VirtualBox

source: vbox/trunk/src/VBox/Main/xml/Settings.cpp@ 68387

Last change on this file since 68387 was 68048, checked in by vboxsync, 8 years ago

Main/Settings.cpp: Use a "Description" XML tag instead of an attribute for the Medium registry entries. Matches what the code should've been doing since day 1 (and the XML schema), but unfortunately since VirtualBox 3.2 the code used the attribute. Not that there was any way to set the description in the API before 5.2.

  • Property svn:eol-style set to native
  • Property svn:keywords set to Date Revision Author Id
File size: 295.6 KB
Line 
1/* $Id: Settings.cpp 68048 2017-07-19 15:02:01Z 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/VirtalBox-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) 2007-2016 Oracle Corporation
62 *
63 * This file is part of VirtualBox Open Source Edition (OSE), as
64 * available from http://www.virtualbox.org. This file is free software;
65 * you can redistribute it and/or modify it under the terms of the GNU
66 * General Public License (GPL) as published by the Free Software
67 * Foundation, in version 2 as it comes in the "COPYING" file of the
68 * VirtualBox OSE distribution. VirtualBox OSE is distributed in the
69 * hope that it will be useful, but WITHOUT ANY WARRANTY of any kind.
70 */
71
72#include "VBox/com/string.h"
73#include "VBox/settings.h"
74#include <iprt/cpp/xml.h>
75#include <iprt/stream.h>
76#include <iprt/ctype.h>
77#include <iprt/file.h>
78#include <iprt/process.h>
79#include <iprt/ldr.h>
80#include <iprt/base64.h>
81#include <iprt/cpp/lock.h>
82
83// generated header
84#include "SchemaDefs.h"
85
86#include "Logging.h"
87#include "HashedPw.h"
88
89using namespace com;
90using namespace settings;
91
92////////////////////////////////////////////////////////////////////////////////
93//
94// Defines
95//
96////////////////////////////////////////////////////////////////////////////////
97
98/** VirtualBox XML settings namespace */
99#define VBOX_XML_NAMESPACE "http://www.virtualbox.org/"
100
101/** VirtualBox XML schema location (relative URI) */
102#define VBOX_XML_SCHEMA "VirtualBox-settings.xsd"
103
104/** VirtualBox XML settings version number substring ("x.y") */
105#define VBOX_XML_VERSION "1.12"
106
107/** VirtualBox OVF settings import default version number substring ("x.y").
108 *
109 * Think twice before changing this, as all VirtualBox versions before 5.1
110 * wrote the settings version when exporting, but totally ignored it on
111 * importing (while it should have been a mandatory attribute), so 3rd party
112 * software out there creates OVF files with the VirtualBox specific settings
113 * but lacking the version attribute. This shouldn't happen any more, but
114 * breaking existing OVF files isn't nice. */
115#define VBOX_XML_IMPORT_VERSION "1.15"
116
117/** VirtualBox XML settings version platform substring */
118#if defined (RT_OS_DARWIN)
119# define VBOX_XML_PLATFORM "macosx"
120#elif defined (RT_OS_FREEBSD)
121# define VBOX_XML_PLATFORM "freebsd"
122#elif defined (RT_OS_LINUX)
123# define VBOX_XML_PLATFORM "linux"
124#elif defined (RT_OS_NETBSD)
125# define VBOX_XML_PLATFORM "netbsd"
126#elif defined (RT_OS_OPENBSD)
127# define VBOX_XML_PLATFORM "openbsd"
128#elif defined (RT_OS_OS2)
129# define VBOX_XML_PLATFORM "os2"
130#elif defined (RT_OS_SOLARIS)
131# define VBOX_XML_PLATFORM "solaris"
132#elif defined (RT_OS_WINDOWS)
133# define VBOX_XML_PLATFORM "windows"
134#else
135# error Unsupported platform!
136#endif
137
138/** VirtualBox XML settings full version string ("x.y-platform") */
139#define VBOX_XML_VERSION_FULL VBOX_XML_VERSION "-" VBOX_XML_PLATFORM
140
141/** VirtualBox OVF import default settings full version string ("x.y-platform") */
142#define VBOX_XML_IMPORT_VERSION_FULL VBOX_XML_IMPORT_VERSION "-" VBOX_XML_PLATFORM
143
144////////////////////////////////////////////////////////////////////////////////
145//
146// Internal data
147//
148////////////////////////////////////////////////////////////////////////////////
149
150/**
151 * Opaque data structore for ConfigFileBase (only declared
152 * in header, defined only here).
153 */
154
155struct ConfigFileBase::Data
156{
157 Data()
158 : pDoc(NULL),
159 pelmRoot(NULL),
160 sv(SettingsVersion_Null),
161 svRead(SettingsVersion_Null)
162 {}
163
164 ~Data()
165 {
166 cleanup();
167 }
168
169 RTCString strFilename;
170 bool fFileExists;
171
172 xml::Document *pDoc;
173 xml::ElementNode *pelmRoot;
174
175 com::Utf8Str strSettingsVersionFull; // e.g. "1.7-linux"
176 SettingsVersion_T sv; // e.g. SettingsVersion_v1_7
177
178 SettingsVersion_T svRead; // settings version that the original file had when it was read,
179 // or SettingsVersion_Null if none
180
181 void copyFrom(const Data &d)
182 {
183 strFilename = d.strFilename;
184 fFileExists = d.fFileExists;
185 strSettingsVersionFull = d.strSettingsVersionFull;
186 sv = d.sv;
187 svRead = d.svRead;
188 }
189
190 void cleanup()
191 {
192 if (pDoc)
193 {
194 delete pDoc;
195 pDoc = NULL;
196 pelmRoot = NULL;
197 }
198 }
199};
200
201/**
202 * Private exception class (not in the header file) that makes
203 * throwing xml::LogicError instances easier. That class is public
204 * and should be caught by client code.
205 */
206class settings::ConfigFileError : public xml::LogicError
207{
208public:
209 ConfigFileError(const ConfigFileBase *file,
210 const xml::Node *pNode,
211 const char *pcszFormat, ...)
212 : xml::LogicError()
213 {
214 va_list args;
215 va_start(args, pcszFormat);
216 Utf8Str strWhat(pcszFormat, args);
217 va_end(args);
218
219 Utf8Str strLine;
220 if (pNode)
221 strLine = Utf8StrFmt(" (line %RU32)", pNode->getLineNumber());
222
223 const char *pcsz = strLine.c_str();
224 Utf8StrFmt str(N_("Error in %s%s -- %s"),
225 file->m->strFilename.c_str(),
226 (pcsz) ? pcsz : "",
227 strWhat.c_str());
228
229 setWhat(str.c_str());
230 }
231};
232
233////////////////////////////////////////////////////////////////////////////////
234//
235// ConfigFileBase
236//
237////////////////////////////////////////////////////////////////////////////////
238
239/**
240 * Constructor. Allocates the XML internals, parses the XML file if
241 * pstrFilename is != NULL and reads the settings version from it.
242 * @param pstrFilename
243 */
244ConfigFileBase::ConfigFileBase(const com::Utf8Str *pstrFilename)
245 : m(new Data)
246{
247 m->fFileExists = false;
248
249 if (pstrFilename)
250 {
251 // reading existing settings file:
252 m->strFilename = *pstrFilename;
253
254 xml::XmlFileParser parser;
255 m->pDoc = new xml::Document;
256 parser.read(*pstrFilename,
257 *m->pDoc);
258
259 m->fFileExists = true;
260
261 m->pelmRoot = m->pDoc->getRootElement();
262 if (!m->pelmRoot || !m->pelmRoot->nameEquals("VirtualBox"))
263 throw ConfigFileError(this, m->pelmRoot, N_("Root element in VirtualBox settings files must be \"VirtualBox\""));
264
265 if (!(m->pelmRoot->getAttributeValue("version", m->strSettingsVersionFull)))
266 throw ConfigFileError(this, m->pelmRoot, N_("Required VirtualBox/@version attribute is missing"));
267
268 LogRel(("Loading settings file \"%s\" with version \"%s\"\n", m->strFilename.c_str(), m->strSettingsVersionFull.c_str()));
269
270 m->sv = parseVersion(m->strSettingsVersionFull, m->pelmRoot);
271
272 // remember the settings version we read in case it gets upgraded later,
273 // so we know when to make backups
274 m->svRead = m->sv;
275 }
276 else
277 {
278 // creating new settings file:
279 m->strSettingsVersionFull = VBOX_XML_VERSION_FULL;
280 m->sv = SettingsVersion_v1_12;
281 }
282}
283
284ConfigFileBase::ConfigFileBase(const ConfigFileBase &other)
285 : m(new Data)
286{
287 copyBaseFrom(other);
288 m->strFilename = "";
289 m->fFileExists = false;
290}
291
292/**
293 * Clean up.
294 */
295ConfigFileBase::~ConfigFileBase()
296{
297 if (m)
298 {
299 delete m;
300 m = NULL;
301 }
302}
303
304/**
305 * Helper function to convert a MediaType enum value into string from.
306 * @param t
307 */
308/*static*/
309const char *ConfigFileBase::stringifyMediaType(MediaType t)
310{
311 switch (t)
312 {
313 case HardDisk:
314 return "hard disk";
315 case DVDImage:
316 return "DVD";
317 case FloppyImage:
318 return "floppy";
319 default:
320 AssertMsgFailed(("media type %d\n", t));
321 return "UNKNOWN";
322 }
323}
324
325/**
326 * Helper function that parses a full version number.
327 *
328 * Allow future versions but fail if file is older than 1.6. Throws on errors.
329 * @returns settings version
330 * @param strVersion
331 * @param pElm
332 */
333SettingsVersion_T ConfigFileBase::parseVersion(const Utf8Str &strVersion, const xml::ElementNode *pElm)
334{
335 SettingsVersion_T sv = SettingsVersion_Null;
336 if (strVersion.length() > 3)
337 {
338 uint32_t ulMajor = 0;
339 uint32_t ulMinor = 0;
340
341 const char *pcsz = strVersion.c_str();
342 char c;
343
344 while ( (c = *pcsz)
345 && RT_C_IS_DIGIT(c)
346 )
347 {
348 ulMajor *= 10;
349 ulMajor += c - '0';
350 ++pcsz;
351 }
352
353 if (*pcsz++ == '.')
354 {
355 while ( (c = *pcsz)
356 && RT_C_IS_DIGIT(c)
357 )
358 {
359 ulMinor *= 10;
360 ulMinor += c - '0';
361 ++pcsz;
362 }
363 }
364
365 if (ulMajor == 1)
366 {
367 if (ulMinor == 3)
368 sv = SettingsVersion_v1_3;
369 else if (ulMinor == 4)
370 sv = SettingsVersion_v1_4;
371 else if (ulMinor == 5)
372 sv = SettingsVersion_v1_5;
373 else if (ulMinor == 6)
374 sv = SettingsVersion_v1_6;
375 else if (ulMinor == 7)
376 sv = SettingsVersion_v1_7;
377 else if (ulMinor == 8)
378 sv = SettingsVersion_v1_8;
379 else if (ulMinor == 9)
380 sv = SettingsVersion_v1_9;
381 else if (ulMinor == 10)
382 sv = SettingsVersion_v1_10;
383 else if (ulMinor == 11)
384 sv = SettingsVersion_v1_11;
385 else if (ulMinor == 12)
386 sv = SettingsVersion_v1_12;
387 else if (ulMinor == 13)
388 sv = SettingsVersion_v1_13;
389 else if (ulMinor == 14)
390 sv = SettingsVersion_v1_14;
391 else if (ulMinor == 15)
392 sv = SettingsVersion_v1_15;
393 else if (ulMinor == 16)
394 sv = SettingsVersion_v1_16;
395 else if (ulMinor == 17)
396 sv = SettingsVersion_v1_17;
397 else if (ulMinor > 17)
398 sv = SettingsVersion_Future;
399 }
400 else if (ulMajor > 1)
401 sv = SettingsVersion_Future;
402
403 Log(("Parsed settings version %d.%d to enum value %d\n", ulMajor, ulMinor, sv));
404 }
405
406 if (sv == SettingsVersion_Null)
407 throw ConfigFileError(this, pElm, N_("Cannot handle settings version '%s'"), strVersion.c_str());
408
409 return sv;
410}
411
412/**
413 * Helper function that parses a UUID in string form into
414 * a com::Guid item. Accepts UUIDs both with and without
415 * "{}" brackets. Throws on errors.
416 * @param guid
417 * @param strUUID
418 * @param pElm
419 */
420void ConfigFileBase::parseUUID(Guid &guid,
421 const Utf8Str &strUUID,
422 const xml::ElementNode *pElm) const
423{
424 guid = strUUID.c_str();
425 if (guid.isZero())
426 throw ConfigFileError(this, pElm, N_("UUID \"%s\" has zero format"), strUUID.c_str());
427 else if (!guid.isValid())
428 throw ConfigFileError(this, pElm, N_("UUID \"%s\" has invalid format"), strUUID.c_str());
429}
430
431/**
432 * Parses the given string in str and attempts to treat it as an ISO
433 * date/time stamp to put into timestamp. Throws on errors.
434 * @param timestamp
435 * @param str
436 * @param pElm
437 */
438void ConfigFileBase::parseTimestamp(RTTIMESPEC &timestamp,
439 const com::Utf8Str &str,
440 const xml::ElementNode *pElm) const
441{
442 const char *pcsz = str.c_str();
443 // yyyy-mm-ddThh:mm:ss
444 // "2009-07-10T11:54:03Z"
445 // 01234567890123456789
446 // 1
447 if (str.length() > 19)
448 {
449 // timezone must either be unspecified or 'Z' for UTC
450 if ( (pcsz[19])
451 && (pcsz[19] != 'Z')
452 )
453 throw ConfigFileError(this, pElm, N_("Cannot handle ISO timestamp '%s': is not UTC date"), str.c_str());
454
455 int32_t yyyy;
456 uint32_t mm, dd, hh, min, secs;
457 if ( (pcsz[4] == '-')
458 && (pcsz[7] == '-')
459 && (pcsz[10] == 'T')
460 && (pcsz[13] == ':')
461 && (pcsz[16] == ':')
462 )
463 {
464 int rc;
465 if ( (RT_SUCCESS(rc = RTStrToInt32Ex(pcsz, NULL, 0, &yyyy)))
466 // could theoretically be negative but let's assume that nobody
467 // created virtual machines before the Christian era
468 && (RT_SUCCESS(rc = RTStrToUInt32Ex(pcsz + 5, NULL, 0, &mm)))
469 && (RT_SUCCESS(rc = RTStrToUInt32Ex(pcsz + 8, NULL, 0, &dd)))
470 && (RT_SUCCESS(rc = RTStrToUInt32Ex(pcsz + 11, NULL, 0, &hh)))
471 && (RT_SUCCESS(rc = RTStrToUInt32Ex(pcsz + 14, NULL, 0, &min)))
472 && (RT_SUCCESS(rc = RTStrToUInt32Ex(pcsz + 17, NULL, 0, &secs)))
473 )
474 {
475 RTTIME time =
476 {
477 yyyy,
478 (uint8_t)mm,
479 0,
480 0,
481 (uint8_t)dd,
482 (uint8_t)hh,
483 (uint8_t)min,
484 (uint8_t)secs,
485 0,
486 RTTIME_FLAGS_TYPE_UTC,
487 0
488 };
489 if (RTTimeNormalize(&time))
490 if (RTTimeImplode(&timestamp, &time))
491 return;
492 }
493
494 throw ConfigFileError(this, pElm, N_("Cannot parse ISO timestamp '%s': runtime error, %Rra"), str.c_str(), rc);
495 }
496
497 throw ConfigFileError(this, pElm, N_("Cannot parse ISO timestamp '%s': invalid format"), str.c_str());
498 }
499}
500
501/**
502 * Helper function that parses a Base64 formatted string into a binary blob.
503 * @param binary
504 * @param str
505 * @param pElm
506 */
507void ConfigFileBase::parseBase64(IconBlob &binary,
508 const Utf8Str &str,
509 const xml::ElementNode *pElm) const
510{
511#define DECODE_STR_MAX _1M
512 const char* psz = str.c_str();
513 ssize_t cbOut = RTBase64DecodedSize(psz, NULL);
514 if (cbOut > DECODE_STR_MAX)
515 throw ConfigFileError(this, pElm, N_("Base64 encoded data too long (%d > %d)"), cbOut, DECODE_STR_MAX);
516 else if (cbOut < 0)
517 throw ConfigFileError(this, pElm, N_("Base64 encoded data '%s' invalid"), psz);
518 binary.resize(cbOut);
519 int vrc = VINF_SUCCESS;
520 if (cbOut)
521 vrc = RTBase64Decode(psz, &binary.front(), cbOut, NULL, NULL);
522 if (RT_FAILURE(vrc))
523 {
524 binary.resize(0);
525 throw ConfigFileError(this, pElm, N_("Base64 encoded data could not be decoded (%Rrc)"), vrc);
526 }
527}
528
529/**
530 * Helper to create a string for a RTTIMESPEC for writing out ISO timestamps.
531 * @param stamp
532 * @return
533 */
534com::Utf8Str ConfigFileBase::stringifyTimestamp(const RTTIMESPEC &stamp) const
535{
536 RTTIME time;
537 if (!RTTimeExplode(&time, &stamp))
538 throw ConfigFileError(this, NULL, N_("Timespec %lld ms is invalid"), RTTimeSpecGetMilli(&stamp));
539
540 return Utf8StrFmt("%04u-%02u-%02uT%02u:%02u:%02uZ",
541 time.i32Year, time.u8Month, time.u8MonthDay,
542 time.u8Hour, time.u8Minute, time.u8Second);
543}
544
545/**
546 * Helper to create a base64 encoded string out of a binary blob.
547 * @param str
548 * @param binary
549 */
550void ConfigFileBase::toBase64(com::Utf8Str &str, const IconBlob &binary) const
551{
552 ssize_t cb = binary.size();
553 if (cb > 0)
554 {
555 ssize_t cchOut = RTBase64EncodedLength(cb);
556 str.reserve(cchOut+1);
557 int vrc = RTBase64Encode(&binary.front(), cb,
558 str.mutableRaw(), str.capacity(),
559 NULL);
560 if (RT_FAILURE(vrc))
561 throw ConfigFileError(this, NULL, N_("Failed to convert binary data to base64 format (%Rrc)"), vrc);
562 str.jolt();
563 }
564}
565
566/**
567 * Helper method to read in an ExtraData subtree and stores its contents
568 * in the given map of extradata items. Used for both main and machine
569 * extradata (MainConfigFile and MachineConfigFile).
570 * @param elmExtraData
571 * @param map
572 */
573void ConfigFileBase::readExtraData(const xml::ElementNode &elmExtraData,
574 StringsMap &map)
575{
576 xml::NodesLoop nlLevel4(elmExtraData);
577 const xml::ElementNode *pelmExtraDataItem;
578 while ((pelmExtraDataItem = nlLevel4.forAllNodes()))
579 {
580 if (pelmExtraDataItem->nameEquals("ExtraDataItem"))
581 {
582 // <ExtraDataItem name="GUI/LastWindowPostion" value="97,88,981,858"/>
583 Utf8Str strName, strValue;
584 if ( pelmExtraDataItem->getAttributeValue("name", strName)
585 && pelmExtraDataItem->getAttributeValue("value", strValue) )
586 map[strName] = strValue;
587 else
588 throw ConfigFileError(this, pelmExtraDataItem, N_("Required ExtraDataItem/@name or @value attribute is missing"));
589 }
590 }
591}
592
593/**
594 * Reads \<USBDeviceFilter\> entries from under the given elmDeviceFilters node and
595 * stores them in the given linklist. This is in ConfigFileBase because it's used
596 * from both MainConfigFile (for host filters) and MachineConfigFile (for machine
597 * filters).
598 * @param elmDeviceFilters
599 * @param ll
600 */
601void ConfigFileBase::readUSBDeviceFilters(const xml::ElementNode &elmDeviceFilters,
602 USBDeviceFiltersList &ll)
603{
604 xml::NodesLoop nl1(elmDeviceFilters, "DeviceFilter");
605 const xml::ElementNode *pelmLevel4Child;
606 while ((pelmLevel4Child = nl1.forAllNodes()))
607 {
608 USBDeviceFilter flt;
609 flt.action = USBDeviceFilterAction_Ignore;
610 Utf8Str strAction;
611 if ( pelmLevel4Child->getAttributeValue("name", flt.strName)
612 && pelmLevel4Child->getAttributeValue("active", flt.fActive))
613 {
614 if (!pelmLevel4Child->getAttributeValue("vendorId", flt.strVendorId))
615 pelmLevel4Child->getAttributeValue("vendorid", flt.strVendorId); // used before 1.3
616 if (!pelmLevel4Child->getAttributeValue("productId", flt.strProductId))
617 pelmLevel4Child->getAttributeValue("productid", flt.strProductId); // used before 1.3
618 pelmLevel4Child->getAttributeValue("revision", flt.strRevision);
619 pelmLevel4Child->getAttributeValue("manufacturer", flt.strManufacturer);
620 pelmLevel4Child->getAttributeValue("product", flt.strProduct);
621 if (!pelmLevel4Child->getAttributeValue("serialNumber", flt.strSerialNumber))
622 pelmLevel4Child->getAttributeValue("serialnumber", flt.strSerialNumber); // used before 1.3
623 pelmLevel4Child->getAttributeValue("port", flt.strPort);
624
625 // the next 2 are irrelevant for host USB objects
626 pelmLevel4Child->getAttributeValue("remote", flt.strRemote);
627 pelmLevel4Child->getAttributeValue("maskedInterfaces", flt.ulMaskedInterfaces);
628
629 // action is only used with host USB objects
630 if (pelmLevel4Child->getAttributeValue("action", strAction))
631 {
632 if (strAction == "Ignore")
633 flt.action = USBDeviceFilterAction_Ignore;
634 else if (strAction == "Hold")
635 flt.action = USBDeviceFilterAction_Hold;
636 else
637 throw ConfigFileError(this, pelmLevel4Child, N_("Invalid value '%s' in DeviceFilter/@action attribute"), strAction.c_str());
638 }
639
640 ll.push_back(flt);
641 }
642 }
643}
644
645/**
646 * Reads a media registry entry from the main VirtualBox.xml file.
647 *
648 * Whereas the current media registry code is fairly straightforward, it was quite a mess
649 * with settings format before 1.4 (VirtualBox 2.0 used settings format 1.3). The elements
650 * in the media registry were much more inconsistent, and different elements were used
651 * depending on the type of device and image.
652 *
653 * @param t
654 * @param elmMedium
655 * @param med
656 */
657void ConfigFileBase::readMediumOne(MediaType t,
658 const xml::ElementNode &elmMedium,
659 Medium &med)
660{
661 // <HardDisk uuid="{5471ecdb-1ddb-4012-a801-6d98e226868b}" location="/mnt/innotek-unix/vdis/Windows XP.vdi" format="VDI" type="Normal">
662
663 Utf8Str strUUID;
664 if (!elmMedium.getAttributeValue("uuid", strUUID))
665 throw ConfigFileError(this, &elmMedium, N_("Required %s/@uuid attribute is missing"), elmMedium.getName());
666
667 parseUUID(med.uuid, strUUID, &elmMedium);
668
669 bool fNeedsLocation = true;
670
671 if (t == HardDisk)
672 {
673 if (m->sv < SettingsVersion_v1_4)
674 {
675 // here the system is:
676 // <HardDisk uuid="{....}" type="normal">
677 // <VirtualDiskImage filePath="/path/to/xxx.vdi"/>
678 // </HardDisk>
679
680 fNeedsLocation = false;
681 bool fNeedsFilePath = true;
682 const xml::ElementNode *pelmImage;
683 if ((pelmImage = elmMedium.findChildElement("VirtualDiskImage")))
684 med.strFormat = "VDI";
685 else if ((pelmImage = elmMedium.findChildElement("VMDKImage")))
686 med.strFormat = "VMDK";
687 else if ((pelmImage = elmMedium.findChildElement("VHDImage")))
688 med.strFormat = "VHD";
689 else if ((pelmImage = elmMedium.findChildElement("ISCSIHardDisk")))
690 {
691 med.strFormat = "iSCSI";
692
693 fNeedsFilePath = false;
694 // location is special here: current settings specify an "iscsi://user@server:port/target/lun"
695 // string for the location and also have several disk properties for these, whereas this used
696 // to be hidden in several sub-elements before 1.4, so compose a location string and set up
697 // the properties:
698 med.strLocation = "iscsi://";
699 Utf8Str strUser, strServer, strPort, strTarget, strLun;
700 if (pelmImage->getAttributeValue("userName", strUser))
701 {
702 med.strLocation.append(strUser);
703 med.strLocation.append("@");
704 }
705 Utf8Str strServerAndPort;
706 if (pelmImage->getAttributeValue("server", strServer))
707 {
708 strServerAndPort = strServer;
709 }
710 if (pelmImage->getAttributeValue("port", strPort))
711 {
712 if (strServerAndPort.length())
713 strServerAndPort.append(":");
714 strServerAndPort.append(strPort);
715 }
716 med.strLocation.append(strServerAndPort);
717 if (pelmImage->getAttributeValue("target", strTarget))
718 {
719 med.strLocation.append("/");
720 med.strLocation.append(strTarget);
721 }
722 if (pelmImage->getAttributeValue("lun", strLun))
723 {
724 med.strLocation.append("/");
725 med.strLocation.append(strLun);
726 }
727
728 if (strServer.length() && strPort.length())
729 med.properties["TargetAddress"] = strServerAndPort;
730 if (strTarget.length())
731 med.properties["TargetName"] = strTarget;
732 if (strUser.length())
733 med.properties["InitiatorUsername"] = strUser;
734 Utf8Str strPassword;
735 if (pelmImage->getAttributeValue("password", strPassword))
736 med.properties["InitiatorSecret"] = strPassword;
737 if (strLun.length())
738 med.properties["LUN"] = strLun;
739 }
740 else if ((pelmImage = elmMedium.findChildElement("CustomHardDisk")))
741 {
742 fNeedsFilePath = false;
743 fNeedsLocation = true;
744 // also requires @format attribute, which will be queried below
745 }
746 else
747 throw ConfigFileError(this, &elmMedium, N_("Required %s/VirtualDiskImage element is missing"), elmMedium.getName());
748
749 if (fNeedsFilePath)
750 {
751 if (!(pelmImage->getAttributeValuePath("filePath", med.strLocation)))
752 throw ConfigFileError(this, &elmMedium, N_("Required %s/@filePath attribute is missing"), elmMedium.getName());
753 }
754 }
755
756 if (med.strFormat.isEmpty()) // not set with 1.4 format above, or 1.4 Custom format?
757 if (!elmMedium.getAttributeValue("format", med.strFormat))
758 throw ConfigFileError(this, &elmMedium, N_("Required %s/@format attribute is missing"), elmMedium.getName());
759
760 if (!elmMedium.getAttributeValue("autoReset", med.fAutoReset))
761 med.fAutoReset = false;
762
763 Utf8Str strType;
764 if (elmMedium.getAttributeValue("type", strType))
765 {
766 // pre-1.4 used lower case, so make this case-insensitive
767 strType.toUpper();
768 if (strType == "NORMAL")
769 med.hdType = MediumType_Normal;
770 else if (strType == "IMMUTABLE")
771 med.hdType = MediumType_Immutable;
772 else if (strType == "WRITETHROUGH")
773 med.hdType = MediumType_Writethrough;
774 else if (strType == "SHAREABLE")
775 med.hdType = MediumType_Shareable;
776 else if (strType == "READONLY")
777 med.hdType = MediumType_Readonly;
778 else if (strType == "MULTIATTACH")
779 med.hdType = MediumType_MultiAttach;
780 else
781 throw ConfigFileError(this, &elmMedium, N_("HardDisk/@type attribute must be one of Normal, Immutable, Writethrough, Shareable, Readonly or MultiAttach"));
782 }
783 }
784 else
785 {
786 if (m->sv < SettingsVersion_v1_4)
787 {
788 // DVD and floppy images before 1.4 had "src" attribute instead of "location"
789 if (!elmMedium.getAttributeValue("src", med.strLocation))
790 throw ConfigFileError(this, &elmMedium, N_("Required %s/@src attribute is missing"), elmMedium.getName());
791
792 fNeedsLocation = false;
793 }
794
795 if (!elmMedium.getAttributeValue("format", med.strFormat))
796 {
797 // DVD and floppy images before 1.11 had no format attribute. assign the default.
798 med.strFormat = "RAW";
799 }
800
801 if (t == DVDImage)
802 med.hdType = MediumType_Readonly;
803 else if (t == FloppyImage)
804 med.hdType = MediumType_Writethrough;
805 }
806
807 if (fNeedsLocation)
808 // current files and 1.4 CustomHardDisk elements must have a location attribute
809 if (!elmMedium.getAttributeValue("location", med.strLocation))
810 throw ConfigFileError(this, &elmMedium, N_("Required %s/@location attribute is missing"), elmMedium.getName());
811
812 // 3.2 builds added Description as an attribute, read it silently
813 // and write it back as an element starting with 5.1.26
814 elmMedium.getAttributeValue("Description", med.strDescription);
815
816 xml::NodesLoop nlMediumChildren(elmMedium);
817 const xml::ElementNode *pelmMediumChild;
818 while ((pelmMediumChild = nlMediumChildren.forAllNodes()))
819 {
820 if (pelmMediumChild->nameEquals("Description"))
821 med.strDescription = pelmMediumChild->getValue();
822 else if (pelmMediumChild->nameEquals("Property"))
823 {
824 // handle medium properties
825 Utf8Str strPropName, strPropValue;
826 if ( pelmMediumChild->getAttributeValue("name", strPropName)
827 && pelmMediumChild->getAttributeValue("value", strPropValue) )
828 med.properties[strPropName] = strPropValue;
829 else
830 throw ConfigFileError(this, pelmMediumChild, N_("Required HardDisk/Property/@name or @value attribute is missing"));
831 }
832 }
833}
834
835/**
836 * Reads a media registry entry from the main VirtualBox.xml file and recurses
837 * into children where applicable.
838 *
839 * @param t
840 * @param depth
841 * @param elmMedium
842 * @param med
843 */
844void ConfigFileBase::readMedium(MediaType t,
845 uint32_t depth,
846 const xml::ElementNode &elmMedium, // HardDisk node if root; if recursing,
847 // child HardDisk node or DiffHardDisk node for pre-1.4
848 Medium &med) // medium settings to fill out
849{
850 if (depth > SETTINGS_MEDIUM_DEPTH_MAX)
851 throw ConfigFileError(this, &elmMedium, N_("Maximum medium tree depth of %u exceeded"), SETTINGS_MEDIUM_DEPTH_MAX);
852
853 // Do not inline this method call, as the purpose of having this separate
854 // is to save on stack size. Less local variables are the key for reaching
855 // deep recursion levels with small stack (XPCOM/g++ without optimization).
856 readMediumOne(t, elmMedium, med);
857
858 if (t != HardDisk)
859 return;
860
861 // recurse to handle children
862 MediaList &llSettingsChildren = med.llChildren;
863 xml::NodesLoop nl2(elmMedium, m->sv >= SettingsVersion_v1_4 ? "HardDisk" : "DiffHardDisk");
864 const xml::ElementNode *pelmHDChild;
865 while ((pelmHDChild = nl2.forAllNodes()))
866 {
867 // recurse with this element and put the child at the end of the list.
868 // XPCOM has very small stack, avoid big local variables and use the
869 // list element.
870 llSettingsChildren.push_back(Medium::Empty);
871 readMedium(t,
872 depth + 1,
873 *pelmHDChild,
874 llSettingsChildren.back());
875 }
876}
877
878/**
879 * Reads in the entire \<MediaRegistry\> chunk and stores its media in the lists
880 * of the given MediaRegistry structure.
881 *
882 * This is used in both MainConfigFile and MachineConfigFile since starting with
883 * VirtualBox 4.0, we can have media registries in both.
884 *
885 * For pre-1.4 files, this gets called with the \<DiskRegistry\> chunk instead.
886 *
887 * @param elmMediaRegistry
888 * @param mr
889 */
890void ConfigFileBase::readMediaRegistry(const xml::ElementNode &elmMediaRegistry,
891 MediaRegistry &mr)
892{
893 xml::NodesLoop nl1(elmMediaRegistry);
894 const xml::ElementNode *pelmChild1;
895 while ((pelmChild1 = nl1.forAllNodes()))
896 {
897 MediaType t = Error;
898 if (pelmChild1->nameEquals("HardDisks"))
899 t = HardDisk;
900 else if (pelmChild1->nameEquals("DVDImages"))
901 t = DVDImage;
902 else if (pelmChild1->nameEquals("FloppyImages"))
903 t = FloppyImage;
904 else
905 continue;
906
907 xml::NodesLoop nl2(*pelmChild1);
908 const xml::ElementNode *pelmMedium;
909 while ((pelmMedium = nl2.forAllNodes()))
910 {
911 if ( t == HardDisk
912 && (pelmMedium->nameEquals("HardDisk")))
913 {
914 mr.llHardDisks.push_back(Medium::Empty);
915 readMedium(t, 1, *pelmMedium, mr.llHardDisks.back());
916 }
917 else if ( t == DVDImage
918 && (pelmMedium->nameEquals("Image")))
919 {
920 mr.llDvdImages.push_back(Medium::Empty);
921 readMedium(t, 1, *pelmMedium, mr.llDvdImages.back());
922 }
923 else if ( t == FloppyImage
924 && (pelmMedium->nameEquals("Image")))
925 {
926 mr.llFloppyImages.push_back(Medium::Empty);
927 readMedium(t, 1, *pelmMedium, mr.llFloppyImages.back());
928 }
929 }
930 }
931}
932
933/**
934 * This is common version for reading NAT port forward rule in per-_machine's_adapter_ and
935 * per-network approaches.
936 * Note: this function doesn't in fill given list from xml::ElementNodesList, because there is conflicting
937 * declaration in ovmfreader.h.
938 */
939void ConfigFileBase::readNATForwardRulesMap(const xml::ElementNode &elmParent, NATRulesMap &mapRules)
940{
941 xml::ElementNodesList plstRules;
942 elmParent.getChildElements(plstRules, "Forwarding");
943 for (xml::ElementNodesList::iterator pf = plstRules.begin(); pf != plstRules.end(); ++pf)
944 {
945 NATRule rule;
946 uint32_t port = 0;
947 (*pf)->getAttributeValue("name", rule.strName);
948 (*pf)->getAttributeValue("proto", (uint32_t&)rule.proto);
949 (*pf)->getAttributeValue("hostip", rule.strHostIP);
950 (*pf)->getAttributeValue("hostport", port);
951 rule.u16HostPort = (uint16_t)port;
952 (*pf)->getAttributeValue("guestip", rule.strGuestIP);
953 (*pf)->getAttributeValue("guestport", port);
954 rule.u16GuestPort = (uint16_t)port;
955 mapRules.insert(std::make_pair(rule.strName, rule));
956 }
957}
958
959void ConfigFileBase::readNATLoopbacks(const xml::ElementNode &elmParent, NATLoopbackOffsetList &llLoopbacks)
960{
961 xml::ElementNodesList plstLoopbacks;
962 elmParent.getChildElements(plstLoopbacks, "Loopback4");
963 for (xml::ElementNodesList::iterator lo = plstLoopbacks.begin();
964 lo != plstLoopbacks.end(); ++lo)
965 {
966 NATHostLoopbackOffset loopback;
967 (*lo)->getAttributeValue("address", loopback.strLoopbackHostAddress);
968 (*lo)->getAttributeValue("offset", (uint32_t&)loopback.u32Offset);
969 llLoopbacks.push_back(loopback);
970 }
971}
972
973
974/**
975 * Adds a "version" attribute to the given XML element with the
976 * VirtualBox settings version (e.g. "1.10-linux"). Used by
977 * the XML format for the root element and by the OVF export
978 * for the vbox:Machine element.
979 * @param elm
980 */
981void ConfigFileBase::setVersionAttribute(xml::ElementNode &elm)
982{
983 const char *pcszVersion = NULL;
984 switch (m->sv)
985 {
986 case SettingsVersion_v1_8:
987 pcszVersion = "1.8";
988 break;
989
990 case SettingsVersion_v1_9:
991 pcszVersion = "1.9";
992 break;
993
994 case SettingsVersion_v1_10:
995 pcszVersion = "1.10";
996 break;
997
998 case SettingsVersion_v1_11:
999 pcszVersion = "1.11";
1000 break;
1001
1002 case SettingsVersion_v1_12:
1003 pcszVersion = "1.12";
1004 break;
1005
1006 case SettingsVersion_v1_13:
1007 pcszVersion = "1.13";
1008 break;
1009
1010 case SettingsVersion_v1_14:
1011 pcszVersion = "1.14";
1012 break;
1013
1014 case SettingsVersion_v1_15:
1015 pcszVersion = "1.15";
1016 break;
1017
1018 case SettingsVersion_v1_16:
1019 pcszVersion = "1.16";
1020 break;
1021
1022 case SettingsVersion_v1_17:
1023 pcszVersion = "1.17";
1024 break;
1025
1026 default:
1027 // catch human error: the assertion below will trigger in debug
1028 // or dbgopt builds, so hopefully this will get noticed sooner in
1029 // the future, because it's easy to forget top update something.
1030 AssertMsg(m->sv <= SettingsVersion_v1_7, ("Settings.cpp: unexpected settings version %d, unhandled future version?\n", m->sv));
1031 // silently upgrade if this is less than 1.7 because that's the oldest we can write
1032 if (m->sv <= SettingsVersion_v1_7)
1033 {
1034 pcszVersion = "1.7";
1035 m->sv = SettingsVersion_v1_7;
1036 }
1037 else
1038 {
1039 // This is reached for SettingsVersion_Future and forgotten
1040 // settings version after SettingsVersion_v1_7, which should
1041 // not happen (see assertion above). Set the version to the
1042 // latest known version, to minimize loss of information, but
1043 // as we can't predict the future we have to use some format
1044 // we know, and latest should be the best choice. Note that
1045 // for "forgotten settings" this may not be the best choice,
1046 // but as it's an omission of someone who changed this file
1047 // it's the only generic possibility.
1048 pcszVersion = "1.17";
1049 m->sv = SettingsVersion_v1_17;
1050 }
1051 break;
1052 }
1053
1054 m->strSettingsVersionFull = Utf8StrFmt("%s-%s",
1055 pcszVersion,
1056 VBOX_XML_PLATFORM); // e.g. "linux"
1057 elm.setAttribute("version", m->strSettingsVersionFull);
1058}
1059
1060
1061/**
1062 * Creates a special backup file in case there is a version
1063 * bump, so that it is possible to go back to the previous
1064 * state. This is done only once (not for every settings
1065 * version bump), when the settings version is newer than
1066 * the version read from the config file. Must be called
1067 * before ConfigFileBase::createStubDocument, because that
1068 * method may alter information which this method needs.
1069 */
1070void ConfigFileBase::specialBackupIfFirstBump()
1071{
1072 // Since this gets called before the XML document is actually written out,
1073 // this is where we must check whether we're upgrading the settings version
1074 // and need to make a backup, so the user can go back to an earlier
1075 // VirtualBox version and recover his old settings files.
1076 if ( (m->svRead != SettingsVersion_Null) // old file exists?
1077 && (m->svRead < m->sv) // we're upgrading?
1078 )
1079 {
1080 // compose new filename: strip off trailing ".xml"/".vbox"
1081 Utf8Str strFilenameNew;
1082 Utf8Str strExt = ".xml";
1083 if (m->strFilename.endsWith(".xml"))
1084 strFilenameNew = m->strFilename.substr(0, m->strFilename.length() - 4);
1085 else if (m->strFilename.endsWith(".vbox"))
1086 {
1087 strFilenameNew = m->strFilename.substr(0, m->strFilename.length() - 5);
1088 strExt = ".vbox";
1089 }
1090
1091 // and append something like "-1.3-linux.xml"
1092 strFilenameNew.append("-");
1093 strFilenameNew.append(m->strSettingsVersionFull); // e.g. "1.3-linux"
1094 strFilenameNew.append(strExt); // .xml for main config, .vbox for machine config
1095
1096 // Copying the file cannot be avoided, as doing tricks with renaming
1097 // causes trouble on OS X with aliases (which follow the rename), and
1098 // on all platforms there is a risk of "losing" the VM config when
1099 // running out of space, as a rename here couldn't be rolled back.
1100 // Ignoring all errors besides running out of space is intentional, as
1101 // we don't want to do anything if the file already exists.
