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702 lines
22 KiB
702 lines
22 KiB
#include "shellprv.h"
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#include "propsht.h"
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#include "sencrypt.h"
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#include "datautil.h"
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#define IDM_ENCRYPT 0
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#define IDM_DECRYPT 1
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#define BOOL_UNINIT 5
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// Local fns to this .cpp file
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STDAPI CEncryptionContextMenuHandler_CreateInstance(IUnknown *punk, REFIID riid, void **ppv);
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BOOL InitSinglePrshtNoDlg(FILEPROPSHEETPAGE * pfpsp);
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BOOL InitMultiplePrshtNoDlg(FILEPROPSHEETPAGE* pfpsp);
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// Class definition
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class CEncryptionContextMenu : public IShellExtInit, public IContextMenu
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{
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public:
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CEncryptionContextMenu();
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HRESULT Init_FolderContentsInfo();
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// IUnknown
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STDMETHODIMP QueryInterface(REFIID riid, void **ppv);
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STDMETHODIMP_(ULONG) AddRef(void);
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STDMETHODIMP_(ULONG) Release(void);
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// IContextMenu
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STDMETHODIMP QueryContextMenu(HMENU hmenu, UINT indexMenu, UINT idCmdFirst, UINT idCmdLast, UINT uFlags);
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STDMETHODIMP InvokeCommand(LPCMINVOKECOMMANDINFO pici);
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STDMETHODIMP GetCommandString(UINT_PTR idCmd, UINT uType, UINT *pRes, LPSTR pszName, UINT cchMax);
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// IShellExtInit
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STDMETHODIMP Initialize(LPCITEMIDLIST pidlFolder, IDataObject *pdtobj, HKEY hkeyProgID);
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private:
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virtual ~CEncryptionContextMenu();
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static DWORD CALLBACK EncryptThreadProc(void *pv) { return ((CEncryptionContextMenu *) pv)->_Encrypt(); };
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DWORD _Encrypt();
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BOOL _InitPrsht(FILEPROPSHEETPAGE * pfpsp);
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BOOL _AreFilesEncryptable(IDataObject *pdtobj);
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LONG _cRef; // Reference count
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UINT _uFileCount; // number of files selected
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HWND _hwnd; // Window that we're working over
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BOOL _fEncrypt; // If true, do encrypt; if false, do decrypt
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FILEPROPSHEETPAGE _fpsp; // Prop sheet page to be filled in and run through properties funcs
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BOOL _fEncryptAllowed; // True iff we are allowed to encrypt
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IDataObject *_pdtobj; // Our data object. Keep in orig. thread
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TCHAR _szPath[MAX_PATH]; // Path of first thing clicked on
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};
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// Constructor & Destructor
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CEncryptionContextMenu::CEncryptionContextMenu() : _cRef(1)
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{
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DllAddRef();
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_fEncryptAllowed = FALSE; // compute this at ::Initialize() time
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_uFileCount = 0;
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_hwnd = 0;
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_fEncrypt = FALSE;
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_pdtobj = NULL;
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ZeroMemory(&_fpsp, sizeof(_fpsp));
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}
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CEncryptionContextMenu::~CEncryptionContextMenu()
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{
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ATOMICRELEASE(_pdtobj);
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if (_fpsp.pfci)
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{
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Release_FolderContentsInfo(_fpsp.pfci);
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}
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DllRelease();
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}
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HRESULT CEncryptionContextMenu::Init_FolderContentsInfo()
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{
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HRESULT hr = E_OUTOFMEMORY;
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_fpsp.pfci = Create_FolderContentsInfo();
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if (_fpsp.pfci)
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{
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hr = S_OK;
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}
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return hr;
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}
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// IUnknown implementation. Standard stuff, nothing fancy.
