1208 lines
45 KiB
C
1208 lines
45 KiB
C
/*
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* Marshaling Tests
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*
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* Copyright 2004 Robert Shearman
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
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*/
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#define COBJMACROS
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#include <stdarg.h>
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#include "windef.h"
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#include "winbase.h"
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#include "objbase.h"
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#include "propidl.h" /* for LPSAFEARRAY_User* routines */
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#include "wine/test.h"
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#if (__STDC__ && !defined(_FORCENAMELESSUNION)) || defined(NONAMELESSUNION)
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# define V_U2(A) ((A)->n1.n2)
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#else
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# define V_U2(A) (*(A))
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#endif
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/* doesn't work on Windows due to needing more of the
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* MIDL_STUB_MESSAGE structure to be filled out */
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#define LPSAFEARRAY_UNMARSHAL_WORKS 0
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#define BSTR_UNMARSHAL_WORKS 0
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#define VARIANT_UNMARSHAL_WORKS 1
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static inline SF_TYPE get_union_type(SAFEARRAY *psa)
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{
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VARTYPE vt;
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HRESULT hr;
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hr = SafeArrayGetVartype(psa, &vt);
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if (FAILED(hr))
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{
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switch(psa->cbElements)
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{
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case 1: vt = VT_I1; break;
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case 2: vt = VT_I2; break;
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case 4: vt = VT_I4; break;
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case 8: vt = VT_I8; break;
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default: return 0;
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}
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}
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if (psa->fFeatures & FADF_HAVEIID)
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return SF_HAVEIID;
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switch (vt)
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{
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case VT_I1:
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case VT_UI1: return SF_I1;
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case VT_BOOL:
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case VT_I2:
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case VT_UI2: return SF_I2;
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case VT_INT:
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case VT_UINT:
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case VT_I4:
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case VT_UI4:
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case VT_R4: return SF_I4;
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case VT_DATE:
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case VT_CY:
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case VT_R8:
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case VT_I8:
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case VT_UI8: return SF_I8;
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case VT_INT_PTR:
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case VT_UINT_PTR: return (sizeof(UINT_PTR) == 4 ? SF_I4 : SF_I8);
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case VT_BSTR: return SF_BSTR;
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case VT_DISPATCH: return SF_DISPATCH;
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case VT_VARIANT: return SF_VARIANT;
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case VT_UNKNOWN: return SF_UNKNOWN;
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/* Note: Return a non-zero size to indicate vt is valid. The actual size
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* of a UDT is taken from the result of IRecordInfo_GetSize().
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*/
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case VT_RECORD: return SF_RECORD;
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default: return SF_ERROR;
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}
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}
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static ULONG get_cell_count(const SAFEARRAY *psa)
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{
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const SAFEARRAYBOUND* psab = psa->rgsabound;
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USHORT cCount = psa->cDims;
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ULONG ulNumCells = 1;
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while (cCount--)
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{
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if (!psab->cElements)
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return 0;
