VirtualBox

source: vbox/trunk/src/VBox/Main/xml/Settings.cpp@ 101050

Last change on this file since 101050 was 101050, checked in by vboxsync, 15 months ago

Main: More Doxygen fixes. bugref:10384

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1/* $Id: Settings.cpp 101050 2023-09-07 12:17:44Z vboxsync $ */
2/** @file
3 * Settings File Manipulation API.
4 *
5 * Two classes, MainConfigFile and MachineConfigFile, represent the VirtualBox.xml and
6 * machine XML files. They share a common ancestor class, ConfigFileBase, which shares
7 * functionality such as talking to the XML back-end classes and settings version management.
8 *
9 * The code can read all VirtualBox settings files version 1.3 and higher. That version was
10 * written by VirtualBox 2.0. It can write settings version 1.7 (used by VirtualBox 2.2 and
11 * 3.0) and 1.9 (used by VirtualBox 3.1) and newer ones obviously.
12 *
13 * The settings versions enum is defined in src/VBox/Main/idl/VirtualBox.xidl. To introduce
14 * a new settings version (should be necessary at most once per VirtualBox major release,
15 * if at all), add a new SettingsVersion value to that enum and grep for the previously
16 * highest value to see which code in here needs adjusting.
17 *
18 * Certainly ConfigFileBase::ConfigFileBase() will. Change VBOX_XML_VERSION below as well.
19 * VBOX_XML_VERSION does not have to be changed if the settings for a default VM do not
20 * touch newly introduced attributes or tags. It has the benefit that older VirtualBox
21 * versions do not trigger their "newer" code path.
22 *
23 * Once a new settings version has been added, these are the rules for introducing a new
24 * setting: If an XML element or attribute or value is introduced that was not present in
25 * previous versions, then settings version checks need to be introduced. See the
26 * SettingsVersion enumeration in src/VBox/Main/idl/VirtualBox.xidl for details about which
27 * version was used when.
28 *
29 * The settings versions checks are necessary because since version 3.1, VirtualBox no longer
30 * automatically converts XML settings files but only if necessary, that is, if settings are
31 * present that the old format does not support. If we write an element or attribute to a
32 * settings file of an older version, then an old VirtualBox (before 3.1) will attempt to
33 * validate it with XML schema, and that will certainly fail.
34 *
35 * So, to introduce a new setting:
36 *
37 * 1) Make sure the constructor of corresponding settings structure has a proper default.
38 *
39 * 2) In the settings reader method, try to read the setting; if it's there, great, if not,
40 * the default value will have been set by the constructor. The rule is to be tolerant
41 * here.
42 *
43 * 3) In MachineConfigFile::bumpSettingsVersionIfNeeded(), check if the new setting has
44 * a non-default value (i.e. that differs from the constructor). If so, bump the
45 * settings version to the current version so the settings writer (4) can write out
46 * the non-default value properly.
47 *
48 * So far a corresponding method for MainConfigFile has not been necessary since there
49 * have been no incompatible changes yet.
50 *
51 * 4) In the settings writer method, write the setting _only_ if the current settings
52 * version (stored in m->sv) is high enough. That is, for VirtualBox 4.0, write it
53 * only if (m->sv >= SettingsVersion_v1_11).
54 *
55 * 5) You _must_ update xml/VirtualBox-settings.xsd to contain the new tags and attributes.
56 * Check that settings file from before and after your change are validating properly.
57 * Use "kmk testvalidsettings", it should not find any files which don't validate.
58 */
59
60/*
61 * Copyright (C) 2007-2023 Oracle and/or its affiliates.
62 *
63 * This file is part of VirtualBox base platform packages, as
64 * available from https://www.virtualbox.org.
65 *
66 * This program is free software; you can redistribute it and/or
67 * modify it under the terms of the GNU General Public License
68 * as published by the Free Software Foundation, in version 3 of the
69 * License.
70 *
71 * This program is distributed in the hope that it will be useful, but
72 * WITHOUT ANY WARRANTY; without even the implied warranty of
73 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
74 * General Public License for more details.
75 *
76 * You should have received a copy of the GNU General Public License
77 * along with this program; if not, see <https://www.gnu.org/licenses>.
78 *
79 * SPDX-License-Identifier: GPL-3.0-only
80 */
81
82#define LOG_GROUP LOG_GROUP_MAIN
83#include "VBox/com/string.h"
84#include "VBox/settings.h"
85#include <iprt/base64.h>
86#include <iprt/cpp/lock.h>
87#include <iprt/cpp/utils.h>
88#include <iprt/cpp/xml.h>
89#include <iprt/ctype.h>
90#include <iprt/err.h>
91#include <iprt/file.h>
92#include <iprt/ldr.h>
93#include <iprt/process.h>
94#include <iprt/stream.h>
95#ifdef RT_OS_WINDOWS
96# include <iprt/system.h> /* For RTSystemGetNtVersion() / RTSYSTEM_MAKE_NT_VERSION. */
97#endif
98#include <iprt/uri.h>
99
100// Guest Properties validation.
101#include "VBox/HostServices/GuestPropertySvc.h"
102
103// generated header
104#include "SchemaDefs.h"
105
106#include "HashedPw.h"
107#include "LoggingNew.h"
108
109using namespace com;
110using namespace settings;
111
112////////////////////////////////////////////////////////////////////////////////
113//
114// Defines
115//
116////////////////////////////////////////////////////////////////////////////////
117
118/** VirtualBox XML settings namespace */
119#define VBOX_XML_NAMESPACE "http://www.virtualbox.org/"
120
121/** VirtualBox XML schema location (relative URI) */
122#define VBOX_XML_SCHEMA "VirtualBox-settings.xsd"
123
124/** VirtualBox XML settings version number substring ("x.y") */
125#define VBOX_XML_VERSION "1.12"
126
127/** VirtualBox OVF settings import default version number substring ("x.y").
128 *
129 * Think twice before changing this, as all VirtualBox versions before 5.1
130 * wrote the settings version when exporting, but totally ignored it on
131 * importing (while it should have been a mandatory attribute), so 3rd party
132 * software out there creates OVF files with the VirtualBox specific settings
133 * but lacking the version attribute. This shouldn't happen any more, but
134 * breaking existing OVF files isn't nice. */
135#define VBOX_XML_IMPORT_VERSION "1.15"
136
137/** VirtualBox XML settings version platform substring */
138#if defined (RT_OS_DARWIN)
139# define VBOX_XML_PLATFORM "macosx"
140#elif defined (RT_OS_FREEBSD)
141# define VBOX_XML_PLATFORM "freebsd"
142#elif defined (RT_OS_LINUX)
143# define VBOX_XML_PLATFORM "linux"
144#elif defined (RT_OS_NETBSD)
145# define VBOX_XML_PLATFORM "netbsd"
146#elif defined (RT_OS_OPENBSD)
147# define VBOX_XML_PLATFORM "openbsd"
148#elif defined (RT_OS_OS2)
149# define VBOX_XML_PLATFORM "os2"
150#elif defined (RT_OS_SOLARIS)
151# define VBOX_XML_PLATFORM "solaris"
152#elif defined (RT_OS_WINDOWS)
153# define VBOX_XML_PLATFORM "windows"
154#else
155# error Unsupported platform!
156#endif
157
158/** VirtualBox XML settings full version string ("x.y-platform") */
159#define VBOX_XML_VERSION_FULL VBOX_XML_VERSION "-" VBOX_XML_PLATFORM
160
161/** VirtualBox OVF import default settings full version string ("x.y-platform") */
162#define VBOX_XML_IMPORT_VERSION_FULL VBOX_XML_IMPORT_VERSION "-" VBOX_XML_PLATFORM
163
164////////////////////////////////////////////////////////////////////////////////
165//
166// Internal data
167//
168////////////////////////////////////////////////////////////////////////////////
169
170/**
171 * Opaque data structore for ConfigFileBase (only declared
172 * in header, defined only here).
173 */
174
175struct ConfigFileBase::Data
176{
177 Data()
178 : pDoc(NULL),
179 pelmRoot(NULL),
180 sv(SettingsVersion_Null),
181 svRead(SettingsVersion_Null)
182 {}
183
184 ~Data()
185 {
186 cleanup();
187 }
188
189 RTCString strFilename;
190 bool fFileExists;
191
192 xml::Document *pDoc;
193 xml::ElementNode *pelmRoot;
194
195 com::Utf8Str strSettingsVersionFull; // e.g. "1.7-linux"
196 SettingsVersion_T sv; // e.g. SettingsVersion_v1_7
197
198 SettingsVersion_T svRead; // settings version that the original file had when it was read,
199 // or SettingsVersion_Null if none
200
201 void copyFrom(const Data &d)
202 {
203 strFilename = d.strFilename;
204 fFileExists = d.fFileExists;
205 strSettingsVersionFull = d.strSettingsVersionFull;
206 sv = d.sv;
207 svRead = d.svRead;
208 }
209
210 void cleanup()
211 {
212 if (pDoc)
213 {
214 delete pDoc;
215 pDoc = NULL;
216 pelmRoot = NULL;
217 }
218 }
219};
220
221/**
222 * Private exception class (not in the header file) that makes
223 * throwing xml::LogicError instances easier. That class is public
224 * and should be caught by client code.
225 */
226class settings::ConfigFileError : public xml::LogicError
227{
228public:
229 ConfigFileError(const ConfigFileBase *file,
230 const xml::Node *pNode,
231 const char *pcszFormat, ...)
232 : xml::LogicError()
233 {
234 va_list args;
235 va_start(args, pcszFormat);
236 Utf8Str strWhat(pcszFormat, args);
237 va_end(args);
238
239 Utf8Str strLine;
240 if (pNode)
241 strLine = Utf8StrFmt(" (line %RU32)", pNode->getLineNumber());
242
243 const char *pcsz = strLine.c_str();
244 Utf8StrFmt str(N_("Error in %s%s -- %s"),
245 file->m->strFilename.c_str(),
246 (pcsz) ? pcsz : "",
247 strWhat.c_str());
248
249 setWhat(str.c_str());
250 }
251};
252
253////////////////////////////////////////////////////////////////////////////////
254//
255// ConfigFileBase
256//
257////////////////////////////////////////////////////////////////////////////////
258
259/**
260 * Constructor. Allocates the XML internals, parses the XML file if
261 * pstrFilename is != NULL and reads the settings version from it.
262 * @param pstrFilename
263 */
264ConfigFileBase::ConfigFileBase(const com::Utf8Str *pstrFilename)
265 : m(new Data)
266{
267 m->fFileExists = false;
268
269 if (pstrFilename)
270 {
271 try
272 {
273 // reading existing settings file:
274 m->strFilename = *pstrFilename;
275
276 xml::XmlFileParser parser;
277 m->pDoc = new xml::Document;
278 parser.read(*pstrFilename,
279 *m->pDoc);
280
281 m->fFileExists = true;
282
283 m->pelmRoot = m->pDoc->getRootElement();
284 if (!m->pelmRoot || !m->pelmRoot->nameEquals("VirtualBox"))
285 throw ConfigFileError(this, m->pelmRoot, N_("Root element in VirtualBox settings files must be \"VirtualBox\""));
286
287 if (!(m->pelmRoot->getAttributeValue("version", m->strSettingsVersionFull)))
288 throw ConfigFileError(this, m->pelmRoot, N_("Required VirtualBox/@version attribute is missing"));
289
290 LogRel(("Loading settings file \"%s\" with version \"%s\"\n", m->strFilename.c_str(), m->strSettingsVersionFull.c_str()));
291
292 m->sv = parseVersion(m->strSettingsVersionFull, m->pelmRoot);
293
294 // remember the settings version we read in case it gets upgraded later,
295 // so we know when to make backups
296 m->svRead = m->sv;
297 }
298 catch(...)
299 {
300 /*
301 * The destructor is not called when an exception is thrown in the constructor,
302 * so we have to do the cleanup here.
303 */
304 delete m;
305 m = NULL;
306 throw;
307 }
308 }
309 else
310 {
311 // creating new settings file:
312 m->strSettingsVersionFull = VBOX_XML_VERSION_FULL;
313 m->sv = SettingsVersion_v1_12;
314 }
315}
316
317ConfigFileBase::ConfigFileBase(const ConfigFileBase &other)
318 : m(new Data)
319{
320 copyBaseFrom(other);
321 m->strFilename = "";
322 m->fFileExists = false;
323}
324
325/**
326 * Clean up.
327 */
328ConfigFileBase::~ConfigFileBase()
329{
330 if (m)
331 {
332 delete m;
333 m = NULL;
334 }
335}
336
337/**
338 * Helper function to convert a MediaType enum value into string from.
339 * @param t
340 */
341/*static*/
342const char *ConfigFileBase::stringifyMediaType(MediaType t)
343{
344 switch (t)
345 {
346 case HardDisk:
347 return "hard disk";
348 case DVDImage:
349 return "DVD";
350 case FloppyImage:
351 return "floppy";
352 default:
353 AssertMsgFailed(("media type %d\n", t));
354 return "UNKNOWN";
355 }
356}
357
358/**
359 * Helper function that parses a full version number.
360 *
361 * Allow future versions but fail if file is older than 1.6. Throws on errors.
362 * @returns settings version
363 * @param strVersion
364 * @param pElm
365 */
366SettingsVersion_T ConfigFileBase::parseVersion(const Utf8Str &strVersion, const xml::ElementNode *pElm)
367{
368 SettingsVersion_T sv = SettingsVersion_Null;
369 if (strVersion.length() > 3)
370 {
371 const char *pcsz = strVersion.c_str();
372
373 uint32_t uMajor = 0;
374 char ch;
375 while ( (ch = *pcsz)
376 && RT_C_IS_DIGIT(ch) )
377 {
378 uMajor *= 10;
379 uMajor += (uint32_t)(ch - '0');
380 ++pcsz;
381 }
382
383 uint32_t uMinor = 0;
384 if (ch == '.')
385 {
386 pcsz++;
387 while ( (ch = *pcsz)
388 && RT_C_IS_DIGIT(ch))
389 {
390 uMinor *= 10;
391 uMinor += (ULONG)(ch - '0');
392 ++pcsz;
393 }
394 }
395
396 if (uMajor == 1)
397 {
398 if (uMinor == 3)
399 sv = SettingsVersion_v1_3;
400 else if (uMinor == 4)
401 sv = SettingsVersion_v1_4;
402 else if (uMinor == 5)
403 sv = SettingsVersion_v1_5;
404 else if (uMinor == 6)
405 sv = SettingsVersion_v1_6;
406 else if (uMinor == 7)
407 sv = SettingsVersion_v1_7;
408 else if (uMinor == 8)
409 sv = SettingsVersion_v1_8;
410 else if (uMinor == 9)
411 sv = SettingsVersion_v1_9;
412 else if (uMinor == 10)
413 sv = SettingsVersion_v1_10;
414 else if (uMinor == 11)
415 sv = SettingsVersion_v1_11;
416 else if (uMinor == 12)
417 sv = SettingsVersion_v1_12;
418 else if (uMinor == 13)
419 sv = SettingsVersion_v1_13;
420 else if (uMinor == 14)
421 sv = SettingsVersion_v1_14;
422 else if (uMinor == 15)
423 sv = SettingsVersion_v1_15;
424 else if (uMinor == 16)
425 sv = SettingsVersion_v1_16;
426 else if (uMinor == 17)
427 sv = SettingsVersion_v1_17;
428 else if (uMinor == 18)
429 sv = SettingsVersion_v1_18;
430 else if (uMinor == 19)
431 sv = SettingsVersion_v1_19;
432 else if (uMinor == 20)
433 sv = SettingsVersion_v1_20;
434 else if (uMinor > 20)
435 sv = SettingsVersion_Future;
436 }
437 else if (uMajor > 1)
438 sv = SettingsVersion_Future;
439
440 Log(("Parsed settings version %d.%d to enum value %d\n", uMajor, uMinor, sv));
441 }
442
443 if (sv == SettingsVersion_Null)
444 throw ConfigFileError(this, pElm, N_("Cannot handle settings version '%s'"), strVersion.c_str());
445
446 return sv;
447}
448
449/**
450 * Helper function that parses a UUID in string form into
451 * a com::Guid item. Accepts UUIDs both with and without
452 * "{}" brackets. Throws on errors.
453 * @param guid
454 * @param strUUID
455 * @param pElm
456 */
457void ConfigFileBase::parseUUID(Guid &guid,
458 const Utf8Str &strUUID,
459 const xml::ElementNode *pElm) const
460{
461 guid = strUUID.c_str();
462 if (guid.isZero())
463 throw ConfigFileError(this, pElm, N_("UUID \"%s\" has zero format"), strUUID.c_str());
464 else if (!guid.isValid())
465 throw ConfigFileError(this, pElm, N_("UUID \"%s\" has invalid format"), strUUID.c_str());
466}
467
468/**
469 * Parses the given string in str and attempts to treat it as an ISO
470 * date/time stamp to put into timestamp. Throws on errors.
471 * @param timestamp
472 * @param str
473 * @param pElm
474 */
475void ConfigFileBase::parseTimestamp(RTTIMESPEC &timestamp,
476 const com::Utf8Str &str,
477 const xml::ElementNode *pElm) const
478{
479 const char *pcsz = str.c_str();
480 // yyyy-mm-ddThh:mm:ss
481 // "2009-07-10T11:54:03Z"
482 // 01234567890123456789
483 // 1
484 if (str.length() > 19)
485 {
486 // timezone must either be unspecified or 'Z' for UTC
487 if ( (pcsz[19])
488 && (pcsz[19] != 'Z')
489 )
490 throw ConfigFileError(this, pElm, N_("Cannot handle ISO timestamp '%s': is not UTC date"), str.c_str());
491
492 int32_t yyyy;
493 uint32_t mm, dd, hh, min, secs;
494 if ( (pcsz[4] == '-')
495 && (pcsz[7] == '-')
496 && (pcsz[10] == 'T')
497 && (pcsz[13] == ':')
498 && (pcsz[16] == ':')
499 )
500 {
501 int vrc;
502 if ( (RT_SUCCESS(vrc = RTStrToInt32Ex(pcsz, NULL, 0, &yyyy)))
503 // could theoretically be negative but let's assume that nobody
504 // created virtual machines before the Christian era
505 && (RT_SUCCESS(vrc = RTStrToUInt32Ex(pcsz + 5, NULL, 0, &mm)))
506 && (RT_SUCCESS(vrc = RTStrToUInt32Ex(pcsz + 8, NULL, 0, &dd)))
507 && (RT_SUCCESS(vrc = RTStrToUInt32Ex(pcsz + 11, NULL, 0, &hh)))
508 && (RT_SUCCESS(vrc = RTStrToUInt32Ex(pcsz + 14, NULL, 0, &min)))
509 && (RT_SUCCESS(vrc = RTStrToUInt32Ex(pcsz + 17, NULL, 0, &secs)))
510 )
511 {
512 RTTIME time =
513 {
514 yyyy,
515 (uint8_t)mm,
516 0,
517 0,
518 (uint8_t)dd,
519 (uint8_t)hh,
520 (uint8_t)min,
521 (uint8_t)secs,
522 0,
523 RTTIME_FLAGS_TYPE_UTC,
524 0
525 };
526 if (RTTimeNormalize(&time))
527 if (RTTimeImplode(&timestamp, &time))
528 return;
529 }
530
531 throw ConfigFileError(this, pElm, N_("Cannot parse ISO timestamp '%s': runtime error, %Rra"), str.c_str(), vrc);
532 }
533
534 throw ConfigFileError(this, pElm, N_("Cannot parse ISO timestamp '%s': invalid format"), str.c_str());
535 }
536}
537
538/**
539 * Helper function that parses a Base64 formatted string into a binary blob.
540 * @param binary
541 * @param str
542 * @param pElm
543 */
544void ConfigFileBase::parseBase64(IconBlob &binary,
545 const Utf8Str &str,
546 const xml::ElementNode *pElm) const
547{
548#define DECODE_STR_MAX _1M
549 const char* psz = str.c_str();
550 ssize_t cbOut = RTBase64DecodedSize(psz, NULL);
551 if (cbOut > DECODE_STR_MAX)
552 throw ConfigFileError(this, pElm, N_("Base64 encoded data too long (%d > %d)"), cbOut, DECODE_STR_MAX);
553 else if (cbOut < 0)
554 throw ConfigFileError(this, pElm, N_("Base64 encoded data '%s' invalid"), psz);
555 binary.resize((size_t)cbOut);
556 int vrc = VINF_SUCCESS;
557 if (cbOut)
558 vrc = RTBase64Decode(psz, &binary.front(), (size_t)cbOut, NULL, NULL);
559 if (RT_FAILURE(vrc))
560 {
561 binary.resize(0);
562 throw ConfigFileError(this, pElm, N_("Base64 encoded data could not be decoded (%Rrc)"), vrc);
563 }
564}
565
566/**
567 * Helper to create a string for a RTTIMESPEC for writing out ISO timestamps.
568 * @param stamp
569 * @return
570 */
571com::Utf8Str ConfigFileBase::stringifyTimestamp(const RTTIMESPEC &stamp) const
572{
573 RTTIME time;
574 if (!RTTimeExplode(&time, &stamp))
575 throw ConfigFileError(this, NULL, N_("Timespec %lld ms is invalid"), RTTimeSpecGetMilli(&stamp));
576
577 return Utf8StrFmt("%04u-%02u-%02uT%02u:%02u:%02uZ",
578 time.i32Year, time.u8Month, time.u8MonthDay,
579 time.u8Hour, time.u8Minute, time.u8Second);
580}
581
582/**
583 * Helper to create a base64 encoded string out of a binary blob.
584 * @param str
585 * @param binary
586 * @throws std::bad_alloc and ConfigFileError
587 */
588void ConfigFileBase::toBase64(com::Utf8Str &str, const IconBlob &binary) const
589{
590 size_t cb = binary.size();
591 if (cb > 0)
592 {
593 size_t cchOut = RTBase64EncodedLength(cb);
594 str.reserve(cchOut + 1);
595 int vrc = RTBase64Encode(&binary.front(), cb, str.mutableRaw(), str.capacity(), NULL);
596 if (RT_FAILURE(vrc))
597 throw ConfigFileError(this, NULL, N_("Failed to convert binary data to base64 format (%Rrc)"), vrc);
598 str.jolt();
599 }
600}
601
602/**
603 * Helper method to read in an ExtraData subtree and stores its contents
604 * in the given map of extradata items. Used for both main and machine
605 * extradata (MainConfigFile and MachineConfigFile).
606 * @param elmExtraData
607 * @param map
608 */
609void ConfigFileBase::readExtraData(const xml::ElementNode &elmExtraData,
610 StringsMap &map)
611{
612 xml::NodesLoop nlLevel4(elmExtraData);
613 const xml::ElementNode *pelmExtraDataItem;
614 while ((pelmExtraDataItem = nlLevel4.forAllNodes()))
615 {
616 if (pelmExtraDataItem->nameEquals("ExtraDataItem"))
617 {
618 // <ExtraDataItem name="GUI/LastWindowPostion" value="97,88,981,858"/>
619 Utf8Str strName, strValue;
620 if ( pelmExtraDataItem->getAttributeValue("name", strName)
621 && pelmExtraDataItem->getAttributeValue("value", strValue) )
622 map[strName] = strValue;
623 else
624 throw ConfigFileError(this, pelmExtraDataItem, N_("Required ExtraDataItem/@name or @value attribute is missing"));
625 }
626 }
627}
628
629/**
630 * Reads \<USBDeviceFilter\> entries from under the given elmDeviceFilters node and
631 * stores them in the given linklist. This is in ConfigFileBase because it's used
632 * from both MainConfigFile (for host filters) and MachineConfigFile (for machine
633 * filters).
634 * @param elmDeviceFilters
635 * @param ll
636 */
637void ConfigFileBase::readUSBDeviceFilters(const xml::ElementNode &elmDeviceFilters,
638 USBDeviceFiltersList &ll)
639{
640 xml::NodesLoop nl1(elmDeviceFilters, "DeviceFilter");
641 const xml::ElementNode *pelmLevel4Child;
642 while ((pelmLevel4Child = nl1.forAllNodes()))
643 {
644 USBDeviceFilter flt;
645 flt.action = USBDeviceFilterAction_Ignore;
646 Utf8Str strAction;
647 if ( pelmLevel4Child->getAttributeValue("name", flt.strName)
648 && pelmLevel4Child->getAttributeValue("active", flt.fActive))
649 {
650 if (!pelmLevel4Child->getAttributeValue("vendorId", flt.strVendorId))
651 pelmLevel4Child->getAttributeValue("vendorid", flt.strVendorId); // used before 1.3
652 if (!pelmLevel4Child->getAttributeValue("productId", flt.strProductId))
653 pelmLevel4Child->getAttributeValue("productid", flt.strProductId); // used before 1.3
654 pelmLevel4Child->getAttributeValue("revision", flt.strRevision);
655 pelmLevel4Child->getAttributeValue("manufacturer", flt.strManufacturer);
656 pelmLevel4Child->getAttributeValue("product", flt.strProduct);
657 if (!pelmLevel4Child->getAttributeValue("serialNumber", flt.strSerialNumber))
658 pelmLevel4Child->getAttributeValue("serialnumber", flt.strSerialNumber); // used before 1.3
659 pelmLevel4Child->getAttributeValue("port", flt.strPort);
660
661 // the next 2 are irrelevant for host USB objects
662 pelmLevel4Child->getAttributeValue("remote", flt.strRemote);
663 pelmLevel4Child->getAttributeValue("maskedInterfaces", flt.ulMaskedInterfaces);
664
665 // action is only used with host USB objects
666 if (pelmLevel4Child->getAttributeValue("action", strAction))
667 {
668 if (strAction == "Ignore")
669 flt.action = USBDeviceFilterAction_Ignore;
670 else if (strAction == "Hold")
671 flt.action = USBDeviceFilterAction_Hold;
672 else
673 throw ConfigFileError(this, pelmLevel4Child, N_("Invalid value '%s' in DeviceFilter/@action attribute"), strAction.c_str());
674 }
675
676 ll.push_back(flt);
677 }
678 }
679}
680
681/**
682 * Reads a media registry entry from the main VirtualBox.xml file.
683 *
684 * Whereas the current media registry code is fairly straightforward, it was quite a mess
685 * with settings format before 1.4 (VirtualBox 2.0 used settings format 1.3). The elements
686 * in the media registry were much more inconsistent, and different elements were used
687 * depending on the type of device and image.
688 *
689 * @param t
690 * @param elmMedium
691 * @param med
692 */
693void ConfigFileBase::readMediumOne(MediaType t,
694 const xml::ElementNode &elmMedium,
695 Medium &med)
696{
697 // <HardDisk uuid="{5471ecdb-1ddb-4012-a801-6d98e226868b}" location="/mnt/innotek-unix/vdis/Windows XP.vdi" format="VDI" type="Normal">
698
699 Utf8Str strUUID;
700 if (!elmMedium.getAttributeValue("uuid", strUUID))
701 throw ConfigFileError(this, &elmMedium, N_("Required %s/@uuid attribute is missing"), elmMedium.getName());
702
703 parseUUID(med.uuid, strUUID, &elmMedium);
704
705 bool fNeedsLocation = true;
706
707 if (t == HardDisk)
708 {
709 if (m->sv < SettingsVersion_v1_4)
710 {
711 // here the system is:
712 // <HardDisk uuid="{....}" type="normal">
713 // <VirtualDiskImage filePath="/path/to/xxx.vdi"/>
714 // </HardDisk>
715
716 fNeedsLocation = false;
717 bool fNeedsFilePath = true;
718 const xml::ElementNode *pelmImage;
719 if ((pelmImage = elmMedium.findChildElement("VirtualDiskImage")))
720 med.strFormat = "VDI";
721 else if ((pelmImage = elmMedium.findChildElement("VMDKImage")))
722 med.strFormat = "VMDK";
723 else if ((pelmImage = elmMedium.findChildElement("VHDImage")))
724 med.strFormat = "VHD";
725 else if ((pelmImage = elmMedium.findChildElement("ISCSIHardDisk")))
726 {
727 med.strFormat = "iSCSI";
728
729 fNeedsFilePath = false;
730 // location is special here: current settings specify an "iscsi://user@server:port/target/lun"
731 // string for the location and also have several disk properties for these, whereas this used
732 // to be hidden in several sub-elements before 1.4, so compose a location string and set up
733 // the properties:
734 med.strLocation = "iscsi://";
735 Utf8Str strUser, strServer, strPort, strTarget, strLun;
736 if (pelmImage->getAttributeValue("userName", strUser))
737 {
738 med.strLocation.append(strUser);
739 med.strLocation.append("@");
740 }
741 Utf8Str strServerAndPort;
742 if (pelmImage->getAttributeValue("server", strServer))
743 {
744 strServerAndPort = strServer;
745 }
746 if (pelmImage->getAttributeValue("port", strPort))
747 {
748 if (strServerAndPort.length())
749 strServerAndPort.append(":");
750 strServerAndPort.append(strPort);
751 }
752 med.strLocation.append(strServerAndPort);
753 if (pelmImage->getAttributeValue("target", strTarget))
754 {
755 med.strLocation.append("/");
756 med.strLocation.append(strTarget);
757 }
758 if (pelmImage->getAttributeValue("lun", strLun))
759 {
760 med.strLocation.append("/");
761 med.strLocation.append(strLun);
762 }
763
764 if (strServer.length() && strPort.length())
765 med.properties["TargetAddress"] = strServerAndPort;
766 if (strTarget.length())
767 med.properties["TargetName"] = strTarget;
768 if (strUser.length())
769 med.properties["InitiatorUsername"] = strUser;
770 Utf8Str strPassword;
771 if (pelmImage->getAttributeValue("password", strPassword))
772 med.properties["InitiatorSecret"] = strPassword;
773 if (strLun.length())
774 med.properties["LUN"] = strLun;
775 }
776 else if ((pelmImage = elmMedium.findChildElement("CustomHardDisk")))
777 {
778 fNeedsFilePath = false;
779 fNeedsLocation = true;
780 // also requires @format attribute, which will be queried below
781 }
782 else
783 throw ConfigFileError(this, &elmMedium, N_("Required %s/VirtualDiskImage element is missing"), elmMedium.getName());
784
785 if (fNeedsFilePath)
786 {
787 if (!(pelmImage->getAttributeValuePath("filePath", med.strLocation)))
788 throw ConfigFileError(this, &elmMedium, N_("Required %s/@filePath attribute is missing"), elmMedium.getName());
789 }
790 }
791
792 if (med.strFormat.isEmpty()) // not set with 1.4 format above, or 1.4 Custom format?
793 if (!elmMedium.getAttributeValue("format", med.strFormat))
794 throw ConfigFileError(this, &elmMedium, N_("Required %s/@format attribute is missing"), elmMedium.getName());
795
796 if (!elmMedium.getAttributeValue("autoReset", med.fAutoReset))
797 med.fAutoReset = false;
798
799 Utf8Str strType;
800 if (elmMedium.getAttributeValue("type", strType))
801 {
802 // pre-1.4 used lower case, so make this case-insensitive
803 strType.toUpper();
804 if (strType == "NORMAL")
805 med.hdType = MediumType_Normal;
806 else if (strType == "IMMUTABLE")
807 med.hdType = MediumType_Immutable;
808 else if (strType == "WRITETHROUGH")
809 med.hdType = MediumType_Writethrough;
810 else if (strType == "SHAREABLE")
811 med.hdType = MediumType_Shareable;
812 else if (strType == "READONLY")
813 med.hdType = MediumType_Readonly;
814 else if (strType == "MULTIATTACH")
815 med.hdType = MediumType_MultiAttach;
816 else
817 throw ConfigFileError(this, &elmMedium, N_("HardDisk/@type attribute must be one of Normal, Immutable, Writethrough, Shareable, Readonly or MultiAttach"));
818 }
819 }
820 else
821 {
822 if (m->sv < SettingsVersion_v1_4)
823 {
824 // DVD and floppy images before 1.4 had "src" attribute instead of "location"
825 if (!elmMedium.getAttributeValue("src", med.strLocation))
826 throw ConfigFileError(this, &elmMedium, N_("Required %s/@src attribute is missing"), elmMedium.getName());
827
828 fNeedsLocation = false;
829 }
830
831 if (!elmMedium.getAttributeValue("format", med.strFormat))
832 {
833 // DVD and floppy images before 1.11 had no format attribute. assign the default.
834 med.strFormat = "RAW";
835 }
836
837 if (t == DVDImage)
838 med.hdType = MediumType_Readonly;
839 else if (t == FloppyImage)
840 med.hdType = MediumType_Writethrough;
841 }
842
843 if (fNeedsLocation)
844 // current files and 1.4 CustomHardDisk elements must have a location attribute
845 if (!elmMedium.getAttributeValue("location", med.strLocation))
846 throw ConfigFileError(this, &elmMedium, N_("Required %s/@location attribute is missing"), elmMedium.getName());
847
848 // 3.2 builds added Description as an attribute, read it silently
849 // and write it back as an element starting with 5.1.26
850 elmMedium.getAttributeValue("Description", med.strDescription);
851
852 xml::NodesLoop nlMediumChildren(elmMedium);
853 const xml::ElementNode *pelmMediumChild;
854 while ((pelmMediumChild = nlMediumChildren.forAllNodes()))
855 {
856 if (pelmMediumChild->nameEquals("Description"))
857 med.strDescription = pelmMediumChild->getValue();
858 else if (pelmMediumChild->nameEquals("Property"))
859 {
860 // handle medium properties
861 Utf8Str strPropName, strPropValue;
862 if ( pelmMediumChild->getAttributeValue("name", strPropName)
863 && pelmMediumChild->getAttributeValue("value", strPropValue) )
864 med.properties[strPropName] = strPropValue;
865 else
866 throw ConfigFileError(this, pelmMediumChild, N_("Required HardDisk/Property/@name or @value attribute is missing"));
867 }
868 }
869}
870
871/**
872 * Reads a media registry entry from the main VirtualBox.xml file and
873 * likewise for all children where applicable.
874 *
875 * @param t
876 * @param elmMedium
877 * @param med
878 */
879void ConfigFileBase::readMedium(MediaType t,
880 const xml::ElementNode &elmMedium,
881 Medium &med)
882{
883 std::list<const xml::ElementNode *> llElementsTodo;
884 llElementsTodo.push_back(&elmMedium);
885 std::list<Medium *> llSettingsTodo;
886 llSettingsTodo.push_back(&med);
887 std::list<uint32_t> llDepthsTodo;
888 llDepthsTodo.push_back(1);
889
890 while (llElementsTodo.size() > 0)
891 {
892 const xml::ElementNode *pElement = llElementsTodo.front();
893 llElementsTodo.pop_front();
894 Medium *pMed = llSettingsTodo.front();
895 llSettingsTodo.pop_front();
896 uint32_t depth = llDepthsTodo.front();
897 llDepthsTodo.pop_front();
898
899 if (depth > SETTINGS_MEDIUM_DEPTH_MAX)
900 throw ConfigFileError(this, pElement, N_("Maximum medium tree depth of %u exceeded"), SETTINGS_MEDIUM_DEPTH_MAX);
901
902 readMediumOne(t, *pElement, *pMed);
903
904 if (t != HardDisk)
905 return;
906
907 // load all children
908 xml::NodesLoop nl2(*pElement, m->sv >= SettingsVersion_v1_4 ? "HardDisk" : "DiffHardDisk");
909 const xml::ElementNode *pelmHDChild;
910 while ((pelmHDChild = nl2.forAllNodes()))
911 {
912 llElementsTodo.push_back(pelmHDChild);
913 pMed->llChildren.push_back(Medium::Empty);
914 llSettingsTodo.push_back(&pMed->llChildren.back());
915 llDepthsTodo.push_back(depth + 1);
916 }
917 }
918}
919
920/**
921 * Reads in the entire \<MediaRegistry\> chunk and stores its media in the lists
922 * of the given MediaRegistry structure.
923 *
924 * This is used in both MainConfigFile and MachineConfigFile since starting with
925 * VirtualBox 4.0, we can have media registries in both.
926 *
927 * For pre-1.4 files, this gets called with the \<DiskRegistry\> chunk instead.
928 *
929 * @param elmMediaRegistry
930 * @param mr
931 */
932void ConfigFileBase::readMediaRegistry(const xml::ElementNode &elmMediaRegistry,
933 MediaRegistry &mr)
934{
935 xml::NodesLoop nl1(elmMediaRegistry);
936 const xml::ElementNode *pelmChild1;
937 while ((pelmChild1 = nl1.forAllNodes()))
938 {
939 MediaType t = Error;
940 if (pelmChild1->nameEquals("HardDisks"))
941 t = HardDisk;
942 else if (pelmChild1->nameEquals("DVDImages"))
943 t = DVDImage;
944 else if (pelmChild1->nameEquals("FloppyImages"))
945 t = FloppyImage;
946 else
947 continue;
948
949 xml::NodesLoop nl2(*pelmChild1);
950 const xml::ElementNode *pelmMedium;
951 while ((pelmMedium = nl2.forAllNodes()))
952 {
953 if ( t == HardDisk
954 && (pelmMedium->nameEquals("HardDisk")))
955 {
956 mr.llHardDisks.push_back(Medium::Empty);
957 readMedium(t, *pelmMedium, mr.llHardDisks.back());
958 }
959 else if ( t == DVDImage
960 && (pelmMedium->nameEquals("Image")))
961 {
962 mr.llDvdImages.push_back(Medium::Empty);
963 readMedium(t, *pelmMedium, mr.llDvdImages.back());
964 }
965 else if ( t == FloppyImage
966 && (pelmMedium->nameEquals("Image")))
967 {
968 mr.llFloppyImages.push_back(Medium::Empty);
969 readMedium(t, *pelmMedium, mr.llFloppyImages.back());
970 }
971 }
972 }
973}
974
975/**
976 * This is common version for reading NAT port forward rule in per-_machine's_adapter_ and
977 * per-network approaches.
978 * Note: this function doesn't in fill given list from xml::ElementNodesList, because there is conflicting
979 * declaration in ovmfreader.h.
980 */
981void ConfigFileBase::readNATForwardRulesMap(const xml::ElementNode &elmParent, NATRulesMap &mapRules)
982{
983 xml::ElementNodesList plstRules;
984 elmParent.getChildElements(plstRules, "Forwarding");
985 for (xml::ElementNodesList::iterator pf = plstRules.begin(); pf != plstRules.end(); ++pf)
986 {
987 NATRule rule;
988 uint32_t port = 0;
989 (*pf)->getAttributeValue("name", rule.strName);
990 (*pf)->getAttributeValue("proto", (uint32_t&)rule.proto);
991 (*pf)->getAttributeValue("hostip", rule.strHostIP);
992 (*pf)->getAttributeValue("hostport", port);
993 rule.u16HostPort = (uint16_t)port;
994 (*pf)->getAttributeValue("guestip", rule.strGuestIP);
995 (*pf)->getAttributeValue("guestport", port);
996 rule.u16GuestPort = (uint16_t)port;
997 mapRules.insert(std::make_pair(rule.strName, rule));
998 }
999}
1000
1001void ConfigFileBase::readNATLoopbacks(const xml::ElementNode &elmParent, NATLoopbackOffsetList &llLoopbacks)
1002{
1003 xml::ElementNodesList plstLoopbacks;
1004 elmParent.getChildElements(plstLoopbacks, "Loopback4");
1005 for (xml::ElementNodesList::iterator lo = plstLoopbacks.begin();
1006 lo != plstLoopbacks.end(); ++lo)
1007 {
1008 NATHostLoopbackOffset loopback;
1009 (*lo)->getAttributeValue("address", loopback.strLoopbackHostAddress);
1010 (*lo)->getAttributeValue("offset", (uint32_t&)loopback.u32Offset);
1011 llLoopbacks.push_back(loopback);
1012 }
1013}
1014
1015
1016/**
1017 * Adds a "version" attribute to the given XML element with the
1018 * VirtualBox settings version (e.g. "1.10-linux"). Used by
1019 * the XML format for the root element and by the OVF export
1020 * for the vbox:Machine element.
1021 * @param elm
1022 */
1023void ConfigFileBase::setVersionAttribute(xml::ElementNode &elm)
1024{
1025 const char *pcszVersion = NULL;
1026 switch (m->sv)
1027 {
1028 case SettingsVersion_v1_8:
1029 pcszVersion = "1.8";
1030 break;
1031
1032 case SettingsVersion_v1_9:
1033 pcszVersion = "1.9";
1034 break;
1035
1036 case SettingsVersion_v1_10:
1037 pcszVersion = "1.10";
1038 break;
1039
1040 case SettingsVersion_v1_11:
1041 pcszVersion = "1.11";
1042 break;
1043
1044 case SettingsVersion_v1_12:
1045 pcszVersion = "1.12";
1046 break;
1047
1048 case SettingsVersion_v1_13:
1049 pcszVersion = "1.13";
1050 break;
1051
1052 case SettingsVersion_v1_14:
1053 pcszVersion = "1.14";
1054 break;
1055
1056 case SettingsVersion_v1_15:
1057 pcszVersion = "1.15";
1058 break;
1059
1060 case SettingsVersion_v1_16:
1061 pcszVersion = "1.16";
1062 break;
1063
1064 case SettingsVersion_v1_17:
1065 pcszVersion = "1.17";
1066 break;
1067
1068 case SettingsVersion_v1_18:
1069 pcszVersion = "1.18";
1070 break;
1071
1072 case SettingsVersion_v1_19:
1073 pcszVersion = "1.19";
1074 break;
1075
1076 case SettingsVersion_v1_20:
1077 pcszVersion = "1.20";
1078 break;
1079
1080 default:
1081 // catch human error: the assertion below will trigger in debug
1082 // or dbgopt builds, so hopefully this will get noticed sooner in
1083 // the future, because it's easy to forget top update something.
1084 AssertMsg(m->sv <= SettingsVersion_v1_7, ("Settings.cpp: unexpected settings version %d, unhandled future version?\n", m->sv));
1085 // silently upgrade if this is less than 1.7 because that's the oldest we can write
1086 if (m->sv <= SettingsVersion_v1_7)
1087 {
1088 pcszVersion = "1.7";
1089 m->sv = SettingsVersion_v1_7;
1090 }
1091 else
1092 {
1093 // This is reached for SettingsVersion_Future and forgotten
1094 // settings version after SettingsVersion_v1_7, which should
1095 // not happen (see assertion above). Set the version to the
1096 // latest known version, to minimize loss of information, but
1097 // as we can't predict the future we have to use some format
1098 // we know, and latest should be the best choice. Note that
1099 // for "forgotten settings" this may not be the best choice,
1100 // but as it's an omission of someone who changed this file
1101 // it's the only generic possibility.
1102 pcszVersion = "1.20";
1103 m->sv = SettingsVersion_v1_20;
1104 }
1105 break;
1106 }
1107
1108 m->strSettingsVersionFull = Utf8StrFmt("%s-%s",
1109 pcszVersion,
1110 VBOX_XML_PLATFORM); // e.g. "linux"
1111 elm.setAttribute("version", m->strSettingsVersionFull);
1112}
1113
1114
1115/**
1116 * Creates a special backup file in case there is a version
1117 * bump, so that it is possible to go back to the previous
1118 * state. This is done only once (not for every settings
1119 * version bump), when the settings version is newer than
1120 * the version read from the config file. Must be called
1121 * before ConfigFileBase::createStubDocument, because that
1122 * method may alter information which this method needs.
1123 */
1124void ConfigFileBase::specialBackupIfFirstBump()
1125{
1126 // Since this gets called before the XML document is actually written out,
1127 // this is where we must check whether we're upgrading the settings version
1128 // and need to make a backup, so the user can go back to an earlier
1129 // VirtualBox version and recover his old settings files.
1130 if ( (m->svRead != SettingsVersion_Null) // old file exists?
1131 && (m->svRead < m->sv) // we're upgrading?
1132 )
1133 {
1134 // compose new filename: strip off trailing ".xml"/".vbox"
1135 Utf8Str strFilenameNew;
1136 Utf8Str strExt = ".xml";
1137 if (m->strFilename.endsWith(".xml"))
1138 strFilenameNew = m->strFilename.substr(0, m->strFilename.length() - 4);
1139 else if (m->strFilename.endsWith(".vbox"))
1140 {
1141 strFilenameNew = m->strFilename.substr(0, m->strFilename.length() - 5);
1142 strExt = ".vbox";
1143 }
1144
1145 // and append something like "-1.3-linux.xml"
1146 strFilenameNew.append("-");
1147 strFilenameNew.append(m->strSettingsVersionFull); // e.g. "1.3-linux"
1148 strFilenameNew.append(strExt); // .xml for main config, .vbox for machine config
1149
1150 // Copying the file cannot be avoided, as doing tricks with renaming
1151 // causes trouble on OS X with aliases (which follow the rename), and
1152 // on all platforms there is a risk of "losing" the VM config when
1153 // running out of space, as a rename here couldn't be rolled back.
1154 // Ignoring all errors besides running out of space is intentional, as
1155 // we don't want to do anything if the file already exists.
1156 int vrc = RTFileCopy(m->strFilename.c_str(), strFilenameNew.c_str());
1157 if (RT_UNLIKELY(vrc == VERR_DISK_FULL))
1158 throw ConfigFileError(this, NULL, N_("Cannot create settings backup file when upgrading to a newer settings format"));
1159
1160 // do this only once
1161 m->svRead = SettingsVersion_Null;
1162 }
1163}
1164
1165/**
1166 * Creates a new stub xml::Document in the m->pDoc member with the
1167 * root "VirtualBox" element set up. This is used by both
1168 * MainConfigFile and MachineConfigFile at the beginning of writing
1169 * out their XML.
1170 *
1171 * Before calling this, it is the responsibility of the caller to
1172 * set the "sv" member to the required settings version that is to
1173 * be written. For newly created files, the settings version will be
1174 * recent (1.12 or later if necessary); for files read in from disk
1175 * earlier, it will be the settings version indicated in the file.
1176 * However, this method will silently make sure that the settings
1177 * version is always at least 1.7 and change it if necessary, since
1178 * there is no write support for earlier settings versions.
1179 */
1180void ConfigFileBase::createStubDocument()
1181{
1182 Assert(m->pDoc == NULL);
1183 m->pDoc = new xml::Document;
1184
1185 m->pelmRoot = m->pDoc->createRootElement("VirtualBox",
1186 "\n"
1187 "** DO NOT EDIT THIS FILE.\n"
1188 "** If you make changes to this file while any VirtualBox related application\n"
1189 "** is running, your changes will be overwritten later, without taking effect.\n"
1190 "** Use VBoxManage or the VirtualBox Manager GUI to make changes.\n"
1191);
1192 m->pelmRoot->setAttribute("xmlns", VBOX_XML_NAMESPACE);
1193 // Have the code for producing a proper schema reference. Not used by most
1194 // tools, so don't bother doing it. The schema is not on the server anyway.
1195#ifdef VBOX_WITH_SETTINGS_SCHEMA
1196 m->pelmRoot->setAttribute("xmlns:xsi", "http://www.w3.org/2001/XMLSchema-instance");
1197 m->pelmRoot->setAttribute("xsi:schemaLocation", VBOX_XML_NAMESPACE " " VBOX_XML_SCHEMA);
1198#endif
1199
1200 // add settings version attribute to root element, update m->strSettingsVersionFull
1201 setVersionAttribute(*m->pelmRoot);
1202
1203 LogRel(("Saving settings file \"%s\" with version \"%s\"\n", m->strFilename.c_str(), m->strSettingsVersionFull.c_str()));
1204}
1205
1206/**
1207 * Creates an \<ExtraData\> node under the given parent element with
1208 * \<ExtraDataItem\> childern according to the contents of the given
1209 * map.
1210 *
1211 * This is in ConfigFileBase because it's used in both MainConfigFile
1212 * and MachineConfigFile, which both can have extradata.
1213 *
1214 * @param elmParent
1215 * @param me
1216 */
1217void ConfigFileBase::buildExtraData(xml::ElementNode &elmParent,
1218 const StringsMap &me)
1219{
1220 if (me.size())
1221 {
1222 xml::ElementNode *pelmExtraData = elmParent.createChild("ExtraData");
1223 for (StringsMap::const_iterator it = me.begin();
1224 it != me.end();
1225 ++it)
1226 {
1227 const Utf8Str &strName = it->first;
1228 const Utf8Str &strValue = it->second;
1229 xml::ElementNode *pelmThis = pelmExtraData->createChild("ExtraDataItem");
1230 pelmThis->setAttribute("name", strName);
1231 pelmThis->setAttribute("value", strValue);
1232 }
1233 }
1234}
1235
1236/**
1237 * Creates \<DeviceFilter\> nodes under the given parent element according to
1238 * the contents of the given USBDeviceFiltersList. This is in ConfigFileBase
1239 * because it's used in both MainConfigFile (for host filters) and
1240 * MachineConfigFile (for machine filters).
1241 *
1242 * If fHostMode is true, this means that we're supposed to write filters
1243 * for the IHost interface (respect "action", omit "strRemote" and
1244 * "ulMaskedInterfaces" in struct USBDeviceFilter).
1245 *
1246 * @param elmParent
1247 * @param ll
1248 * @param fHostMode
1249 */
1250void ConfigFileBase::buildUSBDeviceFilters(xml::ElementNode &elmParent,
1251 const USBDeviceFiltersList &ll,
1252 bool fHostMode)
1253{
1254 for (USBDeviceFiltersList::const_iterator it = ll.begin();
1255 it != ll.end();
1256 ++it)
1257 {
1258 const USBDeviceFilter &flt = *it;
1259 xml::ElementNode *pelmFilter = elmParent.createChild("DeviceFilter");
1260 pelmFilter->setAttribute("name", flt.strName);
1261 pelmFilter->setAttribute("active", flt.fActive);
1262 if (flt.strVendorId.length())
1263 pelmFilter->setAttribute("vendorId", flt.strVendorId);
1264 if (flt.strProductId.length())
1265 pelmFilter->setAttribute("productId", flt.strProductId);
1266 if (flt.strRevision.length())
1267 pelmFilter->setAttribute("revision", flt.strRevision);
1268 if (flt.strManufacturer.length())
1269 pelmFilter->setAttribute("manufacturer", flt.strManufacturer);
1270 if (flt.strProduct.length())
1271 pelmFilter->setAttribute("product", flt.strProduct);
1272 if (flt.strSerialNumber.length())
1273 pelmFilter->setAttribute("serialNumber", flt.strSerialNumber);
1274 if (flt.strPort.length())
1275 pelmFilter->setAttribute("port", flt.strPort);
1276
1277 if (fHostMode)
1278 {
1279 const char *pcsz =
1280 (flt.action == USBDeviceFilterAction_Ignore) ? "Ignore"
1281 : /*(flt.action == USBDeviceFilterAction_Hold) ?*/ "Hold";
1282 pelmFilter->setAttribute("action", pcsz);
1283 }
1284 else
1285 {
1286 if (flt.strRemote.length())
1287 pelmFilter->setAttribute("remote", flt.strRemote);
1288 if (flt.ulMaskedInterfaces)
1289 pelmFilter->setAttribute("maskedInterfaces", flt.ulMaskedInterfaces);
1290 }
1291 }
1292}
1293
1294/**
1295 * Creates a single \<HardDisk\> element for the given Medium structure
1296 * and all child hard disks underneath. Called from MainConfigFile::write().
1297 *
1298 * @param t
1299 * @param elmMedium
1300 * @param med
1301 */
1302void ConfigFileBase::buildMedium(MediaType t,
1303 xml::ElementNode &elmMedium,
1304 const Medium &med)
1305{
1306 std::list<const Medium *> llSettingsTodo;
1307 llSettingsTodo.push_back(&med);
1308 std::list<xml::ElementNode *> llElementsTodo;
1309 llElementsTodo.push_back(&elmMedium);
1310 std::list<uint32_t> llDepthsTodo;
1311 llDepthsTodo.push_back(1);
1312
1313 while (llSettingsTodo.size() > 0)
1314 {
1315 const Medium *pMed = llSettingsTodo.front();
1316 llSettingsTodo.pop_front();
1317 xml::ElementNode *pElement = llElementsTodo.front();
1318 llElementsTodo.pop_front();
1319 uint32_t depth = llDepthsTodo.front();
1320 llDepthsTodo.pop_front();
1321
1322 if (depth > SETTINGS_MEDIUM_DEPTH_MAX)
1323 throw ConfigFileError(this, pElement, N_("Maximum medium tree depth of %u exceeded"), SETTINGS_MEDIUM_DEPTH_MAX);
1324
1325 xml::ElementNode *pelmMedium;
1326
1327 if (t == HardDisk)
1328 pelmMedium = pElement->createChild("HardDisk");
1329 else
1330 pelmMedium = pElement->createChild("Image");
1331
1332 pelmMedium->setAttribute("uuid", pMed->uuid.toStringCurly());
1333
1334 pelmMedium->setAttributePath("location", pMed->strLocation);
1335
1336 if (t == HardDisk || RTStrICmp(pMed->strFormat.c_str(), "RAW"))
1337 pelmMedium->setAttribute("format", pMed->strFormat);
1338 if ( t == HardDisk
1339 && pMed->fAutoReset)
1340 pelmMedium->setAttribute("autoReset", pMed->fAutoReset);
1341 if (pMed->strDescription.length())
1342 pelmMedium->createChild("Description")->addContent(pMed->strDescription);
1343
1344 for (StringsMap::const_iterator it = pMed->properties.begin();
1345 it != pMed->properties.end();
1346 ++it)
1347 {
1348 xml::ElementNode *pelmProp = pelmMedium->createChild("Property");
1349 pelmProp->setAttribute("name", it->first);
1350 pelmProp->setAttribute("value", it->second);
1351 }
1352
1353 // only for base hard disks, save the type
1354 if (depth == 1)
1355 {
1356 // no need to save the usual DVD/floppy medium types
1357 if ( ( t != DVDImage
1358 || ( pMed->hdType != MediumType_Writethrough // shouldn't happen
1359 && pMed->hdType != MediumType_Readonly))
1360 && ( t != FloppyImage
1361 || pMed->hdType != MediumType_Writethrough))
1362 {
1363 const char *pcszType =
1364 pMed->hdType == MediumType_Normal ? "Normal" :
1365 pMed->hdType == MediumType_Immutable ? "Immutable" :
1366 pMed->hdType == MediumType_Writethrough ? "Writethrough" :
1367 pMed->hdType == MediumType_Shareable ? "Shareable" :
1368 pMed->hdType == MediumType_Readonly ? "Readonly" :
1369 pMed->hdType == MediumType_MultiAttach ? "MultiAttach" :
1370 "INVALID";
1371 pelmMedium->setAttribute("type", pcszType);
1372 }
1373 }
1374
1375 /* save all children */
1376 MediaList::const_iterator itBegin = pMed->llChildren.begin();
1377 MediaList::const_iterator itEnd = pMed->llChildren.end();
1378 for (MediaList::const_iterator it = itBegin; it != itEnd; ++it)
1379 {
1380 llSettingsTodo.push_back(&*it);
1381 llElementsTodo.push_back(pelmMedium);
1382 llDepthsTodo.push_back(depth + 1);
1383 }
1384 }
1385}
1386
1387/**
1388 * Creates a \<MediaRegistry\> node under the given parent and writes out all
1389 * hard disks and DVD and floppy images from the lists in the given MediaRegistry
1390 * structure under it.
1391 *
1392 * This is used in both MainConfigFile and MachineConfigFile since starting with
1393 * VirtualBox 4.0, we can have media registries in both.
1394 *
1395 * @param elmParent
1396 * @param mr
1397 */
1398void ConfigFileBase::buildMediaRegistry(xml::ElementNode &elmParent,
1399 const MediaRegistry &mr)
1400{
1401 if (mr.llHardDisks.size() == 0 && mr.llDvdImages.size() == 0 && mr.llFloppyImages.size() == 0)
1402 return;
1403
1404 xml::ElementNode *pelmMediaRegistry = elmParent.createChild("MediaRegistry");
1405
1406 if (mr.llHardDisks.size())
1407 {
1408 xml::ElementNode *pelmHardDisks = pelmMediaRegistry->createChild("HardDisks");
1409 for (MediaList::const_iterator it = mr.llHardDisks.begin();
1410 it != mr.llHardDisks.end();
1411 ++it)
1412 {
1413 buildMedium(HardDisk, *pelmHardDisks, *it);
1414 }
1415 }
1416
1417 if (mr.llDvdImages.size())
1418 {
1419 xml::ElementNode *pelmDVDImages = pelmMediaRegistry->createChild("DVDImages");
1420 for (MediaList::const_iterator it = mr.llDvdImages.begin();
1421 it != mr.llDvdImages.end();
1422 ++it)
1423 {
1424 buildMedium(DVDImage, *pelmDVDImages, *it);
1425 }
1426 }
1427
1428 if (mr.llFloppyImages.size())
1429 {
1430 xml::ElementNode *pelmFloppyImages = pelmMediaRegistry->createChild("FloppyImages");
1431 for (MediaList::const_iterator it = mr.llFloppyImages.begin();
1432 it != mr.llFloppyImages.end();
1433 ++it)
1434 {
1435 buildMedium(FloppyImage, *pelmFloppyImages, *it);
1436 }
1437 }
1438}
1439
1440/**
1441 * Serialize NAT port-forwarding rules in parent container.
