aFormat, aVariant,
7173 aVfsIosSrc, aParent, pTargetMediumLockList, false, aNotify);
7174 hrc = pTask->hrc();
7175 AssertComRC(hrc);
7176 if (FAILED(hrc))
7177 throw hrc;
7178
7179 if (m->state == MediumState_NotCreated)
7180 m->state = MediumState_Creating;
7181 }
7182 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
7183
7184 if (SUCCEEDED(hrc))
7185 {
7186 hrc = pTask->createThread();
7187 pTask = NULL;
7188 }
7189 else if (pTask != NULL)
7190 delete pTask;
7191
7192 return hrc;
7193}
7194
7195/**
7196 * Internal version of the public CloneTo API which allows to enable certain
7197 * optimizations to improve speed during VM cloning.
7198 *
7199 * @param aTarget Target medium
7200 * @param aVariant Which exact image format variant to use
7201 * for the destination image.
7202 * @param aParent Parent medium. May be NULL.
7203 * @param aProgress Progress object to use.
7204 * @param idxSrcImageSame The last image in the source chain which has the
7205 * same content as the given image in the destination
7206 * chain. Use UINT32_MAX to disable this optimization.
7207 * @param idxDstImageSame The last image in the destination chain which has the
7208 * same content as the given image in the source chain.
7209 * Use UINT32_MAX to disable this optimization.
7210 * @param aNotify Notify about media for which metadata is changed
7211 * during execution of the function.
7212 * @return
7213 */
7214HRESULT Medium::i_cloneToEx(const ComObjPtr<Medium> &aTarget, MediumVariant_T aVariant,
7215 const ComObjPtr<Medium> &aParent, IProgress **aProgress,
7216 uint32_t idxSrcImageSame, uint32_t idxDstImageSame, bool aNotify)
7217{
7218 /** @todo r=klaus The code below needs to be double checked with regard
7219 * to lock order violations, it probably causes lock order issues related
7220 * to the AutoCaller usage. */
7221 CheckComArgNotNull(aTarget);
7222 CheckComArgOutPointerValid(aProgress);
7223 ComAssertRet(aTarget != this, E_INVALIDARG);
7224
7225 AutoCaller autoCaller(this);
7226 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
7227
7228 HRESULT hrc = S_OK;
7229 ComObjPtr<Progress> pProgress;
7230 Medium::Task *pTask = NULL;
7231
7232 try
7233 {
7234 // locking: we need the tree lock first because we access parent pointers
7235 // and we need to write-lock the media involved
7236 uint32_t cHandles = 3;
7237 LockHandle* pHandles[4] = { &m->pVirtualBox->i_getMediaTreeLockHandle(),
7238 this->lockHandle(),
7239 aTarget->lockHandle() };
7240 /* Only add parent to the lock if it is not null */
7241 if (!aParent.isNull())
7242 pHandles[cHandles++] = aParent->lockHandle();
7243 AutoWriteLock alock(cHandles,
7244 pHandles
7245 COMMA_LOCKVAL_SRC_POS);
7246
7247 if ( aTarget->m->state != MediumState_NotCreated
7248 && aTarget->m->state != MediumState_Created)
7249 throw aTarget->i_setStateError();
7250
7251 /* Build the source lock list. */
7252 MediumLockList *pSourceMediumLockList(new MediumLockList());
7253 alock.release();
7254 hrc = i_createMediumLockList(true /* fFailIfInaccessible */,
7255 NULL /* pToLockWrite */,
7256 false /* fMediumLockWriteAll */,
7257 NULL,
7258 *pSourceMediumLockList);
7259 alock.acquire();
7260 if (FAILED(hrc))
7261 {
7262 delete pSourceMediumLockList;
7263 throw hrc;
7264 }
7265
7266 /* Build the target lock list (including the to-be parent chain). */
7267 MediumLockList *pTargetMediumLockList(new MediumLockList());
7268 alock.release();
7269 hrc = aTarget->i_createMediumLockList(true /* fFailIfInaccessible */,
7270 aTarget /* pToLockWrite */,
7271 false /* fMediumLockWriteAll */,
7272 aParent,
7273 *pTargetMediumLockList);
7274 alock.acquire();
7275 if (FAILED(hrc))
7276 {
7277 delete pSourceMediumLockList;
7278 delete pTargetMediumLockList;
7279 throw hrc;
7280 }
7281
7282 alock.release();
7283 hrc = pSourceMediumLockList->Lock();
7284 alock.acquire();
7285 if (FAILED(hrc))
7286 {
7287 delete pSourceMediumLockList;
7288 delete pTargetMediumLockList;
7289 throw setError(hrc,
7290 tr("Failed to lock source media '%s'"),
7291 i_getLocationFull().c_str());
7292 }
7293 alock.release();
7294 hrc = pTargetMediumLockList->Lock();
7295 alock.acquire();
7296 if (FAILED(hrc))
7297 {
7298 delete pSourceMediumLockList;
7299 delete pTargetMediumLockList;
7300 throw setError(hrc,
7301 tr("Failed to lock target media '%s'"),
7302 aTarget->i_getLocationFull().c_str());
7303 }
7304
7305 pProgress.createObject();
7306 hrc = pProgress->init(m->pVirtualBox,
7307 static_cast <IMedium *>(this),
7308 BstrFmt(tr("Creating clone medium '%s'"), aTarget->m->strLocationFull.c_str()).raw(),
7309 TRUE /* aCancelable */);
7310 if (FAILED(hrc))
7311 {
7312 delete pSourceMediumLockList;
7313 delete pTargetMediumLockList;
7314 throw hrc;
7315 }
7316
7317 /* setup task object to carry out the operation asynchronously */
7318 pTask = new Medium::CloneTask(this, pProgress, aTarget, aVariant,
7319 aParent, idxSrcImageSame,
7320 idxDstImageSame, pSourceMediumLockList,
7321 pTargetMediumLockList, false, false, aNotify);
7322 hrc = pTask->hrc();
7323 AssertComRC(hrc);
7324 if (FAILED(hrc))
7325 throw hrc;
7326
7327 if (aTarget->m->state == MediumState_NotCreated)
7328 aTarget->m->state = MediumState_Creating;
7329 }
7330 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
7331
7332 if (SUCCEEDED(hrc))
7333 {
7334 hrc = pTask->createThread();
7335 pTask = NULL;
7336 if (SUCCEEDED(hrc))
7337 pProgress.queryInterfaceTo(aProgress);
7338 }
7339 else if (pTask != NULL)
7340 delete pTask;
7341
7342 return hrc;
7343}
7344
7345/**
7346 * Returns the key identifier for this medium if encryption is configured.
7347 *
7348 * @returns Key identifier or empty string if no encryption is configured.
7349 */
7350const Utf8Str& Medium::i_getKeyId()
7351{
7352 ComObjPtr<Medium> pBase = i_getBase();
7353
7354 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
7355
7356 settings::StringsMap::const_iterator it = pBase->m->mapProperties.find("CRYPT/KeyId");
7357 if (it == pBase->m->mapProperties.end())
7358 return Utf8Str::Empty;
7359
7360 return it->second;
7361}
7362
7363
7364/**
7365 * Returns all filter related properties.
7366 *
7367 * @returns COM status code.
7368 * @param aReturnNames Where to store the properties names on success.
7369 * @param aReturnValues Where to store the properties values on success.
7370 */
7371HRESULT Medium::i_getFilterProperties(std::vector<com::Utf8Str> &aReturnNames,
7372 std::vector<com::Utf8Str> &aReturnValues)
7373{
7374 std::vector<com::Utf8Str> aPropNames;
7375 std::vector<com::Utf8Str> aPropValues;
7376 HRESULT hrc = getProperties(Utf8Str(""), aPropNames, aPropValues);
7377
7378 if (SUCCEEDED(hrc))
7379 {
7380 unsigned cReturnSize = 0;
7381 aReturnNames.resize(0);
7382 aReturnValues.resize(0);
7383 for (unsigned idx = 0; idx < aPropNames.size(); idx++)
7384 {
7385 if (i_isPropertyForFilter(aPropNames[idx]))
7386 {
7387 aReturnNames.resize(cReturnSize + 1);
7388 aReturnValues.resize(cReturnSize + 1);
7389 aReturnNames[cReturnSize] = aPropNames[idx];
7390 aReturnValues[cReturnSize] = aPropValues[idx];
7391 cReturnSize++;
7392 }
7393 }
7394 }
7395
7396 return hrc;
7397}
7398
7399/**
7400 * Preparation to move this medium to a new location
7401 *
7402 * @param aLocation Location of the storage unit. If the location is a FS-path,
7403 * then it can be relative to the VirtualBox home directory.
7404 *
7405 * @note Must be called from under this object's write lock.
7406 */
7407HRESULT Medium::i_preparationForMoving(const Utf8Str &aLocation)
7408{
7409 HRESULT hrc = E_FAIL;
7410
7411 if (i_getLocationFull() != aLocation)
7412 {
7413 m->strNewLocationFull = aLocation;
7414 m->fMoveThisMedium = true;
7415 hrc = S_OK;
7416 }
7417
7418 return hrc;
7419}
7420
7421/**
7422 * Checking whether current operation "moving" or not
7423 */
7424bool Medium::i_isMoveOperation(const ComObjPtr<Medium> &aTarget) const
7425{
7426 RT_NOREF(aTarget);
7427 return m->fMoveThisMedium;
7428}
7429
7430bool Medium::i_resetMoveOperationData()
7431{
7432 m->strNewLocationFull.setNull();
7433 m->fMoveThisMedium = false;
7434 return true;
7435}
7436
7437Utf8Str Medium::i_getNewLocationForMoving() const
7438{
7439 if (m->fMoveThisMedium == true)
7440 return m->strNewLocationFull;
7441 else
7442 return Utf8Str();
7443}
7444////////////////////////////////////////////////////////////////////////////////
7445//
7446// Private methods
7447//
7448////////////////////////////////////////////////////////////////////////////////
7449
7450/**
7451 * Queries information from the medium.
7452 *
7453 * As a result of this call, the accessibility state and data members such as
7454 * size and description will be updated with the current information.
7455 *
7456 * @note This method may block during a system I/O call that checks storage
7457 * accessibility.
7458 *
7459 * @note Caller MUST NOT hold the media tree or medium lock.
7460 *
7461 * @note Locks m->pParent for reading. Locks this object for writing.
7462 *
7463 * @param fSetImageId Whether to reset the UUID contained in the image file
7464 * to the UUID in the medium instance data (see SetIDs())
7465 * @param fSetParentId Whether to reset the parent UUID contained in the image
7466 * file to the parent UUID in the medium instance data (see
7467 * SetIDs())
7468 * @param autoCaller
7469 * @return
7470 */
7471HRESULT Medium::i_queryInfo(bool fSetImageId, bool fSetParentId, AutoCaller &autoCaller)
7472{
7473 Assert(!isWriteLockOnCurrentThread());
7474 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
7475
7476 if ( ( m->state != MediumState_Created
7477 && m->state != MediumState_Inaccessible
7478 && m->state != MediumState_LockedRead)
7479 || m->fClosing)
7480 return E_FAIL;
7481
7482 HRESULT hrc = S_OK;
7483
7484 int vrc = VINF_SUCCESS;
7485
7486 /* check if a blocking i_queryInfo() call is in progress on some other thread,
7487 * and wait for it to finish if so instead of querying data ourselves */
7488 if (m->queryInfoRunning)
7489 {
7490 Assert( m->state == MediumState_LockedRead
7491 || m->state == MediumState_LockedWrite);
7492
7493 while (m->queryInfoRunning)
7494 {
7495 alock.release();
7496 /* must not hold the object lock now */
7497 Assert(!isWriteLockOnCurrentThread());
7498 {
7499 AutoReadLock qlock(m->queryInfoSem COMMA_LOCKVAL_SRC_POS);
7500 }
7501 alock.acquire();
7502 }
7503
7504 return S_OK;
7505 }
7506
7507 bool success = false;
7508 Utf8Str lastAccessError;
7509
7510 /* are we dealing with a new medium constructed using the existing
7511 * location? */
7512 bool isImport = m->id.isZero();
7513 unsigned uOpenFlags = VD_OPEN_FLAGS_INFO;
7514
7515 /* Note that we don't use VD_OPEN_FLAGS_READONLY when opening new
7516 * media because that would prevent necessary modifications
7517 * when opening media of some third-party formats for the first
7518 * time in VirtualBox (such as VMDK for which VDOpen() needs to
7519 * generate an UUID if it is missing) */
7520 if ( m->hddOpenMode == OpenReadOnly
7521 || m->type == MediumType_Readonly
7522 || (!isImport && !fSetImageId && !fSetParentId)
7523 )
7524 uOpenFlags |= VD_OPEN_FLAGS_READONLY;
7525
7526 /* Open shareable medium with the appropriate flags */
7527 if (m->type == MediumType_Shareable)
7528 uOpenFlags |= VD_OPEN_FLAGS_SHAREABLE;
7529
7530 /* Lock the medium, which makes the behavior much more consistent, must be
7531 * done before dropping the object lock and setting queryInfoRunning. */
7532 ComPtr<IToken> pToken;
7533 if (uOpenFlags & (VD_OPEN_FLAGS_READONLY | VD_OPEN_FLAGS_SHAREABLE))
7534 hrc = LockRead(pToken.asOutParam());
7535 else
7536 hrc = LockWrite(pToken.asOutParam());
7537 if (FAILED(hrc)) return hrc;
7538
7539 /* Copies of the input state fields which are not read-only,
7540 * as we're dropping the lock. CAUTION: be extremely careful what
7541 * you do with the contents of this medium object, as you will
7542 * create races if there are concurrent changes. */
7543 Utf8Str format(m->strFormat);
7544 Utf8Str location(m->strLocationFull);
7545 ComObjPtr<MediumFormat> formatObj = m->formatObj;
7546
7547 /* "Output" values which can't be set because the lock isn't held
7548 * at the time the values are determined. */
7549 Guid mediumId = m->id;
7550 uint64_t mediumSize = 0;
7551 uint64_t mediumLogicalSize = 0;
7552
7553 /* Flag whether a base image has a non-zero parent UUID and thus
7554 * need repairing after it was closed again. */
7555 bool fRepairImageZeroParentUuid = false;
7556
7557 ComObjPtr<VirtualBox> pVirtualBox = m->pVirtualBox;
7558
7559 /* must be set before leaving the object lock the first time */
7560 m->queryInfoRunning = true;
7561
7562 /* must leave object lock now, because a lock from a higher lock class
7563 * is needed and also a lengthy operation is coming */
7564 alock.release();
7565 autoCaller.release();
7566
7567 /* Note that taking the queryInfoSem after leaving the object lock above
7568 * can lead to short spinning of the loops waiting for i_queryInfo() to
7569 * complete. This is unavoidable since the other order causes a lock order
7570 * violation: here it would be requesting the object lock (at the beginning
7571 * of the method), then queryInfoSem, and below the other way round. */
7572 AutoWriteLock qlock(m->queryInfoSem COMMA_LOCKVAL_SRC_POS);
7573
7574 /* take the opportunity to have a media tree lock, released initially */
7575 Assert(!isWriteLockOnCurrentThread());
7576 Assert(!pVirtualBox->i_getMediaTreeLockHandle().isWriteLockOnCurrentThread());
7577 AutoWriteLock treeLock(pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
7578 treeLock.release();
7579
7580 /* re-take the caller, but not the object lock, to keep uninit away */
7581 autoCaller.add();
7582 if (FAILED(autoCaller.hrc()))
7583 {
7584 m->queryInfoRunning = false;
7585 return autoCaller.hrc();
7586 }
7587
7588 try
7589 {
7590 /* skip accessibility checks for host drives */
7591 if (m->hostDrive)
7592 {
7593 success = true;
7594 throw S_OK;
7595 }
7596
7597 PVDISK hdd;
7598 vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &hdd);
7599 ComAssertRCThrow(vrc, E_FAIL);
7600
7601 try
7602 {
7603 /** @todo This kind of opening of media is assuming that diff
7604 * media can be opened as base media. Should be documented that
7605 * it must work for all medium format backends. */
7606 vrc = VDOpen(hdd,
7607 format.c_str(),
7608 location.c_str(),
7609 uOpenFlags | m->uOpenFlagsDef,
7610 m->vdImageIfaces);
7611 if (RT_FAILURE(vrc))
7612 {
7613 lastAccessError = Utf8StrFmt(tr("Could not open the medium '%s'%s"),
7614 location.c_str(), i_vdError(vrc).c_str());
7615 throw S_OK;
7616 }
7617
7618 if (formatObj->i_getCapabilities() & MediumFormatCapabilities_Uuid)
7619 {
7620 /* Modify the UUIDs if necessary. The associated fields are
7621 * not modified by other code, so no need to copy. */
7622 if (fSetImageId)
7623 {
7624 alock.acquire();
7625 vrc = VDSetUuid(hdd, 0, m->uuidImage.raw());
7626 alock.release();
7627 if (RT_FAILURE(vrc))
7628 {
7629 lastAccessError = Utf8StrFmt(tr("Could not update the UUID of medium '%s'%s"),
7630 location.c_str(), i_vdError(vrc).c_str());
7631 throw S_OK;
7632 }
7633 mediumId = m->uuidImage;
7634 }
7635 if (fSetParentId)
7636 {
7637 alock.acquire();
7638 vrc = VDSetParentUuid(hdd, 0, m->uuidParentImage.raw());
7639 alock.release();
7640 if (RT_FAILURE(vrc))
7641 {
7642 lastAccessError = Utf8StrFmt(tr("Could not update the parent UUID of medium '%s'%s"),
7643 location.c_str(), i_vdError(vrc).c_str());
7644 throw S_OK;
7645 }
7646 }
7647 /* zap the information, these are no long-term members */
7648 alock.acquire();
7649 unconst(m->uuidImage).clear();
7650 unconst(m->uuidParentImage).clear();
7651 alock.release();
7652
7653 /* check the UUID */
7654 RTUUID uuid;
7655 vrc = VDGetUuid(hdd, 0, &uuid);
7656 ComAssertRCThrow(vrc, E_FAIL);
7657
7658 if (isImport)
7659 {
7660 mediumId = uuid;
7661
7662 if (mediumId.isZero() && (m->hddOpenMode == OpenReadOnly))
7663 // only when importing a VDMK that has no UUID, create one in memory
7664 mediumId.create();
7665 }
7666 else
7667 {
7668 Assert(!mediumId.isZero());
7669
7670 if (mediumId != uuid)
7671 {
7672 /** @todo r=klaus this always refers to VirtualBox.xml as the medium registry, even for new VMs */
7673 lastAccessError = Utf8StrFmt(
7674 tr("UUID {%RTuuid} of the medium '%s' does not match the value {%RTuuid} stored in the media registry ('%s')"),
7675 &uuid,
7676 location.c_str(),
7677 mediumId.raw(),
7678 pVirtualBox->i_settingsFilePath().c_str());
7679 throw S_OK;
7680 }
7681 }
7682 }
7683 else
7684 {
7685 /* the backend does not support storing UUIDs within the
7686 * underlying storage so use what we store in XML */
7687
7688 if (fSetImageId)
7689 {
7690 /* set the UUID if an API client wants to change it */
7691 alock.acquire();
7692 mediumId = m->uuidImage;
7693 alock.release();
7694 }
7695 else if (isImport)
7696 {
7697 /* generate an UUID for an imported UUID-less medium */
7698 mediumId.create();
7699 }
7700 }
7701
7702 /* set the image uuid before the below parent uuid handling code
7703 * might place it somewhere in the media tree, so that the medium
7704 * UUID is valid at this point */
7705 alock.acquire();
7706 if (isImport || fSetImageId)
7707 unconst(m->id) = mediumId;
7708 alock.release();
7709
7710 /* get the medium variant */
7711 unsigned uImageFlags;
7712 vrc = VDGetImageFlags(hdd, 0, &uImageFlags);
7713 ComAssertRCThrow(vrc, E_FAIL);
7714 alock.acquire();
7715 m->variant = (MediumVariant_T)uImageFlags;
7716 alock.release();
7717
7718 /* check/get the parent uuid and update corresponding state */
7719 if (uImageFlags & VD_IMAGE_FLAGS_DIFF)
7720 {
7721 RTUUID parentId;
7722 vrc = VDGetParentUuid(hdd, 0, &parentId);
7723 ComAssertRCThrow(vrc, E_FAIL);
7724
7725 /* streamOptimized VMDK images are only accepted as base
7726 * images, as this allows automatic repair of OVF appliances.