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ulNumCells *= psab->cElements;
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psab++;
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}
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return ulNumCells;
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}
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static void check_safearray(void *buffer, LPSAFEARRAY lpsa)
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{
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unsigned char *wiresa = buffer;
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VARTYPE vt;
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SF_TYPE sftype;
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ULONG cell_count;
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if(!lpsa)
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{
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ok(*(void **)wiresa == NULL, "wiresa + 0x0 should be NULL instead of 0x%08x\n", *(DWORD *)wiresa);
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return;
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}
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if(FAILED(SafeArrayGetVartype(lpsa, &vt)))
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vt = 0;
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sftype = get_union_type(lpsa);
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cell_count = get_cell_count(lpsa);
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ok(*(DWORD *)wiresa, "wiresa + 0x0 should be non-NULL instead of 0x%08x\n", *(DWORD *)wiresa); /* win2k: this is lpsa. winxp: this is 0x00000001 */
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wiresa += sizeof(DWORD);
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ok(*(DWORD *)wiresa == lpsa->cDims, "wiresa + 0x4 should be lpsa->cDims instead of 0x%08x\n", *(DWORD *)wiresa);
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wiresa += sizeof(DWORD);
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ok(*(WORD *)wiresa == lpsa->cDims, "wiresa + 0x8 should be lpsa->cDims instead of 0x%04x\n", *(WORD *)wiresa);
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wiresa += sizeof(WORD);
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ok(*(WORD *)wiresa == lpsa->fFeatures, "wiresa + 0xc should be lpsa->fFeatures instead of 0x%08x\n", *(WORD *)wiresa);
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wiresa += sizeof(WORD);
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ok(*(DWORD *)wiresa == lpsa->cbElements, "wiresa + 0x10 should be lpsa->cbElements instead of 0x%08x\n", *(DWORD *)wiresa);
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wiresa += sizeof(DWORD);
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ok(*(WORD *)wiresa == lpsa->cLocks, "wiresa + 0x16 should be lpsa->cLocks instead of 0x%04x\n", *(WORD *)wiresa);
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wiresa += sizeof(WORD);
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ok(*(WORD *)wiresa == vt, "wiresa + 0x14 should be %04x instead of 0x%04x\n", vt, *(WORD *)wiresa);
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wiresa += sizeof(WORD);
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ok(*(DWORD *)wiresa == sftype, "wiresa + 0x18 should be %08x instead of 0x%08x\n", (DWORD)sftype, *(DWORD *)wiresa);
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wiresa += sizeof(DWORD);
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ok(*(DWORD *)wiresa == cell_count, "wiresa + 0x1c should be %u instead of %u\n", cell_count, *(DWORD *)wiresa);
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wiresa += sizeof(DWORD);
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ok(*(DWORD_PTR *)wiresa == (DWORD_PTR)lpsa->pvData, "wiresa + 0x20 should be lpsa->pvData instead of 0x%08lx\n", *(DWORD_PTR *)wiresa);
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wiresa += sizeof(DWORD_PTR);
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if(sftype == SF_HAVEIID)
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{
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GUID guid;
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SafeArrayGetIID(lpsa, &guid);
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ok(IsEqualGUID(&guid, (GUID*)wiresa), "guid mismatch\n");
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wiresa += sizeof(GUID);
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}
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ok(!memcmp(wiresa, lpsa->rgsabound, sizeof(lpsa->rgsabound[0]) * lpsa->cDims), "bounds mismatch\n");
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wiresa += sizeof(lpsa->rgsabound[0]) * lpsa->cDims;
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ok(*(DWORD *)wiresa == cell_count, "wiresa + 0x2c should be %u instead of %u\n", cell_count, *(DWORD*)wiresa);
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wiresa += sizeof(DWORD);
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/* elements are now pointed to by wiresa */
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}
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static void test_marshal_LPSAFEARRAY(void)
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{
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unsigned char *buffer;
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unsigned long size;
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LPSAFEARRAY lpsa;
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LPSAFEARRAY lpsa2 = NULL;
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SAFEARRAYBOUND sab;
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MIDL_STUB_MESSAGE stubMsg = { 0 };
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USER_MARSHAL_CB umcb = { 0 };
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HRESULT hr;
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VARTYPE vt;
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umcb.Flags = MAKELONG(MSHCTX_DIFFERENTMACHINE, NDR_LOCAL_DATA_REPRESENTATION);