1442 * Note: it's responsibility of caller to create parent of the list tag.
1443 * because this method used for serializing per-_mahine's_adapter_ and per-network approaches.
1444 */
1445void ConfigFileBase::buildNATForwardRulesMap(xml::ElementNode &elmParent, const NATRulesMap &mapRules)
1446{
1447 for (NATRulesMap::const_iterator r = mapRules.begin();
1448 r != mapRules.end(); ++r)
1449 {
1450 xml::ElementNode *pelmPF;
1451 pelmPF = elmParent.createChild("Forwarding");
1452 const NATRule &nr = r->second;
1453 if (nr.strName.length())
1454 pelmPF->setAttribute("name", nr.strName);
1455 pelmPF->setAttribute("proto", nr.proto);
1456 if (nr.strHostIP.length())
1457 pelmPF->setAttribute("hostip", nr.strHostIP);
1458 if (nr.u16HostPort)
1459 pelmPF->setAttribute("hostport", nr.u16HostPort);
1460 if (nr.strGuestIP.length())
1461 pelmPF->setAttribute("guestip", nr.strGuestIP);
1462 if (nr.u16GuestPort)
1463 pelmPF->setAttribute("guestport", nr.u16GuestPort);
1464 }
1465}
1466
1467
1468void ConfigFileBase::buildNATLoopbacks(xml::ElementNode &elmParent, const NATLoopbackOffsetList &natLoopbackOffsetList)
1469{
1470 for (NATLoopbackOffsetList::const_iterator lo = natLoopbackOffsetList.begin();
1471 lo != natLoopbackOffsetList.end(); ++lo)
1472 {
1473 xml::ElementNode *pelmLo;
1474 pelmLo = elmParent.createChild("Loopback4");
1475 pelmLo->setAttribute("address", (*lo).strLoopbackHostAddress);
1476 pelmLo->setAttribute("offset", (*lo).u32Offset);
1477 }
1478}
1479
1480/**
1481 * Cleans up memory allocated by the internal XML parser. To be called by
1482 * descendant classes when they're done analyzing the DOM tree to discard it.
1483 */
1484void ConfigFileBase::clearDocument()
1485{
1486 m->cleanup();
1487}
1488
1489/**
1490 * Returns true only if the underlying config file exists on disk;
1491 * either because the file has been loaded from disk, or it's been written
1492 * to disk, or both.
1493 * @return
1494 */
1495bool ConfigFileBase::fileExists()
1496{
1497 return m->fFileExists;
1498}
1499
1500/**
1501 * Returns the settings file version
1502 *
1503 * @returns Settings file version enum.
1504 */
1505SettingsVersion_T ConfigFileBase::getSettingsVersion()
1506{
1507 return m->sv;
1508}
1509
1510
1511/**
1512 * Copies the base variables from another instance. Used by Machine::saveSettings
1513 * so that the settings version does not get lost when a copy of the Machine settings
1514 * file is made to see if settings have actually changed.
1515 * @param b
1516 */
1517void ConfigFileBase::copyBaseFrom(const ConfigFileBase &b)
1518{
1519 m->copyFrom(*b.m);
1520}
1521
1522////////////////////////////////////////////////////////////////////////////////
1523//
1524// Structures shared between Machine XML and VirtualBox.xml
1525//
1526////////////////////////////////////////////////////////////////////////////////
1527
1528
1529/**
1530 * Constructor. Needs to set sane defaults which stand the test of time.
1531 */
1532USBDeviceFilter::USBDeviceFilter() :
1533 fActive(false),
1534 action(USBDeviceFilterAction_Null),
1535 ulMaskedInterfaces(0)
1536{
1537}
1538
1539/**
1540 * Comparison operator. This gets called from MachineConfigFile::operator==,
1541 * which in turn gets called from Machine::saveSettings to figure out whether
1542 * machine settings have really changed and thus need to be written out to disk.
1543 */
1544bool USBDeviceFilter::operator==(const USBDeviceFilter &u) const
1545{
1546 return (this == &u)
1547 || ( strName == u.strName
1548 && fActive == u.fActive
1549 && strVendorId == u.strVendorId
1550 && strProductId == u.strProductId
1551 && strRevision == u.strRevision
1552 && strManufacturer == u.strManufacturer
1553 && strProduct == u.strProduct
1554 && strSerialNumber == u.strSerialNumber
1555 && strPort == u.strPort
1556 && action == u.action
1557 && strRemote == u.strRemote
1558 && ulMaskedInterfaces == u.ulMaskedInterfaces);
1559}
1560
1561/**
1562 * Constructor. Needs to set sane defaults which stand the test of time.
1563 */
1564settings::Medium::Medium() :
1565 fAutoReset(false),
1566 hdType(MediumType_Normal)
1567{
1568}
1569
1570/**
1571 * Comparison operator. This gets called from MachineConfigFile::operator==,
1572 * which in turn gets called from Machine::saveSettings to figure out whether
1573 * machine settings have really changed and thus need to be written out to disk.
1574 */
1575bool settings::Medium::operator==(const settings::Medium &m) const
1576{
1577 return (this == &m)
1578 || ( uuid == m.uuid
1579 && strLocation == m.strLocation
1580 && strDescription == m.strDescription
1581 && strFormat == m.strFormat
1582 && fAutoReset == m.fAutoReset
1583 && properties == m.properties
1584 && hdType == m.hdType
1585 && llChildren == m.llChildren); // this is deep and recurses
1586}
1587
1588const struct settings::Medium settings::Medium::Empty; /* default ctor is OK */
1589
1590/**
1591 * Comparison operator. This gets called from MachineConfigFile::operator==,
1592 * which in turn gets called from Machine::saveSettings to figure out whether
1593 * machine settings have really changed and thus need to be written out to disk.
1594 */
1595bool MediaRegistry::operator==(const MediaRegistry &m) const
1596{
1597 return (this == &m)
1598 || ( llHardDisks == m.llHardDisks
1599 && llDvdImages == m.llDvdImages
1600 && llFloppyImages == m.llFloppyImages);
1601}
1602
1603/**
1604 * Constructor. Needs to set sane defaults which stand the test of time.
1605 */
1606NATRule::NATRule() :
1607 proto(NATProtocol_TCP),
1608 u16HostPort(0),
1609 u16GuestPort(0)
1610{
1611}
1612
1613/**
1614 * Comparison operator. This gets called from MachineConfigFile::operator==,
1615 * which in turn gets called from Machine::saveSettings to figure out whether
1616 * machine settings have really changed and thus need to be written out to disk.
1617 */
1618bool NATRule::operator==(const NATRule &r) const
1619{
1620 return (this == &r)
1621 || ( strName == r.strName
1622 && proto == r.proto
1623 && u16HostPort == r.u16HostPort
1624 && strHostIP == r.strHostIP
1625 && u16GuestPort == r.u16GuestPort
1626 && strGuestIP == r.strGuestIP);
1627}
1628
1629/**
1630 * Constructor. Needs to set sane defaults which stand the test of time.
1631 */
1632NATHostLoopbackOffset::NATHostLoopbackOffset() :
1633 u32Offset(0)
1634{
1635}
1636
1637/**
1638 * Comparison operator. This gets called from MachineConfigFile::operator==,
1639 * which in turn gets called from Machine::saveSettings to figure out whether
1640 * machine settings have really changed and thus need to be written out to disk.
1641 */
1642bool NATHostLoopbackOffset::operator==(const NATHostLoopbackOffset &o) const
1643{
1644 return (this == &o)
1645 || ( strLoopbackHostAddress == o.strLoopbackHostAddress
1646 && u32Offset == o.u32Offset);
1647}
1648
1649
1650////////////////////////////////////////////////////////////////////////////////
1651//
1652// VirtualBox.xml structures
1653//
1654////////////////////////////////////////////////////////////////////////////////
1655
1656PlatformProperties::PlatformProperties()
1657 : fExclusiveHwVirt(true)
1658{
1659#if defined(RT_OS_DARWIN) || defined(RT_OS_WINDOWS) || defined(RT_OS_SOLARIS)
1660 fExclusiveHwVirt = false; /** BUGBUG Does this apply to MacOS on ARM as well? */
1661#endif
1662}
1663
1664/**
1665 * Constructor. Needs to set sane defaults which stand the test of time.
1666 */
1667SystemProperties::SystemProperties()
1668 : uProxyMode(ProxyMode_System)
1669 , uLogHistoryCount(3)
1670{
1671}
1672
1673#ifdef VBOX_WITH_UPDATE_AGENT
1674UpdateAgent::UpdateAgent()
1675 : fEnabled(false)
1676 , enmChannel(UpdateChannel_Stable)
1677 , uCheckFreqSeconds(RT_SEC_1DAY)
1678 , uCheckCount(0)
1679{
1680}
1681#endif /* VBOX_WITH_UPDATE_AGENT */
1682
1683/**
1684 * Constructor. Needs to set sane defaults which stand the test of time.
1685 */
1686DhcpOptValue::DhcpOptValue()
1687 : strValue()
1688 , enmEncoding(DHCPOptionEncoding_Normal)
1689{
1690}
1691
1692/**
1693 * Non-standard constructor.
1694 */
1695DhcpOptValue::DhcpOptValue(const com::Utf8Str &aText, DHCPOptionEncoding_T aEncoding)
1696 : strValue(aText)
1697 , enmEncoding(aEncoding)
1698{
1699}
1700
1701/**
1702 * Default constructor.
1703 */
1704DHCPGroupCondition::DHCPGroupCondition()
1705 : fInclusive(true)
1706 , enmType(DHCPGroupConditionType_MAC)
1707 , strValue()
1708{
1709}
1710
1711/**
1712 * Default constructor.
1713 */
1714DHCPConfig::DHCPConfig()
1715 : mapOptions()
1716 , secMinLeaseTime(0)
1717 , secDefaultLeaseTime(0)
1718 , secMaxLeaseTime(0)
1719{
1720}
1721
1722/**
1723 * Default constructor.
1724 */
1725DHCPGroupConfig::DHCPGroupConfig()
1726 : DHCPConfig()
1727 , strName()
1728 , vecConditions()
1729{
1730}
1731
1732/**
1733 * Default constructor.
1734 */
1735DHCPIndividualConfig::DHCPIndividualConfig()
1736 : DHCPConfig()
1737 , strMACAddress()
1738 , strVMName()
1739 , uSlot(0)
1740{
1741}
1742
1743/**
1744 * Constructor. Needs to set sane defaults which stand the test of time.
1745 */
1746DHCPServer::DHCPServer()
1747 : fEnabled(false)
1748{
1749}
1750
1751/**
1752 * Constructor. Needs to set sane defaults which stand the test of time.
1753 */
1754NATNetwork::NATNetwork() :
1755 fEnabled(true),
1756 fIPv6Enabled(false),
1757 fAdvertiseDefaultIPv6Route(false),
1758 fNeedDhcpServer(true),
1759 u32HostLoopback6Offset(0)
1760{
1761}
1762
1763#ifdef VBOX_WITH_VMNET
1764/**
1765 * Constructor. Needs to set sane defaults which stand the test of time.
1766 */
1767HostOnlyNetwork::HostOnlyNetwork() :
1768 strNetworkMask("255.255.255.0"),
1769 strIPLower("192.168.56.1"),
1770 strIPUpper("192.168.56.199"),
1771 fEnabled(true)
1772{
1773 uuid.create();
1774}
1775#endif /* VBOX_WITH_VMNET */
1776
1777#ifdef VBOX_WITH_CLOUD_NET
1778/**
1779 * Constructor. Needs to set sane defaults which stand the test of time.
1780 */
1781CloudNetwork::CloudNetwork() :
1782 strProviderShortName("OCI"),
1783 strProfileName("Default"),
1784 fEnabled(true)
1785{
1786}
1787#endif /* VBOX_WITH_CLOUD_NET */
1788
1789
1790
1791////////////////////////////////////////////////////////////////////////////////
1792//
1793// MainConfigFile
1794//
1795////////////////////////////////////////////////////////////////////////////////
1796
1797/**
1798 * Reads one \<MachineEntry\> from the main VirtualBox.xml file.
1799 * @param elmMachineRegistry
1800 */
1801void MainConfigFile::readMachineRegistry(const xml::ElementNode &elmMachineRegistry)
1802{
1803 // <MachineEntry uuid="{ xxx }" src=" xxx "/>
1804 xml::NodesLoop nl1(elmMachineRegistry);
1805 const xml::ElementNode *pelmChild1;
1806 while ((pelmChild1 = nl1.forAllNodes()))
1807 {
1808 if (pelmChild1->nameEquals("MachineEntry"))
1809 {
1810 MachineRegistryEntry mre;
1811 Utf8Str strUUID;
1812 if ( pelmChild1->getAttributeValue("uuid", strUUID)
1813 && pelmChild1->getAttributeValue("src", mre.strSettingsFile) )
1814 {
1815 parseUUID(mre.uuid, strUUID, pelmChild1);
1816 llMachines.push_back(mre);
1817 }
1818 else
1819 throw ConfigFileError(this, pelmChild1, N_("Required MachineEntry/@uuid or @src attribute is missing"));
1820 }
1821 }
1822}
1823
1824/**
1825 * Builds the XML tree for the DHCP servers.
1826 */
1827void MainConfigFile::buildDHCPServers(xml::ElementNode &elmDHCPServers, DHCPServersList const &ll)
1828{
1829 for (DHCPServersList::const_iterator it = ll.begin(); it != ll.end(); ++it)
1830 {
1831 const DHCPServer &srv = *it;
1832 xml::ElementNode *pElmThis = elmDHCPServers.createChild("DHCPServer");
1833
1834 pElmThis->setAttribute("networkName", srv.strNetworkName);
1835 pElmThis->setAttribute("IPAddress", srv.strIPAddress);
1836 DhcpOptConstIterator itOpt = srv.globalConfig.mapOptions.find(DHCPOption_SubnetMask);
1837 if (itOpt != srv.globalConfig.mapOptions.end())
1838 pElmThis->setAttribute("networkMask", itOpt->second.strValue);
1839 pElmThis->setAttribute("lowerIP", srv.strIPLower);
1840 pElmThis->setAttribute("upperIP", srv.strIPUpper);
1841 pElmThis->setAttribute("enabled", (srv.fEnabled) ? 1 : 0); // too bad we chose 1 vs. 0 here
1842
1843 /* We don't want duplicate validation check of networkMask here*/
1844 if (srv.globalConfig.mapOptions.size() > (itOpt != srv.globalConfig.mapOptions.end() ? 1U : 0U))
1845 {
1846 xml::ElementNode *pElmOptions = pElmThis->createChild("Options");
1847 buildDHCPOptions(*pElmOptions, srv.globalConfig, true);
1848 }
1849
1850 for (DHCPGroupConfigVec::const_iterator itGroup = srv.vecGroupConfigs.begin();
1851 itGroup != srv.vecGroupConfigs.end(); ++itGroup)
1852 {
1853 DHCPGroupConfig const &rGroupConfig = *itGroup;
1854
1855 xml::ElementNode *pElmGroup = pElmThis->createChild("Group");
1856 pElmGroup->setAttribute("name", rGroupConfig.strName);
1857 buildDHCPOptions(*pElmGroup, rGroupConfig, false);
1858
1859 for (DHCPGroupConditionVec::const_iterator itCond = rGroupConfig.vecConditions.begin();
1860 itCond != rGroupConfig.vecConditions.end(); ++itCond)
1861 {
1862 xml::ElementNode *pElmCondition = pElmGroup->createChild("Condition");
1863 pElmCondition->setAttribute("inclusive", itCond->fInclusive);
1864 pElmCondition->setAttribute("type", (int32_t)itCond->enmType);
1865 pElmCondition->setAttribute("value", itCond->strValue);
1866 }
1867 }
1868
1869 for (DHCPIndividualConfigMap::const_iterator itHost = srv.mapIndividualConfigs.begin();
1870 itHost != srv.mapIndividualConfigs.end(); ++itHost)
1871 {
1872 DHCPIndividualConfig const &rIndividualConfig = itHost->second;
1873
1874 xml::ElementNode *pElmConfig = pElmThis->createChild("Config");
1875 if (rIndividualConfig.strMACAddress.isNotEmpty())
1876 pElmConfig->setAttribute("MACAddress", rIndividualConfig.strMACAddress);
1877 if (rIndividualConfig.strVMName.isNotEmpty())
1878 pElmConfig->setAttribute("vm-name", rIndividualConfig.strVMName);
1879 if (rIndividualConfig.uSlot != 0 || rIndividualConfig.strVMName.isNotEmpty())
1880 pElmConfig->setAttribute("slot", rIndividualConfig.uSlot);
1881 if (rIndividualConfig.strFixedAddress.isNotEmpty())
1882 pElmConfig->setAttribute("fixedAddress", rIndividualConfig.strFixedAddress);
1883 buildDHCPOptions(*pElmConfig, rIndividualConfig, false);
1884 }
1885 }
1886}
1887
1888/**
1889 * Worker for buildDHCPServers() that builds Options or Config element trees.
1890 */
1891void MainConfigFile::buildDHCPOptions(xml::ElementNode &elmOptions, DHCPConfig const &rConfig, bool fSkipSubnetMask)
1892{
1893 /* Generic (and optional) attributes on the Options or Config element: */
1894 if (rConfig.secMinLeaseTime > 0)
1895 elmOptions.setAttribute("secMinLeaseTime", rConfig.secMinLeaseTime);
1896 if (rConfig.secDefaultLeaseTime > 0)
1897 elmOptions.setAttribute("secDefaultLeaseTime", rConfig.secDefaultLeaseTime);
1898 if (rConfig.secMaxLeaseTime > 0)
1899 elmOptions.setAttribute("secMaxLeaseTime", rConfig.secMaxLeaseTime);
1900 if (rConfig.strForcedOptions.isNotEmpty())
1901 elmOptions.setAttribute("forcedOptions", rConfig.strForcedOptions);
1902 if (rConfig.strSuppressedOptions.isNotEmpty())
1903 elmOptions.setAttribute("suppressedOptions", rConfig.strSuppressedOptions);
1904
1905 /* The DHCP options are <Option> child elements: */
1906 for (DhcpOptConstIterator it = rConfig.mapOptions.begin(); it != rConfig.mapOptions.end(); ++it)
1907 if (it->first != DHCPOption_SubnetMask || !fSkipSubnetMask)
1908 {
1909 xml::ElementNode *pElmOption = elmOptions.createChild("Option");
1910 pElmOption->setAttribute("name", it->first);
1911 pElmOption->setAttribute("value", it->second.strValue);
1912 if (it->second.enmEncoding != DHCPOptionEncoding_Normal)
1913 pElmOption->setAttribute("encoding", (int32_t)it->second.enmEncoding);
1914 }
1915}
1916
1917/**
1918 * Reads in the \<DHCPServers\> chunk.
1919 * @param elmDHCPServers
1920 */
1921void MainConfigFile::readDHCPServers(const xml::ElementNode &elmDHCPServers)
1922{
1923 xml::NodesLoop nl1(elmDHCPServers);
1924 const xml::ElementNode *pelmServer;
1925 while ((pelmServer = nl1.forAllNodes()))
1926 {
1927 if (pelmServer->nameEquals("DHCPServer"))
1928 {
1929 DHCPServer srv;
1930 if ( pelmServer->getAttributeValue("networkName", srv.strNetworkName)
1931 && pelmServer->getAttributeValue("IPAddress", srv.strIPAddress)
1932 && pelmServer->getAttributeValue("networkMask", srv.globalConfig.mapOptions[DHCPOption_SubnetMask].strValue)
1933 && pelmServer->getAttributeValue("lowerIP", srv.strIPLower)
1934 && pelmServer->getAttributeValue("upperIP", srv.strIPUpper)
1935 && pelmServer->getAttributeValue("enabled", srv.fEnabled) )
1936 {
1937 /* Global options: */
1938 const xml::ElementNode *pElmOptions;
1939 xml::NodesLoop nlOptions(*pelmServer, "Options");
1940 while ((pElmOptions = nlOptions.forAllNodes()) != NULL) /** @todo this loop makes no sense, there can only be one \<Options\> child. */
1941 readDHCPOptions(srv.globalConfig, *pElmOptions, true /*fIgnoreSubnetMask*/);
1942
1943 /* Group configurations: */
1944 xml::NodesLoop nlGroup(*pelmServer, "Group");
1945 const xml::ElementNode *pElmGroup;
1946 size_t i = 0;
1947 while ((pElmGroup = nlGroup.forAllNodes()) != NULL)
1948 {
1949 srv.vecGroupConfigs.push_back(DHCPGroupConfig());
1950 DHCPGroupConfig &rGroupConfig = srv.vecGroupConfigs.back();
1951
1952 if (!pElmGroup->getAttributeValue("name", rGroupConfig.strName))
1953 rGroupConfig.strName.printf("Unamed Group #%u", ++i);
1954
1955 readDHCPOptions(rGroupConfig, *pElmGroup, false /*fIgnoreSubnetMask*/);
1956
1957 xml::NodesLoop nlCondition(*pElmGroup, "Condition");
1958 const xml::ElementNode *pElmCondition;
1959 while ((pElmCondition = nlCondition.forAllNodes()) != NULL)
1960 {
1961 rGroupConfig.vecConditions.push_back(DHCPGroupCondition());
1962 DHCPGroupCondition &rGroupCondition = rGroupConfig.vecConditions.back();
1963
1964 if (!pElmCondition->getAttributeValue("inclusive", rGroupCondition.fInclusive))
1965 rGroupCondition.fInclusive = true;
1966
1967 int32_t iType;
1968 if (!pElmCondition->getAttributeValue("type", iType))
1969 iType = DHCPGroupConditionType_MAC;
1970 rGroupCondition.enmType = (DHCPGroupConditionType_T)iType;
1971
1972 pElmCondition->getAttributeValue("value", rGroupCondition.strValue);
1973 }
1974 }
1975
1976 /* host specific configuration: */
1977 xml::NodesLoop nlConfig(*pelmServer, "Config");
1978 const xml::ElementNode *pElmConfig;
1979 while ((pElmConfig = nlConfig.forAllNodes()) != NULL)
1980 {
1981 com::Utf8Str strMACAddress;
1982 if (!pElmConfig->getAttributeValue("MACAddress", strMACAddress))
1983 strMACAddress.setNull();
1984
1985 com::Utf8Str strVMName;
1986 if (!pElmConfig->getAttributeValue("vm-name", strVMName))
1987 strVMName.setNull();
1988
1989 uint32_t uSlot;
1990 if (!pElmConfig->getAttributeValue("slot", uSlot))
1991 uSlot = 0;
1992
1993 com::Utf8Str strKey;
1994 if (strVMName.isNotEmpty())
1995 strKey.printf("%s/%u", strVMName.c_str(), uSlot);
1996 else
1997 strKey.printf("%s/%u", strMACAddress.c_str(), uSlot);
1998
1999 DHCPIndividualConfig &rIndividualConfig = srv.mapIndividualConfigs[strKey];
2000 rIndividualConfig.strMACAddress = strMACAddress;
2001 rIndividualConfig.strVMName = strVMName;
2002 rIndividualConfig.uSlot = uSlot;
2003 pElmConfig->getAttributeValue("fixedAddress", rIndividualConfig.strFixedAddress);
2004
2005 readDHCPOptions(rIndividualConfig, *pElmConfig, false /*fIgnoreSubnetMask*/);
2006 }
2007
2008 llDhcpServers.push_back(srv);
2009 }
2010 else
2011 throw ConfigFileError(this, pelmServer, N_("Required DHCPServer/@networkName, @IPAddress, @networkMask, @lowerIP, @upperIP or @enabled attribute is missing"));
2012 }
2013 }
2014}
2015
2016/**
2017 * Worker for readDHCPServers that reads a configuration, either global,
2018 * group or host (VM+NIC) specific.
2019 */
2020void MainConfigFile::readDHCPOptions(DHCPConfig &rConfig, const xml::ElementNode &elmConfig, bool fIgnoreSubnetMask)
2021{
2022 /* Generic (and optional) attributes on the Options or Config element: */
2023 if (!elmConfig.getAttributeValue("secMinLeaseTime", rConfig.secMinLeaseTime))
2024 rConfig.secMinLeaseTime = 0;
2025 if (!elmConfig.getAttributeValue("secDefaultLeaseTime", rConfig.secDefaultLeaseTime))
2026 rConfig.secDefaultLeaseTime = 0;
2027 if (!elmConfig.getAttributeValue("secMaxLeaseTime", rConfig.secMaxLeaseTime))
2028 rConfig.secMaxLeaseTime = 0;
2029 if (!elmConfig.getAttributeValue("forcedOptions", rConfig.strForcedOptions))
2030 rConfig.strSuppressedOptions.setNull();
2031 if (!elmConfig.getAttributeValue("suppressedOptions", rConfig.strSuppressedOptions))
2032 rConfig.strSuppressedOptions.setNull();
2033
2034 /* The DHCP options are <Option> child elements: */
2035 xml::NodesLoop nl2(elmConfig, "Option");
2036 const xml::ElementNode *pElmOption;
2037 while ((pElmOption = nl2.forAllNodes()) != NULL)
2038 {
2039 int32_t iOptName;
2040 if (!pElmOption->getAttributeValue("name", iOptName))
2041 continue;
2042 DHCPOption_T OptName = (DHCPOption_T)iOptName;
2043 if (OptName == DHCPOption_SubnetMask && fIgnoreSubnetMask)
2044 continue;
2045
2046 com::Utf8Str strValue;
2047 pElmOption->getAttributeValue("value", strValue);
2048
2049 int32_t iOptEnc;
2050 if (!pElmOption->getAttributeValue("encoding", iOptEnc))
2051 iOptEnc = DHCPOptionEncoding_Normal;
2052
2053 rConfig.mapOptions[OptName] = DhcpOptValue(strValue, (DHCPOptionEncoding_T)iOptEnc);
2054 } /* end of forall("Option") */
2055
2056}
2057
2058/**
2059 * Reads in the \<NATNetworks\> chunk.
2060 * @param elmNATNetworks
2061 */
2062void MainConfigFile::readNATNetworks(const xml::ElementNode &elmNATNetworks)
2063{
2064 xml::NodesLoop nl1(elmNATNetworks);
2065 const xml::ElementNode *pelmNet;
2066 while ((pelmNet = nl1.forAllNodes()))
2067 {
2068 if (pelmNet->nameEquals("NATNetwork"))
2069 {
2070 NATNetwork net;
2071 if ( pelmNet->getAttributeValue("networkName", net.strNetworkName)
2072 && pelmNet->getAttributeValue("enabled", net.fEnabled)
2073 && pelmNet->getAttributeValue("network", net.strIPv4NetworkCidr)
2074 && pelmNet->getAttributeValue("ipv6", net.fIPv6Enabled)
2075 && pelmNet->getAttributeValue("ipv6prefix", net.strIPv6Prefix)
2076 && pelmNet->getAttributeValue("advertiseDefaultIPv6Route", net.fAdvertiseDefaultIPv6Route)
2077 && pelmNet->getAttributeValue("needDhcp", net.fNeedDhcpServer) )
2078 {
2079 pelmNet->getAttributeValue("loopback6", net.u32HostLoopback6Offset);
2080 const xml::ElementNode *pelmMappings;
2081 if ((pelmMappings = pelmNet->findChildElement("Mappings")))
2082 readNATLoopbacks(*pelmMappings, net.llHostLoopbackOffsetList);
2083
2084 const xml::ElementNode *pelmPortForwardRules4;
2085 if ((pelmPortForwardRules4 = pelmNet->findChildElement("PortForwarding4")))
2086 readNATForwardRulesMap(*pelmPortForwardRules4,
2087 net.mapPortForwardRules4);
2088
2089 const xml::ElementNode *pelmPortForwardRules6;
2090 if ((pelmPortForwardRules6 = pelmNet->findChildElement("PortForwarding6")))
2091 readNATForwardRulesMap(*pelmPortForwardRules6,
2092 net.mapPortForwardRules6);
2093
2094 llNATNetworks.push_back(net);
2095 }
2096 else
2097 throw ConfigFileError(this, pelmNet, N_("Required NATNetwork/@networkName, @gateway, @network,@advertiseDefaultIpv6Route , @needDhcp or @enabled attribute is missing"));
2098 }
2099 }
2100}
2101
2102#ifdef VBOX_WITH_VMNET
2103/**
2104 * Reads in the \<HostOnlyNetworks\> chunk.
2105 * @param elmHostOnlyNetworks
2106 */
2107void MainConfigFile::readHostOnlyNetworks(const xml::ElementNode &elmHostOnlyNetworks)
2108{
2109 xml::NodesLoop nl1(elmHostOnlyNetworks);
2110 const xml::ElementNode *pelmNet;
2111 while ((pelmNet = nl1.forAllNodes()))
2112 {
2113 if (pelmNet->nameEquals("HostOnlyNetwork"))
2114 {
2115 HostOnlyNetwork net;
2116 Utf8Str strID;
2117 if ( pelmNet->getAttributeValue("name", net.strNetworkName)
2118 && pelmNet->getAttributeValue("mask", net.strNetworkMask)
2119 && pelmNet->getAttributeValue("ipLower", net.strIPLower)
2120 && pelmNet->getAttributeValue("ipUpper", net.strIPUpper)
2121 && pelmNet->getAttributeValue("id", strID)
2122 && pelmNet->getAttributeValue("enabled", net.fEnabled) )
2123 {
2124 parseUUID(net.uuid, strID, pelmNet);
2125 llHostOnlyNetworks.push_back(net);
2126 }
2127 else
2128 throw ConfigFileError(this, pelmNet, N_("Required HostOnlyNetwork/@name, @mask, @ipLower, @ipUpper, @id or @enabled attribute is missing"));
2129 }
2130 }
2131}
2132#endif /* VBOX_WITH_VMNET */
2133
2134#ifdef VBOX_WITH_CLOUD_NET
2135/**
2136 * Reads in the \<CloudNetworks\> chunk.
2137 * @param elmCloudNetworks
2138 */
2139void MainConfigFile::readCloudNetworks(const xml::ElementNode &elmCloudNetworks)
2140{
2141 xml::NodesLoop nl1(elmCloudNetworks);
2142 const xml::ElementNode *pelmNet;
2143 while ((pelmNet = nl1.forAllNodes()))
2144 {
2145 if (pelmNet->nameEquals("CloudNetwork"))
2146 {
2147 CloudNetwork net;
2148 if ( pelmNet->getAttributeValue("name", net.strNetworkName)
2149 && pelmNet->getAttributeValue("provider", net.strProviderShortName)
2150 && pelmNet->getAttributeValue("profile", net.strProfileName)
2151 && pelmNet->getAttributeValue("id", net.strNetworkId)
2152 && pelmNet->getAttributeValue("enabled", net.fEnabled) )
2153 {
2154 llCloudNetworks.push_back(net);
2155 }
2156 else
2157 throw ConfigFileError(this, pelmNet, N_("Required CloudNetwork/@name, @provider, @profile, @id or @enabled attribute is missing"));
2158 }
2159 }
2160}
2161#endif /* VBOX_WITH_CLOUD_NET */
2162
2163/**
2164 * Creates \<USBDeviceSource\> nodes under the given parent element according to
2165 * the contents of the given USBDeviceSourcesList.
2166 *
2167 * @param elmParent
2168 * @param ll
2169 */
2170void MainConfigFile::buildUSBDeviceSources(xml::ElementNode &elmParent,
2171 const USBDeviceSourcesList &ll)
2172{
2173 for (USBDeviceSourcesList::const_iterator it = ll.begin();
2174 it != ll.end();
2175 ++it)
2176 {
2177 const USBDeviceSource &src = *it;
2178 xml::ElementNode *pelmSource = elmParent.createChild("USBDeviceSource");
2179 pelmSource->setAttribute("name", src.strName);
2180 pelmSource->setAttribute("backend", src.strBackend);
2181 pelmSource->setAttribute("address", src.strAddress);
2182
2183 /* Write the properties. */
2184 for (StringsMap::const_iterator itProp = src.properties.begin();
2185 itProp != src.properties.end();
2186 ++itProp)
2187 {
2188 xml::ElementNode *pelmProp = pelmSource->createChild("Property");
2189 pelmProp->setAttribute("name", itProp->first);
2190 pelmProp->setAttribute("value", itProp->second);
2191 }
2192 }
2193}
2194
2195/**
2196 * Reads \<USBDeviceFilter\> entries from under the given elmDeviceFilters node and
2197 * stores them in the given linklist. This is in ConfigFileBase because it's used
2198 * from both MainConfigFile (for host filters) and MachineConfigFile (for machine
2199 * filters).
2200 * @param elmDeviceSources
2201 * @param ll
2202 */
2203void MainConfigFile::readUSBDeviceSources(const xml::ElementNode &elmDeviceSources,
2204 USBDeviceSourcesList &ll)
2205{
2206 xml::NodesLoop nl1(elmDeviceSources, "USBDeviceSource");
2207 const xml::ElementNode *pelmChild;
2208 while ((pelmChild = nl1.forAllNodes()))
2209 {
2210 USBDeviceSource src;
2211
2212 if ( pelmChild->getAttributeValue("name", src.strName)
2213 && pelmChild->getAttributeValue("backend", src.strBackend)
2214 && pelmChild->getAttributeValue("address", src.strAddress))
2215 {
2216 // handle medium properties
2217 xml::NodesLoop nl2(*pelmChild, "Property");
2218 const xml::ElementNode *pelmSrcChild;
2219 while ((pelmSrcChild = nl2.forAllNodes()))
2220 {
2221 Utf8Str strPropName, strPropValue;
2222 if ( pelmSrcChild->getAttributeValue("name", strPropName)
2223 && pelmSrcChild->getAttributeValue("value", strPropValue) )
2224 src.properties[strPropName] = strPropValue;
2225 else
2226 throw ConfigFileError(this, pelmSrcChild, N_("Required USBDeviceSource/Property/@name or @value attribute is missing"));
2227 }
2228
2229 ll.push_back(src);
2230 }
2231 }
2232}
2233
2234/**
2235 * Converts old style Proxy settings from ExtraData/UI section.
2236 *
2237 * Saves proxy settings directly to systemProperties structure.
2238 *
2239 * @returns true if conversion was successfull, false if not.
2240 * @param strUIProxySettings The GUI settings string to convert.
2241 */
2242bool MainConfigFile::convertGuiProxySettings(const com::Utf8Str &strUIProxySettings)
2243{
2244 /*
2245 * Possible variants:
2246 * - "ProxyAuto,proxyserver.url,1080,authDisabled,,"
2247 * - "ProxyDisabled,proxyserver.url,1080,authDisabled,,"
2248 * - "ProxyEnabled,proxyserver.url,1080,authDisabled,,"
2249 *
2250 * Note! We only need to bother with the first three fields as the last
2251 * three was never really used or ever actually passed to the HTTP
2252 * client code.
2253 */
2254 /* First field: The proxy mode. */
2255 const char *psz = RTStrStripL(strUIProxySettings.c_str());
2256 static const struct { const char *psz; size_t cch; ProxyMode_T enmMode; } s_aModes[] =
2257 {
2258 { RT_STR_TUPLE("ProxyAuto"), ProxyMode_System },
2259 { RT_STR_TUPLE("ProxyDisabled"), ProxyMode_NoProxy },
2260 { RT_STR_TUPLE("ProxyEnabled"), ProxyMode_Manual },
2261 };
2262 for (size_t i = 0; i < RT_ELEMENTS(s_aModes); i++)
2263 if (RTStrNICmpAscii(psz, s_aModes[i].psz, s_aModes[i].cch) == 0)
2264 {
2265 systemProperties.uProxyMode = s_aModes[i].enmMode;
2266 psz = RTStrStripL(psz + s_aModes[i].cch);
2267 if (*psz == ',')
2268 {
2269 /* Second field: The proxy host, possibly fully fledged proxy URL. */
2270 psz = RTStrStripL(psz + 1);
2271 if (*psz != '\0' && *psz != ',')
2272 {
2273 const char *pszEnd = strchr(psz, ',');
2274 size_t cchHost = pszEnd ? (size_t)(pszEnd - psz) : strlen(psz);
2275 while (cchHost > 0 && RT_C_IS_SPACE(psz[cchHost - 1]))
2276 cchHost--;
2277 systemProperties.strProxyUrl.assign(psz, cchHost);
2278 if (systemProperties.strProxyUrl.find("://") == RTCString::npos)
2279 systemProperties.strProxyUrl.replace(0, 0, "http://");
2280
2281 /* Third field: The proxy port. Defaulted to 1080 for all proxies.
2282 The new settings has type specific default ports. */
2283 uint16_t uPort = 1080;
2284 if (pszEnd)
2285 {
2286 int vrc = RTStrToUInt16Ex(RTStrStripL(pszEnd + 1), NULL, 10, &uPort);
2287 if (RT_FAILURE(vrc))
2288 uPort = 1080;
2289 }
2290 RTURIPARSED Parsed;
2291 int vrc = RTUriParse(systemProperties.strProxyUrl.c_str(), &Parsed);
2292 if (RT_SUCCESS(vrc))
2293 {
2294 if (Parsed.uAuthorityPort == UINT32_MAX)
2295 systemProperties.strProxyUrl.appendPrintf(systemProperties.strProxyUrl.endsWith(":")
2296 ? "%u" : ":%u", uPort);
2297 }
2298 else
2299 {
2300 LogRelFunc(("Dropping invalid proxy URL for %u: %s\n",
2301 systemProperties.uProxyMode, systemProperties.strProxyUrl.c_str()));
2302 systemProperties.strProxyUrl.setNull();
2303 }
2304 }
2305 /* else: don't bother with the rest if we haven't got a host. */
2306 }
2307 if ( systemProperties.strProxyUrl.isEmpty()
2308 && systemProperties.uProxyMode == ProxyMode_Manual)
2309 {
2310 systemProperties.uProxyMode = ProxyMode_System;
2311 return false;
2312 }
2313 return true;
2314 }
2315 LogRelFunc(("Unknown proxy type: %s\n", psz));
2316 return false;
2317}
2318
2319/**
2320 * Constructor.
2321 *
2322 * If pstrFilename is != NULL, this reads the given settings file into the member
2323 * variables and various substructures and lists. Otherwise, the member variables
2324 * are initialized with default values.
2325 *
2326 * Throws variants of xml::Error for I/O, XML and logical content errors, which
2327 * the caller should catch; if this constructor does not throw, then the member
2328 * variables contain meaningful values (either from the file or defaults).
2329 *
2330 * @param pstrFilename
2331 */
2332MainConfigFile::MainConfigFile(const Utf8Str *pstrFilename)
2333 : ConfigFileBase(pstrFilename)
2334{
2335 if (pstrFilename)
2336 {
2337 // the ConfigFileBase constructor has loaded the XML file, so now
2338 // we need only analyze what is in there
2339 xml::NodesLoop nlRootChildren(*m->pelmRoot);
2340 const xml::ElementNode *pelmRootChild;
2341 bool fCopyProxySettingsFromExtraData = false;
2342 while ((pelmRootChild = nlRootChildren.forAllNodes()))
2343 {
2344 if (pelmRootChild->nameEquals("Global"))
2345 {
2346 xml::NodesLoop nlGlobalChildren(*pelmRootChild);
2347 const xml::ElementNode *pelmGlobalChild;
2348 while ((pelmGlobalChild = nlGlobalChildren.forAllNodes()))
2349 {
2350 if (pelmGlobalChild->nameEquals("SystemProperties"))
2351 {
2352 pelmGlobalChild->getAttributeValue("defaultMachineFolder", systemProperties.strDefaultMachineFolder);
2353 pelmGlobalChild->getAttributeValue("LoggingLevel", systemProperties.strLoggingLevel);
2354 pelmGlobalChild->getAttributeValue("defaultHardDiskFormat", systemProperties.strDefaultHardDiskFormat);
2355 if (!pelmGlobalChild->getAttributeValue("VRDEAuthLibrary", systemProperties.strVRDEAuthLibrary))
2356 // pre-1.11 used @remoteDisplayAuthLibrary instead
2357 pelmGlobalChild->getAttributeValue("remoteDisplayAuthLibrary", systemProperties.strVRDEAuthLibrary);
2358 pelmGlobalChild->getAttributeValue("webServiceAuthLibrary", systemProperties.strWebServiceAuthLibrary);
2359 pelmGlobalChild->getAttributeValue("defaultVRDEExtPack", systemProperties.strDefaultVRDEExtPack);
2360 pelmGlobalChild->getAttributeValue("defaultCryptoExtPack", systemProperties.strDefaultCryptoExtPack);
2361 pelmGlobalChild->getAttributeValue("LogHistoryCount", systemProperties.uLogHistoryCount);
2362 pelmGlobalChild->getAttributeValue("autostartDatabasePath", systemProperties.strAutostartDatabasePath);
2363 pelmGlobalChild->getAttributeValue("defaultFrontend", systemProperties.strDefaultFrontend);
2364 if (m->sv < SettingsVersion_v1_20) /* exclusiveHwVirt was part of SystemProperties for < v1.20. */
2365 pelmGlobalChild->getAttributeValue("exclusiveHwVirt", platformProperties.fExclusiveHwVirt);
2366 if (!pelmGlobalChild->getAttributeValue("proxyMode", systemProperties.uProxyMode))
2367 fCopyProxySettingsFromExtraData = true;
2368 pelmGlobalChild->getAttributeValue("proxyUrl", systemProperties.strProxyUrl);
2369 pelmGlobalChild->getAttributeValue("LanguageId", systemProperties.strLanguageId);
2370 }
2371 if ( pelmGlobalChild->nameEquals("PlatformProperties")
2372 && m->sv >= SettingsVersion_v1_20)
2373 {
2374 /* Since settings v1.20 exclusiveHwVirt is part of PlatformProperties. */
2375 pelmGlobalChild->getAttributeValue("exclusiveHwVirt", platformProperties.fExclusiveHwVirt);
2376 }
2377#ifdef VBOX_WITH_UPDATE_AGENT
2378 else if (pelmGlobalChild->nameEquals("Updates"))
2379 {
2380 /* We keep the updates configuration as part of the host for now, as the API exposes the IHost::updateHost attribute,
2381 * but use an own "Updates" branch in the XML for better structurizing stuff in the future. */
2382 UpdateAgent &updateHost = host.updateHost;
2383
2384 xml::NodesLoop nlLevel4(*pelmGlobalChild);
2385 const xml::ElementNode *pelmLevel4Child;
2386 while ((pelmLevel4Child = nlLevel4.forAllNodes()))
2387 {
2388 if (pelmLevel4Child->nameEquals("Host"))
2389 {
2390 pelmLevel4Child->getAttributeValue("enabled", updateHost.fEnabled);
2391 pelmLevel4Child->getAttributeValue("channel", (uint32_t&)updateHost.enmChannel);
2392 pelmLevel4Child->getAttributeValue("checkFreqSec", updateHost.uCheckFreqSeconds);
2393 pelmLevel4Child->getAttributeValue("repoUrl", updateHost.strRepoUrl);
2394 pelmLevel4Child->getAttributeValue("lastCheckDate", updateHost.strLastCheckDate);
2395 pelmLevel4Child->getAttributeValue("checkCount", updateHost.uCheckCount);
2396 }
2397 /** @todo Add update settings for ExtPack and Guest Additions here later. See @bugref{7983}. */
2398 }
2399
2400 /* Global enabled switch for updates. Currently bound to host updates, as this is the only update we have so far. */
2401 pelmGlobalChild->getAttributeValue("enabled", updateHost.fEnabled);
2402 }
2403#endif
2404 else if (pelmGlobalChild->nameEquals("ExtraData"))
2405 readExtraData(*pelmGlobalChild, mapExtraDataItems);
2406 else if (pelmGlobalChild->nameEquals("MachineRegistry"))
2407 readMachineRegistry(*pelmGlobalChild);
2408 else if ( (pelmGlobalChild->nameEquals("MediaRegistry"))
2409 || ( (m->sv < SettingsVersion_v1_4)
2410 && (pelmGlobalChild->nameEquals("DiskRegistry"))
2411 )
2412 )
2413 readMediaRegistry(*pelmGlobalChild, mediaRegistry);
2414 else if (pelmGlobalChild->nameEquals("NetserviceRegistry"))
2415 {
2416 xml::NodesLoop nlLevel4(*pelmGlobalChild);
2417 const xml::ElementNode *pelmLevel4Child;
2418 while ((pelmLevel4Child = nlLevel4.forAllNodes()))
2419 {
2420 if (pelmLevel4Child->nameEquals("DHCPServers"))
2421 readDHCPServers(*pelmLevel4Child);
2422 if (pelmLevel4Child->nameEquals("NATNetworks"))
2423 readNATNetworks(*pelmLevel4Child);
2424#ifdef VBOX_WITH_VMNET
2425 if (pelmLevel4Child->nameEquals("HostOnlyNetworks"))
2426 readHostOnlyNetworks(*pelmLevel4Child);
2427#endif /* VBOX_WITH_VMNET */
2428#ifdef VBOX_WITH_CLOUD_NET
2429 if (pelmLevel4Child->nameEquals("CloudNetworks"))
2430 readCloudNetworks(*pelmLevel4Child);
2431#endif /* VBOX_WITH_CLOUD_NET */
2432 }
2433 }
2434 else if (pelmGlobalChild->nameEquals("USBDeviceFilters"))
2435 readUSBDeviceFilters(*pelmGlobalChild, host.llUSBDeviceFilters);
2436 else if (pelmGlobalChild->nameEquals("USBDeviceSources"))
2437 readUSBDeviceSources(*pelmGlobalChild, host.llUSBDeviceSources);
2438 }
2439 } // end if (pelmRootChild->nameEquals("Global"))
2440 }
2441
2442 if (fCopyProxySettingsFromExtraData)
2443 for (StringsMap::const_iterator it = mapExtraDataItems.begin(); it != mapExtraDataItems.end(); ++it)
2444 if (it->first.equals("GUI/ProxySettings"))
2445 {
2446 convertGuiProxySettings(it->second);
2447 break;
2448 }
2449
2450 clearDocument();
2451 }
2452
2453 // DHCP servers were introduced with settings version 1.7; if we're loading
2454 // from an older version OR this is a fresh install, then add one DHCP server
2455 // with default settings
2456 if ( (!llDhcpServers.size())
2457 && ( (!pstrFilename) // empty VirtualBox.xml file
2458 || (m->sv < SettingsVersion_v1_7) // upgrading from before 1.7
2459 )
2460 )
2461 {
2462 DHCPServer srv;
2463#ifdef RT_OS_WINDOWS
2464 srv.strNetworkName = "HostInterfaceNetworking-VirtualBox Host-Only Ethernet Adapter";
2465#else
2466 srv.strNetworkName = "HostInterfaceNetworking-vboxnet0";
2467#endif
2468 srv.strIPAddress = "192.168.56.100";
2469 srv.globalConfig.mapOptions[DHCPOption_SubnetMask] = DhcpOptValue("255.255.255.0");
2470 srv.strIPLower = "192.168.56.101";
2471 srv.strIPUpper = "192.168.56.254";
2472 srv.fEnabled = true;
2473 llDhcpServers.push_back(srv);
2474 }
2475}
2476
2477void MainConfigFile::bumpSettingsVersionIfNeeded()
2478{
2479#ifdef VBOX_WITH_VMNET
2480 if (m->sv < SettingsVersion_v1_19)
2481 {
2482 // VirtualBox 7.0 adds support for host-only networks.
2483 if (!llHostOnlyNetworks.empty())
2484 m->sv = SettingsVersion_v1_19;
2485 }
2486#endif /* VBOX_WITH_VMNET */
2487#ifdef VBOX_WITH_CLOUD_NET
2488 if (m->sv < SettingsVersion_v1_18)
2489 {
2490 // VirtualBox 6.1 adds support for cloud networks.
2491 if (!llCloudNetworks.empty())
2492 m->sv = SettingsVersion_v1_18;
2493 }
2494#endif /* VBOX_WITH_CLOUD_NET */
2495
2496 if (m->sv < SettingsVersion_v1_16)
2497 {
2498 // VirtualBox 5.1 add support for additional USB device sources.
2499 if (!host.llUSBDeviceSources.empty())
2500 m->sv = SettingsVersion_v1_16;
2501 }
2502
2503 if (m->sv < SettingsVersion_v1_14)
2504 {
2505 // VirtualBox 4.3 adds NAT networks.
2506 if ( !llNATNetworks.empty())
2507 m->sv = SettingsVersion_v1_14;
2508 }
2509}
2510
2511
2512/**
2513 * Called from the IVirtualBox interface to write out VirtualBox.xml. This
2514 * builds an XML DOM tree and writes it out to disk.
2515 */
2516void MainConfigFile::write(const com::Utf8Str strFilename)
2517{
2518 bumpSettingsVersionIfNeeded();
2519
2520 m->strFilename = strFilename;
2521 specialBackupIfFirstBump();
2522 createStubDocument();
2523
2524 xml::ElementNode *pelmGlobal = m->pelmRoot->createChild("Global");
2525
2526 buildExtraData(*pelmGlobal, mapExtraDataItems);
2527
2528 xml::ElementNode *pelmMachineRegistry = pelmGlobal->createChild("MachineRegistry");
2529 for (MachinesRegistry::const_iterator it = llMachines.begin();
2530 it != llMachines.end();
2531 ++it)
2532 {
2533 // <MachineEntry uuid="{5f102a55-a51b-48e3-b45a-b28d33469488}" src="/mnt/innotek-unix/vbox-machines/Windows 5.1 XP 1 (Office 2003)/Windows 5.1 XP 1 (Office 2003).xml"/>
2534 const MachineRegistryEntry &mre = *it;
2535 xml::ElementNode *pelmMachineEntry = pelmMachineRegistry->createChild("MachineEntry");
2536 pelmMachineEntry->setAttribute("uuid", mre.uuid.toStringCurly());
2537 pelmMachineEntry->setAttribute("src", mre.strSettingsFile);
2538 }
2539
2540 buildMediaRegistry(*pelmGlobal, mediaRegistry);
2541
2542 xml::ElementNode *pelmNetServiceRegistry = pelmGlobal->createChild("NetserviceRegistry"); /** @todo r=bird: wrong capitalization of NetServiceRegistry. sigh. */
2543 buildDHCPServers(*pelmNetServiceRegistry->createChild("DHCPServers"), llDhcpServers);
2544
2545 xml::ElementNode *pelmNATNetworks;
2546 /* don't create entry if no NAT networks are registered. */
2547 if (!llNATNetworks.empty())
2548 {
2549 pelmNATNetworks = pelmNetServiceRegistry->createChild("NATNetworks");
2550 for (NATNetworksList::const_iterator it = llNATNetworks.begin();
2551 it != llNATNetworks.end();
2552 ++it)
2553 {
2554 const NATNetwork &n = *it;
2555 xml::ElementNode *pelmThis = pelmNATNetworks->createChild("NATNetwork");
2556 pelmThis->setAttribute("networkName", n.strNetworkName);
2557 pelmThis->setAttribute("network", n.strIPv4NetworkCidr);
2558 pelmThis->setAttribute("ipv6", n.fIPv6Enabled ? 1 : 0);
2559 pelmThis->setAttribute("ipv6prefix", n.strIPv6Prefix);
2560 pelmThis->setAttribute("advertiseDefaultIPv6Route", (n.fAdvertiseDefaultIPv6Route)? 1 : 0);
2561 pelmThis->setAttribute("needDhcp", (n.fNeedDhcpServer) ? 1 : 0);
2562 pelmThis->setAttribute("enabled", (n.fEnabled) ? 1 : 0); // too bad we chose 1 vs. 0 here
2563 if (n.mapPortForwardRules4.size())
2564 {
2565 xml::ElementNode *pelmPf4 = pelmThis->createChild("PortForwarding4");
2566 buildNATForwardRulesMap(*pelmPf4, n.mapPortForwardRules4);
2567 }
2568 if (n.mapPortForwardRules6.size())
2569 {
2570 xml::ElementNode *pelmPf6 = pelmThis->createChild("PortForwarding6");
2571 buildNATForwardRulesMap(*pelmPf6, n.mapPortForwardRules6);
2572 }
2573
2574 if (n.llHostLoopbackOffsetList.size())
2575 {
2576 xml::ElementNode *pelmMappings = pelmThis->createChild("Mappings");
2577 buildNATLoopbacks(*pelmMappings, n.llHostLoopbackOffsetList);
2578
2579 }
2580 }
2581 }
2582
2583#ifdef VBOX_WITH_VMNET
2584 xml::ElementNode *pelmHostOnlyNetworks;
2585 /* don't create entry if no HostOnly networks are registered. */
2586 if (!llHostOnlyNetworks.empty())
2587 {
2588 pelmHostOnlyNetworks = pelmNetServiceRegistry->createChild("HostOnlyNetworks");
2589 for (HostOnlyNetworksList::const_iterator it = llHostOnlyNetworks.begin();
2590 it != llHostOnlyNetworks.end();
2591 ++it)
2592 {
2593 const HostOnlyNetwork &n = *it;
2594 xml::ElementNode *pelmThis = pelmHostOnlyNetworks->createChild("HostOnlyNetwork");
2595 pelmThis->setAttribute("name", n.strNetworkName);
2596 pelmThis->setAttribute("mask", n.strNetworkMask);
2597 pelmThis->setAttribute("ipLower", n.strIPLower);
2598 pelmThis->setAttribute("ipUpper", n.strIPUpper);
2599 pelmThis->setAttribute("id", n.uuid.toStringCurly());
2600 pelmThis->setAttribute("enabled", (n.fEnabled) ? 1 : 0); // too bad we chose 1 vs. 0 here
2601 }
2602 }
2603#endif /* VBOX_WITH_VMNET */
2604#ifdef VBOX_WITH_CLOUD_NET
2605 xml::ElementNode *pelmCloudNetworks;
2606 /* don't create entry if no cloud networks are registered. */
2607 if (!llCloudNetworks.empty())
2608 {
2609 pelmCloudNetworks = pelmNetServiceRegistry->createChild("CloudNetworks");
2610 for (CloudNetworksList::const_iterator it = llCloudNetworks.begin();
2611 it != llCloudNetworks.end();
2612 ++it)
2613 {
2614 const CloudNetwork &n = *it;
2615 xml::ElementNode *pelmThis = pelmCloudNetworks->createChild("CloudNetwork");
2616 pelmThis->setAttribute("name", n.strNetworkName);
2617 pelmThis->setAttribute("provider", n.strProviderShortName);
2618 pelmThis->setAttribute("profile", n.strProfileName);
2619 pelmThis->setAttribute("id", n.strNetworkId);
2620 pelmThis->setAttribute("enabled", (n.fEnabled) ? 1 : 0); // too bad we chose 1 vs. 0 here
2621 }
2622 }
2623#endif /* VBOX_WITH_CLOUD_NET */
2624
2625#ifdef VBOX_WITH_UPDATE_AGENT
2626 /* We keep the updates configuration as part of the host for now, as the API exposes the IHost::updateHost attribute,
2627 * but use an own "Updates" branch in the XML for better structurizing stuff in the future. */
2628 UpdateAgent &updateHost = host.updateHost;
2629
2630 xml::ElementNode *pelmUpdates = pelmGlobal->createChild("Updates");
2631 /* Global enabled switch for updates. Currently bound to host updates, as this is the only update we have so far. */
2632 pelmUpdates->setAttribute("enabled", updateHost.fEnabled);
2633
2634 xml::ElementNode *pelmUpdateHost = pelmUpdates->createChild("Host");
2635 pelmUpdateHost->setAttribute("enabled", updateHost.fEnabled);
2636 pelmUpdateHost->setAttribute("channel", (int32_t)updateHost.enmChannel);
2637 pelmUpdateHost->setAttribute("checkFreqSec", updateHost.uCheckFreqSeconds);
2638 if (updateHost.strRepoUrl.length())
2639 pelmUpdateHost->setAttribute("repoUrl", updateHost.strRepoUrl);
2640 if (updateHost.strLastCheckDate.length())
2641 pelmUpdateHost->setAttribute("lastCheckDate", updateHost.strLastCheckDate);
2642 pelmUpdateHost->setAttribute("checkCount", updateHost.uCheckCount);
2643 /** @todo Add update settings for ExtPack and Guest Additions here later. See @bugref{7983}. */
2644#endif
2645
2646 xml::ElementNode *pelmSysProps = pelmGlobal->createChild("SystemProperties");
2647 if (systemProperties.strDefaultMachineFolder.length())
2648 pelmSysProps->setAttribute("defaultMachineFolder", systemProperties.strDefaultMachineFolder);
2649 if (systemProperties.strLoggingLevel.length())
2650 pelmSysProps->setAttribute("LoggingLevel", systemProperties.strLoggingLevel);
2651 if (systemProperties.strDefaultHardDiskFormat.length())
2652 pelmSysProps->setAttribute("defaultHardDiskFormat", systemProperties.strDefaultHardDiskFormat);
2653 if (systemProperties.strVRDEAuthLibrary.length())
2654 pelmSysProps->setAttribute("VRDEAuthLibrary", systemProperties.strVRDEAuthLibrary);
2655 if (systemProperties.strWebServiceAuthLibrary.length())
2656 pelmSysProps->setAttribute("webServiceAuthLibrary", systemProperties.strWebServiceAuthLibrary);
2657 if (systemProperties.strDefaultVRDEExtPack.length())
2658 pelmSysProps->setAttribute("defaultVRDEExtPack", systemProperties.strDefaultVRDEExtPack);
2659 if (systemProperties.strDefaultCryptoExtPack.length())
2660 pelmSysProps->setAttribute("defaultCryptoExtPack", systemProperties.strDefaultCryptoExtPack);
2661 pelmSysProps->setAttribute("LogHistoryCount", systemProperties.uLogHistoryCount);
2662 if (systemProperties.strAutostartDatabasePath.length())
2663 pelmSysProps->setAttribute("autostartDatabasePath", systemProperties.strAutostartDatabasePath);
2664 if (systemProperties.strDefaultFrontend.length())
2665 pelmSysProps->setAttribute("defaultFrontend", systemProperties.strDefaultFrontend);
2666 if (systemProperties.strProxyUrl.length())
2667 pelmSysProps->setAttribute("proxyUrl", systemProperties.strProxyUrl);
2668 pelmSysProps->setAttribute("proxyMode", systemProperties.uProxyMode);
2669 if (m->sv >= SettingsVersion_v1_20) /* Since settings v1.20 exclusiveHwVirt is part of PlatformProperties. */
2670 {
2671 xml::ElementNode *pelmPlatProps = pelmGlobal->createChild("PlatformProperties");
2672 pelmPlatProps->setAttribute("exclusiveHwVirt", platformProperties.fExclusiveHwVirt);
2673 }
2674 else
2675 pelmSysProps->setAttribute("exclusiveHwVirt", platformProperties.fExclusiveHwVirt);
2676 if (systemProperties.strLanguageId.isNotEmpty())
2677 pelmSysProps->setAttribute("LanguageId", systemProperties.strLanguageId);
2678
2679 buildUSBDeviceFilters(*pelmGlobal->createChild("USBDeviceFilters"),
2680 host.llUSBDeviceFilters,
2681 true); // fHostMode
2682
2683 if (!host.llUSBDeviceSources.empty())
2684 buildUSBDeviceSources(*pelmGlobal->createChild("USBDeviceSources"),
2685 host.llUSBDeviceSources);
2686
2687 // now go write the XML
2688 xml::XmlFileWriter writer(*m->pDoc);
2689 writer.write(m->strFilename.c_str(), true /*fSafe*/);
2690
2691 m->fFileExists = true;
2692
2693 clearDocument();
2694 LogRel(("Finished saving settings file \"%s\"\n", m->strFilename.c_str()));
2695}
2696
2697////////////////////////////////////////////////////////////////////////////////
2698//
2699// Machine XML structures
2700//
2701////////////////////////////////////////////////////////////////////////////////
2702
2703/**
2704 * Constructor. Needs to set sane defaults which stand the test of time.