7727 * Since such images don't support random writes they will not
7728 * be created for diff images. Only an overly smart user might
7729 * manually create this case. Too bad for him. */
7730 if ( (isImport || fSetParentId)
7731 && !(uImageFlags & VD_VMDK_IMAGE_FLAGS_STREAM_OPTIMIZED))
7732 {
7733 /* the parent must be known to us. Note that we freely
7734 * call locking methods of mVirtualBox and parent, as all
7735 * relevant locks must be already held. There may be no
7736 * concurrent access to the just opened medium on other
7737 * threads yet (and init() will fail if this method reports
7738 * MediumState_Inaccessible) */
7739
7740 ComObjPtr<Medium> pParent;
7741 if (RTUuidIsNull(&parentId))
7742 hrc = VBOX_E_OBJECT_NOT_FOUND;
7743 else
7744 hrc = pVirtualBox->i_findHardDiskById(Guid(parentId), false /* aSetError */, &pParent);
7745 if (FAILED(hrc))
7746 {
7747 if (fSetImageId && !fSetParentId)
7748 {
7749 /* If the image UUID gets changed for an existing
7750 * image then the parent UUID can be stale. In such
7751 * cases clear the parent information. The parent
7752 * information may/will be re-set later if the
7753 * API client wants to adjust a complete medium
7754 * hierarchy one by one. */
7755 hrc = S_OK;
7756 alock.acquire();
7757 RTUuidClear(&parentId);
7758 vrc = VDSetParentUuid(hdd, 0, &parentId);
7759 alock.release();
7760 ComAssertRCThrow(vrc, E_FAIL);
7761 }
7762 else
7763 {
7764 lastAccessError = Utf8StrFmt(tr("Parent medium with UUID {%RTuuid} of the medium '%s' is not found in the media registry ('%s')"),
7765 &parentId, location.c_str(),
7766 pVirtualBox->i_settingsFilePath().c_str());
7767 throw S_OK;
7768 }
7769 }
7770
7771 /* must drop the caller before taking the tree lock */
7772 autoCaller.release();
7773 /* we set m->pParent & children() */
7774 treeLock.acquire();
7775 autoCaller.add();
7776 if (FAILED(autoCaller.hrc()))
7777 throw autoCaller.hrc();
7778
7779 if (m->pParent)
7780 i_deparent();
7781
7782 if (!pParent.isNull())
7783 if (pParent->i_getDepth() >= SETTINGS_MEDIUM_DEPTH_MAX)
7784 {
7785 AutoReadLock plock(pParent COMMA_LOCKVAL_SRC_POS);
7786 throw setError(VBOX_E_INVALID_OBJECT_STATE,
7787 tr("Cannot open differencing image for medium '%s', because it exceeds the medium tree depth limit. Please merge some images which you no longer need"),
7788 pParent->m->strLocationFull.c_str());
7789 }
7790 i_setParent(pParent);
7791
7792 treeLock.release();
7793 }
7794 else
7795 {
7796 /* must drop the caller before taking the tree lock */
7797 autoCaller.release();
7798 /* we access m->pParent */
7799 treeLock.acquire();
7800 autoCaller.add();
7801 if (FAILED(autoCaller.hrc()))
7802 throw autoCaller.hrc();
7803
7804 /* check that parent UUIDs match. Note that there's no need
7805 * for the parent's AutoCaller (our lifetime is bound to
7806 * it) */
7807
7808 if (m->pParent.isNull())
7809 {
7810 /* Due to a bug in VDCopy() in VirtualBox 3.0.0-3.0.14
7811 * and 3.1.0-3.1.8 there are base images out there
7812 * which have a non-zero parent UUID. No point in
7813 * complaining about them, instead automatically
7814 * repair the problem. Later we can bring back the
7815 * error message, but we should wait until really
7816 * most users have repaired their images, either with
7817 * VBoxFixHdd or this way. */
7818#if 1
7819 fRepairImageZeroParentUuid = true;
7820#else /* 0 */
7821 lastAccessError = Utf8StrFmt(
7822 tr("Medium type of '%s' is differencing but it is not associated with any parent medium in the media registry ('%s')"),
7823 location.c_str(),
7824 pVirtualBox->settingsFilePath().c_str());
7825 treeLock.release();
7826 throw S_OK;
7827#endif /* 0 */
7828 }
7829
7830 {
7831 autoCaller.release();
7832 AutoReadLock parentLock(m->pParent COMMA_LOCKVAL_SRC_POS);
7833 autoCaller.add();
7834 if (FAILED(autoCaller.hrc()))
7835 throw autoCaller.hrc();
7836
7837 if ( !fRepairImageZeroParentUuid
7838 && m->pParent->i_getState() != MediumState_Inaccessible
7839 && m->pParent->i_getId() != parentId)
7840 {
7841 /** @todo r=klaus this always refers to VirtualBox.xml as the medium registry, even for new VMs */
7842 lastAccessError = Utf8StrFmt(
7843 tr("Parent UUID {%RTuuid} of the medium '%s' does not match UUID {%RTuuid} of its parent medium stored in the media registry ('%s')"),
7844 &parentId, location.c_str(),
7845 m->pParent->i_getId().raw(),
7846 pVirtualBox->i_settingsFilePath().c_str());
7847 parentLock.release();
7848 treeLock.release();
7849 throw S_OK;
7850 }
7851 }
7852
7853 /// @todo NEWMEDIA what to do if the parent is not
7854 /// accessible while the diff is? Probably nothing. The
7855 /// real code will detect the mismatch anyway.
7856
7857 treeLock.release();
7858 }
7859 }
7860
7861 mediumSize = VDGetFileSize(hdd, 0);
7862 mediumLogicalSize = VDGetSize(hdd, 0);
7863
7864 success = true;
7865 }
7866 catch (HRESULT hrcXcpt)
7867 {
7868 hrc = hrcXcpt;
7869 }
7870
7871 vrc = VDDestroy(hdd);
7872 if (RT_FAILURE(vrc))
7873 {
7874 lastAccessError.printf(tr("Could not update and close the medium '%s'%s"),
7875 location.c_str(), i_vdError(vrc).c_str());
7876 success = false;
7877 throw S_OK;
7878 }
7879 }
7880 catch (HRESULT hrcXcpt)
7881 {
7882 hrc = hrcXcpt;
7883 }
7884
7885 autoCaller.release();
7886 treeLock.acquire();
7887 autoCaller.add();
7888 if (FAILED(autoCaller.hrc()))
7889 {
7890 m->queryInfoRunning = false;
7891 return autoCaller.hrc();
7892 }
7893 alock.acquire();
7894
7895 if (success)
7896 {
7897 m->size = mediumSize;
7898 m->logicalSize = mediumLogicalSize;
7899 m->strLastAccessError.setNull();
7900 }
7901 else
7902 {
7903 m->strLastAccessError = lastAccessError;
7904 Log1WarningFunc(("'%s' is not accessible (error='%s', hrc=%Rhrc, vrc=%Rrc)\n",
7905 location.c_str(), m->strLastAccessError.c_str(), hrc, vrc));
7906 }
7907
7908 /* Set the proper state according to the result of the check */
7909 if (success)
7910 m->preLockState = MediumState_Created;
7911 else
7912 m->preLockState = MediumState_Inaccessible;
7913
7914 /* unblock anyone waiting for the i_queryInfo results */
7915 qlock.release();
7916 m->queryInfoRunning = false;
7917
7918 pToken->Abandon();
7919 pToken.setNull();
7920
7921 if (FAILED(hrc))
7922 return hrc;
7923
7924 /* If this is a base image which incorrectly has a parent UUID set,
7925 * repair the image now by zeroing the parent UUID. This is only done
7926 * when we have structural information from a config file, on import
7927 * this is not possible. If someone would accidentally call openMedium
7928 * with a diff image before the base is registered this would destroy
7929 * the diff. Not acceptable. */
7930 do
7931 {
7932 if (fRepairImageZeroParentUuid)
7933 {
7934 hrc = LockWrite(pToken.asOutParam());
7935 if (FAILED(hrc))
7936 break;
7937
7938 alock.release();
7939
7940 try
7941 {
7942 PVDISK hdd;
7943 vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &hdd);
7944 ComAssertRCThrow(vrc, E_FAIL);
7945
7946 try
7947 {
7948 vrc = VDOpen(hdd,
7949 format.c_str(),
7950 location.c_str(),
7951 (uOpenFlags & ~VD_OPEN_FLAGS_READONLY) | m->uOpenFlagsDef,
7952 m->vdImageIfaces);
7953 if (RT_FAILURE(vrc))
7954 throw S_OK;
7955
7956 RTUUID zeroParentUuid;
7957 RTUuidClear(&zeroParentUuid);
7958 vrc = VDSetParentUuid(hdd, 0, &zeroParentUuid);
7959 ComAssertRCThrow(vrc, E_FAIL);
7960 }
7961 catch (HRESULT hrcXcpt)
7962 {
7963 hrc = hrcXcpt;
7964 }
7965
7966 VDDestroy(hdd);
7967 }
7968 catch (HRESULT hrcXcpt)
7969 {
7970 hrc = hrcXcpt;
7971 }
7972
7973 pToken->Abandon();
7974 pToken.setNull();
7975 if (FAILED(hrc))
7976 break;
7977 }
7978 } while(0);
7979
7980 return hrc;
7981}
7982
7983/**
7984 * Performs extra checks if the medium can be closed and returns S_OK in
7985 * this case. Otherwise, returns a respective error message. Called by
7986 * Close() under the medium tree lock and the medium lock.
7987 *
7988 * @note Also reused by Medium::Reset().
7989 *
7990 * @note Caller must hold the media tree write lock!
7991 */
7992HRESULT Medium::i_canClose()
7993{
7994 Assert(m->pVirtualBox->i_getMediaTreeLockHandle().isWriteLockOnCurrentThread());
7995
7996 if (i_getChildren().size() != 0)
7997 return setError(VBOX_E_OBJECT_IN_USE,
7998 tr("Cannot close medium '%s' because it has %d child media", "", i_getChildren().size()),
7999 m->strLocationFull.c_str(), i_getChildren().size());
8000
8001 return S_OK;
8002}
8003
8004/**
8005 * Unregisters this medium with mVirtualBox. Called by close() under the medium tree lock.
8006 *
8007 * @note Caller must have locked the media tree lock for writing!
8008 */
8009HRESULT Medium::i_unregisterWithVirtualBox()
8010{
8011 /* Note that we need to de-associate ourselves from the parent to let
8012 * VirtualBox::i_unregisterMedium() properly save the registry */
8013
8014 /* we modify m->pParent and access children */
8015 Assert(m->pVirtualBox->i_getMediaTreeLockHandle().isWriteLockOnCurrentThread());
8016
8017 Medium *pParentBackup = m->pParent;
8018 AssertReturn(i_getChildren().size() == 0, E_FAIL);
8019 if (m->pParent)
8020 i_deparent();
8021
8022 HRESULT hrc = m->pVirtualBox->i_unregisterMedium(this);
8023 if (FAILED(hrc))
8024 {
8025 if (pParentBackup)
8026 {
8027 // re-associate with the parent as we are still relatives in the registry
8028 i_setParent(pParentBackup);
8029 }
8030 }
8031
8032 return hrc;
8033}
8034
8035/**
8036 * Like SetProperty but do not trigger a settings store. Only for internal use!
8037 */
8038HRESULT Medium::i_setPropertyDirect(const Utf8Str &aName, const Utf8Str &aValue)
8039{
8040 AutoCaller autoCaller(this);
8041 if (FAILED(autoCaller.hrc())) return autoCaller.hrc();
8042
8043 AutoWriteLock mlock(this COMMA_LOCKVAL_SRC_POS);
8044
8045 switch (m->state)
8046 {
8047 case MediumState_Created:
8048 case MediumState_Inaccessible:
8049 break;
8050 default:
8051 return i_setStateError();
8052 }
8053
8054 m->mapProperties[aName] = aValue;
8055
8056 return S_OK;
8057}
8058
8059/**
8060 * Sets the extended error info according to the current media state.
8061 *
8062 * @note Must be called from under this object's write or read lock.
8063 */
8064HRESULT Medium::i_setStateError()
8065{
8066 HRESULT hrc;
8067
8068 switch (m->state)
8069 {
8070 case MediumState_NotCreated:
8071 hrc = setError(VBOX_E_INVALID_OBJECT_STATE,
8072 tr("Storage for the medium '%s' is not created"),
8073 m->strLocationFull.c_str());
8074 break;
8075 case MediumState_Created:
8076 hrc = setError(VBOX_E_INVALID_OBJECT_STATE,
8077 tr("Storage for the medium '%s' is already created"),
8078 m->strLocationFull.c_str());
8079 break;
8080 case MediumState_LockedRead:
8081 hrc = setError(VBOX_E_INVALID_OBJECT_STATE,
8082 tr("Medium '%s' is locked for reading by another task"),
8083 m->strLocationFull.c_str());
8084 break;
8085 case MediumState_LockedWrite:
8086 hrc = setError(VBOX_E_INVALID_OBJECT_STATE,
8087 tr("Medium '%s' is locked for writing by another task"),
8088 m->strLocationFull.c_str());
8089 break;
8090 case MediumState_Inaccessible:
8091 /* be in sync with Console::powerUpThread() */
8092 if (!m->strLastAccessError.isEmpty())
8093 hrc = setError(VBOX_E_INVALID_OBJECT_STATE,
8094 tr("Medium '%s' is not accessible. %s"),
8095 m->strLocationFull.c_str(), m->strLastAccessError.c_str());
8096 else
8097 hrc = setError(VBOX_E_INVALID_OBJECT_STATE,
8098 tr("Medium '%s' is not accessible"),
8099 m->strLocationFull.c_str());
8100 break;
8101 case MediumState_Creating:
8102 hrc = setError(VBOX_E_INVALID_OBJECT_STATE,
8103 tr("Storage for the medium '%s' is being created"),
8104 m->strLocationFull.c_str());
8105 break;
8106 case MediumState_Deleting:
8107 hrc = setError(VBOX_E_INVALID_OBJECT_STATE,
8108 tr("Storage for the medium '%s' is being deleted"),
8109 m->strLocationFull.c_str());
8110 break;
8111 default:
8112 AssertFailed();
8113 hrc = E_FAIL;
8114 break;
8115 }
8116
8117 return hrc;
8118}
8119
8120/**
8121 * Sets the value of m->strLocationFull. The given location must be a fully
8122 * qualified path; relative paths are not supported here.
8123 *
8124 * As a special exception, if the specified location is a file path that ends with '/'
8125 * then the file name part will be generated by this method automatically in the format
8126 * '{\<uuid\>}.\<ext\>' where \<uuid\> is a fresh UUID that this method will generate
8127 * and assign to this medium, and \<ext\> is the default extension for this
8128 * medium's storage format. Note that this procedure requires the media state to
8129 * be NotCreated and will return a failure otherwise.
8130 *
8131 * @param aLocation Location of the storage unit. If the location is a FS-path,
8132 * then it can be relative to the VirtualBox home directory.
8133 * @param aFormat Optional fallback format if it is an import and the format
8134 * cannot be determined.
8135 *
8136 * @note Must be called from under this object's write lock.
8137 */
8138HRESULT Medium::i_setLocation(const Utf8Str &aLocation,
8139 const Utf8Str &aFormat /* = Utf8Str::Empty */)
8140{
8141 AssertReturn(!aLocation.isEmpty(), E_FAIL);
8142
8143 AutoCaller autoCaller(this);
8144 AssertComRCReturnRC(autoCaller.hrc());
8145
8146 /* formatObj may be null only when initializing from an existing path and
8147 * no format is known yet */
8148 AssertReturn( (!m->strFormat.isEmpty() && !m->formatObj.isNull())
8149 || ( getObjectState().getState() == ObjectState::InInit
8150 && m->state != MediumState_NotCreated
8151 && m->id.isZero()
8152 && m->strFormat.isEmpty()
8153 && m->formatObj.isNull()),
8154 E_FAIL);
8155
8156 /* are we dealing with a new medium constructed using the existing
8157 * location? */
8158 bool isImport = m->strFormat.isEmpty();
8159
8160 if ( isImport
8161 || ( (m->formatObj->i_getCapabilities() & MediumFormatCapabilities_File)
8162 && !m->hostDrive))
8163 {
8164 Guid id;
8165
8166 Utf8Str locationFull(aLocation);
8167
8168 if (m->state == MediumState_NotCreated)
8169 {
8170 /* must be a file (formatObj must be already known) */
8171 Assert(m->formatObj->i_getCapabilities() & MediumFormatCapabilities_File);
8172
8173 if (RTPathFilename(aLocation.c_str()) == NULL)
8174 {
8175 /* no file name is given (either an empty string or ends with a
8176 * slash), generate a new UUID + file name if the state allows
8177 * this */
8178
8179 ComAssertMsgRet(!m->formatObj->i_getFileExtensions().empty(),
8180 (tr("Must be at least one extension if it is MediumFormatCapabilities_File\n")),
8181 E_FAIL);
8182
8183 Utf8Str strExt = m->formatObj->i_getFileExtensions().front();
8184 ComAssertMsgRet(!strExt.isEmpty(),
8185 (tr("Default extension must not be empty\n")),
8186 E_FAIL);
8187
8188 id.create();
8189
8190 locationFull = Utf8StrFmt("%s{%RTuuid}.%s",
8191 aLocation.c_str(), id.raw(), strExt.c_str());
8192 }
8193 }
8194
8195 // we must always have full paths now (if it refers to a file)
8196 if ( ( m->formatObj.isNull()
8197 || m->formatObj->i_getCapabilities() & MediumFormatCapabilities_File)
8198 && !RTPathStartsWithRoot(locationFull.c_str()))
8199 return setError(VBOX_E_FILE_ERROR,
8200 tr("The given path '%s' is not fully qualified"),
8201 locationFull.c_str());
8202
8203 /* detect the backend from the storage unit if importing */
8204 if (isImport)
8205 {
8206 VDTYPE const enmDesiredType = i_convertDeviceType();
8207 VDTYPE enmType = VDTYPE_INVALID;
8208 char *backendName = NULL;
8209
8210 /* is it a file? */
8211 RTFILE hFile;
8212 int vrc = RTFileOpen(&hFile, locationFull.c_str(), RTFILE_O_READ | RTFILE_O_OPEN | RTFILE_O_DENY_NONE);
8213 if (RT_SUCCESS(vrc))
8214 {
8215 RTFileClose(hFile);
8216 vrc = VDGetFormat(NULL /* pVDIfsDisk */, NULL /* pVDIfsImage */,
8217 locationFull.c_str(), enmDesiredType, &backendName, &enmType);
8218 }
8219 else if ( vrc != VERR_FILE_NOT_FOUND
8220 && vrc != VERR_PATH_NOT_FOUND
8221 && vrc != VERR_ACCESS_DENIED
8222 && locationFull != aLocation)
8223 {
8224 /* assume it's not a file, restore the original location */
8225 locationFull = aLocation;
8226 vrc = VDGetFormat(NULL /* pVDIfsDisk */, NULL /* pVDIfsImage */,
8227 locationFull.c_str(), enmDesiredType, &backendName, &enmType);
8228 }
8229
8230 if (RT_FAILURE(vrc))
8231 {
8232 if (vrc == VERR_ACCESS_DENIED)
8233 return setErrorBoth(VBOX_E_FILE_ERROR, vrc,
8234 tr("Permission problem accessing the file for the medium '%s' (%Rrc)"),
8235 locationFull.c_str(), vrc);
8236 if (vrc == VERR_FILE_NOT_FOUND || vrc == VERR_PATH_NOT_FOUND)
8237 return setErrorBoth(VBOX_E_FILE_ERROR, vrc,
8238 tr("Could not find file for the medium '%s' (%Rrc)"),
8239 locationFull.c_str(), vrc);
8240 if (aFormat.isEmpty())
8241 return setErrorBoth(VBOX_E_IPRT_ERROR, vrc,
8242 tr("Could not get the storage format of the medium '%s' (%Rrc)"),
8243 locationFull.c_str(), vrc);
8244 HRESULT hrc = i_setFormat(aFormat);
8245 /* setFormat() must not fail since we've just used the backend so
8246 * the format object must be there */
8247 AssertComRCReturnRC(hrc);
8248 }
8249 else if ( enmType == VDTYPE_INVALID
8250 || m->devType != i_convertToDeviceType(enmType))
8251 {
8252 /*
8253 * The user tried to use a image as a device which is not supported
8254 * by the backend.