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umcb.pReserve = NULL;
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umcb.pStubMsg = &stubMsg;
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sab.lLbound = 5;
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sab.cElements = 10;
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lpsa = SafeArrayCreate(VT_I2, 1, &sab);
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*(DWORD *)lpsa->pvData = 0xcafebabe;
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lpsa->cLocks = 7;
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size = LPSAFEARRAY_UserSize(&umcb.Flags, 1, &lpsa);
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ok(size == 68, "size should be 68 bytes, not %ld\n", size);
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size = LPSAFEARRAY_UserSize(&umcb.Flags, 0, &lpsa);
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ok(size == 64, "size should be 64 bytes, not %ld\n", size);
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buffer = (unsigned char *)HeapAlloc(GetProcessHeap(), 0, size);
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LPSAFEARRAY_UserMarshal(&umcb.Flags, buffer, &lpsa);
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check_safearray(buffer, lpsa);
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if (LPSAFEARRAY_UNMARSHAL_WORKS)
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{
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VARTYPE vt, vt2;
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LPSAFEARRAY_UserUnmarshal(&umcb.Flags, buffer, &lpsa2);
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ok(lpsa2 != NULL, "LPSAFEARRAY didn't unmarshal\n");
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SafeArrayGetVartype(lpsa, &vt);
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SafeArrayGetVartype(lpsa2, &vt2);
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ok(vt == vt2, "vts differ %x %x\n", vt, vt2);
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LPSAFEARRAY_UserFree(&umcb.Flags, &lpsa2);
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}
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HeapFree(GetProcessHeap(), 0, buffer);
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SafeArrayDestroy(lpsa);
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/* test NULL safe array */
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lpsa = NULL;
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size = LPSAFEARRAY_UserSize(&umcb.Flags, 0, &lpsa);
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ok(size == 4, "size should be 4 bytes, not %ld\n", size);
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buffer = (unsigned char *)HeapAlloc(GetProcessHeap(), 0, size);
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LPSAFEARRAY_UserMarshal(&umcb.Flags, buffer, &lpsa);
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check_safearray(buffer, lpsa);
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if (LPSAFEARRAY_UNMARSHAL_WORKS)
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{
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LPSAFEARRAY_UserUnmarshal(&umcb.Flags, buffer, &lpsa2);
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ok(lpsa2 == NULL, "NULL LPSAFEARRAY didn't unmarshal\n");
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LPSAFEARRAY_UserFree(&umcb.Flags, &lpsa2);
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}
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HeapFree(GetProcessHeap(), 0, buffer);
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sab.lLbound = 5;
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sab.cElements = 10;
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lpsa = SafeArrayCreate(VT_R8, 1, &sab);
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*(double *)lpsa->pvData = 3.1415;
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lpsa->cLocks = 7;
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size = LPSAFEARRAY_UserSize(&umcb.Flags, 1, &lpsa);
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ok(size == 128, "size should be 128 bytes, not %ld\n", size);
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size = LPSAFEARRAY_UserSize(&umcb.Flags, 0, &lpsa);
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ok(size == 128, "size should be 128 bytes, not %ld\n", size);
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buffer = (unsigned char *)HeapAlloc(GetProcessHeap(), 0, size);
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LPSAFEARRAY_UserMarshal(&umcb.Flags, buffer, &lpsa);
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check_safearray(buffer, lpsa);
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HeapFree(GetProcessHeap(), 0, buffer);
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SafeArrayDestroy(lpsa);
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/* VARTYPE-less arrays can be marshaled if cbElements is 1,2,4 or 8 as type SF_In */
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hr = SafeArrayAllocDescriptor(1, &lpsa);
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ok(hr == S_OK, "saad failed %08x\n", hr);
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lpsa->cbElements = 8;
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lpsa->rgsabound[0].lLbound = 2;
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lpsa->rgsabound[0].cElements = 48;
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hr = SafeArrayAllocData(lpsa);
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ok(hr == S_OK, "saad failed %08x\n", hr);
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hr = SafeArrayGetVartype(lpsa, &vt);
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ok(hr == E_INVALIDARG, "ret %08x\n", hr);
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size = LPSAFEARRAY_UserSize(&umcb.Flags, 0, &lpsa);
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ok(size == 432, "size %ld\n", size);