2705 */
2706VRDESettings::VRDESettings() :
2707 fEnabled(true), // default for old VMs, for new ones it's false
2708 authType(AuthType_Null),
2709 ulAuthTimeout(5000),
2710 fAllowMultiConnection(false),
2711 fReuseSingleConnection(false)
2712{
2713}
2714
2715/**
2716 * Check if all settings have default values.
2717 */
2718bool VRDESettings::areDefaultSettings(SettingsVersion_T sv) const
2719{
2720 return (sv < SettingsVersion_v1_16 ? fEnabled : !fEnabled)
2721 && authType == AuthType_Null
2722 && (ulAuthTimeout == 5000 || ulAuthTimeout == 0)
2723 && strAuthLibrary.isEmpty()
2724 && !fAllowMultiConnection
2725 && !fReuseSingleConnection
2726 && strVrdeExtPack.isEmpty()
2727 && mapProperties.size() == 0;
2728}
2729
2730/**
2731 * Comparison operator. This gets called from MachineConfigFile::operator==,
2732 * which in turn gets called from Machine::saveSettings to figure out whether
2733 * machine settings have really changed and thus need to be written out to disk.
2734 */
2735bool VRDESettings::operator==(const VRDESettings& v) const
2736{
2737 return (this == &v)
2738 || ( fEnabled == v.fEnabled
2739 && authType == v.authType
2740 && ulAuthTimeout == v.ulAuthTimeout
2741 && strAuthLibrary == v.strAuthLibrary
2742 && fAllowMultiConnection == v.fAllowMultiConnection
2743 && fReuseSingleConnection == v.fReuseSingleConnection
2744 && strVrdeExtPack == v.strVrdeExtPack
2745 && mapProperties == v.mapProperties);
2746}
2747
2748/**
2749 * Constructor. Needs to set sane defaults which stand the test of time.
2750 */
2751FirmwareSettings::FirmwareSettings() :
2752 firmwareType(FirmwareType_BIOS),
2753 fACPIEnabled(true),
2754 fIOAPICEnabled(false),
2755 fLogoFadeIn(true),
2756 fLogoFadeOut(true),
2757 fPXEDebugEnabled(false),
2758 fSmbiosUuidLittleEndian(true),
2759 ulLogoDisplayTime(0),
2760 enmBootMenuMode(FirmwareBootMenuMode_MessageAndMenu),
2761 apicMode(APICMode_APIC),
2762 llTimeOffset(0)
2763{
2764}
2765
2766/**
2767 * Returns if all settings have default values.
2768 *
2769 * @returns \c true if all settings have default values, \c false if not.
2770 * @param enmCPUArch CPU architecture to use for checking the default values for.
2771 */
2772bool FirmwareSettings::areDefaultSettings(CPUArchitecture_T enmCPUArch) const
2773{
2774 switch (enmCPUArch)
2775 {
2776 case CPUArchitecture_x86:
2777 RT_FALL_THROUGH();
2778 case CPUArchitecture_AMD64:
2779 return
2780 firmwareType == FirmwareType_BIOS
2781 && !fIOAPICEnabled
2782 && fLogoFadeIn
2783 && fLogoFadeOut
2784 && !fPXEDebugEnabled
2785 && !fSmbiosUuidLittleEndian
2786 && ulLogoDisplayTime == 0
2787 && enmBootMenuMode == FirmwareBootMenuMode_MessageAndMenu
2788 && apicMode == APICMode_APIC
2789 && llTimeOffset == 0
2790 && strLogoImagePath.isEmpty();
2791
2792 case CPUArchitecture_ARMv8_32:
2793 RT_FALL_THROUGH();
2794 case CPUArchitecture_ARMv8_64:
2795 return
2796 ( enmCPUArch == CPUArchitecture_ARMv8_32
2797 ? firmwareType == FirmwareType_EFI32
2798 : firmwareType == FirmwareType_EFI64)
2799 && !fIOAPICEnabled
2800 && fLogoFadeIn
2801 && fLogoFadeOut
2802 && !fPXEDebugEnabled
2803 && !fSmbiosUuidLittleEndian
2804 && ulLogoDisplayTime == 0
2805 && enmBootMenuMode == FirmwareBootMenuMode_MessageAndMenu
2806 && apicMode == APICMode_APIC
2807 && llTimeOffset == 0
2808 && strLogoImagePath.isEmpty();
2809 break;
2810
2811 default:
2812 break;
2813 }
2814
2815 AssertFailedReturn(false);
2816}
2817
2818/**
2819 * Comparison operator. This gets called from MachineConfigFile::operator==,
2820 * which in turn gets called from Machine::saveSettings to figure out whether
2821 * machine settings have really changed and thus need to be written out to disk.
2822 */
2823bool FirmwareSettings::operator==(const FirmwareSettings &d) const
2824{
2825 return (this == &d)
2826 || ( firmwareType == d.firmwareType
2827 && fACPIEnabled == d.fACPIEnabled
2828 && fIOAPICEnabled == d.fIOAPICEnabled
2829 && fLogoFadeIn == d.fLogoFadeIn
2830 && fLogoFadeOut == d.fLogoFadeOut
2831 && fPXEDebugEnabled == d.fPXEDebugEnabled
2832 && fSmbiosUuidLittleEndian == d.fSmbiosUuidLittleEndian
2833 && ulLogoDisplayTime == d.ulLogoDisplayTime
2834 && enmBootMenuMode == d.enmBootMenuMode
2835 && apicMode == d.apicMode
2836 && llTimeOffset == d.llTimeOffset
2837 && strLogoImagePath == d.strLogoImagePath);
2838}
2839
2840RecordingScreenSettings::RecordingScreenSettings(uint32_t a_idScreen /* = UINT32_MAX */)
2841 : idScreen(a_idScreen)
2842{
2843 applyDefaults();
2844}
2845
2846RecordingScreenSettings::~RecordingScreenSettings()
2847{
2848
2849}
2850
2851/**
2852 * Returns the default options string for screen recording settings.
2853 *
2854 * @returns Default options string for a given screen.
2855 */
2856/* static */
2857const char *RecordingScreenSettings::getDefaultOptions(void)
2858{
2859 /* Note: Needs to be kept in sync with FE/Qt's UIMachineSettingsDisplay::putToCache()! */
2860 return "vc_enabled=true,ac_enabled=false,ac_profile=med";
2861}
2862
2863/**
2864 * Returns a recording settings feature map from a given string.
2865 *
2866 * @returns VBox status code.
2867 * @param strFeatures String of features to convert.
2868 * @param featureMap Where to return the converted features on success.
2869 */
2870/* static */
2871int RecordingScreenSettings::featuresFromString(const com::Utf8Str &strFeatures, RecordingFeatureMap &featureMap)
2872{
2873 featureMap.clear();
2874
2875 RTCList<RTCString> lstFeatures = strFeatures.split(" ");
2876 for (size_t i = 0; i < lstFeatures.size(); i++)
2877 {
2878 if (lstFeatures.at(i).compare("video", RTCString::CaseInsensitive) == 0)
2879 featureMap[RecordingFeature_Video] = true;
2880 else if (lstFeatures.at(i).compare("audio", RTCString::CaseInsensitive) == 0)
2881 featureMap[RecordingFeature_Audio] = true;
2882 /* ignore everything else */
2883 }
2884
2885 return VINF_SUCCESS;
2886}
2887
2888/**
2889 * Converts a feature map to a serializable string.
2890 *
2891 * @param featureMap Feature map to convert.
2892 * @param strFeatures Where to return the features converted as a string.
2893 */
2894/* static */
2895void RecordingScreenSettings::featuresToString(const RecordingFeatureMap &featureMap, com::Utf8Str &strFeatures)
2896{
2897 strFeatures = "";
2898
2899 RecordingFeatureMap::const_iterator itFeature = featureMap.begin();
2900 while (itFeature != featureMap.end())
2901 {
2902 if (itFeature->first == RecordingFeature_Video && itFeature->second)
2903 strFeatures += "video ";
2904 if (itFeature->first == RecordingFeature_Audio && itFeature->second)
2905 strFeatures += "audio ";
2906 ++itFeature;
2907 }
2908 strFeatures.strip();
2909}
2910
2911/**
2912 * Returns a recording settings audio codec from a given string.
2913 *
2914 * @returns VBox status code.
2915 * @retval VERR_NOT_SUPPORTED if audio codec is invalid or not supported.
2916 * @param strCodec String that contains the codec name.
2917 * @param enmCodec Where to return the audio codec on success.
2918 *
2919 * @note An empty string will return "none" (no codec).
2920 */
2921/* static */
2922int RecordingScreenSettings::audioCodecFromString(const com::Utf8Str &strCodec, RecordingAudioCodec_T &enmCodec)
2923{
2924 if ( RTStrIStr(strCodec.c_str(), "none")
2925 || strCodec.isEmpty())
2926 {
2927 enmCodec = RecordingAudioCodec_None;
2928 return VINF_SUCCESS;
2929 }
2930 else if (RTStrIStr(strCodec.c_str(), "wav"))
2931 {
2932 enmCodec = RecordingAudioCodec_WavPCM;
2933 return VINF_SUCCESS;
2934 }
2935 else if (RTStrIStr(strCodec.c_str(), "mp3"))
2936 {
2937 enmCodec = RecordingAudioCodec_MP3;
2938 return VINF_SUCCESS;
2939 }
2940 else if (RTStrIStr(strCodec.c_str(), "opus"))
2941 {
2942 enmCodec = RecordingAudioCodec_Opus;
2943 return VINF_SUCCESS;
2944 }
2945 else if (RTStrIStr(strCodec.c_str(), "vorbis"))
2946 {
2947 enmCodec = RecordingAudioCodec_OggVorbis;
2948 return VINF_SUCCESS;
2949 }
2950
2951 AssertFailedReturn(VERR_NOT_SUPPORTED);
2952}
2953
2954/**
2955 * Converts an audio codec to a serializable string.
2956 *
2957 * @param enmCodec Codec to convert to a string.
2958 * @param strCodec Where to return the audio codec converted as a string.
2959 */
2960/* static */
2961void RecordingScreenSettings::audioCodecToString(const RecordingAudioCodec_T &enmCodec, com::Utf8Str &strCodec)
2962{
2963 switch (enmCodec)
2964 {
2965 case RecordingAudioCodec_None: strCodec = "none"; return;
2966 case RecordingAudioCodec_WavPCM: strCodec = "wav"; return;
2967 case RecordingAudioCodec_MP3: strCodec = "mp3"; return;
2968 case RecordingAudioCodec_Opus: strCodec = "opus"; return;
2969 case RecordingAudioCodec_OggVorbis: strCodec = "vorbis"; return;
2970 default: AssertFailedReturnVoid();
2971 }
2972}
2973
2974/**
2975 * Returns a recording settings video codec from a given string.
2976 *
2977 * @returns VBox status code.
2978 * @retval VERR_NOT_SUPPORTED if video codec is invalid or not supported.
2979 * @param strCodec String that contains the codec name.
2980 * @param enmCodec Where to return the video codec on success.
2981 *
2982 * @note An empty string will return "none" (no codec).
2983 */
2984/* static */
2985int RecordingScreenSettings::videoCodecFromString(const com::Utf8Str &strCodec, RecordingVideoCodec_T &enmCodec)
2986{
2987 if ( RTStrIStr(strCodec.c_str(), "none")
2988 || strCodec.isEmpty())
2989 {
2990 enmCodec = RecordingVideoCodec_None;
2991 return VINF_SUCCESS;
2992 }
2993 else if (RTStrIStr(strCodec.c_str(), "MJPEG"))
2994 {
2995 enmCodec = RecordingVideoCodec_MJPEG;
2996 return VINF_SUCCESS;
2997 }
2998 else if (RTStrIStr(strCodec.c_str(), "H262"))
2999 {
3000 enmCodec = RecordingVideoCodec_H262;
3001 return VINF_SUCCESS;
3002 }
3003 else if (RTStrIStr(strCodec.c_str(), "H264"))
3004 {
3005 enmCodec = RecordingVideoCodec_H264;
3006 return VINF_SUCCESS;
3007 }
3008 else if (RTStrIStr(strCodec.c_str(), "H265"))
3009 {
3010 enmCodec = RecordingVideoCodec_H265;
3011 return VINF_SUCCESS;
3012 }
3013 else if (RTStrIStr(strCodec.c_str(), "H266"))
3014 {
3015 enmCodec = RecordingVideoCodec_H266;
3016 return VINF_SUCCESS;
3017 }
3018 else if (RTStrIStr(strCodec.c_str(), "VP8"))
3019 {
3020 enmCodec = RecordingVideoCodec_VP8;
3021 return VINF_SUCCESS;
3022 }
3023 else if (RTStrIStr(strCodec.c_str(), "VP9"))
3024 {
3025 enmCodec = RecordingVideoCodec_VP9;
3026 return VINF_SUCCESS;
3027 }
3028 else if (RTStrIStr(strCodec.c_str(), "AV1"))
3029 {
3030 enmCodec = RecordingVideoCodec_AV1;
3031 return VINF_SUCCESS;
3032 }
3033 else if (RTStrIStr(strCodec.c_str(), "other"))
3034 {
3035 enmCodec = RecordingVideoCodec_Other;
3036 return VINF_SUCCESS;
3037 }
3038
3039 AssertFailedReturn(VERR_NOT_SUPPORTED);
3040}
3041
3042/**
3043 * Converts a video codec to a serializable string.
3044 *
3045 * @param enmCodec Codec to convert to a string.
3046 * @param strCodec Where to return the video codec converted as a string.
3047 */
3048/* static */
3049void RecordingScreenSettings::videoCodecToString(const RecordingVideoCodec_T &enmCodec, com::Utf8Str &strCodec)
3050{
3051 switch (enmCodec)
3052 {
3053 case RecordingVideoCodec_None: strCodec = "none"; return;
3054 case RecordingVideoCodec_MJPEG: strCodec = "MJPEG"; return;
3055 case RecordingVideoCodec_H262: strCodec = "H262"; return;
3056 case RecordingVideoCodec_H264: strCodec = "H264"; return;
3057 case RecordingVideoCodec_H265: strCodec = "H265"; return;
3058 case RecordingVideoCodec_H266: strCodec = "H266"; return;
3059 case RecordingVideoCodec_VP8: strCodec = "VP8"; return;
3060 case RecordingVideoCodec_VP9: strCodec = "VP9"; return;
3061 case RecordingVideoCodec_AV1: strCodec = "AV1"; return;
3062 case RecordingVideoCodec_Other: strCodec = "other"; return;
3063 default: AssertFailedReturnVoid();
3064 }
3065}
3066
3067/**
3068 * Applies the default settings.
3069 */
3070void RecordingScreenSettings::applyDefaults(void)
3071{
3072 /*
3073 * Set sensible defaults.
3074 */
3075
3076 /*
3077 * Enable screen 0 by default.
3078 * Otherwise enabling recording without any screen enabled at all makes no sense.
3079 *
3080 * Note: When tweaking this, make sure to also alter RecordingScreenSettings::areDefaultSettings().
3081 */
3082 fEnabled = idScreen == 0 ? true : false;;
3083 enmDest = RecordingDestination_File;
3084 ulMaxTimeS = 0;
3085 strOptions = RecordingScreenSettings::getDefaultOptions();
3086 File.ulMaxSizeMB = 0;
3087 File.strName = "";
3088 Video.enmCodec = RecordingVideoCodec_VP8;
3089 Video.enmDeadline = RecordingCodecDeadline_Default;
3090 Video.enmRateCtlMode = RecordingRateControlMode_VBR;
3091 Video.enmScalingMode = RecordingVideoScalingMode_None;
3092 Video.ulWidth = 1024;
3093 Video.ulHeight = 768;
3094 Video.ulRate = 512;
3095 Video.ulFPS = 25;
3096#ifdef VBOX_WITH_AUDIO_RECORDING
3097# if defined(VBOX_WITH_LIBVORBIS)
3098 Audio.enmCodec = RecordingAudioCodec_OggVorbis;
3099# else
3100 Audio.enmCodec = RecordingAudioCodec_None;
3101# endif
3102#else
3103 Audio.enmCodec = RecordingAudioCodec_None;
3104#endif /* VBOX_WITH_RECORDING */
3105 Audio.enmDeadline = RecordingCodecDeadline_Default;
3106 Audio.enmRateCtlMode = RecordingRateControlMode_VBR;
3107 Audio.cBits = 16;
3108 Audio.cChannels = 2;
3109 Audio.uHz = 22050;
3110
3111 featureMap[RecordingFeature_Video] = true;
3112 featureMap[RecordingFeature_Audio] = false; /** @todo Audio is not yet enabled by default. */
3113}
3114
3115/**
3116 * Check if all settings have default values.
3117 *
3118 * @returns @c true if default, @c false if not.
3119 */
3120bool RecordingScreenSettings::areDefaultSettings(void) const
3121{
3122 return ( fEnabled == false
3123 /* Screen 0 is special: There we ALWAYS enable recording by default. */
3124 || ( idScreen == 0
3125 && fEnabled == true)
3126 )
3127 && enmDest == RecordingDestination_File
3128 && ulMaxTimeS == 0
3129 && strOptions == RecordingScreenSettings::getDefaultOptions()
3130 && File.ulMaxSizeMB == 0
3131 && File.strName == ""
3132 && Video.enmCodec == RecordingVideoCodec_VP8
3133 && Video.enmDeadline == RecordingCodecDeadline_Default
3134 && Video.enmRateCtlMode == RecordingRateControlMode_VBR
3135 && Video.enmScalingMode == RecordingVideoScalingMode_None
3136 && Video.ulWidth == 1024
3137 && Video.ulHeight == 768
3138 && Video.ulRate == 512
3139 && Video.ulFPS == 25
3140#ifdef VBOX_WITH_AUDIO_RECORDING
3141# if defined(VBOX_WITH_LIBVORBIS)
3142 && Audio.enmCodec == RecordingAudioCodec_OggVorbis
3143# else
3144 && Audio.enmCodec == RecordingAudioCodec_None
3145# endif
3146#else
3147 && Audio.enmCodec == RecordingAudioCodec_None
3148#endif /* VBOX_WITH_AUDIO_RECORDING */
3149 && Audio.enmDeadline == RecordingCodecDeadline_Default
3150 && Audio.enmRateCtlMode == RecordingRateControlMode_VBR
3151 && Audio.cBits == 16
3152 && Audio.cChannels == 2
3153 && Audio.uHz == 22050
3154 && featureMap.find(RecordingFeature_Video)->second == true
3155 && featureMap.find(RecordingFeature_Audio)->second == false;
3156}
3157
3158/**
3159 * Returns if a certain recording feature is enabled or not.
3160 *
3161 * @returns @c true if the feature is enabled, @c false if not.
3162 * @param enmFeature Feature to check.
3163 */
3164bool RecordingScreenSettings::isFeatureEnabled(RecordingFeature_T enmFeature) const
3165{
3166 RecordingFeatureMap::const_iterator itFeature = featureMap.find(enmFeature);
3167 if (itFeature != featureMap.end())
3168 return itFeature->second;
3169
3170 return false;
3171}
3172
3173/**
3174 * Comparison operator. This gets called from MachineConfigFile::operator==,
3175 * which in turn gets called from Machine::saveSettings to figure out whether
3176 * machine settings have really changed and thus need to be written out to disk.
3177 */
3178bool RecordingScreenSettings::operator==(const RecordingScreenSettings &d) const
3179{
3180 return fEnabled == d.fEnabled
3181 && enmDest == d.enmDest
3182 && featureMap == d.featureMap
3183 && ulMaxTimeS == d.ulMaxTimeS
3184 && strOptions == d.strOptions
3185 && File.strName == d.File.strName
3186 && File.ulMaxSizeMB == d.File.ulMaxSizeMB
3187 && Video.enmCodec == d.Video.enmCodec
3188 && Video.enmDeadline == d.Video.enmDeadline
3189 && Video.enmRateCtlMode == d.Video.enmRateCtlMode
3190 && Video.enmScalingMode == d.Video.enmScalingMode
3191 && Video.ulWidth == d.Video.ulWidth
3192 && Video.ulHeight == d.Video.ulHeight
3193 && Video.ulRate == d.Video.ulRate
3194 && Video.ulFPS == d.Video.ulFPS
3195 && Audio.enmCodec == d.Audio.enmCodec
3196 && Audio.enmDeadline == d.Audio.enmDeadline
3197 && Audio.enmRateCtlMode == d.Audio.enmRateCtlMode
3198 && Audio.cBits == d.Audio.cBits
3199 && Audio.cChannels == d.Audio.cChannels
3200 && Audio.uHz == d.Audio.uHz
3201 && featureMap == d.featureMap;
3202}
3203
3204/**
3205 * Constructor. Needs to set sane defaults which stand the test of time.
3206 */
3207RecordingCommonSettings::RecordingCommonSettings()
3208{
3209 applyDefaults();
3210}
3211
3212/**
3213 * Applies the default settings.
3214 */
3215void RecordingCommonSettings::applyDefaults(void)
3216{
3217 fEnabled = false;
3218}
3219
3220/**
3221 * Check if all settings have default values.
3222 */
3223bool RecordingCommonSettings::areDefaultSettings(void) const
3224{
3225 return fEnabled == false;
3226}
3227
3228/**
3229 * Comparison operator. This gets called from MachineConfigFile::operator==,
3230 * which in turn gets called from Machine::saveSettings to figure out whether
3231 * machine settings have really changed and thus need to be written out to disk.
3232 */
3233bool RecordingCommonSettings::operator==(const RecordingCommonSettings &d) const
3234{
3235 if (this == &d)
3236 return true;
3237
3238 return fEnabled == d.fEnabled;
3239}
3240
3241/**
3242 * Constructor. Needs to set sane defaults which stand the test of time.
3243 */
3244RecordingSettings::RecordingSettings()
3245{
3246 applyDefaults();
3247}
3248
3249/**
3250 * Applies the default settings.
3251 */
3252void RecordingSettings::applyDefaults(void)
3253{
3254 common.applyDefaults();
3255
3256 mapScreens.clear();
3257
3258 try
3259 {
3260 /* Always add screen 0 to the default configuration. */
3261 RecordingScreenSettings screenSettings(0 /* Screen ID */);
3262
3263 mapScreens[0 /* Screen ID */] = screenSettings;
3264 }
3265 catch (std::bad_alloc &)
3266 {
3267 AssertFailed();
3268 }
3269}
3270
3271/**
3272 * Check if all settings have default values.
3273 */
3274bool RecordingSettings::areDefaultSettings(void) const
3275{
3276 AssertReturn(mapScreens.size() >= 1, false); /* The first screen always must be present. */
3277
3278 if (!common.areDefaultSettings())
3279 return false;
3280
3281 RecordingScreenSettingsMap::const_iterator itScreen = mapScreens.begin();
3282 while (itScreen != mapScreens.end())
3283 {
3284 if (!itScreen->second.areDefaultSettings())
3285 return false;
3286 ++itScreen;
3287 }
3288
3289 return true;
3290}
3291
3292/**
3293 * Comparison operator. This gets called from MachineConfigFile::operator==,
3294 * which in turn gets called from Machine::saveSettings to figure out whether
3295 * machine settings have really changed and thus need to be written out to disk.
3296 */
3297bool RecordingSettings::operator==(const RecordingSettings &that) const
3298{
3299 if (this == &that) /* If pointers match, take a shortcut. */
3300 return true;
3301
3302 if (common == that.common)
3303 {
3304 /* Too lazy for a != operator. */
3305 }
3306 else
3307 return false;
3308
3309 if (mapScreens.size() != that.mapScreens.size())
3310 return false;
3311
3312 RecordingScreenSettingsMap::const_iterator itScreen = mapScreens.begin();
3313 RecordingScreenSettingsMap::const_iterator itScreenThat = that.mapScreens.begin();
3314 while ( itScreen != mapScreens.end()
3315 && itScreenThat != that.mapScreens.end())
3316 {
3317 if (itScreen->second == itScreenThat->second)
3318 {
3319 /* Nothing to do in here (yet). */
3320 }
3321 else
3322 return false;
3323
3324 ++itScreen;
3325 ++itScreenThat;
3326 }
3327
3328 return true;
3329}
3330
3331/**
3332 * Constructor. Needs to set sane defaults which stand the test of time.
3333 */
3334GraphicsAdapter::GraphicsAdapter() :
3335 graphicsControllerType(GraphicsControllerType_VBoxVGA),
3336 ulVRAMSizeMB(8),
3337 cMonitors(1),
3338 fAccelerate3D(false),
3339 fAccelerate2DVideo(false)
3340{
3341}
3342
3343/**
3344 * Check if all settings have default values.
3345 */
3346bool GraphicsAdapter::areDefaultSettings() const
3347{
3348 return graphicsControllerType == GraphicsControllerType_VBoxVGA
3349 && ulVRAMSizeMB == 8
3350 && cMonitors <= 1
3351 && !fAccelerate3D
3352 && !fAccelerate2DVideo;
3353}
3354
3355/**
3356 * Comparison operator. This gets called from MachineConfigFile::operator==,
3357 * which in turn gets called from Machine::saveSettings to figure out whether
3358 * machine settings have really changed and thus need to be written out to disk.
3359 */
3360bool GraphicsAdapter::operator==(const GraphicsAdapter &g) const
3361{
3362 return (this == &g)
3363 || ( graphicsControllerType == g.graphicsControllerType
3364 && ulVRAMSizeMB == g.ulVRAMSizeMB
3365 && cMonitors == g.cMonitors
3366 && fAccelerate3D == g.fAccelerate3D
3367 && fAccelerate2DVideo == g.fAccelerate2DVideo);
3368}
3369
3370/**
3371 * Constructor. Needs to set sane defaults which stand the test of time.
3372 */
3373TpmSettings::TpmSettings() :
3374 tpmType(TpmType_None)
3375{
3376}
3377
3378/**
3379 * Check if all settings have default values.
3380 */
3381bool TpmSettings::areDefaultSettings() const
3382{
3383 return tpmType == TpmType_None
3384 && strLocation.isEmpty();
3385}
3386
3387/**
3388 * Comparison operator. This gets called from MachineConfigFile::operator==,
3389 * which in turn gets called from Machine::saveSettings to figure out whether
3390 * machine settings have really changed and thus need to be written out to disk.
3391 */
3392bool TpmSettings::operator==(const TpmSettings &g) const
3393{
3394 return (this == &g)
3395 || ( tpmType == g.tpmType
3396 && strLocation == g.strLocation);
3397}
3398
3399/**
3400 * Constructor. Needs to set sane defaults which stand the test of time.
3401 */
3402NvramSettings::NvramSettings()
3403{
3404}
3405
3406/**
3407 * Check if all settings have default values.
3408 */
3409bool NvramSettings::areDefaultSettings() const
3410{
3411 return strNvramPath.isEmpty()
3412 && strKeyId.isEmpty()
3413 && strKeyStore.isEmpty();
3414}
3415
3416/**
3417 * Comparison operator. This gets called from MachineConfigFile::operator==,
3418 * which in turn gets called from Machine::saveSettings to figure out whether
3419 * machine settings have really changed and thus need to be written out to disk.
3420 */
3421bool NvramSettings::operator==(const NvramSettings &g) const
3422{
3423 return (this == &g)
3424 || (strNvramPath == g.strNvramPath)
3425 || (strKeyId == g.strKeyId)
3426 || (strKeyStore == g.strKeyStore);
3427}
3428
3429
3430/**
3431 * Constructor. Needs to set sane defaults which stand the test of time.
3432 */
3433USBController::USBController() :
3434 enmType(USBControllerType_Null)
3435{
3436}
3437
3438/**
3439 * Comparison operator. This gets called from MachineConfigFile::operator==,
3440 * which in turn gets called from Machine::saveSettings to figure out whether
3441 * machine settings have really changed and thus need to be written out to disk.
3442 */
3443bool USBController::operator==(const USBController &u) const
3444{
3445 return (this == &u)
3446 || ( strName == u.strName
3447 && enmType == u.enmType);
3448}
3449
3450/**
3451 * Constructor. Needs to set sane defaults which stand the test of time.
3452 */
3453USB::USB()
3454{
3455}
3456
3457/**
3458 * Comparison operator. This gets called from MachineConfigFile::operator==,
3459 * which in turn gets called from Machine::saveSettings to figure out whether
3460 * machine settings have really changed and thus need to be written out to disk.
3461 */
3462bool USB::operator==(const USB &u) const
3463{
3464 return (this == &u)
3465 || ( llUSBControllers == u.llUSBControllers
3466 && llDeviceFilters == u.llDeviceFilters);
3467}
3468
3469/**
3470 * Constructor. Needs to set sane defaults which stand the test of time.
3471 */
3472NAT::NAT() :
3473 u32Mtu(0),
3474 u32SockRcv(0),
3475 u32SockSnd(0),
3476 u32TcpRcv(0),
3477 u32TcpSnd(0),
3478 fDNSPassDomain(true), /* historically this value is true */
3479 fDNSProxy(false),
3480 fDNSUseHostResolver(false),
3481 fAliasLog(false),
3482 fAliasProxyOnly(false),
3483 fAliasUseSamePorts(false),
3484 fLocalhostReachable(true) /* Historically this value is true. */
3485{
3486}
3487
3488/**
3489 * Check if all DNS settings have default values.
3490 */
3491bool NAT::areDNSDefaultSettings() const
3492{
3493 return fDNSPassDomain && !fDNSProxy && !fDNSUseHostResolver;
3494}
3495
3496/**
3497 * Check if all Alias settings have default values.
3498 */
3499bool NAT::areAliasDefaultSettings() const
3500{
3501 return !fAliasLog && !fAliasProxyOnly && !fAliasUseSamePorts;
3502}
3503
3504/**
3505 * Check if all TFTP settings have default values.
3506 */
3507bool NAT::areTFTPDefaultSettings() const
3508{
3509 return strTFTPPrefix.isEmpty()
3510 && strTFTPBootFile.isEmpty()
3511 && strTFTPNextServer.isEmpty();
3512}
3513
3514/**
3515 * Check whether the localhost-reachable setting is the default for the given settings version.
3516 */
3517bool NAT::areLocalhostReachableDefaultSettings(SettingsVersion_T sv) const
3518{
3519 return ( fLocalhostReachable
3520 && sv < SettingsVersion_v1_19)
3521 || ( !fLocalhostReachable
3522 && sv >= SettingsVersion_v1_19);
3523}
3524
3525/**
3526 * Check if all settings have default values.
3527 */
3528bool NAT::areDefaultSettings(SettingsVersion_T sv) const
3529{
3530 /*
3531 * Before settings version 1.19 localhost was reachable by default
3532 * when using NAT which was changed with version 1.19+, see @bugref{9896}
3533 * for more information.
3534 */
3535 return strNetwork.isEmpty()
3536 && strBindIP.isEmpty()
3537 && u32Mtu == 0
3538 && u32SockRcv == 0
3539 && u32SockSnd == 0
3540 && u32TcpRcv == 0
3541 && u32TcpSnd == 0
3542 && areDNSDefaultSettings()
3543 && areAliasDefaultSettings()
3544 && areTFTPDefaultSettings()
3545 && mapRules.size() == 0
3546 && areLocalhostReachableDefaultSettings(sv);
3547}
3548
3549/**
3550 * Comparison operator. This gets called from MachineConfigFile::operator==,
3551 * which in turn gets called from Machine::saveSettings to figure out whether
3552 * machine settings have really changed and thus need to be written out to disk.
3553 */
3554bool NAT::operator==(const NAT &n) const
3555{
3556 return (this == &n)
3557 || ( strNetwork == n.strNetwork
3558 && strBindIP == n.strBindIP
3559 && u32Mtu == n.u32Mtu
3560 && u32SockRcv == n.u32SockRcv
3561 && u32SockSnd == n.u32SockSnd
3562 && u32TcpSnd == n.u32TcpSnd
3563 && u32TcpRcv == n.u32TcpRcv
3564 && strTFTPPrefix == n.strTFTPPrefix
3565 && strTFTPBootFile == n.strTFTPBootFile
3566 && strTFTPNextServer == n.strTFTPNextServer
3567 && fDNSPassDomain == n.fDNSPassDomain
3568 && fDNSProxy == n.fDNSProxy
3569 && fDNSUseHostResolver == n.fDNSUseHostResolver
3570 && fAliasLog == n.fAliasLog
3571 && fAliasProxyOnly == n.fAliasProxyOnly
3572 && fAliasUseSamePorts == n.fAliasUseSamePorts
3573 && fLocalhostReachable == n.fLocalhostReachable
3574 && mapRules == n.mapRules);
3575}
3576
3577/**
3578 * Constructor. Needs to set sane defaults which stand the test of time.
3579 */
3580NetworkAdapter::NetworkAdapter() :
3581 ulSlot(0),
3582 type(NetworkAdapterType_Am79C970A), // default for old VMs, for new ones it's Am79C973
3583 fEnabled(false),
3584 fCableConnected(false), // default for old VMs, for new ones it's true
3585 ulLineSpeed(0),
3586 enmPromiscModePolicy(NetworkAdapterPromiscModePolicy_Deny),
3587 fTraceEnabled(false),
3588 mode(NetworkAttachmentType_Null),
3589 ulBootPriority(0)
3590{
3591}
3592
3593/**
3594 * Check if all Generic Driver settings have default values.
3595 */
3596bool NetworkAdapter::areGenericDriverDefaultSettings() const
3597{
3598 return strGenericDriver.isEmpty()
3599 && genericProperties.size() == 0;
3600}
3601
3602/**
3603 * Check if all settings have default values.
3604 */
3605bool NetworkAdapter::areDefaultSettings(SettingsVersion_T sv) const
3606{
3607 // 5.0 and earlier had a default of fCableConnected=false, which doesn't
3608 // make a lot of sense (but it's a fact). Later versions don't save the
3609 // setting if it's at the default value and thus must get it right.
3610 return !fEnabled
3611 && strMACAddress.isEmpty()
3612 && ( (sv >= SettingsVersion_v1_16 && fCableConnected && type == NetworkAdapterType_Am79C973)
3613 || (sv < SettingsVersion_v1_16 && !fCableConnected && type == NetworkAdapterType_Am79C970A))
3614 && ulLineSpeed == 0
3615 && enmPromiscModePolicy == NetworkAdapterPromiscModePolicy_Deny
3616 && mode == NetworkAttachmentType_Null
3617 && nat.areDefaultSettings(sv)
3618 && strBridgedName.isEmpty()
3619 && strInternalNetworkName.isEmpty()
3620#ifdef VBOX_WITH_VMNET
3621 && strHostOnlyNetworkName.isEmpty()
3622#endif /* VBOX_WITH_VMNET */
3623#ifdef VBOX_WITH_CLOUD_NET
3624 && strCloudNetworkName.isEmpty()
3625#endif /* VBOX_WITH_CLOUD_NET */
3626 && strHostOnlyName.isEmpty()
3627 && areGenericDriverDefaultSettings()
3628 && strNATNetworkName.isEmpty();
3629}
3630
3631/**
3632 * Special check if settings of the non-current attachment type have default values.
3633 */
3634bool NetworkAdapter::areDisabledDefaultSettings(SettingsVersion_T sv) const
3635{
3636 return (mode != NetworkAttachmentType_NAT ? nat.areDefaultSettings(sv) : true)
3637 && (mode != NetworkAttachmentType_Bridged ? strBridgedName.isEmpty() : true)
3638 && (mode != NetworkAttachmentType_Internal ? strInternalNetworkName.isEmpty() : true)
3639#ifdef VBOX_WITH_VMNET
3640 && (mode != NetworkAttachmentType_HostOnlyNetwork ? strHostOnlyNetworkName.isEmpty() : true)
3641#endif /* VBOX_WITH_VMNET */
3642#ifdef VBOX_WITH_CLOUD_NET
3643 && (mode != NetworkAttachmentType_Cloud ? strCloudNetworkName.isEmpty() : true)
3644#endif /* VBOX_WITH_CLOUD_NET */
3645 && (mode != NetworkAttachmentType_HostOnly ? strHostOnlyName.isEmpty() : true)
3646 && (mode != NetworkAttachmentType_Generic ? areGenericDriverDefaultSettings() : true)
3647 && (mode != NetworkAttachmentType_NATNetwork ? strNATNetworkName.isEmpty() : true);
3648}
3649
3650/**
3651 * Comparison operator. This gets called from MachineConfigFile::operator==,
3652 * which in turn gets called from Machine::saveSettings to figure out whether
3653 * machine settings have really changed and thus need to be written out to disk.
3654 */
3655bool NetworkAdapter::operator==(const NetworkAdapter &n) const
3656{
3657 return (this == &n)
3658 || ( ulSlot == n.ulSlot
3659 && type == n.type
3660 && fEnabled == n.fEnabled
3661 && strMACAddress == n.strMACAddress
3662 && fCableConnected == n.fCableConnected
3663 && ulLineSpeed == n.ulLineSpeed
3664 && enmPromiscModePolicy == n.enmPromiscModePolicy
3665 && fTraceEnabled == n.fTraceEnabled
3666 && strTraceFile == n.strTraceFile
3667 && mode == n.mode
3668 && nat == n.nat
3669 && strBridgedName == n.strBridgedName
3670 && strHostOnlyName == n.strHostOnlyName
3671#ifdef VBOX_WITH_VMNET
3672 && strHostOnlyNetworkName == n.strHostOnlyNetworkName
3673#endif /* VBOX_WITH_VMNET */
3674 && strInternalNetworkName == n.strInternalNetworkName
3675#ifdef VBOX_WITH_CLOUD_NET
3676 && strCloudNetworkName == n.strCloudNetworkName
3677#endif /* VBOX_WITH_CLOUD_NET */
3678 && strGenericDriver == n.strGenericDriver
3679 && genericProperties == n.genericProperties
3680 && ulBootPriority == n.ulBootPriority
3681 && strBandwidthGroup == n.strBandwidthGroup);
3682}
3683
3684/**
3685 * Constructor. Needs to set sane defaults which stand the test of time.
3686 */
3687SerialPort::SerialPort() :
3688 ulSlot(0),
3689 fEnabled(false),
3690 ulIOAddress(0x3f8),
3691 ulIRQ(4),
3692 portMode(PortMode_Disconnected),
3693 fServer(false),
3694 uartType(UartType_U16550A)
3695{
3696}
3697
3698/**
3699 * Comparison operator. This gets called from MachineConfigFile::operator==,
3700 * which in turn gets called from Machine::saveSettings to figure out whether
3701 * machine settings have really changed and thus need to be written out to disk.
3702 */
3703bool SerialPort::operator==(const SerialPort &s) const
3704{
3705 return (this == &s)
3706 || ( ulSlot == s.ulSlot
3707 && fEnabled == s.fEnabled
3708 && ulIOAddress == s.ulIOAddress
3709 && ulIRQ == s.ulIRQ
3710 && portMode == s.portMode
3711 && strPath == s.strPath
3712 && fServer == s.fServer
3713 && uartType == s.uartType);
3714}
3715
3716/**
3717 * Constructor. Needs to set sane defaults which stand the test of time.
3718 */
3719ParallelPort::ParallelPort() :
3720 ulSlot(0),
3721 fEnabled(false),
3722 ulIOBase(0x378),
3723 ulIRQ(7)
3724{
3725}
3726
3727/**
3728 * Comparison operator. This gets called from MachineConfigFile::operator==,
3729 * which in turn gets called from Machine::saveSettings to figure out whether
3730 * machine settings have really changed and thus need to be written out to disk.
3731 */
3732bool ParallelPort::operator==(const ParallelPort &s) const
3733{
3734 return (this == &s)
3735 || ( ulSlot == s.ulSlot
3736 && fEnabled == s.fEnabled
3737 && ulIOBase == s.ulIOBase
3738 && ulIRQ == s.ulIRQ
3739 && strPath == s.strPath);
3740}
3741
3742/**
3743 * Constructor. Needs to set sane defaults which stand the test of time.
3744 */
3745AudioAdapter::AudioAdapter() :
3746 fEnabled(true), // default for old VMs, for new ones it's false
3747 fEnabledIn(true), // default for old VMs, for new ones it's false
3748 fEnabledOut(true), // default for old VMs, for new ones it's false
3749 controllerType(AudioControllerType_AC97),
3750 codecType(AudioCodecType_STAC9700),
3751 driverType(AudioDriverType_Null)
3752{
3753}
3754
3755/**
3756 * Check if all settings have default values.
3757 */
3758bool AudioAdapter::areDefaultSettings(SettingsVersion_T sv) const
3759{
3760 return (sv < SettingsVersion_v1_16 ? false : !fEnabled)
3761 && (sv <= SettingsVersion_v1_16 ? fEnabledIn : !fEnabledIn)
3762 && (sv <= SettingsVersion_v1_16 ? fEnabledOut : !fEnabledOut)
3763 && fEnabledOut == true
3764 && controllerType == AudioControllerType_AC97
3765 && codecType == AudioCodecType_STAC9700
3766 && properties.size() == 0;
3767}
3768
3769/**
3770 * Comparison operator. This gets called from MachineConfigFile::operator==,
3771 * which in turn gets called from Machine::saveSettings to figure out whether
3772 * machine settings have really changed and thus need to be written out to disk.
3773 */
3774bool AudioAdapter::operator==(const AudioAdapter &a) const
3775{
3776 return (this == &a)
3777 || ( fEnabled == a.fEnabled
3778 && fEnabledIn == a.fEnabledIn
3779 && fEnabledOut == a.fEnabledOut
3780 && controllerType == a.controllerType
3781 && codecType == a.codecType
3782 && driverType == a.driverType
3783 && properties == a.properties);
3784}
3785
3786/**
3787 * Constructor. Needs to set sane defaults which stand the test of time.
3788 */
3789SharedFolder::SharedFolder() :
3790 fWritable(false),
3791 fAutoMount(false)
3792{
3793}
3794
3795/**
3796 * Comparison operator. This gets called from MachineConfigFile::operator==,
3797 * which in turn gets called from Machine::saveSettings to figure out whether
3798 * machine settings have really changed and thus need to be written out to disk.
3799 */
3800bool SharedFolder::operator==(const SharedFolder &g) const
3801{
3802 return (this == &g)
3803 || ( strName == g.strName
3804 && strHostPath == g.strHostPath
3805 && fWritable == g.fWritable
3806 && fAutoMount == g.fAutoMount
3807 && strAutoMountPoint == g.strAutoMountPoint);
3808}
3809
3810/**
3811 * Constructor. Needs to set sane defaults which stand the test of time.
3812 */
3813GuestProperty::GuestProperty() :
3814 timestamp(0)
3815{
3816}
3817
3818/**
3819 * Comparison operator. This gets called from MachineConfigFile::operator==,
3820 * which in turn gets called from Machine::saveSettings to figure out whether
3821 * machine settings have really changed and thus need to be written out to disk.
3822 */
3823bool GuestProperty::operator==(const GuestProperty &g) const
3824{
3825 return (this == &g)
3826 || ( strName == g.strName
3827 && strValue == g.strValue
3828 && timestamp == g.timestamp
3829 && strFlags == g.strFlags);
3830}
3831
3832/**
3833 * Constructor. Needs to set sane defaults which stand the test of time.
3834 */
3835CpuIdLeafX86::CpuIdLeafX86() :
3836 idx(UINT32_MAX),
3837 idxSub(0),
3838 uEax(0),
3839 uEbx(0),
3840 uEcx(0),
3841 uEdx(0)
3842{
3843}
3844
3845/**
3846 * Comparison operator. This gets called from MachineConfigFile::operator==,
3847 * which in turn gets called from Machine::saveSettings to figure out whether
3848 * machine settings have really changed and thus need to be written out to disk.
3849 */
3850bool CpuIdLeafX86::operator==(const CpuIdLeafX86 &c) const
3851{
3852 return (this == &c)
3853 || ( idx == c.idx
3854 && idxSub == c.idxSub
3855 && uEax == c.uEax
3856 && uEbx == c.uEbx
3857 && uEcx == c.uEcx
3858 && uEdx == c.uEdx);
3859}
3860
3861/**
3862 * Constructor. Needs to set sane defaults which stand the test of time.
3863 */
3864Cpu::Cpu() :
3865 ulId(UINT32_MAX)
3866{
3867}
3868
3869/**
3870 * Comparison operator. This gets called from MachineConfigFile::operator==,
3871 * which in turn gets called from Machine::saveSettings to figure out whether
3872 * machine settings have really changed and thus need to be written out to disk.
3873 */
3874bool Cpu::operator==(const Cpu &c) const
3875{
3876 return (this == &c)
3877 || (ulId == c.ulId);
3878}
3879
3880/**
3881 * Constructor. Needs to set sane defaults which stand the test of time.
3882 */
3883BandwidthGroup::BandwidthGroup() :
3884 cMaxBytesPerSec(0),
3885 enmType(BandwidthGroupType_Null)
3886{
3887}
3888
3889/**
3890 * Comparison operator. This gets called from MachineConfigFile::operator==,
3891 * which in turn gets called from Machine::saveSettings to figure out whether
3892 * machine settings have really changed and thus need to be written out to disk.
3893 */
3894bool BandwidthGroup::operator==(const BandwidthGroup &i) const
3895{
3896 return (this == &i)
3897 || ( strName == i.strName
3898 && cMaxBytesPerSec == i.cMaxBytesPerSec
3899 && enmType == i.enmType);
3900}
3901
3902/**
3903 * IOSettings constructor.
3904 */
3905IOSettings::IOSettings() :
3906 fIOCacheEnabled(true),
3907 ulIOCacheSize(5)
3908{
3909}
3910
3911/**
3912 * Check if all IO Cache settings have default values.
3913 */
3914bool IOSettings::areIOCacheDefaultSettings() const
3915{
3916 return fIOCacheEnabled
3917 && ulIOCacheSize == 5;
3918}
3919
3920/**
3921 * Check if all settings have default values.
3922 */
3923bool IOSettings::areDefaultSettings() const
3924{
3925 return areIOCacheDefaultSettings()
3926 && llBandwidthGroups.size() == 0;
3927}
3928
3929/**
3930 * Comparison operator. This gets called from MachineConfigFile::operator==,
3931 * which in turn gets called from Machine::saveSettings to figure out whether
3932 * machine settings have really changed and thus need to be written out to disk.
3933 */
3934bool IOSettings::operator==(const IOSettings &i) const
3935{
3936 return (this == &i)
3937 || ( fIOCacheEnabled == i.fIOCacheEnabled
3938 && ulIOCacheSize == i.ulIOCacheSize
3939 && llBandwidthGroups == i.llBandwidthGroups);
3940}
3941
3942/**
3943 * Constructor. Needs to set sane defaults which stand the test of time.
3944 */
3945HostPCIDeviceAttachment::HostPCIDeviceAttachment() :
3946 uHostAddress(0),
3947 uGuestAddress(0)
3948{
3949}
3950
3951/**
3952 * Comparison operator. This gets called from MachineConfigFile::operator==,
3953 * which in turn gets called from Machine::saveSettings to figure out whether
3954 * machine settings have really changed and thus need to be written out to disk.
3955 */
3956bool HostPCIDeviceAttachment::operator==(const HostPCIDeviceAttachment &a) const
3957{
3958 return (this == &a)
3959 || ( uHostAddress == a.uHostAddress
3960 && uGuestAddress == a.uGuestAddress
3961 && strDeviceName == a.strDeviceName);
3962}
3963
3964#ifdef VBOX_WITH_VIRT_ARMV8
3965PlatformARM::PlatformARM()
3966 /** @todo BUGBUG Anything for ARM here? */
3967{
3968
3969}
3970
3971bool PlatformARM::operator==(const PlatformARM& h) const
3972{
3973 RT_NOREF(h);
3974 return true; /** @todo BUGBUG Anything for ARM here? */
3975}
3976#endif /* VBOX_WITH_VIRT_ARMV8 */
3977
3978PlatformX86::PlatformX86() :
3979 fPAE(false),
3980 fAPIC(true),
3981 fX2APIC(false),
3982 fHPETEnabled(false),
3983 enmLongMode(HC_ARCH_BITS == 64 ? PlatformX86::LongMode_Enabled : PlatformX86::LongMode_Disabled),
3984 fTripleFaultReset(false),
3985 fIBPBOnVMExit(false),
3986 fIBPBOnVMEntry(false),
3987 fSpecCtrl(false),
3988 fSpecCtrlByHost(false),
3989 fL1DFlushOnSched(true),
3990 fL1DFlushOnVMEntry(false),
3991 fMDSClearOnSched(true),
3992 fMDSClearOnVMEntry(false),
3993 fHWVirtEx(true),
3994 fHWVirtExNestedPaging(true),
3995 fHWVirtExVPID(true),
3996 fHWVirtExUX(true),
3997 fHWVirtExForce(false),
3998 fHWVirtExUseNativeApi(false),
3999 fHWVirtExVirtVmsaveVmload(true),
4000 fNestedHWVirt(false)
4001{
4002 /* The default value for PAE depends on the host:
4003 * - 64 bits host -> always true
4004 * - 32 bits host -> true for Windows & Darwin (masked off if the host cpu doesn't support it anyway)
4005 */
4006#if HC_ARCH_BITS == 64 || defined(RT_OS_WINDOWS) || defined(RT_OS_DARWIN)
4007 fPAE = true;
4008#endif
4009
4010 /* The default value of large page supports depends on the host:
4011 * - 64 bits host -> true, unless it's Linux (pending further prediction work due to excessively expensive large page allocations)
4012 * - 32 bits host -> false
4013 */
4014#if HC_ARCH_BITS == 64 && !defined(RT_OS_LINUX)
4015 fHWVirtExLargePages = true; /** @todo BUGBUG Does this apply for ARM as well? */
4016#else
4017 /* Not supported on 32 bits hosts. */
4018 fHWVirtExLargePages = false;
4019#endif
4020}
4021
4022/**
4023 * Comparison operator. This gets called from MachineConfigFile::operator==,
4024 * which in turn gets called from Platform::saveSettings to figure out whether
4025 * machine settings have really changed and thus need to be written out to disk.
4026 */
4027bool PlatformX86::operator==(const PlatformX86& h) const
4028{
4029 return (this == &h)
4030 || ( fPAE == h.fPAE
4031 && fAPIC == h.fAPIC
4032 && fX2APIC == h.fX2APIC
4033 && fHPETEnabled == h.fHPETEnabled
4034 && enmLongMode == h.enmLongMode
4035 && llCpuIdLeafs == h.llCpuIdLeafs
4036 && fTripleFaultReset == h.fTripleFaultReset
4037 && fIBPBOnVMExit == h.fIBPBOnVMExit
4038 && fIBPBOnVMEntry == h.fIBPBOnVMEntry
4039 && fSpecCtrl == h.fSpecCtrl
4040 && fSpecCtrlByHost == h.fSpecCtrlByHost
4041 && fL1DFlushOnSched == h.fL1DFlushOnSched
4042 && fL1DFlushOnVMEntry == h.fL1DFlushOnVMEntry
4043 && fMDSClearOnSched == h.fMDSClearOnSched
4044 && fMDSClearOnVMEntry == h.fMDSClearOnVMEntry
4045 && fHWVirtEx == h.fHWVirtEx
4046 && fHWVirtExNestedPaging == h.fHWVirtExNestedPaging
4047 && fHWVirtExLargePages == h.fHWVirtExLargePages
4048 && fHWVirtExVPID == h.fHWVirtExVPID
4049 && fHWVirtExUX == h.fHWVirtExUX
4050 && fHWVirtExForce == h.fHWVirtExForce
4051 && fHWVirtExUseNativeApi == h.fHWVirtExUseNativeApi
4052 && fHWVirtExVirtVmsaveVmload == h.fHWVirtExVirtVmsaveVmload
4053 && fNestedHWVirt == h.fNestedHWVirt);
4054}
4055
4056/**
4057 * Constructor. Needs to set sane defaults which stand the test of time.
4058 */
4059Platform::Platform() :
4060 architectureType(PlatformArchitecture_x86), /* We default to x86 here, as this is what we ever had so far. */
4061 chipsetType(ChipsetType_PIIX3),
4062 iommuType(IommuType_None),
4063 fRTCUseUTC(false)
4064{
4065}
4066
4067/**
4068 * Comparison operator. This gets called from MachineConfigFile::operator==,
4069 * which in turn gets called from Platform::saveSettings to figure out whether
4070 * machine settings have really changed and thus need to be written out to disk.
4071 */
4072bool Platform::operator==(const Platform& h) const
4073{
4074 bool fRc = (this == &h)
4075 || ( architectureType == h.architectureType
4076 && chipsetType == h.chipsetType
4077 && iommuType == h.iommuType
4078 && fRTCUseUTC == h.fRTCUseUTC);
4079 if (fRc)
4080 {
4081 switch (architectureType)
4082 {
4083 case PlatformArchitecture_x86:
4084 return x86 == h.x86;
4085#ifdef VBOX_WITH_VIRT_ARMV8
4086 case PlatformArchitecture_ARM:
4087 return arm == h.arm;
4088#endif
4089 default:
4090 AssertFailedReturn(false);
4091 }
4092 }
4093
4094 return fRc;
4095}
4096
4097/**
4098 * Constructor. Needs to set sane defaults which stand the test of time.
4099 */
4100Hardware::Hardware() :
4101 strVersion("1"),
4102 cCPUs(1),
4103 fCpuHotPlug(false),
4104 ulCpuExecutionCap(100),
4105 uCpuIdPortabilityLevel(0),
4106 strCpuProfile("host"),
4107 ulMemorySizeMB((uint32_t)-1),
4108 pointingHIDType(PointingHIDType_PS2Mouse),
4109 keyboardHIDType(KeyboardHIDType_PS2Keyboard),
4110 paravirtProvider(ParavirtProvider_Legacy), // default for old VMs, for new ones it's ParavirtProvider_Default
4111 strParavirtDebug(""),
4112 fEmulatedUSBCardReader(false),
4113 clipboardMode(ClipboardMode_Disabled),
4114 fClipboardFileTransfersEnabled(false),
4115 dndMode(DnDMode_Disabled),
4116 ulMemoryBalloonSize(0),
4117 fPageFusionEnabled(false)
4118{
4119 mapBootOrder[0] = DeviceType_Floppy; /** @todo BUGBUG Handle ARM. */
4120 mapBootOrder[1] = DeviceType_DVD;
4121 mapBootOrder[2] = DeviceType_HardDisk;
4122}
4123
4124/**
4125 * Check if all Paravirt settings have default values.
