VirtualBox

source: vbox/trunk/src/VBox/Main/src-server/ApplianceImpl.cpp@ 78186

Last change on this file since 78186 was 78101, checked in by vboxsync, 6 years ago

Main: Appliance::i_searchUniqueImageFilePath: Untested attempt to clean up some leaky overcooked spaghetti-code.

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1/* $Id: ApplianceImpl.cpp 78101 2019-04-10 16:56:12Z vboxsync $ */
2/** @file
3 * IAppliance and IVirtualSystem COM class implementations.
4 */
5
6/*
7 * Copyright (C) 2008-2019 Oracle Corporation
8 *
9 * This file is part of VirtualBox Open Source Edition (OSE), as
10 * available from http://www.virtualbox.org. This file is free software;
11 * you can redistribute it and/or modify it under the terms of the GNU
12 * General Public License (GPL) as published by the Free Software
13 * Foundation, in version 2 as it comes in the "COPYING" file of the
14 * VirtualBox OSE distribution. VirtualBox OSE is distributed in the
15 * hope that it will be useful, but WITHOUT ANY WARRANTY of any kind.
16 */
17
18
19/*********************************************************************************************************************************
20* Header Files *
21*********************************************************************************************************************************/
22#define LOG_GROUP LOG_GROUP_MAIN_APPLIANCE
23#include <iprt/path.h>
24#include <iprt/cpp/path.h>
25#include <iprt/cpp/utils.h>
26#include <VBox/com/array.h>
27#include <map>
28
29#include "ApplianceImpl.h"
30#include "VFSExplorerImpl.h"
31#include "VirtualBoxImpl.h"
32#include "GuestOSTypeImpl.h"
33#include "Global.h"
34#include "ProgressImpl.h"
35#include "MachineImpl.h"
36#include "SystemPropertiesImpl.h"
37#include "AutoCaller.h"
38#include "LoggingNew.h"
39#include "CertificateImpl.h"
40
41#include "ApplianceImplPrivate.h"
42
43using namespace std;
44
45
46/*********************************************************************************************************************************
47* Global Variables *
48*********************************************************************************************************************************/
49static const char * const g_pszISOURI = "http://www.ecma-international.org/publications/standards/Ecma-119.htm";
50static const char * const g_pszVMDKStreamURI = "http://www.vmware.com/interfaces/specifications/vmdk.html#streamOptimized";
51static const char * const g_pszVMDKSparseURI = "http://www.vmware.com/specifications/vmdk.html#sparse";
52static const char * const g_pszVMDKCompressedURI = "http://www.vmware.com/specifications/vmdk.html#compressed";
53static const char * const g_pszVMDKCompressedURI2 = "http://www.vmware.com/interfaces/specifications/vmdk.html#compressed";
54static const char * const g_pszrVHDURI = "http://go.microsoft.com/fwlink/?LinkId=137171";
55static char g_szIsoBackend[128];
56static char g_szVmdkBackend[128];
57static char g_szVhdBackend[128];
58/** Set after the g_szXxxxBackend variables has been initialized. */
59static bool volatile g_fInitializedBackendNames = false;
60
61static struct
62{
63 const char *pszUri, *pszBackend;
64} const g_aUriToBackend[] =
65{
66 { g_pszISOURI, g_szIsoBackend },
67 { g_pszVMDKStreamURI, g_szVmdkBackend },
68 { g_pszVMDKSparseURI, g_szVmdkBackend },
69 { g_pszVMDKCompressedURI, g_szVmdkBackend },
70 { g_pszVMDKCompressedURI2, g_szVmdkBackend },
71 { g_pszrVHDURI, g_szVhdBackend },
72};
73
74static std::map<Utf8Str, Utf8Str> supportedStandardsURI;
75
76static struct
77{
78 ovf::CIMOSType_T cim;
79 VBOXOSTYPE osType;
80} const g_aOsTypes[] =
81{
82 { ovf::CIMOSType_CIMOS_Unknown, VBOXOSTYPE_Unknown },
83 { ovf::CIMOSType_CIMOS_OS2, VBOXOSTYPE_OS2 },
84 { ovf::CIMOSType_CIMOS_OS2, VBOXOSTYPE_OS2Warp3 },
85 { ovf::CIMOSType_CIMOS_OS2, VBOXOSTYPE_OS2Warp4 },
86 { ovf::CIMOSType_CIMOS_OS2, VBOXOSTYPE_OS2Warp45 },
87 { ovf::CIMOSType_CIMOS_MSDOS, VBOXOSTYPE_DOS },
88 { ovf::CIMOSType_CIMOS_WIN3x, VBOXOSTYPE_Win31 },
89 { ovf::CIMOSType_CIMOS_WIN95, VBOXOSTYPE_Win95 },
90 { ovf::CIMOSType_CIMOS_WIN98, VBOXOSTYPE_Win98 },
91 { ovf::CIMOSType_CIMOS_WINNT, VBOXOSTYPE_WinNT },
92 { ovf::CIMOSType_CIMOS_WINNT, VBOXOSTYPE_WinNT4 },
93 { ovf::CIMOSType_CIMOS_WINNT, VBOXOSTYPE_WinNT3x },
94 { ovf::CIMOSType_CIMOS_NetWare, VBOXOSTYPE_Netware },
95 { ovf::CIMOSType_CIMOS_NovellOES, VBOXOSTYPE_Netware },
96 { ovf::CIMOSType_CIMOS_Solaris, VBOXOSTYPE_Solaris },
97 { ovf::CIMOSType_CIMOS_SunOS, VBOXOSTYPE_Solaris },
98 { ovf::CIMOSType_CIMOS_FreeBSD, VBOXOSTYPE_FreeBSD },
99 { ovf::CIMOSType_CIMOS_NetBSD, VBOXOSTYPE_NetBSD },
100 { ovf::CIMOSType_CIMOS_QNX, VBOXOSTYPE_QNX },
101 { ovf::CIMOSType_CIMOS_Windows2000, VBOXOSTYPE_Win2k },
102 { ovf::CIMOSType_CIMOS_WindowsMe, VBOXOSTYPE_WinMe },
103 { ovf::CIMOSType_CIMOS_OpenBSD, VBOXOSTYPE_OpenBSD },
104 { ovf::CIMOSType_CIMOS_WindowsXP, VBOXOSTYPE_WinXP },
105 { ovf::CIMOSType_CIMOS_WindowsXPEmbedded, VBOXOSTYPE_WinXP },
106 { ovf::CIMOSType_CIMOS_WindowsEmbeddedforPointofService, VBOXOSTYPE_WinXP },
107 { ovf::CIMOSType_CIMOS_MicrosoftWindowsServer2003, VBOXOSTYPE_Win2k3 },
108 { ovf::CIMOSType_CIMOS_MicrosoftWindowsServer2003_64, VBOXOSTYPE_Win2k3_x64 },
109 { ovf::CIMOSType_CIMOS_WindowsXP_64, VBOXOSTYPE_WinXP_x64 },
110 { ovf::CIMOSType_CIMOS_WindowsVista, VBOXOSTYPE_WinVista },
111 { ovf::CIMOSType_CIMOS_WindowsVista_64, VBOXOSTYPE_WinVista_x64 },
112 { ovf::CIMOSType_CIMOS_MicrosoftWindowsServer2008, VBOXOSTYPE_Win2k8 },
113 { ovf::CIMOSType_CIMOS_MicrosoftWindowsServer2008_64, VBOXOSTYPE_Win2k8_x64 },
114 { ovf::CIMOSType_CIMOS_FreeBSD_64, VBOXOSTYPE_FreeBSD_x64 },
115 { ovf::CIMOSType_CIMOS_MACOS, VBOXOSTYPE_MacOS },
116 { ovf::CIMOSType_CIMOS_MACOS, VBOXOSTYPE_MacOS_x64 }, // there is no CIM 64-bit type for this
117 { ovf::CIMOSType_CIMOS_MACOS, VBOXOSTYPE_MacOS106 },