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buffer = (unsigned char *)HeapAlloc(GetProcessHeap(), 0, size);
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LPSAFEARRAY_UserMarshal(&umcb.Flags, buffer, &lpsa);
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check_safearray(buffer, lpsa);
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HeapFree(GetProcessHeap(), 0, buffer);
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SafeArrayDestroyData(lpsa);
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SafeArrayDestroyDescriptor(lpsa);
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}
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static void check_bstr(void *buffer, BSTR b)
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{
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DWORD *wireb = buffer;
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DWORD len = SysStringByteLen(b);
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ok(*wireb == (len + 1) / 2, "wv[0] %08x\n", *wireb);
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wireb++;
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if(b)
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ok(*wireb == len, "wv[1] %08x\n", *wireb);
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else
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ok(*wireb == 0xffffffff, "wv[1] %08x\n", *wireb);
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wireb++;
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ok(*wireb == (len + 1) / 2, "wv[2] %08x\n", *wireb);
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if(len)
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{
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wireb++;
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ok(!memcmp(wireb, b, (len + 1) & ~1), "strings differ\n");
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}
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return;
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}
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static void test_marshal_BSTR(void)
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{
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unsigned long size;
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MIDL_STUB_MESSAGE stubMsg = { 0 };
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USER_MARSHAL_CB umcb = { 0 };
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unsigned char *buffer, *next;
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BSTR b, b2;
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WCHAR str[] = {'m','a','r','s','h','a','l',' ','t','e','s','t','1',0};
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DWORD len;
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umcb.Flags = MAKELONG(MSHCTX_DIFFERENTMACHINE, NDR_LOCAL_DATA_REPRESENTATION);
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umcb.pReserve = NULL;
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umcb.pStubMsg = &stubMsg;
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b = SysAllocString(str);
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len = SysStringLen(b);
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ok(len == 13, "get %d\n", len);
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/* BSTRs are DWORD aligned */
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size = BSTR_UserSize(&umcb.Flags, 1, &b);
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ok(size == 42, "size %ld\n", size);
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size = BSTR_UserSize(&umcb.Flags, 0, &b);
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ok(size == 38, "size %ld\n", size);
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buffer = HeapAlloc(GetProcessHeap(), 0, size);
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next = BSTR_UserMarshal(&umcb.Flags, buffer, &b);
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ok(next == buffer + size, "got %p expect %p\n", next, buffer + size);
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check_bstr(buffer, b);
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if (BSTR_UNMARSHAL_WORKS)
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{
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b2 = NULL;
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next = BSTR_UserUnmarshal(&umcb.Flags, buffer, &b2);
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ok(next == buffer + size, "got %p expect %p\n", next, buffer + size);
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ok(b2 != NULL, "BSTR didn't unmarshal\n");
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ok(!memcmp(b, b2, (len + 1) * 2), "strings differ\n");
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BSTR_UserFree(&umcb.Flags, &b2);
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}
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HeapFree(GetProcessHeap(), 0, buffer);
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SysFreeString(b);
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b = NULL;
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size = BSTR_UserSize(&umcb.Flags, 0, &b);
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ok(size == 12, "size %ld\n", size);
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buffer = HeapAlloc(GetProcessHeap(), 0, size);
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next = BSTR_UserMarshal(&umcb.Flags, buffer, &b);
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ok(next == buffer + size, "got %p expect %p\n", next, buffer + size);
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check_bstr(buffer, b);
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if (BSTR_UNMARSHAL_WORKS)
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{
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b2 = NULL;
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next = BSTR_UserUnmarshal(&umcb.Flags, buffer, &b2);
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ok(next == buffer + size, "got %p expect %p\n", next, buffer + size);