1102 int vrc = RTFileCopy(m->strFilename.c_str(), strFilenameNew.c_str());
1103 if (RT_UNLIKELY(vrc == VERR_DISK_FULL))
1104 throw ConfigFileError(this, NULL, N_("Cannot create settings backup file when upgrading to a newer settings format"));
1105
1106 // do this only once
1107 m->svRead = SettingsVersion_Null;
1108 }
1109}
1110
1111/**
1112 * Creates a new stub xml::Document in the m->pDoc member with the
1113 * root "VirtualBox" element set up. This is used by both
1114 * MainConfigFile and MachineConfigFile at the beginning of writing
1115 * out their XML.
1116 *
1117 * Before calling this, it is the responsibility of the caller to
1118 * set the "sv" member to the required settings version that is to
1119 * be written. For newly created files, the settings version will be
1120 * recent (1.12 or later if necessary); for files read in from disk
1121 * earlier, it will be the settings version indicated in the file.
1122 * However, this method will silently make sure that the settings
1123 * version is always at least 1.7 and change it if necessary, since
1124 * there is no write support for earlier settings versions.
1125 */
1126void ConfigFileBase::createStubDocument()
1127{
1128 Assert(m->pDoc == NULL);
1129 m->pDoc = new xml::Document;
1130
1131 m->pelmRoot = m->pDoc->createRootElement("VirtualBox",
1132 "\n"
1133 "** DO NOT EDIT THIS FILE.\n"
1134 "** If you make changes to this file while any VirtualBox related application\n"
1135 "** is running, your changes will be overwritten later, without taking effect.\n"
1136 "** Use VBoxManage or the VirtualBox Manager GUI to make changes.\n"
1137);
1138 m->pelmRoot->setAttribute("xmlns", VBOX_XML_NAMESPACE);
1139 // Have the code for producing a proper schema reference. Not used by most
1140 // tools, so don't bother doing it. The schema is not on the server anyway.
1141#ifdef VBOX_WITH_SETTINGS_SCHEMA
1142 m->pelmRoot->setAttribute("xmlns:xsi", "http://www.w3.org/2001/XMLSchema-instance");
1143 m->pelmRoot->setAttribute("xsi:schemaLocation", VBOX_XML_NAMESPACE " " VBOX_XML_SCHEMA);
1144#endif
1145
1146 // add settings version attribute to root element, update m->strSettingsVersionFull
1147 setVersionAttribute(*m->pelmRoot);
1148
1149 LogRel(("Saving settings file \"%s\" with version \"%s\"\n", m->strFilename.c_str(), m->strSettingsVersionFull.c_str()));
1150}
1151
1152/**
1153 * Creates an \<ExtraData\> node under the given parent element with
1154 * \<ExtraDataItem\> childern according to the contents of the given
1155 * map.
1156 *
1157 * This is in ConfigFileBase because it's used in both MainConfigFile
1158 * and MachineConfigFile, which both can have extradata.
1159 *
1160 * @param elmParent
1161 * @param me
1162 */
1163void ConfigFileBase::buildExtraData(xml::ElementNode &elmParent,
1164 const StringsMap &me)
1165{
1166 if (me.size())
1167 {
1168 xml::ElementNode *pelmExtraData = elmParent.createChild("ExtraData");
1169 for (StringsMap::const_iterator it = me.begin();
1170 it != me.end();
1171 ++it)
1172 {
1173 const Utf8Str &strName = it->first;
1174 const Utf8Str &strValue = it->second;
1175 xml::ElementNode *pelmThis = pelmExtraData->createChild("ExtraDataItem");
1176 pelmThis->setAttribute("name", strName);
1177 pelmThis->setAttribute("value", strValue);
1178 }
1179 }
1180}
1181
1182/**
1183 * Creates \<DeviceFilter\> nodes under the given parent element according to
1184 * the contents of the given USBDeviceFiltersList. This is in ConfigFileBase
1185 * because it's used in both MainConfigFile (for host filters) and
1186 * MachineConfigFile (for machine filters).
1187 *
1188 * If fHostMode is true, this means that we're supposed to write filters
1189 * for the IHost interface (respect "action", omit "strRemote" and
1190 * "ulMaskedInterfaces" in struct USBDeviceFilter).
1191 *
1192 * @param elmParent
1193 * @param ll
1194 * @param fHostMode
1195 */
1196void ConfigFileBase::buildUSBDeviceFilters(xml::ElementNode &elmParent,
1197 const USBDeviceFiltersList &ll,
1198 bool fHostMode)
1199{
1200 for (USBDeviceFiltersList::const_iterator it = ll.begin();
1201 it != ll.end();
1202 ++it)
1203 {
1204 const USBDeviceFilter &flt = *it;
1205 xml::ElementNode *pelmFilter = elmParent.createChild("DeviceFilter");
1206 pelmFilter->setAttribute("name", flt.strName);
1207 pelmFilter->setAttribute("active", flt.fActive);
1208 if (flt.strVendorId.length())
1209 pelmFilter->setAttribute("vendorId", flt.strVendorId);
1210 if (flt.strProductId.length())
1211 pelmFilter->setAttribute("productId", flt.strProductId);
1212 if (flt.strRevision.length())
1213 pelmFilter->setAttribute("revision", flt.strRevision);
1214 if (flt.strManufacturer.length())
1215 pelmFilter->setAttribute("manufacturer", flt.strManufacturer);
1216 if (flt.strProduct.length())
1217 pelmFilter->setAttribute("product", flt.strProduct);
1218 if (flt.strSerialNumber.length())
1219 pelmFilter->setAttribute("serialNumber", flt.strSerialNumber);
1220 if (flt.strPort.length())
1221 pelmFilter->setAttribute("port", flt.strPort);
1222
1223 if (fHostMode)
1224 {
1225 const char *pcsz =
1226 (flt.action == USBDeviceFilterAction_Ignore) ? "Ignore"
1227 : /*(flt.action == USBDeviceFilterAction_Hold) ?*/ "Hold";
1228 pelmFilter->setAttribute("action", pcsz);
1229 }
1230 else
1231 {
1232 if (flt.strRemote.length())
1233 pelmFilter->setAttribute("remote", flt.strRemote);
1234 if (flt.ulMaskedInterfaces)
1235 pelmFilter->setAttribute("maskedInterfaces", flt.ulMaskedInterfaces);
1236 }
1237 }
1238}
1239
1240/**
1241 * Creates a single \<HardDisk\> element for the given Medium structure
1242 * and recurses to write the child hard disks underneath. Called from
1243 * MainConfigFile::write().
1244 *
1245 * @param t
1246 * @param depth
1247 * @param elmMedium
1248 * @param mdm
1249 */
1250void ConfigFileBase::buildMedium(MediaType t,
1251 uint32_t depth,
1252 xml::ElementNode &elmMedium,
1253 const Medium &mdm)
1254{
1255 if (depth > SETTINGS_MEDIUM_DEPTH_MAX)
1256 throw ConfigFileError(this, &elmMedium, N_("Maximum medium tree depth of %u exceeded"), SETTINGS_MEDIUM_DEPTH_MAX);
1257
1258 xml::ElementNode *pelmMedium;
1259
1260 if (t == HardDisk)
1261 pelmMedium = elmMedium.createChild("HardDisk");
1262 else
1263 pelmMedium = elmMedium.createChild("Image");
1264
1265 pelmMedium->setAttribute("uuid", mdm.uuid.toStringCurly());
1266
1267 pelmMedium->setAttributePath("location", mdm.strLocation);
1268
1269 if (t == HardDisk || RTStrICmp(mdm.strFormat.c_str(), "RAW"))
1270 pelmMedium->setAttribute("format", mdm.strFormat);
1271 if ( t == HardDisk
1272 && mdm.fAutoReset)
1273 pelmMedium->setAttribute("autoReset", mdm.fAutoReset);
1274 if (mdm.strDescription.length())
1275 pelmMedium->createChild("Description")->addContent(mdm.strDescription);
1276
1277 for (StringsMap::const_iterator it = mdm.properties.begin();
1278 it != mdm.properties.end();
1279 ++it)
1280 {
1281 xml::ElementNode *pelmProp = pelmMedium->createChild("Property");
1282 pelmProp->setAttribute("name", it->first);
1283 pelmProp->setAttribute("value", it->second);
1284 }
1285
1286 // only for base hard disks, save the type
1287 if (depth == 1)
1288 {
1289 // no need to save the usual DVD/floppy medium types
1290 if ( ( t != DVDImage
1291 || ( mdm.hdType != MediumType_Writethrough // shouldn't happen
1292 && mdm.hdType != MediumType_Readonly))
1293 && ( t != FloppyImage
1294 || mdm.hdType != MediumType_Writethrough))
1295 {
1296 const char *pcszType =
1297 mdm.hdType == MediumType_Normal ? "Normal" :
1298 mdm.hdType == MediumType_Immutable ? "Immutable" :
1299 mdm.hdType == MediumType_Writethrough ? "Writethrough" :
1300 mdm.hdType == MediumType_Shareable ? "Shareable" :
1301 mdm.hdType == MediumType_Readonly ? "Readonly" :
1302 mdm.hdType == MediumType_MultiAttach ? "MultiAttach" :
1303 "INVALID";
1304 pelmMedium->setAttribute("type", pcszType);
1305 }
1306 }
1307
1308 for (MediaList::const_iterator it = mdm.llChildren.begin();
1309 it != mdm.llChildren.end();
1310 ++it)
1311 {
1312 // recurse for children
1313 buildMedium(t, // device type
1314 depth + 1, // depth
1315 *pelmMedium, // parent
1316 *it); // settings::Medium
1317 }
1318}
1319
1320/**
1321 * Creates a \<MediaRegistry\> node under the given parent and writes out all
1322 * hard disks and DVD and floppy images from the lists in the given MediaRegistry
1323 * structure under it.
1324 *
1325 * This is used in both MainConfigFile and MachineConfigFile since starting with
1326 * VirtualBox 4.0, we can have media registries in both.
1327 *
1328 * @param elmParent
1329 * @param mr
1330 */
1331void ConfigFileBase::buildMediaRegistry(xml::ElementNode &elmParent,
1332 const MediaRegistry &mr)
1333{
1334 if (mr.llHardDisks.size() == 0 && mr.llDvdImages.size() == 0 && mr.llFloppyImages.size() == 0)
1335 return;
1336
1337 xml::ElementNode *pelmMediaRegistry = elmParent.createChild("MediaRegistry");
1338
1339 if (mr.llHardDisks.size())
1340 {
1341 xml::ElementNode *pelmHardDisks = pelmMediaRegistry->createChild("HardDisks");
1342 for (MediaList::const_iterator it = mr.llHardDisks.begin();
1343 it != mr.llHardDisks.end();
1344 ++it)
1345 {
1346 buildMedium(HardDisk, 1, *pelmHardDisks, *it);
1347 }
1348 }
1349
1350 if (mr.llDvdImages.size())
1351 {
1352 xml::ElementNode *pelmDVDImages = pelmMediaRegistry->createChild("DVDImages");
1353 for (MediaList::const_iterator it = mr.llDvdImages.begin();
1354 it != mr.llDvdImages.end();
1355 ++it)
1356 {
1357 buildMedium(DVDImage, 1, *pelmDVDImages, *it);
1358 }
1359 }
1360
1361 if (mr.llFloppyImages.size())
1362 {
1363 xml::ElementNode *pelmFloppyImages = pelmMediaRegistry->createChild("FloppyImages");
1364 for (MediaList::const_iterator it = mr.llFloppyImages.begin();
1365 it != mr.llFloppyImages.end();
1366 ++it)
1367 {
1368 buildMedium(FloppyImage, 1, *pelmFloppyImages, *it);
1369 }
1370 }
1371}
1372
1373/**
1374 * Serialize NAT port-forwarding rules in parent container.
1375 * Note: it's responsibility of caller to create parent of the list tag.
1376 * because this method used for serializing per-_mahine's_adapter_ and per-network approaches.
1377 */
1378void ConfigFileBase::buildNATForwardRulesMap(xml::ElementNode &elmParent, const NATRulesMap &mapRules)
1379{
1380 for (NATRulesMap::const_iterator r = mapRules.begin();
1381 r != mapRules.end(); ++r)
1382 {
1383 xml::ElementNode *pelmPF;
1384 pelmPF = elmParent.createChild("Forwarding");
1385 const NATRule &nr = r->second;
1386 if (nr.strName.length())
1387 pelmPF->setAttribute("name", nr.strName);
1388 pelmPF->setAttribute("proto", nr.proto);
1389 if (nr.strHostIP.length())
1390 pelmPF->setAttribute("hostip", nr.strHostIP);
1391 if (nr.u16HostPort)
1392 pelmPF->setAttribute("hostport", nr.u16HostPort);
1393 if (nr.strGuestIP.length())
1394 pelmPF->setAttribute("guestip", nr.strGuestIP);
1395 if (nr.u16GuestPort)
1396 pelmPF->setAttribute("guestport", nr.u16GuestPort);
1397 }
1398}
1399
1400
1401void ConfigFileBase::buildNATLoopbacks(xml::ElementNode &elmParent, const NATLoopbackOffsetList &natLoopbackOffsetList)
1402{
1403 for (NATLoopbackOffsetList::const_iterator lo = natLoopbackOffsetList.begin();
1404 lo != natLoopbackOffsetList.end(); ++lo)
1405 {
1406 xml::ElementNode *pelmLo;
1407 pelmLo = elmParent.createChild("Loopback4");
1408 pelmLo->setAttribute("address", (*lo).strLoopbackHostAddress);
1409 pelmLo->setAttribute("offset", (*lo).u32Offset);
1410 }
1411}
1412
1413/**
1414 * Cleans up memory allocated by the internal XML parser. To be called by
1415 * descendant classes when they're done analyzing the DOM tree to discard it.
1416 */
1417void ConfigFileBase::clearDocument()
1418{
1419 m->cleanup();
1420}
1421
1422/**
1423 * Returns true only if the underlying config file exists on disk;
1424 * either because the file has been loaded from disk, or it's been written
1425 * to disk, or both.
1426 * @return
1427 */
1428bool ConfigFileBase::fileExists()
1429{
1430 return m->fFileExists;
1431}
1432
1433/**
1434 * Copies the base variables from another instance. Used by Machine::saveSettings
1435 * so that the settings version does not get lost when a copy of the Machine settings
1436 * file is made to see if settings have actually changed.
1437 * @param b
1438 */
1439void ConfigFileBase::copyBaseFrom(const ConfigFileBase &b)
1440{
1441 m->copyFrom(*b.m);
1442}
1443
1444////////////////////////////////////////////////////////////////////////////////
1445//
1446// Structures shared between Machine XML and VirtualBox.xml
1447//
1448////////////////////////////////////////////////////////////////////////////////
1449
1450
1451/**
1452 * Constructor. Needs to set sane defaults which stand the test of time.
1453 */
1454USBDeviceFilter::USBDeviceFilter() :
1455 fActive(false),
1456 action(USBDeviceFilterAction_Null),
1457 ulMaskedInterfaces(0)
1458{
1459}
1460
1461/**
1462 * Comparison operator. This gets called from MachineConfigFile::operator==,
1463 * which in turn gets called from Machine::saveSettings to figure out whether
1464 * machine settings have really changed and thus need to be written out to disk.
1465 */
1466bool USBDeviceFilter::operator==(const USBDeviceFilter &u) const
1467{
1468 return (this == &u)
1469 || ( strName == u.strName
1470 && fActive == u.fActive
1471 && strVendorId == u.strVendorId
1472 && strProductId == u.strProductId
1473 && strRevision == u.strRevision
1474 && strManufacturer == u.strManufacturer
1475 && strProduct == u.strProduct
1476 && strSerialNumber == u.strSerialNumber
1477 && strPort == u.strPort
1478 && action == u.action
1479 && strRemote == u.strRemote
1480 && ulMaskedInterfaces == u.ulMaskedInterfaces);
1481}
1482
1483/**
1484 * Constructor. Needs to set sane defaults which stand the test of time.
1485 */
1486Medium::Medium() :
1487 fAutoReset(false),
1488 hdType(MediumType_Normal)
1489{
1490}
1491
1492/**
1493 * Comparison operator. This gets called from MachineConfigFile::operator==,
1494 * which in turn gets called from Machine::saveSettings to figure out whether
1495 * machine settings have really changed and thus need to be written out to disk.
1496 */
1497bool Medium::operator==(const Medium &m) const
1498{
1499 return (this == &m)
1500 || ( uuid == m.uuid
1501 && strLocation == m.strLocation
1502 && strDescription == m.strDescription
1503 && strFormat == m.strFormat
1504 && fAutoReset == m.fAutoReset
1505 && properties == m.properties
1506 && hdType == m.hdType
1507 && llChildren == m.llChildren); // this is deep and recurses
1508}
1509
1510const struct Medium Medium::Empty; /* default ctor is OK */
1511
1512/**
1513 * Comparison operator. This gets called from MachineConfigFile::operator==,
1514 * which in turn gets called from Machine::saveSettings to figure out whether
1515 * machine settings have really changed and thus need to be written out to disk.
1516 */
1517bool MediaRegistry::operator==(const MediaRegistry &m) const
1518{
1519 return (this == &m)
1520 || ( llHardDisks == m.llHardDisks
1521 && llDvdImages == m.llDvdImages
1522 && llFloppyImages == m.llFloppyImages);
1523}
1524
1525/**
1526 * Constructor. Needs to set sane defaults which stand the test of time.
1527 */
1528NATRule::NATRule() :
1529 proto(NATProtocol_TCP),
1530 u16HostPort(0),
1531 u16GuestPort(0)
1532{
1533}
1534
1535/**
1536 * Comparison operator. This gets called from MachineConfigFile::operator==,
1537 * which in turn gets called from Machine::saveSettings to figure out whether
1538 * machine settings have really changed and thus need to be written out to disk.
1539 */
1540bool NATRule::operator==(const NATRule &r) const
1541{
1542 return (this == &r)
1543 || ( strName == r.strName
1544 && proto == r.proto
1545 && u16HostPort == r.u16HostPort
1546 && strHostIP == r.strHostIP
1547 && u16GuestPort == r.u16GuestPort
1548 && strGuestIP == r.strGuestIP);
1549}
1550
1551/**
1552 * Constructor. Needs to set sane defaults which stand the test of time.
1553 */
1554NATHostLoopbackOffset::NATHostLoopbackOffset() :
1555 u32Offset(0)
1556{
1557}
1558
1559/**
1560 * Comparison operator. This gets called from MachineConfigFile::operator==,
1561 * which in turn gets called from Machine::saveSettings to figure out whether
1562 * machine settings have really changed and thus need to be written out to disk.
1563 */
1564bool NATHostLoopbackOffset::operator==(const NATHostLoopbackOffset &o) const
1565{
1566 return (this == &o)
1567 || ( strLoopbackHostAddress == o.strLoopbackHostAddress
1568 && u32Offset == o.u32Offset);
1569}
1570
1571
1572////////////////////////////////////////////////////////////////////////////////
1573//
1574// VirtualBox.xml structures
1575//
1576////////////////////////////////////////////////////////////////////////////////
1577
1578/**
1579 * Constructor. Needs to set sane defaults which stand the test of time.
1580 */
1581SystemProperties::SystemProperties() :
1582 ulLogHistoryCount(3),
1583 fExclusiveHwVirt(true)
1584{
1585#if defined(RT_OS_DARWIN) || defined(RT_OS_WINDOWS) || defined(RT_OS_SOLARIS)
1586 fExclusiveHwVirt = false;
1587#endif
1588}
1589
1590/**
1591 * Constructor. Needs to set sane defaults which stand the test of time.
1592 */
1593DhcpOptValue::DhcpOptValue() :
1594 text(),
1595 encoding(DhcpOptEncoding_Legacy)
1596{
1597}
1598
1599/**
1600 * Non-standard constructor.
1601 */
1602DhcpOptValue::DhcpOptValue(const com::Utf8Str &aText, DhcpOptEncoding_T aEncoding) :
1603 text(aText),
1604 encoding(aEncoding)
1605{
1606}
1607
1608/**
1609 * Non-standard constructor.
1610 */
1611VmNameSlotKey::VmNameSlotKey(const com::Utf8Str& aVmName, LONG aSlot) :
1612 VmName(aVmName),
1613 Slot(aSlot)
1614{
1615}
1616
1617/**
1618 * Non-standard comparison operator.
1619 */
1620bool VmNameSlotKey::operator< (const VmNameSlotKey& that) const
1621{
1622 if (VmName == that.VmName)
1623 return Slot < that.Slot;
1624 else
1625 return VmName < that.VmName;
1626}
1627
1628/**
1629 * Constructor. Needs to set sane defaults which stand the test of time.
1630 */
1631DHCPServer::DHCPServer() :
1632 fEnabled(false)
1633{
1634}
1635
1636/**
1637 * Constructor. Needs to set sane defaults which stand the test of time.
1638 */
1639NATNetwork::NATNetwork() :
1640 fEnabled(true),
1641 fIPv6Enabled(false),
1642 fAdvertiseDefaultIPv6Route(false),
1643 fNeedDhcpServer(true),
1644 u32HostLoopback6Offset(0)
1645{
1646}
1647
1648
1649
1650////////////////////////////////////////////////////////////////////////////////
1651//
1652// MainConfigFile
1653//
1654////////////////////////////////////////////////////////////////////////////////
1655
1656/**
1657 * Reads one \<MachineEntry\> from the main VirtualBox.xml file.
1658 * @param elmMachineRegistry
1659 */
1660void MainConfigFile::readMachineRegistry(const xml::ElementNode &elmMachineRegistry)
1661{
1662 // <MachineEntry uuid="{ xxx }" src=" xxx "/>
1663 xml::NodesLoop nl1(elmMachineRegistry);
1664 const xml::ElementNode *pelmChild1;
1665 while ((pelmChild1 = nl1.forAllNodes()))
1666 {
1667 if (pelmChild1->nameEquals("MachineEntry"))
1668 {
1669 MachineRegistryEntry mre;
1670 Utf8Str strUUID;
1671 if ( pelmChild1->getAttributeValue("uuid", strUUID)
1672 && pelmChild1->getAttributeValue("src", mre.strSettingsFile) )
1673 {
1674 parseUUID(mre.uuid, strUUID, pelmChild1);
1675 llMachines.push_back(mre);
1676 }
1677 else
1678 throw ConfigFileError(this, pelmChild1, N_("Required MachineEntry/@uuid or @src attribute is missing"));
1679 }
1680 }
1681}
1682
1683/**
1684 * Reads in the \<DHCPServers\> chunk.
1685 * @param elmDHCPServers
1686 */
1687void MainConfigFile::readDHCPServers(const xml::ElementNode &elmDHCPServers)
1688{
1689 xml::NodesLoop nl1(elmDHCPServers);
1690 const xml::ElementNode *pelmServer;
1691 while ((pelmServer = nl1.forAllNodes()))
1692 {
1693 if (pelmServer->nameEquals("DHCPServer"))
1694 {
1695 DHCPServer srv;
1696 if ( pelmServer->getAttributeValue("networkName", srv.strNetworkName)
1697 && pelmServer->getAttributeValue("IPAddress", srv.strIPAddress)
1698 && pelmServer->getAttributeValue("networkMask", srv.GlobalDhcpOptions[DhcpOpt_SubnetMask].text)
1699 && pelmServer->getAttributeValue("lowerIP", srv.strIPLower)
1700 && pelmServer->getAttributeValue("upperIP", srv.strIPUpper)
1701 && pelmServer->getAttributeValue("enabled", srv.fEnabled) )
1702 {
1703 xml::NodesLoop nlOptions(*pelmServer, "Options");
1704 const xml::ElementNode *options;
1705 /* XXX: Options are in 1:1 relation to DHCPServer */
1706
1707 while ((options = nlOptions.forAllNodes()))
1708 {
1709 readDhcpOptions(srv.GlobalDhcpOptions, *options);
1710 } /* end of forall("Options") */
1711 xml::NodesLoop nlConfig(*pelmServer, "Config");
1712 const xml::ElementNode *cfg;
1713 while ((cfg = nlConfig.forAllNodes()))
1714 {
1715 com::Utf8Str strVmName;
1716 uint32_t u32Slot;
1717 cfg->getAttributeValue("vm-name", strVmName);
1718 cfg->getAttributeValue("slot", u32Slot);
1719 readDhcpOptions(srv.VmSlot2OptionsM[VmNameSlotKey(strVmName, u32Slot)], *cfg);
1720 }
1721 llDhcpServers.push_back(srv);
1722 }
1723 else
1724 throw ConfigFileError(this, pelmServer, N_("Required DHCPServer/@networkName, @IPAddress, @networkMask, @lowerIP, @upperIP or @enabled attribute is missing"));
1725 }
1726 }
1727}
1728
1729void MainConfigFile::readDhcpOptions(DhcpOptionMap& map,
1730 const xml::ElementNode& options)
1731{
1732 xml::NodesLoop nl2(options, "Option");
1733 const xml::ElementNode *opt;
1734 while ((opt = nl2.forAllNodes()))
1735 {
1736 DhcpOpt_T OptName;
1737 com::Utf8Str OptText;
1738 int32_t OptEnc = DhcpOptEncoding_Legacy;
1739
1740 opt->getAttributeValue("name", (uint32_t&)OptName);
1741
1742 if (OptName == DhcpOpt_SubnetMask)
1743 continue;
1744
1745 opt->getAttributeValue("value", OptText);
1746 opt->getAttributeValue("encoding", OptEnc);
1747
1748 map[OptName] = DhcpOptValue(OptText, (DhcpOptEncoding_T)OptEnc);
1749 } /* end of forall("Option") */
1750
1751}
1752
1753/**
1754 * Reads in the \<NATNetworks\> chunk.
1755 * @param elmNATNetworks
1756 */
1757void MainConfigFile::readNATNetworks(const xml::ElementNode &elmNATNetworks)
1758{
1759 xml::NodesLoop nl1(elmNATNetworks);
1760 const xml::ElementNode *pelmNet;
1761 while ((pelmNet = nl1.forAllNodes()))
1762 {
1763 if (pelmNet->nameEquals("NATNetwork"))
1764 {
1765 NATNetwork net;
1766 if ( pelmNet->getAttributeValue("networkName", net.strNetworkName)
1767 && pelmNet->getAttributeValue("enabled", net.fEnabled)
1768 && pelmNet->getAttributeValue("network", net.strIPv4NetworkCidr)
1769 && pelmNet->getAttributeValue("ipv6", net.fIPv6Enabled)
1770 && pelmNet->getAttributeValue("ipv6prefix", net.strIPv6Prefix)
1771 && pelmNet->getAttributeValue("advertiseDefaultIPv6Route", net.fAdvertiseDefaultIPv6Route)
1772 && pelmNet->getAttributeValue("needDhcp", net.fNeedDhcpServer) )
1773 {
1774 pelmNet->getAttributeValue("loopback6", net.u32HostLoopback6Offset);
1775 const xml::ElementNode *pelmMappings;
1776 if ((pelmMappings = pelmNet->findChildElement("Mappings")))
1777 readNATLoopbacks(*pelmMappings, net.llHostLoopbackOffsetList);
1778
1779 const xml::ElementNode *pelmPortForwardRules4;
1780 if ((pelmPortForwardRules4 = pelmNet->findChildElement("PortForwarding4")))
1781 readNATForwardRulesMap(*pelmPortForwardRules4,
1782 net.mapPortForwardRules4);
1783
1784 const xml::ElementNode *pelmPortForwardRules6;
1785 if ((pelmPortForwardRules6 = pelmNet->findChildElement("PortForwarding6")))
1786 readNATForwardRulesMap(*pelmPortForwardRules6,
1787 net.mapPortForwardRules6);
1788
1789 llNATNetworks.push_back(net);
1790 }
1791 else
1792 throw ConfigFileError(this, pelmNet, N_("Required NATNetwork/@networkName, @gateway, @network,@advertiseDefaultIpv6Route , @needDhcp or @enabled attribute is missing"));
1793 }
1794 }
1795}
1796
1797/**
1798 * Creates \<USBDeviceSource\> nodes under the given parent element according to
1799 * the contents of the given USBDeviceSourcesList.
1800 *
1801 * @param elmParent
1802 * @param ll
1803 */
1804void MainConfigFile::buildUSBDeviceSources(xml::ElementNode &elmParent,
1805 const USBDeviceSourcesList &ll)
1806{
1807 for (USBDeviceSourcesList::const_iterator it = ll.begin();
1808 it != ll.end();
1809 ++it)
1810 {
1811 const USBDeviceSource &src = *it;
1812 xml::ElementNode *pelmSource = elmParent.createChild("USBDeviceSource");
1813 pelmSource->setAttribute("name", src.strName);
1814 pelmSource->setAttribute("backend", src.strBackend);
1815 pelmSource->setAttribute("address", src.strAddress);
1816
1817 /* Write the properties. */
1818 for (StringsMap::const_iterator itProp = src.properties.begin();
1819 itProp != src.properties.end();
1820 ++itProp)
1821 {
1822 xml::ElementNode *pelmProp = pelmSource->createChild("Property");
1823 pelmProp->setAttribute("name", itProp->first);
1824 pelmProp->setAttribute("value", itProp->second);
1825 }
1826 }
1827}
1828
1829/**
1830 * Reads \<USBDeviceFilter\> entries from under the given elmDeviceFilters node and
1831 * stores them in the given linklist. This is in ConfigFileBase because it's used
1832 * from both MainConfigFile (for host filters) and MachineConfigFile (for machine
1833 * filters).
1834 * @param elmDeviceSources
1835 * @param ll
1836 */
1837void MainConfigFile::readUSBDeviceSources(const xml::ElementNode &elmDeviceSources,
1838 USBDeviceSourcesList &ll)
1839{
1840 xml::NodesLoop nl1(elmDeviceSources, "USBDeviceSource");
1841 const xml::ElementNode *pelmChild;
1842 while ((pelmChild = nl1.forAllNodes()))
1843 {
1844 USBDeviceSource src;
1845
1846 if ( pelmChild->getAttributeValue("name", src.strName)
1847 && pelmChild->getAttributeValue("backend", src.strBackend)
1848 && pelmChild->getAttributeValue("address", src.strAddress))
1849 {
1850 // handle medium properties
1851 xml::NodesLoop nl2(*pelmChild, "Property");
1852 const xml::ElementNode *pelmSrcChild;
1853 while ((pelmSrcChild = nl2.forAllNodes()))
1854 {
1855 Utf8Str strPropName, strPropValue;
1856 if ( pelmSrcChild->getAttributeValue("name", strPropName)
1857 && pelmSrcChild->getAttributeValue("value", strPropValue) )
1858 src.properties[strPropName] = strPropValue;
1859 else
1860 throw ConfigFileError(this, pelmSrcChild, N_("Required USBDeviceSource/Property/@name or @value attribute is missing"));
1861 }
1862
1863 ll.push_back(src);
1864 }
1865 }
1866}
1867
1868/**
1869 * Constructor.
1870 *
1871 * If pstrFilename is != NULL, this reads the given settings file into the member
1872 * variables and various substructures and lists. Otherwise, the member variables
1873 * are initialized with default values.
1874 *
1875 * Throws variants of xml::Error for I/O, XML and logical content errors, which
1876 * the caller should catch; if this constructor does not throw, then the member
1877 * variables contain meaningful values (either from the file or defaults).
1878 *
1879 * @param pstrFilename
1880 */
1881MainConfigFile::MainConfigFile(const Utf8Str *pstrFilename)
1882 : ConfigFileBase(pstrFilename)
1883{
1884 if (pstrFilename)
1885 {
1886 // the ConfigFileBase constructor has loaded the XML file, so now
1887 // we need only analyze what is in there
1888 xml::NodesLoop nlRootChildren(*m->pelmRoot);
1889 const xml::ElementNode *pelmRootChild;
1890 while ((pelmRootChild = nlRootChildren.forAllNodes()))
1891 {
1892 if (pelmRootChild->nameEquals("Global"))
1893 {
1894 xml::NodesLoop nlGlobalChildren(*pelmRootChild);
1895 const xml::ElementNode *pelmGlobalChild;
1896 while ((pelmGlobalChild = nlGlobalChildren.forAllNodes()))
1897 {
1898 if (pelmGlobalChild->nameEquals("SystemProperties"))
1899 {
1900 pelmGlobalChild->getAttributeValue("defaultMachineFolder", systemProperties.strDefaultMachineFolder);
1901 pelmGlobalChild->getAttributeValue("LoggingLevel", systemProperties.strLoggingLevel);
1902 pelmGlobalChild->getAttributeValue("defaultHardDiskFormat", systemProperties.strDefaultHardDiskFormat);
1903 if (!pelmGlobalChild->getAttributeValue("VRDEAuthLibrary", systemProperties.strVRDEAuthLibrary))
1904 // pre-1.11 used @remoteDisplayAuthLibrary instead
1905 pelmGlobalChild->getAttributeValue("remoteDisplayAuthLibrary", systemProperties.strVRDEAuthLibrary);
1906 pelmGlobalChild->getAttributeValue("webServiceAuthLibrary", systemProperties.strWebServiceAuthLibrary);
1907 pelmGlobalChild->getAttributeValue("defaultVRDEExtPack", systemProperties.strDefaultVRDEExtPack);
1908 pelmGlobalChild->getAttributeValue("LogHistoryCount", systemProperties.ulLogHistoryCount);
1909 pelmGlobalChild->getAttributeValue("autostartDatabasePath", systemProperties.strAutostartDatabasePath);
1910 pelmGlobalChild->getAttributeValue("defaultFrontend", systemProperties.strDefaultFrontend);
1911 pelmGlobalChild->getAttributeValue("exclusiveHwVirt", systemProperties.fExclusiveHwVirt);
1912 }
1913 else if (pelmGlobalChild->nameEquals("ExtraData"))
1914 readExtraData(*pelmGlobalChild, mapExtraDataItems);
1915 else if (pelmGlobalChild->nameEquals("MachineRegistry"))
1916 readMachineRegistry(*pelmGlobalChild);
1917 else if ( (pelmGlobalChild->nameEquals("MediaRegistry"))
1918 || ( (m->sv < SettingsVersion_v1_4)
1919 && (pelmGlobalChild->nameEquals("DiskRegistry"))
1920 )
1921 )
1922 readMediaRegistry(*pelmGlobalChild, mediaRegistry);
1923 else if (pelmGlobalChild->nameEquals("NetserviceRegistry"))
1924 {
1925 xml::NodesLoop nlLevel4(*pelmGlobalChild);
1926 const xml::ElementNode *pelmLevel4Child;
1927 while ((pelmLevel4Child = nlLevel4.forAllNodes()))
1928 {
1929 if (pelmLevel4Child->nameEquals("DHCPServers"))
1930 readDHCPServers(*pelmLevel4Child);
1931 if (pelmLevel4Child->nameEquals("NATNetworks"))
1932 readNATNetworks(*pelmLevel4Child);
1933 }
1934 }
1935 else if (pelmGlobalChild->nameEquals("USBDeviceFilters"))
1936 readUSBDeviceFilters(*pelmGlobalChild, host.llUSBDeviceFilters);
1937 else if (pelmGlobalChild->nameEquals("USBDeviceSources"))
1938 readUSBDeviceSources(*pelmGlobalChild, host.llUSBDeviceSources);
1939 }
1940 } // end if (pelmRootChild->nameEquals("Global"))
1941 }
1942
1943 clearDocument();
1944 }
1945
1946 // DHCP servers were introduced with settings version 1.7; if we're loading
1947 // from an older version OR this is a fresh install, then add one DHCP server
1948 // with default settings
1949 if ( (!llDhcpServers.size())
1950 && ( (!pstrFilename) // empty VirtualBox.xml file
1951 || (m->sv < SettingsVersion_v1_7) // upgrading from before 1.7
1952 )
1953 )
1954 {
1955 DHCPServer srv;
1956 srv.strNetworkName =
1957#ifdef RT_OS_WINDOWS
1958 "HostInterfaceNetworking-VirtualBox Host-Only Ethernet Adapter";
1959#else
1960 "HostInterfaceNetworking-vboxnet0";
1961#endif
1962 srv.strIPAddress = "192.168.56.100";
1963 srv.GlobalDhcpOptions[DhcpOpt_SubnetMask] = DhcpOptValue("255.255.255.0");
1964 srv.strIPLower = "192.168.56.101";
1965 srv.strIPUpper = "192.168.56.254";
1966 srv.fEnabled = true;
1967 llDhcpServers.push_back(srv);
1968 }
1969}
1970
1971void MainConfigFile::bumpSettingsVersionIfNeeded()
1972{
1973 if (m->sv < SettingsVersion_v1_16)
1974 {
1975 // VirtualBox 5.1 add support for additional USB device sources.
1976 if (!host.llUSBDeviceSources.empty())
1977 m->sv = SettingsVersion_v1_16;
1978 }
1979
1980 if (m->sv < SettingsVersion_v1_14)
1981 {
1982 // VirtualBox 4.3 adds NAT networks.
1983 if ( !llNATNetworks.empty())
1984 m->sv = SettingsVersion_v1_14;
1985 }
1986}
1987
1988
1989/**
1990 * Called from the IVirtualBox interface to write out VirtualBox.xml. This
1991 * builds an XML DOM tree and writes it out to disk.