8255 */
8256 RTStrFree(backendName);
8257 return setError(E_FAIL,
8258 tr("The medium '%s' can't be used as the requested device type (%s, detected %s)"),
8259 locationFull.c_str(), getDeviceTypeName(m->devType), getVDTypeName(enmType));
8260 }
8261 else
8262 {
8263 ComAssertRet(backendName != NULL && *backendName != '\0', E_FAIL);
8264
8265 HRESULT hrc = i_setFormat(backendName);
8266 RTStrFree(backendName);
8267
8268 /* setFormat() must not fail since we've just used the backend so
8269 * the format object must be there */
8270 AssertComRCReturnRC(hrc);
8271 }
8272 }
8273
8274 m->strLocationFull = locationFull;
8275
8276 /* is it still a file? */
8277 if ( (m->formatObj->i_getCapabilities() & MediumFormatCapabilities_File)
8278 && (m->state == MediumState_NotCreated)
8279 )
8280 /* assign a new UUID (this UUID will be used when calling
8281 * VDCreateBase/VDCreateDiff as a wanted UUID). Note that we
8282 * also do that if we didn't generate it to make sure it is
8283 * either generated by us or reset to null */
8284 unconst(m->id) = id;
8285 }
8286 else
8287 m->strLocationFull = aLocation;
8288
8289 return S_OK;
8290}
8291
8292/**
8293 * Checks that the format ID is valid and sets it on success.
8294 *
8295 * Note that this method will caller-reference the format object on success!
8296 * This reference must be released somewhere to let the MediumFormat object be
8297 * uninitialized.
8298 *
8299 * @note Must be called from under this object's write lock.
8300 */
8301HRESULT Medium::i_setFormat(const Utf8Str &aFormat)
8302{
8303 /* get the format object first */
8304 {
8305 SystemProperties *pSysProps = m->pVirtualBox->i_getSystemProperties();
8306 AutoReadLock propsLock(pSysProps COMMA_LOCKVAL_SRC_POS);
8307
8308 unconst(m->formatObj) = pSysProps->i_mediumFormat(aFormat);
8309 if (m->formatObj.isNull())
8310 return setError(E_INVALIDARG,
8311 tr("Invalid medium storage format '%s'"),
8312 aFormat.c_str());
8313
8314 /* get properties (preinsert them as keys in the map). Note that the
8315 * map doesn't grow over the object life time since the set of
8316 * properties is meant to be constant. */
8317
8318 Assert(m->mapProperties.empty());
8319
8320 for (MediumFormat::PropertyArray::const_iterator it = m->formatObj->i_getProperties().begin();
8321 it != m->formatObj->i_getProperties().end();
8322 ++it)
8323 {
8324 m->mapProperties.insert(std::make_pair(it->strName, Utf8Str::Empty));
8325 }
8326 }
8327
8328 unconst(m->strFormat) = aFormat;
8329
8330 return S_OK;
8331}
8332
8333/**
8334 * Converts the Medium device type to the VD type.
8335 */
8336VDTYPE Medium::i_convertDeviceType()
8337{
8338 VDTYPE enmType;
8339
8340 switch (m->devType)
8341 {
8342 case DeviceType_HardDisk:
8343 enmType = VDTYPE_HDD;
8344 break;
8345 case DeviceType_DVD:
8346 enmType = VDTYPE_OPTICAL_DISC;
8347 break;
8348 case DeviceType_Floppy:
8349 enmType = VDTYPE_FLOPPY;
8350 break;
8351 default:
8352 ComAssertFailedRet(VDTYPE_INVALID);
8353 }
8354
8355 return enmType;
8356}
8357
8358/**
8359 * Converts from the VD type to the medium type.
8360 */
8361DeviceType_T Medium::i_convertToDeviceType(VDTYPE enmType)
8362{
8363 DeviceType_T devType;
8364
8365 switch (enmType)
8366 {
8367 case VDTYPE_HDD:
8368 devType = DeviceType_HardDisk;
8369 break;
8370 case VDTYPE_OPTICAL_DISC:
8371 devType = DeviceType_DVD;
8372 break;
8373 case VDTYPE_FLOPPY:
8374 devType = DeviceType_Floppy;
8375 break;
8376 default:
8377 ComAssertFailedRet(DeviceType_Null);
8378 }
8379
8380 return devType;
8381}
8382
8383/**
8384 * Internal method which checks whether a property name is for a filter plugin.
8385 */
8386bool Medium::i_isPropertyForFilter(const com::Utf8Str &aName)
8387{
8388 /* If the name contains "/" use the part before as a filter name and lookup the filter. */
8389 size_t offSlash;
8390 if ((offSlash = aName.find("/", 0)) != aName.npos)
8391 {
8392 com::Utf8Str strFilter;
8393 com::Utf8Str strKey;
8394
8395 HRESULT hrc = strFilter.assignEx(aName, 0, offSlash);
8396 if (FAILED(hrc))
8397 return false;
8398
8399 hrc = strKey.assignEx(aName, offSlash + 1, aName.length() - offSlash - 1); /* Skip slash */
8400 if (FAILED(hrc))
8401 return false;
8402
8403 VDFILTERINFO FilterInfo;
8404 int vrc = VDFilterInfoOne(strFilter.c_str(), &FilterInfo);
8405 if (RT_SUCCESS(vrc))
8406 {
8407 /* Check that the property exists. */
8408 PCVDCONFIGINFO paConfig = FilterInfo.paConfigInfo;
8409 while (paConfig->pszKey)
8410 {
8411 if (strKey.equals(paConfig->pszKey))
8412 return true;
8413 paConfig++;
8414 }
8415 }
8416 }
8417
8418 return false;
8419}
8420
8421/**
8422 * Returns the last error message collected by the i_vdErrorCall callback and
8423 * resets it.
8424 *
8425 * The error message is returned prepended with a dot and a space, like this:
8426 * <code>
8427 * ". <error_text> (%Rrc)"
8428 * </code>
8429 * to make it easily appendable to a more general error message. The @c %Rrc
8430 * format string is given @a aVRC as an argument.
8431 *
8432 * If there is no last error message collected by i_vdErrorCall or if it is a
8433 * null or empty string, then this function returns the following text:
8434 * <code>
8435 * " (%Rrc)"
8436 * </code>
8437 *
8438 * @note Doesn't do any object locking; it is assumed that the caller makes sure
8439 * the callback isn't called by more than one thread at a time.
8440 *
8441 * @param aVRC VBox error code to use when no error message is provided.
8442 */
8443Utf8Str Medium::i_vdError(int aVRC)
8444{
8445 Utf8Str error;
8446
8447 if (m->vdError.isEmpty())
8448 error.printf(" (%Rrc)", aVRC);
8449 else
8450 error.printf(".\n%s", m->vdError.c_str());
8451
8452 m->vdError.setNull();
8453
8454 return error;
8455}
8456
8457/**
8458 * Error message callback.
8459 *
8460 * Puts the reported error message to the m->vdError field.
8461 *
8462 * @note Doesn't do any object locking; it is assumed that the caller makes sure
8463 * the callback isn't called by more than one thread at a time.
8464 *
8465 * @param pvUser The opaque data passed on container creation.
8466 * @param vrc The VBox error code.
8467 * @param SRC_POS Use RT_SRC_POS.
8468 * @param pszFormat Error message format string.
8469 * @param va Error message arguments.
8470 */
8471/*static*/
8472DECLCALLBACK(void) Medium::i_vdErrorCall(void *pvUser, int vrc, RT_SRC_POS_DECL,
8473 const char *pszFormat, va_list va)
8474{
8475 NOREF(pszFile); NOREF(iLine); NOREF(pszFunction); /* RT_SRC_POS_DECL */
8476
8477 Medium *that = static_cast<Medium*>(pvUser);
8478 AssertReturnVoid(that != NULL);
8479
8480 va_list vaCopy; /* For gcc */
8481 va_copy(vaCopy, va);
8482 if (that->m->vdError.isEmpty())
8483 that->m->vdError.printf("%N (%Rrc)", pszFormat, &vaCopy, vrc);
8484 else
8485 that->m->vdError.appendPrintf(".\n%N (%Rrc)", pszFormat, &vaCopy, vrc);
8486 va_end(vaCopy);
8487}
8488
8489/* static */
8490DECLCALLBACK(bool) Medium::i_vdConfigAreKeysValid(void *pvUser,
8491 const char * /* pszzValid */)
8492{
8493 Medium *that = static_cast<Medium*>(pvUser);
8494 AssertReturn(that != NULL, false);
8495
8496 /* we always return true since the only keys we have are those found in
8497 * VDBACKENDINFO */
8498 return true;
8499}
8500
8501/* static */
8502DECLCALLBACK(int) Medium::i_vdConfigQuerySize(void *pvUser,
8503 const char *pszName,
8504 size_t *pcbValue)
8505{
8506 AssertPtrReturn(pcbValue, VERR_INVALID_POINTER);
8507
8508 Medium *that = static_cast<Medium*>(pvUser);
8509 AssertReturn(that != NULL, VERR_GENERAL_FAILURE);
8510
8511 settings::StringsMap::const_iterator it = that->m->mapProperties.find(Utf8Str(pszName));
8512 if (it == that->m->mapProperties.end())
8513 return VERR_CFGM_VALUE_NOT_FOUND;
8514
8515 /* we interpret null values as "no value" in Medium */
8516 if (it->second.isEmpty())
8517 return VERR_CFGM_VALUE_NOT_FOUND;
8518
8519 *pcbValue = it->second.length() + 1 /* include terminator */;
8520
8521 return VINF_SUCCESS;
8522}
8523
8524/* static */
8525DECLCALLBACK(int) Medium::i_vdConfigQuery(void *pvUser,
8526 const char *pszName,
8527 char *pszValue,
8528 size_t cchValue)
8529{
8530 AssertPtrReturn(pszValue, VERR_INVALID_POINTER);
8531
8532 Medium *that = static_cast<Medium*>(pvUser);
8533 AssertReturn(that != NULL, VERR_GENERAL_FAILURE);
8534
8535 settings::StringsMap::const_iterator it = that->m->mapProperties.find(Utf8Str(pszName));
8536 if (it == that->m->mapProperties.end())
8537 return VERR_CFGM_VALUE_NOT_FOUND;
8538
8539 /* we interpret null values as "no value" in Medium */
8540 if (it->second.isEmpty())
8541 return VERR_CFGM_VALUE_NOT_FOUND;
8542
8543 const Utf8Str &value = it->second;
8544 if (value.length() >= cchValue)
8545 return VERR_CFGM_NOT_ENOUGH_SPACE;
8546
8547 memcpy(pszValue, value.c_str(), value.length() + 1);
8548
8549 return VINF_SUCCESS;
8550}
8551
8552DECLCALLBACK(bool) Medium::i_vdCryptoConfigAreKeysValid(void *pvUser, const char *pszzValid)
8553{
8554 /* Just return always true here. */
8555 NOREF(pvUser);
8556 NOREF(pszzValid);
8557 return true;
8558}
8559
8560DECLCALLBACK(int) Medium::i_vdCryptoConfigQuerySize(void *pvUser, const char *pszName, size_t *pcbValue)
8561{
8562 MediumCryptoFilterSettings *pSettings = (MediumCryptoFilterSettings *)pvUser;
8563 AssertPtrReturn(pSettings, VERR_GENERAL_FAILURE);
8564 AssertPtrReturn(pcbValue, VERR_INVALID_POINTER);
8565
8566 size_t cbValue = 0;
8567 if (!strcmp(pszName, "Algorithm"))
8568 cbValue = strlen(pSettings->pszCipher) + 1;
8569 else if (!strcmp(pszName, "KeyId"))
8570 cbValue = sizeof("irrelevant");
8571 else if (!strcmp(pszName, "KeyStore"))
8572 {
8573 if (!pSettings->pszKeyStoreLoad)
8574 return VERR_CFGM_VALUE_NOT_FOUND;
8575 cbValue = strlen(pSettings->pszKeyStoreLoad) + 1;
8576 }
8577 else if (!strcmp(pszName, "CreateKeyStore"))
8578 cbValue = 2; /* Single digit + terminator. */
8579 else
8580 return VERR_CFGM_VALUE_NOT_FOUND;
8581
8582 *pcbValue = cbValue + 1 /* include terminator */;
8583
8584 return VINF_SUCCESS;
8585}
8586
8587DECLCALLBACK(int) Medium::i_vdCryptoConfigQuery(void *pvUser, const char *pszName,
8588 char *pszValue, size_t cchValue)
8589{
8590 MediumCryptoFilterSettings *pSettings = (MediumCryptoFilterSettings *)pvUser;
8591 AssertPtrReturn(pSettings, VERR_GENERAL_FAILURE);
8592 AssertPtrReturn(pszValue, VERR_INVALID_POINTER);
8593
8594 const char *psz = NULL;
8595 if (!strcmp(pszName, "Algorithm"))
8596 psz = pSettings->pszCipher;
8597 else if (!strcmp(pszName, "KeyId"))
8598 psz = "irrelevant";
8599 else if (!strcmp(pszName, "KeyStore"))
8600 psz = pSettings->pszKeyStoreLoad;
8601 else if (!strcmp(pszName, "CreateKeyStore"))
8602 {
8603 if (pSettings->fCreateKeyStore)
8604 psz = "1";
8605 else
8606 psz = "0";
8607 }
8608 else
8609 return VERR_CFGM_VALUE_NOT_FOUND;
8610
8611 size_t cch = strlen(psz);
8612 if (cch >= cchValue)
8613 return VERR_CFGM_NOT_ENOUGH_SPACE;
8614
8615 memcpy(pszValue, psz, cch + 1);
8616 return VINF_SUCCESS;
8617}
8618
8619DECLCALLBACK(int) Medium::i_vdConfigUpdate(void *pvUser,
8620 bool fCreate,
8621 const char *pszName,
8622 const char *pszValue)
8623{
8624 Medium *that = (Medium *)pvUser;
8625
8626 // Detect if this runs inside i_queryInfo() on the current thread.
8627 // Skip if not. Check does not need synchronization.
8628 if (!that->m || !that->m->queryInfoRunning || !that->m->queryInfoSem.isWriteLockOnCurrentThread())
8629 return VINF_SUCCESS;
8630
8631 // It's guaranteed that this code is executing inside Medium::i_queryInfo,
8632 // can assume it took care of synchronization.
8633 int rv = VINF_SUCCESS;
8634 Utf8Str strName(pszName);
8635 settings::StringsMap::const_iterator it = that->m->mapProperties.find(strName);
8636 if (it == that->m->mapProperties.end() && !fCreate)
8637 rv = VERR_CFGM_VALUE_NOT_FOUND;
8638 else
8639 that->m->mapProperties[strName] = Utf8Str(pszValue);
8640 return rv;
8641}
8642
8643DECLCALLBACK(int) Medium::i_vdCryptoKeyRetain(void *pvUser, const char *pszId,
8644 const uint8_t **ppbKey, size_t *pcbKey)
8645{
8646 MediumCryptoFilterSettings *pSettings = (MediumCryptoFilterSettings *)pvUser;
8647 NOREF(pszId);
8648 NOREF(ppbKey);
8649 NOREF(pcbKey);
8650 AssertPtrReturn(pSettings, VERR_GENERAL_FAILURE);
8651 AssertMsgFailedReturn(("This method should not be called here!\n"), VERR_INVALID_STATE);
8652}
8653
8654DECLCALLBACK(int) Medium::i_vdCryptoKeyRelease(void *pvUser, const char *pszId)
8655{
8656 MediumCryptoFilterSettings *pSettings = (MediumCryptoFilterSettings *)pvUser;
8657 NOREF(pszId);
8658 AssertPtrReturn(pSettings, VERR_GENERAL_FAILURE);
8659 AssertMsgFailedReturn(("This method should not be called here!\n"), VERR_INVALID_STATE);
8660}
8661
8662DECLCALLBACK(int) Medium::i_vdCryptoKeyStorePasswordRetain(void *pvUser, const char *pszId, const char **ppszPassword)
8663{
8664 MediumCryptoFilterSettings *pSettings = (MediumCryptoFilterSettings *)pvUser;
8665 AssertPtrReturn(pSettings, VERR_GENERAL_FAILURE);
8666
8667 NOREF(pszId);
8668 *ppszPassword = pSettings->pszPassword;
8669 return VINF_SUCCESS;
8670}
8671
8672DECLCALLBACK(int) Medium::i_vdCryptoKeyStorePasswordRelease(void *pvUser, const char *pszId)
8673{
8674 MediumCryptoFilterSettings *pSettings = (MediumCryptoFilterSettings *)pvUser;
8675 AssertPtrReturn(pSettings, VERR_GENERAL_FAILURE);
8676 NOREF(pszId);
8677 return VINF_SUCCESS;
8678}
8679
8680DECLCALLBACK(int) Medium::i_vdCryptoKeyStoreSave(void *pvUser, const void *pvKeyStore, size_t cbKeyStore)
8681{
8682 MediumCryptoFilterSettings *pSettings = (MediumCryptoFilterSettings *)pvUser;
8683 AssertPtrReturn(pSettings, VERR_GENERAL_FAILURE);
8684
8685 pSettings->pszKeyStore = (char *)RTMemAllocZ(cbKeyStore);
8686 if (!pSettings->pszKeyStore)
8687 return VERR_NO_MEMORY;
8688
8689 memcpy(pSettings->pszKeyStore, pvKeyStore, cbKeyStore);
8690 return VINF_SUCCESS;
8691}
8692
8693DECLCALLBACK(int) Medium::i_vdCryptoKeyStoreReturnParameters(void *pvUser, const char *pszCipher,
8694 const uint8_t *pbDek, size_t cbDek)
8695{
8696 MediumCryptoFilterSettings *pSettings = (MediumCryptoFilterSettings *)pvUser;
8697 AssertPtrReturn(pSettings, VERR_GENERAL_FAILURE);
8698
8699 pSettings->pszCipherReturned = RTStrDup(pszCipher);
8700 pSettings->pbDek = pbDek;
8701 pSettings->cbDek = cbDek;
8702
8703 return pSettings->pszCipherReturned ? VINF_SUCCESS : VERR_NO_MEMORY;
8704}
8705
8706/**
8707 * Creates a VDISK instance for this medium.
8708 *
8709 * @note Caller should not hold any medium related locks as this method will
8710 * acquire the medium lock for writing and others (VirtualBox).
8711 *
8712 * @returns COM status code.
8713 * @param fWritable Whether to return a writable VDISK instance
8714 * (true) or a read-only one (false).
8715 * @param pKeyStore The key store.
8716 * @param ppHdd Where to return the pointer to the VDISK on
8717 * success.
8718 * @param pMediumLockList The lock list to populate and lock. Caller
8719 * is responsible for calling the destructor or
8720 * MediumLockList::Clear() after destroying
8721 * @a *ppHdd
8722 * @param pCryptoSettings The crypto settings to use for setting up
8723 * decryption/encryption of the VDISK. This object
8724 * must be alive until the VDISK is destroyed!
