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334 lines
8.4 KiB
334 lines
8.4 KiB
//------------------------------------------------------------------------------
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// File: DlleEntry.cpp
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//
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// Desc: DirectShow base classes - implements classes used to support dll
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// entry points for COM objects.
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//
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// Copyright (c) 1992-2001 Microsoft Corporation. All rights reserved.
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//------------------------------------------------------------------------------
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#include <streams.h>
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#include <initguid.h>
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#ifdef DEBUG
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#ifdef UNICODE
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#ifndef _UNICODE
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#define _UNICODE
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#endif // _UNICODE
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#endif // UNICODE
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#include <tchar.h>
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#endif // DEBUG
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extern CFactoryTemplate g_Templates[];
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extern int g_cTemplates;
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HINSTANCE g_hInst;
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DWORD g_amPlatform; // VER_PLATFORM_WIN32_WINDOWS etc... (from GetVersionEx)
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OSVERSIONINFO g_osInfo;
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//
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// an instance of this is created by the DLLGetClassObject entrypoint
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// it uses the CFactoryTemplate object it is given to support the
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// IClassFactory interface
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class CClassFactory : public IClassFactory, public CBaseObject
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{
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private:
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const CFactoryTemplate *const m_pTemplate;
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ULONG m_cRef;
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static int m_cLocked;
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public:
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CClassFactory(const CFactoryTemplate *);
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// IUnknown
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STDMETHODIMP QueryInterface(REFIID riid, void ** ppv);
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STDMETHODIMP_(ULONG)AddRef();
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STDMETHODIMP_(ULONG)Release();
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// IClassFactory
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STDMETHODIMP CreateInstance(LPUNKNOWN pUnkOuter, REFIID riid, void **pv);
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STDMETHODIMP LockServer(BOOL fLock);
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// allow DLLGetClassObject to know about global server lock status
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static BOOL IsLocked() {
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return (m_cLocked > 0);
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};
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};
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// process-wide dll locked state
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int CClassFactory::m_cLocked = 0;
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CClassFactory::CClassFactory(const CFactoryTemplate *pTemplate)
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: CBaseObject(NAME("Class Factory"))
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, m_cRef(0)
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, m_pTemplate(pTemplate)
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{
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}
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STDMETHODIMP
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CClassFactory::QueryInterface(REFIID riid,void **ppv)
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{
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CheckPointer(ppv,E_POINTER)
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ValidateReadWritePtr(ppv,sizeof(PVOID));
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*ppv = NULL;
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// any interface on this object is the object pointer.
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if ((riid == IID_IUnknown) || (riid == IID_IClassFactory)) {
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*ppv = (LPVOID) this;
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// AddRef returned interface pointer
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((LPUNKNOWN) *ppv)->AddRef();
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return NOERROR;
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}
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return ResultFromScode(E_NOINTERFACE);
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}
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STDMETHODIMP_(ULONG)
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CClassFactory::AddRef()
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{
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return ++m_cRef;
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}
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STDMETHODIMP_(ULONG)
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CClassFactory::Release()
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{
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if (--m_cRef == 0) {
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delete this;
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return 0;
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} else {
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return m_cRef;
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}
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}
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STDMETHODIMP
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CClassFactory::CreateInstance(
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LPUNKNOWN pUnkOuter,
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REFIID riid,
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void **pv)
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{
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CheckPointer(pv,E_POINTER)
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ValidateReadWritePtr(pv,sizeof(void *));
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/* Enforce the normal OLE rules regarding interfaces and delegation */
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if (pUnkOuter != NULL) {
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if (IsEqualIID(riid,IID_IUnknown) == FALSE) {
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return ResultFromScode(E_NOINTERFACE);
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}
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}
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/* Create the new object through the derived class's create function */
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HRESULT hr = NOERROR;
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CUnknown *pObj = m_pTemplate->CreateInstance(pUnkOuter, &hr);
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if (pObj == NULL) {
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if (SUCCEEDED(hr)) {
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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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/* Delete the object if we got a construction error */
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if (FAILED(hr)) {
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delete pObj;
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return hr;
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}
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/* Get a reference counted interface on the object */
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/* We wrap the non-delegating QI with NDAddRef & NDRelease. */
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/* This protects any outer object from being prematurely */
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/* released by an inner object that may have to be created */
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/* in order to supply the requested interface. */
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pObj->NonDelegatingAddRef();
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hr = pObj->NonDelegatingQueryInterface(riid, pv);
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pObj->NonDelegatingRelease();
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/* Note that if NonDelegatingQueryInterface fails, it will */
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/* not increment the ref count, so the NonDelegatingRelease */
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/* will drop the ref back to zero and the object will "self-*/
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/* destruct". Hence we don't need additional tidy-up code */
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/* to cope with NonDelegatingQueryInterface failing. */
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if (SUCCEEDED(hr)) {
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ASSERT(*pv);
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}
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return hr;
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}
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STDMETHODIMP
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CClassFactory::LockServer(BOOL fLock)
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{