1992 */
1993void MainConfigFile::write(const com::Utf8Str strFilename)
1994{
1995 bumpSettingsVersionIfNeeded();
1996
1997 m->strFilename = strFilename;
1998 specialBackupIfFirstBump();
1999 createStubDocument();
2000
2001 xml::ElementNode *pelmGlobal = m->pelmRoot->createChild("Global");
2002
2003 buildExtraData(*pelmGlobal, mapExtraDataItems);
2004
2005 xml::ElementNode *pelmMachineRegistry = pelmGlobal->createChild("MachineRegistry");
2006 for (MachinesRegistry::const_iterator it = llMachines.begin();
2007 it != llMachines.end();
2008 ++it)
2009 {
2010 // <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"/>
2011 const MachineRegistryEntry &mre = *it;
2012 xml::ElementNode *pelmMachineEntry = pelmMachineRegistry->createChild("MachineEntry");
2013 pelmMachineEntry->setAttribute("uuid", mre.uuid.toStringCurly());
2014 pelmMachineEntry->setAttribute("src", mre.strSettingsFile);
2015 }
2016
2017 buildMediaRegistry(*pelmGlobal, mediaRegistry);
2018
2019 xml::ElementNode *pelmNetserviceRegistry = pelmGlobal->createChild("NetserviceRegistry");
2020 xml::ElementNode *pelmDHCPServers = pelmNetserviceRegistry->createChild("DHCPServers");
2021 for (DHCPServersList::const_iterator it = llDhcpServers.begin();
2022 it != llDhcpServers.end();
2023 ++it)
2024 {
2025 const DHCPServer &d = *it;
2026 xml::ElementNode *pelmThis = pelmDHCPServers->createChild("DHCPServer");
2027 DhcpOptConstIterator itOpt;
2028 itOpt = d.GlobalDhcpOptions.find(DhcpOpt_SubnetMask);
2029
2030 pelmThis->setAttribute("networkName", d.strNetworkName);
2031 pelmThis->setAttribute("IPAddress", d.strIPAddress);
2032 if (itOpt != d.GlobalDhcpOptions.end())
2033 pelmThis->setAttribute("networkMask", itOpt->second.text);
2034 pelmThis->setAttribute("lowerIP", d.strIPLower);
2035 pelmThis->setAttribute("upperIP", d.strIPUpper);
2036 pelmThis->setAttribute("enabled", (d.fEnabled) ? 1 : 0); // too bad we chose 1 vs. 0 here
2037 /* We assume that if there're only 1 element it means that */
2038 size_t cOpt = d.GlobalDhcpOptions.size();
2039 /* We don't want duplicate validation check of networkMask here*/
2040 if ( ( itOpt == d.GlobalDhcpOptions.end()
2041 && cOpt > 0)
2042 || cOpt > 1)
2043 {
2044 xml::ElementNode *pelmOptions = pelmThis->createChild("Options");
2045 for (itOpt = d.GlobalDhcpOptions.begin();
2046 itOpt != d.GlobalDhcpOptions.end();
2047 ++itOpt)
2048 {
2049 if (itOpt->first == DhcpOpt_SubnetMask)
2050 continue;
2051
2052 xml::ElementNode *pelmOpt = pelmOptions->createChild("Option");
2053
2054 if (!pelmOpt)
2055 break;
2056
2057 pelmOpt->setAttribute("name", itOpt->first);
2058 pelmOpt->setAttribute("value", itOpt->second.text);
2059 if (itOpt->second.encoding != DhcpOptEncoding_Legacy)
2060 pelmOpt->setAttribute("encoding", (int)itOpt->second.encoding);
2061 }
2062 } /* end of if */
2063
2064 if (d.VmSlot2OptionsM.size() > 0)
2065 {
2066 VmSlot2OptionsConstIterator itVmSlot;
2067 DhcpOptConstIterator itOpt1;
2068 for(itVmSlot = d.VmSlot2OptionsM.begin();
2069 itVmSlot != d.VmSlot2OptionsM.end();
2070 ++itVmSlot)
2071 {
2072 xml::ElementNode *pelmCfg = pelmThis->createChild("Config");
2073 pelmCfg->setAttribute("vm-name", itVmSlot->first.VmName);
2074 pelmCfg->setAttribute("slot", (int32_t)itVmSlot->first.Slot);
2075
2076 for (itOpt1 = itVmSlot->second.begin();
2077 itOpt1 != itVmSlot->second.end();
2078 ++itOpt1)
2079 {
2080 xml::ElementNode *pelmOpt = pelmCfg->createChild("Option");
2081 pelmOpt->setAttribute("name", itOpt1->first);
2082 pelmOpt->setAttribute("value", itOpt1->second.text);
2083 if (itOpt1->second.encoding != DhcpOptEncoding_Legacy)
2084 pelmOpt->setAttribute("encoding", (int)itOpt1->second.encoding);
2085 }
2086 }
2087 } /* and of if */
2088
2089 }
2090
2091 xml::ElementNode *pelmNATNetworks;
2092 /* don't create entry if no NAT networks are registered. */
2093 if (!llNATNetworks.empty())
2094 {
2095 pelmNATNetworks = pelmNetserviceRegistry->createChild("NATNetworks");
2096 for (NATNetworksList::const_iterator it = llNATNetworks.begin();
2097 it != llNATNetworks.end();
2098 ++it)
2099 {
2100 const NATNetwork &n = *it;
2101 xml::ElementNode *pelmThis = pelmNATNetworks->createChild("NATNetwork");
2102 pelmThis->setAttribute("networkName", n.strNetworkName);
2103 pelmThis->setAttribute("network", n.strIPv4NetworkCidr);
2104 pelmThis->setAttribute("ipv6", n.fIPv6Enabled ? 1 : 0);
2105 pelmThis->setAttribute("ipv6prefix", n.strIPv6Prefix);
2106 pelmThis->setAttribute("advertiseDefaultIPv6Route", (n.fAdvertiseDefaultIPv6Route)? 1 : 0);
2107 pelmThis->setAttribute("needDhcp", (n.fNeedDhcpServer) ? 1 : 0);
2108 pelmThis->setAttribute("enabled", (n.fEnabled) ? 1 : 0); // too bad we chose 1 vs. 0 here
2109 if (n.mapPortForwardRules4.size())
2110 {
2111 xml::ElementNode *pelmPf4 = pelmThis->createChild("PortForwarding4");
2112 buildNATForwardRulesMap(*pelmPf4, n.mapPortForwardRules4);
2113 }
2114 if (n.mapPortForwardRules6.size())
2115 {
2116 xml::ElementNode *pelmPf6 = pelmThis->createChild("PortForwarding6");
2117 buildNATForwardRulesMap(*pelmPf6, n.mapPortForwardRules6);
2118 }
2119
2120 if (n.llHostLoopbackOffsetList.size())
2121 {
2122 xml::ElementNode *pelmMappings = pelmThis->createChild("Mappings");
2123 buildNATLoopbacks(*pelmMappings, n.llHostLoopbackOffsetList);
2124
2125 }
2126 }
2127 }
2128
2129
2130 xml::ElementNode *pelmSysProps = pelmGlobal->createChild("SystemProperties");
2131 if (systemProperties.strDefaultMachineFolder.length())
2132 pelmSysProps->setAttribute("defaultMachineFolder", systemProperties.strDefaultMachineFolder);
2133 if (systemProperties.strLoggingLevel.length())
2134 pelmSysProps->setAttribute("LoggingLevel", systemProperties.strLoggingLevel);
2135 if (systemProperties.strDefaultHardDiskFormat.length())
2136 pelmSysProps->setAttribute("defaultHardDiskFormat", systemProperties.strDefaultHardDiskFormat);
2137 if (systemProperties.strVRDEAuthLibrary.length())
2138 pelmSysProps->setAttribute("VRDEAuthLibrary", systemProperties.strVRDEAuthLibrary);
2139 if (systemProperties.strWebServiceAuthLibrary.length())
2140 pelmSysProps->setAttribute("webServiceAuthLibrary", systemProperties.strWebServiceAuthLibrary);
2141 if (systemProperties.strDefaultVRDEExtPack.length())
2142 pelmSysProps->setAttribute("defaultVRDEExtPack", systemProperties.strDefaultVRDEExtPack);
2143 pelmSysProps->setAttribute("LogHistoryCount", systemProperties.ulLogHistoryCount);
2144 if (systemProperties.strAutostartDatabasePath.length())
2145 pelmSysProps->setAttribute("autostartDatabasePath", systemProperties.strAutostartDatabasePath);
2146 if (systemProperties.strDefaultFrontend.length())
2147 pelmSysProps->setAttribute("defaultFrontend", systemProperties.strDefaultFrontend);
2148 pelmSysProps->setAttribute("exclusiveHwVirt", systemProperties.fExclusiveHwVirt);
2149
2150 buildUSBDeviceFilters(*pelmGlobal->createChild("USBDeviceFilters"),
2151 host.llUSBDeviceFilters,
2152 true); // fHostMode
2153
2154 if (!host.llUSBDeviceSources.empty())
2155 buildUSBDeviceSources(*pelmGlobal->createChild("USBDeviceSources"),
2156 host.llUSBDeviceSources);
2157
2158 // now go write the XML
2159 xml::XmlFileWriter writer(*m->pDoc);
2160 writer.write(m->strFilename.c_str(), true /*fSafe*/);
2161
2162 m->fFileExists = true;
2163
2164 clearDocument();
2165}
2166
2167////////////////////////////////////////////////////////////////////////////////
2168//
2169// Machine XML structures
2170//
2171////////////////////////////////////////////////////////////////////////////////
2172
2173/**
2174 * Constructor. Needs to set sane defaults which stand the test of time.
2175 */
2176VRDESettings::VRDESettings() :
2177 fEnabled(true), // default for old VMs, for new ones it's false
2178 authType(AuthType_Null),
2179 ulAuthTimeout(5000),
2180 fAllowMultiConnection(false),
2181 fReuseSingleConnection(false)
2182{
2183}
2184
2185/**
2186 * Check if all settings have default values.
2187 */
2188bool VRDESettings::areDefaultSettings(SettingsVersion_T sv) const
2189{
2190 return (sv < SettingsVersion_v1_16 ? fEnabled : !fEnabled)
2191 && authType == AuthType_Null
2192 && (ulAuthTimeout == 5000 || ulAuthTimeout == 0)
2193 && strAuthLibrary.isEmpty()
2194 && !fAllowMultiConnection
2195 && !fReuseSingleConnection
2196 && strVrdeExtPack.isEmpty()
2197 && mapProperties.size() == 0;
2198}
2199
2200/**
2201 * Comparison operator. This gets called from MachineConfigFile::operator==,
2202 * which in turn gets called from Machine::saveSettings to figure out whether
2203 * machine settings have really changed and thus need to be written out to disk.
2204 */
2205bool VRDESettings::operator==(const VRDESettings& v) const
2206{
2207 return (this == &v)
2208 || ( fEnabled == v.fEnabled
2209 && authType == v.authType
2210 && ulAuthTimeout == v.ulAuthTimeout
2211 && strAuthLibrary == v.strAuthLibrary
2212 && fAllowMultiConnection == v.fAllowMultiConnection
2213 && fReuseSingleConnection == v.fReuseSingleConnection
2214 && strVrdeExtPack == v.strVrdeExtPack
2215 && mapProperties == v.mapProperties);
2216}
2217
2218/**
2219 * Constructor. Needs to set sane defaults which stand the test of time.
2220 */
2221BIOSSettings::BIOSSettings() :
2222 fACPIEnabled(true),
2223 fIOAPICEnabled(false),
2224 fLogoFadeIn(true),
2225 fLogoFadeOut(true),
2226 fPXEDebugEnabled(false),
2227 ulLogoDisplayTime(0),
2228 biosBootMenuMode(BIOSBootMenuMode_MessageAndMenu),
2229 apicMode(APICMode_APIC),
2230 llTimeOffset(0)
2231{
2232}
2233
2234/**
2235 * Check if all settings have default values.
2236 */
2237bool BIOSSettings::areDefaultSettings() const
2238{
2239 return fACPIEnabled
2240 && !fIOAPICEnabled
2241 && fLogoFadeIn
2242 && fLogoFadeOut
2243 && !fPXEDebugEnabled
2244 && ulLogoDisplayTime == 0
2245 && biosBootMenuMode == BIOSBootMenuMode_MessageAndMenu
2246 && apicMode == APICMode_APIC
2247 && llTimeOffset == 0
2248 && strLogoImagePath.isEmpty();
2249}
2250
2251/**
2252 * Comparison operator. This gets called from MachineConfigFile::operator==,
2253 * which in turn gets called from Machine::saveSettings to figure out whether
2254 * machine settings have really changed and thus need to be written out to disk.
2255 */
2256bool BIOSSettings::operator==(const BIOSSettings &d) const
2257{
2258 return (this == &d)
2259 || ( fACPIEnabled == d.fACPIEnabled
2260 && fIOAPICEnabled == d.fIOAPICEnabled
2261 && fLogoFadeIn == d.fLogoFadeIn
2262 && fLogoFadeOut == d.fLogoFadeOut
2263 && fPXEDebugEnabled == d.fPXEDebugEnabled
2264 && ulLogoDisplayTime == d.ulLogoDisplayTime
2265 && biosBootMenuMode == d.biosBootMenuMode
2266 && apicMode == d.apicMode
2267 && llTimeOffset == d.llTimeOffset
2268 && strLogoImagePath == d.strLogoImagePath);
2269}
2270
2271/**
2272 * Constructor. Needs to set sane defaults which stand the test of time.
2273 */
2274USBController::USBController() :
2275 enmType(USBControllerType_Null)
2276{
2277}
2278
2279/**
2280 * Comparison operator. This gets called from MachineConfigFile::operator==,
2281 * which in turn gets called from Machine::saveSettings to figure out whether
2282 * machine settings have really changed and thus need to be written out to disk.
2283 */
2284bool USBController::operator==(const USBController &u) const
2285{
2286 return (this == &u)
2287 || ( strName == u.strName
2288 && enmType == u.enmType);
2289}
2290
2291/**
2292 * Constructor. Needs to set sane defaults which stand the test of time.
2293 */
2294USB::USB()
2295{
2296}
2297
2298/**
2299 * Comparison operator. This gets called from MachineConfigFile::operator==,
2300 * which in turn gets called from Machine::saveSettings to figure out whether
2301 * machine settings have really changed and thus need to be written out to disk.
2302 */
2303bool USB::operator==(const USB &u) const
2304{
2305 return (this == &u)
2306 || ( llUSBControllers == u.llUSBControllers
2307 && llDeviceFilters == u.llDeviceFilters);
2308}
2309
2310/**
2311 * Constructor. Needs to set sane defaults which stand the test of time.
2312 */
2313NAT::NAT() :
2314 u32Mtu(0),
2315 u32SockRcv(0),
2316 u32SockSnd(0),
2317 u32TcpRcv(0),
2318 u32TcpSnd(0),
2319 fDNSPassDomain(true), /* historically this value is true */
2320 fDNSProxy(false),
2321 fDNSUseHostResolver(false),
2322 fAliasLog(false),
2323 fAliasProxyOnly(false),
2324 fAliasUseSamePorts(false)
2325{
2326}
2327
2328/**
2329 * Check if all DNS settings have default values.
2330 */
2331bool NAT::areDNSDefaultSettings() const
2332{
2333 return fDNSPassDomain && !fDNSProxy && !fDNSUseHostResolver;
2334}
2335
2336/**
2337 * Check if all Alias settings have default values.
2338 */
2339bool NAT::areAliasDefaultSettings() const
2340{
2341 return !fAliasLog && !fAliasProxyOnly && !fAliasUseSamePorts;
2342}
2343
2344/**
2345 * Check if all TFTP settings have default values.
2346 */
2347bool NAT::areTFTPDefaultSettings() const
2348{
2349 return strTFTPPrefix.isEmpty()
2350 && strTFTPBootFile.isEmpty()
2351 && strTFTPNextServer.isEmpty();
2352}
2353
2354/**
2355 * Check if all settings have default values.
2356 */
2357bool NAT::areDefaultSettings() const
2358{
2359 return strNetwork.isEmpty()
2360 && strBindIP.isEmpty()
2361 && u32Mtu == 0
2362 && u32SockRcv == 0
2363 && u32SockSnd == 0
2364 && u32TcpRcv == 0
2365 && u32TcpSnd == 0
2366 && areDNSDefaultSettings()
2367 && areAliasDefaultSettings()
2368 && areTFTPDefaultSettings()
2369 && mapRules.size() == 0;
2370}
2371
2372/**
2373 * Comparison operator. This gets called from MachineConfigFile::operator==,
2374 * which in turn gets called from Machine::saveSettings to figure out whether
2375 * machine settings have really changed and thus need to be written out to disk.
2376 */
2377bool NAT::operator==(const NAT &n) const
2378{
2379 return (this == &n)
2380 || ( strNetwork == n.strNetwork
2381 && strBindIP == n.strBindIP
2382 && u32Mtu == n.u32Mtu
2383 && u32SockRcv == n.u32SockRcv
2384 && u32SockSnd == n.u32SockSnd
2385 && u32TcpSnd == n.u32TcpSnd
2386 && u32TcpRcv == n.u32TcpRcv
2387 && strTFTPPrefix == n.strTFTPPrefix
2388 && strTFTPBootFile == n.strTFTPBootFile
2389 && strTFTPNextServer == n.strTFTPNextServer
2390 && fDNSPassDomain == n.fDNSPassDomain
2391 && fDNSProxy == n.fDNSProxy
2392 && fDNSUseHostResolver == n.fDNSUseHostResolver
2393 && fAliasLog == n.fAliasLog
2394 && fAliasProxyOnly == n.fAliasProxyOnly
2395 && fAliasUseSamePorts == n.fAliasUseSamePorts
2396 && mapRules == n.mapRules);
2397}
2398
2399/**
2400 * Constructor. Needs to set sane defaults which stand the test of time.
2401 */
2402NetworkAdapter::NetworkAdapter() :
2403 ulSlot(0),
2404 type(NetworkAdapterType_Am79C970A), // default for old VMs, for new ones it's Am79C973
2405 fEnabled(false),
2406 fCableConnected(false), // default for old VMs, for new ones it's true
2407 ulLineSpeed(0),
2408 enmPromiscModePolicy(NetworkAdapterPromiscModePolicy_Deny),
2409 fTraceEnabled(false),
2410 mode(NetworkAttachmentType_Null),
2411 ulBootPriority(0)
2412{
2413}
2414
2415/**
2416 * Check if all Generic Driver settings have default values.
2417 */
2418bool NetworkAdapter::areGenericDriverDefaultSettings() const
2419{
2420 return strGenericDriver.isEmpty()
2421 && genericProperties.size() == 0;
2422}
2423
2424/**
2425 * Check if all settings have default values.
2426 */
2427bool NetworkAdapter::areDefaultSettings(SettingsVersion_T sv) const
2428{
2429 // 5.0 and earlier had a default of fCableConnected=false, which doesn't
2430 // make a lot of sense (but it's a fact). Later versions don't save the
2431 // setting if it's at the default value and thus must get it right.
2432 return !fEnabled
2433 && strMACAddress.isEmpty()
2434 && ( (sv >= SettingsVersion_v1_16 && fCableConnected && type == NetworkAdapterType_Am79C973)
2435 || (sv < SettingsVersion_v1_16 && !fCableConnected && type == NetworkAdapterType_Am79C970A))
2436 && ulLineSpeed == 0
2437 && enmPromiscModePolicy == NetworkAdapterPromiscModePolicy_Deny
2438 && mode == NetworkAttachmentType_Null
2439 && nat.areDefaultSettings()
2440 && strBridgedName.isEmpty()
2441 && strInternalNetworkName.isEmpty()
2442 && strHostOnlyName.isEmpty()
2443 && areGenericDriverDefaultSettings()
2444 && strNATNetworkName.isEmpty();
2445}
2446
2447/**
2448 * Special check if settings of the non-current attachment type have default values.
2449 */
2450bool NetworkAdapter::areDisabledDefaultSettings() const
2451{
2452 return (mode != NetworkAttachmentType_NAT ? nat.areDefaultSettings() : true)
2453 && (mode != NetworkAttachmentType_Bridged ? strBridgedName.isEmpty() : true)
2454 && (mode != NetworkAttachmentType_Internal ? strInternalNetworkName.isEmpty() : true)
2455 && (mode != NetworkAttachmentType_HostOnly ? strHostOnlyName.isEmpty() : true)
2456 && (mode != NetworkAttachmentType_Generic ? areGenericDriverDefaultSettings() : true)
2457 && (mode != NetworkAttachmentType_NATNetwork ? strNATNetworkName.isEmpty() : true);
2458}
2459
2460/**
2461 * Comparison operator. This gets called from MachineConfigFile::operator==,
2462 * which in turn gets called from Machine::saveSettings to figure out whether
2463 * machine settings have really changed and thus need to be written out to disk.
2464 */
2465bool NetworkAdapter::operator==(const NetworkAdapter &n) const
2466{
2467 return (this == &n)
2468 || ( ulSlot == n.ulSlot
2469 && type == n.type
2470 && fEnabled == n.fEnabled
2471 && strMACAddress == n.strMACAddress
2472 && fCableConnected == n.fCableConnected
2473 && ulLineSpeed == n.ulLineSpeed
2474 && enmPromiscModePolicy == n.enmPromiscModePolicy
2475 && fTraceEnabled == n.fTraceEnabled
2476 && strTraceFile == n.strTraceFile
2477 && mode == n.mode
2478 && nat == n.nat
2479 && strBridgedName == n.strBridgedName
2480 && strHostOnlyName == n.strHostOnlyName
2481 && strInternalNetworkName == n.strInternalNetworkName
2482 && strGenericDriver == n.strGenericDriver
2483 && genericProperties == n.genericProperties
2484 && ulBootPriority == n.ulBootPriority
2485 && strBandwidthGroup == n.strBandwidthGroup);
2486}
2487
2488/**
2489 * Constructor. Needs to set sane defaults which stand the test of time.
2490 */
2491SerialPort::SerialPort() :
2492 ulSlot(0),
2493 fEnabled(false),
2494 ulIOBase(0x3f8),
2495 ulIRQ(4),
2496 portMode(PortMode_Disconnected),
2497 fServer(false)
2498{
2499}
2500
2501/**
2502 * Comparison operator. This gets called from MachineConfigFile::operator==,
2503 * which in turn gets called from Machine::saveSettings to figure out whether
2504 * machine settings have really changed and thus need to be written out to disk.
2505 */
2506bool SerialPort::operator==(const SerialPort &s) const
2507{
2508 return (this == &s)
2509 || ( ulSlot == s.ulSlot
2510 && fEnabled == s.fEnabled
2511 && ulIOBase == s.ulIOBase
2512 && ulIRQ == s.ulIRQ
2513 && portMode == s.portMode
2514 && strPath == s.strPath
2515 && fServer == s.fServer);
2516}
2517
2518/**
2519 * Constructor. Needs to set sane defaults which stand the test of time.
2520 */
2521ParallelPort::ParallelPort() :
2522 ulSlot(0),
2523 fEnabled(false),
2524 ulIOBase(0x378),
2525 ulIRQ(7)
2526{
2527}
2528
2529/**
2530 * Comparison operator. This gets called from MachineConfigFile::operator==,
2531 * which in turn gets called from Machine::saveSettings to figure out whether
2532 * machine settings have really changed and thus need to be written out to disk.
2533 */
2534bool ParallelPort::operator==(const ParallelPort &s) const
2535{
2536 return (this == &s)
2537 || ( ulSlot == s.ulSlot
2538 && fEnabled == s.fEnabled
2539 && ulIOBase == s.ulIOBase
2540 && ulIRQ == s.ulIRQ
2541 && strPath == s.strPath);
2542}
2543
2544/**
2545 * Constructor. Needs to set sane defaults which stand the test of time.
2546 */
2547AudioAdapter::AudioAdapter() :
2548 fEnabled(true), // default for old VMs, for new ones it's false
2549 controllerType(AudioControllerType_AC97),
2550 codecType(AudioCodecType_STAC9700),
2551 driverType(AudioDriverType_Null)
2552{
2553}
2554
2555/**
2556 * Check if all settings have default values.
2557 */
2558bool AudioAdapter::areDefaultSettings(SettingsVersion_T sv) const
2559{
2560 return (sv < SettingsVersion_v1_16 ? false : !fEnabled)
2561 && controllerType == AudioControllerType_AC97
2562 && codecType == AudioCodecType_STAC9700
2563 && properties.size() == 0;
2564}
2565
2566/**
2567 * Comparison operator. This gets called from MachineConfigFile::operator==,
2568 * which in turn gets called from Machine::saveSettings to figure out whether
2569 * machine settings have really changed and thus need to be written out to disk.
2570 */
2571bool AudioAdapter::operator==(const AudioAdapter &a) const
2572{
2573 return (this == &a)
2574 || ( fEnabled == a.fEnabled
2575 && controllerType == a.controllerType
2576 && codecType == a.codecType
2577 && driverType == a.driverType
2578 && properties == a.properties);
2579}
2580
2581/**
2582 * Constructor. Needs to set sane defaults which stand the test of time.
2583 */
2584SharedFolder::SharedFolder() :
2585 fWritable(false),
2586 fAutoMount(false)
2587{
2588}
2589
2590/**
2591 * Comparison operator. This gets called from MachineConfigFile::operator==,
2592 * which in turn gets called from Machine::saveSettings to figure out whether
2593 * machine settings have really changed and thus need to be written out to disk.
2594 */
2595bool SharedFolder::operator==(const SharedFolder &g) const
2596{
2597 return (this == &g)
2598 || ( strName == g.strName
2599 && strHostPath == g.strHostPath
2600 && fWritable == g.fWritable
2601 && fAutoMount == g.fAutoMount);
2602}
2603
2604/**
2605 * Constructor. Needs to set sane defaults which stand the test of time.
2606 */
2607GuestProperty::GuestProperty() :
2608 timestamp(0)
2609{
2610}
2611
2612/**
2613 * Comparison operator. This gets called from MachineConfigFile::operator==,
2614 * which in turn gets called from Machine::saveSettings to figure out whether
2615 * machine settings have really changed and thus need to be written out to disk.
2616 */
2617bool GuestProperty::operator==(const GuestProperty &g) const
2618{
2619 return (this == &g)
2620 || ( strName == g.strName
2621 && strValue == g.strValue
2622 && timestamp == g.timestamp
2623 && strFlags == g.strFlags);
2624}
2625
2626/**
2627 * Constructor. Needs to set sane defaults which stand the test of time.
2628 */
2629CpuIdLeaf::CpuIdLeaf() :
2630 ulId(UINT32_MAX),
2631 ulEax(0),
2632 ulEbx(0),
2633 ulEcx(0),
2634 ulEdx(0)
2635{
2636}
2637
2638/**
2639 * Comparison operator. This gets called from MachineConfigFile::operator==,
2640 * which in turn gets called from Machine::saveSettings to figure out whether
2641 * machine settings have really changed and thus need to be written out to disk.
2642 */
2643bool CpuIdLeaf::operator==(const CpuIdLeaf &c) const
2644{
2645 return (this == &c)
2646 || ( ulId == c.ulId
2647 && ulEax == c.ulEax
2648 && ulEbx == c.ulEbx
2649 && ulEcx == c.ulEcx
2650 && ulEdx == c.ulEdx);
2651}
2652
2653/**
2654 * Constructor. Needs to set sane defaults which stand the test of time.
2655 */
2656Cpu::Cpu() :
2657 ulId(UINT32_MAX)
2658{
2659}
2660
2661/**
2662 * Comparison operator. This gets called from MachineConfigFile::operator==,
2663 * which in turn gets called from Machine::saveSettings to figure out whether
2664 * machine settings have really changed and thus need to be written out to disk.
2665 */
2666bool Cpu::operator==(const Cpu &c) const
2667{
2668 return (this == &c)
2669 || (ulId == c.ulId);
2670}
2671
2672/**
2673 * Constructor. Needs to set sane defaults which stand the test of time.
2674 */
2675BandwidthGroup::BandwidthGroup() :
2676 cMaxBytesPerSec(0),
2677 enmType(BandwidthGroupType_Null)
2678{
2679}
2680
2681/**
2682 * Comparison operator. This gets called from MachineConfigFile::operator==,
2683 * which in turn gets called from Machine::saveSettings to figure out whether
2684 * machine settings have really changed and thus need to be written out to disk.
2685 */
2686bool BandwidthGroup::operator==(const BandwidthGroup &i) const
2687{
2688 return (this == &i)
2689 || ( strName == i.strName
2690 && cMaxBytesPerSec == i.cMaxBytesPerSec
2691 && enmType == i.enmType);
2692}
2693
2694/**
2695 * IOSettings constructor.
2696 */
2697IOSettings::IOSettings() :
2698 fIOCacheEnabled(true),
2699 ulIOCacheSize(5)
2700{
2701}
2702
2703/**
2704 * Check if all IO Cache settings have default values.
2705 */
2706bool IOSettings::areIOCacheDefaultSettings() const
2707{
2708 return fIOCacheEnabled
2709 && ulIOCacheSize == 5;
2710}
2711
2712/**
2713 * Check if all settings have default values.
2714 */
2715bool IOSettings::areDefaultSettings() const
2716{
2717 return areIOCacheDefaultSettings()
2718 && llBandwidthGroups.size() == 0;
2719}
2720
2721/**
2722 * Comparison operator. This gets called from MachineConfigFile::operator==,
2723 * which in turn gets called from Machine::saveSettings to figure out whether
2724 * machine settings have really changed and thus need to be written out to disk.
2725 */
2726bool IOSettings::operator==(const IOSettings &i) const
2727{
2728 return (this == &i)
2729 || ( fIOCacheEnabled == i.fIOCacheEnabled
2730 && ulIOCacheSize == i.ulIOCacheSize
2731 && llBandwidthGroups == i.llBandwidthGroups);
2732}
2733
2734/**
2735 * Constructor. Needs to set sane defaults which stand the test of time.
2736 */
2737HostPCIDeviceAttachment::HostPCIDeviceAttachment() :
2738 uHostAddress(0),
2739 uGuestAddress(0)
2740{
2741}
2742
2743/**
2744 * Comparison operator. This gets called from MachineConfigFile::operator==,
2745 * which in turn gets called from Machine::saveSettings to figure out whether
2746 * machine settings have really changed and thus need to be written out to disk.
2747 */
2748bool HostPCIDeviceAttachment::operator==(const HostPCIDeviceAttachment &a) const
2749{
2750 return (this == &a)
2751 || ( uHostAddress == a.uHostAddress
2752 && uGuestAddress == a.uGuestAddress
2753 && strDeviceName == a.strDeviceName);
2754}
2755
2756
2757/**
2758 * Constructor. Needs to set sane defaults which stand the test of time.
2759 */
2760Hardware::Hardware() :
2761 strVersion("1"),
2762 fHardwareVirt(true),
2763 fNestedPaging(true),
2764 fVPID(true),
2765 fUnrestrictedExecution(true),
2766 fHardwareVirtForce(false),
2767 fTripleFaultReset(false),
2768 fPAE(false),
2769 fAPIC(true),
2770 fX2APIC(false),
2771 enmLongMode(HC_ARCH_BITS == 64 ? Hardware::LongMode_Enabled : Hardware::LongMode_Disabled),
2772 cCPUs(1),
2773 fCpuHotPlug(false),
2774 fHPETEnabled(false),
2775 ulCpuExecutionCap(100),
2776 uCpuIdPortabilityLevel(0),
2777 strCpuProfile("host"),
2778 ulMemorySizeMB((uint32_t)-1),
2779 graphicsControllerType(GraphicsControllerType_VBoxVGA),
2780 ulVRAMSizeMB(8),
2781 cMonitors(1),
2782 fAccelerate3D(false),
2783 fAccelerate2DVideo(false),
2784 ulVideoCaptureHorzRes(1024),
2785 ulVideoCaptureVertRes(768),
2786 ulVideoCaptureRate(512),
2787 ulVideoCaptureFPS(25),
2788 ulVideoCaptureMaxTime(0),
2789 ulVideoCaptureMaxSize(0),
2790 fVideoCaptureEnabled(false),
2791 u64VideoCaptureScreens(UINT64_C(0xffffffffffffffff)),
2792 strVideoCaptureFile(""),
2793 firmwareType(FirmwareType_BIOS),
2794 pointingHIDType(PointingHIDType_PS2Mouse),
2795 keyboardHIDType(KeyboardHIDType_PS2Keyboard),
2796 chipsetType(ChipsetType_PIIX3),
2797 paravirtProvider(ParavirtProvider_Legacy), // default for old VMs, for new ones it's ParavirtProvider_Default
2798 strParavirtDebug(""),
2799 fEmulatedUSBCardReader(false),
2800 clipboardMode(ClipboardMode_Disabled),
2801 dndMode(DnDMode_Disabled),
2802 ulMemoryBalloonSize(0),
2803 fPageFusionEnabled(false)
2804{
2805 mapBootOrder[0] = DeviceType_Floppy;
2806 mapBootOrder[1] = DeviceType_DVD;
2807 mapBootOrder[2] = DeviceType_HardDisk;
2808
2809 /* The default value for PAE depends on the host:
2810 * - 64 bits host -> always true
2811 * - 32 bits host -> true for Windows & Darwin (masked off if the host cpu doesn't support it anyway)
2812 */
2813#if HC_ARCH_BITS == 64 || defined(RT_OS_WINDOWS) || defined(RT_OS_DARWIN)
2814 fPAE = true;
2815#endif
2816
2817 /* The default value of large page supports depends on the host:
2818 * - 64 bits host -> true, unless it's Linux (pending further prediction work due to excessively expensive large page allocations)
2819 * - 32 bits host -> false
2820 */
2821#if HC_ARCH_BITS == 64 && !defined(RT_OS_LINUX)
2822 fLargePages = true;
2823#else
2824 /* Not supported on 32 bits hosts. */
2825 fLargePages = false;
2826#endif
2827}
2828
2829/**
2830 * Check if all Paravirt settings have default values.
2831 */
2832bool Hardware::areParavirtDefaultSettings(SettingsVersion_T sv) const
2833{
2834 // 5.0 didn't save the paravirt settings if it is ParavirtProvider_Legacy,
2835 // so this default must be kept. Later versions don't save the setting if
2836 // it's at the default value.
2837 return ( (sv >= SettingsVersion_v1_16 && paravirtProvider == ParavirtProvider_Default)
2838 || (sv < SettingsVersion_v1_16 && paravirtProvider == ParavirtProvider_Legacy))
2839 && strParavirtDebug.isEmpty();
2840}
2841
2842/**
2843 * Check if all Boot Order settings have default values.
2844 */
2845bool Hardware::areBootOrderDefaultSettings() const
2846{
2847 BootOrderMap::const_iterator it0 = mapBootOrder.find(0);
2848 BootOrderMap::const_iterator it1 = mapBootOrder.find(1);
2849 BootOrderMap::const_iterator it2 = mapBootOrder.find(2);
2850 BootOrderMap::const_iterator it3 = mapBootOrder.find(3);
2851 return ( mapBootOrder.size() == 3
2852 || ( mapBootOrder.size() == 4
2853 && (it3 != mapBootOrder.end() && it3->second == DeviceType_Null)))
2854 && (it0 != mapBootOrder.end() && it0->second == DeviceType_Floppy)
2855 && (it1 != mapBootOrder.end() && it1->second == DeviceType_DVD)
2856 && (it2 != mapBootOrder.end() && it2->second == DeviceType_HardDisk);
2857}
2858
2859/**
2860 * Check if all Display settings have default values.
2861 */
2862bool Hardware::areDisplayDefaultSettings() const
2863{
2864 return graphicsControllerType == GraphicsControllerType_VBoxVGA
2865 && ulVRAMSizeMB == 8
2866 && cMonitors <= 1
2867 && !fAccelerate3D
2868 && !fAccelerate2DVideo;
2869}
2870
2871/**
2872 * Check if all Video Capture settings have default values.
2873 */
2874bool Hardware::areVideoCaptureDefaultSettings() const
2875{
2876 return !fVideoCaptureEnabled
2877 && u64VideoCaptureScreens == UINT64_C(0xffffffffffffffff)
2878 && strVideoCaptureFile.isEmpty()
2879 && ulVideoCaptureHorzRes == 1024
2880 && ulVideoCaptureVertRes == 768
2881 && ulVideoCaptureRate == 512
2882 && ulVideoCaptureFPS == 25
2883 && ulVideoCaptureMaxTime == 0
2884 && ulVideoCaptureMaxSize == 0;
2885}
2886
2887/**
2888 * Check if all Network Adapter settings have default values.
2889 */
2890bool Hardware::areAllNetworkAdaptersDefaultSettings(SettingsVersion_T sv) const
2891{
2892 for (NetworkAdaptersList::const_iterator it = llNetworkAdapters.begin();
2893 it != llNetworkAdapters.end();
2894 ++it)
2895 {
2896 if (!it->areDefaultSettings(sv))
2897 return false;
2898 }
2899 return true;
2900}
2901
2902/**
2903 * Comparison operator. This gets called from MachineConfigFile::operator==,
2904 * which in turn gets called from Machine::saveSettings to figure out whether
2905 * machine settings have really changed and thus need to be written out to disk.
2906 */
2907bool Hardware::operator==(const Hardware& h) const
2908{
2909 return (this == &h)
2910 || ( strVersion == h.strVersion
2911 && uuid == h.uuid
2912 && fHardwareVirt == h.fHardwareVirt
2913 && fNestedPaging == h.fNestedPaging
2914 && fLargePages == h.fLargePages
2915 && fVPID == h.fVPID
2916 && fUnrestrictedExecution == h.fUnrestrictedExecution
2917 && fHardwareVirtForce == h.fHardwareVirtForce
2918 && fPAE == h.fPAE
2919 && enmLongMode == h.enmLongMode
2920 && fTripleFaultReset == h.fTripleFaultReset
2921 && fAPIC == h.fAPIC
2922 && fX2APIC == h.fX2APIC
2923 && cCPUs == h.cCPUs
2924 && fCpuHotPlug == h.fCpuHotPlug
2925 && ulCpuExecutionCap == h.ulCpuExecutionCap
2926 && uCpuIdPortabilityLevel == h.uCpuIdPortabilityLevel
2927 && strCpuProfile == h.strCpuProfile
2928 && fHPETEnabled == h.fHPETEnabled
2929 && llCpus == h.llCpus
2930 && llCpuIdLeafs == h.llCpuIdLeafs
2931 && ulMemorySizeMB == h.ulMemorySizeMB
2932 && mapBootOrder == h.mapBootOrder
2933 && graphicsControllerType == h.graphicsControllerType
2934 && ulVRAMSizeMB == h.ulVRAMSizeMB
2935 && cMonitors == h.cMonitors
2936 && fAccelerate3D == h.fAccelerate3D
2937 && fAccelerate2DVideo == h.fAccelerate2DVideo
2938 && fVideoCaptureEnabled == h.fVideoCaptureEnabled
2939 && u64VideoCaptureScreens == h.u64VideoCaptureScreens
2940 && strVideoCaptureFile == h.strVideoCaptureFile
2941 && ulVideoCaptureHorzRes == h.ulVideoCaptureHorzRes
2942 && ulVideoCaptureVertRes == h.ulVideoCaptureVertRes
2943 && ulVideoCaptureRate == h.ulVideoCaptureRate
2944 && ulVideoCaptureFPS == h.ulVideoCaptureFPS
2945 && ulVideoCaptureMaxTime == h.ulVideoCaptureMaxTime
2946 && ulVideoCaptureMaxSize == h.ulVideoCaptureMaxTime
2947 && firmwareType == h.firmwareType
2948 && pointingHIDType == h.pointingHIDType
2949 && keyboardHIDType == h.keyboardHIDType
2950 && chipsetType == h.chipsetType
2951 && paravirtProvider == h.paravirtProvider
2952 && strParavirtDebug == h.strParavirtDebug
2953 && fEmulatedUSBCardReader == h.fEmulatedUSBCardReader
2954 && vrdeSettings == h.vrdeSettings
2955 && biosSettings == h.biosSettings
2956 && usbSettings == h.usbSettings
2957 && llNetworkAdapters == h.llNetworkAdapters
2958 && llSerialPorts == h.llSerialPorts
2959 && llParallelPorts == h.llParallelPorts
2960 && audioAdapter == h.audioAdapter
2961 && storage == h.storage
2962 && llSharedFolders == h.llSharedFolders
2963 && clipboardMode == h.clipboardMode
2964 && dndMode == h.dndMode
2965 && ulMemoryBalloonSize == h.ulMemoryBalloonSize
2966 && fPageFusionEnabled == h.fPageFusionEnabled
2967 && llGuestProperties == h.llGuestProperties
2968 && ioSettings == h.ioSettings
2969 && pciAttachments == h.pciAttachments
2970 && strDefaultFrontend == h.strDefaultFrontend);
2971}
2972
2973/**
2974 * Constructor. Needs to set sane defaults which stand the test of time.
2975 */
2976AttachedDevice::AttachedDevice() :
2977 deviceType(DeviceType_Null),
2978 fPassThrough(false),
2979 fTempEject(false),
2980 fNonRotational(false),
2981 fDiscard(false),
2982 fHotPluggable(false),
2983 lPort(0),
2984 lDevice(0)
2985{
2986}
2987
2988/**
2989 * Comparison operator. This gets called from MachineConfigFile::operator==,
2990 * which in turn gets called from Machine::saveSettings to figure out whether
2991 * machine settings have really changed and thus need to be written out to disk.
2992 */
2993bool AttachedDevice::operator==(const AttachedDevice &a) const
2994{
2995 return (this == &a)
2996 || ( deviceType == a.deviceType
2997 && fPassThrough == a.fPassThrough
2998 && fTempEject == a.fTempEject
2999 && fNonRotational == a.fNonRotational
3000 && fDiscard == a.fDiscard
3001 && fHotPluggable == a.fHotPluggable
3002 && lPort == a.lPort
3003 && lDevice == a.lDevice
3004 && uuid == a.uuid
3005 && strHostDriveSrc == a.strHostDriveSrc
3006 && strBwGroup == a.strBwGroup);
3007}
3008
3009/**
3010 * Constructor. Needs to set sane defaults which stand the test of time.
3011 */
3012StorageController::StorageController() :
3013 storageBus(StorageBus_IDE),
3014 controllerType(StorageControllerType_PIIX3),
3015 ulPortCount(2),
3016 ulInstance(0),
3017 fUseHostIOCache(true),
3018 fBootable(true)
3019{
3020}
3021
3022/**
3023 * Comparison operator. This gets called from MachineConfigFile::operator==,
3024 * which in turn gets called from Machine::saveSettings to figure out whether
3025 * machine settings have really changed and thus need to be written out to disk.
3026 */
3027bool StorageController::operator==(const StorageController &s) const
3028{
3029 return (this == &s)
3030 || ( strName == s.strName
3031 && storageBus == s.storageBus
3032 && controllerType == s.controllerType
3033 && ulPortCount == s.ulPortCount
3034 && ulInstance == s.ulInstance
3035 && fUseHostIOCache == s.fUseHostIOCache
3036 && llAttachedDevices == s.llAttachedDevices);
3037}
3038
3039/**
3040 * Comparison operator. This gets called from MachineConfigFile::operator==,
3041 * which in turn gets called from Machine::saveSettings to figure out whether
3042 * machine settings have really changed and thus need to be written out to disk.
3043 */
3044bool Storage::operator==(const Storage &s) const
3045{
3046 return (this == &s)
3047 || (llStorageControllers == s.llStorageControllers); // deep compare
3048}
3049
3050/**
3051 * Constructor. Needs to set sane defaults which stand the test of time.
3052 */
3053Debugging::Debugging() :
3054 fTracingEnabled(false),
3055 fAllowTracingToAccessVM(false),
3056 strTracingConfig()
3057{
3058}
3059
3060/**
3061 * Check if all settings have default values.
3062 */
3063bool Debugging::areDefaultSettings() const
3064{
3065 return !fTracingEnabled
3066 && !fAllowTracingToAccessVM
3067 && strTracingConfig.isEmpty();
3068}
3069
3070/**
3071 * Comparison operator. This gets called from MachineConfigFile::operator==,
3072 * which in turn gets called from Machine::saveSettings to figure out whether
3073 * machine settings have really changed and thus need to be written out to disk.
3074 */
3075bool Debugging::operator==(const Debugging &d) const
3076{
3077 return (this == &d)
3078 || ( fTracingEnabled == d.fTracingEnabled
3079 && fAllowTracingToAccessVM == d.fAllowTracingToAccessVM
3080 && strTracingConfig == d.strTracingConfig);
3081}
3082
3083/**
3084 * Constructor. Needs to set sane defaults which stand the test of time.
