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654 lines
17 KiB
654 lines
17 KiB
/*++
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Copyright (c) 2000 Microsoft Corporation
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Module Name:
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MoveIniToRegistry.cpp
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Abstract:
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This shim will move entries written directly into an INI file into the registry.
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Usage:
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IniFile [IniSection] IniKeyName RegBaseKey RegKeyPath RegValue RegValueType
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IniFile Full path to INI file (env variables like used for CorrectFilePaths may be used)
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[IniSection] INI section name, must include the brackets
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IniKeyName INI key name (the thing on the left of the =)
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RegBaseKey One of: HKEY_CLASSES_ROOT, HKEY_CURRENT_CONFIG, HKEY_CURRENT_USER, HKEY_LOCAL_MACHINE or HKEY_USERS
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RegKeyPath path of the registry key
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RegValue registry value name (it may be different from IniKeyName
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RegValueType One of: REG_SZ, REG_EXPAND_SZ, REG_DWORD
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Example:
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win.ini [Boot] SCRNSAVE.EXE HKEY_CURRENT_USER "Default\Control Panel\Desktop" SCRNSAVE.EXE REG_SZ
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Win.ini
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[Desktop]
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SCRNSAVE.EXE=goofy screen saver
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will be placed:
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RegSetValueEX("HKEY_USERS\Default\Control Panel\Desktop", "SCRNSAVE.EXE", 0, REG_SZ, "goofy screen saver", strlen("goofy screen saver"));
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Note:
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A section name of * implies that the data is not associated with any specific section,
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this allows this shim to work with (stupid) apps that put the data into random sections.
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If there are multiple entries, the first matching
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Created:
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08/17/2000 robkenny
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Modified:
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--*/
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#include "precomp.h"
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#include <ClassCFP.h> // for EnvironmentValues
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IMPLEMENT_SHIM_BEGIN(MoveIniToRegistry)
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#include "ShimHookMacro.h"
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APIHOOK_ENUM_BEGIN
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APIHOOK_ENUM_ENTRY(CreateFileA)
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APIHOOK_ENUM_ENTRY(OpenFile)
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APIHOOK_ENUM_ENTRY(WriteFile)
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APIHOOK_ENUM_ENTRY(CloseHandle)
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APIHOOK_ENUM_END
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// Convert a string into a root HKEY
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HKEY ToHKEY(const CString & csKey)
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{
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if (csKey.CompareNoCase(L"HKEY_CLASSES_ROOT") == 0)
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{
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return HKEY_CLASSES_ROOT;
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}
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else if (csKey.CompareNoCase(L"HKEY_CURRENT_CONFIG") == 0)
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{
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return HKEY_CURRENT_CONFIG;
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}
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else if (csKey.CompareNoCase(L"HKEY_CURRENT_USER") == 0)
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{
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return HKEY_CURRENT_USER;
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}
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else if (csKey.CompareNoCase(L"HKEY_LOCAL_MACHINE") == 0)
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{
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return HKEY_LOCAL_MACHINE;
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}
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else if (csKey.CompareNoCase(L"HKEY_USERS") == 0)
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{
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return HKEY_USERS;
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}
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else
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{
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return NULL;
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}
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}
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DWORD ToRegType(const CString & csRegType)
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{
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if (csRegType.CompareNoCase(L"REG_SZ") == 0)
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{
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return REG_SZ;
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}
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else if (csRegType.CompareNoCase(L"REG_EXPAND_SZ") == 0)
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{
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return REG_EXPAND_SZ;
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}
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else if (csRegType.CompareNoCase(L"REG_DWORD") == 0)
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{
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return REG_DWORD;
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}
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else if (csRegType.CompareNoCase(L"REG_DWORD_LITTLE_ENDIAN") == 0)
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{
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// Same as REG_DWORD
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return REG_DWORD;
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}
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else
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{
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return REG_NONE;
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}
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}
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class IniEntry
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{
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protected:
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public:
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CString lpIniFileName;
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HANDLE hIniFileHandle;
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CString lpSectionName;
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CString lpKeyName;
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CString lpKeyPath;
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DWORD dwRegDataType;
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HKEY hkRootKey;
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BOOL bFileNameConverted;
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BOOL bDirty; // Has this file been modified
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BOOL Set(const char * iniFileName,
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const char * iniSectionName,
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const char * iniKeyName,
