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358 lines
6.9 KiB
358 lines
6.9 KiB
//---------------------------------------------------------------------------
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//
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// Microsoft Windows
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// Copyright (C) Microsoft Corporation, 1992 - 1996
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//
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// File: varconv.c
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//
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// Contents: Ansi to Unicode conversions
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//
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// History: SWilson Nov 1996
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//----------------------------------------------------------------------------
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#include <precomp.h>
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#pragma hdrstop
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HRESULT
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PackString2Variant(
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LPCWSTR lpszData,
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VARIANT * pvData
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)
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{
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BSTR bstrData = NULL;
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WCHAR String[] = L"";
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LPCWSTR pStr;
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pStr = lpszData ? lpszData : (LPCWSTR) String;
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VariantInit(pvData);
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V_VT(pvData) = VT_BSTR;
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bstrData = SysAllocString(pStr);
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if (!bstrData) {
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return MAKE_HRESULT(SEVERITY_ERROR,
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FACILITY_WIN32,
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ERROR_OUTOFMEMORY);
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}
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V_VT(pvData) = VT_BSTR;
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V_BSTR(pvData) = bstrData;
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return ERROR_SUCCESS;
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}
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HRESULT
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UnpackStringfromVariant(
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VARIANT varSrcData,
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BSTR * pbstrDestString
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)
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{
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HRESULT hr = S_OK;
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if( V_VT(&varSrcData) != VT_BSTR) {
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return E_ADS_CANT_CONVERT_DATATYPE;
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}
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if (!V_BSTR(&varSrcData)) {
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*pbstrDestString = NULL;
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return S_OK;
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}
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*pbstrDestString = SysAllocString(V_BSTR(&varSrcData));
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return hr;
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}
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HRESULT
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UnpackDispatchfromVariant(
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VARIANT varSrcData,
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IDispatch **ppDispatch
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)
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{
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HRESULT hr = S_OK;
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if( V_VT(&varSrcData) != VT_DISPATCH) {
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return E_ADS_CANT_CONVERT_DATATYPE;
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}
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if (!V_DISPATCH(&varSrcData)) {
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*ppDispatch = NULL;
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return S_OK;
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}
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*ppDispatch = V_DISPATCH(&varSrcData);
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return hr;
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}
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HRESULT
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PackDispatch2Variant(
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IDispatch *pDispatch,
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VARIANT *pvData
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)
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{
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if (!pvData)
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return E_FAIL;
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V_VT(pvData) = VT_DISPATCH;
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V_DISPATCH(pvData) = pDispatch;
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return S_OK;
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}
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HRESULT
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PackDWORD2Variant(
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DWORD dwData,
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VARIANT * pvData
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)
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{
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if (!pvData) {
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return(E_FAIL);
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}
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V_VT(pvData) = VT_I4;
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V_I4(pvData) = dwData;
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return S_OK;
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}
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HRESULT
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UnpackDWORDfromVariant(
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VARIANT varSrcData,
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DWORD *pdwData
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)
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{
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if( V_VT(&varSrcData) != VT_I4) {
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return E_ADS_CANT_CONVERT_DATATYPE;
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}
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*pdwData = V_I4(&varSrcData);
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return S_OK;
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}
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HRESULT
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PackBOOL2Variant(
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BOOL fData,
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VARIANT * pvData
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)
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{
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V_VT(pvData) = VT_BOOL;
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V_BOOL(pvData) = (BYTE) fData;
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return S_OK;
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}
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HRESULT
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PackVARIANTinVariant(
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VARIANT vaValue,
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VARIANT *pvarInputData
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)
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{
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VariantInit(pvarInputData);
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V_VT(pvarInputData) = VT_VARIANT;
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return VariantCopy( pvarInputData, &vaValue );
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}
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HRESULT
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MakeVariantFromStringArray(
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BSTR *bstrList,
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VARIANT *pvVariant
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)
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{
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HRESULT hr = S_OK;
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SAFEARRAY *aList = NULL;
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SAFEARRAYBOUND aBound;
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long i = 0;
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long j = 0;
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long nCount;
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if ( (bstrList != NULL) && (*bstrList != 0) ) {