118 { ovf::CIMOSType_CIMOS_MACOS, VBOXOSTYPE_MacOS106_x64 },
119 { ovf::CIMOSType_CIMOS_MACOS, VBOXOSTYPE_MacOS107_x64 },
120 { ovf::CIMOSType_CIMOS_MACOS, VBOXOSTYPE_MacOS108_x64 },
121 { ovf::CIMOSType_CIMOS_MACOS, VBOXOSTYPE_MacOS109_x64 },
122 { ovf::CIMOSType_CIMOS_MACOS, VBOXOSTYPE_MacOS1010_x64 },
123 { ovf::CIMOSType_CIMOS_MACOS, VBOXOSTYPE_MacOS1011_x64 },
124 { ovf::CIMOSType_CIMOS_MACOS, VBOXOSTYPE_MacOS1012_x64 },
125 { ovf::CIMOSType_CIMOS_MACOS, VBOXOSTYPE_MacOS1013_x64 },
126
127 // Linuxes
128 { ovf::CIMOSType_CIMOS_RedHatEnterpriseLinux, VBOXOSTYPE_RedHat },
129 { ovf::CIMOSType_CIMOS_RedHatEnterpriseLinux_64, VBOXOSTYPE_RedHat_x64 },
130 { ovf::CIMOSType_CIMOS_Solaris_64, VBOXOSTYPE_Solaris_x64 },
131 { ovf::CIMOSType_CIMOS_SUSE, VBOXOSTYPE_OpenSUSE },
132 { ovf::CIMOSType_CIMOS_SLES, VBOXOSTYPE_OpenSUSE },
133 { ovf::CIMOSType_CIMOS_NovellLinuxDesktop, VBOXOSTYPE_OpenSUSE },
134 { ovf::CIMOSType_CIMOS_SUSE_64, VBOXOSTYPE_OpenSUSE_x64 },
135 { ovf::CIMOSType_CIMOS_SLES_64, VBOXOSTYPE_OpenSUSE_x64 },
136 { ovf::CIMOSType_CIMOS_LINUX, VBOXOSTYPE_Linux },
137 { ovf::CIMOSType_CIMOS_LINUX, VBOXOSTYPE_Linux22 },
138 { ovf::CIMOSType_CIMOS_SunJavaDesktopSystem, VBOXOSTYPE_Linux },
139 { ovf::CIMOSType_CIMOS_TurboLinux, VBOXOSTYPE_Turbolinux },
140 { ovf::CIMOSType_CIMOS_TurboLinux_64, VBOXOSTYPE_Turbolinux_x64 },
141 { ovf::CIMOSType_CIMOS_Mandriva, VBOXOSTYPE_Mandriva },
142 { ovf::CIMOSType_CIMOS_Mandriva_64, VBOXOSTYPE_Mandriva_x64 },
143 { ovf::CIMOSType_CIMOS_Ubuntu, VBOXOSTYPE_Ubuntu },
144 { ovf::CIMOSType_CIMOS_Ubuntu_64, VBOXOSTYPE_Ubuntu_x64 },
145 { ovf::CIMOSType_CIMOS_Debian, VBOXOSTYPE_Debian },
146 { ovf::CIMOSType_CIMOS_Debian_64, VBOXOSTYPE_Debian_x64 },
147 { ovf::CIMOSType_CIMOS_Linux_2_4_x, VBOXOSTYPE_Linux24 },
148 { ovf::CIMOSType_CIMOS_Linux_2_4_x_64, VBOXOSTYPE_Linux24_x64 },
149 { ovf::CIMOSType_CIMOS_Linux_2_6_x, VBOXOSTYPE_Linux26 },
150 { ovf::CIMOSType_CIMOS_Linux_2_6_x_64, VBOXOSTYPE_Linux26_x64 },
151 { ovf::CIMOSType_CIMOS_Linux_64, VBOXOSTYPE_Linux26_x64 },
152
153 // types that we have support for but CIM doesn't
154 { ovf::CIMOSType_CIMOS_Linux_2_6_x, VBOXOSTYPE_ArchLinux },
155 { ovf::CIMOSType_CIMOS_Linux_2_6_x_64, VBOXOSTYPE_ArchLinux_x64 },
156 { ovf::CIMOSType_CIMOS_Linux_2_6_x, VBOXOSTYPE_FedoraCore },
157 { ovf::CIMOSType_CIMOS_Linux_2_6_x_64, VBOXOSTYPE_FedoraCore_x64 },
158 { ovf::CIMOSType_CIMOS_Linux_2_6_x, VBOXOSTYPE_Gentoo },
159 { ovf::CIMOSType_CIMOS_Linux_2_6_x_64, VBOXOSTYPE_Gentoo_x64 },
160 { ovf::CIMOSType_CIMOS_Linux_2_6_x, VBOXOSTYPE_Xandros },
161 { ovf::CIMOSType_CIMOS_Linux_2_6_x_64, VBOXOSTYPE_Xandros_x64 },
162 { ovf::CIMOSType_CIMOS_Solaris, VBOXOSTYPE_OpenSolaris },
163 { ovf::CIMOSType_CIMOS_Solaris_64, VBOXOSTYPE_OpenSolaris_x64 },
164
165 // types added with CIM 2.25.0 follow:
166 { ovf::CIMOSType_CIMOS_WindowsServer2008R2, VBOXOSTYPE_Win2k8 }, // duplicate, see above
167// { ovf::CIMOSType_CIMOS_VMwareESXi = 104, // we can't run ESX in a VM
168 { ovf::CIMOSType_CIMOS_Windows7, VBOXOSTYPE_Win7 },
169 { ovf::CIMOSType_CIMOS_Windows7, VBOXOSTYPE_Win7_x64 }, // there is no
170 // CIM 64-bit type for this
171 { ovf::CIMOSType_CIMOS_CentOS, VBOXOSTYPE_RedHat },
172 { ovf::CIMOSType_CIMOS_CentOS_64, VBOXOSTYPE_RedHat_x64 },
173 { ovf::CIMOSType_CIMOS_OracleEnterpriseLinux, VBOXOSTYPE_Oracle },
174 { ovf::CIMOSType_CIMOS_OracleEnterpriseLinux_64, VBOXOSTYPE_Oracle_x64 },
175 { ovf::CIMOSType_CIMOS_eComStation, VBOXOSTYPE_ECS }
176
177 // there are no CIM types for these, so these turn to "other" on export:
178 // VBOXOSTYPE_OpenBSD
179 // VBOXOSTYPE_OpenBSD_x64
180 // VBOXOSTYPE_NetBSD
181 // VBOXOSTYPE_NetBSD_x64
182
183};
184
185/* Pattern structure for matching the OS type description field */
186struct osTypePattern
187{
188 const char *pcszPattern;
189 VBOXOSTYPE osType;
190};
191
192/* These are the 32-Bit ones. They are sorted by priority. */
193static const osTypePattern g_aOsTypesPattern[] =
194{
195 {"Windows NT", VBOXOSTYPE_WinNT4},
196 {"Windows XP", VBOXOSTYPE_WinXP},
197 {"Windows 2000", VBOXOSTYPE_Win2k},
198 {"Windows 2003", VBOXOSTYPE_Win2k3},
199 {"Windows Vista", VBOXOSTYPE_WinVista},
200 {"Windows 2008", VBOXOSTYPE_Win2k8},
201 {"SUSE", VBOXOSTYPE_OpenSUSE},
202 {"Novell", VBOXOSTYPE_OpenSUSE},
203 {"Red Hat", VBOXOSTYPE_RedHat},
204 {"Mandriva", VBOXOSTYPE_Mandriva},
205 {"Ubuntu", VBOXOSTYPE_Ubuntu},
206 {"Debian", VBOXOSTYPE_Debian},
207 {"QNX", VBOXOSTYPE_QNX},
208 {"Linux 2.4", VBOXOSTYPE_Linux24},
209 {"Linux 2.6", VBOXOSTYPE_Linux26},
210 {"Linux", VBOXOSTYPE_Linux},
211 {"OpenSolaris", VBOXOSTYPE_OpenSolaris},
212 {"Solaris", VBOXOSTYPE_OpenSolaris},
213 {"FreeBSD", VBOXOSTYPE_FreeBSD},
214 {"NetBSD", VBOXOSTYPE_NetBSD},
215 {"Windows 95", VBOXOSTYPE_Win95},
216 {"Windows 98", VBOXOSTYPE_Win98},
217 {"Windows Me", VBOXOSTYPE_WinMe},
218 {"Windows 3.", VBOXOSTYPE_Win31},
219 {"DOS", VBOXOSTYPE_DOS},
220 {"OS2", VBOXOSTYPE_OS2}
221};
222
223/* These are the 64-Bit ones. They are sorted by priority. */
224static const osTypePattern g_aOsTypesPattern64[] =
225{
226 {"Windows XP", VBOXOSTYPE_WinXP_x64},
227 {"Windows 2003", VBOXOSTYPE_Win2k3_x64},
228 {"Windows Vista", VBOXOSTYPE_WinVista_x64},
229 {"Windows 2008", VBOXOSTYPE_Win2k8_x64},
230 {"SUSE", VBOXOSTYPE_OpenSUSE_x64},
231 {"Novell", VBOXOSTYPE_OpenSUSE_x64},
232 {"Red Hat", VBOXOSTYPE_RedHat_x64},
233 {"Mandriva", VBOXOSTYPE_Mandriva_x64},
234 {"Ubuntu", VBOXOSTYPE_Ubuntu_x64},
235 {"Debian", VBOXOSTYPE_Debian_x64},
236 {"Linux 2.4", VBOXOSTYPE_Linux24_x64},
237 {"Linux 2.6", VBOXOSTYPE_Linux26_x64},
238 {"Linux", VBOXOSTYPE_Linux26_x64},
239 {"OpenSolaris", VBOXOSTYPE_OpenSolaris_x64},
240 {"Solaris", VBOXOSTYPE_OpenSolaris_x64},
241 {"FreeBSD", VBOXOSTYPE_FreeBSD_x64},
242};
243
244/**
245 * Private helper func that suggests a VirtualBox guest OS type
246 * for the given OVF operating system type.
