/* $Id: ApplianceImpl.h $ */ /** @file * VirtualBox COM class implementation */ /* * Copyright (C) 2006-2023 Oracle and/or its affiliates. * * This file is part of VirtualBox base platform packages, as * available from https://www.virtualbox.org. * * This program is free software; you can redistribute it and/or * modify it under the terms of the GNU General Public License * as published by the Free Software Foundation, in version 3 of the * License. * * This program is distributed in the hope that it will be useful, but * WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, see . * * SPDX-License-Identifier: GPL-3.0-only */ #ifndef MAIN_INCLUDED_ApplianceImpl_h #define MAIN_INCLUDED_ApplianceImpl_h #ifndef RT_WITHOUT_PRAGMA_ONCE # pragma once #endif /* VBox includes */ #include "VirtualSystemDescriptionWrap.h" #include "ApplianceWrap.h" #include "MediumFormatImpl.h" /** @todo This file needs massive cleanup. Split IAppliance in a public and * private classes. */ #include "ovfreader.h" #include /* VBox forward declarations */ class Certificate; class Progress; class VirtualSystemDescription; struct VirtualSystemDescriptionEntry; struct LocationInfo; typedef struct VDINTERFACE *PVDINTERFACE; typedef struct VDINTERFACEIO *PVDINTERFACEIO; typedef struct SHASTORAGE *PSHASTORAGE; namespace ovf { struct HardDiskController; struct VirtualSystem; class OVFReader; struct DiskImage; struct EnvelopeData; } namespace xml { class Document; class ElementNode; } namespace settings { class MachineConfigFile; } class ATL_NO_VTABLE Appliance : public ApplianceWrap { public: DECLARE_COMMON_CLASS_METHODS(Appliance) HRESULT FinalConstruct(); void FinalRelease(); HRESULT init(VirtualBox *aVirtualBox); void uninit(); /* public methods only for internal purposes */ static HRESULT i_setErrorStatic(HRESULT aResultCode, const char *aText, ...) { va_list va; va_start(va, aText); HRESULT hrc = setErrorInternalV(aResultCode, getStaticClassIID(), getStaticComponentName(), aText, va, false, true); va_end(va); return hrc; } /* private instance data */ private: // wrapped IAppliance properties HRESULT getPath(com::Utf8Str &aPath); HRESULT getDisks(std::vector &aDisks); HRESULT getCertificate(ComPtr &aCertificateInfo); HRESULT getVirtualSystemDescriptions(std::vector > &aVirtualSystemDescriptions); HRESULT getMachines(std::vector &aMachines); // wrapped IAppliance methods HRESULT read(const com::Utf8Str &aFile, ComPtr &aProgress); HRESULT interpret(); HRESULT importMachines(const std::vector &aOptions, ComPtr &aProgress); HRESULT createVFSExplorer(const com::Utf8Str &aURI, ComPtr &aExplorer); HRESULT write(const com::Utf8Str &aFormat, const std::vector &aOptions, const com::Utf8Str &aPath, ComPtr &aProgress); HRESULT getWarnings(std::vector &aWarnings); HRESULT getPasswordIds(std::vector &aIdentifiers); HRESULT getMediumIdsForPasswordId(const com::Utf8Str &aPasswordId, std::vector &aIdentifiers); HRESULT addPasswords(const std::vector &aIdentifiers, const std::vector &aPasswords); HRESULT createVirtualSystemDescriptions(ULONG aRequested, ULONG *aCreated); /** weak VirtualBox parent */ VirtualBox* const mVirtualBox; struct ImportStack; class TaskOVF; class TaskOPC; class TaskCloud; struct Data; // opaque, defined in ApplianceImpl.cpp Data *m; enum SetUpProgressMode { ImportFile, ImportS3, WriteFile, WriteS3, ExportCloud, ImportCloud }; enum ApplianceState { ApplianceIdle, ApplianceImporting, ApplianceExporting }; void i_setApplianceState(const ApplianceState &state); /** @name General stuff * @{ */ bool i_isApplianceIdle(); HRESULT i_searchUniqueVMName(Utf8Str &aName) const; HRESULT i_ensureUniqueImageFilePath(const Utf8Str &aMachineFolder, DeviceType_T aDeviceType, Utf8Str &aName) const; HRESULT i_setUpProgress(ComObjPtr &pProgress, const Utf8Str &strDescription, SetUpProgressMode mode); void i_addWarning(const char* aWarning, ...); void i_disksWeight(); void i_parseBucket(Utf8Str &aPath, Utf8Str &aBucket); static void i_importOrExportThreadTask(TaskOVF *pTask); static