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HRESULT CEncryptionContextMenu::QueryInterface(REFIID riid, void **ppvObj)
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{
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static const QITAB qit[] = {
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QITABENT(CEncryptionContextMenu, IShellExtInit),
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QITABENT(CEncryptionContextMenu, IContextMenu),
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{ 0 },
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};
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return QISearch(this, qit, riid, ppvObj);
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}
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ULONG CEncryptionContextMenu::AddRef()
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{
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return InterlockedIncrement(&_cRef);
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}
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ULONG CEncryptionContextMenu::Release()
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{
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if (InterlockedDecrement(&_cRef))
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return _cRef;
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delete this;
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return 0;
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}
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// IShellExtInit implementation
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STDMETHODIMP CEncryptionContextMenu::Initialize(LPCITEMIDLIST pidlFolder, IDataObject *pdtobj, HKEY hkeyProgID)
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{
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HRESULT hr = S_FALSE;
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// registry key that enables/disables this menu
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BOOL fEnableEncryptMenu = SHRegGetBoolUSValue(TEXT("SOFTWARE\\Microsoft\\Windows\\CurrentVersion\\Explorer\\Advanced"),
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TEXT("EncryptionContextMenu"), 0, 0);
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if (fEnableEncryptMenu && !SHRestricted(REST_NOENCRYPTION) && !_fEncryptAllowed)
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{
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_fEncryptAllowed = _AreFilesEncryptable(pdtobj);
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if (_fEncryptAllowed)
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{
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IUnknown_Set((IUnknown **)&_pdtobj, pdtobj);
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hr = S_OK;
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}
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}
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return hr;
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}
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// Checks the data object to see if we can encrypt here.
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BOOL CEncryptionContextMenu::_AreFilesEncryptable(IDataObject *pdtobj)
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{
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BOOL fSuccess = FALSE;
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STGMEDIUM medium;
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FORMATETC fe = {CF_HDROP, NULL, DVASPECT_CONTENT, -1, TYMED_HGLOBAL};
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if (SUCCEEDED(pdtobj->GetData(&fe, &medium)))
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{
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// Get the file name from the CF_HDROP.
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_uFileCount = DragQueryFile((HDROP)medium.hGlobal, (UINT)-1, NULL, 0);
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if (_uFileCount)
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{
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if (DragQueryFile((HDROP)medium.hGlobal, 0, _szPath, ARRAYSIZE(_szPath)))
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{
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TCHAR szFileSys[MAX_PATH];
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fSuccess = (FS_FILE_ENCRYPTION & GetVolumeFlags(_szPath, szFileSys, ARRAYSIZE(szFileSys)));
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}
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}
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ReleaseStgMedium(&medium);
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}
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return fSuccess;
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}
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// IContextMenuHandler impelementation
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STDMETHODIMP CEncryptionContextMenu::QueryContextMenu(HMENU hmenu, UINT indexMenu,
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UINT idCmdFirst, UINT idCmdLast, UINT uFlags)
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{
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HRESULT hr = E_FAIL;
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if ((uFlags & CMF_DEFAULTONLY) || !_fEncryptAllowed)
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{
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hr = MAKE_HRESULT(SEVERITY_SUCCESS, 0, USHORT(1)); //this menu only allows the defaults or we can't encrypt
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}
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else
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{
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TCHAR szEncryptMsg[128], szDecryptMsg[128];
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// If only one item is selected, display enc or dec as appropriate
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if (_uFileCount == 1)
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{
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DWORD dwAttribs = GetFileAttributes(_szPath);
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if (dwAttribs != (DWORD)-1)
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{
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LoadString(HINST_THISDLL, IDS_ECM_ENCRYPT, szEncryptMsg, ARRAYSIZE(szEncryptMsg));
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if (!(dwAttribs & FILE_ATTRIBUTE_ENCRYPTED))
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{
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if (InsertMenu(hmenu,
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indexMenu,
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MF_STRING | MF_BYPOSITION,
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idCmdFirst + IDM_ENCRYPT,
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szEncryptMsg))
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{
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hr = MAKE_HRESULT(SEVERITY_SUCCESS, 0, USHORT(IDM_ENCRYPT + 1));
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}
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}