3085 */
3086Autostart::Autostart() :
3087 fAutostartEnabled(false),
3088 uAutostartDelay(0),
3089 enmAutostopType(AutostopType_Disabled)
3090{
3091}
3092
3093/**
3094 * Check if all settings have default values.
3095 */
3096bool Autostart::areDefaultSettings() const
3097{
3098 return !fAutostartEnabled
3099 && !uAutostartDelay
3100 && enmAutostopType == AutostopType_Disabled;
3101}
3102
3103/**
3104 * Comparison operator. This gets called from MachineConfigFile::operator==,
3105 * which in turn gets called from Machine::saveSettings to figure out whether
3106 * machine settings have really changed and thus need to be written out to disk.
3107 */
3108bool Autostart::operator==(const Autostart &a) const
3109{
3110 return (this == &a)
3111 || ( fAutostartEnabled == a.fAutostartEnabled
3112 && uAutostartDelay == a.uAutostartDelay
3113 && enmAutostopType == a.enmAutostopType);
3114}
3115
3116/**
3117 * Constructor. Needs to set sane defaults which stand the test of time.
3118 */
3119Snapshot::Snapshot()
3120{
3121 RTTimeSpecSetNano(&timestamp, 0);
3122}
3123
3124/**
3125 * Comparison operator. This gets called from MachineConfigFile::operator==,
3126 * which in turn gets called from Machine::saveSettings to figure out whether
3127 * machine settings have really changed and thus need to be written out to disk.
3128 */
3129bool Snapshot::operator==(const Snapshot &s) const
3130{
3131 return (this == &s)
3132 || ( uuid == s.uuid
3133 && strName == s.strName
3134 && strDescription == s.strDescription
3135 && RTTimeSpecIsEqual(&timestamp, &s.timestamp)
3136 && strStateFile == s.strStateFile
3137 && hardware == s.hardware // deep compare
3138 && llChildSnapshots == s.llChildSnapshots // deep compare
3139 && debugging == s.debugging
3140 && autostart == s.autostart);
3141}
3142
3143const struct Snapshot settings::Snapshot::Empty; /* default ctor is OK */
3144
3145/**
3146 * Constructor. Needs to set sane defaults which stand the test of time.
3147 */
3148MachineUserData::MachineUserData() :
3149 fDirectoryIncludesUUID(false),
3150 fNameSync(true),
3151 fTeleporterEnabled(false),
3152 uTeleporterPort(0),
3153 enmFaultToleranceState(FaultToleranceState_Inactive),
3154 uFaultTolerancePort(0),
3155 uFaultToleranceInterval(0),
3156 fRTCUseUTC(false),
3157 strVMPriority()
3158{
3159 llGroups.push_back("/");
3160}
3161
3162/**
3163 * Comparison operator. This gets called from MachineConfigFile::operator==,
3164 * which in turn gets called from Machine::saveSettings to figure out whether
3165 * machine settings have really changed and thus need to be written out to disk.
3166 */
3167bool MachineUserData::operator==(const MachineUserData &c) const
3168{
3169 return (this == &c)
3170 || ( strName == c.strName
3171 && fDirectoryIncludesUUID == c.fDirectoryIncludesUUID
3172 && fNameSync == c.fNameSync
3173 && strDescription == c.strDescription
3174 && llGroups == c.llGroups
3175 && strOsType == c.strOsType
3176 && strSnapshotFolder == c.strSnapshotFolder
3177 && fTeleporterEnabled == c.fTeleporterEnabled
3178 && uTeleporterPort == c.uTeleporterPort
3179 && strTeleporterAddress == c.strTeleporterAddress
3180 && strTeleporterPassword == c.strTeleporterPassword
3181 && enmFaultToleranceState == c.enmFaultToleranceState
3182 && uFaultTolerancePort == c.uFaultTolerancePort
3183 && uFaultToleranceInterval == c.uFaultToleranceInterval
3184 && strFaultToleranceAddress == c.strFaultToleranceAddress
3185 && strFaultTolerancePassword == c.strFaultTolerancePassword
3186 && fRTCUseUTC == c.fRTCUseUTC
3187 && ovIcon == c.ovIcon
3188 && strVMPriority == c.strVMPriority);
3189}
3190
3191
3192////////////////////////////////////////////////////////////////////////////////
3193//
3194// MachineConfigFile
3195//
3196////////////////////////////////////////////////////////////////////////////////
3197
3198/**
3199 * Constructor.
3200 *
3201 * If pstrFilename is != NULL, this reads the given settings file into the member
3202 * variables and various substructures and lists. Otherwise, the member variables
3203 * are initialized with default values.
3204 *
3205 * Throws variants of xml::Error for I/O, XML and logical content errors, which
3206 * the caller should catch; if this constructor does not throw, then the member
3207 * variables contain meaningful values (either from the file or defaults).
3208 *
3209 * @param pstrFilename
3210 */
3211MachineConfigFile::MachineConfigFile(const Utf8Str *pstrFilename)
3212 : ConfigFileBase(pstrFilename),
3213 fCurrentStateModified(true),
3214 fAborted(false)
3215{
3216 RTTimeNow(&timeLastStateChange);
3217
3218 if (pstrFilename)
3219 {
3220 // the ConfigFileBase constructor has loaded the XML file, so now
3221 // we need only analyze what is in there
3222
3223 xml::NodesLoop nlRootChildren(*m->pelmRoot);
3224 const xml::ElementNode *pelmRootChild;
3225 while ((pelmRootChild = nlRootChildren.forAllNodes()))
3226 {
3227 if (pelmRootChild->nameEquals("Machine"))
3228 readMachine(*pelmRootChild);
3229 }
3230
3231 // clean up memory allocated by XML engine
3232 clearDocument();
3233 }
3234}
3235
3236/**
3237 * Public routine which returns true if this machine config file can have its
3238 * own media registry (which is true for settings version v1.11 and higher,
3239 * i.e. files created by VirtualBox 4.0 and higher).
3240 * @return
3241 */
3242bool MachineConfigFile::canHaveOwnMediaRegistry() const
3243{
3244 return (m->sv >= SettingsVersion_v1_11);
3245}
3246
3247/**
3248 * Public routine which allows for importing machine XML from an external DOM tree.
3249 * Use this after having called the constructor with a NULL argument.
3250 *
3251 * This is used by the OVF code if a <vbox:Machine> element has been encountered
3252 * in an OVF VirtualSystem element.
3253 *
3254 * @param elmMachine
3255 */
3256void MachineConfigFile::importMachineXML(const xml::ElementNode &elmMachine)
3257{
3258 // Ideally the version should be mandatory, but since VirtualBox didn't
3259 // care about it until 5.1 came with different defaults, there are OVF
3260 // files created by magicians (not using VirtualBox, which always wrote it)
3261 // which lack this information. Let's hope that they learn to add the
3262 // version when they switch to the newer settings style/defaults of 5.1.
3263 if (!(elmMachine.getAttributeValue("version", m->strSettingsVersionFull)))
3264 m->strSettingsVersionFull = VBOX_XML_IMPORT_VERSION_FULL;
3265
3266 LogRel(("Import settings with version \"%s\"\n", m->strSettingsVersionFull.c_str()));
3267
3268 m->sv = parseVersion(m->strSettingsVersionFull, &elmMachine);
3269
3270 // remember the settings version we read in case it gets upgraded later,
3271 // so we know when to make backups
3272 m->svRead = m->sv;
3273
3274 readMachine(elmMachine);
3275}
3276
3277/**
3278 * Comparison operator. This gets called from Machine::saveSettings to figure out
3279 * whether machine settings have really changed and thus need to be written out to disk.
3280 *
3281 * Even though this is called operator==, this does NOT compare all fields; the "equals"
3282 * should be understood as "has the same machine config as". The following fields are
3283 * NOT compared:
3284 * -- settings versions and file names inherited from ConfigFileBase;
3285 * -- fCurrentStateModified because that is considered separately in Machine::saveSettings!!
3286 *
3287 * The "deep" comparisons marked below will invoke the operator== functions of the
3288 * structs defined in this file, which may in turn go into comparing lists of
3289 * other structures. As a result, invoking this can be expensive, but it's
3290 * less expensive than writing out XML to disk.
3291 */
3292bool MachineConfigFile::operator==(const MachineConfigFile &c) const
3293{
3294 return (this == &c)
3295 || ( uuid == c.uuid
3296 && machineUserData == c.machineUserData
3297 && strStateFile == c.strStateFile
3298 && uuidCurrentSnapshot == c.uuidCurrentSnapshot
3299 // skip fCurrentStateModified!
3300 && RTTimeSpecIsEqual(&timeLastStateChange, &c.timeLastStateChange)
3301 && fAborted == c.fAborted
3302 && hardwareMachine == c.hardwareMachine // this one's deep
3303 && mediaRegistry == c.mediaRegistry // this one's deep
3304 // skip mapExtraDataItems! there is no old state available as it's always forced
3305 && llFirstSnapshot == c.llFirstSnapshot); // this one's deep
3306}
3307
3308/**
3309 * Called from MachineConfigFile::readHardware() to read cpu information.
3310 * @param elmCpu
3311 * @param ll
3312 */
3313void MachineConfigFile::readCpuTree(const xml::ElementNode &elmCpu,
3314 CpuList &ll)
3315{
3316 xml::NodesLoop nl1(elmCpu, "Cpu");
3317 const xml::ElementNode *pelmCpu;
3318 while ((pelmCpu = nl1.forAllNodes()))
3319 {
3320 Cpu cpu;
3321
3322 if (!pelmCpu->getAttributeValue("id", cpu.ulId))
3323 throw ConfigFileError(this, pelmCpu, N_("Required Cpu/@id attribute is missing"));
3324
3325 ll.push_back(cpu);
3326 }
3327}
3328
3329/**
3330 * Called from MachineConfigFile::readHardware() to cpuid information.
3331 * @param elmCpuid
3332 * @param ll
3333 */
3334void MachineConfigFile::readCpuIdTree(const xml::ElementNode &elmCpuid,
3335 CpuIdLeafsList &ll)
3336{
3337 xml::NodesLoop nl1(elmCpuid, "CpuIdLeaf");
3338 const xml::ElementNode *pelmCpuIdLeaf;
3339 while ((pelmCpuIdLeaf = nl1.forAllNodes()))
3340 {
3341 CpuIdLeaf leaf;
3342
3343 if (!pelmCpuIdLeaf->getAttributeValue("id", leaf.ulId))
3344 throw ConfigFileError(this, pelmCpuIdLeaf, N_("Required CpuId/@id attribute is missing"));
3345
3346 pelmCpuIdLeaf->getAttributeValue("eax", leaf.ulEax);
3347 pelmCpuIdLeaf->getAttributeValue("ebx", leaf.ulEbx);
3348 pelmCpuIdLeaf->getAttributeValue("ecx", leaf.ulEcx);
3349 pelmCpuIdLeaf->getAttributeValue("edx", leaf.ulEdx);
3350
3351 ll.push_back(leaf);
3352 }
3353}
3354
3355/**
3356 * Called from MachineConfigFile::readHardware() to network information.
3357 * @param elmNetwork
3358 * @param ll
3359 */
3360void MachineConfigFile::readNetworkAdapters(const xml::ElementNode &elmNetwork,
3361 NetworkAdaptersList &ll)
3362{
3363 xml::NodesLoop nl1(elmNetwork, "Adapter");
3364 const xml::ElementNode *pelmAdapter;
3365 while ((pelmAdapter = nl1.forAllNodes()))
3366 {
3367 NetworkAdapter nic;
3368
3369 if (m->sv >= SettingsVersion_v1_16)
3370 {
3371 /* Starting with VirtualBox 5.1 the default is cable connected and
3372 * PCnet-FAST III. Needs to match NetworkAdapter.areDefaultSettings(). */
3373 nic.fCableConnected = true;
3374 nic.type = NetworkAdapterType_Am79C973;
3375 }
3376
3377 if (!pelmAdapter->getAttributeValue("slot", nic.ulSlot))
3378 throw ConfigFileError(this, pelmAdapter, N_("Required Adapter/@slot attribute is missing"));
3379
3380 Utf8Str strTemp;
3381 if (pelmAdapter->getAttributeValue("type", strTemp))
3382 {
3383 if (strTemp == "Am79C970A")
3384 nic.type = NetworkAdapterType_Am79C970A;
3385 else if (strTemp == "Am79C973")
3386 nic.type = NetworkAdapterType_Am79C973;
3387 else if (strTemp == "82540EM")
3388 nic.type = NetworkAdapterType_I82540EM;
3389 else if (strTemp == "82543GC")
3390 nic.type = NetworkAdapterType_I82543GC;
3391 else if (strTemp == "82545EM")
3392 nic.type = NetworkAdapterType_I82545EM;
3393 else if (strTemp == "virtio")
3394 nic.type = NetworkAdapterType_Virtio;
3395 else
3396 throw ConfigFileError(this, pelmAdapter, N_("Invalid value '%s' in Adapter/@type attribute"), strTemp.c_str());
3397 }
3398
3399 pelmAdapter->getAttributeValue("enabled", nic.fEnabled);
3400 pelmAdapter->getAttributeValue("MACAddress", nic.strMACAddress);
3401 pelmAdapter->getAttributeValue("cable", nic.fCableConnected);
3402 pelmAdapter->getAttributeValue("speed", nic.ulLineSpeed);
3403
3404 if (pelmAdapter->getAttributeValue("promiscuousModePolicy", strTemp))
3405 {
3406 if (strTemp == "Deny")
3407 nic.enmPromiscModePolicy = NetworkAdapterPromiscModePolicy_Deny;
3408 else if (strTemp == "AllowNetwork")
3409 nic.enmPromiscModePolicy = NetworkAdapterPromiscModePolicy_AllowNetwork;
3410 else if (strTemp == "AllowAll")
3411 nic.enmPromiscModePolicy = NetworkAdapterPromiscModePolicy_AllowAll;
3412 else
3413 throw ConfigFileError(this, pelmAdapter,
3414 N_("Invalid value '%s' in Adapter/@promiscuousModePolicy attribute"), strTemp.c_str());
3415 }
3416
3417 pelmAdapter->getAttributeValue("trace", nic.fTraceEnabled);
3418 pelmAdapter->getAttributeValue("tracefile", nic.strTraceFile);
3419 pelmAdapter->getAttributeValue("bootPriority", nic.ulBootPriority);
3420 pelmAdapter->getAttributeValue("bandwidthGroup", nic.strBandwidthGroup);
3421
3422 xml::ElementNodesList llNetworkModes;
3423 pelmAdapter->getChildElements(llNetworkModes);
3424 xml::ElementNodesList::iterator it;
3425 /* We should have only active mode descriptor and disabled modes set */
3426 if (llNetworkModes.size() > 2)
3427 {
3428 throw ConfigFileError(this, pelmAdapter, N_("Invalid number of modes ('%d') attached to Adapter attribute"), llNetworkModes.size());
3429 }
3430 for (it = llNetworkModes.begin(); it != llNetworkModes.end(); ++it)
3431 {
3432 const xml::ElementNode *pelmNode = *it;
3433 if (pelmNode->nameEquals("DisabledModes"))
3434 {
3435 xml::ElementNodesList llDisabledNetworkModes;
3436 xml::ElementNodesList::iterator itDisabled;
3437 pelmNode->getChildElements(llDisabledNetworkModes);
3438 /* run over disabled list and load settings */
3439 for (itDisabled = llDisabledNetworkModes.begin();
3440 itDisabled != llDisabledNetworkModes.end(); ++itDisabled)
3441 {
3442 const xml::ElementNode *pelmDisabledNode = *itDisabled;
3443 readAttachedNetworkMode(*pelmDisabledNode, false, nic);
3444 }
3445 }
3446 else
3447 readAttachedNetworkMode(*pelmNode, true, nic);
3448 }
3449 // else: default is NetworkAttachmentType_Null
3450
3451 ll.push_back(nic);
3452 }
3453}
3454
3455void MachineConfigFile::readAttachedNetworkMode(const xml::ElementNode &elmMode, bool fEnabled, NetworkAdapter &nic)
3456{
3457 NetworkAttachmentType_T enmAttachmentType = NetworkAttachmentType_Null;
3458
3459 if (elmMode.nameEquals("NAT"))
3460 {
3461 enmAttachmentType = NetworkAttachmentType_NAT;
3462
3463 elmMode.getAttributeValue("network", nic.nat.strNetwork);
3464 elmMode.getAttributeValue("hostip", nic.nat.strBindIP);
3465 elmMode.getAttributeValue("mtu", nic.nat.u32Mtu);
3466 elmMode.getAttributeValue("sockrcv", nic.nat.u32SockRcv);
3467 elmMode.getAttributeValue("socksnd", nic.nat.u32SockSnd);
3468 elmMode.getAttributeValue("tcprcv", nic.nat.u32TcpRcv);
3469 elmMode.getAttributeValue("tcpsnd", nic.nat.u32TcpSnd);
3470 const xml::ElementNode *pelmDNS;
3471 if ((pelmDNS = elmMode.findChildElement("DNS")))
3472 {
3473 pelmDNS->getAttributeValue("pass-domain", nic.nat.fDNSPassDomain);
3474 pelmDNS->getAttributeValue("use-proxy", nic.nat.fDNSProxy);
3475 pelmDNS->getAttributeValue("use-host-resolver", nic.nat.fDNSUseHostResolver);
3476 }
3477 const xml::ElementNode *pelmAlias;
3478 if ((pelmAlias = elmMode.findChildElement("Alias")))
3479 {
3480 pelmAlias->getAttributeValue("logging", nic.nat.fAliasLog);
3481 pelmAlias->getAttributeValue("proxy-only", nic.nat.fAliasProxyOnly);
3482 pelmAlias->getAttributeValue("use-same-ports", nic.nat.fAliasUseSamePorts);
3483 }
3484 const xml::ElementNode *pelmTFTP;
3485 if ((pelmTFTP = elmMode.findChildElement("TFTP")))
3486 {
3487 pelmTFTP->getAttributeValue("prefix", nic.nat.strTFTPPrefix);
3488 pelmTFTP->getAttributeValue("boot-file", nic.nat.strTFTPBootFile);
3489 pelmTFTP->getAttributeValue("next-server", nic.nat.strTFTPNextServer);
3490 }
3491
3492 readNATForwardRulesMap(elmMode, nic.nat.mapRules);
3493 }
3494 else if ( elmMode.nameEquals("HostInterface")
3495 || elmMode.nameEquals("BridgedInterface"))
3496 {
3497 enmAttachmentType = NetworkAttachmentType_Bridged;
3498
3499 // optional network name, cannot be required or we have trouble with
3500 // settings which are saved before configuring the network name
3501 elmMode.getAttributeValue("name", nic.strBridgedName);
3502 }
3503 else if (elmMode.nameEquals("InternalNetwork"))
3504 {
3505 enmAttachmentType = NetworkAttachmentType_Internal;
3506
3507 // optional network name, cannot be required or we have trouble with
3508 // settings which are saved before configuring the network name
3509 elmMode.getAttributeValue("name", nic.strInternalNetworkName);
3510 }
3511 else if (elmMode.nameEquals("HostOnlyInterface"))
3512 {
3513 enmAttachmentType = NetworkAttachmentType_HostOnly;
3514
3515 // optional network name, cannot be required or we have trouble with
3516 // settings which are saved before configuring the network name
3517 elmMode.getAttributeValue("name", nic.strHostOnlyName);
3518 }
3519 else if (elmMode.nameEquals("GenericInterface"))
3520 {
3521 enmAttachmentType = NetworkAttachmentType_Generic;
3522
3523 elmMode.getAttributeValue("driver", nic.strGenericDriver); // optional network attachment driver
3524
3525 // get all properties
3526 xml::NodesLoop nl(elmMode);
3527 const xml::ElementNode *pelmModeChild;
3528 while ((pelmModeChild = nl.forAllNodes()))
3529 {
3530 if (pelmModeChild->nameEquals("Property"))
3531 {
3532 Utf8Str strPropName, strPropValue;
3533 if ( pelmModeChild->getAttributeValue("name", strPropName)
3534 && pelmModeChild->getAttributeValue("value", strPropValue) )
3535 nic.genericProperties[strPropName] = strPropValue;
3536 else
3537 throw ConfigFileError(this, pelmModeChild, N_("Required GenericInterface/Property/@name or @value attribute is missing"));
3538 }
3539 }
3540 }
3541 else if (elmMode.nameEquals("NATNetwork"))
3542 {
3543 enmAttachmentType = NetworkAttachmentType_NATNetwork;
3544
3545 // optional network name, cannot be required or we have trouble with
3546 // settings which are saved before configuring the network name
3547 elmMode.getAttributeValue("name", nic.strNATNetworkName);
3548 }
3549 else if (elmMode.nameEquals("VDE"))
3550 {
3551 // inofficial hack (VDE networking was never part of the official
3552 // settings, so it's not mentioned in VirtualBox-settings.xsd)
3553 enmAttachmentType = NetworkAttachmentType_Generic;
3554
3555 com::Utf8Str strVDEName;
3556 elmMode.getAttributeValue("network", strVDEName); // optional network name
3557 nic.strGenericDriver = "VDE";
3558 nic.genericProperties["network"] = strVDEName;
3559 }
3560
3561 if (fEnabled && enmAttachmentType != NetworkAttachmentType_Null)
3562 nic.mode = enmAttachmentType;
3563}
3564
3565/**
3566 * Called from MachineConfigFile::readHardware() to read serial port information.
3567 * @param elmUART
3568 * @param ll
3569 */
3570void MachineConfigFile::readSerialPorts(const xml::ElementNode &elmUART,
3571 SerialPortsList &ll)
3572{
3573 xml::NodesLoop nl1(elmUART, "Port");
3574 const xml::ElementNode *pelmPort;
3575 while ((pelmPort = nl1.forAllNodes()))
3576 {
3577 SerialPort port;
3578 if (!pelmPort->getAttributeValue("slot", port.ulSlot))
3579 throw ConfigFileError(this, pelmPort, N_("Required UART/Port/@slot attribute is missing"));
3580
3581 // slot must be unique
3582 for (SerialPortsList::const_iterator it = ll.begin();
3583 it != ll.end();
3584 ++it)
3585 if ((*it).ulSlot == port.ulSlot)
3586 throw ConfigFileError(this, pelmPort, N_("Invalid value %RU32 in UART/Port/@slot attribute: value is not unique"), port.ulSlot);
3587
3588 if (!pelmPort->getAttributeValue("enabled", port.fEnabled))
3589 throw ConfigFileError(this, pelmPort, N_("Required UART/Port/@enabled attribute is missing"));
3590 if (!pelmPort->getAttributeValue("IOBase", port.ulIOBase))
3591 throw ConfigFileError(this, pelmPort, N_("Required UART/Port/@IOBase attribute is missing"));
3592 if (!pelmPort->getAttributeValue("IRQ", port.ulIRQ))
3593 throw ConfigFileError(this, pelmPort, N_("Required UART/Port/@IRQ attribute is missing"));
3594
3595 Utf8Str strPortMode;
3596 if (!pelmPort->getAttributeValue("hostMode", strPortMode))
3597 throw ConfigFileError(this, pelmPort, N_("Required UART/Port/@hostMode attribute is missing"));
3598 if (strPortMode == "RawFile")
3599 port.portMode = PortMode_RawFile;
3600 else if (strPortMode == "HostPipe")
3601 port.portMode = PortMode_HostPipe;
3602 else if (strPortMode == "HostDevice")
3603 port.portMode = PortMode_HostDevice;
3604 else if (strPortMode == "Disconnected")
3605 port.portMode = PortMode_Disconnected;
3606 else if (strPortMode == "TCP")
3607 port.portMode = PortMode_TCP;
3608 else
3609 throw ConfigFileError(this, pelmPort, N_("Invalid value '%s' in UART/Port/@hostMode attribute"), strPortMode.c_str());
3610
3611 pelmPort->getAttributeValue("path", port.strPath);
3612 pelmPort->getAttributeValue("server", port.fServer);
3613
3614 ll.push_back(port);
3615 }
3616}
3617
3618/**
3619 * Called from MachineConfigFile::readHardware() to read parallel port information.
3620 * @param elmLPT
3621 * @param ll
3622 */
3623void MachineConfigFile::readParallelPorts(const xml::ElementNode &elmLPT,
3624 ParallelPortsList &ll)
3625{
3626 xml::NodesLoop nl1(elmLPT, "Port");
3627 const xml::ElementNode *pelmPort;
3628 while ((pelmPort = nl1.forAllNodes()))
3629 {
3630 ParallelPort port;
3631 if (!pelmPort->getAttributeValue("slot", port.ulSlot))
3632 throw ConfigFileError(this, pelmPort, N_("Required LPT/Port/@slot attribute is missing"));
3633
3634 // slot must be unique
3635 for (ParallelPortsList::const_iterator it = ll.begin();
3636 it != ll.end();
3637 ++it)
3638 if ((*it).ulSlot == port.ulSlot)
3639 throw ConfigFileError(this, pelmPort, N_("Invalid value %RU32 in LPT/Port/@slot attribute: value is not unique"), port.ulSlot);
3640
3641 if (!pelmPort->getAttributeValue("enabled", port.fEnabled))
3642 throw ConfigFileError(this, pelmPort, N_("Required LPT/Port/@enabled attribute is missing"));
3643 if (!pelmPort->getAttributeValue("IOBase", port.ulIOBase))
3644 throw ConfigFileError(this, pelmPort, N_("Required LPT/Port/@IOBase attribute is missing"));
3645 if (!pelmPort->getAttributeValue("IRQ", port.ulIRQ))
3646 throw ConfigFileError(this, pelmPort, N_("Required LPT/Port/@IRQ attribute is missing"));
3647
3648 pelmPort->getAttributeValue("path", port.strPath);
3649
3650 ll.push_back(port);
3651 }
3652}
3653
3654/**
3655 * Called from MachineConfigFile::readHardware() to read audio adapter information
3656 * and maybe fix driver information depending on the current host hardware.
3657 *
3658 * @param elmAudioAdapter "AudioAdapter" XML element.
3659 * @param aa
3660 */
3661void MachineConfigFile::readAudioAdapter(const xml::ElementNode &elmAudioAdapter,
3662 AudioAdapter &aa)
3663{
3664 if (m->sv >= SettingsVersion_v1_15)
3665 {
3666 // get all properties
3667 xml::NodesLoop nl1(elmAudioAdapter, "Property");
3668 const xml::ElementNode *pelmModeChild;
3669 while ((pelmModeChild = nl1.forAllNodes()))
3670 {
3671 Utf8Str strPropName, strPropValue;
3672 if ( pelmModeChild->getAttributeValue("name", strPropName)
3673 && pelmModeChild->getAttributeValue("value", strPropValue) )
3674 aa.properties[strPropName] = strPropValue;
3675 else
3676 throw ConfigFileError(this, pelmModeChild, N_("Required AudioAdapter/Property/@name or @value attribute "
3677 "is missing"));
3678 }
3679 }
3680
3681 elmAudioAdapter.getAttributeValue("enabled", aa.fEnabled);
3682
3683 Utf8Str strTemp;
3684 if (elmAudioAdapter.getAttributeValue("controller", strTemp))
3685 {
3686 if (strTemp == "SB16")
3687 aa.controllerType = AudioControllerType_SB16;
3688 else if (strTemp == "AC97")
3689 aa.controllerType = AudioControllerType_AC97;
3690 else if (strTemp == "HDA")
3691 aa.controllerType = AudioControllerType_HDA;
3692 else
3693 throw ConfigFileError(this, &elmAudioAdapter, N_("Invalid value '%s' in AudioAdapter/@controller attribute"), strTemp.c_str());
3694 }
3695
3696 if (elmAudioAdapter.getAttributeValue("codec", strTemp))
3697 {
3698 if (strTemp == "SB16")
3699 aa.codecType = AudioCodecType_SB16;
3700 else if (strTemp == "STAC9700")
3701 aa.codecType = AudioCodecType_STAC9700;
3702 else if (strTemp == "AD1980")
3703 aa.codecType = AudioCodecType_AD1980;
3704 else if (strTemp == "STAC9221")
3705 aa.codecType = AudioCodecType_STAC9221;
3706 else
3707 throw ConfigFileError(this, &elmAudioAdapter, N_("Invalid value '%s' in AudioAdapter/@codec attribute"), strTemp.c_str());
3708 }
3709 else
3710 {
3711 /* No codec attribute provided; use defaults. */
3712 switch (aa.controllerType)
3713 {
3714 case AudioControllerType_AC97:
3715 aa.codecType = AudioCodecType_STAC9700;
3716 break;
3717 case AudioControllerType_SB16:
3718 aa.codecType = AudioCodecType_SB16;
3719 break;
3720 case AudioControllerType_HDA:
3721 aa.codecType = AudioCodecType_STAC9221;
3722 break;
3723 default:
3724 Assert(false); /* We just checked the controller type above. */
3725 }
3726 }
3727
3728 if (elmAudioAdapter.getAttributeValue("driver", strTemp))
3729 {
3730 // settings before 1.3 used lower case so make sure this is case-insensitive
3731 strTemp.toUpper();
3732 if (strTemp == "NULL")
3733 aa.driverType = AudioDriverType_Null;
3734 else if (strTemp == "WINMM")
3735 aa.driverType = AudioDriverType_WinMM;
3736 else if ( (strTemp == "DIRECTSOUND") || (strTemp == "DSOUND") )
3737 aa.driverType = AudioDriverType_DirectSound;
3738 else if (strTemp == "SOLAUDIO") /* Deprecated -- Solaris will use OSS by default now. */
3739 aa.driverType = AudioDriverType_SolAudio;
3740 else if (strTemp == "ALSA")
3741 aa.driverType = AudioDriverType_ALSA;
3742 else if (strTemp == "PULSE")
3743 aa.driverType = AudioDriverType_Pulse;
3744 else if (strTemp == "OSS")
3745 aa.driverType = AudioDriverType_OSS;
3746 else if (strTemp == "COREAUDIO")
3747 aa.driverType = AudioDriverType_CoreAudio;
3748 else if (strTemp == "MMPM")
3749 aa.driverType = AudioDriverType_MMPM;
3750 else
3751 throw ConfigFileError(this, &elmAudioAdapter, N_("Invalid value '%s' in AudioAdapter/@driver attribute"), strTemp.c_str());
3752
3753 // now check if this is actually supported on the current host platform;
3754 // people might be opening a file created on a Windows host, and that
3755 // VM should still start on a Linux host
3756 if (!isAudioDriverAllowedOnThisHost(aa.driverType))
3757 aa.driverType = getHostDefaultAudioDriver();
3758 }
3759}
3760
3761/**
3762 * Called from MachineConfigFile::readHardware() to read guest property information.
3763 * @param elmGuestProperties
3764 * @param hw
3765 */
3766void MachineConfigFile::readGuestProperties(const xml::ElementNode &elmGuestProperties,
3767 Hardware &hw)
3768{
3769 xml::NodesLoop nl1(elmGuestProperties, "GuestProperty");
3770 const xml::ElementNode *pelmProp;
3771 while ((pelmProp = nl1.forAllNodes()))
3772 {
3773 GuestProperty prop;
3774 pelmProp->getAttributeValue("name", prop.strName);
3775 pelmProp->getAttributeValue("value", prop.strValue);
3776
3777 pelmProp->getAttributeValue("timestamp", prop.timestamp);
3778 pelmProp->getAttributeValue("flags", prop.strFlags);
3779 hw.llGuestProperties.push_back(prop);
3780 }
3781}
3782
3783/**
3784 * Helper function to read attributes that are common to \<SATAController\> (pre-1.7)
3785 * and \<StorageController\>.
3786 * @param elmStorageController
3787 * @param sctl
3788 */
3789void MachineConfigFile::readStorageControllerAttributes(const xml::ElementNode &elmStorageController,
3790 StorageController &sctl)
3791{
3792 elmStorageController.getAttributeValue("PortCount", sctl.ulPortCount);
3793 elmStorageController.getAttributeValue("useHostIOCache", sctl.fUseHostIOCache);
3794}
3795
3796/**
3797 * Reads in a \<Hardware\> block and stores it in the given structure. Used
3798 * both directly from readMachine and from readSnapshot, since snapshots
3799 * have their own hardware sections.
3800 *
3801 * For legacy pre-1.7 settings we also need a storage structure because
3802 * the IDE and SATA controllers used to be defined under \<Hardware\>.