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for (nCount = 0 ; bstrList[nCount] ; ++nCount)
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;
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if ( nCount == 1 ) {
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VariantInit( pvVariant );
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V_VT(pvVariant) = VT_BSTR;
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if (!(V_BSTR(pvVariant) = SysAllocString( bstrList[0]))) {
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hr = E_OUTOFMEMORY;
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BAIL_ON_FAILURE(hr);
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}
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return hr;
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}
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aBound.lLbound = 0;
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aBound.cElements = nCount;
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aList = SafeArrayCreate( VT_VARIANT, 1, &aBound );
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if ( aList == NULL ) {
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hr = E_OUTOFMEMORY;
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BAIL_ON_FAILURE(hr);
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}
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for (i = 0 ; bstrList[i] ; ++i) {
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VARIANT v;
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VariantInit(&v);
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V_VT(&v) = VT_BSTR;
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if (!(V_BSTR(&v) = SysAllocString(bstrList[i]))) {
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hr = E_OUTOFMEMORY;
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BAIL_ON_FAILURE(hr);
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}
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hr = SafeArrayPutElement( aList,
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&i,
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&v );
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BAIL_ON_FAILURE(hr);
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}
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VariantInit( pvVariant );
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V_VT(pvVariant) = VT_ARRAY | VT_VARIANT;
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V_ARRAY(pvVariant) = aList;
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} else {
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aBound.lLbound = 0;
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aBound.cElements = 0;
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aList = SafeArrayCreate( VT_VARIANT, 1, &aBound );
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if ( aList == NULL ) {
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hr = E_OUTOFMEMORY;
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BAIL_ON_FAILURE(hr);
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}
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VariantInit( pvVariant );
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V_VT(pvVariant) = VT_ARRAY | VT_VARIANT;
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V_ARRAY(pvVariant) = aList;
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}
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return S_OK;
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error:
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if ( aList )
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SafeArrayDestroy( aList );
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return hr;
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}
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HRESULT
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PrintVariantArray(VARIANT var)
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{
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LONG dwSLBound = 0;
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LONG dwSUBound = 0;
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VARIANT v;
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LONG i;
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HRESULT hr = S_OK;
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if ( !( (V_VT(&var) & VT_VARIANT) && V_ISARRAY(&var)) )
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BAIL_ON_FAILURE(hr = E_FAIL);
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// Check that there is only one dimension in this array
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if ((V_ARRAY(&var))->cDims != 1)
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BAIL_ON_FAILURE(hr = E_FAIL);
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// Check that there is atleast one element in this array
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if ((V_ARRAY(&var))->rgsabound[0].cElements == 0)
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BAIL_ON_FAILURE(hr = E_FAIL);
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// We know that this is a valid single dimension array
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hr = SafeArrayGetLBound(V_ARRAY(&var), 1, (long FAR *)&dwSLBound);
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BAIL_ON_FAILURE(hr);
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hr = SafeArrayGetUBound(V_ARRAY(&var), 1, (long FAR *)&dwSUBound);
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BAIL_ON_FAILURE(hr);
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for (i = dwSLBound; i <= dwSUBound; i++)
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{
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VariantInit(&v);
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hr = SafeArrayGetElement(V_ARRAY(&var), (long FAR *)&i, &v);
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if ( FAILED(hr) )
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continue;
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DBGMSG(DBG_INFO,("%ws\n", v.bstrVal));
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}
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hr = S_OK;
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error:
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return hr;
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}
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HRESULT
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UI1Array2IID(
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VARIANT var,
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IID *pIID
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)
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{
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LONG dwSLBound = 0;
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LONG dwSUBound = 0;
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VARIANT v;
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LONG i;
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HRESULT hr = S_OK;
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UCHAR pGUID[16];
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if ( !( (V_VT(&var) & VT_UI1) && V_ISARRAY(&var)) )
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BAIL_ON_FAILURE(hr = E_FAIL);
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// Check that there is only one dimension in this array
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//DBGMSG(DBG_TRACE,("UI1Array, cDims = %d\n", (V_ARRAY(&var))->cDims));
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if ((V_ARRAY(&var))->cDims != 1)
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BAIL_ON_FAILURE(hr = E_FAIL);
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// Check that there is at least one element in this array
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if ((V_ARRAY(&var))->rgsabound[0].cElements != 16) {
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DBGMSG(DBG_ERROR,("UI1Array, cElements != 16\n", (V_ARRAY(&var))->rgsabound[0].cElements));
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BAIL_ON_FAILURE(hr = E_FAIL);
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}
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// We know that this is a valid single dimension array
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hr = SafeArrayGetLBound(V_ARRAY(&var), 1, (long FAR *)&dwSLBound);
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BAIL_ON_FAILURE(hr);
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hr = SafeArrayGetUBound(V_ARRAY(&var), 1, (long FAR *)&dwSUBound);
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BAIL_ON_FAILURE(hr);
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for (i = dwSLBound; i <= dwSUBound; i++)
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{
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hr = SafeArrayGetElement(V_ARRAY(&var), (long FAR *)&i, pGUID + i - dwSLBound);
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if ( FAILED(hr) )
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continue;
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//DBGMSG(DBG_TRACE,("UI1Array, GUID: %0x\n", pGUID[i - dwSLBound]));
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}
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*pIID = *(IID *) pGUID;
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hr = S_OK;
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error:
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return hr;
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}
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