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const char * rootKeyName,
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const char * keyPath,
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const char * valueName,
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const char * valueType);
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void Clear();
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void Convert();
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VOID ReadINIEntry(CString & csEntry);
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void MoveToRegistry();
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inline void SetDirty(BOOL dirty)
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{
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bDirty = dirty;
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}
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inline void OpenFile(HANDLE hFile)
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{
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hIniFileHandle = hFile;
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bDirty = FALSE;
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}
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inline void CloseFile()
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{
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hIniFileHandle = INVALID_HANDLE_VALUE;
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bDirty = FALSE;
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}
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};
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void IniEntry::Clear()
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{
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if (hIniFileHandle != INVALID_HANDLE_VALUE)
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CloseHandle(hIniFileHandle);
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}
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BOOL IniEntry::Set(
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const char * iniFileName,
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const char * iniSectionName,
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const char * iniKeyName,
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const char * rootKeyName,
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const char * keyPath,
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const char * valueName,
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const char * valueType)
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{
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hIniFileHandle = INVALID_HANDLE_VALUE;
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dwRegDataType = REG_NONE;
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hkRootKey = NULL;
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bFileNameConverted = FALSE;
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bDirty = FALSE;
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CString csValue(valueType);
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CString csRootKey(rootKeyName);
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dwRegDataType = ToRegType(csValue);
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if (dwRegDataType == REG_NONE)
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return false;
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// Attempt to open the registry keys, if these fail, we need go no further
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hkRootKey = ToHKEY(csRootKey);
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if (hkRootKey == NULL)
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return false;
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// We cannot open the RegKey here; ADVAPI32.dll hasn't been initialzed, yet.
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lpKeyPath = keyPath;
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lpIniFileName = iniFileName;
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lpSectionName = iniSectionName;
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lpKeyName = iniKeyName;
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return TRUE;
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}
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// Read a single line of data from the file,
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// return TRUE if hit EOF
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BOOL GetLine(HANDLE hFile, char * line, DWORD lineSize, DWORD * charsRead)
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{
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BOOL retval = FALSE;
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*charsRead = 0;
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while (*charsRead < lineSize - 1)
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{
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DWORD bytesRead;
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char *nextChar = line + *charsRead;
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BOOL readOK = ReadFile(hFile, nextChar, 1, &bytesRead, NULL);
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if (!readOK || bytesRead != 1)
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{
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// Some sort of error
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retval = TRUE;
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break;
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}
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// Eat CR-LF
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if (!IsDBCSLeadByte(*nextChar) && *nextChar == '\n')
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break;
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if (!IsDBCSLeadByte(*nextChar) && *nextChar != '\r')
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*charsRead += 1;
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}
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line[*charsRead] = 0;
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return retval;
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}
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VOID FindLine(HANDLE hFile, const CString & findMe, CString & csLine, const WCHAR * stopLooking)
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{
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csLine.Empty();
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const size_t findMeLen = findMe.GetLength();
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// Search for findMe
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while (true)
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{
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char line[300];
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DWORD dataRead;
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BOOL eof = GetLine(hFile, line, sizeof(line), &dataRead);
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if (eof)
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break;
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CString csTemp(line);
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if (dataRead >= findMeLen)
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{
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csTemp.TrimLeft();
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if (csTemp.ComparePartNoCase(findMe, 0, findMeLen) == 0)
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{
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// Found the section
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csLine = csTemp;
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break;
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}
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// Check for termination
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if (stopLooking && csTemp.CompareNoCase(stopLooking) == 0)
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{
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csLine = csTemp;
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break;
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}
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}
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}
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}
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// Convert all %envVars% in the string to text.
