rpcrt4: Tests that show that the allocation rules for unmarshaling a conformant array are the same as those for a simple structure.
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@ -984,6 +984,121 @@ todo_wine {
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/* NdrFree isn't exported so we can't test free'ing */
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}
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static void test_conformant_array(void)
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{
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RPC_MESSAGE RpcMessage;
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MIDL_STUB_MESSAGE StubMsg;
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MIDL_STUB_DESC StubDesc;
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void *ptr;
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unsigned char *mem, *mem_orig;
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unsigned char memsrc[20];
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static const unsigned char fmtstr_conf_array[] =
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{
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0x1b, /* FC_CARRAY */
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0x0, /* align */
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NdrFcShort( 0x1 ), /* elem size */
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0x40, /* Corr desc: const */
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0x0,
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NdrFcShort(0x10), /* const = 0x10 */
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0x1, /* FC_BYTE */
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0x5b /* FC_END */
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};
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StubDesc = Object_StubDesc;
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StubDesc.pFormatTypes = fmtstr_conf_array;
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NdrClientInitializeNew(
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&RpcMessage,
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&StubMsg,
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&StubDesc,
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0);
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StubMsg.BufferLength = 0;
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NdrConformantArrayBufferSize( &StubMsg,
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memsrc,
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fmtstr_conf_array );
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ok(StubMsg.BufferLength >= 20, "length %d\n", StubMsg.BufferLength);
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/*NdrGetBuffer(&_StubMsg, _StubMsg.BufferLength, NULL);*/
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StubMsg.RpcMsg->Buffer = StubMsg.BufferStart = StubMsg.Buffer = HeapAlloc(GetProcessHeap(), 0, StubMsg.BufferLength);
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StubMsg.BufferEnd = StubMsg.BufferStart + StubMsg.BufferLength;
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ptr = NdrConformantArrayMarshall( &StubMsg, memsrc, fmtstr_conf_array );
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ok(ptr == NULL, "ret %p\n", ptr);
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ok(StubMsg.Buffer - StubMsg.BufferStart == 20, "Buffer %p Start %p len %d\n", StubMsg.Buffer, StubMsg.BufferStart, 20);
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ok(!memcmp(StubMsg.BufferStart + 4, memsrc, 16), "incorrectly marshaled\n");
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StubMsg.Buffer = StubMsg.BufferStart;
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StubMsg.MemorySize = 0;
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mem = NULL;
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/* Client */
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my_alloc_called = 0;
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/* passing mem == NULL with must_alloc == 0 crashes under Windows */
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NdrConformantArrayUnmarshall( &StubMsg, &mem, fmtstr_conf_array, 1);
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ok(mem != NULL, "mem not alloced\n");
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ok(mem != StubMsg.BufferStart + 4, "mem pointing at buffer\n");
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ok(my_alloc_called == 1, "alloc called %d\n", my_alloc_called);
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my_alloc_called = 0;
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StubMsg.Buffer = StubMsg.BufferStart;
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mem_orig = mem;
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NdrConformantArrayUnmarshall( &StubMsg, &mem, fmtstr_conf_array, 0);
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ok(mem == mem_orig, "mem alloced\n");
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ok(mem != StubMsg.BufferStart + 4, "mem pointing at buffer\n");
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ok(my_alloc_called == 0, "alloc called %d\n", my_alloc_called);
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my_alloc_called = 0;
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StubMsg.Buffer = StubMsg.BufferStart;
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NdrConformantArrayUnmarshall( &StubMsg, &mem, fmtstr_conf_array, 1);
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ok(mem != mem_orig, "mem not alloced\n");
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ok(mem != StubMsg.BufferStart + 4, "mem pointing at buffer\n");
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ok(my_alloc_called == 1, "alloc called %d\n", my_alloc_called);
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my_free_called = 0;
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StubMsg.Buffer = StubMsg.BufferStart;
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NdrConformantArrayFree( &StubMsg, mem, fmtstr_conf_array );
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ok(my_free_called == 0, "free called %d\n", my_free_called);
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StubMsg.pfnFree(mem);
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/* Server */
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my_alloc_called = 0;
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StubMsg.IsClient = 0;
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mem = NULL;
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StubMsg.Buffer = StubMsg.BufferStart;
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NdrConformantArrayUnmarshall( &StubMsg, &mem, fmtstr_conf_array, 0);
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todo_wine {
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ok(mem == StubMsg.BufferStart + 4, "mem not pointing at buffer\n");
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ok(my_alloc_called == 0, "alloc called %d\n", my_alloc_called);
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}
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my_alloc_called = 0;
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mem = NULL;
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StubMsg.Buffer = StubMsg.BufferStart;
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NdrConformantArrayUnmarshall( &StubMsg, &mem, fmtstr_conf_array, 1);
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ok(mem != StubMsg.BufferStart + 4, "mem pointing at buffer\n");
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ok(my_alloc_called == 1, "alloc called %d\n", my_alloc_called);
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StubMsg.pfnFree(mem);
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my_alloc_called = 0;
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mem = mem_orig;
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StubMsg.Buffer = StubMsg.BufferStart;
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NdrConformantArrayUnmarshall( &StubMsg, &mem, fmtstr_conf_array, 0);
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ok(mem == mem_orig, "mem alloced\n");
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ok(my_alloc_called == 0, "alloc called %d\n", my_alloc_called);
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my_alloc_called = 0;
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mem = mem_orig;
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StubMsg.Buffer = StubMsg.BufferStart;
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NdrConformantArrayUnmarshall( &StubMsg, &mem, fmtstr_conf_array, 1);
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ok(mem != StubMsg.BufferStart + 4, "mem pointing at buffer\n");
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ok(my_alloc_called == 1, "alloc called %d\n", my_alloc_called);
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StubMsg.pfnFree(mem);
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StubMsg.pfnFree(mem_orig);
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HeapFree(GetProcessHeap(), 0, StubMsg.RpcMsg->Buffer);
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}
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START_TEST( ndr_marshall )
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{
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test_ndr_simple_type();
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@ -992,4 +1107,5 @@ START_TEST( ndr_marshall )
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test_fullpointer_xlat();
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test_client_init();
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test_ndr_allocate();
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test_conformant_array();
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}
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