8725 */
8726HRESULT Medium::i_openForIO(bool fWritable, SecretKeyStore *pKeyStore, PVDISK *ppHdd, MediumLockList *pMediumLockList,
8727 MediumCryptoFilterSettings *pCryptoSettings)
8728{
8729 /*
8730 * Create the media lock list and lock the media.
8731 */
8732 HRESULT hrc = i_createMediumLockList(true /* fFailIfInaccessible */,
8733 fWritable ? this : NULL /* pToLockWrite */,
8734 false /* fMediumLockWriteAll */,
8735 NULL,
8736 *pMediumLockList);
8737 if (SUCCEEDED(hrc))
8738 hrc = pMediumLockList->Lock();
8739 if (FAILED(hrc))
8740 return hrc;
8741
8742 /*
8743 * Get the base medium before write locking this medium.
8744 */
8745 ComObjPtr<Medium> pBase = i_getBase();
8746 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
8747
8748 /*
8749 * Create the VDISK instance.
8750 */
8751 PVDISK pHdd;
8752 int vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &pHdd);
8753 AssertRCReturn(vrc, E_FAIL);
8754
8755 /*
8756 * Goto avoidance using try/catch/throw(HRESULT).
8757 */
8758 try
8759 {
8760 settings::StringsMap::iterator itKeyStore = pBase->m->mapProperties.find("CRYPT/KeyStore");
8761 if (itKeyStore != pBase->m->mapProperties.end())
8762 {
8763#ifdef VBOX_WITH_EXTPACK
8764 settings::StringsMap::iterator itKeyId = pBase->m->mapProperties.find("CRYPT/KeyId");
8765
8766 ExtPackManager *pExtPackManager = m->pVirtualBox->i_getExtPackManager();
8767 if (pExtPackManager->i_isExtPackUsable(ORACLE_PUEL_EXTPACK_NAME))
8768 {
8769 /* Load the plugin */
8770 Utf8Str strPlugin;
8771 hrc = pExtPackManager->i_getLibraryPathForExtPack(g_szVDPlugin, ORACLE_PUEL_EXTPACK_NAME, &strPlugin);
8772 if (SUCCEEDED(hrc))
8773 {
8774 vrc = VDPluginLoadFromFilename(strPlugin.c_str());
8775 if (RT_FAILURE(vrc))
8776 throw setErrorBoth(VBOX_E_NOT_SUPPORTED, vrc,
8777 tr("Retrieving encryption settings of the image failed because the encryption plugin could not be loaded (%s)"),
8778 i_vdError(vrc).c_str());
8779 }
8780 else
8781 throw setError(VBOX_E_NOT_SUPPORTED,
8782 tr("Encryption is not supported because the extension pack '%s' is missing the encryption plugin (old extension pack installed?)"),
8783 ORACLE_PUEL_EXTPACK_NAME);
8784 }
8785 else
8786 throw setError(VBOX_E_NOT_SUPPORTED,
8787 tr("Encryption is not supported because the extension pack '%s' is missing"),
8788 ORACLE_PUEL_EXTPACK_NAME);
8789
8790 if (itKeyId == pBase->m->mapProperties.end())
8791 throw setError(VBOX_E_INVALID_OBJECT_STATE,
8792 tr("Image '%s' is configured for encryption but doesn't has a key identifier set"),
8793 pBase->m->strLocationFull.c_str());
8794
8795 /* Find the proper secret key in the key store. */
8796 if (!pKeyStore)
8797 throw setError(VBOX_E_INVALID_OBJECT_STATE,
8798 tr("Image '%s' is configured for encryption but there is no key store to retrieve the password from"),
8799 pBase->m->strLocationFull.c_str());
8800
8801 SecretKey *pKey = NULL;
8802 vrc = pKeyStore->retainSecretKey(itKeyId->second, &pKey);
8803 if (RT_FAILURE(vrc))
8804 throw setErrorBoth(VBOX_E_INVALID_OBJECT_STATE, vrc,
8805 tr("Failed to retrieve the secret key with ID \"%s\" from the store (%Rrc)"),
8806 itKeyId->second.c_str(), vrc);
8807
8808 i_taskEncryptSettingsSetup(pCryptoSettings, NULL, itKeyStore->second.c_str(), (const char *)pKey->getKeyBuffer(),
8809 false /* fCreateKeyStore */);
8810 vrc = VDFilterAdd(pHdd, "CRYPT", VD_FILTER_FLAGS_DEFAULT, pCryptoSettings->vdFilterIfaces);
8811 pKeyStore->releaseSecretKey(itKeyId->second);
8812 if (vrc == VERR_VD_PASSWORD_INCORRECT)
8813 throw setErrorBoth(VBOX_E_PASSWORD_INCORRECT, vrc, tr("The password to decrypt the image is incorrect"));
8814 if (RT_FAILURE(vrc))
8815 throw setErrorBoth(VBOX_E_INVALID_OBJECT_STATE, vrc, tr("Failed to load the decryption filter: %s"),
8816 i_vdError(vrc).c_str());
8817#else
8818 RT_NOREF(pKeyStore, pCryptoSettings);
8819 throw setError(VBOX_E_NOT_SUPPORTED,
8820 tr("Encryption is not supported because extension pack support is not built in"));
8821#endif /* VBOX_WITH_EXTPACK */
8822 }
8823
8824 /*
8825 * Open all media in the source chain.
8826 */
8827 MediumLockList::Base::const_iterator sourceListBegin = pMediumLockList->GetBegin();
8828 MediumLockList::Base::const_iterator sourceListEnd = pMediumLockList->GetEnd();
8829 MediumLockList::Base::const_iterator mediumListLast = sourceListEnd;
8830 --mediumListLast;
8831
8832 for (MediumLockList::Base::const_iterator it = sourceListBegin; it != sourceListEnd; ++it)
8833 {
8834 const MediumLock &mediumLock = *it;
8835 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
8836 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
8837
8838 /* sanity check */
8839 Assert(pMedium->m->state == (fWritable && it == mediumListLast ? MediumState_LockedWrite : MediumState_LockedRead));
8840
8841 /* Open all media in read-only mode. */
8842 vrc = VDOpen(pHdd,
8843 pMedium->m->strFormat.c_str(),
8844 pMedium->m->strLocationFull.c_str(),
8845 m->uOpenFlagsDef | (fWritable && it == mediumListLast ? VD_OPEN_FLAGS_NORMAL : VD_OPEN_FLAGS_READONLY),
8846 pMedium->m->vdImageIfaces);
8847 if (RT_FAILURE(vrc))
8848 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
8849 tr("Could not open the medium storage unit '%s'%s"),
8850 pMedium->m->strLocationFull.c_str(),
8851 i_vdError(vrc).c_str());
8852 }
8853
8854 Assert(m->state == (fWritable ? MediumState_LockedWrite : MediumState_LockedRead));
8855
8856 /*
8857 * Done!
8858 */
8859 *ppHdd = pHdd;
8860 return S_OK;
8861 }
8862 catch (HRESULT hrc2)
8863 {
8864 hrc = hrc2;
8865 }
8866
8867 VDDestroy(pHdd);
8868 return hrc;
8869
8870}
8871
8872/**
8873 * Implementation code for the "create base" task.
8874 *
8875 * This only gets started from Medium::CreateBaseStorage() and always runs
8876 * asynchronously. As a result, we always save the VirtualBox.xml file when
8877 * we're done here.
8878 *
8879 * @param task
8880 * @return
8881 */
8882HRESULT Medium::i_taskCreateBaseHandler(Medium::CreateBaseTask &task)
8883{
8884 /** @todo r=klaus The code below needs to be double checked with regard
8885 * to lock order violations, it probably causes lock order issues related
8886 * to the AutoCaller usage. */
8887 HRESULT hrc = S_OK;
8888
8889 /* these parameters we need after creation */
8890 uint64_t size = 0, logicalSize = 0;
8891 MediumVariant_T variant = MediumVariant_Standard;
8892 bool fGenerateUuid = false;
8893
8894 try
8895 {
8896 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
8897
8898 /* The object may request a specific UUID (through a special form of
8899 * the moveTo() argument). Otherwise we have to generate it */
8900 Guid id = m->id;
8901
8902 fGenerateUuid = id.isZero();
8903 if (fGenerateUuid)
8904 {
8905 id.create();
8906 /* VirtualBox::i_registerMedium() will need UUID */
8907 unconst(m->id) = id;
8908 }
8909
8910 Utf8Str format(m->strFormat);
8911 Utf8Str location(m->strLocationFull);
8912 uint64_t capabilities = m->formatObj->i_getCapabilities();
8913 ComAssertThrow(capabilities & ( MediumFormatCapabilities_CreateFixed
8914 | MediumFormatCapabilities_CreateDynamic), E_FAIL);
8915 Assert(m->state == MediumState_Creating);
8916
8917 PVDISK hdd;
8918 int vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &hdd);
8919 ComAssertRCThrow(vrc, E_FAIL);
8920
8921 /* unlock before the potentially lengthy operation */
8922 thisLock.release();
8923
8924 try
8925 {
8926 /* ensure the directory exists */
8927 if (capabilities & MediumFormatCapabilities_File)
8928 {
8929 hrc = VirtualBox::i_ensureFilePathExists(location, !(task.mVariant & MediumVariant_NoCreateDir) /* fCreate */);
8930 if (FAILED(hrc))
8931 throw hrc;
8932 }
8933
8934 VDGEOMETRY geo = { 0, 0, 0 }; /* auto-detect */
8935
8936 vrc = VDCreateBase(hdd,
8937 format.c_str(),
8938 location.c_str(),
8939 task.mSize,
8940 task.mVariant & ~(MediumVariant_NoCreateDir | MediumVariant_Formatted),
8941 NULL,
8942 &geo,
8943 &geo,
8944 id.raw(),
8945 VD_OPEN_FLAGS_NORMAL | m->uOpenFlagsDef,
8946 m->vdImageIfaces,
8947 task.mVDOperationIfaces);
8948 if (RT_FAILURE(vrc))
8949 {
8950 if (vrc == VERR_VD_INVALID_TYPE)
8951 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
8952 tr("Parameters for creating the medium storage unit '%s' are invalid%s"),
8953 location.c_str(), i_vdError(vrc).c_str());
8954 else
8955 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
8956 tr("Could not create the medium storage unit '%s'%s"),
8957 location.c_str(), i_vdError(vrc).c_str());
8958 }
8959
8960 if (task.mVariant & MediumVariant_Formatted)
8961 {
8962 RTVFSFILE hVfsFile;
8963 vrc = VDCreateVfsFileFromDisk(hdd, 0 /*fFlags*/, &hVfsFile);
8964 if (RT_FAILURE(vrc))
8965 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc, tr("Opening medium storage unit '%s' failed%s"),
8966 location.c_str(), i_vdError(vrc).c_str());
8967 RTERRINFOSTATIC ErrInfo;
8968 vrc = RTFsFatVolFormat(hVfsFile, 0 /* offVol */, 0 /* cbVol */, RTFSFATVOL_FMT_F_FULL,
8969 0 /* cbSector */, 0 /* cbSectorPerCluster */, RTFSFATTYPE_INVALID,
8970 0 /* cHeads */, 0 /* cSectorsPerTrack*/, 0 /* bMedia */,
8971 0 /* cRootDirEntries */, 0 /* cHiddenSectors */,
8972 RTErrInfoInitStatic(&ErrInfo));
8973 RTVfsFileRelease(hVfsFile);
8974 if (RT_FAILURE(vrc) && RTErrInfoIsSet(&ErrInfo.Core))
8975 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc, tr("Formatting medium storage unit '%s' failed: %s"),
8976 location.c_str(), ErrInfo.Core.pszMsg);
8977 if (RT_FAILURE(vrc))
8978 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc, tr("Formatting medium storage unit '%s' failed%s"),
8979 location.c_str(), i_vdError(vrc).c_str());
8980 }
8981
8982 size = VDGetFileSize(hdd, 0);
8983 logicalSize = VDGetSize(hdd, 0);
8984 unsigned uImageFlags;
8985 vrc = VDGetImageFlags(hdd, 0, &uImageFlags);
8986 if (RT_SUCCESS(vrc))
8987 variant = (MediumVariant_T)uImageFlags;
8988 }
8989 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
8990
8991 VDDestroy(hdd);
8992 }
8993 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
8994
8995 if (SUCCEEDED(hrc))
8996 {
8997 /* register with mVirtualBox as the last step and move to
8998 * Created state only on success (leaving an orphan file is
8999 * better than breaking media registry consistency) */
9000 AutoWriteLock treeLock(m->pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
9001 ComObjPtr<Medium> pMedium;
9002 hrc = m->pVirtualBox->i_registerMedium(this, &pMedium, treeLock);
9003 Assert(pMedium == NULL || this == pMedium);
9004 }
9005
9006 // re-acquire the lock before changing state
9007 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
9008
9009 if (SUCCEEDED(hrc))
9010 {
9011 m->state = MediumState_Created;
9012
9013 m->size = size;
9014 m->logicalSize = logicalSize;
9015 m->variant = variant;
9016
9017 thisLock.release();
9018 i_markRegistriesModified();
9019 if (task.isAsync())
9020 {
9021 // in asynchronous mode, save settings now
9022 m->pVirtualBox->i_saveModifiedRegistries();
9023 }
9024 }
9025 else
9026 {
9027 /* back to NotCreated on failure */
9028 m->state = MediumState_NotCreated;
9029
9030 /* reset UUID to prevent it from being reused next time */
9031 if (fGenerateUuid)
9032 unconst(m->id).clear();
9033 }
9034
9035 if (task.NotifyAboutChanges() && SUCCEEDED(hrc))
9036 {
9037 m->pVirtualBox->i_onMediumConfigChanged(this);
9038 m->pVirtualBox->i_onMediumRegistered(m->id, m->devType, TRUE);
9039 }
9040
9041 return hrc;
9042}
9043
9044/**
9045 * Implementation code for the "create diff" task.
9046 *
9047 * This task always gets started from Medium::createDiffStorage() and can run
9048 * synchronously or asynchronously depending on the "wait" parameter passed to
9049 * that function. If we run synchronously, the caller expects the medium
9050 * registry modification to be set before returning; otherwise (in asynchronous
9051 * mode), we save the settings ourselves.
9052 *
9053 * @param task
9054 * @return
9055 */
9056HRESULT Medium::i_taskCreateDiffHandler(Medium::CreateDiffTask &task)
9057{
9058 /** @todo r=klaus The code below needs to be double checked with regard
9059 * to lock order violations, it probably causes lock order issues related
9060 * to the AutoCaller usage. */
9061 HRESULT hrcTmp = S_OK;
9062
9063 const ComObjPtr<Medium> &pTarget = task.mTarget;
9064
9065 uint64_t size = 0, logicalSize = 0;
9066 MediumVariant_T variant = MediumVariant_Standard;
9067 bool fGenerateUuid = false;
9068
9069 try
9070 {
9071 if (i_getDepth() >= SETTINGS_MEDIUM_DEPTH_MAX)
9072 {
9073 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
9074 throw setError(VBOX_E_INVALID_OBJECT_STATE,
9075 tr("Cannot create differencing image for medium '%s', because it exceeds the medium tree depth limit. Please merge some images which you no longer need"),
9076 m->strLocationFull.c_str());
9077 }
9078
9079 /* Lock both in {parent,child} order. */
9080 AutoMultiWriteLock2 mediaLock(this, pTarget COMMA_LOCKVAL_SRC_POS);
9081
9082 /* The object may request a specific UUID (through a special form of
9083 * the moveTo() argument). Otherwise we have to generate it */
9084 Guid targetId = pTarget->m->id;
9085
9086 fGenerateUuid = targetId.isZero();
9087 if (fGenerateUuid)
9088 {
9089 targetId.create();
9090 /* VirtualBox::i_registerMedium() will need UUID */
9091 unconst(pTarget->m->id) = targetId;
9092 }
9093
9094 Guid id = m->id;
9095
9096 Utf8Str targetFormat(pTarget->m->strFormat);
9097 Utf8Str targetLocation(pTarget->m->strLocationFull);
9098 uint64_t capabilities = pTarget->m->formatObj->i_getCapabilities();
9099 ComAssertThrow(capabilities & MediumFormatCapabilities_CreateDynamic, E_FAIL);
9100
9101 Assert(pTarget->m->state == MediumState_Creating);
9102 Assert(m->state == MediumState_LockedRead);
9103
9104 PVDISK hdd;
9105 int vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &hdd);
9106 ComAssertRCThrow(vrc, E_FAIL);
9107
9108 /* the two media are now protected by their non-default states;
9109 * unlock the media before the potentially lengthy operation */
9110 mediaLock.release();
9111
9112 try
9113 {
9114 /* Open all media in the target chain but the last. */
9115 MediumLockList::Base::const_iterator targetListBegin =
9116 task.mpMediumLockList->GetBegin();
9117 MediumLockList::Base::const_iterator targetListEnd =
9118 task.mpMediumLockList->GetEnd();
9119 for (MediumLockList::Base::const_iterator it = targetListBegin;
9120 it != targetListEnd;
9121 ++it)
9122 {
9123 const MediumLock &mediumLock = *it;
9124 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
9125
9126 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
9127
9128 /* Skip over the target diff medium */
9129 if (pMedium->m->state == MediumState_Creating)
9130 continue;
9131
9132 /* sanity check */
9133 Assert(pMedium->m->state == MediumState_LockedRead);
9134
9135 /* Open all media in appropriate mode. */
9136 vrc = VDOpen(hdd,
9137 pMedium->m->strFormat.c_str(),
9138 pMedium->m->strLocationFull.c_str(),
9139 VD_OPEN_FLAGS_READONLY | VD_OPEN_FLAGS_INFO | m->uOpenFlagsDef,
9140 pMedium->m->vdImageIfaces);
9141 if (RT_FAILURE(vrc))
9142 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
9143 tr("Could not open the medium storage unit '%s'%s"),
9144 pMedium->m->strLocationFull.c_str(),
9145 i_vdError(vrc).c_str());
9146 }
9147
9148 /* ensure the target directory exists */
9149 if (capabilities & MediumFormatCapabilities_File)
9150 {
9151 HRESULT hrc = VirtualBox::i_ensureFilePathExists(targetLocation,
9152 !(task.mVariant & MediumVariant_NoCreateDir) /* fCreate */);
9153 if (FAILED(hrc))
9154 throw hrc;
9155 }
9156
9157 vrc = VDCreateDiff(hdd,
9158 targetFormat.c_str(),
9159 targetLocation.c_str(),
9160 (task.mVariant & ~(MediumVariant_NoCreateDir | MediumVariant_Formatted | MediumVariant_VmdkESX | MediumVariant_VmdkRawDisk))
9161 | VD_IMAGE_FLAGS_DIFF,
9162 NULL,
9163 targetId.raw(),
9164 id.raw(),
9165 VD_OPEN_FLAGS_NORMAL | m->uOpenFlagsDef,
9166 pTarget->m->vdImageIfaces,
9167 task.mVDOperationIfaces);
9168 if (RT_FAILURE(vrc))
9169 {
9170 if (vrc == VERR_VD_INVALID_TYPE)
9171 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
9172 tr("Parameters for creating the differencing medium storage unit '%s' are invalid%s"),
9173 targetLocation.c_str(), i_vdError(vrc).c_str());
9174 else
9175 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
9176 tr("Could not create the differencing medium storage unit '%s'%s"),
9177 targetLocation.c_str(), i_vdError(vrc).c_str());
9178 }
9179
9180 size = VDGetFileSize(hdd, VD_LAST_IMAGE);
9181 logicalSize = VDGetSize(hdd, VD_LAST_IMAGE);
9182 unsigned uImageFlags;
9183 vrc = VDGetImageFlags(hdd, 0, &uImageFlags);
9184 if (RT_SUCCESS(vrc))
9185 variant = (MediumVariant_T)uImageFlags;
9186 }
9187 catch (HRESULT hrcXcpt) { hrcTmp = hrcXcpt; }
9188
9189 VDDestroy(hdd);
9190 }
9191 catch (HRESULT hrcXcpt) { hrcTmp = hrcXcpt; }
9192
9193 MultiResult mrc(hrcTmp);
9194
9195 if (SUCCEEDED(mrc))
9196 {
9197 AutoWriteLock treeLock(m->pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
9198
9199 Assert(pTarget->m->pParent.isNull());
9200
9201 /* associate child with the parent, maximum depth was checked above */
9202 pTarget->i_setParent(this);
9203
9204 /* diffs for immutable media are auto-reset by default */
9205 bool fAutoReset;
9206 {
9207 ComObjPtr<Medium> pBase = i_getBase();
9208 AutoReadLock block(pBase COMMA_LOCKVAL_SRC_POS);
9209 fAutoReset = (pBase->m->type == MediumType_Immutable);
9210 }
9211 {
9212 AutoWriteLock tlock(pTarget COMMA_LOCKVAL_SRC_POS);
9213 pTarget->m->autoReset = fAutoReset;
9214 }
9215
9216 /* register with mVirtualBox as the last step and move to
9217 * Created state only on success (leaving an orphan file is
9218 * better than breaking media registry consistency) */
9219 ComObjPtr<Medium> pMedium;
9220 mrc = m->pVirtualBox->i_registerMedium(pTarget, &pMedium, treeLock);
9221 Assert(pTarget == pMedium);
9222
9223 if (FAILED(mrc))
9224 /* break the parent association on failure to register */
9225 i_deparent();
9226 }
9227
9228 AutoMultiWriteLock2 mediaLock(this, pTarget COMMA_LOCKVAL_SRC_POS);
9229
9230 if (SUCCEEDED(mrc))
9231 {
9232 pTarget->m->state = MediumState_Created;
9233
9234 pTarget->m->size = size;
9235 pTarget->m->logicalSize = logicalSize;
9236 pTarget->m->variant = variant;
9237 }
9238 else
9239 {
9240 /* back to NotCreated on failure */
9241 pTarget->m->state = MediumState_NotCreated;
9242
9243 pTarget->m->autoReset = false;
9244
9245 /* reset UUID to prevent it from being reused next time */
9246 if (fGenerateUuid)
9247 unconst(pTarget->m->id).clear();
9248 }
9249
9250 // deregister the task registered in createDiffStorage()
9251 Assert(m->numCreateDiffTasks != 0);
9252 --m->numCreateDiffTasks;
9253
9254 mediaLock.release();
9255 i_markRegistriesModified();
9256 if (task.isAsync())
9257 {
9258 // in asynchronous mode, save settings now
9259 m->pVirtualBox->i_saveModifiedRegistries();
9260 }
9261
9262 /* Note that in sync mode, it's the caller's responsibility to
9263 * unlock the medium. */
9264
9265 if (task.NotifyAboutChanges() && SUCCEEDED(mrc))
9266 {
9267 m->pVirtualBox->i_onMediumConfigChanged(this);
9268 m->pVirtualBox->i_onMediumRegistered(m->id, m->devType, TRUE);
9269 }
9270
9271 return mrc;
9272}
9273
9274/**
9275 * Implementation code for the "merge" task.