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else
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{
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LoadString(HINST_THISDLL, IDS_ECM_DECRYPT, szDecryptMsg, ARRAYSIZE(szDecryptMsg));
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if (InsertMenu(hmenu,
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indexMenu,
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MF_STRING | MF_BYPOSITION,
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idCmdFirst + IDM_ENCRYPT + 1,
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szDecryptMsg))
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{
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hr = MAKE_HRESULT(SEVERITY_SUCCESS, 0, USHORT(IDM_DECRYPT + 1));
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}
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}
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}
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}
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else if (idCmdLast - idCmdFirst >= 2)
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{
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LoadString(HINST_THISDLL, IDS_ECM_ENCRYPT, szEncryptMsg, ARRAYSIZE(szDecryptMsg));
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LoadString(HINST_THISDLL, IDS_ECM_DECRYPT, szDecryptMsg, ARRAYSIZE(szDecryptMsg));
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// If more than one item is selected, display both enc and dec
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if (InsertMenu(hmenu,
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indexMenu,
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MF_STRING | MF_BYPOSITION,
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idCmdFirst + IDM_ENCRYPT,
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szEncryptMsg))
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{
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if (InsertMenu(hmenu,
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indexMenu + 1,
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MF_STRING | MF_BYPOSITION,
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idCmdFirst + IDM_DECRYPT,
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szDecryptMsg))
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{
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hr = MAKE_HRESULT(SEVERITY_SUCCESS, 0, USHORT(IDM_DECRYPT + 1));
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}
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else
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{
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// If you can't add both, add neither
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RemoveMenu(hmenu, indexMenu, MF_BYPOSITION);
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}
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}
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}
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}
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return hr;
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}
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const ICIVERBTOIDMAP c_IDMap[] =
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{
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{ L"encrypt", "encrypt", IDM_ENCRYPT, IDM_ENCRYPT, },
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{ L"decrypt", "decrypt", IDM_DECRYPT, IDM_DECRYPT, },
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};
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STDMETHODIMP CEncryptionContextMenu::InvokeCommand(LPCMINVOKECOMMANDINFO pici)
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{
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UINT uID;
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HRESULT hr = E_FAIL;
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if (_fEncryptAllowed)
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{
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hr = SHMapICIVerbToCmdID(pici, c_IDMap, ARRAYSIZE(c_IDMap), &uID);
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if (SUCCEEDED(hr))
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{
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switch (uID)
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{
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case IDM_ENCRYPT:
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case IDM_DECRYPT:
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_fEncrypt = (IDM_ENCRYPT == uID);
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break;
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default:
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ASSERTMSG(0, "Should never get commands we didn't put on the menu...");
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break;
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}
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_hwnd = pici->hwnd; // The handle to the explorer window that called us.
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ASSERT(NULL == _fpsp.pfci->hida);
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hr = DataObj_CopyHIDA(_pdtobj, &_fpsp.pfci->hida);
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if (SUCCEEDED(hr))
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{
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AddRef(); // Give our background thread a ref
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// Start the new thread here
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if (SHCreateThread(EncryptThreadProc, this, CTF_COINIT | CTF_FREELIBANDEXIT, NULL))
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{
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hr = S_OK;
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}
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else
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{
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Release(); // thread create failed
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}
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}
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}
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}
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// If we succeeded or not, we give up our data here
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ATOMICRELEASE(_pdtobj);
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return hr;
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}
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STDMETHODIMP CEncryptionContextMenu::GetCommandString(UINT_PTR idCommand, UINT uFlags,
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UINT *pRes, LPSTR pszName, UINT uMaxNameLen)
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{
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HRESULT hr = E_INVALIDARG;
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// Note that because we can be specifically asked for
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// UNICODE or ansi strings, we have to be ready to load all strings in
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// either version.