247 */
248void convertCIMOSType2VBoxOSType(Utf8Str &strType, ovf::CIMOSType_T c, const Utf8Str &cStr)
249{
250 /* First check if the type is other/other_64 */
251 if (c == ovf::CIMOSType_CIMOS_Other)
252 {
253 for (size_t i = 0; i < RT_ELEMENTS(g_aOsTypesPattern); ++i)
254 if (cStr.contains(g_aOsTypesPattern[i].pcszPattern, Utf8Str::CaseInsensitive))
255 {
256 strType = Global::OSTypeId(g_aOsTypesPattern[i].osType);
257 return;
258 }
259 }
260 else if (c == ovf::CIMOSType_CIMOS_Other_64)
261 {
262 for (size_t i = 0; i < RT_ELEMENTS(g_aOsTypesPattern64); ++i)
263 if (cStr.contains(g_aOsTypesPattern64[i].pcszPattern, Utf8Str::CaseInsensitive))
264 {
265 strType = Global::OSTypeId(g_aOsTypesPattern64[i].osType);
266 return;
267 }
268 }
269
270 for (size_t i = 0; i < RT_ELEMENTS(g_aOsTypes); ++i)
271 {
272 if (c == g_aOsTypes[i].cim)
273 {
274 strType = Global::OSTypeId(g_aOsTypes[i].osType);
275 return;
276 }
277 }
278
279 if (c == ovf::CIMOSType_CIMOS_Other_64)
280 strType = Global::OSTypeId(VBOXOSTYPE_Unknown_x64);
281 else
282 strType = Global::OSTypeId(VBOXOSTYPE_Unknown);
283}
284
285/**
286 * Private helper func that suggests a VirtualBox guest OS type
287 * for the given OVF operating system type.
288 * @returns CIM OS type.
289 * @param pcszVBox Our guest OS type identifier string.
290 * @param fLongMode Whether long mode is enabled and a 64-bit CIM type is
291 * preferred even if the VBox guest type isn't 64-bit.
292 */
293ovf::CIMOSType_T convertVBoxOSType2CIMOSType(const char *pcszVBox, BOOL fLongMode)
294{
295 for (size_t i = 0; i < RT_ELEMENTS(g_aOsTypes); ++i)
296 {
297 if (!RTStrICmp(pcszVBox, Global::OSTypeId(g_aOsTypes[i].osType)))
298 {
299 if (fLongMode && !(g_aOsTypes[i].osType & VBOXOSTYPE_x64))
300 {
301 VBOXOSTYPE enmDesiredOsType = (VBOXOSTYPE)((int)g_aOsTypes[i].osType | (int)VBOXOSTYPE_x64);
302 size_t j = i;
303 while (++j < RT_ELEMENTS(g_aOsTypes))
304 if (g_aOsTypes[j].osType == enmDesiredOsType)
305 return g_aOsTypes[j].cim;
306 j = i;
307 while (--j > 0)
308 if (g_aOsTypes[j].osType == enmDesiredOsType)
309 return g_aOsTypes[j].cim;
310 /* Not all OSes have 64-bit versions, so just return the 32-bit variant. */
311 }
312 return g_aOsTypes[i].cim;
313 }
314 }
315
316 return fLongMode ? ovf::CIMOSType_CIMOS_Other_64 : ovf::CIMOSType_CIMOS_Other;
317}
318
319Utf8Str convertNetworkAttachmentTypeToString(NetworkAttachmentType_T type)
320{
321 Utf8Str strType;
322 switch (type)
323 {
324 case NetworkAttachmentType_NAT: strType = "NAT"; break;
325 case NetworkAttachmentType_Bridged: strType = "Bridged"; break;
326 case NetworkAttachmentType_Internal: strType = "Internal"; break;
327 case NetworkAttachmentType_HostOnly: strType = "HostOnly"; break;
328 case NetworkAttachmentType_Generic: strType = "Generic"; break;
329 case NetworkAttachmentType_NATNetwork: strType = "NATNetwork"; break;
330 case NetworkAttachmentType_Null: strType = "Null"; break;
331#ifdef VBOX_WITH_XPCOM_CPP_ENUM_HACK
332 case NetworkAttachmentType_32BitHack: AssertFailedBreak(); /* (compiler warnings) */
333#endif
334 }
335 return strType;
336}
337
338
339////////////////////////////////////////////////////////////////////////////////
340//
341// Appliance constructor / destructor
342//
343// ////////////////////////////////////////////////////////////////////////////////
344
345DEFINE_EMPTY_CTOR_DTOR(VirtualSystemDescription)
346
347HRESULT VirtualSystemDescription::FinalConstruct()
348{
349 return BaseFinalConstruct();
350}
351
352void VirtualSystemDescription::FinalRelease()
353{
354 uninit();
355
356 BaseFinalRelease();
357}
358
359Appliance::Appliance()
360 : mVirtualBox(NULL)
361{
362}
363
364Appliance::~Appliance()
365{
366}
367
368
369HRESULT Appliance::FinalConstruct()
370{
371 return BaseFinalConstruct();
372}
373
374void Appliance::FinalRelease()
375{
376 uninit();
377
378 BaseFinalRelease();
379}
380
381
382////////////////////////////////////////////////////////////////////////////////
383//
384// Internal helpers
385//
386////////////////////////////////////////////////////////////////////////////////
387
388
389////////////////////////////////////////////////////////////////////////////////
390//
391// IVirtualBox public methods
392//
393////////////////////////////////////////////////////////////////////////////////
394
395// This code is here so we won't have to include the appliance headers in the
396// IVirtualBox implementation.
397
398/**
399 * Implementation for IVirtualBox::createAppliance.
400 *
401 * @param aAppliance IAppliance object created if S_OK is returned.
402 * @return S_OK or error.
403 */
404HRESULT VirtualBox::createAppliance(ComPtr<IAppliance> &aAppliance)
405{
406 ComObjPtr<Appliance> appliance;
407 HRESULT hrc = appliance.createObject();
408 if (SUCCEEDED(hrc))
409 {
410 hrc = appliance->init(this);
411 if (SUCCEEDED(hrc))
412 hrc = appliance.queryInterfaceTo(aAppliance.asOutParam());
413 }
414 return hrc;
415}
416
417/**
418 * Appliance COM initializer.
419 * @param aVirtualBox The VirtualBox object.
420 */
421HRESULT Appliance::init(VirtualBox *aVirtualBox)
422{
423 HRESULT rc = S_OK;
424 /* Enclose the state transition NotReady->InInit->Ready */
425 AutoInitSpan autoInitSpan(this);
426 AssertReturn(autoInitSpan.isOk(), E_FAIL);
427
428 /* Weak reference to a VirtualBox object */
429 unconst(mVirtualBox) = aVirtualBox;
430
431 // initialize data
432 m = new Data;
433 m->m_pSecretKeyStore = new SecretKeyStore(false /* fRequireNonPageable*/);
434 AssertReturn(m->m_pSecretKeyStore, E_FAIL);
435
436 rc = i_initBackendNames();
437
438 /* Confirm a successful initialization */
439 autoInitSpan.setSucceeded();
440
441 return rc;
442}
443
444/**
445 * Appliance COM uninitializer.
446 */
447void Appliance::uninit()
448{
449 /* Enclose the state transition Ready->InUninit->NotReady */
450 AutoUninitSpan autoUninitSpan(this);
451 if (autoUninitSpan.uninitDone())
452 return;
453
454 if (m->m_pSecretKeyStore)
455 delete m->m_pSecretKeyStore;
456
457 delete m;
458 m = NULL;
459}
460
461////////////////////////////////////////////////////////////////////////////////
462//
463// IAppliance public methods
464//
465////////////////////////////////////////////////////////////////////////////////
466
467/**
468 * Public method implementation.
469 */
470HRESULT Appliance::getPath(com::Utf8Str &aPath)
471{
472 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
473
474 if (!i_isApplianceIdle())
475 return E_ACCESSDENIED;
476
477 aPath = m->locInfo.strPath;
478
479 return S_OK;
480}
481
482/**
483 * Public method implementation.
484 */
485HRESULT Appliance::getDisks(std::vector<com::Utf8Str> &aDisks)
486{
487 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
488
489 aDisks.resize(0);
490 if (!i_isApplianceIdle())
491 return E_ACCESSDENIED;
492
493 if (m->pReader) // OVFReader instantiated?
494 {
495 aDisks.resize(m->pReader->m_mapDisks.size());
496
497 ovf::DiskImagesMap::const_iterator it;
498 size_t i = 0;
499 for (it = m->pReader->m_mapDisks.begin();
500 it != m->pReader->m_mapDisks.end();
501 ++it, ++i)
502 {
503 // create a string representing this disk
504 const ovf::DiskImage &d = it->second;
505 char *psz = NULL;
506 RTStrAPrintf(&psz,
507 "%s\t"
508 "%RI64\t"
509 "%RI64\t"
510 "%s\t"
511 "%s\t"
512 "%RI64\t"
513 "%RI64\t"
514 "%s",
515 d.strDiskId.c_str(),
516 d.iCapacity,
517 d.iPopulatedSize,
518 d.strFormat.c_str(),
519 d.strHref.c_str(),
520 d.iSize,
521 d.iChunkSize,
522 d.strCompression.c_str());
523 Utf8Str utf(psz);
524 aDisks[i] = utf;
525 RTStrFree(psz);
526 }
527 }
528
529 return S_OK;
530}
531
532/**
533 * Public method implementation.
534 */
535HRESULT Appliance::getCertificate(ComPtr<ICertificate> &aCertificateInfo)
536{
537 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
538
539 if (!i_isApplianceIdle())
540 return E_ACCESSDENIED;
541
542 /* Can be NULL at this point, queryInterfaceto handles that. */
543 m->ptrCertificateInfo.queryInterfaceTo(aCertificateInfo.asOutParam());
544 return S_OK;
545}
546
547/**
548 * Public method implementation.