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void IniEntry::Convert()
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{
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if (!bFileNameConverted)
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{
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EnvironmentValues env;
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WCHAR * fullIniFileName = env.ExpandEnvironmentValueW(lpIniFileName);
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if (fullIniFileName)
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{
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lpIniFileName = fullIniFileName;
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delete fullIniFileName;
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}
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bFileNameConverted = TRUE;
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}
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}
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// Read the data from the INI file
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// We *cannot* use GetPrivateProfileStringA since it might be re-routed to the registry
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// Return the number of chars read.
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VOID IniEntry::ReadINIEntry(CString & csEntry)
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{
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csEntry.Empty();
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CString csLine;
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HANDLE hFile = CreateFileW(lpIniFileName, GENERIC_READ, FILE_SHARE_READ, NULL, OPEN_EXISTING, FILE_ATTRIBUTE_NORMAL, NULL);
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if (hFile != INVALID_HANDLE_VALUE)
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{
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// If the section name is *, we don't need to search
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if (lpSectionName.GetAt(0) != L'*')
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{
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FindLine(hFile, lpSectionName, csLine, NULL);
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}
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// Our early termination string.
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// If the section name is *, we look forever, otherwise
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// we stop looking if we find a line starting with a [
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const WCHAR * stopLooking = lpSectionName.GetAt(0) == L'*' ? NULL : L"[";
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// Search for lpKeyName
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FindLine(hFile, lpKeyName, csLine, stopLooking);
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if (!csLine.IsEmpty())
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{
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int nEqual = csLine.Find(L'=');
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if (nEqual >= 0)
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{
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csLine.Mid(nEqual + 1, csEntry);
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}
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}
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CloseHandle(hFile);
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}
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}
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// Move the INI file entry into the registry
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void IniEntry::MoveToRegistry()
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{
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// Don't bother with the work, if they never wrote any data into the file.
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if (!bDirty)
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return;
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HKEY regKey;
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LONG success = RegOpenKeyExW(
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hkRootKey,
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lpKeyPath,
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0,
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KEY_ALL_ACCESS,
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®Key);
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if (success != ERROR_SUCCESS)
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return;
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CString csIniEntry;
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ReadINIEntry(csIniEntry);
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if (!csIniEntry.IsEmpty())
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{
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switch (dwRegDataType)
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{
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case REG_SZ:
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case REG_EXPAND_SZ:
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{
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const WCHAR * lpIniEntry = csIniEntry.Get();
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DWORD dwValueSize = (csIniEntry.GetLength() + 1) * sizeof(WCHAR);
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success = RegSetValueExW(regKey, lpKeyName, 0, dwRegDataType, (CONST BYTE *)lpIniEntry, dwValueSize);
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if (success == ERROR_SUCCESS)
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{
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LOGN( eDbgLevelError, "IniEntry::MoveToRegistry, KeyPath(%S) Value(%S) set to (%S)\n",
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lpKeyPath, lpKeyName, lpIniEntry);
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}
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}
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break;
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case REG_DWORD:
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{
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WCHAR * unused;
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long iniValue = wcstol(csIniEntry, &unused, 10);
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RegSetValueExW(regKey, lpKeyName, 0, dwRegDataType, (CONST BYTE *)&iniValue, sizeof(iniValue));
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if (success == ERROR_SUCCESS)
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{
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LOGN( eDbgLevelError, "IniEntry::MoveToRegistry, KeyPath(%S) Value(%S) set to (%d)\n", lpKeyPath, lpKeyName, iniValue);
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}
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}
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break;
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}
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}
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RegCloseKey(regKey);
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}
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class IniEntryList : public VectorT<IniEntry>
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{
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public:
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void OpenFile(const char *fileName, HANDLE hFile);
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void CloseFile(HANDLE hFile);
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void WriteFile(HANDLE hFile);
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void Add(const char * iniFileName,
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const char * iniSectionName,
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const char * iniKeyName,
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const char * rootKeyName,
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const char * keyPath,
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const char * valueName,
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const char * valueType);
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};
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// A file is being opened.