9276 *
9277 * This task always gets started from Medium::mergeTo() and can run
9278 * synchronously or asynchronously depending on the "wait" parameter passed to
9279 * that function. If we run synchronously, the caller expects the medium
9280 * registry modification to be set before returning; otherwise (in asynchronous
9281 * mode), we save the settings ourselves.
9282 *
9283 * @param task
9284 * @return
9285 */
9286HRESULT Medium::i_taskMergeHandler(Medium::MergeTask &task)
9287{
9288 /** @todo r=klaus The code below needs to be double checked with regard
9289 * to lock order violations, it probably causes lock order issues related
9290 * to the AutoCaller usage. */
9291 HRESULT hrcTmp = S_OK;
9292
9293 const ComObjPtr<Medium> &pTarget = task.mTarget;
9294
9295 try
9296 {
9297 if (!task.mParentForTarget.isNull())
9298 if (task.mParentForTarget->i_getDepth() >= SETTINGS_MEDIUM_DEPTH_MAX)
9299 {
9300 AutoReadLock plock(task.mParentForTarget COMMA_LOCKVAL_SRC_POS);
9301 throw setError(VBOX_E_INVALID_OBJECT_STATE,
9302 tr("Cannot merge image for medium '%s', because it exceeds the medium tree depth limit. Please merge some images which you no longer need"),
9303 task.mParentForTarget->m->strLocationFull.c_str());
9304 }
9305
9306 // Resize target to source size, if possible. Otherwise throw an error.
9307 // It's offline resizing. Online resizing will be called in the
9308 // SessionMachine::onlineMergeMedium.
9309
9310 uint64_t sourceSize = 0;
9311 Utf8Str sourceName;
9312 {
9313 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
9314 sourceSize = i_getLogicalSize();
9315 sourceName = i_getName();
9316 }
9317 uint64_t targetSize = 0;
9318 Utf8Str targetName;
9319 {
9320 AutoReadLock alock(pTarget COMMA_LOCKVAL_SRC_POS);
9321 targetSize = pTarget->i_getLogicalSize();
9322 targetName = pTarget->i_getName();
9323 }
9324
9325 //reducing vm disks are not implemented yet
9326 if (sourceSize > targetSize)
9327 {
9328 if (i_isMediumFormatFile())
9329 {
9330 /// @todo r=klaus Can this use the standard code for creating a medium lock list?
9331 // Have to make own lock list, because "resize" method resizes the last image
9332 // in the lock chain only. The lock chain is already in the task.mpMediumLockList,
9333 // so just make new lock list based on it, with the right last medium. The own
9334 // lock list skips double locking and therefore does not affect the general lock
9335 // state after the "resize" method.
9336 MediumLockList* pMediumLockListForResize = new MediumLockList();
9337
9338 for (MediumLockList::Base::iterator it = task.mpMediumLockList->GetBegin();
9339 it != task.mpMediumLockList->GetEnd();
9340 ++it)
9341 {
9342 ComObjPtr<Medium> pMedium = it->GetMedium();
9343 pMediumLockListForResize->Append(pMedium, pMedium->m->state == MediumState_LockedWrite);
9344 if (pMedium == pTarget)
9345 break;
9346 }
9347
9348 // just to switch internal state of the lock list to avoid errors during list deletion,
9349 // because all media in the list already locked by task.mpMediumLockList
9350 HRESULT hrc = pMediumLockListForResize->Lock(true /* fSkipOverLockedMedia */);
9351 if (FAILED(hrc))
9352 {
9353 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
9354 delete pMediumLockListForResize;
9355 throw setError(hrc,
9356 tr("Failed to lock the medium '%s' to resize before merge"),
9357 targetName.c_str());
9358 }
9359
9360 ComObjPtr<Progress> pProgress(task.GetProgressObject());
9361 hrc = pTarget->i_resize(sourceSize, pMediumLockListForResize, &pProgress, true, false);
9362 if (FAILED(hrc))
9363 {
9364 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
9365 delete pMediumLockListForResize;
9366 throw setError(hrc,
9367 tr("Failed to set size of '%s' to size of '%s'"),
9368 targetName.c_str(), sourceName.c_str());
9369 }
9370 delete pMediumLockListForResize;
9371 }
9372 else
9373 {
9374 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
9375 throw setError(VBOX_E_NOT_SUPPORTED,
9376 tr("Sizes of '%s' and '%s' are different and medium format does not support resing"),
9377 sourceName.c_str(), targetName.c_str());
9378 }
9379 }
9380
9381 task.GetProgressObject()->SetNextOperation(BstrFmt(tr("Merging medium '%s' to '%s'"),
9382 i_getName().c_str(),
9383 targetName.c_str()).raw(),
9384 1);
9385
9386 PVDISK hdd;
9387 int vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &hdd);
9388 ComAssertRCThrow(vrc, E_FAIL);
9389
9390 try
9391 {
9392 // Similar code appears in SessionMachine::onlineMergeMedium, so
9393 // if you make any changes below check whether they are applicable
9394 // in that context as well.
9395
9396 unsigned uTargetIdx = VD_LAST_IMAGE;
9397 unsigned uSourceIdx = VD_LAST_IMAGE;
9398 /* Open all media in the chain. */
9399 MediumLockList::Base::iterator lockListBegin =
9400 task.mpMediumLockList->GetBegin();
9401 MediumLockList::Base::iterator lockListEnd =
9402 task.mpMediumLockList->GetEnd();
9403 unsigned i = 0;
9404 for (MediumLockList::Base::iterator it = lockListBegin;
9405 it != lockListEnd;
9406 ++it)
9407 {
9408 MediumLock &mediumLock = *it;
9409 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
9410
9411 if (pMedium == this)
9412 uSourceIdx = i;
9413 else if (pMedium == pTarget)
9414 uTargetIdx = i;
9415
9416 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
9417
9418 /*
9419 * complex sanity (sane complexity)
9420 *
9421 * The current medium must be in the Deleting (medium is merged)
9422 * or LockedRead (parent medium) state if it is not the target.
9423 * If it is the target it must be in the LockedWrite state.
9424 */
9425 Assert( ( pMedium != pTarget
9426 && ( pMedium->m->state == MediumState_Deleting
9427 || pMedium->m->state == MediumState_LockedRead))
9428 || ( pMedium == pTarget
9429 && pMedium->m->state == MediumState_LockedWrite));
9430 /*
9431 * Medium must be the target, in the LockedRead state
9432 * or Deleting state where it is not allowed to be attached
9433 * to a virtual machine.
9434 */
9435 Assert( pMedium == pTarget
9436 || pMedium->m->state == MediumState_LockedRead
9437 || ( pMedium->m->backRefs.size() == 0
9438 && pMedium->m->state == MediumState_Deleting));
9439 /* The source medium must be in Deleting state. */
9440 Assert( pMedium != this
9441 || pMedium->m->state == MediumState_Deleting);
9442
9443 unsigned uOpenFlags = VD_OPEN_FLAGS_NORMAL;
9444
9445 if ( pMedium->m->state == MediumState_LockedRead
9446 || pMedium->m->state == MediumState_Deleting)
9447 uOpenFlags = VD_OPEN_FLAGS_READONLY;
9448 if (pMedium->m->type == MediumType_Shareable)
9449 uOpenFlags |= VD_OPEN_FLAGS_SHAREABLE;
9450
9451 /* Open the medium */
9452 vrc = VDOpen(hdd,
9453 pMedium->m->strFormat.c_str(),
9454 pMedium->m->strLocationFull.c_str(),
9455 uOpenFlags | m->uOpenFlagsDef,
9456 pMedium->m->vdImageIfaces);
9457 if (RT_FAILURE(vrc))
9458 throw vrc;
9459
9460 i++;
9461 }
9462
9463 ComAssertThrow( uSourceIdx != VD_LAST_IMAGE
9464 && uTargetIdx != VD_LAST_IMAGE, E_FAIL);
9465
9466 vrc = VDMerge(hdd, uSourceIdx, uTargetIdx,
9467 task.mVDOperationIfaces);
9468 if (RT_FAILURE(vrc))
9469 throw vrc;
9470
9471 /* update parent UUIDs */
9472 if (!task.mfMergeForward)
9473 {
9474 /* we need to update UUIDs of all source's children
9475 * which cannot be part of the container at once so
9476 * add each one in there individually */
9477 if (task.mpChildrenToReparent)
9478 {
9479 MediumLockList::Base::iterator childrenBegin = task.mpChildrenToReparent->GetBegin();
9480 MediumLockList::Base::iterator childrenEnd = task.mpChildrenToReparent->GetEnd();
9481 for (MediumLockList::Base::iterator it = childrenBegin;
9482 it != childrenEnd;
9483 ++it)
9484 {
9485 Medium *pMedium = it->GetMedium();
9486 /* VD_OPEN_FLAGS_INFO since UUID is wrong yet */
9487 vrc = VDOpen(hdd,
9488 pMedium->m->strFormat.c_str(),
9489 pMedium->m->strLocationFull.c_str(),
9490 VD_OPEN_FLAGS_INFO | m->uOpenFlagsDef,
9491 pMedium->m->vdImageIfaces);
9492 if (RT_FAILURE(vrc))
9493 throw vrc;
9494
9495 vrc = VDSetParentUuid(hdd, VD_LAST_IMAGE,
9496 pTarget->m->id.raw());
9497 if (RT_FAILURE(vrc))
9498 throw vrc;
9499
9500 vrc = VDClose(hdd, false /* fDelete */);
9501 if (RT_FAILURE(vrc))
9502 throw vrc;
9503 }
9504 }
9505 }
9506 }
9507 catch (HRESULT hrcXcpt) { hrcTmp = hrcXcpt; }
9508 catch (int aVRC)
9509 {
9510 hrcTmp = setErrorBoth(VBOX_E_FILE_ERROR, aVRC,
9511 tr("Could not merge the medium '%s' to '%s'%s"),
9512 m->strLocationFull.c_str(),
9513 pTarget->m->strLocationFull.c_str(),
9514 i_vdError(aVRC).c_str());
9515 }
9516
9517 VDDestroy(hdd);
9518 }
9519 catch (HRESULT hrcXcpt) { hrcTmp = hrcXcpt; }
9520
9521 ErrorInfoKeeper eik;
9522 MultiResult mrc(hrcTmp);
9523 HRESULT hrc2;
9524
9525 std::set<ComObjPtr<Medium> > pMediaForNotify;
9526 std::map<Guid, DeviceType_T> uIdsForNotify;
9527
9528 if (SUCCEEDED(mrc))
9529 {
9530 /* all media but the target were successfully deleted by
9531 * VDMerge; reparent the last one and uninitialize deleted media. */
9532
9533 AutoWriteLock treeLock(m->pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
9534
9535 if (task.mfMergeForward)
9536 {
9537 /* first, unregister the target since it may become a base
9538 * medium which needs re-registration */
9539 hrc2 = m->pVirtualBox->i_unregisterMedium(pTarget);
9540 AssertComRC(hrc2);
9541
9542 /* then, reparent it and disconnect the deleted branch at both ends
9543 * (chain->parent() is source's parent). Depth check above. */
9544 pTarget->i_deparent();
9545 pTarget->i_setParent(task.mParentForTarget);
9546 if (task.mParentForTarget)
9547 {
9548 i_deparent();
9549 if (task.NotifyAboutChanges())
9550 pMediaForNotify.insert(task.mParentForTarget);
9551 }
9552
9553 /* then, register again */
9554 ComObjPtr<Medium> pMedium;
9555 hrc2 = m->pVirtualBox->i_registerMedium(pTarget, &pMedium, treeLock);
9556 AssertComRC(hrc2);
9557 }
9558 else
9559 {
9560 Assert(pTarget->i_getChildren().size() == 1);
9561 Medium *targetChild = pTarget->i_getChildren().front();
9562
9563 /* disconnect the deleted branch at the elder end */
9564 targetChild->i_deparent();
9565
9566 /* reparent source's children and disconnect the deleted
9567 * branch at the younger end */
9568 if (task.mpChildrenToReparent)
9569 {
9570 /* obey {parent,child} lock order */
9571 AutoWriteLock sourceLock(this COMMA_LOCKVAL_SRC_POS);
9572
9573 MediumLockList::Base::iterator childrenBegin = task.mpChildrenToReparent->GetBegin();
9574 MediumLockList::Base::iterator childrenEnd = task.mpChildrenToReparent->GetEnd();
9575 for (MediumLockList::Base::iterator it = childrenBegin;
9576 it != childrenEnd;
9577 ++it)
9578 {
9579 Medium *pMedium = it->GetMedium();
9580 AutoWriteLock childLock(pMedium COMMA_LOCKVAL_SRC_POS);
9581
9582 pMedium->i_deparent(); // removes pMedium from source
9583 // no depth check, reduces depth
9584 pMedium->i_setParent(pTarget);
9585
9586 if (task.NotifyAboutChanges())
9587 pMediaForNotify.insert(pMedium);
9588 }
9589 }
9590 pMediaForNotify.insert(pTarget);
9591 }
9592
9593 /* unregister and uninitialize all media removed by the merge */
9594 MediumLockList::Base::iterator lockListBegin =
9595 task.mpMediumLockList->GetBegin();
9596 MediumLockList::Base::iterator lockListEnd =
9597 task.mpMediumLockList->GetEnd();
9598 for (MediumLockList::Base::iterator it = lockListBegin;
9599 it != lockListEnd;
9600 )
9601 {
9602 MediumLock &mediumLock = *it;
9603 /* Create a real copy of the medium pointer, as the medium
9604 * lock deletion below would invalidate the referenced object. */
9605 const ComObjPtr<Medium> pMedium = mediumLock.GetMedium();
9606
9607 /* The target and all media not merged (readonly) are skipped */
9608 if ( pMedium == pTarget
9609 || pMedium->m->state == MediumState_LockedRead)
9610 {
9611 ++it;
9612 continue;
9613 }
9614
9615 uIdsForNotify[pMedium->i_getId()] = pMedium->i_getDeviceType();
9616 hrc2 = pMedium->m->pVirtualBox->i_unregisterMedium(pMedium);
9617 AssertComRC(hrc2);
9618
9619 /* now, uninitialize the deleted medium (note that
9620 * due to the Deleting state, uninit() will not touch
9621 * the parent-child relationship so we need to
9622 * uninitialize each disk individually) */
9623
9624 /* note that the operation initiator medium (which is
9625 * normally also the source medium) is a special case
9626 * -- there is one more caller added by Task to it which
9627 * we must release. Also, if we are in sync mode, the
9628 * caller may still hold an AutoCaller instance for it
9629 * and therefore we cannot uninit() it (it's therefore
9630 * the caller's responsibility) */
9631 if (pMedium == this)
9632 {
9633 Assert(i_getChildren().size() == 0);
9634 Assert(m->backRefs.size() == 0);
9635 task.mMediumCaller.release();
9636 }
9637
9638 /* Delete the medium lock list entry, which also releases the
9639 * caller added by MergeChain before uninit() and updates the
9640 * iterator to point to the right place. */
9641 hrc2 = task.mpMediumLockList->RemoveByIterator(it);
9642 AssertComRC(hrc2);
9643
9644 if (task.isAsync() || pMedium != this)
9645 {
9646 treeLock.release();
9647 pMedium->uninit();
9648 treeLock.acquire();
9649 }
9650 }
9651 }
9652
9653 i_markRegistriesModified();
9654 if (task.isAsync())
9655 {
9656 // in asynchronous mode, save settings now
9657 eik.restore();
9658 m->pVirtualBox->i_saveModifiedRegistries();
9659 eik.fetch();
9660 }
9661
9662 if (FAILED(mrc))
9663 {
9664 /* Here we come if either VDMerge() failed (in which case we
9665 * assume that it tried to do everything to make a further
9666 * retry possible -- e.g. not deleted intermediate media
9667 * and so on) or VirtualBox::saveRegistries() failed (where we
9668 * should have the original tree but with intermediate storage
9669 * units deleted by VDMerge()). We have to only restore states
9670 * (through the MergeChain dtor) unless we are run synchronously
9671 * in which case it's the responsibility of the caller as stated
9672 * in the mergeTo() docs. The latter also implies that we
9673 * don't own the merge chain, so release it in this case. */
9674 if (task.isAsync())
9675 i_cancelMergeTo(task.mpChildrenToReparent, task.mpMediumLockList);
9676 }
9677 else if (task.NotifyAboutChanges())
9678 {
9679 for (std::set<ComObjPtr<Medium> >::const_iterator it = pMediaForNotify.begin();
9680 it != pMediaForNotify.end();
9681 ++it)
9682 {
9683 if (it->isNotNull())
9684 m->pVirtualBox->i_onMediumConfigChanged(*it);
9685 }
9686 for (std::map<Guid, DeviceType_T>::const_iterator it = uIdsForNotify.begin();
9687 it != uIdsForNotify.end();
9688 ++it)
9689 {
9690 m->pVirtualBox->i_onMediumRegistered(it->first, it->second, FALSE);
9691 }
9692 }
9693
9694 return mrc;
9695}
9696
9697/**
9698 * Implementation code for the "clone" task.
