mirror of
https://github.com/kasmtech/KasmVNC.git
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259f1055cb
Provides safety against them accidentally becoming negative because of bugs in the calculations. Also does the same to CharArray and friends as they were strongly connection to the stream objects.
312 lines
9.8 KiB
C++
312 lines
9.8 KiB
C++
/* Copyright (C) 2002-2005 RealVNC Ltd. All Rights Reserved.
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*
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* This is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This software is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this software; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
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* USA.
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*/
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// -=- Registry.cxx
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#include <rfb_win32/Registry.h>
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#include <rfb_win32/Security.h>
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#include <rdr/MemOutStream.h>
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#include <rdr/HexOutStream.h>
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#include <rdr/HexInStream.h>
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#include <stdlib.h>
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#include <rfb/LogWriter.h>
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// These flags are required to control access control inheritance,
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// but are not defined by VC6's headers. These definitions comes
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// from the Microsoft Platform SDK.
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#ifndef PROTECTED_DACL_SECURITY_INFORMATION
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#define PROTECTED_DACL_SECURITY_INFORMATION (0x80000000L)
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#endif
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#ifndef UNPROTECTED_DACL_SECURITY_INFORMATION
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#define UNPROTECTED_DACL_SECURITY_INFORMATION (0x20000000L)
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#endif
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using namespace rfb;
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using namespace rfb::win32;
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static LogWriter vlog("Registry");
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RegKey::RegKey() : key(0), freeKey(false), valueNameBufLen(0) {}
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RegKey::RegKey(const HKEY k) : key(0), freeKey(false), valueNameBufLen(0) {
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LONG result = RegOpenKeyEx(k, 0, 0, KEY_ALL_ACCESS, &key);
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if (result != ERROR_SUCCESS)
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throw rdr::SystemException("RegOpenKeyEx(HKEY)", result);
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vlog.debug("duplicated %p to %p", k, key);
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freeKey = true;
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}
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RegKey::RegKey(const RegKey& k) : key(0), freeKey(false), valueNameBufLen(0) {
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LONG result = RegOpenKeyEx(k.key, 0, 0, KEY_ALL_ACCESS, &key);
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if (result != ERROR_SUCCESS)
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throw rdr::SystemException("RegOpenKeyEx(RegKey&)", result);
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vlog.debug("duplicated %p to %p", k.key, key);
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freeKey = true;
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}
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RegKey::~RegKey() {
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close();
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}
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void RegKey::setHKEY(HKEY k, bool fK) {
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vlog.debug("setHKEY(%p,%d)", k, (int)fK);
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close();
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freeKey = fK;
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key = k;
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}
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bool RegKey::createKey(const RegKey& root, const TCHAR* name) {
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close();
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LONG result = RegCreateKey(root.key, name, &key);
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if (result != ERROR_SUCCESS) {
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vlog.error("RegCreateKey(%p, %s): %lx", root.key, name, result);
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throw rdr::SystemException("RegCreateKeyEx", result);
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}
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vlog.debug("createKey(%p,%s) = %p", root.key, (const char*)CStr(name), key);
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freeKey = true;
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return true;
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}
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void RegKey::openKey(const RegKey& root, const TCHAR* name, bool readOnly) {
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close();
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LONG result = RegOpenKeyEx(root.key, name, 0, readOnly ? KEY_READ : KEY_ALL_ACCESS, &key);
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if (result != ERROR_SUCCESS)
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throw rdr::SystemException("RegOpenKeyEx (open)", result);
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vlog.debug("openKey(%p,%s,%s) = %p", root.key, (const char*)CStr(name),
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readOnly ? "ro" : "rw", key);
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freeKey = true;
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}
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void RegKey::setDACL(const PACL acl, bool inherit) {
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DWORD result;
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if ((result = SetSecurityInfo(key, SE_REGISTRY_KEY,
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DACL_SECURITY_INFORMATION |
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(inherit ? UNPROTECTED_DACL_SECURITY_INFORMATION : PROTECTED_DACL_SECURITY_INFORMATION),
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0, 0, acl, 0)) != ERROR_SUCCESS)
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throw rdr::SystemException("RegKey::setDACL failed", result);
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}
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void RegKey::close() {
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if (freeKey) {
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vlog.debug("RegCloseKey(%p)", key);
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RegCloseKey(key);