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// If it is one that we are interested in, remember the handle
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void IniEntryList::OpenFile(const char *fileName, HANDLE handle)
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{
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CString csFileName(fileName);
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csFileName.GetFullPathNameW();
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const int nElem = Size();
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for (int i = 0; i < nElem; ++i)
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{
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IniEntry & elem = Get(i);
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elem.Convert();
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// Convert fileName to a full pathname for the compare.
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char fullPathName[MAX_PATH];
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char * filePart;
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if (csFileName.CompareNoCase(elem.lpIniFileName) == 0)
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{
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elem.OpenFile(handle);
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DPFN( eDbgLevelSpew, "IniEntryList::OpenFile(%S) Handle(%d) has been opened for write\n", elem.lpIniFileName.Get(), elem.hIniFileHandle);
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}
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}
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}
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// A file has been closed,
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// Check to see if this is a handle to a file that we are interested in.
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// If it is a match, then move the INI entries into the registry.
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void IniEntryList::CloseFile(HANDLE handle)
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{
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const int nElem = Size();
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for (int i = 0; i < nElem; ++i)
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{
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IniEntry & elem = Get(i);
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if (elem.hIniFileHandle == handle)
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{
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DPFN( eDbgLevelSpew, "IniEntryList::CloseFile(%S) Handle(%d) has been closed\n", elem.lpIniFileName.Get(), elem.hIniFileHandle);
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// Move the ini entry into the registry
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elem.MoveToRegistry();
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elem.CloseFile();
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}
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}
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}
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// A file has been closed,
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// Check to see if this is a handle to a file that we are interested in.
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// If it is a match, then move the INI entries into the registry.
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void IniEntryList::WriteFile(HANDLE handle)
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{
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const int nElem = Size();
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for (int i = 0; i < nElem; ++i)
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{
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IniEntry & elem = Get(i);
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if (elem.hIniFileHandle == handle && !elem.bDirty)
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{
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DPFN( eDbgLevelSpew, "IniEntryList::CloseFile(%S) Handle(%d) has been closed\n", elem.lpIniFileName.Get(), elem.hIniFileHandle);
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elem.SetDirty(TRUE);
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}
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}
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}
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// Attempt to add these values to the list.
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// Only if all values are valid, will a new entry be created.
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void IniEntryList::Add(const char * iniFileName,
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const char * iniSectionName,
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const char * iniKeyName,
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const char * rootKeyName,
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const char * keyPath,
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const char * valueName,
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const char * valueType)
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{
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// Make room for this
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int lastElem = Size();
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if (Resize(lastElem + 1))
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{
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IniEntry & iniEntry = Get(lastElem);
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// The VectorT does not call the constructors for new elements
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// Inplace new
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new (&iniEntry) IniEntry;
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if (iniEntry.Set(iniFileName, iniSectionName, iniKeyName, rootKeyName, keyPath, valueName, valueType))
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{
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// Keep the value
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nVectorList += 1;
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}
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}