3803 *
3804 * @param elmHardware
3805 * @param hw
3806 */
3807void MachineConfigFile::readHardware(const xml::ElementNode &elmHardware,
3808 Hardware &hw)
3809{
3810 if (m->sv >= SettingsVersion_v1_16)
3811 {
3812 /* Starting with VirtualBox 5.1 the default is Default, before it was
3813 * Legacy. This needs to matched by areParavirtDefaultSettings(). */
3814 hw.paravirtProvider = ParavirtProvider_Default;
3815 /* The new default is disabled, before it was enabled by default. */
3816 hw.vrdeSettings.fEnabled = false;
3817 /* The new default is disabled, before it was enabled by default. */
3818 hw.audioAdapter.fEnabled = false;
3819 }
3820
3821 if (!elmHardware.getAttributeValue("version", hw.strVersion))
3822 {
3823 /* KLUDGE ALERT! For a while during the 3.1 development this was not
3824 written because it was thought to have a default value of "2". For
3825 sv <= 1.3 it defaults to "1" because the attribute didn't exist,
3826 while for 1.4+ it is sort of mandatory. Now, the buggy XML writer
3827 code only wrote 1.7 and later. So, if it's a 1.7+ XML file and it's
3828 missing the hardware version, then it probably should be "2" instead
3829 of "1". */
3830 if (m->sv < SettingsVersion_v1_7)
3831 hw.strVersion = "1";
3832 else
3833 hw.strVersion = "2";
3834 }
3835 Utf8Str strUUID;
3836 if (elmHardware.getAttributeValue("uuid", strUUID))
3837 parseUUID(hw.uuid, strUUID, &elmHardware);
3838
3839 xml::NodesLoop nl1(elmHardware);
3840 const xml::ElementNode *pelmHwChild;
3841 while ((pelmHwChild = nl1.forAllNodes()))
3842 {
3843 if (pelmHwChild->nameEquals("CPU"))
3844 {
3845 if (!pelmHwChild->getAttributeValue("count", hw.cCPUs))
3846 {
3847 // pre-1.5 variant; not sure if this actually exists in the wild anywhere
3848 const xml::ElementNode *pelmCPUChild;
3849 if ((pelmCPUChild = pelmHwChild->findChildElement("CPUCount")))
3850 pelmCPUChild->getAttributeValue("count", hw.cCPUs);
3851 }
3852
3853 pelmHwChild->getAttributeValue("hotplug", hw.fCpuHotPlug);
3854 pelmHwChild->getAttributeValue("executionCap", hw.ulCpuExecutionCap);
3855
3856 const xml::ElementNode *pelmCPUChild;
3857 if (hw.fCpuHotPlug)
3858 {
3859 if ((pelmCPUChild = pelmHwChild->findChildElement("CpuTree")))
3860 readCpuTree(*pelmCPUChild, hw.llCpus);
3861 }
3862
3863 if ((pelmCPUChild = pelmHwChild->findChildElement("HardwareVirtEx")))
3864 {
3865 pelmCPUChild->getAttributeValue("enabled", hw.fHardwareVirt);
3866 }
3867 if ((pelmCPUChild = pelmHwChild->findChildElement("HardwareVirtExNestedPaging")))
3868 pelmCPUChild->getAttributeValue("enabled", hw.fNestedPaging);
3869 if ((pelmCPUChild = pelmHwChild->findChildElement("HardwareVirtExLargePages")))
3870 pelmCPUChild->getAttributeValue("enabled", hw.fLargePages);
3871 if ((pelmCPUChild = pelmHwChild->findChildElement("HardwareVirtExVPID")))
3872 pelmCPUChild->getAttributeValue("enabled", hw.fVPID);
3873 if ((pelmCPUChild = pelmHwChild->findChildElement("HardwareVirtExUX")))
3874 pelmCPUChild->getAttributeValue("enabled", hw.fUnrestrictedExecution);
3875 if ((pelmCPUChild = pelmHwChild->findChildElement("HardwareVirtForce")))
3876 pelmCPUChild->getAttributeValue("enabled", hw.fHardwareVirtForce);
3877
3878 if (!(pelmCPUChild = pelmHwChild->findChildElement("PAE")))
3879 {
3880 /* The default for pre 3.1 was false, so we must respect that. */
3881 if (m->sv < SettingsVersion_v1_9)
3882 hw.fPAE = false;
3883 }
3884 else
3885 pelmCPUChild->getAttributeValue("enabled", hw.fPAE);
3886
3887 bool fLongMode;
3888 if ( (pelmCPUChild = pelmHwChild->findChildElement("LongMode"))
3889 && pelmCPUChild->getAttributeValue("enabled", fLongMode) )
3890 hw.enmLongMode = fLongMode ? Hardware::LongMode_Enabled : Hardware::LongMode_Disabled;
3891 else
3892 hw.enmLongMode = Hardware::LongMode_Legacy;
3893
3894 if ((pelmCPUChild = pelmHwChild->findChildElement("SyntheticCpu")))
3895 {
3896 bool fSyntheticCpu = false;
3897 pelmCPUChild->getAttributeValue("enabled", fSyntheticCpu);
3898 hw.uCpuIdPortabilityLevel = fSyntheticCpu ? 1 : 0;
3899 }
3900 pelmHwChild->getAttributeValue("CpuIdPortabilityLevel", hw.uCpuIdPortabilityLevel);
3901 pelmHwChild->getAttributeValue("CpuProfile", hw.strCpuProfile);
3902
3903 if ((pelmCPUChild = pelmHwChild->findChildElement("TripleFaultReset")))
3904 pelmCPUChild->getAttributeValue("enabled", hw.fTripleFaultReset);
3905
3906 if ((pelmCPUChild = pelmHwChild->findChildElement("APIC")))
3907 pelmCPUChild->getAttributeValue("enabled", hw.fAPIC);
3908 if ((pelmCPUChild = pelmHwChild->findChildElement("X2APIC")))
3909 pelmCPUChild->getAttributeValue("enabled", hw.fX2APIC);
3910 if (hw.fX2APIC)
3911 hw.fAPIC = true;
3912
3913 if ((pelmCPUChild = pelmHwChild->findChildElement("CpuIdTree")))
3914 readCpuIdTree(*pelmCPUChild, hw.llCpuIdLeafs);
3915 }
3916 else if (pelmHwChild->nameEquals("Memory"))
3917 {
3918 pelmHwChild->getAttributeValue("RAMSize", hw.ulMemorySizeMB);
3919 pelmHwChild->getAttributeValue("PageFusion", hw.fPageFusionEnabled);
3920 }
3921 else if (pelmHwChild->nameEquals("Firmware"))
3922 {
3923 Utf8Str strFirmwareType;
3924 if (pelmHwChild->getAttributeValue("type", strFirmwareType))
3925 {
3926 if ( (strFirmwareType == "BIOS")
3927 || (strFirmwareType == "1") // some trunk builds used the number here
3928 )
3929 hw.firmwareType = FirmwareType_BIOS;
3930 else if ( (strFirmwareType == "EFI")
3931 || (strFirmwareType == "2") // some trunk builds used the number here
3932 )
3933 hw.firmwareType = FirmwareType_EFI;
3934 else if ( strFirmwareType == "EFI32")
3935 hw.firmwareType = FirmwareType_EFI32;
3936 else if ( strFirmwareType == "EFI64")
3937 hw.firmwareType = FirmwareType_EFI64;
3938 else if ( strFirmwareType == "EFIDUAL")
3939 hw.firmwareType = FirmwareType_EFIDUAL;
3940 else
3941 throw ConfigFileError(this,
3942 pelmHwChild,
3943 N_("Invalid value '%s' in Firmware/@type"),
3944 strFirmwareType.c_str());
3945 }
3946 }
3947 else if (pelmHwChild->nameEquals("HID"))
3948 {
3949 Utf8Str strHIDType;
3950 if (pelmHwChild->getAttributeValue("Keyboard", strHIDType))
3951 {
3952 if (strHIDType == "None")
3953 hw.keyboardHIDType = KeyboardHIDType_None;
3954 else if (strHIDType == "USBKeyboard")
3955 hw.keyboardHIDType = KeyboardHIDType_USBKeyboard;
3956 else if (strHIDType == "PS2Keyboard")
3957 hw.keyboardHIDType = KeyboardHIDType_PS2Keyboard;
3958 else if (strHIDType == "ComboKeyboard")
3959 hw.keyboardHIDType = KeyboardHIDType_ComboKeyboard;
3960 else
3961 throw ConfigFileError(this,
3962 pelmHwChild,
3963 N_("Invalid value '%s' in HID/Keyboard/@type"),
3964 strHIDType.c_str());
3965 }
3966 if (pelmHwChild->getAttributeValue("Pointing", strHIDType))
3967 {
3968 if (strHIDType == "None")
3969 hw.pointingHIDType = PointingHIDType_None;
3970 else if (strHIDType == "USBMouse")
3971 hw.pointingHIDType = PointingHIDType_USBMouse;
3972 else if (strHIDType == "USBTablet")
3973 hw.pointingHIDType = PointingHIDType_USBTablet;
3974 else if (strHIDType == "PS2Mouse")
3975 hw.pointingHIDType = PointingHIDType_PS2Mouse;
3976 else if (strHIDType == "ComboMouse")
3977 hw.pointingHIDType = PointingHIDType_ComboMouse;
3978 else if (strHIDType == "USBMultiTouch")
3979 hw.pointingHIDType = PointingHIDType_USBMultiTouch;
3980 else
3981 throw ConfigFileError(this,
3982 pelmHwChild,
3983 N_("Invalid value '%s' in HID/Pointing/@type"),
3984 strHIDType.c_str());
3985 }
3986 }
3987 else if (pelmHwChild->nameEquals("Chipset"))
3988 {
3989 Utf8Str strChipsetType;
3990 if (pelmHwChild->getAttributeValue("type", strChipsetType))
3991 {
3992 if (strChipsetType == "PIIX3")
3993 hw.chipsetType = ChipsetType_PIIX3;
3994 else if (strChipsetType == "ICH9")
3995 hw.chipsetType = ChipsetType_ICH9;
3996 else
3997 throw ConfigFileError(this,
3998 pelmHwChild,
3999 N_("Invalid value '%s' in Chipset/@type"),
4000 strChipsetType.c_str());
4001 }
4002 }
4003 else if (pelmHwChild->nameEquals("Paravirt"))
4004 {
4005 Utf8Str strProvider;
4006 if (pelmHwChild->getAttributeValue("provider", strProvider))
4007 {
4008 if (strProvider == "None")
4009 hw.paravirtProvider = ParavirtProvider_None;
4010 else if (strProvider == "Default")
4011 hw.paravirtProvider = ParavirtProvider_Default;
4012 else if (strProvider == "Legacy")
4013 hw.paravirtProvider = ParavirtProvider_Legacy;
4014 else if (strProvider == "Minimal")
4015 hw.paravirtProvider = ParavirtProvider_Minimal;
4016 else if (strProvider == "HyperV")
4017 hw.paravirtProvider = ParavirtProvider_HyperV;
4018 else if (strProvider == "KVM")
4019 hw.paravirtProvider = ParavirtProvider_KVM;
4020 else
4021 throw ConfigFileError(this,
4022 pelmHwChild,
4023 N_("Invalid value '%s' in Paravirt/@provider attribute"),
4024 strProvider.c_str());
4025 }
4026
4027 pelmHwChild->getAttributeValue("debug", hw.strParavirtDebug);
4028 }
4029 else if (pelmHwChild->nameEquals("HPET"))
4030 {
4031 pelmHwChild->getAttributeValue("enabled", hw.fHPETEnabled);
4032 }
4033 else if (pelmHwChild->nameEquals("Boot"))
4034 {
4035 hw.mapBootOrder.clear();
4036
4037 xml::NodesLoop nl2(*pelmHwChild, "Order");
4038 const xml::ElementNode *pelmOrder;
4039 while ((pelmOrder = nl2.forAllNodes()))
4040 {
4041 uint32_t ulPos;
4042 Utf8Str strDevice;
4043 if (!pelmOrder->getAttributeValue("position", ulPos))
4044 throw ConfigFileError(this, pelmOrder, N_("Required Boot/Order/@position attribute is missing"));
4045
4046 if ( ulPos < 1
4047 || ulPos > SchemaDefs::MaxBootPosition
4048 )
4049 throw ConfigFileError(this,
4050 pelmOrder,
4051 N_("Invalid value '%RU32' in Boot/Order/@position: must be greater than 0 and less than %RU32"),
4052 ulPos,
4053 SchemaDefs::MaxBootPosition + 1);
4054 // XML is 1-based but internal data is 0-based
4055 --ulPos;
4056
4057 if (hw.mapBootOrder.find(ulPos) != hw.mapBootOrder.end())
4058 throw ConfigFileError(this, pelmOrder, N_("Invalid value '%RU32' in Boot/Order/@position: value is not unique"), ulPos);
4059
4060 if (!pelmOrder->getAttributeValue("device", strDevice))
4061 throw ConfigFileError(this, pelmOrder, N_("Required Boot/Order/@device attribute is missing"));
4062
4063 DeviceType_T type;
4064 if (strDevice == "None")
4065 type = DeviceType_Null;
4066 else if (strDevice == "Floppy")
4067 type = DeviceType_Floppy;
4068 else if (strDevice == "DVD")
4069 type = DeviceType_DVD;
4070 else if (strDevice == "HardDisk")
4071 type = DeviceType_HardDisk;
4072 else if (strDevice == "Network")
4073 type = DeviceType_Network;
4074 else
4075 throw ConfigFileError(this, pelmOrder, N_("Invalid value '%s' in Boot/Order/@device attribute"), strDevice.c_str());
4076 hw.mapBootOrder[ulPos] = type;
4077 }
4078 }
4079 else if (pelmHwChild->nameEquals("Display"))
4080 {
4081 Utf8Str strGraphicsControllerType;
4082 if (!pelmHwChild->getAttributeValue("controller", strGraphicsControllerType))
4083 hw.graphicsControllerType = GraphicsControllerType_VBoxVGA;
4084 else
4085 {
4086 strGraphicsControllerType.toUpper();
4087 GraphicsControllerType_T type;
4088 if (strGraphicsControllerType == "VBOXVGA")
4089 type = GraphicsControllerType_VBoxVGA;
4090 else if (strGraphicsControllerType == "VMSVGA")
4091 type = GraphicsControllerType_VMSVGA;
4092 else if (strGraphicsControllerType == "NONE")
4093 type = GraphicsControllerType_Null;
4094 else
4095 throw ConfigFileError(this, pelmHwChild, N_("Invalid value '%s' in Display/@controller attribute"), strGraphicsControllerType.c_str());
4096 hw.graphicsControllerType = type;
4097 }
4098 pelmHwChild->getAttributeValue("VRAMSize", hw.ulVRAMSizeMB);
4099 if (!pelmHwChild->getAttributeValue("monitorCount", hw.cMonitors))
4100 pelmHwChild->getAttributeValue("MonitorCount", hw.cMonitors); // pre-v1.5 variant
4101 if (!pelmHwChild->getAttributeValue("accelerate3D", hw.fAccelerate3D))
4102 pelmHwChild->getAttributeValue("Accelerate3D", hw.fAccelerate3D); // pre-v1.5 variant
4103 pelmHwChild->getAttributeValue("accelerate2DVideo", hw.fAccelerate2DVideo);
4104 }
4105 else if (pelmHwChild->nameEquals("VideoCapture"))
4106 {
4107 pelmHwChild->getAttributeValue("enabled", hw.fVideoCaptureEnabled);
4108 pelmHwChild->getAttributeValue("screens", hw.u64VideoCaptureScreens);
4109 pelmHwChild->getAttributeValuePath("file", hw.strVideoCaptureFile);
4110 pelmHwChild->getAttributeValue("horzRes", hw.ulVideoCaptureHorzRes);
4111 pelmHwChild->getAttributeValue("vertRes", hw.ulVideoCaptureVertRes);
4112 pelmHwChild->getAttributeValue("rate", hw.ulVideoCaptureRate);
4113 pelmHwChild->getAttributeValue("fps", hw.ulVideoCaptureFPS);
4114 pelmHwChild->getAttributeValue("maxTime", hw.ulVideoCaptureMaxTime);
4115 pelmHwChild->getAttributeValue("maxSize", hw.ulVideoCaptureMaxSize);
4116 }
4117 else if (pelmHwChild->nameEquals("RemoteDisplay"))
4118 {
4119 pelmHwChild->getAttributeValue("enabled", hw.vrdeSettings.fEnabled);
4120
4121 Utf8Str str;
4122 if (pelmHwChild->getAttributeValue("port", str))
4123 hw.vrdeSettings.mapProperties["TCP/Ports"] = str;
4124 if (pelmHwChild->getAttributeValue("netAddress", str))
4125 hw.vrdeSettings.mapProperties["TCP/Address"] = str;
4126
4127 Utf8Str strAuthType;
4128 if (pelmHwChild->getAttributeValue("authType", strAuthType))
4129 {
4130 // settings before 1.3 used lower case so make sure this is case-insensitive
4131 strAuthType.toUpper();
4132 if (strAuthType == "NULL")
4133 hw.vrdeSettings.authType = AuthType_Null;
4134 else if (strAuthType == "GUEST")
4135 hw.vrdeSettings.authType = AuthType_Guest;
4136 else if (strAuthType == "EXTERNAL")
4137 hw.vrdeSettings.authType = AuthType_External;
4138 else
4139 throw ConfigFileError(this, pelmHwChild, N_("Invalid value '%s' in RemoteDisplay/@authType attribute"), strAuthType.c_str());
4140 }
4141
4142 pelmHwChild->getAttributeValue("authLibrary", hw.vrdeSettings.strAuthLibrary);
4143 pelmHwChild->getAttributeValue("authTimeout", hw.vrdeSettings.ulAuthTimeout);
4144 pelmHwChild->getAttributeValue("allowMultiConnection", hw.vrdeSettings.fAllowMultiConnection);
4145 pelmHwChild->getAttributeValue("reuseSingleConnection", hw.vrdeSettings.fReuseSingleConnection);
4146
4147 /* 3.2 and 4.0 betas, 4.0 has this information in VRDEProperties. */
4148 const xml::ElementNode *pelmVideoChannel;
4149 if ((pelmVideoChannel = pelmHwChild->findChildElement("VideoChannel")))
4150 {
4151 bool fVideoChannel = false;
4152 pelmVideoChannel->getAttributeValue("enabled", fVideoChannel);
4153 hw.vrdeSettings.mapProperties["VideoChannel/Enabled"] = fVideoChannel? "true": "false";
4154
4155 uint32_t ulVideoChannelQuality = 75;
4156 pelmVideoChannel->getAttributeValue("quality", ulVideoChannelQuality);
4157 ulVideoChannelQuality = RT_CLAMP(ulVideoChannelQuality, 10, 100);
4158 char *pszBuffer = NULL;
4159 if (RTStrAPrintf(&pszBuffer, "%d", ulVideoChannelQuality) >= 0)
4160 {
4161 hw.vrdeSettings.mapProperties["VideoChannel/Quality"] = pszBuffer;
4162 RTStrFree(pszBuffer);
4163 }
4164 else
4165 hw.vrdeSettings.mapProperties["VideoChannel/Quality"] = "75";
4166 }
4167 pelmHwChild->getAttributeValue("VRDEExtPack", hw.vrdeSettings.strVrdeExtPack);
4168
4169 const xml::ElementNode *pelmProperties = pelmHwChild->findChildElement("VRDEProperties");
4170 if (pelmProperties != NULL)
4171 {
4172 xml::NodesLoop nl(*pelmProperties);
4173 const xml::ElementNode *pelmProperty;
4174 while ((pelmProperty = nl.forAllNodes()))
4175 {
4176 if (pelmProperty->nameEquals("Property"))
4177 {
4178 /* <Property name="TCP/Ports" value="3000-3002"/> */
4179 Utf8Str strName, strValue;
4180 if ( pelmProperty->getAttributeValue("name", strName)
4181 && pelmProperty->getAttributeValue("value", strValue))
4182 hw.vrdeSettings.mapProperties[strName] = strValue;
4183 else
4184 throw ConfigFileError(this, pelmProperty, N_("Required VRDE Property/@name or @value attribute is missing"));
4185 }
4186 }
4187 }
4188 }
4189 else if (pelmHwChild->nameEquals("BIOS"))
4190 {
4191 const xml::ElementNode *pelmBIOSChild;
4192 if ((pelmBIOSChild = pelmHwChild->findChildElement("ACPI")))
4193 pelmBIOSChild->getAttributeValue("enabled", hw.biosSettings.fACPIEnabled);
4194 if ((pelmBIOSChild = pelmHwChild->findChildElement("IOAPIC")))
4195 pelmBIOSChild->getAttributeValue("enabled", hw.biosSettings.fIOAPICEnabled);
4196 if ((pelmBIOSChild = pelmHwChild->findChildElement("APIC")))
4197 {
4198 Utf8Str strAPIC;
4199 if (pelmBIOSChild->getAttributeValue("mode", strAPIC))
4200 {
4201 strAPIC.toUpper();
4202 if (strAPIC == "DISABLED")
4203 hw.biosSettings.apicMode = APICMode_Disabled;
4204 else if (strAPIC == "APIC")
4205 hw.biosSettings.apicMode = APICMode_APIC;
4206 else if (strAPIC == "X2APIC")
4207 hw.biosSettings.apicMode = APICMode_X2APIC;
4208 else
4209 throw ConfigFileError(this, pelmBIOSChild, N_("Invalid value '%s' in APIC/@mode attribute"), strAPIC.c_str());
4210 }
4211 }
4212 if ((pelmBIOSChild = pelmHwChild->findChildElement("Logo")))
4213 {
4214 pelmBIOSChild->getAttributeValue("fadeIn", hw.biosSettings.fLogoFadeIn);
4215 pelmBIOSChild->getAttributeValue("fadeOut", hw.biosSettings.fLogoFadeOut);
4216 pelmBIOSChild->getAttributeValue("displayTime", hw.biosSettings.ulLogoDisplayTime);
4217 pelmBIOSChild->getAttributeValue("imagePath", hw.biosSettings.strLogoImagePath);
4218 }
4219 if ((pelmBIOSChild = pelmHwChild->findChildElement("BootMenu")))
4220 {
4221 Utf8Str strBootMenuMode;
4222 if (pelmBIOSChild->getAttributeValue("mode", strBootMenuMode))
4223 {
4224 // settings before 1.3 used lower case so make sure this is case-insensitive
4225 strBootMenuMode.toUpper();
4226 if (strBootMenuMode == "DISABLED")
4227 hw.biosSettings.biosBootMenuMode = BIOSBootMenuMode_Disabled;
4228 else if (strBootMenuMode == "MENUONLY")
4229 hw.biosSettings.biosBootMenuMode = BIOSBootMenuMode_MenuOnly;
4230 else if (strBootMenuMode == "MESSAGEANDMENU")
4231 hw.biosSettings.biosBootMenuMode = BIOSBootMenuMode_MessageAndMenu;
4232 else
4233 throw ConfigFileError(this, pelmBIOSChild, N_("Invalid value '%s' in BootMenu/@mode attribute"), strBootMenuMode.c_str());
4234 }
4235 }
4236 if ((pelmBIOSChild = pelmHwChild->findChildElement("PXEDebug")))
4237 pelmBIOSChild->getAttributeValue("enabled", hw.biosSettings.fPXEDebugEnabled);
4238 if ((pelmBIOSChild = pelmHwChild->findChildElement("TimeOffset")))
4239 pelmBIOSChild->getAttributeValue("value", hw.biosSettings.llTimeOffset);
4240
4241 // legacy BIOS/IDEController (pre 1.7)
4242 if ( (m->sv < SettingsVersion_v1_7)
4243 && (pelmBIOSChild = pelmHwChild->findChildElement("IDEController"))
4244 )
4245 {
4246 StorageController sctl;
4247 sctl.strName = "IDE Controller";
4248 sctl.storageBus = StorageBus_IDE;
4249
4250 Utf8Str strType;
4251 if (pelmBIOSChild->getAttributeValue("type", strType))
4252 {
4253 if (strType == "PIIX3")
4254 sctl.controllerType = StorageControllerType_PIIX3;
4255 else if (strType == "PIIX4")
4256 sctl.controllerType = StorageControllerType_PIIX4;
4257 else if (strType == "ICH6")
4258 sctl.controllerType = StorageControllerType_ICH6;
4259 else
4260 throw ConfigFileError(this, pelmBIOSChild, N_("Invalid value '%s' for IDEController/@type attribute"), strType.c_str());
4261 }
4262 sctl.ulPortCount = 2;
4263 hw.storage.llStorageControllers.push_back(sctl);
4264 }
4265 }
4266 else if ( (m->sv <= SettingsVersion_v1_14)
4267 && pelmHwChild->nameEquals("USBController"))
4268 {
4269 bool fEnabled = false;
4270
4271 pelmHwChild->getAttributeValue("enabled", fEnabled);
4272 if (fEnabled)
4273 {
4274 /* Create OHCI controller with default name. */
4275 USBController ctrl;
4276
4277 ctrl.strName = "OHCI";
4278 ctrl.enmType = USBControllerType_OHCI;
4279 hw.usbSettings.llUSBControllers.push_back(ctrl);
4280 }
4281
4282 pelmHwChild->getAttributeValue("enabledEhci", fEnabled);
4283 if (fEnabled)
4284 {
4285 /* Create OHCI controller with default name. */
4286 USBController ctrl;
4287
4288 ctrl.strName = "EHCI";
4289 ctrl.enmType = USBControllerType_EHCI;
4290 hw.usbSettings.llUSBControllers.push_back(ctrl);
4291 }
4292
4293 readUSBDeviceFilters(*pelmHwChild,
4294 hw.usbSettings.llDeviceFilters);
4295 }
4296 else if (pelmHwChild->nameEquals("USB"))
4297 {
4298 const xml::ElementNode *pelmUSBChild;
4299
4300 if ((pelmUSBChild = pelmHwChild->findChildElement("Controllers")))
4301 {
4302 xml::NodesLoop nl2(*pelmUSBChild, "Controller");
4303 const xml::ElementNode *pelmCtrl;
4304
4305 while ((pelmCtrl = nl2.forAllNodes()))
4306 {
4307 USBController ctrl;
4308 com::Utf8Str strCtrlType;
4309
4310 pelmCtrl->getAttributeValue("name", ctrl.strName);
4311
4312 if (pelmCtrl->getAttributeValue("type", strCtrlType))
4313 {
4314 if (strCtrlType == "OHCI")
4315 ctrl.enmType = USBControllerType_OHCI;
4316 else if (strCtrlType == "EHCI")
4317 ctrl.enmType = USBControllerType_EHCI;
4318 else if (strCtrlType == "XHCI")
4319 ctrl.enmType = USBControllerType_XHCI;
4320 else
4321 throw ConfigFileError(this, pelmCtrl, N_("Invalid value '%s' for Controller/@type attribute"), strCtrlType.c_str());
4322 }
4323
4324 hw.usbSettings.llUSBControllers.push_back(ctrl);
4325 }
4326 }
4327
4328 if ((pelmUSBChild = pelmHwChild->findChildElement("DeviceFilters")))
4329 readUSBDeviceFilters(*pelmUSBChild, hw.usbSettings.llDeviceFilters);
4330 }
4331 else if ( m->sv < SettingsVersion_v1_7
4332 && pelmHwChild->nameEquals("SATAController"))
4333 {
4334 bool f;
4335 if ( pelmHwChild->getAttributeValue("enabled", f)
4336 && f)
4337 {
4338 StorageController sctl;
4339 sctl.strName = "SATA Controller";
4340 sctl.storageBus = StorageBus_SATA;
4341 sctl.controllerType = StorageControllerType_IntelAhci;
4342
4343 readStorageControllerAttributes(*pelmHwChild, sctl);
4344
4345 hw.storage.llStorageControllers.push_back(sctl);
4346 }
4347 }
4348 else if (pelmHwChild->nameEquals("Network"))
4349 readNetworkAdapters(*pelmHwChild, hw.llNetworkAdapters);
4350 else if (pelmHwChild->nameEquals("RTC"))
4351 {
4352 Utf8Str strLocalOrUTC;
4353 machineUserData.fRTCUseUTC = pelmHwChild->getAttributeValue("localOrUTC", strLocalOrUTC)
4354 && strLocalOrUTC == "UTC";
4355 }
4356 else if ( pelmHwChild->nameEquals("UART")
4357 || pelmHwChild->nameEquals("Uart") // used before 1.3
4358 )
4359 readSerialPorts(*pelmHwChild, hw.llSerialPorts);
4360 else if ( pelmHwChild->nameEquals("LPT")
4361 || pelmHwChild->nameEquals("Lpt") // used before 1.3
4362 )
4363 readParallelPorts(*pelmHwChild, hw.llParallelPorts);
4364 else if (pelmHwChild->nameEquals("AudioAdapter"))
4365 readAudioAdapter(*pelmHwChild, hw.audioAdapter);
4366 else if (pelmHwChild->nameEquals("SharedFolders"))
4367 {
4368 xml::NodesLoop nl2(*pelmHwChild, "SharedFolder");
4369 const xml::ElementNode *pelmFolder;
4370 while ((pelmFolder = nl2.forAllNodes()))
4371 {
4372 SharedFolder sf;
4373 pelmFolder->getAttributeValue("name", sf.strName);
4374 pelmFolder->getAttributeValue("hostPath", sf.strHostPath);
4375 pelmFolder->getAttributeValue("writable", sf.fWritable);
4376 pelmFolder->getAttributeValue("autoMount", sf.fAutoMount);
4377 hw.llSharedFolders.push_back(sf);
4378 }
4379 }
4380 else if (pelmHwChild->nameEquals("Clipboard"))
4381 {
4382 Utf8Str strTemp;
4383 if (pelmHwChild->getAttributeValue("mode", strTemp))
4384 {
4385 if (strTemp == "Disabled")
4386 hw.clipboardMode = ClipboardMode_Disabled;
4387 else if (strTemp == "HostToGuest")
4388 hw.clipboardMode = ClipboardMode_HostToGuest;
4389 else if (strTemp == "GuestToHost")
4390 hw.clipboardMode = ClipboardMode_GuestToHost;
4391 else if (strTemp == "Bidirectional")
4392 hw.clipboardMode = ClipboardMode_Bidirectional;
4393 else
4394 throw ConfigFileError(this, pelmHwChild, N_("Invalid value '%s' in Clipboard/@mode attribute"), strTemp.c_str());
4395 }
4396 }
4397 else if (pelmHwChild->nameEquals("DragAndDrop"))
4398 {
4399 Utf8Str strTemp;
4400 if (pelmHwChild->getAttributeValue("mode", strTemp))
4401 {
4402 if (strTemp == "Disabled")
4403 hw.dndMode = DnDMode_Disabled;
4404 else if (strTemp == "HostToGuest")
4405 hw.dndMode = DnDMode_HostToGuest;
4406 else if (strTemp == "GuestToHost")
4407 hw.dndMode = DnDMode_GuestToHost;
4408 else if (strTemp == "Bidirectional")
4409 hw.dndMode = DnDMode_Bidirectional;
4410 else
4411 throw ConfigFileError(this, pelmHwChild, N_("Invalid value '%s' in DragAndDrop/@mode attribute"), strTemp.c_str());
4412 }
4413 }
4414 else if (pelmHwChild->nameEquals("Guest"))
4415 {
4416 if (!pelmHwChild->getAttributeValue("memoryBalloonSize", hw.ulMemoryBalloonSize))
4417 pelmHwChild->getAttributeValue("MemoryBalloonSize", hw.ulMemoryBalloonSize); // used before 1.3
4418 }
4419 else if (pelmHwChild->nameEquals("GuestProperties"))
4420 readGuestProperties(*pelmHwChild, hw);
4421 else if (pelmHwChild->nameEquals("IO"))
4422 {
4423 const xml::ElementNode *pelmBwGroups;
4424 const xml::ElementNode *pelmIOChild;
4425
4426 if ((pelmIOChild = pelmHwChild->findChildElement("IoCache")))
4427 {
4428 pelmIOChild->getAttributeValue("enabled", hw.ioSettings.fIOCacheEnabled);
4429 pelmIOChild->getAttributeValue("size", hw.ioSettings.ulIOCacheSize);
4430 }
4431
4432 if ((pelmBwGroups = pelmHwChild->findChildElement("BandwidthGroups")))
4433 {
4434 xml::NodesLoop nl2(*pelmBwGroups, "BandwidthGroup");
4435 const xml::ElementNode *pelmBandwidthGroup;
4436 while ((pelmBandwidthGroup = nl2.forAllNodes()))
4437 {
4438 BandwidthGroup gr;
4439 Utf8Str strTemp;
4440
4441 pelmBandwidthGroup->getAttributeValue("name", gr.strName);
4442
4443 if (pelmBandwidthGroup->getAttributeValue("type", strTemp))
4444 {
4445 if (strTemp == "Disk")
4446 gr.enmType = BandwidthGroupType_Disk;
4447 else if (strTemp == "Network")
4448 gr.enmType = BandwidthGroupType_Network;
4449 else
4450 throw ConfigFileError(this, pelmBandwidthGroup, N_("Invalid value '%s' in BandwidthGroup/@type attribute"), strTemp.c_str());
4451 }
4452 else
4453 throw ConfigFileError(this, pelmBandwidthGroup, N_("Missing BandwidthGroup/@type attribute"));
4454
4455 if (!pelmBandwidthGroup->getAttributeValue("maxBytesPerSec", gr.cMaxBytesPerSec))
4456 {
4457 pelmBandwidthGroup->getAttributeValue("maxMbPerSec", gr.cMaxBytesPerSec);
4458 gr.cMaxBytesPerSec *= _1M;
4459 }
4460 hw.ioSettings.llBandwidthGroups.push_back(gr);
4461 }
4462 }
4463 }
4464 else if (pelmHwChild->nameEquals("HostPci"))
4465 {
4466 const xml::ElementNode *pelmDevices;
4467
4468 if ((pelmDevices = pelmHwChild->findChildElement("Devices")))
4469 {
4470 xml::NodesLoop nl2(*pelmDevices, "Device");
4471 const xml::ElementNode *pelmDevice;
4472 while ((pelmDevice = nl2.forAllNodes()))
4473 {
4474 HostPCIDeviceAttachment hpda;
4475
4476 if (!pelmDevice->getAttributeValue("host", hpda.uHostAddress))
4477 throw ConfigFileError(this, pelmDevice, N_("Missing Device/@host attribute"));
4478
4479 if (!pelmDevice->getAttributeValue("guest", hpda.uGuestAddress))
4480 throw ConfigFileError(this, pelmDevice, N_("Missing Device/@guest attribute"));
4481
4482 /* name is optional */
4483 pelmDevice->getAttributeValue("name", hpda.strDeviceName);
4484
4485 hw.pciAttachments.push_back(hpda);
4486 }
4487 }
4488 }
4489 else if (pelmHwChild->nameEquals("EmulatedUSB"))
4490 {
4491 const xml::ElementNode *pelmCardReader;
4492
4493 if ((pelmCardReader = pelmHwChild->findChildElement("CardReader")))
4494 {
4495 pelmCardReader->getAttributeValue("enabled", hw.fEmulatedUSBCardReader);
4496 }
4497 }
4498 else if (pelmHwChild->nameEquals("Frontend"))
4499 {
4500 const xml::ElementNode *pelmDefault;
4501
4502 if ((pelmDefault = pelmHwChild->findChildElement("Default")))
4503 {
4504 pelmDefault->getAttributeValue("type", hw.strDefaultFrontend);
4505 }
4506 }
4507 else if (pelmHwChild->nameEquals("StorageControllers"))
4508 readStorageControllers(*pelmHwChild, hw.storage);
4509 }
4510
4511 if (hw.ulMemorySizeMB == (uint32_t)-1)
4512 throw ConfigFileError(this, &elmHardware, N_("Required Memory/@RAMSize element/attribute is missing"));
4513}
4514
4515/**
4516 * This gets called instead of readStorageControllers() for legacy pre-1.7 settings
4517 * files which have a \<HardDiskAttachments\> node and storage controller settings
4518 * hidden in the \<Hardware\> settings. We set the StorageControllers fields just the
4519 * same, just from different sources.
4520 * @param elmHardDiskAttachments \<HardDiskAttachments\> XML node.
4521 * @param strg
4522 */
4523void MachineConfigFile::readHardDiskAttachments_pre1_7(const xml::ElementNode &elmHardDiskAttachments,
4524 Storage &strg)
4525{
4526 StorageController *pIDEController = NULL;
4527 StorageController *pSATAController = NULL;
4528
4529 for (StorageControllersList::iterator it = strg.llStorageControllers.begin();
4530 it != strg.llStorageControllers.end();
4531 ++it)
4532 {
4533 StorageController &s = *it;
4534 if (s.storageBus == StorageBus_IDE)
4535 pIDEController = &s;
4536 else if (s.storageBus == StorageBus_SATA)
4537 pSATAController = &s;
4538 }
4539
4540 xml::NodesLoop nl1(elmHardDiskAttachments, "HardDiskAttachment");
4541 const xml::ElementNode *pelmAttachment;
4542 while ((pelmAttachment = nl1.forAllNodes()))
4543 {
4544 AttachedDevice att;
4545 Utf8Str strUUID, strBus;
4546
4547 if (!pelmAttachment->getAttributeValue("hardDisk", strUUID))
4548 throw ConfigFileError(this, pelmAttachment, N_("Required HardDiskAttachment/@hardDisk attribute is missing"));
4549 parseUUID(att.uuid, strUUID, pelmAttachment);
4550
4551 if (!pelmAttachment->getAttributeValue("bus", strBus))
4552 throw ConfigFileError(this, pelmAttachment, N_("Required HardDiskAttachment/@bus attribute is missing"));
4553 // pre-1.7 'channel' is now port
4554 if (!pelmAttachment->getAttributeValue("channel", att.lPort))
4555 throw ConfigFileError(this, pelmAttachment, N_("Required HardDiskAttachment/@channel attribute is missing"));
4556 // pre-1.7 'device' is still device
4557 if (!pelmAttachment->getAttributeValue("device", att.lDevice))
4558 throw ConfigFileError(this, pelmAttachment, N_("Required HardDiskAttachment/@device attribute is missing"));
4559
4560 att.deviceType = DeviceType_HardDisk;
4561
4562 if (strBus == "IDE")
4563 {
4564 if (!pIDEController)
4565 throw ConfigFileError(this, pelmAttachment, N_("HardDiskAttachment/@bus is 'IDE' but cannot find IDE controller"));
4566 pIDEController->llAttachedDevices.push_back(att);
4567 }
4568 else if (strBus == "SATA")
4569 {
4570 if (!pSATAController)
4571 throw ConfigFileError(this, pelmAttachment, N_("HardDiskAttachment/@bus is 'SATA' but cannot find SATA controller"));
4572 pSATAController->llAttachedDevices.push_back(att);
4573 }
4574 else
4575 throw ConfigFileError(this, pelmAttachment, N_("HardDiskAttachment/@bus attribute has illegal value '%s'"), strBus.c_str());
4576 }
4577}
4578
4579/**
4580 * Reads in a \<StorageControllers\> block and stores it in the given Storage structure.
4581 * Used both directly from readMachine and from readSnapshot, since snapshots
4582 * have their own storage controllers sections.
4583 *
4584 * This is only called for settings version 1.7 and above; see readHardDiskAttachments_pre1_7()
4585 * for earlier versions.
4586 *
4587 * @param elmStorageControllers
4588 * @param strg
4589 */
4590void MachineConfigFile::readStorageControllers(const xml::ElementNode &elmStorageControllers,
4591 Storage &strg)
4592{
4593 xml::NodesLoop nlStorageControllers(elmStorageControllers, "StorageController");
4594 const xml::ElementNode *pelmController;
4595 while ((pelmController = nlStorageControllers.forAllNodes()))
4596 {
4597 StorageController sctl;
4598
4599 if (!pelmController->getAttributeValue("name", sctl.strName))
4600 throw ConfigFileError(this, pelmController, N_("Required StorageController/@name attribute is missing"));
4601 // canonicalize storage controller names for configs in the switchover
4602 // period.
4603 if (m->sv < SettingsVersion_v1_9)
4604 {
4605 if (sctl.strName == "IDE")
4606 sctl.strName = "IDE Controller";
4607 else if (sctl.strName == "SATA")
4608 sctl.strName = "SATA Controller";
4609 else if (sctl.strName == "SCSI")
4610 sctl.strName = "SCSI Controller";
4611 }
4612
4613 pelmController->getAttributeValue("Instance", sctl.ulInstance);
4614 // default from constructor is 0
4615
4616 pelmController->getAttributeValue("Bootable", sctl.fBootable);
4617 // default from constructor is true which is true
4618 // for settings below version 1.11 because they allowed only
4619 // one controller per type.
4620
4621 Utf8Str strType;
4622 if (!pelmController->getAttributeValue("type", strType))
4623 throw ConfigFileError(this, pelmController, N_("Required StorageController/@type attribute is missing"));
4624
4625 if (strType == "AHCI")
4626 {
4627 sctl.storageBus = StorageBus_SATA;
4628 sctl.controllerType = StorageControllerType_IntelAhci;
4629 }
4630 else if (strType == "LsiLogic")
4631 {
4632 sctl.storageBus = StorageBus_SCSI;
4633 sctl.controllerType = StorageControllerType_LsiLogic;
4634 }
4635 else if (strType == "BusLogic")
4636 {
4637 sctl.storageBus = StorageBus_SCSI;
4638 sctl.controllerType = StorageControllerType_BusLogic;
4639 }
4640 else if (strType == "PIIX3")
4641 {
4642 sctl.storageBus = StorageBus_IDE;
4643 sctl.controllerType = StorageControllerType_PIIX3;
4644 }
4645 else if (strType == "PIIX4")
4646 {
4647 sctl.storageBus = StorageBus_IDE;
4648 sctl.controllerType = StorageControllerType_PIIX4;
4649 }
4650 else if (strType == "ICH6")
4651 {
4652 sctl.storageBus = StorageBus_IDE;
4653 sctl.controllerType = StorageControllerType_ICH6;
4654 }
4655 else if ( (m->sv >= SettingsVersion_v1_9)
4656 && (strType == "I82078")
4657 )
4658 {
4659 sctl.storageBus = StorageBus_Floppy;
4660 sctl.controllerType = StorageControllerType_I82078;
4661 }
4662 else if (strType == "LsiLogicSas")
4663 {
4664 sctl.storageBus = StorageBus_SAS;
4665 sctl.controllerType = StorageControllerType_LsiLogicSas;
4666 }
4667 else if (strType == "USB")
4668 {
4669 sctl.storageBus = StorageBus_USB;
4670 sctl.controllerType = StorageControllerType_USB;
4671 }
4672 else if (strType == "NVMe")
4673 {
4674 sctl.storageBus = StorageBus_PCIe;
4675 sctl.controllerType = StorageControllerType_NVMe;
4676 }
4677 else
4678 throw ConfigFileError(this, pelmController, N_("Invalid value '%s' for StorageController/@type attribute"), strType.c_str());
4679
4680 readStorageControllerAttributes(*pelmController, sctl);
4681
4682 xml::NodesLoop nlAttached(*pelmController, "AttachedDevice");
4683 const xml::ElementNode *pelmAttached;
4684 while ((pelmAttached = nlAttached.forAllNodes()))
4685 {
4686 AttachedDevice att;
4687 Utf8Str strTemp;
4688 pelmAttached->getAttributeValue("type", strTemp);
4689
4690 att.fDiscard = false;
4691 att.fNonRotational = false;
4692 att.fHotPluggable = false;
4693
4694 if (strTemp == "HardDisk")
4695 {
4696 att.deviceType = DeviceType_HardDisk;
4697 pelmAttached->getAttributeValue("nonrotational", att.fNonRotational);
4698 pelmAttached->getAttributeValue("discard", att.fDiscard);
4699 }
4700 else if (m->sv >= SettingsVersion_v1_9)
4701 {
4702 // starting with 1.9 we list DVD and floppy drive info + attachments under <StorageControllers>
4703 if (strTemp == "DVD")
4704 {
4705 att.deviceType = DeviceType_DVD;
4706 pelmAttached->getAttributeValue("passthrough", att.fPassThrough);
4707 pelmAttached->getAttributeValue("tempeject", att.fTempEject);
4708 }
4709 else if (strTemp == "Floppy")
4710 att.deviceType = DeviceType_Floppy;
4711 }
4712
4713 if (att.deviceType != DeviceType_Null)
4714 {
4715 const xml::ElementNode *pelmImage;
4716 // all types can have images attached, but for HardDisk it's required
4717 if (!(pelmImage = pelmAttached->findChildElement("Image")))
4718 {
4719 if (att.deviceType == DeviceType_HardDisk)
4720 throw ConfigFileError(this, pelmImage, N_("Required AttachedDevice/Image element is missing"));
4721 else
4722 {
4723 // DVDs and floppies can also have <HostDrive> instead of <Image>
4724 const xml::ElementNode *pelmHostDrive;
4725 if ((pelmHostDrive = pelmAttached->findChildElement("HostDrive")))
4726 if (!pelmHostDrive->getAttributeValue("src", att.strHostDriveSrc))
4727 throw ConfigFileError(this, pelmHostDrive, N_("Required AttachedDevice/HostDrive/@src attribute is missing"));
4728 }
4729 }
4730 else
4731 {
4732 if (!pelmImage->getAttributeValue("uuid", strTemp))
4733 throw ConfigFileError(this, pelmImage, N_("Required AttachedDevice/Image/@uuid attribute is missing"));
4734 parseUUID(att.uuid, strTemp, pelmImage);
4735 }
4736
4737 if (!pelmAttached->getAttributeValue("port", att.lPort))
4738 throw ConfigFileError(this, pelmImage, N_("Required AttachedDevice/@port attribute is missing"));
4739 if (!pelmAttached->getAttributeValue("device", att.lDevice))
4740 throw ConfigFileError(this, pelmImage, N_("Required AttachedDevice/@device attribute is missing"));
4741
4742 /* AHCI controller ports are hotpluggable by default, keep compatibility with existing settings. */
4743 if (m->sv >= SettingsVersion_v1_15)
4744 pelmAttached->getAttributeValue("hotpluggable", att.fHotPluggable);
4745 else if (sctl.controllerType == StorageControllerType_IntelAhci)
4746 att.fHotPluggable = true;
4747
4748 pelmAttached->getAttributeValue("bandwidthGroup", att.strBwGroup);
4749 sctl.llAttachedDevices.push_back(att);
4750 }
4751 }
4752
4753 strg.llStorageControllers.push_back(sctl);
4754 }
4755}
4756
4757/**
4758 * This gets called for legacy pre-1.9 settings files after having parsed the
4759 * \<Hardware\> and \<StorageControllers\> sections to parse \<Hardware\> once more
4760 * for the \<DVDDrive\> and \<FloppyDrive\> sections.
4761 *
4762 * Before settings version 1.9, DVD and floppy drives were specified separately
4763 * under \<Hardware\>; we then need this extra loop to make sure the storage
4764 * controller structs are already set up so we can add stuff to them.
4765 *
4766 * @param elmHardware
4767 * @param strg
4768 */
4769void MachineConfigFile::readDVDAndFloppies_pre1_9(const xml::ElementNode &elmHardware,
4770 Storage &strg)
4771{
4772 xml::NodesLoop nl1(elmHardware);
4773 const xml::ElementNode *pelmHwChild;
4774 while ((pelmHwChild = nl1.forAllNodes()))
4775 {
4776 if (pelmHwChild->nameEquals("DVDDrive"))
4777 {
4778 // create a DVD "attached device" and attach it to the existing IDE controller
4779 AttachedDevice att;
4780 att.deviceType = DeviceType_DVD;
4781 // legacy DVD drive is always secondary master (port 1, device 0)
4782 att.lPort = 1;
4783 att.lDevice = 0;
4784 pelmHwChild->getAttributeValue("passthrough", att.fPassThrough);
4785 pelmHwChild->getAttributeValue("tempeject", att.fTempEject);
4786
4787 const xml::ElementNode *pDriveChild;
4788 Utf8Str strTmp;
4789 if ( (pDriveChild = pelmHwChild->findChildElement("Image")) != NULL
4790 && pDriveChild->getAttributeValue("uuid", strTmp))
4791 parseUUID(att.uuid, strTmp, pDriveChild);
4792 else if ((pDriveChild = pelmHwChild->findChildElement("HostDrive")))
4793 pDriveChild->getAttributeValue("src", att.strHostDriveSrc);
4794
4795 // find the IDE controller and attach the DVD drive
4796 bool fFound = false;
4797 for (StorageControllersList::iterator it = strg.llStorageControllers.begin();
4798 it != strg.llStorageControllers.end();
4799 ++it)
4800 {
4801 StorageController &sctl = *it;
4802 if (sctl.storageBus == StorageBus_IDE)
4803 {
4804 sctl.llAttachedDevices.push_back(att);
4805 fFound = true;
4806 break;
4807 }
4808 }
4809
4810 if (!fFound)
4811 throw ConfigFileError(this, pelmHwChild, N_("Internal error: found DVD drive but IDE controller does not exist"));
4812 // shouldn't happen because pre-1.9 settings files always had at least one IDE controller in the settings
4813 // which should have gotten parsed in <StorageControllers> before this got called
4814 }
4815 else if (pelmHwChild->nameEquals("FloppyDrive"))
4816 {
4817 bool fEnabled;
4818 if ( pelmHwChild->getAttributeValue("enabled", fEnabled)
4819 && fEnabled)
4820 {
4821 // create a new floppy controller and attach a floppy "attached device"
4822 StorageController sctl;
4823 sctl.strName = "Floppy Controller";
4824 sctl.storageBus = StorageBus_Floppy;
4825 sctl.controllerType = StorageControllerType_I82078;
4826 sctl.ulPortCount = 1;
4827
4828 AttachedDevice att;
4829 att.deviceType = DeviceType_Floppy;
4830 att.lPort = 0;
4831 att.lDevice = 0;
4832
4833 const xml::ElementNode *pDriveChild;
4834 Utf8Str strTmp;
4835 if ( (pDriveChild = pelmHwChild->findChildElement("Image"))
4836 && pDriveChild->getAttributeValue("uuid", strTmp) )
4837 parseUUID(att.uuid, strTmp, pDriveChild);
4838 else if ((pDriveChild = pelmHwChild->findChildElement("HostDrive")))
4839 pDriveChild->getAttributeValue("src", att.strHostDriveSrc);
4840
4841 // store attachment with controller
4842 sctl.llAttachedDevices.push_back(att);
4843 // store controller with storage
4844 strg.llStorageControllers.push_back(sctl);
4845 }
4846 }
4847 }
4848}
4849
4850/**
4851 * Called for reading the \<Teleporter\> element under \<Machine\>.