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key = 0;
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}
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}
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void RegKey::deleteKey(const TCHAR* name) const {
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LONG result = RegDeleteKey(key, name);
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if (result != ERROR_SUCCESS)
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throw rdr::SystemException("RegDeleteKey", result);
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}
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void RegKey::deleteValue(const TCHAR* name) const {
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LONG result = RegDeleteValue(key, name);
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if (result != ERROR_SUCCESS)
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throw rdr::SystemException("RegDeleteValue", result);
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}
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void RegKey::awaitChange(bool watchSubTree, DWORD filter, HANDLE event) const {
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LONG result = RegNotifyChangeKeyValue(key, watchSubTree, filter, event, event != 0);
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if (result != ERROR_SUCCESS)
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throw rdr::SystemException("RegNotifyChangeKeyValue", result);
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}
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RegKey::operator HKEY() const {return key;}
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void RegKey::setExpandString(const TCHAR* valname, const TCHAR* value) const {
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LONG result = RegSetValueEx(key, valname, 0, REG_EXPAND_SZ, (const BYTE*)value, (_tcslen(value)+1)*sizeof(TCHAR));
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if (result != ERROR_SUCCESS) throw rdr::SystemException("setExpandString", result);
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}
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void RegKey::setString(const TCHAR* valname, const TCHAR* value) const {
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LONG result = RegSetValueEx(key, valname, 0, REG_SZ, (const BYTE*)value, (_tcslen(value)+1)*sizeof(TCHAR));
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if (result != ERROR_SUCCESS) throw rdr::SystemException("setString", result);
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}
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void RegKey::setBinary(const TCHAR* valname, const void* value, size_t length) const {
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LONG result = RegSetValueEx(key, valname, 0, REG_BINARY, (const BYTE*)value, length);
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if (result != ERROR_SUCCESS) throw rdr::SystemException("setBinary", result);
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}
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void RegKey::setInt(const TCHAR* valname, int value) const {
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LONG result = RegSetValueEx(key, valname, 0, REG_DWORD, (const BYTE*)&value, sizeof(value));
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if (result != ERROR_SUCCESS) throw rdr::SystemException("setInt", result);
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}
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void RegKey::setBool(const TCHAR* valname, bool value) const {
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setInt(valname, value ? 1 : 0);
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}
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TCHAR* RegKey::getString(const TCHAR* valname) const {return getRepresentation(valname);}
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TCHAR* RegKey::getString(const TCHAR* valname, const TCHAR* def) const {
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try {
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return getString(valname);
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} catch(rdr::Exception&) {
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return tstrDup(def);
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}
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}
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void RegKey::getBinary(const TCHAR* valname, void** data, size_t* length) const {
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TCharArray hex(getRepresentation(valname));
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if (!rdr::HexInStream::hexStrToBin(CStr(hex.buf), (char**)data, length))
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throw rdr::Exception("getBinary failed");
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}
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void RegKey::getBinary(const TCHAR* valname, void** data, size_t* length, void* def, size_t deflen) const {
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try {
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getBinary(valname, data, length);
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} catch(rdr::Exception&) {
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if (deflen) {
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*data = new char[deflen];
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memcpy(*data, def, deflen);
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} else
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*data = 0;
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*length = deflen;
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}
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}
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int RegKey::getInt(const TCHAR* valname) const {
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TCharArray tmp(getRepresentation(valname));
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return _ttoi(tmp.buf);
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}
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int RegKey::getInt(const TCHAR* valname, int def) const {
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try {
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return getInt(valname);
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} catch(rdr::Exception&) {
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return def;
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}
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}
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bool RegKey::getBool(const TCHAR* valname) const {
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return getInt(valname) > 0;
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}
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bool RegKey::getBool(const TCHAR* valname, bool def) const {
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return getInt(valname, def ? 1 : 0) > 0;
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}
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static inline TCHAR* terminateData(char* data, int length)
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{
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// We must terminate the string, just to be sure. Stupid Win32...
