📄 registry.cpp
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//*******************************************************************************
// COPYRIGHT NOTES
// ---------------
// This source code is a part of BCGControlBar library.
// You may use, compile or redistribute it as part of your application
// for free. You cannot redistribute it as a part of a software development
// library without the agreement of the author. If the sources are
// distributed along with the application, you should leave the original
// copyright notes in the source code without any changes.
// This code can be used WITHOUT ANY WARRANTIES on your own risk.
//
// Stas Levin <stas@iet.co.il>
//*******************************************************************************
/////////////////////////////////////////////////////////////////////////////
// Copyright (C) 1998 by Shane Martin
// All rights reserved
//
// Distribute freely, except: don't remove my name from the source or
// documentation (don't take credit for my work), mark your changes (don't
// get me blamed for your possible bugs), don't alter or remove this
// notice.
// No warrantee of any kind, express or implied, is included with this
// software; use at your own risk, responsibility for damages (if any) to
// anyone resulting from the use of this software rests entirely with the
// user.
//
// Send bug reports, bug fixes, enhancements, requests, flames, etc., and
// I'll try to keep a version up to date. I can be reached as follows:
// shane.kim@kaiserslautern.netsurf.de
/////////////////////////////////////////////////////////////////////////////
// last revised: 24 Apr 98
// Registry.cpp : implementation file
//
// Description:
// CBCGRegistry is a wrapper for the Windows Registry API. It allows
// easy modification of the Registry with easy to remember terms like
// Read, Write, Open, and Close.
#include "stdafx.h"
#include "Registry.h"
#define READ_ONLY_KEYS (KEY_QUERY_VALUE | KEY_ENUMERATE_SUB_KEYS | KEY_NOTIFY)
CBCGRegistry::CBCGRegistry(BOOL bAdmin, BOOL bReadOnly) :
m_bReadOnly (bReadOnly)
{
m_hKey = bAdmin ? HKEY_LOCAL_MACHINE : HKEY_CURRENT_USER;
}
CBCGRegistry::~CBCGRegistry()
{
Close();
}
BOOL CBCGRegistry::VerifyKey (LPCTSTR pszPath)
{
ASSERT (m_hKey);
CString strPath = pszPath;
int iPathLen = strPath.GetLength ();
if (iPathLen > 0 && strPath [iPathLen - 1] == _T('\\'))
{
strPath = strPath.Left (iPathLen - 1);
}
LONG ReturnValue = RegOpenKeyEx (m_hKey, strPath, 0L,
m_bReadOnly ? READ_ONLY_KEYS : KEY_ALL_ACCESS, &m_hKey);
m_Info.lMessage = ReturnValue;
m_Info.dwSize = 0L;
m_Info.dwType = 0L;
if(ReturnValue == ERROR_SUCCESS)
return TRUE;
return FALSE;
}
BOOL CBCGRegistry::VerifyValue (LPCTSTR pszValue)
{
ASSERT(m_hKey);
LONG lReturn = RegQueryValueEx(m_hKey, pszValue, NULL,
NULL, NULL, NULL);
m_Info.lMessage = lReturn;
m_Info.dwSize = 0L;
m_Info.dwType = 0L;
if(lReturn == ERROR_SUCCESS)
return TRUE;
return FALSE;
}
BOOL CBCGRegistry::CreateKey (LPCTSTR pszPath)
{
if (m_bReadOnly)
{
ASSERT (FALSE);
return FALSE;
}
ASSERT (pszPath != NULL);