9699 *
9700 * This only gets started from Medium::CloneTo() and always runs asynchronously.
9701 * As a result, we always save the VirtualBox.xml file when we're done here.
9702 *
9703 * @param task
9704 * @return
9705 */
9706HRESULT Medium::i_taskCloneHandler(Medium::CloneTask &task)
9707{
9708 /** @todo r=klaus The code below needs to be double checked with regard
9709 * to lock order violations, it probably causes lock order issues related
9710 * to the AutoCaller usage. */
9711 HRESULT hrcTmp = S_OK;
9712
9713 const ComObjPtr<Medium> &pTarget = task.mTarget;
9714 const ComObjPtr<Medium> &pParent = task.mParent;
9715
9716 bool fCreatingTarget = false;
9717
9718 uint64_t size = 0, logicalSize = 0;
9719 MediumVariant_T variant = MediumVariant_Standard;
9720 bool fGenerateUuid = false;
9721
9722 try
9723 {
9724 if (!pParent.isNull())
9725 {
9726
9727 if (pParent->i_getDepth() >= SETTINGS_MEDIUM_DEPTH_MAX)
9728 {
9729 AutoReadLock plock(pParent COMMA_LOCKVAL_SRC_POS);
9730 throw setError(VBOX_E_INVALID_OBJECT_STATE,
9731 tr("Cannot clone image for medium '%s', because it exceeds the medium tree depth limit. Please merge some images which you no longer need"),
9732 pParent->m->strLocationFull.c_str());
9733 }
9734 }
9735
9736 /* Lock all in {parent,child} order. The lock is also used as a
9737 * signal from the task initiator (which releases it only after
9738 * RTThreadCreate()) that we can start the job. */
9739 AutoMultiWriteLock3 thisLock(this, pTarget, pParent COMMA_LOCKVAL_SRC_POS);
9740
9741 fCreatingTarget = pTarget->m->state == MediumState_Creating;
9742
9743 /* The object may request a specific UUID (through a special form of
9744 * the moveTo() argument). Otherwise we have to generate it */
9745 Guid targetId = pTarget->m->id;
9746
9747 fGenerateUuid = targetId.isZero();
9748 if (fGenerateUuid)
9749 {
9750 targetId.create();
9751 /* VirtualBox::registerMedium() will need UUID */
9752 unconst(pTarget->m->id) = targetId;
9753 }
9754
9755 PVDISK hdd;
9756 int vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &hdd);
9757 ComAssertRCThrow(vrc, E_FAIL);
9758
9759 try
9760 {
9761 /* Open all media in the source chain. */
9762 MediumLockList::Base::const_iterator sourceListBegin =
9763 task.mpSourceMediumLockList->GetBegin();
9764 MediumLockList::Base::const_iterator sourceListEnd =
9765 task.mpSourceMediumLockList->GetEnd();
9766 for (MediumLockList::Base::const_iterator it = sourceListBegin;
9767 it != sourceListEnd;
9768 ++it)
9769 {
9770 const MediumLock &mediumLock = *it;
9771 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
9772 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
9773
9774 /* sanity check */
9775 Assert(pMedium->m->state == MediumState_LockedRead);
9776
9777 /** Open all media in read-only mode. */
9778 vrc = VDOpen(hdd,
9779 pMedium->m->strFormat.c_str(),
9780 pMedium->m->strLocationFull.c_str(),
9781 VD_OPEN_FLAGS_READONLY | m->uOpenFlagsDef,
9782 pMedium->m->vdImageIfaces);
9783 if (RT_FAILURE(vrc))
9784 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
9785 tr("Could not open the medium storage unit '%s'%s"),
9786 pMedium->m->strLocationFull.c_str(),
9787 i_vdError(vrc).c_str());
9788 }
9789
9790 Utf8Str targetFormat(pTarget->m->strFormat);
9791 Utf8Str targetLocation(pTarget->m->strLocationFull);
9792 uint64_t capabilities = pTarget->m->formatObj->i_getCapabilities();
9793
9794 Assert( pTarget->m->state == MediumState_Creating
9795 || pTarget->m->state == MediumState_LockedWrite);
9796 Assert(m->state == MediumState_LockedRead);
9797 Assert( pParent.isNull()
9798 || pParent->m->state == MediumState_LockedRead);
9799
9800 /* unlock before the potentially lengthy operation */
9801 thisLock.release();
9802
9803 /* ensure the target directory exists */
9804 if (capabilities & MediumFormatCapabilities_File)
9805 {
9806 HRESULT hrc = VirtualBox::i_ensureFilePathExists(targetLocation,
9807 !(task.mVariant & MediumVariant_NoCreateDir) /* fCreate */);
9808 if (FAILED(hrc))
9809 throw hrc;
9810 }
9811
9812 PVDISK targetHdd;
9813 vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &targetHdd);
9814 ComAssertRCThrow(vrc, E_FAIL);
9815
9816 try
9817 {
9818 /* Open all media in the target chain. */
9819 MediumLockList::Base::const_iterator targetListBegin =
9820 task.mpTargetMediumLockList->GetBegin();
9821 MediumLockList::Base::const_iterator targetListEnd =
9822 task.mpTargetMediumLockList->GetEnd();
9823 for (MediumLockList::Base::const_iterator it = targetListBegin;
9824 it != targetListEnd;
9825 ++it)
9826 {
9827 const MediumLock &mediumLock = *it;
9828 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
9829
9830 /* If the target medium is not created yet there's no
9831 * reason to open it. */
9832 if (pMedium == pTarget && fCreatingTarget)
9833 continue;
9834
9835 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
9836
9837 /* sanity check */
9838 Assert( pMedium->m->state == MediumState_LockedRead
9839 || pMedium->m->state == MediumState_LockedWrite);
9840
9841 unsigned uOpenFlags = VD_OPEN_FLAGS_NORMAL;
9842 if (pMedium->m->state != MediumState_LockedWrite)
9843 uOpenFlags = VD_OPEN_FLAGS_READONLY;
9844 if (pMedium->m->type == MediumType_Shareable)
9845 uOpenFlags |= VD_OPEN_FLAGS_SHAREABLE;
9846
9847 /* Open all media in appropriate mode. */
9848 vrc = VDOpen(targetHdd,
9849 pMedium->m->strFormat.c_str(),
9850 pMedium->m->strLocationFull.c_str(),
9851 uOpenFlags | m->uOpenFlagsDef,
9852 pMedium->m->vdImageIfaces);
9853 if (RT_FAILURE(vrc))
9854 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
9855 tr("Could not open the medium storage unit '%s'%s"),
9856 pMedium->m->strLocationFull.c_str(),
9857 i_vdError(vrc).c_str());
9858 }
9859
9860 /* target isn't locked, but no changing data is accessed */
9861 if (task.midxSrcImageSame == UINT32_MAX)
9862 {
9863 vrc = VDCopy(hdd,
9864 VD_LAST_IMAGE,
9865 targetHdd,
9866 targetFormat.c_str(),
9867 (fCreatingTarget) ? targetLocation.c_str() : (char *)NULL,
9868 false /* fMoveByRename */,
9869 task.mTargetLogicalSize /* cbSize */,
9870 task.mVariant & ~(MediumVariant_NoCreateDir | MediumVariant_Formatted | MediumVariant_VmdkESX | MediumVariant_VmdkRawDisk),
9871 targetId.raw(),
9872 VD_OPEN_FLAGS_NORMAL | m->uOpenFlagsDef,
9873 NULL /* pVDIfsOperation */,
9874 pTarget->m->vdImageIfaces,
9875 task.mVDOperationIfaces);
9876 }
9877 else
9878 {
9879 vrc = VDCopyEx(hdd,
9880 VD_LAST_IMAGE,
9881 targetHdd,
9882 targetFormat.c_str(),
9883 (fCreatingTarget) ? targetLocation.c_str() : (char *)NULL,
9884 false /* fMoveByRename */,
9885 task.mTargetLogicalSize /* cbSize */,
9886 task.midxSrcImageSame,
9887 task.midxDstImageSame,
9888 task.mVariant & ~(MediumVariant_NoCreateDir | MediumVariant_Formatted | MediumVariant_VmdkESX | MediumVariant_VmdkRawDisk),
9889 targetId.raw(),
9890 VD_OPEN_FLAGS_NORMAL | m->uOpenFlagsDef,
9891 NULL /* pVDIfsOperation */,
9892 pTarget->m->vdImageIfaces,
9893 task.mVDOperationIfaces);
9894 }
9895 if (RT_FAILURE(vrc))
9896 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
9897 tr("Could not create the clone medium '%s'%s"),
9898 targetLocation.c_str(), i_vdError(vrc).c_str());
9899
9900 size = VDGetFileSize(targetHdd, VD_LAST_IMAGE);
9901 logicalSize = VDGetSize(targetHdd, VD_LAST_IMAGE);
9902 unsigned uImageFlags;
9903 vrc = VDGetImageFlags(targetHdd, 0, &uImageFlags);
9904 if (RT_SUCCESS(vrc))
9905 variant = (MediumVariant_T)uImageFlags;
9906 }
9907 catch (HRESULT hrcXcpt) { hrcTmp = hrcXcpt; }
9908
9909 VDDestroy(targetHdd);
9910 }
9911 catch (HRESULT hrcXcpt) { hrcTmp = hrcXcpt; }
9912
9913 VDDestroy(hdd);
9914 }
9915 catch (HRESULT hrcXcpt) { hrcTmp = hrcXcpt; }
9916
9917 ErrorInfoKeeper eik;
9918 MultiResult mrc(hrcTmp);
9919
9920 /* Only do the parent changes for newly created media. */
9921 if (SUCCEEDED(mrc) && fCreatingTarget)
9922 {
9923 /* we set m->pParent & children() */
9924 AutoWriteLock treeLock(m->pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
9925
9926 Assert(pTarget->m->pParent.isNull());
9927
9928 if (pParent)
9929 {
9930 /* Associate the clone with the parent and deassociate
9931 * from VirtualBox. Depth check above. */
9932 pTarget->i_setParent(pParent);
9933
9934 /* register with mVirtualBox as the last step and move to
9935 * Created state only on success (leaving an orphan file is
9936 * better than breaking media registry consistency) */
9937 eik.restore();
9938 ComObjPtr<Medium> pMedium;
9939 mrc = pParent->m->pVirtualBox->i_registerMedium(pTarget, &pMedium,
9940 treeLock);
9941 Assert( FAILED(mrc)
9942 || pTarget == pMedium);
9943 eik.fetch();
9944
9945 if (FAILED(mrc))
9946 /* break parent association on failure to register */
9947 pTarget->i_deparent(); // removes target from parent
9948 }
9949 else
9950 {
9951 /* just register */
9952 eik.restore();
9953 ComObjPtr<Medium> pMedium;
9954 mrc = m->pVirtualBox->i_registerMedium(pTarget, &pMedium,
9955 treeLock);
9956 Assert( FAILED(mrc)
9957 || pTarget == pMedium);
9958 eik.fetch();
9959 }
9960 }
9961
9962 if (fCreatingTarget)
9963 {
9964 AutoWriteLock mLock(pTarget COMMA_LOCKVAL_SRC_POS);
9965
9966 if (SUCCEEDED(mrc))
9967 {
9968 pTarget->m->state = MediumState_Created;
9969
9970 pTarget->m->size = size;
9971 pTarget->m->logicalSize = logicalSize;
9972 pTarget->m->variant = variant;
9973 }
9974 else
9975 {
9976 /* back to NotCreated on failure */
9977 pTarget->m->state = MediumState_NotCreated;
9978
9979 /* reset UUID to prevent it from being reused next time */
9980 if (fGenerateUuid)
9981 unconst(pTarget->m->id).clear();
9982 }
9983 }
9984
9985 /* Copy any filter related settings over to the target. */
9986 if (SUCCEEDED(mrc))
9987 {
9988 /* Copy any filter related settings over. */
9989 ComObjPtr<Medium> pBase = i_getBase();
9990 ComObjPtr<Medium> pTargetBase = pTarget->i_getBase();
9991 std::vector<com::Utf8Str> aFilterPropNames;
9992 std::vector<com::Utf8Str> aFilterPropValues;
9993 mrc = pBase->i_getFilterProperties(aFilterPropNames, aFilterPropValues);
9994 if (SUCCEEDED(mrc))
9995 {
9996 /* Go through the properties and add them to the target medium. */
9997 for (unsigned idx = 0; idx < aFilterPropNames.size(); idx++)
9998 {
9999 mrc = pTargetBase->i_setPropertyDirect(aFilterPropNames[idx], aFilterPropValues[idx]);
10000 if (FAILED(mrc)) break;
10001 }
10002
10003 // now, at the end of this task (always asynchronous), save the settings
10004 if (SUCCEEDED(mrc))
10005 {
10006 // save the settings
10007 i_markRegistriesModified();
10008 /* collect multiple errors */
10009 eik.restore();
10010 m->pVirtualBox->i_saveModifiedRegistries();
10011 eik.fetch();
10012
10013 if (task.NotifyAboutChanges())
10014 {
10015 if (!fCreatingTarget)
10016 {
10017 if (!aFilterPropNames.empty())
10018 m->pVirtualBox->i_onMediumConfigChanged(pTargetBase);
10019 if (pParent)
10020 m->pVirtualBox->i_onMediumConfigChanged(pParent);
10021 }
10022 else
10023 {
10024 m->pVirtualBox->i_onMediumRegistered(pTarget->i_getId(), pTarget->i_getDeviceType(), TRUE);
10025 }
10026 }
10027 }
10028 }
10029 }
10030
10031 /* Everything is explicitly unlocked when the task exits,
10032 * as the task destruction also destroys the source chain. */
10033
10034 /* Make sure the source chain is released early. It could happen
10035 * that we get a deadlock in Appliance::Import when Medium::Close
10036 * is called & the source chain is released at the same time. */
10037 task.mpSourceMediumLockList->Clear();
10038
10039 return mrc;
10040}
10041
10042/**
10043 * Implementation code for the "move" task.
10044 *
10045 * This only gets started from Medium::MoveTo() and always
10046 * runs asynchronously.
10047 *
10048 * @param task
10049 * @return
10050 */
10051HRESULT Medium::i_taskMoveHandler(Medium::MoveTask &task)
10052{
10053 LogFlowFuncEnter();
10054 HRESULT hrcOut = S_OK;
10055
10056 /* pTarget is equal "this" in our case */
10057 const ComObjPtr<Medium> &pTarget = task.mMedium;
10058
10059 uint64_t size = 0; NOREF(size);
10060 uint64_t logicalSize = 0; NOREF(logicalSize);
10061 MediumVariant_T variant = MediumVariant_Standard; NOREF(variant);
10062
10063 /*
10064 * it's exactly moving, not cloning
10065 */
10066 if (!i_isMoveOperation(pTarget))
10067 {
10068 LogFlowFunc(("LEAVE: hrc=VBOX_E_FILE_ERROR (early)\n"));
10069 return setError(VBOX_E_FILE_ERROR,
10070 tr("Wrong preconditions for moving the medium %s"),
10071 pTarget->m->strLocationFull.c_str());
10072 }
10073
10074 try
10075 {
10076 /* Lock all in {parent,child} order. The lock is also used as a
10077 * signal from the task initiator (which releases it only after
10078 * RTThreadCreate()) that we can start the job. */
10079
10080 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
10081
10082 PVDISK hdd;
10083 int vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &hdd);
10084 ComAssertRCThrow(vrc, E_FAIL);
10085
10086 try
10087 {
10088 /* Open all media in the source chain. */
10089 MediumLockList::Base::const_iterator sourceListBegin =
10090 task.mpMediumLockList->GetBegin();
10091 MediumLockList::Base::const_iterator sourceListEnd =
10092 task.mpMediumLockList->GetEnd();
10093 for (MediumLockList::Base::const_iterator it = sourceListBegin;
10094 it != sourceListEnd;
10095 ++it)
10096 {
10097 const MediumLock &mediumLock = *it;
10098 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
10099 AutoWriteLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
10100
10101 /* sanity check */
10102 Assert(pMedium->m->state == MediumState_LockedWrite);
10103
10104 vrc = VDOpen(hdd,
10105 pMedium->m->strFormat.c_str(),
10106 pMedium->m->strLocationFull.c_str(),
10107 VD_OPEN_FLAGS_NORMAL,
10108 pMedium->m->vdImageIfaces);
10109 if (RT_FAILURE(vrc))
10110 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
10111 tr("Could not open the medium storage unit '%s'%s"),
10112 pMedium->m->strLocationFull.c_str(),
10113 i_vdError(vrc).c_str());
10114 }
10115
10116 /* we can directly use pTarget->m->"variables" but for better reading we use local copies */
10117 Guid targetId = pTarget->m->id;
10118 Utf8Str targetFormat(pTarget->m->strFormat);
10119 uint64_t targetCapabilities = pTarget->m->formatObj->i_getCapabilities();
10120
10121 /*
10122 * change target location
10123 * m->strNewLocationFull has been set already together with m->fMoveThisMedium in
10124 * i_preparationForMoving()
10125 */
10126 Utf8Str targetLocation = i_getNewLocationForMoving();
10127
10128 /* unlock before the potentially lengthy operation */
10129 thisLock.release();
10130
10131 /* ensure the target directory exists */
10132 if (targetCapabilities & MediumFormatCapabilities_File)
10133 {
10134 HRESULT hrc = VirtualBox::i_ensureFilePathExists(targetLocation,
10135 !(task.mVariant & MediumVariant_NoCreateDir) /* fCreate */);
10136 if (FAILED(hrc))
10137 throw hrc;
10138 }
10139
10140 try
10141 {
10142 vrc = VDCopy(hdd,
10143 VD_LAST_IMAGE,
10144 hdd,
10145 targetFormat.c_str(),
10146 targetLocation.c_str(),
10147 true /* fMoveByRename */,
10148 0 /* cbSize */,
10149 VD_IMAGE_FLAGS_NONE,
10150 targetId.raw(),
10151 VD_OPEN_FLAGS_NORMAL,
10152 NULL /* pVDIfsOperation */,
10153 pTarget->m->vdImageIfaces,
10154 task.mVDOperationIfaces);
10155 if (RT_FAILURE(vrc))
10156 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
10157 tr("Could not move medium '%s'%s"),
10158 targetLocation.c_str(), i_vdError(vrc).c_str());
10159 size = VDGetFileSize(hdd, VD_LAST_IMAGE);
10160 logicalSize = VDGetSize(hdd, VD_LAST_IMAGE);
10161 unsigned uImageFlags;
10162 vrc = VDGetImageFlags(hdd, 0, &uImageFlags);
10163 if (RT_SUCCESS(vrc))
10164 variant = (MediumVariant_T)uImageFlags;
10165
10166 /*
10167 * set current location, because VDCopy\VDCopyEx doesn't do it.
10168 * also reset moving flag
10169 */
10170 i_resetMoveOperationData();
10171 m->strLocationFull = targetLocation;
10172
10173 }
10174 catch (HRESULT hrcXcpt) { hrcOut = hrcXcpt; }
10175
10176 }
10177 catch (HRESULT hrcXcpt) { hrcOut = hrcXcpt; }
10178
10179 VDDestroy(hdd);
10180 }
10181 catch (HRESULT hrcXcpt) { hrcOut = hrcXcpt; }
10182
10183 ErrorInfoKeeper eik;
10184 MultiResult mrc(hrcOut);
10185
10186 // now, at the end of this task (always asynchronous), save the settings
10187 if (SUCCEEDED(mrc))
10188 {
10189 // save the settings
10190 i_markRegistriesModified();
10191 /* collect multiple errors */
10192 eik.restore();
10193 m->pVirtualBox->i_saveModifiedRegistries();
10194 eik.fetch();
10195 }
10196
10197 /* Everything is explicitly unlocked when the task exits,
10198 * as the task destruction also destroys the source chain. */
10199
10200 task.mpMediumLockList->Clear();
10201
10202 if (task.NotifyAboutChanges() && SUCCEEDED(mrc))
10203 m->pVirtualBox->i_onMediumConfigChanged(this);
10204
10205 LogFlowFunc(("LEAVE: mrc=%Rhrc\n", (HRESULT)mrc));
10206 return mrc;
10207}
10208
10209/**
10210 * Implementation code for the "delete" task.