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int len = length/sizeof(TCHAR);
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TCharArray str(len+1);
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memcpy(str.buf, data, length);
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str.buf[len] = 0;
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return str.takeBuf();
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}
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TCHAR* RegKey::getRepresentation(const TCHAR* valname) const {
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DWORD type, length;
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LONG result = RegQueryValueEx(key, valname, 0, &type, 0, &length);
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if (result != ERROR_SUCCESS)
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throw rdr::SystemException("get registry value length", result);
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CharArray data(length);
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result = RegQueryValueEx(key, valname, 0, &type, (BYTE*)data.buf, &length);
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if (result != ERROR_SUCCESS)
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throw rdr::SystemException("get registry value", result);
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switch (type) {
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case REG_BINARY:
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{
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TCharArray hex(rdr::HexOutStream::binToHexStr(data.buf, length));
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return hex.takeBuf();
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}
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case REG_SZ:
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if (length) {
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return terminateData(data.buf, length);
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} else {
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return tstrDup(_T(""));
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}
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case REG_DWORD:
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{
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TCharArray tmp(16);
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_stprintf(tmp.buf, _T("%lu"), *((DWORD*)data.buf));
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return tmp.takeBuf();
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}
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case REG_EXPAND_SZ:
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{
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if (length) {
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TCharArray str(terminateData(data.buf, length));
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DWORD required = ExpandEnvironmentStrings(str.buf, 0, 0);
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if (required==0)
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throw rdr::SystemException("ExpandEnvironmentStrings", GetLastError());
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TCharArray result(required);
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length = ExpandEnvironmentStrings(str.buf, result.buf, required);
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if (required<length)
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rdr::Exception("unable to expand environment strings");
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return result.takeBuf();
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} else {
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return tstrDup(_T(""));
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}
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}
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default:
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throw rdr::Exception("unsupported registry type");
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}
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}
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bool RegKey::isValue(const TCHAR* valname) const {
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try {
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TCharArray tmp(getRepresentation(valname));
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return true;
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} catch(rdr::Exception&) {
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return false;
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}
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}
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const TCHAR* RegKey::getValueName(int i) {
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DWORD maxValueNameLen;
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LONG result = RegQueryInfoKey(key, 0, 0, 0, 0, 0, 0, 0, &maxValueNameLen, 0, 0, 0);
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if (result != ERROR_SUCCESS)
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throw rdr::SystemException("RegQueryInfoKey", result);
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if (valueNameBufLen < maxValueNameLen + 1) {
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valueNameBufLen = maxValueNameLen + 1;
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delete [] valueName.buf;
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valueName.buf = new TCHAR[valueNameBufLen];
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}
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DWORD length = valueNameBufLen;
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result = RegEnumValue(key, i, valueName.buf, &length, NULL, 0, 0, 0);
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if (result == ERROR_NO_MORE_ITEMS) return 0;
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if (result != ERROR_SUCCESS)
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throw rdr::SystemException("RegEnumValue", result);
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return valueName.buf;
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}
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const TCHAR* RegKey::getKeyName(int i) {
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DWORD maxValueNameLen;
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LONG result = RegQueryInfoKey(key, 0, 0, 0, 0, &maxValueNameLen, 0, 0, 0, 0, 0, 0);
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if (result != ERROR_SUCCESS)
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throw rdr::SystemException("RegQueryInfoKey", result);
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if (valueNameBufLen < maxValueNameLen + 1) {
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valueNameBufLen = maxValueNameLen + 1;
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delete [] valueName.buf;
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valueName.buf = new TCHAR[valueNameBufLen];
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}
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DWORD length = valueNameBufLen;
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result = RegEnumKeyEx(key, i, valueName.buf, &length, NULL, 0, 0, 0);
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if (result == ERROR_NO_MORE_ITEMS) return 0;
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if (result != ERROR_SUCCESS)
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throw rdr::SystemException("RegEnumKey", result);
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return valueName.buf;
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}
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