HKEY hKeySave = m_hKey;
CString strPath = pszPath;
int iPathLen = strPath.GetLength ();
if (iPathLen > 0 && strPath [iPathLen - 1] == _T('\\'))
{
strPath = strPath.Left (iPathLen - 1);
}
DWORD dw;
LONG ReturnValue = RegCreateKeyEx (m_hKey, strPath, 0L, NULL,
REG_OPTION_NON_VOLATILE, KEY_ALL_ACCESS, NULL,
&m_hKey, &dw);
m_Info.lMessage = ReturnValue;
m_Info.dwSize = 0L;
m_Info.dwType = 0L;
if(ReturnValue == ERROR_SUCCESS)
return TRUE;
TRACE(_T("Can't create registry key: %s\n"), strPath);
m_hKey = hKeySave;
return FALSE;
}
BOOL CBCGRegistry::Open (LPCTSTR pszPath)
{
ASSERT (pszPath != NULL);
HKEY hKeySave = m_hKey;
m_sPath = pszPath;
CString strPath = pszPath;
int iPathLen = strPath.GetLength ();
if (iPathLen > 0 && strPath [iPathLen - 1] == _T('\\'))
{
strPath = strPath.Left (iPathLen - 1);
}
LONG ReturnValue = RegOpenKeyEx (m_hKey, strPath, 0L,
m_bReadOnly ? READ_ONLY_KEYS : KEY_ALL_ACCESS, &m_hKey);
m_Info.lMessage = ReturnValue;
m_Info.dwSize = 0L;
m_Info.dwType = 0L;
if(ReturnValue == ERROR_SUCCESS)
return TRUE;
m_hKey = hKeySave;
return FALSE;
}
void CBCGRegistry::Close()
{
if (m_hKey)
{
RegCloseKey (m_hKey);
m_hKey = NULL;
}
}
BOOL CBCGRegistry::Write (LPCTSTR pszKey, int iVal)
{
if (m_bReadOnly)
{
ASSERT (FALSE);
return FALSE;
}
DWORD dwValue;
ASSERT(m_hKey);
ASSERT(pszKey);
dwValue = (DWORD)iVal;
LONG ReturnValue = RegSetValueEx (m_hKey, pszKey, 0L, REG_DWORD,
(CONST BYTE*) &dwValue, sizeof(DWORD));
m_Info.lMessage = ReturnValue;
m_Info.dwSize = sizeof(DWORD);
m_Info.dwType = REG_DWORD;
if(ReturnValue == ERROR_SUCCESS)
return TRUE;
return FALSE;
}
BOOL CBCGRegistry::Write (LPCTSTR pszKey, DWORD dwVal)
{
if (m_bReadOnly)
{
ASSERT (FALSE);
return FALSE;
}
ASSERT(m_hKey);
ASSERT(pszKey);
return RegSetValueEx (m_hKey, pszKey, 0L, REG_DWORD,
(CONST BYTE*) &dwVal, sizeof(DWORD));
}
BOOL CBCGRegistry::Write (LPCTSTR pszKey, LPCTSTR pszData)
{
if (m_bReadOnly)
{
ASSERT (FALSE);
return FALSE;
}
ASSERT(m_hKey);
ASSERT(pszKey);
ASSERT(pszData);
ASSERT(AfxIsValidAddress(pszData, _tcslen(pszData), FALSE));
LONG ReturnValue = RegSetValueEx (m_hKey, pszKey, 0L, REG_SZ,
(CONST BYTE*) pszData, _tcslen(pszData) + 1);
m_Info.lMessage = ReturnValue;
m_Info.dwSize = _tcslen(pszData) + 1;
m_Info.dwType = REG_SZ;
if(ReturnValue == ERROR_SUCCESS)
return TRUE;
return FALSE;
}
BOOL CBCGRegistry::Write (LPCTSTR pszKey, CStringList& scStringList)
{
if (m_bReadOnly)
{
ASSERT (FALSE);
return FALSE;
}
ASSERT(m_hKey);
ASSERT(pszKey);
const int iMaxChars = 4096;
BYTE* byData = (BYTE*)::calloc(iMaxChars, sizeof(TCHAR));
ASSERT(byData);
CMemFile file(byData, iMaxChars, 16);
CArchive ar(&file, CArchive::store);
ASSERT(scStringList.IsSerializable());
scStringList.Serialize(ar);
ar.Close();
const DWORD dwLen = file.GetLength();
ASSERT(dwLen < iMaxChars);
LONG lReturn = RegSetValueEx(m_hKey, pszKey, 0, REG_BINARY,
file.Detach(), dwLen);
m_Info.lMessage = lReturn;
m_Info.dwSize = dwLen;
m_Info.dwType = REG_BINARY;
if(byData)
{
free(byData);
byData = NULL;
}
if(lReturn == ERROR_SUCCESS)
return TRUE;
return FALSE;
}