10211 *
10212 * This task always gets started from Medium::deleteStorage() and can run
10213 * synchronously or asynchronously depending on the "wait" parameter passed to
10214 * that function.
10215 *
10216 * @param task
10217 * @return
10218 */
10219HRESULT Medium::i_taskDeleteHandler(Medium::DeleteTask &task)
10220{
10221 NOREF(task);
10222 HRESULT hrc = S_OK;
10223
10224 try
10225 {
10226 /* The lock is also used as a signal from the task initiator (which
10227 * releases it only after RTThreadCreate()) that we can start the job */
10228 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
10229
10230 PVDISK hdd;
10231 int vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &hdd);
10232 ComAssertRCThrow(vrc, E_FAIL);
10233
10234 Utf8Str format(m->strFormat);
10235 Utf8Str location(m->strLocationFull);
10236
10237 /* unlock before the potentially lengthy operation */
10238 Assert(m->state == MediumState_Deleting);
10239 thisLock.release();
10240
10241 try
10242 {
10243 vrc = VDOpen(hdd,
10244 format.c_str(),
10245 location.c_str(),
10246 VD_OPEN_FLAGS_READONLY | VD_OPEN_FLAGS_INFO | m->uOpenFlagsDef,
10247 m->vdImageIfaces);
10248 if (RT_SUCCESS(vrc))
10249 vrc = VDClose(hdd, true /* fDelete */);
10250
10251 if (RT_FAILURE(vrc) && vrc != VERR_FILE_NOT_FOUND)
10252 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
10253 tr("Could not delete the medium storage unit '%s'%s"),
10254 location.c_str(), i_vdError(vrc).c_str());
10255
10256 }
10257 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
10258
10259 VDDestroy(hdd);
10260 }
10261 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
10262
10263 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
10264
10265 /* go to the NotCreated state even on failure since the storage
10266 * may have been already partially deleted and cannot be used any
10267 * more. One will be able to manually re-open the storage if really
10268 * needed to re-register it. */
10269 m->state = MediumState_NotCreated;
10270
10271 /* Reset UUID to prevent Create* from reusing it again */
10272 com::Guid uOldId = m->id;
10273 unconst(m->id).clear();
10274
10275 if (task.NotifyAboutChanges() && SUCCEEDED(hrc))
10276 {
10277 if (m->pParent.isNotNull())
10278 m->pVirtualBox->i_onMediumConfigChanged(m->pParent);
10279 m->pVirtualBox->i_onMediumRegistered(uOldId, m->devType, FALSE);
10280 }
10281
10282 return hrc;
10283}
10284
10285/**
10286 * Implementation code for the "reset" task.
10287 *
10288 * This always gets started asynchronously from Medium::Reset().
10289 *
10290 * @param task
10291 * @return
10292 */
10293HRESULT Medium::i_taskResetHandler(Medium::ResetTask &task)
10294{
10295 HRESULT hrc = S_OK;
10296
10297 uint64_t size = 0, logicalSize = 0;
10298 MediumVariant_T variant = MediumVariant_Standard;
10299
10300 try
10301 {
10302 /* The lock is also used as a signal from the task initiator (which
10303 * releases it only after RTThreadCreate()) that we can start the job */
10304 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
10305
10306 /// @todo Below we use a pair of delete/create operations to reset
10307 /// the diff contents but the most efficient way will of course be
10308 /// to add a VDResetDiff() API call
10309
10310 PVDISK hdd;
10311 int vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &hdd);
10312 ComAssertRCThrow(vrc, E_FAIL);
10313
10314 Guid id = m->id;
10315 Utf8Str format(m->strFormat);
10316 Utf8Str location(m->strLocationFull);
10317
10318 Medium *pParent = m->pParent;
10319 Guid parentId = pParent->m->id;
10320 Utf8Str parentFormat(pParent->m->strFormat);
10321 Utf8Str parentLocation(pParent->m->strLocationFull);
10322
10323 Assert(m->state == MediumState_LockedWrite);
10324
10325 /* unlock before the potentially lengthy operation */
10326 thisLock.release();
10327
10328 try
10329 {
10330 /* Open all media in the target chain but the last. */
10331 MediumLockList::Base::const_iterator targetListBegin =
10332 task.mpMediumLockList->GetBegin();
10333 MediumLockList::Base::const_iterator targetListEnd =
10334 task.mpMediumLockList->GetEnd();
10335 for (MediumLockList::Base::const_iterator it = targetListBegin;
10336 it != targetListEnd;
10337 ++it)
10338 {
10339 const MediumLock &mediumLock = *it;
10340 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
10341
10342 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
10343
10344 /* sanity check, "this" is checked above */
10345 Assert( pMedium == this
10346 || pMedium->m->state == MediumState_LockedRead);
10347
10348 /* Open all media in appropriate mode. */
10349 vrc = VDOpen(hdd,
10350 pMedium->m->strFormat.c_str(),
10351 pMedium->m->strLocationFull.c_str(),
10352 VD_OPEN_FLAGS_READONLY | m->uOpenFlagsDef,
10353 pMedium->m->vdImageIfaces);
10354 if (RT_FAILURE(vrc))
10355 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
10356 tr("Could not open the medium storage unit '%s'%s"),
10357 pMedium->m->strLocationFull.c_str(),
10358 i_vdError(vrc).c_str());
10359
10360 /* Done when we hit the media which should be reset */
10361 if (pMedium == this)
10362 break;
10363 }
10364
10365 /* first, delete the storage unit */
10366 vrc = VDClose(hdd, true /* fDelete */);
10367 if (RT_FAILURE(vrc))
10368 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
10369 tr("Could not delete the medium storage unit '%s'%s"),
10370 location.c_str(), i_vdError(vrc).c_str());
10371
10372 /* next, create it again */
10373 vrc = VDOpen(hdd,
10374 parentFormat.c_str(),
10375 parentLocation.c_str(),
10376 VD_OPEN_FLAGS_READONLY | VD_OPEN_FLAGS_INFO | m->uOpenFlagsDef,
10377 m->vdImageIfaces);
10378 if (RT_FAILURE(vrc))
10379 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
10380 tr("Could not open the medium storage unit '%s'%s"),
10381 parentLocation.c_str(), i_vdError(vrc).c_str());
10382
10383 vrc = VDCreateDiff(hdd,
10384 format.c_str(),
10385 location.c_str(),
10386 /// @todo use the same medium variant as before
10387 VD_IMAGE_FLAGS_NONE,
10388 NULL,
10389 id.raw(),
10390 parentId.raw(),
10391 VD_OPEN_FLAGS_NORMAL,
10392 m->vdImageIfaces,
10393 task.mVDOperationIfaces);
10394 if (RT_FAILURE(vrc))
10395 {
10396 if (vrc == VERR_VD_INVALID_TYPE)
10397 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
10398 tr("Parameters for creating the differencing medium storage unit '%s' are invalid%s"),
10399 location.c_str(), i_vdError(vrc).c_str());
10400 else
10401 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
10402 tr("Could not create the differencing medium storage unit '%s'%s"),
10403 location.c_str(), i_vdError(vrc).c_str());
10404 }
10405
10406 size = VDGetFileSize(hdd, VD_LAST_IMAGE);
10407 logicalSize = VDGetSize(hdd, VD_LAST_IMAGE);
10408 unsigned uImageFlags;
10409 vrc = VDGetImageFlags(hdd, 0, &uImageFlags);
10410 if (RT_SUCCESS(vrc))
10411 variant = (MediumVariant_T)uImageFlags;
10412 }
10413 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
10414
10415 VDDestroy(hdd);
10416 }
10417 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
10418
10419 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
10420
10421 m->size = size;
10422 m->logicalSize = logicalSize;
10423 m->variant = variant;
10424
10425 if (task.NotifyAboutChanges() && SUCCEEDED(hrc))
10426 m->pVirtualBox->i_onMediumConfigChanged(this);
10427
10428 /* Everything is explicitly unlocked when the task exits,
10429 * as the task destruction also destroys the media chain. */
10430
10431 return hrc;
10432}
10433
10434/**
10435 * Implementation code for the "compact" task.
10436 *
10437 * @param task
10438 * @return
10439 */
10440HRESULT Medium::i_taskCompactHandler(Medium::CompactTask &task)
10441{
10442 HRESULT hrc = S_OK;
10443
10444 /* Lock all in {parent,child} order. The lock is also used as a
10445 * signal from the task initiator (which releases it only after
10446 * RTThreadCreate()) that we can start the job. */
10447 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
10448
10449 try
10450 {
10451 PVDISK hdd;
10452 int vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &hdd);
10453 ComAssertRCThrow(vrc, E_FAIL);
10454
10455 try
10456 {
10457 /* Open all media in the chain. */
10458 MediumLockList::Base::const_iterator mediumListBegin =
10459 task.mpMediumLockList->GetBegin();
10460 MediumLockList::Base::const_iterator mediumListEnd =
10461 task.mpMediumLockList->GetEnd();
10462 MediumLockList::Base::const_iterator mediumListLast =
10463 mediumListEnd;
10464 --mediumListLast;
10465 for (MediumLockList::Base::const_iterator it = mediumListBegin;
10466 it != mediumListEnd;
10467 ++it)
10468 {
10469 const MediumLock &mediumLock = *it;
10470 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
10471 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
10472
10473 /* sanity check */
10474 if (it == mediumListLast)
10475 Assert(pMedium->m->state == MediumState_LockedWrite);
10476 else
10477 Assert(pMedium->m->state == MediumState_LockedRead);
10478
10479 /* Open all media but last in read-only mode. Do not handle
10480 * shareable media, as compaction and sharing are mutually
10481 * exclusive. */
10482 vrc = VDOpen(hdd,
10483 pMedium->m->strFormat.c_str(),
10484 pMedium->m->strLocationFull.c_str(),
10485 m->uOpenFlagsDef | (it == mediumListLast ? VD_OPEN_FLAGS_NORMAL : VD_OPEN_FLAGS_READONLY),
10486 pMedium->m->vdImageIfaces);
10487 if (RT_FAILURE(vrc))
10488 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
10489 tr("Could not open the medium storage unit '%s'%s"),
10490 pMedium->m->strLocationFull.c_str(),
10491 i_vdError(vrc).c_str());
10492 }
10493
10494 Assert(m->state == MediumState_LockedWrite);
10495
10496 Utf8Str location(m->strLocationFull);
10497
10498 /* unlock before the potentially lengthy operation */
10499 thisLock.release();
10500
10501 vrc = VDCompact(hdd, VD_LAST_IMAGE, task.mVDOperationIfaces);
10502 if (RT_FAILURE(vrc))
10503 {
10504 if (vrc == VERR_NOT_SUPPORTED)
10505 throw setErrorBoth(VBOX_E_NOT_SUPPORTED, vrc,
10506 tr("Compacting is not yet supported for medium '%s'"),
10507 location.c_str());
10508 else if (vrc == VERR_NOT_IMPLEMENTED)
10509 throw setErrorBoth(E_NOTIMPL, vrc,
10510 tr("Compacting is not implemented, medium '%s'"),
10511 location.c_str());
10512 else
10513 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
10514 tr("Could not compact medium '%s'%s"),
10515 location.c_str(),
10516 i_vdError(vrc).c_str());
10517 }
10518 }
10519 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
10520
10521 VDDestroy(hdd);
10522 }
10523 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
10524
10525 if (task.NotifyAboutChanges() && SUCCEEDED(hrc))
10526 m->pVirtualBox->i_onMediumConfigChanged(this);
10527
10528 /* Everything is explicitly unlocked when the task exits,
10529 * as the task destruction also destroys the media chain. */
10530
10531 return hrc;
10532}
10533
10534/**
10535 * Implementation code for the "resize" task.
10536 *
10537 * @param task
10538 * @return
10539 */
10540HRESULT Medium::i_taskResizeHandler(Medium::ResizeTask &task)
10541{
10542 HRESULT hrc = S_OK;
10543
10544 uint64_t size = 0, logicalSize = 0;
10545
10546 try
10547 {
10548 /* The lock is also used as a signal from the task initiator (which
10549 * releases it only after RTThreadCreate()) that we can start the job */
10550 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
10551
10552 PVDISK hdd;
10553 int vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &hdd);
10554 ComAssertRCThrow(vrc, E_FAIL);
10555
10556 try
10557 {
10558 /* Open all media in the chain. */
10559 MediumLockList::Base::const_iterator mediumListBegin =
10560 task.mpMediumLockList->GetBegin();
10561 MediumLockList::Base::const_iterator mediumListEnd =
10562 task.mpMediumLockList->GetEnd();
10563 MediumLockList::Base::const_iterator mediumListLast =
10564 mediumListEnd;
10565 --mediumListLast;
10566 for (MediumLockList::Base::const_iterator it = mediumListBegin;
10567 it != mediumListEnd;
10568 ++it)
10569 {
10570 const MediumLock &mediumLock = *it;
10571 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
10572 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
10573
10574 /* sanity check */
10575 if (it == mediumListLast)
10576 Assert(pMedium->m->state == MediumState_LockedWrite);
10577 else
10578 Assert(pMedium->m->state == MediumState_LockedRead ||
10579 // Allow resize the target image during mergeTo in case
10580 // of direction from parent to child because all intermediate
10581 // images are marked to MediumState_Deleting and will be
10582 // destroyed after successful merge
10583 pMedium->m->state == MediumState_Deleting);
10584
10585 /* Open all media but last in read-only mode. Do not handle
10586 * shareable media, as compaction and sharing are mutually
10587 * exclusive. */
10588 vrc = VDOpen(hdd,
10589 pMedium->m->strFormat.c_str(),
10590 pMedium->m->strLocationFull.c_str(),
10591 m->uOpenFlagsDef | (it == mediumListLast ? VD_OPEN_FLAGS_NORMAL : VD_OPEN_FLAGS_READONLY),
10592 pMedium->m->vdImageIfaces);
10593 if (RT_FAILURE(vrc))
10594 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
10595 tr("Could not open the medium storage unit '%s'%s"),
10596 pMedium->m->strLocationFull.c_str(),
10597 i_vdError(vrc).c_str());
10598 }
10599
10600 Assert(m->state == MediumState_LockedWrite);
10601
10602 Utf8Str location(m->strLocationFull);
10603
10604 /* unlock before the potentially lengthy operation */
10605 thisLock.release();
10606
10607 VDGEOMETRY geo = {0, 0, 0}; /* auto */
10608 vrc = VDResize(hdd, task.mSize, &geo, &geo, task.mVDOperationIfaces);
10609 if (RT_FAILURE(vrc))
10610 {
10611 if (vrc == VERR_VD_SHRINK_NOT_SUPPORTED)
10612 throw setErrorBoth(VBOX_E_NOT_SUPPORTED, vrc,
10613 tr("Shrinking is not yet supported for medium '%s'"),
10614 location.c_str());
10615 if (vrc == VERR_NOT_SUPPORTED)
10616 throw setErrorBoth(VBOX_E_NOT_SUPPORTED, vrc,
10617 tr("Resizing to new size %llu is not yet supported for medium '%s'"),
10618 task.mSize, location.c_str());
10619 else if (vrc == VERR_NOT_IMPLEMENTED)
10620 throw setErrorBoth(E_NOTIMPL, vrc,
10621 tr("Resizing is not implemented, medium '%s'"),
10622 location.c_str());
10623 else
10624 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
10625 tr("Could not resize medium '%s'%s"),
10626 location.c_str(),
10627 i_vdError(vrc).c_str());
10628 }
10629 size = VDGetFileSize(hdd, VD_LAST_IMAGE);
10630 logicalSize = VDGetSize(hdd, VD_LAST_IMAGE);
10631 }
10632 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
10633
10634 VDDestroy(hdd);
10635 }
10636 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
10637
10638 if (SUCCEEDED(hrc))
10639 {
10640 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
10641 m->size = size;
10642 m->logicalSize = logicalSize;
10643
10644 if (task.NotifyAboutChanges())
10645 m->pVirtualBox->i_onMediumConfigChanged(this);
10646 }
10647
10648 /* Everything is explicitly unlocked when the task exits,
10649 * as the task destruction also destroys the media chain. */
10650
10651 return hrc;
10652}
10653
10654/**
10655 * Implementation code for the "import" task.
10656 *
10657 * This only gets started from Medium::importFile() and always runs
10658 * asynchronously. It potentially touches the media registry, so we
10659 * always save the VirtualBox.xml file when we're done here.