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ok(b2 == NULL, "NULL BSTR didn't unmarshal\n");
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BSTR_UserFree(&umcb.Flags, &b2);
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}
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HeapFree(GetProcessHeap(), 0, buffer);
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b = SysAllocStringByteLen("abc", 3);
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*(((char*)b) + 3) = 'd';
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len = SysStringLen(b);
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ok(len == 1, "get %d\n", len);
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len = SysStringByteLen(b);
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ok(len == 3, "get %d\n", len);
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size = BSTR_UserSize(&umcb.Flags, 0, &b);
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ok(size == 16, "size %ld\n", size);
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buffer = HeapAlloc(GetProcessHeap(), 0, size);
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memset(buffer, 0xcc, size);
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next = BSTR_UserMarshal(&umcb.Flags, buffer, &b);
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ok(next == buffer + size, "got %p expect %p\n", next, buffer + size);
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check_bstr(buffer, b);
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ok(buffer[15] == 'd', "buffer[15] %02x\n", buffer[15]);
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if (BSTR_UNMARSHAL_WORKS)
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{
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b2 = NULL;
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next = BSTR_UserUnmarshal(&umcb.Flags, buffer, &b2);
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ok(next == buffer + size, "got %p expect %p\n", next, buffer + size);
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ok(b2 != NULL, "BSTR didn't unmarshal\n");
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ok(!memcmp(b, b2, len), "strings differ\n");
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BSTR_UserFree(&umcb.Flags, &b2);
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}
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HeapFree(GetProcessHeap(), 0, buffer);
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SysFreeString(b);
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b = SysAllocStringByteLen("", 0);
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len = SysStringLen(b);
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ok(len == 0, "get %d\n", len);
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len = SysStringByteLen(b);
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ok(len == 0, "get %d\n", len);
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size = BSTR_UserSize(&umcb.Flags, 0, &b);
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ok(size == 12, "size %ld\n", size);
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buffer = HeapAlloc(GetProcessHeap(), 0, size);
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next = BSTR_UserMarshal(&umcb.Flags, buffer, &b);
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ok(next == buffer + size, "got %p expect %p\n", next, buffer + size);
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check_bstr(buffer, b);
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if (BSTR_UNMARSHAL_WORKS)
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{
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b2 = NULL;
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next = BSTR_UserUnmarshal(&umcb.Flags, buffer, &b2);
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ok(next == buffer + size, "got %p expect %p\n", next, buffer + size);
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ok(b2 != NULL, "NULL LPSAFEARRAY didn't unmarshal\n");
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len = SysStringByteLen(b2);
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ok(len == 0, "byte len %d\n", len);
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BSTR_UserFree(&umcb.Flags, &b2);
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}
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HeapFree(GetProcessHeap(), 0, buffer);
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SysFreeString(b);
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}
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typedef struct
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{
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const IUnknownVtbl *lpVtbl;
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ULONG refs;
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} HeapUnknown;
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static HRESULT WINAPI HeapUnknown_QueryInterface(IUnknown *iface, REFIID riid, void **ppv)
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{
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if (IsEqualIID(riid, &IID_IUnknown))
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{
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IUnknown_AddRef(iface);
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*ppv = (LPVOID)iface;
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return S_OK;
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}
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*ppv = NULL;
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return E_NOINTERFACE;
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}
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static ULONG WINAPI HeapUnknown_AddRef(IUnknown *iface)
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{
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HeapUnknown *This = (HeapUnknown *)iface;