4126 */
4127bool Hardware::areParavirtDefaultSettings(SettingsVersion_T sv) const
4128{
4129 // 5.0 didn't save the paravirt settings if it is ParavirtProvider_Legacy,
4130 // so this default must be kept. Later versions don't save the setting if
4131 // it's at the default value.
4132 return ( (sv >= SettingsVersion_v1_16 && paravirtProvider == ParavirtProvider_Default)
4133 || (sv < SettingsVersion_v1_16 && paravirtProvider == ParavirtProvider_Legacy))
4134 && strParavirtDebug.isEmpty();
4135}
4136
4137/**
4138 * Check if all Boot Order settings have default values.
4139 */
4140bool Hardware::areBootOrderDefaultSettings() const
4141{
4142 BootOrderMap::const_iterator it0 = mapBootOrder.find(0);
4143 BootOrderMap::const_iterator it1 = mapBootOrder.find(1);
4144 BootOrderMap::const_iterator it2 = mapBootOrder.find(2);
4145 BootOrderMap::const_iterator it3 = mapBootOrder.find(3);
4146 return ( mapBootOrder.size() == 3
4147 || ( mapBootOrder.size() == 4
4148 && (it3 != mapBootOrder.end() && it3->second == DeviceType_Null)))
4149 && (it0 != mapBootOrder.end() && it0->second == DeviceType_Floppy)
4150 && (it1 != mapBootOrder.end() && it1->second == DeviceType_DVD)
4151 && (it2 != mapBootOrder.end() && it2->second == DeviceType_HardDisk);
4152}
4153
4154/**
4155 * Check if all Network Adapter settings have default values.
4156 */
4157bool Hardware::areAllNetworkAdaptersDefaultSettings(SettingsVersion_T sv) const
4158{
4159 for (NetworkAdaptersList::const_iterator it = llNetworkAdapters.begin();
4160 it != llNetworkAdapters.end();
4161 ++it)
4162 {
4163 if (!it->areDefaultSettings(sv))
4164 return false;
4165 }
4166 return true;
4167}
4168
4169/**
4170 * Comparison operator. This gets called from MachineConfigFile::operator==,
4171 * which in turn gets called from Machine::saveSettings to figure out whether
4172 * machine settings have really changed and thus need to be written out to disk.
4173 */
4174bool Hardware::operator==(const Hardware& h) const
4175{
4176 return (this == &h)
4177 || ( strVersion == h.strVersion
4178 && uuid == h.uuid
4179 && cCPUs == h.cCPUs
4180 && fCpuHotPlug == h.fCpuHotPlug
4181 && ulCpuExecutionCap == h.ulCpuExecutionCap
4182 && uCpuIdPortabilityLevel == h.uCpuIdPortabilityLevel
4183 && strCpuProfile == h.strCpuProfile
4184 && llCpus == h.llCpus
4185 && ulMemorySizeMB == h.ulMemorySizeMB
4186 && mapBootOrder == h.mapBootOrder
4187 && pointingHIDType == h.pointingHIDType
4188 && keyboardHIDType == h.keyboardHIDType
4189 && paravirtProvider == h.paravirtProvider
4190 && strParavirtDebug == h.strParavirtDebug
4191 && fEmulatedUSBCardReader == h.fEmulatedUSBCardReader
4192 && vrdeSettings == h.vrdeSettings
4193 && platformSettings == h.platformSettings
4194 && firmwareSettings == h.firmwareSettings
4195 && nvramSettings == h.nvramSettings
4196 && graphicsAdapter == h.graphicsAdapter
4197 && usbSettings == h.usbSettings
4198 && tpmSettings == h.tpmSettings
4199 && llNetworkAdapters == h.llNetworkAdapters
4200 && llSerialPorts == h.llSerialPorts
4201 && llParallelPorts == h.llParallelPorts
4202 && audioAdapter == h.audioAdapter
4203 && storage == h.storage
4204 && llSharedFolders == h.llSharedFolders
4205 && clipboardMode == h.clipboardMode
4206 && fClipboardFileTransfersEnabled == h.fClipboardFileTransfersEnabled
4207 && dndMode == h.dndMode
4208 && ulMemoryBalloonSize == h.ulMemoryBalloonSize
4209 && fPageFusionEnabled == h.fPageFusionEnabled
4210 && llGuestProperties == h.llGuestProperties
4211 && ioSettings == h.ioSettings
4212 && pciAttachments == h.pciAttachments
4213 && strDefaultFrontend == h.strDefaultFrontend);
4214}
4215
4216/**
4217 * Constructor. Needs to set sane defaults which stand the test of time.
4218 */
4219AttachedDevice::AttachedDevice() :
4220 deviceType(DeviceType_Null),
4221 fPassThrough(false),
4222 fTempEject(false),
4223 fNonRotational(false),
4224 fDiscard(false),
4225 fHotPluggable(false),
4226 lPort(0),
4227 lDevice(0)
4228{
4229}
4230
4231/**
4232 * Comparison operator. This gets called from MachineConfigFile::operator==,
4233 * which in turn gets called from Machine::saveSettings to figure out whether
4234 * machine settings have really changed and thus need to be written out to disk.
4235 */
4236bool AttachedDevice::operator==(const AttachedDevice &a) const
4237{
4238 return (this == &a)
4239 || ( deviceType == a.deviceType
4240 && fPassThrough == a.fPassThrough
4241 && fTempEject == a.fTempEject
4242 && fNonRotational == a.fNonRotational
4243 && fDiscard == a.fDiscard
4244 && fHotPluggable == a.fHotPluggable
4245 && lPort == a.lPort
4246 && lDevice == a.lDevice
4247 && uuid == a.uuid
4248 && strHostDriveSrc == a.strHostDriveSrc
4249 && strBwGroup == a.strBwGroup);
4250}
4251
4252/**
4253 * Constructor. Needs to set sane defaults which stand the test of time.
4254 */
4255StorageController::StorageController() :
4256 storageBus(StorageBus_IDE),
4257 controllerType(StorageControllerType_PIIX3),
4258 ulPortCount(2),
4259 ulInstance(0),
4260 fUseHostIOCache(true),
4261 fBootable(true)
4262{
4263}
4264
4265/**
4266 * Comparison operator. This gets called from MachineConfigFile::operator==,
4267 * which in turn gets called from Machine::saveSettings to figure out whether
4268 * machine settings have really changed and thus need to be written out to disk.
4269 */
4270bool StorageController::operator==(const StorageController &s) const
4271{
4272 return (this == &s)
4273 || ( strName == s.strName
4274 && storageBus == s.storageBus
4275 && controllerType == s.controllerType
4276 && ulPortCount == s.ulPortCount
4277 && ulInstance == s.ulInstance
4278 && fUseHostIOCache == s.fUseHostIOCache
4279 && llAttachedDevices == s.llAttachedDevices);
4280}
4281
4282/**
4283 * Comparison operator. This gets called from MachineConfigFile::operator==,
4284 * which in turn gets called from Machine::saveSettings to figure out whether
4285 * machine settings have really changed and thus need to be written out to disk.
4286 */
4287bool Storage::operator==(const Storage &s) const
4288{
4289 return (this == &s)
4290 || (llStorageControllers == s.llStorageControllers); // deep compare
4291}
4292
4293/**
4294 * Constructor. Needs to set sane defaults which stand the test of time.
4295 */
4296Debugging::Debugging() :
4297 fTracingEnabled(false),
4298 fAllowTracingToAccessVM(false),
4299 strTracingConfig(),
4300 enmDbgProvider(GuestDebugProvider_None),
4301 enmIoProvider(GuestDebugIoProvider_None),
4302 strAddress(),
4303 ulPort(0)
4304{
4305}
4306
4307/**
4308 * Check if all settings have default values.
4309 */
4310bool Debugging::areDefaultSettings() const
4311{
4312 return !fTracingEnabled
4313 && !fAllowTracingToAccessVM
4314 && strTracingConfig.isEmpty()
4315 && enmDbgProvider == GuestDebugProvider_None
4316 && enmIoProvider == GuestDebugIoProvider_None
4317 && strAddress.isEmpty()
4318 && ulPort == 0;
4319}
4320
4321/**
4322 * Comparison operator. This gets called from MachineConfigFile::operator==,
4323 * which in turn gets called from Machine::saveSettings to figure out whether
4324 * machine settings have really changed and thus need to be written out to disk.
4325 */
4326bool Debugging::operator==(const Debugging &d) const
4327{
4328 return (this == &d)
4329 || ( fTracingEnabled == d.fTracingEnabled
4330 && fAllowTracingToAccessVM == d.fAllowTracingToAccessVM
4331 && strTracingConfig == d.strTracingConfig
4332 && enmDbgProvider == d.enmDbgProvider
4333 && enmIoProvider == d.enmIoProvider
4334 && strAddress == d.strAddress
4335 && ulPort == d.ulPort);
4336}
4337
4338/**
4339 * Constructor. Needs to set sane defaults which stand the test of time.
4340 */
4341Autostart::Autostart() :
4342 fAutostartEnabled(false),
4343 uAutostartDelay(0),
4344 enmAutostopType(AutostopType_Disabled)
4345{
4346}
4347
4348/**
4349 * Check if all settings have default values.
4350 */
4351bool Autostart::areDefaultSettings() const
4352{
4353 return !fAutostartEnabled
4354 && !uAutostartDelay
4355 && enmAutostopType == AutostopType_Disabled;
4356}
4357
4358/**
4359 * Comparison operator. This gets called from MachineConfigFile::operator==,
4360 * which in turn gets called from Machine::saveSettings to figure out whether
4361 * machine settings have really changed and thus need to be written out to disk.
4362 */
4363bool Autostart::operator==(const Autostart &a) const
4364{
4365 return (this == &a)
4366 || ( fAutostartEnabled == a.fAutostartEnabled
4367 && uAutostartDelay == a.uAutostartDelay
4368 && enmAutostopType == a.enmAutostopType);
4369}
4370
4371/**
4372 * Constructor. Needs to set sane defaults which stand the test of time.
4373 */
4374Snapshot::Snapshot()
4375{
4376 RTTimeSpecSetNano(&timestamp, 0);
4377}
4378
4379/**
4380 * Comparison operator. This gets called from MachineConfigFile::operator==,
4381 * which in turn gets called from Machine::saveSettings to figure out whether
4382 * machine settings have really changed and thus need to be written out to disk.
4383 */
4384bool Snapshot::operator==(const Snapshot &s) const
4385{
4386 return (this == &s)
4387 || ( uuid == s.uuid
4388 && strName == s.strName
4389 && strDescription == s.strDescription
4390 && RTTimeSpecIsEqual(&timestamp, &s.timestamp)
4391 && strStateFile == s.strStateFile
4392 && hardware == s.hardware // deep compare
4393 && recordingSettings == s.recordingSettings // deep compare
4394 && llChildSnapshots == s.llChildSnapshots // deep compare
4395 && debugging == s.debugging
4396 && autostart == s.autostart);
4397}
4398
4399const struct Snapshot settings::Snapshot::Empty; /* default ctor is OK */
4400
4401/**
4402 * Constructor. Needs to set sane defaults which stand the test of time.
4403 */
4404MachineUserData::MachineUserData() :
4405 fDirectoryIncludesUUID(false),
4406 fNameSync(true),
4407 fTeleporterEnabled(false),
4408 uTeleporterPort(0),
4409 enmVMPriority(VMProcPriority_Default)
4410{
4411 llGroups.push_back("/");
4412}
4413
4414/**
4415 * Comparison operator. This gets called from MachineConfigFile::operator==,
4416 * which in turn gets called from Machine::saveSettings to figure out whether
4417 * machine settings have really changed and thus need to be written out to disk.
4418 */
4419bool MachineUserData::operator==(const MachineUserData &c) const
4420{
4421 return (this == &c)
4422 || ( strName == c.strName
4423 && fDirectoryIncludesUUID == c.fDirectoryIncludesUUID
4424 && fNameSync == c.fNameSync
4425 && strDescription == c.strDescription
4426 && llGroups == c.llGroups
4427 && strOsType == c.strOsType
4428 && strSnapshotFolder == c.strSnapshotFolder
4429 && fTeleporterEnabled == c.fTeleporterEnabled
4430 && uTeleporterPort == c.uTeleporterPort
4431 && strTeleporterAddress == c.strTeleporterAddress
4432 && strTeleporterPassword == c.strTeleporterPassword
4433 && ovIcon == c.ovIcon
4434 && enmVMPriority == c.enmVMPriority);
4435}
4436
4437
4438////////////////////////////////////////////////////////////////////////////////
4439//
4440// MachineConfigFile
4441//
4442////////////////////////////////////////////////////////////////////////////////
4443
4444/**
4445 * Constructor.
4446 *
4447 * If pstrFilename is != NULL, this reads the given settings file into the member
4448 * variables and various substructures and lists. Otherwise, the member variables
4449 * are initialized with default values.
4450 *
4451 * Throws variants of xml::Error for I/O, XML and logical content errors, which
4452 * the caller should catch; if this constructor does not throw, then the member
4453 * variables contain meaningful values (either from the file or defaults).
4454 *
4455 * @param pstrFilename
4456 * @param pCryptoIf Pointer to the cryptographic interface, required for an encrypted machine config.
4457 * @param pszPassword The password to use for an encrypted machine config.
4458 */
4459MachineConfigFile::MachineConfigFile(const Utf8Str *pstrFilename, PCVBOXCRYPTOIF pCryptoIf, const char *pszPassword)
4460 : ConfigFileBase(pstrFilename),
4461 enmParseState(ParseState_NotParsed),
4462 fCurrentStateModified(true),
4463 fAborted(false)
4464{
4465 RTTimeNow(&timeLastStateChange);
4466
4467 if (pstrFilename)
4468 {
4469 // the ConfigFileBase constructor has loaded the XML file, so now
4470 // we need only analyze what is in there
4471
4472 xml::NodesLoop nlRootChildren(*m->pelmRoot);
4473 const xml::ElementNode *pelmRootChild;
4474 while ((pelmRootChild = nlRootChildren.forAllNodes()))
4475 {
4476 if (pelmRootChild->nameEquals("MachineEncrypted"))
4477 readMachineEncrypted(*pelmRootChild, pCryptoIf, pszPassword);
4478 if (pelmRootChild->nameEquals("Machine"))
4479 readMachine(*pelmRootChild);
4480 }
4481
4482 // clean up memory allocated by XML engine
4483 clearDocument();
4484
4485 if (enmParseState == ParseState_NotParsed)
4486 enmParseState = ParseState_Parsed;
4487 }
4488}
4489
4490/**
4491 * Public routine which returns true if this machine config file can have its
4492 * own media registry (which is true for settings version v1.11 and higher,
4493 * i.e. files created by VirtualBox 4.0 and higher).
4494 * @return
4495 */
4496bool MachineConfigFile::canHaveOwnMediaRegistry() const
4497{
4498 return (m->sv >= SettingsVersion_v1_11);
4499}
4500
4501/**
4502 * Public routine which copies encryption settings. Used by Machine::saveSettings
4503 * so that the encryption settings do not get lost when a copy of the Machine settings
4504 * file is made to see if settings have actually changed.
4505 * @param other
4506 */
4507void MachineConfigFile::copyEncryptionSettingsFrom(const MachineConfigFile &other)
4508{
4509 strKeyId = other.strKeyId;
4510 strKeyStore = other.strKeyStore;
4511}
4512
4513/**
4514 * Public routine which allows for importing machine XML from an external DOM tree.
4515 * Use this after having called the constructor with a NULL argument.
4516 *
4517 * This is used by the OVF code if a <vbox:Machine> element has been encountered
4518 * in an OVF VirtualSystem element.
4519 *
4520 * @param elmMachine
4521 */
4522void MachineConfigFile::importMachineXML(const xml::ElementNode &elmMachine)
4523{
4524 // Ideally the version should be mandatory, but since VirtualBox didn't
4525 // care about it until 5.1 came with different defaults, there are OVF
4526 // files created by magicians (not using VirtualBox, which always wrote it)
4527 // which lack this information. Let's hope that they learn to add the
4528 // version when they switch to the newer settings style/defaults of 5.1.
4529 if (!(elmMachine.getAttributeValue("version", m->strSettingsVersionFull)))
4530 m->strSettingsVersionFull = VBOX_XML_IMPORT_VERSION_FULL;
4531
4532 LogRel(("Import settings with version \"%s\"\n", m->strSettingsVersionFull.c_str()));
4533
4534 m->sv = parseVersion(m->strSettingsVersionFull, &elmMachine);
4535
4536 // remember the settings version we read in case it gets upgraded later,
4537 // so we know when to make backups
4538 m->svRead = m->sv;
4539
4540 readMachine(elmMachine);
4541}
4542
4543/**
4544 * Comparison operator. This gets called from Machine::saveSettings to figure out
4545 * whether machine settings have really changed and thus need to be written out to disk.
4546 *
4547 * Even though this is called operator==, this does NOT compare all fields; the "equals"
4548 * should be understood as "has the same machine config as". The following fields are
4549 * NOT compared:
4550 * -- settings versions and file names inherited from ConfigFileBase;
4551 * -- fCurrentStateModified because that is considered separately in Machine::saveSettings!!
4552 *
4553 * The "deep" comparisons marked below will invoke the operator== functions of the
4554 * structs defined in this file, which may in turn go into comparing lists of
4555 * other structures. As a result, invoking this can be expensive, but it's
4556 * less expensive than writing out XML to disk.
4557 */
4558bool MachineConfigFile::operator==(const MachineConfigFile &c) const
4559{
4560 return (this == &c)
4561 || ( uuid == c.uuid
4562 && machineUserData == c.machineUserData
4563 && strStateFile == c.strStateFile
4564 && uuidCurrentSnapshot == c.uuidCurrentSnapshot
4565 // skip fCurrentStateModified!
4566 && RTTimeSpecIsEqual(&timeLastStateChange, &c.timeLastStateChange)
4567 && fAborted == c.fAborted
4568 && hardwareMachine == c.hardwareMachine // this one's deep
4569 && mediaRegistry == c.mediaRegistry // this one's deep
4570 // skip mapExtraDataItems! there is no old state available as it's always forced
4571 && llFirstSnapshot == c.llFirstSnapshot // this one's deep
4572 && recordingSettings == c.recordingSettings // this one's deep
4573 && strKeyId == c.strKeyId
4574 && strKeyStore == c.strKeyStore
4575 && strStateKeyId == c.strStateKeyId
4576 && strStateKeyStore == c.strStateKeyStore
4577 && strLogKeyId == c.strLogKeyId
4578 && strLogKeyStore == c.strLogKeyStore);
4579}
4580
4581/**
4582 * Called from MachineConfigFile::readHardware() to read CPU information.
4583 *
4584 * @param elmCpu
4585 * @param ll
4586 */
4587void MachineConfigFile::readCpuTree(const xml::ElementNode &elmCpu,
4588 CpuList &ll)
4589{
4590 xml::NodesLoop nl1(elmCpu, "Cpu");
4591 const xml::ElementNode *pelmCpu;
4592 while ((pelmCpu = nl1.forAllNodes()))
4593 {
4594 Cpu cpu;
4595
4596 if (!pelmCpu->getAttributeValue("id", cpu.ulId))
4597 throw ConfigFileError(this, pelmCpu, N_("Required Cpu/@id attribute is missing"));
4598
4599 ll.push_back(cpu);
4600 }
4601}
4602
4603/**
4604 * Called from MachineConfigFile::readPlatformX86() to read x86 CPUID information.
4605 *
4606 * @param elmCpuid
4607 * @param ll
4608 */
4609void MachineConfigFile::readCpuIdTreeX86(const xml::ElementNode &elmCpuid,
4610 CpuIdLeafsX86List &ll)
4611{
4612 xml::NodesLoop nl1(elmCpuid, "CpuIdLeaf");
4613 const xml::ElementNode *pelmCpuIdLeaf;
4614 while ((pelmCpuIdLeaf = nl1.forAllNodes()))
4615 {
4616 CpuIdLeafX86 leaf;
4617
4618 if (!pelmCpuIdLeaf->getAttributeValue("id", leaf.idx))
4619 throw ConfigFileError(this, pelmCpuIdLeaf, N_("Required CpuIdLeaf/@id attribute is missing"));
4620
4621 if (!pelmCpuIdLeaf->getAttributeValue("subleaf", leaf.idxSub))
4622 leaf.idxSub = 0;
4623 pelmCpuIdLeaf->getAttributeValue("eax", leaf.uEax);
4624 pelmCpuIdLeaf->getAttributeValue("ebx", leaf.uEbx);
4625 pelmCpuIdLeaf->getAttributeValue("ecx", leaf.uEcx);
4626 pelmCpuIdLeaf->getAttributeValue("edx", leaf.uEdx);
4627
4628 ll.push_back(leaf);
4629 }
4630}
4631
4632/**
4633 * Called from MachineConfigFile::readHardware() to network information.
4634 * @param elmNetwork
4635 * @param ll
4636 */
4637void MachineConfigFile::readNetworkAdapters(const xml::ElementNode &elmNetwork,
4638 NetworkAdaptersList &ll)
4639{
4640 xml::NodesLoop nl1(elmNetwork, "Adapter");
4641 const xml::ElementNode *pelmAdapter;
4642 while ((pelmAdapter = nl1.forAllNodes()))
4643 {
4644 NetworkAdapter nic;
4645
4646 if (m->sv >= SettingsVersion_v1_16)
4647 {
4648 /* Starting with VirtualBox 5.1 the default is cable connected and
4649 * PCnet-FAST III. Needs to match NetworkAdapter.areDefaultSettings(). */
4650 nic.fCableConnected = true;
4651 nic.type = NetworkAdapterType_Am79C973;
4652 }
4653
4654 if (!pelmAdapter->getAttributeValue("slot", nic.ulSlot))
4655 throw ConfigFileError(this, pelmAdapter, N_("Required Adapter/@slot attribute is missing"));
4656
4657 Utf8Str strTemp;
4658 if (pelmAdapter->getAttributeValue("type", strTemp))
4659 {
4660 if (strTemp == "Am79C970A")
4661 nic.type = NetworkAdapterType_Am79C970A;
4662 else if (strTemp == "Am79C973")
4663 nic.type = NetworkAdapterType_Am79C973;
4664 else if (strTemp == "Am79C960")
4665 nic.type = NetworkAdapterType_Am79C960;
4666 else if (strTemp == "82540EM")
4667 nic.type = NetworkAdapterType_I82540EM;
4668 else if (strTemp == "82543GC")
4669 nic.type = NetworkAdapterType_I82543GC;
4670 else if (strTemp == "82545EM")
4671 nic.type = NetworkAdapterType_I82545EM;
4672 else if (strTemp == "virtio")
4673 nic.type = NetworkAdapterType_Virtio;
4674 else if (strTemp == "NE1000")
4675 nic.type = NetworkAdapterType_NE1000;
4676 else if (strTemp == "NE2000")
4677 nic.type = NetworkAdapterType_NE2000;
4678 else if (strTemp == "WD8003")
4679 nic.type = NetworkAdapterType_WD8003;
4680 else if (strTemp == "WD8013")
4681 nic.type = NetworkAdapterType_WD8013;
4682 else if (strTemp == "3C503")
4683 nic.type = NetworkAdapterType_ELNK2;
4684 else if (strTemp == "3C501")
4685 nic.type = NetworkAdapterType_ELNK1;
4686 else
4687 throw ConfigFileError(this, pelmAdapter, N_("Invalid value '%s' in Adapter/@type attribute"), strTemp.c_str());
4688 }
4689
4690 pelmAdapter->getAttributeValue("enabled", nic.fEnabled);
4691 pelmAdapter->getAttributeValue("MACAddress", nic.strMACAddress);
4692 pelmAdapter->getAttributeValue("cable", nic.fCableConnected);
4693 pelmAdapter->getAttributeValue("speed", nic.ulLineSpeed);
4694
4695 if (pelmAdapter->getAttributeValue("promiscuousModePolicy", strTemp))
4696 {
4697 if (strTemp == "Deny")
4698 nic.enmPromiscModePolicy = NetworkAdapterPromiscModePolicy_Deny;
4699 else if (strTemp == "AllowNetwork")
4700 nic.enmPromiscModePolicy = NetworkAdapterPromiscModePolicy_AllowNetwork;
4701 else if (strTemp == "AllowAll")
4702 nic.enmPromiscModePolicy = NetworkAdapterPromiscModePolicy_AllowAll;
4703 else
4704 throw ConfigFileError(this, pelmAdapter,
4705 N_("Invalid value '%s' in Adapter/@promiscuousModePolicy attribute"), strTemp.c_str());
4706 }
4707
4708 pelmAdapter->getAttributeValue("trace", nic.fTraceEnabled);
4709 pelmAdapter->getAttributeValue("tracefile", nic.strTraceFile);
4710 pelmAdapter->getAttributeValue("bootPriority", nic.ulBootPriority);
4711 pelmAdapter->getAttributeValue("bandwidthGroup", nic.strBandwidthGroup);
4712
4713 xml::ElementNodesList llNetworkModes;
4714 pelmAdapter->getChildElements(llNetworkModes);
4715 xml::ElementNodesList::iterator it;
4716 /* We should have only active mode descriptor and disabled modes set */
4717 if (llNetworkModes.size() > 2)
4718 {
4719 throw ConfigFileError(this, pelmAdapter, N_("Invalid number of modes ('%d') attached to Adapter attribute"), llNetworkModes.size());
4720 }
4721 for (it = llNetworkModes.begin(); it != llNetworkModes.end(); ++it)
4722 {
4723 const xml::ElementNode *pelmNode = *it;
4724 if (pelmNode->nameEquals("DisabledModes"))
4725 {
4726 xml::ElementNodesList llDisabledNetworkModes;
4727 xml::ElementNodesList::iterator itDisabled;
4728 pelmNode->getChildElements(llDisabledNetworkModes);
4729 /* run over disabled list and load settings */
4730 for (itDisabled = llDisabledNetworkModes.begin();
4731 itDisabled != llDisabledNetworkModes.end(); ++itDisabled)
4732 {
4733 const xml::ElementNode *pelmDisabledNode = *itDisabled;
4734 readAttachedNetworkMode(*pelmDisabledNode, false, nic);
4735 }
4736 }
4737 else
4738 readAttachedNetworkMode(*pelmNode, true, nic);
4739 }
4740 // else: default is NetworkAttachmentType_Null
4741
4742 ll.push_back(nic);
4743 }
4744}
4745
4746void MachineConfigFile::readAttachedNetworkMode(const xml::ElementNode &elmMode, bool fEnabled, NetworkAdapter &nic)
4747{
4748 NetworkAttachmentType_T enmAttachmentType = NetworkAttachmentType_Null;
4749
4750 if (elmMode.nameEquals("NAT"))
4751 {
4752 enmAttachmentType = NetworkAttachmentType_NAT;
4753
4754 elmMode.getAttributeValue("network", nic.nat.strNetwork);
4755 elmMode.getAttributeValue("hostip", nic.nat.strBindIP);
4756 elmMode.getAttributeValue("mtu", nic.nat.u32Mtu);
4757 elmMode.getAttributeValue("sockrcv", nic.nat.u32SockRcv);
4758 elmMode.getAttributeValue("socksnd", nic.nat.u32SockSnd);
4759 elmMode.getAttributeValue("tcprcv", nic.nat.u32TcpRcv);
4760 elmMode.getAttributeValue("tcpsnd", nic.nat.u32TcpSnd);
4761 elmMode.getAttributeValue("localhost-reachable", nic.nat.fLocalhostReachable);
4762 const xml::ElementNode *pelmDNS;
4763 if ((pelmDNS = elmMode.findChildElement("DNS")))
4764 {
4765 pelmDNS->getAttributeValue("pass-domain", nic.nat.fDNSPassDomain);
4766 pelmDNS->getAttributeValue("use-proxy", nic.nat.fDNSProxy);
4767 pelmDNS->getAttributeValue("use-host-resolver", nic.nat.fDNSUseHostResolver);
4768 }
4769 const xml::ElementNode *pelmAlias;
4770 if ((pelmAlias = elmMode.findChildElement("Alias")))
4771 {
4772 pelmAlias->getAttributeValue("logging", nic.nat.fAliasLog);
4773 pelmAlias->getAttributeValue("proxy-only", nic.nat.fAliasProxyOnly);
4774 pelmAlias->getAttributeValue("use-same-ports", nic.nat.fAliasUseSamePorts);
4775 }
4776 const xml::ElementNode *pelmTFTP;
4777 if ((pelmTFTP = elmMode.findChildElement("TFTP")))
4778 {
4779 pelmTFTP->getAttributeValue("prefix", nic.nat.strTFTPPrefix);
4780 pelmTFTP->getAttributeValue("boot-file", nic.nat.strTFTPBootFile);
4781 pelmTFTP->getAttributeValue("next-server", nic.nat.strTFTPNextServer);
4782 }
4783
4784 readNATForwardRulesMap(elmMode, nic.nat.mapRules);
4785 }
4786 else if ( elmMode.nameEquals("HostInterface")
4787 || elmMode.nameEquals("BridgedInterface"))
4788 {
4789 enmAttachmentType = NetworkAttachmentType_Bridged;
4790
4791 // optional network name, cannot be required or we have trouble with
4792 // settings which are saved before configuring the network name
4793 elmMode.getAttributeValue("name", nic.strBridgedName);
4794 }
4795 else if (elmMode.nameEquals("InternalNetwork"))
4796 {
4797 enmAttachmentType = NetworkAttachmentType_Internal;
4798
4799 // optional network name, cannot be required or we have trouble with
4800 // settings which are saved before configuring the network name
4801 elmMode.getAttributeValue("name", nic.strInternalNetworkName);
4802 }
4803 else if (elmMode.nameEquals("HostOnlyInterface"))
4804 {
4805 enmAttachmentType = NetworkAttachmentType_HostOnly;
4806
4807 // optional network name, cannot be required or we have trouble with
4808 // settings which are saved before configuring the network name
4809 elmMode.getAttributeValue("name", nic.strHostOnlyName);
4810 }
4811#ifdef VBOX_WITH_VMNET
4812 else if (elmMode.nameEquals("HostOnlyNetwork"))
4813 {
4814 enmAttachmentType = NetworkAttachmentType_HostOnlyNetwork;
4815
4816 // optional network name, cannot be required or we have trouble with
4817 // settings which are saved before configuring the network name
4818 elmMode.getAttributeValue("name", nic.strHostOnlyNetworkName);
4819 }
4820#endif /* VBOX_WITH_VMNET */
4821 else if (elmMode.nameEquals("GenericInterface"))
4822 {
4823 enmAttachmentType = NetworkAttachmentType_Generic;
4824
4825 elmMode.getAttributeValue("driver", nic.strGenericDriver); // optional network attachment driver
4826
4827 // get all properties
4828 xml::NodesLoop nl(elmMode);
4829 const xml::ElementNode *pelmModeChild;
4830 while ((pelmModeChild = nl.forAllNodes()))
4831 {
4832 if (pelmModeChild->nameEquals("Property"))
4833 {
4834 Utf8Str strPropName, strPropValue;
4835 if ( pelmModeChild->getAttributeValue("name", strPropName)
4836 && pelmModeChild->getAttributeValue("value", strPropValue) )
4837 nic.genericProperties[strPropName] = strPropValue;
4838 else
4839 throw ConfigFileError(this, pelmModeChild, N_("Required GenericInterface/Property/@name or @value attribute is missing"));
4840 }
4841 }
4842 }
4843 else if (elmMode.nameEquals("NATNetwork"))
4844 {
4845 enmAttachmentType = NetworkAttachmentType_NATNetwork;
4846
4847 // optional network name, cannot be required or we have trouble with
4848 // settings which are saved before configuring the network name
4849 elmMode.getAttributeValue("name", nic.strNATNetworkName);
4850 }
4851 else if (elmMode.nameEquals("VDE"))
4852 {
4853 // inofficial hack (VDE networking was never part of the official
4854 // settings, so it's not mentioned in VirtualBox-settings.xsd)
4855 enmAttachmentType = NetworkAttachmentType_Generic;
4856
4857 com::Utf8Str strVDEName;
4858 elmMode.getAttributeValue("network", strVDEName); // optional network name
4859 nic.strGenericDriver = "VDE";
4860 nic.genericProperties["network"] = strVDEName;
4861 }
4862#ifdef VBOX_WITH_VMNET
4863 else if (elmMode.nameEquals("HostOnlyNetwork"))
4864 {
4865 enmAttachmentType = NetworkAttachmentType_HostOnly;
4866
4867 // optional network name, cannot be required or we have trouble with
4868 // settings which are saved before configuring the network name
4869 elmMode.getAttributeValue("name", nic.strHostOnlyNetworkName);
4870 }
4871#endif /* VBOX_WITH_VMNET */
4872#ifdef VBOX_WITH_CLOUD_NET
4873 else if (elmMode.nameEquals("CloudNetwork"))
4874 {
4875 enmAttachmentType = NetworkAttachmentType_Cloud;
4876
4877 // optional network name, cannot be required or we have trouble with
4878 // settings which are saved before configuring the network name
4879 elmMode.getAttributeValue("name", nic.strCloudNetworkName);
4880 }
4881#endif /* VBOX_WITH_CLOUD_NET */
4882
4883 if (fEnabled && enmAttachmentType != NetworkAttachmentType_Null)
4884 nic.mode = enmAttachmentType;
4885}
4886
4887/**
4888 * Called from MachineConfigFile::readHardware() to read serial port information.
4889 * @param elmUART
4890 * @param ll
4891 */
4892void MachineConfigFile::readSerialPorts(const xml::ElementNode &elmUART,
4893 SerialPortsList &ll)
4894{
4895 xml::NodesLoop nl1(elmUART, "Port");
4896 const xml::ElementNode *pelmPort;
4897 while ((pelmPort = nl1.forAllNodes()))
4898 {
4899 SerialPort port;
4900 if (!pelmPort->getAttributeValue("slot", port.ulSlot))
4901 throw ConfigFileError(this, pelmPort, N_("Required UART/Port/@slot attribute is missing"));
4902
4903 // slot must be unique
4904 for (SerialPortsList::const_iterator it = ll.begin();
4905 it != ll.end();
4906 ++it)
4907 if ((*it).ulSlot == port.ulSlot)
4908 throw ConfigFileError(this, pelmPort, N_("Invalid value %RU32 in UART/Port/@slot attribute: value is not unique"), port.ulSlot);
4909
4910 if (!pelmPort->getAttributeValue("enabled", port.fEnabled))
4911 throw ConfigFileError(this, pelmPort, N_("Required UART/Port/@enabled attribute is missing"));
4912 if (m->sv >= SettingsVersion_v1_20) /* IOBase was changed to IOAddress since settings v1.20. */
4913 {
4914 if (!pelmPort->getAttributeValue("IOAddress", port.ulIOAddress))
4915 throw ConfigFileError(this, pelmPort, N_("Required UART/Port/@IOAddress attribute is missing"));
4916 }
4917 else /* Settings < v1.20. */
4918 {
4919 if (!pelmPort->getAttributeValue("IOBase", port.ulIOAddress))
4920 throw ConfigFileError(this, pelmPort, N_("Required UART/Port/@IOBase attribute is missing"));
4921 }
4922 if (!pelmPort->getAttributeValue("IRQ", port.ulIRQ))
4923 throw ConfigFileError(this, pelmPort, N_("Required UART/Port/@IRQ attribute is missing"));
4924
4925 Utf8Str strPortMode;
4926 if (!pelmPort->getAttributeValue("hostMode", strPortMode))
4927 throw ConfigFileError(this, pelmPort, N_("Required UART/Port/@hostMode attribute is missing"));
4928 if (strPortMode == "RawFile")
4929 port.portMode = PortMode_RawFile;
4930 else if (strPortMode == "HostPipe")
4931 port.portMode = PortMode_HostPipe;
4932 else if (strPortMode == "HostDevice")
4933 port.portMode = PortMode_HostDevice;
4934 else if (strPortMode == "Disconnected")
4935 port.portMode = PortMode_Disconnected;
4936 else if (strPortMode == "TCP")
4937 port.portMode = PortMode_TCP;
4938 else
4939 throw ConfigFileError(this, pelmPort, N_("Invalid value '%s' in UART/Port/@hostMode attribute"), strPortMode.c_str());
4940
4941 pelmPort->getAttributeValue("path", port.strPath);
4942 pelmPort->getAttributeValue("server", port.fServer);
4943
4944 Utf8Str strUartType;
4945 if (pelmPort->getAttributeValue("uartType", strUartType))
4946 {
4947 if (strUartType == "16450")
4948 port.uartType = UartType_U16450;
4949 else if (strUartType == "16550A")
4950 port.uartType = UartType_U16550A;
4951 else if (strUartType == "16750")
4952 port.uartType = UartType_U16750;
4953 else
4954 throw ConfigFileError(this, pelmPort, N_("Invalid value '%s' in UART/Port/@uartType attribute"), strUartType.c_str());
4955 }
4956
4957 ll.push_back(port);
4958 }
4959}
4960
4961/**
4962 * Called from MachineConfigFile::readHardware() to read parallel port information.
4963 * @param elmLPT
4964 * @param ll
4965 */
4966void MachineConfigFile::readParallelPorts(const xml::ElementNode &elmLPT,
4967 ParallelPortsList &ll)
4968{
4969 xml::NodesLoop nl1(elmLPT, "Port");
4970 const xml::ElementNode *pelmPort;
4971 while ((pelmPort = nl1.forAllNodes()))
4972 {
4973 ParallelPort port;
4974 if (!pelmPort->getAttributeValue("slot", port.ulSlot))
4975 throw ConfigFileError(this, pelmPort, N_("Required LPT/Port/@slot attribute is missing"));
4976
4977 // slot must be unique
4978 for (ParallelPortsList::const_iterator it = ll.begin();
4979 it != ll.end();
4980 ++it)
4981 if ((*it).ulSlot == port.ulSlot)
4982 throw ConfigFileError(this, pelmPort, N_("Invalid value %RU32 in LPT/Port/@slot attribute: value is not unique"), port.ulSlot);
4983
4984 if (!pelmPort->getAttributeValue("enabled", port.fEnabled))
4985 throw ConfigFileError(this, pelmPort, N_("Required LPT/Port/@enabled attribute is missing"));
4986 if (!pelmPort->getAttributeValue("IOBase", port.ulIOBase))
4987 throw ConfigFileError(this, pelmPort, N_("Required LPT/Port/@IOBase attribute is missing"));
4988 if (!pelmPort->getAttributeValue("IRQ", port.ulIRQ))
4989 throw ConfigFileError(this, pelmPort, N_("Required LPT/Port/@IRQ attribute is missing"));
4990
4991 pelmPort->getAttributeValue("path", port.strPath);
4992
4993 ll.push_back(port);
4994 }
4995}
4996
4997/**
4998 * Called from MachineConfigFile::readHardware() to read audio adapter information
4999 * and maybe fix driver information depending on the current host hardware.
5000 *
5001 * @param elmAudioAdapter "AudioAdapter" XML element.
5002 * @param aa
5003 */
5004void MachineConfigFile::readAudioAdapter(const xml::ElementNode &elmAudioAdapter,
5005 AudioAdapter &aa)
5006{
5007 if (m->sv >= SettingsVersion_v1_15)
5008 {
5009 // get all properties
5010 xml::NodesLoop nl1(elmAudioAdapter, "Property");
5011 const xml::ElementNode *pelmModeChild;
5012 while ((pelmModeChild = nl1.forAllNodes()))
5013 {
5014 Utf8Str strPropName, strPropValue;
5015 if ( pelmModeChild->getAttributeValue("name", strPropName)
5016 && pelmModeChild->getAttributeValue("value", strPropValue) )
5017 aa.properties[strPropName] = strPropValue;
5018 else
5019 throw ConfigFileError(this, pelmModeChild, N_("Required AudioAdapter/Property/@name or @value attribute "
5020 "is missing"));
5021 }
5022 }
5023
5024 elmAudioAdapter.getAttributeValue("enabled", aa.fEnabled);
5025 elmAudioAdapter.getAttributeValue("enabledIn", aa.fEnabledIn);
5026 elmAudioAdapter.getAttributeValue("enabledOut", aa.fEnabledOut);
5027
5028 Utf8Str strTemp;
5029 if (elmAudioAdapter.getAttributeValue("controller", strTemp))
5030 {
5031 if (strTemp == "SB16")
5032 aa.controllerType = AudioControllerType_SB16;
5033 else if (strTemp == "AC97")
5034 aa.controllerType = AudioControllerType_AC97;
5035 else if (strTemp == "HDA")
5036 aa.controllerType = AudioControllerType_HDA;
5037 else
5038 throw ConfigFileError(this, &elmAudioAdapter, N_("Invalid value '%s' in AudioAdapter/@controller attribute"), strTemp.c_str());
5039 }
5040
5041 if (elmAudioAdapter.getAttributeValue("codec", strTemp))
5042 {
5043 if (strTemp == "SB16")
5044 aa.codecType = AudioCodecType_SB16;
5045 else if (strTemp == "STAC9700")
5046 aa.codecType = AudioCodecType_STAC9700;
5047 else if (strTemp == "AD1980")
5048 aa.codecType = AudioCodecType_AD1980;
5049 else if (strTemp == "STAC9221")
5050 aa.codecType = AudioCodecType_STAC9221;
5051 else
5052 throw ConfigFileError(this, &elmAudioAdapter, N_("Invalid value '%s' in AudioAdapter/@codec attribute"), strTemp.c_str());
5053 }
5054 else
5055 {
5056 /* No codec attribute provided; use defaults. */
5057 switch (aa.controllerType)
5058 {
5059 case AudioControllerType_AC97:
5060 aa.codecType = AudioCodecType_STAC9700;
5061 break;
5062 case AudioControllerType_SB16:
5063 aa.codecType = AudioCodecType_SB16;
5064 break;
5065 case AudioControllerType_HDA:
5066 aa.codecType = AudioCodecType_STAC9221;
5067 break;
5068 default:
5069 Assert(false); /* We just checked the controller type above. */
5070 }
5071 }
5072
5073 if (elmAudioAdapter.getAttributeValue("driver", strTemp))
5074 {
5075 // settings before 1.3 used lower case so make sure this is case-insensitive
5076 strTemp.toUpper();
5077 if (strTemp == "DEFAULT") /* Keep this to be backwards compatible for settings < r152556. */
5078 aa.driverType = AudioDriverType_Default;
5079 else if (strTemp == "NULL")
5080 aa.driverType = AudioDriverType_Null;
5081 else if (strTemp == "WAS")
5082 aa.driverType = AudioDriverType_WAS;
5083 else if (strTemp == "WINMM")
5084 aa.driverType = AudioDriverType_WinMM;
5085 else if ( (strTemp == "DIRECTSOUND") || (strTemp == "DSOUND") )
5086 aa.driverType = AudioDriverType_DirectSound;
5087 else if (strTemp == "SOLAUDIO") /* Deprecated -- Solaris will use OSS by default now. */
5088 aa.driverType = AudioDriverType_SolAudio;
5089 else if (strTemp == "ALSA")
5090 aa.driverType = AudioDriverType_ALSA;
5091 else if (strTemp == "PULSE")
5092 aa.driverType = AudioDriverType_Pulse;
5093 else if (strTemp == "OSS")
5094 aa.driverType = AudioDriverType_OSS;
5095 else if (strTemp == "COREAUDIO")
5096 aa.driverType = AudioDriverType_CoreAudio;
5097 else if (strTemp == "MMPM") /* Deprecated; only kept for backwards compatibility. */
5098 aa.driverType = AudioDriverType_MMPM;
5099 else
5100 {
5101 /* Be nice when loading the settings on downgraded versions: In case the selected backend isn't available / known
5102 * to this version, fall back to the default backend, telling the user in the release log. See @bugref{10051c7}. */
5103 LogRel(("WARNING: Invalid value '%s' in AudioAdapter/@driver attribute found; falling back to default audio backend\n",
5104 strTemp.c_str()));
5105 aa.driverType = AudioDriverType_Default;
5106 }
5107
5108 /* When loading settings >= 1.19 (VBox 7.0), the attribute "useDefault" will determine if the VM should use
5109 * the OS' default audio driver or not. This additional attribute is necessary in order to be backwards compatible
5110 * with older VBox versions. */
5111 bool fUseDefault = false;
5112 if ( elmAudioAdapter.getAttributeValue("useDefault", &fUseDefault) /* Overrides "driver" above (if set). */
5113 && fUseDefault)
5114 aa.driverType = AudioDriverType_Default;
5115
5116 // now check if this is actually supported on the current host platform;
5117 // people might be opening a file created on a Windows host, and that
5118 // VM should still start on a Linux host
5119 if (!isAudioDriverAllowedOnThisHost(aa.driverType))
5120 aa.driverType = getHostDefaultAudioDriver();
5121 }
5122}
5123
5124/**
5125 * Called from MachineConfigFile::readHardware() to read guest property information.
5126 * @param elmGuestProperties
5127 * @param hw
5128 */
5129void MachineConfigFile::readGuestProperties(const xml::ElementNode &elmGuestProperties,
5130 Hardware &hw)
5131{
5132 xml::NodesLoop nl1(elmGuestProperties, "GuestProperty");
5133 const xml::ElementNode *pelmProp;
5134 while ((pelmProp = nl1.forAllNodes()))
5135 {
5136 GuestProperty prop;
5137
5138 pelmProp->getAttributeValue("name", prop.strName);
5139 pelmProp->getAttributeValue("value", prop.strValue);
5140
5141 pelmProp->getAttributeValue("timestamp", prop.timestamp);
5142 pelmProp->getAttributeValue("flags", prop.strFlags);
5143
5144 /* Check guest property 'name' and 'value' for correctness before
5145 * placing it to local cache. */
5146
5147 int vrc = GuestPropValidateName(prop.strName.c_str(), prop.strName.length() + 1 /* '\0' */);
5148 if (RT_FAILURE(vrc))
5149 {
5150 LogRel(("WARNING: Guest property with invalid name (%s) present in VM configuration file. Guest property will be dropped.\n",
5151 prop.strName.c_str()));
5152 continue;
5153 }
5154
5155 vrc = GuestPropValidateValue(prop.strValue.c_str(), prop.strValue.length() + 1 /* '\0' */);
5156 if (vrc == VERR_TOO_MUCH_DATA)
5157 {
5158 LogRel(("WARNING: Guest property '%s' present in VM configuration file and has too long value. Guest property value will be truncated.\n",
5159 prop.strName.c_str()));
5160
5161 /* In order to pass validation, guest property value length (including '\0') in bytes
5162 * should be less than GUEST_PROP_MAX_VALUE_LEN. Chop it down to an appropriate length. */
5163 prop.strValue.truncate(GUEST_PROP_MAX_VALUE_LEN - 1 /*terminator*/);
5164 }
5165 else if (RT_FAILURE(vrc))
5166 {
5167 LogRel(("WARNING: Guest property '%s' present in VM configuration file and has invalid value. Guest property will be dropped.\n",
5168 prop.strName.c_str()));
5169 continue;
5170 }
5171
5172 hw.llGuestProperties.push_back(prop);
5173 }
5174}
5175
5176/**
5177 * Helper function to read attributes that are common to \<SATAController\> (pre-1.7)
5178 * and \<StorageController\>.
5179 * @param elmStorageController
5180 * @param sctl
5181 */
5182void MachineConfigFile::readStorageControllerAttributes(const xml::ElementNode &elmStorageController,
5183 StorageController &sctl)
5184{
5185 elmStorageController.getAttributeValue("PortCount", sctl.ulPortCount);
5186 elmStorageController.getAttributeValue("useHostIOCache", sctl.fUseHostIOCache);
5187}
5188
5189/**
5190 * Reads the x86 CPUID tree.
5191 *
5192 * For settings >= v1.20 these were stored under the "Platform/x86/CPU" node.
5193 * For settings < v1.20 these were stored under the "Hardware/CPU" node.
5194 *
5195 * @param elmPlatformOrHardware Platform or Hardware node to read from.
5196 * @param platX86 Where to store the platform settings.
5197 */
5198void MachineConfigFile::readPlatformCPUIDTreeX86(const xml::ElementNode &elmPlatformOrHardware,
5199 PlatformX86 &platX86)
5200{
5201 const xml::ElementNode *pelmCPUChild;
5202 if ((pelmCPUChild = elmPlatformOrHardware.findChildElement("CpuIdTree")))
5203 readCpuIdTreeX86(*pelmCPUChild, platX86.llCpuIdLeafs);
5204}
5205
5206/**
5207 * Reads the x86 platform settings.
5208 *
5209 * For settings >= v1.20 these were stored under the "Platform/x86" node.
5210 * For settings < v1.20 these were stored under the "Hardware" node.
5211 *
5212 * @param elmPlatformX86OrHardware Platform/x86 or Hardware node to read from.
5213 * @param platX86 Where to store the x86 platform settings.
5214 */
5215void MachineConfigFile::readPlatformX86(const xml::ElementNode &elmPlatformX86OrHardware,
5216 PlatformX86 &platX86)
5217{
5218 xml::NodesLoop nl1(elmPlatformX86OrHardware);
5219
5220 const xml::ElementNode *pelChild;
5221 while ((pelChild = nl1.forAllNodes()))
5222 {
5223 if (pelChild->nameEquals("HPET"))
5224 {
5225 pelChild->getAttributeValue("enabled", platX86.fHPETEnabled);
5226 }
5227 else if (pelChild->nameEquals("CPU"))
5228 {
5229 const xml::ElementNode *pelmCPUChild;
5230 if ((pelmCPUChild = pelChild->findChildElement("HardwareVirtEx")))
5231 pelmCPUChild->getAttributeValue("enabled", platX86.fHWVirtEx);
5232 if ((pelmCPUChild = pelChild->findChildElement("HardwareVirtExNestedPaging")))
5233 pelmCPUChild->getAttributeValue("enabled", platX86.fHWVirtExNestedPaging);
5234 if ((pelmCPUChild = pelChild->findChildElement("HardwareVirtExLargePages")))
5235 pelmCPUChild->getAttributeValue("enabled", platX86.fHWVirtExLargePages);
5236 if ((pelmCPUChild = pelChild->findChildElement("HardwareVirtExVPID")))
5237 pelmCPUChild->getAttributeValue("enabled", platX86.fHWVirtExVPID);
5238 if ((pelmCPUChild = pelChild->findChildElement("HardwareVirtExUX")))
5239 pelmCPUChild->getAttributeValue("enabled", platX86.fHWVirtExUX);
5240 if ((pelmCPUChild = pelChild->findChildElement("HardwareVirtForce")))
5241 pelmCPUChild->getAttributeValue("enabled", platX86.fHWVirtExForce);
5242 if ((pelmCPUChild = pelChild->findChildElement("HardwareVirtExUseNativeApi")))
5243 pelmCPUChild->getAttributeValue("enabled", platX86.fHWVirtExUseNativeApi);
5244 if ((pelmCPUChild = pelChild->findChildElement("HardwareVirtExVirtVmsaveVmload")))
5245 pelmCPUChild->getAttributeValue("enabled", platX86.fHWVirtExVirtVmsaveVmload);
5246
5247 if (!(pelmCPUChild = pelChild->findChildElement("PAE")))
5248 {
5249 /* The default for pre 3.1 was false, so we must respect that. */
5250 if (m->sv < SettingsVersion_v1_9)
5251 platX86.fPAE = false;
5252 }
5253 else
5254 pelmCPUChild->getAttributeValue("enabled", platX86.fPAE);
5255
5256 bool fLongMode;
5257 if ( (pelmCPUChild = pelChild->findChildElement("LongMode"))
5258 && pelmCPUChild->getAttributeValue("enabled", fLongMode) )
5259 platX86.enmLongMode = fLongMode ? PlatformX86::LongMode_Enabled : PlatformX86::LongMode_Disabled;
5260 else
5261 platX86.enmLongMode = PlatformX86::LongMode_Legacy;
5262
5263 if ((pelmCPUChild = pelChild->findChildElement("TripleFaultReset")))
5264 pelmCPUChild->getAttributeValue("enabled", platX86.fTripleFaultReset);
5265 if ((pelmCPUChild = pelChild->findChildElement("APIC")))
5266 pelmCPUChild->getAttributeValue("enabled", platX86.fAPIC);
5267 if ((pelmCPUChild = pelChild->findChildElement("X2APIC")))
5268 pelmCPUChild->getAttributeValue("enabled", platX86.fX2APIC);
5269
5270 if ((pelmCPUChild = pelChild->findChildElement("IBPBOn")))
5271 {
5272 pelmCPUChild->getAttributeValue("vmexit", platX86.fIBPBOnVMExit);
5273 pelmCPUChild->getAttributeValue("vmentry", platX86.fIBPBOnVMEntry);
5274 }
5275 if ((pelmCPUChild = pelChild->findChildElement("SpecCtrl")))
5276 pelmCPUChild->getAttributeValue("enabled", platX86.fSpecCtrl);
5277 if ((pelmCPUChild = pelChild->findChildElement("SpecCtrlByHost")))
5278 pelmCPUChild->getAttributeValue("enabled", platX86.fSpecCtrlByHost);
5279 if ((pelmCPUChild = pelChild->findChildElement("L1DFlushOn")))
5280 {
5281 pelmCPUChild->getAttributeValue("scheduling", platX86.fL1DFlushOnSched);
5282 pelmCPUChild->getAttributeValue("vmentry", platX86.fL1DFlushOnVMEntry);
5283 }
5284 if ((pelmCPUChild = pelChild->findChildElement("MDSClearOn")))
5285 {
5286 pelmCPUChild->getAttributeValue("scheduling", platX86.fMDSClearOnSched);
5287 pelmCPUChild->getAttributeValue("vmentry", platX86.fMDSClearOnVMEntry);
5288 }
5289 if ((pelmCPUChild = pelChild->findChildElement("NestedHWVirt")))
5290 pelmCPUChild->getAttributeValue("enabled", platX86.fNestedHWVirt);
5291
5292 readPlatformCPUIDTreeX86(*pelChild, platX86);
5293 }
5294 }
5295}
5296
5297/**
5298 * Reads the platform settings.
5299 *
5300 * For settings >= v1.20 (>= VirtualBox 7.1) these were stored under the "Platform" node.
5301 * For settings < v1.20 (<= VirtualBox 7.0) these were stored under the "Hardware" node.
5302 *
5303 * @param elmPlatformOrHardware Platform or Hardware node to read from.
5304 * @param plat Where to store the platform settings.
5305 */
5306void MachineConfigFile::readPlatform(const xml::ElementNode &elmPlatformOrHardware,
5307 Platform &plat)
5308{
5309 /*
5310 * Platform-generic stuff.
5311 */
5312 xml::NodesLoop nl1(elmPlatformOrHardware);
5313 const xml::ElementNode *pelmChild;
5314 while ((pelmChild = nl1.forAllNodes()))
5315 {
5316 if (pelmChild->nameEquals("Chipset"))
5317 {
5318 Utf8Str strChipsetType;
5319 if (pelmChild->getAttributeValue("type", strChipsetType))
5320 {
5321 if (strChipsetType == "PIIX3")
5322 plat.chipsetType = ChipsetType_PIIX3;
5323 else if (strChipsetType == "ICH9")
5324 plat.chipsetType = ChipsetType_ICH9;
5325 else if (strChipsetType == "ARMv8Virtual")
5326 plat.chipsetType = ChipsetType_ARMv8Virtual;
5327 else
5328 throw ConfigFileError(this,
5329 pelmChild,
5330 N_("Invalid value '%s' in Chipset/@type"),
5331 strChipsetType.c_str());
5332 }
5333 }
5334 else if (pelmChild->nameEquals("Iommu"))
5335 {
5336 Utf8Str strIommuType;
5337 if (pelmChild->getAttributeValue("type", strIommuType))
5338 {
5339 if (strIommuType == "None")
5340 plat.iommuType = IommuType_None;
5341 else if (strIommuType == "Automatic")
5342 plat.iommuType = IommuType_Automatic;
5343 else if (strIommuType == "AMD")
5344 plat.iommuType = IommuType_AMD;
5345 else if (strIommuType == "Intel")
5346 plat.iommuType = IommuType_Intel;
5347 else
5348 throw ConfigFileError(this,
5349 pelmChild,
5350 N_("Invalid value '%s' in Iommu/@type"),
5351 strIommuType.c_str());
5352 }
5353 }
5354 else if (pelmChild->nameEquals("RTC"))
5355 {
5356 Utf8Str strLocalOrUTC;
5357 plat.fRTCUseUTC = pelmChild->getAttributeValue("localOrUTC", strLocalOrUTC)
5358 && strLocalOrUTC == "UTC";
5359 }
5360 }
5361
5362 if (m->sv >= SettingsVersion_v1_20) /* Settings v1.20 introduced platform architecture support. */
5363 {
5364 Utf8Str strArch;
5365 if (elmPlatformOrHardware.getAttributeValue("architecture", strArch))
5366 {
5367 if (strArch.equalsIgnoreCase("x86"))
5368 plat.architectureType = PlatformArchitecture_x86;
5369 else if (strArch.equalsIgnoreCase("ARM"))
5370 plat.architectureType = PlatformArchitecture_ARM;
5371 else
5372 throw ConfigFileError(this,
5373 &elmPlatformOrHardware,
5374 N_("Platform/@architecture '%s' invalid"), strArch.c_str());
5375 }
5376 else
5377 throw ConfigFileError(this, &elmPlatformOrHardware, N_("Platform/@architecture missing"));
5378 }
5379
5380 /*
5381 * Platform-specific stuff.