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if (idCommand == IDM_ENCRYPT ||
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idCommand == IDM_DECRYPT)
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{
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switch(uFlags)
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{
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case GCS_HELPTEXTA:
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if (idCommand == IDM_ENCRYPT)
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{
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LoadStringA(HINST_THISDLL, IDS_ECM_ENCRYPT_HELP, pszName, uMaxNameLen);
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}
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else
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{
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LoadStringA(HINST_THISDLL, IDS_ECM_DECRYPT_HELP, pszName, uMaxNameLen);
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}
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hr = S_OK;
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break;
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case GCS_HELPTEXTW:
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if (idCommand == IDM_ENCRYPT)
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{
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LoadStringW(HINST_THISDLL, IDS_ECM_ENCRYPT_HELP, (LPWSTR)pszName, uMaxNameLen);
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}
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else
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{
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LoadStringW(HINST_THISDLL, IDS_ECM_DECRYPT_HELP, (LPWSTR)pszName, uMaxNameLen);
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}
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hr = S_OK;
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break;
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case GCS_VERBA:
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case GCS_VERBW:
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hr = SHMapCmdIDToVerb(idCommand, c_IDMap, ARRAYSIZE(c_IDMap), pszName, uMaxNameLen, GCS_VERBW == uFlags);
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break;
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default:
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hr = S_OK;
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break;
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}
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}
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return hr;
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}
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STDAPI CEncryptionContextMenuHandler_CreateInstance(IUnknown *punk, REFIID riid, void **ppv)
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{
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HRESULT hr;
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*ppv = NULL;
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CEncryptionContextMenu *pdocp = new CEncryptionContextMenu();
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if (pdocp)
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{
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hr = pdocp->Init_FolderContentsInfo();
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if (SUCCEEDED(hr))
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{
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hr = pdocp->QueryInterface(riid, ppv);
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}
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pdocp->Release();
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}
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else
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{
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hr = E_OUTOFMEMORY;
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}
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return hr;
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}
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// Multithread code
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// Proc for thread that does the encryption and manages the progress dialong.
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// The passed parameter is a ptr hwnd to be made modal for the context menu
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DWORD CEncryptionContextMenu::_Encrypt(void)
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{
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// Transfer ownership in case someone reenters our thread creator
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// Init the property sheet
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BOOL fSuccess = _InitPrsht(&_fpsp);
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if (fSuccess)
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{
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// Set encryption opts, turn off compression
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if (_fEncrypt)
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{
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_fpsp.asCurrent.fCompress = FALSE;
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_fpsp.asCurrent.fEncrypt = TRUE;
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}
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else
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{
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_fpsp.asCurrent.fEncrypt = FALSE;
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}
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// See if the user wants to do this recursive-style
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if (_fpsp.fIsDirectory)
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{
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// check to see if the user wants to apply the attribs recursively or not
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fSuccess = (int)DialogBoxParam(HINST_THISDLL,
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MAKEINTRESOURCE(DLG_ATTRIBS_RECURSIVE),
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_hwnd, RecursivePromptDlgProc, (LPARAM)&_fpsp);
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}
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// Apply encryption, remember to turn off compression
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if (fSuccess)
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{
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if (_fpsp.pfci->fMultipleFiles || _fpsp.fRecursive)
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{
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ApplyMultipleFileAttributes(&_fpsp);
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}
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else
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{
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ApplySingleFileAttributesNoDlg(&_fpsp, _hwnd);
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}
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}
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}
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// As far as I can tell, nothing in fpsp must be freed
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// But, we give up the storage medium here
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Release(); // Release our ref
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return fSuccess; // Must give a ret value
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}
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// Helper to init the passed prsht
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BOOL CEncryptionContextMenu::_InitPrsht(FILEPROPSHEETPAGE * pfpsp)
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{
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// Init the propsht properly
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BOOL fSuccess = S_OK == InitCommonPrsht(pfpsp);
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if (fSuccess)
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{
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if (_uFileCount == 1)
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{
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fSuccess = InitSinglePrshtNoDlg(pfpsp);
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}
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else if (_uFileCount > 1)
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{
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fSuccess = InitMultiplePrshtNoDlg(pfpsp);
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}
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}
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return fSuccess;
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}
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//
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// Descriptions:
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// This function fills fields of the multiple object property sheet,
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// without getting the current state from the dialog.