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return InterlockedIncrement((LONG*)&This->refs);
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}
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static ULONG WINAPI HeapUnknown_Release(IUnknown *iface)
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{
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HeapUnknown *This = (HeapUnknown *)iface;
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ULONG refs = InterlockedDecrement((LONG*)&This->refs);
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if (!refs) HeapFree(GetProcessHeap(), 0, This);
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return refs;
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}
|
|
|
|
static const IUnknownVtbl HeapUnknown_Vtbl =
|
|
{
|
|
HeapUnknown_QueryInterface,
|
|
HeapUnknown_AddRef,
|
|
HeapUnknown_Release
|
|
};
|
|
|
|
static void check_variant_header(DWORD *wirev, VARIANT *v, unsigned long size)
|
|
{
|
|
WORD *wp;
|
|
DWORD switch_is;
|
|
|
|
ok(*wirev == (size + 7) >> 3, "wv[0] %08x, expected %08lx\n", *wirev, (size + 7) >> 3);
|
|
wirev++;
|
|
ok(*wirev == 0, "wv[1] %08x\n", *wirev);
|
|
wirev++;
|
|
wp = (WORD*)wirev;
|
|
ok(*wp == V_VT(v), "vt %04x expected %04x\n", *wp, V_VT(v));
|
|
wp++;
|
|
ok(*wp == V_U2(v).wReserved1, "res1 %04x expected %04x\n", *wp, V_U2(v).wReserved1);
|
|
wp++;
|
|
ok(*wp == V_U2(v).wReserved2, "res2 %04x expected %04x\n", *wp, V_U2(v).wReserved2);
|
|
wp++;
|
|
ok(*wp == V_U2(v).wReserved3, "res3 %04x expected %04x\n", *wp, V_U2(v).wReserved3);
|
|
wp++;
|
|
wirev = (DWORD*)wp;
|
|
switch_is = V_VT(v);
|
|
if(switch_is & VT_ARRAY)
|
|
switch_is &= ~VT_TYPEMASK;
|
|
ok(*wirev == switch_is, "switch_is %08x expected %08x\n", *wirev, switch_is);
|
|
}
|
|
|
|
static void test_marshal_VARIANT(void)
|
|
{
|
|
VARIANT v, v2;
|
|
MIDL_STUB_MESSAGE stubMsg = { 0 };
|
|
RPC_MESSAGE rpcMsg = { 0 };
|
|
USER_MARSHAL_CB umcb = { 0 };
|
|
unsigned char *buffer, *next;
|
|
ULONG ul;
|
|
short s;
|
|
double d;
|
|
DWORD *wirev;
|
|
BSTR b;
|
|
WCHAR str[] = {'m','a','r','s','h','a','l',' ','t','e','s','t',0};
|
|
SAFEARRAYBOUND sab;
|
|
LPSAFEARRAY lpsa;
|
|
DECIMAL dec, dec2;
|
|
HeapUnknown *heap_unknown;
|
|
|
|
stubMsg.RpcMsg = &rpcMsg;
|
|
|
|
umcb.Flags = MAKELONG(MSHCTX_DIFFERENTMACHINE, NDR_LOCAL_DATA_REPRESENTATION);
|
|
umcb.pStubMsg = &stubMsg;
|
|
umcb.pReserve = NULL;
|
|
umcb.Signature = USER_MARSHAL_CB_SIGNATURE;
|
|
umcb.CBType = USER_MARSHAL_CB_UNMARSHALL;
|
|
|
|
/*** I1 ***/
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_I1;
|
|
V_I1(&v) = 0x12;
|
|
|
|
/* Variants have an alignment of 8 */
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 1, &v);
|
|
ok(stubMsg.BufferLength == 29, "size %d\n", stubMsg.BufferLength);
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 21, "size %d\n", stubMsg.BufferLength);
|
|
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
ok(*(char*)wirev == V_I1(&v), "wv[5] %08x\n", *wirev);
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
ok(V_I1(&v) == V_I1(&v2), "got i1 %x expect %x\n", V_I1(&v), V_I1(&v2));
|
|
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** I2 ***/
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_I2;
|
|
V_I2(&v) = 0x1234;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 22, "size %d\n", stubMsg.BufferLength);
|
|
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
ok(*(short*)wirev == V_I2(&v), "wv[5] %08x\n", *wirev);
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
ok(V_I2(&v) == V_I2(&v2), "got i2 %x expect %x\n", V_I2(&v), V_I2(&v2));
|
|
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** I2 BYREF ***/
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_I2 | VT_BYREF;
|
|
s = 0x1234;
|
|
V_I2REF(&v) = &s;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 26, "size %d\n", stubMsg.BufferLength);
|
|
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
ok(*wirev == 0x4, "wv[5] %08x\n", *wirev);
|
|
wirev++;
|
|
ok(*(short*)wirev == s, "wv[6] %08x\n", *wirev);
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
ok(*V_I2REF(&v) == *V_I2REF(&v2), "got i2 ref %x expect ui4 ref %x\n", *V_I2REF(&v), *V_I2REF(&v2));
|
|
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** I4 ***/
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_I4;
|
|
V_I4(&v) = 0x1234;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 24, "size %d\n", stubMsg.BufferLength);
|
|
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
ok(*wirev == V_I4(&v), "wv[5] %08x\n", *wirev);
|
|
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
ok(V_I4(&v) == V_I4(&v2), "got i4 %x expect %x\n", V_I4(&v), V_I4(&v2));
|
|
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** UI4 ***/
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_UI4;
|
|
V_UI4(&v) = 0x1234;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 24, "size %d\n", stubMsg.BufferLength);
|
|
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
ok(*wirev == 0x1234, "wv[5] %08x\n", *wirev);
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
ok(V_UI4(&v) == V_UI4(&v2), "got ui4 %x expect %x\n", V_UI4(&v), V_UI4(&v2));
|
|
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** UI4 BYREF ***/
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_UI4 | VT_BYREF;
|
|
ul = 0x1234;
|
|
V_UI4REF(&v) = &ul;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 28, "size %d\n", stubMsg.BufferLength);
|
|
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
ok(*wirev == 0x4, "wv[5] %08x\n", *wirev);
|
|
wirev++;
|
|
ok(*wirev == ul, "wv[6] %08x\n", *wirev);
|
|
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
ok(*V_UI4REF(&v) == *V_UI4REF(&v2), "got ui4 ref %x expect ui4 ref %x\n", *V_UI4REF(&v), *V_UI4REF(&v2));
|
|
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** R4 ***/
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_R4;
|
|
V_R8(&v) = 3.1415;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 24, "size %d\n", stubMsg.BufferLength);
|
|
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
ok(*(float*)wirev == V_R4(&v), "wv[5] %08x\n", *wirev);