549 */
550HRESULT Appliance::getVirtualSystemDescriptions(std::vector<ComPtr<IVirtualSystemDescription> > &aVirtualSystemDescriptions)
551{
552 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
553
554 if (!i_isApplianceIdle())
555 return E_ACCESSDENIED;
556
557 aVirtualSystemDescriptions.resize(m->virtualSystemDescriptions.size());
558 std::list< ComObjPtr<VirtualSystemDescription> > vsds(m->virtualSystemDescriptions);
559 size_t i = 0;
560 for (std::list< ComObjPtr<VirtualSystemDescription> >::iterator it = vsds.begin(); it != vsds.end(); ++it, ++i)
561 {
562 (*it).queryInterfaceTo(aVirtualSystemDescriptions[i].asOutParam());
563 }
564 return S_OK;
565}
566
567/**
568 * Public method implementation.
569 */
570HRESULT Appliance::getMachines(std::vector<com::Utf8Str> &aMachines)
571{
572 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
573
574 if (!i_isApplianceIdle())
575 return E_ACCESSDENIED;
576
577 aMachines.resize(m->llGuidsMachinesCreated.size());
578 size_t i = 0;
579 for (std::list<Guid>::const_iterator it = m->llGuidsMachinesCreated.begin();
580 it != m->llGuidsMachinesCreated.end();
581 ++it, ++i)
582 {
583 const Guid &uuid = *it;
584 aMachines[i] = uuid.toUtf16();
585 }
586 return S_OK;
587}
588
589HRESULT Appliance::createVFSExplorer(const com::Utf8Str &aURI, ComPtr<IVFSExplorer> &aExplorer)
590{
591 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
592
593 ComObjPtr<VFSExplorer> explorer;
594 HRESULT rc = S_OK;
595 try
596 {
597 Utf8Str uri(aURI);
598 /* Check which kind of export the user has requested */
599 LocationInfo li;
600 i_parseURI(aURI, li);
601 /* Create the explorer object */
602 explorer.createObject();
603 rc = explorer->init(li.storageType, li.strPath, li.strHostname, li.strUsername, li.strPassword, mVirtualBox);
604 }
605 catch (HRESULT aRC)
606 {
607 rc = aRC;
608 }
609
610 if (SUCCEEDED(rc))
611 /* Return explorer to the caller */
612 explorer.queryInterfaceTo(aExplorer.asOutParam());
613
614 return rc;
615}
616
617/**
618 * Public method implementation.
619 */
620HRESULT Appliance::getWarnings(std::vector<com::Utf8Str> &aWarnings)
621{
622 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
623
624 aWarnings.resize(m->llWarnings.size());
625
626 list<Utf8Str>::const_iterator it;
627 size_t i = 0;
628 for (it = m->llWarnings.begin();
629 it != m->llWarnings.end();
630 ++it, ++i)
631 {
632 aWarnings[i] = *it;
633 }
634
635 return S_OK;
636}
637
638HRESULT Appliance::getPasswordIds(std::vector<com::Utf8Str> &aIdentifiers)
639{
640 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
641
642 aIdentifiers = m->m_vecPasswordIdentifiers;
643 return S_OK;
644}
645
646HRESULT Appliance::getMediumIdsForPasswordId(const com::Utf8Str &aPasswordId, std::vector<com::Guid> &aIdentifiers)
647{
648 HRESULT hrc = S_OK;
649 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
650
651 std::map<com::Utf8Str, GUIDVEC>::const_iterator it = m->m_mapPwIdToMediumIds.find(aPasswordId);
652 if (it != m->m_mapPwIdToMediumIds.end())
653 aIdentifiers = it->second;
654 else
655 hrc = setError(E_FAIL, tr("The given password identifier is not associated with any medium"));
656
657 return hrc;
658}
659
660HRESULT Appliance::addPasswords(const std::vector<com::Utf8Str> &aIdentifiers,
661 const std::vector<com::Utf8Str> &aPasswords)
662{
663 HRESULT hrc = S_OK;
664
665 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
666
667 /* Check that the IDs do not exist already before changing anything. */
668 for (unsigned i = 0; i < aIdentifiers.size(); i++)
669 {
670 SecretKey *pKey = NULL;
671 int rc = m->m_pSecretKeyStore->retainSecretKey(aIdentifiers[i], &pKey);
672 if (rc != VERR_NOT_FOUND)
673 {
674 AssertPtr(pKey);
675 if (pKey)
676 pKey->release();
677 return setError(VBOX_E_OBJECT_IN_USE, tr("A password with the given ID already exists"));
678 }
679 }
680
681 for (unsigned i = 0; i < aIdentifiers.size() && SUCCEEDED(hrc); i++)
682 {
683 size_t cbKey = aPasswords[i].length() + 1; /* Include terminator */
684 const uint8_t *pbKey = (const uint8_t *)aPasswords[i].c_str();
685
686 int rc = m->m_pSecretKeyStore->addSecretKey(aIdentifiers[i], pbKey, cbKey);
687 if (RT_SUCCESS(rc))
688 m->m_cPwProvided++;
689 else if (rc == VERR_NO_MEMORY)
690 hrc = setError(E_OUTOFMEMORY, tr("Failed to allocate enough secure memory for the key"));
691 else
692 hrc = setError(E_FAIL, tr("Unknown error happened while adding a password (%Rrc)"), rc);
693 }
694
695 return hrc;
696}
697
698////////////////////////////////////////////////////////////////////////////////
699//
700// Appliance private methods
701//
702////////////////////////////////////////////////////////////////////////////////
703
704HRESULT Appliance::i_initBackendNames()
705{
706 HRESULT hrc = S_OK;
707 if (!g_fInitializedBackendNames)
708 {
709 /*
710 * Use the system properties to translate file extensions into
711 * storage backend names.
712 */
713 static struct
714 {
715 const char *pszExt; /**< extension */
716 char *pszBackendName;
717 size_t cbBackendName;
718 } const s_aFormats[] =
719 {
720 { "iso", g_szIsoBackend, sizeof(g_szIsoBackend) },
721 { "vmdk", g_szVmdkBackend, sizeof(g_szVmdkBackend) },
722 { "vhd", g_szVhdBackend, sizeof(g_szVhdBackend) },
723 };
724 SystemProperties *pSysProps = mVirtualBox->i_getSystemProperties();
725 for (unsigned i = 0; i < RT_ELEMENTS(s_aFormats); i++)
726 {
727 ComObjPtr<MediumFormat> trgFormat = pSysProps->i_mediumFormatFromExtension(s_aFormats[i].pszExt);
728 if (trgFormat.isNotNull())
729 {
730 const char *pszName = trgFormat->i_getName().c_str();
731 int vrc = RTStrCopy(s_aFormats[i].pszBackendName, s_aFormats[i].cbBackendName, pszName);
732 AssertRCStmt(vrc, hrc = setError(E_FAIL, "Unexpected storage backend name copy error %Rrc for %s.", vrc, pszName));
733 }
734 else
735 hrc = setError(E_FAIL, tr("Can't find appropriate medium format for ISO type of a virtual disk."));
736 }
737
738 if (SUCCEEDED(hrc))
739 g_fInitializedBackendNames = true;
740 }
741
742 return hrc;
743}
744
745Utf8Str Appliance::i_typeOfVirtualDiskFormatFromURI(Utf8Str uri) const
746{
747 Assert(g_fInitializedBackendNames);
748
749 unsigned i = RT_ELEMENTS(g_aUriToBackend);
750 while (i-- > 0)
751 if (RTStrICmp(g_aUriToBackend[i].pszUri, uri.c_str()) == 0)
752 return Utf8Str(g_aUriToBackend[i].pszBackend);
753 return Utf8Str();
754}
755
756#if 0 /* unused */
757std::set<Utf8Str> Appliance::i_URIFromTypeOfVirtualDiskFormat(Utf8Str type)
758{
759 Assert(g_fInitializedBackendNames);
760
761 std::set<Utf8Str> UriSet;
762 unsigned i = RT_ELEMENTS(g_aUriToBackend);
763 while (i-- > 0)
764 if (RTStrICmp(g_aUriToBackend[i].pszBackend, type.c_str()) == 0)
765 UriSet.insert(g_aUriToBackend[i].pszUri);
766 return UriSet;
767}
768#endif
769
770/**
771 * Returns a medium format object corresponding to the given
772 * disk image or null if no such format.
773 *
774 * @param di Disk Image
775 * @param mf Medium Format
776 *
777 * @return ComObjPtr<MediumFormat>
778 */
779HRESULT Appliance::i_findMediumFormatFromDiskImage(const ovf::DiskImage &di, ComObjPtr<MediumFormat>& mf)
780{
781 HRESULT rc = S_OK;
782
783 /* Get the system properties. */
784 SystemProperties *pSysProps = mVirtualBox->i_getSystemProperties();
785
786 /* We need a proper source format description */
787 /* Which format to use? */
788 Utf8Str strSrcFormat = i_typeOfVirtualDiskFormatFromURI(di.strFormat);
789
790 /*
791 * fallback, if we can't determine virtual disk format using URI from the attribute ovf:format
792 * in the corresponding section <Disk> in the OVF file.