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//
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BOOL InitMultiplePrshtNoDlg(FILEPROPSHEETPAGE* pfpsp)
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{
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SHFILEINFO sfi;
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TCHAR szBuffer[MAX_PATH+1];
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TCHAR szType[MAX_PATH] = {0};
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TCHAR szDirPath[MAX_PATH] = {0};
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int iItem;
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BOOL fMultipleType = FALSE;
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BOOL fSameLocation = TRUE;
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DWORD dwFlagsOR = 0; // start all clear
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DWORD dwFlagsAND = (DWORD)-1; // start all set
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DWORD dwVolumeFlagsAND = (DWORD)-1; // start all set
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// For all the selected files compare their types and get their attribs
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for (iItem = 0; HIDA_FillFindData(pfpsp->pfci->hida, iItem, szBuffer, NULL, FALSE); iItem++)
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{
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DWORD dwFileAttributes = GetFileAttributes(szBuffer);
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dwFlagsAND &= dwFileAttributes;
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dwFlagsOR |= dwFileAttributes;
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// process types only if we haven't already found that there are several types
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if (!fMultipleType)
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{
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SHGetFileInfo((LPTSTR)IDA_GetIDListPtr((LPIDA)GlobalLock(pfpsp->pfci->hida), iItem), 0,
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&sfi, sizeof(sfi), SHGFI_PIDL|SHGFI_TYPENAME);
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if (szType[0] == TEXT('\0'))
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lstrcpy(szType, sfi.szTypeName);
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else
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fMultipleType = lstrcmp(szType, sfi.szTypeName) != 0;
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}
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dwVolumeFlagsAND &= GetVolumeFlags(szBuffer, pfpsp->szFileSys, ARRAYSIZE(pfpsp->szFileSys));
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// check to see if the files are in the same location
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if (fSameLocation)
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{
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PathRemoveFileSpec(szBuffer);
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if (szDirPath[0] == TEXT('\0'))
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StrCpyN(szDirPath, szBuffer, ARRAYSIZE(szDirPath));
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else
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fSameLocation = (lstrcmpi(szDirPath, szBuffer) == 0);
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}
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}
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if ((dwVolumeFlagsAND & FS_FILE_ENCRYPTION) && !SHRestricted(REST_NOENCRYPTION))
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{
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// all the files are on volumes that support encryption (eg NTFS)
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pfpsp->fIsEncryptionAvailable = TRUE;
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}
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if (dwVolumeFlagsAND & FS_FILE_COMPRESSION)
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{
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pfpsp->pfci->fIsCompressionAvailable = TRUE;
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}
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//
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// HACKHACK (reinerf) - we dont have a FS_SUPPORTS_INDEXING so we
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// use the FILE_SUPPORTS_SPARSE_FILES flag, because native index support
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// appeared first on NTFS5 volumes, at the same time sparse file support
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// was implemented.
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//
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if (dwVolumeFlagsAND & FILE_SUPPORTS_SPARSE_FILES)
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{
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// yup, we are on NTFS5 or greater
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pfpsp->fIsIndexAvailable = TRUE;
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}
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// if any of the files was a directory, then we set this flag
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if (dwFlagsOR & FILE_ATTRIBUTE_DIRECTORY)
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{
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pfpsp->fIsDirectory = TRUE;
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}
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// setup all the flags based on what we found out
|
|
SetInitialFileAttribs(pfpsp, dwFlagsAND, dwFlagsOR);
|
|
|
|
// set the current attributes to the same as the initial
|
|
pfpsp->asCurrent = pfpsp->asInitial;
|
|
|
|
if (fSameLocation)
|
|
{
|
|
LoadString(HINST_THISDLL, IDS_ALLIN, szBuffer, ARRAYSIZE(szBuffer));
|
|
StrCatBuff(szBuffer, szDirPath, ARRAYSIZE(szBuffer));
|
|
StrCpyN(pfpsp->szPath, szDirPath, ARRAYSIZE(pfpsp->szPath));
|
|
}
|
|
|
|
UpdateSizeField(pfpsp, NULL);
|
|
|
|
return TRUE;
|
|
}
|
|
|
|
//
|
|
// Descriptions:
|
|
// This function fills fields of the "general" dialog box (a page of
|
|
// a property sheet) with attributes of the associated file. Doesn't
|
|
// make calss to hDlg
|
|
//
|
|
BOOL InitSinglePrshtNoDlg(FILEPROPSHEETPAGE * pfpsp)
|
|
{
|
|
TCHAR szBuffer[MAX_PATH];
|
|
SHFILEINFO sfi;
|
|
|
|
// fd is filled in with info from the pidl, but this
|
|
// does not contain all the date/time information so hit the disk here.