5382 */
5383 switch (plat.architectureType)
5384 {
5385 case PlatformArchitecture_x86:
5386 {
5387 const xml::ElementNode *pelmPlatformX86OrHardware;
5388 if (m->sv >= SettingsVersion_v1_20) /* Settings v1.20 introduced platform support with a x86 sub node. */
5389 {
5390 pelmPlatformX86OrHardware = elmPlatformOrHardware.findChildElement("x86");
5391 if (!pelmPlatformX86OrHardware)
5392 throw ConfigFileError(this, &elmPlatformOrHardware, N_("Required Platform/@x86 element is missing"));
5393 }
5394 else /* For settings < v1.20 we stored everyhing in the Hardware node. */
5395 pelmPlatformX86OrHardware = &elmPlatformOrHardware;
5396
5397 readPlatformX86(*pelmPlatformX86OrHardware, plat.x86);
5398 break;
5399 }
5400
5401#ifdef VBOX_WITH_VIRT_ARMV8
5402 case PlatformArchitecture_ARM:
5403 {
5404 /** @todo BUGBUG Implement loading ARM platform stuff here. */
5405 break;
5406 }
5407#endif
5408 default:
5409 AssertFailed();
5410 break;
5411 }
5412}
5413
5414/**
5415 * Reads in a \<Hardware\> block and stores it in the given structure. Used
5416 * both directly from readMachine and from readSnapshot, since snapshots
5417 * have their own hardware sections.
5418 *
5419 * For legacy pre-1.7 settings we also need a storage structure because
5420 * the IDE and SATA controllers used to be defined under \<Hardware\>.
5421 *
5422 * @param elmHardware Hardware node to read from.
5423 * @param hw Where to store the hardware settings.
5424 */
5425void MachineConfigFile::readHardware(const xml::ElementNode &elmHardware,
5426 Hardware &hw)
5427{
5428 if (m->sv >= SettingsVersion_v1_16)
5429 {
5430 /* Starting with VirtualBox 5.1 the default is Default, before it was
5431 * Legacy. This needs to matched by areParavirtDefaultSettings(). */
5432 hw.paravirtProvider = ParavirtProvider_Default;
5433 /* The new default is disabled, before it was enabled by default. */
5434 hw.vrdeSettings.fEnabled = false;
5435 /* The new default is disabled, before it was enabled by default. */
5436 hw.audioAdapter.fEnabled = false;
5437 }
5438
5439 if (m->sv >= SettingsVersion_v1_17)
5440 {
5441 /* Starting with VirtualBox 5.2 the default is disabled, before it was
5442 * enabled. This needs to matched by AudioAdapter::areDefaultSettings(). */
5443 hw.audioAdapter.fEnabledIn = false;
5444 /* The new default is disabled, before it was enabled by default. */
5445 hw.audioAdapter.fEnabledOut = false;
5446 }
5447
5448 if (!elmHardware.getAttributeValue("version", hw.strVersion))
5449 {
5450 /* KLUDGE ALERT! For a while during the 3.1 development this was not
5451 written because it was thought to have a default value of "2". For
5452 sv <= 1.3 it defaults to "1" because the attribute didn't exist,
5453 while for 1.4+ it is sort of mandatory. Now, the buggy XML writer
5454 code only wrote 1.7 and later. So, if it's a 1.7+ XML file and it's
5455 missing the hardware version, then it probably should be "2" instead
5456 of "1". */
5457 if (m->sv < SettingsVersion_v1_7)
5458 hw.strVersion = "1";
5459 else
5460 hw.strVersion = "2";
5461 }
5462 Utf8Str strUUID;
5463 if (elmHardware.getAttributeValue("uuid", strUUID))
5464 parseUUID(hw.uuid, strUUID, &elmHardware);
5465
5466 xml::NodesLoop nl1(elmHardware);
5467 const xml::ElementNode *pelmHwChild;
5468 while ((pelmHwChild = nl1.forAllNodes()))
5469 {
5470 if (pelmHwChild->nameEquals("CPU"))
5471 {
5472 if (!pelmHwChild->getAttributeValue("count", hw.cCPUs))
5473 {
5474 // pre-1.5 variant; not sure if this actually exists in the wild anywhere
5475 const xml::ElementNode *pelmCPUChild;
5476 if ((pelmCPUChild = pelmHwChild->findChildElement("CPUCount")))
5477 pelmCPUChild->getAttributeValue("count", hw.cCPUs);
5478 }
5479
5480 pelmHwChild->getAttributeValue("hotplug", hw.fCpuHotPlug);
5481 pelmHwChild->getAttributeValue("executionCap", hw.ulCpuExecutionCap);
5482
5483 const xml::ElementNode *pelmCPUChild;
5484 if (hw.fCpuHotPlug)
5485 {
5486 if ((pelmCPUChild = pelmHwChild->findChildElement("CpuTree")))
5487 readCpuTree(*pelmCPUChild, hw.llCpus);
5488 }
5489
5490 if ((pelmCPUChild = pelmHwChild->findChildElement("SyntheticCpu")))
5491 {
5492 bool fSyntheticCpu = false;
5493 pelmCPUChild->getAttributeValue("enabled", fSyntheticCpu);
5494 hw.uCpuIdPortabilityLevel = fSyntheticCpu ? 1 : 0;
5495 }
5496 pelmHwChild->getAttributeValue("CpuIdPortabilityLevel", hw.uCpuIdPortabilityLevel);
5497 pelmHwChild->getAttributeValue("CpuProfile", hw.strCpuProfile);
5498 }
5499 else if (pelmHwChild->nameEquals("Memory"))
5500 {
5501 pelmHwChild->getAttributeValue("RAMSize", hw.ulMemorySizeMB);
5502 pelmHwChild->getAttributeValue("PageFusion", hw.fPageFusionEnabled);
5503 }
5504 else if (pelmHwChild->nameEquals("HID"))
5505 {
5506 Utf8Str strHIDType;
5507 if (pelmHwChild->getAttributeValue("Keyboard", strHIDType))
5508 {
5509 if (strHIDType == "None")
5510 hw.keyboardHIDType = KeyboardHIDType_None;
5511 else if (strHIDType == "USBKeyboard")
5512 hw.keyboardHIDType = KeyboardHIDType_USBKeyboard;
5513 else if (strHIDType == "PS2Keyboard")
5514 hw.keyboardHIDType = KeyboardHIDType_PS2Keyboard;
5515 else if (strHIDType == "ComboKeyboard")
5516 hw.keyboardHIDType = KeyboardHIDType_ComboKeyboard;
5517 else
5518 throw ConfigFileError(this,
5519 pelmHwChild,
5520 N_("Invalid value '%s' in HID/Keyboard/@type"),
5521 strHIDType.c_str());
5522 }
5523 if (pelmHwChild->getAttributeValue("Pointing", strHIDType))
5524 {
5525 if (strHIDType == "None")
5526 hw.pointingHIDType = PointingHIDType_None;
5527 else if (strHIDType == "USBMouse")
5528 hw.pointingHIDType = PointingHIDType_USBMouse;
5529 else if (strHIDType == "USBTablet")
5530 hw.pointingHIDType = PointingHIDType_USBTablet;
5531 else if (strHIDType == "PS2Mouse")
5532 hw.pointingHIDType = PointingHIDType_PS2Mouse;
5533 else if (strHIDType == "ComboMouse")
5534 hw.pointingHIDType = PointingHIDType_ComboMouse;
5535 else if (strHIDType == "USBMultiTouch")
5536 hw.pointingHIDType = PointingHIDType_USBMultiTouch;
5537 else if (strHIDType == "USBMTScreenPlusPad")
5538 hw.pointingHIDType = PointingHIDType_USBMultiTouchScreenPlusPad;
5539 else
5540 throw ConfigFileError(this,
5541 pelmHwChild,
5542 N_("Invalid value '%s' in HID/Pointing/@type"),
5543 strHIDType.c_str());
5544 }
5545 }
5546 else if (pelmHwChild->nameEquals("Paravirt"))
5547 {
5548 Utf8Str strProvider;
5549 if (pelmHwChild->getAttributeValue("provider", strProvider))
5550 {
5551 if (strProvider == "None")
5552 hw.paravirtProvider = ParavirtProvider_None;
5553 else if (strProvider == "Default")
5554 hw.paravirtProvider = ParavirtProvider_Default;
5555 else if (strProvider == "Legacy")
5556 hw.paravirtProvider = ParavirtProvider_Legacy;
5557 else if (strProvider == "Minimal")
5558 hw.paravirtProvider = ParavirtProvider_Minimal;
5559 else if (strProvider == "HyperV")
5560 hw.paravirtProvider = ParavirtProvider_HyperV;
5561 else if (strProvider == "KVM")
5562 hw.paravirtProvider = ParavirtProvider_KVM;
5563 else
5564 throw ConfigFileError(this,
5565 pelmHwChild,
5566 N_("Invalid value '%s' in Paravirt/@provider attribute"),
5567 strProvider.c_str());
5568 }
5569
5570 pelmHwChild->getAttributeValue("debug", hw.strParavirtDebug);
5571 }
5572 else if (pelmHwChild->nameEquals("Boot"))
5573 {
5574 hw.mapBootOrder.clear();
5575
5576 xml::NodesLoop nl2(*pelmHwChild, "Order");
5577 const xml::ElementNode *pelmOrder;
5578 while ((pelmOrder = nl2.forAllNodes()))
5579 {
5580 uint32_t ulPos;
5581 Utf8Str strDevice;
5582 if (!pelmOrder->getAttributeValue("position", ulPos))
5583 throw ConfigFileError(this, pelmOrder, N_("Required Boot/Order/@position attribute is missing"));
5584
5585 if ( ulPos < 1
5586 || ulPos > SchemaDefs::MaxBootPosition
5587 )
5588 throw ConfigFileError(this,
5589 pelmOrder,
5590 N_("Invalid value '%RU32' in Boot/Order/@position: must be greater than 0 and less than %RU32"),
5591 ulPos,
5592 SchemaDefs::MaxBootPosition + 1);
5593 // XML is 1-based but internal data is 0-based
5594 --ulPos;
5595
5596 if (hw.mapBootOrder.find(ulPos) != hw.mapBootOrder.end())
5597 throw ConfigFileError(this, pelmOrder, N_("Invalid value '%RU32' in Boot/Order/@position: value is not unique"), ulPos);
5598
5599 if (!pelmOrder->getAttributeValue("device", strDevice))
5600 throw ConfigFileError(this, pelmOrder, N_("Required Boot/Order/@device attribute is missing"));
5601
5602 DeviceType_T type;
5603 if (strDevice == "None")
5604 type = DeviceType_Null;
5605 else if (strDevice == "Floppy")
5606 type = DeviceType_Floppy;
5607 else if (strDevice == "DVD")
5608 type = DeviceType_DVD;
5609 else if (strDevice == "HardDisk")
5610 type = DeviceType_HardDisk;
5611 else if (strDevice == "Network")
5612 type = DeviceType_Network;
5613 else
5614 throw ConfigFileError(this, pelmOrder, N_("Invalid value '%s' in Boot/Order/@device attribute"), strDevice.c_str());
5615 hw.mapBootOrder[ulPos] = type;
5616 }
5617 }
5618 else if (pelmHwChild->nameEquals("Display"))
5619 {
5620 Utf8Str strGraphicsControllerType;
5621 if (!pelmHwChild->getAttributeValue("controller", strGraphicsControllerType))
5622 hw.graphicsAdapter.graphicsControllerType = GraphicsControllerType_VBoxVGA;
5623 else
5624 {
5625 strGraphicsControllerType.toUpper();
5626 GraphicsControllerType_T type;
5627 if (strGraphicsControllerType == "VBOXVGA")
5628 type = GraphicsControllerType_VBoxVGA;
5629 else if (strGraphicsControllerType == "VMSVGA")
5630 type = GraphicsControllerType_VMSVGA;
5631 else if (strGraphicsControllerType == "VBOXSVGA")
5632 type = GraphicsControllerType_VBoxSVGA;
5633 else if (strGraphicsControllerType == "NONE")
5634 type = GraphicsControllerType_Null;
5635 else
5636 throw ConfigFileError(this, pelmHwChild, N_("Invalid value '%s' in Display/@controller attribute"), strGraphicsControllerType.c_str());
5637 hw.graphicsAdapter.graphicsControllerType = type;
5638 }
5639 pelmHwChild->getAttributeValue("VRAMSize", hw.graphicsAdapter.ulVRAMSizeMB);
5640 if (!pelmHwChild->getAttributeValue("monitorCount", hw.graphicsAdapter.cMonitors))
5641 pelmHwChild->getAttributeValue("MonitorCount", hw.graphicsAdapter.cMonitors); // pre-v1.5 variant
5642 if (!pelmHwChild->getAttributeValue("accelerate3D", hw.graphicsAdapter.fAccelerate3D))
5643 pelmHwChild->getAttributeValue("Accelerate3D", hw.graphicsAdapter.fAccelerate3D); // pre-v1.5 variant
5644 pelmHwChild->getAttributeValue("accelerate2DVideo", hw.graphicsAdapter.fAccelerate2DVideo);
5645 }
5646 else if (pelmHwChild->nameEquals("RemoteDisplay"))
5647 {
5648 pelmHwChild->getAttributeValue("enabled", hw.vrdeSettings.fEnabled);
5649
5650 Utf8Str str;
5651 if (pelmHwChild->getAttributeValue("port", str))
5652 hw.vrdeSettings.mapProperties["TCP/Ports"] = str;
5653 if (pelmHwChild->getAttributeValue("netAddress", str))
5654 hw.vrdeSettings.mapProperties["TCP/Address"] = str;
5655
5656 Utf8Str strAuthType;
5657 if (pelmHwChild->getAttributeValue("authType", strAuthType))
5658 {
5659 // settings before 1.3 used lower case so make sure this is case-insensitive
5660 strAuthType.toUpper();
5661 if (strAuthType == "NULL")
5662 hw.vrdeSettings.authType = AuthType_Null;
5663 else if (strAuthType == "GUEST")
5664 hw.vrdeSettings.authType = AuthType_Guest;
5665 else if (strAuthType == "EXTERNAL")
5666 hw.vrdeSettings.authType = AuthType_External;
5667 else
5668 throw ConfigFileError(this, pelmHwChild, N_("Invalid value '%s' in RemoteDisplay/@authType attribute"), strAuthType.c_str());
5669 }
5670
5671 pelmHwChild->getAttributeValue("authLibrary", hw.vrdeSettings.strAuthLibrary);
5672 pelmHwChild->getAttributeValue("authTimeout", hw.vrdeSettings.ulAuthTimeout);
5673 pelmHwChild->getAttributeValue("allowMultiConnection", hw.vrdeSettings.fAllowMultiConnection);
5674 pelmHwChild->getAttributeValue("reuseSingleConnection", hw.vrdeSettings.fReuseSingleConnection);
5675
5676 /* 3.2 and 4.0 betas, 4.0 has this information in VRDEProperties. */
5677 const xml::ElementNode *pelmVideoChannel;
5678 if ((pelmVideoChannel = pelmHwChild->findChildElement("VideoChannel")))
5679 {
5680 bool fVideoChannel = false;
5681 pelmVideoChannel->getAttributeValue("enabled", fVideoChannel);
5682 hw.vrdeSettings.mapProperties["VideoChannel/Enabled"] = fVideoChannel? "true": "false";
5683
5684 uint32_t ulVideoChannelQuality = 75;
5685 pelmVideoChannel->getAttributeValue("quality", ulVideoChannelQuality);
5686 ulVideoChannelQuality = RT_CLAMP(ulVideoChannelQuality, 10, 100);
5687 char *pszBuffer = NULL;
5688 if (RTStrAPrintf(&pszBuffer, "%d", ulVideoChannelQuality) >= 0)
5689 {
5690 hw.vrdeSettings.mapProperties["VideoChannel/Quality"] = pszBuffer;
5691 RTStrFree(pszBuffer);
5692 }
5693 else
5694 hw.vrdeSettings.mapProperties["VideoChannel/Quality"] = "75";
5695 }
5696 pelmHwChild->getAttributeValue("VRDEExtPack", hw.vrdeSettings.strVrdeExtPack);
5697
5698 const xml::ElementNode *pelmProperties = pelmHwChild->findChildElement("VRDEProperties");
5699 if (pelmProperties != NULL)
5700 {
5701 xml::NodesLoop nl(*pelmProperties);
5702 const xml::ElementNode *pelmProperty;
5703 while ((pelmProperty = nl.forAllNodes()))
5704 {
5705 if (pelmProperty->nameEquals("Property"))
5706 {
5707 /* <Property name="TCP/Ports" value="3000-3002"/> */
5708 Utf8Str strName, strValue;
5709 if ( pelmProperty->getAttributeValue("name", strName)
5710 && pelmProperty->getAttributeValue("value", strValue))
5711 hw.vrdeSettings.mapProperties[strName] = strValue;
5712 else
5713 throw ConfigFileError(this, pelmProperty, N_("Required VRDE Property/@name or @value attribute is missing"));
5714 }
5715 }
5716 }
5717 }
5718 /* Since v1.20 (VBox 7.1) we store BIOS / UEFI settings inside the "Firmware" element.
5719 * Older versions (< v1.20) stored those settings in a "BIOS" element (see down below) for that. See also down below. */
5720 else if ( pelmHwChild->nameEquals("BIOS")
5721 || pelmHwChild->nameEquals("Firmware"))
5722 {
5723 /* For settings < v1.20 we already has an element "Firmware", which only contained the firmware type. The rest lived in the "BIOS" element.
5724 * For settings >= v1.20 we moved the "BIOS" element attributes also to "Firmware". */
5725 if (pelmHwChild->nameEquals("Firmware"))
5726 {
5727 Utf8Str strFirmwareType;
5728 if (pelmHwChild->getAttributeValue("type", strFirmwareType))
5729 {
5730 if ( (strFirmwareType == "BIOS")
5731 || (strFirmwareType == "1") // some trunk builds used the number here
5732 )
5733 hw.firmwareSettings.firmwareType = FirmwareType_BIOS;
5734 else if ( (strFirmwareType == "EFI")
5735 || (strFirmwareType == "2") // some trunk builds used the number here
5736 )
5737 hw.firmwareSettings.firmwareType = FirmwareType_EFI;
5738 else if ( strFirmwareType == "EFI32")
5739 hw.firmwareSettings.firmwareType = FirmwareType_EFI32;
5740 else if ( strFirmwareType == "EFI64")
5741 hw.firmwareSettings.firmwareType = FirmwareType_EFI64;
5742 else if ( strFirmwareType == "EFIDUAL")
5743 hw.firmwareSettings.firmwareType = FirmwareType_EFIDUAL;
5744 else
5745 throw ConfigFileError(this,
5746 pelmHwChild,
5747 N_("Invalid value '%s' in Firmware/@type"),
5748 strFirmwareType.c_str());
5749 }
5750 }
5751
5752 /* Read the firmware settings either from the "Firmware" or "BIOS" elements, depending on the settings version. */
5753 if ( ( pelmHwChild->nameEquals("Firmware")
5754 && m->sv >= SettingsVersion_v1_20)
5755 || ( pelmHwChild->nameEquals("BIOS")
5756 && m->sv < SettingsVersion_v1_20)
5757 )
5758 {
5759 const xml::ElementNode *pelmFirmwareOrBIOSChild;
5760 if ((pelmFirmwareOrBIOSChild = pelmHwChild->findChildElement("ACPI")))
5761 pelmFirmwareOrBIOSChild->getAttributeValue("enabled", hw.firmwareSettings.fACPIEnabled);
5762 if ((pelmFirmwareOrBIOSChild = pelmHwChild->findChildElement("IOAPIC")))
5763 pelmFirmwareOrBIOSChild->getAttributeValue("enabled", hw.firmwareSettings.fIOAPICEnabled);
5764 if ((pelmFirmwareOrBIOSChild = pelmHwChild->findChildElement("APIC")))
5765 {
5766 Utf8Str strAPIC;
5767 if (pelmFirmwareOrBIOSChild->getAttributeValue("mode", strAPIC))
5768 {
5769 strAPIC.toUpper();
5770 if (strAPIC == "DISABLED")
5771 hw.firmwareSettings.apicMode = APICMode_Disabled;
5772 else if (strAPIC == "APIC")
5773 hw.firmwareSettings.apicMode = APICMode_APIC;
5774 else if (strAPIC == "X2APIC")
5775 hw.firmwareSettings.apicMode = APICMode_X2APIC;
5776 else
5777 throw ConfigFileError(this, pelmFirmwareOrBIOSChild, N_("Invalid value '%s' in APIC/@mode attribute"), strAPIC.c_str());
5778 }
5779 }
5780 if ((pelmFirmwareOrBIOSChild = pelmHwChild->findChildElement("Logo")))
5781 {
5782 pelmFirmwareOrBIOSChild->getAttributeValue("fadeIn", hw.firmwareSettings.fLogoFadeIn);
5783 pelmFirmwareOrBIOSChild->getAttributeValue("fadeOut", hw.firmwareSettings.fLogoFadeOut);
5784 pelmFirmwareOrBIOSChild->getAttributeValue("displayTime", hw.firmwareSettings.ulLogoDisplayTime);
5785 pelmFirmwareOrBIOSChild->getAttributeValue("imagePath", hw.firmwareSettings.strLogoImagePath);
5786 }
5787 if ((pelmFirmwareOrBIOSChild = pelmHwChild->findChildElement("BootMenu")))
5788 {
5789 Utf8Str strBootMenuMode;
5790 if (pelmFirmwareOrBIOSChild->getAttributeValue("mode", strBootMenuMode))
5791 {
5792 // settings before 1.3 used lower case so make sure this is case-insensitive
5793 strBootMenuMode.toUpper();
5794 if (strBootMenuMode == "DISABLED")
5795 hw.firmwareSettings.enmBootMenuMode = FirmwareBootMenuMode_Disabled;
5796 else if (strBootMenuMode == "MENUONLY")
5797 hw.firmwareSettings.enmBootMenuMode = FirmwareBootMenuMode_MenuOnly;
5798 else if (strBootMenuMode == "MESSAGEANDMENU")
5799 hw.firmwareSettings.enmBootMenuMode = FirmwareBootMenuMode_MessageAndMenu;
5800 else
5801 throw ConfigFileError(this, pelmFirmwareOrBIOSChild, N_("Invalid value '%s' in BootMenu/@mode attribute"), strBootMenuMode.c_str());
5802 }
5803 }
5804 if ((pelmFirmwareOrBIOSChild = pelmHwChild->findChildElement("PXEDebug")))
5805 pelmFirmwareOrBIOSChild->getAttributeValue("enabled", hw.firmwareSettings.fPXEDebugEnabled);
5806 if ((pelmFirmwareOrBIOSChild = pelmHwChild->findChildElement("TimeOffset")))
5807 pelmFirmwareOrBIOSChild->getAttributeValue("value", hw.firmwareSettings.llTimeOffset);
5808 if ((pelmFirmwareOrBIOSChild = pelmHwChild->findChildElement("NVRAM")))
5809 {
5810 pelmFirmwareOrBIOSChild->getAttributeValue("path", hw.nvramSettings.strNvramPath);
5811 if (m->sv >= SettingsVersion_v1_19)
5812 {
5813 pelmFirmwareOrBIOSChild->getAttributeValue("keyId", hw.nvramSettings.strKeyId);
5814 pelmFirmwareOrBIOSChild->getAttributeValue("keyStore", hw.nvramSettings.strKeyStore);
5815 }
5816 }
5817 if ((pelmFirmwareOrBIOSChild = pelmHwChild->findChildElement("SmbiosUuidLittleEndian")))
5818 pelmFirmwareOrBIOSChild->getAttributeValue("enabled", hw.firmwareSettings.fSmbiosUuidLittleEndian);
5819 else
5820 hw.firmwareSettings.fSmbiosUuidLittleEndian = false; /* Default for existing VMs. */
5821
5822 // legacy BIOS/IDEController (pre 1.7)
5823 if ( (m->sv < SettingsVersion_v1_7)
5824 && (pelmFirmwareOrBIOSChild = pelmHwChild->findChildElement("IDEController"))
5825 )
5826 {
5827 StorageController sctl;
5828 sctl.strName = "IDE Controller";
5829 sctl.storageBus = StorageBus_IDE;
5830
5831 Utf8Str strType;
5832 if (pelmFirmwareOrBIOSChild->getAttributeValue("type", strType))
5833 {
5834 if (strType == "PIIX3")
5835 sctl.controllerType = StorageControllerType_PIIX3;
5836 else if (strType == "PIIX4")
5837 sctl.controllerType = StorageControllerType_PIIX4;
5838 else if (strType == "ICH6")
5839 sctl.controllerType = StorageControllerType_ICH6;
5840 else
5841 throw ConfigFileError(this, pelmFirmwareOrBIOSChild, N_("Invalid value '%s' for IDEController/@type attribute"), strType.c_str());
5842 }
5843 sctl.ulPortCount = 2;
5844 hw.storage.llStorageControllers.push_back(sctl);
5845 }
5846 }
5847 }
5848 else if (pelmHwChild->nameEquals("TrustedPlatformModule"))
5849 {
5850 Utf8Str strTpmType;
5851 if (pelmHwChild->getAttributeValue("type", strTpmType))
5852 {
5853 if (strTpmType == "None")
5854 hw.tpmSettings.tpmType = TpmType_None;
5855 else if (strTpmType == "v1_2")
5856 hw.tpmSettings.tpmType = TpmType_v1_2;
5857 else if (strTpmType == "v2_0")
5858 hw.tpmSettings.tpmType = TpmType_v2_0;
5859 else if (strTpmType == "Host")
5860 hw.tpmSettings.tpmType = TpmType_Host;
5861 else if (strTpmType == "Swtpm")
5862 hw.tpmSettings.tpmType = TpmType_Swtpm;
5863 else
5864 throw ConfigFileError(this,
5865 pelmHwChild,
5866 N_("Invalid value '%s' in TrustedPlatformModule/@type"),
5867 strTpmType.c_str());
5868 }
5869
5870 pelmHwChild->getAttributeValue("location", hw.tpmSettings.strLocation);
5871 }
5872 else if ( (m->sv <= SettingsVersion_v1_14)
5873 && pelmHwChild->nameEquals("USBController"))
5874 {
5875 bool fEnabled = false;
5876
5877 pelmHwChild->getAttributeValue("enabled", fEnabled);
5878 if (fEnabled)
5879 {
5880 /* Create OHCI controller with default name. */
5881 USBController ctrl;
5882
5883 ctrl.strName = "OHCI";
5884 ctrl.enmType = USBControllerType_OHCI;
5885 hw.usbSettings.llUSBControllers.push_back(ctrl);
5886 }
5887
5888 pelmHwChild->getAttributeValue("enabledEhci", fEnabled);
5889 if (fEnabled)
5890 {
5891 /* Create OHCI controller with default name. */
5892 USBController ctrl;
5893
5894 ctrl.strName = "EHCI";
5895 ctrl.enmType = USBControllerType_EHCI;
5896 hw.usbSettings.llUSBControllers.push_back(ctrl);
5897 }
5898
5899 readUSBDeviceFilters(*pelmHwChild,
5900 hw.usbSettings.llDeviceFilters);
5901 }
5902 else if (pelmHwChild->nameEquals("USB"))
5903 {
5904 const xml::ElementNode *pelmUSBChild;
5905
5906 if ((pelmUSBChild = pelmHwChild->findChildElement("Controllers")))
5907 {
5908 xml::NodesLoop nl2(*pelmUSBChild, "Controller");
5909 const xml::ElementNode *pelmCtrl;
5910
5911 while ((pelmCtrl = nl2.forAllNodes()))
5912 {
5913 USBController ctrl;
5914 com::Utf8Str strCtrlType;
5915
5916 pelmCtrl->getAttributeValue("name", ctrl.strName);
5917
5918 if (pelmCtrl->getAttributeValue("type", strCtrlType))
5919 {
5920 if (strCtrlType == "OHCI")
5921 ctrl.enmType = USBControllerType_OHCI;
5922 else if (strCtrlType == "EHCI")
5923 ctrl.enmType = USBControllerType_EHCI;
5924 else if (strCtrlType == "XHCI")
5925 ctrl.enmType = USBControllerType_XHCI;
5926 else
5927 throw ConfigFileError(this, pelmCtrl, N_("Invalid value '%s' for Controller/@type attribute"), strCtrlType.c_str());
5928 }
5929
5930 hw.usbSettings.llUSBControllers.push_back(ctrl);
5931 }
5932 }
5933
5934 if ((pelmUSBChild = pelmHwChild->findChildElement("DeviceFilters")))
5935 readUSBDeviceFilters(*pelmUSBChild, hw.usbSettings.llDeviceFilters);
5936 }
5937 else if ( m->sv < SettingsVersion_v1_7
5938 && pelmHwChild->nameEquals("SATAController"))
5939 {
5940 bool f;
5941 if ( pelmHwChild->getAttributeValue("enabled", f)
5942 && f)
5943 {
5944 StorageController sctl;
5945 sctl.strName = "SATA Controller";
5946 sctl.storageBus = StorageBus_SATA;
5947 sctl.controllerType = StorageControllerType_IntelAhci;
5948
5949 readStorageControllerAttributes(*pelmHwChild, sctl);
5950
5951 hw.storage.llStorageControllers.push_back(sctl);
5952 }
5953 }
5954 else if (pelmHwChild->nameEquals("Network"))
5955 readNetworkAdapters(*pelmHwChild, hw.llNetworkAdapters);
5956 else if ( pelmHwChild->nameEquals("UART")
5957 || pelmHwChild->nameEquals("Uart") // used before 1.3
5958 )
5959 readSerialPorts(*pelmHwChild, hw.llSerialPorts);
5960 else if ( pelmHwChild->nameEquals("LPT")
5961 || pelmHwChild->nameEquals("Lpt") // used before 1.3
5962 )
5963 readParallelPorts(*pelmHwChild, hw.llParallelPorts);
5964 else if (pelmHwChild->nameEquals("AudioAdapter"))
5965 readAudioAdapter(*pelmHwChild, hw.audioAdapter);
5966 else if (pelmHwChild->nameEquals("SharedFolders"))
5967 {
5968 xml::NodesLoop nl2(*pelmHwChild, "SharedFolder");
5969 const xml::ElementNode *pelmFolder;
5970 while ((pelmFolder = nl2.forAllNodes()))
5971 {
5972 SharedFolder sf;
5973 pelmFolder->getAttributeValue("name", sf.strName);
5974 pelmFolder->getAttributeValue("hostPath", sf.strHostPath);
5975 pelmFolder->getAttributeValue("writable", sf.fWritable);
5976 pelmFolder->getAttributeValue("autoMount", sf.fAutoMount);
5977 pelmFolder->getAttributeValue("autoMountPoint", sf.strAutoMountPoint);
5978 hw.llSharedFolders.push_back(sf);
5979 }
5980 }
5981 else if (pelmHwChild->nameEquals("Clipboard"))
5982 {
5983 Utf8Str strTemp;
5984 if (pelmHwChild->getAttributeValue("mode", strTemp))
5985 {
5986 if (strTemp == "Disabled")
5987 hw.clipboardMode = ClipboardMode_Disabled;
5988 else if (strTemp == "HostToGuest")
5989 hw.clipboardMode = ClipboardMode_HostToGuest;
5990 else if (strTemp == "GuestToHost")
5991 hw.clipboardMode = ClipboardMode_GuestToHost;
5992 else if (strTemp == "Bidirectional")
5993 hw.clipboardMode = ClipboardMode_Bidirectional;
5994 else
5995 throw ConfigFileError(this, pelmHwChild, N_("Invalid value '%s' in Clipboard/@mode attribute"), strTemp.c_str());
5996 }
5997
5998 pelmHwChild->getAttributeValue("fileTransfersEnabled", hw.fClipboardFileTransfersEnabled);
5999 }
6000 else if (pelmHwChild->nameEquals("DragAndDrop"))
6001 {
6002 Utf8Str strTemp;
6003 if (pelmHwChild->getAttributeValue("mode", strTemp))
6004 {
6005 if (strTemp == "Disabled")
6006 hw.dndMode = DnDMode_Disabled;
6007 else if (strTemp == "HostToGuest")
6008 hw.dndMode = DnDMode_HostToGuest;
6009 else if (strTemp == "GuestToHost")
6010 hw.dndMode = DnDMode_GuestToHost;
6011 else if (strTemp == "Bidirectional")
6012 hw.dndMode = DnDMode_Bidirectional;
6013 else
6014 throw ConfigFileError(this, pelmHwChild, N_("Invalid value '%s' in DragAndDrop/@mode attribute"), strTemp.c_str());
6015 }
6016 }
6017 else if (pelmHwChild->nameEquals("Guest"))
6018 {
6019 if (!pelmHwChild->getAttributeValue("memoryBalloonSize", hw.ulMemoryBalloonSize))
6020 pelmHwChild->getAttributeValue("MemoryBalloonSize", hw.ulMemoryBalloonSize); // used before 1.3
6021 }
6022 else if (pelmHwChild->nameEquals("GuestProperties"))
6023 readGuestProperties(*pelmHwChild, hw);
6024 else if (pelmHwChild->nameEquals("IO"))
6025 {
6026 const xml::ElementNode *pelmBwGroups;
6027 const xml::ElementNode *pelmIOChild;
6028
6029 if ((pelmIOChild = pelmHwChild->findChildElement("IoCache")))
6030 {
6031 pelmIOChild->getAttributeValue("enabled", hw.ioSettings.fIOCacheEnabled);
6032 pelmIOChild->getAttributeValue("size", hw.ioSettings.ulIOCacheSize);
6033 }
6034
6035 if ((pelmBwGroups = pelmHwChild->findChildElement("BandwidthGroups")))
6036 {
6037 xml::NodesLoop nl2(*pelmBwGroups, "BandwidthGroup");
6038 const xml::ElementNode *pelmBandwidthGroup;
6039 while ((pelmBandwidthGroup = nl2.forAllNodes()))
6040 {
6041 BandwidthGroup gr;
6042 Utf8Str strTemp;
6043
6044 pelmBandwidthGroup->getAttributeValue("name", gr.strName);
6045
6046 if (pelmBandwidthGroup->getAttributeValue("type", strTemp))
6047 {
6048 if (strTemp == "Disk")
6049 gr.enmType = BandwidthGroupType_Disk;
6050 else if (strTemp == "Network")
6051 gr.enmType = BandwidthGroupType_Network;
6052 else
6053 throw ConfigFileError(this, pelmBandwidthGroup, N_("Invalid value '%s' in BandwidthGroup/@type attribute"), strTemp.c_str());
6054 }
6055 else
6056 throw ConfigFileError(this, pelmBandwidthGroup, N_("Missing BandwidthGroup/@type attribute"));
6057
6058 if (!pelmBandwidthGroup->getAttributeValue("maxBytesPerSec", gr.cMaxBytesPerSec))
6059 {
6060 pelmBandwidthGroup->getAttributeValue("maxMbPerSec", gr.cMaxBytesPerSec);
6061 gr.cMaxBytesPerSec *= _1M;
6062 }
6063 hw.ioSettings.llBandwidthGroups.push_back(gr);
6064 }
6065 }
6066 }
6067 else if (pelmHwChild->nameEquals("HostPci"))
6068 {
6069 const xml::ElementNode *pelmDevices;
6070
6071 if ((pelmDevices = pelmHwChild->findChildElement("Devices")))
6072 {
6073 xml::NodesLoop nl2(*pelmDevices, "Device");
6074 const xml::ElementNode *pelmDevice;
6075 while ((pelmDevice = nl2.forAllNodes()))
6076 {
6077 HostPCIDeviceAttachment hpda;
6078
6079 if (!pelmDevice->getAttributeValue("host", hpda.uHostAddress))
6080 throw ConfigFileError(this, pelmDevice, N_("Missing Device/@host attribute"));
6081
6082 if (!pelmDevice->getAttributeValue("guest", hpda.uGuestAddress))
6083 throw ConfigFileError(this, pelmDevice, N_("Missing Device/@guest attribute"));
6084
6085 /* name is optional */
6086 pelmDevice->getAttributeValue("name", hpda.strDeviceName);
6087
6088 hw.pciAttachments.push_back(hpda);
6089 }
6090 }
6091 }
6092 else if (pelmHwChild->nameEquals("EmulatedUSB"))
6093 {
6094 const xml::ElementNode *pelmCardReader;
6095
6096 if ((pelmCardReader = pelmHwChild->findChildElement("CardReader")))
6097 {
6098 pelmCardReader->getAttributeValue("enabled", hw.fEmulatedUSBCardReader);
6099 }
6100 }
6101 else if (pelmHwChild->nameEquals("Frontend"))
6102 {
6103 const xml::ElementNode *pelmDefault;
6104
6105 if ((pelmDefault = pelmHwChild->findChildElement("Default")))
6106 {
6107 pelmDefault->getAttributeValue("type", hw.strDefaultFrontend);
6108 }
6109 }
6110 else if (pelmHwChild->nameEquals("StorageControllers"))
6111 readStorageControllers(*pelmHwChild, hw.storage);
6112 }
6113
6114 /* We read the platform settings here, which were part of the "Hardware" node for settings < 1.2.0.
6115 * For newer settings (>= v1.20) we read the platform settings outside readHardware(). */
6116 if (m->sv < SettingsVersion_v1_20)
6117 readPlatform(elmHardware, hw.platformSettings);
6118
6119 if (hw.ulMemorySizeMB == (uint32_t)-1)
6120 throw ConfigFileError(this, &elmHardware, N_("Required Memory/@RAMSize element/attribute is missing"));
6121}
6122
6123/**
6124 * This gets called instead of readStorageControllers() for legacy pre-1.7 settings
6125 * files which have a \<HardDiskAttachments\> node and storage controller settings
6126 * hidden in the \<Hardware\> settings. We set the StorageControllers fields just the
6127 * same, just from different sources.
6128 * @param elmHardDiskAttachments \<HardDiskAttachments\> XML node.
6129 * @param strg
6130 */
6131void MachineConfigFile::readHardDiskAttachments_pre1_7(const xml::ElementNode &elmHardDiskAttachments,
6132 Storage &strg)
6133{
6134 StorageController *pIDEController = NULL;
6135 StorageController *pSATAController = NULL;
6136
6137 for (StorageControllersList::iterator it = strg.llStorageControllers.begin();
6138 it != strg.llStorageControllers.end();
6139 ++it)
6140 {
6141 StorageController &s = *it;
6142 if (s.storageBus == StorageBus_IDE)
6143 pIDEController = &s;
6144 else if (s.storageBus == StorageBus_SATA)
6145 pSATAController = &s;
6146 }
6147
6148 xml::NodesLoop nl1(elmHardDiskAttachments, "HardDiskAttachment");
6149 const xml::ElementNode *pelmAttachment;
6150 while ((pelmAttachment = nl1.forAllNodes()))
6151 {
6152 AttachedDevice att;
6153 Utf8Str strUUID, strBus;
6154
6155 if (!pelmAttachment->getAttributeValue("hardDisk", strUUID))
6156 throw ConfigFileError(this, pelmAttachment, N_("Required HardDiskAttachment/@hardDisk attribute is missing"));
6157 parseUUID(att.uuid, strUUID, pelmAttachment);
6158
6159 if (!pelmAttachment->getAttributeValue("bus", strBus))
6160 throw ConfigFileError(this, pelmAttachment, N_("Required HardDiskAttachment/@bus attribute is missing"));
6161 // pre-1.7 'channel' is now port
6162 if (!pelmAttachment->getAttributeValue("channel", att.lPort))
6163 throw ConfigFileError(this, pelmAttachment, N_("Required HardDiskAttachment/@channel attribute is missing"));
6164 // pre-1.7 'device' is still device
6165 if (!pelmAttachment->getAttributeValue("device", att.lDevice))
6166 throw ConfigFileError(this, pelmAttachment, N_("Required HardDiskAttachment/@device attribute is missing"));
6167
6168 att.deviceType = DeviceType_HardDisk;
6169
6170 if (strBus == "IDE")
6171 {
6172 if (!pIDEController)
6173 throw ConfigFileError(this, pelmAttachment, N_("HardDiskAttachment/@bus is 'IDE' but cannot find IDE controller"));
6174 pIDEController->llAttachedDevices.push_back(att);
6175 }
6176 else if (strBus == "SATA")
6177 {
6178 if (!pSATAController)
6179 throw ConfigFileError(this, pelmAttachment, N_("HardDiskAttachment/@bus is 'SATA' but cannot find SATA controller"));
6180 pSATAController->llAttachedDevices.push_back(att);
6181 }
6182 else
6183 throw ConfigFileError(this, pelmAttachment, N_("HardDiskAttachment/@bus attribute has illegal value '%s'"), strBus.c_str());
6184 }
6185}
6186
6187/**
6188 * Reads in a \<StorageControllers\> block and stores it in the given Storage structure.
6189 * Used both directly from readMachine and from readSnapshot, since snapshots
6190 * have their own storage controllers sections.
6191 *
6192 * This is only called for settings version 1.7 and above; see readHardDiskAttachments_pre1_7()
6193 * for earlier versions.
6194 *
6195 * @param elmStorageControllers
6196 * @param strg
6197 */
6198void MachineConfigFile::readStorageControllers(const xml::ElementNode &elmStorageControllers,
6199 Storage &strg)
6200{
6201 xml::NodesLoop nlStorageControllers(elmStorageControllers, "StorageController");
6202 const xml::ElementNode *pelmController;
6203 while ((pelmController = nlStorageControllers.forAllNodes()))
6204 {
6205 StorageController sctl;
6206
6207 if (!pelmController->getAttributeValue("name", sctl.strName))
6208 throw ConfigFileError(this, pelmController, N_("Required StorageController/@name attribute is missing"));
6209 // canonicalize storage controller names for configs in the switchover
6210 // period.
6211 if (m->sv < SettingsVersion_v1_9)
6212 {
6213 if (sctl.strName == "IDE")
6214 sctl.strName = "IDE Controller";
6215 else if (sctl.strName == "SATA")
6216 sctl.strName = "SATA Controller";
6217 else if (sctl.strName == "SCSI")
6218 sctl.strName = "SCSI Controller";
6219 }
6220
6221 pelmController->getAttributeValue("Instance", sctl.ulInstance);
6222 // default from constructor is 0
6223
6224 pelmController->getAttributeValue("Bootable", sctl.fBootable);
6225 // default from constructor is true which is true
6226 // for settings below version 1.11 because they allowed only
6227 // one controller per type.
6228
6229 Utf8Str strType;
6230 if (!pelmController->getAttributeValue("type", strType))
6231 throw ConfigFileError(this, pelmController, N_("Required StorageController/@type attribute is missing"));
6232
6233 if (strType == "AHCI")
6234 {
6235 sctl.storageBus = StorageBus_SATA;
6236 sctl.controllerType = StorageControllerType_IntelAhci;
6237 }
6238 else if (strType == "LsiLogic")
6239 {
6240 sctl.storageBus = StorageBus_SCSI;
6241 sctl.controllerType = StorageControllerType_LsiLogic;
6242 }
6243 else if (strType == "BusLogic")
6244 {
6245 sctl.storageBus = StorageBus_SCSI;
6246 sctl.controllerType = StorageControllerType_BusLogic;
6247 }
6248 else if (strType == "PIIX3")
6249 {
6250 sctl.storageBus = StorageBus_IDE;
6251 sctl.controllerType = StorageControllerType_PIIX3;
6252 }
6253 else if (strType == "PIIX4")
6254 {
6255 sctl.storageBus = StorageBus_IDE;
6256 sctl.controllerType = StorageControllerType_PIIX4;
6257 }
6258 else if (strType == "ICH6")
6259 {
6260 sctl.storageBus = StorageBus_IDE;
6261 sctl.controllerType = StorageControllerType_ICH6;
6262 }
6263 else if ( (m->sv >= SettingsVersion_v1_9)
6264 && (strType == "I82078")
6265 )
6266 {
6267 sctl.storageBus = StorageBus_Floppy;
6268 sctl.controllerType = StorageControllerType_I82078;
6269 }
6270 else if (strType == "LsiLogicSas")
6271 {
6272 sctl.storageBus = StorageBus_SAS;
6273 sctl.controllerType = StorageControllerType_LsiLogicSas;
6274 }
6275 else if (strType == "USB")
6276 {
6277 sctl.storageBus = StorageBus_USB;
6278 sctl.controllerType = StorageControllerType_USB;
6279 }
6280 else if (strType == "NVMe")
6281 {
6282 sctl.storageBus = StorageBus_PCIe;
6283 sctl.controllerType = StorageControllerType_NVMe;
6284 }
6285 else if (strType == "VirtioSCSI")
6286 {
6287 sctl.storageBus = StorageBus_VirtioSCSI;
6288 sctl.controllerType = StorageControllerType_VirtioSCSI;
6289 }
6290 else
6291 throw ConfigFileError(this, pelmController, N_("Invalid value '%s' for StorageController/@type attribute"), strType.c_str());
6292
6293 readStorageControllerAttributes(*pelmController, sctl);
6294
6295 xml::NodesLoop nlAttached(*pelmController, "AttachedDevice");
6296 const xml::ElementNode *pelmAttached;
6297 while ((pelmAttached = nlAttached.forAllNodes()))
6298 {
6299 AttachedDevice att;
6300 Utf8Str strTemp;
6301 pelmAttached->getAttributeValue("type", strTemp);
6302
6303 att.fDiscard = false;
6304 att.fNonRotational = false;
6305 att.fHotPluggable = false;
6306 att.fPassThrough = false;
6307
6308 if (strTemp == "HardDisk")
6309 {
6310 att.deviceType = DeviceType_HardDisk;
6311 pelmAttached->getAttributeValue("nonrotational", att.fNonRotational);
6312 pelmAttached->getAttributeValue("discard", att.fDiscard);
6313 }
6314 else if (m->sv >= SettingsVersion_v1_9)
6315 {
6316 // starting with 1.9 we list DVD and floppy drive info + attachments under <StorageControllers>
6317 if (strTemp == "DVD")
6318 {
6319 att.deviceType = DeviceType_DVD;
6320 pelmAttached->getAttributeValue("passthrough", att.fPassThrough);
6321 pelmAttached->getAttributeValue("tempeject", att.fTempEject);
6322 }
6323 else if (strTemp == "Floppy")
6324 att.deviceType = DeviceType_Floppy;
6325 }
6326
6327 if (att.deviceType != DeviceType_Null)
6328 {
6329 const xml::ElementNode *pelmImage;
6330 // all types can have images attached, but for HardDisk it's required
6331 if (!(pelmImage = pelmAttached->findChildElement("Image")))
6332 {
6333 if (att.deviceType == DeviceType_HardDisk)
6334 throw ConfigFileError(this, pelmImage, N_("Required AttachedDevice/Image element is missing"));
6335 else
6336 {
6337 // DVDs and floppies can also have <HostDrive> instead of <Image>
6338 const xml::ElementNode *pelmHostDrive;
6339 if ((pelmHostDrive = pelmAttached->findChildElement("HostDrive")))
6340 if (!pelmHostDrive->getAttributeValue("src", att.strHostDriveSrc))
6341 throw ConfigFileError(this, pelmHostDrive, N_("Required AttachedDevice/HostDrive/@src attribute is missing"));
6342 }
6343 }
6344 else
6345 {
6346 if (!pelmImage->getAttributeValue("uuid", strTemp))
6347 throw ConfigFileError(this, pelmImage, N_("Required AttachedDevice/Image/@uuid attribute is missing"));
6348 parseUUID(att.uuid, strTemp, pelmImage);
6349 }
6350
6351 if (!pelmAttached->getAttributeValue("port", att.lPort))
6352 throw ConfigFileError(this, pelmImage, N_("Required AttachedDevice/@port attribute is missing"));
6353 if (!pelmAttached->getAttributeValue("device", att.lDevice))
6354 throw ConfigFileError(this, pelmImage, N_("Required AttachedDevice/@device attribute is missing"));
6355
6356 /* AHCI controller ports are hotpluggable by default, keep compatibility with existing settings. */
6357 if (m->sv >= SettingsVersion_v1_15)
6358 pelmAttached->getAttributeValue("hotpluggable", att.fHotPluggable);
6359 else if (sctl.controllerType == StorageControllerType_IntelAhci)
6360 att.fHotPluggable = true;
6361
6362 pelmAttached->getAttributeValue("bandwidthGroup", att.strBwGroup);
6363 sctl.llAttachedDevices.push_back(att);
6364 }
6365 }
6366
6367 strg.llStorageControllers.push_back(sctl);
6368 }
6369}
6370
6371/**
6372 * This gets called for legacy pre-1.9 settings files after having parsed the
6373 * \<Hardware\> and \<StorageControllers\> sections to parse \<Hardware\> once more
6374 * for the \<DVDDrive\> and \<FloppyDrive\> sections.
6375 *
6376 * Before settings version 1.9, DVD and floppy drives were specified separately
6377 * under \<Hardware\>; we then need this extra loop to make sure the storage
6378 * controller structs are already set up so we can add stuff to them.
6379 *
6380 * @param elmHardware
6381 * @param strg
6382 */
6383void MachineConfigFile::readDVDAndFloppies_pre1_9(const xml::ElementNode &elmHardware,
6384 Storage &strg)
6385{
6386 xml::NodesLoop nl1(elmHardware);
6387 const xml::ElementNode *pelmHwChild;
6388 while ((pelmHwChild = nl1.forAllNodes()))
6389 {
6390 if (pelmHwChild->nameEquals("DVDDrive"))
6391 {
6392 // create a DVD "attached device" and attach it to the existing IDE controller
6393 AttachedDevice att;
6394 att.deviceType = DeviceType_DVD;
6395 // legacy DVD drive is always secondary master (port 1, device 0)
6396 att.lPort = 1;
6397 att.lDevice = 0;
6398 pelmHwChild->getAttributeValue("passthrough", att.fPassThrough);
6399 pelmHwChild->getAttributeValue("tempeject", att.fTempEject);
6400
6401 const xml::ElementNode *pDriveChild;
6402 Utf8Str strTmp;
6403 if ( (pDriveChild = pelmHwChild->findChildElement("Image")) != NULL
6404 && pDriveChild->getAttributeValue("uuid", strTmp))
6405 parseUUID(att.uuid, strTmp, pDriveChild);
6406 else if ((pDriveChild = pelmHwChild->findChildElement("HostDrive")))
6407 pDriveChild->getAttributeValue("src", att.strHostDriveSrc);
6408
6409 // find the IDE controller and attach the DVD drive
6410 bool fFound = false;
6411 for (StorageControllersList::iterator it = strg.llStorageControllers.begin();
6412 it != strg.llStorageControllers.end();
6413 ++it)
6414 {
6415 StorageController &sctl = *it;
6416 if (sctl.storageBus == StorageBus_IDE)
6417 {
6418 sctl.llAttachedDevices.push_back(att);
6419 fFound = true;
6420 break;
6421 }
6422 }
6423
6424 if (!fFound)
6425 throw ConfigFileError(this, pelmHwChild, N_("Internal error: found DVD drive but IDE controller does not exist"));
6426 // shouldn't happen because pre-1.9 settings files always had at least one IDE controller in the settings
6427 // which should have gotten parsed in <StorageControllers> before this got called
6428 }
6429 else if (pelmHwChild->nameEquals("FloppyDrive"))
6430 {
6431 bool fEnabled;
6432 if ( pelmHwChild->getAttributeValue("enabled", fEnabled)
6433 && fEnabled)
6434 {
6435 // create a new floppy controller and attach a floppy "attached device"
6436 StorageController sctl;
6437 sctl.strName = "Floppy Controller";
6438 sctl.storageBus = StorageBus_Floppy;
6439 sctl.controllerType = StorageControllerType_I82078;
6440 sctl.ulPortCount = 1;
6441
6442 AttachedDevice att;
6443 att.deviceType = DeviceType_Floppy;
6444 att.lPort = 0;
6445 att.lDevice = 0;
6446
6447 const xml::ElementNode *pDriveChild;
6448 Utf8Str strTmp;
6449 if ( (pDriveChild = pelmHwChild->findChildElement("Image"))
6450 && pDriveChild->getAttributeValue("uuid", strTmp) )
6451 parseUUID(att.uuid, strTmp, pDriveChild);
6452 else if ((pDriveChild = pelmHwChild->findChildElement("HostDrive")))
6453 pDriveChild->getAttributeValue("src", att.strHostDriveSrc);
6454
6455 // store attachment with controller
6456 sctl.llAttachedDevices.push_back(att);
6457 // store controller with storage
6458 strg.llStorageControllers.push_back(sctl);
6459 }
6460 }
6461 }
6462}
6463
6464/**
6465 * Called for reading the \<Teleporter\> element under \<Machine\>.
6466 */
6467void MachineConfigFile::readTeleporter(const xml::ElementNode &elmTeleporter,
6468 MachineUserData &userData)
6469{
6470 elmTeleporter.getAttributeValue("enabled", userData.fTeleporterEnabled);
6471 elmTeleporter.getAttributeValue("port", userData.uTeleporterPort);
6472 elmTeleporter.getAttributeValue("address", userData.strTeleporterAddress);
6473 elmTeleporter.getAttributeValue("password", userData.strTeleporterPassword);
6474
6475 if ( userData.strTeleporterPassword.isNotEmpty()
6476 && !VBoxIsPasswordHashed(&userData.strTeleporterPassword))
6477 VBoxHashPassword(&userData.strTeleporterPassword);
6478}
6479
6480/**
6481 * Called for reading the \<Debugging\> element under \<Machine\> or \<Snapshot\>.
6482 */
6483void MachineConfigFile::readDebugging(const xml::ElementNode &elmDebugging, Debugging &dbg)
6484{
6485 if (m->sv < SettingsVersion_v1_13)
6486 return;
6487
6488 const xml::ElementNode *pelmTracing = elmDebugging.findChildElement("Tracing");
6489 if (pelmTracing)
6490 {
6491 pelmTracing->getAttributeValue("enabled", dbg.fTracingEnabled);
6492 pelmTracing->getAttributeValue("allowTracingToAccessVM", dbg.fAllowTracingToAccessVM);
6493 pelmTracing->getAttributeValue("config", dbg.strTracingConfig);
6494 }
6495
6496 const xml::ElementNode *pelmGuestDebug = elmDebugging.findChildElement("GuestDebug");
6497 if (pelmGuestDebug)
6498 {
6499 Utf8Str strTmp;
6500 pelmGuestDebug->getAttributeValue("provider", strTmp);
6501 if (strTmp == "None")
6502 dbg.enmDbgProvider = GuestDebugProvider_None;
6503 else if (strTmp == "GDB")
6504 dbg.enmDbgProvider = GuestDebugProvider_GDB;
6505 else if (strTmp == "KD")
6506 dbg.enmDbgProvider = GuestDebugProvider_KD;
6507 else
6508 throw ConfigFileError(this, pelmGuestDebug, N_("Invalid value '%s' for GuestDebug/@provider attribute"), strTmp.c_str());
6509
6510 pelmGuestDebug->getAttributeValue("io", strTmp);
6511 if (strTmp == "None")
6512 dbg.enmIoProvider = GuestDebugIoProvider_None;
6513 else if (strTmp == "TCP")
6514 dbg.enmIoProvider = GuestDebugIoProvider_TCP;
6515 else if (strTmp == "UDP")
6516 dbg.enmIoProvider = GuestDebugIoProvider_UDP;
6517 else if (strTmp == "IPC")
6518 dbg.enmIoProvider = GuestDebugIoProvider_IPC;
6519 else
6520 throw ConfigFileError(this, pelmGuestDebug, N_("Invalid value '%s' for GuestDebug/@io attribute"), strTmp.c_str());
6521
6522 pelmGuestDebug->getAttributeValue("address", dbg.strAddress);
6523 pelmGuestDebug->getAttributeValue("port", dbg.ulPort);
6524 }
6525}
6526
6527/**
6528 * Called for reading the \<Autostart\> element under \<Machine\> or \<Snapshot\>.