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}
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IniEntryList * g_IniEntryList = NULL;
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/*++
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Create the appropriate g_PathCorrector
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--*/
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BOOL ParseCommandLine(const char * commandLine)
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{
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g_IniEntryList = new IniEntryList;
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if (!g_IniEntryList)
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return FALSE;
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int argc;
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char **argv = _CommandLineToArgvA(commandLine, &argc);
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// If there are no command line arguments, stop now
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if (argc == 0 || argv == NULL)
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return TRUE;
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#if DBG
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{
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for (int i = 0; i < argc; ++i)
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{
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const char * arg = argv[i];
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DPFN( eDbgLevelSpew, "Argv[%d] = (%s)\n", i, arg);
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}
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}
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#endif
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// Search the beginning of the command line for the switches
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for (int i = 0; i+6 < argc; i += 7)
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{
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g_IniEntryList->Add(
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argv[i + 0],
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argv[i + 1],
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argv[i + 2],
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argv[i + 3],
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argv[i + 4],
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argv[i + 5],
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argv[i + 6]);
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}
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return TRUE;
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}
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HANDLE
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APIHOOK(CreateFileA)(
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LPCSTR lpFileName, // file name
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DWORD dwDesiredAccess, // access mode
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DWORD dwShareMode, // share mode
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LPSECURITY_ATTRIBUTES lpSecurityAttributes, // SD
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DWORD dwCreationDisposition, // how to create
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DWORD dwFlagsAndAttributes, // file attributes
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HANDLE hTemplateFile // handle to template file
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)
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{
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HANDLE returnValue = ORIGINAL_API(CreateFileA)(
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lpFileName,
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dwDesiredAccess,
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dwShareMode,
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lpSecurityAttributes,
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dwCreationDisposition,
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dwFlagsAndAttributes,
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hTemplateFile);
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if ( (dwDesiredAccess & GENERIC_WRITE) && (returnValue != INVALID_HANDLE_VALUE))
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g_IniEntryList->OpenFile(lpFileName, returnValue);
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return returnValue;
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}
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|
|
HFILE
|
|
APIHOOK(OpenFile)(
|
|
LPCSTR lpFileName, // file name
|
|
LPOFSTRUCT lpReOpenBuff, // file information
|
|
UINT uStyle // action and attributes
|
|
)
|
|
{
|
|
HFILE returnValue = ORIGINAL_API(OpenFile)(lpFileName, lpReOpenBuff, uStyle);
|
|
|
|
if ((uStyle & OF_WRITE) && (returnValue != HFILE_ERROR))
|
|
g_IniEntryList->OpenFile(lpReOpenBuff->szPathName, (HANDLE)returnValue);
|
|
|
|
return returnValue;
|
|
}
|
|
|
|
BOOL
|
|
APIHOOK(CloseHandle)(
|
|
HANDLE hObject // handle to object
|
|
)
|
|
{
|
|
BOOL returnValue = ORIGINAL_API(CloseHandle)(hObject);
|
|
|
|
if (hObject != INVALID_HANDLE_VALUE)
|
|
g_IniEntryList->CloseFile(hObject);
|
|
|
|
return returnValue;
|
|
}
|
|
|
|
BOOL
|
|
APIHOOK(WriteFile)(
|
|
HANDLE hFile, // handle to file
|
|
LPCVOID lpBuffer, // data buffer
|
|
DWORD nNumberOfBytesToWrite, // number of bytes to write
|
|
LPDWORD lpNumberOfBytesWritten, // number of bytes written
|
|
LPOVERLAPPED lpOverlapped // overlapped buffer
|
|
)
|
|
{
|
|
BOOL returnValue = ORIGINAL_API(WriteFile)(
|
|
hFile,
|
|
lpBuffer,
|
|
nNumberOfBytesToWrite,
|
|
lpNumberOfBytesWritten,
|
|
lpOverlapped
|
|
);
|
|
|
|
g_IniEntryList->WriteFile(hFile);
|
|
|
|
return returnValue;
|
|
}
|
|
|
|
/*++
|
|
|
|
Register hooked functions
|
|
|
|
--*/
|
|
|
|
BOOL
|
|
NOTIFY_FUNCTION(
|
|
DWORD fdwReason
|
|
)
|
|
{
|
|
if (fdwReason == DLL_PROCESS_ATTACH)
|
|
{
|
|
return ParseCommandLine(COMMAND_LINE);
|
|
}
|
|
|
|
return TRUE;
|
|
}
|
|
|
|
HOOK_BEGIN
|
|
|
|
APIHOOK_ENTRY(Kernel32.DLL, CreateFileA )
|
|
APIHOOK_ENTRY(Kernel32.DLL, OpenFile )
|
|
APIHOOK_ENTRY(Kernel32.DLL, WriteFile )
|
|
APIHOOK_ENTRY(Kernel32.DLL, CloseHandle )
|
|
|
|
CALL_NOTIFY_FUNCTION
|
|
|
|
HOOK_END
|
|
|
|
IMPLEMENT_SHIM_END
|
|
|