void i_exportOPCThreadTask(TaskOPC *pTask); static void i_importOrExportCloudThreadTask(TaskCloud *pTask); HRESULT i_initBackendNames(); Utf8Str i_typeOfVirtualDiskFormatFromURI(Utf8Str type) const; #if 0 /* unused */ std::set i_URIFromTypeOfVirtualDiskFormat(Utf8Str type); #endif HRESULT i_findMediumFormatFromDiskImage(const ovf::DiskImage &di, ComObjPtr& mf); RTVFSIOSTREAM i_manifestSetupDigestCalculationForGivenIoStream(RTVFSIOSTREAM hVfsIos, const char *pszManifestEntry, bool fRead = true); /** @} */ /** @name Read stuff * @{ */ HRESULT i_readImpl(const LocationInfo &aLocInfo, ComObjPtr &aProgress); HRESULT i_readFS(TaskOVF *pTask); HRESULT i_readFSOVF(TaskOVF *pTask); HRESULT i_readFSOVA(TaskOVF *pTask); HRESULT i_readOVFFile(TaskOVF *pTask, RTVFSIOSTREAM hIosOvf, const char *pszManifestEntry); HRESULT i_readManifestFile(TaskOVF *pTask, RTVFSIOSTREAM hIosMf, const char *pszSubFileNm); HRESULT i_readSignatureFile(TaskOVF *pTask, RTVFSIOSTREAM hIosCert, const char *pszSubFileNm); HRESULT i_readTailProcessing(TaskOVF *pTask); HRESULT i_readTailProcessingGetManifestData(void **ppvData, size_t *pcbData); HRESULT i_readTailProcessingSignedData(PRTERRINFOSTATIC pErrInfo); HRESULT i_readTailProcessingVerifySelfSignedOvfCert(TaskOVF *pTask, RTCRSTORE hTrustedCerts, PRTERRINFOSTATIC pErrInfo); HRESULT i_readTailProcessingVerifyIssuedOvfCert(TaskOVF *pTask, RTCRSTORE hTrustedStore, PRTERRINFOSTATIC pErrInfo); HRESULT i_readTailProcessingVerifyContentInfoCerts(void const *pvData, size_t cbData, RTCRSTORE hTrustedStore, PRTERRINFOSTATIC pErrInfo); HRESULT i_readTailProcessingVerifyAnalyzeSignerInfo(void const *pvData, size_t cbData, RTCRSTORE hTrustedStore, uint32_t iSigner, PRTTIMESPEC pNow, int vrc, PRTERRINFOSTATIC pErrInfo, PRTCRSTORE phTrustedStore2); HRESULT i_readTailProcessingVerifyContentInfoFailOne(const char *pszSignature, int vrc, PRTERRINFOSTATIC pErrInfo); HRESULT i_gettingCloudData(TaskCloud *pTask); /** @} */ /** @name Import stuff * @{ */ HRESULT i_importImpl(const LocationInfo &aLocInfo, ComObjPtr &aProgress); HRESULT i_importFS(TaskOVF *pTask); HRESULT i_importFSOVF(TaskOVF *pTask, AutoWriteLockBase &rWriteLock); HRESULT i_importFSOVA(TaskOVF *pTask, AutoWriteLockBase &rWriteLock); HRESULT i_importDoIt(TaskOVF *pTask, AutoWriteLockBase &rWriteLock, RTVFSFSSTREAM hVfsFssOva = NIL_RTVFSFSSTREAM); HRESULT i_verifyManifestFile(ImportStack &stack); void i_convertDiskAttachmentValues(const ovf::HardDiskController &hdc, uint32_t ulAddressOnParent, Utf8Str &controllerName, int32_t &lControllerPort, int32_t &lDevice); void i_importOneDiskImage(const ovf::DiskImage &di, const Utf8Str &strDstPath, ComObjPtr &pTargetMedium, ImportStack &stack); void i_importMachineGeneric(const ovf::VirtualSystem &vsysThis, ComObjPtr &vsdescThis, ComPtr &pNewMachineRet, ImportStack &stack); void i_importVBoxMachine(ComObjPtr &vsdescThis, ComPtr &pNewMachine, ImportStack &stack); void i_importMachines(ImportStack &stack); HRESULT i_verifyStorageControllerPortValid(const StorageControllerType_T aStorageControllerType, const uint32_t aControllerPort, ULONG *ulMaxPorts); HRESULT i_preCheckImageAvailability(ImportStack &stack); bool i_importEnsureOvaLookAhead(ImportStack &stack); RTVFSIOSTREAM i_importOpenSourceFile(ImportStack &stack, Utf8Str const &rstrSrcPath, const char *pszManifestEntry); HRESULT i_importCreateAndWriteDestinationFile(Utf8Str const &rstrDstPath, RTVFSIOSTREAM hVfsIosSrc, Utf8Str const &rstrSrcLogNm); void i_importCopyFile(ImportStack &stack, Utf8Str const &rstrSrcPath, Utf8Str const &rstrDstPath, const char *pszManifestEntry); void i_importDecompressFile(ImportStack &stack, Utf8Str const &rstrSrcPath, Utf8Str const &rstrDstPath, const char *pszManifestEntry); HRESULT i_importCloudImpl(TaskCloud *pTask); /** @} */ /** @name Write stuff * @{ */ HRESULT i_writeImpl(ovf::OVFVersion_T aFormat, const LocationInfo &aLocInfo, ComObjPtr &aProgress); HRESULT i_writeOPCImpl(ovf::OVFVersion_T aFormat, const LocationInfo &aLocInfo, ComObjPtr &aProgress); HRESULT i_writeCloudImpl(const LocationInfo &aLocInfo, ComObjPtr &aProgress); HRESULT i_writeFS(TaskOVF *pTask); HRESULT i_writeFSOVF(TaskOVF *pTask, AutoWriteLockBase& writeLock); HRESULT i_writeFSOVA(TaskOVF *pTask, AutoWriteLockBase& writeLock); HRESULT i_writeFSOPC(TaskOPC *pTask); HRESULT i_exportCloudImpl(TaskCloud *pTask); HRESULT i_writeFSImpl(TaskOVF *pTask, AutoWriteLockBase &writeLock, RTVFSFSSTREAM hVfsFssDst); HRESULT i_writeBufferToFile(RTVFSFSSTREAM hVfsFssDst, const char *pszFilename, const void *pvContent, size_t cbContent); struct XMLStack; void i_buildXML(AutoWriteLockBase& writeLock, xml::Document &doc, XMLStack &stack, const Utf8Str &strPath, ovf::OVFVersion_T enFormat); void i_buildXMLForOneVirtualSystem(AutoWriteLockBase& writeLock, xml::ElementNode &elmToAddVirtualSystemsTo, std::list *pllElementsWithUuidAttributes, ComObjPtr &vsdescThis, ovf::OVFVersion_T enFormat, XMLStack &stack); /** @} */ friend class Machine; friend class Certificate; }; void i_parseURI(Utf8Str strUri, LocationInfo &locInfo); struct VirtualSystemDescriptionEntry { uint32_t ulIndex; ///< zero-based index of this entry within array VirtualSystemDescriptionType_T type; ///< type of this entry Utf8Str strRef; ///< reference number (hard disk controllers only) Utf8Str strOvf; ///< original OVF value (type-dependent) Utf8Str strVBoxSuggested; ///< configuration value (type-dependent); original value suggested by interpret() Utf8Str strVBoxCurrent; ///< configuration value (type-dependent); current value, either from interpret() or setFinalValue() Utf8Str strExtraConfigSuggested; ///< extra configuration key=value strings (type-dependent); original value suggested by interpret() Utf8Str strExtraConfigCurrent; ///< extra configuration key=value strings (type-dependent); current value, either from interpret() or setFinalValue() uint32_t ulSizeMB; ///< hard disk images only: a copy of ovf::DiskImage::ulSuggestedSizeMB bool skipIt; ///< used during export to skip some parts if it's needed }; class ATL_NO_VTABLE VirtualSystemDescription : public VirtualSystemDescriptionWrap { friend class Appliance; public: DECLARE_COMMON_CLASS_METHODS(VirtualSystemDescription) HRESULT FinalConstruct(); void FinalRelease(); HRESULT init(); void uninit(); /* public methods only for internal purposes */ void i_addEntry(VirtualSystemDescriptionType_T aType, const Utf8Str &strRef, const Utf8Str &aOvfValue, const Utf8Str &aVBoxValue, uint32_t ulSizeMB = 0, const Utf8Str &strExtraConfig = ""); std::list i_findByType(VirtualSystemDescriptionType_T aType); const VirtualSystemDescriptionEntry* i_findControllerFromID(const Utf8Str &id); const VirtualSystemDescriptionEntry* i_findByIndex(const uint32_t aIndex); void i_importVBoxMachineXML(const xml::ElementNode &elmMachine); const settings::MachineConfigFile* i_getMachineConfig() const; /* private instance data */ private: // wrapped IVirtualSystemDescription properties HRESULT getCount(ULONG *aCount); // wrapped IVirtualSystemDescription methods HRESULT getDescription(std::vector &aTypes, std::vector &aRefs, std::vector &aOVFValues, std::vector &aVBoxValues, std::vector &aExtraConfigValues); HRESULT getDescriptionByType(VirtualSystemDescriptionType_T aType, std::vector &aTypes, std::vector &aRefs, std::vector &aOVFValues, std::vector &aVBoxValues, std::vector &aExtraConfigValues); HRESULT getValuesByType(VirtualSystemDescriptionType_T aType, VirtualSystemDescriptionValueType_T aWhich, std::vector &aValues); HRESULT setFinalValues(const std::vector &aEnabled, const std::vector &aVBoxValues, const std::vector &aExtraConfigValues); HRESULT addDescription(VirtualSystemDescriptionType_T aType, const com::Utf8Str &aVBoxValue, const com::Utf8Str &aExtraConfigValue); HRESULT removeDescriptionByType(VirtualSystemDescriptionType_T aType); void i_removeByType(VirtualSystemDescriptionType_T aType); struct Data; Data *m; friend class Machine; }; #endif /* !MAIN_INCLUDED_ApplianceImpl_h */ /* vi: set tabstop=4 shiftwidth=4 expandtab: */