BOOL CBCGRegistry::Write (LPCTSTR pszKey, CObList& list)
{
if (m_bReadOnly)
{
ASSERT (FALSE);
return FALSE;
}
BOOL bRes = FALSE;
try
{
CMemFile file;
{
CArchive ar (&file, CArchive::store);
list.Serialize (ar);
ar.Flush ();
}
DWORD dwDataSize = file.GetLength ();
LPBYTE lpbData = file.Detach ();
if (lpbData == NULL)
{
return FALSE;
}
bRes = Write (pszKey, lpbData, (UINT) dwDataSize);
free (lpbData);
}
catch (CMemoryException* pEx)
{
pEx->Delete ();
TRACE(_T("Memory exception in CBCGRegistry::Write ()!\n"));
return FALSE;
}
return bRes;
}
BOOL CBCGRegistry::Write (LPCTSTR pszKey, CObject& obj)
{
if (m_bReadOnly)
{
ASSERT (FALSE);
return FALSE;
}
BOOL bRes = FALSE;
try
{
CMemFile file;
{
CArchive ar (&file, CArchive::store);
obj.Serialize (ar);
ar.Flush ();
}
DWORD dwDataSize = file.GetLength ();
LPBYTE lpbData = file.Detach ();
if (lpbData == NULL)
{
return FALSE;
}
bRes = Write (pszKey, lpbData, (UINT) dwDataSize);
free (lpbData);
}
catch (CMemoryException* pEx)
{
pEx->Delete ();
TRACE(_T("Memory exception in CBCGRegistry::Write ()!\n"));
return FALSE;
}
return bRes;
}
BOOL CBCGRegistry::Write (LPCTSTR pszKey, CByteArray& bcArray)
{
if (m_bReadOnly)
{
ASSERT (FALSE);
return FALSE;
}
ASSERT(m_hKey);
ASSERT(pszKey);
const int iMaxChars = 4096;
BYTE* byData = (BYTE*)::calloc(iMaxChars, sizeof(TCHAR));
ASSERT(byData);
CMemFile file(byData, iMaxChars, 16);
CArchive ar(&file, CArchive::store);
ASSERT(bcArray.IsSerializable());
bcArray.Serialize(ar);
ar.Close();
const DWORD dwLen = file.GetLength();
ASSERT(dwLen < iMaxChars);
LONG lReturn = RegSetValueEx(m_hKey, pszKey, 0, REG_BINARY,
file.Detach(), dwLen);
m_Info.lMessage = lReturn;
m_Info.dwSize = dwLen;
m_Info.dwType = REG_BINARY;
if(byData)
{
free(byData);
byData = NULL;
}
if(lReturn == ERROR_SUCCESS)
return TRUE;
return FALSE;
}
BOOL CBCGRegistry::Write (LPCTSTR pszKey, CDWordArray& dwcArray)
{
ASSERT (m_hKey != NULL);
ASSERT (pszKey != NULL);
if (m_bReadOnly)
{
ASSERT (FALSE);
return FALSE;
}
BOOL bRes = FALSE;
try
{
CMemFile file;
{
CArchive ar (&file, CArchive::store);
dwcArray.Serialize(ar);
ar.Flush ();
}
DWORD dwDataSize = file.GetLength ();
LPBYTE lpbData = file.Detach ();
if (lpbData == NULL)
{
return FALSE;
}
bRes = Write (pszKey, lpbData, (UINT) dwDataSize);
free (lpbData);
}
catch (CMemoryException* pEx)
{
pEx->Delete ();
TRACE(_T("Memory exception in CBCGRegistry::Write ()!\n"));
return FALSE;
}
return bRes;
/*
const int iMaxChars = 4096;
LPBYTE lpData = new BYTE [iMaxChars];
ASSERT (lpData != NULL);
CMemFile file (lpData, iMaxChars, 16);
CArchive ar(&file, CArchive::store);
ASSERT(dwcArray.IsSerializable());
dwcArray.Serialize(ar);
ar.Close();
const DWORD dwLen = file.GetLength();
ASSERT(dwLen < iMaxChars);
LONG lReturn = RegSetValueEx(m_hKey, pszKey, 0, REG_BINARY,
file.Detach(), dwLen);
m_Info.lMessage = lReturn;
m_Info.dwSize = dwLen;
m_Info.dwType = REG_BINARY;
delete lpData;
return (lReturn == ERROR_SUCCESS);*/
}
BOOL CBCGRegistry::Write (LPCTSTR pszKey, CWordArray& wcArray)
{
if (m_bReadOnly)
{
ASSERT (FALSE);
return FALSE;
}