10660 *
10661 * @param task
10662 * @return
10663 */
10664HRESULT Medium::i_taskImportHandler(Medium::ImportTask &task)
10665{
10666 /** @todo r=klaus The code below needs to be double checked with regard
10667 * to lock order violations, it probably causes lock order issues related
10668 * to the AutoCaller usage. */
10669 HRESULT hrcTmp = S_OK;
10670
10671 const ComObjPtr<Medium> &pParent = task.mParent;
10672
10673 bool fCreatingTarget = false;
10674
10675 uint64_t size = 0, logicalSize = 0;
10676 MediumVariant_T variant = MediumVariant_Standard;
10677 bool fGenerateUuid = false;
10678
10679 try
10680 {
10681 if (!pParent.isNull())
10682 if (pParent->i_getDepth() >= SETTINGS_MEDIUM_DEPTH_MAX)
10683 {
10684 AutoReadLock plock(pParent COMMA_LOCKVAL_SRC_POS);
10685 throw setError(VBOX_E_INVALID_OBJECT_STATE,
10686 tr("Cannot import image for medium '%s', because it exceeds the medium tree depth limit. Please merge some images which you no longer need"),
10687 pParent->m->strLocationFull.c_str());
10688 }
10689
10690 /* Lock all in {parent,child} order. The lock is also used as a
10691 * signal from the task initiator (which releases it only after
10692 * RTThreadCreate()) that we can start the job. */
10693 AutoMultiWriteLock2 thisLock(this, pParent COMMA_LOCKVAL_SRC_POS);
10694
10695 fCreatingTarget = m->state == MediumState_Creating;
10696
10697 /* The object may request a specific UUID (through a special form of
10698 * the moveTo() argument). Otherwise we have to generate it */
10699 Guid targetId = m->id;
10700
10701 fGenerateUuid = targetId.isZero();
10702 if (fGenerateUuid)
10703 {
10704 targetId.create();
10705 /* VirtualBox::i_registerMedium() will need UUID */
10706 unconst(m->id) = targetId;
10707 }
10708
10709
10710 PVDISK hdd;
10711 int vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &hdd);
10712 ComAssertRCThrow(vrc, E_FAIL);
10713
10714 try
10715 {
10716 /* Open source medium. */
10717 vrc = VDOpen(hdd,
10718 task.mFormat->i_getId().c_str(),
10719 task.mFilename.c_str(),
10720 VD_OPEN_FLAGS_READONLY | VD_OPEN_FLAGS_SEQUENTIAL | m->uOpenFlagsDef,
10721 task.mVDImageIfaces);
10722 if (RT_FAILURE(vrc))
10723 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
10724 tr("Could not open the medium storage unit '%s'%s"),
10725 task.mFilename.c_str(),
10726 i_vdError(vrc).c_str());
10727
10728 Utf8Str targetFormat(m->strFormat);
10729 Utf8Str targetLocation(m->strLocationFull);
10730 uint64_t capabilities = task.mFormat->i_getCapabilities();
10731
10732 Assert( m->state == MediumState_Creating
10733 || m->state == MediumState_LockedWrite);
10734 Assert( pParent.isNull()
10735 || pParent->m->state == MediumState_LockedRead);
10736
10737 /* unlock before the potentially lengthy operation */
10738 thisLock.release();
10739
10740 /* ensure the target directory exists */
10741 if (capabilities & MediumFormatCapabilities_File)
10742 {
10743 HRESULT hrc = VirtualBox::i_ensureFilePathExists(targetLocation,
10744 !(task.mVariant & MediumVariant_NoCreateDir) /* fCreate */);
10745 if (FAILED(hrc))
10746 throw hrc;
10747 }
10748
10749 PVDISK targetHdd;
10750 vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &targetHdd);
10751 ComAssertRCThrow(vrc, E_FAIL);
10752
10753 try
10754 {
10755 /* Open all media in the target chain. */
10756 MediumLockList::Base::const_iterator targetListBegin =
10757 task.mpTargetMediumLockList->GetBegin();
10758 MediumLockList::Base::const_iterator targetListEnd =
10759 task.mpTargetMediumLockList->GetEnd();
10760 for (MediumLockList::Base::const_iterator it = targetListBegin;
10761 it != targetListEnd;
10762 ++it)
10763 {
10764 const MediumLock &mediumLock = *it;
10765 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
10766
10767 /* If the target medium is not created yet there's no
10768 * reason to open it. */
10769 if (pMedium == this && fCreatingTarget)
10770 continue;
10771
10772 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
10773
10774 /* sanity check */
10775 Assert( pMedium->m->state == MediumState_LockedRead
10776 || pMedium->m->state == MediumState_LockedWrite);
10777
10778 unsigned uOpenFlags = VD_OPEN_FLAGS_NORMAL;
10779 if (pMedium->m->state != MediumState_LockedWrite)
10780 uOpenFlags = VD_OPEN_FLAGS_READONLY;
10781 if (pMedium->m->type == MediumType_Shareable)
10782 uOpenFlags |= VD_OPEN_FLAGS_SHAREABLE;
10783
10784 /* Open all media in appropriate mode. */
10785 vrc = VDOpen(targetHdd,
10786 pMedium->m->strFormat.c_str(),
10787 pMedium->m->strLocationFull.c_str(),
10788 uOpenFlags | m->uOpenFlagsDef,
10789 pMedium->m->vdImageIfaces);
10790 if (RT_FAILURE(vrc))
10791 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
10792 tr("Could not open the medium storage unit '%s'%s"),
10793 pMedium->m->strLocationFull.c_str(),
10794 i_vdError(vrc).c_str());
10795 }
10796
10797 vrc = VDCopy(hdd,
10798 VD_LAST_IMAGE,
10799 targetHdd,
10800 targetFormat.c_str(),
10801 (fCreatingTarget) ? targetLocation.c_str() : (char *)NULL,
10802 false /* fMoveByRename */,
10803 0 /* cbSize */,
10804 task.mVariant & ~(MediumVariant_NoCreateDir | MediumVariant_Formatted | MediumVariant_VmdkESX | MediumVariant_VmdkRawDisk),
10805 targetId.raw(),
10806 VD_OPEN_FLAGS_NORMAL,
10807 NULL /* pVDIfsOperation */,
10808 m->vdImageIfaces,
10809 task.mVDOperationIfaces);
10810 if (RT_FAILURE(vrc))
10811 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
10812 tr("Could not create the imported medium '%s'%s"),
10813 targetLocation.c_str(), i_vdError(vrc).c_str());
10814
10815 size = VDGetFileSize(targetHdd, VD_LAST_IMAGE);
10816 logicalSize = VDGetSize(targetHdd, VD_LAST_IMAGE);
10817 unsigned uImageFlags;
10818 vrc = VDGetImageFlags(targetHdd, 0, &uImageFlags);
10819 if (RT_SUCCESS(vrc))
10820 variant = (MediumVariant_T)uImageFlags;
10821 }
10822 catch (HRESULT hrcXcpt) { hrcTmp = hrcXcpt; }
10823
10824 VDDestroy(targetHdd);
10825 }
10826 catch (HRESULT hrcXcpt) { hrcTmp = hrcXcpt; }
10827
10828 VDDestroy(hdd);
10829 }
10830 catch (HRESULT hrcXcpt) { hrcTmp = hrcXcpt; }
10831
10832 ErrorInfoKeeper eik;
10833 MultiResult mrc(hrcTmp);
10834
10835 /* Only do the parent changes for newly created media. */
10836 if (SUCCEEDED(mrc) && fCreatingTarget)
10837 {
10838 /* we set m->pParent & children() */
10839 AutoWriteLock treeLock(m->pVirtualBox->i_getMediaTreeLockHandle() COMMA_LOCKVAL_SRC_POS);
10840
10841 Assert(m->pParent.isNull());
10842
10843 if (pParent)
10844 {
10845 /* Associate the imported medium with the parent and deassociate
10846 * from VirtualBox. Depth check above. */
10847 i_setParent(pParent);
10848
10849 /* register with mVirtualBox as the last step and move to
10850 * Created state only on success (leaving an orphan file is
10851 * better than breaking media registry consistency) */
10852 eik.restore();
10853 ComObjPtr<Medium> pMedium;
10854 mrc = pParent->m->pVirtualBox->i_registerMedium(this, &pMedium,
10855 treeLock);
10856 Assert(this == pMedium);
10857 eik.fetch();
10858
10859 if (FAILED(mrc))
10860 /* break parent association on failure to register */
10861 this->i_deparent(); // removes target from parent
10862 }
10863 else
10864 {
10865 /* just register */
10866 eik.restore();
10867 ComObjPtr<Medium> pMedium;
10868 mrc = m->pVirtualBox->i_registerMedium(this, &pMedium, treeLock);
10869 Assert(this == pMedium);
10870 eik.fetch();
10871 }
10872 }
10873
10874 if (fCreatingTarget)
10875 {
10876 AutoWriteLock mLock(this COMMA_LOCKVAL_SRC_POS);
10877
10878 if (SUCCEEDED(mrc))
10879 {
10880 m->state = MediumState_Created;
10881
10882 m->size = size;
10883 m->logicalSize = logicalSize;
10884 m->variant = variant;
10885 }
10886 else
10887 {
10888 /* back to NotCreated on failure */
10889 m->state = MediumState_NotCreated;
10890
10891 /* reset UUID to prevent it from being reused next time */
10892 if (fGenerateUuid)
10893 unconst(m->id).clear();
10894 }
10895 }
10896
10897 // now, at the end of this task (always asynchronous), save the settings
10898 {
10899 // save the settings
10900 i_markRegistriesModified();
10901 /* collect multiple errors */
10902 eik.restore();
10903 m->pVirtualBox->i_saveModifiedRegistries();
10904 eik.fetch();
10905 }
10906
10907 /* Everything is explicitly unlocked when the task exits,
10908 * as the task destruction also destroys the target chain. */
10909
10910 /* Make sure the target chain is released early, otherwise it can
10911 * lead to deadlocks with concurrent IAppliance activities. */
10912 task.mpTargetMediumLockList->Clear();
10913
10914 if (task.NotifyAboutChanges() && SUCCEEDED(mrc))
10915 {
10916 if (pParent)
10917 m->pVirtualBox->i_onMediumConfigChanged(pParent);
10918 if (fCreatingTarget)
10919 m->pVirtualBox->i_onMediumConfigChanged(this);
10920 else
10921 m->pVirtualBox->i_onMediumRegistered(m->id, m->devType, TRUE);
10922 }
10923
10924 return mrc;
10925}
10926
10927/**
10928 * Sets up the encryption settings for a filter.
10929 */
10930void Medium::i_taskEncryptSettingsSetup(MediumCryptoFilterSettings *pSettings, const char *pszCipher,
10931 const char *pszKeyStore, const char *pszPassword,
10932 bool fCreateKeyStore)
10933{
10934 pSettings->pszCipher = pszCipher;
10935 pSettings->pszPassword = pszPassword;
10936 pSettings->pszKeyStoreLoad = pszKeyStore;
10937 pSettings->fCreateKeyStore = fCreateKeyStore;
10938 pSettings->pbDek = NULL;
10939 pSettings->cbDek = 0;
10940 pSettings->vdFilterIfaces = NULL;
10941
10942 pSettings->vdIfCfg.pfnAreKeysValid = i_vdCryptoConfigAreKeysValid;
10943 pSettings->vdIfCfg.pfnQuerySize = i_vdCryptoConfigQuerySize;
10944 pSettings->vdIfCfg.pfnQuery = i_vdCryptoConfigQuery;
10945 pSettings->vdIfCfg.pfnQueryBytes = NULL;
10946
10947 pSettings->vdIfCrypto.pfnKeyRetain = i_vdCryptoKeyRetain;
10948 pSettings->vdIfCrypto.pfnKeyRelease = i_vdCryptoKeyRelease;
10949 pSettings->vdIfCrypto.pfnKeyStorePasswordRetain = i_vdCryptoKeyStorePasswordRetain;
10950 pSettings->vdIfCrypto.pfnKeyStorePasswordRelease = i_vdCryptoKeyStorePasswordRelease;
10951 pSettings->vdIfCrypto.pfnKeyStoreSave = i_vdCryptoKeyStoreSave;
10952 pSettings->vdIfCrypto.pfnKeyStoreReturnParameters = i_vdCryptoKeyStoreReturnParameters;
10953
10954 int vrc = VDInterfaceAdd(&pSettings->vdIfCfg.Core,
10955 "Medium::vdInterfaceCfgCrypto",
10956 VDINTERFACETYPE_CONFIG, pSettings,
10957 sizeof(VDINTERFACECONFIG), &pSettings->vdFilterIfaces);
10958 AssertRC(vrc);
10959
10960 vrc = VDInterfaceAdd(&pSettings->vdIfCrypto.Core,
10961 "Medium::vdInterfaceCrypto",
10962 VDINTERFACETYPE_CRYPTO, pSettings,
10963 sizeof(VDINTERFACECRYPTO), &pSettings->vdFilterIfaces);
10964 AssertRC(vrc);
10965}
10966
10967/**
10968 * Implementation code for the "encrypt" task.
10969 *
10970 * @param task
10971 * @return
10972 */
10973HRESULT Medium::i_taskEncryptHandler(Medium::EncryptTask &task)
10974{
10975# ifndef VBOX_WITH_EXTPACK
10976 RT_NOREF(task);
10977# endif
10978 HRESULT hrc = S_OK;
10979
10980 /* Lock all in {parent,child} order. The lock is also used as a
10981 * signal from the task initiator (which releases it only after
10982 * RTThreadCreate()) that we can start the job. */
10983 ComObjPtr<Medium> pBase = i_getBase();
10984 AutoWriteLock thisLock(this COMMA_LOCKVAL_SRC_POS);
10985
10986 try
10987 {
10988# ifdef VBOX_WITH_EXTPACK
10989 ExtPackManager *pExtPackManager = m->pVirtualBox->i_getExtPackManager();
10990 if (pExtPackManager->i_isExtPackUsable(ORACLE_PUEL_EXTPACK_NAME))
10991 {
10992 /* Load the plugin */
10993 Utf8Str strPlugin;
10994 hrc = pExtPackManager->i_getLibraryPathForExtPack(g_szVDPlugin, ORACLE_PUEL_EXTPACK_NAME, &strPlugin);
10995 if (SUCCEEDED(hrc))
10996 {
10997 int vrc = VDPluginLoadFromFilename(strPlugin.c_str());
10998 if (RT_FAILURE(vrc))
10999 throw setErrorBoth(VBOX_E_NOT_SUPPORTED, vrc,
11000 tr("Encrypting the image failed because the encryption plugin could not be loaded (%s)"),
11001 i_vdError(vrc).c_str());
11002 }
11003 else
11004 throw setError(VBOX_E_NOT_SUPPORTED,
11005 tr("Encryption is not supported because the extension pack '%s' is missing the encryption plugin (old extension pack installed?)"),
11006 ORACLE_PUEL_EXTPACK_NAME);
11007 }
11008 else
11009 throw setError(VBOX_E_NOT_SUPPORTED,
11010 tr("Encryption is not supported because the extension pack '%s' is missing"),
11011 ORACLE_PUEL_EXTPACK_NAME);
11012
11013 PVDISK pDisk = NULL;
11014 int vrc = VDCreate(m->vdDiskIfaces, i_convertDeviceType(), &pDisk);
11015 ComAssertRCThrow(vrc, E_FAIL);
11016
11017 MediumCryptoFilterSettings CryptoSettingsRead;
11018 MediumCryptoFilterSettings CryptoSettingsWrite;
11019
11020 void *pvBuf = NULL;
11021 const char *pszPasswordNew = NULL;
11022 try
11023 {
11024 /* Set up disk encryption filters. */
11025 if (task.mstrCurrentPassword.isEmpty())
11026 {
11027 /*
11028 * Query whether the medium property indicating that encryption is
11029 * configured is existing.
11030 */
11031 settings::StringsMap::iterator it = pBase->m->mapProperties.find("CRYPT/KeyStore");
11032 if (it != pBase->m->mapProperties.end())
11033 throw setError(VBOX_E_PASSWORD_INCORRECT,
11034 tr("The password given for the encrypted image is incorrect"));
11035 }
11036 else
11037 {
11038 settings::StringsMap::iterator it = pBase->m->mapProperties.find("CRYPT/KeyStore");
11039 if (it == pBase->m->mapProperties.end())
11040 throw setError(VBOX_E_INVALID_OBJECT_STATE,
11041 tr("The image is not configured for encryption"));
11042
11043 i_taskEncryptSettingsSetup(&CryptoSettingsRead, NULL, it->second.c_str(), task.mstrCurrentPassword.c_str(),
11044 false /* fCreateKeyStore */);
11045 vrc = VDFilterAdd(pDisk, "CRYPT", VD_FILTER_FLAGS_READ, CryptoSettingsRead.vdFilterIfaces);
11046 if (vrc == VERR_VD_PASSWORD_INCORRECT)
11047 throw setError(VBOX_E_PASSWORD_INCORRECT,
11048 tr("The password to decrypt the image is incorrect"));
11049 else if (RT_FAILURE(vrc))
11050 throw setError(VBOX_E_INVALID_OBJECT_STATE,
11051 tr("Failed to load the decryption filter: %s"),
11052 i_vdError(vrc).c_str());
11053 }
11054
11055 if (task.mstrCipher.isNotEmpty())
11056 {
11057 if ( task.mstrNewPassword.isEmpty()
11058 && task.mstrNewPasswordId.isEmpty()
11059 && task.mstrCurrentPassword.isNotEmpty())
11060 {
11061 /* An empty password and password ID will default to the current password. */
11062 pszPasswordNew = task.mstrCurrentPassword.c_str();
11063 }
11064 else if (task.mstrNewPassword.isEmpty())
11065 throw setError(VBOX_E_OBJECT_NOT_FOUND,
11066 tr("A password must be given for the image encryption"));
11067 else if (task.mstrNewPasswordId.isEmpty())
11068 throw setError(VBOX_E_INVALID_OBJECT_STATE,
11069 tr("A valid identifier for the password must be given"));
11070 else
11071 pszPasswordNew = task.mstrNewPassword.c_str();
11072
11073 i_taskEncryptSettingsSetup(&CryptoSettingsWrite, task.mstrCipher.c_str(), NULL,
11074 pszPasswordNew, true /* fCreateKeyStore */);
11075 vrc = VDFilterAdd(pDisk, "CRYPT", VD_FILTER_FLAGS_WRITE, CryptoSettingsWrite.vdFilterIfaces);
11076 if (RT_FAILURE(vrc))
11077 throw setErrorBoth(VBOX_E_INVALID_OBJECT_STATE, vrc,
11078 tr("Failed to load the encryption filter: %s"),
11079 i_vdError(vrc).c_str());
11080 }
11081 else if (task.mstrNewPasswordId.isNotEmpty() || task.mstrNewPassword.isNotEmpty())
11082 throw setError(VBOX_E_INVALID_OBJECT_STATE,
11083 tr("The password and password identifier must be empty if the output should be unencrypted"));
11084
11085 /* Open all media in the chain. */
11086 MediumLockList::Base::const_iterator mediumListBegin =
11087 task.mpMediumLockList->GetBegin();
11088 MediumLockList::Base::const_iterator mediumListEnd =
11089 task.mpMediumLockList->GetEnd();
11090 MediumLockList::Base::const_iterator mediumListLast =
11091 mediumListEnd;
11092 --mediumListLast;
11093 for (MediumLockList::Base::const_iterator it = mediumListBegin;
11094 it != mediumListEnd;
11095 ++it)
11096 {
11097 const MediumLock &mediumLock = *it;
11098 const ComObjPtr<Medium> &pMedium = mediumLock.GetMedium();
11099 AutoReadLock alock(pMedium COMMA_LOCKVAL_SRC_POS);
11100
11101 Assert(pMedium->m->state == MediumState_LockedWrite);
11102
11103 /* Open all media but last in read-only mode. Do not handle
11104 * shareable media, as compaction and sharing are mutually
11105 * exclusive. */
11106 vrc = VDOpen(pDisk,
11107 pMedium->m->strFormat.c_str(),
11108 pMedium->m->strLocationFull.c_str(),
11109 m->uOpenFlagsDef | (it == mediumListLast ? VD_OPEN_FLAGS_NORMAL : VD_OPEN_FLAGS_READONLY),
11110 pMedium->m->vdImageIfaces);
11111 if (RT_FAILURE(vrc))
11112 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
11113 tr("Could not open the medium storage unit '%s'%s"),
11114 pMedium->m->strLocationFull.c_str(),
11115 i_vdError(vrc).c_str());
11116 }
11117
11118 Assert(m->state == MediumState_LockedWrite);
11119
11120 Utf8Str location(m->strLocationFull);
11121
11122 /* unlock before the potentially lengthy operation */
11123 thisLock.release();
11124
11125 vrc = VDPrepareWithFilters(pDisk, task.mVDOperationIfaces);
11126 if (RT_FAILURE(vrc))
11127 throw setErrorBoth(VBOX_E_FILE_ERROR, vrc,
11128 tr("Could not prepare disk images for encryption (%Rrc): %s"),
11129 vrc, i_vdError(vrc).c_str());
11130
11131 thisLock.acquire();
11132 /* If everything went well set the new key store. */
11133 settings::StringsMap::iterator it = pBase->m->mapProperties.find("CRYPT/KeyStore");
11134 if (it != pBase->m->mapProperties.end())
11135 pBase->m->mapProperties.erase(it);
11136
11137 /* Delete KeyId if encryption is removed or the password did change. */
11138 if ( task.mstrNewPasswordId.isNotEmpty()
11139 || task.mstrCipher.isEmpty())
11140 {
11141 it = pBase->m->mapProperties.find("CRYPT/KeyId");
11142 if (it != pBase->m->mapProperties.end())
11143 pBase->m->mapProperties.erase(it);
11144 }
11145
11146 if (CryptoSettingsWrite.pszKeyStore)
11147 {
11148 pBase->m->mapProperties["CRYPT/KeyStore"] = Utf8Str(CryptoSettingsWrite.pszKeyStore);
11149 if (task.mstrNewPasswordId.isNotEmpty())
11150 pBase->m->mapProperties["CRYPT/KeyId"] = task.mstrNewPasswordId;
11151 }
11152
11153 if (CryptoSettingsRead.pszCipherReturned)
11154 RTStrFree(CryptoSettingsRead.pszCipherReturned);
11155
11156 if (CryptoSettingsWrite.pszCipherReturned)
11157 RTStrFree(CryptoSettingsWrite.pszCipherReturned);
11158
11159 thisLock.release();
11160 pBase->i_markRegistriesModified();
11161 m->pVirtualBox->i_saveModifiedRegistries();
11162 }
11163 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
11164
11165 if (pvBuf)
11166 RTMemFree(pvBuf);
11167
11168 VDDestroy(pDisk);
11169# else
11170 throw setError(VBOX_E_NOT_SUPPORTED,
11171 tr("Encryption is not supported because extension pack support is not built in"));
11172# endif
11173 }
11174 catch (HRESULT hrcXcpt) { hrc = hrcXcpt; }
11175
11176 /* Everything is explicitly unlocked when the task exits,
11177 * as the task destruction also destroys the media chain. */
11178
11179 return hrc;
11180}
11181
11182/* vi: set tabstop=4 shiftwidth=4 expandtab: */
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