793 */
794 if (strSrcFormat.isEmpty())
795 {
796 strSrcFormat = di.strHref;
797
798 /* check either file gzipped or not
799 * if "yes" then remove last extension,
800 * i.e. "image.vmdk.gz"->"image.vmdk"
801 */
802 if (di.strCompression == "gzip")
803 {
804 if (RTPathHasSuffix(strSrcFormat.c_str()))
805 {
806 strSrcFormat.stripSuffix();
807 }
808 else
809 {
810 mf.setNull();
811 rc = setError(E_FAIL,
812 tr("Internal inconsistency looking up medium format for the disk image '%s'"),
813 di.strHref.c_str());
814 return rc;
815 }
816 }
817 /* Figure out from extension which format the image of disk has. */
818 if (RTPathHasSuffix(strSrcFormat.c_str()))
819 {
820 const char *pszExt = RTPathSuffix(strSrcFormat.c_str());
821 if (pszExt)
822 pszExt++;
823 mf = pSysProps->i_mediumFormatFromExtension(pszExt);
824 }
825 else
826 mf.setNull();
827 }
828 else
829 mf = pSysProps->i_mediumFormat(strSrcFormat);
830
831 if (mf.isNull())
832 rc = setError(E_FAIL, tr("Internal inconsistency looking up medium format for the disk image '%s'"),
833 di.strHref.c_str());
834
835 return rc;
836}
837
838/**
839 * Setup automatic I/O stream digest calculation, adding it to hOurManifest.
840 *
841 * @returns Passthru I/O stream, of @a hVfsIos if no digest calc needed.
842 * @param hVfsIos The stream to wrap. Always consumed.
843 * @param pszManifestEntry The manifest entry.
844 * @param fRead Set if read stream, clear if write.
845 * @throws Nothing.
846 */
847RTVFSIOSTREAM Appliance::i_manifestSetupDigestCalculationForGivenIoStream(RTVFSIOSTREAM hVfsIos, const char *pszManifestEntry,
848 bool fRead /*= true */)
849{
850 int vrc;
851 Assert(!RTManifestPtIosIsInstanceOf(hVfsIos));
852
853 if (m->fDigestTypes == 0)
854 return hVfsIos;
855
856 /* Create the manifest if necessary. */
857 if (m->hOurManifest == NIL_RTMANIFEST)
858 {
859 vrc = RTManifestCreate(0 /*fFlags*/, &m->hOurManifest);
860 AssertRCReturnStmt(vrc, RTVfsIoStrmRelease(hVfsIos), NIL_RTVFSIOSTREAM);
861 }
862
863 /* Setup the stream. */
864 RTVFSIOSTREAM hVfsIosPt;
865 vrc = RTManifestEntryAddPassthruIoStream(m->hOurManifest, hVfsIos, pszManifestEntry, m->fDigestTypes, fRead, &hVfsIosPt);
866
867 RTVfsIoStrmRelease(hVfsIos); /* always consumed! */
868 if (RT_SUCCESS(vrc))
869 return hVfsIosPt;
870
871 setErrorVrc(vrc, "RTManifestEntryAddPassthruIoStream failed with rc=%Rrc", vrc);
872 return NIL_RTVFSIOSTREAM;
873}
874
875/**
876 * Returns true if the appliance is in "idle" state. This should always be the
877 * case unless an import or export is currently in progress. Similar to machine
878 * states, this permits the Appliance implementation code to let go of the
879 * Appliance object lock while a time-consuming disk conversion is in progress
880 * without exposing the appliance to conflicting calls.
881 *
882 * This sets an error on "this" (the appliance) and returns false if the appliance
883 * is busy. The caller should then return E_ACCESSDENIED.
884 *
885 * Must be called from under the object lock!
886 */
887bool Appliance::i_isApplianceIdle()
888{
889 if (m->state == Data::ApplianceImporting)
890 setError(VBOX_E_INVALID_OBJECT_STATE, tr("The appliance is busy importing files"));
891 else if (m->state == Data::ApplianceExporting)
892 setError(VBOX_E_INVALID_OBJECT_STATE, tr("The appliance is busy exporting files"));
893 else
894 return true;
895
896 return false;
897}
898
899HRESULT Appliance::i_searchUniqueVMName(Utf8Str& aName) const
900{
901 IMachine *machine = NULL;
902 char *tmpName = RTStrDup(aName.c_str());
903 int i = 1;
904 while (mVirtualBox->FindMachine(Bstr(tmpName).raw(), &machine) != VBOX_E_OBJECT_NOT_FOUND)
905 {
906 RTStrFree(tmpName);
907 RTStrAPrintf(&tmpName, "%s %d", aName.c_str(), i);
908 ++i;
909 }
910 aName = tmpName;
911 RTStrFree(tmpName);
912
913 return S_OK;
914}
915
916HRESULT Appliance::i_searchUniqueImageFilePath(const Utf8Str &aMachineFolder, DeviceType_T aDeviceType, Utf8Str &aName) const
917{
918 /*
919 * Check if the file exists or if a medium with this path is registered already
920 */
921 Utf8Str strAbsName;
922 ssize_t offDashNum = -1;
923 ssize_t cchDashNum = 0;
924 for (unsigned i = 1;; i++)
925 {
926 /* Complete the path (could be relative to machine folder). */
927 int rc = RTPathAbsExCxx(strAbsName, aMachineFolder, aName);
928 AssertRCReturn(rc, Global::vboxStatusCodeToCOM(rc)); /** @todo stupid caller ignores this */
929
930 /* Check that the file does not exist and that there is no media somehow matching the name. */
931 if (!RTPathExists(strAbsName.c_str()))
932 {
933 ComPtr<IMedium> ptrMedium;
934 HRESULT hrc = mVirtualBox->OpenMedium(Bstr(strAbsName).raw(), aDeviceType, AccessMode_ReadWrite,
935 FALSE /* fForceNewUuid */, ptrMedium.asOutParam());
936 if (hrc == VBOX_E_OBJECT_NOT_FOUND)
937 return S_OK;
938 }
939
940 /* Insert '_%i' before the suffix and try again. */
941 if (offDashNum < 0)
942 {
943 const char *pszSuffix = RTPathSuffix(aName.c_str());
944 offDashNum = pszSuffix ? pszSuffix - aName.c_str() : aName.length();
945 }
946 char szTmp[32];
947 size_t cchTmp = RTStrPrintf(szTmp, sizeof(szTmp), "_%u", i);
948 aName.replace(offDashNum, cchDashNum, szTmp, cchTmp);
949 cchDashNum = cchTmp;
950 }
951}
952
953/**
954 * Called from Appliance::importImpl() and Appliance::writeImpl() to set up a
955 * progress object with the proper weights and maximum progress values.
956 */
957HRESULT Appliance::i_setUpProgress(ComObjPtr<Progress> &pProgress,
958 const Utf8Str &strDescription,
959 SetUpProgressMode mode)
960{
961 HRESULT rc;
962
963 /* Create the progress object */
964 pProgress.createObject();
965
966 // compute the disks weight (this sets ulTotalDisksMB and cDisks in the instance data)
967 i_disksWeight();
968
969 m->ulWeightForManifestOperation = 0;
970
971 ULONG cOperations;
972 ULONG ulTotalOperationsWeight;
973
974 cOperations = 1 // one for XML setup
975 + m->cDisks; // plus one per disk
976 if (m->ulTotalDisksMB)
977 {
978 m->ulWeightForXmlOperation = (ULONG)((double)m->ulTotalDisksMB * 1 / 100); // use 1% of the progress for the XML
979 ulTotalOperationsWeight = m->ulTotalDisksMB + m->ulWeightForXmlOperation;
980 }
981 else
982 {
983 // no disks to export:
984 m->ulWeightForXmlOperation = 1;
985 ulTotalOperationsWeight = 1;
986 }
987
988 switch (mode)
989 {
990 case ImportFile:
991 {
992 break;
993 }
994 case WriteFile:
995 {
996 // assume that creating the manifest will take .1% of the time it takes to export the disks
997 if (m->fManifest)
998 {
999 ++cOperations; // another one for creating the manifest
1000
1001 m->ulWeightForManifestOperation = (ULONG)((double)m->ulTotalDisksMB * .1 / 100); // use .5% of the
1002 // progress for the manifest
1003 ulTotalOperationsWeight += m->ulWeightForManifestOperation;
1004 }
1005 break;
1006 }
1007 case ImportS3:
1008 {
1009 cOperations += 1 + 1; // another one for the manifest file & another one for the import
1010 ulTotalOperationsWeight = m->ulTotalDisksMB;
1011 if (!m->ulTotalDisksMB)
1012 // no disks to export:
1013 ulTotalOperationsWeight = 1;
1014
1015 ULONG ulImportWeight = (ULONG)((double)ulTotalOperationsWeight * 50 / 100); // use 50% for import
1016 ulTotalOperationsWeight += ulImportWeight;
1017
1018 m->ulWeightForXmlOperation = ulImportWeight; /* save for using later */
1019
1020 ULONG ulInitWeight = (ULONG)((double)ulTotalOperationsWeight * 0.1 / 100); // use 0.1% for init
1021 ulTotalOperationsWeight += ulInitWeight;
1022 break;
1023 }
1024 case WriteS3:
1025 {
1026 cOperations += 1 + 1; // another one for the mf & another one for temporary creation
1027
1028 if (m->ulTotalDisksMB)
1029 {
1030 m->ulWeightForXmlOperation = (ULONG)((double)m->ulTotalDisksMB * 1 / 100); // use 1% of the progress
1031 // for OVF file upload
1032 // (we didn't know the
1033 // size at this point)
1034 ulTotalOperationsWeight = m->ulTotalDisksMB + m->ulWeightForXmlOperation;
1035 }
1036 else
1037 {
1038 // no disks to export:
1039 ulTotalOperationsWeight = 1;
1040 m->ulWeightForXmlOperation = 1;
1041 }
1042 ULONG ulOVFCreationWeight = (ULONG)((double)ulTotalOperationsWeight * 50.0 / 100.0); /* Use 50% for the
1043 creation of the OVF
1044 & the disks */
1045 ulTotalOperationsWeight += ulOVFCreationWeight;
1046 break;
1047 }
1048 case ExportCloud:
1049 cOperations = 1 + 9;//7
1050 ulTotalOperationsWeight = 100*cOperations;
1051 m->ulWeightForXmlOperation = 100;
1052 break;
1053 }
1054 Log(("Setting up progress object: ulTotalMB = %d, cDisks = %d, => cOperations = %d, ulTotalOperationsWeight = %d, m->ulWeightForXmlOperation = %d\n",
1055 m->ulTotalDisksMB, m->cDisks, cOperations, ulTotalOperationsWeight, m->ulWeightForXmlOperation));
1056
1057 rc = pProgress->init(mVirtualBox, static_cast<IAppliance*>(this),
1058 Bstr(strDescription).raw(),
1059 TRUE /* aCancelable */,
1060 cOperations, // ULONG cOperations,
1061 ulTotalOperationsWeight, // ULONG ulTotalOperationsWeight,
1062 Bstr(strDescription).raw(), // CBSTR bstrFirstOperationDescription,
1063 m->ulWeightForXmlOperation); // ULONG ulFirstOperationWeight,
1064 return rc;
1065}
1066
1067void Appliance::i_addWarning(const char* aWarning, ...)