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
ok(V_R4(&v) == V_R4(&v2), "got r4 %f expect %f\n", V_R4(&v), V_R4(&v2));
|
|
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** R8 ***/
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_R8;
|
|
V_R8(&v) = 3.1415;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 32, "size %d\n", stubMsg.BufferLength);
|
|
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
memset(buffer, 0xcc, stubMsg.BufferLength);
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
ok(*wirev == 0xcccccccc, "wv[5] %08x\n", *wirev); /* pad */
|
|
wirev++;
|
|
ok(*(double*)wirev == V_R8(&v), "wv[6] %08x, wv[7] %08x\n", *wirev, *(wirev+1));
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
ok(V_R8(&v) == V_R8(&v2), "got r8 %f expect %f\n", V_R8(&v), V_R8(&v2));
|
|
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** R8 BYREF ***/
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_R8 | VT_BYREF;
|
|
d = 3.1415;
|
|
V_R8REF(&v) = &d;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 32, "size %d\n", stubMsg.BufferLength);
|
|
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
ok(*wirev == 8, "wv[5] %08x\n", *wirev);
|
|
wirev++;
|
|
ok(*(double*)wirev == d, "wv[6] %08x wv[7] %08x\n", *wirev, *(wirev+1));
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
ok(*V_R8REF(&v) == *V_R8REF(&v2), "got r8 ref %f expect %f\n", *V_R8REF(&v), *V_R8REF(&v2));
|
|
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** VARIANT_BOOL ***/
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_BOOL;
|
|
V_BOOL(&v) = 0x1234;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 22, "size %d\n", stubMsg.BufferLength);
|
|
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
ok(*(short*)wirev == V_BOOL(&v), "wv[5] %04x\n", *(WORD*)wirev);
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
ok(V_BOOL(&v) == V_BOOL(&v2), "got bool %x expect %x\n", V_BOOL(&v), V_BOOL(&v2));
|
|
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** DECIMAL ***/
|
|
VarDecFromI4(0x12345678, &dec);
|
|
VariantInit(&v);
|
|
V_DECIMAL(&v) = dec;
|
|
V_VT(&v) = VT_DECIMAL;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 40, "size %d\n", stubMsg.BufferLength);
|
|
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
memset(buffer, 0xcc, stubMsg.BufferLength);
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
ok(*wirev == 0xcccccccc, "wirev[5] %08x\n", *wirev); /* pad */
|
|
wirev++;
|
|
dec2 = dec;
|
|
dec2.wReserved = VT_DECIMAL;
|
|
ok(!memcmp(wirev, &dec2, sizeof(dec2)), "wirev[6] %08x wirev[7] %08x wirev[8] %08x wirev[9] %08x\n",
|
|
*wirev, *(wirev + 1), *(wirev + 2), *(wirev + 3));
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
ok(!memcmp(&V_DECIMAL(&v), & V_DECIMAL(&v2), sizeof(DECIMAL)), "decimals differ\n");
|
|
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** DECIMAL BYREF ***/
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_DECIMAL | VT_BYREF;
|
|
V_DECIMALREF(&v) = &dec;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 40, "size %d\n", stubMsg.BufferLength);
|
|
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
ok(*wirev == 16, "wv[5] %08x\n", *wirev);
|
|
wirev++;
|
|
ok(!memcmp(wirev, &dec, sizeof(dec)), "wirev[6] %08x wirev[7] %08x wirev[8] %08x wirev[9] %08x\n", *wirev, *(wirev + 1), *(wirev + 2), *(wirev + 3));
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
ok(!memcmp(V_DECIMALREF(&v), V_DECIMALREF(&v2), sizeof(DECIMAL)), "decimals differ\n");
|
|
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** EMPTY ***/
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_EMPTY;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 20, "size %d\n", stubMsg.BufferLength);
|
|
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** NULL ***/
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_NULL;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 20, "size %d\n", stubMsg.BufferLength);
|
|
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** BSTR ***/
|
|
b = SysAllocString(str);
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_BSTR;
|
|
V_BSTR(&v) = b;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 60, "size %d\n", stubMsg.BufferLength);
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
ok(*wirev, "wv[5] %08x\n", *wirev); /* win2k: this is b. winxp: this is (char*)b + 1 */
|
|
wirev++;
|
|
check_bstr(wirev, V_BSTR(&v));
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
ok(SysStringByteLen(V_BSTR(&v)) == SysStringByteLen(V_BSTR(&v2)), "bstr string lens differ\n");
|
|
ok(!memcmp(V_BSTR(&v), V_BSTR(&v2), SysStringByteLen(V_BSTR(&v))), "bstrs differ\n");
|
|
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** BSTR BYREF ***/
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_BSTR | VT_BYREF;
|
|
V_BSTRREF(&v) = &b;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 64, "size %d\n", stubMsg.BufferLength);
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
ok(*wirev == 0x4, "wv[5] %08x\n", *wirev);
|
|
wirev++;
|
|
ok(*wirev, "wv[6] %08x\n", *wirev); /* win2k: this is b. winxp: this is (char*)b + 1 */
|
|
wirev++;
|
|
check_bstr(wirev, b);
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
ok(SysStringByteLen(*V_BSTRREF(&v)) == SysStringByteLen(*V_BSTRREF(&v2)), "bstr string lens differ\n");
|
|
ok(!memcmp(*V_BSTRREF(&v), *V_BSTRREF(&v2), SysStringByteLen(*V_BSTRREF(&v))), "bstrs differ\n");
|
|
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
SysFreeString(b);
|
|
|
|
/*** ARRAY ***/
|
|
sab.lLbound = 5;
|
|
sab.cElements = 10;
|
|
|
|
lpsa = SafeArrayCreate(VT_R8, 1, &sab);
|
|
*(DWORD *)lpsa->pvData = 0xcafebabe;
|
|
*((DWORD *)lpsa->pvData + 1) = 0xdeadbeef;
|
|
lpsa->cLocks = 7;
|
|
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_UI4 | VT_ARRAY;
|
|
V_ARRAY(&v) = lpsa;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 152, "size %d\n", stubMsg.BufferLength);
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
ok(*wirev, "wv[5] %08x\n", *wirev); /* win2k: this is lpsa. winxp: this is (char*)lpsa + 1 */
|
|
wirev++;
|
|
check_safearray(wirev, lpsa);