6529 */
6530void MachineConfigFile::readAutostart(const xml::ElementNode &elmAutostart, Autostart &autostrt)
6531{
6532 Utf8Str strAutostop;
6533
6534 if (m->sv < SettingsVersion_v1_13)
6535 return;
6536
6537 elmAutostart.getAttributeValue("enabled", autostrt.fAutostartEnabled);
6538 elmAutostart.getAttributeValue("delay", autostrt.uAutostartDelay);
6539 elmAutostart.getAttributeValue("autostop", strAutostop);
6540 if (strAutostop == "Disabled")
6541 autostrt.enmAutostopType = AutostopType_Disabled;
6542 else if (strAutostop == "SaveState")
6543 autostrt.enmAutostopType = AutostopType_SaveState;
6544 else if (strAutostop == "PowerOff")
6545 autostrt.enmAutostopType = AutostopType_PowerOff;
6546 else if (strAutostop == "AcpiShutdown")
6547 autostrt.enmAutostopType = AutostopType_AcpiShutdown;
6548 else
6549 throw ConfigFileError(this, &elmAutostart, N_("Invalid value '%s' for Autostart/@autostop attribute"), strAutostop.c_str());
6550}
6551
6552/**
6553 * Called for reading the \<VideoCapture\> element under \<Machine|Hardware\>,
6554 * or \<Recording\> under \<Machine\>,
6555 */
6556void MachineConfigFile::readRecordingSettings(const xml::ElementNode &elmRecording, uint32_t cMonitors, RecordingSettings &recording)
6557{
6558 if (cMonitors > 64)
6559 throw ConfigFileError(this, &elmRecording, N_("Invalid monitor count given"));
6560
6561 elmRecording.getAttributeValue("enabled", recording.common.fEnabled);
6562
6563 /* Note: Since settings 1.19 the recording settings have a dedicated XML branch "Recording" outside of "Hardware". */
6564 if (m->sv >= SettingsVersion_v1_19 /* VBox >= 7.0 */)
6565 {
6566 uint32_t cScreens = 0;
6567 elmRecording.getAttributeValue("screens", cScreens);
6568
6569 xml::ElementNodesList plstScreens;
6570 elmRecording.getChildElements(plstScreens, "Screen");
6571
6572 /* Sanity checks. */
6573 if (cScreens != plstScreens.size())
6574 throw ConfigFileError(this, &elmRecording, N_("Recording/@screens attribute does not match stored screen objects"));
6575 if (cScreens > 64)
6576 throw ConfigFileError(this, &elmRecording, N_("Recording/@screens attribute is invalid"));
6577
6578 for (xml::ElementNodesList::iterator itScreen = plstScreens.begin();
6579 itScreen != plstScreens.end();
6580 ++itScreen)
6581 {
6582 /* The screen's stored ID is the monitor ID and also the key for the map. */
6583 uint32_t idxScreen;
6584 (*itScreen)->getAttributeValue("id", idxScreen);
6585
6586 RecordingScreenSettings &screenSettings = recording.mapScreens[idxScreen];
6587
6588 (*itScreen)->getAttributeValue("enabled", screenSettings.fEnabled);
6589 Utf8Str strTemp;
6590 (*itScreen)->getAttributeValue("featuresEnabled", strTemp);
6591 RecordingScreenSettings::featuresFromString(strTemp, screenSettings.featureMap);
6592 (*itScreen)->getAttributeValue("maxTimeS", screenSettings.ulMaxTimeS);
6593 (*itScreen)->getAttributeValue("options", screenSettings.strOptions);
6594 (*itScreen)->getAttributeValue("dest", (uint32_t &)screenSettings.enmDest);
6595 if (screenSettings.enmDest == RecordingDestination_File)
6596 (*itScreen)->getAttributeValuePath("file", screenSettings.File.strName);
6597 else
6598 throw ConfigFileError(this, (*itScreen),
6599 N_("Not supported Recording/@dest attribute '%#x'"), screenSettings.enmDest);
6600 (*itScreen)->getAttributeValue("maxSizeMB", screenSettings.File.ulMaxSizeMB);
6601 if ((*itScreen)->getAttributeValue("videoCodec", strTemp)) /* Stick with default if not set. */
6602 RecordingScreenSettings::videoCodecFromString(strTemp, screenSettings.Video.enmCodec);
6603 (*itScreen)->getAttributeValue("videoDeadline", (uint32_t &)screenSettings.Video.enmDeadline);
6604 (*itScreen)->getAttributeValue("videoRateCtlMode", (uint32_t &)screenSettings.Video.enmRateCtlMode);
6605 (*itScreen)->getAttributeValue("videoScalingMode", (uint32_t &)screenSettings.Video.enmScalingMode);
6606 (*itScreen)->getAttributeValue("horzRes", screenSettings.Video.ulWidth);
6607 (*itScreen)->getAttributeValue("vertRes", screenSettings.Video.ulHeight);
6608 (*itScreen)->getAttributeValue("rateKbps", screenSettings.Video.ulRate);
6609 (*itScreen)->getAttributeValue("fps", screenSettings.Video.ulFPS);
6610
6611 if ((*itScreen)->getAttributeValue("audioCodec", strTemp)) /* Stick with default if not set. */
6612 RecordingScreenSettings::audioCodecFromString(strTemp, screenSettings.Audio.enmCodec);
6613 (*itScreen)->getAttributeValue("audioDeadline", (uint32_t &)screenSettings.Audio.enmDeadline);
6614 (*itScreen)->getAttributeValue("audioRateCtlMode", (uint32_t &)screenSettings.Audio.enmRateCtlMode);
6615 (*itScreen)->getAttributeValue("audioHz", (uint32_t &)screenSettings.Audio.uHz);
6616 (*itScreen)->getAttributeValue("audioBits", (uint32_t &)screenSettings.Audio.cBits);
6617 (*itScreen)->getAttributeValue("audioChannels", (uint32_t &)screenSettings.Audio.cChannels);
6618 }
6619 }
6620 else if ( m->sv >= SettingsVersion_v1_14
6621 && m->sv < SettingsVersion_v1_19 /* VBox < 7.0 */)
6622 {
6623 /* For settings < 1.19 (< VBox 7.0) we only support one recording configuration, that is,
6624 * all screens have the same configuration. So load/save to/from screen 0. */
6625 RecordingScreenSettings &screen0 = recording.mapScreens[0];
6626
6627 elmRecording.getAttributeValue("maxTime", screen0.ulMaxTimeS);
6628 elmRecording.getAttributeValue("options", screen0.strOptions);
6629 elmRecording.getAttributeValuePath("file", screen0.File.strName);
6630 elmRecording.getAttributeValue("maxSize", screen0.File.ulMaxSizeMB);
6631 elmRecording.getAttributeValue("horzRes", screen0.Video.ulWidth);
6632 elmRecording.getAttributeValue("vertRes", screen0.Video.ulHeight);
6633 elmRecording.getAttributeValue("rate", screen0.Video.ulRate);
6634 elmRecording.getAttributeValue("fps", screen0.Video.ulFPS);
6635
6636 /* Convert the enabled screens to the former uint64_t bit array and vice versa. */
6637 uint64_t uScreensBitmap = 0;
6638 elmRecording.getAttributeValue("screens", uScreensBitmap);
6639
6640 /* Note: For settings < 1.19 the "screens" attribute is a bit field for all screens
6641 * which are ENABLED for recording. The settings for recording are for all the same though. */
6642 for (unsigned i = 0; i < cMonitors; i++)
6643 {
6644 /* Apply settings of screen 0 to screen i and enable it. */
6645 recording.mapScreens[i] = screen0;
6646
6647 /* Screen i enabled? */
6648 recording.mapScreens[i].idScreen = i;
6649 recording.mapScreens[i].fEnabled = RT_BOOL(uScreensBitmap & RT_BIT_64(i));
6650 }
6651 }
6652}
6653
6654/**
6655 * Called for reading the \<Groups\> element under \<Machine\>.
6656 */
6657void MachineConfigFile::readGroups(const xml::ElementNode &elmGroups, StringsList &llGroups)
6658{
6659 llGroups.clear();
6660 if (m->sv < SettingsVersion_v1_13)
6661 {
6662 llGroups.push_back("/");
6663 return;
6664 }
6665
6666 xml::NodesLoop nlGroups(elmGroups);
6667 const xml::ElementNode *pelmGroup;
6668 while ((pelmGroup = nlGroups.forAllNodes()))
6669 {
6670 if (pelmGroup->nameEquals("Group"))
6671 {
6672 Utf8Str strGroup;
6673 if (!pelmGroup->getAttributeValue("name", strGroup))
6674 throw ConfigFileError(this, pelmGroup, N_("Required Group/@name attribute is missing"));
6675 llGroups.push_back(strGroup);
6676 }
6677 }
6678}
6679
6680/**
6681 * Called initially for the \<Snapshot\> element under \<Machine\>, if present,
6682 * to store the snapshot's data into the given Snapshot structure (which is
6683 * then the one in the Machine struct). This might process further elements
6684 * of the snapshot tree if a \<Snapshots\> (plural) element is found in the
6685 * snapshot, which should contain a list of child snapshots; such lists are
6686 * maintained in the Snapshot structure.
6687 *
6688 * @param curSnapshotUuid
6689 * @param elmSnapshot
6690 * @param snap
6691 * @returns true if curSnapshotUuid is in this snapshot subtree, otherwise false
6692 */
6693bool MachineConfigFile::readSnapshot(const Guid &curSnapshotUuid,
6694 const xml::ElementNode &elmSnapshot,
6695 Snapshot &snap)
6696{
6697 std::list<const xml::ElementNode *> llElementsTodo;
6698 llElementsTodo.push_back(&elmSnapshot);
6699 std::list<Snapshot *> llSettingsTodo;
6700 llSettingsTodo.push_back(&snap);
6701 std::list<uint32_t> llDepthsTodo;
6702 llDepthsTodo.push_back(1);
6703
6704 bool foundCurrentSnapshot = false;
6705
6706 while (llElementsTodo.size() > 0)
6707 {
6708 const xml::ElementNode *pElement = llElementsTodo.front();
6709 llElementsTodo.pop_front();
6710 Snapshot *pSnap = llSettingsTodo.front();
6711 llSettingsTodo.pop_front();
6712 uint32_t depth = llDepthsTodo.front();
6713 llDepthsTodo.pop_front();
6714
6715 if (depth > SETTINGS_SNAPSHOT_DEPTH_MAX)
6716 throw ConfigFileError(this, pElement, N_("Maximum snapshot tree depth of %u exceeded"), SETTINGS_SNAPSHOT_DEPTH_MAX);
6717
6718 Utf8Str strTemp;
6719 if (!pElement->getAttributeValue("uuid", strTemp))
6720 throw ConfigFileError(this, pElement, N_("Required Snapshot/@uuid attribute is missing"));
6721 parseUUID(pSnap->uuid, strTemp, pElement);
6722 foundCurrentSnapshot |= (pSnap->uuid == curSnapshotUuid);
6723
6724 if (!pElement->getAttributeValue("name", pSnap->strName))
6725 throw ConfigFileError(this, pElement, N_("Required Snapshot/@name attribute is missing"));
6726
6727 // 3.1 dev builds added Description as an attribute, read it silently
6728 // and write it back as an element
6729 pElement->getAttributeValue("Description", pSnap->strDescription);
6730
6731 if (!pElement->getAttributeValue("timeStamp", strTemp))
6732 throw ConfigFileError(this, pElement, N_("Required Snapshot/@timeStamp attribute is missing"));
6733 parseTimestamp(pSnap->timestamp, strTemp, pElement);
6734
6735 pElement->getAttributeValuePath("stateFile", pSnap->strStateFile); // online snapshots only
6736
6737 /* We read the platform settings here for newer settings (>= v1.20).
6738 * For older settings (< v1.20) we read the platform settings in readHardware(). */
6739 if (m->sv >= SettingsVersion_v1_20)
6740 {
6741 const xml::ElementNode *pelmPlatform;
6742 if (!(pelmPlatform = pElement->findChildElement("Platform")))
6743 throw ConfigFileError(this, pElement, N_("Required Snapshot/@Platform element is missing"));
6744 readPlatform(*pelmPlatform, pSnap->hardware.platformSettings);
6745 }
6746
6747 // parse Hardware before the other elements because other things depend on it
6748 const xml::ElementNode *pelmHardware;
6749 if (!(pelmHardware = pElement->findChildElement("Hardware")))
6750 throw ConfigFileError(this, pElement, N_("Required Snapshot/@Hardware element is missing"));
6751 readHardware(*pelmHardware, pSnap->hardware);
6752
6753 const xml::ElementNode *pelmSnapshots = NULL;
6754
6755 xml::NodesLoop nlSnapshotChildren(*pElement);
6756 const xml::ElementNode *pelmSnapshotChild;
6757 while ((pelmSnapshotChild = nlSnapshotChildren.forAllNodes()))
6758 {
6759 if (pelmSnapshotChild->nameEquals("Description"))
6760 pSnap->strDescription = pelmSnapshotChild->getValue();
6761 else if ( m->sv < SettingsVersion_v1_7
6762 && pelmSnapshotChild->nameEquals("HardDiskAttachments"))
6763 readHardDiskAttachments_pre1_7(*pelmSnapshotChild, pSnap->hardware.storage);
6764 else if ( m->sv >= SettingsVersion_v1_7
6765 && pelmSnapshotChild->nameEquals("StorageControllers"))
6766 readStorageControllers(*pelmSnapshotChild, pSnap->hardware.storage);
6767 else if (pelmSnapshotChild->nameEquals("Snapshots"))
6768 {
6769 if (pelmSnapshots)
6770 throw ConfigFileError(this, pelmSnapshotChild, N_("Just a single Snapshots element is allowed"));
6771 pelmSnapshots = pelmSnapshotChild;
6772 }
6773 }
6774
6775 if (m->sv < SettingsVersion_v1_9)
6776 // go through Hardware once more to repair the settings controller structures
6777 // with data from old DVDDrive and FloppyDrive elements
6778 readDVDAndFloppies_pre1_9(*pelmHardware, pSnap->hardware.storage);
6779
6780 const xml::ElementNode *pelmDebugging = elmSnapshot.findChildElement("Debugging"); /** @todo r=andy Shouldn't this be pElement instead of elmSnapshot? Re-visit this! */
6781 if (pelmDebugging)
6782 readDebugging(*pelmDebugging, pSnap->debugging);
6783 const xml::ElementNode *pelmAutostart = elmSnapshot.findChildElement("Autostart"); /** @todo r=andy Ditto. */
6784 if (pelmAutostart)
6785 readAutostart(*pelmAutostart, pSnap->autostart);
6786 if (m->sv < SettingsVersion_v1_19)
6787 {
6788 const xml::ElementNode *pelmVideoCapture = pElement->findChildElement("VideoCapture");
6789 if (pelmVideoCapture)
6790 readRecordingSettings(*pelmVideoCapture, pSnap->hardware.graphicsAdapter.cMonitors, pSnap->recordingSettings);
6791 }
6792 else /* >= VBox 7.0 */
6793 {
6794 const xml::ElementNode *pelmRecording = pElement->findChildElement("Recording");
6795 if (pelmRecording)
6796 readRecordingSettings(*pelmRecording, pSnap->hardware.graphicsAdapter.cMonitors, pSnap->recordingSettings);
6797 }
6798 // note: Groups exist only for Machine, not for Snapshot
6799
6800 // process all child snapshots
6801 if (pelmSnapshots)
6802 {
6803 xml::NodesLoop nlChildSnapshots(*pelmSnapshots);
6804 const xml::ElementNode *pelmChildSnapshot;
6805 while ((pelmChildSnapshot = nlChildSnapshots.forAllNodes()))
6806 {
6807 if (pelmChildSnapshot->nameEquals("Snapshot"))
6808 {
6809 llElementsTodo.push_back(pelmChildSnapshot);
6810 pSnap->llChildSnapshots.push_back(Snapshot::Empty);
6811 llSettingsTodo.push_back(&pSnap->llChildSnapshots.back());
6812 llDepthsTodo.push_back(depth + 1);
6813 }
6814 }
6815 }
6816 }
6817
6818 return foundCurrentSnapshot;
6819}
6820
6821const struct {
6822 const char *pcszOld;
6823 const char *pcszNew;
6824} aConvertOSTypes[] =
6825{
6826 { "unknown", "Other" },
6827 { "dos", "DOS" },
6828 { "win31", "Windows31" },
6829 { "win95", "Windows95" },
6830 { "win98", "Windows98" },
6831 { "winme", "WindowsMe" },
6832 { "winnt4", "WindowsNT4" },
6833 { "win2k", "Windows2000" },
6834 { "winxp", "WindowsXP" },
6835 { "win2k3", "Windows2003" },
6836 { "winvista", "WindowsVista" },
6837 { "win2k8", "Windows2008" },
6838 { "os2warp3", "OS2Warp3" },
6839 { "os2warp4", "OS2Warp4" },
6840 { "os2warp45", "OS2Warp45" },
6841 { "ecs", "OS2eCS" },
6842 { "linux22", "Linux22" },
6843 { "linux24", "Linux24" },
6844 { "linux26", "Linux26" },
6845 { "archlinux", "ArchLinux" },
6846 { "debian", "Debian" },
6847 { "opensuse", "OpenSUSE" },
6848 { "fedoracore", "Fedora" },
6849 { "gentoo", "Gentoo" },
6850 { "mandriva", "Mandriva" },
6851 { "redhat", "RedHat" },
6852 { "ubuntu", "Ubuntu" },
6853 { "xandros", "Xandros" },
6854 { "freebsd", "FreeBSD" },
6855 { "openbsd", "OpenBSD" },
6856 { "netbsd", "NetBSD" },
6857 { "netware", "Netware" },
6858 { "solaris", "Solaris" },
6859 { "opensolaris", "OpenSolaris" },
6860 { "l4", "L4" }
6861};
6862
6863void MachineConfigFile::convertOldOSType_pre1_5(Utf8Str &str)
6864{
6865 for (unsigned u = 0;
6866 u < RT_ELEMENTS(aConvertOSTypes);
6867 ++u)
6868 {
6869 if (str == aConvertOSTypes[u].pcszOld)
6870 {
6871 str = aConvertOSTypes[u].pcszNew;
6872 break;
6873 }
6874 }
6875}
6876
6877/**
6878 * Called from the constructor to actually read in the \<Machine\> element
6879 * of a machine config file.
6880 * @param elmMachine
6881 */
6882void MachineConfigFile::readMachine(const xml::ElementNode &elmMachine)
6883{
6884 Utf8Str strUUID;
6885 if ( elmMachine.getAttributeValue("uuid", strUUID)
6886 && elmMachine.getAttributeValue("name", machineUserData.strName))
6887 {
6888 parseUUID(uuid, strUUID, &elmMachine);
6889
6890 elmMachine.getAttributeValue("directoryIncludesUUID", machineUserData.fDirectoryIncludesUUID);
6891 elmMachine.getAttributeValue("nameSync", machineUserData.fNameSync);
6892
6893 Utf8Str str;
6894 elmMachine.getAttributeValue("Description", machineUserData.strDescription);
6895 elmMachine.getAttributeValue("OSType", machineUserData.strOsType);
6896 if (m->sv < SettingsVersion_v1_5)
6897 convertOldOSType_pre1_5(machineUserData.strOsType);
6898
6899 elmMachine.getAttributeValue("stateKeyId", strStateKeyId);
6900 elmMachine.getAttributeValue("stateKeyStore", strStateKeyStore);
6901 elmMachine.getAttributeValuePath("stateFile", strStateFile);
6902
6903 elmMachine.getAttributeValue("logKeyId", strLogKeyId);
6904 elmMachine.getAttributeValue("logKeyStore", strLogKeyStore);
6905
6906 if (elmMachine.getAttributeValue("currentSnapshot", str))
6907 parseUUID(uuidCurrentSnapshot, str, &elmMachine);
6908
6909 elmMachine.getAttributeValuePath("snapshotFolder", machineUserData.strSnapshotFolder);
6910
6911 if (!elmMachine.getAttributeValue("currentStateModified", fCurrentStateModified))
6912 fCurrentStateModified = true;
6913 if (elmMachine.getAttributeValue("lastStateChange", str))
6914 parseTimestamp(timeLastStateChange, str, &elmMachine);
6915 // constructor has called RTTimeNow(&timeLastStateChange) before
6916 if (elmMachine.getAttributeValue("aborted", fAborted))
6917 fAborted = true;
6918
6919 {
6920 Utf8Str strVMPriority;
6921 if (elmMachine.getAttributeValue("processPriority", strVMPriority))
6922 {
6923 if (strVMPriority == "Flat")
6924 machineUserData.enmVMPriority = VMProcPriority_Flat;
6925 else if (strVMPriority == "Low")
6926 machineUserData.enmVMPriority = VMProcPriority_Low;
6927 else if (strVMPriority == "Normal")
6928 machineUserData.enmVMPriority = VMProcPriority_Normal;
6929 else if (strVMPriority == "High")
6930 machineUserData.enmVMPriority = VMProcPriority_High;
6931 else
6932 machineUserData.enmVMPriority = VMProcPriority_Default;
6933 }
6934 }
6935
6936 str.setNull();
6937 elmMachine.getAttributeValue("icon", str);
6938 parseBase64(machineUserData.ovIcon, str, &elmMachine);
6939
6940 /* We read the platform settings here for newer settings (>= v1.20).
6941 * For older settings (< v1.20) we read the platform settings in readHardware(). */
6942 if (m->sv >= SettingsVersion_v1_20)
6943 {
6944 const xml::ElementNode *pelmPlatform;
6945 if (!(pelmPlatform = elmMachine.findChildElement("Platform")))
6946 throw ConfigFileError(this, &elmMachine, N_("Required Machine/@Platform element is missing"));
6947 readPlatform(*pelmPlatform, hardwareMachine.platformSettings);
6948 }
6949
6950 // parse Hardware before the other elements because other things depend on it
6951 const xml::ElementNode *pelmHardware;
6952 if (!(pelmHardware = elmMachine.findChildElement("Hardware")))
6953 throw ConfigFileError(this, &elmMachine, N_("Required Machine/@Hardware element is missing"));
6954 readHardware(*pelmHardware, hardwareMachine);
6955
6956 xml::NodesLoop nlRootChildren(elmMachine);
6957 const xml::ElementNode *pelmMachineChild;
6958 while ((pelmMachineChild = nlRootChildren.forAllNodes()))
6959 {
6960 if (pelmMachineChild->nameEquals("ExtraData"))
6961 readExtraData(*pelmMachineChild,
6962 mapExtraDataItems);
6963 else if ( (m->sv < SettingsVersion_v1_7)
6964 && (pelmMachineChild->nameEquals("HardDiskAttachments"))
6965 )
6966 readHardDiskAttachments_pre1_7(*pelmMachineChild, hardwareMachine.storage);
6967 else if ( (m->sv >= SettingsVersion_v1_7)
6968 && (pelmMachineChild->nameEquals("StorageControllers"))
6969 )
6970 readStorageControllers(*pelmMachineChild, hardwareMachine.storage);
6971 else if (pelmMachineChild->nameEquals("Snapshot"))
6972 {
6973 if (uuidCurrentSnapshot.isZero())
6974 throw ConfigFileError(this, &elmMachine, N_("Snapshots present but required Machine/@currentSnapshot attribute is missing"));
6975 bool foundCurrentSnapshot = false;
6976 // Work directly with the target list, because otherwise
6977 // the entire snapshot settings tree will need to be copied,
6978 // and the usual STL implementation needs a lot of stack space.
6979 llFirstSnapshot.push_back(Snapshot::Empty);
6980 // this will also read all child snapshots
6981 foundCurrentSnapshot = readSnapshot(uuidCurrentSnapshot, *pelmMachineChild, llFirstSnapshot.back());
6982 if (!foundCurrentSnapshot)
6983 throw ConfigFileError(this, &elmMachine, N_("Snapshots present but none matches the UUID in the Machine/@currentSnapshot attribute"));
6984 }
6985 else if (pelmMachineChild->nameEquals("Description"))
6986 machineUserData.strDescription = pelmMachineChild->getValue();
6987 else if (pelmMachineChild->nameEquals("Teleporter"))
6988 readTeleporter(*pelmMachineChild, machineUserData);
6989 else if (pelmMachineChild->nameEquals("MediaRegistry"))
6990 readMediaRegistry(*pelmMachineChild, mediaRegistry);
6991 else if (pelmMachineChild->nameEquals("Debugging"))
6992 readDebugging(*pelmMachineChild, debugging);
6993 else if (pelmMachineChild->nameEquals("Autostart"))
6994 readAutostart(*pelmMachineChild, autostart);
6995 else if (pelmMachineChild->nameEquals("Groups"))
6996 readGroups(*pelmMachineChild, machineUserData.llGroups);
6997
6998 if ( m->sv >= SettingsVersion_v1_14
6999 && m->sv < SettingsVersion_v1_19
7000 && pelmMachineChild->nameEquals("VideoCapture")) /* For settings >= 1.14 (< VBox 7.0). */
7001 readRecordingSettings(*pelmMachineChild, hardwareMachine.graphicsAdapter.cMonitors, recordingSettings);
7002 else if ( m->sv >= SettingsVersion_v1_19
7003 && pelmMachineChild->nameEquals("Recording")) /* Only exists for settings >= 1.19 (VBox 7.0). */
7004 readRecordingSettings(*pelmMachineChild, hardwareMachine.graphicsAdapter.cMonitors, recordingSettings);
7005 }
7006
7007 if (m->sv < SettingsVersion_v1_9)
7008 // go through Hardware once more to repair the settings controller structures
7009 // with data from old DVDDrive and FloppyDrive elements
7010 readDVDAndFloppies_pre1_9(*pelmHardware, hardwareMachine.storage);
7011 }
7012 else
7013 throw ConfigFileError(this, &elmMachine, N_("Required Machine/@uuid or @name attributes is missing"));
7014}
7015
7016/**
7017 * Called from the constructor to decrypt the machine config and read
7018 * data from it.
7019 * @param elmMachine
7020 * @param pCryptoIf Pointer to the cryptographic interface.
7021 * @param pszPassword The password to decrypt the config with.
7022 */
7023void MachineConfigFile::readMachineEncrypted(const xml::ElementNode &elmMachine,
7024 PCVBOXCRYPTOIF pCryptoIf = NULL,
7025 const char *pszPassword = NULL)
7026{
7027 Utf8Str strUUID;
7028 if (elmMachine.getAttributeValue("uuid", strUUID))
7029 {
7030 parseUUID(uuid, strUUID, &elmMachine);
7031 if (!elmMachine.getAttributeValue("keyId", strKeyId))
7032 throw ConfigFileError(this, &elmMachine, N_("Required MachineEncrypted/@keyId attribute is missing"));
7033 if (!elmMachine.getAttributeValue("keyStore", strKeyStore))
7034 throw ConfigFileError(this, &elmMachine, N_("Required MachineEncrypted/@keyStore attribute is missing"));
7035
7036 if (!pszPassword)
7037 {
7038 enmParseState = ParseState_PasswordError;
7039 return;
7040 }
7041
7042 VBOXCRYPTOCTX hCryptoCtx = NULL;
7043 int vrc = pCryptoIf->pfnCryptoCtxLoad(strKeyStore.c_str(), pszPassword, &hCryptoCtx);
7044 if (RT_SUCCESS(vrc))
7045 {
7046 com::Utf8Str str = elmMachine.getValue();
7047 IconBlob abEncrypted; /** @todo Rename IconBlob because this is not about icons. */
7048 /** @todo This is not nice. */
7049 try
7050 {
7051 parseBase64(abEncrypted, str, &elmMachine);
7052 }
7053 catch (...)
7054 {
7055 int vrc2 = pCryptoIf->pfnCryptoCtxDestroy(hCryptoCtx);
7056 AssertRC(vrc2);
7057 throw;
7058 }
7059
7060 IconBlob abDecrypted(abEncrypted.size());
7061 size_t cbDecrypted = 0;
7062 vrc = pCryptoIf->pfnCryptoCtxDecrypt(hCryptoCtx, false /*fPartial*/,
7063 &abEncrypted[0], abEncrypted.size(),
7064 uuid.raw(), sizeof(RTUUID),
7065 &abDecrypted[0], abDecrypted.size(), &cbDecrypted);
7066 int vrc2 = pCryptoIf->pfnCryptoCtxDestroy(hCryptoCtx);
7067 AssertRC(vrc2);
7068
7069 if (RT_SUCCESS(vrc))
7070 {
7071 abDecrypted.resize(cbDecrypted);
7072 xml::XmlMemParser parser;
7073 xml::Document *pDoc = new xml::Document;
7074 parser.read(&abDecrypted[0], abDecrypted.size(), m->strFilename, *pDoc);
7075 xml::ElementNode *pelmRoot = pDoc->getRootElement();
7076 if (!pelmRoot || !pelmRoot->nameEquals("Machine"))
7077 throw ConfigFileError(this, pelmRoot, N_("Root element in Machine settings encrypted block must be \"Machine\""));
7078 readMachine(*pelmRoot);
7079 delete pDoc;
7080 }
7081 }
7082
7083 if (RT_FAILURE(vrc))
7084 {
7085 if (vrc == VERR_ACCESS_DENIED)
7086 enmParseState = ParseState_PasswordError;
7087 else
7088 throw ConfigFileError(this, &elmMachine, N_("Parsing config failed. (%Rrc)"), vrc);
7089 }
7090 }
7091 else
7092 throw ConfigFileError(this, &elmMachine, N_("Required MachineEncrypted/@uuid attribute is missing"));
7093}
7094
7095/**
7096 * Writes x86-specific platform settings out to the XML.
7097 *
7098 * For settings >= v1.20 this creates a \<x86\> node under elmParent.
7099 * keys under that. Called for both the \<Machine\> node and for snapshots.
7100 *
7101 * @param elmParent Parent element.
7102 * For settings >= v1.20 this is the \<Platform\> element.
7103 * For settings < v1.20 this is the \<Hardware\> element.
7104 * @param elmCPU CPU element platform-generic settings.
7105 * For settings >= v1.20 this is the \<Platform/CPU\> element.
7106 * For settings < v1.20 this is the \<Hardware/CPU\> element.
7107 * @param platX86 x86-specific platform settings to use for building the XML.
7108 */
7109void MachineConfigFile::buildPlatformX86XML(xml::ElementNode &elmParent, xml::ElementNode &elmCPU, const PlatformX86 &platX86)
7110{
7111 xml::ElementNode *pelmX86Root;
7112 xml::ElementNode *pelmX86CPU;
7113 if (m->sv >= SettingsVersion_v1_20)
7114 {
7115 pelmX86Root = elmParent.createChild("x86");
7116 pelmX86CPU = pelmX86Root->createChild("CPU");
7117
7118 }
7119 else
7120 {
7121 pelmX86Root = &elmParent; /* Before settings v1.20 the x86-specifics were sprinkled across the Machine element. */
7122 pelmX86CPU = &elmCPU; /* Use the generic CPU element, even for x86-specific things. */
7123 }
7124
7125 if ( (m->sv >= SettingsVersion_v1_10)
7126 && platX86.fHPETEnabled)
7127 {
7128 xml::ElementNode *pelmHPET = pelmX86Root->createChild("HPET");
7129 pelmHPET->setAttribute("enabled", platX86.fHPETEnabled);
7130 }
7131
7132 // HardwareVirtExLargePages has too crazy default handling, must always save this setting.
7133 pelmX86CPU->createChild("HardwareVirtExLargePages")->setAttribute("enabled", platX86.fHWVirtExLargePages);
7134
7135 if (m->sv >= SettingsVersion_v1_9)
7136 {
7137 if (platX86.fHWVirtExForce)
7138 pelmX86CPU->createChild("HardwareVirtForce")->setAttribute("enabled", platX86.fHWVirtExForce);
7139 }
7140
7141 if (m->sv >= SettingsVersion_v1_9 && platX86.fHWVirtExUseNativeApi)
7142 pelmX86CPU->createChild("HardwareVirtExUseNativeApi")->setAttribute("enabled", platX86.fHWVirtExUseNativeApi);
7143
7144 if (!platX86.fHWVirtEx)
7145 pelmX86CPU->createChild("HardwareVirtEx")->setAttribute("enabled", platX86.fHWVirtEx);
7146 if (!platX86.fHWVirtExNestedPaging)
7147 pelmX86CPU->createChild("HardwareVirtExNestedPaging")->setAttribute("enabled", platX86.fHWVirtExNestedPaging);
7148 if (!platX86.fHWVirtExVPID)
7149 pelmX86CPU->createChild("HardwareVirtExVPID")->setAttribute("enabled", platX86.fHWVirtExVPID);
7150 if (!platX86.fHWVirtExUX)
7151 pelmX86CPU->createChild("HardwareVirtExUX")->setAttribute("enabled", platX86.fHWVirtExUX);
7152 // PAE has too crazy default handling, must always save this setting.
7153 pelmX86CPU->createChild("PAE")->setAttribute("enabled", platX86.fPAE);
7154 if (m->sv >= SettingsVersion_v1_16)
7155 {
7156 if (platX86.fIBPBOnVMEntry || platX86.fIBPBOnVMExit)
7157 {
7158 xml::ElementNode *pelmChild = pelmX86CPU->createChild("IBPBOn");
7159 if (platX86.fIBPBOnVMExit)
7160 pelmChild->setAttribute("vmexit", platX86.fIBPBOnVMExit);
7161 if (platX86.fIBPBOnVMEntry)
7162 pelmChild->setAttribute("vmentry", platX86.fIBPBOnVMEntry);
7163 }
7164 if (platX86.fSpecCtrl)
7165 pelmX86CPU->createChild("SpecCtrl")->setAttribute("enabled", platX86.fSpecCtrl);
7166 if (platX86.fSpecCtrlByHost)
7167 pelmX86CPU->createChild("SpecCtrlByHost")->setAttribute("enabled", platX86.fSpecCtrlByHost);
7168 if (!platX86.fL1DFlushOnSched || platX86.fL1DFlushOnVMEntry)
7169 {
7170 xml::ElementNode *pelmChild = pelmX86CPU->createChild("L1DFlushOn");
7171 if (!platX86.fL1DFlushOnSched)
7172 pelmChild->setAttribute("scheduling", platX86.fL1DFlushOnSched);
7173 if (platX86.fL1DFlushOnVMEntry)
7174 pelmChild->setAttribute("vmentry", platX86.fL1DFlushOnVMEntry);
7175 }
7176 if (!platX86.fMDSClearOnSched || platX86.fMDSClearOnVMEntry)
7177 {
7178 xml::ElementNode *pelmChild = pelmX86CPU->createChild("MDSClearOn");
7179 if (!platX86.fMDSClearOnSched)
7180 pelmChild->setAttribute("scheduling", platX86.fMDSClearOnSched);
7181 if (platX86.fMDSClearOnVMEntry)
7182 pelmChild->setAttribute("vmentry", platX86.fMDSClearOnVMEntry);
7183 }
7184 }
7185 if (m->sv >= SettingsVersion_v1_17 && platX86.fNestedHWVirt)
7186 pelmX86CPU->createChild("NestedHWVirt")->setAttribute("enabled", platX86.fNestedHWVirt);
7187
7188 if (m->sv >= SettingsVersion_v1_18 && !platX86.fHWVirtExVirtVmsaveVmload)
7189 pelmX86CPU->createChild("HardwareVirtExVirtVmsaveVmload")->setAttribute("enabled", platX86.fHWVirtExVirtVmsaveVmload);
7190
7191 if (m->sv >= SettingsVersion_v1_14 && platX86.enmLongMode != PlatformX86::LongMode_Legacy)
7192 {
7193 // LongMode has too crazy default handling, must always save this setting.
7194 pelmX86CPU->createChild("LongMode")->setAttribute("enabled", platX86.enmLongMode == PlatformX86::LongMode_Enabled);
7195 }
7196
7197 if (platX86.fTripleFaultReset)
7198 pelmX86CPU->createChild("TripleFaultReset")->setAttribute("enabled", platX86.fTripleFaultReset);
7199 if (m->sv >= SettingsVersion_v1_14)
7200 {
7201 if (platX86.fX2APIC)
7202 pelmX86CPU->createChild("X2APIC")->setAttribute("enabled", platX86.fX2APIC);
7203 else if (!platX86.fAPIC)
7204 pelmX86CPU->createChild("APIC")->setAttribute("enabled", platX86.fAPIC);
7205 }
7206
7207 xml::ElementNode *pelmCpuIdTree = NULL;
7208 for (CpuIdLeafsX86List::const_iterator it = platX86.llCpuIdLeafs.begin();
7209 it != platX86.llCpuIdLeafs.end();
7210 ++it)
7211 {
7212 const CpuIdLeafX86 &leaf = *it;
7213
7214 if (pelmCpuIdTree == NULL)
7215 pelmCpuIdTree = pelmX86CPU->createChild("CpuIdTree");
7216
7217 xml::ElementNode *pelmCpuIdLeaf = pelmCpuIdTree->createChild("CpuIdLeaf");
7218 pelmCpuIdLeaf->setAttribute("id", leaf.idx);
7219 if (leaf.idxSub != 0)
7220 pelmCpuIdLeaf->setAttribute("subleaf", leaf.idxSub);
7221 pelmCpuIdLeaf->setAttribute("eax", leaf.uEax);
7222 pelmCpuIdLeaf->setAttribute("ebx", leaf.uEbx);
7223 pelmCpuIdLeaf->setAttribute("ecx", leaf.uEcx);
7224 pelmCpuIdLeaf->setAttribute("edx", leaf.uEdx);
7225 }
7226}
7227
7228/**
7229 * Stores platform-generic and platform-specific data and then writes out the XML.
7230 *
7231 * For settings >= v.120 this creates a \<Platform\> node under elmParent.
7232 * For settings < v.120 this stores the data directly under elmParent.
7233 *
7234 * Called for both the \<Machine\> node and for snapshots.
7235 *
7236 * @param elmParent Parent element.
7237 * @param hw Hardware settings to use for building the XML.
7238 * For CPU stuff we don't have in Platform (yet).
7239 * @param plat Platform settings to use for building the XML.
7240 */
7241void MachineConfigFile::buildPlatformXML(xml::ElementNode &elmParent,
7242 const Hardware &hw, const Platform &plat)
7243{
7244 xml::ElementNode *pelmPlatformOrHardware;
7245 if (m->sv >= SettingsVersion_v1_20) /* Since settings v1.20 we have a dedicated Platform element. */
7246 {
7247 pelmPlatformOrHardware = elmParent.createChild("Platform");
7248
7249 switch (plat.architectureType)
7250 {
7251 case PlatformArchitecture_x86:
7252 pelmPlatformOrHardware->setAttribute("architecture", "x86");
7253 break;
7254
7255 case PlatformArchitecture_ARM:
7256 pelmPlatformOrHardware->setAttribute("architecture", "ARM");
7257 break;
7258
7259 default:
7260 AssertFailed();
7261 break;
7262 }
7263 }
7264 else /* For settings < v1.20 we use the parent element (which is Hardware). */
7265 pelmPlatformOrHardware = &elmParent;
7266
7267 if ( m->sv >= SettingsVersion_v1_10
7268 && plat.fRTCUseUTC)
7269 {
7270 xml::ElementNode *pelmRTC = pelmPlatformOrHardware->createChild("RTC");
7271 pelmRTC->setAttribute("localOrUTC", plat.fRTCUseUTC ? "UTC" : "local");
7272 }
7273
7274 if (m->sv >= SettingsVersion_v1_11)
7275 {
7276 if (plat.chipsetType != ChipsetType_PIIX3)
7277 {
7278 xml::ElementNode *pelmChipset = pelmPlatformOrHardware->createChild("Chipset");
7279 const char *pcszChipset;
7280
7281 switch (plat.chipsetType)
7282 {
7283 case ChipsetType_PIIX3: pcszChipset = "PIIX3"; break;
7284 case ChipsetType_ICH9: pcszChipset = "ICH9"; break;
7285 case ChipsetType_ARMv8Virtual: pcszChipset = "ARMv8Virtual"; break;
7286 default: Assert(false); pcszChipset = "PIIX3"; break;
7287 }
7288 pelmChipset->setAttribute("type", pcszChipset);
7289 }
7290 }
7291
7292 if ( m->sv >= SettingsVersion_v1_19
7293 && plat.iommuType != IommuType_None)
7294 {
7295 const char *pcszIommuType;
7296 switch (plat.iommuType)
7297 {
7298 case IommuType_None: pcszIommuType = "None"; break;
7299 case IommuType_Automatic: pcszIommuType = "Automatic"; break;
7300 case IommuType_AMD: pcszIommuType = "AMD"; break;
7301 case IommuType_Intel: pcszIommuType = "Intel"; break;
7302 default: Assert(false); pcszIommuType = "None"; break;
7303 }
7304
7305 xml::ElementNode *pelmIommu = pelmPlatformOrHardware->createChild("Iommu");
7306 pelmIommu->setAttribute("type", pcszIommuType);
7307 }
7308
7309 xml::ElementNode *pelmCPU = pelmPlatformOrHardware->createChild("CPU");
7310
7311 if (hw.cCPUs > 1)
7312 pelmCPU->setAttribute("count", hw.cCPUs);
7313 if (hw.ulCpuExecutionCap != 100)
7314 pelmCPU->setAttribute("executionCap", hw.ulCpuExecutionCap);
7315 if (hw.uCpuIdPortabilityLevel != 0)
7316 pelmCPU->setAttribute("CpuIdPortabilityLevel", hw.uCpuIdPortabilityLevel);
7317 if (!hw.strCpuProfile.equals("host") && hw.strCpuProfile.isNotEmpty())
7318 pelmCPU->setAttribute("CpuProfile", hw.strCpuProfile);
7319
7320 if (m->sv >= SettingsVersion_v1_10)
7321 {
7322 if (hw.fCpuHotPlug)
7323 pelmCPU->setAttribute("hotplug", hw.fCpuHotPlug);
7324
7325 xml::ElementNode *pelmCpuTree = NULL;
7326 for (CpuList::const_iterator it = hw.llCpus.begin();
7327 it != hw.llCpus.end();
7328 ++it)
7329 {
7330 const Cpu &cpu = *it;
7331
7332 if (pelmCpuTree == NULL)
7333 pelmCpuTree = pelmCPU->createChild("CpuTree");
7334
7335 xml::ElementNode *pelmCpu = pelmCpuTree->createChild("Cpu");
7336 pelmCpu->setAttribute("id", cpu.ulId);
7337 }
7338 }
7339
7340 /* We only store specific stuff for the selected platform. */
7341 if (plat.architectureType == PlatformArchitecture_x86)
7342 buildPlatformX86XML(*pelmPlatformOrHardware, *pelmCPU, plat.x86);
7343 /** @todo BUGBUG Put ARM stuff here. */
7344}
7345
7346/**
7347 * Creates a \<Hardware\> node under elmParent and then writes out the XML
7348 * keys under that. Called for both the \<Machine\> node and for snapshots.
7349 *
7350 * @param elmParent Parent element.
7351 * @param hw Hardware settings to use for building the XML.
7352 * @param fl Flags.
7353 * @param pllElementsWithUuidAttributes Document me.