|
|
HANDLE hfind = FindFirstFile(pfpsp->szPath, &pfpsp->fd);
|
|
ASSERT(hfind != INVALID_HANDLE_VALUE);
|
|
if (hfind == INVALID_HANDLE_VALUE)
|
|
{
|
|
// if this failed we should clear out some values as to not show garbage on the screen.
|
|
ZeroMemory(&pfpsp->fd, sizeof(pfpsp->fd));
|
|
}
|
|
else
|
|
{
|
|
FindClose(hfind);
|
|
}
|
|
|
|
// get info about the file.
|
|
SHGetFileInfo(pfpsp->szPath, pfpsp->fd.dwFileAttributes, &sfi, sizeof(sfi),
|
|
SHGFI_ICON|SHGFI_LARGEICON|
|
|
SHGFI_DISPLAYNAME|
|
|
SHGFI_TYPENAME | SHGFI_ADDOVERLAYS);
|
|
|
|
// .ani cursor hack!
|
|
if (StrCmpI(PathFindExtension(pfpsp->szPath), TEXT(".ani")) == 0)
|
|
{
|
|
HICON hIcon = (HICON)LoadImage(NULL, pfpsp->szPath, IMAGE_ICON, 0, 0, LR_LOADFROMFILE);
|
|
if (hIcon)
|
|
{
|
|
if (sfi.hIcon)
|
|
DestroyIcon(sfi.hIcon);
|
|
|
|
sfi.hIcon = hIcon;
|
|
}
|
|
}
|
|
|
|
// set the initial rename state
|
|
pfpsp->fRename = FALSE;
|
|
|
|
// set the file type
|
|
if (pfpsp->fMountedDrive)
|
|
{
|
|
TCHAR szVolumeGUID[MAX_PATH];
|
|
TCHAR szVolumeLabel[MAX_PATH];
|
|
|
|
//Borrow szVolumeGUID
|
|
LoadString(HINST_THISDLL, IDS_MOUNTEDVOLUME, szVolumeGUID, ARRAYSIZE(szVolumeGUID));
|
|
|
|
//use szVolumeLabel temporarily
|
|
lstrcpy(szVolumeLabel, pfpsp->szPath);
|
|
PathAddBackslash(szVolumeLabel);
|
|
GetVolumeNameForVolumeMountPoint(szVolumeLabel, szVolumeGUID, ARRAYSIZE(szVolumeGUID));
|
|
|
|
if (!GetVolumeInformation(szVolumeGUID, szVolumeLabel, ARRAYSIZE(szVolumeLabel),
|
|
NULL, NULL, NULL, pfpsp->szFileSys, ARRAYSIZE(pfpsp->szFileSys)))
|
|
{
|
|
*szVolumeLabel = 0;
|
|
}
|
|
|
|
if (!(*szVolumeLabel))
|
|
LoadString(HINST_THISDLL, IDS_UNLABELEDVOLUME, szVolumeLabel, ARRAYSIZE(szVolumeLabel));
|
|
}
|
|
|
|
// save off the initial short filename, and set the "Name" edit box
|
|
lstrcpy(pfpsp->szInitialName, sfi.szDisplayName);
|
|
|
|
// use a strcmp to see if we are showing the extension
|
|
if (lstrcmpi(sfi.szDisplayName, PathFindFileName(pfpsp->szPath)) == 0)
|
|
{
|
|
// since the strings are the same, we must be showing the extension
|
|
pfpsp->fShowExtension = TRUE;
|
|
}
|
|
|
|
lstrcpy(szBuffer, pfpsp->szPath);
|
|
PathRemoveFileSpec(szBuffer);
|
|
|
|
// Are we a folder shortcut?