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
LONG bound, bound2;
|
|
VARTYPE vt, vt2;
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
ok(SafeArrayGetDim(V_ARRAY(&v)) == SafeArrayGetDim(V_ARRAY(&v)), "array dims differ\n");
|
|
SafeArrayGetLBound(V_ARRAY(&v), 1, &bound);
|
|
SafeArrayGetLBound(V_ARRAY(&v2), 1, &bound2);
|
|
ok(bound == bound2, "array lbounds differ\n");
|
|
SafeArrayGetUBound(V_ARRAY(&v), 1, &bound);
|
|
SafeArrayGetUBound(V_ARRAY(&v2), 1, &bound2);
|
|
ok(bound == bound2, "array ubounds differ\n");
|
|
SafeArrayGetVartype(V_ARRAY(&v), &vt);
|
|
SafeArrayGetVartype(V_ARRAY(&v2), &vt2);
|
|
ok(vt == vt2, "array vts differ %x %x\n", vt, vt2);
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** ARRAY BYREF ***/
|
|
VariantInit(&v);
|
|
V_VT(&v) = VT_UI4 | VT_ARRAY | VT_BYREF;
|
|
V_ARRAYREF(&v) = &lpsa;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 152, "size %d\n", stubMsg.BufferLength);
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
ok(*wirev == 4, "wv[5] %08x\n", *wirev);
|
|
wirev++;
|
|
ok(*wirev, "wv[6] %08x\n", *wirev); /* win2k: this is lpsa. winxp: this is (char*)lpsa + 1 */
|
|
wirev++;
|
|
check_safearray(wirev, lpsa);
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
LONG bound, bound2;
|
|
VARTYPE vt, vt2;
|
|
VariantInit(&v2);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v2);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v2), "got vt %d expect %d\n", V_VT(&v), V_VT(&v2));
|
|
ok(SafeArrayGetDim(*V_ARRAYREF(&v)) == SafeArrayGetDim(*V_ARRAYREF(&v)), "array dims differ\n");
|
|
SafeArrayGetLBound(*V_ARRAYREF(&v), 1, &bound);
|
|
SafeArrayGetLBound(*V_ARRAYREF(&v2), 1, &bound2);
|
|
ok(bound == bound2, "array lbounds differ\n");
|
|
SafeArrayGetUBound(*V_ARRAYREF(&v), 1, &bound);
|
|
SafeArrayGetUBound(*V_ARRAYREF(&v2), 1, &bound2);
|
|
ok(bound == bound2, "array ubounds differ\n");
|
|
SafeArrayGetVartype(*V_ARRAYREF(&v), &vt);
|
|
SafeArrayGetVartype(*V_ARRAYREF(&v2), &vt2);
|
|
ok(vt == vt2, "array vts differ %x %x\n", vt, vt2);
|
|
VARIANT_UserFree(&umcb.Flags, &v2);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
SafeArrayDestroy(lpsa);
|
|
|
|
/*** VARIANT BYREF ***/
|
|
VariantInit(&v);
|
|
VariantInit(&v2);
|
|
V_VT(&v2) = VT_R8;
|
|
V_R8(&v2) = 3.1415;
|
|
V_VT(&v) = VT_VARIANT | VT_BYREF;
|
|
V_VARIANTREF(&v) = &v2;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength == 64, "size %d\n", stubMsg.BufferLength);
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
memset(buffer, 0xcc, stubMsg.BufferLength);
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
wirev = (DWORD*)buffer;
|
|
check_variant_header(wirev, &v, stubMsg.BufferLength);
|
|
wirev += 5;
|
|
|
|
ok(*wirev == 16, "wv[5] %08x\n", *wirev);
|
|
wirev++;
|
|
ok(*wirev == ('U' | 's' << 8 | 'e' << 16 | 'r' << 24), "wv[6] %08x\n", *wirev); /* 'User' */
|
|
wirev++;
|
|
ok(*wirev == 0xcccccccc, "wv[7] %08x\n", *wirev); /* pad */
|
|
wirev++;
|
|
check_variant_header(wirev, &v2, stubMsg.BufferLength - 32);
|
|
wirev += 5;
|
|
ok(*wirev == 0xcccccccc, "wv[13] %08x\n", *wirev); /* pad for VT_R8 */
|
|
wirev++;
|
|
ok(*(double*)wirev == V_R8(&v2), "wv[6] %08x wv[7] %08x\n", *wirev, *(wirev+1));
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VARIANT v3;
|
|
VariantInit(&v3);
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v3);
|
|
ok(next == buffer + stubMsg.BufferLength, "got %p expect %p\n", next, buffer + stubMsg.BufferLength);
|
|
ok(V_VT(&v) == V_VT(&v3), "got vt %d expect %d\n", V_VT(&v), V_VT(&v3));
|
|
ok(V_VT(V_VARIANTREF(&v)) == V_VT(V_VARIANTREF(&v3)), "vts differ %x %x\n",
|
|
V_VT(V_VARIANTREF(&v)), V_VT(V_VARIANTREF(&v3)));
|
|
ok(V_R8(V_VARIANTREF(&v)) == V_R8(V_VARIANTREF(&v3)), "r8s differ\n");
|
|
VARIANT_UserFree(&umcb.Flags, &v3);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
|
|
/*** UNKNOWN ***/
|
|
heap_unknown = HeapAlloc(GetProcessHeap(), 0, sizeof(*heap_unknown));
|
|
heap_unknown->lpVtbl = &HeapUnknown_Vtbl;
|
|
heap_unknown->refs = 1;
|
|
VariantInit(&v);
|
|
VariantInit(&v2);
|
|
V_VT(&v) = VT_UNKNOWN;
|
|
V_UNKNOWN(&v) = (IUnknown *)heap_unknown;
|
|
|
|
rpcMsg.BufferLength = stubMsg.BufferLength = VARIANT_UserSize(&umcb.Flags, 0, &v);
|
|
ok(stubMsg.BufferLength > 32, "size %d\n", stubMsg.BufferLength);
|
|
buffer = rpcMsg.Buffer = stubMsg.Buffer = stubMsg.BufferStart = HeapAlloc(GetProcessHeap(), 0, stubMsg.BufferLength);
|
|
stubMsg.BufferEnd = stubMsg.Buffer + stubMsg.BufferLength;
|
|
memset(buffer, 0xcc, stubMsg.BufferLength);
|
|
next = VARIANT_UserMarshal(&umcb.Flags, buffer, &v);
|
|
wirev = (DWORD*)buffer;
|
|
check_variant_header(wirev, &v, next - buffer);
|
|
wirev += 5;
|
|
|
|
todo_wine
|
|
ok(*wirev == (DWORD_PTR)V_UNKNOWN(&v) /* Win9x */ ||
|
|
*wirev == (DWORD_PTR)V_UNKNOWN(&v) + 1 /* NT */, "wv[5] %08x\n", *wirev);
|
|
wirev++;
|
|
todo_wine
|
|
ok(*wirev == next - buffer - 0x20, "wv[6] %08x\n", *wirev);
|
|
wirev++;
|
|
todo_wine
|
|
ok(*wirev == next - buffer - 0x20, "wv[7] %08x\n", *wirev);
|
|
wirev++;
|
|
todo_wine
|
|
ok(*wirev == 0x574f454d, "wv[8] %08x\n", *wirev);
|
|
if (VARIANT_UNMARSHAL_WORKS)
|
|
{
|
|
VARIANT v3;
|
|
VariantInit(&v3);
|
|
V_VT(&v3) = VT_UNKNOWN;
|
|
V_UNKNOWN(&v3) = (IUnknown *)heap_unknown;
|
|
IUnknown_AddRef(V_UNKNOWN(&v3));
|
|
stubMsg.Buffer = buffer;
|
|
next = VARIANT_UserUnmarshal(&umcb.Flags, buffer, &v3);
|
|
ok(V_VT(&v) == V_VT(&v3), "got vt %d expect %d\n", V_VT(&v), V_VT(&v3));
|
|
ok(V_VT(V_VARIANTREF(&v)) == V_VT(V_VARIANTREF(&v3)), "vts differ %x %x\n",
|
|
V_VT(V_VARIANTREF(&v)), V_VT(V_VARIANTREF(&v3)));
|
|
ok(V_R8(V_VARIANTREF(&v)) == V_R8(V_VARIANTREF(&v3)), "r8s differ\n");
|
|
VARIANT_UserFree(&umcb.Flags, &v3);
|
|
ok(heap_unknown->refs == 1, "%d refcounts of IUnknown leaked\n", heap_unknown->refs - 1);
|
|
IUnknown_Release((IUnknown *)heap_unknown);
|
|
}
|
|
HeapFree(GetProcessHeap(), 0, buffer);
|
|
}
|
|
|
|
|
|
START_TEST(usrmarshal)
|
|
{
|
|
CoInitialize(NULL);
|
|
|
|
test_marshal_LPSAFEARRAY();
|
|
test_marshal_BSTR();
|
|
test_marshal_VARIANT();
|
|
|
|
CoUninitialize();
|
|
}
|