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if (fLock) {
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m_cLocked++;
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} else {
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m_cLocked--;
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}
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return NOERROR;
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}
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// --- COM entrypoints -----------------------------------------
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//called by COM to get the class factory object for a given class
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STDAPI
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DllGetClassObject(
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REFCLSID rClsID,
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REFIID riid,
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void **pv)
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{
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if (!(riid == IID_IUnknown) && !(riid == IID_IClassFactory)) {
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return E_NOINTERFACE;
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}
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// traverse the array of templates looking for one with this
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// class id
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for (int i = 0; i < g_cTemplates; i++) {
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const CFactoryTemplate * pT = &g_Templates[i];
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if (pT->IsClassID(rClsID)) {
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// found a template - make a class factory based on this
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// template
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*pv = (LPVOID) (LPUNKNOWN) new CClassFactory(pT);
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if (*pv == NULL) {
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return E_OUTOFMEMORY;
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}
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((LPUNKNOWN)*pv)->AddRef();
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return NOERROR;
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}
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}
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return CLASS_E_CLASSNOTAVAILABLE;
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}
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//
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// Call any initialization routines
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//
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void
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DllInitClasses(BOOL bLoading)
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{
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int i;
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// traverse the array of templates calling the init routine
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// if they have one
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for (i = 0; i < g_cTemplates; i++) {
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const CFactoryTemplate * pT = &g_Templates[i];
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if (pT->m_lpfnInit != NULL) {
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(*pT->m_lpfnInit)(bLoading, pT->m_ClsID);
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}
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}
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}
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// called by COM to determine if this dll can be unloaded
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// return ok unless there are outstanding objects or a lock requested
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// by IClassFactory::LockServer
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//
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// CClassFactory has a static function that can tell us about the locks,
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// and CCOMObject has a static function that can tell us about the active
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// object count
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STDAPI
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DllCanUnloadNow()
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{
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DbgLog((LOG_MEMORY,2,TEXT("DLLCanUnloadNow called - IsLocked = %d, Active objects = %d"),
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CClassFactory::IsLocked(),
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CBaseObject::ObjectsActive()));
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if (CClassFactory::IsLocked() || CBaseObject::ObjectsActive()) {
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return S_FALSE;
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} else {
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return S_OK;
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}
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}
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// --- standard WIN32 entrypoints --------------------------------------
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extern "C" BOOL WINAPI DllEntryPoint(HINSTANCE, ULONG, LPVOID);
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BOOL WINAPI
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DllEntryPoint(HINSTANCE hInstance, ULONG ulReason, LPVOID pv)
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{
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#ifdef DEBUG
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extern bool g_fDbgInDllEntryPoint;
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g_fDbgInDllEntryPoint = true;
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#endif
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switch (ulReason)
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{
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case DLL_PROCESS_ATTACH:
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DisableThreadLibraryCalls(hInstance);
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DbgInitialise(hInstance);
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{
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// The platform identifier is used to work out whether
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// full unicode support is available or not. Hence the
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// default will be the lowest common denominator - i.e. N/A
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g_amPlatform = VER_PLATFORM_WIN32_WINDOWS; // win95 assumed in case GetVersionEx fails
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g_osInfo.dwOSVersionInfoSize = sizeof(g_osInfo);
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if (GetVersionEx(&g_osInfo)) {
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g_amPlatform = g_osInfo.dwPlatformId;
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} else {
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DbgLog((LOG_ERROR, 1, TEXT("Failed to get the OS platform, assuming Win95")));
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}
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}
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g_hInst = hInstance;
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DllInitClasses(TRUE);
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break;
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case DLL_PROCESS_DETACH:
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DllInitClasses(FALSE);
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#ifdef DEBUG
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if (CBaseObject::ObjectsActive()) {
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DbgSetModuleLevel(LOG_MEMORY, 2);
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TCHAR szInfo[512];
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extern TCHAR m_ModuleName[]; // Cut down module name
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TCHAR FullName[_MAX_PATH]; // Load the full path and module name
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TCHAR *pName; // Searches from the end for a backslash
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GetModuleFileName(NULL,FullName,_MAX_PATH);
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pName = _tcsrchr(FullName,'\\');
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if (pName == NULL) {
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pName = FullName;
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} else {
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pName++;
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}
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DWORD cch = wsprintf(szInfo, TEXT("Executable: %s Pid %x Tid %x. "),
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pName, GetCurrentProcessId(), GetCurrentThreadId());
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wsprintf(szInfo+cch, TEXT("Module %s, %d objects left active!"),
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m_ModuleName, CBaseObject::ObjectsActive());
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DbgAssert(szInfo, TEXT(__FILE__),__LINE__);
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// If running remotely wait for the Assert to be acknowledged
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// before dumping out the object register
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DbgDumpObjectRegister();
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}
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DbgTerminate();
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#endif
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break;
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}
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#ifdef DEBUG
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g_fDbgInDllEntryPoint = false;
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#endif
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return TRUE;
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}
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