1068{
1069 try
1070 {
1071 va_list args;
1072 va_start(args, aWarning);
1073 Utf8Str str(aWarning, args);
1074 va_end(args);
1075 m->llWarnings.push_back(str);
1076 }
1077 catch (...)
1078 {
1079 AssertFailed();
1080 }
1081}
1082
1083/**
1084 * Refreshes the cDisks and ulTotalDisksMB members in the instance data.
1085 * Requires that virtual system descriptions are present.
1086 */
1087void Appliance::i_disksWeight()
1088{
1089 m->ulTotalDisksMB = 0;
1090 m->cDisks = 0;
1091 // weigh the disk images according to their sizes
1092 list< ComObjPtr<VirtualSystemDescription> >::const_iterator it;
1093 for (it = m->virtualSystemDescriptions.begin();
1094 it != m->virtualSystemDescriptions.end();
1095 ++it)
1096 {
1097 ComObjPtr<VirtualSystemDescription> vsdescThis = (*it);
1098 /* One for every medium of the Virtual System */
1099 std::list<VirtualSystemDescriptionEntry*> avsdeHDs = vsdescThis->i_findByType(VirtualSystemDescriptionType_HardDiskImage);
1100 std::list<VirtualSystemDescriptionEntry*>::const_iterator itH;
1101 for (itH = avsdeHDs.begin();
1102 itH != avsdeHDs.end();
1103 ++itH)
1104 {
1105 const VirtualSystemDescriptionEntry *pHD = *itH;
1106 m->ulTotalDisksMB += pHD->ulSizeMB;
1107 ++m->cDisks;
1108 }
1109
1110 avsdeHDs = vsdescThis->i_findByType(VirtualSystemDescriptionType_CDROM);
1111 for (itH = avsdeHDs.begin();
1112 itH != avsdeHDs.end();
1113 ++itH)
1114 {
1115 const VirtualSystemDescriptionEntry *pHD = *itH;
1116 m->ulTotalDisksMB += pHD->ulSizeMB;
1117 ++m->cDisks;
1118 }
1119 }
1120
1121}
1122
1123void Appliance::i_parseBucket(Utf8Str &aPath, Utf8Str &aBucket)
1124{
1125 /* Buckets are S3 specific. So parse the bucket out of the file path */
1126 if (!aPath.startsWith("/"))
1127 throw setError(E_INVALIDARG,
1128 tr("The path '%s' must start with /"), aPath.c_str());
1129 size_t bpos = aPath.find("/", 1);
1130 if (bpos != Utf8Str::npos)
1131 {
1132 aBucket = aPath.substr(1, bpos - 1); /* The bucket without any slashes */
1133 aPath = aPath.substr(bpos); /* The rest of the file path */
1134 }
1135 /* If there is no bucket name provided reject it */
1136 if (aBucket.isEmpty())
1137 throw setError(E_INVALIDARG,
1138 tr("You doesn't provide a bucket name in the URI '%s'"), aPath.c_str());
1139}
1140
1141/**
1142 * Worker for TaskOVF::handler.
1143 *
1144 * The TaskOVF is started in Appliance::readImpl() and Appliance::importImpl()
1145 * and Appliance::writeImpl().
1146 *
1147 * This will in turn call Appliance::readFS() or Appliance::importFS() or
1148 * Appliance::writeFS().
1149 *
1150 * @thread pTask The task.
1151 */
1152/* static */ void Appliance::i_importOrExportThreadTask(TaskOVF *pTask)
1153{
1154 LogFlowFuncEnter();
1155 AssertReturnVoid(pTask);
1156
1157 Appliance *pAppliance = pTask->pAppliance;
1158 LogFlowFunc(("Appliance %p taskType=%d\n", pAppliance, pTask->taskType));
1159
1160 switch (pTask->taskType)
1161 {
1162 case TaskOVF::Read:
1163 pAppliance->m->resetReadData();
1164 if (pTask->locInfo.storageType == VFSType_File)
1165 pTask->rc = pAppliance->i_readFS(pTask);
1166 else
1167 pTask->rc = E_NOTIMPL;
1168 break;
1169
1170 case TaskOVF::Import:
1171 /** @todo allow overriding these? */
1172 if (!pAppliance->m->fSignatureValid && pAppliance->m->pbSignedDigest)
1173 pTask->rc = pAppliance->setError(E_FAIL, tr("The manifest signature for '%s' is not valid"),
1174 pTask->locInfo.strPath.c_str());
1175 else if (!pAppliance->m->fCertificateValid && pAppliance->m->pbSignedDigest)
1176 {
1177 if (pAppliance->m->strCertError.isNotEmpty())
1178 pTask->rc = pAppliance->setError(E_FAIL, tr("The certificate used to signed '%s' is not valid: %s"),
1179 pTask->locInfo.strPath.c_str(), pAppliance->m->strCertError.c_str());
1180 else
1181 pTask->rc = pAppliance->setError(E_FAIL, tr("The certificate used to signed '%s' is not valid"),
1182 pTask->locInfo.strPath.c_str());
1183 }
1184 // fusion does not consider this a show stopper (we've filed a warning during read).
1185 //else if (pAppliance->m->fCertificateMissingPath && pAppliance->m->pbSignedDigest)
1186 // pTask->rc = pAppliance->setError(E_FAIL, tr("The certificate used to signed '%s' is does not have a valid CA path"),
1187 // pTask->locInfo.strPath.c_str());
1188 else
1189 {
1190 if (pTask->locInfo.storageType == VFSType_File)
1191 pTask->rc = pAppliance->i_importFS(pTask);
1192 else
1193 pTask->rc = E_NOTIMPL;
1194 }
1195 break;
1196
1197 case TaskOVF::Write:
1198 if (pTask->locInfo.storageType == VFSType_File)
1199 pTask->rc = pAppliance->i_writeFS(pTask);
1200 else
1201 pTask->rc = E_NOTIMPL;
1202 break;
1203
1204 default:
1205 AssertFailed();
1206 pTask->rc = E_FAIL;
1207 break;
1208 }
1209
1210 if (!pTask->pProgress.isNull())
1211 pTask->pProgress->i_notifyComplete(pTask->rc);
1212
1213 LogFlowFuncLeave();
1214}
1215
1216/* static */ DECLCALLBACK(int) Appliance::TaskOVF::updateProgress(unsigned uPercent, void *pvUser)
1217{
1218 Appliance::TaskOVF* pTask = *(Appliance::TaskOVF**)pvUser;
1219
1220 if ( pTask
1221 && !pTask->pProgress.isNull())
1222 {
1223 BOOL fCanceled;
1224 pTask->pProgress->COMGETTER(Canceled)(&fCanceled);
1225 if (fCanceled)
1226 return -1;
1227 pTask->pProgress->SetCurrentOperationProgress(uPercent);
1228 }
1229 return VINF_SUCCESS;
1230}
1231
1232/**
1233 * Worker for TaskOPC::handler.
1234 * @thread pTask The task.