|
|
if (!pfpsp->fFolderShortcut)
|
|
{
|
|
// set the initial attributes
|
|
SetInitialFileAttribs(pfpsp, pfpsp->fd.dwFileAttributes, pfpsp->fd.dwFileAttributes);
|
|
|
|
// set the current attributes to the same as the initial
|
|
pfpsp->asCurrent = pfpsp->asInitial;
|
|
|
|
UpdateSizeField(pfpsp, &pfpsp->fd);
|
|
|
|
if (!(pfpsp->fd.dwFileAttributes & FILE_ATTRIBUTE_DIRECTORY))
|
|
{
|
|
// Check to see if the target file is a lnk, because if it is a lnk then
|
|
// we need to display the type information for the target, not the lnk itself.
|
|
if (PathIsShortcut(pfpsp->szPath, pfpsp->fd.dwFileAttributes))
|
|
{
|
|
pfpsp->fIsLink = TRUE;
|
|
}
|
|
if (!(GetFileAttributes(pfpsp->szPath) & FILE_ATTRIBUTE_OFFLINE))
|
|
{
|
|
UpdateOpensWithInfo(pfpsp);
|
|
}
|
|
}
|
|
else
|
|
{
|
|
pfpsp->fIsDirectory = TRUE;
|
|
}
|
|
|
|
// get the full path to the folder that contains this file.
|
|
StrCpyN(szBuffer, pfpsp->szPath, ARRAYSIZE(szBuffer));
|
|
PathRemoveFileSpec(szBuffer);
|
|
}
|
|
return TRUE;
|
|
}
|
|
|
|
STDAPI_(BOOL) ApplySingleFileAttributesNoDlg(FILEPROPSHEETPAGE* pfpsp, HWND hwnd)
|
|
{
|
|
BOOL bRet = TRUE;
|
|
BOOL bSomethingChanged = FALSE;
|
|
|
|
if (!pfpsp->fRecursive)
|
|
{
|
|
bRet = ApplyFileAttributes(pfpsp->szPath, pfpsp, hwnd, &bSomethingChanged);
|
|
|
|
if (bSomethingChanged)
|
|
{
|
|
// something changed, so generate a notification for the item
|
|
SHChangeNotify(SHCNE_UPDATEITEM, SHCNF_PATH, pfpsp->szPath, NULL);
|
|
}
|
|
}
|
|
else
|
|
{
|
|
// We only should be doing a recursive operation if we have a directory!
|
|
ASSERT(pfpsp->fIsDirectory);
|
|
|
|
CreateAttributeProgressDlg(pfpsp);
|
|
|
|
// apply attribs to this folder & sub files/folders
|
|
bRet = ApplyRecursiveFolderAttribs(pfpsp->szPath, pfpsp);
|
|
|
|
// send out a notification for the whole dir, regardless of the return value since
|
|
// something could have changed even if the user hit cancel
|
|
SHChangeNotify(SHCNE_UPDATEDIR, SHCNF_PATH, pfpsp->szPath, NULL);
|
|
|
|
DestroyAttributeProgressDlg(pfpsp);
|
|
}
|
|
|
|
if (bRet)
|
|
{
|
|
// since we just sucessfully applied attribs, reset any tri-state checkboxes as necessary
|
|
//UpdateTriStateCheckboxes(pfpsp);
|
|
|
|
// the user did NOT hit cancel, so update the prop sheet to reflect the new attribs
|
|
pfpsp->asInitial = pfpsp->asCurrent;
|
|
}
|
|
|
|
// handle any events we may have generated
|
|
SHChangeNotifyHandleEvents();
|
|
|
|
return bRet;
|
|
}
|