BOOL bRes = FALSE;
try
{
CMemFile file;
{
CArchive ar (&file, CArchive::store);
ar << wcArray.GetSize ();
for (int i = 0; i < wcArray.GetSize (); i ++)
{
ar << wcArray [i];
}
ar.Flush ();
}
DWORD dwDataSize = file.GetLength ();
LPBYTE lpbData = file.Detach ();
if (lpbData == NULL)
{
return FALSE;
}
bRes = Write (pszKey, lpbData, (UINT) dwDataSize);
free (lpbData);
}
catch (CMemoryException* pEx)
{
pEx->Delete ();
TRACE(_T("Memory exception in CBCGRegistry::Write ()!\n"));
return FALSE;
}
return bRes;
}
BOOL CBCGRegistry::Write (LPCTSTR pszKey, CStringArray& scArray)
{
if (m_bReadOnly)
{
ASSERT (FALSE);
return FALSE;
}
ASSERT(m_hKey);
ASSERT(pszKey);
const int iMaxChars = 4096;
BYTE* byData = (BYTE*)::calloc(iMaxChars, sizeof(TCHAR));
ASSERT(byData);
CMemFile file(byData, iMaxChars, 16);
CArchive ar(&file, CArchive::store);
ASSERT(scArray.IsSerializable());
scArray.Serialize(ar);
ar.Close();
const DWORD dwLen = file.GetLength();
ASSERT(dwLen < iMaxChars);
LONG lReturn = RegSetValueEx(m_hKey, pszKey, 0, REG_BINARY,
file.Detach(), dwLen);
m_Info.lMessage = lReturn;
m_Info.dwSize = dwLen;
m_Info.dwType = REG_BINARY;
if(byData)
{
free(byData);
byData = NULL;
}
if(lReturn == ERROR_SUCCESS)
return TRUE;
return FALSE;
}
BOOL CBCGRegistry::Write(LPCTSTR pszKey, const CRect& rect)
{
if (m_bReadOnly)
{
ASSERT (FALSE);
return FALSE;
}
BOOL bRes = FALSE;
try
{
CMemFile file;
{
CArchive ar (&file, CArchive::store);
ar << rect;
ar.Flush ();
}
DWORD dwDataSize = file.GetLength ();
LPBYTE lpbData = file.Detach ();
if (lpbData == NULL)
{
return FALSE;
}
bRes = Write (pszKey, lpbData, (UINT) dwDataSize);
free (lpbData);
}
catch (CMemoryException* pEx)
{
pEx->Delete ();
TRACE(_T("Memory exception in CBCGRegistry::Write ()!\n"));
return FALSE;
}
return bRes;
}
BOOL CBCGRegistry::Write(LPCTSTR pszKey, LPPOINT& lpPoint)
{
if (m_bReadOnly)
{
ASSERT (FALSE);
return FALSE;
}
ASSERT(m_hKey);
ASSERT(pszKey);
const int iMaxChars = 20;
CDWordArray dwcArray;
BYTE* byData = (BYTE*)::calloc(iMaxChars, sizeof(TCHAR));
ASSERT(byData);
dwcArray.SetSize(5);
dwcArray.SetAt(0, lpPoint->x);
dwcArray.SetAt(1, lpPoint->y);
CMemFile file(byData, iMaxChars, 16);
CArchive ar(&file, CArchive::store);
ASSERT(dwcArray.IsSerializable());
dwcArray.Serialize(ar);
ar.Close();
const DWORD dwLen = file.GetLength();
ASSERT(dwLen < iMaxChars);
LONG lReturn = RegSetValueEx(m_hKey, pszKey, 0, REG_BINARY,
file.Detach(), dwLen);
m_Info.lMessage = lReturn;
m_Info.dwSize = dwLen;
m_Info.dwType = REG_POINT;
if(byData)
{
free(byData);
byData = NULL;
}
if(lReturn == ERROR_SUCCESS)
return TRUE;
return FALSE;
}
BOOL CBCGRegistry::Write (LPCTSTR pszKey, LPBYTE pData, UINT nBytes)
{
if (m_bReadOnly)
{
ASSERT (FALSE);
return FALSE;
}
ASSERT (m_hKey != NULL);
ASSERT (pszKey != NULL);
ASSERT (pData != NULL);
ASSERT (AfxIsValidAddress (pData, nBytes, FALSE));
LONG lResult = ::RegSetValueEx (m_hKey, pszKey, NULL, REG_BINARY,
pData, nBytes);
m_Info.lMessage = lResult;
m_Info.dwSize = nBytes;
m_Info.dwType = REG_BINARY;
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