1235 */
1236/* static */
1237void Appliance::i_exportOPCThreadTask(TaskOPC *pTask)
1238{
1239 LogFlowFuncEnter();
1240 AssertReturnVoid(pTask);
1241
1242 Appliance *pAppliance = pTask->pAppliance;
1243 LogFlowFunc(("Appliance %p taskType=%d\n", pAppliance, pTask->taskType));
1244
1245 switch (pTask->taskType)
1246 {
1247 case TaskOPC::Export:
1248 pTask->rc = pAppliance->i_writeFSOPC(pTask);
1249 break;
1250
1251 default:
1252 AssertFailed();
1253 pTask->rc = E_FAIL;
1254 break;
1255 }
1256
1257 if (!pTask->pProgress.isNull())
1258 pTask->pProgress->i_notifyComplete(pTask->rc);
1259
1260 LogFlowFuncLeave();
1261}
1262
1263/* static */
1264DECLCALLBACK(int) Appliance::TaskOPC::updateProgress(unsigned uPercent, void *pvUser)
1265{
1266 Appliance::TaskOPC* pTask = *(Appliance::TaskOPC**)pvUser;
1267
1268 if ( pTask
1269 && !pTask->pProgress.isNull())
1270 {
1271 BOOL fCanceled;
1272 pTask->pProgress->COMGETTER(Canceled)(&fCanceled);
1273 if (fCanceled)
1274 return -1;
1275 pTask->pProgress->SetCurrentOperationProgress(uPercent);
1276 }
1277 return VINF_SUCCESS;
1278}
1279
1280/**
1281 * Worker for TaskCloud::handler.
1282 * @thread pTask The task.
1283 */
1284/* static */
1285void Appliance::i_exportCloudThreadTask(TaskCloud *pTask)
1286{
1287 LogFlowFuncEnter();
1288 AssertReturnVoid(pTask);
1289
1290 Appliance *pAppliance = pTask->pAppliance;
1291 LogFlowFunc(("Appliance %p taskType=%d\n", pAppliance, pTask->taskType));
1292
1293 switch (pTask->taskType)
1294 {
1295 case TaskCloud::Export:
1296 pTask->rc = pAppliance->i_writeFSCloud(pTask);
1297 break;
1298
1299 default:
1300 AssertFailed();
1301 pTask->rc = E_FAIL;
1302 break;
1303 }
1304
1305 if (!pTask->pProgress.isNull())
1306 pTask->pProgress->i_notifyComplete(pTask->rc);
1307
1308 LogFlowFuncLeave();
1309}
1310
1311/* static */
1312DECLCALLBACK(int) Appliance::TaskCloud::updateProgress(unsigned uPercent, void *pvUser)
1313{
1314 Appliance::TaskCloud* pTask = *(Appliance::TaskCloud**)pvUser;
1315
1316 if ( pTask
1317 && !pTask->pProgress.isNull())
1318 {
1319 BOOL fCanceled;
1320 pTask->pProgress->COMGETTER(Canceled)(&fCanceled);
1321 if (fCanceled)
1322 return -1;
1323 pTask->pProgress->SetCurrentOperationProgress(uPercent);
1324 }
1325 return VINF_SUCCESS;
1326}
1327
1328void i_parseURI(Utf8Str strUri, LocationInfo &locInfo)
1329{
1330 /* Check the URI for the protocol */
1331 if (strUri.startsWith("file://", Utf8Str::CaseInsensitive)) /* File based */
1332 {
1333 locInfo.storageType = VFSType_File;
1334 strUri = strUri.substr(sizeof("file://") - 1);
1335 }
1336 else if (strUri.startsWith("SunCloud://", Utf8Str::CaseInsensitive)) /* Sun Cloud service */
1337 {
1338 locInfo.storageType = VFSType_S3;
1339 strUri = strUri.substr(sizeof("SunCloud://") - 1);
1340 }
1341 else if (strUri.startsWith("S3://", Utf8Str::CaseInsensitive)) /* S3 service */
1342 {
1343 locInfo.storageType = VFSType_S3;
1344 strUri = strUri.substr(sizeof("S3://") - 1);
1345 }
1346 else if (strUri.startsWith("OCI://", Utf8Str::CaseInsensitive)) /* OCI service (storage or compute) */
1347 {
1348 locInfo.storageType = VFSType_Cloud;
1349 locInfo.strProvider = "OCI";
1350 strUri = strUri.substr(sizeof("OCI://") - 1);
1351 }
1352 else if (strUri.startsWith("webdav://", Utf8Str::CaseInsensitive)) /* webdav service */
1353 throw E_NOTIMPL;
1354
1355 /* Not necessary on a file based URI */
1356 if (locInfo.storageType != VFSType_File)
1357 {
1358 size_t uppos = strUri.find("@"); /* username:password combo */
1359 if (uppos != Utf8Str::npos)
1360 {
1361 locInfo.strUsername = strUri.substr(0, uppos);
1362 strUri = strUri.substr(uppos + 1);
1363 size_t upos = locInfo.strUsername.find(":");
1364 if (upos != Utf8Str::npos)
1365 {
1366 locInfo.strPassword = locInfo.strUsername.substr(upos + 1);
1367 locInfo.strUsername = locInfo.strUsername.substr(0, upos);
1368 }
1369 }
1370 size_t hpos = strUri.find("/"); /* hostname part */
1371 if (hpos != Utf8Str::npos)
1372 {
1373 locInfo.strHostname = strUri.substr(0, hpos);
1374 strUri = strUri.substr(hpos);
1375 }
1376 }
1377
1378 locInfo.strPath = strUri;
1379}
1380
1381
1382////////////////////////////////////////////////////////////////////////////////
1383//
1384// IVirtualSystemDescription constructor / destructor
1385//
1386////////////////////////////////////////////////////////////////////////////////
1387
1388/**
1389 * COM initializer.
1390 * @return
1391 */
1392HRESULT VirtualSystemDescription::init()
1393{
1394 /* Enclose the state transition NotReady->InInit->Ready */
1395 AutoInitSpan autoInitSpan(this);
1396 AssertReturn(autoInitSpan.isOk(), E_FAIL);
1397
1398 /* Initialize data */
1399 m = new Data();
1400 m->pConfig = NULL;
1401
1402 /* Confirm a successful initialization */
1403 autoInitSpan.setSucceeded();
1404 return S_OK;
1405}
1406
1407/**
1408* COM uninitializer.
1409*/
1410
1411void VirtualSystemDescription::uninit()
1412{
1413 if (m->pConfig)
1414 delete m->pConfig;
1415 delete m;
1416 m = NULL;
1417}
1418
1419
1420////////////////////////////////////////////////////////////////////////////////
1421//
1422// IVirtualSystemDescription public methods
1423//
1424////////////////////////////////////////////////////////////////////////////////
1425
1426/**
1427 * Public method implementation.
1428 */
1429HRESULT VirtualSystemDescription::getCount(ULONG *aCount)
1430{
1431 if (!aCount)
1432 return E_POINTER;
1433
1434 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1435
1436 *aCount = (ULONG)m->maDescriptions.size();
1437 return S_OK;
1438}
1439
1440/**
1441 * Public method implementation.
1442 */
1443HRESULT VirtualSystemDescription::getDescription(std::vector<VirtualSystemDescriptionType_T> &aTypes,
1444 std::vector<com::Utf8Str> &aRefs,
1445 std::vector<com::Utf8Str> &aOVFValues,
1446 std::vector<com::Utf8Str> &aVBoxValues,
1447 std::vector<com::Utf8Str> &aExtraConfigValues)
1448
1449{
1450 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1451 size_t c = m->maDescriptions.size();
1452 aTypes.resize(c);
1453 aRefs.resize(c);
1454 aOVFValues.resize(c);
1455 aVBoxValues.resize(c);
1456 aExtraConfigValues.resize(c);
1457
1458 for (size_t i = 0; i < c; i++)
1459 {
1460 const VirtualSystemDescriptionEntry &vsde = m->maDescriptions[i];
1461 aTypes[i] = vsde.type;
1462 aRefs[i] = vsde.strRef;
1463 aOVFValues[i] = vsde.strOvf;
1464 aVBoxValues[i] = vsde.strVBoxCurrent;
1465 aExtraConfigValues[i] = vsde.strExtraConfigCurrent;
1466 }
1467 return S_OK;
1468}
1469
1470/**
1471 * Public method implementation.
1472 */
1473HRESULT VirtualSystemDescription::getDescriptionByType(VirtualSystemDescriptionType_T aType,
1474 std::vector<VirtualSystemDescriptionType_T> &aTypes,
1475 std::vector<com::Utf8Str> &aRefs,
1476 std::vector<com::Utf8Str> &aOVFValues,
1477 std::vector<com::Utf8Str> &aVBoxValues,
1478 std::vector<com::Utf8Str> &aExtraConfigValues)
1479{
1480 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1481 std::list<VirtualSystemDescriptionEntry*> vsd = i_findByType(aType);
1482
1483 size_t c = vsd.size();
1484 aTypes.resize(c);
1485 aRefs.resize(c);
1486 aOVFValues.resize(c);
1487 aVBoxValues.resize(c);
1488 aExtraConfigValues.resize(c);
1489
1490 size_t i = 0;
1491 for (list<VirtualSystemDescriptionEntry*>::const_iterator it = vsd.begin(); it != vsd.end(); ++it, ++i)
1492 {
1493 const VirtualSystemDescriptionEntry *vsde = (*it);
1494 aTypes[i] = vsde->type;
1495 aRefs[i] = vsde->strRef;
1496 aOVFValues[i] = vsde->strOvf;
1497 aVBoxValues[i] = vsde->strVBoxCurrent;
1498 aExtraConfigValues[i] = vsde->strExtraConfigCurrent;
1499 }
1500
1501 return S_OK;
1502}
1503
1504/**
1505 * Public method implementation.