4852 */
4853void MachineConfigFile::readTeleporter(const xml::ElementNode *pElmTeleporter,
4854 MachineUserData *pUserData)
4855{
4856 pElmTeleporter->getAttributeValue("enabled", pUserData->fTeleporterEnabled);
4857 pElmTeleporter->getAttributeValue("port", pUserData->uTeleporterPort);
4858 pElmTeleporter->getAttributeValue("address", pUserData->strTeleporterAddress);
4859 pElmTeleporter->getAttributeValue("password", pUserData->strTeleporterPassword);
4860
4861 if ( pUserData->strTeleporterPassword.isNotEmpty()
4862 && !VBoxIsPasswordHashed(&pUserData->strTeleporterPassword))
4863 VBoxHashPassword(&pUserData->strTeleporterPassword);
4864}
4865
4866/**
4867 * Called for reading the \<Debugging\> element under \<Machine\> or \<Snapshot\>.
4868 */
4869void MachineConfigFile::readDebugging(const xml::ElementNode *pElmDebugging, Debugging *pDbg)
4870{
4871 if (!pElmDebugging || m->sv < SettingsVersion_v1_13)
4872 return;
4873
4874 const xml::ElementNode * const pelmTracing = pElmDebugging->findChildElement("Tracing");
4875 if (pelmTracing)
4876 {
4877 pelmTracing->getAttributeValue("enabled", pDbg->fTracingEnabled);
4878 pelmTracing->getAttributeValue("allowTracingToAccessVM", pDbg->fAllowTracingToAccessVM);
4879 pelmTracing->getAttributeValue("config", pDbg->strTracingConfig);
4880 }
4881}
4882
4883/**
4884 * Called for reading the \<Autostart\> element under \<Machine\> or \<Snapshot\>.
4885 */
4886void MachineConfigFile::readAutostart(const xml::ElementNode *pElmAutostart, Autostart *pAutostart)
4887{
4888 Utf8Str strAutostop;
4889
4890 if (!pElmAutostart || m->sv < SettingsVersion_v1_13)
4891 return;
4892
4893 pElmAutostart->getAttributeValue("enabled", pAutostart->fAutostartEnabled);
4894 pElmAutostart->getAttributeValue("delay", pAutostart->uAutostartDelay);
4895 pElmAutostart->getAttributeValue("autostop", strAutostop);
4896 if (strAutostop == "Disabled")
4897 pAutostart->enmAutostopType = AutostopType_Disabled;
4898 else if (strAutostop == "SaveState")
4899 pAutostart->enmAutostopType = AutostopType_SaveState;
4900 else if (strAutostop == "PowerOff")
4901 pAutostart->enmAutostopType = AutostopType_PowerOff;
4902 else if (strAutostop == "AcpiShutdown")
4903 pAutostart->enmAutostopType = AutostopType_AcpiShutdown;
4904 else
4905 throw ConfigFileError(this, pElmAutostart, N_("Invalid value '%s' for Autostart/@autostop attribute"), strAutostop.c_str());
4906}
4907
4908/**
4909 * Called for reading the \<Groups\> element under \<Machine\>.
4910 */
4911void MachineConfigFile::readGroups(const xml::ElementNode *pElmGroups, StringsList *pllGroups)
4912{
4913 pllGroups->clear();
4914 if (!pElmGroups || m->sv < SettingsVersion_v1_13)
4915 {
4916 pllGroups->push_back("/");
4917 return;
4918 }
4919
4920 xml::NodesLoop nlGroups(*pElmGroups);
4921 const xml::ElementNode *pelmGroup;
4922 while ((pelmGroup = nlGroups.forAllNodes()))
4923 {
4924 if (pelmGroup->nameEquals("Group"))
4925 {
4926 Utf8Str strGroup;
4927 if (!pelmGroup->getAttributeValue("name", strGroup))
4928 throw ConfigFileError(this, pelmGroup, N_("Required Group/@name attribute is missing"));
4929 pllGroups->push_back(strGroup);
4930 }
4931 }
4932}
4933
4934/**
4935 * Called initially for the \<Snapshot\> element under \<Machine\>, if present,
4936 * to store the snapshot's data into the given Snapshot structure (which is
4937 * then the one in the Machine struct). This might then recurse if
4938 * a \<Snapshots\> (plural) element is found in the snapshot, which should
4939 * contain a list of child snapshots; such lists are maintained in the
4940 * Snapshot structure.
4941 *
4942 * @param curSnapshotUuid
4943 * @param depth
4944 * @param elmSnapshot
4945 * @param snap
4946 * @returns true if curSnapshotUuid is in this snapshot subtree, otherwise false
4947 */
4948bool MachineConfigFile::readSnapshot(const Guid &curSnapshotUuid,
4949 uint32_t depth,
4950 const xml::ElementNode &elmSnapshot,
4951 Snapshot &snap)
4952{
4953 if (depth > SETTINGS_SNAPSHOT_DEPTH_MAX)
4954 throw ConfigFileError(this, &elmSnapshot, N_("Maximum snapshot tree depth of %u exceeded"), SETTINGS_SNAPSHOT_DEPTH_MAX);
4955
4956 Utf8Str strTemp;
4957
4958 if (!elmSnapshot.getAttributeValue("uuid", strTemp))
4959 throw ConfigFileError(this, &elmSnapshot, N_("Required Snapshot/@uuid attribute is missing"));
4960 parseUUID(snap.uuid, strTemp, &elmSnapshot);
4961 bool foundCurrentSnapshot = (snap.uuid == curSnapshotUuid);
4962
4963 if (!elmSnapshot.getAttributeValue("name", snap.strName))
4964 throw ConfigFileError(this, &elmSnapshot, N_("Required Snapshot/@name attribute is missing"));
4965
4966 // 3.1 dev builds added Description as an attribute, read it silently
4967 // and write it back as an element
4968 elmSnapshot.getAttributeValue("Description", snap.strDescription);
4969
4970 if (!elmSnapshot.getAttributeValue("timeStamp", strTemp))
4971 throw ConfigFileError(this, &elmSnapshot, N_("Required Snapshot/@timeStamp attribute is missing"));
4972 parseTimestamp(snap.timestamp, strTemp, &elmSnapshot);
4973
4974 elmSnapshot.getAttributeValuePath("stateFile", snap.strStateFile); // online snapshots only
4975
4976 // parse Hardware before the other elements because other things depend on it
4977 const xml::ElementNode *pelmHardware;
4978 if (!(pelmHardware = elmSnapshot.findChildElement("Hardware")))
4979 throw ConfigFileError(this, &elmSnapshot, N_("Required Snapshot/@Hardware element is missing"));
4980 readHardware(*pelmHardware, snap.hardware);
4981
4982 xml::NodesLoop nlSnapshotChildren(elmSnapshot);
4983 const xml::ElementNode *pelmSnapshotChild;
4984 while ((pelmSnapshotChild = nlSnapshotChildren.forAllNodes()))
4985 {
4986 if (pelmSnapshotChild->nameEquals("Description"))
4987 snap.strDescription = pelmSnapshotChild->getValue();
4988 else if ( m->sv < SettingsVersion_v1_7
4989 && pelmSnapshotChild->nameEquals("HardDiskAttachments"))
4990 readHardDiskAttachments_pre1_7(*pelmSnapshotChild, snap.hardware.storage);
4991 else if ( m->sv >= SettingsVersion_v1_7
4992 && pelmSnapshotChild->nameEquals("StorageControllers"))
4993 readStorageControllers(*pelmSnapshotChild, snap.hardware.storage);
4994 else if (pelmSnapshotChild->nameEquals("Snapshots"))
4995 {
4996 xml::NodesLoop nlChildSnapshots(*pelmSnapshotChild);
4997 const xml::ElementNode *pelmChildSnapshot;
4998 while ((pelmChildSnapshot = nlChildSnapshots.forAllNodes()))
4999 {
5000 if (pelmChildSnapshot->nameEquals("Snapshot"))
5001 {
5002 // recurse with this element and put the child at the
5003 // end of the list. XPCOM has very small stack, avoid
5004 // big local variables and use the list element.
5005 snap.llChildSnapshots.push_back(Snapshot::Empty);
5006 bool found = readSnapshot(curSnapshotUuid, depth + 1, *pelmChildSnapshot, snap.llChildSnapshots.back());
5007 foundCurrentSnapshot = foundCurrentSnapshot || found;
5008 }
5009 }
5010 }
5011 }
5012
5013 if (m->sv < SettingsVersion_v1_9)
5014 // go through Hardware once more to repair the settings controller structures
5015 // with data from old DVDDrive and FloppyDrive elements
5016 readDVDAndFloppies_pre1_9(*pelmHardware, snap.hardware.storage);
5017
5018 readDebugging(elmSnapshot.findChildElement("Debugging"), &snap.debugging);
5019 readAutostart(elmSnapshot.findChildElement("Autostart"), &snap.autostart);
5020 // note: Groups exist only for Machine, not for Snapshot
5021
5022 return foundCurrentSnapshot;
5023}
5024
5025const struct {
5026 const char *pcszOld;
5027 const char *pcszNew;
5028} aConvertOSTypes[] =
5029{
5030 { "unknown", "Other" },
5031 { "dos", "DOS" },
5032 { "win31", "Windows31" },
5033 { "win95", "Windows95" },
5034 { "win98", "Windows98" },
5035 { "winme", "WindowsMe" },
5036 { "winnt4", "WindowsNT4" },
5037 { "win2k", "Windows2000" },
5038 { "winxp", "WindowsXP" },
5039 { "win2k3", "Windows2003" },
5040 { "winvista", "WindowsVista" },
5041 { "win2k8", "Windows2008" },
5042 { "os2warp3", "OS2Warp3" },
5043 { "os2warp4", "OS2Warp4" },
5044 { "os2warp45", "OS2Warp45" },
5045 { "ecs", "OS2eCS" },
5046 { "linux22", "Linux22" },
5047 { "linux24", "Linux24" },
5048 { "linux26", "Linux26" },
5049 { "archlinux", "ArchLinux" },
5050 { "debian", "Debian" },
5051 { "opensuse", "OpenSUSE" },
5052 { "fedoracore", "Fedora" },
5053 { "gentoo", "Gentoo" },
5054 { "mandriva", "Mandriva" },
5055 { "redhat", "RedHat" },
5056 { "ubuntu", "Ubuntu" },
5057 { "xandros", "Xandros" },
5058 { "freebsd", "FreeBSD" },
5059 { "openbsd", "OpenBSD" },
5060 { "netbsd", "NetBSD" },
5061 { "netware", "Netware" },
5062 { "solaris", "Solaris" },
5063 { "opensolaris", "OpenSolaris" },
5064 { "l4", "L4" }
5065};
5066
5067void MachineConfigFile::convertOldOSType_pre1_5(Utf8Str &str)
5068{
5069 for (unsigned u = 0;
5070 u < RT_ELEMENTS(aConvertOSTypes);
5071 ++u)
5072 {
5073 if (str == aConvertOSTypes[u].pcszOld)
5074 {
5075 str = aConvertOSTypes[u].pcszNew;
5076 break;
5077 }
5078 }
5079}
5080
5081/**
5082 * Called from the constructor to actually read in the \<Machine\> element
5083 * of a machine config file.
5084 * @param elmMachine
5085 */
5086void MachineConfigFile::readMachine(const xml::ElementNode &elmMachine)
5087{
5088 Utf8Str strUUID;
5089 if ( elmMachine.getAttributeValue("uuid", strUUID)
5090 && elmMachine.getAttributeValue("name", machineUserData.strName))
5091 {
5092 parseUUID(uuid, strUUID, &elmMachine);
5093
5094 elmMachine.getAttributeValue("directoryIncludesUUID", machineUserData.fDirectoryIncludesUUID);
5095 elmMachine.getAttributeValue("nameSync", machineUserData.fNameSync);
5096
5097 Utf8Str str;
5098 elmMachine.getAttributeValue("Description", machineUserData.strDescription);
5099 elmMachine.getAttributeValue("OSType", machineUserData.strOsType);
5100 if (m->sv < SettingsVersion_v1_5)
5101 convertOldOSType_pre1_5(machineUserData.strOsType);
5102
5103 elmMachine.getAttributeValuePath("stateFile", strStateFile);
5104
5105 if (elmMachine.getAttributeValue("currentSnapshot", str))
5106 parseUUID(uuidCurrentSnapshot, str, &elmMachine);
5107
5108 elmMachine.getAttributeValuePath("snapshotFolder", machineUserData.strSnapshotFolder);
5109
5110 if (!elmMachine.getAttributeValue("currentStateModified", fCurrentStateModified))
5111 fCurrentStateModified = true;
5112 if (elmMachine.getAttributeValue("lastStateChange", str))
5113 parseTimestamp(timeLastStateChange, str, &elmMachine);
5114 // constructor has called RTTimeNow(&timeLastStateChange) before
5115 if (elmMachine.getAttributeValue("aborted", fAborted))
5116 fAborted = true;
5117
5118 elmMachine.getAttributeValue("processPriority", machineUserData.strVMPriority);
5119
5120 str.setNull();
5121 elmMachine.getAttributeValue("icon", str);
5122 parseBase64(machineUserData.ovIcon, str, &elmMachine);
5123
5124 // parse Hardware before the other elements because other things depend on it
5125 const xml::ElementNode *pelmHardware;
5126 if (!(pelmHardware = elmMachine.findChildElement("Hardware")))
5127 throw ConfigFileError(this, &elmMachine, N_("Required Machine/Hardware element is missing"));
5128 readHardware(*pelmHardware, hardwareMachine);
5129
5130 xml::NodesLoop nlRootChildren(elmMachine);
5131 const xml::ElementNode *pelmMachineChild;
5132 while ((pelmMachineChild = nlRootChildren.forAllNodes()))
5133 {
5134 if (pelmMachineChild->nameEquals("ExtraData"))
5135 readExtraData(*pelmMachineChild,
5136 mapExtraDataItems);
5137 else if ( (m->sv < SettingsVersion_v1_7)
5138 && (pelmMachineChild->nameEquals("HardDiskAttachments"))
5139 )
5140 readHardDiskAttachments_pre1_7(*pelmMachineChild, hardwareMachine.storage);
5141 else if ( (m->sv >= SettingsVersion_v1_7)
5142 && (pelmMachineChild->nameEquals("StorageControllers"))
5143 )
5144 readStorageControllers(*pelmMachineChild, hardwareMachine.storage);
5145 else if (pelmMachineChild->nameEquals("Snapshot"))
5146 {
5147 if (uuidCurrentSnapshot.isZero())
5148 throw ConfigFileError(this, &elmMachine, N_("Snapshots present but required Machine/@currentSnapshot attribute is missing"));
5149 bool foundCurrentSnapshot = false;
5150 Snapshot snap;
5151 // this will recurse into child snapshots, if necessary
5152 foundCurrentSnapshot = readSnapshot(uuidCurrentSnapshot, 1, *pelmMachineChild, snap);
5153 if (!foundCurrentSnapshot)
5154 throw ConfigFileError(this, &elmMachine, N_("Snapshots present but none matches the UUID in the Machine/@currentSnapshot attribute"));
5155 llFirstSnapshot.push_back(snap);
5156 }
5157 else if (pelmMachineChild->nameEquals("Description"))
5158 machineUserData.strDescription = pelmMachineChild->getValue();
5159 else if (pelmMachineChild->nameEquals("Teleporter"))
5160 readTeleporter(pelmMachineChild, &machineUserData);
5161 else if (pelmMachineChild->nameEquals("FaultTolerance"))
5162 {
5163 Utf8Str strFaultToleranceSate;
5164 if (pelmMachineChild->getAttributeValue("state", strFaultToleranceSate))
5165 {
5166 if (strFaultToleranceSate == "master")
5167 machineUserData.enmFaultToleranceState = FaultToleranceState_Master;
5168 else
5169 if (strFaultToleranceSate == "standby")
5170 machineUserData.enmFaultToleranceState = FaultToleranceState_Standby;
5171 else
5172 machineUserData.enmFaultToleranceState = FaultToleranceState_Inactive;
5173 }
5174 pelmMachineChild->getAttributeValue("port", machineUserData.uFaultTolerancePort);
5175 pelmMachineChild->getAttributeValue("address", machineUserData.strFaultToleranceAddress);
5176 pelmMachineChild->getAttributeValue("interval", machineUserData.uFaultToleranceInterval);
5177 pelmMachineChild->getAttributeValue("password", machineUserData.strFaultTolerancePassword);
5178 }
5179 else if (pelmMachineChild->nameEquals("MediaRegistry"))
5180 readMediaRegistry(*pelmMachineChild, mediaRegistry);
5181 else if (pelmMachineChild->nameEquals("Debugging"))
5182 readDebugging(pelmMachineChild, &debugging);
5183 else if (pelmMachineChild->nameEquals("Autostart"))
5184 readAutostart(pelmMachineChild, &autostart);
5185 else if (pelmMachineChild->nameEquals("Groups"))
5186 readGroups(pelmMachineChild, &machineUserData.llGroups);
5187 }
5188
5189 if (m->sv < SettingsVersion_v1_9)
5190 // go through Hardware once more to repair the settings controller structures
5191 // with data from old DVDDrive and FloppyDrive elements
5192 readDVDAndFloppies_pre1_9(*pelmHardware, hardwareMachine.storage);
5193 }
5194 else
5195 throw ConfigFileError(this, &elmMachine, N_("Required Machine/@uuid or @name attributes is missing"));
5196}
5197
5198/**
5199 * Creates a \<Hardware\> node under elmParent and then writes out the XML
5200 * keys under that. Called for both the \<Machine\> node and for snapshots.
5201 * @param elmParent
5202 * @param hw
5203 * @param fl
5204 * @param pllElementsWithUuidAttributes
5205 */
5206void MachineConfigFile::buildHardwareXML(xml::ElementNode &elmParent,
5207 const Hardware &hw,
5208 uint32_t fl,
5209 std::list<xml::ElementNode*> *pllElementsWithUuidAttributes)
5210{
5211 xml::ElementNode *pelmHardware = elmParent.createChild("Hardware");
5212
5213 if ( m->sv >= SettingsVersion_v1_4
5214 && (m->sv < SettingsVersion_v1_7 ? hw.strVersion != "1" : hw.strVersion != "2"))
5215 pelmHardware->setAttribute("version", hw.strVersion);
5216
5217 if ((m->sv >= SettingsVersion_v1_9)
5218 && !hw.uuid.isZero()
5219 && hw.uuid.isValid()
5220 )
5221 pelmHardware->setAttribute("uuid", hw.uuid.toStringCurly());
5222
5223 xml::ElementNode *pelmCPU = pelmHardware->createChild("CPU");
5224
5225 if (!hw.fHardwareVirt)
5226 pelmCPU->createChild("HardwareVirtEx")->setAttribute("enabled", hw.fHardwareVirt);
5227 if (!hw.fNestedPaging)
5228 pelmCPU->createChild("HardwareVirtExNestedPaging")->setAttribute("enabled", hw.fNestedPaging);
5229 if (!hw.fVPID)
5230 pelmCPU->createChild("HardwareVirtExVPID")->setAttribute("enabled", hw.fVPID);
5231 if (!hw.fUnrestrictedExecution)
5232 pelmCPU->createChild("HardwareVirtExUX")->setAttribute("enabled", hw.fUnrestrictedExecution);
5233 // PAE has too crazy default handling, must always save this setting.
5234 pelmCPU->createChild("PAE")->setAttribute("enabled", hw.fPAE);
5235 if (m->sv >= SettingsVersion_v1_16)
5236 {
5237 }
5238 if (m->sv >= SettingsVersion_v1_14 && hw.enmLongMode != Hardware::LongMode_Legacy)
5239 {
5240 // LongMode has too crazy default handling, must always save this setting.
5241 pelmCPU->createChild("LongMode")->setAttribute("enabled", hw.enmLongMode == Hardware::LongMode_Enabled);
5242 }
5243
5244 if (hw.fTripleFaultReset)
5245 pelmCPU->createChild("TripleFaultReset")->setAttribute("enabled", hw.fTripleFaultReset);
5246 if (m->sv >= SettingsVersion_v1_14)
5247 {
5248 if (hw.fX2APIC)
5249 pelmCPU->createChild("X2APIC")->setAttribute("enabled", hw.fX2APIC);
5250 else if (!hw.fAPIC)
5251 pelmCPU->createChild("APIC")->setAttribute("enabled", hw.fAPIC);
5252 }
5253 if (hw.cCPUs > 1)
5254 pelmCPU->setAttribute("count", hw.cCPUs);
5255 if (hw.ulCpuExecutionCap != 100)
5256 pelmCPU->setAttribute("executionCap", hw.ulCpuExecutionCap);
5257 if (hw.uCpuIdPortabilityLevel != 0)
5258 pelmCPU->setAttribute("CpuIdPortabilityLevel", hw.uCpuIdPortabilityLevel);
5259 if (!hw.strCpuProfile.equals("host") && hw.strCpuProfile.isNotEmpty())
5260 pelmCPU->setAttribute("CpuProfile", hw.strCpuProfile);
5261
5262 // HardwareVirtExLargePages has too crazy default handling, must always save this setting.
5263 pelmCPU->createChild("HardwareVirtExLargePages")->setAttribute("enabled", hw.fLargePages);
5264
5265 if (m->sv >= SettingsVersion_v1_9)
5266 {
5267 if (hw.fHardwareVirtForce)
5268 pelmCPU->createChild("HardwareVirtForce")->setAttribute("enabled", hw.fHardwareVirtForce);
5269 }
5270
5271 if (m->sv >= SettingsVersion_v1_10)
5272 {
5273 if (hw.fCpuHotPlug)
5274 pelmCPU->setAttribute("hotplug", hw.fCpuHotPlug);
5275
5276 xml::ElementNode *pelmCpuTree = NULL;
5277 for (CpuList::const_iterator it = hw.llCpus.begin();
5278 it != hw.llCpus.end();
5279 ++it)
5280 {
5281 const Cpu &cpu = *it;
5282
5283 if (pelmCpuTree == NULL)
5284 pelmCpuTree = pelmCPU->createChild("CpuTree");
5285
5286 xml::ElementNode *pelmCpu = pelmCpuTree->createChild("Cpu");
5287 pelmCpu->setAttribute("id", cpu.ulId);
5288 }
5289 }
5290
5291 xml::ElementNode *pelmCpuIdTree = NULL;
5292 for (CpuIdLeafsList::const_iterator it = hw.llCpuIdLeafs.begin();
5293 it != hw.llCpuIdLeafs.end();
5294 ++it)
5295 {
5296 const CpuIdLeaf &leaf = *it;
5297
5298 if (pelmCpuIdTree == NULL)
5299 pelmCpuIdTree = pelmCPU->createChild("CpuIdTree");
5300
5301 xml::ElementNode *pelmCpuIdLeaf = pelmCpuIdTree->createChild("CpuIdLeaf");
5302 pelmCpuIdLeaf->setAttribute("id", leaf.ulId);
5303 pelmCpuIdLeaf->setAttribute("eax", leaf.ulEax);
5304 pelmCpuIdLeaf->setAttribute("ebx", leaf.ulEbx);
5305 pelmCpuIdLeaf->setAttribute("ecx", leaf.ulEcx);
5306 pelmCpuIdLeaf->setAttribute("edx", leaf.ulEdx);
5307 }
5308
5309 xml::ElementNode *pelmMemory = pelmHardware->createChild("Memory");
5310 pelmMemory->setAttribute("RAMSize", hw.ulMemorySizeMB);
5311 if (m->sv >= SettingsVersion_v1_10)
5312 {
5313 if (hw.fPageFusionEnabled)
5314 pelmMemory->setAttribute("PageFusion", hw.fPageFusionEnabled);
5315 }
5316
5317 if ( (m->sv >= SettingsVersion_v1_9)
5318 && (hw.firmwareType >= FirmwareType_EFI)
5319 )
5320 {
5321 xml::ElementNode *pelmFirmware = pelmHardware->createChild("Firmware");
5322 const char *pcszFirmware;
5323
5324 switch (hw.firmwareType)
5325 {
5326 case FirmwareType_EFI: pcszFirmware = "EFI"; break;
5327 case FirmwareType_EFI32: pcszFirmware = "EFI32"; break;
5328 case FirmwareType_EFI64: pcszFirmware = "EFI64"; break;
5329 case FirmwareType_EFIDUAL: pcszFirmware = "EFIDUAL"; break;
5330 default: pcszFirmware = "None"; break;
5331 }
5332 pelmFirmware->setAttribute("type", pcszFirmware);
5333 }
5334
5335 if ( m->sv >= SettingsVersion_v1_10
5336 && ( hw.pointingHIDType != PointingHIDType_PS2Mouse
5337 || hw.keyboardHIDType != KeyboardHIDType_PS2Keyboard))
5338 {
5339 xml::ElementNode *pelmHID = pelmHardware->createChild("HID");
5340 const char *pcszHID;
5341
5342 if (hw.pointingHIDType != PointingHIDType_PS2Mouse)
5343 {
5344 switch (hw.pointingHIDType)
5345 {
5346 case PointingHIDType_USBMouse: pcszHID = "USBMouse"; break;
5347 case PointingHIDType_USBTablet: pcszHID = "USBTablet"; break;
5348 case PointingHIDType_PS2Mouse: pcszHID = "PS2Mouse"; break;
5349 case PointingHIDType_ComboMouse: pcszHID = "ComboMouse"; break;
5350 case PointingHIDType_USBMultiTouch: pcszHID = "USBMultiTouch";break;
5351 case PointingHIDType_None: pcszHID = "None"; break;
5352 default: Assert(false); pcszHID = "PS2Mouse"; break;
5353 }
5354 pelmHID->setAttribute("Pointing", pcszHID);
5355 }
5356
5357 if (hw.keyboardHIDType != KeyboardHIDType_PS2Keyboard)
5358 {
5359 switch (hw.keyboardHIDType)
5360 {
5361 case KeyboardHIDType_USBKeyboard: pcszHID = "USBKeyboard"; break;
5362 case KeyboardHIDType_PS2Keyboard: pcszHID = "PS2Keyboard"; break;
5363 case KeyboardHIDType_ComboKeyboard: pcszHID = "ComboKeyboard"; break;
5364 case KeyboardHIDType_None: pcszHID = "None"; break;
5365 default: Assert(false); pcszHID = "PS2Keyboard"; break;
5366 }
5367 pelmHID->setAttribute("Keyboard", pcszHID);
5368 }
5369 }
5370
5371 if ( (m->sv >= SettingsVersion_v1_10)
5372 && hw.fHPETEnabled
5373 )
5374 {
5375 xml::ElementNode *pelmHPET = pelmHardware->createChild("HPET");
5376 pelmHPET->setAttribute("enabled", hw.fHPETEnabled);
5377 }
5378
5379 if ( (m->sv >= SettingsVersion_v1_11)
5380 )
5381 {
5382 if (hw.chipsetType != ChipsetType_PIIX3)
5383 {
5384 xml::ElementNode *pelmChipset = pelmHardware->createChild("Chipset");
5385 const char *pcszChipset;
5386
5387 switch (hw.chipsetType)
5388 {
5389 case ChipsetType_PIIX3: pcszChipset = "PIIX3"; break;
5390 case ChipsetType_ICH9: pcszChipset = "ICH9"; break;
5391 default: Assert(false); pcszChipset = "PIIX3"; break;
5392 }
5393 pelmChipset->setAttribute("type", pcszChipset);
5394 }
5395 }
5396
5397 if ( (m->sv >= SettingsVersion_v1_15)
5398 && !hw.areParavirtDefaultSettings(m->sv)
5399 )
5400 {
5401 const char *pcszParavirtProvider;
5402 switch (hw.paravirtProvider)
5403 {
5404 case ParavirtProvider_None: pcszParavirtProvider = "None"; break;
5405 case ParavirtProvider_Default: pcszParavirtProvider = "Default"; break;
5406 case ParavirtProvider_Legacy: pcszParavirtProvider = "Legacy"; break;
5407 case ParavirtProvider_Minimal: pcszParavirtProvider = "Minimal"; break;
5408 case ParavirtProvider_HyperV: pcszParavirtProvider = "HyperV"; break;
5409 case ParavirtProvider_KVM: pcszParavirtProvider = "KVM"; break;
5410 default: Assert(false); pcszParavirtProvider = "None"; break;
5411 }
5412
5413 xml::ElementNode *pelmParavirt = pelmHardware->createChild("Paravirt");
5414 pelmParavirt->setAttribute("provider", pcszParavirtProvider);
5415
5416 if ( m->sv >= SettingsVersion_v1_16
5417 && hw.strParavirtDebug.isNotEmpty())
5418 pelmParavirt->setAttribute("debug", hw.strParavirtDebug);
5419 }
5420
5421 if (!hw.areBootOrderDefaultSettings())
5422 {
5423 xml::ElementNode *pelmBoot = pelmHardware->createChild("Boot");
5424 for (BootOrderMap::const_iterator it = hw.mapBootOrder.begin();
5425 it != hw.mapBootOrder.end();
5426 ++it)
5427 {
5428 uint32_t i = it->first;
5429 DeviceType_T type = it->second;
5430 const char *pcszDevice;
5431
5432 switch (type)
5433 {
5434 case DeviceType_Floppy: pcszDevice = "Floppy"; break;
5435 case DeviceType_DVD: pcszDevice = "DVD"; break;
5436 case DeviceType_HardDisk: pcszDevice = "HardDisk"; break;
5437 case DeviceType_Network: pcszDevice = "Network"; break;
5438 default: /*case DeviceType_Null:*/ pcszDevice = "None"; break;
5439 }
5440
5441 xml::ElementNode *pelmOrder = pelmBoot->createChild("Order");
5442 pelmOrder->setAttribute("position",
5443 i + 1); // XML is 1-based but internal data is 0-based
5444 pelmOrder->setAttribute("device", pcszDevice);
5445 }
5446 }
5447
5448 if (!hw.areDisplayDefaultSettings())
5449 {
5450 xml::ElementNode *pelmDisplay = pelmHardware->createChild("Display");
5451 if (hw.graphicsControllerType != GraphicsControllerType_VBoxVGA)
5452 {
5453 const char *pcszGraphics;
5454 switch (hw.graphicsControllerType)
5455 {
5456 case GraphicsControllerType_VBoxVGA: pcszGraphics = "VBoxVGA"; break;
5457 case GraphicsControllerType_VMSVGA: pcszGraphics = "VMSVGA"; break;
5458 default: /*case GraphicsControllerType_Null:*/ pcszGraphics = "None"; break;
5459 }
5460 pelmDisplay->setAttribute("controller", pcszGraphics);
5461 }
5462 if (hw.ulVRAMSizeMB != 8)
5463 pelmDisplay->setAttribute("VRAMSize", hw.ulVRAMSizeMB);
5464 if (hw.cMonitors > 1)
5465 pelmDisplay->setAttribute("monitorCount", hw.cMonitors);
5466 if (hw.fAccelerate3D)
5467 pelmDisplay->setAttribute("accelerate3D", hw.fAccelerate3D);
5468
5469 if (m->sv >= SettingsVersion_v1_8)
5470 {
5471 if (hw.fAccelerate2DVideo)
5472 pelmDisplay->setAttribute("accelerate2DVideo", hw.fAccelerate2DVideo);
5473 }
5474 }
5475
5476 if (m->sv >= SettingsVersion_v1_14 && !hw.areVideoCaptureDefaultSettings())
5477 {
5478 xml::ElementNode *pelmVideoCapture = pelmHardware->createChild("VideoCapture");
5479 if (hw.fVideoCaptureEnabled)
5480 pelmVideoCapture->setAttribute("enabled", hw.fVideoCaptureEnabled);
5481 if (hw.u64VideoCaptureScreens != UINT64_C(0xffffffffffffffff))
5482 pelmVideoCapture->setAttribute("screens", hw.u64VideoCaptureScreens);
5483 if (!hw.strVideoCaptureFile.isEmpty())
5484 pelmVideoCapture->setAttributePath("file", hw.strVideoCaptureFile);
5485 if (hw.ulVideoCaptureHorzRes != 1024 || hw.ulVideoCaptureVertRes != 768)
5486 {
5487 pelmVideoCapture->setAttribute("horzRes", hw.ulVideoCaptureHorzRes);
5488 pelmVideoCapture->setAttribute("vertRes", hw.ulVideoCaptureVertRes);
5489 }
5490 if (hw.ulVideoCaptureRate != 512)
5491 pelmVideoCapture->setAttribute("rate", hw.ulVideoCaptureRate);
5492 if (hw.ulVideoCaptureFPS)
5493 pelmVideoCapture->setAttribute("fps", hw.ulVideoCaptureFPS);
5494 if (hw.ulVideoCaptureMaxTime)
5495 pelmVideoCapture->setAttribute("maxTime", hw.ulVideoCaptureMaxTime);
5496 if (hw.ulVideoCaptureMaxSize)
5497 pelmVideoCapture->setAttribute("maxSize", hw.ulVideoCaptureMaxSize);
5498 }
5499
5500 if (!hw.vrdeSettings.areDefaultSettings(m->sv))
5501 {
5502 xml::ElementNode *pelmVRDE = pelmHardware->createChild("RemoteDisplay");
5503 if (m->sv < SettingsVersion_v1_16 ? !hw.vrdeSettings.fEnabled : hw.vrdeSettings.fEnabled)
5504 pelmVRDE->setAttribute("enabled", hw.vrdeSettings.fEnabled);
5505 if (m->sv < SettingsVersion_v1_11)
5506 {
5507 /* In VBox 4.0 these attributes are replaced with "Properties". */
5508 Utf8Str strPort;
5509 StringsMap::const_iterator it = hw.vrdeSettings.mapProperties.find("TCP/Ports");
5510 if (it != hw.vrdeSettings.mapProperties.end())
5511 strPort = it->second;
5512 if (!strPort.length())
5513 strPort = "3389";
5514 pelmVRDE->setAttribute("port", strPort);
5515
5516 Utf8Str strAddress;
5517 it = hw.vrdeSettings.mapProperties.find("TCP/Address");
5518 if (it != hw.vrdeSettings.mapProperties.end())
5519 strAddress = it->second;
5520 if (strAddress.length())
5521 pelmVRDE->setAttribute("netAddress", strAddress);
5522 }
5523 if (hw.vrdeSettings.authType != AuthType_Null)
5524 {
5525 const char *pcszAuthType;
5526 switch (hw.vrdeSettings.authType)
5527 {
5528 case AuthType_Guest: pcszAuthType = "Guest"; break;
5529 case AuthType_External: pcszAuthType = "External"; break;
5530 default: /*case AuthType_Null:*/ pcszAuthType = "Null"; break;
5531 }
5532 pelmVRDE->setAttribute("authType", pcszAuthType);
5533 }
5534
5535 if (hw.vrdeSettings.ulAuthTimeout != 0 && hw.vrdeSettings.ulAuthTimeout != 5000)
5536 pelmVRDE->setAttribute("authTimeout", hw.vrdeSettings.ulAuthTimeout);
5537 if (hw.vrdeSettings.fAllowMultiConnection)
5538 pelmVRDE->setAttribute("allowMultiConnection", hw.vrdeSettings.fAllowMultiConnection);
5539 if (hw.vrdeSettings.fReuseSingleConnection)
5540 pelmVRDE->setAttribute("reuseSingleConnection", hw.vrdeSettings.fReuseSingleConnection);
5541
5542 if (m->sv == SettingsVersion_v1_10)
5543 {
5544 xml::ElementNode *pelmVideoChannel = pelmVRDE->createChild("VideoChannel");
5545
5546 /* In 4.0 videochannel settings were replaced with properties, so look at properties. */
5547 Utf8Str str;
5548 StringsMap::const_iterator it = hw.vrdeSettings.mapProperties.find("VideoChannel/Enabled");
5549 if (it != hw.vrdeSettings.mapProperties.end())
5550 str = it->second;
5551 bool fVideoChannel = RTStrICmp(str.c_str(), "true") == 0
5552 || RTStrCmp(str.c_str(), "1") == 0;
5553 pelmVideoChannel->setAttribute("enabled", fVideoChannel);
5554
5555 it = hw.vrdeSettings.mapProperties.find("VideoChannel/Quality");
5556 if (it != hw.vrdeSettings.mapProperties.end())
5557 str = it->second;
5558 uint32_t ulVideoChannelQuality = RTStrToUInt32(str.c_str()); /* This returns 0 on invalid string which is ok. */
5559 if (ulVideoChannelQuality == 0)
5560 ulVideoChannelQuality = 75;
5561 else
5562 ulVideoChannelQuality = RT_CLAMP(ulVideoChannelQuality, 10, 100);
5563 pelmVideoChannel->setAttribute("quality", ulVideoChannelQuality);
5564 }
5565 if (m->sv >= SettingsVersion_v1_11)
5566 {
5567 if (hw.vrdeSettings.strAuthLibrary.length())
5568 pelmVRDE->setAttribute("authLibrary", hw.vrdeSettings.strAuthLibrary);
5569 if (hw.vrdeSettings.strVrdeExtPack.isNotEmpty())
5570 pelmVRDE->setAttribute("VRDEExtPack", hw.vrdeSettings.strVrdeExtPack);
5571 if (hw.vrdeSettings.mapProperties.size() > 0)
5572 {
5573 xml::ElementNode *pelmProperties = pelmVRDE->createChild("VRDEProperties");
5574 for (StringsMap::const_iterator it = hw.vrdeSettings.mapProperties.begin();
5575 it != hw.vrdeSettings.mapProperties.end();
5576 ++it)
5577 {
5578 const Utf8Str &strName = it->first;
5579 const Utf8Str &strValue = it->second;
5580 xml::ElementNode *pelm = pelmProperties->createChild("Property");
5581 pelm->setAttribute("name", strName);
5582 pelm->setAttribute("value", strValue);
5583 }
5584 }
5585 }
5586 }
5587
5588 if (!hw.biosSettings.areDefaultSettings())
5589 {
5590 xml::ElementNode *pelmBIOS = pelmHardware->createChild("BIOS");
5591 if (!hw.biosSettings.fACPIEnabled)
5592 pelmBIOS->createChild("ACPI")->setAttribute("enabled", hw.biosSettings.fACPIEnabled);
5593 if (hw.biosSettings.fIOAPICEnabled)
5594 pelmBIOS->createChild("IOAPIC")->setAttribute("enabled", hw.biosSettings.fIOAPICEnabled);
5595 if (hw.biosSettings.apicMode != APICMode_APIC)
5596 {
5597 const char *pcszAPIC;
5598 switch (hw.biosSettings.apicMode)
5599 {
5600 case APICMode_Disabled:
5601 pcszAPIC = "Disabled";
5602 break;
5603 case APICMode_APIC:
5604 default:
5605 pcszAPIC = "APIC";
5606 break;
5607 case APICMode_X2APIC:
5608 pcszAPIC = "X2APIC";
5609 break;
5610 }
5611 pelmBIOS->createChild("APIC")->setAttribute("mode", pcszAPIC);
5612 }
5613
5614 if ( !hw.biosSettings.fLogoFadeIn
5615 || !hw.biosSettings.fLogoFadeOut
5616 || hw.biosSettings.ulLogoDisplayTime
5617 || !hw.biosSettings.strLogoImagePath.isEmpty())
5618 {
5619 xml::ElementNode *pelmLogo = pelmBIOS->createChild("Logo");
5620 pelmLogo->setAttribute("fadeIn", hw.biosSettings.fLogoFadeIn);
5621 pelmLogo->setAttribute("fadeOut", hw.biosSettings.fLogoFadeOut);
5622 pelmLogo->setAttribute("displayTime", hw.biosSettings.ulLogoDisplayTime);
5623 if (!hw.biosSettings.strLogoImagePath.isEmpty())
5624 pelmLogo->setAttribute("imagePath", hw.biosSettings.strLogoImagePath);
5625 }
5626
5627 if (hw.biosSettings.biosBootMenuMode != BIOSBootMenuMode_MessageAndMenu)
5628 {
5629 const char *pcszBootMenu;
5630 switch (hw.biosSettings.biosBootMenuMode)
5631 {
5632 case BIOSBootMenuMode_Disabled: pcszBootMenu = "Disabled"; break;
5633 case BIOSBootMenuMode_MenuOnly: pcszBootMenu = "MenuOnly"; break;
5634 default: /*BIOSBootMenuMode_MessageAndMenu*/ pcszBootMenu = "MessageAndMenu"; break;
5635 }
5636 pelmBIOS->createChild("BootMenu")->setAttribute("mode", pcszBootMenu);
5637 }
5638 if (hw.biosSettings.llTimeOffset)
5639 pelmBIOS->createChild("TimeOffset")->setAttribute("value", hw.biosSettings.llTimeOffset);
5640 if (hw.biosSettings.fPXEDebugEnabled)
5641 pelmBIOS->createChild("PXEDebug")->setAttribute("enabled", hw.biosSettings.fPXEDebugEnabled);
5642 }
5643
5644 if (m->sv < SettingsVersion_v1_9)
5645 {
5646 // settings formats before 1.9 had separate DVDDrive and FloppyDrive items under Hardware;