7354 */
7355void MachineConfigFile::buildHardwareXML(xml::ElementNode &elmParent,
7356 const Hardware &hw,
7357 uint32_t fl,
7358 std::list<xml::ElementNode*> *pllElementsWithUuidAttributes)
7359{
7360 xml::ElementNode *pelmHardware = elmParent.createChild("Hardware");
7361
7362 if ( m->sv >= SettingsVersion_v1_4
7363 && (m->sv < SettingsVersion_v1_7 ? hw.strVersion != "1" : hw.strVersion != "2"))
7364 pelmHardware->setAttribute("version", hw.strVersion);
7365
7366 if ((m->sv >= SettingsVersion_v1_9)
7367 && !hw.uuid.isZero()
7368 && hw.uuid.isValid()
7369 )
7370 pelmHardware->setAttribute("uuid", hw.uuid.toStringCurly());
7371
7372 xml::ElementNode *pelmMemory = pelmHardware->createChild("Memory");
7373 pelmMemory->setAttribute("RAMSize", hw.ulMemorySizeMB);
7374 if (m->sv >= SettingsVersion_v1_10)
7375 {
7376 if (hw.fPageFusionEnabled)
7377 pelmMemory->setAttribute("PageFusion", hw.fPageFusionEnabled);
7378 }
7379
7380 if ( m->sv >= SettingsVersion_v1_10
7381 && ( hw.pointingHIDType != PointingHIDType_PS2Mouse
7382 || hw.keyboardHIDType != KeyboardHIDType_PS2Keyboard))
7383 {
7384 xml::ElementNode *pelmHID = pelmHardware->createChild("HID");
7385 const char *pcszHID;
7386
7387 if (hw.pointingHIDType != PointingHIDType_PS2Mouse)
7388 {
7389 switch (hw.pointingHIDType)
7390 {
7391 case PointingHIDType_USBMouse: pcszHID = "USBMouse"; break;
7392 case PointingHIDType_USBTablet: pcszHID = "USBTablet"; break;
7393 case PointingHIDType_PS2Mouse: pcszHID = "PS2Mouse"; break;
7394 case PointingHIDType_ComboMouse: pcszHID = "ComboMouse"; break;
7395 case PointingHIDType_USBMultiTouch: pcszHID = "USBMultiTouch";break;
7396 case PointingHIDType_USBMultiTouchScreenPlusPad: pcszHID = "USBMTScreenPlusPad";break;
7397 case PointingHIDType_None: pcszHID = "None"; break;
7398 default: Assert(false); pcszHID = "PS2Mouse"; break;
7399 }
7400 pelmHID->setAttribute("Pointing", pcszHID);
7401 }
7402
7403 if (hw.keyboardHIDType != KeyboardHIDType_PS2Keyboard)
7404 {
7405 switch (hw.keyboardHIDType)
7406 {
7407 case KeyboardHIDType_USBKeyboard: pcszHID = "USBKeyboard"; break;
7408 case KeyboardHIDType_PS2Keyboard: pcszHID = "PS2Keyboard"; break;
7409 case KeyboardHIDType_ComboKeyboard: pcszHID = "ComboKeyboard"; break;
7410 case KeyboardHIDType_None: pcszHID = "None"; break;
7411 default: Assert(false); pcszHID = "PS2Keyboard"; break;
7412 }
7413 pelmHID->setAttribute("Keyboard", pcszHID);
7414 }
7415 }
7416
7417
7418
7419 if ( (m->sv >= SettingsVersion_v1_15)
7420 && !hw.areParavirtDefaultSettings(m->sv)
7421 )
7422 {
7423 const char *pcszParavirtProvider;
7424 switch (hw.paravirtProvider)
7425 {
7426 case ParavirtProvider_None: pcszParavirtProvider = "None"; break;
7427 case ParavirtProvider_Default: pcszParavirtProvider = "Default"; break;
7428 case ParavirtProvider_Legacy: pcszParavirtProvider = "Legacy"; break;
7429 case ParavirtProvider_Minimal: pcszParavirtProvider = "Minimal"; break;
7430 case ParavirtProvider_HyperV: pcszParavirtProvider = "HyperV"; break;
7431 case ParavirtProvider_KVM: pcszParavirtProvider = "KVM"; break;
7432 default: Assert(false); pcszParavirtProvider = "None"; break;
7433 }
7434
7435 xml::ElementNode *pelmParavirt = pelmHardware->createChild("Paravirt");
7436 pelmParavirt->setAttribute("provider", pcszParavirtProvider);
7437
7438 if ( m->sv >= SettingsVersion_v1_16
7439 && hw.strParavirtDebug.isNotEmpty())
7440 pelmParavirt->setAttribute("debug", hw.strParavirtDebug);
7441 }
7442
7443 if (!hw.areBootOrderDefaultSettings())
7444 {
7445 xml::ElementNode *pelmBoot = pelmHardware->createChild("Boot");
7446 for (BootOrderMap::const_iterator it = hw.mapBootOrder.begin();
7447 it != hw.mapBootOrder.end();
7448 ++it)
7449 {
7450 uint32_t i = it->first;
7451 DeviceType_T type = it->second;
7452 const char *pcszDevice;
7453
7454 switch (type)
7455 {
7456 case DeviceType_Floppy: pcszDevice = "Floppy"; break;
7457 case DeviceType_DVD: pcszDevice = "DVD"; break;
7458 case DeviceType_HardDisk: pcszDevice = "HardDisk"; break;
7459 case DeviceType_Network: pcszDevice = "Network"; break;
7460 default: /*case DeviceType_Null:*/ pcszDevice = "None"; break;
7461 }
7462
7463 xml::ElementNode *pelmOrder = pelmBoot->createChild("Order");
7464 pelmOrder->setAttribute("position",
7465 i + 1); // XML is 1-based but internal data is 0-based
7466 pelmOrder->setAttribute("device", pcszDevice);
7467 }
7468 }
7469
7470 if (!hw.graphicsAdapter.areDefaultSettings())
7471 {
7472 xml::ElementNode *pelmDisplay = pelmHardware->createChild("Display");
7473 if (hw.graphicsAdapter.graphicsControllerType != GraphicsControllerType_VBoxVGA)
7474 {
7475 const char *pcszGraphics;
7476 switch (hw.graphicsAdapter.graphicsControllerType)
7477 {
7478 case GraphicsControllerType_VBoxVGA: pcszGraphics = "VBoxVGA"; break;
7479 case GraphicsControllerType_VMSVGA: pcszGraphics = "VMSVGA"; break;
7480 case GraphicsControllerType_VBoxSVGA: pcszGraphics = "VBoxSVGA"; break;
7481 default: /*case GraphicsControllerType_Null:*/ pcszGraphics = "None"; break;
7482 }
7483 pelmDisplay->setAttribute("controller", pcszGraphics);
7484 }
7485 if (hw.graphicsAdapter.ulVRAMSizeMB != 8)
7486 pelmDisplay->setAttribute("VRAMSize", hw.graphicsAdapter.ulVRAMSizeMB);
7487 if (hw.graphicsAdapter.cMonitors > 1)
7488 pelmDisplay->setAttribute("monitorCount", hw.graphicsAdapter.cMonitors);
7489 if (hw.graphicsAdapter.fAccelerate3D)
7490 pelmDisplay->setAttribute("accelerate3D", hw.graphicsAdapter.fAccelerate3D);
7491
7492 if (m->sv >= SettingsVersion_v1_8)
7493 {
7494 if (hw.graphicsAdapter.fAccelerate2DVideo)
7495 pelmDisplay->setAttribute("accelerate2DVideo", hw.graphicsAdapter.fAccelerate2DVideo);
7496 }
7497 }
7498
7499 if (!hw.vrdeSettings.areDefaultSettings(m->sv))
7500 {
7501 xml::ElementNode *pelmVRDE = pelmHardware->createChild("RemoteDisplay");
7502 if (m->sv < SettingsVersion_v1_16 ? !hw.vrdeSettings.fEnabled : hw.vrdeSettings.fEnabled)
7503 pelmVRDE->setAttribute("enabled", hw.vrdeSettings.fEnabled);
7504 if (m->sv < SettingsVersion_v1_11)
7505 {
7506 /* In VBox 4.0 these attributes are replaced with "Properties". */
7507 Utf8Str strPort;
7508 StringsMap::const_iterator it = hw.vrdeSettings.mapProperties.find("TCP/Ports");
7509 if (it != hw.vrdeSettings.mapProperties.end())
7510 strPort = it->second;
7511 if (!strPort.length())
7512 strPort = "3389";
7513 pelmVRDE->setAttribute("port", strPort);
7514
7515 Utf8Str strAddress;
7516 it = hw.vrdeSettings.mapProperties.find("TCP/Address");
7517 if (it != hw.vrdeSettings.mapProperties.end())
7518 strAddress = it->second;
7519 if (strAddress.length())
7520 pelmVRDE->setAttribute("netAddress", strAddress);
7521 }
7522 if (hw.vrdeSettings.authType != AuthType_Null)
7523 {
7524 const char *pcszAuthType;
7525 switch (hw.vrdeSettings.authType)
7526 {
7527 case AuthType_Guest: pcszAuthType = "Guest"; break;
7528 case AuthType_External: pcszAuthType = "External"; break;
7529 default: /*case AuthType_Null:*/ pcszAuthType = "Null"; break;
7530 }
7531 pelmVRDE->setAttribute("authType", pcszAuthType);
7532 }
7533
7534 if (hw.vrdeSettings.ulAuthTimeout != 0 && hw.vrdeSettings.ulAuthTimeout != 5000)
7535 pelmVRDE->setAttribute("authTimeout", hw.vrdeSettings.ulAuthTimeout);
7536 if (hw.vrdeSettings.fAllowMultiConnection)
7537 pelmVRDE->setAttribute("allowMultiConnection", hw.vrdeSettings.fAllowMultiConnection);
7538 if (hw.vrdeSettings.fReuseSingleConnection)
7539 pelmVRDE->setAttribute("reuseSingleConnection", hw.vrdeSettings.fReuseSingleConnection);
7540
7541 if (m->sv == SettingsVersion_v1_10)
7542 {
7543 xml::ElementNode *pelmVideoChannel = pelmVRDE->createChild("VideoChannel");
7544
7545 /* In 4.0 videochannel settings were replaced with properties, so look at properties. */
7546 Utf8Str str;
7547 StringsMap::const_iterator it = hw.vrdeSettings.mapProperties.find("VideoChannel/Enabled");
7548 if (it != hw.vrdeSettings.mapProperties.end())
7549 str = it->second;
7550 bool fVideoChannel = RTStrICmp(str.c_str(), "true") == 0
7551 || RTStrCmp(str.c_str(), "1") == 0;
7552 pelmVideoChannel->setAttribute("enabled", fVideoChannel);
7553
7554 it = hw.vrdeSettings.mapProperties.find("VideoChannel/Quality");
7555 if (it != hw.vrdeSettings.mapProperties.end())
7556 str = it->second;
7557 uint32_t ulVideoChannelQuality = RTStrToUInt32(str.c_str()); /* This returns 0 on invalid string which is ok. */
7558 if (ulVideoChannelQuality == 0)
7559 ulVideoChannelQuality = 75;
7560 else
7561 ulVideoChannelQuality = RT_CLAMP(ulVideoChannelQuality, 10, 100);
7562 pelmVideoChannel->setAttribute("quality", ulVideoChannelQuality);
7563 }
7564 if (m->sv >= SettingsVersion_v1_11)
7565 {
7566 if (hw.vrdeSettings.strAuthLibrary.length())
7567 pelmVRDE->setAttribute("authLibrary", hw.vrdeSettings.strAuthLibrary);
7568 if (hw.vrdeSettings.strVrdeExtPack.isNotEmpty())
7569 pelmVRDE->setAttribute("VRDEExtPack", hw.vrdeSettings.strVrdeExtPack);
7570 if (hw.vrdeSettings.mapProperties.size() > 0)
7571 {
7572 xml::ElementNode *pelmProperties = pelmVRDE->createChild("VRDEProperties");
7573 for (StringsMap::const_iterator it = hw.vrdeSettings.mapProperties.begin();
7574 it != hw.vrdeSettings.mapProperties.end();
7575 ++it)
7576 {
7577 const Utf8Str &strName = it->first;
7578 const Utf8Str &strValue = it->second;
7579 xml::ElementNode *pelm = pelmProperties->createChild("Property");
7580 pelm->setAttribute("name", strName);
7581 pelm->setAttribute("value", strValue);
7582 }
7583 }
7584 }
7585 }
7586
7587 if ( !hw.firmwareSettings.areDefaultSettings( hw.platformSettings.architectureType == PlatformArchitecture_ARM
7588 /* Good enough for now (we don't support ARMv7). */
7589 ? CPUArchitecture_ARMv8_64 : CPUArchitecture_x86)
7590 || !hw.nvramSettings.areDefaultSettings())
7591 {
7592 xml::ElementNode *pelmFirmwareOrBIOS;
7593 if (m->sv >= SettingsVersion_v1_20) /* Since settings v1.20 the element was renamed to "Firmware". */
7594 pelmFirmwareOrBIOS = pelmHardware->createChild("Firmware");
7595 else
7596 pelmFirmwareOrBIOS = pelmHardware->createChild("BIOS");
7597
7598 if ( (m->sv >= SettingsVersion_v1_9)
7599 && (hw.firmwareSettings.firmwareType >= FirmwareType_EFI)
7600 )
7601 {
7602 const char *pcszFirmware;
7603
7604 switch (hw.firmwareSettings.firmwareType)
7605 {
7606 case FirmwareType_EFI: pcszFirmware = "EFI"; break;
7607 case FirmwareType_EFI32: pcszFirmware = "EFI32"; break;
7608 case FirmwareType_EFI64: pcszFirmware = "EFI64"; break;
7609 case FirmwareType_EFIDUAL: pcszFirmware = "EFIDUAL"; break;
7610 default: pcszFirmware = "None"; break;
7611 }
7612 pelmFirmwareOrBIOS->setAttribute("type", pcszFirmware);
7613 }
7614
7615 if (!hw.firmwareSettings.fACPIEnabled)
7616 pelmFirmwareOrBIOS->createChild("ACPI")->setAttribute("enabled", hw.firmwareSettings.fACPIEnabled);
7617 if (hw.firmwareSettings.fIOAPICEnabled)
7618 pelmFirmwareOrBIOS->createChild("IOAPIC")->setAttribute("enabled", hw.firmwareSettings.fIOAPICEnabled);
7619 if (hw.firmwareSettings.apicMode != APICMode_APIC)
7620 {
7621 const char *pcszAPIC;
7622 switch (hw.firmwareSettings.apicMode)
7623 {
7624 case APICMode_Disabled:
7625 pcszAPIC = "Disabled";
7626 break;
7627 case APICMode_APIC:
7628 default:
7629 pcszAPIC = "APIC";
7630 break;
7631 case APICMode_X2APIC:
7632 pcszAPIC = "X2APIC";
7633 break;
7634 }
7635 pelmFirmwareOrBIOS->createChild("APIC")->setAttribute("mode", pcszAPIC);
7636 }
7637
7638 if ( !hw.firmwareSettings.fLogoFadeIn
7639 || !hw.firmwareSettings.fLogoFadeOut
7640 || hw.firmwareSettings.ulLogoDisplayTime
7641 || !hw.firmwareSettings.strLogoImagePath.isEmpty())
7642 {
7643 xml::ElementNode *pelmLogo = pelmFirmwareOrBIOS->createChild("Logo");
7644 pelmLogo->setAttribute("fadeIn", hw.firmwareSettings.fLogoFadeIn);
7645 pelmLogo->setAttribute("fadeOut", hw.firmwareSettings.fLogoFadeOut);
7646 pelmLogo->setAttribute("displayTime", hw.firmwareSettings.ulLogoDisplayTime);
7647 if (!hw.firmwareSettings.strLogoImagePath.isEmpty())
7648 pelmLogo->setAttribute("imagePath", hw.firmwareSettings.strLogoImagePath);
7649 }
7650
7651 if (hw.firmwareSettings.enmBootMenuMode != FirmwareBootMenuMode_MessageAndMenu)
7652 {
7653 const char *pcszBootMenu;
7654 switch (hw.firmwareSettings.enmBootMenuMode)
7655 {
7656 case FirmwareBootMenuMode_Disabled: pcszBootMenu = "Disabled"; break;
7657 case FirmwareBootMenuMode_MenuOnly: pcszBootMenu = "MenuOnly"; break;
7658 default: /*FirmwareBootMenuMode_MessageAndMenu*/ pcszBootMenu = "MessageAndMenu"; break;
7659 }
7660 pelmFirmwareOrBIOS->createChild("BootMenu")->setAttribute("mode", pcszBootMenu);
7661 }
7662 if (hw.firmwareSettings.llTimeOffset)
7663 pelmFirmwareOrBIOS->createChild("TimeOffset")->setAttribute("value", hw.firmwareSettings.llTimeOffset);
7664 if (hw.firmwareSettings.fPXEDebugEnabled)
7665 pelmFirmwareOrBIOS->createChild("PXEDebug")->setAttribute("enabled", hw.firmwareSettings.fPXEDebugEnabled);
7666 if (!hw.nvramSettings.areDefaultSettings())
7667 {
7668 xml::ElementNode *pelmNvram = pelmFirmwareOrBIOS->createChild("NVRAM");
7669 if (!hw.nvramSettings.strNvramPath.isEmpty())
7670 pelmNvram->setAttribute("path", hw.nvramSettings.strNvramPath);
7671 if (m->sv >= SettingsVersion_v1_9)
7672 {
7673 if (hw.nvramSettings.strKeyId.isNotEmpty())
7674 pelmNvram->setAttribute("keyId", hw.nvramSettings.strKeyId);
7675 if (hw.nvramSettings.strKeyStore.isNotEmpty())
7676 pelmNvram->setAttribute("keyStore", hw.nvramSettings.strKeyStore);
7677 }
7678 }
7679 if (hw.firmwareSettings.fSmbiosUuidLittleEndian)
7680 pelmFirmwareOrBIOS->createChild("SmbiosUuidLittleEndian")->setAttribute("enabled", hw.firmwareSettings.fSmbiosUuidLittleEndian);
7681 }
7682
7683 if (!hw.tpmSettings.areDefaultSettings())
7684 {
7685 xml::ElementNode *pelmTpm = pelmHardware->createChild("TrustedPlatformModule");
7686
7687 const char *pcszTpm;
7688 switch (hw.tpmSettings.tpmType)
7689 {
7690 default:
7691 case TpmType_None:
7692 pcszTpm = "None";
7693 break;
7694 case TpmType_v1_2:
7695 pcszTpm = "v1_2";
7696 break;
7697 case TpmType_v2_0:
7698 pcszTpm = "v2_0";
7699 break;
7700 case TpmType_Host:
7701 pcszTpm = "Host";
7702 break;
7703 case TpmType_Swtpm:
7704 pcszTpm = "Swtpm";
7705 break;
7706 }
7707 pelmTpm->setAttribute("type", pcszTpm);
7708 pelmTpm->setAttribute("location", hw.tpmSettings.strLocation);
7709 }
7710
7711 if (m->sv < SettingsVersion_v1_9)
7712 {
7713 // settings formats before 1.9 had separate DVDDrive and FloppyDrive items under Hardware;
7714 // run thru the storage controllers to see if we have a DVD or floppy drives
7715 size_t cDVDs = 0;
7716 size_t cFloppies = 0;
7717
7718 xml::ElementNode *pelmDVD = pelmHardware->createChild("DVDDrive");
7719 xml::ElementNode *pelmFloppy = pelmHardware->createChild("FloppyDrive");
7720
7721 for (StorageControllersList::const_iterator it = hw.storage.llStorageControllers.begin();
7722 it != hw.storage.llStorageControllers.end();
7723 ++it)
7724 {
7725 const StorageController &sctl = *it;
7726 // in old settings format, the DVD drive could only have been under the IDE controller
7727 if (sctl.storageBus == StorageBus_IDE)
7728 {
7729 for (AttachedDevicesList::const_iterator it2 = sctl.llAttachedDevices.begin();
7730 it2 != sctl.llAttachedDevices.end();
7731 ++it2)
7732 {
7733 const AttachedDevice &att = *it2;
7734 if (att.deviceType == DeviceType_DVD)
7735 {
7736 if (cDVDs > 0)
7737 throw ConfigFileError(this, NULL, N_("Internal error: cannot save more than one DVD drive with old settings format"));
7738
7739 ++cDVDs;
7740
7741 pelmDVD->setAttribute("passthrough", att.fPassThrough);
7742 if (att.fTempEject)
7743 pelmDVD->setAttribute("tempeject", att.fTempEject);
7744
7745 if (!att.uuid.isZero() && att.uuid.isValid())
7746 pelmDVD->createChild("Image")->setAttribute("uuid", att.uuid.toStringCurly());
7747 else if (att.strHostDriveSrc.length())
7748 pelmDVD->createChild("HostDrive")->setAttribute("src", att.strHostDriveSrc);
7749 }
7750 }
7751 }
7752 else if (sctl.storageBus == StorageBus_Floppy)
7753 {
7754 size_t cFloppiesHere = sctl.llAttachedDevices.size();
7755 if (cFloppiesHere > 1)
7756 throw ConfigFileError(this, NULL, N_("Internal error: floppy controller cannot have more than one device attachment"));
7757 if (cFloppiesHere)
7758 {
7759 const AttachedDevice &att = sctl.llAttachedDevices.front();
7760 pelmFloppy->setAttribute("enabled", true);
7761
7762 if (!att.uuid.isZero() && att.uuid.isValid())
7763 pelmFloppy->createChild("Image")->setAttribute("uuid", att.uuid.toStringCurly());
7764 else if (att.strHostDriveSrc.length())
7765 pelmFloppy->createChild("HostDrive")->setAttribute("src", att.strHostDriveSrc);
7766 }
7767
7768 cFloppies += cFloppiesHere;
7769 }
7770 }
7771
7772 if (cFloppies == 0)
7773 pelmFloppy->setAttribute("enabled", false);
7774 else if (cFloppies > 1)
7775 throw ConfigFileError(this, NULL, N_("Internal error: cannot save more than one floppy drive with old settings format"));
7776 }
7777
7778 if (m->sv < SettingsVersion_v1_14)
7779 {
7780 bool fOhciEnabled = false;
7781 bool fEhciEnabled = false;
7782 xml::ElementNode *pelmUSB = pelmHardware->createChild("USBController");
7783
7784 for (USBControllerList::const_iterator it = hw.usbSettings.llUSBControllers.begin();
7785 it != hw.usbSettings.llUSBControllers.end();
7786 ++it)
7787 {
7788 const USBController &ctrl = *it;
7789
7790 switch (ctrl.enmType)
7791 {
7792 case USBControllerType_OHCI:
7793 fOhciEnabled = true;
7794 break;
7795 case USBControllerType_EHCI:
7796 fEhciEnabled = true;
7797 break;
7798 default:
7799 AssertMsgFailed(("Unknown USB controller type %d\n", ctrl.enmType));
7800 }
7801 }
7802
7803 pelmUSB->setAttribute("enabled", fOhciEnabled);
7804 pelmUSB->setAttribute("enabledEhci", fEhciEnabled);
7805
7806 buildUSBDeviceFilters(*pelmUSB, hw.usbSettings.llDeviceFilters, false /* fHostMode */);
7807 }
7808 else
7809 {
7810 if ( hw.usbSettings.llUSBControllers.size()
7811 || hw.usbSettings.llDeviceFilters.size())
7812 {
7813 xml::ElementNode *pelmUSB = pelmHardware->createChild("USB");
7814 if (hw.usbSettings.llUSBControllers.size())
7815 {
7816 xml::ElementNode *pelmCtrls = pelmUSB->createChild("Controllers");
7817
7818 for (USBControllerList::const_iterator it = hw.usbSettings.llUSBControllers.begin();
7819 it != hw.usbSettings.llUSBControllers.end();
7820 ++it)
7821 {
7822 const USBController &ctrl = *it;
7823 com::Utf8Str strType;
7824 xml::ElementNode *pelmCtrl = pelmCtrls->createChild("Controller");
7825
7826 switch (ctrl.enmType)
7827 {
7828 case USBControllerType_OHCI:
7829 strType = "OHCI";
7830 break;
7831 case USBControllerType_EHCI:
7832 strType = "EHCI";
7833 break;
7834 case USBControllerType_XHCI:
7835 strType = "XHCI";
7836 break;
7837 default:
7838 AssertMsgFailed(("Unknown USB controller type %d\n", ctrl.enmType));
7839 }
7840
7841 pelmCtrl->setAttribute("name", ctrl.strName);
7842 pelmCtrl->setAttribute("type", strType);
7843 }
7844 }
7845
7846 if (hw.usbSettings.llDeviceFilters.size())
7847 {
7848 xml::ElementNode *pelmFilters = pelmUSB->createChild("DeviceFilters");
7849 buildUSBDeviceFilters(*pelmFilters, hw.usbSettings.llDeviceFilters, false /* fHostMode */);
7850 }
7851 }
7852 }
7853
7854 if ( hw.llNetworkAdapters.size()
7855 && !hw.areAllNetworkAdaptersDefaultSettings(m->sv))
7856 {
7857 xml::ElementNode *pelmNetwork = pelmHardware->createChild("Network");
7858 for (NetworkAdaptersList::const_iterator it = hw.llNetworkAdapters.begin();
7859 it != hw.llNetworkAdapters.end();
7860 ++it)
7861 {
7862 const NetworkAdapter &nic = *it;
7863
7864 if (!nic.areDefaultSettings(m->sv))
7865 {
7866 xml::ElementNode *pelmAdapter = pelmNetwork->createChild("Adapter");
7867 pelmAdapter->setAttribute("slot", nic.ulSlot);
7868 if (nic.fEnabled)
7869 pelmAdapter->setAttribute("enabled", nic.fEnabled);
7870 if (!nic.strMACAddress.isEmpty())
7871 pelmAdapter->setAttribute("MACAddress", nic.strMACAddress);
7872 if ( (m->sv >= SettingsVersion_v1_16 && !nic.fCableConnected)
7873 || (m->sv < SettingsVersion_v1_16 && nic.fCableConnected))
7874 pelmAdapter->setAttribute("cable", nic.fCableConnected);
7875 if (nic.ulLineSpeed)
7876 pelmAdapter->setAttribute("speed", nic.ulLineSpeed);
7877 if (nic.ulBootPriority != 0)
7878 pelmAdapter->setAttribute("bootPriority", nic.ulBootPriority);
7879 if (nic.fTraceEnabled)
7880 {
7881 pelmAdapter->setAttribute("trace", nic.fTraceEnabled);
7882 pelmAdapter->setAttribute("tracefile", nic.strTraceFile);
7883 }
7884 if (nic.strBandwidthGroup.isNotEmpty())
7885 pelmAdapter->setAttribute("bandwidthGroup", nic.strBandwidthGroup);
7886
7887 const char *pszPolicy;
7888 switch (nic.enmPromiscModePolicy)
7889 {
7890 case NetworkAdapterPromiscModePolicy_Deny: pszPolicy = NULL; break;
7891 case NetworkAdapterPromiscModePolicy_AllowNetwork: pszPolicy = "AllowNetwork"; break;
7892 case NetworkAdapterPromiscModePolicy_AllowAll: pszPolicy = "AllowAll"; break;
7893 default: pszPolicy = NULL; AssertFailed(); break;
7894 }
7895 if (pszPolicy)
7896 pelmAdapter->setAttribute("promiscuousModePolicy", pszPolicy);
7897
7898 if ( (m->sv >= SettingsVersion_v1_16 && nic.type != NetworkAdapterType_Am79C973)
7899 || (m->sv < SettingsVersion_v1_16 && nic.type != NetworkAdapterType_Am79C970A))
7900 {
7901 const char *pcszType;
7902 switch (nic.type)
7903 {
7904 case NetworkAdapterType_Am79C973: pcszType = "Am79C973"; break;
7905 case NetworkAdapterType_Am79C960: pcszType = "Am79C960"; break;
7906 case NetworkAdapterType_I82540EM: pcszType = "82540EM"; break;
7907 case NetworkAdapterType_I82543GC: pcszType = "82543GC"; break;
7908 case NetworkAdapterType_I82545EM: pcszType = "82545EM"; break;
7909 case NetworkAdapterType_Virtio: pcszType = "virtio"; break;
7910 case NetworkAdapterType_NE1000: pcszType = "NE1000"; break;
7911 case NetworkAdapterType_NE2000: pcszType = "NE2000"; break;
7912 case NetworkAdapterType_WD8003: pcszType = "WD8003"; break;
7913 case NetworkAdapterType_WD8013: pcszType = "WD8013"; break;
7914 case NetworkAdapterType_ELNK2: pcszType = "3C503"; break;
7915 case NetworkAdapterType_ELNK1: pcszType = "3C501"; break;
7916 default: /*case NetworkAdapterType_Am79C970A:*/ pcszType = "Am79C970A"; break;
7917 }
7918 pelmAdapter->setAttribute("type", pcszType);
7919 }
7920
7921 xml::ElementNode *pelmNAT;
7922 if (m->sv < SettingsVersion_v1_10)
7923 {
7924 switch (nic.mode)
7925 {
7926 case NetworkAttachmentType_NAT:
7927 pelmNAT = pelmAdapter->createChild("NAT");
7928 if (nic.nat.strNetwork.length())
7929 pelmNAT->setAttribute("network", nic.nat.strNetwork);
7930 break;
7931
7932 case NetworkAttachmentType_Bridged:
7933 pelmAdapter->createChild("BridgedInterface")->setAttribute("name", nic.strBridgedName);
7934 break;
7935
7936 case NetworkAttachmentType_Internal:
7937 pelmAdapter->createChild("InternalNetwork")->setAttribute("name", nic.strInternalNetworkName);
7938 break;
7939
7940 case NetworkAttachmentType_HostOnly:
7941 pelmAdapter->createChild("HostOnlyInterface")->setAttribute("name", nic.strHostOnlyName);
7942 break;
7943
7944 default: /*case NetworkAttachmentType_Null:*/
7945 break;
7946 }
7947 }
7948 else
7949 {
7950 /* m->sv >= SettingsVersion_v1_10 */
7951 if (!nic.areDisabledDefaultSettings(m->sv))
7952 {
7953 xml::ElementNode *pelmDisabledNode = pelmAdapter->createChild("DisabledModes");
7954 if (nic.mode != NetworkAttachmentType_NAT)
7955 buildNetworkXML(NetworkAttachmentType_NAT, false, *pelmDisabledNode, nic);
7956 if (nic.mode != NetworkAttachmentType_Bridged)
7957 buildNetworkXML(NetworkAttachmentType_Bridged, false, *pelmDisabledNode, nic);
7958 if (nic.mode != NetworkAttachmentType_Internal)
7959 buildNetworkXML(NetworkAttachmentType_Internal, false, *pelmDisabledNode, nic);
7960 if (nic.mode != NetworkAttachmentType_HostOnly)
7961 buildNetworkXML(NetworkAttachmentType_HostOnly, false, *pelmDisabledNode, nic);
7962 if (nic.mode != NetworkAttachmentType_Generic)
7963 buildNetworkXML(NetworkAttachmentType_Generic, false, *pelmDisabledNode, nic);
7964 if (nic.mode != NetworkAttachmentType_NATNetwork)
7965 buildNetworkXML(NetworkAttachmentType_NATNetwork, false, *pelmDisabledNode, nic);
7966#ifdef VBOX_WITH_CLOUD_NET
7967 /// @todo Bump settings version!
7968 if (nic.mode != NetworkAttachmentType_Cloud)
7969 buildNetworkXML(NetworkAttachmentType_Cloud, false, *pelmDisabledNode, nic);
7970#endif /* VBOX_WITH_CLOUD_NET */
7971#ifdef VBOX_WITH_VMNET
7972 if (nic.mode != NetworkAttachmentType_HostOnlyNetwork)
7973 buildNetworkXML(NetworkAttachmentType_HostOnlyNetwork, false, *pelmDisabledNode, nic);
7974#endif /* VBOX_WITH_VMNET */
7975 }
7976 buildNetworkXML(nic.mode, true, *pelmAdapter, nic);
7977 }
7978 }
7979 }
7980 }
7981
7982 if (hw.llSerialPorts.size())
7983 {
7984 xml::ElementNode *pelmPorts = pelmHardware->createChild("UART");
7985 for (SerialPortsList::const_iterator it = hw.llSerialPorts.begin();
7986 it != hw.llSerialPorts.end();
7987 ++it)
7988 {
7989 const SerialPort &port = *it;
7990 xml::ElementNode *pelmPort = pelmPorts->createChild("Port");
7991 pelmPort->setAttribute("slot", port.ulSlot);
7992 pelmPort->setAttribute("enabled", port.fEnabled);
7993 pelmPort->setAttributeHex("IOAddress", port.ulIOAddress);
7994 pelmPort->setAttribute("IRQ", port.ulIRQ);
7995
7996 const char *pcszHostMode;
7997 switch (port.portMode)
7998 {
7999 case PortMode_HostPipe: pcszHostMode = "HostPipe"; break;
8000 case PortMode_HostDevice: pcszHostMode = "HostDevice"; break;
8001 case PortMode_TCP: pcszHostMode = "TCP"; break;
8002 case PortMode_RawFile: pcszHostMode = "RawFile"; break;
8003 default: /*case PortMode_Disconnected:*/ pcszHostMode = "Disconnected"; break;
8004 }
8005 switch (port.portMode)
8006 {
8007 case PortMode_TCP:
8008 case PortMode_HostPipe:
8009 pelmPort->setAttribute("server", port.fServer);
8010 RT_FALL_THRU();
8011 case PortMode_HostDevice:
8012 case PortMode_RawFile:
8013 pelmPort->setAttribute("path", port.strPath);
8014 break;
8015
8016 default:
8017 break;
8018 }
8019 pelmPort->setAttribute("hostMode", pcszHostMode);
8020
8021 if ( m->sv >= SettingsVersion_v1_17
8022 && port.uartType != UartType_U16550A)
8023 {
8024 const char *pcszUartType;
8025
8026 switch (port.uartType)
8027 {
8028 case UartType_U16450: pcszUartType = "16450"; break;
8029 case UartType_U16550A: pcszUartType = "16550A"; break;
8030 case UartType_U16750: pcszUartType = "16750"; break;
8031 default: pcszUartType = "16550A"; break;
8032 }
8033 pelmPort->setAttribute("uartType", pcszUartType);
8034 }
8035 }
8036 }
8037
8038 if (hw.llParallelPorts.size())
8039 {
8040 xml::ElementNode *pelmPorts = pelmHardware->createChild("LPT");
8041 for (ParallelPortsList::const_iterator it = hw.llParallelPorts.begin();
8042 it != hw.llParallelPorts.end();
8043 ++it)
8044 {
8045 const ParallelPort &port = *it;
8046 xml::ElementNode *pelmPort = pelmPorts->createChild("Port");
8047 pelmPort->setAttribute("slot", port.ulSlot);
8048 pelmPort->setAttribute("enabled", port.fEnabled);
8049 pelmPort->setAttributeHex("IOBase", port.ulIOBase);
8050 pelmPort->setAttribute("IRQ", port.ulIRQ);
8051 if (port.strPath.length())
8052 pelmPort->setAttribute("path", port.strPath);
8053 }
8054 }
8055
8056 /* Always write the AudioAdapter config, intentionally not checking if
8057 * the settings are at the default, because that would be problematic
8058 * for the configured host driver type, which would automatically change
8059 * if the default host driver is detected differently. */
8060 {
8061 xml::ElementNode *pelmAudio = pelmHardware->createChild("AudioAdapter");
8062
8063 const char *pcszController;
8064 switch (hw.audioAdapter.controllerType)
8065 {
8066 case AudioControllerType_SB16:
8067 pcszController = "SB16";
8068 break;
8069 case AudioControllerType_HDA:
8070 if (m->sv >= SettingsVersion_v1_11)
8071 {
8072 pcszController = "HDA";
8073 break;
8074 }
8075 RT_FALL_THRU();
8076 case AudioControllerType_AC97:
8077 default:
8078 pcszController = NULL;
8079 break;
8080 }
8081 if (pcszController)
8082 pelmAudio->setAttribute("controller", pcszController);
8083
8084 const char *pcszCodec;
8085 switch (hw.audioAdapter.codecType)
8086 {
8087 /* Only write out the setting for non-default AC'97 codec
8088 * and leave the rest alone.
8089 */
8090#if 0
8091 case AudioCodecType_SB16:
8092 pcszCodec = "SB16";
8093 break;
8094 case AudioCodecType_STAC9221:
8095 pcszCodec = "STAC9221";
8096 break;
8097 case AudioCodecType_STAC9700:
8098 pcszCodec = "STAC9700";
8099 break;
8100#endif
8101 case AudioCodecType_AD1980:
8102 pcszCodec = "AD1980";
8103 break;
8104 default:
8105 /* Don't write out anything if unknown. */
8106 pcszCodec = NULL;
8107 }
8108 if (pcszCodec)
8109 pelmAudio->setAttribute("codec", pcszCodec);
8110
8111 /*
8112 * Keep settings >= 1.19 compatible with older VBox versions (on a best effort basis, of course).
8113 * So use a dedicated attribute for the new "Default" audio driver type, which did not exist prior
8114 * settings 1.19 (VBox 7.0) and explicitly set the driver type to something older VBox versions
8115 * know about.
8116 */
8117 AudioDriverType_T driverType = hw.audioAdapter.driverType;
8118
8119 if (driverType == AudioDriverType_Default)
8120 {
8121 /* Only recognized by VBox >= 7.0. */
8122 pelmAudio->setAttribute("useDefault", true);
8123
8124 /* Make sure to set the actual driver type to the OS' default driver type.
8125 * This is required for VBox < 7.0. */
8126 driverType = getHostDefaultAudioDriver();
8127 }
8128
8129 const char *pcszDriver = NULL;
8130 switch (driverType)
8131 {
8132 case AudioDriverType_Default: /* Handled above. */ break;
8133 case AudioDriverType_WinMM: pcszDriver = "WinMM"; break;
8134 case AudioDriverType_DirectSound: pcszDriver = "DirectSound"; break;
8135 case AudioDriverType_WAS: pcszDriver = "WAS"; break;
8136 case AudioDriverType_ALSA: pcszDriver = "ALSA"; break;
8137 case AudioDriverType_OSS: pcszDriver = "OSS"; break;
8138 case AudioDriverType_Pulse: pcszDriver = "Pulse"; break;
8139 case AudioDriverType_CoreAudio: pcszDriver = "CoreAudio"; break;
8140 case AudioDriverType_SolAudio: pcszDriver = "SolAudio"; break;
8141 case AudioDriverType_MMPM: pcszDriver = "MMPM"; break;
8142 default: /*case AudioDriverType_Null:*/ pcszDriver = "Null"; break;
8143 }
8144
8145 /* Deliberately have the audio driver explicitly in the config file,
8146 * otherwise an unwritten default driver triggers auto-detection. */
8147 AssertStmt(pcszDriver != NULL, pcszDriver = "Null");
8148 pelmAudio->setAttribute("driver", pcszDriver);
8149
8150 if (hw.audioAdapter.fEnabled || m->sv < SettingsVersion_v1_16)
8151 pelmAudio->setAttribute("enabled", hw.audioAdapter.fEnabled);
8152
8153 if ( (m->sv <= SettingsVersion_v1_16 && !hw.audioAdapter.fEnabledIn)
8154 || (m->sv > SettingsVersion_v1_16 && hw.audioAdapter.fEnabledIn))
8155 pelmAudio->setAttribute("enabledIn", hw.audioAdapter.fEnabledIn);
8156
8157 if ( (m->sv <= SettingsVersion_v1_16 && !hw.audioAdapter.fEnabledOut)
8158 || (m->sv > SettingsVersion_v1_16 && hw.audioAdapter.fEnabledOut))
8159 pelmAudio->setAttribute("enabledOut", hw.audioAdapter.fEnabledOut);
8160
8161 if (m->sv >= SettingsVersion_v1_15 && hw.audioAdapter.properties.size() > 0)
8162 {
8163 for (StringsMap::const_iterator it = hw.audioAdapter.properties.begin();
8164 it != hw.audioAdapter.properties.end();
8165 ++it)
8166 {
8167 const Utf8Str &strName = it->first;
8168 const Utf8Str &strValue = it->second;
8169 xml::ElementNode *pelm = pelmAudio->createChild("Property");
8170 pelm->setAttribute("name", strName);
8171 pelm->setAttribute("value", strValue);
8172 }
8173 }
8174 }
8175
8176 if (hw.llSharedFolders.size())
8177 {
8178 xml::ElementNode *pelmSharedFolders = pelmHardware->createChild("SharedFolders");
8179 for (SharedFoldersList::const_iterator it = hw.llSharedFolders.begin();
8180 it != hw.llSharedFolders.end();
8181 ++it)
8182 {
8183 const SharedFolder &sf = *it;
8184 xml::ElementNode *pelmThis = pelmSharedFolders->createChild("SharedFolder");
8185 pelmThis->setAttribute("name", sf.strName);
8186 pelmThis->setAttribute("hostPath", sf.strHostPath);
8187 pelmThis->setAttribute("writable", sf.fWritable);
8188 pelmThis->setAttribute("autoMount", sf.fAutoMount);
8189 if (sf.strAutoMountPoint.isNotEmpty())
8190 pelmThis->setAttribute("autoMountPoint", sf.strAutoMountPoint);
8191 }
8192 }
8193
8194 xml::ElementNode *pelmClip = pelmHardware->createChild("Clipboard");
8195 if (pelmClip)
8196 {
8197 if (hw.clipboardMode != ClipboardMode_Disabled)
8198 {
8199 const char *pcszClip;
8200 switch (hw.clipboardMode)
8201 {
8202 default: /*case ClipboardMode_Disabled:*/ pcszClip = "Disabled"; break;
8203 case ClipboardMode_HostToGuest: pcszClip = "HostToGuest"; break;
8204 case ClipboardMode_GuestToHost: pcszClip = "GuestToHost"; break;
8205 case ClipboardMode_Bidirectional: pcszClip = "Bidirectional"; break;
8206 }
8207 pelmClip->setAttribute("mode", pcszClip);
8208 }
8209
8210 if (hw.fClipboardFileTransfersEnabled)
8211 pelmClip->setAttribute("fileTransfersEnabled", hw.fClipboardFileTransfersEnabled);
8212 }
8213
8214 if (hw.dndMode != DnDMode_Disabled)
8215 {
8216 xml::ElementNode *pelmDragAndDrop = pelmHardware->createChild("DragAndDrop");
8217 const char *pcszDragAndDrop;
8218 switch (hw.dndMode)
8219 {
8220 default: /*case DnDMode_Disabled:*/ pcszDragAndDrop = "Disabled"; break;
8221 case DnDMode_HostToGuest: pcszDragAndDrop = "HostToGuest"; break;
8222 case DnDMode_GuestToHost: pcszDragAndDrop = "GuestToHost"; break;
8223 case DnDMode_Bidirectional: pcszDragAndDrop = "Bidirectional"; break;
8224 }
8225 pelmDragAndDrop->setAttribute("mode", pcszDragAndDrop);
8226 }
8227
8228 if ( m->sv >= SettingsVersion_v1_10
8229 && !hw.ioSettings.areDefaultSettings())
8230 {
8231 xml::ElementNode *pelmIO = pelmHardware->createChild("IO");
8232 xml::ElementNode *pelmIOCache;
8233
8234 if (!hw.ioSettings.areDefaultSettings())
8235 {
8236 pelmIOCache = pelmIO->createChild("IoCache");
8237 if (!hw.ioSettings.fIOCacheEnabled)
8238 pelmIOCache->setAttribute("enabled", hw.ioSettings.fIOCacheEnabled);
8239 if (hw.ioSettings.ulIOCacheSize != 5)
8240 pelmIOCache->setAttribute("size", hw.ioSettings.ulIOCacheSize);
8241 }
8242
8243 if ( m->sv >= SettingsVersion_v1_11
8244 && hw.ioSettings.llBandwidthGroups.size())
8245 {
8246 xml::ElementNode *pelmBandwidthGroups = pelmIO->createChild("BandwidthGroups");
8247 for (BandwidthGroupList::const_iterator it = hw.ioSettings.llBandwidthGroups.begin();
8248 it != hw.ioSettings.llBandwidthGroups.end();
8249 ++it)
8250 {
8251 const BandwidthGroup &gr = *it;
8252 const char *pcszType;
8253 xml::ElementNode *pelmThis = pelmBandwidthGroups->createChild("BandwidthGroup");
8254 pelmThis->setAttribute("name", gr.strName);
8255 switch (gr.enmType)
8256 {
8257 case BandwidthGroupType_Network: pcszType = "Network"; break;
8258 default: /* BandwidthGrouptype_Disk */ pcszType = "Disk"; break;
8259 }
8260 pelmThis->setAttribute("type", pcszType);
8261 if (m->sv >= SettingsVersion_v1_13)
8262 pelmThis->setAttribute("maxBytesPerSec", gr.cMaxBytesPerSec);
8263 else
8264 pelmThis->setAttribute("maxMbPerSec", gr.cMaxBytesPerSec / _1M);
8265 }
8266 }
8267 }
8268
8269 if ( m->sv >= SettingsVersion_v1_12
8270 && hw.pciAttachments.size())
8271 {
8272 xml::ElementNode *pelmPCI = pelmHardware->createChild("HostPci");
8273 xml::ElementNode *pelmPCIDevices = pelmPCI->createChild("Devices");
8274
8275 for (HostPCIDeviceAttachmentList::const_iterator it = hw.pciAttachments.begin();
8276 it != hw.pciAttachments.end();
8277 ++it)
8278 {
8279 const HostPCIDeviceAttachment &hpda = *it;
8280
8281 xml::ElementNode *pelmThis = pelmPCIDevices->createChild("Device");
8282
8283 pelmThis->setAttribute("host", hpda.uHostAddress);
8284 pelmThis->setAttribute("guest", hpda.uGuestAddress);
8285 pelmThis->setAttribute("name", hpda.strDeviceName);
8286 }
8287 }
8288
8289 if ( m->sv >= SettingsVersion_v1_12
8290 && hw.fEmulatedUSBCardReader)
8291 {
8292 xml::ElementNode *pelmEmulatedUSB = pelmHardware->createChild("EmulatedUSB");
8293
8294 xml::ElementNode *pelmCardReader = pelmEmulatedUSB->createChild("CardReader");
8295 pelmCardReader->setAttribute("enabled", hw.fEmulatedUSBCardReader);
8296 }
8297
8298 if ( m->sv >= SettingsVersion_v1_14
8299 && !hw.strDefaultFrontend.isEmpty())
8300 {
8301 xml::ElementNode *pelmFrontend = pelmHardware->createChild("Frontend");
8302 xml::ElementNode *pelmDefault = pelmFrontend->createChild("Default");
8303 pelmDefault->setAttribute("type", hw.strDefaultFrontend);
8304 }
8305
8306 if (hw.ulMemoryBalloonSize)
8307 {
8308 xml::ElementNode *pelmGuest = pelmHardware->createChild("Guest");
8309 pelmGuest->setAttribute("memoryBalloonSize", hw.ulMemoryBalloonSize);
8310 }
8311
8312 if (hw.llGuestProperties.size())
8313 {
8314 xml::ElementNode *pelmGuestProps = pelmHardware->createChild("GuestProperties");
8315 for (GuestPropertiesList::const_iterator it = hw.llGuestProperties.begin();
8316 it != hw.llGuestProperties.end();
8317 ++it)
8318 {
8319 const GuestProperty &prop = *it;
8320 xml::ElementNode *pelmProp = pelmGuestProps->createChild("GuestProperty");
8321 pelmProp->setAttribute("name", prop.strName);
8322 pelmProp->setAttribute("value", prop.strValue);
8323 pelmProp->setAttribute("timestamp", prop.timestamp);
8324 pelmProp->setAttribute("flags", prop.strFlags);
8325 }
8326 }
8327
8328 /* Starting with settings version of 6.0 (and only 6.1 and later does this, while
8329 * 5.2 and 6.0 understand it), place storage controller settings under hardware,
8330 * where it always should've been. */
8331 xml::ElementNode &elmStorageParent = (m->sv >= SettingsVersion_v1_17) ? *pelmHardware : elmParent;
8332 buildStorageControllersXML(elmStorageParent,
8333 hw.storage,
8334 !!(fl & BuildMachineXML_SkipRemovableMedia),
8335 pllElementsWithUuidAttributes);
8336}
8337
8338/**
8339 * Fill a \<Network\> node. Only relevant for XML version >= v1_10.
8340 * @param mode
8341 * @param fEnabled
8342 * @param elmParent
8343 * @param nic
8344 */
8345void MachineConfigFile::buildNetworkXML(NetworkAttachmentType_T mode,
8346 bool fEnabled,
8347 xml::ElementNode &elmParent,
8348 const NetworkAdapter &nic)
8349{
8350 switch (mode)
8351 {
8352 case NetworkAttachmentType_NAT:
8353 // For the currently active network attachment type we have to
8354 // generate the tag, otherwise the attachment type is lost.
8355 if (fEnabled || !nic.nat.areDefaultSettings(m->sv))
8356 {
8357 xml::ElementNode *pelmNAT = elmParent.createChild("NAT");
8358
8359 if (!nic.nat.areDefaultSettings(m->sv))
8360 {
8361 if (nic.nat.strNetwork.length())
8362 pelmNAT->setAttribute("network", nic.nat.strNetwork);
8363 if (nic.nat.strBindIP.length())
8364 pelmNAT->setAttribute("hostip", nic.nat.strBindIP);
8365 if (nic.nat.u32Mtu)
8366 pelmNAT->setAttribute("mtu", nic.nat.u32Mtu);
8367 if (nic.nat.u32SockRcv)
8368 pelmNAT->setAttribute("sockrcv", nic.nat.u32SockRcv);
8369 if (nic.nat.u32SockSnd)
8370 pelmNAT->setAttribute("socksnd", nic.nat.u32SockSnd);
8371 if (nic.nat.u32TcpRcv)
8372 pelmNAT->setAttribute("tcprcv", nic.nat.u32TcpRcv);
8373 if (nic.nat.u32TcpSnd)
8374 pelmNAT->setAttribute("tcpsnd", nic.nat.u32TcpSnd);
8375 if (!nic.nat.areLocalhostReachableDefaultSettings(m->sv))
8376 pelmNAT->setAttribute("localhost-reachable", nic.nat.fLocalhostReachable);
8377 if (!nic.nat.areDNSDefaultSettings())
8378 {
8379 xml::ElementNode *pelmDNS = pelmNAT->createChild("DNS");
8380 if (!nic.nat.fDNSPassDomain)
8381 pelmDNS->setAttribute("pass-domain", nic.nat.fDNSPassDomain);
8382 if (nic.nat.fDNSProxy)
8383 pelmDNS->setAttribute("use-proxy", nic.nat.fDNSProxy);
8384 if (nic.nat.fDNSUseHostResolver)
8385 pelmDNS->setAttribute("use-host-resolver", nic.nat.fDNSUseHostResolver);
8386 }
8387
8388 if (!nic.nat.areAliasDefaultSettings())
8389 {
8390 xml::ElementNode *pelmAlias = pelmNAT->createChild("Alias");
8391 if (nic.nat.fAliasLog)
8392 pelmAlias->setAttribute("logging", nic.nat.fAliasLog);
8393 if (nic.nat.fAliasProxyOnly)
8394 pelmAlias->setAttribute("proxy-only", nic.nat.fAliasProxyOnly);
8395 if (nic.nat.fAliasUseSamePorts)
8396 pelmAlias->setAttribute("use-same-ports", nic.nat.fAliasUseSamePorts);
8397 }
8398
8399 if (!nic.nat.areTFTPDefaultSettings())
8400 {
8401 xml::ElementNode *pelmTFTP;
8402 pelmTFTP = pelmNAT->createChild("TFTP");
8403 if (nic.nat.strTFTPPrefix.length())
8404 pelmTFTP->setAttribute("prefix", nic.nat.strTFTPPrefix);
8405 if (nic.nat.strTFTPBootFile.length())
8406 pelmTFTP->setAttribute("boot-file", nic.nat.strTFTPBootFile);
8407 if (nic.nat.strTFTPNextServer.length())
8408 pelmTFTP->setAttribute("next-server", nic.nat.strTFTPNextServer);
8409 }
8410 buildNATForwardRulesMap(*pelmNAT, nic.nat.mapRules);
8411 }
8412 }
8413 break;
8414
8415 case NetworkAttachmentType_Bridged:
8416 // For the currently active network attachment type we have to
8417 // generate the tag, otherwise the attachment type is lost.
8418 if (fEnabled || !nic.strBridgedName.isEmpty())
8419 {
8420 xml::ElementNode *pelmMode = elmParent.createChild("BridgedInterface");
8421 if (!nic.strBridgedName.isEmpty())
8422 pelmMode->setAttribute("name", nic.strBridgedName);
8423 }
8424 break;
8425
8426 case NetworkAttachmentType_Internal:
8427 // For the currently active network attachment type we have to
8428 // generate the tag, otherwise the attachment type is lost.
8429 if (fEnabled || !nic.strInternalNetworkName.isEmpty())
8430 {
8431 xml::ElementNode *pelmMode = elmParent.createChild("InternalNetwork");
8432 if (!nic.strInternalNetworkName.isEmpty())
8433 pelmMode->setAttribute("name", nic.strInternalNetworkName);
8434 }
8435 break;
8436
8437 case NetworkAttachmentType_HostOnly:
8438 // For the currently active network attachment type we have to
8439 // generate the tag, otherwise the attachment type is lost.
8440 if (fEnabled || !nic.strHostOnlyName.isEmpty())
8441 {
8442 xml::ElementNode *pelmMode = elmParent.createChild("HostOnlyInterface");
8443 if (!nic.strHostOnlyName.isEmpty())
8444 pelmMode->setAttribute("name", nic.strHostOnlyName);
8445 }
8446 break;
8447
8448#ifdef VBOX_WITH_VMNET
8449 case NetworkAttachmentType_HostOnlyNetwork:
8450 // For the currently active network attachment type we have to
8451 // generate the tag, otherwise the attachment type is lost.
8452 if (fEnabled || !nic.strHostOnlyNetworkName.isEmpty())
8453 {
8454 xml::ElementNode *pelmMode = elmParent.createChild("HostOnlyNetwork");
8455 if (!nic.strHostOnlyNetworkName.isEmpty())
8456 pelmMode->setAttribute("name", nic.strHostOnlyNetworkName);
8457 }
8458 break;
8459#endif /* VBOX_WITH_VMNET */
8460
8461 case NetworkAttachmentType_Generic:
8462 // For the currently active network attachment type we have to
8463 // generate the tag, otherwise the attachment type is lost.
8464 if (fEnabled || !nic.areGenericDriverDefaultSettings())
8465 {
8466 xml::ElementNode *pelmMode = elmParent.createChild("GenericInterface");
8467 if (!nic.areGenericDriverDefaultSettings())
8468 {
8469 pelmMode->setAttribute("driver", nic.strGenericDriver);
8470 for (StringsMap::const_iterator it = nic.genericProperties.begin();
8471 it != nic.genericProperties.end();
8472 ++it)
8473 {
8474 xml::ElementNode *pelmProp = pelmMode->createChild("Property");
8475 pelmProp->setAttribute("name", it->first);
8476 pelmProp->setAttribute("value", it->second);
8477 }
8478 }
8479 }
8480 break;
8481
8482 case NetworkAttachmentType_NATNetwork:
8483 // For the currently active network attachment type we have to
8484 // generate the tag, otherwise the attachment type is lost.
8485 if (fEnabled || !nic.strNATNetworkName.isEmpty())
8486 {
8487 xml::ElementNode *pelmMode = elmParent.createChild("NATNetwork");
8488 if (!nic.strNATNetworkName.isEmpty())
8489 pelmMode->setAttribute("name", nic.strNATNetworkName);
8490 }
8491 break;
8492
8493#ifdef VBOX_WITH_CLOUD_NET
8494 case NetworkAttachmentType_Cloud:
8495 // For the currently active network attachment type we have to
8496 // generate the tag, otherwise the attachment type is lost.
8497 if (fEnabled || !nic.strCloudNetworkName.isEmpty())
8498 {
8499 xml::ElementNode *pelmMode = elmParent.createChild("CloudNetwork");
8500 if (!nic.strCloudNetworkName.isEmpty())
8501 pelmMode->setAttribute("name", nic.strCloudNetworkName);
8502 }
8503 break;
8504#endif /* VBOX_WITH_CLOUD_NET */
8505
8506 default: /*case NetworkAttachmentType_Null:*/
8507 break;
8508 }
8509}
8510
8511/**
8512 * Creates a \<StorageControllers\> node under elmParent and then writes out the XML
8513 * keys under that. Called for both the \<Machine\> node and for snapshots.
8514 * @param elmParent
8515 * @param st
8516 * @param fSkipRemovableMedia If true, DVD and floppy attachments are skipped and
8517 * an empty drive is always written instead. This is for the OVF export case.
8518 * This parameter is ignored unless the settings version is at least v1.9, which
8519 * is always the case when this gets called for OVF export.
8520 * @param pllElementsWithUuidAttributes If not NULL, must point to a list of element node
8521 * pointers to which we will append all elements that we created here that contain
8522 * UUID attributes. This allows the OVF export code to quickly replace the internal
8523 * media UUIDs with the UUIDs of the media that were exported.
8524 */
8525void MachineConfigFile::buildStorageControllersXML(xml::ElementNode &elmParent,
8526 const Storage &st,
8527 bool fSkipRemovableMedia,
8528 std::list<xml::ElementNode*> *pllElementsWithUuidAttributes)
8529{
8530 if (!st.llStorageControllers.size())
8531 return;
8532 xml::ElementNode *pelmStorageControllers = elmParent.createChild("StorageControllers");
8533
8534 for (StorageControllersList::const_iterator it = st.llStorageControllers.begin();
8535 it != st.llStorageControllers.end();
8536 ++it)
8537 {
8538 const StorageController &sc = *it;
8539
8540 if ( (m->sv < SettingsVersion_v1_9)
8541 && (sc.controllerType == StorageControllerType_I82078)
8542 )
8543 // floppy controller already got written into <Hardware>/<FloppyController> in buildHardwareXML()
8544 // for pre-1.9 settings
8545 continue;
8546
8547 xml::ElementNode *pelmController = pelmStorageControllers->createChild("StorageController");
8548 com::Utf8Str name = sc.strName;
8549 if (m->sv < SettingsVersion_v1_8)
8550 {
8551 // pre-1.8 settings use shorter controller names, they are
8552 // expanded when reading the settings
8553 if (name == "IDE Controller")
8554 name = "IDE";
8555 else if (name == "SATA Controller")
8556 name = "SATA";
8557 else if (name == "SCSI Controller")
8558 name = "SCSI";
8559 }
8560 pelmController->setAttribute("name", sc.strName);
8561
8562 const char *pcszType;
8563 switch (sc.controllerType)
8564 {
8565 case StorageControllerType_IntelAhci: pcszType = "AHCI"; break;
8566 case StorageControllerType_LsiLogic: pcszType = "LsiLogic"; break;
8567 case StorageControllerType_BusLogic: pcszType = "BusLogic"; break;
8568 case StorageControllerType_PIIX4: pcszType = "PIIX4"; break;
8569 case StorageControllerType_ICH6: pcszType = "ICH6"; break;
8570 case StorageControllerType_I82078: pcszType = "I82078"; break;
8571 case StorageControllerType_LsiLogicSas: pcszType = "LsiLogicSas"; break;
8572 case StorageControllerType_USB: pcszType = "USB"; break;
8573 case StorageControllerType_NVMe: pcszType = "NVMe"; break;
8574 case StorageControllerType_VirtioSCSI: pcszType = "VirtioSCSI"; break;
8575 default: /*case StorageControllerType_PIIX3:*/ pcszType = "PIIX3"; break;
8576 }
8577 pelmController->setAttribute("type", pcszType);
8578
8579 pelmController->setAttribute("PortCount", sc.ulPortCount);
8580
8581 if (m->sv >= SettingsVersion_v1_9)
8582 if (sc.ulInstance)
8583 pelmController->setAttribute("Instance", sc.ulInstance);
8584
8585 if (m->sv >= SettingsVersion_v1_10)
8586 pelmController->setAttribute("useHostIOCache", sc.fUseHostIOCache);
8587
8588 if (m->sv >= SettingsVersion_v1_11)
8589 pelmController->setAttribute("Bootable", sc.fBootable);
8590
8591 if (sc.controllerType == StorageControllerType_IntelAhci)
8592 {
8593 pelmController->setAttribute("IDE0MasterEmulationPort", 0);
8594 pelmController->setAttribute("IDE0SlaveEmulationPort", 1);
8595 pelmController->setAttribute("IDE1MasterEmulationPort", 2);
8596 pelmController->setAttribute("IDE1SlaveEmulationPort", 3);
8597 }
8598
8599 for (AttachedDevicesList::const_iterator it2 = sc.llAttachedDevices.begin();
8600 it2 != sc.llAttachedDevices.end();
8601 ++it2)
8602 {
8603 const AttachedDevice &att = *it2;
8604
8605 // For settings version before 1.9, DVDs and floppies are in hardware, not storage controllers,
8606 // so we shouldn't write them here; we only get here for DVDs though because we ruled out
8607 // the floppy controller at the top of the loop
8608 if ( att.deviceType == DeviceType_DVD
8609 && m->sv < SettingsVersion_v1_9
8610 )
8611 continue;
8612
8613 xml::ElementNode *pelmDevice = pelmController->createChild("AttachedDevice");
8614
8615 pcszType = NULL;
8616
8617 switch (att.deviceType)
8618 {
8619 case DeviceType_HardDisk:
8620 pcszType = "HardDisk";
8621 if (att.fNonRotational)
8622 pelmDevice->setAttribute("nonrotational", att.fNonRotational);
8623 if (att.fDiscard)
8624 pelmDevice->setAttribute("discard", att.fDiscard);
8625 break;
8626
8627 case DeviceType_DVD:
8628 pcszType = "DVD";
8629 pelmDevice->setAttribute("passthrough", att.fPassThrough);
8630 if (att.fTempEject)
8631 pelmDevice->setAttribute("tempeject", att.fTempEject);
8632 break;
8633
8634 case DeviceType_Floppy:
8635 pcszType = "Floppy";
8636 break;
8637
8638 default: break; /* Shut up MSC. */
8639 }
8640
8641 pelmDevice->setAttribute("type", pcszType);
8642
8643 if (m->sv >= SettingsVersion_v1_15)
8644 pelmDevice->setAttribute("hotpluggable", att.fHotPluggable);
8645
8646 pelmDevice->setAttribute("port", att.lPort);
8647 pelmDevice->setAttribute("device", att.lDevice);
8648
8649 if (att.strBwGroup.length())
8650 pelmDevice->setAttribute("bandwidthGroup", att.strBwGroup);
8651
8652 // attached image, if any
8653 if (!att.uuid.isZero()
8654 && att.uuid.isValid()
8655 && (att.deviceType == DeviceType_HardDisk
8656 || !fSkipRemovableMedia
8657 )
8658 )
8659 {
8660 xml::ElementNode *pelmImage = pelmDevice->createChild("Image");
8661 pelmImage->setAttribute("uuid", att.uuid.toStringCurly());
8662
8663 // if caller wants a list of UUID elements, give it to them
8664 if (pllElementsWithUuidAttributes)
8665 pllElementsWithUuidAttributes->push_back(pelmImage);
8666 }
8667 else if ( (m->sv >= SettingsVersion_v1_9)
8668 && (att.strHostDriveSrc.length())
8669 )
8670 pelmDevice->createChild("HostDrive")->setAttribute("src", att.strHostDriveSrc);
8671 }
8672 }
8673}
8674
8675/**
8676 * Creates a \<Debugging\> node under elmParent and then writes out the XML
8677 * keys under that. Called for both the \<Machine\> node and for snapshots.
8678 *
8679 * @param elmParent Parent element.
8680 * @param dbg Debugging settings.
8681 */
8682void MachineConfigFile::buildDebuggingXML(xml::ElementNode &elmParent, const Debugging &dbg)
8683{
8684 if (m->sv < SettingsVersion_v1_13 || dbg.areDefaultSettings())
8685 return;
8686
8687 xml::ElementNode *pElmDebugging = elmParent.createChild("Debugging");
8688 xml::ElementNode *pElmTracing = pElmDebugging->createChild("Tracing");
8689 pElmTracing->setAttribute("enabled", dbg.fTracingEnabled);
8690 pElmTracing->setAttribute("allowTracingToAccessVM", dbg.fAllowTracingToAccessVM);
8691 pElmTracing->setAttribute("config", dbg.strTracingConfig);
8692
8693 xml::ElementNode *pElmGuestDebug = pElmDebugging->createChild("GuestDebug");
8694 const char *pcszDebugProvider = NULL;
8695 const char *pcszIoProvider = NULL;
8696
8697 switch (dbg.enmDbgProvider)
8698 {
8699 case GuestDebugProvider_None: pcszDebugProvider = "None"; break;
8700 case GuestDebugProvider_GDB: pcszDebugProvider = "GDB"; break;
8701 case GuestDebugProvider_KD: pcszDebugProvider = "KD"; break;
8702 default: AssertFailed(); pcszDebugProvider = "None"; break;
8703 }
8704
8705 switch (dbg.enmIoProvider)
8706 {
8707 case GuestDebugIoProvider_None: pcszIoProvider = "None"; break;
8708 case GuestDebugIoProvider_TCP: pcszIoProvider = "TCP"; break;
8709 case GuestDebugIoProvider_UDP: pcszIoProvider = "UDP"; break;
8710 case GuestDebugIoProvider_IPC: pcszIoProvider = "IPC"; break;
8711 default: AssertFailed(); pcszIoProvider = "None"; break;
8712 }
8713
8714 pElmGuestDebug->setAttribute("provider", pcszDebugProvider);
8715 pElmGuestDebug->setAttribute("io", pcszIoProvider);
8716 pElmGuestDebug->setAttribute("address", dbg.strAddress);
8717 pElmGuestDebug->setAttribute("port", dbg.ulPort);
8718}
8719
8720/**
8721 * Creates a \<Autostart\> node under elmParent and then writes out the XML
8722 * keys under that. Called for both the \<Machine\> node and for snapshots.
8723 *
8724 * @param elmParent Parent element.
8725 * @param autostrt Autostart settings.
8726 */
8727void MachineConfigFile::buildAutostartXML(xml::ElementNode &elmParent, const Autostart &autostrt)
8728{
8729 const char *pcszAutostop = NULL;
8730
8731 if (m->sv < SettingsVersion_v1_13 || autostrt.areDefaultSettings())
8732 return;
8733
8734 xml::ElementNode *pElmAutostart = elmParent.createChild("Autostart");
8735 pElmAutostart->setAttribute("enabled", autostrt.fAutostartEnabled);
8736 pElmAutostart->setAttribute("delay", autostrt.uAutostartDelay);
8737
8738 switch (autostrt.enmAutostopType)
8739 {
8740 case AutostopType_Disabled: pcszAutostop = "Disabled"; break;
8741 case AutostopType_SaveState: pcszAutostop = "SaveState"; break;
8742 case AutostopType_PowerOff: pcszAutostop = "PowerOff"; break;
8743 case AutostopType_AcpiShutdown: pcszAutostop = "AcpiShutdown"; break;
8744 default: Assert(false); pcszAutostop = "Disabled"; break;
8745 }
8746 pElmAutostart->setAttribute("autostop", pcszAutostop);
8747}
8748
8749void MachineConfigFile::buildRecordingXML(xml::ElementNode &elmParent, const RecordingSettings &recording)
8750{
8751 if (recording.areDefaultSettings()) /* Omit branch if we still have the default settings (i.e. nothing to save). */
8752 return;
8753
8754 AssertReturnVoid(recording.mapScreens.size() <= 64); /* Make sure we never exceed the bitmap of 64 monitors. */
8755
8756 /* Note: Since settings 1.19 the recording settings have a dedicated XML branch outside of Hardware. */
8757 if (m->sv >= SettingsVersion_v1_19 /* VBox >= 7.0 */)
8758 {
8759 /* Note: elmParent is Machine or Snapshot. */
8760 xml::ElementNode *pelmRecording = elmParent.createChild("Recording");
8761
8762 if (!recordingSettings.common.areDefaultSettings())
8763 {
8764 pelmRecording->setAttribute("enabled", recording.common.fEnabled);
8765 }
8766
8767 /* Only serialize screens which have non-default settings. */
8768 uint32_t cScreensToWrite = 0;
8769
8770 RecordingScreenSettingsMap::const_iterator itScreen = recording.mapScreens.begin();
8771 while (itScreen != recording.mapScreens.end())
8772 {
8773 if (!itScreen->second.areDefaultSettings())
8774 cScreensToWrite++;
8775 ++itScreen;
8776 }
8777
8778 if (cScreensToWrite)
8779 pelmRecording->setAttribute("screens", cScreensToWrite);
8780
8781 itScreen = recording.mapScreens.begin();
8782 while (itScreen != recording.mapScreens.end())
8783 {
8784 if (!itScreen->second.areDefaultSettings()) /* Skip serializing screen settings which have default settings. */
8785 {
8786 xml::ElementNode *pelmScreen = pelmRecording->createChild("Screen");
8787
8788 pelmScreen->setAttribute("id", itScreen->first); /* The key equals the monitor ID. */
8789 pelmScreen->setAttribute("enabled", itScreen->second.fEnabled);
8790 com::Utf8Str strTemp;
8791 RecordingScreenSettings::featuresToString(itScreen->second.featureMap, strTemp);
8792 pelmScreen->setAttribute("featuresEnabled", strTemp);
8793 if (itScreen->second.ulMaxTimeS)
8794 pelmScreen->setAttribute("maxTimeS", itScreen->second.ulMaxTimeS);
8795 if (itScreen->second.strOptions.isNotEmpty())
8796 pelmScreen->setAttributePath("options", itScreen->second.strOptions);
8797 pelmScreen->setAttribute("dest", itScreen->second.enmDest);
8798 if (!itScreen->second.File.strName.isEmpty())
8799 pelmScreen->setAttributePath("file", itScreen->second.File.strName);
8800 if (itScreen->second.File.ulMaxSizeMB)
8801 pelmScreen->setAttribute("maxSizeMB", itScreen->second.File.ulMaxSizeMB);
8802
8803 RecordingScreenSettings::videoCodecToString(itScreen->second.Video.enmCodec, strTemp);
8804 pelmScreen->setAttribute("videoCodec", strTemp);
8805 if (itScreen->second.Video.enmDeadline != RecordingCodecDeadline_Default)
8806 pelmScreen->setAttribute("videoDeadline", itScreen->second.Video.enmDeadline);
8807 if (itScreen->second.Video.enmRateCtlMode != RecordingRateControlMode_VBR) /* Is default. */
8808 pelmScreen->setAttribute("videoRateCtlMode", itScreen->second.Video.enmRateCtlMode);
8809 if (itScreen->second.Video.enmScalingMode != RecordingVideoScalingMode_None)
8810 pelmScreen->setAttribute("videoScalingMode",itScreen->second.Video.enmScalingMode);
8811 if ( itScreen->second.Video.ulWidth != 1024
8812 || itScreen->second.Video.ulHeight != 768)
8813 {
8814 pelmScreen->setAttribute("horzRes", itScreen->second.Video.ulWidth);
8815 pelmScreen->setAttribute("vertRes", itScreen->second.Video.ulHeight);
8816 }
8817 if (itScreen->second.Video.ulRate != 512)
8818 pelmScreen->setAttribute("rateKbps", itScreen->second.Video.ulRate);
8819 if (itScreen->second.Video.ulFPS)
8820 pelmScreen->setAttribute("fps", itScreen->second.Video.ulFPS);
8821
8822 RecordingScreenSettings::audioCodecToString(itScreen->second.Audio.enmCodec, strTemp);
8823 pelmScreen->setAttribute("audioCodec", strTemp);
8824 if (itScreen->second.Audio.enmDeadline != RecordingCodecDeadline_Default)
8825 pelmScreen->setAttribute("audioDeadline", itScreen->second.Audio.enmDeadline);
8826 if (itScreen->second.Audio.enmRateCtlMode != RecordingRateControlMode_VBR) /* Is default. */
8827 pelmScreen->setAttribute("audioRateCtlMode", itScreen->second.Audio.enmRateCtlMode);
8828 if (itScreen->second.Audio.uHz != 22050)
8829 pelmScreen->setAttribute("audioHz", itScreen->second.Audio.uHz);
8830 if (itScreen->second.Audio.cBits != 16)
8831 pelmScreen->setAttribute("audioBits", itScreen->second.Audio.cBits);
8832 if (itScreen->second.Audio.cChannels != 2)
8833 pelmScreen->setAttribute("audioChannels", itScreen->second.Audio.cChannels);
8834 }
8835 ++itScreen;
8836 }
8837 }
8838 else if ( m->sv >= SettingsVersion_v1_14
8839 && m->sv < SettingsVersion_v1_19 /* VBox < 7.0 */)
8840 {
8841 /* Note: elmParent is Hardware or Snapshot. */
8842 xml::ElementNode *pelmVideoCapture = elmParent.createChild("VideoCapture");
8843
8844 if (!recordingSettings.common.areDefaultSettings())
8845 {
8846 pelmVideoCapture->setAttribute("enabled", recording.common.fEnabled);
8847 }
8848
8849 /* Convert the enabled screens to the former uint64_t bit array and vice versa. */
8850 uint64_t uScreensBitmap = 0;
8851 RecordingScreenSettingsMap::const_iterator itScreen = recording.mapScreens.begin();
8852 while (itScreen != recording.mapScreens.end())
8853 {
8854 if (itScreen->second.fEnabled)
8855 uScreensBitmap |= RT_BIT_64(itScreen->first);
8856 ++itScreen;
8857 }
8858
8859 if (uScreensBitmap)
8860 pelmVideoCapture->setAttribute("screens", uScreensBitmap);
8861
8862 Assert(recording.mapScreens.size());
8863 const RecordingScreenSettingsMap::const_iterator itScreen0Settings = recording.mapScreens.find(0);
8864 Assert(itScreen0Settings != recording.mapScreens.end());
8865
8866 if (itScreen0Settings->second.ulMaxTimeS)
8867 pelmVideoCapture->setAttribute("maxTime", itScreen0Settings->second.ulMaxTimeS);
8868 if (itScreen0Settings->second.strOptions.isNotEmpty())
8869 pelmVideoCapture->setAttributePath("options", itScreen0Settings->second.strOptions);
8870
8871 if (!itScreen0Settings->second.File.strName.isEmpty())
8872 pelmVideoCapture->setAttributePath("file", itScreen0Settings->second.File.strName);
8873 if (itScreen0Settings->second.File.ulMaxSizeMB)
8874 pelmVideoCapture->setAttribute("maxSize", itScreen0Settings->second.File.ulMaxSizeMB);
8875
8876 if ( itScreen0Settings->second.Video.ulWidth != 1024
8877 || itScreen0Settings->second.Video.ulHeight != 768)
8878 {
8879 pelmVideoCapture->setAttribute("horzRes", itScreen0Settings->second.Video.ulWidth);
8880 pelmVideoCapture->setAttribute("vertRes", itScreen0Settings->second.Video.ulHeight);
8881 }
8882 if (itScreen0Settings->second.Video.ulRate != 512)
8883 pelmVideoCapture->setAttribute("rate", itScreen0Settings->second.Video.ulRate);
8884 if (itScreen0Settings->second.Video.ulFPS)
8885 pelmVideoCapture->setAttribute("fps", itScreen0Settings->second.Video.ulFPS);
8886 }
8887}
8888
8889/**
8890 * Creates a \<Groups\> node under elmParent and then writes out the XML
8891 * keys under that. Called for the \<Machine\> node only.