1506 */
1507HRESULT VirtualSystemDescription::getValuesByType(VirtualSystemDescriptionType_T aType,
1508 VirtualSystemDescriptionValueType_T aWhich,
1509 std::vector<com::Utf8Str> &aValues)
1510{
1511 AutoReadLock alock(this COMMA_LOCKVAL_SRC_POS);
1512
1513 std::list<VirtualSystemDescriptionEntry*> vsd = i_findByType (aType);
1514 aValues.resize((ULONG)vsd.size());
1515
1516 list<VirtualSystemDescriptionEntry*>::const_iterator it;
1517 size_t i = 0;
1518 for (it = vsd.begin();
1519 it != vsd.end();
1520 ++it, ++i)
1521 {
1522 const VirtualSystemDescriptionEntry *vsde = (*it);
1523
1524 Bstr bstr;
1525 switch (aWhich)
1526 {
1527 case VirtualSystemDescriptionValueType_Reference: aValues[i] = vsde->strRef; break;
1528 case VirtualSystemDescriptionValueType_Original: aValues[i] = vsde->strOvf; break;
1529 case VirtualSystemDescriptionValueType_Auto: aValues[i] = vsde->strVBoxCurrent; break;
1530 case VirtualSystemDescriptionValueType_ExtraConfig: aValues[i] = vsde->strExtraConfigCurrent; break;
1531#ifdef VBOX_WITH_XPCOM_CPP_ENUM_HACK
1532 case VirtualSystemDescriptionValueType_32BitHack: AssertFailedBreak(); /* (compiler warnings) */
1533#endif
1534 }
1535 }
1536
1537 return S_OK;
1538}
1539
1540/**
1541 * Public method implementation.
1542 */
1543HRESULT VirtualSystemDescription::setFinalValues(const std::vector<BOOL> &aEnabled,
1544 const std::vector<com::Utf8Str> &aVBoxValues,
1545 const std::vector<com::Utf8Str> &aExtraConfigValues)
1546{
1547#ifndef RT_OS_WINDOWS
1548 // NOREF(aEnabledSize);
1549#endif /* RT_OS_WINDOWS */
1550 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
1551
1552 if ( (aEnabled.size() != m->maDescriptions.size())
1553 || (aVBoxValues.size() != m->maDescriptions.size())
1554 || (aExtraConfigValues.size() != m->maDescriptions.size())
1555 )
1556 return E_INVALIDARG;
1557
1558 size_t i = 0;
1559 for (vector<VirtualSystemDescriptionEntry>::iterator it = m->maDescriptions.begin();
1560 it != m->maDescriptions.end();
1561 ++it, ++i)
1562 {
1563 VirtualSystemDescriptionEntry& vsde = *it;
1564
1565 if (aEnabled[i])
1566 {
1567 vsde.strVBoxCurrent = aVBoxValues[i];
1568 vsde.strExtraConfigCurrent = aExtraConfigValues[i];
1569 }
1570 else
1571 vsde.type = VirtualSystemDescriptionType_Ignore;
1572 }
1573
1574 return S_OK;
1575}
1576
1577/**
1578 * Public method implementation.
1579 */
1580HRESULT VirtualSystemDescription::addDescription(VirtualSystemDescriptionType_T aType,
1581 const com::Utf8Str &aVBoxValue,
1582 const com::Utf8Str &aExtraConfigValue)
1583
1584{
1585 AutoWriteLock alock(this COMMA_LOCKVAL_SRC_POS);
1586 i_addEntry(aType, "", aVBoxValue, aVBoxValue, 0, aExtraConfigValue);
1587 return S_OK;
1588}
1589
1590/**
1591 * Internal method; adds a new description item to the member list.
1592 * @param aType Type of description for the new item.
1593 * @param strRef Reference item; only used with storage controllers.
1594 * @param aOvfValue Corresponding original value from OVF.
1595 * @param aVBoxValue Initial configuration value (can be overridden by caller with setFinalValues).
1596 * @param ulSizeMB Weight for IProgress
1597 * @param strExtraConfig Extra configuration; meaning dependent on type.
1598 */
1599void VirtualSystemDescription::i_addEntry(VirtualSystemDescriptionType_T aType,
1600 const Utf8Str &strRef,
1601 const Utf8Str &aOvfValue,
1602 const Utf8Str &aVBoxValue,
1603 uint32_t ulSizeMB,
1604 const Utf8Str &strExtraConfig /*= ""*/)
1605{
1606 VirtualSystemDescriptionEntry vsde;
1607 vsde.ulIndex = (uint32_t)m->maDescriptions.size(); // each entry gets an index so the client side can reference them
1608 vsde.type = aType;
1609 vsde.strRef = strRef;
1610 vsde.strOvf = aOvfValue;
1611 vsde.strVBoxSuggested /* remember original value */
1612 = vsde.strVBoxCurrent /* and set current value which can be overridden by setFinalValues() */
1613 = aVBoxValue;
1614 vsde.strExtraConfigSuggested
1615 = vsde.strExtraConfigCurrent
1616 = strExtraConfig;
1617 vsde.ulSizeMB = ulSizeMB;
1618
1619 vsde.skipIt = false;
1620
1621 m->maDescriptions.push_back(vsde);
1622}
1623
1624/**
1625 * Private method; returns a list of description items containing all the items from the member
1626 * description items of this virtual system that match the given type.
1627 */
1628std::list<VirtualSystemDescriptionEntry*> VirtualSystemDescription::i_findByType(VirtualSystemDescriptionType_T aType)
1629{
1630 std::list<VirtualSystemDescriptionEntry*> vsd;
1631 for (vector<VirtualSystemDescriptionEntry>::iterator it = m->maDescriptions.begin();
1632 it != m->maDescriptions.end();
1633 ++it)
1634 {
1635 if (it->type == aType)
1636 vsd.push_back(&(*it));
1637 }
1638
1639 return vsd;
1640}
1641
1642HRESULT VirtualSystemDescription::removeDescriptionByType(VirtualSystemDescriptionType_T aType)
1643{
1644 std::vector<VirtualSystemDescriptionEntry>::iterator it = m->maDescriptions.begin();
1645 while (it != m->maDescriptions.end())
1646 {
1647 if (it->type == aType)
1648 it = m->maDescriptions.erase(it);
1649 else
1650 ++it;
1651 }
1652
1653 return S_OK;
1654}
1655
1656/* Private method; delete all records from the list
1657 * m->llDescriptions that match the given type.
1658 */
1659void VirtualSystemDescription::i_removeByType(VirtualSystemDescriptionType_T aType)
1660{
1661 std::vector<VirtualSystemDescriptionEntry>::iterator it = m->maDescriptions.begin();
1662 while (it != m->maDescriptions.end())
1663 {
1664 if (it->type == aType)
1665 it = m->maDescriptions.erase(it);
1666 else
1667 ++it;
1668 }
1669}
1670
1671/**
1672 * Private method; looks thru the member hardware items for the IDE, SATA, or SCSI controller with
1673 * the given reference ID. Useful when needing the controller for a particular
1674 * virtual disk.
1675 */
1676const VirtualSystemDescriptionEntry* VirtualSystemDescription::i_findControllerFromID(uint32_t id)
1677{
1678 Utf8Str strRef = Utf8StrFmt("%RI32", id);
1679 vector<VirtualSystemDescriptionEntry>::const_iterator it;
1680 for (it = m->maDescriptions.begin();
1681 it != m->maDescriptions.end();
1682 ++it)
1683 {
1684 const VirtualSystemDescriptionEntry &d = *it;
1685 switch (d.type)
1686 {
1687 case VirtualSystemDescriptionType_HardDiskControllerIDE:
1688 case VirtualSystemDescriptionType_HardDiskControllerSATA:
1689 case VirtualSystemDescriptionType_HardDiskControllerSCSI:
1690 case VirtualSystemDescriptionType_HardDiskControllerSAS:
1691 if (d.strRef == strRef)
1692 return &d;
1693 break;
1694 default: break; /* Shut up MSC. */
1695 }
1696 }
1697
1698 return NULL;
1699}
1700
1701/**
1702 * Method called from Appliance::Interpret() if the source OVF for a virtual system
1703 * contains a <vbox:Machine> element. This method then attempts to parse that and
1704 * create a MachineConfigFile instance from it which is stored in this instance data
1705 * and can then be used to create a machine.
1706 *
1707 * This must only be called once per instance.
1708 *
1709 * This rethrows all XML and logic errors from MachineConfigFile.
1710 *
1711 * @param elmMachine <vbox:Machine> element with attributes and subelements from some
1712 * DOM tree.
1713 */
1714void VirtualSystemDescription::i_importVBoxMachineXML(const xml::ElementNode &elmMachine)
1715{
1716 settings::MachineConfigFile *pConfig = NULL;
1717
1718 Assert(m->pConfig == NULL);
1719
1720 try
1721 {
1722 pConfig = new settings::MachineConfigFile(NULL);
1723 pConfig->importMachineXML(elmMachine);
1724
1725 m->pConfig = pConfig;
1726 }
1727 catch (...)
1728 {
1729 if (pConfig)
1730 delete pConfig;
1731 throw;
1732 }
1733}
1734
1735/**
1736 * Returns the machine config created by importVBoxMachineXML() or NULL if there's none.
1737 */
1738const settings::MachineConfigFile* VirtualSystemDescription::i_getMachineConfig() const
1739{
1740 return m->pConfig;
1741}
1742
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