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212 lines
6.4 KiB
212 lines
6.4 KiB
#include "stdafx.h"
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#include <initguid.h>
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#include "stobject.h"
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#include "cfact.h"
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#define DECL_CRTFREE
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#include <crtfree.h>
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#include "strsafe.h"
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// One lock for each running component + one lock per LockServer call
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long g_cLocks = 0;
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HINSTANCE g_hinstDll = NULL;
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const TCHAR g_szThreadModel[] = TEXT("Both");
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STDAPI DllCanUnloadNow()
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{
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return (g_cLocks == 0) ? S_OK : S_FALSE;
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}
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STDAPI DllGetClassObject(const CLSID& clsid, const IID& iid, void** ppvObject)
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{
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HRESULT hr = S_OK;
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BOOL fRunTrayOnConstruct;
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*ppvObject = NULL;
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if (clsid == CLSID_SysTray)
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{
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// The SysTray object is being requested - we don't actually launch the tray thread until
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// told to do so though IOleCommandTarget
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fRunTrayOnConstruct = FALSE;
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}
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else if (clsid == CLSID_SysTrayInvoker)
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{
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// The simple invoker object is being requested - the tray thread will be launched immediately
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fRunTrayOnConstruct = TRUE;
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}
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else
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{
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// We don't support this object!
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hr = CLASS_E_CLASSNOTAVAILABLE;
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}
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// If one of the two objects we support was requested:
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if (SUCCEEDED(hr))
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{
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// Try to create the object
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CSysTrayFactory* ptrayfact = new CSysTrayFactory(fRunTrayOnConstruct);
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if (ptrayfact != NULL)
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{
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hr = ptrayfact->QueryInterface(iid, ppvObject);
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ptrayfact->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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}
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return hr;
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}
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BOOL RegisterComponent(const CLSID& clsid, const TCHAR* szProgID)
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{
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// Build a CLSID string for the registry
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BOOL fSuccess = FALSE;
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TCHAR szSubkey[MAX_PATH];
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TCHAR szCLSID[GUIDSTR_MAX];
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TCHAR szModule[MAX_PATH];
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HKEY hkeyCLSID = NULL;
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HKEY hkeyInproc = NULL;
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DWORD dwDisp;
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TCHAR* pszNameOnly;
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// Try and get all the strings we need
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if (StringFromGUID2(clsid, szCLSID, ARRAYSIZE(szCLSID)) != 0)
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{
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if ((GetModuleFileName(g_hinstDll, szModule, ARRAYSIZE(szModule)) != 0) &&
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(pszNameOnly = PathFindFileName(szModule)))
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{
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if (SUCCEEDED(StringCchPrintf(szSubkey, ARRAYSIZE(szSubkey), TEXT("CLSID\\%s"), szCLSID)))
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{
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// We've built our strings, so write stuff to the registry
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if (ERROR_SUCCESS == RegCreateKeyEx(HKEY_CLASSES_ROOT, szSubkey, 0,
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NULL, 0, KEY_WRITE, NULL, &hkeyCLSID, &dwDisp))
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{
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RegSetValueEx(hkeyCLSID, NULL, 0, REG_SZ, (const BYTE*) szProgID,
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(lstrlen(szProgID) + 1) * sizeof(TCHAR));
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if (ERROR_SUCCESS == RegCreateKeyEx(hkeyCLSID, TEXT("InprocServer32"),
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0, NULL, 0, KEY_SET_VALUE, NULL, &hkeyInproc, &dwDisp))
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{
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RegSetValueEx(hkeyInproc, NULL, 0, REG_SZ,
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(const BYTE*) szModule, (lstrlen(szModule) + 1) * sizeof(TCHAR));
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RegSetValueEx(hkeyInproc, TEXT("ThreadingModel"), 0, REG_SZ,
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(const BYTE*) g_szThreadModel, sizeof(g_szThreadModel));
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fSuccess = TRUE;
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}
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}
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}
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}
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}
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if (hkeyCLSID != NULL)