5647 // run thru the storage controllers to see if we have a DVD or floppy drives
5648 size_t cDVDs = 0;
5649 size_t cFloppies = 0;
5650
5651 xml::ElementNode *pelmDVD = pelmHardware->createChild("DVDDrive");
5652 xml::ElementNode *pelmFloppy = pelmHardware->createChild("FloppyDrive");
5653
5654 for (StorageControllersList::const_iterator it = hw.storage.llStorageControllers.begin();
5655 it != hw.storage.llStorageControllers.end();
5656 ++it)
5657 {
5658 const StorageController &sctl = *it;
5659 // in old settings format, the DVD drive could only have been under the IDE controller
5660 if (sctl.storageBus == StorageBus_IDE)
5661 {
5662 for (AttachedDevicesList::const_iterator it2 = sctl.llAttachedDevices.begin();
5663 it2 != sctl.llAttachedDevices.end();
5664 ++it2)
5665 {
5666 const AttachedDevice &att = *it2;
5667 if (att.deviceType == DeviceType_DVD)
5668 {
5669 if (cDVDs > 0)
5670 throw ConfigFileError(this, NULL, N_("Internal error: cannot save more than one DVD drive with old settings format"));
5671
5672 ++cDVDs;
5673
5674 pelmDVD->setAttribute("passthrough", att.fPassThrough);
5675 if (att.fTempEject)
5676 pelmDVD->setAttribute("tempeject", att.fTempEject);
5677
5678 if (!att.uuid.isZero() && att.uuid.isValid())
5679 pelmDVD->createChild("Image")->setAttribute("uuid", att.uuid.toStringCurly());
5680 else if (att.strHostDriveSrc.length())
5681 pelmDVD->createChild("HostDrive")->setAttribute("src", att.strHostDriveSrc);
5682 }
5683 }
5684 }
5685 else if (sctl.storageBus == StorageBus_Floppy)
5686 {
5687 size_t cFloppiesHere = sctl.llAttachedDevices.size();
5688 if (cFloppiesHere > 1)
5689 throw ConfigFileError(this, NULL, N_("Internal error: floppy controller cannot have more than one device attachment"));
5690 if (cFloppiesHere)
5691 {
5692 const AttachedDevice &att = sctl.llAttachedDevices.front();
5693 pelmFloppy->setAttribute("enabled", true);
5694
5695 if (!att.uuid.isZero() && att.uuid.isValid())
5696 pelmFloppy->createChild("Image")->setAttribute("uuid", att.uuid.toStringCurly());
5697 else if (att.strHostDriveSrc.length())
5698 pelmFloppy->createChild("HostDrive")->setAttribute("src", att.strHostDriveSrc);
5699 }
5700
5701 cFloppies += cFloppiesHere;
5702 }
5703 }
5704
5705 if (cFloppies == 0)
5706 pelmFloppy->setAttribute("enabled", false);
5707 else if (cFloppies > 1)
5708 throw ConfigFileError(this, NULL, N_("Internal error: cannot save more than one floppy drive with old settings format"));
5709 }
5710
5711 if (m->sv < SettingsVersion_v1_14)
5712 {
5713 bool fOhciEnabled = false;
5714 bool fEhciEnabled = false;
5715 xml::ElementNode *pelmUSB = pelmHardware->createChild("USBController");
5716
5717 for (USBControllerList::const_iterator it = hw.usbSettings.llUSBControllers.begin();
5718 it != hw.usbSettings.llUSBControllers.end();
5719 ++it)
5720 {
5721 const USBController &ctrl = *it;
5722
5723 switch (ctrl.enmType)
5724 {
5725 case USBControllerType_OHCI:
5726 fOhciEnabled = true;
5727 break;
5728 case USBControllerType_EHCI:
5729 fEhciEnabled = true;
5730 break;
5731 default:
5732 AssertMsgFailed(("Unknown USB controller type %d\n", ctrl.enmType));
5733 }
5734 }
5735
5736 pelmUSB->setAttribute("enabled", fOhciEnabled);
5737 pelmUSB->setAttribute("enabledEhci", fEhciEnabled);
5738
5739 buildUSBDeviceFilters(*pelmUSB, hw.usbSettings.llDeviceFilters, false /* fHostMode */);
5740 }
5741 else
5742 {
5743 if ( hw.usbSettings.llUSBControllers.size()
5744 || hw.usbSettings.llDeviceFilters.size())
5745 {
5746 xml::ElementNode *pelmUSB = pelmHardware->createChild("USB");
5747 if (hw.usbSettings.llUSBControllers.size())
5748 {
5749 xml::ElementNode *pelmCtrls = pelmUSB->createChild("Controllers");
5750
5751 for (USBControllerList::const_iterator it = hw.usbSettings.llUSBControllers.begin();
5752 it != hw.usbSettings.llUSBControllers.end();
5753 ++it)
5754 {
5755 const USBController &ctrl = *it;
5756 com::Utf8Str strType;
5757 xml::ElementNode *pelmCtrl = pelmCtrls->createChild("Controller");
5758
5759 switch (ctrl.enmType)
5760 {
5761 case USBControllerType_OHCI:
5762 strType = "OHCI";
5763 break;
5764 case USBControllerType_EHCI:
5765 strType = "EHCI";
5766 break;
5767 case USBControllerType_XHCI:
5768 strType = "XHCI";
5769 break;
5770 default:
5771 AssertMsgFailed(("Unknown USB controller type %d\n", ctrl.enmType));
5772 }
5773
5774 pelmCtrl->setAttribute("name", ctrl.strName);
5775 pelmCtrl->setAttribute("type", strType);
5776 }
5777 }
5778
5779 if (hw.usbSettings.llDeviceFilters.size())
5780 {
5781 xml::ElementNode *pelmFilters = pelmUSB->createChild("DeviceFilters");
5782 buildUSBDeviceFilters(*pelmFilters, hw.usbSettings.llDeviceFilters, false /* fHostMode */);
5783 }
5784 }
5785 }
5786
5787 if ( hw.llNetworkAdapters.size()
5788 && !hw.areAllNetworkAdaptersDefaultSettings(m->sv))
5789 {
5790 xml::ElementNode *pelmNetwork = pelmHardware->createChild("Network");
5791 for (NetworkAdaptersList::const_iterator it = hw.llNetworkAdapters.begin();
5792 it != hw.llNetworkAdapters.end();
5793 ++it)
5794 {
5795 const NetworkAdapter &nic = *it;
5796
5797 if (!nic.areDefaultSettings(m->sv))
5798 {
5799 xml::ElementNode *pelmAdapter = pelmNetwork->createChild("Adapter");
5800 pelmAdapter->setAttribute("slot", nic.ulSlot);
5801 if (nic.fEnabled)
5802 pelmAdapter->setAttribute("enabled", nic.fEnabled);
5803 if (!nic.strMACAddress.isEmpty())
5804 pelmAdapter->setAttribute("MACAddress", nic.strMACAddress);
5805 if ( (m->sv >= SettingsVersion_v1_16 && !nic.fCableConnected)
5806 || (m->sv < SettingsVersion_v1_16 && nic.fCableConnected))
5807 pelmAdapter->setAttribute("cable", nic.fCableConnected);
5808 if (nic.ulLineSpeed)
5809 pelmAdapter->setAttribute("speed", nic.ulLineSpeed);
5810 if (nic.ulBootPriority != 0)
5811 pelmAdapter->setAttribute("bootPriority", nic.ulBootPriority);
5812 if (nic.fTraceEnabled)
5813 {
5814 pelmAdapter->setAttribute("trace", nic.fTraceEnabled);
5815 pelmAdapter->setAttribute("tracefile", nic.strTraceFile);
5816 }
5817 if (nic.strBandwidthGroup.isNotEmpty())
5818 pelmAdapter->setAttribute("bandwidthGroup", nic.strBandwidthGroup);
5819
5820 const char *pszPolicy;
5821 switch (nic.enmPromiscModePolicy)
5822 {
5823 case NetworkAdapterPromiscModePolicy_Deny: pszPolicy = NULL; break;
5824 case NetworkAdapterPromiscModePolicy_AllowNetwork: pszPolicy = "AllowNetwork"; break;
5825 case NetworkAdapterPromiscModePolicy_AllowAll: pszPolicy = "AllowAll"; break;
5826 default: pszPolicy = NULL; AssertFailed(); break;
5827 }
5828 if (pszPolicy)
5829 pelmAdapter->setAttribute("promiscuousModePolicy", pszPolicy);
5830
5831 if ( (m->sv >= SettingsVersion_v1_16 && nic.type != NetworkAdapterType_Am79C973)
5832 || (m->sv < SettingsVersion_v1_16 && nic.type != NetworkAdapterType_Am79C970A))
5833 {
5834 const char *pcszType;
5835 switch (nic.type)
5836 {
5837 case NetworkAdapterType_Am79C973: pcszType = "Am79C973"; break;
5838 case NetworkAdapterType_I82540EM: pcszType = "82540EM"; break;
5839 case NetworkAdapterType_I82543GC: pcszType = "82543GC"; break;
5840 case NetworkAdapterType_I82545EM: pcszType = "82545EM"; break;
5841 case NetworkAdapterType_Virtio: pcszType = "virtio"; break;
5842 default: /*case NetworkAdapterType_Am79C970A:*/ pcszType = "Am79C970A"; break;
5843 }
5844 pelmAdapter->setAttribute("type", pcszType);
5845 }
5846
5847 xml::ElementNode *pelmNAT;
5848 if (m->sv < SettingsVersion_v1_10)
5849 {
5850 switch (nic.mode)
5851 {
5852 case NetworkAttachmentType_NAT:
5853 pelmNAT = pelmAdapter->createChild("NAT");
5854 if (nic.nat.strNetwork.length())
5855 pelmNAT->setAttribute("network", nic.nat.strNetwork);
5856 break;
5857
5858 case NetworkAttachmentType_Bridged:
5859 pelmAdapter->createChild("BridgedInterface")->setAttribute("name", nic.strBridgedName);
5860 break;
5861
5862 case NetworkAttachmentType_Internal:
5863 pelmAdapter->createChild("InternalNetwork")->setAttribute("name", nic.strInternalNetworkName);
5864 break;
5865
5866 case NetworkAttachmentType_HostOnly:
5867 pelmAdapter->createChild("HostOnlyInterface")->setAttribute("name", nic.strHostOnlyName);
5868 break;
5869
5870 default: /*case NetworkAttachmentType_Null:*/
5871 break;
5872 }
5873 }
5874 else
5875 {
5876 /* m->sv >= SettingsVersion_v1_10 */
5877 if (!nic.areDisabledDefaultSettings())
5878 {
5879 xml::ElementNode *pelmDisabledNode = pelmAdapter->createChild("DisabledModes");
5880 if (nic.mode != NetworkAttachmentType_NAT)
5881 buildNetworkXML(NetworkAttachmentType_NAT, false, *pelmDisabledNode, nic);
5882 if (nic.mode != NetworkAttachmentType_Bridged)
5883 buildNetworkXML(NetworkAttachmentType_Bridged, false, *pelmDisabledNode, nic);
5884 if (nic.mode != NetworkAttachmentType_Internal)
5885 buildNetworkXML(NetworkAttachmentType_Internal, false, *pelmDisabledNode, nic);
5886 if (nic.mode != NetworkAttachmentType_HostOnly)
5887 buildNetworkXML(NetworkAttachmentType_HostOnly, false, *pelmDisabledNode, nic);
5888 if (nic.mode != NetworkAttachmentType_Generic)
5889 buildNetworkXML(NetworkAttachmentType_Generic, false, *pelmDisabledNode, nic);
5890 if (nic.mode != NetworkAttachmentType_NATNetwork)
5891 buildNetworkXML(NetworkAttachmentType_NATNetwork, false, *pelmDisabledNode, nic);
5892 }
5893 buildNetworkXML(nic.mode, true, *pelmAdapter, nic);
5894 }
5895 }
5896 }
5897 }
5898
5899 if (hw.llSerialPorts.size())
5900 {
5901 xml::ElementNode *pelmPorts = pelmHardware->createChild("UART");
5902 for (SerialPortsList::const_iterator it = hw.llSerialPorts.begin();
5903 it != hw.llSerialPorts.end();
5904 ++it)
5905 {
5906 const SerialPort &port = *it;
5907 xml::ElementNode *pelmPort = pelmPorts->createChild("Port");
5908 pelmPort->setAttribute("slot", port.ulSlot);
5909 pelmPort->setAttribute("enabled", port.fEnabled);
5910 pelmPort->setAttributeHex("IOBase", port.ulIOBase);
5911 pelmPort->setAttribute("IRQ", port.ulIRQ);
5912
5913 const char *pcszHostMode;
5914 switch (port.portMode)
5915 {
5916 case PortMode_HostPipe: pcszHostMode = "HostPipe"; break;
5917 case PortMode_HostDevice: pcszHostMode = "HostDevice"; break;
5918 case PortMode_TCP: pcszHostMode = "TCP"; break;
5919 case PortMode_RawFile: pcszHostMode = "RawFile"; break;
5920 default: /*case PortMode_Disconnected:*/ pcszHostMode = "Disconnected"; break;
5921 }
5922 switch (port.portMode)
5923 {
5924 case PortMode_TCP:
5925 case PortMode_HostPipe:
5926 pelmPort->setAttribute("server", port.fServer);
5927 /* fall thru */
5928 case PortMode_HostDevice:
5929 case PortMode_RawFile:
5930 pelmPort->setAttribute("path", port.strPath);
5931 break;
5932
5933 default:
5934 break;
5935 }
5936 pelmPort->setAttribute("hostMode", pcszHostMode);
5937 }
5938 }
5939
5940 if (hw.llParallelPorts.size())
5941 {
5942 xml::ElementNode *pelmPorts = pelmHardware->createChild("LPT");
5943 for (ParallelPortsList::const_iterator it = hw.llParallelPorts.begin();
5944 it != hw.llParallelPorts.end();
5945 ++it)
5946 {
5947 const ParallelPort &port = *it;
5948 xml::ElementNode *pelmPort = pelmPorts->createChild("Port");
5949 pelmPort->setAttribute("slot", port.ulSlot);
5950 pelmPort->setAttribute("enabled", port.fEnabled);
5951 pelmPort->setAttributeHex("IOBase", port.ulIOBase);
5952 pelmPort->setAttribute("IRQ", port.ulIRQ);
5953 if (port.strPath.length())
5954 pelmPort->setAttribute("path", port.strPath);
5955 }
5956 }
5957
5958 /* Always write the AudioAdapter config, intentionally not checking if
5959 * the settings are at the default, because that would be problematic
5960 * for the configured host driver type, which would automatically change
5961 * if the default host driver is detected differently. */
5962 {
5963 xml::ElementNode *pelmAudio = pelmHardware->createChild("AudioAdapter");
5964
5965 const char *pcszController;
5966 switch (hw.audioAdapter.controllerType)
5967 {
5968 case AudioControllerType_SB16:
5969 pcszController = "SB16";
5970 break;
5971 case AudioControllerType_HDA:
5972 if (m->sv >= SettingsVersion_v1_11)
5973 {
5974 pcszController = "HDA";
5975 break;
5976 }
5977 /* fall through */
5978 case AudioControllerType_AC97:
5979 default:
5980 pcszController = NULL;
5981 break;
5982 }
5983 if (pcszController)
5984 pelmAudio->setAttribute("controller", pcszController);
5985
5986 const char *pcszCodec;
5987 switch (hw.audioAdapter.codecType)
5988 {
5989 /* Only write out the setting for non-default AC'97 codec
5990 * and leave the rest alone.
5991 */
5992#if 0
5993 case AudioCodecType_SB16:
5994 pcszCodec = "SB16";
5995 break;
5996 case AudioCodecType_STAC9221:
5997 pcszCodec = "STAC9221";
5998 break;
5999 case AudioCodecType_STAC9700:
6000 pcszCodec = "STAC9700";
6001 break;
6002#endif
6003 case AudioCodecType_AD1980:
6004 pcszCodec = "AD1980";
6005 break;
6006 default:
6007 /* Don't write out anything if unknown. */
6008 pcszCodec = NULL;
6009 }
6010 if (pcszCodec)
6011 pelmAudio->setAttribute("codec", pcszCodec);
6012
6013 const char *pcszDriver;
6014 switch (hw.audioAdapter.driverType)
6015 {
6016 case AudioDriverType_WinMM: pcszDriver = "WinMM"; break;
6017 case AudioDriverType_DirectSound: pcszDriver = "DirectSound"; break;
6018 case AudioDriverType_SolAudio: pcszDriver = "SolAudio"; break;
6019 case AudioDriverType_ALSA: pcszDriver = "ALSA"; break;
6020 case AudioDriverType_Pulse: pcszDriver = "Pulse"; break;
6021 case AudioDriverType_OSS: pcszDriver = "OSS"; break;
6022 case AudioDriverType_CoreAudio: pcszDriver = "CoreAudio"; break;
6023 case AudioDriverType_MMPM: pcszDriver = "MMPM"; break;
6024 default: /*case AudioDriverType_Null:*/ pcszDriver = "Null"; break;
6025 }
6026 /* Deliberately have the audio driver explicitly in the config file,
6027 * otherwise an unwritten default driver triggers auto-detection. */
6028 pelmAudio->setAttribute("driver", pcszDriver);
6029
6030 if (hw.audioAdapter.fEnabled || m->sv < SettingsVersion_v1_16)
6031 pelmAudio->setAttribute("enabled", hw.audioAdapter.fEnabled);
6032
6033 if (m->sv >= SettingsVersion_v1_15 && hw.audioAdapter.properties.size() > 0)
6034 {
6035 for (StringsMap::const_iterator it = hw.audioAdapter.properties.begin();
6036 it != hw.audioAdapter.properties.end();
6037 ++it)
6038 {
6039 const Utf8Str &strName = it->first;
6040 const Utf8Str &strValue = it->second;
6041 xml::ElementNode *pelm = pelmAudio->createChild("Property");
6042 pelm->setAttribute("name", strName);
6043 pelm->setAttribute("value", strValue);
6044 }
6045 }
6046 }
6047
6048 if (m->sv >= SettingsVersion_v1_10 && machineUserData.fRTCUseUTC)
6049 {
6050 xml::ElementNode *pelmRTC = pelmHardware->createChild("RTC");
6051 pelmRTC->setAttribute("localOrUTC", machineUserData.fRTCUseUTC ? "UTC" : "local");
6052 }
6053
6054 if (hw.llSharedFolders.size())
6055 {
6056 xml::ElementNode *pelmSharedFolders = pelmHardware->createChild("SharedFolders");
6057 for (SharedFoldersList::const_iterator it = hw.llSharedFolders.begin();
6058 it != hw.llSharedFolders.end();
6059 ++it)
6060 {
6061 const SharedFolder &sf = *it;
6062 xml::ElementNode *pelmThis = pelmSharedFolders->createChild("SharedFolder");
6063 pelmThis->setAttribute("name", sf.strName);
6064 pelmThis->setAttribute("hostPath", sf.strHostPath);
6065 pelmThis->setAttribute("writable", sf.fWritable);
6066 pelmThis->setAttribute("autoMount", sf.fAutoMount);
6067 }
6068 }
6069
6070 if (hw.clipboardMode != ClipboardMode_Disabled)
6071 {
6072 xml::ElementNode *pelmClip = pelmHardware->createChild("Clipboard");
6073 const char *pcszClip;
6074 switch (hw.clipboardMode)
6075 {
6076 default: /*case ClipboardMode_Disabled:*/ pcszClip = "Disabled"; break;
6077 case ClipboardMode_HostToGuest: pcszClip = "HostToGuest"; break;
6078 case ClipboardMode_GuestToHost: pcszClip = "GuestToHost"; break;
6079 case ClipboardMode_Bidirectional: pcszClip = "Bidirectional"; break;
6080 }
6081 pelmClip->setAttribute("mode", pcszClip);
6082 }
6083
6084 if (hw.dndMode != DnDMode_Disabled)
6085 {
6086 xml::ElementNode *pelmDragAndDrop = pelmHardware->createChild("DragAndDrop");
6087 const char *pcszDragAndDrop;
6088 switch (hw.dndMode)
6089 {
6090 default: /*case DnDMode_Disabled:*/ pcszDragAndDrop = "Disabled"; break;
6091 case DnDMode_HostToGuest: pcszDragAndDrop = "HostToGuest"; break;
6092 case DnDMode_GuestToHost: pcszDragAndDrop = "GuestToHost"; break;
6093 case DnDMode_Bidirectional: pcszDragAndDrop = "Bidirectional"; break;
6094 }
6095 pelmDragAndDrop->setAttribute("mode", pcszDragAndDrop);
6096 }
6097
6098 if ( m->sv >= SettingsVersion_v1_10
6099 && !hw.ioSettings.areDefaultSettings())
6100 {
6101 xml::ElementNode *pelmIO = pelmHardware->createChild("IO");
6102 xml::ElementNode *pelmIOCache;
6103
6104 if (!hw.ioSettings.areDefaultSettings())
6105 {
6106 pelmIOCache = pelmIO->createChild("IoCache");
6107 if (!hw.ioSettings.fIOCacheEnabled)
6108 pelmIOCache->setAttribute("enabled", hw.ioSettings.fIOCacheEnabled);
6109 if (hw.ioSettings.ulIOCacheSize != 5)
6110 pelmIOCache->setAttribute("size", hw.ioSettings.ulIOCacheSize);
6111 }
6112
6113 if ( m->sv >= SettingsVersion_v1_11
6114 && hw.ioSettings.llBandwidthGroups.size())
6115 {
6116 xml::ElementNode *pelmBandwidthGroups = pelmIO->createChild("BandwidthGroups");
6117 for (BandwidthGroupList::const_iterator it = hw.ioSettings.llBandwidthGroups.begin();
6118 it != hw.ioSettings.llBandwidthGroups.end();
6119 ++it)
6120 {
6121 const BandwidthGroup &gr = *it;
6122 const char *pcszType;
6123 xml::ElementNode *pelmThis = pelmBandwidthGroups->createChild("BandwidthGroup");
6124 pelmThis->setAttribute("name", gr.strName);
6125 switch (gr.enmType)
6126 {
6127 case BandwidthGroupType_Network: pcszType = "Network"; break;
6128 default: /* BandwidthGrouptype_Disk */ pcszType = "Disk"; break;
6129 }
6130 pelmThis->setAttribute("type", pcszType);
6131 if (m->sv >= SettingsVersion_v1_13)
6132 pelmThis->setAttribute("maxBytesPerSec", gr.cMaxBytesPerSec);
6133 else
6134 pelmThis->setAttribute("maxMbPerSec", gr.cMaxBytesPerSec / _1M);
6135 }
6136 }
6137 }
6138
6139 if ( m->sv >= SettingsVersion_v1_12
6140 && hw.pciAttachments.size())
6141 {
6142 xml::ElementNode *pelmPCI = pelmHardware->createChild("HostPci");
6143 xml::ElementNode *pelmPCIDevices = pelmPCI->createChild("Devices");
6144
6145 for (HostPCIDeviceAttachmentList::const_iterator it = hw.pciAttachments.begin();
6146 it != hw.pciAttachments.end();
6147 ++it)
6148 {
6149 const HostPCIDeviceAttachment &hpda = *it;
6150
6151 xml::ElementNode *pelmThis = pelmPCIDevices->createChild("Device");
6152
6153 pelmThis->setAttribute("host", hpda.uHostAddress);
6154 pelmThis->setAttribute("guest", hpda.uGuestAddress);
6155 pelmThis->setAttribute("name", hpda.strDeviceName);
6156 }
6157 }
6158
6159 if ( m->sv >= SettingsVersion_v1_12
6160 && hw.fEmulatedUSBCardReader)
6161 {
6162 xml::ElementNode *pelmEmulatedUSB = pelmHardware->createChild("EmulatedUSB");
6163
6164 xml::ElementNode *pelmCardReader = pelmEmulatedUSB->createChild("CardReader");
6165 pelmCardReader->setAttribute("enabled", hw.fEmulatedUSBCardReader);
6166 }
6167
6168 if ( m->sv >= SettingsVersion_v1_14
6169 && !hw.strDefaultFrontend.isEmpty())
6170 {
6171 xml::ElementNode *pelmFrontend = pelmHardware->createChild("Frontend");
6172 xml::ElementNode *pelmDefault = pelmFrontend->createChild("Default");
6173 pelmDefault->setAttribute("type", hw.strDefaultFrontend);
6174 }
6175
6176 if (hw.ulMemoryBalloonSize)
6177 {
6178 xml::ElementNode *pelmGuest = pelmHardware->createChild("Guest");
6179 pelmGuest->setAttribute("memoryBalloonSize", hw.ulMemoryBalloonSize);
6180 }
6181
6182 if (hw.llGuestProperties.size())
6183 {
6184 xml::ElementNode *pelmGuestProps = pelmHardware->createChild("GuestProperties");
6185 for (GuestPropertiesList::const_iterator it = hw.llGuestProperties.begin();
6186 it != hw.llGuestProperties.end();
6187 ++it)
6188 {
6189 const GuestProperty &prop = *it;
6190 xml::ElementNode *pelmProp = pelmGuestProps->createChild("GuestProperty");
6191 pelmProp->setAttribute("name", prop.strName);
6192 pelmProp->setAttribute("value", prop.strValue);
6193 pelmProp->setAttribute("timestamp", prop.timestamp);
6194 pelmProp->setAttribute("flags", prop.strFlags);
6195 }
6196 }
6197
6198 /** @todo In the future (6.0?) place the storage controllers under \<Hardware\>, because
6199 * this is where it always should've been. What else than hardware are they? */
6200 xml::ElementNode &elmStorageParent = (m->sv > SettingsVersion_Future) ? *pelmHardware : elmParent;
6201 buildStorageControllersXML(elmStorageParent,
6202 hw.storage,
6203 !!(fl & BuildMachineXML_SkipRemovableMedia),
6204 pllElementsWithUuidAttributes);
6205}
6206
6207/**
6208 * Fill a \<Network\> node. Only relevant for XML version >= v1_10.
6209 * @param mode
6210 * @param fEnabled
6211 * @param elmParent
6212 * @param nic
6213 */
6214void MachineConfigFile::buildNetworkXML(NetworkAttachmentType_T mode,
6215 bool fEnabled,
6216 xml::ElementNode &elmParent,
6217 const NetworkAdapter &nic)
6218{
6219 switch (mode)
6220 {
6221 case NetworkAttachmentType_NAT:
6222 // For the currently active network attachment type we have to
6223 // generate the tag, otherwise the attachment type is lost.
6224 if (fEnabled || !nic.nat.areDefaultSettings())
6225 {
6226 xml::ElementNode *pelmNAT = elmParent.createChild("NAT");
6227
6228 if (!nic.nat.areDefaultSettings())
6229 {
6230 if (nic.nat.strNetwork.length())
6231 pelmNAT->setAttribute("network", nic.nat.strNetwork);
6232 if (nic.nat.strBindIP.length())
6233 pelmNAT->setAttribute("hostip", nic.nat.strBindIP);
6234 if (nic.nat.u32Mtu)
6235 pelmNAT->setAttribute("mtu", nic.nat.u32Mtu);
6236 if (nic.nat.u32SockRcv)
6237 pelmNAT->setAttribute("sockrcv", nic.nat.u32SockRcv);
6238 if (nic.nat.u32SockSnd)
6239 pelmNAT->setAttribute("socksnd", nic.nat.u32SockSnd);
6240 if (nic.nat.u32TcpRcv)
6241 pelmNAT->setAttribute("tcprcv", nic.nat.u32TcpRcv);
6242 if (nic.nat.u32TcpSnd)
6243 pelmNAT->setAttribute("tcpsnd", nic.nat.u32TcpSnd);
6244 if (!nic.nat.areDNSDefaultSettings())
6245 {
6246 xml::ElementNode *pelmDNS = pelmNAT->createChild("DNS");
6247 if (!nic.nat.fDNSPassDomain)
6248 pelmDNS->setAttribute("pass-domain", nic.nat.fDNSPassDomain);
6249 if (nic.nat.fDNSProxy)
6250 pelmDNS->setAttribute("use-proxy", nic.nat.fDNSProxy);
6251 if (nic.nat.fDNSUseHostResolver)
6252 pelmDNS->setAttribute("use-host-resolver", nic.nat.fDNSUseHostResolver);
6253 }
6254
6255 if (!nic.nat.areAliasDefaultSettings())
6256 {
6257 xml::ElementNode *pelmAlias = pelmNAT->createChild("Alias");
6258 if (nic.nat.fAliasLog)
6259 pelmAlias->setAttribute("logging", nic.nat.fAliasLog);
6260 if (nic.nat.fAliasProxyOnly)
6261 pelmAlias->setAttribute("proxy-only", nic.nat.fAliasProxyOnly);
6262 if (nic.nat.fAliasUseSamePorts)
6263 pelmAlias->setAttribute("use-same-ports", nic.nat.fAliasUseSamePorts);
6264 }
6265
6266 if (!nic.nat.areTFTPDefaultSettings())
6267 {
6268 xml::ElementNode *pelmTFTP;
6269 pelmTFTP = pelmNAT->createChild("TFTP");
6270 if (nic.nat.strTFTPPrefix.length())
6271 pelmTFTP->setAttribute("prefix", nic.nat.strTFTPPrefix);
6272 if (nic.nat.strTFTPBootFile.length())
6273 pelmTFTP->setAttribute("boot-file", nic.nat.strTFTPBootFile);
6274 if (nic.nat.strTFTPNextServer.length())
6275 pelmTFTP->setAttribute("next-server", nic.nat.strTFTPNextServer);
6276 }
6277 buildNATForwardRulesMap(*pelmNAT, nic.nat.mapRules);
6278 }
6279 }
6280 break;
6281
6282 case NetworkAttachmentType_Bridged:
6283 // For the currently active network attachment type we have to
6284 // generate the tag, otherwise the attachment type is lost.
6285 if (fEnabled || !nic.strBridgedName.isEmpty())
6286 {
6287 xml::ElementNode *pelmMode = elmParent.createChild("BridgedInterface");
6288 if (!nic.strBridgedName.isEmpty())
6289 pelmMode->setAttribute("name", nic.strBridgedName);
6290 }
6291 break;
6292
6293 case NetworkAttachmentType_Internal:
6294 // For the currently active network attachment type we have to
6295 // generate the tag, otherwise the attachment type is lost.
6296 if (fEnabled || !nic.strInternalNetworkName.isEmpty())
6297 {
6298 xml::ElementNode *pelmMode = elmParent.createChild("InternalNetwork");
6299 if (!nic.strInternalNetworkName.isEmpty())
6300 pelmMode->setAttribute("name", nic.strInternalNetworkName);
6301 }
6302 break;
6303
6304 case NetworkAttachmentType_HostOnly:
6305 // For the currently active network attachment type we have to
6306 // generate the tag, otherwise the attachment type is lost.
6307 if (fEnabled || !nic.strHostOnlyName.isEmpty())
6308 {
6309 xml::ElementNode *pelmMode = elmParent.createChild("HostOnlyInterface");
6310 if (!nic.strHostOnlyName.isEmpty())
6311 pelmMode->setAttribute("name", nic.strHostOnlyName);
6312 }
6313 break;
6314
6315 case NetworkAttachmentType_Generic:
6316 // For the currently active network attachment type we have to
6317 // generate the tag, otherwise the attachment type is lost.
6318 if (fEnabled || !nic.areGenericDriverDefaultSettings())
6319 {
6320 xml::ElementNode *pelmMode = elmParent.createChild("GenericInterface");
6321 if (!nic.areGenericDriverDefaultSettings())
6322 {
6323 pelmMode->setAttribute("driver", nic.strGenericDriver);
6324 for (StringsMap::const_iterator it = nic.genericProperties.begin();
6325 it != nic.genericProperties.end();
6326 ++it)
6327 {
6328 xml::ElementNode *pelmProp = pelmMode->createChild("Property");
6329 pelmProp->setAttribute("name", it->first);
6330 pelmProp->setAttribute("value", it->second);
6331 }
6332 }
6333 }
6334 break;
6335
6336 case NetworkAttachmentType_NATNetwork:
6337 // For the currently active network attachment type we have to
6338 // generate the tag, otherwise the attachment type is lost.
6339 if (fEnabled || !nic.strNATNetworkName.isEmpty())
6340 {
6341 xml::ElementNode *pelmMode = elmParent.createChild("NATNetwork");
6342 if (!nic.strNATNetworkName.isEmpty())
6343 pelmMode->setAttribute("name", nic.strNATNetworkName);
6344 }
6345 break;
6346
6347 default: /*case NetworkAttachmentType_Null:*/
6348 break;
6349 }
6350}
6351
6352/**
6353 * Creates a \<StorageControllers\> node under elmParent and then writes out the XML
6354 * keys under that. Called for both the \<Machine\> node and for snapshots.
6355 * @param elmParent
6356 * @param st
6357 * @param fSkipRemovableMedia If true, DVD and floppy attachments are skipped and
6358 * an empty drive is always written instead. This is for the OVF export case.
6359 * This parameter is ignored unless the settings version is at least v1.9, which
6360 * is always the case when this gets called for OVF export.
6361 * @param pllElementsWithUuidAttributes If not NULL, must point to a list of element node
6362 * pointers to which we will append all elements that we created here that contain
6363 * UUID attributes. This allows the OVF export code to quickly replace the internal
6364 * media UUIDs with the UUIDs of the media that were exported.
6365 */
6366void MachineConfigFile::buildStorageControllersXML(xml::ElementNode &elmParent,
6367 const Storage &st,
6368 bool fSkipRemovableMedia,
6369 std::list<xml::ElementNode*> *pllElementsWithUuidAttributes)
6370{
6371 if (!st.llStorageControllers.size())
6372 return;
6373 xml::ElementNode *pelmStorageControllers = elmParent.createChild("StorageControllers");
6374
6375 for (StorageControllersList::const_iterator it = st.llStorageControllers.begin();
6376 it != st.llStorageControllers.end();
6377 ++it)
6378 {
6379 const StorageController &sc = *it;
6380
6381 if ( (m->sv < SettingsVersion_v1_9)
6382 && (sc.controllerType == StorageControllerType_I82078)
6383 )
6384 // floppy controller already got written into <Hardware>/<FloppyController> in buildHardwareXML()
6385 // for pre-1.9 settings
6386 continue;
6387
6388 xml::ElementNode *pelmController = pelmStorageControllers->createChild("StorageController");
6389 com::Utf8Str name = sc.strName;
6390 if (m->sv < SettingsVersion_v1_8)
6391 {
6392 // pre-1.8 settings use shorter controller names, they are
6393 // expanded when reading the settings
6394 if (name == "IDE Controller")
6395 name = "IDE";
6396 else if (name == "SATA Controller")
6397 name = "SATA";
6398 else if (name == "SCSI Controller")
6399 name = "SCSI";
6400 }
6401 pelmController->setAttribute("name", sc.strName);
6402
6403 const char *pcszType;
6404 switch (sc.controllerType)
6405 {
6406 case StorageControllerType_IntelAhci: pcszType = "AHCI"; break;
6407 case StorageControllerType_LsiLogic: pcszType = "LsiLogic"; break;
6408 case StorageControllerType_BusLogic: pcszType = "BusLogic"; break;
6409 case StorageControllerType_PIIX4: pcszType = "PIIX4"; break;
6410 case StorageControllerType_ICH6: pcszType = "ICH6"; break;
6411 case StorageControllerType_I82078: pcszType = "I82078"; break;
6412 case StorageControllerType_LsiLogicSas: pcszType = "LsiLogicSas"; break;
6413 case StorageControllerType_USB: pcszType = "USB"; break;
6414 case StorageControllerType_NVMe: pcszType = "NVMe"; break;
6415 default: /*case StorageControllerType_PIIX3:*/ pcszType = "PIIX3"; break;
6416 }
6417 pelmController->setAttribute("type", pcszType);
6418
6419 pelmController->setAttribute("PortCount", sc.ulPortCount);
6420
6421 if (m->sv >= SettingsVersion_v1_9)
6422 if (sc.ulInstance)
6423 pelmController->setAttribute("Instance", sc.ulInstance);
6424
6425 if (m->sv >= SettingsVersion_v1_10)
6426 pelmController->setAttribute("useHostIOCache", sc.fUseHostIOCache);
6427
6428 if (m->sv >= SettingsVersion_v1_11)
6429 pelmController->setAttribute("Bootable", sc.fBootable);
6430
6431 if (sc.controllerType == StorageControllerType_IntelAhci)
6432 {
6433 pelmController->setAttribute("IDE0MasterEmulationPort", 0);
6434 pelmController->setAttribute("IDE0SlaveEmulationPort", 1);
6435 pelmController->setAttribute("IDE1MasterEmulationPort", 2);
6436 pelmController->setAttribute("IDE1SlaveEmulationPort", 3);
6437 }
6438
6439 for (AttachedDevicesList::const_iterator it2 = sc.llAttachedDevices.begin();
6440 it2 != sc.llAttachedDevices.end();
6441 ++it2)
6442 {
6443 const AttachedDevice &att = *it2;
6444
6445 // For settings version before 1.9, DVDs and floppies are in hardware, not storage controllers,
6446 // so we shouldn't write them here; we only get here for DVDs though because we ruled out
6447 // the floppy controller at the top of the loop
6448 if ( att.deviceType == DeviceType_DVD
6449 && m->sv < SettingsVersion_v1_9
6450 )
6451 continue;
6452
6453 xml::ElementNode *pelmDevice = pelmController->createChild("AttachedDevice");
6454
6455 pcszType = NULL;
6456
6457 switch (att.deviceType)
6458 {
6459 case DeviceType_HardDisk:
6460 pcszType = "HardDisk";
6461 if (att.fNonRotational)
6462 pelmDevice->setAttribute("nonrotational", att.fNonRotational);
6463 if (att.fDiscard)
6464 pelmDevice->setAttribute("discard", att.fDiscard);
6465 break;
6466
6467 case DeviceType_DVD:
6468 pcszType = "DVD";
6469 pelmDevice->setAttribute("passthrough", att.fPassThrough);
6470 if (att.fTempEject)
6471 pelmDevice->setAttribute("tempeject", att.fTempEject);
6472 break;
6473
6474 case DeviceType_Floppy:
6475 pcszType = "Floppy";
6476 break;
6477
6478 default: break; /* Shut up MSC. */
6479 }
6480
6481 pelmDevice->setAttribute("type", pcszType);
6482
6483 if (m->sv >= SettingsVersion_v1_15)
6484 pelmDevice->setAttribute("hotpluggable", att.fHotPluggable);
6485
6486 pelmDevice->setAttribute("port", att.lPort);
6487 pelmDevice->setAttribute("device", att.lDevice);
6488
6489 if (att.strBwGroup.length())
6490 pelmDevice->setAttribute("bandwidthGroup", att.strBwGroup);
6491
6492 // attached image, if any
6493 if (!att.uuid.isZero()
6494 && att.uuid.isValid()
6495 && (att.deviceType == DeviceType_HardDisk
6496 || !fSkipRemovableMedia
6497 )
6498 )
6499 {
6500 xml::ElementNode *pelmImage = pelmDevice->createChild("Image");
6501 pelmImage->setAttribute("uuid", att.uuid.toStringCurly());
6502
6503 // if caller wants a list of UUID elements, give it to them
6504 if (pllElementsWithUuidAttributes)
6505 pllElementsWithUuidAttributes->push_back(pelmImage);
6506 }
6507 else if ( (m->sv >= SettingsVersion_v1_9)
6508 && (att.strHostDriveSrc.length())
6509 )
6510 pelmDevice->createChild("HostDrive")->setAttribute("src", att.strHostDriveSrc);
6511 }
6512 }
6513}
6514
6515/**
6516 * Creates a \<Debugging\> node under elmParent and then writes out the XML
6517 * keys under that. Called for both the \<Machine\> node and for snapshots.