8892 *
8893 * @param elmParent Parent element.
8894 * @param llGroups Groups list.
8895 */
8896void MachineConfigFile::buildGroupsXML(xml::ElementNode &elmParent, const StringsList &llGroups)
8897{
8898 if ( m->sv < SettingsVersion_v1_13 || llGroups.size() == 0
8899 || (llGroups.size() == 1 && llGroups.front() == "/"))
8900 return;
8901
8902 xml::ElementNode *pElmGroups = elmParent.createChild("Groups");
8903 for (StringsList::const_iterator it = llGroups.begin();
8904 it != llGroups.end();
8905 ++it)
8906 {
8907 const Utf8Str &group = *it;
8908 xml::ElementNode *pElmGroup = pElmGroups->createChild("Group");
8909 pElmGroup->setAttribute("name", group);
8910 }
8911}
8912
8913/**
8914 * Writes a single snapshot into the DOM tree. Initially this gets called from
8915 * MachineConfigFile::write() for the root snapshot of a machine, if present;
8916 * elmParent then points to the \<Snapshots\> node under the \<Machine\> node
8917 * to which \<Snapshot\> must be added. This may then continue processing the
8918 * child snapshots.
8919 *
8920 * @param elmParent
8921 * @param snap
8922 */
8923void MachineConfigFile::buildSnapshotXML(xml::ElementNode &elmParent,
8924 const Snapshot &snap)
8925{
8926 std::list<const Snapshot *> llSettingsTodo;
8927 llSettingsTodo.push_back(&snap);
8928 std::list<xml::ElementNode *> llElementsTodo;
8929 llElementsTodo.push_back(&elmParent);
8930 std::list<uint32_t> llDepthsTodo;
8931 llDepthsTodo.push_back(1);
8932
8933 while (llSettingsTodo.size() > 0)
8934 {
8935 const Snapshot *pSnap = llSettingsTodo.front();
8936 llSettingsTodo.pop_front();
8937 xml::ElementNode *pElement = llElementsTodo.front();
8938 llElementsTodo.pop_front();
8939 uint32_t depth = llDepthsTodo.front();
8940 llDepthsTodo.pop_front();
8941
8942 if (depth > SETTINGS_SNAPSHOT_DEPTH_MAX)
8943 throw ConfigFileError(this, NULL, N_("Maximum snapshot tree depth of %u exceeded"), SETTINGS_SNAPSHOT_DEPTH_MAX);
8944
8945 xml::ElementNode *pelmSnapshot = pElement->createChild("Snapshot");
8946
8947 pelmSnapshot->setAttribute("uuid", pSnap->uuid.toStringCurly());
8948 pelmSnapshot->setAttribute("name", pSnap->strName);
8949 pelmSnapshot->setAttribute("timeStamp", stringifyTimestamp(pSnap->timestamp));
8950
8951 if (pSnap->strStateFile.length())
8952 pelmSnapshot->setAttributePath("stateFile", pSnap->strStateFile);
8953
8954 if (pSnap->strDescription.length())
8955 pelmSnapshot->createChild("Description")->addContent(pSnap->strDescription);
8956
8957 // We only skip removable media for OVF, but OVF never includes snapshots.
8958 buildHardwareXML(*pelmSnapshot, pSnap->hardware, 0 /* fl */, NULL /* pllElementsWithUuidAttributes */);
8959 buildDebuggingXML(*pelmSnapshot, pSnap->debugging);
8960 buildAutostartXML(*pelmSnapshot, pSnap->autostart);
8961 buildRecordingXML(*pelmSnapshot, pSnap->recordingSettings);
8962 // note: Groups exist only for Machine, not for Snapshot
8963
8964 if (m->sv < SettingsVersion_v1_20) /* Before settings v1.20 the platform stuff lived directly in the Hardware element. */
8965 {
8966 xml::ElementNode *pelHardware = unconst(pelmSnapshot->findChildElement("Hardware"));
8967 if (pelHardware)
8968 buildPlatformXML(*pelHardware, pSnap->hardware, pSnap->hardware.platformSettings);
8969 }
8970 else /* Now lives outside of "Hardware", in "Platform". */
8971 buildPlatformXML(*pelmSnapshot, pSnap->hardware, pSnap->hardware.platformSettings);
8972
8973 if (pSnap->llChildSnapshots.size())
8974 {
8975 xml::ElementNode *pelmChildren = pelmSnapshot->createChild("Snapshots");
8976 for (SnapshotsList::const_iterator it = pSnap->llChildSnapshots.begin();
8977 it != pSnap->llChildSnapshots.end();
8978 ++it)
8979 {
8980 llSettingsTodo.push_back(&*it);
8981 llElementsTodo.push_back(pelmChildren);
8982 llDepthsTodo.push_back(depth + 1);
8983 }
8984 }
8985 }
8986}
8987
8988/**
8989 * Builds the XML DOM tree for the machine config under the given XML element.
8990 *
8991 * This has been separated out from write() so it can be called from elsewhere,
8992 * such as the OVF code, to build machine XML in an existing XML tree.
8993 *
8994 * As a result, this gets called from two locations:
8995 *
8996 * -- MachineConfigFile::write();
8997 *
8998 * -- Appliance::buildXMLForOneVirtualSystem()
8999 *
9000 * In fl, the following flag bits are recognized:
9001 *
9002 * -- BuildMachineXML_MediaRegistry: If set, the machine's media registry will
9003 * be written, if present. This is not set when called from OVF because OVF
9004 * has its own variant of a media registry. This flag is ignored unless the
9005 * settings version is at least v1.11 (VirtualBox 4.0).
9006 *
9007 * -- BuildMachineXML_IncludeSnapshots: If set, descend into the snapshots tree
9008 * of the machine and write out \<Snapshot\> and possibly more snapshots under
9009 * that, if snapshots are present. Otherwise all snapshots are suppressed
9010 * (when called from OVF).
9011 *
9012 * -- BuildMachineXML_WriteVBoxVersionAttribute: If set, add a settingsVersion
9013 * attribute to the machine tag with the vbox settings version. This is for
9014 * the OVF export case in which we don't have the settings version set in
9015 * the root element.
9016 *
9017 * -- BuildMachineXML_SkipRemovableMedia: If set, removable media attachments
9018 * (DVDs, floppies) are silently skipped. This is for the OVF export case
9019 * until we support copying ISO and RAW media as well. This flag is ignored
9020 * unless the settings version is at least v1.9, which is always the case
9021 * when this gets called for OVF export.
9022 *
9023 * -- BuildMachineXML_SuppressSavedState: If set, the Machine/stateFile
9024 * attribute is never set. This is also for the OVF export case because we
9025 * cannot save states with OVF.
9026 *
9027 * @param elmMachine XML \<Machine\> element to add attributes and elements to.
9028 * @param fl Flags.
9029 * @param pllElementsWithUuidAttributes pointer to list that should receive UUID elements or NULL;
9030 * see buildStorageControllersXML() for details.
9031 */
9032void MachineConfigFile::buildMachineXML(xml::ElementNode &elmMachine,
9033 uint32_t fl,
9034 std::list<xml::ElementNode*> *pllElementsWithUuidAttributes)
9035{
9036 if (fl & BuildMachineXML_WriteVBoxVersionAttribute)
9037 {
9038 // add settings version attribute to machine element
9039 setVersionAttribute(elmMachine);
9040 LogRel(("Exporting settings file \"%s\" with version \"%s\"\n", m->strFilename.c_str(), m->strSettingsVersionFull.c_str()));
9041 }
9042
9043 elmMachine.setAttribute("uuid", uuid.toStringCurly());
9044 elmMachine.setAttribute("name", machineUserData.strName);
9045 if (machineUserData.fDirectoryIncludesUUID)
9046 elmMachine.setAttribute("directoryIncludesUUID", machineUserData.fDirectoryIncludesUUID);
9047 if (!machineUserData.fNameSync)
9048 elmMachine.setAttribute("nameSync", machineUserData.fNameSync);
9049 if (machineUserData.strDescription.length())
9050 elmMachine.createChild("Description")->addContent(machineUserData.strDescription);
9051 elmMachine.setAttribute("OSType", machineUserData.strOsType);
9052
9053
9054 if (m->sv >= SettingsVersion_v1_19)
9055 {
9056 if (strStateKeyId.length())
9057 elmMachine.setAttribute("stateKeyId", strStateKeyId);
9058 if (strStateKeyStore.length())
9059 elmMachine.setAttribute("stateKeyStore", strStateKeyStore);
9060 if (strLogKeyId.length())
9061 elmMachine.setAttribute("logKeyId", strLogKeyId);
9062 if (strLogKeyStore.length())
9063 elmMachine.setAttribute("logKeyStore", strLogKeyStore);
9064 }
9065 if ( strStateFile.length()
9066 && !(fl & BuildMachineXML_SuppressSavedState)
9067 )
9068 elmMachine.setAttributePath("stateFile", strStateFile);
9069
9070 if ((fl & BuildMachineXML_IncludeSnapshots)
9071 && !uuidCurrentSnapshot.isZero()
9072 && uuidCurrentSnapshot.isValid())
9073 elmMachine.setAttribute("currentSnapshot", uuidCurrentSnapshot.toStringCurly());
9074
9075 if (machineUserData.strSnapshotFolder.length())
9076 elmMachine.setAttributePath("snapshotFolder", machineUserData.strSnapshotFolder);
9077 if (!fCurrentStateModified)
9078 elmMachine.setAttribute("currentStateModified", fCurrentStateModified);
9079 elmMachine.setAttribute("lastStateChange", stringifyTimestamp(timeLastStateChange));
9080 if (fAborted)
9081 elmMachine.setAttribute("aborted", fAborted);
9082
9083 switch (machineUserData.enmVMPriority)
9084 {
9085 case VMProcPriority_Flat:
9086 elmMachine.setAttribute("processPriority", "Flat");
9087 break;
9088 case VMProcPriority_Low:
9089 elmMachine.setAttribute("processPriority", "Low");
9090 break;
9091 case VMProcPriority_Normal:
9092 elmMachine.setAttribute("processPriority", "Normal");
9093 break;
9094 case VMProcPriority_High:
9095 elmMachine.setAttribute("processPriority", "High");
9096 break;
9097 default:
9098 break;
9099 }
9100 // Please keep the icon last so that one doesn't have to check if there
9101 // is anything in the line after this very long attribute in the XML.
9102 if (machineUserData.ovIcon.size())
9103 {
9104 Utf8Str strIcon;
9105 toBase64(strIcon, machineUserData.ovIcon);
9106 elmMachine.setAttribute("icon", strIcon);
9107 }
9108 if ( m->sv >= SettingsVersion_v1_9
9109 && ( machineUserData.fTeleporterEnabled
9110 || machineUserData.uTeleporterPort
9111 || !machineUserData.strTeleporterAddress.isEmpty()
9112 || !machineUserData.strTeleporterPassword.isEmpty()
9113 )
9114 )
9115 {
9116 xml::ElementNode *pelmTeleporter = elmMachine.createChild("Teleporter");
9117 pelmTeleporter->setAttribute("enabled", machineUserData.fTeleporterEnabled);
9118 pelmTeleporter->setAttribute("port", machineUserData.uTeleporterPort);
9119 pelmTeleporter->setAttribute("address", machineUserData.strTeleporterAddress);
9120 pelmTeleporter->setAttribute("password", machineUserData.strTeleporterPassword);
9121 }
9122
9123 if ( (fl & BuildMachineXML_MediaRegistry)
9124 && (m->sv >= SettingsVersion_v1_11)
9125 )
9126 buildMediaRegistry(elmMachine, mediaRegistry);
9127
9128 buildExtraData(elmMachine, mapExtraDataItems);
9129
9130 if ( (fl & BuildMachineXML_IncludeSnapshots)
9131 && llFirstSnapshot.size())
9132 buildSnapshotXML(elmMachine, llFirstSnapshot.front());
9133
9134 buildHardwareXML(elmMachine, hardwareMachine, fl, pllElementsWithUuidAttributes);
9135 buildDebuggingXML(elmMachine, debugging);
9136 buildAutostartXML(elmMachine, autostart);
9137
9138 /* Note: Must come *after* buildHardwareXML(), as the "Hardware" branch is needed. */
9139 if ( m->sv >= SettingsVersion_v1_14
9140 && m->sv < SettingsVersion_v1_19) /* < VBox 7.0. */
9141 {
9142 xml::ElementNode *pelHardware = unconst(elmMachine.findChildElement("Hardware"));
9143 if (pelHardware)
9144 buildRecordingXML(*pelHardware, recordingSettings);
9145 }
9146 else if (m->sv >= SettingsVersion_v1_19) /* Now lives outside of "Hardware", in "Machine". */
9147 buildRecordingXML(elmMachine, recordingSettings);
9148
9149 buildGroupsXML(elmMachine, machineUserData.llGroups);
9150
9151 /* Note: Must come *after* buildHardwareXML(), as the "Hardware" branch is needed. */
9152 if (m->sv < SettingsVersion_v1_20)
9153 {
9154 xml::ElementNode *pelHardware = unconst(elmMachine.findChildElement("Hardware"));
9155 if (pelHardware)
9156 buildPlatformXML(*pelHardware, hardwareMachine, hardwareMachine.platformSettings);
9157 }
9158 else /* Now lives outside of "Hardware", in "Platform". */
9159 buildPlatformXML(elmMachine, hardwareMachine, hardwareMachine.platformSettings);
9160}
9161
9162 /**
9163 * Builds encrypted config.
9164 *
9165 * @sa MachineConfigFile::buildMachineXML
9166 */
9167void MachineConfigFile::buildMachineEncryptedXML(xml::ElementNode &elmMachine,
9168 uint32_t fl,
9169 std::list<xml::ElementNode*> *pllElementsWithUuidAttributes,
9170 PCVBOXCRYPTOIF pCryptoIf,
9171 const char *pszPassword = NULL)
9172{
9173 if ( !pszPassword
9174 || !pCryptoIf)
9175 throw ConfigFileError(this, &elmMachine, N_("Password is required"));
9176
9177 xml::Document *pDoc = new xml::Document;
9178 xml::ElementNode *pelmRoot = pDoc->createRootElement("Machine");
9179 pelmRoot->setAttribute("xmlns", VBOX_XML_NAMESPACE);
9180 // Have the code for producing a proper schema reference. Not used by most
9181 // tools, so don't bother doing it. The schema is not on the server anyway.
9182#ifdef VBOX_WITH_SETTINGS_SCHEMA
9183 pelmRoot->setAttribute("xmlns:xsi", "http://www.w3.org/2001/XMLSchema-instance");
9184 pelmRoot->setAttribute("xsi:schemaLocation", VBOX_XML_NAMESPACE " " VBOX_XML_SCHEMA);
9185#endif
9186
9187 buildMachineXML(*pelmRoot, fl, pllElementsWithUuidAttributes);
9188 xml::XmlStringWriter writer;
9189 com::Utf8Str strMachineXml;
9190 int vrc = writer.write(*pDoc, &strMachineXml);
9191 delete pDoc;
9192 if (RT_SUCCESS(vrc))
9193 {
9194 VBOXCRYPTOCTX hCryptoCtx;
9195 if (strKeyStore.isEmpty())
9196 {
9197 vrc = pCryptoIf->pfnCryptoCtxCreate("AES-GCM256", pszPassword, &hCryptoCtx);
9198 if (RT_SUCCESS(vrc))
9199 {
9200 char *pszNewKeyStore;
9201 vrc = pCryptoIf->pfnCryptoCtxSave(hCryptoCtx, &pszNewKeyStore);
9202 if (RT_SUCCESS(vrc))
9203 {
9204 strKeyStore = pszNewKeyStore;
9205 RTStrFree(pszNewKeyStore);
9206 }
9207 else
9208 pCryptoIf->pfnCryptoCtxDestroy(hCryptoCtx);
9209 }
9210 }
9211 else
9212 vrc = pCryptoIf->pfnCryptoCtxLoad(strKeyStore.c_str(), pszPassword, &hCryptoCtx);
9213 if (RT_SUCCESS(vrc))
9214 {
9215 IconBlob abEncrypted;
9216 size_t cbEncrypted = 0;
9217 vrc = pCryptoIf->pfnCryptoCtxQueryEncryptedSize(hCryptoCtx, strMachineXml.length(), &cbEncrypted);
9218 if (RT_SUCCESS(vrc))
9219 {
9220 abEncrypted.resize(cbEncrypted);
9221 vrc = pCryptoIf->pfnCryptoCtxEncrypt(hCryptoCtx, false /*fPartial*/, NULL /*pvIV*/, 0 /*cbIV*/,
9222 strMachineXml.c_str(), strMachineXml.length(),
9223 uuid.raw(), sizeof(RTUUID),
9224 &abEncrypted[0], abEncrypted.size(), &cbEncrypted);
9225 int vrc2 = pCryptoIf->pfnCryptoCtxDestroy(hCryptoCtx);
9226 AssertRC(vrc2);
9227 if (RT_SUCCESS(vrc))
9228 {
9229 abEncrypted.resize(cbEncrypted);
9230 toBase64(strMachineXml, abEncrypted);
9231 elmMachine.setAttribute("uuid", uuid.toStringCurly());
9232 elmMachine.setAttribute("keyId", strKeyId);
9233 elmMachine.setAttribute("keyStore", strKeyStore);
9234 elmMachine.setContent(strMachineXml.c_str());
9235 }
9236 }
9237 }
9238
9239 if (RT_FAILURE(vrc))
9240 throw ConfigFileError(this, &elmMachine, N_("Creating machine encrypted xml failed. (%Rrc)"), vrc);
9241 }
9242 else
9243 throw ConfigFileError(this, &elmMachine, N_("Creating machine xml failed. (%Rrc)"), vrc);
9244}
9245
9246/**
9247 * Returns true only if the given AudioDriverType is supported on
9248 * the current host platform. For example, this would return false
9249 * for AudioDriverType_DirectSound when compiled on a Linux host.
9250 *
9251* @return @c true if the current host supports the driver, @c false if not.
9252 * @param enmDrvType AudioDriverType_* enum to test.
9253 */
9254/*static*/
9255bool MachineConfigFile::isAudioDriverAllowedOnThisHost(AudioDriverType_T enmDrvType)
9256{
9257 switch (enmDrvType)
9258 {
9259 case AudioDriverType_Default:
9260 RT_FALL_THROUGH();
9261 case AudioDriverType_Null:
9262 return true; /* Default and Null audio are always allowed. */
9263#ifdef RT_OS_WINDOWS
9264 case AudioDriverType_WAS:
9265 /* We only support WAS on systems we tested so far (Vista+). */
9266 if (RTSystemGetNtVersion() < RTSYSTEM_MAKE_NT_VERSION(6,1,0))
9267 break;
9268 RT_FALL_THROUGH();
9269 case AudioDriverType_DirectSound:
9270#endif
9271#ifdef VBOX_WITH_AUDIO_OSS
9272 case AudioDriverType_OSS:
9273#endif
9274#ifdef VBOX_WITH_AUDIO_ALSA
9275 case AudioDriverType_ALSA:
9276#endif
9277#ifdef VBOX_WITH_AUDIO_PULSE
9278 case AudioDriverType_Pulse:
9279#endif
9280#ifdef RT_OS_DARWIN
9281 case AudioDriverType_CoreAudio:
9282#endif
9283#ifdef RT_OS_OS2
9284 case AudioDriverType_MMPM:
9285#endif
9286 return true;
9287 default: break; /* Shut up MSC. */
9288 }
9289
9290 return false;
9291}
9292
9293/**
9294 * Returns the AudioDriverType_* which should be used by default on this
9295 * host platform. On Linux, this will check at runtime whether PulseAudio
9296 * or ALSA are actually supported on the first call.
9297 *
9298 * When more than one supported audio stack is available, choose the most suited
9299 * (probably newest in most cases) one.
9300 *
9301 * @return Default audio driver type for this host platform.
9302 */
9303/*static*/
9304AudioDriverType_T MachineConfigFile::getHostDefaultAudioDriver()
9305{
9306#if defined(RT_OS_WINDOWS)
9307 if (RTSystemGetNtVersion() >= RTSYSTEM_MAKE_NT_VERSION(6,1,0))
9308 return AudioDriverType_WAS;
9309 return AudioDriverType_DirectSound;
9310
9311#elif defined(RT_OS_LINUX)
9312 /* On Linux, we need to check at runtime what's actually supported.
9313 * Descending precedence. */
9314 static RTCLockMtx s_mtx;
9315 static AudioDriverType_T s_enmLinuxDriver = AudioDriverType_Null;
9316 RTCLock lock(s_mtx);
9317 if (s_enmLinuxDriver == AudioDriverType_Null) /* Already determined from a former run? */
9318 {
9319# ifdef VBOX_WITH_AUDIO_PULSE
9320 /* Check for the pulse library & that the PulseAudio daemon is running. */
9321 if ( ( RTProcIsRunningByName("pulseaudio")
9322 /* We also use the PulseAudio backend when we find pipewire-pulse running, which
9323 * acts as a PulseAudio-compatible daemon for Pipewire-enabled applications. See @ticketref{21575} */
9324 || RTProcIsRunningByName("pipewire-pulse"))
9325 && RTLdrIsLoadable("libpulse.so.0"))
9326 {
9327 s_enmLinuxDriver = AudioDriverType_Pulse;
9328 }
9329#endif /* VBOX_WITH_AUDIO_PULSE */
9330
9331# ifdef VBOX_WITH_AUDIO_ALSA
9332 if (s_enmLinuxDriver == AudioDriverType_Null)
9333 {
9334 /* Check if we can load the ALSA library */
9335 if (RTLdrIsLoadable("libasound.so.2"))
9336 s_enmLinuxDriver = AudioDriverType_ALSA;
9337 }
9338# endif /* VBOX_WITH_AUDIO_ALSA */
9339
9340# ifdef VBOX_WITH_AUDIO_OSS
9341 if (s_enmLinuxDriver == AudioDriverType_Null)
9342 s_enmLinuxDriver = AudioDriverType_OSS;
9343# endif /* VBOX_WITH_AUDIO_OSS */
9344 }
9345 return s_enmLinuxDriver;
9346
9347#elif defined(RT_OS_DARWIN)
9348 return AudioDriverType_CoreAudio;
9349
9350#elif defined(RT_OS_OS2)
9351 return AudioDriverType_MMPM;
9352
9353#else /* All other platforms. */
9354# ifdef VBOX_WITH_AUDIO_OSS
9355 return AudioDriverType_OSS;
9356# else
9357 /* Return NULL driver as a fallback if nothing of the above is available. */
9358 return AudioDriverType_Null;
9359# endif
9360#endif
9361}
9362
9363/**
9364 * Called from write() before calling ConfigFileBase::createStubDocument().
9365 * This adjusts the settings version in m->sv if incompatible settings require
9366 * a settings bump, whereas otherwise we try to preserve the settings version
9367 * to avoid breaking compatibility with older versions.
9368 *
9369 * We do the checks in here in reverse order: newest first, oldest last, so
9370 * that we avoid unnecessary checks since some of these are expensive.
9371 */
9372void MachineConfigFile::bumpSettingsVersionIfNeeded()
9373{
9374 if (m->sv < SettingsVersion_v1_20)
9375 {
9376 // VirtualBox 7.1 (settings v1.20) adds support for different VM platforms.
9377 if ( hardwareMachine.platformSettings.architectureType != PlatformArchitecture_None
9378 && hardwareMachine.platformSettings.architectureType != PlatformArchitecture_x86)
9379 {
9380 /* Note: The new chipset type ARMv8Virtual implies setting the platform architecture type to ARM. */
9381 m->sv = SettingsVersion_v1_20;
9382 return;
9383 }
9384 }
9385
9386 if (m->sv < SettingsVersion_v1_19)
9387 {
9388 // VirtualBox 7.0 adds iommu device and full VM encryption.
9389 if ( hardwareMachine.platformSettings.iommuType != IommuType_None
9390 || strKeyId.isNotEmpty()
9391 || strKeyStore.isNotEmpty()
9392 || strStateKeyId.isNotEmpty()
9393 || strStateKeyStore.isNotEmpty()
9394 || hardwareMachine.nvramSettings.strKeyId.isNotEmpty()
9395 || hardwareMachine.nvramSettings.strKeyStore.isNotEmpty()
9396 /* Default for newly created VMs in VBox 7.0.
9397 * Older VMs might have a specific audio driver set (also for VMs created with < VBox 7.0). */
9398 || hardwareMachine.audioAdapter.driverType == AudioDriverType_Default
9399 || recordingSettings.areDefaultSettings() == false
9400 || strLogKeyId.isNotEmpty()
9401 || strLogKeyStore.isEmpty())
9402 {
9403 m->sv = SettingsVersion_v1_19;
9404 return;
9405 }
9406
9407 // VirtualBox 7.0 adds a Trusted Platform Module.
9408 if ( hardwareMachine.tpmSettings.tpmType != TpmType_None
9409 || hardwareMachine.tpmSettings.strLocation.isNotEmpty())
9410 {
9411 m->sv = SettingsVersion_v1_19;
9412 return;
9413 }
9414
9415 NetworkAdaptersList::const_iterator netit;
9416 for (netit = hardwareMachine.llNetworkAdapters.begin();
9417 netit != hardwareMachine.llNetworkAdapters.end();
9418 ++netit)
9419 {
9420 // VirtualBox 7.0 adds a flag if NAT can reach localhost.
9421 if ( netit->fEnabled
9422 && netit->mode == NetworkAttachmentType_NAT
9423 && !netit->nat.fLocalhostReachable)
9424 {
9425 m->sv = SettingsVersion_v1_19;
9426 break;
9427 }
9428
9429#ifdef VBOX_WITH_VMNET
9430 // VirtualBox 7.0 adds a host-only network attachment.
9431 if (netit->mode == NetworkAttachmentType_HostOnlyNetwork)
9432 {
9433 m->sv = SettingsVersion_v1_19;
9434 break;
9435 }
9436#endif /* VBOX_WITH_VMNET */
9437 }
9438
9439 // VirtualBox 7.0 adds guest debug settings.
9440 if ( debugging.enmDbgProvider != GuestDebugProvider_None
9441 || debugging.enmIoProvider != GuestDebugIoProvider_None
9442 || debugging.strAddress.isNotEmpty()
9443 || debugging.ulPort != 0)
9444 {
9445 m->sv = SettingsVersion_v1_19;
9446 return;
9447 }
9448 }
9449
9450 if (m->sv < SettingsVersion_v1_18)
9451 {
9452 if (!hardwareMachine.nvramSettings.strNvramPath.isEmpty())
9453 {
9454 m->sv = SettingsVersion_v1_18;
9455 return;
9456 }
9457
9458 // VirtualBox 6.1 adds AMD-V virtualized VMSAVE/VMLOAD setting.
9459 if (hardwareMachine.platformSettings.x86.fHWVirtExVirtVmsaveVmload == false)
9460 {
9461 m->sv = SettingsVersion_v1_18;
9462 return;
9463 }
9464
9465 // VirtualBox 6.1 adds a virtio-scsi storage controller.
9466 for (StorageControllersList::const_iterator it = hardwareMachine.storage.llStorageControllers.begin();
9467 it != hardwareMachine.storage.llStorageControllers.end();
9468 ++it)
9469 {
9470 const StorageController &sctl = *it;
9471
9472 if (sctl.controllerType == StorageControllerType_VirtioSCSI)
9473 {
9474 m->sv = SettingsVersion_v1_18;
9475 return;
9476 }
9477 }
9478
9479#ifdef VBOX_WITH_CLOUD_NET
9480 NetworkAdaptersList::const_iterator netit;
9481 for (netit = hardwareMachine.llNetworkAdapters.begin();
9482 netit != hardwareMachine.llNetworkAdapters.end();
9483 ++netit)
9484 {
9485 // VirtualBox 6.1 adds support for cloud networks.
9486 if ( netit->fEnabled
9487 && netit->mode == NetworkAttachmentType_Cloud)
9488 {
9489 m->sv = SettingsVersion_v1_18;
9490 break;
9491 }
9492
9493 }
9494#endif /* VBOX_WITH_CLOUD_NET */
9495 }
9496
9497 if (m->sv < SettingsVersion_v1_17)
9498 {
9499 if (machineUserData.enmVMPriority != VMProcPriority_Default)
9500 {
9501 m->sv = SettingsVersion_v1_17;
9502 return;
9503 }
9504
9505 // VirtualBox 6.0 adds nested hardware virtualization, using native API (NEM).
9506 if ( hardwareMachine.platformSettings.x86.fNestedHWVirt
9507 || hardwareMachine.platformSettings.x86.fHWVirtExUseNativeApi)
9508 {
9509 m->sv = SettingsVersion_v1_17;
9510 return;
9511 }
9512 if (hardwareMachine.llSharedFolders.size())
9513 for (SharedFoldersList::const_iterator it = hardwareMachine.llSharedFolders.begin();
9514 it != hardwareMachine.llSharedFolders.end();
9515 ++it)
9516 if (it->strAutoMountPoint.isNotEmpty())
9517 {
9518 m->sv = SettingsVersion_v1_17;
9519 return;
9520 }
9521
9522 /*
9523 * Check if any serial port uses a non 16550A serial port.
9524 */
9525 for (SerialPortsList::const_iterator it = hardwareMachine.llSerialPorts.begin();
9526 it != hardwareMachine.llSerialPorts.end();
9527 ++it)
9528 {
9529 const SerialPort &port = *it;
9530 if (port.uartType != UartType_U16550A)
9531 {
9532 m->sv = SettingsVersion_v1_17;
9533 return;
9534 }
9535 }
9536 }
9537
9538 if (m->sv < SettingsVersion_v1_16)
9539 {
9540 // VirtualBox 5.1 adds a NVMe storage controller, paravirt debug
9541 // options, cpu profile, APIC settings (CPU capability and BIOS).
9542
9543 if ( hardwareMachine.strParavirtDebug.isNotEmpty()
9544 || (!hardwareMachine.strCpuProfile.equals("host") && hardwareMachine.strCpuProfile.isNotEmpty())
9545 || hardwareMachine.firmwareSettings.apicMode != APICMode_APIC
9546 || !hardwareMachine.platformSettings.x86.fAPIC
9547 || hardwareMachine.platformSettings.x86.fX2APIC
9548 || hardwareMachine.platformSettings.x86.fIBPBOnVMExit
9549 || hardwareMachine.platformSettings.x86.fIBPBOnVMEntry
9550 || hardwareMachine.platformSettings.x86.fSpecCtrl
9551 || hardwareMachine.platformSettings.x86.fSpecCtrlByHost
9552 || !hardwareMachine.platformSettings.x86.fL1DFlushOnSched
9553 || hardwareMachine.platformSettings.x86.fL1DFlushOnVMEntry
9554 || !hardwareMachine.platformSettings.x86.fMDSClearOnSched
9555 || hardwareMachine.platformSettings.x86.fMDSClearOnVMEntry)
9556 {
9557 m->sv = SettingsVersion_v1_16;
9558 return;
9559 }
9560
9561 for (StorageControllersList::const_iterator it = hardwareMachine.storage.llStorageControllers.begin();
9562 it != hardwareMachine.storage.llStorageControllers.end();
9563 ++it)
9564 {
9565 const StorageController &sctl = *it;
9566
9567 if (sctl.controllerType == StorageControllerType_NVMe)
9568 {
9569 m->sv = SettingsVersion_v1_16;
9570 return;
9571 }
9572 }
9573
9574 for (CpuIdLeafsX86List::const_iterator it = hardwareMachine.platformSettings.x86.llCpuIdLeafs.begin();
9575 it != hardwareMachine.platformSettings.x86.llCpuIdLeafs.end();
9576 ++it)
9577 if (it->idxSub != 0)
9578 {
9579 m->sv = SettingsVersion_v1_16;
9580 return;
9581 }
9582 }
9583
9584 if (m->sv < SettingsVersion_v1_15)
9585 {
9586 // VirtualBox 5.0 adds paravirt providers, explicit AHCI port hotplug
9587 // setting, USB storage controller, xHCI, serial port TCP backend
9588 // and VM process priority.
9589
9590 /*
9591 * Check simple configuration bits first, loopy stuff afterwards.
9592 */
9593 if ( hardwareMachine.paravirtProvider != ParavirtProvider_Legacy
9594 || hardwareMachine.uCpuIdPortabilityLevel != 0)
9595 {
9596 m->sv = SettingsVersion_v1_15;
9597 return;
9598 }
9599
9600 /*
9601 * Check whether the hotpluggable flag of all storage devices differs
9602 * from the default for old settings.
9603 * AHCI ports are hotpluggable by default every other device is not.
9604 * Also check if there are USB storage controllers.
9605 */
9606 for (StorageControllersList::const_iterator it = hardwareMachine.storage.llStorageControllers.begin();
9607 it != hardwareMachine.storage.llStorageControllers.end();
9608 ++it)
9609 {
9610 const StorageController &sctl = *it;
9611
9612 if (sctl.controllerType == StorageControllerType_USB)
9613 {
9614 m->sv = SettingsVersion_v1_15;
9615 return;
9616 }
9617
9618 for (AttachedDevicesList::const_iterator it2 = sctl.llAttachedDevices.begin();
9619 it2 != sctl.llAttachedDevices.end();
9620 ++it2)
9621 {
9622 const AttachedDevice &att = *it2;
9623
9624 if ( ( att.fHotPluggable
9625 && sctl.controllerType != StorageControllerType_IntelAhci)
9626 || ( !att.fHotPluggable
9627 && sctl.controllerType == StorageControllerType_IntelAhci))
9628 {
9629 m->sv = SettingsVersion_v1_15;
9630 return;
9631 }
9632 }
9633 }
9634
9635 /*
9636 * Check if there is an xHCI (USB3) USB controller.
9637 */
9638 for (USBControllerList::const_iterator it = hardwareMachine.usbSettings.llUSBControllers.begin();
9639 it != hardwareMachine.usbSettings.llUSBControllers.end();
9640 ++it)
9641 {
9642 const USBController &ctrl = *it;
9643 if (ctrl.enmType == USBControllerType_XHCI)
9644 {
9645 m->sv = SettingsVersion_v1_15;
9646 return;
9647 }
9648 }
9649
9650 /*
9651 * Check if any serial port uses the TCP backend.
9652 */
9653 for (SerialPortsList::const_iterator it = hardwareMachine.llSerialPorts.begin();
9654 it != hardwareMachine.llSerialPorts.end();
9655 ++it)
9656 {
9657 const SerialPort &port = *it;
9658 if (port.portMode == PortMode_TCP)
9659 {
9660 m->sv = SettingsVersion_v1_15;
9661 return;
9662 }
9663 }
9664 }
9665
9666 if (m->sv < SettingsVersion_v1_14)
9667 {
9668 // VirtualBox 4.3 adds default frontend setting, graphics controller
9669 // setting, explicit long mode setting, (video) capturing and NAT networking.
9670 if ( !hardwareMachine.strDefaultFrontend.isEmpty()
9671 || hardwareMachine.graphicsAdapter.graphicsControllerType != GraphicsControllerType_VBoxVGA
9672 || hardwareMachine.platformSettings.x86.enmLongMode != PlatformX86::LongMode_Legacy
9673 || machineUserData.ovIcon.size() > 0
9674 || recordingSettings.common.fEnabled)
9675 {
9676 m->sv = SettingsVersion_v1_14;
9677 return;
9678 }
9679 NetworkAdaptersList::const_iterator netit;
9680 for (netit = hardwareMachine.llNetworkAdapters.begin();
9681 netit != hardwareMachine.llNetworkAdapters.end();
9682 ++netit)
9683 {
9684 if (netit->mode == NetworkAttachmentType_NATNetwork)
9685 {
9686 m->sv = SettingsVersion_v1_14;
9687 break;
9688 }
9689 }
9690 }
9691
9692 if (m->sv < SettingsVersion_v1_14)
9693 {
9694 unsigned cOhciCtrls = 0;
9695 unsigned cEhciCtrls = 0;
9696 bool fNonStdName = false;
9697
9698 for (USBControllerList::const_iterator it = hardwareMachine.usbSettings.llUSBControllers.begin();
9699 it != hardwareMachine.usbSettings.llUSBControllers.end();
9700 ++it)
9701 {
9702 const USBController &ctrl = *it;
9703
9704 switch (ctrl.enmType)
9705 {
9706 case USBControllerType_OHCI:
9707 cOhciCtrls++;
9708 if (ctrl.strName != "OHCI")
9709 fNonStdName = true;
9710 break;
9711 case USBControllerType_EHCI:
9712 cEhciCtrls++;
9713 if (ctrl.strName != "EHCI")
9714 fNonStdName = true;
9715 break;
9716 default:
9717 /* Anything unknown forces a bump. */
9718 fNonStdName = true;
9719 }
9720
9721 /* Skip checking other controllers if the settings bump is necessary. */
9722 if (cOhciCtrls > 1 || cEhciCtrls > 1 || fNonStdName)
9723 {
9724 m->sv = SettingsVersion_v1_14;
9725 break;
9726 }
9727 }
9728 }
9729
9730 if (m->sv < SettingsVersion_v1_13)
9731 {
9732 // VirtualBox 4.2 adds tracing, autostart, UUID in directory and groups.
9733 if ( !debugging.areDefaultSettings()
9734 || !autostart.areDefaultSettings()
9735 || machineUserData.fDirectoryIncludesUUID
9736 || machineUserData.llGroups.size() > 1
9737 || machineUserData.llGroups.front() != "/")
9738 m->sv = SettingsVersion_v1_13;
9739 }
9740
9741 if (m->sv < SettingsVersion_v1_13)
9742 {
9743 // VirtualBox 4.2 changes the units for bandwidth group limits.
9744 for (BandwidthGroupList::const_iterator it = hardwareMachine.ioSettings.llBandwidthGroups.begin();
9745 it != hardwareMachine.ioSettings.llBandwidthGroups.end();
9746 ++it)
9747 {
9748 const BandwidthGroup &gr = *it;
9749 if (gr.cMaxBytesPerSec % _1M)
9750 {
9751 // Bump version if a limit cannot be expressed in megabytes
9752 m->sv = SettingsVersion_v1_13;
9753 break;
9754 }
9755 }
9756 }
9757
9758 if (m->sv < SettingsVersion_v1_12)
9759 {
9760 // VirtualBox 4.1 adds PCI passthrough and emulated USB Smart Card reader
9761 if ( hardwareMachine.pciAttachments.size()
9762 || hardwareMachine.fEmulatedUSBCardReader)
9763 m->sv = SettingsVersion_v1_12;
9764 }
9765
9766 if (m->sv < SettingsVersion_v1_12)
9767 {
9768 // VirtualBox 4.1 adds a promiscuous mode policy to the network
9769 // adapters and a generic network driver transport.
9770 NetworkAdaptersList::const_iterator netit;
9771 for (netit = hardwareMachine.llNetworkAdapters.begin();
9772 netit != hardwareMachine.llNetworkAdapters.end();
9773 ++netit)
9774 {
9775 if ( netit->enmPromiscModePolicy != NetworkAdapterPromiscModePolicy_Deny
9776 || netit->mode == NetworkAttachmentType_Generic
9777 || !netit->areGenericDriverDefaultSettings()
9778 )
9779 {
9780 m->sv = SettingsVersion_v1_12;
9781 break;
9782 }
9783 }
9784 }
9785
9786 if (m->sv < SettingsVersion_v1_11)
9787 {
9788 // VirtualBox 4.0 adds HD audio, CPU priorities, ~fault tolerance~,
9789 // per-machine media registries, VRDE, JRockitVE, bandwidth groups,
9790 // ICH9 chipset
9791 if ( hardwareMachine.audioAdapter.controllerType == AudioControllerType_HDA
9792 || hardwareMachine.ulCpuExecutionCap != 100
9793 || mediaRegistry.llHardDisks.size()
9794 || mediaRegistry.llDvdImages.size()
9795 || mediaRegistry.llFloppyImages.size()
9796 || !hardwareMachine.vrdeSettings.strVrdeExtPack.isEmpty()
9797 || !hardwareMachine.vrdeSettings.strAuthLibrary.isEmpty()
9798 || machineUserData.strOsType == "JRockitVE"
9799 || hardwareMachine.ioSettings.llBandwidthGroups.size()
9800 || hardwareMachine.platformSettings.chipsetType == ChipsetType_ICH9
9801 )
9802 m->sv = SettingsVersion_v1_11;
9803 }
9804
9805 if (m->sv < SettingsVersion_v1_10)
9806 {
9807 /* If the properties contain elements other than "TCP/Ports" and "TCP/Address",
9808 * then increase the version to at least VBox 3.2, which can have video channel properties.
9809 */
9810 unsigned cOldProperties = 0;
9811
9812 StringsMap::const_iterator it = hardwareMachine.vrdeSettings.mapProperties.find("TCP/Ports");
9813 if (it != hardwareMachine.vrdeSettings.mapProperties.end())
9814 cOldProperties++;
9815 it = hardwareMachine.vrdeSettings.mapProperties.find("TCP/Address");
9816 if (it != hardwareMachine.vrdeSettings.mapProperties.end())
9817 cOldProperties++;
9818
9819 if (hardwareMachine.vrdeSettings.mapProperties.size() != cOldProperties)
9820 m->sv = SettingsVersion_v1_10;
9821 }
9822
9823 if (m->sv < SettingsVersion_v1_11)
9824 {
9825 /* If the properties contain elements other than "TCP/Ports", "TCP/Address",
9826 * "VideoChannel/Enabled" and "VideoChannel/Quality" then increase the version to VBox 4.0.
9827 */
9828 unsigned cOldProperties = 0;
9829
9830 StringsMap::const_iterator it = hardwareMachine.vrdeSettings.mapProperties.find("TCP/Ports");
9831 if (it != hardwareMachine.vrdeSettings.mapProperties.end())
9832 cOldProperties++;
9833 it = hardwareMachine.vrdeSettings.mapProperties.find("TCP/Address");
9834 if (it != hardwareMachine.vrdeSettings.mapProperties.end())
9835 cOldProperties++;
9836 it = hardwareMachine.vrdeSettings.mapProperties.find("VideoChannel/Enabled");
9837 if (it != hardwareMachine.vrdeSettings.mapProperties.end())
9838 cOldProperties++;
9839 it = hardwareMachine.vrdeSettings.mapProperties.find("VideoChannel/Quality");
9840 if (it != hardwareMachine.vrdeSettings.mapProperties.end())
9841 cOldProperties++;
9842
9843 if (hardwareMachine.vrdeSettings.mapProperties.size() != cOldProperties)
9844 m->sv = SettingsVersion_v1_11;
9845 }
9846
9847 // settings version 1.9 is required if there is not exactly one DVD
9848 // or more than one floppy drive present or the DVD is not at the secondary
9849 // master; this check is a bit more complicated
9850 //
9851 // settings version 1.10 is required if the host cache should be disabled
9852 //
9853 // settings version 1.11 is required for bandwidth limits and if more than
9854 // one controller of each type is present.
9855 if (m->sv < SettingsVersion_v1_11)
9856 {
9857 // count attached DVDs and floppies (only if < v1.9)
9858 size_t cDVDs = 0;
9859 size_t cFloppies = 0;
9860
9861 // count storage controllers (if < v1.11)
9862 size_t cSata = 0;
9863 size_t cScsiLsi = 0;
9864 size_t cScsiBuslogic = 0;
9865 size_t cSas = 0;
9866 size_t cIde = 0;
9867 size_t cFloppy = 0;
9868
9869 // need to run thru all the storage controllers and attached devices to figure this out
9870 for (StorageControllersList::const_iterator it = hardwareMachine.storage.llStorageControllers.begin();
9871 it != hardwareMachine.storage.llStorageControllers.end();
9872 ++it)
9873 {
9874 const StorageController &sctl = *it;
9875
9876 // count storage controllers of each type; 1.11 is required if more than one
9877 // controller of one type is present
9878 switch (sctl.storageBus)
9879 {
9880 case StorageBus_IDE:
9881 cIde++;
9882 break;
9883 case StorageBus_SATA:
9884 cSata++;
9885 break;
9886 case StorageBus_SAS:
9887 cSas++;
9888 break;
9889 case StorageBus_SCSI:
9890 if (sctl.controllerType == StorageControllerType_LsiLogic)
9891 cScsiLsi++;
9892 else
9893 cScsiBuslogic++;
9894 break;
9895 case StorageBus_Floppy:
9896 cFloppy++;
9897 break;
9898 default:
9899 // Do nothing
9900 break;
9901 }
9902
9903 if ( cSata > 1
9904 || cScsiLsi > 1
9905 || cScsiBuslogic > 1
9906 || cSas > 1
9907 || cIde > 1
9908 || cFloppy > 1)
9909 {
9910 m->sv = SettingsVersion_v1_11;
9911 break; // abort the loop -- we will not raise the version further
9912 }
9913
9914 for (AttachedDevicesList::const_iterator it2 = sctl.llAttachedDevices.begin();
9915 it2 != sctl.llAttachedDevices.end();
9916 ++it2)
9917 {
9918 const AttachedDevice &att = *it2;
9919
9920 // Bandwidth limitations are new in VirtualBox 4.0 (1.11)
9921 if (m->sv < SettingsVersion_v1_11)
9922 {
9923 if (att.strBwGroup.length() != 0)
9924 {
9925 m->sv = SettingsVersion_v1_11;
9926 break; // abort the loop -- we will not raise the version further
9927 }
9928 }
9929
9930 // disabling the host IO cache requires settings version 1.10
9931 if ( (m->sv < SettingsVersion_v1_10)
9932 && (!sctl.fUseHostIOCache)
9933 )
9934 m->sv = SettingsVersion_v1_10;
9935
9936 // we can only write the StorageController/@Instance attribute with v1.9
9937 if ( (m->sv < SettingsVersion_v1_9)
9938 && (sctl.ulInstance != 0)
9939 )
9940 m->sv = SettingsVersion_v1_9;
9941
9942 if (m->sv < SettingsVersion_v1_9)
9943 {
9944 if (att.deviceType == DeviceType_DVD)
9945 {
9946 if ( (sctl.storageBus != StorageBus_IDE) // DVD at bus other than DVD?
9947 || (att.lPort != 1) // DVDs not at secondary master?
9948 || (att.lDevice != 0)
9949 )
9950 m->sv = SettingsVersion_v1_9;
9951
9952 ++cDVDs;
9953 }
9954 else if (att.deviceType == DeviceType_Floppy)
9955 ++cFloppies;
9956 }
9957 }
9958
9959 if (m->sv >= SettingsVersion_v1_11)
9960 break; // abort the loop -- we will not raise the version further
9961 }
9962
9963 // VirtualBox before 3.1 had zero or one floppy and exactly one DVD,
9964 // so any deviation from that will require settings version 1.9
9965 if ( (m->sv < SettingsVersion_v1_9)
9966 && ( (cDVDs != 1)
9967 || (cFloppies > 1)
9968 )
9969 )
9970 m->sv = SettingsVersion_v1_9;
9971 }
9972
9973 // VirtualBox 3.2: Check for non default I/O settings
9974 if (m->sv < SettingsVersion_v1_10)
9975 {
9976 if ( (hardwareMachine.ioSettings.fIOCacheEnabled != true)
9977 || (hardwareMachine.ioSettings.ulIOCacheSize != 5)
9978 // and page fusion
9979 || (hardwareMachine.fPageFusionEnabled)
9980 // and CPU hotplug, RTC timezone control, HID type and HPET
9981 || hardwareMachine.platformSettings.fRTCUseUTC
9982 || hardwareMachine.fCpuHotPlug
9983 || hardwareMachine.pointingHIDType != PointingHIDType_PS2Mouse
9984 || hardwareMachine.keyboardHIDType != KeyboardHIDType_PS2Keyboard
9985 || hardwareMachine.platformSettings.x86.fHPETEnabled
9986 )
9987 m->sv = SettingsVersion_v1_10;
9988 }
9989
9990 // VirtualBox 3.2 adds NAT and boot priority to the NIC config in Main
9991 // VirtualBox 4.0 adds network bandwitdth
9992 if (m->sv < SettingsVersion_v1_11)
9993 {
9994 NetworkAdaptersList::const_iterator netit;
9995 for (netit = hardwareMachine.llNetworkAdapters.begin();
9996 netit != hardwareMachine.llNetworkAdapters.end();
9997 ++netit)
9998 {
9999 if ( (m->sv < SettingsVersion_v1_12)
10000 && (netit->strBandwidthGroup.isNotEmpty())
10001 )
10002 {
10003 /* New in VirtualBox 4.1 */
10004 m->sv = SettingsVersion_v1_12;
10005 break;
10006 }
10007 else if ( (m->sv < SettingsVersion_v1_10)
10008 && (netit->fEnabled)
10009 && (netit->mode == NetworkAttachmentType_NAT)
10010 && ( netit->nat.u32Mtu != 0
10011 || netit->nat.u32SockRcv != 0
10012 || netit->nat.u32SockSnd != 0
10013 || netit->nat.u32TcpRcv != 0
10014 || netit->nat.u32TcpSnd != 0
10015 || !netit->nat.fDNSPassDomain
10016 || netit->nat.fDNSProxy
10017 || netit->nat.fDNSUseHostResolver
10018 || netit->nat.fAliasLog
10019 || netit->nat.fAliasProxyOnly
10020 || netit->nat.fAliasUseSamePorts
10021 || netit->nat.strTFTPPrefix.length()
10022 || netit->nat.strTFTPBootFile.length()
10023 || netit->nat.strTFTPNextServer.length()
10024 || netit->nat.mapRules.size()
10025 )
10026 )
10027 {
10028 m->sv = SettingsVersion_v1_10;
10029 // no break because we still might need v1.11 above
10030 }
10031 else if ( (m->sv < SettingsVersion_v1_10)
10032 && (netit->fEnabled)
10033 && (netit->ulBootPriority != 0)
10034 )
10035 {
10036 m->sv = SettingsVersion_v1_10;
10037 // no break because we still might need v1.11 above
10038 }
10039 }
10040 }
10041
10042 // all the following require settings version 1.9
10043 if ( (m->sv < SettingsVersion_v1_9)
10044 && ( (hardwareMachine.firmwareSettings.firmwareType >= FirmwareType_EFI)
10045 || machineUserData.fTeleporterEnabled
10046 || machineUserData.uTeleporterPort
10047 || !machineUserData.strTeleporterAddress.isEmpty()
10048 || !machineUserData.strTeleporterPassword.isEmpty()
10049 || (!hardwareMachine.uuid.isZero() && hardwareMachine.uuid.isValid())
10050 )
10051 )
10052 m->sv = SettingsVersion_v1_9;
10053
10054 // "accelerate 2d video" requires settings version 1.8
10055 if ( (m->sv < SettingsVersion_v1_8)
10056 && (hardwareMachine.graphicsAdapter.fAccelerate2DVideo)
10057 )
10058 m->sv = SettingsVersion_v1_8;
10059
10060 // The hardware versions other than "1" requires settings version 1.4 (2.1+).
10061 if ( m->sv < SettingsVersion_v1_4
10062 && hardwareMachine.strVersion != "1"
10063 )
10064 m->sv = SettingsVersion_v1_4;
10065}
10066
10067/**
10068 * Called from Main code to write a machine config file to disk. This builds a DOM tree from
10069 * the member variables and then writes the XML file; it throws xml::Error instances on errors,
10070 * in particular if the file cannot be written.
10071 */
10072void MachineConfigFile::write(const com::Utf8Str &strFilename, PCVBOXCRYPTOIF pCryptoIf, const char *pszPassword)
10073{
10074 try
10075 {
10076 // createStubDocument() sets the settings version to at least 1.7; however,
10077 // we might need to enfore a later settings version if incompatible settings
10078 // are present:
10079 bumpSettingsVersionIfNeeded();
10080
10081 m->strFilename = strFilename;
10082 /*
10083 * Only create a backup if it is not encrypted.
10084 * Otherwise we get an unencrypted copy of the settings.
10085 */
10086 if (strKeyId.isEmpty() && strKeyStore.isEmpty())
10087 specialBackupIfFirstBump();
10088 createStubDocument();
10089
10090 if (strKeyStore.isNotEmpty())
10091 {
10092 xml::ElementNode *pelmMachine = m->pelmRoot->createChild("MachineEncrypted");
10093 buildMachineEncryptedXML(*pelmMachine,
10094 MachineConfigFile::BuildMachineXML_IncludeSnapshots
10095 | MachineConfigFile::BuildMachineXML_MediaRegistry,
10096 // but not BuildMachineXML_WriteVBoxVersionAttribute
10097 NULL, /* pllElementsWithUuidAttributes */
10098 pCryptoIf,
10099 pszPassword);
10100 }
10101 else
10102 {
10103 xml::ElementNode *pelmMachine = m->pelmRoot->createChild("Machine");
10104 buildMachineXML(*pelmMachine,
10105 MachineConfigFile::BuildMachineXML_IncludeSnapshots
10106 | MachineConfigFile::BuildMachineXML_MediaRegistry,
10107 // but not BuildMachineXML_WriteVBoxVersionAttribute
10108 NULL); /* pllElementsWithUuidAttributes */
10109 }
10110
10111 // now go write the XML
10112 xml::XmlFileWriter writer(*m->pDoc);
10113 writer.write(m->strFilename.c_str(), true /*fSafe*/);
10114
10115 m->fFileExists = true;
10116 clearDocument();
10117 LogRel(("Finished saving settings file \"%s\"\n", m->strFilename.c_str()));
10118 }
10119 catch (...)
10120 {
10121 clearDocument();
10122 LogRel(("Finished saving settings file \"%s\" with failure\n", m->strFilename.c_str()));
10123 throw;
10124 }
10125}
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