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RegCloseKey(hkeyCLSID);
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if (hkeyInproc != NULL)
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RegCloseKey(hkeyInproc);
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return fSuccess;
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}
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BOOL UnregisterComponent(const CLSID& clsid)
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{
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// Build a CLSID string for the registry
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BOOL fSuccess = FALSE;
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TCHAR szSubkey[MAX_PATH];
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TCHAR szCLSID[GUIDSTR_MAX];
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HKEY hkeyCLSID = NULL;
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// Try and get all the strings we need
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if (StringFromGUID2(clsid, szCLSID, ARRAYSIZE(szCLSID)) != 0)
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{
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if (SUCCEEDED(StringCchPrintf(szSubkey, ARRAYSIZE(szSubkey), TEXT("CLSID\\%s"), szCLSID)))
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{
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// We've built our strings, so delete our registry stuff
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if (ERROR_SUCCESS == RegOpenKeyEx(HKEY_CLASSES_ROOT, szSubkey, 0,
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KEY_WRITE, &hkeyCLSID))
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{
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RegDeleteKey(hkeyCLSID, TEXT("InprocServer32"));
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RegCloseKey(hkeyCLSID);
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hkeyCLSID = NULL;
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RegDeleteKey(HKEY_CLASSES_ROOT, szSubkey);
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fSuccess = TRUE;
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}
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}
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}
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if (hkeyCLSID != NULL)
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RegCloseKey(hkeyCLSID);
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return fSuccess;
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}
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BOOL RegisterShellServiceObject(const CLSID& clsid, const TCHAR* szProgID, BOOL fRegister)
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{
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const static TCHAR szSubkey[] = TEXT("Software\\Microsoft\\Windows\\CurrentVersion\\ShellServiceObjectDelayLoad");
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BOOL fSuccess = FALSE;
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TCHAR szCLSID[GUIDSTR_MAX];
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HKEY hkey = NULL;
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// Try and get all the strings we need
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if (StringFromGUID2(clsid, szCLSID, ARRAYSIZE(szCLSID)) != 0)
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{
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if (ERROR_SUCCESS == RegOpenKeyEx(HKEY_LOCAL_MACHINE, szSubkey, 0,
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KEY_WRITE, &hkey))
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{
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if (fRegister)
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{
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fSuccess = RegSetValueEx(hkey, szProgID, 0, REG_SZ, (const BYTE*) szCLSID,
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(lstrlen(szCLSID) + 1) * sizeof(TCHAR));
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}
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else
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{
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fSuccess = RegDeleteValue(hkey, szProgID);
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}
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}
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}
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if (hkey != NULL)
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RegCloseKey(hkey);
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return fSuccess;
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}
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STDAPI DllRegisterServer()
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{
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BOOL fSuccess;
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fSuccess = RegisterComponent(CLSID_SysTray, TEXT("SysTray"));
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fSuccess &= RegisterComponent(CLSID_SysTrayInvoker, TEXT("SysTrayInvoker"));
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fSuccess &= RegisterShellServiceObject(CLSID_SysTray, TEXT("SysTray"), TRUE);
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return fSuccess;
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}
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STDAPI DllUnregisterServer()
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{
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BOOL fSuccess;
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fSuccess = UnregisterComponent(CLSID_SysTray);
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fSuccess &= UnregisterComponent(CLSID_SysTrayInvoker);
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fSuccess &= RegisterShellServiceObject(CLSID_SysTray, TEXT("SysTray"), FALSE);
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return fSuccess;
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}
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STDAPI DllMain(HINSTANCE hModule, DWORD dwReason, void* lpReserved)
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{
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if (dwReason == DLL_PROCESS_ATTACH)
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{
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SHFusionInitializeFromModule(hModule);
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// Don't have DllMain called for thread init's.
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DisableThreadLibraryCalls(hModule);
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g_hinstDll = hModule;
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}
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else if (dwReason == DLL_PROCESS_DETACH)
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{
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SHFusionUninitialize();
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}
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return TRUE;
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}
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