6518 *
6519 * @param pElmParent Pointer to the parent element.
6520 * @param pDbg Pointer to the debugging settings.
6521 */
6522void MachineConfigFile::buildDebuggingXML(xml::ElementNode *pElmParent, const Debugging *pDbg)
6523{
6524 if (m->sv < SettingsVersion_v1_13 || pDbg->areDefaultSettings())
6525 return;
6526
6527 xml::ElementNode *pElmDebugging = pElmParent->createChild("Debugging");
6528 xml::ElementNode *pElmTracing = pElmDebugging->createChild("Tracing");
6529 pElmTracing->setAttribute("enabled", pDbg->fTracingEnabled);
6530 pElmTracing->setAttribute("allowTracingToAccessVM", pDbg->fAllowTracingToAccessVM);
6531 pElmTracing->setAttribute("config", pDbg->strTracingConfig);
6532}
6533
6534/**
6535 * Creates a \<Autostart\> node under elmParent and then writes out the XML
6536 * keys under that. Called for both the \<Machine\> node and for snapshots.
6537 *
6538 * @param pElmParent Pointer to the parent element.
6539 * @param pAutostart Pointer to the autostart settings.
6540 */
6541void MachineConfigFile::buildAutostartXML(xml::ElementNode *pElmParent, const Autostart *pAutostart)
6542{
6543 const char *pcszAutostop = NULL;
6544
6545 if (m->sv < SettingsVersion_v1_13 || pAutostart->areDefaultSettings())
6546 return;
6547
6548 xml::ElementNode *pElmAutostart = pElmParent->createChild("Autostart");
6549 pElmAutostart->setAttribute("enabled", pAutostart->fAutostartEnabled);
6550 pElmAutostart->setAttribute("delay", pAutostart->uAutostartDelay);
6551
6552 switch (pAutostart->enmAutostopType)
6553 {
6554 case AutostopType_Disabled: pcszAutostop = "Disabled"; break;
6555 case AutostopType_SaveState: pcszAutostop = "SaveState"; break;
6556 case AutostopType_PowerOff: pcszAutostop = "PowerOff"; break;
6557 case AutostopType_AcpiShutdown: pcszAutostop = "AcpiShutdown"; break;
6558 default: Assert(false); pcszAutostop = "Disabled"; break;
6559 }
6560 pElmAutostart->setAttribute("autostop", pcszAutostop);
6561}
6562
6563/**
6564 * Creates a \<Groups\> node under elmParent and then writes out the XML
6565 * keys under that. Called for the \<Machine\> node only.
6566 *
6567 * @param pElmParent Pointer to the parent element.
6568 * @param pllGroups Pointer to the groups list.
6569 */
6570void MachineConfigFile::buildGroupsXML(xml::ElementNode *pElmParent, const StringsList *pllGroups)
6571{
6572 if ( m->sv < SettingsVersion_v1_13 || pllGroups->size() == 0
6573 || (pllGroups->size() == 1 && pllGroups->front() == "/"))
6574 return;
6575
6576 xml::ElementNode *pElmGroups = pElmParent->createChild("Groups");
6577 for (StringsList::const_iterator it = pllGroups->begin();
6578 it != pllGroups->end();
6579 ++it)
6580 {
6581 const Utf8Str &group = *it;
6582 xml::ElementNode *pElmGroup = pElmGroups->createChild("Group");
6583 pElmGroup->setAttribute("name", group);
6584 }
6585}
6586
6587/**
6588 * Writes a single snapshot into the DOM tree. Initially this gets called from MachineConfigFile::write()
6589 * for the root snapshot of a machine, if present; elmParent then points to the \<Snapshots\> node under the
6590 * \<Machine\> node to which \<Snapshot\> must be added. This may then recurse for child snapshots.
6591 *
6592 * @param depth
6593 * @param elmParent
6594 * @param snap
6595 */
6596void MachineConfigFile::buildSnapshotXML(uint32_t depth,
6597 xml::ElementNode &elmParent,
6598 const Snapshot &snap)
6599{
6600 if (depth > SETTINGS_SNAPSHOT_DEPTH_MAX)
6601 throw ConfigFileError(this, NULL, N_("Maximum snapshot tree depth of %u exceeded"), SETTINGS_SNAPSHOT_DEPTH_MAX);
6602
6603 xml::ElementNode *pelmSnapshot = elmParent.createChild("Snapshot");
6604
6605 pelmSnapshot->setAttribute("uuid", snap.uuid.toStringCurly());
6606 pelmSnapshot->setAttribute("name", snap.strName);
6607 pelmSnapshot->setAttribute("timeStamp", stringifyTimestamp(snap.timestamp));
6608
6609 if (snap.strStateFile.length())
6610 pelmSnapshot->setAttributePath("stateFile", snap.strStateFile);
6611
6612 if (snap.strDescription.length())
6613 pelmSnapshot->createChild("Description")->addContent(snap.strDescription);
6614
6615 // We only skip removable media for OVF, but OVF never includes snapshots.
6616 buildHardwareXML(*pelmSnapshot, snap.hardware, 0 /* fl */, NULL /* pllElementsWithUuidAttributes */);
6617 buildDebuggingXML(pelmSnapshot, &snap.debugging);
6618 buildAutostartXML(pelmSnapshot, &snap.autostart);
6619 // note: Groups exist only for Machine, not for Snapshot
6620
6621 if (snap.llChildSnapshots.size())
6622 {
6623 xml::ElementNode *pelmChildren = pelmSnapshot->createChild("Snapshots");
6624 for (SnapshotsList::const_iterator it = snap.llChildSnapshots.begin();
6625 it != snap.llChildSnapshots.end();
6626 ++it)
6627 {
6628 const Snapshot &child = *it;
6629 buildSnapshotXML(depth + 1, *pelmChildren, child);
6630 }
6631 }
6632}
6633
6634/**
6635 * Builds the XML DOM tree for the machine config under the given XML element.
6636 *
6637 * This has been separated out from write() so it can be called from elsewhere,
6638 * such as the OVF code, to build machine XML in an existing XML tree.
6639 *
6640 * As a result, this gets called from two locations:
6641 *
6642 * -- MachineConfigFile::write();
6643 *
6644 * -- Appliance::buildXMLForOneVirtualSystem()
6645 *
6646 * In fl, the following flag bits are recognized:
6647 *
6648 * -- BuildMachineXML_MediaRegistry: If set, the machine's media registry will
6649 * be written, if present. This is not set when called from OVF because OVF
6650 * has its own variant of a media registry. This flag is ignored unless the
6651 * settings version is at least v1.11 (VirtualBox 4.0).
6652 *
6653 * -- BuildMachineXML_IncludeSnapshots: If set, descend into the snapshots tree
6654 * of the machine and write out \<Snapshot\> and possibly more snapshots under
6655 * that, if snapshots are present. Otherwise all snapshots are suppressed
6656 * (when called from OVF).
6657 *
6658 * -- BuildMachineXML_WriteVBoxVersionAttribute: If set, add a settingsVersion
6659 * attribute to the machine tag with the vbox settings version. This is for
6660 * the OVF export case in which we don't have the settings version set in
6661 * the root element.
6662 *
6663 * -- BuildMachineXML_SkipRemovableMedia: If set, removable media attachments
6664 * (DVDs, floppies) are silently skipped. This is for the OVF export case
6665 * until we support copying ISO and RAW media as well. This flag is ignored
6666 * unless the settings version is at least v1.9, which is always the case
6667 * when this gets called for OVF export.
6668 *
6669 * -- BuildMachineXML_SuppressSavedState: If set, the Machine/stateFile
6670 * attribute is never set. This is also for the OVF export case because we
6671 * cannot save states with OVF.
6672 *
6673 * @param elmMachine XML \<Machine\> element to add attributes and elements to.
6674 * @param fl Flags.
6675 * @param pllElementsWithUuidAttributes pointer to list that should receive UUID elements or NULL;
6676 * see buildStorageControllersXML() for details.
6677 */
6678void MachineConfigFile::buildMachineXML(xml::ElementNode &elmMachine,
6679 uint32_t fl,
6680 std::list<xml::ElementNode*> *pllElementsWithUuidAttributes)
6681{
6682 if (fl & BuildMachineXML_WriteVBoxVersionAttribute)
6683 {
6684 // add settings version attribute to machine element
6685 setVersionAttribute(elmMachine);
6686 LogRel(("Exporting settings file \"%s\" with version \"%s\"\n", m->strFilename.c_str(), m->strSettingsVersionFull.c_str()));
6687 }
6688
6689 elmMachine.setAttribute("uuid", uuid.toStringCurly());
6690 elmMachine.setAttribute("name", machineUserData.strName);
6691 if (machineUserData.fDirectoryIncludesUUID)
6692 elmMachine.setAttribute("directoryIncludesUUID", machineUserData.fDirectoryIncludesUUID);
6693 if (!machineUserData.fNameSync)
6694 elmMachine.setAttribute("nameSync", machineUserData.fNameSync);
6695 if (machineUserData.strDescription.length())
6696 elmMachine.createChild("Description")->addContent(machineUserData.strDescription);
6697 elmMachine.setAttribute("OSType", machineUserData.strOsType);
6698 if ( strStateFile.length()
6699 && !(fl & BuildMachineXML_SuppressSavedState)
6700 )
6701 elmMachine.setAttributePath("stateFile", strStateFile);
6702
6703 if ((fl & BuildMachineXML_IncludeSnapshots)
6704 && !uuidCurrentSnapshot.isZero()
6705 && uuidCurrentSnapshot.isValid())
6706 elmMachine.setAttribute("currentSnapshot", uuidCurrentSnapshot.toStringCurly());
6707
6708 if (machineUserData.strSnapshotFolder.length())
6709 elmMachine.setAttributePath("snapshotFolder", machineUserData.strSnapshotFolder);
6710 if (!fCurrentStateModified)
6711 elmMachine.setAttribute("currentStateModified", fCurrentStateModified);
6712 elmMachine.setAttribute("lastStateChange", stringifyTimestamp(timeLastStateChange));
6713 if (fAborted)
6714 elmMachine.setAttribute("aborted", fAborted);
6715 if (machineUserData.strVMPriority.length())
6716 elmMachine.setAttribute("processPriority", machineUserData.strVMPriority);
6717 // Please keep the icon last so that one doesn't have to check if there
6718 // is anything in the line after this very long attribute in the XML.
6719 if (machineUserData.ovIcon.size())
6720 {
6721 Utf8Str strIcon;
6722 toBase64(strIcon, machineUserData.ovIcon);
6723 elmMachine.setAttribute("icon", strIcon);
6724 }
6725 if ( m->sv >= SettingsVersion_v1_9
6726 && ( machineUserData.fTeleporterEnabled
6727 || machineUserData.uTeleporterPort
6728 || !machineUserData.strTeleporterAddress.isEmpty()
6729 || !machineUserData.strTeleporterPassword.isEmpty()
6730 )
6731 )
6732 {
6733 xml::ElementNode *pelmTeleporter = elmMachine.createChild("Teleporter");
6734 pelmTeleporter->setAttribute("enabled", machineUserData.fTeleporterEnabled);
6735 pelmTeleporter->setAttribute("port", machineUserData.uTeleporterPort);
6736 pelmTeleporter->setAttribute("address", machineUserData.strTeleporterAddress);
6737 pelmTeleporter->setAttribute("password", machineUserData.strTeleporterPassword);
6738 }
6739
6740 if ( m->sv >= SettingsVersion_v1_11
6741 && ( machineUserData.enmFaultToleranceState != FaultToleranceState_Inactive
6742 || machineUserData.uFaultTolerancePort
6743 || machineUserData.uFaultToleranceInterval
6744 || !machineUserData.strFaultToleranceAddress.isEmpty()
6745 )
6746 )
6747 {
6748 xml::ElementNode *pelmFaultTolerance = elmMachine.createChild("FaultTolerance");
6749 switch (machineUserData.enmFaultToleranceState)
6750 {
6751 case FaultToleranceState_Inactive:
6752 pelmFaultTolerance->setAttribute("state", "inactive");
6753 break;
6754 case FaultToleranceState_Master:
6755 pelmFaultTolerance->setAttribute("state", "master");
6756 break;
6757 case FaultToleranceState_Standby:
6758 pelmFaultTolerance->setAttribute("state", "standby");
6759 break;
6760 }
6761
6762 pelmFaultTolerance->setAttribute("port", machineUserData.uFaultTolerancePort);
6763 pelmFaultTolerance->setAttribute("address", machineUserData.strFaultToleranceAddress);
6764 pelmFaultTolerance->setAttribute("interval", machineUserData.uFaultToleranceInterval);
6765 pelmFaultTolerance->setAttribute("password", machineUserData.strFaultTolerancePassword);
6766 }
6767
6768 if ( (fl & BuildMachineXML_MediaRegistry)
6769 && (m->sv >= SettingsVersion_v1_11)
6770 )
6771 buildMediaRegistry(elmMachine, mediaRegistry);
6772
6773 buildExtraData(elmMachine, mapExtraDataItems);
6774
6775 if ( (fl & BuildMachineXML_IncludeSnapshots)
6776 && llFirstSnapshot.size())
6777 buildSnapshotXML(1, elmMachine, llFirstSnapshot.front());
6778
6779 buildHardwareXML(elmMachine, hardwareMachine, fl, pllElementsWithUuidAttributes);
6780 buildDebuggingXML(&elmMachine, &debugging);
6781 buildAutostartXML(&elmMachine, &autostart);
6782 buildGroupsXML(&elmMachine, &machineUserData.llGroups);
6783}
6784
6785/**
6786 * Returns true only if the given AudioDriverType is supported on
6787 * the current host platform. For example, this would return false
6788 * for AudioDriverType_DirectSound when compiled on a Linux host.
6789 * @param drv AudioDriverType_* enum to test.
6790 * @return true only if the current host supports that driver.
6791 */
6792/*static*/
6793bool MachineConfigFile::isAudioDriverAllowedOnThisHost(AudioDriverType_T drv)
6794{
6795 switch (drv)
6796 {
6797 case AudioDriverType_Null:
6798#ifdef RT_OS_WINDOWS
6799 case AudioDriverType_DirectSound:
6800#endif
6801#ifdef VBOX_WITH_AUDIO_OSS
6802 case AudioDriverType_OSS:
6803#endif
6804#ifdef VBOX_WITH_AUDIO_ALSA
6805 case AudioDriverType_ALSA:
6806#endif
6807#ifdef VBOX_WITH_AUDIO_PULSE
6808 case AudioDriverType_Pulse:
6809#endif
6810#ifdef RT_OS_DARWIN
6811 case AudioDriverType_CoreAudio:
6812#endif
6813#ifdef RT_OS_OS2
6814 case AudioDriverType_MMPM:
6815#endif
6816 return true;
6817 default: break; /* Shut up MSC. */
6818 }
6819
6820 return false;
6821}
6822
6823/**
6824 * Returns the AudioDriverType_* which should be used by default on this
6825 * host platform. On Linux, this will check at runtime whether PulseAudio
6826 * or ALSA are actually supported on the first call.
6827 *
6828 * @return Default audio driver type for this host platform.
6829 */
6830/*static*/
6831AudioDriverType_T MachineConfigFile::getHostDefaultAudioDriver()
6832{
6833#if defined(RT_OS_WINDOWS)
6834 return AudioDriverType_DirectSound;
6835
6836#elif defined(RT_OS_LINUX)
6837 /* On Linux, we need to check at runtime what's actually supported. */
6838 static RTCLockMtx s_mtx;
6839 static AudioDriverType_T s_linuxDriver = -1;
6840 RTCLock lock(s_mtx);
6841 if (s_linuxDriver == (AudioDriverType_T)-1)
6842 {
6843# ifdef VBOX_WITH_AUDIO_PULSE
6844 /* Check for the pulse library & that the pulse audio daemon is running. */
6845 if (RTProcIsRunningByName("pulseaudio") &&
6846 RTLdrIsLoadable("libpulse.so.0"))
6847 s_linuxDriver = AudioDriverType_Pulse;
6848 else
6849# endif /* VBOX_WITH_AUDIO_PULSE */
6850# ifdef VBOX_WITH_AUDIO_ALSA
6851 /* Check if we can load the ALSA library */
6852 if (RTLdrIsLoadable("libasound.so.2"))
6853 s_linuxDriver = AudioDriverType_ALSA;
6854 else
6855# endif /* VBOX_WITH_AUDIO_ALSA */
6856 s_linuxDriver = AudioDriverType_OSS;
6857 }
6858 return s_linuxDriver;
6859
6860#elif defined(RT_OS_DARWIN)
6861 return AudioDriverType_CoreAudio;
6862
6863#elif defined(RT_OS_OS2)
6864 return AudioDriverType_MMPM;
6865
6866#else /* All other platforms. */
6867# ifdef VBOX_WITH_AUDIO_OSS
6868 return AudioDriverType_OSS;
6869# else
6870 /* Return NULL driver as a fallback if nothing of the above is available. */
6871 return AudioDriverType_Null;
6872# endif
6873#endif
6874}
6875
6876/**
6877 * Called from write() before calling ConfigFileBase::createStubDocument().
6878 * This adjusts the settings version in m->sv if incompatible settings require
6879 * a settings bump, whereas otherwise we try to preserve the settings version
6880 * to avoid breaking compatibility with older versions.
6881 *
6882 * We do the checks in here in reverse order: newest first, oldest last, so
6883 * that we avoid unnecessary checks since some of these are expensive.
6884 */
6885void MachineConfigFile::bumpSettingsVersionIfNeeded()
6886{
6887 if (m->sv < SettingsVersion_v1_16)
6888 {
6889 // VirtualBox 5.1 adds a NVMe storage controller, paravirt debug
6890 // options, cpu profile, APIC settings (CPU capability and BIOS).
6891
6892 if ( hardwareMachine.strParavirtDebug.isNotEmpty()
6893 || (!hardwareMachine.strCpuProfile.equals("host") && hardwareMachine.strCpuProfile.isNotEmpty())
6894 || hardwareMachine.biosSettings.apicMode != APICMode_APIC
6895 || !hardwareMachine.fAPIC
6896 || hardwareMachine.fX2APIC)
6897 {
6898 m->sv = SettingsVersion_v1_16;
6899 return;
6900 }
6901
6902 for (StorageControllersList::const_iterator it = hardwareMachine.storage.llStorageControllers.begin();
6903 it != hardwareMachine.storage.llStorageControllers.end();
6904 ++it)
6905 {
6906 const StorageController &sctl = *it;
6907
6908 if (sctl.controllerType == StorageControllerType_NVMe)
6909 {
6910 m->sv = SettingsVersion_v1_16;
6911 return;
6912 }
6913 }
6914 }
6915
6916 if (m->sv < SettingsVersion_v1_15)
6917 {
6918 // VirtualBox 5.0 adds paravirt providers, explicit AHCI port hotplug
6919 // setting, USB storage controller, xHCI, serial port TCP backend
6920 // and VM process priority.
6921
6922 /*
6923 * Check simple configuration bits first, loopy stuff afterwards.
6924 */
6925 if ( hardwareMachine.paravirtProvider != ParavirtProvider_Legacy
6926 || hardwareMachine.uCpuIdPortabilityLevel != 0
6927 || machineUserData.strVMPriority.length())
6928 {
6929 m->sv = SettingsVersion_v1_15;
6930 return;
6931 }
6932
6933 /*
6934 * Check whether the hotpluggable flag of all storage devices differs
6935 * from the default for old settings.
6936 * AHCI ports are hotpluggable by default every other device is not.
6937 * Also check if there are USB storage controllers.
6938 */
6939 for (StorageControllersList::const_iterator it = hardwareMachine.storage.llStorageControllers.begin();
6940 it != hardwareMachine.storage.llStorageControllers.end();
6941 ++it)
6942 {
6943 const StorageController &sctl = *it;
6944
6945 if (sctl.controllerType == StorageControllerType_USB)
6946 {
6947 m->sv = SettingsVersion_v1_15;
6948 return;
6949 }
6950
6951 for (AttachedDevicesList::const_iterator it2 = sctl.llAttachedDevices.begin();
6952 it2 != sctl.llAttachedDevices.end();
6953 ++it2)
6954 {
6955 const AttachedDevice &att = *it2;
6956
6957 if ( ( att.fHotPluggable
6958 && sctl.controllerType != StorageControllerType_IntelAhci)
6959 || ( !att.fHotPluggable
6960 && sctl.controllerType == StorageControllerType_IntelAhci))
6961 {
6962 m->sv = SettingsVersion_v1_15;
6963 return;
6964 }
6965 }
6966 }
6967
6968 /*
6969 * Check if there is an xHCI (USB3) USB controller.
6970 */
6971 for (USBControllerList::const_iterator it = hardwareMachine.usbSettings.llUSBControllers.begin();
6972 it != hardwareMachine.usbSettings.llUSBControllers.end();
6973 ++it)
6974 {
6975 const USBController &ctrl = *it;
6976 if (ctrl.enmType == USBControllerType_XHCI)
6977 {
6978 m->sv = SettingsVersion_v1_15;
6979 return;
6980 }
6981 }
6982
6983 /*
6984 * Check if any serial port uses the TCP backend.
6985 */
6986 for (SerialPortsList::const_iterator it = hardwareMachine.llSerialPorts.begin();
6987 it != hardwareMachine.llSerialPorts.end();
6988 ++it)
6989 {
6990 const SerialPort &port = *it;
6991 if (port.portMode == PortMode_TCP)
6992 {
6993 m->sv = SettingsVersion_v1_15;
6994 return;
6995 }
6996 }
6997 }
6998
6999 if (m->sv < SettingsVersion_v1_14)
7000 {
7001 // VirtualBox 4.3 adds default frontend setting, graphics controller
7002 // setting, explicit long mode setting, video capturing and NAT networking.
7003 if ( !hardwareMachine.strDefaultFrontend.isEmpty()
7004 || hardwareMachine.graphicsControllerType != GraphicsControllerType_VBoxVGA
7005 || hardwareMachine.enmLongMode != Hardware::LongMode_Legacy
7006 || machineUserData.ovIcon.size() > 0
7007 || hardwareMachine.fVideoCaptureEnabled)
7008 {
7009 m->sv = SettingsVersion_v1_14;
7010 return;
7011 }
7012 NetworkAdaptersList::const_iterator netit;
7013 for (netit = hardwareMachine.llNetworkAdapters.begin();
7014 netit != hardwareMachine.llNetworkAdapters.end();
7015 ++netit)
7016 {
7017 if (netit->mode == NetworkAttachmentType_NATNetwork)
7018 {
7019 m->sv = SettingsVersion_v1_14;
7020 break;
7021 }
7022 }
7023 }
7024
7025 if (m->sv < SettingsVersion_v1_14)
7026 {
7027 unsigned cOhciCtrls = 0;
7028 unsigned cEhciCtrls = 0;
7029 bool fNonStdName = false;
7030
7031 for (USBControllerList::const_iterator it = hardwareMachine.usbSettings.llUSBControllers.begin();
7032 it != hardwareMachine.usbSettings.llUSBControllers.end();
7033 ++it)
7034 {
7035 const USBController &ctrl = *it;
7036
7037 switch (ctrl.enmType)
7038 {
7039 case USBControllerType_OHCI:
7040 cOhciCtrls++;
7041 if (ctrl.strName != "OHCI")
7042 fNonStdName = true;
7043 break;
7044 case USBControllerType_EHCI:
7045 cEhciCtrls++;
7046 if (ctrl.strName != "EHCI")
7047 fNonStdName = true;
7048 break;
7049 default:
7050 /* Anything unknown forces a bump. */
7051 fNonStdName = true;
7052 }
7053
7054 /* Skip checking other controllers if the settings bump is necessary. */
7055 if (cOhciCtrls > 1 || cEhciCtrls > 1 || fNonStdName)
7056 {
7057 m->sv = SettingsVersion_v1_14;
7058 break;
7059 }
7060 }
7061 }
7062
7063 if (m->sv < SettingsVersion_v1_13)
7064 {
7065 // VirtualBox 4.2 adds tracing, autostart, UUID in directory and groups.
7066 if ( !debugging.areDefaultSettings()
7067 || !autostart.areDefaultSettings()
7068 || machineUserData.fDirectoryIncludesUUID
7069 || machineUserData.llGroups.size() > 1
7070 || machineUserData.llGroups.front() != "/")
7071 m->sv = SettingsVersion_v1_13;
7072 }
7073
7074 if (m->sv < SettingsVersion_v1_13)
7075 {
7076 // VirtualBox 4.2 changes the units for bandwidth group limits.
7077 for (BandwidthGroupList::const_iterator it = hardwareMachine.ioSettings.llBandwidthGroups.begin();
7078 it != hardwareMachine.ioSettings.llBandwidthGroups.end();
7079 ++it)
7080 {
7081 const BandwidthGroup &gr = *it;
7082 if (gr.cMaxBytesPerSec % _1M)
7083 {
7084 // Bump version if a limit cannot be expressed in megabytes
7085 m->sv = SettingsVersion_v1_13;
7086 break;
7087 }
7088 }
7089 }
7090
7091 if (m->sv < SettingsVersion_v1_12)
7092 {
7093 // VirtualBox 4.1 adds PCI passthrough and emulated USB Smart Card reader
7094 if ( hardwareMachine.pciAttachments.size()
7095 || hardwareMachine.fEmulatedUSBCardReader)
7096 m->sv = SettingsVersion_v1_12;
7097 }
7098
7099 if (m->sv < SettingsVersion_v1_12)
7100 {
7101 // VirtualBox 4.1 adds a promiscuous mode policy to the network
7102 // adapters and a generic network driver transport.
7103 NetworkAdaptersList::const_iterator netit;
7104 for (netit = hardwareMachine.llNetworkAdapters.begin();
7105 netit != hardwareMachine.llNetworkAdapters.end();
7106 ++netit)
7107 {
7108 if ( netit->enmPromiscModePolicy != NetworkAdapterPromiscModePolicy_Deny
7109 || netit->mode == NetworkAttachmentType_Generic
7110 || !netit->areGenericDriverDefaultSettings()
7111 )
7112 {
7113 m->sv = SettingsVersion_v1_12;
7114 break;
7115 }
7116 }
7117 }
7118
7119 if (m->sv < SettingsVersion_v1_11)
7120 {
7121 // VirtualBox 4.0 adds HD audio, CPU priorities, fault tolerance,
7122 // per-machine media registries, VRDE, JRockitVE, bandwidth groups,
7123 // ICH9 chipset
7124 if ( hardwareMachine.audioAdapter.controllerType == AudioControllerType_HDA
7125 || hardwareMachine.ulCpuExecutionCap != 100
7126 || machineUserData.enmFaultToleranceState != FaultToleranceState_Inactive
7127 || machineUserData.uFaultTolerancePort
7128 || machineUserData.uFaultToleranceInterval
7129 || !machineUserData.strFaultToleranceAddress.isEmpty()
7130 || mediaRegistry.llHardDisks.size()
7131 || mediaRegistry.llDvdImages.size()
7132 || mediaRegistry.llFloppyImages.size()
7133 || !hardwareMachine.vrdeSettings.strVrdeExtPack.isEmpty()
7134 || !hardwareMachine.vrdeSettings.strAuthLibrary.isEmpty()
7135 || machineUserData.strOsType == "JRockitVE"
7136 || hardwareMachine.ioSettings.llBandwidthGroups.size()
7137 || hardwareMachine.chipsetType == ChipsetType_ICH9
7138 )
7139 m->sv = SettingsVersion_v1_11;
7140 }
7141
7142 if (m->sv < SettingsVersion_v1_10)
7143 {
7144 /* If the properties contain elements other than "TCP/Ports" and "TCP/Address",
7145 * then increase the version to at least VBox 3.2, which can have video channel properties.
7146 */
7147 unsigned cOldProperties = 0;
7148
7149 StringsMap::const_iterator it = hardwareMachine.vrdeSettings.mapProperties.find("TCP/Ports");
7150 if (it != hardwareMachine.vrdeSettings.mapProperties.end())
7151 cOldProperties++;
7152 it = hardwareMachine.vrdeSettings.mapProperties.find("TCP/Address");
7153 if (it != hardwareMachine.vrdeSettings.mapProperties.end())
7154 cOldProperties++;
7155
7156 if (hardwareMachine.vrdeSettings.mapProperties.size() != cOldProperties)
7157 m->sv = SettingsVersion_v1_10;
7158 }
7159
7160 if (m->sv < SettingsVersion_v1_11)
7161 {
7162 /* If the properties contain elements other than "TCP/Ports", "TCP/Address",
7163 * "VideoChannel/Enabled" and "VideoChannel/Quality" then increase the version to VBox 4.0.
7164 */
7165 unsigned cOldProperties = 0;
7166
7167 StringsMap::const_iterator it = hardwareMachine.vrdeSettings.mapProperties.find("TCP/Ports");
7168 if (it != hardwareMachine.vrdeSettings.mapProperties.end())
7169 cOldProperties++;
7170 it = hardwareMachine.vrdeSettings.mapProperties.find("TCP/Address");
7171 if (it != hardwareMachine.vrdeSettings.mapProperties.end())
7172 cOldProperties++;
7173 it = hardwareMachine.vrdeSettings.mapProperties.find("VideoChannel/Enabled");
7174 if (it != hardwareMachine.vrdeSettings.mapProperties.end())
7175 cOldProperties++;
7176 it = hardwareMachine.vrdeSettings.mapProperties.find("VideoChannel/Quality");
7177 if (it != hardwareMachine.vrdeSettings.mapProperties.end())
7178 cOldProperties++;
7179
7180 if (hardwareMachine.vrdeSettings.mapProperties.size() != cOldProperties)
7181 m->sv = SettingsVersion_v1_11;
7182 }
7183
7184 // settings version 1.9 is required if there is not exactly one DVD
7185 // or more than one floppy drive present or the DVD is not at the secondary
7186 // master; this check is a bit more complicated
7187 //
7188 // settings version 1.10 is required if the host cache should be disabled
7189 //
7190 // settings version 1.11 is required for bandwidth limits and if more than
7191 // one controller of each type is present.
7192 if (m->sv < SettingsVersion_v1_11)
7193 {
7194 // count attached DVDs and floppies (only if < v1.9)
7195 size_t cDVDs = 0;
7196 size_t cFloppies = 0;
7197
7198 // count storage controllers (if < v1.11)
7199 size_t cSata = 0;
7200 size_t cScsiLsi = 0;
7201 size_t cScsiBuslogic = 0;
7202 size_t cSas = 0;
7203 size_t cIde = 0;
7204 size_t cFloppy = 0;
7205
7206 // need to run thru all the storage controllers and attached devices to figure this out
7207 for (StorageControllersList::const_iterator it = hardwareMachine.storage.llStorageControllers.begin();
7208 it != hardwareMachine.storage.llStorageControllers.end();
7209 ++it)
7210 {
7211 const StorageController &sctl = *it;
7212
7213 // count storage controllers of each type; 1.11 is required if more than one
7214 // controller of one type is present
7215 switch (sctl.storageBus)
7216 {
7217 case StorageBus_IDE:
7218 cIde++;
7219 break;
7220 case StorageBus_SATA:
7221 cSata++;
7222 break;
7223 case StorageBus_SAS:
7224 cSas++;
7225 break;
7226 case StorageBus_SCSI:
7227 if (sctl.controllerType == StorageControllerType_LsiLogic)
7228 cScsiLsi++;
7229 else
7230 cScsiBuslogic++;
7231 break;
7232 case StorageBus_Floppy:
7233 cFloppy++;
7234 break;
7235 default:
7236 // Do nothing
7237 break;
7238 }
7239
7240 if ( cSata > 1
7241 || cScsiLsi > 1
7242 || cScsiBuslogic > 1
7243 || cSas > 1
7244 || cIde > 1
7245 || cFloppy > 1)
7246 {
7247 m->sv = SettingsVersion_v1_11;
7248 break; // abort the loop -- we will not raise the version further
7249 }
7250
7251 for (AttachedDevicesList::const_iterator it2 = sctl.llAttachedDevices.begin();
7252 it2 != sctl.llAttachedDevices.end();
7253 ++it2)
7254 {
7255 const AttachedDevice &att = *it2;
7256
7257 // Bandwidth limitations are new in VirtualBox 4.0 (1.11)
7258 if (m->sv < SettingsVersion_v1_11)
7259 {
7260 if (att.strBwGroup.length() != 0)
7261 {
7262 m->sv = SettingsVersion_v1_11;
7263 break; // abort the loop -- we will not raise the version further
7264 }
7265 }
7266
7267 // disabling the host IO cache requires settings version 1.10
7268 if ( (m->sv < SettingsVersion_v1_10)
7269 && (!sctl.fUseHostIOCache)
7270 )
7271 m->sv = SettingsVersion_v1_10;
7272
7273 // we can only write the StorageController/@Instance attribute with v1.9
7274 if ( (m->sv < SettingsVersion_v1_9)
7275 && (sctl.ulInstance != 0)
7276 )
7277 m->sv = SettingsVersion_v1_9;
7278
7279 if (m->sv < SettingsVersion_v1_9)
7280 {
7281 if (att.deviceType == DeviceType_DVD)
7282 {
7283 if ( (sctl.storageBus != StorageBus_IDE) // DVD at bus other than DVD?
7284 || (att.lPort != 1) // DVDs not at secondary master?
7285 || (att.lDevice != 0)
7286 )
7287 m->sv = SettingsVersion_v1_9;
7288
7289 ++cDVDs;
7290 }
7291 else if (att.deviceType == DeviceType_Floppy)
7292 ++cFloppies;
7293 }
7294 }
7295
7296 if (m->sv >= SettingsVersion_v1_11)
7297 break; // abort the loop -- we will not raise the version further
7298 }
7299
7300 // VirtualBox before 3.1 had zero or one floppy and exactly one DVD,
7301 // so any deviation from that will require settings version 1.9
7302 if ( (m->sv < SettingsVersion_v1_9)
7303 && ( (cDVDs != 1)
7304 || (cFloppies > 1)
7305 )
7306 )
7307 m->sv = SettingsVersion_v1_9;
7308 }
7309
7310 // VirtualBox 3.2: Check for non default I/O settings
7311 if (m->sv < SettingsVersion_v1_10)
7312 {
7313 if ( (hardwareMachine.ioSettings.fIOCacheEnabled != true)
7314 || (hardwareMachine.ioSettings.ulIOCacheSize != 5)
7315 // and page fusion
7316 || (hardwareMachine.fPageFusionEnabled)
7317 // and CPU hotplug, RTC timezone control, HID type and HPET
7318 || machineUserData.fRTCUseUTC
7319 || hardwareMachine.fCpuHotPlug
7320 || hardwareMachine.pointingHIDType != PointingHIDType_PS2Mouse
7321 || hardwareMachine.keyboardHIDType != KeyboardHIDType_PS2Keyboard
7322 || hardwareMachine.fHPETEnabled
7323 )
7324 m->sv = SettingsVersion_v1_10;
7325 }
7326
7327 // VirtualBox 3.2 adds NAT and boot priority to the NIC config in Main
7328 // VirtualBox 4.0 adds network bandwitdth
7329 if (m->sv < SettingsVersion_v1_11)
7330 {
7331 NetworkAdaptersList::const_iterator netit;
7332 for (netit = hardwareMachine.llNetworkAdapters.begin();
7333 netit != hardwareMachine.llNetworkAdapters.end();
7334 ++netit)
7335 {
7336 if ( (m->sv < SettingsVersion_v1_12)
7337 && (netit->strBandwidthGroup.isNotEmpty())
7338 )
7339 {
7340 /* New in VirtualBox 4.1 */
7341 m->sv = SettingsVersion_v1_12;
7342 break;
7343 }
7344 else if ( (m->sv < SettingsVersion_v1_10)
7345 && (netit->fEnabled)
7346 && (netit->mode == NetworkAttachmentType_NAT)
7347 && ( netit->nat.u32Mtu != 0
7348 || netit->nat.u32SockRcv != 0
7349 || netit->nat.u32SockSnd != 0
7350 || netit->nat.u32TcpRcv != 0
7351 || netit->nat.u32TcpSnd != 0
7352 || !netit->nat.fDNSPassDomain
7353 || netit->nat.fDNSProxy
7354 || netit->nat.fDNSUseHostResolver
7355 || netit->nat.fAliasLog
7356 || netit->nat.fAliasProxyOnly
7357 || netit->nat.fAliasUseSamePorts
7358 || netit->nat.strTFTPPrefix.length()
7359 || netit->nat.strTFTPBootFile.length()
7360 || netit->nat.strTFTPNextServer.length()
7361 || netit->nat.mapRules.size()
7362 )
7363 )
7364 {
7365 m->sv = SettingsVersion_v1_10;
7366 // no break because we still might need v1.11 above
7367 }
7368 else if ( (m->sv < SettingsVersion_v1_10)
7369 && (netit->fEnabled)
7370 && (netit->ulBootPriority != 0)
7371 )
7372 {
7373 m->sv = SettingsVersion_v1_10;
7374 // no break because we still might need v1.11 above
7375 }
7376 }
7377 }
7378
7379 // all the following require settings version 1.9
7380 if ( (m->sv < SettingsVersion_v1_9)
7381 && ( (hardwareMachine.firmwareType >= FirmwareType_EFI)
7382 || machineUserData.fTeleporterEnabled
7383 || machineUserData.uTeleporterPort
7384 || !machineUserData.strTeleporterAddress.isEmpty()
7385 || !machineUserData.strTeleporterPassword.isEmpty()
7386 || (!hardwareMachine.uuid.isZero() && hardwareMachine.uuid.isValid())
7387 )
7388 )
7389 m->sv = SettingsVersion_v1_9;
7390
7391 // "accelerate 2d video" requires settings version 1.8
7392 if ( (m->sv < SettingsVersion_v1_8)
7393 && (hardwareMachine.fAccelerate2DVideo)
7394 )
7395 m->sv = SettingsVersion_v1_8;
7396
7397 // The hardware versions other than "1" requires settings version 1.4 (2.1+).
7398 if ( m->sv < SettingsVersion_v1_4
7399 && hardwareMachine.strVersion != "1"
7400 )
7401 m->sv = SettingsVersion_v1_4;
7402}
7403
7404/**
7405 * Called from Main code to write a machine config file to disk. This builds a DOM tree from
7406 * the member variables and then writes the XML file; it throws xml::Error instances on errors,
7407 * in particular if the file cannot be written.
7408 */
7409void MachineConfigFile::write(const com::Utf8Str &strFilename)
7410{
7411 try
7412 {
7413 // createStubDocument() sets the settings version to at least 1.7; however,
7414 // we might need to enfore a later settings version if incompatible settings
7415 // are present:
7416 bumpSettingsVersionIfNeeded();
7417
7418 m->strFilename = strFilename;
7419 specialBackupIfFirstBump();
7420 createStubDocument();
7421
7422 xml::ElementNode *pelmMachine = m->pelmRoot->createChild("Machine");
7423 buildMachineXML(*pelmMachine,
7424 MachineConfigFile::BuildMachineXML_IncludeSnapshots
7425 | MachineConfigFile::BuildMachineXML_MediaRegistry,
7426 // but not BuildMachineXML_WriteVBoxVersionAttribute
7427 NULL); /* pllElementsWithUuidAttributes */
7428
7429 // now go write the XML
7430 xml::XmlFileWriter writer(*m->pDoc);
7431 writer.write(m->strFilename.c_str(), true /*fSafe*/);
7432
7433 m->fFileExists = true;
7434 clearDocument();
7435 }
7436 catch (...)
7437 {
7438 clearDocument();
7439 throw;
7440 }
7441}
Note: See TracBrowser for help on using the repository browser.

© 2024 Oracle Support Privacy / Do Not Sell My Info Terms of Use Trademark Policy Automated Access Etiquette